Make us pass SHORTNAME-TEST.
[ira/wip.git] / source3 / smbd / posix_acls.c
1 /*
2    Unix SMB/CIFS implementation.
3    SMB NT Security Descriptor / Unix permission conversion.
4    Copyright (C) Jeremy Allison 1994-2009.
5    Copyright (C) Andreas Gruenbacher 2002.
6    Copyright (C) Simo Sorce <idra@samba.org> 2009.
7
8    This program is free software; you can redistribute it and/or modify
9    it under the terms of the GNU General Public License as published by
10    the Free Software Foundation; either version 3 of the License, or
11    (at your option) any later version.
12
13    This program is distributed in the hope that it will be useful,
14    but WITHOUT ANY WARRANTY; without even the implied warranty of
15    MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
16    GNU General Public License for more details.
17
18    You should have received a copy of the GNU General Public License
19    along with this program.  If not, see <http://www.gnu.org/licenses/>.
20 */
21
22 #include "includes.h"
23
24 extern struct current_user current_user;
25 extern const struct generic_mapping file_generic_mapping;
26
27 #undef  DBGC_CLASS
28 #define DBGC_CLASS DBGC_ACLS
29
30 /****************************************************************************
31  Data structures representing the internal ACE format.
32 ****************************************************************************/
33
34 enum ace_owner {UID_ACE, GID_ACE, WORLD_ACE};
35 enum ace_attribute {ALLOW_ACE, DENY_ACE}; /* Used for incoming NT ACLS. */
36
37 typedef union posix_id {
38                 uid_t uid;
39                 gid_t gid;
40                 int world;
41 } posix_id;
42
43 typedef struct canon_ace {
44         struct canon_ace *next, *prev;
45         SMB_ACL_TAG_T type;
46         mode_t perms; /* Only use S_I(R|W|X)USR mode bits here. */
47         DOM_SID trustee;
48         enum ace_owner owner_type;
49         enum ace_attribute attr;
50         posix_id unix_ug;
51         uint8_t ace_flags; /* From windows ACE entry. */
52 } canon_ace;
53
54 #define ALL_ACE_PERMS (S_IRUSR|S_IWUSR|S_IXUSR)
55
56 /*
57  * EA format of user.SAMBA_PAI (Samba_Posix_Acl_Interitance)
58  * attribute on disk - version 1.
59  * All values are little endian.
60  *
61  * |  1   |  1   |   2         |         2           |  ....
62  * +------+------+-------------+---------------------+-------------+--------------------+
63  * | vers | flag | num_entries | num_default_entries | ..entries.. | default_entries... |
64  * +------+------+-------------+---------------------+-------------+--------------------+
65  *
66  * Entry format is :
67  *
68  * |  1   |       4           |
69  * +------+-------------------+
70  * | value|  uid/gid or world |
71  * | type |  value            |
72  * +------+-------------------+
73  *
74  * Version 2 format. Stores extra Windows metadata about an ACL.
75  *
76  * |  1   |  2       |   2         |         2           |  ....
77  * +------+----------+-------------+---------------------+-------------+--------------------+
78  * | vers | ace      | num_entries | num_default_entries | ..entries.. | default_entries... |
79  * |   2  |  type    |             |                     |             |                    |
80  * +------+----------+-------------+---------------------+-------------+--------------------+
81  *
82  * Entry format is :
83  *
84  * |  1   |  1   |       4           |
85  * +------+------+-------------------+
86  * | ace  | value|  uid/gid or world |
87  * | flag | type |  value            |
88  * +------+-------------------+------+
89  *
90  */
91
92 #define PAI_VERSION_OFFSET                      0
93
94 #define PAI_V1_FLAG_OFFSET                      1
95 #define PAI_V1_NUM_ENTRIES_OFFSET               2
96 #define PAI_V1_NUM_DEFAULT_ENTRIES_OFFSET       4
97 #define PAI_V1_ENTRIES_BASE                     6
98 #define PAI_V1_ACL_FLAG_PROTECTED               0x1
99 #define PAI_V1_ENTRY_LENGTH                     5
100
101 #define PAI_V1_VERSION                          1
102
103 #define PAI_V2_TYPE_OFFSET                      1
104 #define PAI_V2_NUM_ENTRIES_OFFSET               3
105 #define PAI_V2_NUM_DEFAULT_ENTRIES_OFFSET       5
106 #define PAI_V2_ENTRIES_BASE                     7
107 #define PAI_V2_ENTRY_LENGTH                     6
108
109 #define PAI_V2_VERSION                          2
110
111 /*
112  * In memory format of user.SAMBA_PAI attribute.
113  */
114
115 struct pai_entry {
116         struct pai_entry *next, *prev;
117         uint8_t ace_flags;
118         enum ace_owner owner_type;
119         posix_id unix_ug;
120 };
121
122 struct pai_val {
123         uint16_t sd_type;
124         unsigned int num_entries;
125         struct pai_entry *entry_list;
126         unsigned int num_def_entries;
127         struct pai_entry *def_entry_list;
128 };
129
130 /************************************************************************
131  Return a uint32 of the pai_entry principal.
132 ************************************************************************/
133
134 static uint32_t get_pai_entry_val(struct pai_entry *paie)
135 {
136         switch (paie->owner_type) {
137                 case UID_ACE:
138                         DEBUG(10,("get_pai_entry_val: uid = %u\n", (unsigned int)paie->unix_ug.uid ));
139                         return (uint32_t)paie->unix_ug.uid;
140                 case GID_ACE:
141                         DEBUG(10,("get_pai_entry_val: gid = %u\n", (unsigned int)paie->unix_ug.gid ));
142                         return (uint32_t)paie->unix_ug.gid;
143                 case WORLD_ACE:
144                 default:
145                         DEBUG(10,("get_pai_entry_val: world ace\n"));
146                         return (uint32_t)-1;
147         }
148 }
149
150 /************************************************************************
151  Return a uint32 of the entry principal.
152 ************************************************************************/
153
154 static uint32_t get_entry_val(canon_ace *ace_entry)
155 {
156         switch (ace_entry->owner_type) {
157                 case UID_ACE:
158                         DEBUG(10,("get_entry_val: uid = %u\n", (unsigned int)ace_entry->unix_ug.uid ));
159                         return (uint32_t)ace_entry->unix_ug.uid;
160                 case GID_ACE:
161                         DEBUG(10,("get_entry_val: gid = %u\n", (unsigned int)ace_entry->unix_ug.gid ));
162                         return (uint32_t)ace_entry->unix_ug.gid;
163                 case WORLD_ACE:
164                 default:
165                         DEBUG(10,("get_entry_val: world ace\n"));
166                         return (uint32_t)-1;
167         }
168 }
169
170 /************************************************************************
171  Create the on-disk format (always v2 now). Caller must free.
172 ************************************************************************/
173
174 static char *create_pai_buf_v2(canon_ace *file_ace_list,
175                                 canon_ace *dir_ace_list,
176                                 uint16_t sd_type,
177                                 size_t *store_size)
178 {
179         char *pai_buf = NULL;
180         canon_ace *ace_list = NULL;
181         char *entry_offset = NULL;
182         unsigned int num_entries = 0;
183         unsigned int num_def_entries = 0;
184
185         for (ace_list = file_ace_list; ace_list; ace_list = ace_list->next) {
186                 num_entries++;
187         }
188
189         for (ace_list = dir_ace_list; ace_list; ace_list = ace_list->next) {
190                 num_def_entries++;
191         }
192
193         DEBUG(10,("create_pai_buf_v2: num_entries = %u, num_def_entries = %u\n", num_entries, num_def_entries ));
194
195         *store_size = PAI_V2_ENTRIES_BASE +
196                 ((num_entries + num_def_entries)*PAI_V2_ENTRY_LENGTH);
197
198         pai_buf = (char *)SMB_MALLOC(*store_size);
199         if (!pai_buf) {
200                 return NULL;
201         }
202
203         /* Set up the header. */
204         memset(pai_buf, '\0', PAI_V2_ENTRIES_BASE);
205         SCVAL(pai_buf,PAI_VERSION_OFFSET,PAI_V2_VERSION);
206         SSVAL(pai_buf,PAI_V2_TYPE_OFFSET, sd_type);
207         SSVAL(pai_buf,PAI_V2_NUM_ENTRIES_OFFSET,num_entries);
208         SSVAL(pai_buf,PAI_V2_NUM_DEFAULT_ENTRIES_OFFSET,num_def_entries);
209
210         entry_offset = pai_buf + PAI_V2_ENTRIES_BASE;
211
212         for (ace_list = file_ace_list; ace_list; ace_list = ace_list->next) {
213                 uint8_t type_val = (uint8_t)ace_list->owner_type;
214                 uint32_t entry_val = get_entry_val(ace_list);
215
216                 SCVAL(entry_offset,0,ace_list->ace_flags);
217                 SCVAL(entry_offset,1,type_val);
218                 SIVAL(entry_offset,2,entry_val);
219                 entry_offset += PAI_V2_ENTRY_LENGTH;
220         }
221
222         for (ace_list = dir_ace_list; ace_list; ace_list = ace_list->next) {
223                 uint8_t type_val = (uint8_t)ace_list->owner_type;
224                 uint32_t entry_val = get_entry_val(ace_list);
225
226                 SCVAL(entry_offset,0,ace_list->ace_flags);
227                 SCVAL(entry_offset,1,type_val);
228                 SIVAL(entry_offset,2,entry_val);
229                 entry_offset += PAI_V2_ENTRY_LENGTH;
230         }
231
232         return pai_buf;
233 }
234
235 /************************************************************************
236  Store the user.SAMBA_PAI attribute on disk.
237 ************************************************************************/
238
239 static void store_inheritance_attributes(files_struct *fsp,
240                                         canon_ace *file_ace_list,
241                                         canon_ace *dir_ace_list,
242                                         uint16_t sd_type)
243 {
244         int ret;
245         size_t store_size;
246         char *pai_buf;
247
248         if (!lp_map_acl_inherit(SNUM(fsp->conn))) {
249                 return;
250         }
251
252         pai_buf = create_pai_buf_v2(file_ace_list, dir_ace_list,
253                                 sd_type, &store_size);
254
255         if (fsp->fh->fd != -1) {
256                 ret = SMB_VFS_FSETXATTR(fsp, SAMBA_POSIX_INHERITANCE_EA_NAME,
257                                 pai_buf, store_size, 0);
258         } else {
259                 ret = SMB_VFS_SETXATTR(fsp->conn,fsp->fsp_name, SAMBA_POSIX_INHERITANCE_EA_NAME,
260                                 pai_buf, store_size, 0);
261         }
262
263         SAFE_FREE(pai_buf);
264
265         DEBUG(10,("store_inheritance_attribute: type 0x%x for file %s\n",
266                 (unsigned int)sd_type,
267                 fsp->fsp_name));
268
269         if (ret == -1 && !no_acl_syscall_error(errno)) {
270                 DEBUG(1,("store_inheritance_attribute: Error %s\n", strerror(errno) ));
271         }
272 }
273
274 /************************************************************************
275  Delete the in memory inheritance info.
276 ************************************************************************/
277
278 static void free_inherited_info(struct pai_val *pal)
279 {
280         if (pal) {
281                 struct pai_entry *paie, *paie_next;
282                 for (paie = pal->entry_list; paie; paie = paie_next) {
283                         paie_next = paie->next;
284                         SAFE_FREE(paie);
285                 }
286                 for (paie = pal->def_entry_list; paie; paie = paie_next) {
287                         paie_next = paie->next;
288                         SAFE_FREE(paie);
289                 }
290                 SAFE_FREE(pal);
291         }
292 }
293
294 /************************************************************************
295  Get any stored ACE flags.
296 ************************************************************************/
297
298 static uint16_t get_pai_flags(struct pai_val *pal, canon_ace *ace_entry, bool default_ace)
299 {
300         struct pai_entry *paie;
301
302         if (!pal) {
303                 return 0;
304         }
305
306         /* If the entry exists it is inherited. */
307         for (paie = (default_ace ? pal->def_entry_list : pal->entry_list); paie; paie = paie->next) {
308                 if (ace_entry->owner_type == paie->owner_type &&
309                                 get_entry_val(ace_entry) == get_pai_entry_val(paie))
310                         return paie->ace_flags;
311         }
312         return 0;
313 }
314
315 /************************************************************************
316  Ensure an attribute just read is valid - v1.
317 ************************************************************************/
318
319 static bool check_pai_ok_v1(const char *pai_buf, size_t pai_buf_data_size)
320 {
321         uint16 num_entries;
322         uint16 num_def_entries;
323
324         if (pai_buf_data_size < PAI_V1_ENTRIES_BASE) {
325                 /* Corrupted - too small. */
326                 return false;
327         }
328
329         if (CVAL(pai_buf,PAI_VERSION_OFFSET) != PAI_V1_VERSION) {
330                 return false;
331         }
332
333         num_entries = SVAL(pai_buf,PAI_V1_NUM_ENTRIES_OFFSET);
334         num_def_entries = SVAL(pai_buf,PAI_V1_NUM_DEFAULT_ENTRIES_OFFSET);
335
336         /* Check the entry lists match. */
337         /* Each entry is 5 bytes (type plus 4 bytes of uid or gid). */
338
339         if (((num_entries + num_def_entries)*PAI_V1_ENTRY_LENGTH) +
340                         PAI_V1_ENTRIES_BASE != pai_buf_data_size) {
341                 return false;
342         }
343
344         return true;
345 }
346
347 /************************************************************************
348  Ensure an attribute just read is valid - v2.
349 ************************************************************************/
350
351 static bool check_pai_ok_v2(const char *pai_buf, size_t pai_buf_data_size)
352 {
353         uint16 num_entries;
354         uint16 num_def_entries;
355
356         if (pai_buf_data_size < PAI_V2_ENTRIES_BASE) {
357                 /* Corrupted - too small. */
358                 return false;
359         }
360
361         if (CVAL(pai_buf,PAI_VERSION_OFFSET) != PAI_V2_VERSION) {
362                 return false;
363         }
364
365         num_entries = SVAL(pai_buf,PAI_V2_NUM_ENTRIES_OFFSET);
366         num_def_entries = SVAL(pai_buf,PAI_V2_NUM_DEFAULT_ENTRIES_OFFSET);
367
368         /* Check the entry lists match. */
369         /* Each entry is 6 bytes (flags + type + 4 bytes of uid or gid). */
370
371         if (((num_entries + num_def_entries)*PAI_V2_ENTRY_LENGTH) +
372                         PAI_V2_ENTRIES_BASE != pai_buf_data_size) {
373                 return false;
374         }
375
376         return true;
377 }
378
379 /************************************************************************
380  Decode the owner.
381 ************************************************************************/
382
383 static bool get_pai_owner_type(struct pai_entry *paie, const char *entry_offset)
384 {
385         paie->owner_type = (enum ace_owner)CVAL(entry_offset,0);
386         switch( paie->owner_type) {
387                 case UID_ACE:
388                         paie->unix_ug.uid = (uid_t)IVAL(entry_offset,1);
389                         DEBUG(10,("get_pai_owner_type: uid = %u\n",
390                                 (unsigned int)paie->unix_ug.uid ));
391                         break;
392                 case GID_ACE:
393                         paie->unix_ug.gid = (gid_t)IVAL(entry_offset,1);
394                         DEBUG(10,("get_pai_owner_type: gid = %u\n",
395                                 (unsigned int)paie->unix_ug.gid ));
396                         break;
397                 case WORLD_ACE:
398                         paie->unix_ug.world = -1;
399                         DEBUG(10,("get_pai_owner_type: world ace\n"));
400                         break;
401                 default:
402                         return false;
403         }
404         return true;
405 }
406
407 /************************************************************************
408  Process v2 entries.
409 ************************************************************************/
410
411 static const char *create_pai_v1_entries(struct pai_val *paiv,
412                                 const char *entry_offset,
413                                 bool def_entry)
414 {
415         int i;
416
417         for (i = 0; i < paiv->num_entries; i++) {
418                 struct pai_entry *paie = SMB_MALLOC_P(struct pai_entry);
419                 if (!paie) {
420                         return NULL;
421                 }
422
423                 paie->ace_flags = SEC_ACE_FLAG_INHERITED_ACE;
424                 if (!get_pai_owner_type(paie, entry_offset)) {
425                         return NULL;
426                 }
427
428                 if (!def_entry) {
429                         DLIST_ADD(paiv->entry_list, paie);
430                 } else {
431                         DLIST_ADD(paiv->def_entry_list, paie);
432                 }
433                 entry_offset += PAI_V1_ENTRY_LENGTH;
434         }
435         return entry_offset;
436 }
437
438 /************************************************************************
439  Convert to in-memory format from version 1.
440 ************************************************************************/
441
442 static struct pai_val *create_pai_val_v1(const char *buf, size_t size)
443 {
444         const char *entry_offset;
445         struct pai_val *paiv = NULL;
446
447         if (!check_pai_ok_v1(buf, size)) {
448                 return NULL;
449         }
450
451         paiv = SMB_MALLOC_P(struct pai_val);
452         if (!paiv) {
453                 return NULL;
454         }
455
456         memset(paiv, '\0', sizeof(struct pai_val));
457
458         paiv->sd_type = (CVAL(buf,PAI_V1_FLAG_OFFSET) == PAI_V1_ACL_FLAG_PROTECTED) ?
459                         SE_DESC_DACL_PROTECTED : 0;
460
461         paiv->num_entries = SVAL(buf,PAI_V1_NUM_ENTRIES_OFFSET);
462         paiv->num_def_entries = SVAL(buf,PAI_V1_NUM_DEFAULT_ENTRIES_OFFSET);
463
464         entry_offset = buf + PAI_V1_ENTRIES_BASE;
465
466         DEBUG(10,("create_pai_val: num_entries = %u, num_def_entries = %u\n",
467                         paiv->num_entries, paiv->num_def_entries ));
468
469         entry_offset = create_pai_v1_entries(paiv, entry_offset, false);
470         if (entry_offset == NULL) {
471                 free_inherited_info(paiv);
472                 return NULL;
473         }
474         entry_offset = create_pai_v1_entries(paiv, entry_offset, true);
475         if (entry_offset == NULL) {
476                 free_inherited_info(paiv);
477                 return NULL;
478         }
479
480         return paiv;
481 }
482
483 /************************************************************************
484  Process v2 entries.
485 ************************************************************************/
486
487 static const char *create_pai_v2_entries(struct pai_val *paiv,
488                                 const char *entry_offset,
489                                 bool def_entry)
490 {
491         int i;
492
493         for (i = 0; i < paiv->num_entries; i++) {
494                 struct pai_entry *paie = SMB_MALLOC_P(struct pai_entry);
495                 if (!paie) {
496                         return NULL;
497                 }
498
499                 paie->ace_flags = CVAL(entry_offset,0);
500
501                 entry_offset++;
502
503                 if (!get_pai_owner_type(paie, entry_offset)) {
504                         return NULL;
505                 }
506                 if (!def_entry) {
507                         DLIST_ADD(paiv->entry_list, paie);
508                 } else {
509                         DLIST_ADD(paiv->def_entry_list, paie);
510                 }
511                 entry_offset += PAI_V2_ENTRY_LENGTH;
512         }
513         return entry_offset;
514 }
515
516 /************************************************************************
517  Convert to in-memory format from version 2.
518 ************************************************************************/
519
520 static struct pai_val *create_pai_val_v2(const char *buf, size_t size)
521 {
522         const char *entry_offset;
523         struct pai_val *paiv = NULL;
524
525         if (!check_pai_ok_v2(buf, size)) {
526                 return NULL;
527         }
528
529         paiv = SMB_MALLOC_P(struct pai_val);
530         if (!paiv) {
531                 return NULL;
532         }
533
534         memset(paiv, '\0', sizeof(struct pai_val));
535
536         paiv->sd_type = SVAL(buf,PAI_V2_TYPE_OFFSET);
537
538         paiv->num_entries = SVAL(buf,PAI_V2_NUM_ENTRIES_OFFSET);
539         paiv->num_def_entries = SVAL(buf,PAI_V2_NUM_DEFAULT_ENTRIES_OFFSET);
540
541         entry_offset = buf + PAI_V2_ENTRIES_BASE;
542
543         DEBUG(10,("create_pai_val_v2: num_entries = %u, num_def_entries = %u\n",
544                         paiv->num_entries, paiv->num_def_entries ));
545
546         entry_offset = create_pai_v2_entries(paiv, entry_offset, false);
547         if (entry_offset == NULL) {
548                 free_inherited_info(paiv);
549                 return NULL;
550         }
551         entry_offset = create_pai_v2_entries(paiv, entry_offset, true);
552         if (entry_offset == NULL) {
553                 free_inherited_info(paiv);
554                 return NULL;
555         }
556
557         return paiv;
558 }
559
560 /************************************************************************
561  Convert to in-memory format - from either version 1 or 2.
562 ************************************************************************/
563
564 static struct pai_val *create_pai_val(const char *buf, size_t size)
565 {
566         if (size < 1) {
567                 return NULL;
568         }
569         if (CVAL(buf,PAI_VERSION_OFFSET) == PAI_V1_VERSION) {
570                 return create_pai_val_v1(buf, size);
571         } else if (CVAL(buf,PAI_VERSION_OFFSET) == PAI_V2_VERSION) {
572                 return create_pai_val_v2(buf, size);
573         } else {
574                 return NULL;
575         }
576 }
577
578 /************************************************************************
579  Load the user.SAMBA_PAI attribute.
580 ************************************************************************/
581
582 static struct pai_val *fload_inherited_info(files_struct *fsp)
583 {
584         char *pai_buf;
585         size_t pai_buf_size = 1024;
586         struct pai_val *paiv = NULL;
587         ssize_t ret;
588
589         if (!lp_map_acl_inherit(SNUM(fsp->conn))) {
590                 return NULL;
591         }
592
593         if ((pai_buf = (char *)SMB_MALLOC(pai_buf_size)) == NULL) {
594                 return NULL;
595         }
596
597         do {
598                 if (fsp->fh->fd != -1) {
599                         ret = SMB_VFS_FGETXATTR(fsp, SAMBA_POSIX_INHERITANCE_EA_NAME,
600                                         pai_buf, pai_buf_size);
601                 } else {
602                         ret = SMB_VFS_GETXATTR(fsp->conn,fsp->fsp_name,SAMBA_POSIX_INHERITANCE_EA_NAME,
603                                         pai_buf, pai_buf_size);
604                 }
605
606                 if (ret == -1) {
607                         if (errno != ERANGE) {
608                                 break;
609                         }
610                         /* Buffer too small - enlarge it. */
611                         pai_buf_size *= 2;
612                         SAFE_FREE(pai_buf);
613                         if (pai_buf_size > 1024*1024) {
614                                 return NULL; /* Limit malloc to 1mb. */
615                         }
616                         if ((pai_buf = (char *)SMB_MALLOC(pai_buf_size)) == NULL)
617                                 return NULL;
618                 }
619         } while (ret == -1);
620
621         DEBUG(10,("load_inherited_info: ret = %lu for file %s\n", (unsigned long)ret, fsp->fsp_name));
622
623         if (ret == -1) {
624                 /* No attribute or not supported. */
625 #if defined(ENOATTR)
626                 if (errno != ENOATTR)
627                         DEBUG(10,("load_inherited_info: Error %s\n", strerror(errno) ));
628 #else
629                 if (errno != ENOSYS)
630                         DEBUG(10,("load_inherited_info: Error %s\n", strerror(errno) ));
631 #endif
632                 SAFE_FREE(pai_buf);
633                 return NULL;
634         }
635
636         paiv = create_pai_val(pai_buf, ret);
637
638         if (paiv) {
639                 DEBUG(10,("load_inherited_info: ACL type is 0x%x for file %s\n",
640                         (unsigned int)paiv->sd_type,
641                         fsp->fsp_name));
642         }
643
644         SAFE_FREE(pai_buf);
645         return paiv;
646 }
647
648 /************************************************************************
649  Load the user.SAMBA_PAI attribute.
650 ************************************************************************/
651
652 static struct pai_val *load_inherited_info(const struct connection_struct *conn,
653                                            const char *fname)
654 {
655         char *pai_buf;
656         size_t pai_buf_size = 1024;
657         struct pai_val *paiv = NULL;
658         ssize_t ret;
659
660         if (!lp_map_acl_inherit(SNUM(conn))) {
661                 return NULL;
662         }
663
664         if ((pai_buf = (char *)SMB_MALLOC(pai_buf_size)) == NULL) {
665                 return NULL;
666         }
667
668         do {
669                 ret = SMB_VFS_GETXATTR(conn, fname,
670                                        SAMBA_POSIX_INHERITANCE_EA_NAME,
671                                        pai_buf, pai_buf_size);
672
673                 if (ret == -1) {
674                         if (errno != ERANGE) {
675                                 break;
676                         }
677                         /* Buffer too small - enlarge it. */
678                         pai_buf_size *= 2;
679                         SAFE_FREE(pai_buf);
680                         if (pai_buf_size > 1024*1024) {
681                                 return NULL; /* Limit malloc to 1mb. */
682                         }
683                         if ((pai_buf = (char *)SMB_MALLOC(pai_buf_size)) == NULL)
684                                 return NULL;
685                 }
686         } while (ret == -1);
687
688         DEBUG(10,("load_inherited_info: ret = %lu for file %s\n", (unsigned long)ret, fname));
689
690         if (ret == -1) {
691                 /* No attribute or not supported. */
692 #if defined(ENOATTR)
693                 if (errno != ENOATTR)
694                         DEBUG(10,("load_inherited_info: Error %s\n", strerror(errno) ));
695 #else
696                 if (errno != ENOSYS)
697                         DEBUG(10,("load_inherited_info: Error %s\n", strerror(errno) ));
698 #endif
699                 SAFE_FREE(pai_buf);
700                 return NULL;
701         }
702
703         paiv = create_pai_val(pai_buf, ret);
704
705         if (paiv) {
706                 DEBUG(10,("load_inherited_info: ACL type 0x%x for file %s\n",
707                         (unsigned int)paiv->sd_type,
708                         fname));
709         }
710
711         SAFE_FREE(pai_buf);
712         return paiv;
713 }
714
715 /****************************************************************************
716  Functions to manipulate the internal ACE format.
717 ****************************************************************************/
718
719 /****************************************************************************
720  Count a linked list of canonical ACE entries.
721 ****************************************************************************/
722
723 static size_t count_canon_ace_list( canon_ace *l_head )
724 {
725         size_t count = 0;
726         canon_ace *ace;
727
728         for (ace = l_head; ace; ace = ace->next)
729                 count++;
730
731         return count;
732 }
733
734 /****************************************************************************
735  Free a linked list of canonical ACE entries.
736 ****************************************************************************/
737
738 static void free_canon_ace_list( canon_ace *l_head )
739 {
740         canon_ace *list, *next;
741
742         for (list = l_head; list; list = next) {
743                 next = list->next;
744                 DLIST_REMOVE(l_head, list);
745                 SAFE_FREE(list);
746         }
747 }
748
749 /****************************************************************************
750  Function to duplicate a canon_ace entry.
751 ****************************************************************************/
752
753 static canon_ace *dup_canon_ace( canon_ace *src_ace)
754 {
755         canon_ace *dst_ace = SMB_MALLOC_P(canon_ace);
756
757         if (dst_ace == NULL)
758                 return NULL;
759
760         *dst_ace = *src_ace;
761         dst_ace->prev = dst_ace->next = NULL;
762         return dst_ace;
763 }
764
765 /****************************************************************************
766  Print out a canon ace.
767 ****************************************************************************/
768
769 static void print_canon_ace(canon_ace *pace, int num)
770 {
771         dbgtext( "canon_ace index %d. Type = %s ", num, pace->attr == ALLOW_ACE ? "allow" : "deny" );
772         dbgtext( "SID = %s ", sid_string_dbg(&pace->trustee));
773         if (pace->owner_type == UID_ACE) {
774                 const char *u_name = uidtoname(pace->unix_ug.uid);
775                 dbgtext( "uid %u (%s) ", (unsigned int)pace->unix_ug.uid, u_name );
776         } else if (pace->owner_type == GID_ACE) {
777                 char *g_name = gidtoname(pace->unix_ug.gid);
778                 dbgtext( "gid %u (%s) ", (unsigned int)pace->unix_ug.gid, g_name );
779         } else
780                 dbgtext( "other ");
781         switch (pace->type) {
782                 case SMB_ACL_USER:
783                         dbgtext( "SMB_ACL_USER ");
784                         break;
785                 case SMB_ACL_USER_OBJ:
786                         dbgtext( "SMB_ACL_USER_OBJ ");
787                         break;
788                 case SMB_ACL_GROUP:
789                         dbgtext( "SMB_ACL_GROUP ");
790                         break;
791                 case SMB_ACL_GROUP_OBJ:
792                         dbgtext( "SMB_ACL_GROUP_OBJ ");
793                         break;
794                 case SMB_ACL_OTHER:
795                         dbgtext( "SMB_ACL_OTHER ");
796                         break;
797                 default:
798                         dbgtext( "MASK " );
799                         break;
800         }
801
802         dbgtext( "ace_flags = 0x%x ", (unsigned int)pace->ace_flags);
803         dbgtext( "perms ");
804         dbgtext( "%c", pace->perms & S_IRUSR ? 'r' : '-');
805         dbgtext( "%c", pace->perms & S_IWUSR ? 'w' : '-');
806         dbgtext( "%c\n", pace->perms & S_IXUSR ? 'x' : '-');
807 }
808
809 /****************************************************************************
810  Print out a canon ace list.
811 ****************************************************************************/
812
813 static void print_canon_ace_list(const char *name, canon_ace *ace_list)
814 {
815         int count = 0;
816
817         if( DEBUGLVL( 10 )) {
818                 dbgtext( "print_canon_ace_list: %s\n", name );
819                 for (;ace_list; ace_list = ace_list->next, count++)
820                         print_canon_ace(ace_list, count );
821         }
822 }
823
824 /****************************************************************************
825  Map POSIX ACL perms to canon_ace permissions (a mode_t containing only S_(R|W|X)USR bits).
826 ****************************************************************************/
827
828 static mode_t convert_permset_to_mode_t(connection_struct *conn, SMB_ACL_PERMSET_T permset)
829 {
830         mode_t ret = 0;
831
832         ret |= (SMB_VFS_SYS_ACL_GET_PERM(conn, permset, SMB_ACL_READ) ? S_IRUSR : 0);
833         ret |= (SMB_VFS_SYS_ACL_GET_PERM(conn, permset, SMB_ACL_WRITE) ? S_IWUSR : 0);
834         ret |= (SMB_VFS_SYS_ACL_GET_PERM(conn, permset, SMB_ACL_EXECUTE) ? S_IXUSR : 0);
835
836         return ret;
837 }
838
839 /****************************************************************************
840  Map generic UNIX permissions to canon_ace permissions (a mode_t containing only S_(R|W|X)USR bits).
841 ****************************************************************************/
842
843 static mode_t unix_perms_to_acl_perms(mode_t mode, int r_mask, int w_mask, int x_mask)
844 {
845         mode_t ret = 0;
846
847         if (mode & r_mask)
848                 ret |= S_IRUSR;
849         if (mode & w_mask)
850                 ret |= S_IWUSR;
851         if (mode & x_mask)
852                 ret |= S_IXUSR;
853
854         return ret;
855 }
856
857 /****************************************************************************
858  Map canon_ace permissions (a mode_t containing only S_(R|W|X)USR bits) to
859  an SMB_ACL_PERMSET_T.
860 ****************************************************************************/
861
862 static int map_acl_perms_to_permset(connection_struct *conn, mode_t mode, SMB_ACL_PERMSET_T *p_permset)
863 {
864         if (SMB_VFS_SYS_ACL_CLEAR_PERMS(conn, *p_permset) ==  -1)
865                 return -1;
866         if (mode & S_IRUSR) {
867                 if (SMB_VFS_SYS_ACL_ADD_PERM(conn, *p_permset, SMB_ACL_READ) == -1)
868                         return -1;
869         }
870         if (mode & S_IWUSR) {
871                 if (SMB_VFS_SYS_ACL_ADD_PERM(conn, *p_permset, SMB_ACL_WRITE) == -1)
872                         return -1;
873         }
874         if (mode & S_IXUSR) {
875                 if (SMB_VFS_SYS_ACL_ADD_PERM(conn, *p_permset, SMB_ACL_EXECUTE) == -1)
876                         return -1;
877         }
878         return 0;
879 }
880
881 /****************************************************************************
882  Function to create owner and group SIDs from a SMB_STRUCT_STAT.
883 ****************************************************************************/
884
885 void create_file_sids(const SMB_STRUCT_STAT *psbuf, DOM_SID *powner_sid, DOM_SID *pgroup_sid)
886 {
887         uid_to_sid( powner_sid, psbuf->st_uid );
888         gid_to_sid( pgroup_sid, psbuf->st_gid );
889 }
890
891 /****************************************************************************
892  Is the identity in two ACEs equal ? Check both SID and uid/gid.
893 ****************************************************************************/
894
895 static bool identity_in_ace_equal(canon_ace *ace1, canon_ace *ace2)
896 {
897         if (sid_equal(&ace1->trustee, &ace2->trustee)) {
898                 return True;
899         }
900         if (ace1->owner_type == ace2->owner_type) {
901                 if (ace1->owner_type == UID_ACE &&
902                                 ace1->unix_ug.uid == ace2->unix_ug.uid) {
903                         return True;
904                 } else if (ace1->owner_type == GID_ACE &&
905                                 ace1->unix_ug.gid == ace2->unix_ug.gid) {
906                         return True;
907                 }
908         }
909         return False;
910 }
911
912 /****************************************************************************
913  Merge aces with a common sid - if both are allow or deny, OR the permissions together and
914  delete the second one. If the first is deny, mask the permissions off and delete the allow
915  if the permissions become zero, delete the deny if the permissions are non zero.
916 ****************************************************************************/
917
918 static void merge_aces( canon_ace **pp_list_head )
919 {
920         canon_ace *l_head = *pp_list_head;
921         canon_ace *curr_ace_outer;
922         canon_ace *curr_ace_outer_next;
923
924         /*
925          * First, merge allow entries with identical SIDs, and deny entries
926          * with identical SIDs.
927          */
928
929         for (curr_ace_outer = l_head; curr_ace_outer; curr_ace_outer = curr_ace_outer_next) {
930                 canon_ace *curr_ace;
931                 canon_ace *curr_ace_next;
932
933                 curr_ace_outer_next = curr_ace_outer->next; /* Save the link in case we delete. */
934
935                 for (curr_ace = curr_ace_outer->next; curr_ace; curr_ace = curr_ace_next) {
936
937                         curr_ace_next = curr_ace->next; /* Save the link in case of delete. */
938
939                         if (identity_in_ace_equal(curr_ace, curr_ace_outer) &&
940                                 (curr_ace->attr == curr_ace_outer->attr)) {
941
942                                 if( DEBUGLVL( 10 )) {
943                                         dbgtext("merge_aces: Merging ACE's\n");
944                                         print_canon_ace( curr_ace_outer, 0);
945                                         print_canon_ace( curr_ace, 0);
946                                 }
947
948                                 /* Merge two allow or two deny ACE's. */
949
950                                 curr_ace_outer->perms |= curr_ace->perms;
951                                 DLIST_REMOVE(l_head, curr_ace);
952                                 SAFE_FREE(curr_ace);
953                                 curr_ace_outer_next = curr_ace_outer->next; /* We may have deleted the link. */
954                         }
955                 }
956         }
957
958         /*
959          * Now go through and mask off allow permissions with deny permissions.
960          * We can delete either the allow or deny here as we know that each SID
961          * appears only once in the list.
962          */
963
964         for (curr_ace_outer = l_head; curr_ace_outer; curr_ace_outer = curr_ace_outer_next) {
965                 canon_ace *curr_ace;
966                 canon_ace *curr_ace_next;
967
968                 curr_ace_outer_next = curr_ace_outer->next; /* Save the link in case we delete. */
969
970                 for (curr_ace = curr_ace_outer->next; curr_ace; curr_ace = curr_ace_next) {
971
972                         curr_ace_next = curr_ace->next; /* Save the link in case of delete. */
973
974                         /*
975                          * Subtract ACE's with different entries. Due to the ordering constraints
976                          * we've put on the ACL, we know the deny must be the first one.
977                          */
978
979                         if (identity_in_ace_equal(curr_ace, curr_ace_outer) &&
980                                 (curr_ace_outer->attr == DENY_ACE) && (curr_ace->attr == ALLOW_ACE)) {
981
982                                 if( DEBUGLVL( 10 )) {
983                                         dbgtext("merge_aces: Masking ACE's\n");
984                                         print_canon_ace( curr_ace_outer, 0);
985                                         print_canon_ace( curr_ace, 0);
986                                 }
987
988                                 curr_ace->perms &= ~curr_ace_outer->perms;
989
990                                 if (curr_ace->perms == 0) {
991
992                                         /*
993                                          * The deny overrides the allow. Remove the allow.
994                                          */
995
996                                         DLIST_REMOVE(l_head, curr_ace);
997                                         SAFE_FREE(curr_ace);
998                                         curr_ace_outer_next = curr_ace_outer->next; /* We may have deleted the link. */
999
1000                                 } else {
1001
1002                                         /*
1003                                          * Even after removing permissions, there
1004                                          * are still allow permissions - delete the deny.
1005                                          * It is safe to delete the deny here,
1006                                          * as we are guarenteed by the deny first
1007                                          * ordering that all the deny entries for
1008                                          * this SID have already been merged into one
1009                                          * before we can get to an allow ace.
1010                                          */
1011
1012                                         DLIST_REMOVE(l_head, curr_ace_outer);
1013                                         SAFE_FREE(curr_ace_outer);
1014                                         break;
1015                                 }
1016                         }
1017
1018                 } /* end for curr_ace */
1019         } /* end for curr_ace_outer */
1020
1021         /* We may have modified the list. */
1022
1023         *pp_list_head = l_head;
1024 }
1025
1026 /****************************************************************************
1027  Check if we need to return NT4.x compatible ACL entries.
1028 ****************************************************************************/
1029
1030 bool nt4_compatible_acls(void)
1031 {
1032         int compat = lp_acl_compatibility();
1033
1034         if (compat == ACL_COMPAT_AUTO) {
1035                 enum remote_arch_types ra_type = get_remote_arch();
1036
1037                 /* Automatically adapt to client */
1038                 return (ra_type <= RA_WINNT);
1039         } else
1040                 return (compat == ACL_COMPAT_WINNT);
1041 }
1042
1043
1044 /****************************************************************************
1045  Map canon_ace perms to permission bits NT.
1046  The attr element is not used here - we only process deny entries on set,
1047  not get. Deny entries are implicit on get with ace->perms = 0.
1048 ****************************************************************************/
1049
1050 static uint32_t map_canon_ace_perms(int snum,
1051                                 enum security_ace_type *pacl_type,
1052                                 mode_t perms,
1053                                 bool directory_ace)
1054 {
1055         uint32_t nt_mask = 0;
1056
1057         *pacl_type = SEC_ACE_TYPE_ACCESS_ALLOWED;
1058
1059         if (lp_acl_map_full_control(snum) && ((perms & ALL_ACE_PERMS) == ALL_ACE_PERMS)) {
1060                 if (directory_ace) {
1061                         nt_mask = UNIX_DIRECTORY_ACCESS_RWX;
1062                 } else {
1063                         nt_mask = (UNIX_ACCESS_RWX & ~DELETE_ACCESS);
1064                 }
1065         } else if ((perms & ALL_ACE_PERMS) == (mode_t)0) {
1066                 /*
1067                  * Windows NT refuses to display ACEs with no permissions in them (but
1068                  * they are perfectly legal with Windows 2000). If the ACE has empty
1069                  * permissions we cannot use 0, so we use the otherwise unused
1070                  * WRITE_OWNER permission, which we ignore when we set an ACL.
1071                  * We abstract this into a #define of UNIX_ACCESS_NONE to allow this
1072                  * to be changed in the future.
1073                  */
1074
1075                 if (nt4_compatible_acls())
1076                         nt_mask = UNIX_ACCESS_NONE;
1077                 else
1078                         nt_mask = 0;
1079         } else {
1080                 if (directory_ace) {
1081                         nt_mask |= ((perms & S_IRUSR) ? UNIX_DIRECTORY_ACCESS_R : 0 );
1082                         nt_mask |= ((perms & S_IWUSR) ? UNIX_DIRECTORY_ACCESS_W : 0 );
1083                         nt_mask |= ((perms & S_IXUSR) ? UNIX_DIRECTORY_ACCESS_X : 0 );
1084                 } else {
1085                         nt_mask |= ((perms & S_IRUSR) ? UNIX_ACCESS_R : 0 );
1086                         nt_mask |= ((perms & S_IWUSR) ? UNIX_ACCESS_W : 0 );
1087                         nt_mask |= ((perms & S_IXUSR) ? UNIX_ACCESS_X : 0 );
1088                 }
1089         }
1090
1091         DEBUG(10,("map_canon_ace_perms: Mapped (UNIX) %x to (NT) %x\n",
1092                         (unsigned int)perms, (unsigned int)nt_mask ));
1093
1094         return nt_mask;
1095 }
1096
1097 /****************************************************************************
1098  Map NT perms to a UNIX mode_t.
1099 ****************************************************************************/
1100
1101 #define FILE_SPECIFIC_READ_BITS (FILE_READ_DATA|FILE_READ_EA|FILE_READ_ATTRIBUTES)
1102 #define FILE_SPECIFIC_WRITE_BITS (FILE_WRITE_DATA|FILE_APPEND_DATA|FILE_WRITE_EA|FILE_WRITE_ATTRIBUTES)
1103 #define FILE_SPECIFIC_EXECUTE_BITS (FILE_EXECUTE)
1104
1105 static mode_t map_nt_perms( uint32 *mask, int type)
1106 {
1107         mode_t mode = 0;
1108
1109         switch(type) {
1110         case S_IRUSR:
1111                 if((*mask) & GENERIC_ALL_ACCESS)
1112                         mode = S_IRUSR|S_IWUSR|S_IXUSR;
1113                 else {
1114                         mode |= ((*mask) & (GENERIC_READ_ACCESS|FILE_SPECIFIC_READ_BITS)) ? S_IRUSR : 0;
1115                         mode |= ((*mask) & (GENERIC_WRITE_ACCESS|FILE_SPECIFIC_WRITE_BITS)) ? S_IWUSR : 0;
1116                         mode |= ((*mask) & (GENERIC_EXECUTE_ACCESS|FILE_SPECIFIC_EXECUTE_BITS)) ? S_IXUSR : 0;
1117                 }
1118                 break;
1119         case S_IRGRP:
1120                 if((*mask) & GENERIC_ALL_ACCESS)
1121                         mode = S_IRGRP|S_IWGRP|S_IXGRP;
1122                 else {
1123                         mode |= ((*mask) & (GENERIC_READ_ACCESS|FILE_SPECIFIC_READ_BITS)) ? S_IRGRP : 0;
1124                         mode |= ((*mask) & (GENERIC_WRITE_ACCESS|FILE_SPECIFIC_WRITE_BITS)) ? S_IWGRP : 0;
1125                         mode |= ((*mask) & (GENERIC_EXECUTE_ACCESS|FILE_SPECIFIC_EXECUTE_BITS)) ? S_IXGRP : 0;
1126                 }
1127                 break;
1128         case S_IROTH:
1129                 if((*mask) & GENERIC_ALL_ACCESS)
1130                         mode = S_IROTH|S_IWOTH|S_IXOTH;
1131                 else {
1132                         mode |= ((*mask) & (GENERIC_READ_ACCESS|FILE_SPECIFIC_READ_BITS)) ? S_IROTH : 0;
1133                         mode |= ((*mask) & (GENERIC_WRITE_ACCESS|FILE_SPECIFIC_WRITE_BITS)) ? S_IWOTH : 0;
1134                         mode |= ((*mask) & (GENERIC_EXECUTE_ACCESS|FILE_SPECIFIC_EXECUTE_BITS)) ? S_IXOTH : 0;
1135                 }
1136                 break;
1137         }
1138
1139         return mode;
1140 }
1141
1142 /****************************************************************************
1143  Unpack a SEC_DESC into a UNIX owner and group.
1144 ****************************************************************************/
1145
1146 NTSTATUS unpack_nt_owners(int snum, uid_t *puser, gid_t *pgrp, uint32 security_info_sent, const SEC_DESC *psd)
1147 {
1148         DOM_SID owner_sid;
1149         DOM_SID grp_sid;
1150
1151         *puser = (uid_t)-1;
1152         *pgrp = (gid_t)-1;
1153
1154         if(security_info_sent == 0) {
1155                 DEBUG(0,("unpack_nt_owners: no security info sent !\n"));
1156                 return NT_STATUS_OK;
1157         }
1158
1159         /*
1160          * Validate the owner and group SID's.
1161          */
1162
1163         memset(&owner_sid, '\0', sizeof(owner_sid));
1164         memset(&grp_sid, '\0', sizeof(grp_sid));
1165
1166         DEBUG(5,("unpack_nt_owners: validating owner_sids.\n"));
1167
1168         /*
1169          * Don't immediately fail if the owner sid cannot be validated.
1170          * This may be a group chown only set.
1171          */
1172
1173         if (security_info_sent & OWNER_SECURITY_INFORMATION) {
1174                 sid_copy(&owner_sid, psd->owner_sid);
1175                 if (!sid_to_uid(&owner_sid, puser)) {
1176                         if (lp_force_unknown_acl_user(snum)) {
1177                                 /* this allows take ownership to work
1178                                  * reasonably */
1179                                 *puser = current_user.ut.uid;
1180                         } else {
1181                                 DEBUG(3,("unpack_nt_owners: unable to validate"
1182                                          " owner sid for %s\n",
1183                                          sid_string_dbg(&owner_sid)));
1184                                 return NT_STATUS_INVALID_OWNER;
1185                         }
1186                 }
1187                 DEBUG(3,("unpack_nt_owners: owner sid mapped to uid %u\n",
1188                          (unsigned int)*puser ));
1189         }
1190
1191         /*
1192          * Don't immediately fail if the group sid cannot be validated.
1193          * This may be an owner chown only set.
1194          */
1195
1196         if (security_info_sent & GROUP_SECURITY_INFORMATION) {
1197                 sid_copy(&grp_sid, psd->group_sid);
1198                 if (!sid_to_gid( &grp_sid, pgrp)) {
1199                         if (lp_force_unknown_acl_user(snum)) {
1200                                 /* this allows take group ownership to work
1201                                  * reasonably */
1202                                 *pgrp = current_user.ut.gid;
1203                         } else {
1204                                 DEBUG(3,("unpack_nt_owners: unable to validate"
1205                                          " group sid.\n"));
1206                                 return NT_STATUS_INVALID_OWNER;
1207                         }
1208                 }
1209                 DEBUG(3,("unpack_nt_owners: group sid mapped to gid %u\n",
1210                          (unsigned int)*pgrp));
1211         }
1212
1213         DEBUG(5,("unpack_nt_owners: owner_sids validated.\n"));
1214
1215         return NT_STATUS_OK;
1216 }
1217
1218 /****************************************************************************
1219  Ensure the enforced permissions for this share apply.
1220 ****************************************************************************/
1221
1222 static void apply_default_perms(const struct share_params *params,
1223                                 const bool is_directory, canon_ace *pace,
1224                                 mode_t type)
1225 {
1226         mode_t and_bits = (mode_t)0;
1227         mode_t or_bits = (mode_t)0;
1228
1229         /* Get the initial bits to apply. */
1230
1231         if (is_directory) {
1232                 and_bits = lp_dir_security_mask(params->service);
1233                 or_bits = lp_force_dir_security_mode(params->service);
1234         } else {
1235                 and_bits = lp_security_mask(params->service);
1236                 or_bits = lp_force_security_mode(params->service);
1237         }
1238
1239         /* Now bounce them into the S_USR space. */     
1240         switch(type) {
1241         case S_IRUSR:
1242                 /* Ensure owner has read access. */
1243                 pace->perms |= S_IRUSR;
1244                 if (is_directory)
1245                         pace->perms |= (S_IWUSR|S_IXUSR);
1246                 and_bits = unix_perms_to_acl_perms(and_bits, S_IRUSR, S_IWUSR, S_IXUSR);
1247                 or_bits = unix_perms_to_acl_perms(or_bits, S_IRUSR, S_IWUSR, S_IXUSR);
1248                 break;
1249         case S_IRGRP:
1250                 and_bits = unix_perms_to_acl_perms(and_bits, S_IRGRP, S_IWGRP, S_IXGRP);
1251                 or_bits = unix_perms_to_acl_perms(or_bits, S_IRGRP, S_IWGRP, S_IXGRP);
1252                 break;
1253         case S_IROTH:
1254                 and_bits = unix_perms_to_acl_perms(and_bits, S_IROTH, S_IWOTH, S_IXOTH);
1255                 or_bits = unix_perms_to_acl_perms(or_bits, S_IROTH, S_IWOTH, S_IXOTH);
1256                 break;
1257         }
1258
1259         pace->perms = ((pace->perms & and_bits)|or_bits);
1260 }
1261
1262 /****************************************************************************
1263  Check if a given uid/SID is in a group gid/SID. This is probably very
1264  expensive and will need optimisation. A *lot* of optimisation :-). JRA.
1265 ****************************************************************************/
1266
1267 static bool uid_entry_in_group( canon_ace *uid_ace, canon_ace *group_ace )
1268 {
1269         const char *u_name = NULL;
1270
1271         /* "Everyone" always matches every uid. */
1272
1273         if (sid_equal(&group_ace->trustee, &global_sid_World))
1274                 return True;
1275
1276         /*
1277          * if it's the current user, we already have the unix token
1278          * and don't need to do the complex user_in_group_sid() call
1279          */
1280         if (uid_ace->unix_ug.uid == current_user.ut.uid) {
1281                 size_t i;
1282
1283                 if (group_ace->unix_ug.gid == current_user.ut.gid) {
1284                         return True;
1285                 }
1286
1287                 for (i=0; i < current_user.ut.ngroups; i++) {
1288                         if (group_ace->unix_ug.gid == current_user.ut.groups[i]) {
1289                                 return True;
1290                         }
1291                 }
1292         }
1293
1294         /* u_name talloc'ed off tos. */
1295         u_name = uidtoname(uid_ace->unix_ug.uid);
1296         if (!u_name) {
1297                 return False;
1298         }
1299
1300         /*
1301          * user_in_group_sid() uses create_token_from_username()
1302          * which creates an artificial NT token given just a username,
1303          * so this is not reliable for users from foreign domains
1304          * exported by winbindd!
1305          */
1306         return user_in_group_sid(u_name, &group_ace->trustee);
1307 }
1308
1309 /****************************************************************************
1310  A well formed POSIX file or default ACL has at least 3 entries, a 
1311  SMB_ACL_USER_OBJ, SMB_ACL_GROUP_OBJ, SMB_ACL_OTHER_OBJ.
1312  In addition, the owner must always have at least read access.
1313  When using this call on get_acl, the pst struct is valid and contains
1314  the mode of the file. When using this call on set_acl, the pst struct has
1315  been modified to have a mode containing the default for this file or directory
1316  type.
1317 ****************************************************************************/
1318
1319 static bool ensure_canon_entry_valid(canon_ace **pp_ace,
1320                                      const struct share_params *params,
1321                                      const bool is_directory,
1322                                                         const DOM_SID *pfile_owner_sid,
1323                                                         const DOM_SID *pfile_grp_sid,
1324                                                         const SMB_STRUCT_STAT *pst,
1325                                                         bool setting_acl)
1326 {
1327         canon_ace *pace;
1328         bool got_user = False;
1329         bool got_grp = False;
1330         bool got_other = False;
1331         canon_ace *pace_other = NULL;
1332
1333         for (pace = *pp_ace; pace; pace = pace->next) {
1334                 if (pace->type == SMB_ACL_USER_OBJ) {
1335
1336                         if (setting_acl)
1337                                 apply_default_perms(params, is_directory, pace, S_IRUSR);
1338                         got_user = True;
1339
1340                 } else if (pace->type == SMB_ACL_GROUP_OBJ) {
1341
1342                         /*
1343                          * Ensure create mask/force create mode is respected on set.
1344                          */
1345
1346                         if (setting_acl)
1347                                 apply_default_perms(params, is_directory, pace, S_IRGRP);
1348                         got_grp = True;
1349
1350                 } else if (pace->type == SMB_ACL_OTHER) {
1351
1352                         /*
1353                          * Ensure create mask/force create mode is respected on set.
1354                          */
1355
1356                         if (setting_acl)
1357                                 apply_default_perms(params, is_directory, pace, S_IROTH);
1358                         got_other = True;
1359                         pace_other = pace;
1360                 }
1361         }
1362
1363         if (!got_user) {
1364                 if ((pace = SMB_MALLOC_P(canon_ace)) == NULL) {
1365                         DEBUG(0,("ensure_canon_entry_valid: malloc fail.\n"));
1366                         return False;
1367                 }
1368
1369                 ZERO_STRUCTP(pace);
1370                 pace->type = SMB_ACL_USER_OBJ;
1371                 pace->owner_type = UID_ACE;
1372                 pace->unix_ug.uid = pst->st_uid;
1373                 pace->trustee = *pfile_owner_sid;
1374                 pace->attr = ALLOW_ACE;
1375
1376                 if (setting_acl) {
1377                         /* See if the owning user is in any of the other groups in
1378                            the ACE. If so, OR in the permissions from that group. */
1379
1380                         bool group_matched = False;
1381                         canon_ace *pace_iter;
1382
1383                         for (pace_iter = *pp_ace; pace_iter; pace_iter = pace_iter->next) {
1384                                 if (pace_iter->type == SMB_ACL_GROUP_OBJ || pace_iter->type == SMB_ACL_GROUP) {
1385                                         if (uid_entry_in_group(pace, pace_iter)) {
1386                                                 pace->perms |= pace_iter->perms;
1387                                                 group_matched = True;
1388                                         }
1389                                 }
1390                         }
1391
1392                         /* If we only got an "everyone" perm, just use that. */
1393                         if (!group_matched) {
1394                                 if (got_other)
1395                                         pace->perms = pace_other->perms;
1396                                 else
1397                                         pace->perms = 0;
1398                         }
1399
1400                         apply_default_perms(params, is_directory, pace, S_IRUSR);
1401                 } else {
1402                         pace->perms = unix_perms_to_acl_perms(pst->st_mode, S_IRUSR, S_IWUSR, S_IXUSR);
1403                 }
1404
1405                 DLIST_ADD(*pp_ace, pace);
1406         }
1407
1408         if (!got_grp) {
1409                 if ((pace = SMB_MALLOC_P(canon_ace)) == NULL) {
1410                         DEBUG(0,("ensure_canon_entry_valid: malloc fail.\n"));
1411                         return False;
1412                 }
1413
1414                 ZERO_STRUCTP(pace);
1415                 pace->type = SMB_ACL_GROUP_OBJ;
1416                 pace->owner_type = GID_ACE;
1417                 pace->unix_ug.uid = pst->st_gid;
1418                 pace->trustee = *pfile_grp_sid;
1419                 pace->attr = ALLOW_ACE;
1420                 if (setting_acl) {
1421                         /* If we only got an "everyone" perm, just use that. */
1422                         if (got_other)
1423                                 pace->perms = pace_other->perms;
1424                         else
1425                                 pace->perms = 0;
1426                         apply_default_perms(params, is_directory, pace, S_IRGRP);
1427                 } else {
1428                         pace->perms = unix_perms_to_acl_perms(pst->st_mode, S_IRGRP, S_IWGRP, S_IXGRP);
1429                 }
1430
1431                 DLIST_ADD(*pp_ace, pace);
1432         }
1433
1434         if (!got_other) {
1435                 if ((pace = SMB_MALLOC_P(canon_ace)) == NULL) {
1436                         DEBUG(0,("ensure_canon_entry_valid: malloc fail.\n"));
1437                         return False;
1438                 }
1439
1440                 ZERO_STRUCTP(pace);
1441                 pace->type = SMB_ACL_OTHER;
1442                 pace->owner_type = WORLD_ACE;
1443                 pace->unix_ug.world = -1;
1444                 pace->trustee = global_sid_World;
1445                 pace->attr = ALLOW_ACE;
1446                 if (setting_acl) {
1447                         pace->perms = 0;
1448                         apply_default_perms(params, is_directory, pace, S_IROTH);
1449                 } else
1450                         pace->perms = unix_perms_to_acl_perms(pst->st_mode, S_IROTH, S_IWOTH, S_IXOTH);
1451
1452                 DLIST_ADD(*pp_ace, pace);
1453         }
1454
1455         return True;
1456 }
1457
1458 /****************************************************************************
1459  Check if a POSIX ACL has the required SMB_ACL_USER_OBJ and SMB_ACL_GROUP_OBJ entries.
1460  If it does not have them, check if there are any entries where the trustee is the
1461  file owner or the owning group, and map these to SMB_ACL_USER_OBJ and SMB_ACL_GROUP_OBJ.
1462 ****************************************************************************/
1463
1464 static void check_owning_objs(canon_ace *ace, DOM_SID *pfile_owner_sid, DOM_SID *pfile_grp_sid)
1465 {
1466         bool got_user_obj, got_group_obj;
1467         canon_ace *current_ace;
1468         int i, entries;
1469
1470         entries = count_canon_ace_list(ace);
1471         got_user_obj = False;
1472         got_group_obj = False;
1473
1474         for (i=0, current_ace = ace; i < entries; i++, current_ace = current_ace->next) {
1475                 if (current_ace->type == SMB_ACL_USER_OBJ)
1476                         got_user_obj = True;
1477                 else if (current_ace->type == SMB_ACL_GROUP_OBJ)
1478                         got_group_obj = True;
1479         }
1480         if (got_user_obj && got_group_obj) {
1481                 DEBUG(10,("check_owning_objs: ACL had owning user/group entries.\n"));
1482                 return;
1483         }
1484
1485         for (i=0, current_ace = ace; i < entries; i++, current_ace = current_ace->next) {
1486                 if (!got_user_obj && current_ace->owner_type == UID_ACE &&
1487                                 sid_equal(&current_ace->trustee, pfile_owner_sid)) {
1488                         current_ace->type = SMB_ACL_USER_OBJ;
1489                         got_user_obj = True;
1490                 }
1491                 if (!got_group_obj && current_ace->owner_type == GID_ACE &&
1492                                 sid_equal(&current_ace->trustee, pfile_grp_sid)) {
1493                         current_ace->type = SMB_ACL_GROUP_OBJ;
1494                         got_group_obj = True;
1495                 }
1496         }
1497         if (!got_user_obj)
1498                 DEBUG(10,("check_owning_objs: ACL is missing an owner entry.\n"));
1499         if (!got_group_obj)
1500                 DEBUG(10,("check_owning_objs: ACL is missing an owning group entry.\n"));
1501 }
1502
1503 /****************************************************************************
1504  Unpack a SEC_DESC into two canonical ace lists.
1505 ****************************************************************************/
1506
1507 static bool create_canon_ace_lists(files_struct *fsp,
1508                                         SMB_STRUCT_STAT *pst,
1509                                         DOM_SID *pfile_owner_sid,
1510                                         DOM_SID *pfile_grp_sid,
1511                                         canon_ace **ppfile_ace,
1512                                         canon_ace **ppdir_ace,
1513                                         const SEC_ACL *dacl)
1514 {
1515         bool all_aces_are_inherit_only = (fsp->is_directory ? True : False);
1516         canon_ace *file_ace = NULL;
1517         canon_ace *dir_ace = NULL;
1518         canon_ace *current_ace = NULL;
1519         bool got_dir_allow = False;
1520         bool got_file_allow = False;
1521         int i, j;
1522
1523         *ppfile_ace = NULL;
1524         *ppdir_ace = NULL;
1525
1526         /*
1527          * Convert the incoming ACL into a more regular form.
1528          */
1529
1530         for(i = 0; i < dacl->num_aces; i++) {
1531                 SEC_ACE *psa = &dacl->aces[i];
1532
1533                 if((psa->type != SEC_ACE_TYPE_ACCESS_ALLOWED) && (psa->type != SEC_ACE_TYPE_ACCESS_DENIED)) {
1534                         DEBUG(3,("create_canon_ace_lists: unable to set anything but an ALLOW or DENY ACE.\n"));
1535                         return False;
1536                 }
1537
1538                 if (nt4_compatible_acls()) {
1539                         /*
1540                          * The security mask may be UNIX_ACCESS_NONE which should map into
1541                          * no permissions (we overload the WRITE_OWNER bit for this) or it
1542                          * should be one of the ALL/EXECUTE/READ/WRITE bits. Arrange for this
1543                          * to be so. Any other bits override the UNIX_ACCESS_NONE bit.
1544                          */
1545
1546                         /*
1547                          * Convert GENERIC bits to specific bits.
1548                          */
1549  
1550                         se_map_generic(&psa->access_mask, &file_generic_mapping);
1551
1552                         psa->access_mask &= (UNIX_ACCESS_NONE|FILE_ALL_ACCESS);
1553
1554                         if(psa->access_mask != UNIX_ACCESS_NONE)
1555                                 psa->access_mask &= ~UNIX_ACCESS_NONE;
1556                 }
1557         }
1558
1559         /*
1560          * Deal with the fact that NT 4.x re-writes the canonical format
1561          * that we return for default ACLs. If a directory ACE is identical
1562          * to a inherited directory ACE then NT changes the bits so that the
1563          * first ACE is set to OI|IO and the second ACE for this SID is set
1564          * to CI. We need to repair this. JRA.
1565          */
1566
1567         for(i = 0; i < dacl->num_aces; i++) {
1568                 SEC_ACE *psa1 = &dacl->aces[i];
1569
1570                 for (j = i + 1; j < dacl->num_aces; j++) {
1571                         SEC_ACE *psa2 = &dacl->aces[j];
1572
1573                         if (psa1->access_mask != psa2->access_mask)
1574                                 continue;
1575
1576                         if (!sid_equal(&psa1->trustee, &psa2->trustee))
1577                                 continue;
1578
1579                         /*
1580                          * Ok - permission bits and SIDs are equal.
1581                          * Check if flags were re-written.
1582                          */
1583
1584                         if (psa1->flags & SEC_ACE_FLAG_INHERIT_ONLY) {
1585
1586                                 psa1->flags |= (psa2->flags & (SEC_ACE_FLAG_CONTAINER_INHERIT|SEC_ACE_FLAG_OBJECT_INHERIT));
1587                                 psa2->flags &= ~(SEC_ACE_FLAG_CONTAINER_INHERIT|SEC_ACE_FLAG_OBJECT_INHERIT);
1588
1589                         } else if (psa2->flags & SEC_ACE_FLAG_INHERIT_ONLY) {
1590
1591                                 psa2->flags |= (psa1->flags & (SEC_ACE_FLAG_CONTAINER_INHERIT|SEC_ACE_FLAG_OBJECT_INHERIT));
1592                                 psa1->flags &= ~(SEC_ACE_FLAG_CONTAINER_INHERIT|SEC_ACE_FLAG_OBJECT_INHERIT);
1593
1594                         }
1595                 }
1596         }
1597
1598         for(i = 0; i < dacl->num_aces; i++) {
1599                 SEC_ACE *psa = &dacl->aces[i];
1600
1601                 /*
1602                  * Create a cannon_ace entry representing this NT DACL ACE.
1603                  */
1604
1605                 if ((current_ace = SMB_MALLOC_P(canon_ace)) == NULL) {
1606                         free_canon_ace_list(file_ace);
1607                         free_canon_ace_list(dir_ace);
1608                         DEBUG(0,("create_canon_ace_lists: malloc fail.\n"));
1609                         return False;
1610                 }
1611
1612                 ZERO_STRUCTP(current_ace);
1613
1614                 sid_copy(&current_ace->trustee, &psa->trustee);
1615
1616                 /*
1617                  * Try and work out if the SID is a user or group
1618                  * as we need to flag these differently for POSIX.
1619                  * Note what kind of a POSIX ACL this should map to.
1620                  */
1621
1622                 if( sid_equal(&current_ace->trustee, &global_sid_World)) {
1623                         current_ace->owner_type = WORLD_ACE;
1624                         current_ace->unix_ug.world = -1;
1625                         current_ace->type = SMB_ACL_OTHER;
1626                 } else if (sid_equal(&current_ace->trustee, &global_sid_Creator_Owner)) {
1627                         current_ace->owner_type = UID_ACE;
1628                         current_ace->unix_ug.uid = pst->st_uid;
1629                         current_ace->type = SMB_ACL_USER_OBJ;
1630
1631                         /*
1632                          * The Creator Owner entry only specifies inheritable permissions,
1633                          * never access permissions. WinNT doesn't always set the ACE to
1634                          *INHERIT_ONLY, though.
1635                          */
1636
1637                         if (nt4_compatible_acls())
1638                                 psa->flags |= SEC_ACE_FLAG_INHERIT_ONLY;
1639                 } else if (sid_equal(&current_ace->trustee, &global_sid_Creator_Group)) {
1640                         current_ace->owner_type = GID_ACE;
1641                         current_ace->unix_ug.gid = pst->st_gid;
1642                         current_ace->type = SMB_ACL_GROUP_OBJ;
1643
1644                         /*
1645                          * The Creator Group entry only specifies inheritable permissions,
1646                          * never access permissions. WinNT doesn't always set the ACE to
1647                          *INHERIT_ONLY, though.
1648                          */
1649                         if (nt4_compatible_acls())
1650                                 psa->flags |= SEC_ACE_FLAG_INHERIT_ONLY;
1651
1652                 } else if (sid_to_uid( &current_ace->trustee, &current_ace->unix_ug.uid)) {
1653                         current_ace->owner_type = UID_ACE;
1654                         /* If it's the owning user, this is a user_obj, not
1655                          * a user. */
1656                         if (current_ace->unix_ug.uid == pst->st_uid) {
1657                                 current_ace->type = SMB_ACL_USER_OBJ;
1658                         } else {
1659                                 current_ace->type = SMB_ACL_USER;
1660                         }
1661                 } else if (sid_to_gid( &current_ace->trustee, &current_ace->unix_ug.gid)) {
1662                         current_ace->owner_type = GID_ACE;
1663                         /* If it's the primary group, this is a group_obj, not
1664                          * a group. */
1665                         if (current_ace->unix_ug.gid == pst->st_gid) {
1666                                 current_ace->type = SMB_ACL_GROUP_OBJ;
1667                         } else {
1668                                 current_ace->type = SMB_ACL_GROUP;
1669                         }
1670                 } else {
1671                         /*
1672                          * Silently ignore map failures in non-mappable SIDs (NT Authority, BUILTIN etc).
1673                          */
1674
1675                         if (non_mappable_sid(&psa->trustee)) {
1676                                 DEBUG(10, ("create_canon_ace_lists: ignoring "
1677                                            "non-mappable SID %s\n",
1678                                            sid_string_dbg(&psa->trustee)));
1679                                 SAFE_FREE(current_ace);
1680                                 continue;
1681                         }
1682
1683                         free_canon_ace_list(file_ace);
1684                         free_canon_ace_list(dir_ace);
1685                         DEBUG(0, ("create_canon_ace_lists: unable to map SID "
1686                                   "%s to uid or gid.\n",
1687                                   sid_string_dbg(&current_ace->trustee)));
1688                         SAFE_FREE(current_ace);
1689                         return False;
1690                 }
1691
1692                 /*
1693                  * Map the given NT permissions into a UNIX mode_t containing only
1694                  * S_I(R|W|X)USR bits.
1695                  */
1696
1697                 current_ace->perms |= map_nt_perms( &psa->access_mask, S_IRUSR);
1698                 current_ace->attr = (psa->type == SEC_ACE_TYPE_ACCESS_ALLOWED) ? ALLOW_ACE : DENY_ACE;
1699
1700                 /* Store the ace_flag. */
1701                 current_ace->ace_flags = psa->flags;
1702
1703                 /*
1704                  * Now add the created ace to either the file list, the directory
1705                  * list, or both. We *MUST* preserve the order here (hence we use
1706                  * DLIST_ADD_END) as NT ACLs are order dependent.
1707                  */
1708
1709                 if (fsp->is_directory) {
1710
1711                         /*
1712                          * We can only add to the default POSIX ACE list if the ACE is
1713                          * designed to be inherited by both files and directories.
1714                          */
1715
1716                         if ((psa->flags & (SEC_ACE_FLAG_OBJECT_INHERIT|SEC_ACE_FLAG_CONTAINER_INHERIT)) ==
1717                                 (SEC_ACE_FLAG_OBJECT_INHERIT|SEC_ACE_FLAG_CONTAINER_INHERIT)) {
1718
1719                                 DLIST_ADD_END(dir_ace, current_ace, canon_ace *);
1720
1721                                 /*
1722                                  * Note if this was an allow ace. We can't process
1723                                  * any further deny ace's after this.
1724                                  */
1725
1726                                 if (current_ace->attr == ALLOW_ACE)
1727                                         got_dir_allow = True;
1728
1729                                 if ((current_ace->attr == DENY_ACE) && got_dir_allow) {
1730                                         DEBUG(0,("create_canon_ace_lists: malformed ACL in inheritable ACL ! \
1731 Deny entry after Allow entry. Failing to set on file %s.\n", fsp->fsp_name ));
1732                                         free_canon_ace_list(file_ace);
1733                                         free_canon_ace_list(dir_ace);
1734                                         return False;
1735                                 }       
1736
1737                                 if( DEBUGLVL( 10 )) {
1738                                         dbgtext("create_canon_ace_lists: adding dir ACL:\n");
1739                                         print_canon_ace( current_ace, 0);
1740                                 }
1741
1742                                 /*
1743                                  * If this is not an inherit only ACE we need to add a duplicate
1744                                  * to the file acl.
1745                                  */
1746
1747                                 if (!(psa->flags & SEC_ACE_FLAG_INHERIT_ONLY)) {
1748                                         canon_ace *dup_ace = dup_canon_ace(current_ace);
1749
1750                                         if (!dup_ace) {
1751                                                 DEBUG(0,("create_canon_ace_lists: malloc fail !\n"));
1752                                                 free_canon_ace_list(file_ace);
1753                                                 free_canon_ace_list(dir_ace);
1754                                                 return False;
1755                                         }
1756
1757                                         /*
1758                                          * We must not free current_ace here as its
1759                                          * pointer is now owned by the dir_ace list.
1760                                          */
1761                                         current_ace = dup_ace;
1762                                 } else {
1763                                         /*
1764                                          * We must not free current_ace here as its
1765                                          * pointer is now owned by the dir_ace list.
1766                                          */
1767                                         current_ace = NULL;
1768                                 }
1769                         }
1770                 }
1771
1772                 /*
1773                  * Only add to the file ACL if not inherit only.
1774                  */
1775
1776                 if (current_ace && !(psa->flags & SEC_ACE_FLAG_INHERIT_ONLY)) {
1777                         DLIST_ADD_END(file_ace, current_ace, canon_ace *);
1778
1779                         /*
1780                          * Note if this was an allow ace. We can't process
1781                          * any further deny ace's after this.
1782                          */
1783
1784                         if (current_ace->attr == ALLOW_ACE)
1785                                 got_file_allow = True;
1786
1787                         if ((current_ace->attr == DENY_ACE) && got_file_allow) {
1788                                 DEBUG(0,("create_canon_ace_lists: malformed ACL in file ACL ! \
1789 Deny entry after Allow entry. Failing to set on file %s.\n", fsp->fsp_name ));
1790                                 free_canon_ace_list(file_ace);
1791                                 free_canon_ace_list(dir_ace);
1792                                 return False;
1793                         }       
1794
1795                         if( DEBUGLVL( 10 )) {
1796                                 dbgtext("create_canon_ace_lists: adding file ACL:\n");
1797                                 print_canon_ace( current_ace, 0);
1798                         }
1799                         all_aces_are_inherit_only = False;
1800                         /*
1801                          * We must not free current_ace here as its
1802                          * pointer is now owned by the file_ace list.
1803                          */
1804                         current_ace = NULL;
1805                 }
1806
1807                 /*
1808                  * Free if ACE was not added.
1809                  */
1810
1811                 SAFE_FREE(current_ace);
1812         }
1813
1814         if (fsp->is_directory && all_aces_are_inherit_only) {
1815                 /*
1816                  * Windows 2000 is doing one of these weird 'inherit acl'
1817                  * traverses to conserve NTFS ACL resources. Just pretend
1818                  * there was no DACL sent. JRA.
1819                  */
1820
1821                 DEBUG(10,("create_canon_ace_lists: Win2k inherit acl traverse. Ignoring DACL.\n"));
1822                 free_canon_ace_list(file_ace);
1823                 free_canon_ace_list(dir_ace);
1824                 file_ace = NULL;
1825                 dir_ace = NULL;
1826         } else {
1827                 /*
1828                  * Check if we have SMB_ACL_USER_OBJ and SMB_ACL_GROUP_OBJ entries in each
1829                  * ACL. If we don't have them, check if any SMB_ACL_USER/SMB_ACL_GROUP
1830                  * entries can be converted to *_OBJ. Usually we will already have these
1831                  * entries in the Default ACL, and the Access ACL will not have them.
1832                  */
1833                 if (file_ace) {
1834                         check_owning_objs(file_ace, pfile_owner_sid, pfile_grp_sid);
1835                 }
1836                 if (dir_ace) {
1837                         check_owning_objs(dir_ace, pfile_owner_sid, pfile_grp_sid);
1838                 }
1839         }
1840
1841         *ppfile_ace = file_ace;
1842         *ppdir_ace = dir_ace;
1843
1844         return True;
1845 }
1846
1847 /****************************************************************************
1848  ASCII art time again... JRA :-).
1849
1850  We have 4 cases to process when moving from an NT ACL to a POSIX ACL. Firstly,
1851  we insist the ACL is in canonical form (ie. all DENY entries preceede ALLOW
1852  entries). Secondly, the merge code has ensured that all duplicate SID entries for
1853  allow or deny have been merged, so the same SID can only appear once in the deny
1854  list or once in the allow list.
1855
1856  We then process as follows :
1857
1858  ---------------------------------------------------------------------------
1859  First pass - look for a Everyone DENY entry.
1860
1861  If it is deny all (rwx) trunate the list at this point.
1862  Else, walk the list from this point and use the deny permissions of this
1863  entry as a mask on all following allow entries. Finally, delete
1864  the Everyone DENY entry (we have applied it to everything possible).
1865
1866  In addition, in this pass we remove any DENY entries that have 
1867  no permissions (ie. they are a DENY nothing).
1868  ---------------------------------------------------------------------------
1869  Second pass - only deal with deny user entries.
1870
1871  DENY user1 (perms XXX)
1872
1873  new_perms = 0
1874  for all following allow group entries where user1 is in group
1875         new_perms |= group_perms;
1876
1877  user1 entry perms = new_perms & ~ XXX;
1878
1879  Convert the deny entry to an allow entry with the new perms and
1880  push to the end of the list. Note if the user was in no groups
1881  this maps to a specific allow nothing entry for this user.
1882
1883  The common case from the NT ACL choser (userX deny all) is
1884  optimised so we don't do the group lookup - we just map to
1885  an allow nothing entry.
1886
1887  What we're doing here is inferring the allow permissions the
1888  person setting the ACE on user1 wanted by looking at the allow
1889  permissions on the groups the user is currently in. This will
1890  be a snapshot, depending on group membership but is the best
1891  we can do and has the advantage of failing closed rather than
1892  open.
1893  ---------------------------------------------------------------------------
1894  Third pass - only deal with deny group entries.
1895
1896  DENY group1 (perms XXX)
1897
1898  for all following allow user entries where user is in group1
1899    user entry perms = user entry perms & ~ XXX;
1900
1901  If there is a group Everyone allow entry with permissions YYY,
1902  convert the group1 entry to an allow entry and modify its
1903  permissions to be :
1904
1905  new_perms = YYY & ~ XXX
1906
1907  and push to the end of the list.
1908
1909  If there is no group Everyone allow entry then convert the
1910  group1 entry to a allow nothing entry and push to the end of the list.
1911
1912  Note that the common case from the NT ACL choser (groupX deny all)
1913  cannot be optimised here as we need to modify user entries who are
1914  in the group to change them to a deny all also.
1915
1916  What we're doing here is modifying the allow permissions of
1917  user entries (which are more specific in POSIX ACLs) to mask
1918  out the explicit deny set on the group they are in. This will
1919  be a snapshot depending on current group membership but is the
1920  best we can do and has the advantage of failing closed rather
1921  than open.
1922  ---------------------------------------------------------------------------
1923  Fourth pass - cope with cumulative permissions.
1924
1925  for all allow user entries, if there exists an allow group entry with
1926  more permissive permissions, and the user is in that group, rewrite the
1927  allow user permissions to contain both sets of permissions.
1928
1929  Currently the code for this is #ifdef'ed out as these semantics make
1930  no sense to me. JRA.
1931  ---------------------------------------------------------------------------
1932
1933  Note we *MUST* do the deny user pass first as this will convert deny user
1934  entries into allow user entries which can then be processed by the deny
1935  group pass.
1936
1937  The above algorithm took a *lot* of thinking about - hence this
1938  explaination :-). JRA.
1939 ****************************************************************************/
1940
1941 /****************************************************************************
1942  Process a canon_ace list entries. This is very complex code. We need
1943  to go through and remove the "deny" permissions from any allow entry that matches
1944  the id of this entry. We have already refused any NT ACL that wasn't in correct
1945  order (DENY followed by ALLOW). If any allow entry ends up with zero permissions,
1946  we just remove it (to fail safe). We have already removed any duplicate ace
1947  entries. Treat an "Everyone" DENY_ACE as a special case - use it to mask all
1948  allow entries.
1949 ****************************************************************************/
1950
1951 static void process_deny_list( canon_ace **pp_ace_list )
1952 {
1953         canon_ace *ace_list = *pp_ace_list;
1954         canon_ace *curr_ace = NULL;
1955         canon_ace *curr_ace_next = NULL;
1956
1957         /* Pass 1 above - look for an Everyone, deny entry. */
1958
1959         for (curr_ace = ace_list; curr_ace; curr_ace = curr_ace_next) {
1960                 canon_ace *allow_ace_p;
1961
1962                 curr_ace_next = curr_ace->next; /* So we can't lose the link. */
1963
1964                 if (curr_ace->attr != DENY_ACE)
1965                         continue;
1966
1967                 if (curr_ace->perms == (mode_t)0) {
1968
1969                         /* Deny nothing entry - delete. */
1970
1971                         DLIST_REMOVE(ace_list, curr_ace);
1972                         continue;
1973                 }
1974
1975                 if (!sid_equal(&curr_ace->trustee, &global_sid_World))
1976                         continue;
1977
1978                 /* JRATEST - assert. */
1979                 SMB_ASSERT(curr_ace->owner_type == WORLD_ACE);
1980
1981                 if (curr_ace->perms == ALL_ACE_PERMS) {
1982
1983                         /*
1984                          * Optimisation. This is a DENY_ALL to Everyone. Truncate the
1985                          * list at this point including this entry.
1986                          */
1987
1988                         canon_ace *prev_entry = curr_ace->prev;
1989
1990                         free_canon_ace_list( curr_ace );
1991                         if (prev_entry)
1992                                 prev_entry->next = NULL;
1993                         else {
1994                                 /* We deleted the entire list. */
1995                                 ace_list = NULL;
1996                         }
1997                         break;
1998                 }
1999
2000                 for (allow_ace_p = curr_ace->next; allow_ace_p; allow_ace_p = allow_ace_p->next) {
2001
2002                         /* 
2003                          * Only mask off allow entries.
2004                          */
2005
2006                         if (allow_ace_p->attr != ALLOW_ACE)
2007                                 continue;
2008
2009                         allow_ace_p->perms &= ~curr_ace->perms;
2010                 }
2011
2012                 /*
2013                  * Now it's been applied, remove it.
2014                  */
2015
2016                 DLIST_REMOVE(ace_list, curr_ace);
2017         }
2018
2019         /* Pass 2 above - deal with deny user entries. */
2020
2021         for (curr_ace = ace_list; curr_ace; curr_ace = curr_ace_next) {
2022                 mode_t new_perms = (mode_t)0;
2023                 canon_ace *allow_ace_p;
2024
2025                 curr_ace_next = curr_ace->next; /* So we can't lose the link. */
2026
2027                 if (curr_ace->attr != DENY_ACE)
2028                         continue;
2029
2030                 if (curr_ace->owner_type != UID_ACE)
2031                         continue;
2032
2033                 if (curr_ace->perms == ALL_ACE_PERMS) {
2034
2035                         /*
2036                          * Optimisation - this is a deny everything to this user.
2037                          * Convert to an allow nothing and push to the end of the list.
2038                          */
2039
2040                         curr_ace->attr = ALLOW_ACE;
2041                         curr_ace->perms = (mode_t)0;
2042                         DLIST_DEMOTE(ace_list, curr_ace, canon_ace *);
2043                         continue;
2044                 }
2045
2046                 for (allow_ace_p = curr_ace->next; allow_ace_p; allow_ace_p = allow_ace_p->next) {
2047
2048                         if (allow_ace_p->attr != ALLOW_ACE)
2049                                 continue;
2050
2051                         /* We process GID_ACE and WORLD_ACE entries only. */
2052
2053                         if (allow_ace_p->owner_type == UID_ACE)
2054                                 continue;
2055
2056                         if (uid_entry_in_group( curr_ace, allow_ace_p))
2057                                 new_perms |= allow_ace_p->perms;
2058                 }
2059
2060                 /*
2061                  * Convert to a allow entry, modify the perms and push to the end
2062                  * of the list.
2063                  */
2064
2065                 curr_ace->attr = ALLOW_ACE;
2066                 curr_ace->perms = (new_perms & ~curr_ace->perms);
2067                 DLIST_DEMOTE(ace_list, curr_ace, canon_ace *);
2068         }
2069
2070         /* Pass 3 above - deal with deny group entries. */
2071
2072         for (curr_ace = ace_list; curr_ace; curr_ace = curr_ace_next) {
2073                 canon_ace *allow_ace_p;
2074                 canon_ace *allow_everyone_p = NULL;
2075
2076                 curr_ace_next = curr_ace->next; /* So we can't lose the link. */
2077
2078                 if (curr_ace->attr != DENY_ACE)
2079                         continue;
2080
2081                 if (curr_ace->owner_type != GID_ACE)
2082                         continue;
2083
2084                 for (allow_ace_p = curr_ace->next; allow_ace_p; allow_ace_p = allow_ace_p->next) {
2085
2086                         if (allow_ace_p->attr != ALLOW_ACE)
2087                                 continue;
2088
2089                         /* Store a pointer to the Everyone allow, if it exists. */
2090                         if (allow_ace_p->owner_type == WORLD_ACE)
2091                                 allow_everyone_p = allow_ace_p;
2092
2093                         /* We process UID_ACE entries only. */
2094
2095                         if (allow_ace_p->owner_type != UID_ACE)
2096                                 continue;
2097
2098                         /* Mask off the deny group perms. */
2099
2100                         if (uid_entry_in_group( allow_ace_p, curr_ace))
2101                                 allow_ace_p->perms &= ~curr_ace->perms;
2102                 }
2103
2104                 /*
2105                  * Convert the deny to an allow with the correct perms and
2106                  * push to the end of the list.
2107                  */
2108
2109                 curr_ace->attr = ALLOW_ACE;
2110                 if (allow_everyone_p)
2111                         curr_ace->perms = allow_everyone_p->perms & ~curr_ace->perms;
2112                 else
2113                         curr_ace->perms = (mode_t)0;
2114                 DLIST_DEMOTE(ace_list, curr_ace, canon_ace *);
2115         }
2116
2117         /* Doing this fourth pass allows Windows semantics to be layered
2118          * on top of POSIX semantics. I'm not sure if this is desirable.
2119          * For example, in W2K ACLs there is no way to say, "Group X no
2120          * access, user Y full access" if user Y is a member of group X.
2121          * This seems completely broken semantics to me.... JRA.
2122          */
2123
2124 #if 0
2125         /* Pass 4 above - deal with allow entries. */
2126
2127         for (curr_ace = ace_list; curr_ace; curr_ace = curr_ace_next) {
2128                 canon_ace *allow_ace_p;
2129
2130                 curr_ace_next = curr_ace->next; /* So we can't lose the link. */
2131
2132                 if (curr_ace->attr != ALLOW_ACE)
2133                         continue;
2134
2135                 if (curr_ace->owner_type != UID_ACE)
2136                         continue;
2137
2138                 for (allow_ace_p = ace_list; allow_ace_p; allow_ace_p = allow_ace_p->next) {
2139
2140                         if (allow_ace_p->attr != ALLOW_ACE)
2141                                 continue;
2142
2143                         /* We process GID_ACE entries only. */
2144
2145                         if (allow_ace_p->owner_type != GID_ACE)
2146                                 continue;
2147
2148                         /* OR in the group perms. */
2149
2150                         if (uid_entry_in_group( curr_ace, allow_ace_p))
2151                                 curr_ace->perms |= allow_ace_p->perms;
2152                 }
2153         }
2154 #endif
2155
2156         *pp_ace_list = ace_list;
2157 }
2158
2159 /****************************************************************************
2160  Create a default mode that will be used if a security descriptor entry has
2161  no user/group/world entries.
2162 ****************************************************************************/
2163
2164 static mode_t create_default_mode(files_struct *fsp, bool interitable_mode)
2165 {
2166         int snum = SNUM(fsp->conn);
2167         mode_t and_bits = (mode_t)0;
2168         mode_t or_bits = (mode_t)0;
2169         mode_t mode = interitable_mode
2170                 ? unix_mode( fsp->conn, FILE_ATTRIBUTE_ARCHIVE, fsp->fsp_name,
2171                              NULL )
2172                 : S_IRUSR;
2173
2174         if (fsp->is_directory)
2175                 mode |= (S_IWUSR|S_IXUSR);
2176
2177         /*
2178          * Now AND with the create mode/directory mode bits then OR with the
2179          * force create mode/force directory mode bits.
2180          */
2181
2182         if (fsp->is_directory) {
2183                 and_bits = lp_dir_security_mask(snum);
2184                 or_bits = lp_force_dir_security_mode(snum);
2185         } else {
2186                 and_bits = lp_security_mask(snum);
2187                 or_bits = lp_force_security_mode(snum);
2188         }
2189
2190         return ((mode & and_bits)|or_bits);
2191 }
2192
2193 /****************************************************************************
2194  Unpack a SEC_DESC into two canonical ace lists. We don't depend on this
2195  succeeding.
2196 ****************************************************************************/
2197
2198 static bool unpack_canon_ace(files_struct *fsp,
2199                                 SMB_STRUCT_STAT *pst,
2200                                 DOM_SID *pfile_owner_sid,
2201                                 DOM_SID *pfile_grp_sid,
2202                                 canon_ace **ppfile_ace,
2203                                 canon_ace **ppdir_ace,
2204                                 uint32 security_info_sent,
2205                                 const SEC_DESC *psd)
2206 {
2207         canon_ace *file_ace = NULL;
2208         canon_ace *dir_ace = NULL;
2209
2210         *ppfile_ace = NULL;
2211         *ppdir_ace = NULL;
2212
2213         if(security_info_sent == 0) {
2214                 DEBUG(0,("unpack_canon_ace: no security info sent !\n"));
2215                 return False;
2216         }
2217
2218         /*
2219          * If no DACL then this is a chown only security descriptor.
2220          */
2221
2222         if(!(security_info_sent & DACL_SECURITY_INFORMATION) || !psd->dacl)
2223                 return True;
2224
2225         /*
2226          * Now go through the DACL and create the canon_ace lists.
2227          */
2228
2229         if (!create_canon_ace_lists( fsp, pst, pfile_owner_sid, pfile_grp_sid,
2230                                                                 &file_ace, &dir_ace, psd->dacl))
2231                 return False;
2232
2233         if ((file_ace == NULL) && (dir_ace == NULL)) {
2234                 /* W2K traverse DACL set - ignore. */
2235                 return True;
2236         }
2237
2238         /*
2239          * Go through the canon_ace list and merge entries
2240          * belonging to identical users of identical allow or deny type.
2241          * We can do this as all deny entries come first, followed by
2242          * all allow entries (we have mandated this before accepting this acl).
2243          */
2244
2245         print_canon_ace_list( "file ace - before merge", file_ace);
2246         merge_aces( &file_ace );
2247
2248         print_canon_ace_list( "dir ace - before merge", dir_ace);
2249         merge_aces( &dir_ace );
2250
2251         /*
2252          * NT ACLs are order dependent. Go through the acl lists and
2253          * process DENY entries by masking the allow entries.
2254          */
2255
2256         print_canon_ace_list( "file ace - before deny", file_ace);
2257         process_deny_list( &file_ace);
2258
2259         print_canon_ace_list( "dir ace - before deny", dir_ace);
2260         process_deny_list( &dir_ace);
2261
2262         /*
2263          * A well formed POSIX file or default ACL has at least 3 entries, a 
2264          * SMB_ACL_USER_OBJ, SMB_ACL_GROUP_OBJ, SMB_ACL_OTHER_OBJ
2265          * and optionally a mask entry. Ensure this is the case.
2266          */
2267
2268         print_canon_ace_list( "file ace - before valid", file_ace);
2269
2270         /*
2271          * A default 3 element mode entry for a file should be r-- --- ---.
2272          * A default 3 element mode entry for a directory should be rwx --- ---.
2273          */
2274
2275         pst->st_mode = create_default_mode(fsp, False);
2276
2277         if (!ensure_canon_entry_valid(&file_ace, fsp->conn->params, fsp->is_directory, pfile_owner_sid, pfile_grp_sid, pst, True)) {
2278                 free_canon_ace_list(file_ace);
2279                 free_canon_ace_list(dir_ace);
2280                 return False;
2281         }
2282
2283         print_canon_ace_list( "dir ace - before valid", dir_ace);
2284
2285         /*
2286          * A default inheritable 3 element mode entry for a directory should be the
2287          * mode Samba will use to create a file within. Ensure user rwx bits are set if
2288          * it's a directory.
2289          */
2290
2291         pst->st_mode = create_default_mode(fsp, True);
2292
2293         if (dir_ace && !ensure_canon_entry_valid(&dir_ace, fsp->conn->params, fsp->is_directory, pfile_owner_sid, pfile_grp_sid, pst, True)) {
2294                 free_canon_ace_list(file_ace);
2295                 free_canon_ace_list(dir_ace);
2296                 return False;
2297         }
2298
2299         print_canon_ace_list( "file ace - return", file_ace);
2300         print_canon_ace_list( "dir ace - return", dir_ace);
2301
2302         *ppfile_ace = file_ace;
2303         *ppdir_ace = dir_ace;
2304         return True;
2305
2306 }
2307
2308 /******************************************************************************
2309  When returning permissions, try and fit NT display
2310  semantics if possible. Note the the canon_entries here must have been malloced.
2311  The list format should be - first entry = owner, followed by group and other user
2312  entries, last entry = other.
2313
2314  Note that this doesn't exactly match the NT semantics for an ACL. As POSIX entries
2315  are not ordered, and match on the most specific entry rather than walking a list,
2316  then a simple POSIX permission of rw-r--r-- should really map to 5 entries,
2317
2318  Entry 0: owner : deny all except read and write.
2319  Entry 1: owner : allow read and write.
2320  Entry 2: group : deny all except read.
2321  Entry 3: group : allow read.
2322  Entry 4: Everyone : allow read.
2323
2324  But NT cannot display this in their ACL editor !
2325 ********************************************************************************/
2326
2327 static void arrange_posix_perms(const char *filename, canon_ace **pp_list_head)
2328 {
2329         canon_ace *l_head = *pp_list_head;
2330         canon_ace *owner_ace = NULL;
2331         canon_ace *other_ace = NULL;
2332         canon_ace *ace = NULL;
2333
2334         for (ace = l_head; ace; ace = ace->next) {
2335                 if (ace->type == SMB_ACL_USER_OBJ)
2336                         owner_ace = ace;
2337                 else if (ace->type == SMB_ACL_OTHER) {
2338                         /* Last ace - this is "other" */
2339                         other_ace = ace;
2340                 }
2341         }
2342
2343         if (!owner_ace || !other_ace) {
2344                 DEBUG(0,("arrange_posix_perms: Invalid POSIX permissions for file %s, missing owner or other.\n",
2345                         filename ));
2346                 return;
2347         }
2348
2349         /*
2350          * The POSIX algorithm applies to owner first, and other last,
2351          * so ensure they are arranged in this order.
2352          */
2353
2354         if (owner_ace) {
2355                 DLIST_PROMOTE(l_head, owner_ace);
2356         }
2357
2358         if (other_ace) {
2359                 DLIST_DEMOTE(l_head, other_ace, canon_ace *);
2360         }
2361
2362         /* We have probably changed the head of the list. */
2363
2364         *pp_list_head = l_head;
2365 }
2366
2367 /****************************************************************************
2368  Create a linked list of canonical ACE entries.
2369 ****************************************************************************/
2370
2371 static canon_ace *canonicalise_acl(struct connection_struct *conn,
2372                                    const char *fname, SMB_ACL_T posix_acl,
2373                                    const SMB_STRUCT_STAT *psbuf,
2374                                    const DOM_SID *powner, const DOM_SID *pgroup, struct pai_val *pal, SMB_ACL_TYPE_T the_acl_type)
2375 {
2376         mode_t acl_mask = (S_IRUSR|S_IWUSR|S_IXUSR);
2377         canon_ace *l_head = NULL;
2378         canon_ace *ace = NULL;
2379         canon_ace *next_ace = NULL;
2380         int entry_id = SMB_ACL_FIRST_ENTRY;
2381         SMB_ACL_ENTRY_T entry;
2382         size_t ace_count;
2383
2384         while ( posix_acl && (SMB_VFS_SYS_ACL_GET_ENTRY(conn, posix_acl, entry_id, &entry) == 1)) {
2385                 SMB_ACL_TAG_T tagtype;
2386                 SMB_ACL_PERMSET_T permset;
2387                 DOM_SID sid;
2388                 posix_id unix_ug;
2389                 enum ace_owner owner_type;
2390
2391                 entry_id = SMB_ACL_NEXT_ENTRY;
2392
2393                 /* Is this a MASK entry ? */
2394                 if (SMB_VFS_SYS_ACL_GET_TAG_TYPE(conn, entry, &tagtype) == -1)
2395                         continue;
2396
2397                 if (SMB_VFS_SYS_ACL_GET_PERMSET(conn, entry, &permset) == -1)
2398                         continue;
2399
2400                 /* Decide which SID to use based on the ACL type. */
2401                 switch(tagtype) {
2402                         case SMB_ACL_USER_OBJ:
2403                                 /* Get the SID from the owner. */
2404                                 sid_copy(&sid, powner);
2405                                 unix_ug.uid = psbuf->st_uid;
2406                                 owner_type = UID_ACE;
2407                                 break;
2408                         case SMB_ACL_USER:
2409                                 {
2410                                         uid_t *puid = (uid_t *)SMB_VFS_SYS_ACL_GET_QUALIFIER(conn, entry);
2411                                         if (puid == NULL) {
2412                                                 DEBUG(0,("canonicalise_acl: Failed to get uid.\n"));
2413                                                 continue;
2414                                         }
2415                                         /*
2416                                          * A SMB_ACL_USER entry for the owner is shadowed by the
2417                                          * SMB_ACL_USER_OBJ entry and Windows also cannot represent
2418                                          * that entry, so we ignore it. We also don't create such
2419                                          * entries out of the blue when setting ACLs, so a get/set
2420                                          * cycle will drop them.
2421                                          */
2422                                         if (the_acl_type == SMB_ACL_TYPE_ACCESS && *puid == psbuf->st_uid) {
2423                                                 SMB_VFS_SYS_ACL_FREE_QUALIFIER(conn, (void *)puid,tagtype);
2424                                                 continue;
2425                                         }
2426                                         uid_to_sid( &sid, *puid);
2427                                         unix_ug.uid = *puid;
2428                                         owner_type = UID_ACE;
2429                                         SMB_VFS_SYS_ACL_FREE_QUALIFIER(conn, (void *)puid,tagtype);
2430                                         break;
2431                                 }
2432                         case SMB_ACL_GROUP_OBJ:
2433                                 /* Get the SID from the owning group. */
2434                                 sid_copy(&sid, pgroup);
2435                                 unix_ug.gid = psbuf->st_gid;
2436                                 owner_type = GID_ACE;
2437                                 break;
2438                         case SMB_ACL_GROUP:
2439                                 {
2440                                         gid_t *pgid = (gid_t *)SMB_VFS_SYS_ACL_GET_QUALIFIER(conn, entry);
2441                                         if (pgid == NULL) {
2442                                                 DEBUG(0,("canonicalise_acl: Failed to get gid.\n"));
2443                                                 continue;
2444                                         }
2445                                         gid_to_sid( &sid, *pgid);
2446                                         unix_ug.gid = *pgid;
2447                                         owner_type = GID_ACE;
2448                                         SMB_VFS_SYS_ACL_FREE_QUALIFIER(conn, (void *)pgid,tagtype);
2449                                         break;
2450                                 }
2451                         case SMB_ACL_MASK:
2452                                 acl_mask = convert_permset_to_mode_t(conn, permset);
2453                                 continue; /* Don't count the mask as an entry. */
2454                         case SMB_ACL_OTHER:
2455                                 /* Use the Everyone SID */
2456                                 sid = global_sid_World;
2457                                 unix_ug.world = -1;
2458                                 owner_type = WORLD_ACE;
2459                                 break;
2460                         default:
2461                                 DEBUG(0,("canonicalise_acl: Unknown tagtype %u\n", (unsigned int)tagtype));
2462                                 continue;
2463                 }
2464
2465                 /*
2466                  * Add this entry to the list.
2467                  */
2468
2469                 if ((ace = SMB_MALLOC_P(canon_ace)) == NULL)
2470                         goto fail;
2471
2472                 ZERO_STRUCTP(ace);
2473                 ace->type = tagtype;
2474                 ace->perms = convert_permset_to_mode_t(conn, permset);
2475                 ace->attr = ALLOW_ACE;
2476                 ace->trustee = sid;
2477                 ace->unix_ug = unix_ug;
2478                 ace->owner_type = owner_type;
2479                 ace->ace_flags = get_pai_flags(pal, ace, (the_acl_type == SMB_ACL_TYPE_DEFAULT));
2480
2481                 DLIST_ADD(l_head, ace);
2482         }
2483
2484         /*
2485          * This next call will ensure we have at least a user/group/world set.
2486          */
2487
2488         if (!ensure_canon_entry_valid(&l_head, conn->params,
2489                                       S_ISDIR(psbuf->st_mode), powner, pgroup,
2490                                       psbuf, False))
2491                 goto fail;
2492
2493         /*
2494          * Now go through the list, masking the permissions with the
2495          * acl_mask. Ensure all DENY Entries are at the start of the list.
2496          */
2497
2498         DEBUG(10,("canonicalise_acl: %s ace entries before arrange :\n", the_acl_type == SMB_ACL_TYPE_ACCESS ? "Access" : "Default" ));
2499
2500         for ( ace_count = 0, ace = l_head; ace; ace = next_ace, ace_count++) {
2501                 next_ace = ace->next;
2502
2503                 /* Masks are only applied to entries other than USER_OBJ and OTHER. */
2504                 if (ace->type != SMB_ACL_OTHER && ace->type != SMB_ACL_USER_OBJ)
2505                         ace->perms &= acl_mask;
2506
2507                 if (ace->perms == 0) {
2508                         DLIST_PROMOTE(l_head, ace);
2509                 }
2510
2511                 if( DEBUGLVL( 10 ) ) {
2512                         print_canon_ace(ace, ace_count);
2513                 }
2514         }
2515
2516         arrange_posix_perms(fname,&l_head );
2517
2518         print_canon_ace_list( "canonicalise_acl: ace entries after arrange", l_head );
2519
2520         return l_head;
2521
2522   fail:
2523
2524         free_canon_ace_list(l_head);
2525         return NULL;
2526 }
2527
2528 /****************************************************************************
2529  Check if the current user group list contains a given group.
2530 ****************************************************************************/
2531
2532 static bool current_user_in_group(gid_t gid)
2533 {
2534         int i;
2535
2536         for (i = 0; i < current_user.ut.ngroups; i++) {
2537                 if (current_user.ut.groups[i] == gid) {
2538                         return True;
2539                 }
2540         }
2541
2542         return False;
2543 }
2544
2545 /****************************************************************************
2546  Should we override a deny ? Check 'acl group control' and 'dos filemode'.
2547 ****************************************************************************/
2548
2549 static bool acl_group_override(connection_struct *conn,
2550                                 gid_t prim_gid,
2551                                 const char *fname)
2552 {
2553         SMB_STRUCT_STAT sbuf;
2554
2555         if ((errno != EPERM) && (errno != EACCES)) {
2556                 return false;
2557         }
2558
2559         /* file primary group == user primary or supplementary group */
2560         if (lp_acl_group_control(SNUM(conn)) &&
2561                         current_user_in_group(prim_gid)) {
2562                 return true;
2563         }
2564
2565         /* user has writeable permission */
2566         if (lp_dos_filemode(SNUM(conn)) &&
2567                         can_write_to_file(conn, fname, &sbuf)) {
2568                 return true;
2569         }
2570
2571         return false;
2572 }
2573
2574 /****************************************************************************
2575  Attempt to apply an ACL to a file or directory.
2576 ****************************************************************************/
2577
2578 static bool set_canon_ace_list(files_struct *fsp, canon_ace *the_ace, bool default_ace, gid_t prim_gid, bool *pacl_set_support)
2579 {
2580         connection_struct *conn = fsp->conn;
2581         bool ret = False;
2582         SMB_ACL_T the_acl = SMB_VFS_SYS_ACL_INIT(conn, (int)count_canon_ace_list(the_ace) + 1);
2583         canon_ace *p_ace;
2584         int i;
2585         SMB_ACL_ENTRY_T mask_entry;
2586         bool got_mask_entry = False;
2587         SMB_ACL_PERMSET_T mask_permset;
2588         SMB_ACL_TYPE_T the_acl_type = (default_ace ? SMB_ACL_TYPE_DEFAULT : SMB_ACL_TYPE_ACCESS);
2589         bool needs_mask = False;
2590         mode_t mask_perms = 0;
2591
2592 #if defined(POSIX_ACL_NEEDS_MASK)
2593         /* HP-UX always wants to have a mask (called "class" there). */
2594         needs_mask = True;
2595 #endif
2596
2597         if (the_acl == NULL) {
2598
2599                 if (!no_acl_syscall_error(errno)) {
2600                         /*
2601                          * Only print this error message if we have some kind of ACL
2602                          * support that's not working. Otherwise we would always get this.
2603                          */
2604                         DEBUG(0,("set_canon_ace_list: Unable to init %s ACL. (%s)\n",
2605                                 default_ace ? "default" : "file", strerror(errno) ));
2606                 }
2607                 *pacl_set_support = False;
2608                 return False;
2609         }
2610
2611         if( DEBUGLVL( 10 )) {
2612                 dbgtext("set_canon_ace_list: setting ACL:\n");
2613                 for (i = 0, p_ace = the_ace; p_ace; p_ace = p_ace->next, i++ ) {
2614                         print_canon_ace( p_ace, i);
2615                 }
2616         }
2617
2618         for (i = 0, p_ace = the_ace; p_ace; p_ace = p_ace->next, i++ ) {
2619                 SMB_ACL_ENTRY_T the_entry;
2620                 SMB_ACL_PERMSET_T the_permset;
2621
2622                 /*
2623                  * ACLs only "need" an ACL_MASK entry if there are any named user or
2624                  * named group entries. But if there is an ACL_MASK entry, it applies
2625                  * to ACL_USER, ACL_GROUP, and ACL_GROUP_OBJ entries. Set the mask
2626                  * so that it doesn't deny (i.e., mask off) any permissions.
2627                  */
2628
2629                 if (p_ace->type == SMB_ACL_USER || p_ace->type == SMB_ACL_GROUP) {
2630                         needs_mask = True;
2631                         mask_perms |= p_ace->perms;
2632                 } else if (p_ace->type == SMB_ACL_GROUP_OBJ) {
2633                         mask_perms |= p_ace->perms;
2634                 }
2635
2636                 /*
2637                  * Get the entry for this ACE.
2638                  */
2639
2640                 if (SMB_VFS_SYS_ACL_CREATE_ENTRY(conn, &the_acl, &the_entry) == -1) {
2641                         DEBUG(0,("set_canon_ace_list: Failed to create entry %d. (%s)\n",
2642                                 i, strerror(errno) ));
2643                         goto fail;
2644                 }
2645
2646                 if (p_ace->type == SMB_ACL_MASK) {
2647                         mask_entry = the_entry;
2648                         got_mask_entry = True;
2649                 }
2650
2651                 /*
2652                  * Ok - we now know the ACL calls should be working, don't
2653                  * allow fallback to chmod.
2654                  */
2655
2656                 *pacl_set_support = True;
2657
2658                 /*
2659                  * Initialise the entry from the canon_ace.
2660                  */
2661
2662                 /*
2663                  * First tell the entry what type of ACE this is.
2664                  */
2665
2666                 if (SMB_VFS_SYS_ACL_SET_TAG_TYPE(conn, the_entry, p_ace->type) == -1) {
2667                         DEBUG(0,("set_canon_ace_list: Failed to set tag type on entry %d. (%s)\n",
2668                                 i, strerror(errno) ));
2669                         goto fail;
2670                 }
2671
2672                 /*
2673                  * Only set the qualifier (user or group id) if the entry is a user
2674                  * or group id ACE.
2675                  */
2676
2677                 if ((p_ace->type == SMB_ACL_USER) || (p_ace->type == SMB_ACL_GROUP)) {
2678                         if (SMB_VFS_SYS_ACL_SET_QUALIFIER(conn, the_entry,(void *)&p_ace->unix_ug.uid) == -1) {
2679                                 DEBUG(0,("set_canon_ace_list: Failed to set qualifier on entry %d. (%s)\n",
2680                                         i, strerror(errno) ));
2681                                 goto fail;
2682                         }
2683                 }
2684
2685                 /*
2686                  * Convert the mode_t perms in the canon_ace to a POSIX permset.
2687                  */
2688
2689                 if (SMB_VFS_SYS_ACL_GET_PERMSET(conn, the_entry, &the_permset) == -1) {
2690                         DEBUG(0,("set_canon_ace_list: Failed to get permset on entry %d. (%s)\n",
2691                                 i, strerror(errno) ));
2692                         goto fail;
2693                 }
2694
2695                 if (map_acl_perms_to_permset(conn, p_ace->perms, &the_permset) == -1) {
2696                         DEBUG(0,("set_canon_ace_list: Failed to create permset for mode (%u) on entry %d. (%s)\n",
2697                                 (unsigned int)p_ace->perms, i, strerror(errno) ));
2698                         goto fail;
2699                 }
2700
2701                 /*
2702                  * ..and apply them to the entry.
2703                  */
2704
2705                 if (SMB_VFS_SYS_ACL_SET_PERMSET(conn, the_entry, the_permset) == -1) {
2706                         DEBUG(0,("set_canon_ace_list: Failed to add permset on entry %d. (%s)\n",
2707                                 i, strerror(errno) ));
2708                         goto fail;
2709                 }
2710
2711                 if( DEBUGLVL( 10 ))
2712                         print_canon_ace( p_ace, i);
2713
2714         }
2715
2716         if (needs_mask && !got_mask_entry) {
2717                 if (SMB_VFS_SYS_ACL_CREATE_ENTRY(conn, &the_acl, &mask_entry) == -1) {
2718                         DEBUG(0,("set_canon_ace_list: Failed to create mask entry. (%s)\n", strerror(errno) ));
2719                         goto fail;
2720                 }
2721
2722                 if (SMB_VFS_SYS_ACL_SET_TAG_TYPE(conn, mask_entry, SMB_ACL_MASK) == -1) {
2723                         DEBUG(0,("set_canon_ace_list: Failed to set tag type on mask entry. (%s)\n",strerror(errno) ));
2724                         goto fail;
2725                 }
2726
2727                 if (SMB_VFS_SYS_ACL_GET_PERMSET(conn, mask_entry, &mask_permset) == -1) {
2728                         DEBUG(0,("set_canon_ace_list: Failed to get mask permset. (%s)\n", strerror(errno) ));
2729                         goto fail;
2730                 }
2731
2732                 if (map_acl_perms_to_permset(conn, S_IRUSR|S_IWUSR|S_IXUSR, &mask_permset) == -1) {
2733                         DEBUG(0,("set_canon_ace_list: Failed to create mask permset. (%s)\n", strerror(errno) ));
2734                         goto fail;
2735                 }
2736
2737                 if (SMB_VFS_SYS_ACL_SET_PERMSET(conn, mask_entry, mask_permset) == -1) {
2738                         DEBUG(0,("set_canon_ace_list: Failed to add mask permset. (%s)\n", strerror(errno) ));
2739                         goto fail;
2740                 }
2741         }
2742
2743         /*
2744          * Finally apply it to the file or directory.
2745          */
2746
2747         if(default_ace || fsp->is_directory || fsp->fh->fd == -1) {
2748                 if (SMB_VFS_SYS_ACL_SET_FILE(conn, fsp->fsp_name, the_acl_type, the_acl) == -1) {
2749                         /*
2750                          * Some systems allow all the above calls and only fail with no ACL support
2751                          * when attempting to apply the acl. HPUX with HFS is an example of this. JRA.
2752                          */
2753                         if (no_acl_syscall_error(errno)) {
2754                                 *pacl_set_support = False;
2755                         }
2756
2757                         if (acl_group_override(conn, prim_gid, fsp->fsp_name)) {
2758                                 int sret;
2759
2760                                 DEBUG(5,("set_canon_ace_list: acl group control on and current user in file %s primary group.\n",
2761                                         fsp->fsp_name ));
2762
2763                                 become_root();
2764                                 sret = SMB_VFS_SYS_ACL_SET_FILE(conn, fsp->fsp_name, the_acl_type, the_acl);
2765                                 unbecome_root();
2766                                 if (sret == 0) {
2767                                         ret = True;     
2768                                 }
2769                         }
2770
2771                         if (ret == False) {
2772                                 DEBUG(2,("set_canon_ace_list: sys_acl_set_file type %s failed for file %s (%s).\n",
2773                                                 the_acl_type == SMB_ACL_TYPE_DEFAULT ? "directory default" : "file",
2774                                                 fsp->fsp_name, strerror(errno) ));
2775                                 goto fail;
2776                         }
2777                 }
2778         } else {
2779                 if (SMB_VFS_SYS_ACL_SET_FD(fsp, the_acl) == -1) {
2780                         /*
2781                          * Some systems allow all the above calls and only fail with no ACL support
2782                          * when attempting to apply the acl. HPUX with HFS is an example of this. JRA.
2783                          */
2784                         if (no_acl_syscall_error(errno)) {
2785                                 *pacl_set_support = False;
2786                         }
2787
2788                         if (acl_group_override(conn, prim_gid, fsp->fsp_name)) {
2789                                 int sret;
2790
2791                                 DEBUG(5,("set_canon_ace_list: acl group control on and current user in file %s primary group.\n",
2792                                         fsp->fsp_name ));
2793
2794                                 become_root();
2795                                 sret = SMB_VFS_SYS_ACL_SET_FD(fsp, the_acl);
2796                                 unbecome_root();
2797                                 if (sret == 0) {
2798                                         ret = True;
2799                                 }
2800                         }
2801
2802                         if (ret == False) {
2803                                 DEBUG(2,("set_canon_ace_list: sys_acl_set_file failed for file %s (%s).\n",
2804                                                 fsp->fsp_name, strerror(errno) ));
2805                                 goto fail;
2806                         }
2807                 }
2808         }
2809
2810         ret = True;
2811
2812   fail:
2813
2814         if (the_acl != NULL) {
2815                 SMB_VFS_SYS_ACL_FREE_ACL(conn, the_acl);
2816         }
2817
2818         return ret;
2819 }
2820
2821 /****************************************************************************
2822  Find a particular canon_ace entry.
2823 ****************************************************************************/
2824
2825 static struct canon_ace *canon_ace_entry_for(struct canon_ace *list, SMB_ACL_TAG_T type, posix_id *id)
2826 {
2827         while (list) {
2828                 if (list->type == type && ((type != SMB_ACL_USER && type != SMB_ACL_GROUP) ||
2829                                 (type == SMB_ACL_USER  && id && id->uid == list->unix_ug.uid) ||
2830                                 (type == SMB_ACL_GROUP && id && id->gid == list->unix_ug.gid)))
2831                         break;
2832                 list = list->next;
2833         }
2834         return list;
2835 }
2836
2837 /****************************************************************************
2838  
2839 ****************************************************************************/
2840
2841 SMB_ACL_T free_empty_sys_acl(connection_struct *conn, SMB_ACL_T the_acl)
2842 {
2843         SMB_ACL_ENTRY_T entry;
2844
2845         if (!the_acl)
2846                 return NULL;
2847         if (SMB_VFS_SYS_ACL_GET_ENTRY(conn, the_acl, SMB_ACL_FIRST_ENTRY, &entry) != 1) {
2848                 SMB_VFS_SYS_ACL_FREE_ACL(conn, the_acl);
2849                 return NULL;
2850         }
2851         return the_acl;
2852 }
2853
2854 /****************************************************************************
2855  Convert a canon_ace to a generic 3 element permission - if possible.
2856 ****************************************************************************/
2857
2858 #define MAP_PERM(p,mask,result) (((p) & (mask)) ? (result) : 0 )
2859
2860 static bool convert_canon_ace_to_posix_perms( files_struct *fsp, canon_ace *file_ace_list, mode_t *posix_perms)
2861 {
2862         int snum = SNUM(fsp->conn);
2863         size_t ace_count = count_canon_ace_list(file_ace_list);
2864         canon_ace *ace_p;
2865         canon_ace *owner_ace = NULL;
2866         canon_ace *group_ace = NULL;
2867         canon_ace *other_ace = NULL;
2868         mode_t and_bits;
2869         mode_t or_bits;
2870
2871         if (ace_count != 3) {
2872                 DEBUG(3,("convert_canon_ace_to_posix_perms: Too many ACE entries for file %s to convert to \
2873 posix perms.\n", fsp->fsp_name ));
2874                 return False;
2875         }
2876
2877         for (ace_p = file_ace_list; ace_p; ace_p = ace_p->next) {
2878                 if (ace_p->owner_type == UID_ACE)
2879                         owner_ace = ace_p;
2880                 else if (ace_p->owner_type == GID_ACE)
2881                         group_ace = ace_p;
2882                 else if (ace_p->owner_type == WORLD_ACE)
2883                         other_ace = ace_p;
2884         }
2885
2886         if (!owner_ace || !group_ace || !other_ace) {
2887                 DEBUG(3,("convert_canon_ace_to_posix_perms: Can't get standard entries for file %s.\n",
2888                                 fsp->fsp_name ));
2889                 return False;
2890         }
2891
2892         *posix_perms = (mode_t)0;
2893
2894         *posix_perms |= owner_ace->perms;
2895         *posix_perms |= MAP_PERM(group_ace->perms, S_IRUSR, S_IRGRP);
2896         *posix_perms |= MAP_PERM(group_ace->perms, S_IWUSR, S_IWGRP);
2897         *posix_perms |= MAP_PERM(group_ace->perms, S_IXUSR, S_IXGRP);
2898         *posix_perms |= MAP_PERM(other_ace->perms, S_IRUSR, S_IROTH);
2899         *posix_perms |= MAP_PERM(other_ace->perms, S_IWUSR, S_IWOTH);
2900         *posix_perms |= MAP_PERM(other_ace->perms, S_IXUSR, S_IXOTH);
2901
2902         /* The owner must have at least read access. */
2903
2904         *posix_perms |= S_IRUSR;
2905         if (fsp->is_directory)
2906                 *posix_perms |= (S_IWUSR|S_IXUSR);
2907
2908         /* If requested apply the masks. */
2909
2910         /* Get the initial bits to apply. */
2911
2912         if (fsp->is_directory) {
2913                 and_bits = lp_dir_security_mask(snum);
2914                 or_bits = lp_force_dir_security_mode(snum);
2915         } else {
2916                 and_bits = lp_security_mask(snum);
2917                 or_bits = lp_force_security_mode(snum);
2918         }
2919
2920         *posix_perms = (((*posix_perms) & and_bits)|or_bits);
2921
2922         DEBUG(10,("convert_canon_ace_to_posix_perms: converted u=%o,g=%o,w=%o to perm=0%o for file %s.\n",
2923                 (int)owner_ace->perms, (int)group_ace->perms, (int)other_ace->perms, (int)*posix_perms,
2924                 fsp->fsp_name ));
2925
2926         return True;
2927 }
2928
2929 /****************************************************************************
2930   Incoming NT ACLs on a directory can be split into a default POSIX acl (CI|OI|IO) and
2931   a normal POSIX acl. Win2k needs these split acls re-merging into one ACL
2932   with CI|OI set so it is inherited and also applies to the directory.
2933   Based on code from "Jim McDonough" <jmcd@us.ibm.com>.
2934 ****************************************************************************/
2935
2936 static size_t merge_default_aces( SEC_ACE *nt_ace_list, size_t num_aces)
2937 {
2938         size_t i, j;
2939
2940         for (i = 0; i < num_aces; i++) {
2941                 for (j = i+1; j < num_aces; j++) {
2942                         uint32 i_flags_ni = (nt_ace_list[i].flags & ~SEC_ACE_FLAG_INHERITED_ACE);
2943                         uint32 j_flags_ni = (nt_ace_list[j].flags & ~SEC_ACE_FLAG_INHERITED_ACE);
2944                         bool i_inh = (nt_ace_list[i].flags & SEC_ACE_FLAG_INHERITED_ACE) ? True : False;
2945                         bool j_inh = (nt_ace_list[j].flags & SEC_ACE_FLAG_INHERITED_ACE) ? True : False;
2946
2947                         /* We know the lower number ACE's are file entries. */
2948                         if ((nt_ace_list[i].type == nt_ace_list[j].type) &&
2949                                 (nt_ace_list[i].size == nt_ace_list[j].size) &&
2950                                 (nt_ace_list[i].access_mask == nt_ace_list[j].access_mask) &&
2951                                 sid_equal(&nt_ace_list[i].trustee, &nt_ace_list[j].trustee) &&
2952                                 (i_inh == j_inh) &&
2953                                 (i_flags_ni == 0) &&
2954                                 (j_flags_ni == (SEC_ACE_FLAG_OBJECT_INHERIT|
2955                                                   SEC_ACE_FLAG_CONTAINER_INHERIT|
2956                                                   SEC_ACE_FLAG_INHERIT_ONLY))) {
2957                                 /*
2958                                  * W2K wants to have access allowed zero access ACE's
2959                                  * at the end of the list. If the mask is zero, merge
2960                                  * the non-inherited ACE onto the inherited ACE.
2961                                  */
2962
2963                                 if (nt_ace_list[i].access_mask == 0) {
2964                                         nt_ace_list[j].flags = SEC_ACE_FLAG_OBJECT_INHERIT|SEC_ACE_FLAG_CONTAINER_INHERIT|
2965                                                                 (i_inh ? SEC_ACE_FLAG_INHERITED_ACE : 0);
2966                                         if (num_aces - i - 1 > 0)
2967                                                 memmove(&nt_ace_list[i], &nt_ace_list[i+1], (num_aces-i-1) *
2968                                                                 sizeof(SEC_ACE));
2969
2970                                         DEBUG(10,("merge_default_aces: Merging zero access ACE %u onto ACE %u.\n",
2971                                                 (unsigned int)i, (unsigned int)j ));
2972                                 } else {
2973                                         /*
2974                                          * These are identical except for the flags.
2975                                          * Merge the inherited ACE onto the non-inherited ACE.
2976                                          */
2977
2978                                         nt_ace_list[i].flags = SEC_ACE_FLAG_OBJECT_INHERIT|SEC_ACE_FLAG_CONTAINER_INHERIT|
2979                                                                 (i_inh ? SEC_ACE_FLAG_INHERITED_ACE : 0);
2980                                         if (num_aces - j - 1 > 0)
2981                                                 memmove(&nt_ace_list[j], &nt_ace_list[j+1], (num_aces-j-1) *
2982                                                                 sizeof(SEC_ACE));
2983
2984                                         DEBUG(10,("merge_default_aces: Merging ACE %u onto ACE %u.\n",
2985                                                 (unsigned int)j, (unsigned int)i ));
2986                                 }
2987                                 num_aces--;
2988                                 break;
2989                         }
2990                 }
2991         }
2992
2993         return num_aces;
2994 }
2995
2996 /*
2997  * Add or Replace ACE entry.
2998  * In some cases we need to add a specific ACE for compatibility reasons.
2999  * When doing that we must make sure we are not actually creating a duplicate
3000  * entry. So we need to search whether an ACE entry already exist and eventually
3001  * replacce the access mask, or add a completely new entry if none was found.
3002  *
3003  * This function assumes the array has enough space to add a new entry without
3004  * any reallocation of memory.
3005  */
3006
3007 static void add_or_replace_ace(SEC_ACE *nt_ace_list, size_t *num_aces,
3008                                 const DOM_SID *sid, enum security_ace_type type,
3009                                 uint32_t mask, uint8_t flags)
3010 {
3011         int i;
3012
3013         /* first search for a duplicate */
3014         for (i = 0; i < *num_aces; i++) {
3015                 if (sid_equal(&nt_ace_list[i].trustee, sid) &&
3016                     (nt_ace_list[i].flags == flags)) break;
3017         }
3018
3019         if (i < *num_aces) { /* found */
3020                 nt_ace_list[i].type = type;
3021                 nt_ace_list[i].access_mask = mask;
3022                 DEBUG(10, ("Replacing ACE %d with SID %s and flags %02x\n",
3023                            i, sid_string_dbg(sid), flags));
3024                 return;
3025         }
3026
3027         /* not found, append it */
3028         init_sec_ace(&nt_ace_list[(*num_aces)++], sid, type, mask, flags);
3029 }
3030
3031
3032 /****************************************************************************
3033  Reply to query a security descriptor from an fsp. If it succeeds it allocates
3034  the space for the return elements and returns the size needed to return the
3035  security descriptor. This should be the only external function needed for
3036  the UNIX style get ACL.
3037 ****************************************************************************/
3038
3039 static NTSTATUS posix_get_nt_acl_common(struct connection_struct *conn,
3040                                       const char *name,
3041                                       const SMB_STRUCT_STAT *sbuf,
3042                                       struct pai_val *pal,
3043                                       SMB_ACL_T posix_acl,
3044                                       SMB_ACL_T def_acl,
3045                                       uint32_t security_info,
3046                                       SEC_DESC **ppdesc)
3047 {
3048         DOM_SID owner_sid;
3049         DOM_SID group_sid;
3050         size_t sd_size = 0;
3051         SEC_ACL *psa = NULL;
3052         size_t num_acls = 0;
3053         size_t num_def_acls = 0;
3054         size_t num_aces = 0;
3055         canon_ace *file_ace = NULL;
3056         canon_ace *dir_ace = NULL;
3057         SEC_ACE *nt_ace_list = NULL;
3058         size_t num_profile_acls = 0;
3059         DOM_SID orig_owner_sid;
3060         SEC_DESC *psd = NULL;
3061         int i;
3062
3063         /*
3064          * Get the owner, group and world SIDs.
3065          */
3066
3067         create_file_sids(sbuf, &owner_sid, &group_sid);
3068
3069         if (lp_profile_acls(SNUM(conn))) {
3070                 /* For WXP SP1 the owner must be administrators. */
3071                 sid_copy(&orig_owner_sid, &owner_sid);
3072                 sid_copy(&owner_sid, &global_sid_Builtin_Administrators);
3073                 sid_copy(&group_sid, &global_sid_Builtin_Users);
3074                 num_profile_acls = 3;
3075         }
3076
3077         if ((security_info & DACL_SECURITY_INFORMATION) && !(security_info & PROTECTED_DACL_SECURITY_INFORMATION)) {
3078
3079                 /*
3080                  * In the optimum case Creator Owner and Creator Group would be used for
3081                  * the ACL_USER_OBJ and ACL_GROUP_OBJ entries, respectively, but this
3082                  * would lead to usability problems under Windows: The Creator entries
3083                  * are only available in browse lists of directories and not for files;
3084                  * additionally the identity of the owning group couldn't be determined.
3085                  * We therefore use those identities only for Default ACLs. 
3086                  */
3087
3088                 /* Create the canon_ace lists. */
3089                 file_ace = canonicalise_acl(conn, name, posix_acl, sbuf,
3090                                             &owner_sid, &group_sid, pal,
3091                                             SMB_ACL_TYPE_ACCESS);
3092
3093                 /* We must have *some* ACLS. */
3094         
3095                 if (count_canon_ace_list(file_ace) == 0) {
3096                         DEBUG(0,("get_nt_acl : No ACLs on file (%s) !\n", name));
3097                         goto done;
3098                 }
3099
3100                 if (S_ISDIR(sbuf->st_mode) && def_acl) {
3101                         dir_ace = canonicalise_acl(conn, name, def_acl,
3102                                                    sbuf,
3103                                                    &global_sid_Creator_Owner,
3104                                                    &global_sid_Creator_Group,
3105                                                    pal, SMB_ACL_TYPE_DEFAULT);
3106                 }
3107
3108                 /*
3109                  * Create the NT ACE list from the canonical ace lists.
3110                  */
3111
3112                 {
3113                         canon_ace *ace;
3114                         enum security_ace_type nt_acl_type;
3115
3116                         if (nt4_compatible_acls() && dir_ace) {
3117                                 /*
3118                                  * NT 4 chokes if an ACL contains an INHERIT_ONLY entry
3119                                  * but no non-INHERIT_ONLY entry for one SID. So we only
3120                                  * remove entries from the Access ACL if the
3121                                  * corresponding Default ACL entries have also been
3122                                  * removed. ACEs for CREATOR-OWNER and CREATOR-GROUP
3123                                  * are exceptions. We can do nothing
3124                                  * intelligent if the Default ACL contains entries that
3125                                  * are not also contained in the Access ACL, so this
3126                                  * case will still fail under NT 4.
3127                                  */
3128
3129                                 ace = canon_ace_entry_for(dir_ace, SMB_ACL_OTHER, NULL);
3130                                 if (ace && !ace->perms) {
3131                                         DLIST_REMOVE(dir_ace, ace);
3132                                         SAFE_FREE(ace);
3133
3134                                         ace = canon_ace_entry_for(file_ace, SMB_ACL_OTHER, NULL);
3135                                         if (ace && !ace->perms) {
3136                                                 DLIST_REMOVE(file_ace, ace);
3137                                                 SAFE_FREE(ace);
3138                                         }
3139                                 }
3140
3141                                 /*
3142                                  * WinNT doesn't usually have Creator Group
3143                                  * in browse lists, so we send this entry to
3144                                  * WinNT even if it contains no relevant
3145                                  * permissions. Once we can add
3146                                  * Creator Group to browse lists we can
3147                                  * re-enable this.
3148                                  */
3149
3150 #if 0
3151                                 ace = canon_ace_entry_for(dir_ace, SMB_ACL_GROUP_OBJ, NULL);
3152                                 if (ace && !ace->perms) {
3153                                         DLIST_REMOVE(dir_ace, ace);
3154                                         SAFE_FREE(ace);
3155                                 }
3156 #endif
3157
3158                                 ace = canon_ace_entry_for(file_ace, SMB_ACL_GROUP_OBJ, NULL);
3159                                 if (ace && !ace->perms) {
3160                                         DLIST_REMOVE(file_ace, ace);
3161                                         SAFE_FREE(ace);
3162                                 }
3163                         }
3164
3165                         num_acls = count_canon_ace_list(file_ace);
3166                         num_def_acls = count_canon_ace_list(dir_ace);
3167
3168                         /* Allocate the ace list. */
3169                         if ((nt_ace_list = SMB_MALLOC_ARRAY(SEC_ACE,num_acls + num_profile_acls + num_def_acls)) == NULL) {
3170                                 DEBUG(0,("get_nt_acl: Unable to malloc space for nt_ace_list.\n"));
3171                                 goto done;
3172                         }
3173
3174                         memset(nt_ace_list, '\0', (num_acls + num_def_acls) * sizeof(SEC_ACE) );
3175
3176                         /*
3177                          * Create the NT ACE list from the canonical ace lists.
3178                          */
3179
3180                         for (ace = file_ace; ace != NULL; ace = ace->next) {
3181                                 uint32_t acc = map_canon_ace_perms(SNUM(conn),
3182                                                 &nt_acl_type,
3183                                                 ace->perms,
3184                                                 S_ISDIR(sbuf->st_mode));
3185                                 init_sec_ace(&nt_ace_list[num_aces++],
3186                                         &ace->trustee,
3187                                         nt_acl_type,
3188                                         acc,
3189                                         ace->ace_flags);
3190                         }
3191
3192                         /* The User must have access to a profile share - even
3193                          * if we can't map the SID. */
3194                         if (lp_profile_acls(SNUM(conn))) {
3195                                 add_or_replace_ace(nt_ace_list, &num_aces,
3196                                                    &global_sid_Builtin_Users,
3197                                                    SEC_ACE_TYPE_ACCESS_ALLOWED,
3198                                                    FILE_GENERIC_ALL, 0);
3199                         }
3200
3201                         for (ace = dir_ace; ace != NULL; ace = ace->next) {
3202                                 uint32_t acc = map_canon_ace_perms(SNUM(conn),
3203                                                 &nt_acl_type,
3204                                                 ace->perms,
3205                                                 S_ISDIR(sbuf->st_mode));
3206                                 init_sec_ace(&nt_ace_list[num_aces++],
3207                                         &ace->trustee,
3208                                         nt_acl_type,
3209                                         acc,
3210                                         ace->ace_flags |
3211                                         SEC_ACE_FLAG_OBJECT_INHERIT|
3212                                         SEC_ACE_FLAG_CONTAINER_INHERIT|
3213                                         SEC_ACE_FLAG_INHERIT_ONLY);
3214                         }
3215
3216                         /* The User must have access to a profile share - even
3217                          * if we can't map the SID. */
3218                         if (lp_profile_acls(SNUM(conn))) {
3219                                 add_or_replace_ace(nt_ace_list, &num_aces,
3220                                                 &global_sid_Builtin_Users,
3221                                                 SEC_ACE_TYPE_ACCESS_ALLOWED,
3222                                                 FILE_GENERIC_ALL,
3223                                                 SEC_ACE_FLAG_OBJECT_INHERIT |
3224                                                 SEC_ACE_FLAG_CONTAINER_INHERIT |
3225                                                 SEC_ACE_FLAG_INHERIT_ONLY);
3226                         }
3227
3228                         /*
3229                          * Merge POSIX default ACLs and normal ACLs into one NT ACE.
3230                          * Win2K needs this to get the inheritance correct when replacing ACLs
3231                          * on a directory tree. Based on work by Jim @ IBM.
3232                          */
3233
3234                         num_aces = merge_default_aces(nt_ace_list, num_aces);
3235
3236                         if (lp_profile_acls(SNUM(conn))) {
3237                                 for (i = 0; i < num_aces; i++) {
3238                                         if (sid_equal(&nt_ace_list[i].trustee, &owner_sid)) {
3239                                                 add_or_replace_ace(nt_ace_list, &num_aces,
3240                                                                    &orig_owner_sid,
3241                                                                    nt_ace_list[i].type,
3242                                                                    nt_ace_list[i].access_mask,
3243                                                                    nt_ace_list[i].flags);
3244                                                 break;
3245                                         }
3246                                 }
3247                         }
3248                 }
3249
3250                 if (num_aces) {
3251                         if((psa = make_sec_acl( talloc_tos(), NT4_ACL_REVISION, num_aces, nt_ace_list)) == NULL) {
3252                                 DEBUG(0,("get_nt_acl: Unable to malloc space for acl.\n"));
3253                                 goto done;
3254                         }
3255                 }
3256         } /* security_info & DACL_SECURITY_INFORMATION */
3257
3258         psd = make_standard_sec_desc( talloc_tos(),
3259                         (security_info & OWNER_SECURITY_INFORMATION) ? &owner_sid : NULL,
3260                         (security_info & GROUP_SECURITY_INFORMATION) ? &group_sid : NULL,
3261                         psa,
3262                         &sd_size);
3263
3264         if(!psd) {
3265                 DEBUG(0,("get_nt_acl: Unable to malloc space for security descriptor.\n"));
3266                 sd_size = 0;
3267                 goto done;
3268         }
3269
3270         /*
3271          * Windows 2000: The DACL_PROTECTED flag in the security
3272          * descriptor marks the ACL as non-inheriting, i.e., no
3273          * ACEs from higher level directories propagate to this
3274          * ACL. In the POSIX ACL model permissions are only
3275          * inherited at file create time, so ACLs never contain
3276          * any ACEs that are inherited dynamically. The DACL_PROTECTED
3277          * flag doesn't seem to bother Windows NT.
3278          * Always set this if map acl inherit is turned off.
3279          */
3280         if (pal == NULL || !lp_map_acl_inherit(SNUM(conn))) {
3281                 psd->type |= SEC_DESC_DACL_PROTECTED;
3282         } else {
3283                 psd->type |= pal->sd_type;
3284         }
3285
3286         if (psd->dacl) {
3287                 dacl_sort_into_canonical_order(psd->dacl->aces, (unsigned int)psd->dacl->num_aces);
3288         }
3289
3290         *ppdesc = psd;
3291
3292  done:
3293
3294         if (posix_acl) {
3295                 SMB_VFS_SYS_ACL_FREE_ACL(conn, posix_acl);
3296         }
3297         if (def_acl) {
3298                 SMB_VFS_SYS_ACL_FREE_ACL(conn, def_acl);
3299         }
3300         free_canon_ace_list(file_ace);
3301         free_canon_ace_list(dir_ace);
3302         free_inherited_info(pal);
3303         SAFE_FREE(nt_ace_list);
3304
3305         return NT_STATUS_OK;
3306 }
3307
3308 NTSTATUS posix_fget_nt_acl(struct files_struct *fsp, uint32_t security_info,
3309                            SEC_DESC **ppdesc)
3310 {
3311         SMB_STRUCT_STAT sbuf;
3312         SMB_ACL_T posix_acl = NULL;
3313         struct pai_val *pal;
3314
3315         *ppdesc = NULL;
3316
3317         DEBUG(10,("posix_fget_nt_acl: called for file %s\n", fsp->fsp_name ));
3318
3319         /* can it happen that fsp_name == NULL ? */
3320         if (fsp->is_directory ||  fsp->fh->fd == -1) {
3321                 return posix_get_nt_acl(fsp->conn, fsp->fsp_name,
3322                                         security_info, ppdesc);
3323         }
3324
3325         /* Get the stat struct for the owner info. */
3326         if(SMB_VFS_FSTAT(fsp, &sbuf) != 0) {
3327                 return map_nt_error_from_unix(errno);
3328         }
3329
3330         /* Get the ACL from the fd. */
3331         posix_acl = SMB_VFS_SYS_ACL_GET_FD(fsp);
3332
3333         pal = fload_inherited_info(fsp);
3334
3335         return posix_get_nt_acl_common(fsp->conn, fsp->fsp_name, &sbuf, pal,
3336                                        posix_acl, NULL, security_info, ppdesc);
3337 }
3338
3339 NTSTATUS posix_get_nt_acl(struct connection_struct *conn, const char *name,
3340                           uint32_t security_info, SEC_DESC **ppdesc)
3341 {
3342         SMB_STRUCT_STAT sbuf;
3343         SMB_ACL_T posix_acl = NULL;
3344         SMB_ACL_T def_acl = NULL;
3345         struct pai_val *pal;
3346
3347         *ppdesc = NULL;
3348
3349         DEBUG(10,("posix_get_nt_acl: called for file %s\n", name ));
3350
3351         /* Get the stat struct for the owner info. */
3352         if(SMB_VFS_STAT(conn, name, &sbuf) != 0) {
3353                 return map_nt_error_from_unix(errno);
3354         }
3355
3356         /* Get the ACL from the path. */
3357         posix_acl = SMB_VFS_SYS_ACL_GET_FILE(conn, name, SMB_ACL_TYPE_ACCESS);
3358
3359         /* If it's a directory get the default POSIX ACL. */
3360         if(S_ISDIR(sbuf.st_mode)) {
3361                 def_acl = SMB_VFS_SYS_ACL_GET_FILE(conn, name, SMB_ACL_TYPE_DEFAULT);
3362                 def_acl = free_empty_sys_acl(conn, def_acl);
3363         }
3364
3365         pal = load_inherited_info(conn, name);
3366
3367         return posix_get_nt_acl_common(conn, name, &sbuf, pal, posix_acl,
3368                                        def_acl, security_info, ppdesc);
3369 }
3370
3371 /****************************************************************************
3372  Try to chown a file. We will be able to chown it under the following conditions.
3373
3374   1) If we have root privileges, then it will just work.
3375   2) If we have SeTakeOwnershipPrivilege we can change the user to the current user.
3376   3) If we have SeRestorePrivilege we can change the user to any other user. 
3377   4) If we have write permission to the file and dos_filemodes is set
3378      then allow chown to the currently authenticated user.
3379 ****************************************************************************/
3380
3381 int try_chown(connection_struct *conn, const char *fname, uid_t uid, gid_t gid)
3382 {
3383         int ret;
3384         files_struct *fsp;
3385         SMB_STRUCT_STAT st;
3386
3387         if(!CAN_WRITE(conn)) {
3388                 return -1;
3389         }
3390
3391         /* Case (1). */
3392         /* try the direct way first */
3393         ret = SMB_VFS_CHOWN(conn, fname, uid, gid);
3394         if (ret == 0)
3395                 return 0;
3396
3397         /* Case (2) / (3) */
3398         if (lp_enable_privileges()) {
3399
3400                 bool has_take_ownership_priv = user_has_privileges(current_user.nt_user_token,
3401                                                               &se_take_ownership);
3402                 bool has_restore_priv = user_has_privileges(current_user.nt_user_token,
3403                                                        &se_restore);
3404
3405                 /* Case (2) */
3406                 if ( ( has_take_ownership_priv && ( uid == current_user.ut.uid ) ) ||
3407                 /* Case (3) */
3408                      ( has_restore_priv ) ) {
3409
3410                         become_root();
3411                         /* Keep the current file gid the same - take ownership doesn't imply group change. */
3412                         ret = SMB_VFS_CHOWN(conn, fname, uid, (gid_t)-1);
3413                         unbecome_root();
3414                         return ret;
3415                 }
3416         }
3417
3418         /* Case (4). */
3419         if (!lp_dos_filemode(SNUM(conn))) {
3420                 errno = EPERM;
3421                 return -1;
3422         }
3423
3424         /* only allow chown to the current user. This is more secure,
3425            and also copes with the case where the SID in a take ownership ACL is
3426            a local SID on the users workstation
3427         */
3428         if (uid != current_user.ut.uid) {
3429                 errno = EPERM;
3430                 return -1;
3431         }
3432
3433         if (SMB_VFS_STAT(conn,fname,&st)) {
3434                 return -1;
3435         }
3436
3437         if (!NT_STATUS_IS_OK(open_file_fchmod(NULL, conn, fname, &st, &fsp))) {
3438                 return -1;
3439         }
3440
3441         become_root();
3442         /* Keep the current file gid the same. */
3443         ret = SMB_VFS_FCHOWN(fsp, uid, (gid_t)-1);
3444         unbecome_root();
3445
3446         close_file_fchmod(NULL, fsp);
3447
3448         return ret;
3449 }
3450
3451 #if 0
3452 /* Disable this - prevents ACL inheritance from the ACL editor. JRA. */
3453
3454 /****************************************************************************
3455  Take care of parent ACL inheritance.
3456 ****************************************************************************/
3457
3458 NTSTATUS append_parent_acl(files_struct *fsp,
3459                                 const SEC_DESC *pcsd,
3460                                 SEC_DESC **pp_new_sd)
3461 {
3462         SEC_DESC *parent_sd = NULL;
3463         files_struct *parent_fsp = NULL;
3464         TALLOC_CTX *mem_ctx = talloc_tos();
3465         char *parent_name = NULL;
3466         SEC_ACE *new_ace = NULL;
3467         unsigned int num_aces = pcsd->dacl->num_aces;
3468         SMB_STRUCT_STAT sbuf;
3469         NTSTATUS status;
3470         int info;
3471         unsigned int i, j;
3472         SEC_DESC *psd = dup_sec_desc(talloc_tos(), pcsd);
3473         bool is_dacl_protected = (pcsd->type & SEC_DESC_DACL_PROTECTED);
3474
3475         ZERO_STRUCT(sbuf);
3476
3477         if (psd == NULL) {
3478                 return NT_STATUS_NO_MEMORY;
3479         }
3480
3481         if (!parent_dirname(mem_ctx, fsp->fsp_name, &parent_name, NULL)) {
3482                 return NT_STATUS_NO_MEMORY;
3483         }
3484
3485         status = SMB_VFS_CREATE_FILE(
3486                 fsp->conn,                              /* conn */
3487                 NULL,                                   /* req */
3488                 0,                                      /* root_dir_fid */
3489                 parent_name,                            /* fname */
3490                 0,                                      /* create_file_flags */
3491                 FILE_READ_ATTRIBUTES,                   /* access_mask */
3492                 FILE_SHARE_NONE,                        /* share_access */
3493                 FILE_OPEN,                              /* create_disposition*/
3494                 FILE_DIRECTORY_FILE,                    /* create_options */
3495                 0,                                      /* file_attributes */
3496                 INTERNAL_OPEN_ONLY,                     /* oplock_request */
3497                 0,                                      /* allocation_size */
3498                 NULL,                                   /* sd */
3499                 NULL,                                   /* ea_list */
3500                 &parent_fsp,                            /* result */
3501                 &info,                                  /* pinfo */
3502                 &sbuf);                                 /* psbuf */
3503
3504         if (!NT_STATUS_IS_OK(status)) {
3505                 return status;
3506         }
3507
3508         status = SMB_VFS_GET_NT_ACL(parent_fsp->conn, parent_fsp->fsp_name,
3509                                     DACL_SECURITY_INFORMATION, &parent_sd );
3510
3511         close_file(NULL, parent_fsp, NORMAL_CLOSE);
3512
3513         if (!NT_STATUS_IS_OK(status)) {
3514                 return status;
3515         }
3516
3517         /*
3518          * Make room for potentially all the ACLs from
3519          * the parent. We used to add the ugw triple here,
3520          * as we knew we were dealing with POSIX ACLs.
3521          * We no longer need to do so as we can guarentee
3522          * that a default ACL from the parent directory will
3523          * be well formed for POSIX ACLs if it came from a
3524          * POSIX ACL source, and if we're not writing to a
3525          * POSIX ACL sink then we don't care if it's not well
3526          * formed. JRA.
3527          */
3528
3529         num_aces += parent_sd->dacl->num_aces;
3530
3531         if((new_ace = TALLOC_ZERO_ARRAY(mem_ctx, SEC_ACE,
3532                                         num_aces)) == NULL) {
3533                 return NT_STATUS_NO_MEMORY;
3534         }
3535
3536         /* Start by copying in all the given ACE entries. */
3537         for (i = 0; i < psd->dacl->num_aces; i++) {
3538                 sec_ace_copy(&new_ace[i], &psd->dacl->aces[i]);
3539         }
3540
3541         /*
3542          * Note that we're ignoring "inherit permissions" here
3543          * as that really only applies to newly created files. JRA.
3544          */
3545
3546         /* Finally append any inherited ACEs. */
3547         for (j = 0; j < parent_sd->dacl->num_aces; j++) {
3548                 SEC_ACE *se = &parent_sd->dacl->aces[j];
3549
3550                 if (fsp->is_directory) {
3551                         if (!(se->flags & SEC_ACE_FLAG_CONTAINER_INHERIT)) {
3552                                 /* Doesn't apply to a directory - ignore. */
3553                                 DEBUG(10,("append_parent_acl: directory %s "
3554                                         "ignoring non container "
3555                                         "inherit flags %u on ACE with sid %s "
3556                                         "from parent %s\n",
3557                                         fsp->fsp_name,
3558                                         (unsigned int)se->flags,
3559                                         sid_string_dbg(&se->trustee),
3560                                         parent_name));
3561                                 continue;
3562                         }
3563                 } else {
3564                         if (!(se->flags & SEC_ACE_FLAG_OBJECT_INHERIT)) {
3565                                 /* Doesn't apply to a file - ignore. */
3566                                 DEBUG(10,("append_parent_acl: file %s "
3567                                         "ignoring non object "
3568                                         "inherit flags %u on ACE with sid %s "
3569                                         "from parent %s\n",
3570                                         fsp->fsp_name,
3571                                         (unsigned int)se->flags,
3572                                         sid_string_dbg(&se->trustee),
3573                                         parent_name));
3574                                 continue;
3575                         }
3576                 }
3577
3578                 if (is_dacl_protected) {
3579                         /* If the DACL is protected it means we must
3580                          * not overwrite an existing ACE entry with the
3581                          * same SID. This is order N^2. Ouch :-(. JRA. */
3582                         unsigned int k;
3583                         for (k = 0; k < psd->dacl->num_aces; k++) {
3584                                 if (sid_equal(&psd->dacl->aces[k].trustee,
3585                                                 &se->trustee)) {
3586                                         break;
3587                                 }
3588                         }
3589                         if (k < psd->dacl->num_aces) {
3590                                 /* SID matched. Ignore. */
3591                                 DEBUG(10,("append_parent_acl: path %s "
3592                                         "ignoring ACE with protected sid %s "
3593                                         "from parent %s\n",
3594                                         fsp->fsp_name,
3595                                         sid_string_dbg(&se->trustee),
3596                                         parent_name));
3597                                 continue;
3598                         }
3599                 }
3600
3601                 sec_ace_copy(&new_ace[i], se);
3602                 if (se->flags & SEC_ACE_FLAG_NO_PROPAGATE_INHERIT) {
3603                         new_ace[i].flags &= ~(SEC_ACE_FLAG_VALID_INHERIT);
3604                 }
3605                 new_ace[i].flags |= SEC_ACE_FLAG_INHERITED_ACE;
3606
3607                 if (fsp->is_directory) {
3608                         /*
3609                          * Strip off any inherit only. It's applied.
3610                          */
3611                         new_ace[i].flags &= ~(SEC_ACE_FLAG_INHERIT_ONLY);
3612                         if (se->flags & SEC_ACE_FLAG_NO_PROPAGATE_INHERIT) {
3613                                 /* No further inheritance. */
3614                                 new_ace[i].flags &=
3615                                         ~(SEC_ACE_FLAG_CONTAINER_INHERIT|
3616                                         SEC_ACE_FLAG_OBJECT_INHERIT);
3617                         }
3618                 } else {
3619                         /*
3620                          * Strip off any container or inherit
3621                          * flags, they can't apply to objects.
3622                          */
3623                         new_ace[i].flags &= ~(SEC_ACE_FLAG_CONTAINER_INHERIT|
3624                                                 SEC_ACE_FLAG_INHERIT_ONLY|
3625                                                 SEC_ACE_FLAG_NO_PROPAGATE_INHERIT);
3626                 }
3627                 i++;
3628
3629                 DEBUG(10,("append_parent_acl: path %s "
3630                         "inheriting ACE with sid %s "
3631                         "from parent %s\n",
3632                         fsp->fsp_name,
3633                         sid_string_dbg(&se->trustee),
3634                         parent_name));
3635         }
3636
3637         psd->dacl->aces = new_ace;
3638         psd->dacl->num_aces = i;
3639         psd->type &= ~(SE_DESC_DACL_AUTO_INHERITED|
3640                          SE_DESC_DACL_AUTO_INHERIT_REQ);
3641
3642         *pp_new_sd = psd;
3643         return status;
3644 }
3645 #endif
3646
3647 /****************************************************************************
3648  Reply to set a security descriptor on an fsp. security_info_sent is the
3649  description of the following NT ACL.
3650  This should be the only external function needed for the UNIX style set ACL.
3651 ****************************************************************************/
3652
3653 NTSTATUS set_nt_acl(files_struct *fsp, uint32 security_info_sent, const SEC_DESC *psd)
3654 {
3655         connection_struct *conn = fsp->conn;
3656         uid_t user = (uid_t)-1;
3657         gid_t grp = (gid_t)-1;
3658         SMB_STRUCT_STAT sbuf;
3659         DOM_SID file_owner_sid;
3660         DOM_SID file_grp_sid;
3661         canon_ace *file_ace_list = NULL;
3662         canon_ace *dir_ace_list = NULL;
3663         bool acl_perms = False;
3664         mode_t orig_mode = (mode_t)0;
3665         NTSTATUS status;
3666         bool set_acl_as_root = false;
3667         bool acl_set_support = false;
3668         bool ret = false;
3669
3670         DEBUG(10,("set_nt_acl: called for file %s\n", fsp->fsp_name ));
3671
3672         if (!CAN_WRITE(conn)) {
3673                 DEBUG(10,("set acl rejected on read-only share\n"));
3674                 return NT_STATUS_MEDIA_WRITE_PROTECTED;
3675         }
3676
3677         /*
3678          * Get the current state of the file.
3679          */
3680
3681         if(fsp->is_directory || fsp->fh->fd == -1) {
3682                 if(SMB_VFS_STAT(fsp->conn,fsp->fsp_name, &sbuf) != 0)
3683                         return map_nt_error_from_unix(errno);
3684         } else {
3685                 if(SMB_VFS_FSTAT(fsp, &sbuf) != 0)
3686                         return map_nt_error_from_unix(errno);
3687         }
3688
3689         /* Save the original element we check against. */
3690         orig_mode = sbuf.st_mode;
3691
3692         /*
3693          * Unpack the user/group/world id's.
3694          */
3695
3696         status = unpack_nt_owners( SNUM(conn), &user, &grp, security_info_sent, psd);
3697         if (!NT_STATUS_IS_OK(status)) {
3698                 return status;
3699         }
3700
3701         /*
3702          * Do we need to chown ? If so this must be done first as the incoming
3703          * CREATOR_OWNER acl will be relative to the *new* owner, not the old.
3704          * Noticed by Simo.
3705          */
3706
3707         if (((user != (uid_t)-1) && (sbuf.st_uid != user)) || (( grp != (gid_t)-1) && (sbuf.st_gid != grp))) {
3708
3709                 DEBUG(3,("set_nt_acl: chown %s. uid = %u, gid = %u.\n",
3710                                 fsp->fsp_name, (unsigned int)user, (unsigned int)grp ));
3711
3712                 if(try_chown( fsp->conn, fsp->fsp_name, user, grp) == -1) {
3713                         DEBUG(3,("set_nt_acl: chown %s, %u, %u failed. Error = %s.\n",
3714                                 fsp->fsp_name, (unsigned int)user, (unsigned int)grp, strerror(errno) ));
3715                         if (errno == EPERM) {
3716                                 return NT_STATUS_INVALID_OWNER;
3717                         }
3718                         return map_nt_error_from_unix(errno);
3719                 }
3720
3721                 /*
3722                  * Recheck the current state of the file, which may have changed.
3723                  * (suid/sgid bits, for instance)
3724                  */
3725
3726                 if(fsp->is_directory) {
3727                         if(SMB_VFS_STAT(fsp->conn, fsp->fsp_name, &sbuf) != 0) {
3728                                 return map_nt_error_from_unix(errno);
3729                         }
3730                 } else {
3731
3732                         int sret;
3733
3734                         if(fsp->fh->fd == -1)
3735                                 sret = SMB_VFS_STAT(fsp->conn, fsp->fsp_name, &sbuf);
3736                         else
3737                                 sret = SMB_VFS_FSTAT(fsp, &sbuf);
3738
3739                         if(sret != 0)
3740                                 return map_nt_error_from_unix(errno);
3741                 }
3742
3743                 /* Save the original element we check against. */
3744                 orig_mode = sbuf.st_mode;
3745
3746                 /* If we successfully chowned, we know we must
3747                  * be able to set the acl, so do it as root.
3748                  */
3749                 set_acl_as_root = true;
3750         }
3751
3752         create_file_sids(&sbuf, &file_owner_sid, &file_grp_sid);
3753
3754         acl_perms = unpack_canon_ace( fsp, &sbuf, &file_owner_sid, &file_grp_sid,
3755                                         &file_ace_list, &dir_ace_list, security_info_sent, psd);
3756
3757         /* Ignore W2K traverse DACL set. */
3758         if (!file_ace_list && !dir_ace_list) {
3759                 return NT_STATUS_OK;
3760         }
3761
3762         if (!acl_perms) {
3763                 DEBUG(3,("set_nt_acl: cannot set permissions\n"));
3764                 free_canon_ace_list(file_ace_list);
3765                 free_canon_ace_list(dir_ace_list);
3766                 return NT_STATUS_ACCESS_DENIED;
3767         }
3768
3769         /*
3770          * Only change security if we got a DACL.
3771          */
3772
3773         if(!(security_info_sent & DACL_SECURITY_INFORMATION) || (psd->dacl == NULL)) {
3774                 free_canon_ace_list(file_ace_list);
3775                 free_canon_ace_list(dir_ace_list);
3776                 return NT_STATUS_OK;
3777         }
3778
3779         /*
3780          * Try using the POSIX ACL set first. Fall back to chmod if
3781          * we have no ACL support on this filesystem.
3782          */
3783
3784         if (acl_perms && file_ace_list) {
3785                 if (set_acl_as_root) {
3786                         become_root();
3787                 }
3788                 ret = set_canon_ace_list(fsp, file_ace_list, False, sbuf.st_gid, &acl_set_support);
3789                 if (set_acl_as_root) {
3790                         unbecome_root();
3791                 }
3792                 if (acl_set_support && ret == false) {
3793                         DEBUG(3,("set_nt_acl: failed to set file acl on file %s (%s).\n", fsp->fsp_name, strerror(errno) ));
3794                         free_canon_ace_list(file_ace_list);
3795                         free_canon_ace_list(dir_ace_list);
3796                         return map_nt_error_from_unix(errno);
3797                 }
3798         }
3799
3800         if (acl_perms && acl_set_support && fsp->is_directory) {
3801                 if (dir_ace_list) {
3802                         if (set_acl_as_root) {
3803                                 become_root();
3804                         }
3805                         ret = set_canon_ace_list(fsp, dir_ace_list, True, sbuf.st_gid, &acl_set_support);
3806                         if (set_acl_as_root) {
3807                                 unbecome_root();
3808                         }
3809                         if (ret == false) {
3810                                 DEBUG(3,("set_nt_acl: failed to set default acl on directory %s (%s).\n", fsp->fsp_name, strerror(errno) ));
3811                                 free_canon_ace_list(file_ace_list);
3812                                 free_canon_ace_list(dir_ace_list);
3813                                 return map_nt_error_from_unix(errno);
3814                         }
3815                 } else {
3816                         int sret = -1;
3817
3818                         /*
3819                          * No default ACL - delete one if it exists.
3820                          */
3821
3822                         if (set_acl_as_root) {
3823                                 become_root();
3824                         }
3825                         sret = SMB_VFS_SYS_ACL_DELETE_DEF_FILE(conn, fsp->fsp_name);
3826                         if (set_acl_as_root) {
3827                                 unbecome_root();
3828                         }
3829                         if (sret == -1) {
3830                                 if (acl_group_override(conn, sbuf.st_gid, fsp->fsp_name)) {
3831                                         DEBUG(5,("set_nt_acl: acl group control on and "
3832                                                 "current user in file %s primary group. Override delete_def_acl\n",
3833                                                 fsp->fsp_name ));
3834
3835                                         become_root();
3836                                         sret = SMB_VFS_SYS_ACL_DELETE_DEF_FILE(conn, fsp->fsp_name);
3837                                         unbecome_root();
3838                                 }
3839
3840                                 if (sret == -1) {
3841                                         DEBUG(3,("set_nt_acl: sys_acl_delete_def_file failed (%s)\n", strerror(errno)));
3842                                         free_canon_ace_list(file_ace_list);
3843                                         free_canon_ace_list(dir_ace_list);
3844                                         return map_nt_error_from_unix(errno);
3845                                 }
3846                         }
3847                 }
3848         }
3849
3850         if (acl_set_support) {
3851                 if (set_acl_as_root) {
3852                         become_root();
3853                 }
3854                 store_inheritance_attributes(fsp,
3855                                 file_ace_list,
3856                                 dir_ace_list,
3857                                 psd->type);
3858                 if (set_acl_as_root) {
3859                         unbecome_root();
3860                 }
3861         }
3862
3863         /*
3864          * If we cannot set using POSIX ACLs we fall back to checking if we need to chmod.
3865          */
3866
3867         if(!acl_set_support && acl_perms) {
3868                 mode_t posix_perms;
3869
3870                 if (!convert_canon_ace_to_posix_perms( fsp, file_ace_list, &posix_perms)) {
3871                         free_canon_ace_list(file_ace_list);
3872                         free_canon_ace_list(dir_ace_list);
3873                         DEBUG(3,("set_nt_acl: failed to convert file acl to posix permissions for file %s.\n",
3874                                 fsp->fsp_name ));
3875                         return NT_STATUS_ACCESS_DENIED;
3876                 }
3877
3878                 if (orig_mode != posix_perms) {
3879                         int sret = -1;
3880
3881                         DEBUG(3,("set_nt_acl: chmod %s. perms = 0%o.\n",
3882                                 fsp->fsp_name, (unsigned int)posix_perms ));
3883
3884                         if (set_acl_as_root) {
3885                                 become_root();
3886                         }
3887                         sret = SMB_VFS_CHMOD(conn,fsp->fsp_name, posix_perms);
3888                         if (set_acl_as_root) {
3889                                 unbecome_root();
3890                         }
3891                         if(sret == -1) {
3892                                 if (acl_group_override(conn, sbuf.st_gid, fsp->fsp_name)) {
3893                                         DEBUG(5,("set_nt_acl: acl group control on and "
3894                                                 "current user in file %s primary group. Override chmod\n",
3895                                                 fsp->fsp_name ));
3896
3897                                         become_root();
3898                                         sret = SMB_VFS_CHMOD(conn,fsp->fsp_name, posix_perms);
3899                                         unbecome_root();
3900                                 }
3901
3902                                 if (sret == -1) {
3903                                         DEBUG(3,("set_nt_acl: chmod %s, 0%o failed. Error = %s.\n",
3904                                                 fsp->fsp_name, (unsigned int)posix_perms, strerror(errno) ));
3905                                         free_canon_ace_list(file_ace_list);
3906                                         free_canon_ace_list(dir_ace_list);
3907                                         return map_nt_error_from_unix(errno);
3908                                 }
3909                         }
3910                 }
3911         }
3912
3913         free_canon_ace_list(file_ace_list);
3914         free_canon_ace_list(dir_ace_list);
3915
3916         return NT_STATUS_OK;
3917 }
3918
3919 /****************************************************************************
3920  Get the actual group bits stored on a file with an ACL. Has no effect if
3921  the file has no ACL. Needed in dosmode code where the stat() will return
3922  the mask bits, not the real group bits, for a file with an ACL.
3923 ****************************************************************************/
3924
3925 int get_acl_group_bits( connection_struct *conn, const char *fname, mode_t *mode )
3926 {
3927         int entry_id = SMB_ACL_FIRST_ENTRY;
3928         SMB_ACL_ENTRY_T entry;
3929         SMB_ACL_T posix_acl;
3930         int result = -1;
3931
3932         posix_acl = SMB_VFS_SYS_ACL_GET_FILE(conn, fname, SMB_ACL_TYPE_ACCESS);
3933         if (posix_acl == (SMB_ACL_T)NULL)
3934                 return -1;
3935
3936         while (SMB_VFS_SYS_ACL_GET_ENTRY(conn, posix_acl, entry_id, &entry) == 1) {
3937                 SMB_ACL_TAG_T tagtype;
3938                 SMB_ACL_PERMSET_T permset;
3939
3940                 entry_id = SMB_ACL_NEXT_ENTRY;
3941
3942                 if (SMB_VFS_SYS_ACL_GET_TAG_TYPE(conn, entry, &tagtype) ==-1)
3943                         break;
3944
3945                 if (tagtype == SMB_ACL_GROUP_OBJ) {
3946                         if (SMB_VFS_SYS_ACL_GET_PERMSET(conn, entry, &permset) == -1) {
3947                                 break;
3948                         } else {
3949                                 *mode &= ~(S_IRGRP|S_IWGRP|S_IXGRP);
3950                                 *mode |= (SMB_VFS_SYS_ACL_GET_PERM(conn, permset, SMB_ACL_READ) ? S_IRGRP : 0);
3951                                 *mode |= (SMB_VFS_SYS_ACL_GET_PERM(conn, permset, SMB_ACL_WRITE) ? S_IWGRP : 0);
3952                                 *mode |= (SMB_VFS_SYS_ACL_GET_PERM(conn, permset, SMB_ACL_EXECUTE) ? S_IXGRP : 0);
3953                                 result = 0;
3954                                 break;
3955                         }
3956                 }
3957         }
3958         SMB_VFS_SYS_ACL_FREE_ACL(conn, posix_acl);
3959         return result;
3960 }
3961
3962 /****************************************************************************
3963  Do a chmod by setting the ACL USER_OBJ, GROUP_OBJ and OTHER bits in an ACL
3964  and set the mask to rwx. Needed to preserve complex ACLs set by NT.
3965 ****************************************************************************/
3966
3967 static int chmod_acl_internals( connection_struct *conn, SMB_ACL_T posix_acl, mode_t mode)
3968 {
3969         int entry_id = SMB_ACL_FIRST_ENTRY;
3970         SMB_ACL_ENTRY_T entry;
3971         int num_entries = 0;
3972
3973         while ( SMB_VFS_SYS_ACL_GET_ENTRY(conn, posix_acl, entry_id, &entry) == 1) {
3974                 SMB_ACL_TAG_T tagtype;
3975                 SMB_ACL_PERMSET_T permset;
3976                 mode_t perms;
3977
3978                 entry_id = SMB_ACL_NEXT_ENTRY;
3979
3980                 if (SMB_VFS_SYS_ACL_GET_TAG_TYPE(conn, entry, &tagtype) == -1)
3981                         return -1;
3982
3983                 if (SMB_VFS_SYS_ACL_GET_PERMSET(conn, entry, &permset) == -1)
3984                         return -1;
3985
3986                 num_entries++;
3987
3988                 switch(tagtype) {
3989                         case SMB_ACL_USER_OBJ:
3990                                 perms = unix_perms_to_acl_perms(mode, S_IRUSR, S_IWUSR, S_IXUSR);
3991                                 break;
3992                         case SMB_ACL_GROUP_OBJ:
3993                                 perms = unix_perms_to_acl_perms(mode, S_IRGRP, S_IWGRP, S_IXGRP);
3994                                 break;
3995                         case SMB_ACL_MASK:
3996                                 /*
3997                                  * FIXME: The ACL_MASK entry permissions should really be set to
3998                                  * the union of the permissions of all ACL_USER,
3999                                  * ACL_GROUP_OBJ, and ACL_GROUP entries. That's what
4000                                  * acl_calc_mask() does, but Samba ACLs doesn't provide it.
4001                                  */
4002                                 perms = S_IRUSR|S_IWUSR|S_IXUSR;
4003                                 break;
4004                         case SMB_ACL_OTHER:
4005                                 perms = unix_perms_to_acl_perms(mode, S_IROTH, S_IWOTH, S_IXOTH);
4006                                 break;
4007                         default:
4008                                 continue;
4009                 }
4010
4011                 if (map_acl_perms_to_permset(conn, perms, &permset) == -1)
4012                         return -1;
4013
4014                 if (SMB_VFS_SYS_ACL_SET_PERMSET(conn, entry, permset) == -1)
4015                         return -1;
4016         }
4017
4018         /*
4019          * If this is a simple 3 element ACL or no elements then it's a standard
4020          * UNIX permission set. Just use chmod...       
4021          */
4022
4023         if ((num_entries == 3) || (num_entries == 0))
4024                 return -1;
4025
4026         return 0;
4027 }
4028
4029 /****************************************************************************
4030  Get the access ACL of FROM, do a chmod by setting the ACL USER_OBJ,
4031  GROUP_OBJ and OTHER bits in an ACL and set the mask to rwx. Set the
4032  resulting ACL on TO.  Note that name is in UNIX character set.
4033 ****************************************************************************/
4034
4035 static int copy_access_posix_acl(connection_struct *conn, const char *from, const char *to, mode_t mode)
4036 {
4037         SMB_ACL_T posix_acl = NULL;
4038         int ret = -1;
4039
4040         if ((posix_acl = SMB_VFS_SYS_ACL_GET_FILE(conn, from, SMB_ACL_TYPE_ACCESS)) == NULL)
4041                 return -1;
4042
4043         if ((ret = chmod_acl_internals(conn, posix_acl, mode)) == -1)
4044                 goto done;
4045
4046         ret = SMB_VFS_SYS_ACL_SET_FILE(conn, to, SMB_ACL_TYPE_ACCESS, posix_acl);
4047
4048  done:
4049
4050         SMB_VFS_SYS_ACL_FREE_ACL(conn, posix_acl);
4051         return ret;
4052 }
4053
4054 /****************************************************************************
4055  Do a chmod by setting the ACL USER_OBJ, GROUP_OBJ and OTHER bits in an ACL
4056  and set the mask to rwx. Needed to preserve complex ACLs set by NT.
4057  Note that name is in UNIX character set.
4058 ****************************************************************************/
4059
4060 int chmod_acl(connection_struct *conn, const char *name, mode_t mode)
4061 {
4062         return copy_access_posix_acl(conn, name, name, mode);
4063 }
4064
4065 /****************************************************************************
4066  Check for an existing default POSIX ACL on a directory.
4067 ****************************************************************************/
4068
4069 static bool directory_has_default_posix_acl(connection_struct *conn, const char *fname)
4070 {
4071         SMB_ACL_T def_acl = SMB_VFS_SYS_ACL_GET_FILE( conn, fname, SMB_ACL_TYPE_DEFAULT);
4072         bool has_acl = False;
4073         SMB_ACL_ENTRY_T entry;
4074
4075         if (def_acl != NULL && (SMB_VFS_SYS_ACL_GET_ENTRY(conn, def_acl, SMB_ACL_FIRST_ENTRY, &entry) == 1)) {
4076                 has_acl = True;
4077         }
4078
4079         if (def_acl) {
4080                 SMB_VFS_SYS_ACL_FREE_ACL(conn, def_acl);
4081         }
4082         return has_acl;
4083 }
4084
4085 /****************************************************************************
4086  If the parent directory has no default ACL but it does have an Access ACL,
4087  inherit this Access ACL to file name.
4088 ****************************************************************************/
4089
4090 int inherit_access_posix_acl(connection_struct *conn, const char *inherit_from_dir,
4091                        const char *name, mode_t mode)
4092 {
4093         if (directory_has_default_posix_acl(conn, inherit_from_dir))
4094                 return 0;
4095
4096         return copy_access_posix_acl(conn, inherit_from_dir, name, mode);
4097 }
4098
4099 /****************************************************************************
4100  Do an fchmod by setting the ACL USER_OBJ, GROUP_OBJ and OTHER bits in an ACL
4101  and set the mask to rwx. Needed to preserve complex ACLs set by NT.
4102 ****************************************************************************/
4103
4104 int fchmod_acl(files_struct *fsp, mode_t mode)
4105 {
4106         connection_struct *conn = fsp->conn;
4107         SMB_ACL_T posix_acl = NULL;
4108         int ret = -1;
4109
4110         if ((posix_acl = SMB_VFS_SYS_ACL_GET_FD(fsp)) == NULL)
4111                 return -1;
4112
4113         if ((ret = chmod_acl_internals(conn, posix_acl, mode)) == -1)
4114                 goto done;
4115
4116         ret = SMB_VFS_SYS_ACL_SET_FD(fsp, posix_acl);
4117
4118   done:
4119
4120         SMB_VFS_SYS_ACL_FREE_ACL(conn, posix_acl);
4121         return ret;
4122 }
4123
4124 /****************************************************************************
4125  Map from wire type to permset.
4126 ****************************************************************************/
4127
4128 static bool unix_ex_wire_to_permset(connection_struct *conn, unsigned char wire_perm, SMB_ACL_PERMSET_T *p_permset)
4129 {
4130         if (wire_perm & ~(SMB_POSIX_ACL_READ|SMB_POSIX_ACL_WRITE|SMB_POSIX_ACL_EXECUTE)) {
4131                 return False;
4132         }
4133
4134         if (SMB_VFS_SYS_ACL_CLEAR_PERMS(conn, *p_permset) ==  -1) {
4135                 return False;
4136         }
4137
4138         if (wire_perm & SMB_POSIX_ACL_READ) {
4139                 if (SMB_VFS_SYS_ACL_ADD_PERM(conn, *p_permset, SMB_ACL_READ) == -1) {
4140                         return False;
4141                 }
4142         }
4143         if (wire_perm & SMB_POSIX_ACL_WRITE) {
4144                 if (SMB_VFS_SYS_ACL_ADD_PERM(conn, *p_permset, SMB_ACL_WRITE) == -1) {
4145                         return False;
4146                 }
4147         }
4148         if (wire_perm & SMB_POSIX_ACL_EXECUTE) {
4149                 if (SMB_VFS_SYS_ACL_ADD_PERM(conn, *p_permset, SMB_ACL_EXECUTE) == -1) {
4150                         return False;
4151                 }
4152         }
4153         return True;
4154 }
4155
4156 /****************************************************************************
4157  Map from wire type to tagtype.
4158 ****************************************************************************/
4159
4160 static bool unix_ex_wire_to_tagtype(unsigned char wire_tt, SMB_ACL_TAG_T *p_tt)
4161 {
4162         switch (wire_tt) {
4163                 case SMB_POSIX_ACL_USER_OBJ:
4164                         *p_tt = SMB_ACL_USER_OBJ;
4165                         break;
4166                 case SMB_POSIX_ACL_USER:
4167                         *p_tt = SMB_ACL_USER;
4168                         break;
4169                 case SMB_POSIX_ACL_GROUP_OBJ:
4170                         *p_tt = SMB_ACL_GROUP_OBJ;
4171                         break;
4172                 case SMB_POSIX_ACL_GROUP:
4173                         *p_tt = SMB_ACL_GROUP;
4174                         break;
4175                 case SMB_POSIX_ACL_MASK:
4176                         *p_tt = SMB_ACL_MASK;
4177                         break;
4178                 case SMB_POSIX_ACL_OTHER:
4179                         *p_tt = SMB_ACL_OTHER;
4180                         break;
4181                 default:
4182                         return False;
4183         }
4184         return True;
4185 }
4186
4187 /****************************************************************************
4188  Create a new POSIX acl from wire permissions.
4189  FIXME ! How does the share mask/mode fit into this.... ?
4190 ****************************************************************************/
4191
4192 static SMB_ACL_T create_posix_acl_from_wire(connection_struct *conn, uint16 num_acls, const char *pdata)
4193 {
4194         unsigned int i;
4195         SMB_ACL_T the_acl = SMB_VFS_SYS_ACL_INIT(conn, num_acls);
4196
4197         if (the_acl == NULL) {
4198                 return NULL;
4199         }
4200
4201         for (i = 0; i < num_acls; i++) {
4202                 SMB_ACL_ENTRY_T the_entry;
4203                 SMB_ACL_PERMSET_T the_permset;
4204                 SMB_ACL_TAG_T tag_type;
4205
4206                 if (SMB_VFS_SYS_ACL_CREATE_ENTRY(conn, &the_acl, &the_entry) == -1) {
4207                         DEBUG(0,("create_posix_acl_from_wire: Failed to create entry %u. (%s)\n",
4208                                 i, strerror(errno) ));
4209                         goto fail;
4210                 }
4211
4212                 if (!unix_ex_wire_to_tagtype(CVAL(pdata,(i*SMB_POSIX_ACL_ENTRY_SIZE)), &tag_type)) {
4213                         DEBUG(0,("create_posix_acl_from_wire: invalid wire tagtype %u on entry %u.\n",
4214                                 CVAL(pdata,(i*SMB_POSIX_ACL_ENTRY_SIZE)), i ));
4215                         goto fail;
4216                 }
4217
4218                 if (SMB_VFS_SYS_ACL_SET_TAG_TYPE(conn, the_entry, tag_type) == -1) {
4219                         DEBUG(0,("create_posix_acl_from_wire: Failed to set tagtype on entry %u. (%s)\n",
4220                                 i, strerror(errno) ));
4221                         goto fail;
4222                 }
4223
4224                 /* Get the permset pointer from the new ACL entry. */
4225                 if (SMB_VFS_SYS_ACL_GET_PERMSET(conn, the_entry, &the_permset) == -1) {
4226                         DEBUG(0,("create_posix_acl_from_wire: Failed to get permset on entry %u. (%s)\n",
4227                                 i, strerror(errno) ));
4228                         goto fail;
4229                 }
4230
4231                 /* Map from wire to permissions. */
4232                 if (!unix_ex_wire_to_permset(conn, CVAL(pdata,(i*SMB_POSIX_ACL_ENTRY_SIZE)+1), &the_permset)) {
4233                         DEBUG(0,("create_posix_acl_from_wire: invalid permset %u on entry %u.\n",
4234                                 CVAL(pdata,(i*SMB_POSIX_ACL_ENTRY_SIZE) + 1), i ));
4235                         goto fail;
4236                 }
4237
4238                 /* Now apply to the new ACL entry. */
4239                 if (SMB_VFS_SYS_ACL_SET_PERMSET(conn, the_entry, the_permset) == -1) {
4240                         DEBUG(0,("create_posix_acl_from_wire: Failed to add permset on entry %u. (%s)\n",
4241                                 i, strerror(errno) ));
4242                         goto fail;
4243                 }
4244
4245                 if (tag_type == SMB_ACL_USER) {
4246                         uint32 uidval = IVAL(pdata,(i*SMB_POSIX_ACL_ENTRY_SIZE)+2);
4247                         uid_t uid = (uid_t)uidval;
4248                         if (SMB_VFS_SYS_ACL_SET_QUALIFIER(conn, the_entry,(void *)&uid) == -1) {
4249                                 DEBUG(0,("create_posix_acl_from_wire: Failed to set uid %u on entry %u. (%s)\n",
4250                                         (unsigned int)uid, i, strerror(errno) ));
4251                                 goto fail;
4252                         }
4253                 }
4254
4255                 if (tag_type == SMB_ACL_GROUP) {
4256                         uint32 gidval = IVAL(pdata,(i*SMB_POSIX_ACL_ENTRY_SIZE)+2);
4257                         gid_t gid = (uid_t)gidval;
4258                         if (SMB_VFS_SYS_ACL_SET_QUALIFIER(conn, the_entry,(void *)&gid) == -1) {
4259                                 DEBUG(0,("create_posix_acl_from_wire: Failed to set gid %u on entry %u. (%s)\n",
4260                                         (unsigned int)gid, i, strerror(errno) ));
4261                                 goto fail;
4262                         }
4263                 }
4264         }
4265
4266         return the_acl;
4267
4268  fail:
4269
4270         if (the_acl != NULL) {
4271                 SMB_VFS_SYS_ACL_FREE_ACL(conn, the_acl);
4272         }
4273         return NULL;
4274 }
4275
4276 /****************************************************************************
4277  Calls from UNIX extensions - Default POSIX ACL set.
4278  If num_def_acls == 0 and not a directory just return. If it is a directory
4279  and num_def_acls == 0 then remove the default acl. Else set the default acl
4280  on the directory.
4281 ****************************************************************************/
4282
4283 bool set_unix_posix_default_acl(connection_struct *conn, const char *fname, SMB_STRUCT_STAT *psbuf,
4284                                 uint16 num_def_acls, const char *pdata)
4285 {
4286         SMB_ACL_T def_acl = NULL;
4287
4288         if (!S_ISDIR(psbuf->st_mode)) {
4289                 if (num_def_acls) {
4290                         DEBUG(5,("set_unix_posix_default_acl: Can't set default ACL on non-directory file %s\n", fname ));
4291                         errno = EISDIR;
4292                         return False;
4293                 } else {
4294                         return True;
4295                 }
4296         }
4297
4298         if (!num_def_acls) {
4299                 /* Remove the default ACL. */
4300                 if (SMB_VFS_SYS_ACL_DELETE_DEF_FILE(conn, fname) == -1) {
4301                         DEBUG(5,("set_unix_posix_default_acl: acl_delete_def_file failed on directory %s (%s)\n",
4302                                 fname, strerror(errno) ));
4303                         return False;
4304                 }
4305                 return True;
4306         }
4307
4308         if ((def_acl = create_posix_acl_from_wire(conn, num_def_acls, pdata)) == NULL) {
4309                 return False;
4310         }
4311
4312         if (SMB_VFS_SYS_ACL_SET_FILE(conn, fname, SMB_ACL_TYPE_DEFAULT, def_acl) == -1) {
4313                 DEBUG(5,("set_unix_posix_default_acl: acl_set_file failed on directory %s (%s)\n",
4314                         fname, strerror(errno) ));
4315                 SMB_VFS_SYS_ACL_FREE_ACL(conn, def_acl);
4316                 return False;
4317         }
4318
4319         DEBUG(10,("set_unix_posix_default_acl: set default acl for file %s\n", fname ));
4320         SMB_VFS_SYS_ACL_FREE_ACL(conn, def_acl);
4321         return True;
4322 }
4323
4324 /****************************************************************************
4325  Remove an ACL from a file. As we don't have acl_delete_entry() available
4326  we must read the current acl and copy all entries except MASK, USER and GROUP
4327  to a new acl, then set that. This (at least on Linux) causes any ACL to be
4328  removed.
4329  FIXME ! How does the share mask/mode fit into this.... ?
4330 ****************************************************************************/
4331
4332 static bool remove_posix_acl(connection_struct *conn, files_struct *fsp, const char *fname)
4333 {
4334         SMB_ACL_T file_acl = NULL;
4335         int entry_id = SMB_ACL_FIRST_ENTRY;
4336         SMB_ACL_ENTRY_T entry;
4337         bool ret = False;
4338         /* Create a new ACL with only 3 entries, u/g/w. */
4339         SMB_ACL_T new_file_acl = SMB_VFS_SYS_ACL_INIT(conn, 3);
4340         SMB_ACL_ENTRY_T user_ent = NULL;
4341         SMB_ACL_ENTRY_T group_ent = NULL;
4342         SMB_ACL_ENTRY_T other_ent = NULL;
4343
4344         if (new_file_acl == NULL) {
4345                 DEBUG(5,("remove_posix_acl: failed to init new ACL with 3 entries for file %s.\n", fname));
4346                 return False;
4347         }
4348
4349         /* Now create the u/g/w entries. */
4350         if (SMB_VFS_SYS_ACL_CREATE_ENTRY(conn, &new_file_acl, &user_ent) == -1) {
4351                 DEBUG(5,("remove_posix_acl: Failed to create user entry for file %s. (%s)\n",
4352                         fname, strerror(errno) ));
4353                 goto done;
4354         }
4355         if (SMB_VFS_SYS_ACL_SET_TAG_TYPE(conn, user_ent, SMB_ACL_USER_OBJ) == -1) {
4356                 DEBUG(5,("remove_posix_acl: Failed to set user entry for file %s. (%s)\n",
4357                         fname, strerror(errno) ));
4358                 goto done;
4359         }
4360
4361         if (SMB_VFS_SYS_ACL_CREATE_ENTRY(conn, &new_file_acl, &group_ent) == -1) {
4362                 DEBUG(5,("remove_posix_acl: Failed to create group entry for file %s. (%s)\n",
4363                         fname, strerror(errno) ));
4364                 goto done;
4365         }
4366         if (SMB_VFS_SYS_ACL_SET_TAG_TYPE(conn, group_ent, SMB_ACL_GROUP_OBJ) == -1) {
4367                 DEBUG(5,("remove_posix_acl: Failed to set group entry for file %s. (%s)\n",
4368                         fname, strerror(errno) ));
4369                 goto done;
4370         }
4371
4372         if (SMB_VFS_SYS_ACL_CREATE_ENTRY(conn, &new_file_acl, &other_ent) == -1) {
4373                 DEBUG(5,("remove_posix_acl: Failed to create other entry for file %s. (%s)\n",
4374                         fname, strerror(errno) ));
4375                 goto done;
4376         }
4377         if (SMB_VFS_SYS_ACL_SET_TAG_TYPE(conn, other_ent, SMB_ACL_OTHER) == -1) {
4378                 DEBUG(5,("remove_posix_acl: Failed to set other entry for file %s. (%s)\n",
4379                         fname, strerror(errno) ));
4380                 goto done;
4381         }
4382
4383         /* Get the current file ACL. */
4384         if (fsp && fsp->fh->fd != -1) {
4385                 file_acl = SMB_VFS_SYS_ACL_GET_FD(fsp);
4386         } else {
4387                 file_acl = SMB_VFS_SYS_ACL_GET_FILE( conn, fname, SMB_ACL_TYPE_ACCESS);
4388         }
4389
4390         if (file_acl == NULL) {
4391                 /* This is only returned if an error occurred. Even for a file with
4392                    no acl a u/g/w acl should be returned. */
4393                 DEBUG(5,("remove_posix_acl: failed to get ACL from file %s (%s).\n",
4394                         fname, strerror(errno) ));
4395                 goto done;
4396         }
4397
4398         while ( SMB_VFS_SYS_ACL_GET_ENTRY(conn, file_acl, entry_id, &entry) == 1) {
4399                 SMB_ACL_TAG_T tagtype;
4400                 SMB_ACL_PERMSET_T permset;
4401
4402                 entry_id = SMB_ACL_NEXT_ENTRY;
4403
4404                 if (SMB_VFS_SYS_ACL_GET_TAG_TYPE(conn, entry, &tagtype) == -1) {
4405                         DEBUG(5,("remove_posix_acl: failed to get tagtype from ACL on file %s (%s).\n",
4406                                 fname, strerror(errno) ));
4407                         goto done;
4408                 }
4409
4410                 if (SMB_VFS_SYS_ACL_GET_PERMSET(conn, entry, &permset) == -1) {
4411                         DEBUG(5,("remove_posix_acl: failed to get permset from ACL on file %s (%s).\n",
4412                                 fname, strerror(errno) ));
4413                         goto done;
4414                 }
4415
4416                 if (tagtype == SMB_ACL_USER_OBJ) {
4417                         if (SMB_VFS_SYS_ACL_SET_PERMSET(conn, user_ent, permset) == -1) {
4418                                 DEBUG(5,("remove_posix_acl: failed to set permset from ACL on file %s (%s).\n",
4419                                         fname, strerror(errno) ));
4420                         }
4421                 } else if (tagtype == SMB_ACL_GROUP_OBJ) {
4422                         if (SMB_VFS_SYS_ACL_SET_PERMSET(conn, group_ent, permset) == -1) {
4423                                 DEBUG(5,("remove_posix_acl: failed to set permset from ACL on file %s (%s).\n",
4424                                         fname, strerror(errno) ));
4425                         }
4426                 } else if (tagtype == SMB_ACL_OTHER) {
4427                         if (SMB_VFS_SYS_ACL_SET_PERMSET(conn, other_ent, permset) == -1) {
4428                                 DEBUG(5,("remove_posix_acl: failed to set permset from ACL on file %s (%s).\n",
4429                                         fname, strerror(errno) ));
4430                         }
4431                 }
4432         }
4433
4434         /* Set the new empty file ACL. */
4435         if (fsp && fsp->fh->fd != -1) {
4436                 if (SMB_VFS_SYS_ACL_SET_FD(fsp, new_file_acl) == -1) {
4437                         DEBUG(5,("remove_posix_acl: acl_set_file failed on %s (%s)\n",
4438                                 fname, strerror(errno) ));
4439                         goto done;
4440                 }
4441         } else {
4442                 if (SMB_VFS_SYS_ACL_SET_FILE(conn, fname, SMB_ACL_TYPE_ACCESS, new_file_acl) == -1) {
4443                         DEBUG(5,("remove_posix_acl: acl_set_file failed on %s (%s)\n",
4444                                 fname, strerror(errno) ));
4445                         goto done;
4446                 }
4447         }
4448
4449         ret = True;
4450
4451  done:
4452
4453         if (file_acl) {
4454                 SMB_VFS_SYS_ACL_FREE_ACL(conn, file_acl);
4455         }
4456         if (new_file_acl) {
4457                 SMB_VFS_SYS_ACL_FREE_ACL(conn, new_file_acl);
4458         }
4459         return ret;
4460 }
4461
4462 /****************************************************************************
4463  Calls from UNIX extensions - POSIX ACL set.
4464  If num_def_acls == 0 then read/modify/write acl after removing all entries
4465  except SMB_ACL_USER_OBJ, SMB_ACL_GROUP_OBJ, SMB_ACL_OTHER.
4466 ****************************************************************************/
4467
4468 bool set_unix_posix_acl(connection_struct *conn, files_struct *fsp, const char *fname, uint16 num_acls, const char *pdata)
4469 {
4470         SMB_ACL_T file_acl = NULL;
4471
4472         if (!num_acls) {
4473                 /* Remove the ACL from the file. */
4474                 return remove_posix_acl(conn, fsp, fname);
4475         }
4476
4477         if ((file_acl = create_posix_acl_from_wire(conn, num_acls, pdata)) == NULL) {
4478                 return False;
4479         }
4480
4481         if (fsp && fsp->fh->fd != -1) {
4482                 /* The preferred way - use an open fd. */
4483                 if (SMB_VFS_SYS_ACL_SET_FD(fsp, file_acl) == -1) {
4484                         DEBUG(5,("set_unix_posix_acl: acl_set_file failed on %s (%s)\n",
4485                                 fname, strerror(errno) ));
4486                         SMB_VFS_SYS_ACL_FREE_ACL(conn, file_acl);
4487                         return False;
4488                 }
4489         } else {
4490                 if (SMB_VFS_SYS_ACL_SET_FILE(conn, fname, SMB_ACL_TYPE_ACCESS, file_acl) == -1) {
4491                         DEBUG(5,("set_unix_posix_acl: acl_set_file failed on %s (%s)\n",
4492                                 fname, strerror(errno) ));
4493                         SMB_VFS_SYS_ACL_FREE_ACL(conn, file_acl);
4494                         return False;
4495                 }
4496         }
4497
4498         DEBUG(10,("set_unix_posix_acl: set acl for file %s\n", fname ));
4499         SMB_VFS_SYS_ACL_FREE_ACL(conn, file_acl);
4500         return True;
4501 }
4502
4503 /********************************************************************
4504  Pull the NT ACL from a file on disk or the OpenEventlog() access
4505  check.  Caller is responsible for freeing the returned security
4506  descriptor via TALLOC_FREE().  This is designed for dealing with 
4507  user space access checks in smbd outside of the VFS.  For example,
4508  checking access rights in OpenEventlog().
4509
4510  Assume we are dealing with files (for now)
4511 ********************************************************************/
4512
4513 SEC_DESC *get_nt_acl_no_snum( TALLOC_CTX *ctx, const char *fname)
4514 {
4515         SEC_DESC *psd, *ret_sd;
4516         connection_struct *conn;
4517         files_struct finfo;
4518         struct fd_handle fh;
4519
4520         conn = TALLOC_ZERO_P(ctx, connection_struct);
4521         if (conn == NULL) {
4522                 DEBUG(0, ("talloc failed\n"));
4523                 return NULL;
4524         }
4525
4526         if (!(conn->params = TALLOC_P(conn, struct share_params))) {
4527                 DEBUG(0,("get_nt_acl_no_snum: talloc() failed!\n"));
4528                 TALLOC_FREE(conn);
4529                 return NULL;
4530         }
4531
4532         conn->params->service = -1;
4533
4534         set_conn_connectpath(conn, "/");
4535
4536         if (!smbd_vfs_init(conn)) {
4537                 DEBUG(0,("get_nt_acl_no_snum: Unable to create a fake connection struct!\n"));
4538                 conn_free_internal( conn );
4539                 return NULL;
4540         }
4541
4542         ZERO_STRUCT( finfo );
4543         ZERO_STRUCT( fh );
4544
4545         finfo.fnum = -1;
4546         finfo.conn = conn;
4547         finfo.fh = &fh;
4548         finfo.fh->fd = -1;
4549         finfo.fsp_name = CONST_DISCARD(char *,fname);
4550
4551         if (!NT_STATUS_IS_OK(SMB_VFS_FGET_NT_ACL( &finfo, DACL_SECURITY_INFORMATION, &psd))) {
4552                 DEBUG(0,("get_nt_acl_no_snum: get_nt_acl returned zero.\n"));
4553                 conn_free_internal( conn );
4554                 return NULL;
4555         }
4556
4557         ret_sd = dup_sec_desc( ctx, psd );
4558
4559         conn_free_internal( conn );
4560
4561         return ret_sd;
4562 }