s3: librpc: Allow client to correctly report etype unsupported by KDC to caller.
[Samba.git] / nsswitch / wbinfo.c
blob54d5758aa6c68057f609c23ac8597297f74bfb06
1 /*
2 Unix SMB/CIFS implementation.
4 Winbind status program.
6 Copyright (C) Tim Potter 2000-2003
7 Copyright (C) Andrew Bartlett 2002-2007
8 Copyright (C) Volker Lendecke 2009
10 This program is free software; you can redistribute it and/or modify
11 it under the terms of the GNU General Public License as published by
12 the Free Software Foundation; either version 3 of the License, or
13 (at your option) any later version.
15 This program is distributed in the hope that it will be useful,
16 but WITHOUT ANY WARRANTY; without even the implied warranty of
17 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
18 GNU General Public License for more details.
20 You should have received a copy of the GNU General Public License
21 along with this program. If not, see <http://www.gnu.org/licenses/>.
24 #include "includes.h"
25 #include "winbind_client.h"
26 #include "libwbclient/wbclient.h"
27 #include "../libcli/auth/libcli_auth.h"
28 #include "lib/cmdline/popt_common.h"
29 #include "lib/afs/afs_settoken.h"
31 #ifdef DBGC_CLASS
32 #undef DBGC_CLASS
33 #define DBGC_CLASS DBGC_WINBIND
34 #endif
36 static struct wbcInterfaceDetails *init_interface_details(void)
38 wbcErr wbc_status = WBC_ERR_UNKNOWN_FAILURE;
39 static struct wbcInterfaceDetails *details;
41 if (details) {
42 return details;
45 wbc_status = wbcInterfaceDetails(&details);
46 if (!WBC_ERROR_IS_OK(wbc_status)) {
47 d_fprintf(stderr, "could not obtain winbind interface "
48 "details: %s\n", wbcErrorString(wbc_status));
51 return details;
54 static char winbind_separator(void)
56 struct wbcInterfaceDetails *details;
57 static bool got_sep;
58 static char sep;
60 if (got_sep)
61 return sep;
63 details = init_interface_details();
65 if (!details) {
66 d_fprintf(stderr, "could not obtain winbind separator!\n");
67 return 0;
70 sep = details->winbind_separator;
71 got_sep = true;
73 if (!sep) {
74 d_fprintf(stderr, "winbind separator was NULL!\n");
75 return 0;
78 return sep;
81 static const char *get_winbind_domain(void)
83 static struct wbcInterfaceDetails *details;
85 details = init_interface_details();
87 if (!details) {
88 d_fprintf(stderr, "could not obtain winbind domain name!\n");
89 return 0;
92 return details->netbios_domain;
95 static const char *get_winbind_netbios_name(void)
97 static struct wbcInterfaceDetails *details;
99 details = init_interface_details();
101 if (!details) {
102 d_fprintf(stderr, "could not obtain winbind netbios name!\n");
103 return 0;
106 return details->netbios_name;
109 /* Copy of parse_domain_user from winbindd_util.c. Parse a string of the
110 form DOMAIN/user into a domain and a user */
112 static bool parse_wbinfo_domain_user(const char *domuser, fstring domain,
113 fstring user)
116 char *p = strchr(domuser,winbind_separator());
118 if (!p) {
119 /* Maybe it was a UPN? */
120 p = strchr(domuser, '@');
121 if (p != NULL) {
122 fstrcpy(domain, "");
123 fstrcpy(user, domuser);
124 return true;
127 fstrcpy(user, domuser);
128 fstrcpy(domain, get_winbind_domain());
129 return true;
132 fstrcpy(user, p+1);
133 fstrcpy(domain, domuser);
134 domain[PTR_DIFF(p, domuser)] = 0;
136 return true;
139 /* Parse string of "uid,sid" or "gid,sid" into separate int and string values.
140 * Return true if input was valid, false otherwise. */
141 static bool parse_mapping_arg(char *arg, int *id, char **sid)
143 char *tmp, *endptr;
145 if (!arg || !*arg)
146 return false;
148 tmp = strtok(arg, ",");
149 *sid = strtok(NULL, ",");
151 if (!tmp || !*tmp || !*sid || !**sid)
152 return false;
154 /* Because atoi() can return 0 on invalid input, which would be a valid
155 * UID/GID we must use strtoul() and do error checking */
156 *id = strtoul(tmp, &endptr, 10);
158 if (endptr[0] != '\0')
159 return false;
161 return true;
164 /* pull pwent info for a given user */
166 static bool wbinfo_get_userinfo(char *user)
168 wbcErr wbc_status = WBC_ERR_UNKNOWN_FAILURE;
169 struct passwd *pwd = NULL;
171 wbc_status = wbcGetpwnam(user, &pwd);
172 if (!WBC_ERROR_IS_OK(wbc_status)) {
173 d_fprintf(stderr, "failed to call wbcGetpwnam: %s\n",
174 wbcErrorString(wbc_status));
175 return false;
178 d_printf("%s:%s:%u:%u:%s:%s:%s\n",
179 pwd->pw_name,
180 pwd->pw_passwd,
181 (unsigned int)pwd->pw_uid,
182 (unsigned int)pwd->pw_gid,
183 pwd->pw_gecos,
184 pwd->pw_dir,
185 pwd->pw_shell);
187 wbcFreeMemory(pwd);
189 return true;
192 /* pull pwent info for a given uid */
193 static bool wbinfo_get_uidinfo(int uid)
195 wbcErr wbc_status = WBC_ERR_UNKNOWN_FAILURE;
196 struct passwd *pwd = NULL;
198 wbc_status = wbcGetpwuid(uid, &pwd);
199 if (!WBC_ERROR_IS_OK(wbc_status)) {
200 d_fprintf(stderr, "failed to call wbcGetpwuid: %s\n",
201 wbcErrorString(wbc_status));
202 return false;
205 d_printf("%s:%s:%u:%u:%s:%s:%s\n",
206 pwd->pw_name,
207 pwd->pw_passwd,
208 (unsigned int)pwd->pw_uid,
209 (unsigned int)pwd->pw_gid,
210 pwd->pw_gecos,
211 pwd->pw_dir,
212 pwd->pw_shell);
214 wbcFreeMemory(pwd);
216 return true;
219 static bool wbinfo_get_user_sidinfo(const char *sid_str)
221 wbcErr wbc_status = WBC_ERR_UNKNOWN_FAILURE;
222 struct passwd *pwd = NULL;
223 struct wbcDomainSid sid;
225 wbc_status = wbcStringToSid(sid_str, &sid);
226 wbc_status = wbcGetpwsid(&sid, &pwd);
227 if (!WBC_ERROR_IS_OK(wbc_status)) {
228 d_fprintf(stderr, "failed to call wbcGetpwsid: %s\n",
229 wbcErrorString(wbc_status));
230 return false;
233 d_printf("%s:%s:%u:%u:%s:%s:%s\n",
234 pwd->pw_name,
235 pwd->pw_passwd,
236 (unsigned int)pwd->pw_uid,
237 (unsigned int)pwd->pw_gid,
238 pwd->pw_gecos,
239 pwd->pw_dir,
240 pwd->pw_shell);
242 wbcFreeMemory(pwd);
244 return true;
248 /* pull grent for a given group */
249 static bool wbinfo_get_groupinfo(const char *group)
251 wbcErr wbc_status = WBC_ERR_UNKNOWN_FAILURE;
252 struct group *grp;
253 char **mem;
255 wbc_status = wbcGetgrnam(group, &grp);
256 if (!WBC_ERROR_IS_OK(wbc_status)) {
257 d_fprintf(stderr, "failed to call wbcGetgrnam: %s\n",
258 wbcErrorString(wbc_status));
259 return false;
262 d_printf("%s:%s:%u:",
263 grp->gr_name,
264 grp->gr_passwd,
265 (unsigned int)grp->gr_gid);
267 mem = grp->gr_mem;
268 while (*mem != NULL) {
269 d_printf("%s%s", *mem, *(mem+1) != NULL ? "," : "");
270 mem += 1;
272 d_printf("\n");
274 wbcFreeMemory(grp);
276 return true;
279 /* pull grent for a given gid */
280 static bool wbinfo_get_gidinfo(int gid)
282 wbcErr wbc_status = WBC_ERR_UNKNOWN_FAILURE;
283 struct group *grp;
284 char **mem;
286 wbc_status = wbcGetgrgid(gid, &grp);
287 if (!WBC_ERROR_IS_OK(wbc_status)) {
288 d_fprintf(stderr, "failed to call wbcGetgrgid: %s\n",
289 wbcErrorString(wbc_status));
290 return false;
293 d_printf("%s:%s:%u:",
294 grp->gr_name,
295 grp->gr_passwd,
296 (unsigned int)grp->gr_gid);
298 mem = grp->gr_mem;
299 while (*mem != NULL) {
300 d_printf("%s%s", *mem, *(mem+1) != NULL ? "," : "");
301 mem += 1;
303 d_printf("\n");
305 wbcFreeMemory(grp);
307 return true;
310 /* List groups a user is a member of */
312 static bool wbinfo_get_usergroups(const char *user)
314 wbcErr wbc_status = WBC_ERR_UNKNOWN_FAILURE;
315 uint32_t num_groups;
316 uint32_t i;
317 gid_t *groups = NULL;
319 /* Send request */
321 wbc_status = wbcGetGroups(user, &num_groups, &groups);
322 if (!WBC_ERROR_IS_OK(wbc_status)) {
323 d_fprintf(stderr, "failed to call wbcGetGroups: %s\n",
324 wbcErrorString(wbc_status));
325 return false;
328 for (i = 0; i < num_groups; i++) {
329 d_printf("%d\n", (int)groups[i]);
332 wbcFreeMemory(groups);
334 return true;
338 /* List group SIDs a user SID is a member of */
339 static bool wbinfo_get_usersids(const char *user_sid_str)
341 wbcErr wbc_status = WBC_ERR_UNKNOWN_FAILURE;
342 uint32_t num_sids;
343 uint32_t i;
344 struct wbcDomainSid user_sid, *sids = NULL;
346 /* Send request */
348 wbc_status = wbcStringToSid(user_sid_str, &user_sid);
349 if (!WBC_ERROR_IS_OK(wbc_status)) {
350 d_fprintf(stderr, "failed to call wbcStringToSid: %s\n",
351 wbcErrorString(wbc_status));
352 return false;
355 wbc_status = wbcLookupUserSids(&user_sid, false, &num_sids, &sids);
356 if (!WBC_ERROR_IS_OK(wbc_status)) {
357 d_fprintf(stderr, "failed to call wbcLookupUserSids: %s\n",
358 wbcErrorString(wbc_status));
359 return false;
362 for (i = 0; i < num_sids; i++) {
363 char str[WBC_SID_STRING_BUFLEN];
364 wbcSidToStringBuf(&sids[i], str, sizeof(str));
365 d_printf("%s\n", str);
368 wbcFreeMemory(sids);
370 return true;
373 static bool wbinfo_get_userdomgroups(const char *user_sid_str)
375 wbcErr wbc_status = WBC_ERR_UNKNOWN_FAILURE;
376 uint32_t num_sids;
377 uint32_t i;
378 struct wbcDomainSid user_sid, *sids = NULL;
380 /* Send request */
382 wbc_status = wbcStringToSid(user_sid_str, &user_sid);
383 if (!WBC_ERROR_IS_OK(wbc_status)) {
384 d_fprintf(stderr, "failed to call wbcStringToSid: %s\n",
385 wbcErrorString(wbc_status));
386 return false;
389 wbc_status = wbcLookupUserSids(&user_sid, true, &num_sids, &sids);
390 if (!WBC_ERROR_IS_OK(wbc_status)) {
391 d_fprintf(stderr, "failed to call wbcLookupUserSids: %s\n",
392 wbcErrorString(wbc_status));
393 return false;
396 for (i = 0; i < num_sids; i++) {
397 char str[WBC_SID_STRING_BUFLEN];
398 wbcSidToStringBuf(&sids[i], str, sizeof(str));
399 d_printf("%s\n", str);
402 wbcFreeMemory(sids);
404 return true;
407 static bool wbinfo_get_sidaliases(const char *domain,
408 const char *user_sid_str)
410 wbcErr wbc_status = WBC_ERR_UNKNOWN_FAILURE;
411 struct wbcDomainInfo *dinfo = NULL;
412 uint32_t i;
413 struct wbcDomainSid user_sid;
414 uint32_t *alias_rids = NULL;
415 uint32_t num_alias_rids;
416 char domain_sid_str[WBC_SID_STRING_BUFLEN];
418 /* Send request */
419 if ((domain == NULL) || (strequal(domain, ".")) ||
420 (domain[0] == '\0')) {
421 domain = get_winbind_domain();
424 /* Send request */
426 wbc_status = wbcDomainInfo(domain, &dinfo);
427 if (!WBC_ERROR_IS_OK(wbc_status)) {
428 d_fprintf(stderr, "wbcDomainInfo(%s) failed: %s\n", domain,
429 wbcErrorString(wbc_status));
430 goto done;
432 wbc_status = wbcStringToSid(user_sid_str, &user_sid);
433 if (!WBC_ERROR_IS_OK(wbc_status)) {
434 goto done;
437 wbc_status = wbcGetSidAliases(&dinfo->sid, &user_sid, 1,
438 &alias_rids, &num_alias_rids);
439 if (!WBC_ERROR_IS_OK(wbc_status)) {
440 goto done;
443 wbcSidToStringBuf(&dinfo->sid, domain_sid_str, sizeof(domain_sid_str));
445 for (i = 0; i < num_alias_rids; i++) {
446 d_printf("%s-%d\n", domain_sid_str, alias_rids[i]);
449 wbcFreeMemory(alias_rids);
451 done:
452 wbcFreeMemory(dinfo);
453 return (WBC_ERR_SUCCESS == wbc_status);
457 /* Convert NetBIOS name to IP */
459 static bool wbinfo_wins_byname(const char *name)
461 wbcErr wbc_status = WBC_ERR_UNKNOWN_FAILURE;
462 char *ip = NULL;
464 wbc_status = wbcResolveWinsByName(name, &ip);
465 if (!WBC_ERROR_IS_OK(wbc_status)) {
466 d_fprintf(stderr, "failed to call wbcResolveWinsByName: %s\n",
467 wbcErrorString(wbc_status));
468 return false;
471 /* Display response */
473 d_printf("%s\n", ip);
475 wbcFreeMemory(ip);
477 return true;
480 /* Convert IP to NetBIOS name */
482 static bool wbinfo_wins_byip(const char *ip)
484 wbcErr wbc_status = WBC_ERR_UNKNOWN_FAILURE;
485 char *name = NULL;
487 wbc_status = wbcResolveWinsByIP(ip, &name);
488 if (!WBC_ERROR_IS_OK(wbc_status)) {
489 d_fprintf(stderr, "failed to call wbcResolveWinsByIP: %s\n",
490 wbcErrorString(wbc_status));
491 return false;
494 /* Display response */
496 d_printf("%s\n", name);
498 wbcFreeMemory(name);
500 return true;
503 /* List all/trusted domains */
505 static bool wbinfo_list_domains(bool list_all_domains, bool verbose)
507 struct wbcDomainInfo *domain_list = NULL;
508 size_t num_domains;
509 wbcErr wbc_status = WBC_ERR_UNKNOWN_FAILURE;
510 bool print_all = !list_all_domains && verbose;
511 int i;
513 wbc_status = wbcListTrusts(&domain_list, &num_domains);
514 if (!WBC_ERROR_IS_OK(wbc_status)) {
515 d_fprintf(stderr, "failed to call wbcListTrusts: %s\n",
516 wbcErrorString(wbc_status));
517 return false;
520 if (print_all) {
521 d_printf("%-16s%-65s%-12s%-12s%-5s%-5s\n",
522 "Domain Name", "DNS Domain", "Trust Type",
523 "Transitive", "In", "Out");
526 for (i=0; i<num_domains; i++) {
527 if (print_all) {
528 d_printf("%-16s", domain_list[i].short_name);
529 } else {
530 d_printf("%s", domain_list[i].short_name);
531 d_printf("\n");
532 continue;
535 d_printf("%-65s", domain_list[i].dns_name);
537 switch(domain_list[i].trust_type) {
538 case WBC_DOMINFO_TRUSTTYPE_NONE:
539 if (domain_list[i].trust_routing != NULL) {
540 d_printf("%s\n", domain_list[i].trust_routing);
541 } else {
542 d_printf("None\n");
544 continue;
545 case WBC_DOMINFO_TRUSTTYPE_LOCAL:
546 d_printf("Local\n");
547 continue;
548 case WBC_DOMINFO_TRUSTTYPE_RWDC:
549 d_printf("RWDC\n");
550 continue;
551 case WBC_DOMINFO_TRUSTTYPE_RODC:
552 d_printf("RODC\n");
553 continue;
554 case WBC_DOMINFO_TRUSTTYPE_PDC:
555 d_printf("PDC\n");
556 continue;
557 case WBC_DOMINFO_TRUSTTYPE_WKSTA:
558 d_printf("Workstation ");
559 break;
560 case WBC_DOMINFO_TRUSTTYPE_FOREST:
561 d_printf("Forest ");
562 break;
563 case WBC_DOMINFO_TRUSTTYPE_EXTERNAL:
564 d_printf("External ");
565 break;
566 case WBC_DOMINFO_TRUSTTYPE_IN_FOREST:
567 d_printf("In-Forest ");
568 break;
571 if (domain_list[i].trust_flags & WBC_DOMINFO_TRUST_TRANSITIVE) {
572 d_printf("Yes ");
573 } else {
574 d_printf("No ");
577 if (domain_list[i].trust_flags & WBC_DOMINFO_TRUST_INCOMING) {
578 d_printf("Yes ");
579 } else {
580 d_printf("No ");
583 if (domain_list[i].trust_flags & WBC_DOMINFO_TRUST_OUTGOING) {
584 d_printf("Yes ");
585 } else {
586 d_printf("No ");
589 d_printf("\n");
592 wbcFreeMemory(domain_list);
594 return true;
597 /* List own domain */
599 static bool wbinfo_list_own_domain(void)
601 d_printf("%s\n", get_winbind_domain());
603 return true;
606 /* show sequence numbers */
607 static bool wbinfo_show_sequence(const char *domain)
609 d_printf("This command has been deprecated. Please use the "
610 "--online-status option instead.\n");
611 return false;
614 /* show sequence numbers */
615 static bool wbinfo_show_onlinestatus(const char *domain)
617 struct wbcDomainInfo *domain_list = NULL;
618 size_t num_domains;
619 wbcErr wbc_status = WBC_ERR_UNKNOWN_FAILURE;
620 int i;
622 wbc_status = wbcListTrusts(&domain_list, &num_domains);
623 if (!WBC_ERROR_IS_OK(wbc_status)) {
624 d_fprintf(stderr, "failed to call wbcListTrusts: %s\n",
625 wbcErrorString(wbc_status));
626 return false;
629 for (i=0; i<num_domains; i++) {
630 bool is_offline;
632 if (domain) {
633 if (!strequal(domain_list[i].short_name, domain)) {
634 continue;
638 is_offline = (domain_list[i].domain_flags &
639 WBC_DOMINFO_DOMAIN_OFFLINE);
641 d_printf("%s : %s\n",
642 domain_list[i].short_name,
643 is_offline ? "offline" : "online" );
646 wbcFreeMemory(domain_list);
648 return true;
652 /* Show domain info */
654 static bool wbinfo_domain_info(const char *domain)
656 wbcErr wbc_status = WBC_ERR_UNKNOWN_FAILURE;
657 struct wbcDomainInfo *dinfo = NULL;
658 char sid_str[WBC_SID_STRING_BUFLEN];
660 if ((domain == NULL) || (strequal(domain, ".")) || (domain[0] == '\0')){
661 domain = get_winbind_domain();
664 /* Send request */
666 wbc_status = wbcDomainInfo(domain, &dinfo);
667 if (!WBC_ERROR_IS_OK(wbc_status)) {
668 d_fprintf(stderr, "failed to call wbcDomainInfo: %s\n",
669 wbcErrorString(wbc_status));
670 return false;
673 wbcSidToStringBuf(&dinfo->sid, sid_str, sizeof(sid_str));
675 /* Display response */
677 d_printf("Name : %s\n", dinfo->short_name);
678 d_printf("Alt_Name : %s\n", dinfo->dns_name);
680 d_printf("SID : %s\n", sid_str);
682 d_printf("Active Directory : %s\n",
683 (dinfo->domain_flags & WBC_DOMINFO_DOMAIN_AD) ? "Yes" : "No");
684 d_printf("Native : %s\n",
685 (dinfo->domain_flags & WBC_DOMINFO_DOMAIN_NATIVE) ?
686 "Yes" : "No");
688 d_printf("Primary : %s\n",
689 (dinfo->domain_flags & WBC_DOMINFO_DOMAIN_PRIMARY) ?
690 "Yes" : "No");
692 wbcFreeMemory(dinfo);
694 return true;
697 /* Get a foreign DC's name */
698 static bool wbinfo_getdcname(const char *domain_name)
700 struct winbindd_request request;
701 struct winbindd_response response;
703 ZERO_STRUCT(request);
704 ZERO_STRUCT(response);
706 fstrcpy(request.domain_name, domain_name);
708 /* Send request */
710 if (winbindd_request_response(NULL, WINBINDD_GETDCNAME, &request,
711 &response) != NSS_STATUS_SUCCESS) {
712 d_fprintf(stderr, "Could not get dc name for %s\n",domain_name);
713 return false;
716 /* Display response */
718 d_printf("%s\n", response.data.dc_name);
720 return true;
723 /* Find a DC */
724 static bool wbinfo_dsgetdcname(const char *domain_name, uint32_t flags)
726 wbcErr wbc_status = WBC_ERR_UNKNOWN_FAILURE;
727 struct wbcDomainControllerInfoEx *dc_info;
728 char *str = NULL;
730 wbc_status = wbcLookupDomainControllerEx(domain_name, NULL, NULL,
731 flags | DS_DIRECTORY_SERVICE_REQUIRED,
732 &dc_info);
733 if (!WBC_ERROR_IS_OK(wbc_status)) {
734 printf("Could not find dc for %s\n", domain_name);
735 return false;
738 wbcGuidToString(dc_info->domain_guid, &str);
740 d_printf("%s\n", dc_info->dc_unc);
741 d_printf("%s\n", dc_info->dc_address);
742 d_printf("%d\n", dc_info->dc_address_type);
743 d_printf("%s\n", str);
744 d_printf("%s\n", dc_info->domain_name);
745 d_printf("%s\n", dc_info->forest_name);
746 d_printf("0x%08x\n", dc_info->dc_flags);
747 d_printf("%s\n", dc_info->dc_site_name);
748 d_printf("%s\n", dc_info->client_site_name);
750 return true;
753 /* Check trust account password */
755 static bool wbinfo_check_secret(const char *domain)
757 wbcErr wbc_status = WBC_ERR_UNKNOWN_FAILURE;
758 struct wbcAuthErrorInfo *error = NULL;
759 const char *domain_name;
761 if (domain) {
762 domain_name = domain;
763 } else {
764 domain_name = get_winbind_domain();
767 wbc_status = wbcCheckTrustCredentials(domain_name, &error);
769 d_printf("checking the trust secret for domain %s via RPC calls %s\n",
770 domain_name,
771 WBC_ERROR_IS_OK(wbc_status) ? "succeeded" : "failed");
773 if (wbc_status == WBC_ERR_AUTH_ERROR) {
774 d_fprintf(stderr, "wbcCheckTrustCredentials(%s): error code was %s (0x%x)\n",
775 domain_name, error->nt_string, error->nt_status);
776 wbcFreeMemory(error);
778 if (!WBC_ERROR_IS_OK(wbc_status)) {
779 d_fprintf(stderr, "failed to call wbcCheckTrustCredentials: "
780 "%s\n", wbcErrorString(wbc_status));
781 return false;
784 return true;
787 /* Find the currently connected DCs */
789 static bool wbinfo_dc_info(const char *domain_name)
791 wbcErr wbc_status = WBC_ERR_UNKNOWN_FAILURE;
792 size_t i, num_dcs;
793 const char **dc_names, **dc_ips;
795 wbc_status = wbcDcInfo(domain_name, &num_dcs,
796 &dc_names, &dc_ips);
797 if (!WBC_ERROR_IS_OK(wbc_status)) {
798 printf("Could not find dc info %s\n",
799 domain_name ? domain_name : "our domain");
800 return false;
803 for (i=0; i<num_dcs; i++) {
804 printf("%s (%s)\n", dc_names[i], dc_ips[i]);
806 wbcFreeMemory(dc_names);
807 wbcFreeMemory(dc_ips);
809 return true;
812 /* Change trust account password */
814 static bool wbinfo_change_secret(const char *domain)
816 wbcErr wbc_status = WBC_ERR_UNKNOWN_FAILURE;
817 struct wbcAuthErrorInfo *error = NULL;
818 const char *domain_name;
820 if (domain) {
821 domain_name = domain;
822 } else {
823 domain_name = get_winbind_domain();
826 wbc_status = wbcChangeTrustCredentials(domain_name, &error);
828 d_printf("changing the trust secret for domain %s via RPC calls %s\n",
829 domain_name,
830 WBC_ERROR_IS_OK(wbc_status) ? "succeeded" : "failed");
832 if (wbc_status == WBC_ERR_AUTH_ERROR) {
833 d_fprintf(stderr, "wbcChangeTrustCredentials(%s): error code was %s (0x%x)\n",
834 domain_name, error->nt_string, error->nt_status);
835 wbcFreeMemory(error);
837 if (!WBC_ERROR_IS_OK(wbc_status)) {
838 d_fprintf(stderr, "failed to call wbcChangeTrustCredentials: "
839 "%s\n", wbcErrorString(wbc_status));
840 return false;
843 return true;
846 /* Check DC connection */
848 static bool wbinfo_ping_dc(const char *domain)
850 wbcErr wbc_status = WBC_ERR_UNKNOWN_FAILURE;
851 struct wbcAuthErrorInfo *error = NULL;
852 char *dcname = NULL;
854 const char *domain_name;
856 if (domain) {
857 domain_name = domain;
858 } else {
859 domain_name = get_winbind_domain();
862 wbc_status = wbcPingDc2(domain_name, &error, &dcname);
864 d_printf("checking the NETLOGON for domain[%s] dc connection to \"%s\" %s\n",
865 domain_name ? domain_name : "",
866 dcname ? dcname : "",
867 WBC_ERROR_IS_OK(wbc_status) ? "succeeded" : "failed");
869 wbcFreeMemory(dcname);
870 if (wbc_status == WBC_ERR_AUTH_ERROR) {
871 d_fprintf(stderr, "wbcPingDc2(%s): error code was %s (0x%x)\n",
872 domain_name, error->nt_string, error->nt_status);
873 wbcFreeMemory(error);
874 return false;
876 if (!WBC_ERROR_IS_OK(wbc_status)) {
877 d_fprintf(stderr, "failed to call wbcPingDc: %s\n",
878 wbcErrorString(wbc_status));
879 return false;
882 return true;
885 /* Convert uid to sid */
887 static bool wbinfo_uid_to_sid(uid_t uid)
889 wbcErr wbc_status = WBC_ERR_UNKNOWN_FAILURE;
890 struct wbcDomainSid sid;
891 char sid_str[WBC_SID_STRING_BUFLEN];
893 /* Send request */
895 wbc_status = wbcUidToSid(uid, &sid);
896 if (!WBC_ERROR_IS_OK(wbc_status)) {
897 d_fprintf(stderr, "failed to call wbcUidToSid: %s\n",
898 wbcErrorString(wbc_status));
899 return false;
902 wbcSidToStringBuf(&sid, sid_str, sizeof(sid_str));
904 /* Display response */
906 d_printf("%s\n", sid_str);
908 return true;
911 /* Convert gid to sid */
913 static bool wbinfo_gid_to_sid(gid_t gid)
915 wbcErr wbc_status = WBC_ERR_UNKNOWN_FAILURE;
916 struct wbcDomainSid sid;
917 char sid_str[WBC_SID_STRING_BUFLEN];
919 /* Send request */
921 wbc_status = wbcGidToSid(gid, &sid);
922 if (!WBC_ERROR_IS_OK(wbc_status)) {
923 d_fprintf(stderr, "failed to call wbcGidToSid: %s\n",
924 wbcErrorString(wbc_status));
925 return false;
928 wbcSidToStringBuf(&sid, sid_str, sizeof(sid_str));
930 /* Display response */
932 d_printf("%s\n", sid_str);
934 return true;
937 /* Convert sid to uid */
939 static bool wbinfo_sid_to_uid(const char *sid_str)
941 wbcErr wbc_status = WBC_ERR_UNKNOWN_FAILURE;
942 struct wbcDomainSid sid;
943 uid_t uid;
945 /* Send request */
947 wbc_status = wbcStringToSid(sid_str, &sid);
948 if (!WBC_ERROR_IS_OK(wbc_status)) {
949 d_fprintf(stderr, "failed to call wbcStringToSid: %s\n",
950 wbcErrorString(wbc_status));
951 return false;
954 wbc_status = wbcSidToUid(&sid, &uid);
955 if (!WBC_ERROR_IS_OK(wbc_status)) {
956 d_fprintf(stderr, "failed to call wbcSidToUid: %s\n",
957 wbcErrorString(wbc_status));
958 return false;
961 /* Display response */
963 d_printf("%d\n", (int)uid);
965 return true;
968 static bool wbinfo_sid_to_gid(const char *sid_str)
970 wbcErr wbc_status = WBC_ERR_UNKNOWN_FAILURE;
971 struct wbcDomainSid sid;
972 gid_t gid;
974 /* Send request */
976 wbc_status = wbcStringToSid(sid_str, &sid);
977 if (!WBC_ERROR_IS_OK(wbc_status)) {
978 d_fprintf(stderr, "failed to call wbcStringToSid: %s\n",
979 wbcErrorString(wbc_status));
980 return false;
983 wbc_status = wbcSidToGid(&sid, &gid);
984 if (!WBC_ERROR_IS_OK(wbc_status)) {
985 d_fprintf(stderr, "failed to call wbcSidToGid: %s\n",
986 wbcErrorString(wbc_status));
987 return false;
990 /* Display response */
992 d_printf("%d\n", (int)gid);
994 return true;
997 static bool wbinfo_sids_to_unix_ids(const char *arg)
999 char sidstr[WBC_SID_STRING_BUFLEN];
1000 struct wbcDomainSid *sids;
1001 struct wbcUnixId *unix_ids;
1002 int i, num_sids;
1003 const char *p;
1004 wbcErr wbc_status;
1007 num_sids = 0;
1008 sids = NULL;
1009 p = arg;
1011 while (next_token(&p, sidstr, LIST_SEP, sizeof(sidstr))) {
1012 sids = talloc_realloc(talloc_tos(), sids, struct wbcDomainSid,
1013 num_sids+1);
1014 if (sids == NULL) {
1015 d_fprintf(stderr, "talloc failed\n");
1016 return false;
1018 wbc_status = wbcStringToSid(sidstr, &sids[num_sids]);
1019 if (!WBC_ERROR_IS_OK(wbc_status)) {
1020 d_fprintf(stderr, "wbcSidToString(%s) failed: %s\n",
1021 sidstr, wbcErrorString(wbc_status));
1022 TALLOC_FREE(sids);
1023 return false;
1025 num_sids += 1;
1028 unix_ids = talloc_array(talloc_tos(), struct wbcUnixId, num_sids);
1029 if (unix_ids == NULL) {
1030 TALLOC_FREE(sids);
1031 return false;
1034 wbc_status = wbcSidsToUnixIds(sids, num_sids, unix_ids);
1035 if (!WBC_ERROR_IS_OK(wbc_status)) {
1036 d_fprintf(stderr, "wbcSidsToUnixIds failed: %s\n",
1037 wbcErrorString(wbc_status));
1038 TALLOC_FREE(sids);
1039 return false;
1042 for (i=0; i<num_sids; i++) {
1044 wbcSidToStringBuf(&sids[i], sidstr, sizeof(sidstr));
1046 switch(unix_ids[i].type) {
1047 case WBC_ID_TYPE_UID:
1048 d_printf("%s -> uid %d\n", sidstr, unix_ids[i].id.uid);
1049 break;
1050 case WBC_ID_TYPE_GID:
1051 d_printf("%s -> gid %d\n", sidstr, unix_ids[i].id.gid);
1052 break;
1053 case WBC_ID_TYPE_BOTH:
1054 d_printf("%s -> uid/gid %d\n", sidstr, unix_ids[i].id.uid);
1055 break;
1056 default:
1057 d_printf("%s -> unmapped\n", sidstr);
1058 break;
1062 TALLOC_FREE(sids);
1063 TALLOC_FREE(unix_ids);
1065 return true;
1068 static bool wbinfo_xids_to_sids(const char *arg)
1070 fstring idstr;
1071 struct wbcUnixId *xids = NULL;
1072 struct wbcDomainSid *sids;
1073 wbcErr wbc_status;
1074 int num_xids = 0;
1075 const char *p;
1076 int i;
1078 p = arg;
1080 while (next_token(&p, idstr, LIST_SEP, sizeof(idstr))) {
1081 xids = talloc_realloc(talloc_tos(), xids, struct wbcUnixId,
1082 num_xids+1);
1083 if (xids == NULL) {
1084 d_fprintf(stderr, "talloc failed\n");
1085 return false;
1088 switch (idstr[0]) {
1089 case 'u':
1090 xids[num_xids] = (struct wbcUnixId) {
1091 .type = WBC_ID_TYPE_UID,
1092 .id.uid = atoi(&idstr[1])
1094 break;
1095 case 'g':
1096 xids[num_xids] = (struct wbcUnixId) {
1097 .type = WBC_ID_TYPE_GID,
1098 .id.gid = atoi(&idstr[1])
1100 break;
1101 default:
1102 d_fprintf(stderr, "%s is an invalid id\n", idstr);
1103 TALLOC_FREE(xids);
1104 return false;
1106 num_xids += 1;
1109 sids = talloc_array(talloc_tos(), struct wbcDomainSid, num_xids);
1110 if (sids == NULL) {
1111 d_fprintf(stderr, "talloc failed\n");
1112 TALLOC_FREE(xids);
1113 return false;
1116 wbc_status = wbcUnixIdsToSids(xids, num_xids, sids);
1117 if (!WBC_ERROR_IS_OK(wbc_status)) {
1118 d_fprintf(stderr, "wbcUnixIdsToSids failed: %s\n",
1119 wbcErrorString(wbc_status));
1120 TALLOC_FREE(sids);
1121 TALLOC_FREE(xids);
1122 return false;
1125 for (i=0; i<num_xids; i++) {
1126 char str[WBC_SID_STRING_BUFLEN];
1127 struct wbcDomainSid null_sid = { 0 };
1129 if (memcmp(&null_sid, &sids[i], sizeof(struct wbcDomainSid)) == 0) {
1130 d_printf("NOT MAPPED\n");
1131 continue;
1133 wbcSidToStringBuf(&sids[i], str, sizeof(str));
1134 d_printf("%s\n", str);
1137 return true;
1140 static bool wbinfo_allocate_uid(void)
1142 wbcErr wbc_status = WBC_ERR_UNKNOWN_FAILURE;
1143 uid_t uid;
1145 /* Send request */
1147 wbc_status = wbcAllocateUid(&uid);
1148 if (!WBC_ERROR_IS_OK(wbc_status)) {
1149 d_fprintf(stderr, "failed to call wbcAllocateUid: %s\n",
1150 wbcErrorString(wbc_status));
1151 return false;
1154 /* Display response */
1156 d_printf("New uid: %u\n", (unsigned int)uid);
1158 return true;
1161 static bool wbinfo_allocate_gid(void)
1163 wbcErr wbc_status = WBC_ERR_UNKNOWN_FAILURE;
1164 gid_t gid;
1166 /* Send request */
1168 wbc_status = wbcAllocateGid(&gid);
1169 if (!WBC_ERROR_IS_OK(wbc_status)) {
1170 d_fprintf(stderr, "failed to call wbcAllocateGid: %s\n",
1171 wbcErrorString(wbc_status));
1172 return false;
1175 /* Display response */
1177 d_printf("New gid: %u\n", (unsigned int)gid);
1179 return true;
1182 static bool wbinfo_set_uid_mapping(uid_t uid, const char *sid_str)
1184 wbcErr wbc_status = WBC_ERR_UNKNOWN_FAILURE;
1185 struct wbcDomainSid sid;
1187 /* Send request */
1189 wbc_status = wbcStringToSid(sid_str, &sid);
1190 if (!WBC_ERROR_IS_OK(wbc_status)) {
1191 d_fprintf(stderr, "failed to call wbcStringToSid: %s\n",
1192 wbcErrorString(wbc_status));
1193 return false;
1196 wbc_status = wbcSetUidMapping(uid, &sid);
1197 if (!WBC_ERROR_IS_OK(wbc_status)) {
1198 d_fprintf(stderr, "failed to call wbcSetUidMapping: %s\n",
1199 wbcErrorString(wbc_status));
1200 return false;
1203 /* Display response */
1205 d_printf("uid %u now mapped to sid %s\n",
1206 (unsigned int)uid, sid_str);
1208 return true;
1211 static bool wbinfo_set_gid_mapping(gid_t gid, const char *sid_str)
1213 wbcErr wbc_status = WBC_ERR_UNKNOWN_FAILURE;
1214 struct wbcDomainSid sid;
1216 /* Send request */
1218 wbc_status = wbcStringToSid(sid_str, &sid);
1219 if (!WBC_ERROR_IS_OK(wbc_status)) {
1220 d_fprintf(stderr, "failed to call wbcStringToSid: %s\n",
1221 wbcErrorString(wbc_status));
1222 return false;
1225 wbc_status = wbcSetGidMapping(gid, &sid);
1226 if (!WBC_ERROR_IS_OK(wbc_status)) {
1227 d_fprintf(stderr, "failed to call wbcSetGidMapping: %s\n",
1228 wbcErrorString(wbc_status));
1229 return false;
1232 /* Display response */
1234 d_printf("gid %u now mapped to sid %s\n",
1235 (unsigned int)gid, sid_str);
1237 return true;
1240 static bool wbinfo_remove_uid_mapping(uid_t uid, const char *sid_str)
1242 wbcErr wbc_status = WBC_ERR_UNKNOWN_FAILURE;
1243 struct wbcDomainSid sid;
1245 /* Send request */
1247 wbc_status = wbcStringToSid(sid_str, &sid);
1248 if (!WBC_ERROR_IS_OK(wbc_status)) {
1249 d_fprintf(stderr, "failed to call wbcStringToSid: %s\n",
1250 wbcErrorString(wbc_status));
1251 return false;
1254 wbc_status = wbcRemoveUidMapping(uid, &sid);
1255 if (!WBC_ERROR_IS_OK(wbc_status)) {
1256 d_fprintf(stderr, "failed to call wbcRemoveUidMapping: %s\n",
1257 wbcErrorString(wbc_status));
1258 return false;
1261 /* Display response */
1263 d_printf("Removed uid %u to sid %s mapping\n",
1264 (unsigned int)uid, sid_str);
1266 return true;
1269 static bool wbinfo_remove_gid_mapping(gid_t gid, const char *sid_str)
1271 wbcErr wbc_status = WBC_ERR_UNKNOWN_FAILURE;
1272 struct wbcDomainSid sid;
1274 /* Send request */
1276 wbc_status = wbcStringToSid(sid_str, &sid);
1277 if (!WBC_ERROR_IS_OK(wbc_status)) {
1278 d_fprintf(stderr, "failed to call wbcStringToSid: %s\n",
1279 wbcErrorString(wbc_status));
1280 return false;
1283 wbc_status = wbcRemoveGidMapping(gid, &sid);
1284 if (!WBC_ERROR_IS_OK(wbc_status)) {
1285 d_fprintf(stderr, "failed to call wbcRemoveGidMapping: %s\n",
1286 wbcErrorString(wbc_status));
1287 return false;
1290 /* Display response */
1292 d_printf("Removed gid %u to sid %s mapping\n",
1293 (unsigned int)gid, sid_str);
1295 return true;
1298 /* Convert sid to string */
1300 static bool wbinfo_lookupsid(const char *sid_str)
1302 wbcErr wbc_status = WBC_ERR_UNKNOWN_FAILURE;
1303 struct wbcDomainSid sid;
1304 char *domain;
1305 char *name;
1306 enum wbcSidType type;
1308 /* Send off request */
1310 wbc_status = wbcStringToSid(sid_str, &sid);
1311 if (!WBC_ERROR_IS_OK(wbc_status)) {
1312 d_fprintf(stderr, "failed to call wbcStringToSid: %s\n",
1313 wbcErrorString(wbc_status));
1314 return false;
1317 wbc_status = wbcLookupSid(&sid, &domain, &name, &type);
1318 if (!WBC_ERROR_IS_OK(wbc_status)) {
1319 d_fprintf(stderr, "failed to call wbcLookupSid: %s\n",
1320 wbcErrorString(wbc_status));
1321 return false;
1324 /* Display response */
1326 if (type == WBC_SID_NAME_DOMAIN) {
1327 d_printf("%s %d\n", domain, type);
1328 } else {
1329 d_printf("%s%c%s %d\n",
1330 domain, winbind_separator(), name, type);
1333 wbcFreeMemory(domain);
1334 wbcFreeMemory(name);
1336 return true;
1339 /* Convert sid to fullname */
1341 static bool wbinfo_lookupsid_fullname(const char *sid_str)
1343 wbcErr wbc_status = WBC_ERR_UNKNOWN_FAILURE;
1344 struct wbcDomainSid sid;
1345 char *domain;
1346 char *name;
1347 enum wbcSidType type;
1349 /* Send off request */
1351 wbc_status = wbcStringToSid(sid_str, &sid);
1352 if (!WBC_ERROR_IS_OK(wbc_status)) {
1353 d_fprintf(stderr, "failed to call wbcStringToSid: %s\n",
1354 wbcErrorString(wbc_status));
1355 return false;
1358 wbc_status = wbcGetDisplayName(&sid, &domain, &name, &type);
1359 if (!WBC_ERROR_IS_OK(wbc_status)) {
1360 d_fprintf(stderr, "failed to call wbcGetDisplayName: %s\n",
1361 wbcErrorString(wbc_status));
1362 return false;
1365 /* Display response */
1367 d_printf("%s%c%s %d\n",
1368 domain, winbind_separator(), name, type);
1370 wbcFreeMemory(domain);
1371 wbcFreeMemory(name);
1373 return true;
1376 /* Lookup a list of RIDs */
1378 static bool wbinfo_lookuprids(const char *domain, const char *arg)
1380 wbcErr wbc_status = WBC_ERR_UNKNOWN_FAILURE;
1381 struct wbcDomainInfo *dinfo = NULL;
1382 char *domain_name = NULL;
1383 const char **names = NULL;
1384 enum wbcSidType *types = NULL;
1385 size_t i;
1386 int num_rids;
1387 uint32_t *rids = NULL;
1388 const char *p;
1389 char *ridstr;
1390 TALLOC_CTX *mem_ctx = NULL;
1391 bool ret = false;
1393 if ((domain == NULL) || (strequal(domain, ".")) || (domain[0] == '\0')){
1394 domain = get_winbind_domain();
1397 /* Send request */
1399 wbc_status = wbcDomainInfo(domain, &dinfo);
1400 if (!WBC_ERROR_IS_OK(wbc_status)) {
1401 d_printf("wbcDomainInfo(%s) failed: %s\n", domain,
1402 wbcErrorString(wbc_status));
1403 goto done;
1406 mem_ctx = talloc_new(NULL);
1407 if (mem_ctx == NULL) {
1408 d_printf("talloc_new failed\n");
1409 goto done;
1412 num_rids = 0;
1413 rids = NULL;
1414 p = arg;
1416 while (next_token_talloc(mem_ctx, &p, &ridstr, " ,\n")) {
1417 uint32_t rid = strtoul(ridstr, NULL, 10);
1418 rids = talloc_realloc(mem_ctx, rids, uint32_t, num_rids + 1);
1419 if (rids == NULL) {
1420 d_printf("talloc_realloc failed\n");
1422 rids[num_rids] = rid;
1423 num_rids += 1;
1426 if (rids == NULL) {
1427 d_printf("no rids\n");
1428 goto done;
1431 wbc_status = wbcLookupRids(&dinfo->sid, num_rids, rids,
1432 &p, &names, &types);
1433 if (!WBC_ERROR_IS_OK(wbc_status)) {
1434 d_printf("winbind_lookup_rids failed: %s\n",
1435 wbcErrorString(wbc_status));
1436 goto done;
1439 domain_name = discard_const_p(char, p);
1440 d_printf("Domain: %s\n", domain_name);
1442 for (i=0; i<num_rids; i++) {
1443 d_printf("%8d: %s (%s)\n", rids[i], names[i],
1444 wbcSidTypeString(types[i]));
1447 ret = true;
1448 done:
1449 wbcFreeMemory(dinfo);
1450 wbcFreeMemory(domain_name);
1451 wbcFreeMemory(names);
1452 wbcFreeMemory(types);
1453 TALLOC_FREE(mem_ctx);
1454 return ret;
1457 static bool wbinfo_lookup_sids(const char *arg)
1459 char sidstr[WBC_SID_STRING_BUFLEN];
1460 struct wbcDomainSid *sids;
1461 struct wbcDomainInfo *domains;
1462 struct wbcTranslatedName *names;
1463 int num_domains;
1464 int i, num_sids;
1465 const char *p;
1466 wbcErr wbc_status;
1469 num_sids = 0;
1470 sids = NULL;
1471 p = arg;
1473 while (next_token(&p, sidstr, LIST_SEP, sizeof(sidstr))) {
1474 sids = talloc_realloc(talloc_tos(), sids, struct wbcDomainSid,
1475 num_sids+1);
1476 if (sids == NULL) {
1477 d_fprintf(stderr, "talloc failed\n");
1478 return false;
1480 wbc_status = wbcStringToSid(sidstr, &sids[num_sids]);
1481 if (!WBC_ERROR_IS_OK(wbc_status)) {
1482 d_fprintf(stderr, "wbcSidToString(%s) failed: %s\n",
1483 sidstr, wbcErrorString(wbc_status));
1484 TALLOC_FREE(sids);
1485 return false;
1487 num_sids += 1;
1490 wbc_status = wbcLookupSids(sids, num_sids, &domains, &num_domains,
1491 &names);
1492 if (!WBC_ERROR_IS_OK(wbc_status)) {
1493 d_fprintf(stderr, "wbcLookupSids failed: %s\n",
1494 wbcErrorString(wbc_status));
1495 TALLOC_FREE(sids);
1496 return false;
1499 for (i=0; i<num_sids; i++) {
1500 const char *domain = NULL;
1502 wbcSidToStringBuf(&sids[i], sidstr, sizeof(sidstr));
1504 if (names[i].domain_index >= num_domains) {
1505 domain = "<none>";
1506 } else if (names[i].domain_index < 0) {
1507 domain = "<none>";
1508 } else {
1509 domain = domains[names[i].domain_index].short_name;
1512 if (names[i].type == WBC_SID_NAME_DOMAIN) {
1513 d_printf("%s -> %s %d\n", sidstr,
1514 domain,
1515 names[i].type);
1516 } else {
1517 d_printf("%s -> %s%c%s %d\n", sidstr,
1518 domain,
1519 winbind_separator(),
1520 names[i].name, names[i].type);
1523 wbcFreeMemory(names);
1524 wbcFreeMemory(domains);
1525 return true;
1528 /* Convert string to sid */
1530 static bool wbinfo_lookupname(const char *full_name)
1532 wbcErr wbc_status = WBC_ERR_UNKNOWN_FAILURE;
1533 struct wbcDomainSid sid;
1534 char sid_str[WBC_SID_STRING_BUFLEN];
1535 enum wbcSidType type;
1536 fstring domain_name;
1537 fstring account_name;
1539 /* Send off request */
1541 parse_wbinfo_domain_user(full_name, domain_name,
1542 account_name);
1544 wbc_status = wbcLookupName(domain_name, account_name,
1545 &sid, &type);
1546 if (!WBC_ERROR_IS_OK(wbc_status)) {
1547 d_fprintf(stderr, "failed to call wbcLookupName: %s\n",
1548 wbcErrorString(wbc_status));
1549 return false;
1552 wbcSidToStringBuf(&sid, sid_str, sizeof(sid_str));
1554 /* Display response */
1556 d_printf("%s %s (%d)\n", sid_str, wbcSidTypeString(type), type);
1558 return true;
1561 static char *wbinfo_prompt_pass(TALLOC_CTX *mem_ctx,
1562 const char *prefix,
1563 const char *username)
1565 char *prompt;
1566 char buf[1024] = {0};
1567 int rc;
1569 prompt = talloc_asprintf(mem_ctx, "Enter %s's ", username);
1570 if (!prompt) {
1571 return NULL;
1573 if (prefix) {
1574 prompt = talloc_asprintf_append(prompt, "%s ", prefix);
1575 if (!prompt) {
1576 return NULL;
1579 prompt = talloc_asprintf_append(prompt, "password: ");
1580 if (!prompt) {
1581 return NULL;
1584 rc = samba_getpass(prompt, buf, sizeof(buf), false, false);
1585 TALLOC_FREE(prompt);
1586 if (rc < 0) {
1587 return NULL;
1590 return talloc_strdup(mem_ctx, buf);
1593 /* Authenticate a user with a plaintext password */
1595 static bool wbinfo_auth_krb5(char *username, const char *cctype, uint32_t flags)
1597 wbcErr wbc_status = WBC_ERR_UNKNOWN_FAILURE;
1598 char *s = NULL;
1599 char *p = NULL;
1600 char *password = NULL;
1601 char *name = NULL;
1602 char *local_cctype = NULL;
1603 uid_t uid;
1604 struct wbcLogonUserParams params;
1605 struct wbcLogonUserInfo *info;
1606 struct wbcAuthErrorInfo *error;
1607 struct wbcUserPasswordPolicyInfo *policy;
1608 TALLOC_CTX *frame = talloc_tos();
1610 if ((s = talloc_strdup(frame, username)) == NULL) {
1611 return false;
1614 if ((p = strchr(s, '%')) != NULL) {
1615 *p = 0;
1616 p++;
1617 password = talloc_strdup(frame, p);
1618 } else {
1619 password = wbinfo_prompt_pass(frame, NULL, username);
1622 local_cctype = talloc_strdup(frame, cctype);
1624 name = s;
1626 uid = geteuid();
1628 params.username = name;
1629 params.password = password;
1630 params.num_blobs = 0;
1631 params.blobs = NULL;
1633 wbc_status = wbcAddNamedBlob(&params.num_blobs,
1634 &params.blobs,
1635 "flags",
1637 (uint8_t *)&flags,
1638 sizeof(flags));
1639 if (!WBC_ERROR_IS_OK(wbc_status)) {
1640 d_fprintf(stderr, "failed to call wbcAddNamedBlob: %s\n",
1641 wbcErrorString(wbc_status));
1642 goto done;
1645 wbc_status = wbcAddNamedBlob(&params.num_blobs,
1646 &params.blobs,
1647 "user_uid",
1649 (uint8_t *)&uid,
1650 sizeof(uid));
1651 if (!WBC_ERROR_IS_OK(wbc_status)) {
1652 d_fprintf(stderr, "failed to call wbcAddNamedBlob: %s\n",
1653 wbcErrorString(wbc_status));
1654 goto done;
1657 wbc_status = wbcAddNamedBlob(&params.num_blobs,
1658 &params.blobs,
1659 "krb5_cc_type",
1661 (uint8_t *)local_cctype,
1662 strlen(cctype)+1);
1663 if (!WBC_ERROR_IS_OK(wbc_status)) {
1664 d_fprintf(stderr, "failed to call wbcAddNamedBlob: %s\n",
1665 wbcErrorString(wbc_status));
1666 goto done;
1669 wbc_status = wbcLogonUser(&params, &info, &error, &policy);
1671 d_printf("plaintext kerberos password authentication for [%s] %s "
1672 "(requesting cctype: %s)\n",
1673 username, WBC_ERROR_IS_OK(wbc_status) ? "succeeded" : "failed",
1674 cctype);
1676 if (error) {
1677 d_fprintf(stderr,
1678 "wbcLogonUser(%s): error code was %s (0x%x)\n"
1679 "error message was: %s\n",
1680 params.username, error->nt_string,
1681 error->nt_status,
1682 error->display_string);
1685 if (WBC_ERROR_IS_OK(wbc_status)) {
1686 if (flags & WBFLAG_PAM_INFO3_TEXT) {
1687 if (info && info->info && info->info->user_flags &
1688 NETLOGON_CACHED_ACCOUNT) {
1689 d_printf("user_flgs: "
1690 "NETLOGON_CACHED_ACCOUNT\n");
1694 if (info) {
1695 int i;
1696 for (i=0; i < info->num_blobs; i++) {
1697 if (strequal(info->blobs[i].name,
1698 "krb5ccname")) {
1699 d_printf("credentials were put "
1700 "in: %s\n",
1701 (const char *)
1702 info->blobs[i].blob.data);
1703 break;
1706 } else {
1707 d_printf("no credentials cached\n");
1710 done:
1712 wbcFreeMemory(params.blobs);
1714 return WBC_ERROR_IS_OK(wbc_status);
1717 /* Authenticate a user with a plaintext password */
1719 static bool wbinfo_auth(char *username)
1721 wbcErr wbc_status = WBC_ERR_UNKNOWN_FAILURE;
1722 char *s = NULL;
1723 char *p = NULL;
1724 char *password = NULL;
1725 char *name = NULL;
1726 TALLOC_CTX *frame = talloc_tos();
1728 if ((s = talloc_strdup(frame, username)) == NULL) {
1729 return false;
1732 if ((p = strchr(s, '%')) != NULL) {
1733 *p = 0;
1734 p++;
1735 password = talloc_strdup(frame, p);
1736 } else {
1737 password = wbinfo_prompt_pass(frame, NULL, username);
1740 name = s;
1742 wbc_status = wbcAuthenticateUser(name, password);
1744 d_printf("plaintext password authentication %s\n",
1745 WBC_ERROR_IS_OK(wbc_status) ? "succeeded" : "failed");
1747 #if 0
1748 if (response.data.auth.nt_status)
1749 d_fprintf(stderr,
1750 "error code was %s (0x%x)\nerror message was: %s\n",
1751 response.data.auth.nt_status_string,
1752 response.data.auth.nt_status,
1753 response.data.auth.error_string);
1754 #endif
1756 return WBC_ERROR_IS_OK(wbc_status);
1759 /* Authenticate a user with a challenge/response */
1761 static bool wbinfo_auth_crap(char *username, bool use_ntlmv2, bool use_lanman)
1763 wbcErr wbc_status = WBC_ERR_UNKNOWN_FAILURE;
1764 struct wbcAuthUserParams params;
1765 struct wbcAuthUserInfo *info = NULL;
1766 struct wbcAuthErrorInfo *err = NULL;
1767 DATA_BLOB lm = data_blob_null;
1768 DATA_BLOB nt = data_blob_null;
1769 fstring name_user;
1770 fstring name_domain;
1771 char *pass;
1772 char *p;
1773 TALLOC_CTX *frame = talloc_tos();
1775 p = strchr(username, '%');
1777 if (p) {
1778 *p = 0;
1779 pass = talloc_strdup(frame, p + 1);
1780 } else {
1781 pass = wbinfo_prompt_pass(frame, NULL, username);
1784 parse_wbinfo_domain_user(username, name_domain, name_user);
1786 params.account_name = name_user;
1787 params.domain_name = name_domain;
1788 params.workstation_name = NULL;
1790 params.flags = 0;
1791 params.parameter_control= WBC_MSV1_0_ALLOW_WORKSTATION_TRUST_ACCOUNT |
1792 WBC_MSV1_0_ALLOW_SERVER_TRUST_ACCOUNT;
1794 params.level = WBC_AUTH_USER_LEVEL_RESPONSE;
1796 generate_random_buffer(params.password.response.challenge, 8);
1798 if (use_ntlmv2) {
1799 DATA_BLOB server_chal;
1800 DATA_BLOB names_blob;
1802 server_chal = data_blob(params.password.response.challenge, 8);
1804 /* Pretend this is a login to 'us', for blob purposes */
1805 names_blob = NTLMv2_generate_names_blob(NULL,
1806 get_winbind_netbios_name(),
1807 get_winbind_domain());
1809 if (pass != NULL &&
1810 !SMBNTLMv2encrypt(NULL, name_user, name_domain, pass,
1811 &server_chal,
1812 &names_blob,
1813 &lm, &nt, NULL, NULL)) {
1814 data_blob_free(&names_blob);
1815 data_blob_free(&server_chal);
1816 TALLOC_FREE(pass);
1817 return false;
1819 data_blob_free(&names_blob);
1820 data_blob_free(&server_chal);
1822 } else {
1823 if (use_lanman) {
1824 bool ok;
1825 lm = data_blob(NULL, 24);
1826 ok = SMBencrypt(pass,
1827 params.password.response.challenge,
1828 lm.data);
1829 if (!ok) {
1830 data_blob_free(&lm);
1833 nt = data_blob(NULL, 24);
1834 SMBNTencrypt(pass, params.password.response.challenge,
1835 nt.data);
1838 params.password.response.nt_length = nt.length;
1839 params.password.response.nt_data = nt.data;
1840 params.password.response.lm_length = lm.length;
1841 params.password.response.lm_data = lm.data;
1843 wbc_status = wbcAuthenticateUserEx(&params, &info, &err);
1845 /* Display response */
1847 d_printf("challenge/response password authentication %s\n",
1848 WBC_ERROR_IS_OK(wbc_status) ? "succeeded" : "failed");
1850 if (wbc_status == WBC_ERR_AUTH_ERROR) {
1851 d_fprintf(stderr,
1852 "wbcAuthenticateUserEx(%s%c%s): error code was "
1853 "%s (0x%x, authoritative=%"PRIu8")\n"
1854 "error message was: %s\n",
1855 name_domain,
1856 winbind_separator(),
1857 name_user,
1858 err->nt_string,
1859 err->nt_status,
1860 err->authoritative,
1861 err->display_string);
1862 wbcFreeMemory(err);
1863 } else if (WBC_ERROR_IS_OK(wbc_status)) {
1864 wbcFreeMemory(info);
1867 data_blob_free(&nt);
1868 data_blob_free(&lm);
1870 return WBC_ERROR_IS_OK(wbc_status);
1873 /* Authenticate a user with a plaintext password */
1875 static bool wbinfo_pam_logon(char *username, bool verbose)
1877 wbcErr wbc_status = WBC_ERR_UNKNOWN_FAILURE;
1878 struct wbcLogonUserParams params;
1879 struct wbcLogonUserInfo *info = NULL;
1880 struct wbcAuthErrorInfo *error = NULL;
1881 char *s = NULL;
1882 char *p = NULL;
1883 TALLOC_CTX *frame = talloc_tos();
1884 uint32_t flags;
1885 uint32_t uid;
1887 ZERO_STRUCT(params);
1889 if ((s = talloc_strdup(frame, username)) == NULL) {
1890 return false;
1893 if ((p = strchr(s, '%')) != NULL) {
1894 *p = 0;
1895 p++;
1896 params.password = talloc_strdup(frame, p);
1897 } else {
1898 params.password = wbinfo_prompt_pass(frame, NULL, username);
1900 params.username = s;
1902 flags = WBFLAG_PAM_CACHED_LOGIN;
1904 wbc_status = wbcAddNamedBlob(&params.num_blobs, &params.blobs,
1905 "flags", 0,
1906 (uint8_t *)&flags, sizeof(flags));
1907 if (!WBC_ERROR_IS_OK(wbc_status)) {
1908 d_printf("wbcAddNamedBlob failed: %s\n",
1909 wbcErrorString(wbc_status));
1910 return false;
1913 uid = getuid();
1915 wbc_status = wbcAddNamedBlob(&params.num_blobs, &params.blobs,
1916 "user_uid", 0,
1917 (uint8_t *)&uid, sizeof(uid));
1918 if (!WBC_ERROR_IS_OK(wbc_status)) {
1919 d_printf("wbcAddNamedBlob failed: %s\n",
1920 wbcErrorString(wbc_status));
1921 return false;
1924 wbc_status = wbcLogonUser(&params, &info, &error, NULL);
1926 if (verbose && (info != NULL)) {
1927 struct wbcAuthUserInfo *i = info->info;
1928 uint32_t j;
1930 if (i->account_name != NULL) {
1931 d_printf("account_name: %s\n", i->account_name);
1933 if (i->user_principal != NULL) {
1934 d_printf("user_principal: %s\n", i->user_principal);
1936 if (i->full_name != NULL) {
1937 d_printf("full_name: %s\n", i->full_name);
1939 if (i->domain_name != NULL) {
1940 d_printf("domain_name: %s\n", i->domain_name);
1942 if (i->dns_domain_name != NULL) {
1943 d_printf("dns_domain_name: %s\n", i->dns_domain_name);
1945 if (i->logon_server != NULL) {
1946 d_printf("logon_server: %s\n", i->logon_server);
1948 if (i->logon_script != NULL) {
1949 d_printf("logon_script: %s\n", i->logon_script);
1951 if (i->profile_path != NULL) {
1952 d_printf("profile_path: %s\n", i->profile_path);
1954 if (i->home_directory != NULL) {
1955 d_printf("home_directory: %s\n", i->home_directory);
1957 if (i->home_drive != NULL) {
1958 d_printf("home_drive: %s\n", i->home_drive);
1961 d_printf("sids:");
1963 for (j=0; j<i->num_sids; j++) {
1964 char buf[WBC_SID_STRING_BUFLEN];
1965 wbcSidToStringBuf(&i->sids[j].sid, buf, sizeof(buf));
1966 d_printf(" %s", buf);
1968 d_printf("\n");
1970 wbcFreeMemory(info);
1971 info = NULL;
1974 wbcFreeMemory(params.blobs);
1976 d_printf("plaintext password authentication %s\n",
1977 WBC_ERROR_IS_OK(wbc_status) ? "succeeded" : "failed");
1979 if (!WBC_ERROR_IS_OK(wbc_status) && (error != NULL)) {
1980 d_fprintf(stderr,
1981 "wbcLogonUser(%s): error code was %s (0x%x)\n"
1982 "error message was: %s\n",
1983 params.username,
1984 error->nt_string,
1985 (int)error->nt_status,
1986 error->display_string);
1987 wbcFreeMemory(error);
1989 return WBC_ERROR_IS_OK(wbc_status);
1992 /* Save creds with winbind */
1994 static bool wbinfo_ccache_save(char *username)
1996 wbcErr wbc_status = WBC_ERR_UNKNOWN_FAILURE;
1997 char *s = NULL;
1998 char *p = NULL;
1999 char *password = NULL;
2000 char *name = NULL;
2001 TALLOC_CTX *frame = talloc_stackframe();
2003 s = talloc_strdup(frame, username);
2004 if (s == NULL) {
2005 return false;
2008 p = strchr(s, '%');
2009 if (p != NULL) {
2010 *p = 0;
2011 p++;
2012 password = talloc_strdup(frame, p);
2013 } else {
2014 password = wbinfo_prompt_pass(frame, NULL, username);
2017 name = s;
2019 wbc_status = wbcCredentialSave(name, password);
2021 d_printf("saving creds %s\n",
2022 WBC_ERROR_IS_OK(wbc_status) ? "succeeded" : "failed");
2024 TALLOC_FREE(frame);
2026 return WBC_ERROR_IS_OK(wbc_status);
2029 #ifdef WITH_FAKE_KASERVER
2030 /* Authenticate a user with a plaintext password and set a token */
2032 static bool wbinfo_klog(char *username)
2034 struct winbindd_request request;
2035 struct winbindd_response response;
2036 NSS_STATUS result;
2037 char *p;
2039 /* Send off request */
2041 ZERO_STRUCT(request);
2042 ZERO_STRUCT(response);
2044 p = strchr(username, '%');
2046 if (p) {
2047 *p = 0;
2048 fstrcpy(request.data.auth.user, username);
2049 fstrcpy(request.data.auth.pass, p + 1);
2050 *p = '%';
2051 } else {
2052 fstrcpy(request.data.auth.user, username);
2053 (void) samba_getpass("Password: ",
2054 request.data.auth.pass,
2055 sizeof(request.data.auth.pass),
2056 false, false);
2059 request.flags |= WBFLAG_PAM_AFS_TOKEN;
2061 result = winbindd_request_response(NULL, WINBINDD_PAM_AUTH, &request,
2062 &response);
2064 /* Display response */
2066 d_printf("plaintext password authentication %s\n",
2067 (result == NSS_STATUS_SUCCESS) ? "succeeded" : "failed");
2069 if (response.data.auth.nt_status)
2070 d_fprintf(stderr,
2071 "error code was %s (0x%x)\nerror message was: %s\n",
2072 response.data.auth.nt_status_string,
2073 response.data.auth.nt_status,
2074 response.data.auth.error_string);
2076 if (result != NSS_STATUS_SUCCESS)
2077 return false;
2079 if (response.extra_data.data == NULL) {
2080 d_fprintf(stderr, "Did not get token data\n");
2081 return false;
2084 if (!afs_settoken_str((char *)response.extra_data.data)) {
2085 d_fprintf(stderr, "Could not set token\n");
2086 return false;
2089 d_printf("Successfully created AFS token\n");
2090 return true;
2092 #else
2093 static bool wbinfo_klog(char *username)
2095 d_fprintf(stderr, "No AFS support compiled in.\n");
2096 return false;
2098 #endif
2100 /* Print domain users */
2102 static bool print_domain_users(const char *domain)
2104 wbcErr wbc_status = WBC_ERR_UNKNOWN_FAILURE;
2105 uint32_t i;
2106 uint32_t num_users = 0;
2107 const char **users = NULL;
2109 /* Send request to winbind daemon */
2111 if (domain == NULL) {
2112 domain = get_winbind_domain();
2113 } else {
2114 /* '.' is the special sign for our own domain */
2115 if ((domain[0] == '\0') || strcmp(domain, ".") == 0) {
2116 domain = get_winbind_domain();
2117 /* '*' is the special sign for all domains */
2118 } else if (strcmp(domain, "*") == 0) {
2119 domain = NULL;
2123 wbc_status = wbcListUsers(domain, &num_users, &users);
2124 if (!WBC_ERROR_IS_OK(wbc_status)) {
2125 return false;
2128 for (i=0; i < num_users; i++) {
2129 d_printf("%s\n", users[i]);
2132 wbcFreeMemory(users);
2134 return true;
2137 /* Print domain groups */
2139 static bool print_domain_groups(const char *domain)
2141 wbcErr wbc_status = WBC_ERR_UNKNOWN_FAILURE;
2142 uint32_t i;
2143 uint32_t num_groups = 0;
2144 const char **groups = NULL;
2146 /* Send request to winbind daemon */
2148 if (domain == NULL) {
2149 domain = get_winbind_domain();
2150 } else {
2151 /* '.' is the special sign for our own domain */
2152 if ((domain[0] == '\0') || strcmp(domain, ".") == 0) {
2153 domain = get_winbind_domain();
2154 /* '*' is the special sign for all domains */
2155 } else if (strcmp(domain, "*") == 0) {
2156 domain = NULL;
2160 wbc_status = wbcListGroups(domain, &num_groups, &groups);
2161 if (!WBC_ERROR_IS_OK(wbc_status)) {
2162 d_fprintf(stderr, "failed to call wbcListGroups: %s\n",
2163 wbcErrorString(wbc_status));
2164 return false;
2167 for (i=0; i < num_groups; i++) {
2168 d_printf("%s\n", groups[i]);
2171 wbcFreeMemory(groups);
2173 return true;
2176 /* Set the authorised user for winbindd access in secrets.tdb */
2178 static bool wbinfo_set_auth_user(char *username)
2180 d_fprintf(stderr, "This functionality was moved to the 'net' utility.\n"
2181 "See 'net help setauthuser' for details.\n");
2182 return false;
2185 static void wbinfo_get_auth_user(void)
2187 d_fprintf(stderr, "This functionality was moved to the 'net' utility.\n"
2188 "See 'net help getauthuser' for details.\n");
2191 static bool wbinfo_ping(void)
2193 wbcErr wbc_status;
2195 wbc_status = wbcPing();
2197 /* Display response */
2199 d_printf("Ping to winbindd %s\n",
2200 WBC_ERROR_IS_OK(wbc_status) ? "succeeded" : "failed");
2202 return WBC_ERROR_IS_OK(wbc_status);
2205 static bool wbinfo_change_user_password(const char *username)
2207 wbcErr wbc_status;
2208 char *old_password = NULL;
2209 char *new_password = NULL;
2210 TALLOC_CTX *frame = talloc_tos();
2212 old_password = wbinfo_prompt_pass(frame, "old", username);
2213 new_password = wbinfo_prompt_pass(frame, "new", username);
2215 wbc_status = wbcChangeUserPassword(username, old_password,new_password);
2217 /* Display response */
2219 d_printf("Password change for user %s %s\n", username,
2220 WBC_ERROR_IS_OK(wbc_status) ? "succeeded" : "failed");
2222 return WBC_ERROR_IS_OK(wbc_status);
2225 /* Main program */
2227 enum {
2228 OPT_SET_AUTH_USER = 1000,
2229 OPT_GET_AUTH_USER,
2230 OPT_DOMAIN_NAME,
2231 OPT_SEQUENCE,
2232 OPT_GETDCNAME,
2233 OPT_DSGETDCNAME,
2234 OPT_DC_INFO,
2235 OPT_USERDOMGROUPS,
2236 OPT_SIDALIASES,
2237 OPT_USERSIDS,
2238 OPT_LOOKUP_SIDS,
2239 OPT_ALLOCATE_UID,
2240 OPT_ALLOCATE_GID,
2241 OPT_SET_UID_MAPPING,
2242 OPT_SET_GID_MAPPING,
2243 OPT_REMOVE_UID_MAPPING,
2244 OPT_REMOVE_GID_MAPPING,
2245 OPT_SIDS_TO_XIDS,
2246 OPT_XIDS_TO_SIDS,
2247 OPT_SEPARATOR,
2248 OPT_LIST_ALL_DOMAINS,
2249 OPT_LIST_OWN_DOMAIN,
2250 OPT_UID_INFO,
2251 OPT_USER_SIDINFO,
2252 OPT_GROUP_INFO,
2253 OPT_GID_INFO,
2254 OPT_VERBOSE,
2255 OPT_ONLINESTATUS,
2256 OPT_CHANGE_USER_PASSWORD,
2257 OPT_CCACHE_SAVE,
2258 OPT_SID_TO_FULLNAME,
2259 OPT_NTLMV1,
2260 OPT_NTLMV2,
2261 OPT_PAM_LOGON,
2262 OPT_LOGOFF,
2263 OPT_LOGOFF_USER,
2264 OPT_LOGOFF_UID,
2265 OPT_LANMAN,
2266 OPT_KRB5CCNAME
2269 int main(int argc, const char **argv, char **envp)
2271 int opt;
2272 TALLOC_CTX *frame = talloc_stackframe();
2273 poptContext pc;
2274 static char *string_arg;
2275 char *string_subarg = NULL;
2276 static char *opt_domain_name;
2277 static int int_arg;
2278 int int_subarg = -1;
2279 int result = 1;
2280 bool verbose = false;
2281 bool use_ntlmv2 = true;
2282 bool use_lanman = false;
2283 char *logoff_user = getenv("USER");
2284 int logoff_uid = geteuid();
2285 const char *opt_krb5ccname = "FILE";
2287 struct poptOption long_options[] = {
2288 POPT_AUTOHELP
2290 /* longName, shortName, argInfo, argPtr, value, descrip,
2291 argDesc */
2293 { "domain-users", 'u', POPT_ARG_NONE, 0, 'u', "Lists all domain users", "domain"},
2294 { "domain-groups", 'g', POPT_ARG_NONE, 0, 'g', "Lists all domain groups", "domain" },
2295 { "WINS-by-name", 'N', POPT_ARG_STRING, &string_arg, 'N', "Converts NetBIOS name to IP", "NETBIOS-NAME" },
2296 { "WINS-by-ip", 'I', POPT_ARG_STRING, &string_arg, 'I', "Converts IP address to NetBIOS name", "IP" },
2297 { "name-to-sid", 'n', POPT_ARG_STRING, &string_arg, 'n', "Converts name to sid", "NAME" },
2298 { "sid-to-name", 's', POPT_ARG_STRING, &string_arg, 's', "Converts sid to name", "SID" },
2299 { "sid-to-fullname", 0, POPT_ARG_STRING, &string_arg,
2300 OPT_SID_TO_FULLNAME, "Converts sid to fullname", "SID" },
2301 { "lookup-rids", 'R', POPT_ARG_STRING, &string_arg, 'R', "Converts RIDs to names", "RIDs" },
2302 { "lookup-sids", 0, POPT_ARG_STRING, &string_arg,
2303 OPT_LOOKUP_SIDS, "Converts SIDs to types and names",
2304 "Sid-List"},
2305 { "uid-to-sid", 'U', POPT_ARG_INT, &int_arg, 'U', "Converts uid to sid" , "UID" },
2306 { "gid-to-sid", 'G', POPT_ARG_INT, &int_arg, 'G', "Converts gid to sid", "GID" },
2307 { "sid-to-uid", 'S', POPT_ARG_STRING, &string_arg, 'S', "Converts sid to uid", "SID" },
2308 { "sid-to-gid", 'Y', POPT_ARG_STRING, &string_arg, 'Y', "Converts sid to gid", "SID" },
2309 { "allocate-uid", 0, POPT_ARG_NONE, 0, OPT_ALLOCATE_UID,
2310 "Get a new UID out of idmap" },
2311 { "allocate-gid", 0, POPT_ARG_NONE, 0, OPT_ALLOCATE_GID,
2312 "Get a new GID out of idmap" },
2313 { "set-uid-mapping", 0, POPT_ARG_STRING, &string_arg, OPT_SET_UID_MAPPING, "Create or modify uid to sid mapping in idmap", "UID,SID" },
2314 { "set-gid-mapping", 0, POPT_ARG_STRING, &string_arg, OPT_SET_GID_MAPPING, "Create or modify gid to sid mapping in idmap", "GID,SID" },
2315 { "remove-uid-mapping", 0, POPT_ARG_STRING, &string_arg, OPT_REMOVE_UID_MAPPING, "Remove uid to sid mapping in idmap", "UID,SID" },
2316 { "remove-gid-mapping", 0, POPT_ARG_STRING, &string_arg, OPT_REMOVE_GID_MAPPING, "Remove gid to sid mapping in idmap", "GID,SID" },
2317 { "sids-to-unix-ids", 0, POPT_ARG_STRING, &string_arg,
2318 OPT_SIDS_TO_XIDS, "Translate SIDs to Unix IDs", "Sid-List" },
2319 { "unix-ids-to-sids", 0, POPT_ARG_STRING, &string_arg,
2320 OPT_XIDS_TO_SIDS, "Translate Unix IDs to SIDs",
2321 "ID-List (u<num> g<num>)" },
2322 { "check-secret", 't', POPT_ARG_NONE, 0, 't', "Check shared secret" },
2323 { "change-secret", 'c', POPT_ARG_NONE, 0, 'c', "Change shared secret" },
2324 { "ping-dc", 'P', POPT_ARG_NONE, 0, 'P',
2325 "Check the NETLOGON connection" },
2326 { "trusted-domains", 'm', POPT_ARG_NONE, 0, 'm', "List trusted domains" },
2327 { "all-domains", 0, POPT_ARG_NONE, 0, OPT_LIST_ALL_DOMAINS, "List all domains (trusted and own domain)" },
2328 { "own-domain", 0, POPT_ARG_NONE, 0, OPT_LIST_OWN_DOMAIN, "List own domain" },
2329 { "sequence", 0, POPT_ARG_NONE, 0, OPT_SEQUENCE, "Deprecated command, see --online-status" },
2330 { "online-status", 0, POPT_ARG_NONE, 0, OPT_ONLINESTATUS, "Show whether domains are marked as online or offline"},
2331 { "domain-info", 'D', POPT_ARG_STRING, &string_arg, 'D', "Show most of the info we have about the domain" },
2332 { "user-info", 'i', POPT_ARG_STRING, &string_arg, 'i', "Get user info", "USER" },
2333 { "uid-info", 0, POPT_ARG_INT, &int_arg, OPT_UID_INFO, "Get user info from uid", "UID" },
2334 { "group-info", 0, POPT_ARG_STRING, &string_arg, OPT_GROUP_INFO, "Get group info", "GROUP" },
2335 { "user-sidinfo", 0, POPT_ARG_STRING, &string_arg, OPT_USER_SIDINFO, "Get user info from sid", "SID" },
2336 { "gid-info", 0, POPT_ARG_INT, &int_arg, OPT_GID_INFO, "Get group info from gid", "GID" },
2337 { "user-groups", 'r', POPT_ARG_STRING, &string_arg, 'r', "Get user groups", "USER" },
2338 { "user-domgroups", 0, POPT_ARG_STRING, &string_arg,
2339 OPT_USERDOMGROUPS, "Get user domain groups", "SID" },
2340 { "sid-aliases", 0, POPT_ARG_STRING, &string_arg, OPT_SIDALIASES, "Get sid aliases", "SID" },
2341 { "user-sids", 0, POPT_ARG_STRING, &string_arg, OPT_USERSIDS, "Get user group sids for user SID", "SID" },
2342 { "authenticate", 'a', POPT_ARG_STRING, &string_arg, 'a', "authenticate user", "user%password" },
2343 { "pam-logon", 0, POPT_ARG_STRING, &string_arg, OPT_PAM_LOGON,
2344 "do a pam logon equivalent", "user%password" },
2345 { "logoff", 0, POPT_ARG_NONE, NULL, OPT_LOGOFF,
2346 "log off user", "uid" },
2347 { "logoff-user", 0, POPT_ARG_STRING, &logoff_user,
2348 OPT_LOGOFF_USER, "username to log off" },
2349 { "logoff-uid", 0, POPT_ARG_INT, &logoff_uid,
2350 OPT_LOGOFF_UID, "uid to log off" },
2351 { "set-auth-user", 0, POPT_ARG_STRING, &string_arg, OPT_SET_AUTH_USER, "Store user and password used by winbindd (root only)", "user%password" },
2352 { "ccache-save", 0, POPT_ARG_STRING, &string_arg,
2353 OPT_CCACHE_SAVE, "Store user and password for ccache "
2354 "operation", "user%password" },
2355 { "getdcname", 0, POPT_ARG_STRING, &string_arg, OPT_GETDCNAME,
2356 "Get a DC name for a foreign domain", "domainname" },
2357 { "dsgetdcname", 0, POPT_ARG_STRING, &string_arg, OPT_DSGETDCNAME, "Find a DC for a domain", "domainname" },
2358 { "dc-info", 0, POPT_ARG_STRING, &string_arg, OPT_DC_INFO,
2359 "Find the currently known DCs", "domainname" },
2360 { "get-auth-user", 0, POPT_ARG_NONE, NULL, OPT_GET_AUTH_USER, "Retrieve user and password used by winbindd (root only)", NULL },
2361 { "ping", 'p', POPT_ARG_NONE, 0, 'p', "Ping winbindd to see if it is alive" },
2362 { "domain", 0, POPT_ARG_STRING, &opt_domain_name, OPT_DOMAIN_NAME, "Define to the domain to restrict operation", "domain" },
2363 #ifdef WITH_FAKE_KASERVER
2364 { "klog", 'k', POPT_ARG_STRING, &string_arg, 'k', "set an AFS token from winbind", "user%password" },
2365 #endif
2366 #ifdef HAVE_KRB5
2367 { "krb5auth", 'K', POPT_ARG_STRING, &string_arg, 'K', "authenticate user using Kerberos", "user%password" },
2368 /* destroys wbinfo --help output */
2369 /* "user%password,DOM\\user%password,user@EXAMPLE.COM,EXAMPLE.COM\\user%password" }, */
2370 { "krb5ccname", 0, POPT_ARG_STRING, &opt_krb5ccname, OPT_KRB5CCNAME, "authenticate user using Kerberos and specific credential cache type", "krb5ccname" },
2371 #endif
2372 { "separator", 0, POPT_ARG_NONE, 0, OPT_SEPARATOR, "Get the active winbind separator", NULL },
2373 { "verbose", 0, POPT_ARG_NONE, 0, OPT_VERBOSE, "Print additional information per command", NULL },
2374 { "change-user-password", 0, POPT_ARG_STRING, &string_arg, OPT_CHANGE_USER_PASSWORD, "Change the password for a user", NULL },
2375 { "ntlmv1", 0, POPT_ARG_NONE, 0, OPT_NTLMV1,
2376 "Use NTLMv1 cryptography for user authentication", NULL},
2377 { "ntlmv2", 0, POPT_ARG_NONE, 0, OPT_NTLMV2, "Use NTLMv2 cryptography for user authentication", NULL},
2378 { "lanman", 0, POPT_ARG_NONE, 0, OPT_LANMAN, "Use lanman cryptography for user authentication", NULL},
2379 POPT_COMMON_VERSION
2380 POPT_TABLEEND
2383 /* Samba client initialisation */
2384 smb_init_locale();
2387 /* Parse options */
2389 pc = poptGetContext("wbinfo", argc, argv,
2390 long_options, 0);
2392 /* Parse command line options */
2394 if (argc == 1) {
2395 poptPrintHelp(pc, stderr, 0);
2396 return 1;
2399 while((opt = poptGetNextOpt(pc)) != -1) {
2400 /* get the generic configuration parameters like --domain */
2401 switch (opt) {
2402 case OPT_VERBOSE:
2403 verbose = true;
2404 break;
2405 case OPT_NTLMV1:
2406 use_ntlmv2 = false;
2407 break;
2408 case OPT_LANMAN:
2409 use_lanman = true;
2410 break;
2414 poptFreeContext(pc);
2416 pc = poptGetContext(NULL, argc, (const char **)argv, long_options,
2417 POPT_CONTEXT_KEEP_FIRST);
2419 while((opt = poptGetNextOpt(pc)) != -1) {
2420 switch (opt) {
2421 case 'u':
2422 if (!print_domain_users(opt_domain_name)) {
2423 d_fprintf(stderr,
2424 "Error looking up domain users\n");
2425 goto done;
2427 break;
2428 case 'g':
2429 if (!print_domain_groups(opt_domain_name)) {
2430 d_fprintf(stderr,
2431 "Error looking up domain groups\n");
2432 goto done;
2434 break;
2435 case 's':
2436 if (!wbinfo_lookupsid(string_arg)) {
2437 d_fprintf(stderr,
2438 "Could not lookup sid %s\n",
2439 string_arg);
2440 goto done;
2442 break;
2443 case OPT_SID_TO_FULLNAME:
2444 if (!wbinfo_lookupsid_fullname(string_arg)) {
2445 d_fprintf(stderr, "Could not lookup sid %s\n",
2446 string_arg);
2447 goto done;
2449 break;
2450 case 'R':
2451 if (!wbinfo_lookuprids(opt_domain_name, string_arg)) {
2452 d_fprintf(stderr, "Could not lookup RIDs %s\n",
2453 string_arg);
2454 goto done;
2456 break;
2457 case OPT_LOOKUP_SIDS:
2458 if (!wbinfo_lookup_sids(string_arg)) {
2459 d_fprintf(stderr, "Could not lookup SIDs %s\n",
2460 string_arg);
2461 goto done;
2463 break;
2464 case 'n':
2465 if (!wbinfo_lookupname(string_arg)) {
2466 d_fprintf(stderr, "Could not lookup name %s\n",
2467 string_arg);
2468 goto done;
2470 break;
2471 case 'N':
2472 if (!wbinfo_wins_byname(string_arg)) {
2473 d_fprintf(stderr,
2474 "Could not lookup WINS by name %s\n",
2475 string_arg);
2476 goto done;
2478 break;
2479 case 'I':
2480 if (!wbinfo_wins_byip(string_arg)) {
2481 d_fprintf(stderr,
2482 "Could not lookup WINS by IP %s\n",
2483 string_arg);
2484 goto done;
2486 break;
2487 case 'U':
2488 if (!wbinfo_uid_to_sid(int_arg)) {
2489 d_fprintf(stderr,
2490 "Could not convert uid %d to sid\n",
2491 int_arg);
2492 goto done;
2494 break;
2495 case 'G':
2496 if (!wbinfo_gid_to_sid(int_arg)) {
2497 d_fprintf(stderr,
2498 "Could not convert gid %d to sid\n",
2499 int_arg);
2500 goto done;
2502 break;
2503 case 'S':
2504 if (!wbinfo_sid_to_uid(string_arg)) {
2505 d_fprintf(stderr,
2506 "Could not convert sid %s to uid\n",
2507 string_arg);
2508 goto done;
2510 break;
2511 case 'Y':
2512 if (!wbinfo_sid_to_gid(string_arg)) {
2513 d_fprintf(stderr,
2514 "Could not convert sid %s to gid\n",
2515 string_arg);
2516 goto done;
2518 break;
2519 case OPT_ALLOCATE_UID:
2520 if (!wbinfo_allocate_uid()) {
2521 d_fprintf(stderr, "Could not allocate a uid\n");
2522 goto done;
2524 break;
2525 case OPT_ALLOCATE_GID:
2526 if (!wbinfo_allocate_gid()) {
2527 d_fprintf(stderr, "Could not allocate a gid\n");
2528 goto done;
2530 break;
2531 case OPT_SET_UID_MAPPING:
2532 if (!parse_mapping_arg(string_arg, &int_subarg,
2533 &string_subarg) ||
2534 !wbinfo_set_uid_mapping(int_subarg, string_subarg))
2536 d_fprintf(stderr, "Could not create or modify "
2537 "uid to sid mapping\n");
2538 goto done;
2540 break;
2541 case OPT_SET_GID_MAPPING:
2542 if (!parse_mapping_arg(string_arg, &int_subarg,
2543 &string_subarg) ||
2544 !wbinfo_set_gid_mapping(int_subarg, string_subarg))
2546 d_fprintf(stderr, "Could not create or modify "
2547 "gid to sid mapping\n");
2548 goto done;
2550 break;
2551 case OPT_REMOVE_UID_MAPPING:
2552 if (!parse_mapping_arg(string_arg, &int_subarg,
2553 &string_subarg) ||
2554 !wbinfo_remove_uid_mapping(int_subarg,
2555 string_subarg))
2557 d_fprintf(stderr, "Could not remove uid to sid "
2558 "mapping\n");
2559 goto done;
2561 break;
2562 case OPT_REMOVE_GID_MAPPING:
2563 if (!parse_mapping_arg(string_arg, &int_subarg,
2564 &string_subarg) ||
2565 !wbinfo_remove_gid_mapping(int_subarg,
2566 string_subarg))
2568 d_fprintf(stderr, "Could not remove gid to sid "
2569 "mapping\n");
2570 goto done;
2572 break;
2573 case OPT_SIDS_TO_XIDS:
2574 if (!wbinfo_sids_to_unix_ids(string_arg)) {
2575 d_fprintf(stderr, "wbinfo_sids_to_unix_ids "
2576 "failed\n");
2577 goto done;
2579 break;
2580 case OPT_XIDS_TO_SIDS:
2581 if (!wbinfo_xids_to_sids(string_arg)) {
2582 d_fprintf(stderr, "wbinfo_xids_to_sids "
2583 "failed\n");
2584 goto done;
2586 break;
2587 case 't':
2588 if (!wbinfo_check_secret(opt_domain_name)) {
2589 d_fprintf(stderr, "Could not check secret\n");
2590 goto done;
2592 break;
2593 case 'c':
2594 if (!wbinfo_change_secret(opt_domain_name)) {
2595 d_fprintf(stderr, "Could not change secret\n");
2596 goto done;
2598 break;
2599 case 'P':
2600 if (!wbinfo_ping_dc(opt_domain_name)) {
2601 goto done;
2603 break;
2604 case 'm':
2605 if (!wbinfo_list_domains(false, verbose)) {
2606 d_fprintf(stderr,
2607 "Could not list trusted domains\n");
2608 goto done;
2610 break;
2611 case OPT_SEQUENCE:
2612 if (!wbinfo_show_sequence(opt_domain_name)) {
2613 d_fprintf(stderr,
2614 "Could not show sequence numbers\n");
2615 goto done;
2617 break;
2618 case OPT_ONLINESTATUS:
2619 if (!wbinfo_show_onlinestatus(opt_domain_name)) {
2620 d_fprintf(stderr,
2621 "Could not show online-status\n");
2622 goto done;
2624 break;
2625 case 'D':
2626 if (!wbinfo_domain_info(string_arg)) {
2627 d_fprintf(stderr,
2628 "Could not get domain info\n");
2629 goto done;
2631 break;
2632 case 'i':
2633 if (!wbinfo_get_userinfo(string_arg)) {
2634 d_fprintf(stderr,
2635 "Could not get info for user %s\n",
2636 string_arg);
2637 goto done;
2639 break;
2640 case OPT_USER_SIDINFO:
2641 if ( !wbinfo_get_user_sidinfo(string_arg)) {
2642 d_fprintf(stderr,
2643 "Could not get info for user "
2644 "sid %s\n", string_arg);
2645 goto done;
2647 break;
2648 case OPT_UID_INFO:
2649 if ( !wbinfo_get_uidinfo(int_arg)) {
2650 d_fprintf(stderr, "Could not get info for uid "
2651 "%d\n", int_arg);
2652 goto done;
2654 break;
2655 case OPT_GROUP_INFO:
2656 if ( !wbinfo_get_groupinfo(string_arg)) {
2657 d_fprintf(stderr, "Could not get info for "
2658 "group %s\n", string_arg);
2659 goto done;
2661 break;
2662 case OPT_GID_INFO:
2663 if ( !wbinfo_get_gidinfo(int_arg)) {
2664 d_fprintf(stderr, "Could not get info for gid "
2665 "%d\n", int_arg);
2666 goto done;
2668 break;
2669 case 'r':
2670 if (!wbinfo_get_usergroups(string_arg)) {
2671 d_fprintf(stderr,
2672 "Could not get groups for user %s\n",
2673 string_arg);
2674 goto done;
2676 break;
2677 case OPT_USERSIDS:
2678 if (!wbinfo_get_usersids(string_arg)) {
2679 d_fprintf(stderr, "Could not get group SIDs "
2680 "for user SID %s\n",
2681 string_arg);
2682 goto done;
2684 break;
2685 case OPT_USERDOMGROUPS:
2686 if (!wbinfo_get_userdomgroups(string_arg)) {
2687 d_fprintf(stderr, "Could not get user's domain "
2688 "groups for user SID %s\n",
2689 string_arg);
2690 goto done;
2692 break;
2693 case OPT_SIDALIASES:
2694 if (!wbinfo_get_sidaliases(opt_domain_name,
2695 string_arg)) {
2696 d_fprintf(stderr, "Could not get sid aliases "
2697 "for user SID %s\n", string_arg);
2698 goto done;
2700 break;
2701 case 'a': {
2702 bool got_error = false;
2704 if (!wbinfo_auth(string_arg)) {
2705 d_fprintf(stderr,
2706 "Could not authenticate user "
2707 "%s with plaintext "
2708 "password\n", string_arg);
2709 got_error = true;
2712 if (!wbinfo_auth_crap(string_arg, use_ntlmv2,
2713 use_lanman)) {
2714 d_fprintf(stderr,
2715 "Could not authenticate user "
2716 "%s with challenge/response\n",
2717 string_arg);
2718 got_error = true;
2721 if (got_error)
2722 goto done;
2723 break;
2725 case OPT_PAM_LOGON:
2726 if (!wbinfo_pam_logon(string_arg, verbose)) {
2727 d_fprintf(stderr, "pam_logon failed for %s\n",
2728 string_arg);
2729 goto done;
2731 break;
2732 case OPT_LOGOFF:
2734 wbcErr wbc_status;
2736 wbc_status = wbcLogoffUser(logoff_user, logoff_uid,
2737 "");
2738 d_printf("Logoff %s (%d): %s\n", logoff_user,
2739 logoff_uid, wbcErrorString(wbc_status));
2740 break;
2742 case 'K': {
2743 uint32_t flags = WBFLAG_PAM_KRB5 |
2744 WBFLAG_PAM_CACHED_LOGIN |
2745 WBFLAG_PAM_FALLBACK_AFTER_KRB5 |
2746 WBFLAG_PAM_INFO3_TEXT |
2747 WBFLAG_PAM_CONTACT_TRUSTDOM;
2749 if (!wbinfo_auth_krb5(string_arg, opt_krb5ccname,
2750 flags)) {
2751 d_fprintf(stderr,
2752 "Could not authenticate user "
2753 "[%s] with Kerberos "
2754 "(ccache: %s)\n", string_arg,
2755 opt_krb5ccname);
2756 goto done;
2758 break;
2760 case 'k':
2761 if (!wbinfo_klog(string_arg)) {
2762 d_fprintf(stderr, "Could not klog user\n");
2763 goto done;
2765 break;
2766 case 'p':
2767 if (!wbinfo_ping()) {
2768 d_fprintf(stderr, "could not ping winbindd!\n");
2769 goto done;
2771 break;
2772 case OPT_SET_AUTH_USER:
2773 if (!wbinfo_set_auth_user(string_arg)) {
2774 goto done;
2776 break;
2777 case OPT_GET_AUTH_USER:
2778 wbinfo_get_auth_user();
2779 goto done;
2780 break;
2781 case OPT_CCACHE_SAVE:
2782 if (!wbinfo_ccache_save(string_arg)) {
2783 goto done;
2785 break;
2786 case OPT_GETDCNAME:
2787 if (!wbinfo_getdcname(string_arg)) {
2788 goto done;
2790 break;
2791 case OPT_DSGETDCNAME:
2792 if (!wbinfo_dsgetdcname(string_arg, 0)) {
2793 goto done;
2795 break;
2796 case OPT_DC_INFO:
2797 if (!wbinfo_dc_info(string_arg)) {
2798 goto done;
2800 break;
2801 case OPT_SEPARATOR: {
2802 const char sep = winbind_separator();
2803 if ( !sep ) {
2804 goto done;
2806 d_printf("%c\n", sep);
2807 break;
2809 case OPT_LIST_ALL_DOMAINS:
2810 if (!wbinfo_list_domains(true, verbose)) {
2811 goto done;
2813 break;
2814 case OPT_LIST_OWN_DOMAIN:
2815 if (!wbinfo_list_own_domain()) {
2816 goto done;
2818 break;
2819 case OPT_CHANGE_USER_PASSWORD:
2820 if (!wbinfo_change_user_password(string_arg)) {
2821 d_fprintf(stderr,
2822 "Could not change user password "
2823 "for user %s\n", string_arg);
2824 goto done;
2826 break;
2828 /* generic configuration options */
2829 case OPT_DOMAIN_NAME:
2830 case OPT_VERBOSE:
2831 case OPT_NTLMV2:
2832 case OPT_LANMAN:
2833 case OPT_LOGOFF_USER:
2834 case OPT_LOGOFF_UID:
2835 case OPT_KRB5CCNAME:
2836 break;
2837 default:
2838 d_fprintf(stderr, "Invalid option\n");
2839 poptPrintHelp(pc, stderr, 0);
2840 goto done;
2844 result = 0;
2846 /* Exit code */
2848 done:
2849 talloc_free(frame);
2851 poptFreeContext(pc);
2852 return result;