2 Unix SMB/CIFS implementation.
3 Authentication utility functions
4 Copyright (C) Volker Lendecke 2010
6 This program is free software; you can redistribute it and/or modify
7 it under the terms of the GNU General Public License as published by
8 the Free Software Foundation; either version 3 of the License, or
9 (at your option) any later version.
11 This program is distributed in the hope that it will be useful,
12 but WITHOUT ANY WARRANTY; without even the implied warranty of
13 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 GNU General Public License for more details.
16 You should have received a copy of the GNU General Public License
17 along with this program. If not, see <http://www.gnu.org/licenses/>.
22 #include "../lib/crypto/arcfour.h"
23 #include "../librpc/gen_ndr/netlogon.h"
24 #include "../libcli/security/security.h"
25 #include "rpc_client/util_netlogon.h"
26 #include "nsswitch/libwbclient/wbclient.h"
27 #include "lib/winbind_util.h"
31 #define DBGC_CLASS DBGC_AUTH
33 /***************************************************************************
34 Make a server_info struct. Free with TALLOC_FREE().
35 ***************************************************************************/
37 struct auth_serversupplied_info
*make_server_info(TALLOC_CTX
*mem_ctx
)
39 struct auth_serversupplied_info
*result
;
41 result
= talloc_zero(mem_ctx
, struct auth_serversupplied_info
);
43 DEBUG(0, ("talloc failed\n"));
47 /* Initialise the uid and gid values to something non-zero
48 which may save us from giving away root access if there
49 is a bug in allocating these fields. */
51 result
->utok
.uid
= -1;
52 result
->utok
.gid
= -1;
57 /****************************************************************************
58 inits a netr_SamInfo2 structure from an auth_serversupplied_info. sam2 must
59 already be initialized and is used as the talloc parent for its members.
60 *****************************************************************************/
62 NTSTATUS
serverinfo_to_SamInfo2(struct auth_serversupplied_info
*server_info
,
63 struct netr_SamInfo2
*sam2
)
65 struct netr_SamInfo3
*info3
;
67 info3
= copy_netr_SamInfo3(sam2
, server_info
->info3
);
69 return NT_STATUS_NO_MEMORY
;
72 if (server_info
->session_key
.length
) {
73 memcpy(info3
->base
.key
.key
,
74 server_info
->session_key
.data
,
75 MIN(sizeof(info3
->base
.key
.key
),
76 server_info
->session_key
.length
));
78 if (server_info
->lm_session_key
.length
) {
79 memcpy(info3
->base
.LMSessKey
.key
,
80 server_info
->lm_session_key
.data
,
81 MIN(sizeof(info3
->base
.LMSessKey
.key
),
82 server_info
->lm_session_key
.length
));
85 sam2
->base
= info3
->base
;
90 /****************************************************************************
91 inits a netr_SamInfo3 structure from an auth_serversupplied_info. sam3 must
92 already be initialized and is used as the talloc parent for its members.
93 *****************************************************************************/
95 NTSTATUS
serverinfo_to_SamInfo3(const struct auth_serversupplied_info
*server_info
,
96 struct netr_SamInfo3
*sam3
)
98 struct netr_SamInfo3
*info3
;
100 info3
= copy_netr_SamInfo3(sam3
, server_info
->info3
);
102 return NT_STATUS_NO_MEMORY
;
105 if (server_info
->session_key
.length
) {
106 memcpy(info3
->base
.key
.key
,
107 server_info
->session_key
.data
,
108 MIN(sizeof(info3
->base
.key
.key
),
109 server_info
->session_key
.length
));
111 if (server_info
->lm_session_key
.length
) {
112 memcpy(info3
->base
.LMSessKey
.key
,
113 server_info
->lm_session_key
.data
,
114 MIN(sizeof(info3
->base
.LMSessKey
.key
),
115 server_info
->lm_session_key
.length
));
118 sam3
->base
= info3
->base
;
126 /****************************************************************************
127 inits a netr_SamInfo6 structure from an auth_serversupplied_info. sam6 must
128 already be initialized and is used as the talloc parent for its members.
129 *****************************************************************************/
131 NTSTATUS
serverinfo_to_SamInfo6(struct auth_serversupplied_info
*server_info
,
132 struct netr_SamInfo6
*sam6
)
134 struct pdb_domain_info
*dominfo
;
135 struct netr_SamInfo3
*info3
;
137 if ((pdb_capabilities() & PDB_CAP_ADS
) == 0) {
138 DEBUG(10,("Not adding validation info level 6 "
139 "without ADS passdb backend\n"));
140 return NT_STATUS_INVALID_INFO_CLASS
;
143 dominfo
= pdb_get_domain_info(sam6
);
144 if (dominfo
== NULL
) {
145 return NT_STATUS_NO_MEMORY
;
148 info3
= copy_netr_SamInfo3(sam6
, server_info
->info3
);
150 return NT_STATUS_NO_MEMORY
;
153 if (server_info
->session_key
.length
) {
154 memcpy(info3
->base
.key
.key
,
155 server_info
->session_key
.data
,
156 MIN(sizeof(info3
->base
.key
.key
),
157 server_info
->session_key
.length
));
159 if (server_info
->lm_session_key
.length
) {
160 memcpy(info3
->base
.LMSessKey
.key
,
161 server_info
->lm_session_key
.data
,
162 MIN(sizeof(info3
->base
.LMSessKey
.key
),
163 server_info
->lm_session_key
.length
));
166 sam6
->base
= info3
->base
;
171 sam6
->dns_domainname
.string
= talloc_strdup(sam6
, dominfo
->dns_domain
);
172 if (sam6
->dns_domainname
.string
== NULL
) {
173 return NT_STATUS_NO_MEMORY
;
176 sam6
->principle
.string
= talloc_asprintf(sam6
, "%s@%s",
177 sam6
->base
.account_name
.string
,
178 sam6
->dns_domainname
.string
);
179 if (sam6
->principle
.string
== NULL
) {
180 return NT_STATUS_NO_MEMORY
;
186 static NTSTATUS
append_netr_SidAttr(TALLOC_CTX
*mem_ctx
,
187 struct netr_SidAttr
**sids
,
189 const struct dom_sid2
*asid
,
194 *sids
= talloc_realloc(mem_ctx
, *sids
, struct netr_SidAttr
, t
+ 1);
196 return NT_STATUS_NO_MEMORY
;
198 (*sids
)[t
].sid
= dom_sid_dup(*sids
, asid
);
199 if ((*sids
)[t
].sid
== NULL
) {
200 return NT_STATUS_NO_MEMORY
;
202 (*sids
)[t
].attributes
= attributes
;
208 /* Fills the samr_RidWithAttributeArray with the provided sids.
209 * If it happens that we have additional groups that do not belong
210 * to the domain, add their sids as extra sids */
211 static NTSTATUS
group_sids_to_info3(struct netr_SamInfo3
*info3
,
212 const struct dom_sid
*sids
,
215 uint32_t attributes
= SE_GROUP_MANDATORY
|
216 SE_GROUP_ENABLED_BY_DEFAULT
|
218 struct samr_RidWithAttributeArray
*groups
;
219 struct dom_sid
*domain_sid
;
225 domain_sid
= info3
->base
.domain_sid
;
226 groups
= &info3
->base
.groups
;
228 groups
->rids
= talloc_array(info3
,
229 struct samr_RidWithAttribute
, num_sids
);
231 return NT_STATUS_NO_MEMORY
;
234 for (i
= 0; i
< num_sids
; i
++) {
235 ok
= sid_peek_check_rid(domain_sid
, &sids
[i
], &rid
);
237 /* store domain group rid */
238 groups
->rids
[groups
->count
].rid
= rid
;
239 groups
->rids
[groups
->count
].attributes
= attributes
;
244 /* if this wasn't a domain sid, add it as extra sid */
245 status
= append_netr_SidAttr(info3
, &info3
->sids
,
247 &sids
[i
], attributes
);
248 if (!NT_STATUS_IS_OK(status
)) {
256 #define RET_NOMEM(ptr) do { \
258 TALLOC_FREE(info3); \
259 return NT_STATUS_NO_MEMORY; \
262 NTSTATUS
samu_to_SamInfo3(TALLOC_CTX
*mem_ctx
,
264 const char *login_server
,
265 struct netr_SamInfo3
**_info3
,
266 struct extra_auth_info
*extra
)
268 struct netr_SamInfo3
*info3
;
269 const struct dom_sid
*user_sid
;
270 const struct dom_sid
*group_sid
;
271 struct dom_sid domain_sid
;
272 struct dom_sid
*group_sids
;
273 uint32_t num_group_sids
= 0;
279 user_sid
= pdb_get_user_sid(samu
);
280 group_sid
= pdb_get_group_sid(samu
);
282 if (!user_sid
|| !group_sid
) {
283 DEBUG(1, ("Sam account is missing sids!\n"));
284 return NT_STATUS_UNSUCCESSFUL
;
287 info3
= talloc_zero(mem_ctx
, struct netr_SamInfo3
);
289 return NT_STATUS_NO_MEMORY
;
292 ZERO_STRUCT(domain_sid
);
294 /* check if this is a "Unix Users" domain user,
295 * we need to handle it in a special way if that's the case */
296 if (sid_check_is_in_unix_users(user_sid
)) {
297 /* in info3 you can only set rids for the user and the
298 * primary group, and the domain sid must be that of
301 * Store a completely bogus value here.
302 * The real SID is stored in the extra sids.
303 * Other code will know to look there if (-1) is found
305 info3
->base
.rid
= (uint32_t)(-1);
306 sid_copy(&extra
->user_sid
, user_sid
);
308 DEBUG(10, ("Unix User found in struct samu. Rid marked as "
309 "special and sid (%s) saved as extra sid\n",
310 sid_string_dbg(user_sid
)));
312 sid_copy(&domain_sid
, user_sid
);
313 sid_split_rid(&domain_sid
, &info3
->base
.rid
);
316 if (is_null_sid(&domain_sid
)) {
317 sid_copy(&domain_sid
, get_global_sam_sid());
320 /* check if this is a "Unix Groups" domain group,
321 * if so we need special handling */
322 if (sid_check_is_in_unix_groups(group_sid
)) {
323 /* in info3 you can only set rids for the user and the
324 * primary group, and the domain sid must be that of
327 * Store a completely bogus value here.
328 * The real SID is stored in the extra sids.
329 * Other code will know to look there if (-1) is found
331 info3
->base
.primary_gid
= (uint32_t)(-1);
332 sid_copy(&extra
->pgid_sid
, group_sid
);
334 DEBUG(10, ("Unix Group found in struct samu. Rid marked as "
335 "special and sid (%s) saved as extra sid\n",
336 sid_string_dbg(group_sid
)));
339 ok
= sid_peek_check_rid(&domain_sid
, group_sid
,
340 &info3
->base
.primary_gid
);
342 DEBUG(1, ("The primary group domain sid(%s) does not "
343 "match the domain sid(%s) for %s(%s)\n",
344 sid_string_dbg(group_sid
),
345 sid_string_dbg(&domain_sid
),
346 pdb_get_username(samu
),
347 sid_string_dbg(user_sid
)));
349 return NT_STATUS_UNSUCCESSFUL
;
353 unix_to_nt_time(&info3
->base
.logon_time
, pdb_get_logon_time(samu
));
354 unix_to_nt_time(&info3
->base
.logoff_time
, get_time_t_max());
355 unix_to_nt_time(&info3
->base
.kickoff_time
, get_time_t_max());
356 unix_to_nt_time(&info3
->base
.last_password_change
,
357 pdb_get_pass_last_set_time(samu
));
358 unix_to_nt_time(&info3
->base
.allow_password_change
,
359 pdb_get_pass_can_change_time(samu
));
360 unix_to_nt_time(&info3
->base
.force_password_change
,
361 pdb_get_pass_must_change_time(samu
));
363 tmp
= pdb_get_username(samu
);
365 info3
->base
.account_name
.string
= talloc_strdup(info3
, tmp
);
366 RET_NOMEM(info3
->base
.account_name
.string
);
368 tmp
= pdb_get_fullname(samu
);
370 info3
->base
.full_name
.string
= talloc_strdup(info3
, tmp
);
371 RET_NOMEM(info3
->base
.full_name
.string
);
373 tmp
= pdb_get_logon_script(samu
);
375 info3
->base
.logon_script
.string
= talloc_strdup(info3
, tmp
);
376 RET_NOMEM(info3
->base
.logon_script
.string
);
378 tmp
= pdb_get_profile_path(samu
);
380 info3
->base
.profile_path
.string
= talloc_strdup(info3
, tmp
);
381 RET_NOMEM(info3
->base
.profile_path
.string
);
383 tmp
= pdb_get_homedir(samu
);
385 info3
->base
.home_directory
.string
= talloc_strdup(info3
, tmp
);
386 RET_NOMEM(info3
->base
.home_directory
.string
);
388 tmp
= pdb_get_dir_drive(samu
);
390 info3
->base
.home_drive
.string
= talloc_strdup(info3
, tmp
);
391 RET_NOMEM(info3
->base
.home_drive
.string
);
394 info3
->base
.logon_count
= pdb_get_logon_count(samu
);
395 info3
->base
.bad_password_count
= pdb_get_bad_password_count(samu
);
397 info3
->base
.logon_domain
.string
= talloc_strdup(info3
,
398 pdb_get_domain(samu
));
399 RET_NOMEM(info3
->base
.logon_domain
.string
);
401 info3
->base
.domain_sid
= dom_sid_dup(info3
, &domain_sid
);
402 RET_NOMEM(info3
->base
.domain_sid
);
404 status
= pdb_enum_group_memberships(mem_ctx
, samu
,
407 if (!NT_STATUS_IS_OK(status
)) {
408 DEBUG(1, ("Failed to get groups from sam account.\n"));
413 if (num_group_sids
) {
414 status
= group_sids_to_info3(info3
, group_sids
, num_group_sids
);
415 if (!NT_STATUS_IS_OK(status
)) {
421 /* We don't need sids and gids after the conversion */
422 TALLOC_FREE(group_sids
);
426 /* FIXME: should we add other flags ? */
427 info3
->base
.user_flags
= NETLOGON_EXTRA_SIDS
;
430 info3
->base
.logon_server
.string
= talloc_strdup(info3
, login_server
);
431 RET_NOMEM(info3
->base
.logon_server
.string
);
434 info3
->base
.acct_flags
= pdb_get_acct_ctrl(samu
);
440 NTSTATUS
passwd_to_SamInfo3(TALLOC_CTX
*mem_ctx
,
441 const char *unix_username
,
442 const struct passwd
*pwd
,
443 struct netr_SamInfo3
**pinfo3
)
445 struct netr_SamInfo3
*info3
;
448 const char *domain_name
= NULL
;
449 const char *user_name
= NULL
;
450 struct dom_sid domain_sid
;
451 struct dom_sid user_sid
;
452 struct dom_sid group_sid
;
453 enum lsa_SidType type
;
454 uint32_t num_sids
= 0;
455 struct dom_sid
*user_sids
= NULL
;
458 tmp_ctx
= talloc_stackframe();
460 ok
= lookup_name_smbconf(tmp_ctx
,
468 status
= NT_STATUS_NO_SUCH_USER
;
472 if (type
!= SID_NAME_USER
) {
473 status
= NT_STATUS_NO_SUCH_USER
;
477 ok
= winbind_lookup_usersids(tmp_ctx
,
481 /* Check if winbind is running */
484 * Winbind is running and the first element of the user_sids
485 * is the primary group.
488 group_sid
= user_sids
[0];
492 * Winbind is not running, try to create the group_sid from the
497 * This can lead to a primary group of S-1-22-2-XX which
498 * will be rejected by other Samba code.
500 gid_to_sid(&group_sid
, pwd
->pw_gid
);
502 ZERO_STRUCT(domain_sid
);
505 * If we are a unix group, set the group_sid to the
506 * 'Domain Users' RID of 513 which will always resolve to a
509 if (sid_check_is_in_unix_groups(&group_sid
)) {
510 sid_compose(&group_sid
,
511 get_global_sam_sid(),
516 /* Make sure we have a valid group sid */
517 ok
= !is_null_sid(&group_sid
);
519 status
= NT_STATUS_NO_SUCH_USER
;
523 /* Construct a netr_SamInfo3 from the information we have */
524 info3
= talloc_zero(tmp_ctx
, struct netr_SamInfo3
);
526 status
= NT_STATUS_NO_MEMORY
;
530 info3
->base
.account_name
.string
= talloc_strdup(info3
, unix_username
);
531 if (info3
->base
.account_name
.string
== NULL
) {
532 status
= NT_STATUS_NO_MEMORY
;
536 ZERO_STRUCT(domain_sid
);
538 sid_copy(&domain_sid
, &user_sid
);
539 sid_split_rid(&domain_sid
, &info3
->base
.rid
);
540 info3
->base
.domain_sid
= dom_sid_dup(info3
, &domain_sid
);
542 ok
= sid_peek_check_rid(&domain_sid
, &group_sid
,
543 &info3
->base
.primary_gid
);
545 DEBUG(1, ("The primary group domain sid(%s) does not "
546 "match the domain sid(%s) for %s(%s)\n",
547 sid_string_dbg(&group_sid
),
548 sid_string_dbg(&domain_sid
),
550 sid_string_dbg(&user_sid
)));
551 status
= NT_STATUS_INVALID_SID
;
555 info3
->base
.acct_flags
= ACB_NORMAL
;
558 status
= group_sids_to_info3(info3
, user_sids
, num_sids
);
559 if (!NT_STATUS_IS_OK(status
)) {
564 *pinfo3
= talloc_steal(mem_ctx
, info3
);
566 status
= NT_STATUS_OK
;
568 talloc_free(tmp_ctx
);
575 #define RET_NOMEM(ptr) do { \
577 TALLOC_FREE(info3); \
581 struct netr_SamInfo3
*copy_netr_SamInfo3(TALLOC_CTX
*mem_ctx
,
582 struct netr_SamInfo3
*orig
)
584 struct netr_SamInfo3
*info3
;
588 info3
= talloc_zero(mem_ctx
, struct netr_SamInfo3
);
589 if (!info3
) return NULL
;
591 status
= copy_netr_SamBaseInfo(info3
, &orig
->base
, &info3
->base
);
592 if (!NT_STATUS_IS_OK(status
)) {
597 if (orig
->sidcount
) {
598 info3
->sidcount
= orig
->sidcount
;
599 info3
->sids
= talloc_array(info3
, struct netr_SidAttr
,
601 RET_NOMEM(info3
->sids
);
602 for (i
= 0; i
< orig
->sidcount
; i
++) {
603 info3
->sids
[i
].sid
= dom_sid_dup(info3
->sids
,
605 RET_NOMEM(info3
->sids
[i
].sid
);
606 info3
->sids
[i
].attributes
=
607 orig
->sids
[i
].attributes
;
614 static NTSTATUS
wbcsids_to_samr_RidWithAttributeArray(
616 struct samr_RidWithAttributeArray
*groups
,
617 const struct dom_sid
*domain_sid
,
618 const struct wbcSidWithAttr
*sids
,
621 unsigned int i
, j
= 0;
624 groups
->rids
= talloc_array(mem_ctx
,
625 struct samr_RidWithAttribute
, num_sids
);
627 return NT_STATUS_NO_MEMORY
;
630 /* a wbcDomainSid is the same as a dom_sid */
631 for (i
= 0; i
< num_sids
; i
++) {
632 ok
= sid_peek_check_rid(domain_sid
,
633 (const struct dom_sid
*)&sids
[i
].sid
,
634 &groups
->rids
[j
].rid
);
637 groups
->rids
[j
].attributes
= SE_GROUP_MANDATORY
|
638 SE_GROUP_ENABLED_BY_DEFAULT
|
647 static NTSTATUS
wbcsids_to_netr_SidAttrArray(
648 const struct dom_sid
*domain_sid
,
649 const struct wbcSidWithAttr
*sids
,
652 struct netr_SidAttr
**_info3_sids
,
653 uint32_t *info3_num_sids
)
655 unsigned int i
, j
= 0;
656 struct netr_SidAttr
*info3_sids
;
658 info3_sids
= talloc_array(mem_ctx
, struct netr_SidAttr
, num_sids
);
659 if (info3_sids
== NULL
) {
660 return NT_STATUS_NO_MEMORY
;
663 /* a wbcDomainSid is the same as a dom_sid */
664 for (i
= 0; i
< num_sids
; i
++) {
665 const struct dom_sid
*sid
;
667 sid
= (const struct dom_sid
*)&sids
[i
].sid
;
669 if (dom_sid_in_domain(domain_sid
, sid
)) {
673 info3_sids
[j
].sid
= dom_sid_dup(info3_sids
, sid
);
674 if (info3_sids
[j
].sid
== NULL
) {
675 talloc_free(info3_sids
);
676 return NT_STATUS_NO_MEMORY
;
678 info3_sids
[j
].attributes
= SE_GROUP_MANDATORY
|
679 SE_GROUP_ENABLED_BY_DEFAULT
|
685 *_info3_sids
= info3_sids
;
689 struct netr_SamInfo3
*wbcAuthUserInfo_to_netr_SamInfo3(TALLOC_CTX
*mem_ctx
,
690 const struct wbcAuthUserInfo
*info
)
692 struct netr_SamInfo3
*info3
;
693 struct dom_sid user_sid
;
694 struct dom_sid group_sid
;
695 struct dom_sid domain_sid
;
699 memcpy(&user_sid
, &info
->sids
[0].sid
, sizeof(user_sid
));
700 memcpy(&group_sid
, &info
->sids
[1].sid
, sizeof(group_sid
));
702 info3
= talloc_zero(mem_ctx
, struct netr_SamInfo3
);
703 if (!info3
) return NULL
;
705 unix_to_nt_time(&info3
->base
.logon_time
, info
->logon_time
);
706 unix_to_nt_time(&info3
->base
.logoff_time
, info
->logoff_time
);
707 unix_to_nt_time(&info3
->base
.kickoff_time
, info
->kickoff_time
);
708 unix_to_nt_time(&info3
->base
.last_password_change
, info
->pass_last_set_time
);
709 unix_to_nt_time(&info3
->base
.allow_password_change
,
710 info
->pass_can_change_time
);
711 unix_to_nt_time(&info3
->base
.force_password_change
,
712 info
->pass_must_change_time
);
714 if (info
->account_name
) {
715 info3
->base
.account_name
.string
=
716 talloc_strdup(info3
, info
->account_name
);
717 RET_NOMEM(info3
->base
.account_name
.string
);
719 if (info
->full_name
) {
720 info3
->base
.full_name
.string
=
721 talloc_strdup(info3
, info
->full_name
);
722 RET_NOMEM(info3
->base
.full_name
.string
);
724 if (info
->logon_script
) {
725 info3
->base
.logon_script
.string
=
726 talloc_strdup(info3
, info
->logon_script
);
727 RET_NOMEM(info3
->base
.logon_script
.string
);
729 if (info
->profile_path
) {
730 info3
->base
.profile_path
.string
=
731 talloc_strdup(info3
, info
->profile_path
);
732 RET_NOMEM(info3
->base
.profile_path
.string
);
734 if (info
->home_directory
) {
735 info3
->base
.home_directory
.string
=
736 talloc_strdup(info3
, info
->home_directory
);
737 RET_NOMEM(info3
->base
.home_directory
.string
);
739 if (info
->home_drive
) {
740 info3
->base
.home_drive
.string
=
741 talloc_strdup(info3
, info
->home_drive
);
742 RET_NOMEM(info3
->base
.home_drive
.string
);
745 info3
->base
.logon_count
= info
->logon_count
;
746 info3
->base
.bad_password_count
= info
->bad_password_count
;
748 sid_copy(&domain_sid
, &user_sid
);
749 sid_split_rid(&domain_sid
, &info3
->base
.rid
);
751 ok
= sid_peek_check_rid(&domain_sid
, &group_sid
,
752 &info3
->base
.primary_gid
);
754 DEBUG(1, ("The primary group sid domain does not"
755 "match user sid domain for user: %s\n",
756 info
->account_name
));
761 status
= wbcsids_to_samr_RidWithAttributeArray(info3
,
766 if (!NT_STATUS_IS_OK(status
)) {
771 status
= wbcsids_to_netr_SidAttrArray(&domain_sid
,
777 if (!NT_STATUS_IS_OK(status
)) {
782 info3
->base
.user_flags
= info
->user_flags
;
783 memcpy(info3
->base
.key
.key
, info
->user_session_key
, 16);
785 if (info
->logon_server
) {
786 info3
->base
.logon_server
.string
=
787 talloc_strdup(info3
, info
->logon_server
);
788 RET_NOMEM(info3
->base
.logon_server
.string
);
790 if (info
->domain_name
) {
791 info3
->base
.logon_domain
.string
=
792 talloc_strdup(info3
, info
->domain_name
);
793 RET_NOMEM(info3
->base
.logon_domain
.string
);
796 info3
->base
.domain_sid
= dom_sid_dup(info3
, &domain_sid
);
797 RET_NOMEM(info3
->base
.domain_sid
);
799 memcpy(info3
->base
.LMSessKey
.key
, info
->lm_session_key
, 8);
800 info3
->base
.acct_flags
= info
->acct_flags
;