2 Unix SMB/CIFS implementation.
4 Copyright (C) Andrew Tridgell 1992-1998
5 Copyright (C) Jeremy Allison 1998-2005
6 Copyright (C) Timur Bakeyev 2005
7 Copyright (C) Bjoern Jacke 2006-2007
9 This program is free software; you can redistribute it and/or modify
10 it under the terms of the GNU General Public License as published by
11 the Free Software Foundation; either version 3 of the License, or
12 (at your option) any later version.
14 This program is distributed in the hope that it will be useful,
15 but WITHOUT ANY WARRANTY; without even the implied warranty of
16 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17 GNU General Public License for more details.
19 You should have received a copy of the GNU General Public License
20 along with this program. If not, see <http://www.gnu.org/licenses/>.
24 #include "system/syslog.h"
25 #include "system/capability.h"
26 #include "system/passwd.h"
27 #include "system/filesys.h"
28 #include "lib/util/setid.h"
29 #include "lib/util/time.h"
31 #ifdef HAVE_SYS_SYSCTL_H
32 #include <sys/sysctl.h>
35 #ifdef HAVE_SYS_PRCTL_H
36 #include <sys/prctl.h>
40 The idea is that this file will eventually have wrappers around all
41 important system calls in samba. The aims are:
43 - to enable easier porting by putting OS dependent stuff in here
45 - to allow for hooks into other "pseudo-filesystems"
47 - to allow easier integration of things like the japanese extensions
49 - to support the philosophy of Samba to expose the features of
50 the OS within the SMB model. In general whatever file/printer/variable
51 expansions/etc make sense to the OS should be acceptable to Samba.
54 /*******************************************************************
55 A send wrapper that will deal with EINTR or EAGAIN or EWOULDBLOCK.
56 ********************************************************************/
58 ssize_t
sys_send(int s
, const void *msg
, size_t len
, int flags
)
63 ret
= send(s
, msg
, len
, flags
);
64 } while (ret
== -1 && (errno
== EINTR
|| errno
== EAGAIN
|| errno
== EWOULDBLOCK
));
69 /*******************************************************************
70 A recvfrom wrapper that will deal with EINTR.
71 NB. As used with non-blocking sockets, return on EAGAIN/EWOULDBLOCK
72 ********************************************************************/
74 ssize_t
sys_recvfrom(int s
, void *buf
, size_t len
, int flags
, struct sockaddr
*from
, socklen_t
*fromlen
)
79 ret
= recvfrom(s
, buf
, len
, flags
, from
, fromlen
);
80 } while (ret
== -1 && (errno
== EINTR
));
84 /*******************************************************************
85 A fcntl wrapper that will deal with EINTR.
86 ********************************************************************/
88 int sys_fcntl_ptr(int fd
, int cmd
, void *arg
)
93 ret
= fcntl(fd
, cmd
, arg
);
94 } while (ret
== -1 && errno
== EINTR
);
98 /*******************************************************************
99 A fcntl wrapper that will deal with EINTR.
100 ********************************************************************/
102 int sys_fcntl_long(int fd
, int cmd
, long arg
)
107 ret
= fcntl(fd
, cmd
, arg
);
108 } while (ret
== -1 && errno
== EINTR
);
112 /*******************************************************************
113 A fcntl wrapper that will deal with EINTR.
114 ********************************************************************/
116 int sys_fcntl_int(int fd
, int cmd
, int arg
)
121 ret
= fcntl(fd
, cmd
, arg
);
122 } while (ret
== -1 && errno
== EINTR
);
126 /****************************************************************************
127 Return the best approximation to a 'create time' under UNIX from a stat
129 ****************************************************************************/
131 static struct timespec
calc_create_time_stat(const struct stat
*st
)
133 struct timespec ret
, ret1
;
134 struct timespec c_time
= get_ctimespec(st
);
135 struct timespec m_time
= get_mtimespec(st
);
136 struct timespec a_time
= get_atimespec(st
);
138 ret
= timespec_compare(&c_time
, &m_time
) < 0 ? c_time
: m_time
;
139 ret1
= timespec_compare(&ret
, &a_time
) < 0 ? ret
: a_time
;
141 if(!null_timespec(ret1
)) {
146 * One of ctime, mtime or atime was zero (probably atime).
147 * Just return MIN(ctime, mtime).
152 /****************************************************************************
153 Return the best approximation to a 'create time' under UNIX from a stat_ex
155 ****************************************************************************/
157 static struct timespec
calc_create_time_stat_ex(const struct stat_ex
*st
)
159 struct timespec ret
, ret1
;
160 struct timespec c_time
= st
->st_ex_ctime
;
161 struct timespec m_time
= st
->st_ex_mtime
;
162 struct timespec a_time
= st
->st_ex_atime
;
164 ret
= timespec_compare(&c_time
, &m_time
) < 0 ? c_time
: m_time
;
165 ret1
= timespec_compare(&ret
, &a_time
) < 0 ? ret
: a_time
;
167 if(!null_timespec(ret1
)) {
172 * One of ctime, mtime or atime was zero (probably atime).
173 * Just return MIN(ctime, mtime).
178 /****************************************************************************
179 Return the 'create time' from a stat struct if it exists (birthtime) or else
180 use the best approximation.
181 ****************************************************************************/
183 static void make_create_timespec(const struct stat
*pst
, struct stat_ex
*dst
,
184 bool fake_dir_create_times
)
186 if (S_ISDIR(pst
->st_mode
) && fake_dir_create_times
) {
187 dst
->st_ex_btime
.tv_sec
= 315493200L; /* 1/1/1980 */
188 dst
->st_ex_btime
.tv_nsec
= 0;
192 dst
->st_ex_iflags
&= ~ST_EX_IFLAG_CALCULATED_BTIME
;
194 #if defined(HAVE_STRUCT_STAT_ST_BIRTHTIMESPEC_TV_NSEC)
195 dst
->st_ex_btime
= pst
->st_birthtimespec
;
196 #elif defined(HAVE_STRUCT_STAT_ST_BIRTHTIMENSEC)
197 dst
->st_ex_btime
.tv_sec
= pst
->st_birthtime
;
198 dst
->st_ex_btime
.tv_nsec
= pst
->st_birthtimenspec
;
199 #elif defined(HAVE_STRUCT_STAT_ST_BIRTHTIME)
200 dst
->st_ex_btime
.tv_sec
= pst
->st_birthtime
;
201 dst
->st_ex_btime
.tv_nsec
= 0;
203 dst
->st_ex_btime
= calc_create_time_stat(pst
);
204 dst
->st_ex_iflags
|= ST_EX_IFLAG_CALCULATED_BTIME
;
207 /* Deal with systems that don't initialize birthtime correctly.
208 * Pointed out by SATOH Fumiyasu <fumiyas@osstech.jp>.
210 if (null_timespec(dst
->st_ex_btime
)) {
211 dst
->st_ex_btime
= calc_create_time_stat(pst
);
212 dst
->st_ex_iflags
|= ST_EX_IFLAG_CALCULATED_BTIME
;
216 /****************************************************************************
217 If we update a timestamp in a stat_ex struct we may have to recalculate
218 the birthtime. For now only implement this for write time, but we may
219 also need to do it for atime and ctime. JRA.
220 ****************************************************************************/
222 void update_stat_ex_mtime(struct stat_ex
*dst
,
223 struct timespec write_ts
)
225 dst
->st_ex_mtime
= write_ts
;
227 /* We may have to recalculate btime. */
228 if (dst
->st_ex_iflags
& ST_EX_IFLAG_CALCULATED_BTIME
) {
229 dst
->st_ex_btime
= calc_create_time_stat_ex(dst
);
233 void update_stat_ex_create_time(struct stat_ex
*dst
,
234 struct timespec create_time
)
236 dst
->st_ex_btime
= create_time
;
237 dst
->st_ex_iflags
&= ~ST_EX_IFLAG_CALCULATED_BTIME
;
240 void update_stat_ex_from_saved_stat(struct stat_ex
*dst
,
241 const struct stat_ex
*src
)
243 if (!VALID_STAT(*src
)) {
247 if (!(src
->st_ex_iflags
& ST_EX_IFLAG_CALCULATED_BTIME
)) {
248 update_stat_ex_create_time(dst
, src
->st_ex_btime
);
252 void copy_stat_ex_timestamps(struct stat_ex
*st
,
253 const struct smb_file_time
*ft
)
255 if (!is_omit_timespec(&ft
->atime
)) {
256 st
->st_ex_atime
= ft
->atime
;
259 if (!is_omit_timespec(&ft
->create_time
)) {
260 st
->st_ex_btime
= ft
->create_time
;
263 if (!is_omit_timespec(&ft
->ctime
)) {
264 st
->st_ex_ctime
= ft
->ctime
;
267 if (!is_omit_timespec(&ft
->mtime
)) {
268 st
->st_ex_mtime
= ft
->mtime
;
272 void init_stat_ex_from_stat (struct stat_ex
*dst
,
273 const struct stat
*src
,
274 bool fake_dir_create_times
)
276 dst
->st_ex_dev
= src
->st_dev
;
277 dst
->st_ex_ino
= src
->st_ino
;
278 dst
->st_ex_mode
= src
->st_mode
;
279 dst
->st_ex_nlink
= src
->st_nlink
;
280 dst
->st_ex_uid
= src
->st_uid
;
281 dst
->st_ex_gid
= src
->st_gid
;
282 dst
->st_ex_rdev
= src
->st_rdev
;
283 dst
->st_ex_size
= src
->st_size
;
284 dst
->st_ex_atime
= get_atimespec(src
);
285 dst
->st_ex_mtime
= get_mtimespec(src
);
286 dst
->st_ex_ctime
= get_ctimespec(src
);
287 dst
->st_ex_iflags
= 0;
288 make_create_timespec(src
, dst
, fake_dir_create_times
);
289 #ifdef HAVE_STAT_ST_BLKSIZE
290 dst
->st_ex_blksize
= src
->st_blksize
;
292 dst
->st_ex_blksize
= STAT_ST_BLOCKSIZE
;
295 #ifdef HAVE_STAT_ST_BLOCKS
296 dst
->st_ex_blocks
= src
->st_blocks
;
298 dst
->st_ex_blocks
= src
->st_size
/ dst
->st_ex_blksize
+ 1;
301 #ifdef HAVE_STAT_ST_FLAGS
302 dst
->st_ex_flags
= src
->st_flags
;
304 dst
->st_ex_flags
= 0;
308 /*******************************************************************
310 ********************************************************************/
312 int sys_stat(const char *fname
, SMB_STRUCT_STAT
*sbuf
,
313 bool fake_dir_create_times
)
317 ret
= stat(fname
, &statbuf
);
319 /* we always want directories to appear zero size */
320 if (S_ISDIR(statbuf
.st_mode
)) {
323 init_stat_ex_from_stat(sbuf
, &statbuf
, fake_dir_create_times
);
328 /*******************************************************************
330 ********************************************************************/
332 int sys_fstat(int fd
, SMB_STRUCT_STAT
*sbuf
, bool fake_dir_create_times
)
336 ret
= fstat(fd
, &statbuf
);
338 /* we always want directories to appear zero size */
339 if (S_ISDIR(statbuf
.st_mode
)) {
342 init_stat_ex_from_stat(sbuf
, &statbuf
, fake_dir_create_times
);
347 /*******************************************************************
349 ********************************************************************/
351 int sys_lstat(const char *fname
,SMB_STRUCT_STAT
*sbuf
,
352 bool fake_dir_create_times
)
356 ret
= lstat(fname
, &statbuf
);
358 /* we always want directories to appear zero size */
359 if (S_ISDIR(statbuf
.st_mode
)) {
362 init_stat_ex_from_stat(sbuf
, &statbuf
, fake_dir_create_times
);
367 /*******************************************************************
368 An fstatat() wrapper.
369 ********************************************************************/
371 int sys_fstatat(int fd
,
372 const char *pathname
,
373 SMB_STRUCT_STAT
*sbuf
,
375 bool fake_dir_create_times
)
380 ret
= fstatat(fd
, pathname
, &statbuf
, flags
);
385 /* we always want directories to appear zero size */
386 if (S_ISDIR(statbuf
.st_mode
)) {
389 init_stat_ex_from_stat(sbuf
, &statbuf
, fake_dir_create_times
);
393 /*******************************************************************
394 An posix_fallocate() wrapper.
395 ********************************************************************/
396 int sys_posix_fallocate(int fd
, off_t offset
, off_t len
)
398 #if defined(HAVE_POSIX_FALLOCATE)
399 return posix_fallocate(fd
, offset
, len
);
400 #elif defined(F_RESVSP64)
401 /* this handles XFS on IRIX */
403 off_t new_len
= offset
+ len
;
407 /* unlikely to get a too large file on a 64bit system but ... */
411 fl
.l_whence
= SEEK_SET
;
415 ret
=fcntl(fd
, F_RESVSP64
, &fl
);
420 /* Make sure the file gets enlarged after we allocated space: */
422 if (new_len
> sbuf
.st_size
)
423 ftruncate64(fd
, new_len
);
430 /*******************************************************************
431 An fallocate() function that matches the semantics of the Linux one.
432 ********************************************************************/
434 #ifdef HAVE_LINUX_FALLOC_H
435 #include <linux/falloc.h>
438 int sys_fallocate(int fd
, uint32_t mode
, off_t offset
, off_t len
)
440 #if defined(HAVE_LINUX_FALLOCATE)
443 if (mode
& VFS_FALLOCATE_FL_KEEP_SIZE
) {
444 lmode
|= FALLOC_FL_KEEP_SIZE
;
445 mode
&= ~VFS_FALLOCATE_FL_KEEP_SIZE
;
448 #if defined(HAVE_FALLOC_FL_PUNCH_HOLE)
449 if (mode
& VFS_FALLOCATE_FL_PUNCH_HOLE
) {
450 lmode
|= FALLOC_FL_PUNCH_HOLE
;
451 mode
&= ~VFS_FALLOCATE_FL_PUNCH_HOLE
;
453 #endif /* HAVE_FALLOC_FL_PUNCH_HOLE */
456 DEBUG(2, ("unmapped fallocate flags: %lx\n",
457 (unsigned long)mode
));
461 return fallocate(fd
, lmode
, offset
, len
);
462 #else /* HAVE_LINUX_FALLOCATE */
463 /* TODO - plumb in fallocate from other filesysetms like VXFS etc. JRA. */
466 #endif /* HAVE_LINUX_FALLOCATE */
469 /*******************************************************************
470 An fdopendir wrapper.
471 ********************************************************************/
473 DIR *sys_fdopendir(int fd
)
475 #if defined(HAVE_FDOPENDIR)
476 return fdopendir(fd
);
483 /*******************************************************************
485 ********************************************************************/
487 int sys_mknod(const char *path
, mode_t mode
, SMB_DEV_T dev
)
489 #if defined(HAVE_MKNOD)
490 return mknod(path
, mode
, dev
);
492 /* No mknod system call. */
498 /*******************************************************************
500 ********************************************************************/
502 int sys_mknodat(int dirfd
, const char *path
, mode_t mode
, SMB_DEV_T dev
)
504 #if defined(HAVE_MKNODAT)
505 return mknodat(dirfd
, path
, mode
, dev
);
507 /* No mknod system call. */
513 /*******************************************************************
514 System wrapper for getwd. Always returns MALLOC'ed memory, or NULL
515 on error (malloc fail usually).
516 ********************************************************************/
518 char *sys_getwd(void)
520 #ifdef GETCWD_TAKES_NULL
521 return getcwd(NULL
, 0);
522 #elif defined(HAVE_GETCWD)
523 char *wd
= NULL
, *s
= NULL
;
524 size_t allocated
= PATH_MAX
;
527 s
= SMB_REALLOC_ARRAY(s
, char, allocated
);
531 wd
= getcwd(s
, allocated
);
535 if (errno
!= ERANGE
) {
536 int saved_errno
= errno
;
542 if (allocated
< PATH_MAX
) {
550 char *s
= SMB_MALLOC_ARRAY(char, PATH_MAX
);
556 int saved_errno
= errno
;
564 #if defined(HAVE_POSIX_CAPABILITIES)
566 /**************************************************************************
567 Try and abstract process capabilities (for systems that have them).
568 ****************************************************************************/
570 /* Set the POSIX capabilities needed for the given purpose into the effective
571 * capability set of the current process. Make sure they are always removed
572 * from the inheritable set, because there is no circumstance in which our
573 * children should inherit our elevated privileges.
575 static bool set_process_capability(enum smbd_capability capability
,
578 /* "5" is the number of "num_cap_vals++" below */
579 cap_value_t cap_vals
[5] = {0};
580 size_t num_cap_vals
= 0;
584 #if defined(HAVE_PRCTL) && defined(PR_GET_KEEPCAPS) && defined(PR_SET_KEEPCAPS)
585 /* On Linux, make sure that any capabilities we grab are sticky
586 * across UID changes. We expect that this would allow us to keep both
587 * the effective and permitted capability sets, but as of circa 2.6.16,
588 * only the permitted set is kept. It is a bug (which we work around)
589 * that the effective set is lost, but we still require the effective
592 if (!prctl(PR_GET_KEEPCAPS
)) {
593 prctl(PR_SET_KEEPCAPS
, 1);
597 cap
= cap_get_proc();
599 DEBUG(0,("set_process_capability: cap_get_proc failed: %s\n",
604 switch (capability
) {
606 * WARNING: If you add any #ifdef for a fresh
607 * capability, bump up the array size in the
608 * declaration of cap_vals[] above just to be
609 * trivially safe to never overwrite cap_vals[].
611 case KERNEL_OPLOCK_CAPABILITY
:
612 #ifdef CAP_NETWORK_MGT
613 /* IRIX has CAP_NETWORK_MGT for oplocks. */
614 cap_vals
[num_cap_vals
++] = CAP_NETWORK_MGT
;
617 case DMAPI_ACCESS_CAPABILITY
:
618 #ifdef CAP_DEVICE_MGT
619 /* IRIX has CAP_DEVICE_MGT for DMAPI access. */
620 cap_vals
[num_cap_vals
++] = CAP_DEVICE_MGT
;
622 /* Linux has CAP_MKNOD for DMAPI access. */
623 cap_vals
[num_cap_vals
++] = CAP_MKNOD
;
626 case LEASE_CAPABILITY
:
628 cap_vals
[num_cap_vals
++] = CAP_LEASE
;
631 case DAC_OVERRIDE_CAPABILITY
:
632 #ifdef CAP_DAC_OVERRIDE
633 cap_vals
[num_cap_vals
++] = CAP_DAC_OVERRIDE
;
637 if (num_cap_vals
== 0) {
642 cap_set_flag(cap
, CAP_EFFECTIVE
, num_cap_vals
, cap_vals
,
643 enable
? CAP_SET
: CAP_CLEAR
);
645 /* We never want to pass capabilities down to our children, so make
646 * sure they are not inherited.
648 cap_set_flag(cap
, CAP_INHERITABLE
, num_cap_vals
, cap_vals
, CAP_CLEAR
);
650 if (cap_set_proc(cap
) == -1) {
651 DBG_ERR("%s capability %d: cap_set_proc failed: %s\n",
652 enable
? "adding" : "dropping",
653 capability
, strerror(errno
));
657 DBG_INFO("%s capability %d\n",
658 enable
? "added" : "dropped", capability
);
664 #endif /* HAVE_POSIX_CAPABILITIES */
666 /****************************************************************************
667 Gain the oplock capability from the kernel if possible.
668 ****************************************************************************/
670 #if defined(HAVE_POSIX_CAPABILITIES) && defined(CAP_DAC_OVERRIDE)
671 static bool have_cap_dac_override
= true;
673 static bool have_cap_dac_override
= false;
676 void set_effective_capability(enum smbd_capability capability
)
680 if (capability
!= DAC_OVERRIDE_CAPABILITY
|| have_cap_dac_override
) {
681 #if defined(HAVE_POSIX_CAPABILITIES)
682 ret
= set_process_capability(capability
, True
);
683 #endif /* HAVE_POSIX_CAPABILITIES */
687 * Fallback to become_root() if CAP_DAC_OVERRIDE is not
690 if (capability
== DAC_OVERRIDE_CAPABILITY
) {
692 have_cap_dac_override
= false;
694 if (!have_cap_dac_override
) {
700 void drop_effective_capability(enum smbd_capability capability
)
702 if (capability
!= DAC_OVERRIDE_CAPABILITY
|| have_cap_dac_override
) {
703 #if defined(HAVE_POSIX_CAPABILITIES)
704 set_process_capability(capability
, False
);
705 #endif /* HAVE_POSIX_CAPABILITIES */
711 /**************************************************************************
712 Wrapper for random().
713 ****************************************************************************/
715 long sys_random(void)
717 #if defined(HAVE_RANDOM)
718 return (long)random();
719 #elif defined(HAVE_RAND)
722 DEBUG(0,("Error - no random function available !\n"));
727 /**************************************************************************
728 Wrapper for srandom().
729 ****************************************************************************/
731 void sys_srandom(unsigned int seed
)
733 #if defined(HAVE_SRANDOM)
735 #elif defined(HAVE_SRAND)
738 DEBUG(0,("Error - no srandom function available !\n"));
744 #define NGROUPS_MAX 32 /* Guess... */
747 /**************************************************************************
748 Returns equivalent to NGROUPS_MAX - using sysconf if needed.
749 ****************************************************************************/
751 int setgroups_max(void)
753 #if defined(SYSCONF_SC_NGROUPS_MAX)
754 int ret
= sysconf(_SC_NGROUPS_MAX
);
755 return (ret
== -1) ? NGROUPS_MAX
: ret
;
761 int getgroups_max(void)
763 #if defined(DARWINOS)
765 * On MacOS sysconf(_SC_NGROUPS_MAX) returns 16 due to MacOS's group
766 * nesting. However, The initgroups() manpage states the following:
767 * "Note that OS X supports group membership in an unlimited number
768 * of groups. The OS X kernel uses the group list stored in the process
769 * credentials only as an initial cache. Additional group memberships
770 * are determined by communication between the operating system and the
771 * opendirectoryd daemon."
775 return setgroups_max();
779 /**************************************************************************
780 Wrap setgroups and getgroups for systems that declare getgroups() as
781 returning an array of gid_t, but actually return an array of int.
782 ****************************************************************************/
784 #if defined(HAVE_BROKEN_GETGROUPS)
786 #ifdef HAVE_BROKEN_GETGROUPS
792 static int sys_broken_getgroups(int setlen
, gid_t
*gidset
)
798 return getgroups(0, NULL
);
802 * Broken case. We need to allocate a
803 * GID_T array of size setlen.
811 if((group_list
= SMB_MALLOC_ARRAY(GID_T
, setlen
)) == NULL
) {
812 DEBUG(0,("sys_getgroups: Malloc fail.\n"));
816 if((ngroups
= getgroups(setlen
, group_list
)) < 0) {
817 int saved_errno
= errno
;
818 SAFE_FREE(group_list
);
824 * We're safe here as if ngroups > setlen then
825 * getgroups *must* return EINVAL.
826 * pubs.opengroup.org/onlinepubs/009695399/functions/getgroups.html
829 for(i
= 0; i
< ngroups
; i
++)
830 gidset
[i
] = (gid_t
)group_list
[i
];
832 SAFE_FREE(group_list
);
836 static int sys_broken_setgroups(int setlen
, gid_t
*gidset
)
844 if (setlen
< 0 || setlen
> setgroups_max()) {
850 * Broken case. We need to allocate a
851 * GID_T array of size setlen.
854 if((group_list
= SMB_MALLOC_ARRAY(GID_T
, setlen
)) == NULL
) {
855 DEBUG(0,("sys_setgroups: Malloc fail.\n"));
859 for(i
= 0; i
< setlen
; i
++)
860 group_list
[i
] = (GID_T
) gidset
[i
];
862 if(samba_setgroups(setlen
, group_list
) != 0) {
863 int saved_errno
= errno
;
864 SAFE_FREE(group_list
);
869 SAFE_FREE(group_list
);
873 #endif /* HAVE_BROKEN_GETGROUPS */
875 /* This is a list of systems that require the first GID passed to setgroups(2)
876 * to be the effective GID. If your system is one of these, add it here.
878 #if defined (FREEBSD) || defined (DARWINOS)
879 #define USE_BSD_SETGROUPS
882 #if defined(USE_BSD_SETGROUPS)
883 /* Depending on the particular BSD implementation, the first GID that is
884 * passed to setgroups(2) will either be ignored or will set the credential's
885 * effective GID. In either case, the right thing to do is to guarantee that
886 * gidset[0] is the effective GID.
888 static int sys_bsd_setgroups(gid_t primary_gid
, int setlen
, const gid_t
*gidset
)
890 gid_t
*new_gidset
= NULL
;
894 /* setgroups(2) will fail with EINVAL if we pass too many groups. */
895 max
= setgroups_max();
897 /* No group list, just make sure we are setting the effective GID. */
899 return samba_setgroups(1, &primary_gid
);
902 /* If the primary gid is not the first array element, grow the array
903 * and insert it at the front.
905 if (gidset
[0] != primary_gid
) {
906 new_gidset
= SMB_MALLOC_ARRAY(gid_t
, setlen
+ 1);
907 if (new_gidset
== NULL
) {
911 memcpy(new_gidset
+ 1, gidset
, (setlen
* sizeof(gid_t
)));
912 new_gidset
[0] = primary_gid
;
917 DEBUG(3, ("forced to truncate group list from %d to %d\n",
922 #if defined(HAVE_BROKEN_GETGROUPS)
923 ret
= sys_broken_setgroups(setlen
, new_gidset
? new_gidset
: gidset
);
925 ret
= samba_setgroups(setlen
, new_gidset
? new_gidset
: gidset
);
930 SAFE_FREE(new_gidset
);
937 #endif /* USE_BSD_SETGROUPS */
939 /**************************************************************************
940 Wrapper for getgroups. Deals with broken (int) case.
941 ****************************************************************************/
943 int sys_getgroups(int setlen
, gid_t
*gidset
)
945 #if defined(HAVE_BROKEN_GETGROUPS)
946 return sys_broken_getgroups(setlen
, gidset
);
948 return getgroups(setlen
, gidset
);
952 /**************************************************************************
953 Wrapper for setgroups. Deals with broken (int) case and BSD case.
954 ****************************************************************************/
956 int sys_setgroups(gid_t
UNUSED(primary_gid
), int setlen
, gid_t
*gidset
)
958 #if !defined(HAVE_SETGROUPS)
961 #endif /* HAVE_SETGROUPS */
963 #if defined(USE_BSD_SETGROUPS)
964 return sys_bsd_setgroups(primary_gid
, setlen
, gidset
);
965 #elif defined(HAVE_BROKEN_GETGROUPS)
966 return sys_broken_setgroups(setlen
, gidset
);
968 return samba_setgroups(setlen
, gidset
);
972 /****************************************************************************
973 Return the major devicenumber for UNIX extensions.
974 ****************************************************************************/
976 uint32_t unix_dev_major(SMB_DEV_T dev
)
978 #if defined(HAVE_DEVICE_MAJOR_FN)
979 return (uint32_t)major(dev
);
981 return (uint32_t)(dev
>> 8);
985 /****************************************************************************
986 Return the minor devicenumber for UNIX extensions.
987 ****************************************************************************/
989 uint32_t unix_dev_minor(SMB_DEV_T dev
)
991 #if defined(HAVE_DEVICE_MINOR_FN)
992 return (uint32_t)minor(dev
);
994 return (uint32_t)(dev
& 0xff);
998 /**************************************************************************
999 Wrapper for realpath.
1000 ****************************************************************************/
1002 char *sys_realpath(const char *path
)
1006 #ifdef REALPATH_TAKES_NULL
1007 result
= realpath(path
, NULL
);
1009 result
= SMB_MALLOC_ARRAY(char, PATH_MAX
+ 1);
1011 char *resolved_path
= realpath(path
, result
);
1012 if (!resolved_path
) {
1015 /* SMB_ASSERT(result == resolved_path) ? */
1016 result
= resolved_path
;
1024 /*******************************************************************
1025 Return the number of CPUs.
1026 ********************************************************************/
1028 int sys_get_number_of_cores(void)
1032 #if defined(HAVE_SYSCONF)
1033 #if defined(_SC_NPROCESSORS_ONLN)
1034 ret
= (int)sysconf(_SC_NPROCESSORS_ONLN
);
1036 #if defined(_SC_NPROCESSORS_CONF)
1038 ret
= (int)sysconf(_SC_NPROCESSORS_CONF
);
1041 #elif defined(HAVE_SYSCTL) && defined(CTL_HW)
1043 unsigned int len
= sizeof(ret
);
1046 #if defined(HW_AVAILCPU)
1047 name
[1] = HW_AVAILCPU
;
1049 if (sysctl(name
, 2, &ret
, &len
, NULL
, 0) == -1) {
1053 #if defined(HW_NCPU)
1057 if (sysctl(nm
, 2, &count
, &len
, NULL
, 0) == -1) {
1070 bool sys_have_proc_fds(void)
1072 static bool checked
= false;
1073 static bool have_proc_fds
= false;
1078 return have_proc_fds
;
1081 ret
= stat("/proc/self/fd/0", &sb
);
1082 have_proc_fds
= (ret
== 0);
1085 return have_proc_fds
;
1088 char *sys_proc_fd_path(int fd
, struct sys_proc_fd_path_buf
*buf
)
1091 snprintf(buf
->buf
, sizeof(buf
->buf
), "/proc/self/fd/%d", fd
);
1093 SMB_ASSERT(sys_have_proc_fds() && (written
>= 0));