2 Unix SMB/CIFS implementation.
4 Winbind daemon connection manager
6 Copyright (C) Tim Potter 2001
7 Copyright (C) Andrew Bartlett 2002
8 Copyright (C) Gerald (Jerry) Carter 2003-2005.
9 Copyright (C) Volker Lendecke 2004-2005
10 Copyright (C) Jeremy Allison 2006
12 This program is free software; you can redistribute it and/or modify
13 it under the terms of the GNU General Public License as published by
14 the Free Software Foundation; either version 3 of the License, or
15 (at your option) any later version.
17 This program is distributed in the hope that it will be useful,
18 but WITHOUT ANY WARRANTY; without even the implied warranty of
19 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
20 GNU General Public License for more details.
22 You should have received a copy of the GNU General Public License
23 along with this program. If not, see <http://www.gnu.org/licenses/>.
27 We need to manage connections to domain controllers without having to
28 mess up the main winbindd code with other issues. The aim of the
29 connection manager is to:
31 - make connections to domain controllers and cache them
32 - re-establish connections when networks or servers go down
33 - centralise the policy on connection timeouts, domain controller
35 - manage re-entrancy for when winbindd becomes able to handle
36 multiple outstanding rpc requests
38 Why not have connection management as part of the rpc layer like tng?
39 Good question. This code may morph into libsmb/rpc_cache.c or something
40 like that but at the moment it's simply staying as part of winbind. I
41 think the TNG architecture of forcing every user of the rpc layer to use
42 the connection caching system is a bad idea. It should be an optional
43 method of using the routines.
45 The TNG design is quite good but I disagree with some aspects of the
53 - I'm pretty annoyed by all the make_nmb_name() stuff. It should be
54 moved down into another function.
56 - Take care when destroying cli_structs as they can be shared between
65 #define DBGC_CLASS DBGC_WINBIND
69 struct sockaddr_storage ss
;
72 extern struct winbindd_methods reconnect_methods
;
73 extern bool override_logfile
;
75 static NTSTATUS
init_dc_connection_network(struct winbindd_domain
*domain
);
76 static void set_dc_type_and_flags( struct winbindd_domain
*domain
);
77 static bool get_dcs(TALLOC_CTX
*mem_ctx
, struct winbindd_domain
*domain
,
78 struct dc_name_ip
**dcs
, int *num_dcs
);
80 /****************************************************************
81 Child failed to find DC's. Reschedule check.
82 ****************************************************************/
84 static void msg_failed_to_go_online(struct messaging_context
*msg
,
87 struct server_id server_id
,
90 struct winbindd_domain
*domain
;
91 const char *domainname
= (const char *)data
->data
;
93 if (data
->data
== NULL
|| data
->length
== 0) {
97 DEBUG(5,("msg_fail_to_go_online: received for domain %s.\n", domainname
));
99 for (domain
= domain_list(); domain
; domain
= domain
->next
) {
100 if (domain
->internal
) {
104 if (strequal(domain
->name
, domainname
)) {
105 if (domain
->online
) {
106 /* We're already online, ignore. */
107 DEBUG(5,("msg_fail_to_go_online: domain %s "
108 "already online.\n", domainname
));
112 /* Reschedule the online check. */
113 set_domain_offline(domain
);
119 /****************************************************************
120 Actually cause a reconnect from a message.
121 ****************************************************************/
123 static void msg_try_to_go_online(struct messaging_context
*msg
,
126 struct server_id server_id
,
129 struct winbindd_domain
*domain
;
130 const char *domainname
= (const char *)data
->data
;
132 if (data
->data
== NULL
|| data
->length
== 0) {
136 DEBUG(5,("msg_try_to_go_online: received for domain %s.\n", domainname
));
138 for (domain
= domain_list(); domain
; domain
= domain
->next
) {
139 if (domain
->internal
) {
143 if (strequal(domain
->name
, domainname
)) {
145 if (domain
->online
) {
146 /* We're already online, ignore. */
147 DEBUG(5,("msg_try_to_go_online: domain %s "
148 "already online.\n", domainname
));
152 /* This call takes care of setting the online
153 flag to true if we connected, or re-adding
154 the offline handler if false. Bypasses online
155 check so always does network calls. */
157 init_dc_connection_network(domain
);
163 /****************************************************************
164 Fork a child to try and contact a DC. Do this as contacting a
165 DC requires blocking lookups and we don't want to block our
167 ****************************************************************/
169 static bool fork_child_dc_connect(struct winbindd_domain
*domain
)
171 struct dc_name_ip
*dcs
= NULL
;
173 TALLOC_CTX
*mem_ctx
= NULL
;
174 pid_t parent_pid
= sys_getpid();
180 if (domain
->dc_probe_pid
!= (pid_t
)-1) {
182 * We might already have a DC probe
183 * child working, check.
185 if (process_exists_by_pid(domain
->dc_probe_pid
)) {
186 DEBUG(10,("fork_child_dc_connect: pid %u already "
187 "checking for DC's.\n",
188 (unsigned int)domain
->dc_probe_pid
));
191 domain
->dc_probe_pid
= (pid_t
)-1;
194 domain
->dc_probe_pid
= sys_fork();
196 if (domain
->dc_probe_pid
== (pid_t
)-1) {
197 DEBUG(0, ("fork_child_dc_connect: Could not fork: %s\n", strerror(errno
)));
201 if (domain
->dc_probe_pid
!= (pid_t
)0) {
203 messaging_register(winbind_messaging_context(), NULL
,
204 MSG_WINBIND_TRY_TO_GO_ONLINE
,
205 msg_try_to_go_online
);
206 messaging_register(winbind_messaging_context(), NULL
,
207 MSG_WINBIND_FAILED_TO_GO_ONLINE
,
208 msg_failed_to_go_online
);
214 /* Leave messages blocked - we will never process one. */
216 if (!override_logfile
) {
217 if (asprintf(&lfile
, "%s/log.winbindd-dc-connect", get_dyn_LOGFILEBASE()) == -1) {
218 DEBUG(0, ("fork_child_dc_connect: out of memory.\n"));
223 if (!winbindd_reinit_after_fork(lfile
)) {
224 messaging_send_buf(winbind_messaging_context(),
225 pid_to_procid(parent_pid
),
226 MSG_WINBIND_FAILED_TO_GO_ONLINE
,
227 (uint8
*)domain
->name
,
228 strlen(domain
->name
)+1);
233 mem_ctx
= talloc_init("fork_child_dc_connect");
235 DEBUG(0,("talloc_init failed.\n"));
236 messaging_send_buf(winbind_messaging_context(),
237 pid_to_procid(parent_pid
),
238 MSG_WINBIND_FAILED_TO_GO_ONLINE
,
239 (uint8
*)domain
->name
,
240 strlen(domain
->name
)+1);
244 if ((!get_dcs(mem_ctx
, domain
, &dcs
, &num_dcs
)) || (num_dcs
== 0)) {
245 /* Still offline ? Can't find DC's. */
246 messaging_send_buf(winbind_messaging_context(),
247 pid_to_procid(parent_pid
),
248 MSG_WINBIND_FAILED_TO_GO_ONLINE
,
249 (uint8
*)domain
->name
,
250 strlen(domain
->name
)+1);
254 /* We got a DC. Send a message to our parent to get it to
255 try and do the same. */
257 messaging_send_buf(winbind_messaging_context(),
258 pid_to_procid(parent_pid
),
259 MSG_WINBIND_TRY_TO_GO_ONLINE
,
260 (uint8
*)domain
->name
,
261 strlen(domain
->name
)+1);
265 /****************************************************************
266 Handler triggered if we're offline to try and detect a DC.
267 ****************************************************************/
269 static void check_domain_online_handler(struct event_context
*ctx
,
270 struct timed_event
*te
,
274 struct winbindd_domain
*domain
=
275 (struct winbindd_domain
*)private_data
;
277 DEBUG(10,("check_domain_online_handler: called for domain "
278 "%s (online = %s)\n", domain
->name
,
279 domain
->online
? "True" : "False" ));
281 TALLOC_FREE(domain
->check_online_event
);
283 /* Are we still in "startup" mode ? */
285 if (domain
->startup
&& (now
.tv_sec
> domain
->startup_time
+ 30)) {
286 /* No longer in "startup" mode. */
287 DEBUG(10,("check_domain_online_handler: domain %s no longer in 'startup' mode.\n",
289 domain
->startup
= False
;
292 /* We've been told to stay offline, so stay
295 if (get_global_winbindd_state_offline()) {
296 DEBUG(10,("check_domain_online_handler: domain %s remaining globally offline\n",
301 /* Fork a child to test if it can contact a DC.
302 If it can then send ourselves a message to
303 cause a reconnect. */
305 fork_child_dc_connect(domain
);
308 /****************************************************************
309 If we're still offline setup the timeout check.
310 ****************************************************************/
312 static void calc_new_online_timeout_check(struct winbindd_domain
*domain
)
314 int wbr
= lp_winbind_reconnect_delay();
316 if (domain
->startup
) {
317 domain
->check_online_timeout
= 10;
318 } else if (domain
->check_online_timeout
< wbr
) {
319 domain
->check_online_timeout
= wbr
;
323 /****************************************************************
324 Set domain offline and also add handler to put us back online
326 ****************************************************************/
328 void set_domain_offline(struct winbindd_domain
*domain
)
330 DEBUG(10,("set_domain_offline: called for domain %s\n",
333 TALLOC_FREE(domain
->check_online_event
);
335 if (domain
->internal
) {
336 DEBUG(3,("set_domain_offline: domain %s is internal - logic error.\n",
341 domain
->online
= False
;
343 /* Offline domains are always initialized. They're
344 re-initialized when they go back online. */
346 domain
->initialized
= True
;
348 /* We only add the timeout handler that checks and
349 allows us to go back online when we've not
350 been told to remain offline. */
352 if (get_global_winbindd_state_offline()) {
353 DEBUG(10,("set_domain_offline: domain %s remaining globally offline\n",
358 /* If we're in statup mode, check again in 10 seconds, not in
359 lp_winbind_reconnect_delay() seconds (which is 30 seconds by default). */
361 calc_new_online_timeout_check(domain
);
363 domain
->check_online_event
= event_add_timed(winbind_event_context(),
365 timeval_current_ofs(domain
->check_online_timeout
,0),
366 check_domain_online_handler
,
369 /* The above *has* to succeed for winbindd to work. */
370 if (!domain
->check_online_event
) {
371 smb_panic("set_domain_offline: failed to add online handler");
374 DEBUG(10,("set_domain_offline: added event handler for domain %s\n",
377 /* Send an offline message to the idmap child when our
378 primary domain goes offline */
380 if ( domain
->primary
) {
381 struct winbindd_child
*idmap
= idmap_child();
383 if ( idmap
->pid
!= 0 ) {
384 messaging_send_buf(winbind_messaging_context(),
385 pid_to_procid(idmap
->pid
),
387 (uint8
*)domain
->name
,
388 strlen(domain
->name
)+1);
395 /****************************************************************
396 Set domain online - if allowed.
397 ****************************************************************/
399 static void set_domain_online(struct winbindd_domain
*domain
)
401 DEBUG(10,("set_domain_online: called for domain %s\n",
404 if (domain
->internal
) {
405 DEBUG(3,("set_domain_online: domain %s is internal - logic error.\n",
410 if (get_global_winbindd_state_offline()) {
411 DEBUG(10,("set_domain_online: domain %s remaining globally offline\n",
416 winbindd_set_locator_kdc_envs(domain
);
418 /* If we are waiting to get a krb5 ticket, trigger immediately. */
419 ccache_regain_all_now();
421 /* Ok, we're out of any startup mode now... */
422 domain
->startup
= False
;
424 if (domain
->online
== False
) {
425 /* We were offline - now we're online. We default to
426 using the MS-RPC backend if we started offline,
427 and if we're going online for the first time we
428 should really re-initialize the backends and the
429 checks to see if we're talking to an AD or NT domain.
432 domain
->initialized
= False
;
434 /* 'reconnect_methods' is the MS-RPC backend. */
435 if (domain
->backend
== &reconnect_methods
) {
436 domain
->backend
= NULL
;
440 /* Ensure we have no online timeout checks. */
441 domain
->check_online_timeout
= 0;
442 TALLOC_FREE(domain
->check_online_event
);
444 /* Ensure we ignore any pending child messages. */
445 messaging_deregister(winbind_messaging_context(),
446 MSG_WINBIND_TRY_TO_GO_ONLINE
, NULL
);
447 messaging_deregister(winbind_messaging_context(),
448 MSG_WINBIND_FAILED_TO_GO_ONLINE
, NULL
);
450 domain
->online
= True
;
452 /* Send an online message to the idmap child when our
453 primary domain comes online */
455 if ( domain
->primary
) {
456 struct winbindd_child
*idmap
= idmap_child();
458 if ( idmap
->pid
!= 0 ) {
459 messaging_send_buf(winbind_messaging_context(),
460 pid_to_procid(idmap
->pid
),
462 (uint8
*)domain
->name
,
463 strlen(domain
->name
)+1);
470 /****************************************************************
471 Requested to set a domain online.
472 ****************************************************************/
474 void set_domain_online_request(struct winbindd_domain
*domain
)
478 DEBUG(10,("set_domain_online_request: called for domain %s\n",
481 if (get_global_winbindd_state_offline()) {
482 DEBUG(10,("set_domain_online_request: domain %s remaining globally offline\n",
487 /* We've been told it's safe to go online and
488 try and connect to a DC. But I don't believe it
489 because network manager seems to lie.
490 Wait at least 5 seconds. Heuristics suck... */
495 /* Go into "startup" mode again. */
496 domain
->startup_time
= tev
.tv_sec
;
497 domain
->startup
= True
;
501 if (!domain
->check_online_event
) {
502 /* If we've come from being globally offline we
503 don't have a check online event handler set.
504 We need to add one now we're trying to go
507 DEBUG(10,("set_domain_online_request: domain %s was globally offline.\n",
511 TALLOC_FREE(domain
->check_online_event
);
513 domain
->check_online_event
= event_add_timed(winbind_event_context(),
516 check_domain_online_handler
,
519 /* The above *has* to succeed for winbindd to work. */
520 if (!domain
->check_online_event
) {
521 smb_panic("set_domain_online_request: failed to add online handler");
525 /****************************************************************
526 Add -ve connection cache entries for domain and realm.
527 ****************************************************************/
529 void winbind_add_failed_connection_entry(const struct winbindd_domain
*domain
,
533 add_failed_connection_entry(domain
->name
, server
, result
);
534 /* If this was the saf name for the last thing we talked to,
536 saf_delete(domain
->name
);
537 if (*domain
->alt_name
) {
538 add_failed_connection_entry(domain
->alt_name
, server
, result
);
539 saf_delete(domain
->alt_name
);
541 winbindd_unset_locator_kdc_env(domain
);
544 /* Choose between anonymous or authenticated connections. We need to use
545 an authenticated connection if DCs have the RestrictAnonymous registry
546 entry set > 0, or the "Additional restrictions for anonymous
547 connections" set in the win2k Local Security Policy.
549 Caller to free() result in domain, username, password
552 static void cm_get_ipc_userpass(char **username
, char **domain
, char **password
)
554 *username
= (char *)secrets_fetch(SECRETS_AUTH_USER
, NULL
);
555 *domain
= (char *)secrets_fetch(SECRETS_AUTH_DOMAIN
, NULL
);
556 *password
= (char *)secrets_fetch(SECRETS_AUTH_PASSWORD
, NULL
);
558 if (*username
&& **username
) {
560 if (!*domain
|| !**domain
)
561 *domain
= smb_xstrdup(lp_workgroup());
563 if (!*password
|| !**password
)
564 *password
= smb_xstrdup("");
566 DEBUG(3, ("cm_get_ipc_userpass: Retrieved auth-user from secrets.tdb [%s\\%s]\n",
567 *domain
, *username
));
570 DEBUG(3, ("cm_get_ipc_userpass: No auth-user defined\n"));
571 *username
= smb_xstrdup("");
572 *domain
= smb_xstrdup("");
573 *password
= smb_xstrdup("");
577 static bool get_dc_name_via_netlogon(struct winbindd_domain
*domain
,
579 struct sockaddr_storage
*dc_ss
)
581 struct winbindd_domain
*our_domain
= NULL
;
582 struct rpc_pipe_client
*netlogon_pipe
= NULL
;
586 unsigned int orig_timeout
;
587 const char *tmp
= NULL
;
590 /* Hmmmm. We can only open one connection to the NETLOGON pipe at the
597 if (domain
->primary
) {
601 our_domain
= find_our_domain();
603 if ((mem_ctx
= talloc_init("get_dc_name_via_netlogon")) == NULL
) {
607 result
= cm_connect_netlogon(our_domain
, &netlogon_pipe
);
608 if (!NT_STATUS_IS_OK(result
)) {
609 talloc_destroy(mem_ctx
);
613 /* This call can take a long time - allow the server to time out.
614 35 seconds should do it. */
616 orig_timeout
= rpccli_set_timeout(netlogon_pipe
, 35000);
618 if (our_domain
->active_directory
) {
619 struct netr_DsRGetDCNameInfo
*domain_info
= NULL
;
621 result
= rpccli_netr_DsRGetDCName(netlogon_pipe
,
630 if (NT_STATUS_IS_OK(result
) && W_ERROR_IS_OK(werr
)) {
632 mem_ctx
, domain_info
->dc_unc
);
634 DEBUG(0, ("talloc_strdup failed\n"));
635 talloc_destroy(mem_ctx
);
638 if (strlen(domain
->alt_name
) == 0) {
639 fstrcpy(domain
->alt_name
,
640 domain_info
->domain_name
);
642 if (strlen(domain
->forest_name
) == 0) {
643 fstrcpy(domain
->forest_name
,
644 domain_info
->forest_name
);
648 result
= rpccli_netr_GetAnyDCName(netlogon_pipe
, mem_ctx
,
655 /* And restore our original timeout. */
656 rpccli_set_timeout(netlogon_pipe
, orig_timeout
);
658 if (!NT_STATUS_IS_OK(result
)) {
659 DEBUG(10,("rpccli_netr_GetAnyDCName failed: %s\n",
661 talloc_destroy(mem_ctx
);
665 if (!W_ERROR_IS_OK(werr
)) {
666 DEBUG(10,("rpccli_netr_GetAnyDCName failed: %s\n",
668 talloc_destroy(mem_ctx
);
672 /* rpccli_netr_GetAnyDCName gives us a name with \\ */
673 p
= strip_hostname(tmp
);
677 talloc_destroy(mem_ctx
);
679 DEBUG(10,("rpccli_netr_GetAnyDCName returned %s\n", dcname
));
681 if (!resolve_name(dcname
, dc_ss
, 0x20)) {
689 * Helper function to assemble trust password and account name
691 static NTSTATUS
get_trust_creds(const struct winbindd_domain
*domain
,
692 char **machine_password
,
693 char **machine_account
,
694 char **machine_krb5_principal
)
696 const char *account_name
;
697 const char *name
= NULL
;
699 /* If we are a DC and this is not our own domain */
704 struct winbindd_domain
*our_domain
= find_our_domain();
707 return NT_STATUS_INVALID_SERVER_STATE
;
709 name
= our_domain
->name
;
712 if (!get_trust_pw_clear(name
, machine_password
,
713 &account_name
, NULL
))
715 return NT_STATUS_CANT_ACCESS_DOMAIN_INFO
;
718 if ((machine_account
!= NULL
) &&
719 (asprintf(machine_account
, "%s$", account_name
) == -1))
721 return NT_STATUS_NO_MEMORY
;
724 /* For now assume our machine account only exists in our domain */
726 if (machine_krb5_principal
!= NULL
)
728 struct winbindd_domain
*our_domain
= find_our_domain();
731 return NT_STATUS_CANT_ACCESS_DOMAIN_INFO
;
734 if (asprintf(machine_krb5_principal
, "%s$@%s",
735 account_name
, our_domain
->alt_name
) == -1)
737 return NT_STATUS_NO_MEMORY
;
740 strupper_m(*machine_krb5_principal
);
746 /************************************************************************
747 Given a fd with a just-connected TCP connection to a DC, open a connection
749 ************************************************************************/
751 static NTSTATUS
cm_prepare_connection(const struct winbindd_domain
*domain
,
753 const char *controller
,
754 struct cli_state
**cli
,
757 char *machine_password
= NULL
;
758 char *machine_krb5_principal
= NULL
;
759 char *machine_account
= NULL
;
760 char *ipc_username
= NULL
;
761 char *ipc_domain
= NULL
;
762 char *ipc_password
= NULL
;
764 struct named_mutex
*mutex
;
766 NTSTATUS result
= NT_STATUS_UNSUCCESSFUL
;
768 struct sockaddr peeraddr
;
769 socklen_t peeraddr_len
;
771 struct sockaddr_in
*peeraddr_in
= (struct sockaddr_in
*)&peeraddr
;
773 DEBUG(10,("cm_prepare_connection: connecting to DC %s for domain %s\n",
774 controller
, domain
->name
));
778 mutex
= grab_named_mutex(talloc_tos(), controller
,
779 WINBIND_SERVER_MUTEX_WAIT_TIME
);
781 DEBUG(0,("cm_prepare_connection: mutex grab failed for %s\n",
783 result
= NT_STATUS_POSSIBLE_DEADLOCK
;
787 if ((*cli
= cli_initialise()) == NULL
) {
788 DEBUG(1, ("Could not cli_initialize\n"));
789 result
= NT_STATUS_NO_MEMORY
;
793 (*cli
)->timeout
= 10000; /* 10 seconds */
795 fstrcpy((*cli
)->desthost
, controller
);
796 (*cli
)->use_kerberos
= True
;
798 peeraddr_len
= sizeof(peeraddr
);
800 if ((getpeername((*cli
)->fd
, &peeraddr
, &peeraddr_len
) != 0) ||
801 (peeraddr_len
!= sizeof(struct sockaddr_in
)) ||
802 (peeraddr_in
->sin_family
!= PF_INET
))
804 DEBUG(0,("cm_prepare_connection: %s\n", strerror(errno
)));
805 result
= NT_STATUS_UNSUCCESSFUL
;
809 if (ntohs(peeraddr_in
->sin_port
) == 139) {
810 struct nmb_name calling
;
811 struct nmb_name called
;
813 make_nmb_name(&calling
, global_myname(), 0x0);
814 make_nmb_name(&called
, "*SMBSERVER", 0x20);
816 if (!cli_session_request(*cli
, &calling
, &called
)) {
817 DEBUG(8, ("cli_session_request failed for %s\n",
819 result
= NT_STATUS_UNSUCCESSFUL
;
824 result
= cli_negprot(*cli
);
826 if (!NT_STATUS_IS_OK(result
)) {
827 DEBUG(1, ("cli_negprot failed: %s\n", nt_errstr(result
)));
831 if (!is_dc_trusted_domain_situation(domain
->name
) &&
832 (*cli
)->protocol
>= PROTOCOL_NT1
&&
833 (*cli
)->capabilities
& CAP_EXTENDED_SECURITY
)
835 ADS_STATUS ads_status
;
837 result
= get_trust_creds(domain
, &machine_password
,
839 &machine_krb5_principal
);
840 if (!NT_STATUS_IS_OK(result
)) {
844 if (lp_security() == SEC_ADS
) {
846 /* Try a krb5 session */
848 (*cli
)->use_kerberos
= True
;
849 DEBUG(5, ("connecting to %s from %s with kerberos principal "
850 "[%s] and realm [%s]\n", controller
, global_myname(),
851 machine_krb5_principal
, domain
->alt_name
));
853 winbindd_set_locator_kdc_envs(domain
);
855 ads_status
= cli_session_setup_spnego(*cli
,
856 machine_krb5_principal
,
861 if (!ADS_ERR_OK(ads_status
)) {
862 DEBUG(4,("failed kerberos session setup with %s\n",
863 ads_errstr(ads_status
)));
866 result
= ads_ntstatus(ads_status
);
867 if (NT_STATUS_IS_OK(result
)) {
868 /* Ensure creds are stored for NTLMSSP authenticated pipe access. */
869 result
= cli_init_creds(*cli
, machine_account
, lp_workgroup(), machine_password
);
870 if (!NT_STATUS_IS_OK(result
)) {
873 goto session_setup_done
;
877 /* Fall back to non-kerberos session setup using NTLMSSP SPNEGO with the machine account. */
878 (*cli
)->use_kerberos
= False
;
880 DEBUG(5, ("connecting to %s from %s with username "
881 "[%s]\\[%s]\n", controller
, global_myname(),
882 lp_workgroup(), machine_account
));
884 ads_status
= cli_session_setup_spnego(*cli
,
889 if (!ADS_ERR_OK(ads_status
)) {
890 DEBUG(4, ("authenticated session setup failed with %s\n",
891 ads_errstr(ads_status
)));
894 result
= ads_ntstatus(ads_status
);
895 if (NT_STATUS_IS_OK(result
)) {
896 /* Ensure creds are stored for NTLMSSP authenticated pipe access. */
897 result
= cli_init_creds(*cli
, machine_account
, lp_workgroup(), machine_password
);
898 if (!NT_STATUS_IS_OK(result
)) {
901 goto session_setup_done
;
905 /* Fall back to non-kerberos session setup with auth_user */
907 (*cli
)->use_kerberos
= False
;
909 cm_get_ipc_userpass(&ipc_username
, &ipc_domain
, &ipc_password
);
911 if ((((*cli
)->sec_mode
& NEGOTIATE_SECURITY_CHALLENGE_RESPONSE
) != 0) &&
912 (strlen(ipc_username
) > 0)) {
914 /* Only try authenticated if we have a username */
916 DEBUG(5, ("connecting to %s from %s with username "
917 "[%s]\\[%s]\n", controller
, global_myname(),
918 ipc_domain
, ipc_username
));
920 if (NT_STATUS_IS_OK(cli_session_setup(
922 ipc_password
, strlen(ipc_password
)+1,
923 ipc_password
, strlen(ipc_password
)+1,
925 /* Successful logon with given username. */
926 result
= cli_init_creds(*cli
, ipc_username
, ipc_domain
, ipc_password
);
927 if (!NT_STATUS_IS_OK(result
)) {
930 goto session_setup_done
;
932 DEBUG(4, ("authenticated session setup with user %s\\%s failed.\n",
933 ipc_domain
, ipc_username
));
939 /* Fall back to anonymous connection, this might fail later */
940 DEBUG(10,("cm_prepare_connection: falling back to anonymous "
941 "connection for DC %s\n",
944 if (NT_STATUS_IS_OK(cli_session_setup(*cli
, "", NULL
, 0,
946 DEBUG(5, ("Connected anonymously\n"));
947 result
= cli_init_creds(*cli
, "", "", "");
948 if (!NT_STATUS_IS_OK(result
)) {
951 goto session_setup_done
;
954 result
= cli_nt_error(*cli
);
956 if (NT_STATUS_IS_OK(result
))
957 result
= NT_STATUS_UNSUCCESSFUL
;
959 /* We can't session setup */
965 /* cache the server name for later connections */
967 saf_store( domain
->name
, (*cli
)->desthost
);
968 if (domain
->alt_name
&& (*cli
)->use_kerberos
) {
969 saf_store( domain
->alt_name
, (*cli
)->desthost
);
972 winbindd_set_locator_kdc_envs(domain
);
974 result
= cli_tcon_andx(*cli
, "IPC$", "IPC", "", 0);
976 if (!NT_STATUS_IS_OK(result
)) {
977 DEBUG(1,("failed tcon_X with %s\n", nt_errstr(result
)));
984 /* set the domain if empty; needed for schannel connections */
985 if ( !(*cli
)->domain
[0] ) {
986 result
= cli_set_domain((*cli
), domain
->name
);
987 if (!NT_STATUS_IS_OK(result
)) {
992 result
= NT_STATUS_OK
;
996 SAFE_FREE(machine_account
);
997 SAFE_FREE(machine_password
);
998 SAFE_FREE(machine_krb5_principal
);
999 SAFE_FREE(ipc_username
);
1000 SAFE_FREE(ipc_domain
);
1001 SAFE_FREE(ipc_password
);
1003 if (!NT_STATUS_IS_OK(result
)) {
1004 winbind_add_failed_connection_entry(domain
, controller
, result
);
1005 if ((*cli
) != NULL
) {
1014 /*******************************************************************
1015 Add a dcname and sockaddr_storage pair to the end of a dc_name_ip
1018 Keeps the list unique by not adding duplicate entries.
1020 @param[in] mem_ctx talloc memory context to allocate from
1021 @param[in] domain_name domain of the DC
1022 @param[in] dcname name of the DC to add to the list
1023 @param[in] pss Internet address and port pair to add to the list
1024 @param[in,out] dcs array of dc_name_ip structures to add to
1025 @param[in,out] num_dcs number of dcs returned in the dcs array
1026 @return true if the list was added to, false otherwise
1027 *******************************************************************/
1029 static bool add_one_dc_unique(TALLOC_CTX
*mem_ctx
, const char *domain_name
,
1030 const char *dcname
, struct sockaddr_storage
*pss
,
1031 struct dc_name_ip
**dcs
, int *num
)
1035 if (!NT_STATUS_IS_OK(check_negative_conn_cache(domain_name
, dcname
))) {
1036 DEBUG(10, ("DC %s was in the negative conn cache\n", dcname
));
1040 /* Make sure there's no duplicates in the list */
1041 for (i
=0; i
<*num
; i
++)
1042 if (sockaddr_equal((struct sockaddr
*)&(*dcs
)[i
].ss
, (struct sockaddr
*)pss
))
1045 *dcs
= TALLOC_REALLOC_ARRAY(mem_ctx
, *dcs
, struct dc_name_ip
, (*num
)+1);
1050 fstrcpy((*dcs
)[*num
].name
, dcname
);
1051 (*dcs
)[*num
].ss
= *pss
;
1056 static bool add_sockaddr_to_array(TALLOC_CTX
*mem_ctx
,
1057 struct sockaddr_storage
*pss
, uint16 port
,
1058 struct sockaddr_storage
**addrs
, int *num
)
1060 *addrs
= TALLOC_REALLOC_ARRAY(mem_ctx
, *addrs
, struct sockaddr_storage
, (*num
)+1);
1062 if (*addrs
== NULL
) {
1067 (*addrs
)[*num
] = *pss
;
1068 set_sockaddr_port((struct sockaddr
*)&(*addrs
)[*num
], port
);
1074 /*******************************************************************
1075 convert an ip to a name
1076 *******************************************************************/
1078 static bool dcip_to_name(TALLOC_CTX
*mem_ctx
,
1079 const struct winbindd_domain
*domain
,
1080 struct sockaddr_storage
*pss
,
1083 struct ip_service ip_list
;
1084 uint32_t nt_version
= NETLOGON_NT_VERSION_1
;
1090 /* For active directory servers, try to get the ldap server name.
1091 None of these failures should be considered critical for now */
1093 if (lp_security() == SEC_ADS
) {
1095 ADS_STATUS ads_status
;
1096 char addr
[INET6_ADDRSTRLEN
];
1098 print_sockaddr(addr
, sizeof(addr
), pss
);
1100 ads
= ads_init(domain
->alt_name
, domain
->name
, addr
);
1101 ads
->auth
.flags
|= ADS_AUTH_NO_BIND
;
1103 ads_status
= ads_connect(ads
);
1104 if (ADS_ERR_OK(ads_status
)) {
1105 /* We got a cldap packet. */
1106 fstrcpy(name
, ads
->config
.ldap_server_name
);
1107 namecache_store(name
, 0x20, 1, &ip_list
);
1109 DEBUG(10,("dcip_to_name: flags = 0x%x\n", (unsigned int)ads
->config
.flags
));
1111 if (domain
->primary
&& (ads
->config
.flags
& NBT_SERVER_KDC
)) {
1112 if (ads_closest_dc(ads
)) {
1113 char *sitename
= sitename_fetch(ads
->config
.realm
);
1115 /* We're going to use this KDC for this realm/domain.
1116 If we are using sites, then force the krb5 libs
1119 create_local_private_krb5_conf_for_domain(domain
->alt_name
,
1124 SAFE_FREE(sitename
);
1126 /* use an off site KDC */
1127 create_local_private_krb5_conf_for_domain(domain
->alt_name
,
1132 winbindd_set_locator_kdc_envs(domain
);
1134 /* Ensure we contact this DC also. */
1135 saf_store( domain
->name
, name
);
1136 saf_store( domain
->alt_name
, name
);
1139 ads_destroy( &ads
);
1143 ads_destroy( &ads
);
1147 /* try GETDC requests next */
1149 if (send_getdc_request(mem_ctx
, winbind_messaging_context(),
1150 pss
, domain
->name
, &domain
->sid
,
1152 const char *dc_name
= NULL
;
1155 for (i
=0; i
<5; i
++) {
1156 if (receive_getdc_response(mem_ctx
, pss
, domain
->name
,
1159 fstrcpy(name
, dc_name
);
1160 namecache_store(name
, 0x20, 1, &ip_list
);
1167 /* try node status request */
1169 if ( name_status_find(domain
->name
, 0x1c, 0x20, pss
, name
) ) {
1170 namecache_store(name
, 0x20, 1, &ip_list
);
1176 /*******************************************************************
1177 Retrieve a list of IP addresses for domain controllers.
1179 The array is sorted in the preferred connection order.
1181 @param[in] mem_ctx talloc memory context to allocate from
1182 @param[in] domain domain to retrieve DCs for
1183 @param[out] dcs array of dcs that will be returned
1184 @param[out] num_dcs number of dcs returned in the dcs array
1186 *******************************************************************/
1188 static bool get_dcs(TALLOC_CTX
*mem_ctx
, struct winbindd_domain
*domain
,
1189 struct dc_name_ip
**dcs
, int *num_dcs
)
1192 struct sockaddr_storage ss
;
1193 struct ip_service
*ip_list
= NULL
;
1194 int iplist_size
= 0;
1197 enum security_types sec
= (enum security_types
)lp_security();
1199 is_our_domain
= strequal(domain
->name
, lp_workgroup());
1201 /* If not our domain, get the preferred DC, by asking our primary DC */
1203 && get_dc_name_via_netlogon(domain
, dcname
, &ss
)
1204 && add_one_dc_unique(mem_ctx
, domain
->name
, dcname
, &ss
, dcs
,
1207 char addr
[INET6_ADDRSTRLEN
];
1208 print_sockaddr(addr
, sizeof(addr
), &ss
);
1209 DEBUG(10, ("Retrieved DC %s at %s via netlogon\n",
1214 if (sec
== SEC_ADS
) {
1215 char *sitename
= NULL
;
1217 /* We need to make sure we know the local site before
1218 doing any DNS queries, as this will restrict the
1219 get_sorted_dc_list() call below to only fetching
1220 DNS records for the correct site. */
1222 /* Find any DC to get the site record.
1223 We deliberately don't care about the
1226 get_dc_name(domain
->name
, domain
->alt_name
, dcname
, &ss
);
1228 sitename
= sitename_fetch(domain
->alt_name
);
1231 /* Do the site-specific AD dns lookup first. */
1232 get_sorted_dc_list(domain
->alt_name
, sitename
, &ip_list
,
1233 &iplist_size
, True
);
1235 /* Add ips to the DC array. We don't look up the name
1236 of the DC in this function, but we fill in the char*
1237 of the ip now to make the failed connection cache
1239 for ( i
=0; i
<iplist_size
; i
++ ) {
1240 char addr
[INET6_ADDRSTRLEN
];
1241 print_sockaddr(addr
, sizeof(addr
),
1243 add_one_dc_unique(mem_ctx
,
1252 SAFE_FREE(sitename
);
1256 /* Now we add DCs from the main AD DNS lookup. */
1257 get_sorted_dc_list(domain
->alt_name
, NULL
, &ip_list
,
1258 &iplist_size
, True
);
1260 for ( i
=0; i
<iplist_size
; i
++ ) {
1261 char addr
[INET6_ADDRSTRLEN
];
1262 print_sockaddr(addr
, sizeof(addr
),
1264 add_one_dc_unique(mem_ctx
,
1276 /* Try standard netbios queries if no ADS */
1277 if (*num_dcs
== 0) {
1278 get_sorted_dc_list(domain
->name
, NULL
, &ip_list
, &iplist_size
,
1281 for ( i
=0; i
<iplist_size
; i
++ ) {
1282 char addr
[INET6_ADDRSTRLEN
];
1283 print_sockaddr(addr
, sizeof(addr
),
1285 add_one_dc_unique(mem_ctx
,
1300 /*******************************************************************
1301 Find and make a connection to a DC in the given domain.
1303 @param[in] mem_ctx talloc memory context to allocate from
1304 @param[in] domain domain to find a dc in
1305 @param[out] dcname NetBIOS or FQDN of DC that's connected to
1306 @param[out] pss DC Internet address and port
1307 @param[out] fd fd of the open socket connected to the newly found dc
1308 @return true when a DC connection is made, false otherwise
1309 *******************************************************************/
1311 static bool find_new_dc(TALLOC_CTX
*mem_ctx
,
1312 struct winbindd_domain
*domain
,
1313 fstring dcname
, struct sockaddr_storage
*pss
, int *fd
)
1315 struct dc_name_ip
*dcs
= NULL
;
1318 const char **dcnames
= NULL
;
1319 int num_dcnames
= 0;
1321 struct sockaddr_storage
*addrs
= NULL
;
1329 if (!get_dcs(mem_ctx
, domain
, &dcs
, &num_dcs
) || (num_dcs
== 0))
1332 for (i
=0; i
<num_dcs
; i
++) {
1334 if (!add_string_to_array(mem_ctx
, dcs
[i
].name
,
1335 &dcnames
, &num_dcnames
)) {
1338 if (!add_sockaddr_to_array(mem_ctx
, &dcs
[i
].ss
, 445,
1339 &addrs
, &num_addrs
)) {
1343 if (!add_string_to_array(mem_ctx
, dcs
[i
].name
,
1344 &dcnames
, &num_dcnames
)) {
1347 if (!add_sockaddr_to_array(mem_ctx
, &dcs
[i
].ss
, 139,
1348 &addrs
, &num_addrs
)) {
1353 if ((num_dcnames
== 0) || (num_dcnames
!= num_addrs
))
1356 if ((addrs
== NULL
) || (dcnames
== NULL
))
1359 /* 5 second timeout. */
1360 if (!open_any_socket_out(addrs
, num_addrs
, 5000, &fd_index
, fd
) ) {
1361 for (i
=0; i
<num_dcs
; i
++) {
1362 char ab
[INET6_ADDRSTRLEN
];
1363 print_sockaddr(ab
, sizeof(ab
), &dcs
[i
].ss
);
1364 DEBUG(10, ("find_new_dc: open_any_socket_out failed for "
1365 "domain %s address %s. Error was %s\n",
1366 domain
->name
, ab
, strerror(errno
) ));
1367 winbind_add_failed_connection_entry(domain
,
1368 dcs
[i
].name
, NT_STATUS_UNSUCCESSFUL
);
1373 *pss
= addrs
[fd_index
];
1375 if (*dcnames
[fd_index
] != '\0' && !is_ipaddress(dcnames
[fd_index
])) {
1376 /* Ok, we've got a name for the DC */
1377 fstrcpy(dcname
, dcnames
[fd_index
]);
1381 /* Try to figure out the name */
1382 if (dcip_to_name(mem_ctx
, domain
, pss
, dcname
)) {
1386 /* We can not continue without the DC's name */
1387 winbind_add_failed_connection_entry(domain
, dcs
[fd_index
].name
,
1388 NT_STATUS_UNSUCCESSFUL
);
1390 /* Throw away all arrays as we're doing this again. */
1394 TALLOC_FREE(dcnames
);
1406 static NTSTATUS
cm_open_connection(struct winbindd_domain
*domain
,
1407 struct winbindd_cm_conn
*new_conn
)
1409 TALLOC_CTX
*mem_ctx
;
1411 char *saf_servername
= saf_fetch( domain
->name
);
1414 if ((mem_ctx
= talloc_init("cm_open_connection")) == NULL
) {
1415 SAFE_FREE(saf_servername
);
1416 set_domain_offline(domain
);
1417 return NT_STATUS_NO_MEMORY
;
1420 /* we have to check the server affinity cache here since
1421 later we selecte a DC based on response time and not preference */
1423 /* Check the negative connection cache
1424 before talking to it. It going down may have
1425 triggered the reconnection. */
1427 if ( saf_servername
&& NT_STATUS_IS_OK(check_negative_conn_cache( domain
->name
, saf_servername
))) {
1429 DEBUG(10,("cm_open_connection: saf_servername is '%s' for domain %s\n",
1430 saf_servername
, domain
->name
));
1432 /* convert an ip address to a name */
1433 if (is_ipaddress( saf_servername
) ) {
1435 struct sockaddr_storage ss
;
1437 if (!interpret_string_addr(&ss
, saf_servername
,
1439 return NT_STATUS_UNSUCCESSFUL
;
1441 if (dcip_to_name(mem_ctx
, domain
, &ss
, saf_name
)) {
1442 fstrcpy( domain
->dcname
, saf_name
);
1444 winbind_add_failed_connection_entry(
1445 domain
, saf_servername
,
1446 NT_STATUS_UNSUCCESSFUL
);
1449 fstrcpy( domain
->dcname
, saf_servername
);
1452 SAFE_FREE( saf_servername
);
1455 for (retries
= 0; retries
< 3; retries
++) {
1459 result
= NT_STATUS_DOMAIN_CONTROLLER_NOT_FOUND
;
1461 DEBUG(10,("cm_open_connection: dcname is '%s' for domain %s\n",
1462 domain
->dcname
, domain
->name
));
1465 && NT_STATUS_IS_OK(check_negative_conn_cache( domain
->name
, domain
->dcname
))
1466 && (resolve_name(domain
->dcname
, &domain
->dcaddr
, 0x20)))
1468 struct sockaddr_storage
*addrs
= NULL
;
1472 if (!add_sockaddr_to_array(mem_ctx
, &domain
->dcaddr
, 445, &addrs
, &num_addrs
)) {
1473 set_domain_offline(domain
);
1474 talloc_destroy(mem_ctx
);
1475 return NT_STATUS_NO_MEMORY
;
1477 if (!add_sockaddr_to_array(mem_ctx
, &domain
->dcaddr
, 139, &addrs
, &num_addrs
)) {
1478 set_domain_offline(domain
);
1479 talloc_destroy(mem_ctx
);
1480 return NT_STATUS_NO_MEMORY
;
1483 /* 5 second timeout. */
1484 if (!open_any_socket_out(addrs
, num_addrs
, 5000, &dummy
, &fd
)) {
1490 && !find_new_dc(mem_ctx
, domain
, domain
->dcname
, &domain
->dcaddr
, &fd
))
1492 /* This is the one place where we will
1493 set the global winbindd offline state
1494 to true, if a "WINBINDD_OFFLINE" entry
1495 is found in the winbindd cache. */
1496 set_global_winbindd_state_offline();
1500 new_conn
->cli
= NULL
;
1502 result
= cm_prepare_connection(domain
, fd
, domain
->dcname
,
1503 &new_conn
->cli
, &retry
);
1509 if (NT_STATUS_IS_OK(result
)) {
1511 winbindd_set_locator_kdc_envs(domain
);
1513 if (domain
->online
== False
) {
1514 /* We're changing state from offline to online. */
1515 set_global_winbindd_state_online();
1517 set_domain_online(domain
);
1519 /* Ensure we setup the retry handler. */
1520 set_domain_offline(domain
);
1523 talloc_destroy(mem_ctx
);
1527 /* Close down all open pipes on a connection. */
1529 void invalidate_cm_connection(struct winbindd_cm_conn
*conn
)
1531 /* We're closing down a possibly dead
1532 connection. Don't have impossibly long (10s) timeouts. */
1535 cli_set_timeout(conn
->cli
, 1000); /* 1 second. */
1538 if (conn
->samr_pipe
!= NULL
) {
1539 TALLOC_FREE(conn
->samr_pipe
);
1540 /* Ok, it must be dead. Drop timeout to 0.5 sec. */
1542 cli_set_timeout(conn
->cli
, 500);
1546 if (conn
->lsa_pipe
!= NULL
) {
1547 TALLOC_FREE(conn
->lsa_pipe
);
1548 /* Ok, it must be dead. Drop timeout to 0.5 sec. */
1550 cli_set_timeout(conn
->cli
, 500);
1554 if (conn
->lsa_pipe_tcp
!= NULL
) {
1555 TALLOC_FREE(conn
->lsa_pipe_tcp
);
1556 /* Ok, it must be dead. Drop timeout to 0.5 sec. */
1558 cli_set_timeout(conn
->cli
, 500);
1562 if (conn
->netlogon_pipe
!= NULL
) {
1563 TALLOC_FREE(conn
->netlogon_pipe
);
1564 /* Ok, it must be dead. Drop timeout to 0.5 sec. */
1566 cli_set_timeout(conn
->cli
, 500);
1571 cli_shutdown(conn
->cli
);
1577 void close_conns_after_fork(void)
1579 struct winbindd_domain
*domain
;
1581 for (domain
= domain_list(); domain
; domain
= domain
->next
) {
1582 if (domain
->conn
.cli
== NULL
)
1585 if (domain
->conn
.cli
->fd
== -1)
1588 close(domain
->conn
.cli
->fd
);
1589 domain
->conn
.cli
->fd
= -1;
1593 static bool connection_ok(struct winbindd_domain
*domain
)
1597 ok
= cli_state_is_connected(domain
->conn
.cli
);
1599 DEBUG(3, ("connection_ok: Connection to %s for domain %s is not connected\n",
1600 domain
->dcname
, domain
->name
));
1604 if (domain
->online
== False
) {
1605 DEBUG(3, ("connection_ok: Domain %s is offline\n", domain
->name
));
1612 /* Initialize a new connection up to the RPC BIND.
1613 Bypass online status check so always does network calls. */
1615 static NTSTATUS
init_dc_connection_network(struct winbindd_domain
*domain
)
1619 /* Internal connections never use the network. */
1620 if (domain
->internal
) {
1621 domain
->initialized
= True
;
1622 return NT_STATUS_OK
;
1625 if (connection_ok(domain
)) {
1626 if (!domain
->initialized
) {
1627 set_dc_type_and_flags(domain
);
1629 return NT_STATUS_OK
;
1632 invalidate_cm_connection(&domain
->conn
);
1634 result
= cm_open_connection(domain
, &domain
->conn
);
1636 if (NT_STATUS_IS_OK(result
) && !domain
->initialized
) {
1637 set_dc_type_and_flags(domain
);
1643 NTSTATUS
init_dc_connection(struct winbindd_domain
*domain
)
1645 if (domain
->initialized
&& !domain
->online
) {
1646 /* We check for online status elsewhere. */
1647 return NT_STATUS_DOMAIN_CONTROLLER_NOT_FOUND
;
1650 return init_dc_connection_network(domain
);
1653 /******************************************************************************
1654 Set the trust flags (direction and forest location) for a domain
1655 ******************************************************************************/
1657 static bool set_dc_type_and_flags_trustinfo( struct winbindd_domain
*domain
)
1659 struct winbindd_domain
*our_domain
;
1660 NTSTATUS result
= NT_STATUS_UNSUCCESSFUL
;
1661 struct netr_DomainTrustList trusts
;
1663 uint32 flags
= (NETR_TRUST_FLAG_IN_FOREST
|
1664 NETR_TRUST_FLAG_OUTBOUND
|
1665 NETR_TRUST_FLAG_INBOUND
);
1666 struct rpc_pipe_client
*cli
;
1667 TALLOC_CTX
*mem_ctx
= NULL
;
1669 DEBUG(5, ("set_dc_type_and_flags_trustinfo: domain %s\n", domain
->name
));
1671 /* Our primary domain doesn't need to worry about trust flags.
1672 Force it to go through the network setup */
1673 if ( domain
->primary
) {
1677 our_domain
= find_our_domain();
1679 if ( !connection_ok(our_domain
) ) {
1680 DEBUG(3,("set_dc_type_and_flags_trustinfo: No connection to our domain!\n"));
1684 /* This won't work unless our domain is AD */
1686 if ( !our_domain
->active_directory
) {
1690 /* Use DsEnumerateDomainTrusts to get us the trust direction
1693 result
= cm_connect_netlogon(our_domain
, &cli
);
1695 if (!NT_STATUS_IS_OK(result
)) {
1696 DEBUG(5, ("set_dc_type_and_flags_trustinfo: Could not open "
1697 "a connection to %s for PIPE_NETLOGON (%s)\n",
1698 domain
->name
, nt_errstr(result
)));
1702 if ( (mem_ctx
= talloc_init("set_dc_type_and_flags_trustinfo")) == NULL
) {
1703 DEBUG(0,("set_dc_type_and_flags_trustinfo: talloc_init() failed!\n"));
1707 result
= rpccli_netr_DsrEnumerateDomainTrusts(cli
, mem_ctx
,
1712 if (!NT_STATUS_IS_OK(result
)) {
1713 DEBUG(0,("set_dc_type_and_flags_trustinfo: "
1714 "failed to query trusted domain list: %s\n",
1715 nt_errstr(result
)));
1716 talloc_destroy(mem_ctx
);
1720 /* Now find the domain name and get the flags */
1722 for ( i
=0; i
<trusts
.count
; i
++ ) {
1723 if ( strequal( domain
->name
, trusts
.array
[i
].netbios_name
) ) {
1724 domain
->domain_flags
= trusts
.array
[i
].trust_flags
;
1725 domain
->domain_type
= trusts
.array
[i
].trust_type
;
1726 domain
->domain_trust_attribs
= trusts
.array
[i
].trust_attributes
;
1728 if ( domain
->domain_type
== NETR_TRUST_TYPE_UPLEVEL
)
1729 domain
->active_directory
= True
;
1731 /* This flag is only set if the domain is *our*
1732 primary domain and the primary domain is in
1735 domain
->native_mode
= (domain
->domain_flags
& NETR_TRUST_FLAG_NATIVE
);
1737 DEBUG(5, ("set_dc_type_and_flags_trustinfo: domain %s is %sin "
1738 "native mode.\n", domain
->name
,
1739 domain
->native_mode
? "" : "NOT "));
1741 DEBUG(5,("set_dc_type_and_flags_trustinfo: domain %s is %s"
1742 "running active directory.\n", domain
->name
,
1743 domain
->active_directory
? "" : "NOT "));
1746 domain
->initialized
= True
;
1748 if ( !winbindd_can_contact_domain( domain
) )
1749 domain
->internal
= True
;
1755 talloc_destroy( mem_ctx
);
1757 return domain
->initialized
;
1760 /******************************************************************************
1761 We can 'sense' certain things about the DC by it's replies to certain
1764 This tells us if this particular remote server is Active Directory, and if it
1766 ******************************************************************************/
1768 static void set_dc_type_and_flags_connect( struct winbindd_domain
*domain
)
1772 TALLOC_CTX
*mem_ctx
= NULL
;
1773 struct rpc_pipe_client
*cli
= NULL
;
1774 struct policy_handle pol
;
1775 union dssetup_DsRoleInfo info
;
1776 union lsa_PolicyInformation
*lsa_info
= NULL
;
1778 if (!connection_ok(domain
)) {
1782 mem_ctx
= talloc_init("set_dc_type_and_flags on domain %s\n",
1785 DEBUG(1, ("set_dc_type_and_flags_connect: talloc_init() failed\n"));
1789 DEBUG(5, ("set_dc_type_and_flags_connect: domain %s\n", domain
->name
));
1791 result
= cli_rpc_pipe_open_noauth(domain
->conn
.cli
,
1792 &ndr_table_dssetup
.syntax_id
,
1795 if (!NT_STATUS_IS_OK(result
)) {
1796 DEBUG(5, ("set_dc_type_and_flags_connect: Could not bind to "
1797 "PI_DSSETUP on domain %s: (%s)\n",
1798 domain
->name
, nt_errstr(result
)));
1800 /* if this is just a non-AD domain we need to continue
1801 * identifying so that we can in the end return with
1802 * domain->initialized = True - gd */
1807 result
= rpccli_dssetup_DsRoleGetPrimaryDomainInformation(cli
, mem_ctx
,
1808 DS_ROLE_BASIC_INFORMATION
,
1813 if (!NT_STATUS_IS_OK(result
)) {
1814 DEBUG(5, ("set_dc_type_and_flags_connect: rpccli_ds_getprimarydominfo "
1815 "on domain %s failed: (%s)\n",
1816 domain
->name
, nt_errstr(result
)));
1818 /* older samba3 DCs will return DCERPC_FAULT_OP_RNG_ERROR for
1819 * every opcode on the DSSETUP pipe, continue with
1820 * no_dssetup mode here as well to get domain->initialized
1823 if (NT_STATUS_V(result
) == DCERPC_FAULT_OP_RNG_ERROR
) {
1827 TALLOC_FREE(mem_ctx
);
1831 if ((info
.basic
.flags
& DS_ROLE_PRIMARY_DS_RUNNING
) &&
1832 !(info
.basic
.flags
& DS_ROLE_PRIMARY_DS_MIXED_MODE
)) {
1833 domain
->native_mode
= True
;
1835 domain
->native_mode
= False
;
1839 result
= cli_rpc_pipe_open_noauth(domain
->conn
.cli
,
1840 &ndr_table_lsarpc
.syntax_id
, &cli
);
1842 if (!NT_STATUS_IS_OK(result
)) {
1843 DEBUG(5, ("set_dc_type_and_flags_connect: Could not bind to "
1844 "PI_LSARPC on domain %s: (%s)\n",
1845 domain
->name
, nt_errstr(result
)));
1847 TALLOC_FREE(mem_ctx
);
1851 result
= rpccli_lsa_open_policy2(cli
, mem_ctx
, True
,
1852 SEC_FLAG_MAXIMUM_ALLOWED
, &pol
);
1854 if (NT_STATUS_IS_OK(result
)) {
1855 /* This particular query is exactly what Win2k clients use
1856 to determine that the DC is active directory */
1857 result
= rpccli_lsa_QueryInfoPolicy2(cli
, mem_ctx
,
1859 LSA_POLICY_INFO_DNS
,
1863 if (NT_STATUS_IS_OK(result
)) {
1864 domain
->active_directory
= True
;
1866 if (lsa_info
->dns
.name
.string
) {
1867 fstrcpy(domain
->name
, lsa_info
->dns
.name
.string
);
1870 if (lsa_info
->dns
.dns_domain
.string
) {
1871 fstrcpy(domain
->alt_name
,
1872 lsa_info
->dns
.dns_domain
.string
);
1875 /* See if we can set some domain trust flags about
1878 if (lsa_info
->dns
.dns_forest
.string
) {
1879 fstrcpy(domain
->forest_name
,
1880 lsa_info
->dns
.dns_forest
.string
);
1882 if (strequal(domain
->forest_name
, domain
->alt_name
)) {
1883 domain
->domain_flags
|= NETR_TRUST_FLAG_TREEROOT
;
1887 if (lsa_info
->dns
.sid
) {
1888 sid_copy(&domain
->sid
, lsa_info
->dns
.sid
);
1891 domain
->active_directory
= False
;
1893 result
= rpccli_lsa_open_policy(cli
, mem_ctx
, True
,
1894 SEC_FLAG_MAXIMUM_ALLOWED
,
1897 if (!NT_STATUS_IS_OK(result
)) {
1901 result
= rpccli_lsa_QueryInfoPolicy(cli
, mem_ctx
,
1903 LSA_POLICY_INFO_ACCOUNT_DOMAIN
,
1906 if (NT_STATUS_IS_OK(result
)) {
1908 if (lsa_info
->account_domain
.name
.string
) {
1909 fstrcpy(domain
->name
,
1910 lsa_info
->account_domain
.name
.string
);
1913 if (lsa_info
->account_domain
.sid
) {
1914 sid_copy(&domain
->sid
, lsa_info
->account_domain
.sid
);
1920 DEBUG(5, ("set_dc_type_and_flags_connect: domain %s is %sin native mode.\n",
1921 domain
->name
, domain
->native_mode
? "" : "NOT "));
1923 DEBUG(5,("set_dc_type_and_flags_connect: domain %s is %srunning active directory.\n",
1924 domain
->name
, domain
->active_directory
? "" : "NOT "));
1926 domain
->can_do_ncacn_ip_tcp
= domain
->active_directory
;
1930 TALLOC_FREE(mem_ctx
);
1932 domain
->initialized
= True
;
1935 /**********************************************************************
1936 Set the domain_flags (trust attributes, domain operating modes, etc...
1937 ***********************************************************************/
1939 static void set_dc_type_and_flags( struct winbindd_domain
*domain
)
1941 /* we always have to contact our primary domain */
1943 if ( domain
->primary
) {
1944 DEBUG(10,("set_dc_type_and_flags: setting up flags for "
1945 "primary domain\n"));
1946 set_dc_type_and_flags_connect( domain
);
1950 /* Use our DC to get the information if possible */
1952 if ( !set_dc_type_and_flags_trustinfo( domain
) ) {
1953 /* Otherwise, fallback to contacting the
1955 set_dc_type_and_flags_connect( domain
);
1963 /**********************************************************************
1964 ***********************************************************************/
1966 static bool cm_get_schannel_dcinfo(struct winbindd_domain
*domain
,
1967 struct dcinfo
**ppdc
)
1970 struct rpc_pipe_client
*netlogon_pipe
;
1972 if (lp_client_schannel() == False
) {
1976 result
= cm_connect_netlogon(domain
, &netlogon_pipe
);
1977 if (!NT_STATUS_IS_OK(result
)) {
1981 /* Return a pointer to the struct dcinfo from the
1984 if (!domain
->conn
.netlogon_pipe
->dc
) {
1988 *ppdc
= domain
->conn
.netlogon_pipe
->dc
;
1992 NTSTATUS
cm_connect_sam(struct winbindd_domain
*domain
, TALLOC_CTX
*mem_ctx
,
1993 struct rpc_pipe_client
**cli
, struct policy_handle
*sam_handle
)
1995 struct winbindd_cm_conn
*conn
;
1996 NTSTATUS result
= NT_STATUS_UNSUCCESSFUL
;
1997 struct dcinfo
*p_dcinfo
;
1998 char *machine_password
= NULL
;
1999 char *machine_account
= NULL
;
2000 char *domain_name
= NULL
;
2002 result
= init_dc_connection(domain
);
2003 if (!NT_STATUS_IS_OK(result
)) {
2007 conn
= &domain
->conn
;
2009 if (conn
->samr_pipe
!= NULL
) {
2015 * No SAMR pipe yet. Attempt to get an NTLMSSP SPNEGO authenticated
2016 * sign and sealed pipe using the machine account password by
2017 * preference. If we can't - try schannel, if that fails, try
2021 if ((conn
->cli
->user_name
[0] == '\0') ||
2022 (conn
->cli
->domain
[0] == '\0') ||
2023 (conn
->cli
->password
== NULL
|| conn
->cli
->password
[0] == '\0'))
2025 result
= get_trust_creds(domain
, &machine_password
,
2026 &machine_account
, NULL
);
2027 if (!NT_STATUS_IS_OK(result
)) {
2028 DEBUG(10, ("cm_connect_sam: No no user available for "
2029 "domain %s, trying schannel\n", conn
->cli
->domain
));
2032 domain_name
= domain
->name
;
2034 machine_password
= SMB_STRDUP(conn
->cli
->password
);
2035 machine_account
= SMB_STRDUP(conn
->cli
->user_name
);
2036 domain_name
= conn
->cli
->domain
;
2039 if (!machine_password
|| !machine_account
) {
2040 result
= NT_STATUS_NO_MEMORY
;
2044 /* We have an authenticated connection. Use a NTLMSSP SPNEGO
2045 authenticated SAMR pipe with sign & seal. */
2046 result
= cli_rpc_pipe_open_spnego_ntlmssp(conn
->cli
,
2047 &ndr_table_samr
.syntax_id
,
2049 PIPE_AUTH_LEVEL_PRIVACY
,
2055 if (!NT_STATUS_IS_OK(result
)) {
2056 DEBUG(10,("cm_connect_sam: failed to connect to SAMR "
2057 "pipe for domain %s using NTLMSSP "
2058 "authenticated pipe: user %s\\%s. Error was "
2059 "%s\n", domain
->name
, domain_name
,
2060 machine_account
, nt_errstr(result
)));
2064 DEBUG(10,("cm_connect_sam: connected to SAMR pipe for "
2065 "domain %s using NTLMSSP authenticated "
2066 "pipe: user %s\\%s\n", domain
->name
,
2067 domain_name
, machine_account
));
2069 result
= rpccli_samr_Connect2(conn
->samr_pipe
, mem_ctx
,
2070 conn
->samr_pipe
->desthost
,
2071 SEC_FLAG_MAXIMUM_ALLOWED
,
2072 &conn
->sam_connect_handle
);
2073 if (NT_STATUS_IS_OK(result
)) {
2076 DEBUG(10,("cm_connect_sam: ntlmssp-sealed rpccli_samr_Connect2 "
2077 "failed for domain %s, error was %s. Trying schannel\n",
2078 domain
->name
, nt_errstr(result
) ));
2079 TALLOC_FREE(conn
->samr_pipe
);
2083 /* Fall back to schannel if it's a W2K pre-SP1 box. */
2085 if (!cm_get_schannel_dcinfo(domain
, &p_dcinfo
)) {
2086 /* If this call fails - conn->cli can now be NULL ! */
2087 DEBUG(10, ("cm_connect_sam: Could not get schannel auth info "
2088 "for domain %s, trying anon\n", domain
->name
));
2091 result
= cli_rpc_pipe_open_schannel_with_key
2092 (conn
->cli
, &ndr_table_samr
.syntax_id
, NCACN_NP
,
2093 PIPE_AUTH_LEVEL_PRIVACY
,
2094 domain
->name
, p_dcinfo
, &conn
->samr_pipe
);
2096 if (!NT_STATUS_IS_OK(result
)) {
2097 DEBUG(10,("cm_connect_sam: failed to connect to SAMR pipe for "
2098 "domain %s using schannel. Error was %s\n",
2099 domain
->name
, nt_errstr(result
) ));
2102 DEBUG(10,("cm_connect_sam: connected to SAMR pipe for domain %s using "
2103 "schannel.\n", domain
->name
));
2105 result
= rpccli_samr_Connect2(conn
->samr_pipe
, mem_ctx
,
2106 conn
->samr_pipe
->desthost
,
2107 SEC_FLAG_MAXIMUM_ALLOWED
,
2108 &conn
->sam_connect_handle
);
2109 if (NT_STATUS_IS_OK(result
)) {
2112 DEBUG(10,("cm_connect_sam: schannel-sealed rpccli_samr_Connect2 failed "
2113 "for domain %s, error was %s. Trying anonymous\n",
2114 domain
->name
, nt_errstr(result
) ));
2115 TALLOC_FREE(conn
->samr_pipe
);
2119 /* Finally fall back to anonymous. */
2120 result
= cli_rpc_pipe_open_noauth(conn
->cli
, &ndr_table_samr
.syntax_id
,
2123 if (!NT_STATUS_IS_OK(result
)) {
2127 result
= rpccli_samr_Connect2(conn
->samr_pipe
, mem_ctx
,
2128 conn
->samr_pipe
->desthost
,
2129 SEC_FLAG_MAXIMUM_ALLOWED
,
2130 &conn
->sam_connect_handle
);
2131 if (!NT_STATUS_IS_OK(result
)) {
2132 DEBUG(10,("cm_connect_sam: rpccli_samr_Connect2 failed "
2133 "for domain %s Error was %s\n",
2134 domain
->name
, nt_errstr(result
) ));
2139 result
= rpccli_samr_OpenDomain(conn
->samr_pipe
,
2141 &conn
->sam_connect_handle
,
2142 SEC_FLAG_MAXIMUM_ALLOWED
,
2144 &conn
->sam_domain_handle
);
2148 if (NT_STATUS_EQUAL(result
, NT_STATUS_ACCESS_DENIED
)) {
2150 * if we got access denied, we might just have no access rights
2151 * to talk to the remote samr server server (e.g. when we are a
2152 * PDC and we are connecting a w2k8 pdc via an interdomain
2153 * trust). In that case do not invalidate the whole connection
2156 TALLOC_FREE(conn
->samr_pipe
);
2157 ZERO_STRUCT(conn
->sam_domain_handle
);
2159 } else if (!NT_STATUS_IS_OK(result
)) {
2160 invalidate_cm_connection(conn
);
2164 *cli
= conn
->samr_pipe
;
2165 *sam_handle
= conn
->sam_domain_handle
;
2166 SAFE_FREE(machine_password
);
2167 SAFE_FREE(machine_account
);
2171 /**********************************************************************
2172 open an schanneld ncacn_ip_tcp connection to LSA
2173 ***********************************************************************/
2175 NTSTATUS
cm_connect_lsa_tcp(struct winbindd_domain
*domain
,
2176 TALLOC_CTX
*mem_ctx
,
2177 struct rpc_pipe_client
**cli
)
2179 struct winbindd_cm_conn
*conn
;
2182 DEBUG(10,("cm_connect_lsa_tcp\n"));
2184 status
= init_dc_connection(domain
);
2185 if (!NT_STATUS_IS_OK(status
)) {
2189 conn
= &domain
->conn
;
2191 if (conn
->lsa_pipe_tcp
&&
2192 conn
->lsa_pipe_tcp
->transport
->transport
== NCACN_IP_TCP
&&
2193 conn
->lsa_pipe_tcp
->auth
->auth_level
== PIPE_AUTH_LEVEL_PRIVACY
) {
2197 TALLOC_FREE(conn
->lsa_pipe_tcp
);
2199 status
= cli_rpc_pipe_open_schannel(conn
->cli
,
2200 &ndr_table_lsarpc
.syntax_id
,
2202 PIPE_AUTH_LEVEL_PRIVACY
,
2204 &conn
->lsa_pipe_tcp
);
2205 if (!NT_STATUS_IS_OK(status
)) {
2206 DEBUG(10,("cli_rpc_pipe_open_schannel failed: %s\n",
2207 nt_errstr(status
)));
2212 if (!NT_STATUS_IS_OK(status
)) {
2213 TALLOC_FREE(conn
->lsa_pipe_tcp
);
2217 *cli
= conn
->lsa_pipe_tcp
;
2222 NTSTATUS
cm_connect_lsa(struct winbindd_domain
*domain
, TALLOC_CTX
*mem_ctx
,
2223 struct rpc_pipe_client
**cli
, struct policy_handle
*lsa_policy
)
2225 struct winbindd_cm_conn
*conn
;
2226 NTSTATUS result
= NT_STATUS_UNSUCCESSFUL
;
2227 struct dcinfo
*p_dcinfo
;
2229 result
= init_dc_connection(domain
);
2230 if (!NT_STATUS_IS_OK(result
))
2233 conn
= &domain
->conn
;
2235 if (conn
->lsa_pipe
!= NULL
) {
2239 if ((conn
->cli
->user_name
[0] == '\0') ||
2240 (conn
->cli
->domain
[0] == '\0') ||
2241 (conn
->cli
->password
== NULL
|| conn
->cli
->password
[0] == '\0')) {
2242 DEBUG(10, ("cm_connect_lsa: No no user available for "
2243 "domain %s, trying schannel\n", conn
->cli
->domain
));
2247 /* We have an authenticated connection. Use a NTLMSSP SPNEGO
2248 * authenticated LSA pipe with sign & seal. */
2249 result
= cli_rpc_pipe_open_spnego_ntlmssp
2250 (conn
->cli
, &ndr_table_lsarpc
.syntax_id
, NCACN_NP
,
2251 PIPE_AUTH_LEVEL_PRIVACY
,
2252 conn
->cli
->domain
, conn
->cli
->user_name
, conn
->cli
->password
,
2255 if (!NT_STATUS_IS_OK(result
)) {
2256 DEBUG(10,("cm_connect_lsa: failed to connect to LSA pipe for "
2257 "domain %s using NTLMSSP authenticated pipe: user "
2258 "%s\\%s. Error was %s. Trying schannel.\n",
2259 domain
->name
, conn
->cli
->domain
,
2260 conn
->cli
->user_name
, nt_errstr(result
)));
2264 DEBUG(10,("cm_connect_lsa: connected to LSA pipe for domain %s using "
2265 "NTLMSSP authenticated pipe: user %s\\%s\n",
2266 domain
->name
, conn
->cli
->domain
, conn
->cli
->user_name
));
2268 result
= rpccli_lsa_open_policy(conn
->lsa_pipe
, mem_ctx
, True
,
2269 SEC_FLAG_MAXIMUM_ALLOWED
,
2271 if (NT_STATUS_IS_OK(result
)) {
2275 DEBUG(10,("cm_connect_lsa: rpccli_lsa_open_policy failed, trying "
2278 TALLOC_FREE(conn
->lsa_pipe
);
2282 /* Fall back to schannel if it's a W2K pre-SP1 box. */
2284 if (!cm_get_schannel_dcinfo(domain
, &p_dcinfo
)) {
2285 /* If this call fails - conn->cli can now be NULL ! */
2286 DEBUG(10, ("cm_connect_lsa: Could not get schannel auth info "
2287 "for domain %s, trying anon\n", domain
->name
));
2290 result
= cli_rpc_pipe_open_schannel_with_key
2291 (conn
->cli
, &ndr_table_lsarpc
.syntax_id
, NCACN_NP
,
2292 PIPE_AUTH_LEVEL_PRIVACY
,
2293 domain
->name
, p_dcinfo
, &conn
->lsa_pipe
);
2295 if (!NT_STATUS_IS_OK(result
)) {
2296 DEBUG(10,("cm_connect_lsa: failed to connect to LSA pipe for "
2297 "domain %s using schannel. Error was %s\n",
2298 domain
->name
, nt_errstr(result
) ));
2301 DEBUG(10,("cm_connect_lsa: connected to LSA pipe for domain %s using "
2302 "schannel.\n", domain
->name
));
2304 result
= rpccli_lsa_open_policy(conn
->lsa_pipe
, mem_ctx
, True
,
2305 SEC_FLAG_MAXIMUM_ALLOWED
,
2307 if (NT_STATUS_IS_OK(result
)) {
2311 DEBUG(10,("cm_connect_lsa: rpccli_lsa_open_policy failed, trying "
2314 TALLOC_FREE(conn
->lsa_pipe
);
2318 result
= cli_rpc_pipe_open_noauth(conn
->cli
,
2319 &ndr_table_lsarpc
.syntax_id
,
2321 if (!NT_STATUS_IS_OK(result
)) {
2322 result
= NT_STATUS_PIPE_NOT_AVAILABLE
;
2326 result
= rpccli_lsa_open_policy(conn
->lsa_pipe
, mem_ctx
, True
,
2327 SEC_FLAG_MAXIMUM_ALLOWED
,
2330 if (!NT_STATUS_IS_OK(result
)) {
2331 invalidate_cm_connection(conn
);
2335 *cli
= conn
->lsa_pipe
;
2336 *lsa_policy
= conn
->lsa_policy
;
2340 /****************************************************************************
2341 Open the netlogon pipe to this DC. Use schannel if specified in client conf.
2342 session key stored in conn->netlogon_pipe->dc->sess_key.
2343 ****************************************************************************/
2345 NTSTATUS
cm_connect_netlogon(struct winbindd_domain
*domain
,
2346 struct rpc_pipe_client
**cli
)
2348 struct winbindd_cm_conn
*conn
;
2351 uint32_t neg_flags
= NETLOGON_NEG_AUTH2_ADS_FLAGS
;
2353 uint32 sec_chan_type
;
2354 const char *account_name
;
2355 struct rpc_pipe_client
*netlogon_pipe
= NULL
;
2359 result
= init_dc_connection(domain
);
2360 if (!NT_STATUS_IS_OK(result
)) {
2364 conn
= &domain
->conn
;
2366 if (conn
->netlogon_pipe
!= NULL
) {
2367 *cli
= conn
->netlogon_pipe
;
2368 return NT_STATUS_OK
;
2371 result
= cli_rpc_pipe_open_noauth(conn
->cli
,
2372 &ndr_table_netlogon
.syntax_id
,
2374 if (!NT_STATUS_IS_OK(result
)) {
2378 if ((!IS_DC
) && (!domain
->primary
)) {
2379 /* Clear the schannel request bit and drop down */
2380 neg_flags
&= ~NETLOGON_NEG_SCHANNEL
;
2384 if (lp_client_schannel() != False
) {
2385 neg_flags
|= NETLOGON_NEG_SCHANNEL
;
2388 if (!get_trust_pw_hash(domain
->name
, mach_pwd
, &account_name
,
2391 TALLOC_FREE(netlogon_pipe
);
2392 return NT_STATUS_CANT_ACCESS_DOMAIN_INFO
;
2395 result
= rpccli_netlogon_setup_creds(
2397 domain
->dcname
, /* server name. */
2398 domain
->name
, /* domain name */
2399 global_myname(), /* client name */
2400 account_name
, /* machine account */
2401 mach_pwd
, /* machine password */
2402 sec_chan_type
, /* from get_trust_pw */
2405 if (!NT_STATUS_IS_OK(result
)) {
2406 TALLOC_FREE(netlogon_pipe
);
2410 if ((lp_client_schannel() == True
) &&
2411 ((neg_flags
& NETLOGON_NEG_SCHANNEL
) == 0)) {
2412 DEBUG(3, ("Server did not offer schannel\n"));
2413 TALLOC_FREE(netlogon_pipe
);
2414 return NT_STATUS_ACCESS_DENIED
;
2418 if ((lp_client_schannel() == False
) ||
2419 ((neg_flags
& NETLOGON_NEG_SCHANNEL
) == 0)) {
2421 * NetSamLogonEx only works for schannel
2423 domain
->can_do_samlogon_ex
= False
;
2425 /* We're done - just keep the existing connection to NETLOGON
2427 conn
->netlogon_pipe
= netlogon_pipe
;
2428 *cli
= conn
->netlogon_pipe
;
2429 return NT_STATUS_OK
;
2432 /* Using the credentials from the first pipe, open a signed and sealed
2433 second netlogon pipe. The session key is stored in the schannel
2434 part of the new pipe auth struct.
2437 result
= cli_rpc_pipe_open_schannel_with_key(
2438 conn
->cli
, &ndr_table_netlogon
.syntax_id
, NCACN_NP
,
2439 PIPE_AUTH_LEVEL_PRIVACY
, domain
->name
, netlogon_pipe
->dc
,
2440 &conn
->netlogon_pipe
);
2442 /* We can now close the initial netlogon pipe. */
2443 TALLOC_FREE(netlogon_pipe
);
2445 if (!NT_STATUS_IS_OK(result
)) {
2446 DEBUG(3, ("Could not open schannel'ed NETLOGON pipe. Error "
2447 "was %s\n", nt_errstr(result
)));
2449 /* make sure we return something besides OK */
2450 return !NT_STATUS_IS_OK(result
) ? result
: NT_STATUS_PIPE_NOT_AVAILABLE
;
2454 * Try NetSamLogonEx for AD domains
2456 domain
->can_do_samlogon_ex
= domain
->active_directory
;
2458 *cli
= conn
->netlogon_pipe
;
2459 return NT_STATUS_OK
;