2 * Handle passing Access Control Lists between systems.
4 * Copyright (C) 1996 Andrew Tridgell
5 * Copyright (C) 1996 Paul Mackerras
6 * Copyright (C) 2006-2022 Wayne Davison
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.
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.
18 * You should have received a copy of the GNU General Public License along
19 * with this program; if not, visit the http://fsf.org website.
23 #include "lib/sysacls.h"
31 extern int orig_umask
;
32 extern int numeric_ids
;
33 extern int inc_recurse
;
34 extern int preserve_devices
;
35 extern int preserve_specials
;
37 /* Flags used to indicate what items are being transmitted for an entry. */
38 #define XMIT_USER_OBJ (1<<0)
39 #define XMIT_GROUP_OBJ (1<<1)
40 #define XMIT_MASK_OBJ (1<<2)
41 #define XMIT_OTHER_OBJ (1<<3)
42 #define XMIT_NAME_LIST (1<<4)
44 #define NO_ENTRY ((uchar)0x80) /* Default value of a NON-name-list entry. */
46 #define NAME_IS_USER (1u<<31) /* Bit used only on a name-list entry. */
48 /* When we send the access bits over the wire, we shift them 2 bits to the
49 * left and use the lower 2 bits as flags (relevant only to a name entry).
50 * This makes the protocol more efficient than sending a value that would
51 * be likely to have its highest bits set. */
52 #define XFLAG_NAME_FOLLOWS 0x0001u
53 #define XFLAG_NAME_IS_USER 0x0002u
55 /* === ACL structures === */
72 typedef struct rsync_acl
{
74 /* These will be NO_ENTRY if there's no such entry. */
86 static const rsync_acl empty_rsync_acl
= {
87 {NULL
, 0}, NO_ENTRY
, NO_ENTRY
, NO_ENTRY
, NO_ENTRY
90 static item_list access_acl_list
= EMPTY_ITEM_LIST
;
91 static item_list default_acl_list
= EMPTY_ITEM_LIST
;
93 static size_t prior_access_count
= (size_t)-1;
94 static size_t prior_default_count
= (size_t)-1;
96 /* === Calculations on ACL types === */
98 static const char *str_acl_type(SMB_ACL_TYPE_T type
)
101 case SMB_ACL_TYPE_ACCESS
:
103 return "ACL_TYPE_EXTENDED";
105 return "ACL_TYPE_ACCESS";
107 case SMB_ACL_TYPE_DEFAULT
:
108 return "ACL_TYPE_DEFAULT";
112 return "unknown ACL type!";
115 static int calc_sacl_entries(const rsync_acl
*racl
)
117 /* A System ACL always gets user/group/other permission entries. */
118 return racl
->names
.count
119 #ifdef ACLS_NEED_MASK
122 + (racl
->mask_obj
!= NO_ENTRY
)
127 /* Extracts and returns the permission bits from the ACL. This cannot be
128 * called on an rsync_acl that has NO_ENTRY in any spot but the mask. */
129 static int rsync_acl_get_perms(const rsync_acl
*racl
)
131 return (racl
->user_obj
<< 6)
132 + ((racl
->mask_obj
!= NO_ENTRY
? racl
->mask_obj
: racl
->group_obj
) << 3)
136 /* Removes the permission-bit entries from the ACL because these
137 * can be reconstructed from the file's mode. */
138 static void rsync_acl_strip_perms(stat_x
*sxp
)
140 rsync_acl
*racl
= sxp
->acc_acl
;
142 racl
->user_obj
= NO_ENTRY
;
143 if (racl
->mask_obj
== NO_ENTRY
)
144 racl
->group_obj
= NO_ENTRY
;
146 int group_perms
= (sxp
->st
.st_mode
>> 3) & 7;
147 if (racl
->group_obj
== group_perms
)
148 racl
->group_obj
= NO_ENTRY
;
149 #ifndef HAVE_SOLARIS_ACLS
150 if (racl
->names
.count
!= 0 && racl
->mask_obj
== group_perms
)
151 racl
->mask_obj
= NO_ENTRY
;
154 racl
->other_obj
= NO_ENTRY
;
157 /* Given an empty rsync_acl, fake up the permission bits. */
158 static void rsync_acl_fake_perms(rsync_acl
*racl
, mode_t mode
)
160 racl
->user_obj
= (mode
>> 6) & 7;
161 racl
->group_obj
= (mode
>> 3) & 7;
162 racl
->other_obj
= mode
& 7;
165 /* === Rsync ACL functions === */
167 static rsync_acl
*create_racl(void)
169 rsync_acl
*racl
= new(rsync_acl
);
171 *racl
= empty_rsync_acl
;
176 static BOOL
ida_entries_equal(const ida_entries
*ial1
, const ida_entries
*ial2
)
178 id_access
*ida1
, *ida2
;
179 int count
= ial1
->count
;
180 if (count
!= ial2
->count
)
184 for (; count
--; ida1
++, ida2
++) {
185 if (ida1
->access
!= ida2
->access
|| ida1
->id
!= ida2
->id
)
191 static BOOL
rsync_acl_equal(const rsync_acl
*racl1
, const rsync_acl
*racl2
)
193 return racl1
->user_obj
== racl2
->user_obj
194 && racl1
->group_obj
== racl2
->group_obj
195 && racl1
->mask_obj
== racl2
->mask_obj
196 && racl1
->other_obj
== racl2
->other_obj
197 && ida_entries_equal(&racl1
->names
, &racl2
->names
);
200 /* Are the extended (non-permission-bit) entries equal? If so, the rest of
201 * the ACL will be handled by the normal mode-preservation code. This is
202 * only meaningful for access ACLs! Note: the 1st arg is a fully-populated
203 * rsync_acl, but the 2nd parameter can be a condensed rsync_acl, which means
204 * that it might have several of its permission objects set to NO_ENTRY. */
205 static BOOL
rsync_acl_equal_enough(const rsync_acl
*racl1
,
206 const rsync_acl
*racl2
, mode_t m
)
208 if ((racl1
->mask_obj
^ racl2
->mask_obj
) & NO_ENTRY
)
209 return False
; /* One has a mask and the other doesn't */
211 /* When there's a mask, the group_obj becomes an extended entry. */
212 if (racl1
->mask_obj
!= NO_ENTRY
) {
213 /* A condensed rsync_acl with a mask can only have no
214 * group_obj when it was identical to the mask. This
215 * means that it was also identical to the group attrs
217 if (racl2
->group_obj
== NO_ENTRY
) {
218 if (racl1
->group_obj
!= ((m
>> 3) & 7))
220 } else if (racl1
->group_obj
!= racl2
->group_obj
)
223 return ida_entries_equal(&racl1
->names
, &racl2
->names
);
226 static void rsync_acl_free(rsync_acl
*racl
)
228 if (racl
->names
.idas
)
229 free(racl
->names
.idas
);
230 *racl
= empty_rsync_acl
;
233 void free_acl(stat_x
*sxp
)
236 rsync_acl_free(sxp
->acc_acl
);
241 rsync_acl_free(sxp
->def_acl
);
247 #ifdef SMB_ACL_NEED_SORT
248 static int id_access_sorter(const void *r1
, const void *r2
)
250 id_access
*ida1
= (id_access
*)r1
;
251 id_access
*ida2
= (id_access
*)r2
;
252 id_t rid1
= ida1
->id
, rid2
= ida2
->id
;
253 if ((ida1
->access
^ ida2
->access
) & NAME_IS_USER
)
254 return ida1
->access
& NAME_IS_USER
? -1 : 1;
255 return rid1
== rid2
? 0 : rid1
< rid2
? -1 : 1;
259 /* === System ACLs === */
261 /* Unpack system ACL -> rsync ACL verbatim. Return whether we succeeded. */
262 static BOOL
unpack_smb_acl(SMB_ACL_T sacl
, rsync_acl
*racl
)
264 static item_list temp_ida_list
= EMPTY_ITEM_LIST
;
265 SMB_ACL_ENTRY_T entry
;
269 errfun
= "sys_acl_get_entry";
270 for (rc
= sys_acl_get_entry(sacl
, SMB_ACL_FIRST_ENTRY
, &entry
);
272 rc
= sys_acl_get_entry(sacl
, SMB_ACL_NEXT_ENTRY
, &entry
)) {
273 SMB_ACL_TAG_T tag_type
;
277 if ((rc
= sys_acl_get_info(entry
, &tag_type
, &access
, &g_u_id
)) != 0) {
278 errfun
= "sys_acl_get_info";
281 /* continue == done with entry; break == store in temporary ida list */
283 #ifndef HAVE_OSX_ACLS
284 case SMB_ACL_USER_OBJ
:
285 if (racl
->user_obj
== NO_ENTRY
)
286 racl
->user_obj
= access
;
288 rprintf(FINFO
, "unpack_smb_acl: warning: duplicate USER_OBJ entry ignored\n");
290 case SMB_ACL_GROUP_OBJ
:
291 if (racl
->group_obj
== NO_ENTRY
)
292 racl
->group_obj
= access
;
294 rprintf(FINFO
, "unpack_smb_acl: warning: duplicate GROUP_OBJ entry ignored\n");
297 if (racl
->mask_obj
== NO_ENTRY
)
298 racl
->mask_obj
= access
;
300 rprintf(FINFO
, "unpack_smb_acl: warning: duplicate MASK entry ignored\n");
303 if (racl
->other_obj
== NO_ENTRY
)
304 racl
->other_obj
= access
;
306 rprintf(FINFO
, "unpack_smb_acl: warning: duplicate OTHER entry ignored\n");
310 access
|= NAME_IS_USER
;
315 rprintf(FINFO
, "unpack_smb_acl: warning: entry with unrecognized tag type ignored\n");
318 ida
= EXPAND_ITEM_LIST(&temp_ida_list
, id_access
, -10);
320 ida
->access
= access
;
323 rsyserr(FERROR_XFER
, errno
, "unpack_smb_acl: %s()", errfun
);
324 rsync_acl_free(racl
);
328 /* Transfer the count id_access items out of the temp_ida_list
329 * into the names ida_entries list in racl. */
330 if (temp_ida_list
.count
) {
331 #ifdef SMB_ACL_NEED_SORT
332 if (temp_ida_list
.count
> 1) {
333 qsort(temp_ida_list
.items
, temp_ida_list
.count
, sizeof (id_access
), id_access_sorter
);
336 racl
->names
.idas
= new_array(id_access
, temp_ida_list
.count
);
337 memcpy(racl
->names
.idas
, temp_ida_list
.items
, temp_ida_list
.count
* sizeof (id_access
));
339 racl
->names
.idas
= NULL
;
341 racl
->names
.count
= temp_ida_list
.count
;
343 /* Truncate the temporary list now that its idas have been saved. */
344 temp_ida_list
.count
= 0;
349 /* Synactic sugar for system calls */
351 #define CALL_OR_ERROR(func,args,str) \
359 #define COE(func,args) CALL_OR_ERROR(func,args,#func)
360 #define COE2(func,args) CALL_OR_ERROR(func,args,NULL)
362 #ifndef HAVE_OSX_ACLS
363 /* Store the permissions in the system ACL entry. */
364 static int store_access_in_entry(uint32 access
, SMB_ACL_ENTRY_T entry
)
366 if (sys_acl_set_access_bits(entry
, access
)) {
367 rsyserr(FERROR_XFER
, errno
, "store_access_in_entry sys_acl_set_access_bits()");
374 /* Pack rsync ACL -> system ACL verbatim. Return whether we succeeded. */
375 static BOOL
pack_smb_acl(SMB_ACL_T
*smb_acl
, const rsync_acl
*racl
)
377 #ifdef ACLS_NEED_MASK
382 const char *errfun
= NULL
;
383 SMB_ACL_ENTRY_T entry
;
385 if (!(*smb_acl
= sys_acl_init(calc_sacl_entries(racl
)))) {
386 rsyserr(FERROR_XFER
, errno
, "pack_smb_acl: sys_acl_init()");
390 #ifndef HAVE_OSX_ACLS
391 COE( sys_acl_create_entry
,(smb_acl
, &entry
) );
392 COE( sys_acl_set_info
,(entry
, SMB_ACL_USER_OBJ
, racl
->user_obj
& ~NO_ENTRY
, 0) );
395 for (ida
= racl
->names
.idas
, count
= racl
->names
.count
; count
; ida
++, count
--) {
396 #ifdef SMB_ACL_NEED_SORT
397 if (!(ida
->access
& NAME_IS_USER
))
400 COE( sys_acl_create_entry
,(smb_acl
, &entry
) );
401 COE( sys_acl_set_info
,
403 ida
->access
& NAME_IS_USER
? SMB_ACL_USER
: SMB_ACL_GROUP
,
404 ida
->access
& ~NAME_IS_USER
, ida
->id
) );
407 #ifndef HAVE_OSX_ACLS
408 COE( sys_acl_create_entry
,(smb_acl
, &entry
) );
409 COE( sys_acl_set_info
,(entry
, SMB_ACL_GROUP_OBJ
, racl
->group_obj
& ~NO_ENTRY
, 0) );
411 #ifdef SMB_ACL_NEED_SORT
412 for ( ; count
; ida
++, count
--) {
413 COE( sys_acl_create_entry
,(smb_acl
, &entry
) );
414 COE( sys_acl_set_info
,(entry
, SMB_ACL_GROUP
, ida
->access
, ida
->id
) );
418 #ifdef ACLS_NEED_MASK
419 mask_bits
= racl
->mask_obj
== NO_ENTRY
? racl
->group_obj
& ~NO_ENTRY
: racl
->mask_obj
;
420 COE( sys_acl_create_entry
,(smb_acl
, &entry
) );
421 COE( sys_acl_set_info
,(entry
, SMB_ACL_MASK
, mask_bits
, 0) );
423 if (racl
->mask_obj
!= NO_ENTRY
) {
424 COE( sys_acl_create_entry
,(smb_acl
, &entry
) );
425 COE( sys_acl_set_info
,(entry
, SMB_ACL_MASK
, racl
->mask_obj
, 0) );
429 COE( sys_acl_create_entry
,(smb_acl
, &entry
) );
430 COE( sys_acl_set_info
,(entry
, SMB_ACL_OTHER
, racl
->other_obj
& ~NO_ENTRY
, 0) );
434 if (sys_acl_valid(*smb_acl
) < 0)
435 rprintf(FERROR_XFER
, "pack_smb_acl: warning: system says the ACL I packed is invalid\n");
442 rsyserr(FERROR_XFER
, errno
, "pack_smb_acl %s()", errfun
);
444 sys_acl_free_acl(*smb_acl
);
448 static int find_matching_rsync_acl(const rsync_acl
*racl
, SMB_ACL_TYPE_T type
,
449 const item_list
*racl_list
)
451 static int access_match
= -1, default_match
= -1;
452 int *match
= type
== SMB_ACL_TYPE_ACCESS
? &access_match
: &default_match
;
453 size_t count
= racl_list
->count
;
455 /* If this is the first time through or we didn't match the last
456 * time, then start at the end of the list, which should be the
457 * best place to start hunting. */
459 *match
= racl_list
->count
- 1;
461 rsync_acl
*base
= racl_list
->items
;
462 if (rsync_acl_equal(base
+ *match
, racl
))
465 *match
= racl_list
->count
- 1;
472 static int get_rsync_acl(const char *fname
, rsync_acl
*racl
,
473 SMB_ACL_TYPE_T type
, mode_t mode
)
477 #ifdef SUPPORT_XATTRS
478 /* --fake-super support: load ACLs from an xattr. */
484 if ((buf
= get_xattr_acl(fname
, type
== SMB_ACL_TYPE_ACCESS
, &len
)) == NULL
)
486 cnt
= (len
- 4*4) / (4+4);
487 if (len
< 4*4 || len
!= (size_t)cnt
*(4+4) + 4*4) {
492 racl
->user_obj
= IVAL(buf
, 0);
493 if (racl
->user_obj
== NO_ENTRY
)
494 racl
->user_obj
= (mode
>> 6) & 7;
495 racl
->group_obj
= IVAL(buf
, 4);
496 if (racl
->group_obj
== NO_ENTRY
)
497 racl
->group_obj
= (mode
>> 3) & 7;
498 racl
->mask_obj
= IVAL(buf
, 8);
499 racl
->other_obj
= IVAL(buf
, 12);
500 if (racl
->other_obj
== NO_ENTRY
)
501 racl
->other_obj
= mode
& 7;
504 char *bp
= buf
+ 4*4;
505 id_access
*ida
= racl
->names
.idas
= new_array(id_access
, cnt
);
506 racl
->names
.count
= cnt
;
507 for ( ; cnt
--; ida
++, bp
+= 4+4) {
508 ida
->id
= IVAL(bp
, 0);
509 ida
->access
= IVAL(bp
, 4);
517 if ((sacl
= sys_acl_get_file(fname
, type
)) != 0) {
518 BOOL ok
= unpack_smb_acl(sacl
, racl
);
520 sys_acl_free_acl(sacl
);
522 rsyserr(FERROR_XFER
, errno
, "get_acl: unpack_smb_acl(%s)", fname
);
525 } else if (no_acl_syscall_error(errno
)) {
526 /* ACLs are not supported, so pretend we have a basic ACL. */
527 if (type
== SMB_ACL_TYPE_ACCESS
)
528 rsync_acl_fake_perms(racl
, mode
);
530 rsyserr(FERROR_XFER
, errno
, "get_acl: sys_acl_get_file(%s, %s)",
531 fname
, str_acl_type(type
));
538 /* Return the Access Control List for the given filename. */
539 int get_acl(const char *fname
, stat_x
*sxp
)
541 sxp
->acc_acl
= create_racl();
543 if (S_ISREG(sxp
->st
.st_mode
) || S_ISDIR(sxp
->st
.st_mode
)) {
544 /* Everyone supports this. */
545 } else if (S_ISLNK(sxp
->st
.st_mode
)) {
547 } else if (IS_SPECIAL(sxp
->st
.st_mode
)) {
548 #ifndef NO_SPECIAL_ACLS
549 if (!preserve_specials
)
552 } else if (IS_DEVICE(sxp
->st
.st_mode
)) {
553 #ifndef NO_DEVICE_ACLS
554 if (!preserve_devices
)
557 } else if (IS_MISSING_FILE(sxp
->st
))
560 if (get_rsync_acl(fname
, sxp
->acc_acl
, SMB_ACL_TYPE_ACCESS
,
561 sxp
->st
.st_mode
) < 0) {
566 if (S_ISDIR(sxp
->st
.st_mode
)) {
567 sxp
->def_acl
= create_racl();
568 if (get_rsync_acl(fname
, sxp
->def_acl
, SMB_ACL_TYPE_DEFAULT
,
569 sxp
->st
.st_mode
) < 0) {
578 /* === Send functions === */
580 /* Send the ida list over the file descriptor. */
581 static void send_ida_entries(int f
, const ida_entries
*idal
)
584 size_t count
= idal
->count
;
586 write_varint(f
, idal
->count
);
588 for (ida
= idal
->idas
; count
--; ida
++) {
589 uint32 xbits
= ida
->access
<< 2;
591 if (ida
->access
& NAME_IS_USER
) {
592 xbits
|= XFLAG_NAME_IS_USER
;
593 name
= numeric_ids
? NULL
: add_uid(ida
->id
);
595 name
= numeric_ids
? NULL
: add_gid(ida
->id
);
596 write_varint(f
, ida
->id
);
597 if (inc_recurse
&& name
) {
598 int len
= strlen(name
);
599 write_varint(f
, xbits
| XFLAG_NAME_FOLLOWS
);
601 write_buf(f
, name
, len
);
603 write_varint(f
, xbits
);
607 static void send_rsync_acl(int f
, rsync_acl
*racl
, SMB_ACL_TYPE_T type
,
608 item_list
*racl_list
)
610 int ndx
= find_matching_rsync_acl(racl
, type
, racl_list
);
612 /* Send 0 (-1 + 1) to indicate that literal ACL data follows. */
613 write_varint(f
, ndx
+ 1);
616 rsync_acl
*new_racl
= EXPAND_ITEM_LIST(racl_list
, rsync_acl
, 1000);
619 if (racl
->user_obj
!= NO_ENTRY
)
620 flags
|= XMIT_USER_OBJ
;
621 if (racl
->group_obj
!= NO_ENTRY
)
622 flags
|= XMIT_GROUP_OBJ
;
623 if (racl
->mask_obj
!= NO_ENTRY
)
624 flags
|= XMIT_MASK_OBJ
;
625 if (racl
->other_obj
!= NO_ENTRY
)
626 flags
|= XMIT_OTHER_OBJ
;
627 if (racl
->names
.count
)
628 flags
|= XMIT_NAME_LIST
;
630 write_byte(f
, flags
);
632 if (flags
& XMIT_USER_OBJ
)
633 write_varint(f
, racl
->user_obj
);
634 if (flags
& XMIT_GROUP_OBJ
)
635 write_varint(f
, racl
->group_obj
);
636 if (flags
& XMIT_MASK_OBJ
)
637 write_varint(f
, racl
->mask_obj
);
638 if (flags
& XMIT_OTHER_OBJ
)
639 write_varint(f
, racl
->other_obj
);
640 if (flags
& XMIT_NAME_LIST
)
641 send_ida_entries(f
, &racl
->names
);
643 /* Give the allocated data to the new list object. */
645 *racl
= empty_rsync_acl
;
649 /* Send the ACL from the stat_x structure down the indicated file descriptor.
650 * This also frees the ACL data. */
651 void send_acl(int f
, stat_x
*sxp
)
654 sxp
->acc_acl
= create_racl();
655 rsync_acl_fake_perms(sxp
->acc_acl
, sxp
->st
.st_mode
);
657 /* Avoid sending values that can be inferred from other data. */
658 rsync_acl_strip_perms(sxp
);
660 send_rsync_acl(f
, sxp
->acc_acl
, SMB_ACL_TYPE_ACCESS
, &access_acl_list
);
662 if (S_ISDIR(sxp
->st
.st_mode
)) {
664 sxp
->def_acl
= create_racl();
666 send_rsync_acl(f
, sxp
->def_acl
, SMB_ACL_TYPE_DEFAULT
, &default_acl_list
);
670 /* === Receive functions === */
672 static uint32
recv_acl_access(int f
, uchar
*name_follows_ptr
)
674 uint32 access
= read_varint(f
);
676 if (name_follows_ptr
) {
677 int flags
= access
& 3;
679 if (am_root
>= 0 && access
& ~SMB_ACL_VALID_NAME_BITS
)
681 if (flags
& XFLAG_NAME_FOLLOWS
)
682 *name_follows_ptr
= 1;
684 *name_follows_ptr
= 0;
685 if (flags
& XFLAG_NAME_IS_USER
)
686 access
|= NAME_IS_USER
;
687 } else if (am_root
>= 0 && access
& ~SMB_ACL_VALID_OBJ_BITS
) {
689 rprintf(FERROR_XFER
, "recv_acl_access: value out of range: %x\n",
691 exit_cleanup(RERR_STREAMIO
);
697 static uchar
recv_ida_entries(int f
, ida_entries
*ent
)
699 uchar computed_mask_bits
= 0;
700 int i
, count
= read_varint(f
);
702 ent
->idas
= count
? new_array(id_access
, count
) : NULL
;
705 for (i
= 0; i
< count
; i
++) {
707 id_t id
= read_varint(f
);
708 uint32 access
= recv_acl_access(f
, &has_name
);
711 if (access
& NAME_IS_USER
)
712 id
= recv_user_name(f
, id
);
714 id
= recv_group_name(f
, id
, NULL
);
715 } else if (access
& NAME_IS_USER
) {
716 if (inc_recurse
&& am_root
&& !numeric_ids
)
719 if (inc_recurse
&& (!am_root
|| !numeric_ids
))
720 id
= match_gid(id
, NULL
);
723 ent
->idas
[i
].id
= id
;
724 ent
->idas
[i
].access
= access
;
725 computed_mask_bits
|= access
;
728 return computed_mask_bits
& ~NO_ENTRY
;
731 static int recv_rsync_acl(int f
, item_list
*racl_list
, SMB_ACL_TYPE_T type
, mode_t mode
)
733 uchar computed_mask_bits
= 0;
736 int ndx
= read_varint(f
);
738 if (ndx
< 0 || (size_t)ndx
> racl_list
->count
) {
739 rprintf(FERROR_XFER
, "recv_acl_index: %s ACL index %d > %d\n",
740 str_acl_type(type
), ndx
, (int)racl_list
->count
);
741 exit_cleanup(RERR_STREAMIO
);
747 ndx
= racl_list
->count
;
748 duo_item
= EXPAND_ITEM_LIST(racl_list
, acl_duo
, 1000);
749 duo_item
->racl
= empty_rsync_acl
;
751 flags
= read_byte(f
);
753 if (flags
& XMIT_USER_OBJ
)
754 duo_item
->racl
.user_obj
= recv_acl_access(f
, NULL
);
755 if (flags
& XMIT_GROUP_OBJ
)
756 duo_item
->racl
.group_obj
= recv_acl_access(f
, NULL
);
757 if (flags
& XMIT_MASK_OBJ
)
758 duo_item
->racl
.mask_obj
= recv_acl_access(f
, NULL
);
759 if (flags
& XMIT_OTHER_OBJ
)
760 duo_item
->racl
.other_obj
= recv_acl_access(f
, NULL
);
761 if (flags
& XMIT_NAME_LIST
)
762 computed_mask_bits
|= recv_ida_entries(f
, &duo_item
->racl
.names
);
765 /* If we received a superfluous mask, throw it away. */
766 duo_item
->racl
.mask_obj
= NO_ENTRY
;
768 (void)computed_mask_bits
;
770 if (duo_item
->racl
.names
.count
&& duo_item
->racl
.mask_obj
== NO_ENTRY
) {
771 /* Mask must be non-empty with lists. */
772 if (type
== SMB_ACL_TYPE_ACCESS
)
773 computed_mask_bits
= (mode
>> 3) & 7;
775 computed_mask_bits
|= duo_item
->racl
.group_obj
& ~NO_ENTRY
;
776 duo_item
->racl
.mask_obj
= computed_mask_bits
;
780 duo_item
->sacl
= NULL
;
785 /* Receive the ACL info the sender has included for this file-list entry. */
786 void receive_acl(int f
, struct file_struct
*file
)
788 F_ACL(file
) = recv_rsync_acl(f
, &access_acl_list
, SMB_ACL_TYPE_ACCESS
, file
->mode
);
790 if (S_ISDIR(file
->mode
))
791 F_DIR_DEFACL(file
) = recv_rsync_acl(f
, &default_acl_list
, SMB_ACL_TYPE_DEFAULT
, 0);
794 static int cache_rsync_acl(rsync_acl
*racl
, SMB_ACL_TYPE_T type
, item_list
*racl_list
)
800 else if ((ndx
= find_matching_rsync_acl(racl
, type
, racl_list
)) == -1) {
802 ndx
= racl_list
->count
;
803 new_duo
= EXPAND_ITEM_LIST(racl_list
, acl_duo
, 1000);
804 new_duo
->racl
= *racl
;
805 new_duo
->sacl
= NULL
;
806 *racl
= empty_rsync_acl
;
812 /* Turn the ACL data in stat_x into cached ACL data, setting the index
813 * values in the file struct. */
814 void cache_tmp_acl(struct file_struct
*file
, stat_x
*sxp
)
816 if (prior_access_count
== (size_t)-1)
817 prior_access_count
= access_acl_list
.count
;
819 F_ACL(file
) = cache_rsync_acl(sxp
->acc_acl
, SMB_ACL_TYPE_ACCESS
, &access_acl_list
);
821 if (S_ISDIR(sxp
->st
.st_mode
)) {
822 if (prior_default_count
== (size_t)-1)
823 prior_default_count
= default_acl_list
.count
;
824 F_DIR_DEFACL(file
) = cache_rsync_acl(sxp
->def_acl
, SMB_ACL_TYPE_DEFAULT
, &default_acl_list
);
828 static void uncache_duo_acls(item_list
*duo_list
, size_t start
)
830 acl_duo
*duo_item
= duo_list
->items
;
831 acl_duo
*duo_start
= duo_item
+ start
;
833 duo_item
+= duo_list
->count
;
834 duo_list
->count
= start
;
836 while (duo_item
-- > duo_start
) {
837 rsync_acl_free(&duo_item
->racl
);
839 sys_acl_free_acl(duo_item
->sacl
);
843 void uncache_tmp_acls(void)
845 if (prior_access_count
!= (size_t)-1) {
846 uncache_duo_acls(&access_acl_list
, prior_access_count
);
847 prior_access_count
= (size_t)-1;
850 if (prior_default_count
!= (size_t)-1) {
851 uncache_duo_acls(&default_acl_list
, prior_default_count
);
852 prior_default_count
= (size_t)-1;
856 #ifndef HAVE_OSX_ACLS
857 static mode_t
change_sacl_perms(SMB_ACL_T sacl
, rsync_acl
*racl
, mode_t old_mode
, mode_t mode
)
859 SMB_ACL_ENTRY_T entry
;
864 /* If the sticky bit is going on, it's not safe to allow all
865 * the new ACL to go into effect before it gets set. */
866 #ifdef SMB_ACL_LOSES_SPECIAL_MODE_BITS
870 if (mode
& S_ISVTX
&& !(old_mode
& S_ISVTX
))
873 /* If setuid or setgid is going off, it's not safe to allow all
874 * the new ACL to go into effect before they get cleared. */
875 if ((old_mode
& S_ISUID
&& !(mode
& S_ISUID
))
876 || (old_mode
& S_ISGID
&& !(mode
& S_ISGID
)))
881 errfun
= "sys_acl_get_entry";
882 for (rc
= sys_acl_get_entry(sacl
, SMB_ACL_FIRST_ENTRY
, &entry
);
884 rc
= sys_acl_get_entry(sacl
, SMB_ACL_NEXT_ENTRY
, &entry
)) {
885 SMB_ACL_TAG_T tag_type
;
886 if ((rc
= sys_acl_get_tag_type(entry
, &tag_type
)) != 0) {
887 errfun
= "sys_acl_get_tag_type";
891 case SMB_ACL_USER_OBJ
:
892 COE2( store_access_in_entry
,((mode
>> 6) & 7, entry
) );
894 case SMB_ACL_GROUP_OBJ
:
895 /* group is only empty when identical to group perms. */
896 if (racl
->group_obj
!= NO_ENTRY
)
898 COE2( store_access_in_entry
,((mode
>> 3) & 7, entry
) );
901 #ifndef HAVE_SOLARIS_ACLS
902 #ifndef ACLS_NEED_MASK
903 /* mask is only empty when we don't need it. */
904 if (racl
->mask_obj
== NO_ENTRY
)
907 COE2( store_access_in_entry
,((mode
>> 3) & 7, entry
) );
911 COE2( store_access_in_entry
,(mode
& 7, entry
) );
918 rsyserr(FERROR_XFER
, errno
, "change_sacl_perms: %s()",
924 #ifdef SMB_ACL_LOSES_SPECIAL_MODE_BITS
925 /* Ensure that chmod() will be called to restore any lost setid bits. */
926 if (old_mode
& (S_ISUID
| S_ISGID
| S_ISVTX
)
927 && BITS_EQUAL(old_mode
, mode
, CHMOD_BITS
))
928 old_mode
&= ~(S_ISUID
| S_ISGID
| S_ISVTX
);
931 /* Return the mode of the file on disk, as we will set them. */
932 return (old_mode
& ~ACCESSPERMS
) | (mode
& ACCESSPERMS
);
936 static int set_rsync_acl(const char *fname
, acl_duo
*duo_item
,
937 SMB_ACL_TYPE_T type
, stat_x
*sxp
, mode_t mode
)
939 if (type
== SMB_ACL_TYPE_DEFAULT
940 && duo_item
->racl
.user_obj
== NO_ENTRY
) {
942 #ifdef SUPPORT_XATTRS
943 /* --fake-super support: delete default ACL from xattrs. */
945 rc
= del_def_xattr_acl(fname
);
948 rc
= sys_acl_delete_def_file(fname
);
950 rsyserr(FERROR_XFER
, errno
, "set_acl: sys_acl_delete_def_file(%s)",
954 #ifdef SUPPORT_XATTRS
955 } else if (am_root
< 0) {
956 /* --fake-super support: store ACLs in an xattr. */
957 int cnt
= duo_item
->racl
.names
.count
;
958 size_t len
= 4*4 + cnt
* (4+4);
959 char *buf
= new_array(char, len
);
962 SIVAL(buf
, 0, duo_item
->racl
.user_obj
);
963 SIVAL(buf
, 4, duo_item
->racl
.group_obj
);
964 SIVAL(buf
, 8, duo_item
->racl
.mask_obj
);
965 SIVAL(buf
, 12, duo_item
->racl
.other_obj
);
968 char *bp
= buf
+ 4*4;
969 id_access
*ida
= duo_item
->racl
.names
.idas
;
970 for ( ; cnt
--; ida
++, bp
+= 4+4) {
971 SIVAL(bp
, 0, ida
->id
);
972 SIVAL(bp
, 4, ida
->access
);
975 rc
= set_xattr_acl(fname
, type
== SMB_ACL_TYPE_ACCESS
, buf
, len
);
980 mode_t cur_mode
= sxp
->st
.st_mode
;
982 && !pack_smb_acl(&duo_item
->sacl
, &duo_item
->racl
))
985 mode
= 0; /* eliminate compiler warning */
987 if (type
== SMB_ACL_TYPE_ACCESS
) {
988 cur_mode
= change_sacl_perms(duo_item
->sacl
, &duo_item
->racl
, cur_mode
, mode
);
989 if (cur_mode
== (mode_t
)-1)
993 if (sys_acl_set_file(fname
, type
, duo_item
->sacl
) < 0) {
994 rsyserr(FERROR_XFER
, errno
, "set_acl: sys_acl_set_file(%s, %s)",
995 fname
, str_acl_type(type
));
998 if (type
== SMB_ACL_TYPE_ACCESS
)
999 sxp
->st
.st_mode
= cur_mode
;
1005 /* Given a fname, this sets extended access ACL entries, the default ACL (for a
1006 * dir), and the regular mode bits on the file. Call this with fname set to
1007 * NULL to just check if the ACL is different.
1009 * If the ACL operation has a side-effect of changing the file's mode, the
1010 * sxp->st.st_mode value will be changed to match.
1012 * Returns 0 for an unchanged ACL, 1 for changed, -1 for failed. */
1013 int set_acl(const char *fname
, const struct file_struct
*file
, stat_x
*sxp
, mode_t new_mode
)
1019 if (!dry_run
&& (read_only
|| list_only
)) {
1025 if (ndx
>= 0 && (size_t)ndx
< access_acl_list
.count
) {
1026 acl_duo
*duo_item
= access_acl_list
.items
;
1029 && rsync_acl_equal_enough(sxp
->acc_acl
, &duo_item
->racl
, new_mode
);
1032 if (!dry_run
&& fname
1033 && set_rsync_acl(fname
, duo_item
, SMB_ACL_TYPE_ACCESS
,
1039 if (!S_ISDIR(new_mode
))
1042 ndx
= F_DIR_DEFACL(file
);
1043 if (ndx
>= 0 && (size_t)ndx
< default_acl_list
.count
) {
1044 acl_duo
*duo_item
= default_acl_list
.items
;
1046 eq
= sxp
->def_acl
&& rsync_acl_equal(sxp
->def_acl
, &duo_item
->racl
);
1049 if (!dry_run
&& fname
1050 && set_rsync_acl(fname
, duo_item
, SMB_ACL_TYPE_DEFAULT
,
1059 /* Non-incremental recursion needs to convert all the received IDs.
1060 * This is done in a single pass after receiving the whole file-list. */
1061 static void match_racl_ids(const item_list
*racl_list
)
1063 int list_cnt
, name_cnt
;
1064 acl_duo
*duo_item
= racl_list
->items
;
1065 for (list_cnt
= racl_list
->count
; list_cnt
--; duo_item
++) {
1066 ida_entries
*idal
= &duo_item
->racl
.names
;
1067 id_access
*ida
= idal
->idas
;
1068 for (name_cnt
= idal
->count
; name_cnt
--; ida
++) {
1069 if (ida
->access
& NAME_IS_USER
)
1070 ida
->id
= match_uid(ida
->id
);
1072 ida
->id
= match_gid(ida
->id
, NULL
);
1077 void match_acl_ids(void)
1079 match_racl_ids(&access_acl_list
);
1080 match_racl_ids(&default_acl_list
);
1083 /* This is used by dest_mode(). */
1084 int default_perms_for_dir(const char *dir
)
1093 perms
= ACCESSPERMS
& ~orig_umask
;
1094 /* Read the directory's default ACL. If it has none, this will successfully return an empty ACL. */
1095 sacl
= sys_acl_get_file(dir
, SMB_ACL_TYPE_DEFAULT
);
1097 /* Couldn't get an ACL. Darn. */
1100 /* If SMB_ACL_TYPE_DEFAULT isn't valid, then the ACLs must be non-POSIX. */
1106 /* No ACLs are available. */
1109 if (dry_run
&& errno
== ENOENT
) {
1110 /* We're doing a dry run, so the containing directory
1111 * wasn't actually created. Don't worry about it. */
1115 "default_perms_for_dir: sys_acl_get_file(%s, %s): %s, falling back on umask\n",
1116 dir
, str_acl_type(SMB_ACL_TYPE_DEFAULT
), strerror(errno
));
1122 racl
= empty_rsync_acl
;
1123 ok
= unpack_smb_acl(sacl
, &racl
);
1124 sys_acl_free_acl(sacl
);
1126 rprintf(FWARNING
, "default_perms_for_dir: unpack_smb_acl failed, falling back on umask\n");
1130 /* Apply the permission-bit entries of the default ACL, if any. */
1131 if (racl
.user_obj
!= NO_ENTRY
) {
1132 perms
= rsync_acl_get_perms(&racl
);
1133 if (DEBUG_GTE(ACL
, 1))
1134 rprintf(FINFO
, "got ACL-based default perms %o for directory %s\n", perms
, dir
);
1137 rsync_acl_free(&racl
);
1141 #endif /* SUPPORT_ACLS */