2 Unix SMB/CIFS implementation.
3 Copyright (C) Andrew Tridgell 1992-2001
4 Copyright (C) Andrew Bartlett 2002
5 Copyright (C) Rafal Szczesniak 2002
6 Copyright (C) Tim Potter 2001
8 This program is free software; you can redistribute it and/or modify
9 it under the terms of the GNU General Public License as published by
10 the Free Software Foundation; either version 3 of the License, or
11 (at your option) any later version.
13 This program is distributed in the hope that it will be useful,
14 but WITHOUT ANY WARRANTY; without even the implied warranty of
15 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 GNU General Public License for more details.
18 You should have received a copy of the GNU General Public License
19 along with this program. If not, see <http://www.gnu.org/licenses/>.
22 /* the Samba secrets database stores any generated, private information
23 such as the local SID and machine trust password */
26 #include "../libcli/auth/libcli_auth.h"
27 #include "librpc/gen_ndr/ndr_secrets.h"
31 #define DBGC_CLASS DBGC_PASSDB
33 static struct db_context
*db_ctx
;
36 * Use a TDB to store an incrementing random seed.
38 * Initialised to the current pid, the very first time Samba starts,
39 * and incremented by one each time it is needed.
41 * @note Not called by systems with a working /dev/urandom.
43 static void get_rand_seed(void *userdata
, int *new_seed
)
45 *new_seed
= sys_getpid();
47 dbwrap_trans_change_int32_atomic(db_ctx
, "INFO/random_seed",
52 /* open up the secrets database */
53 bool secrets_init(void)
61 fname
= talloc_asprintf(talloc_tos(), "%s/secrets.tdb",
67 db_ctx
= db_open(NULL
, fname
, 0,
68 TDB_DEFAULT
, O_RDWR
|O_CREAT
, 0600);
71 DEBUG(0,("Failed to open %s\n", fname
));
79 * Set a reseed function for the crypto random generator
81 * This avoids a problem where systems without /dev/urandom
82 * could send the same challenge to multiple clients
84 set_rand_reseed_callback(get_rand_seed
, NULL
);
86 /* Ensure that the reseed is done now, while we are root, etc */
87 generate_random_buffer(&dummy
, sizeof(dummy
));
92 struct db_context
*secrets_db_ctx(void)
94 if (!secrets_init()) {
104 void secrets_shutdown(void)
109 /* read a entry from the secrets database - the caller must free the result
110 if size is non-null then the size of the entry is put in there
112 void *secrets_fetch(const char *key
, size_t *size
)
117 if (!secrets_init()) {
121 if (db_ctx
->fetch(db_ctx
, talloc_tos(), string_tdb_data(key
),
126 result
= memdup(dbuf
.dptr
, dbuf
.dsize
);
127 if (result
== NULL
) {
130 TALLOC_FREE(dbuf
.dptr
);
139 /* store a secrets entry
141 bool secrets_store(const char *key
, const void *data
, size_t size
)
145 if (!secrets_init()) {
149 status
= dbwrap_trans_store(db_ctx
, string_tdb_data(key
),
150 make_tdb_data((const uint8
*)data
, size
),
152 return NT_STATUS_IS_OK(status
);
156 /* delete a secets database entry
158 bool secrets_delete(const char *key
)
161 if (!secrets_init()) {
165 status
= dbwrap_trans_delete(db_ctx
, string_tdb_data(key
));
167 return NT_STATUS_IS_OK(status
);
170 bool secrets_store_local_schannel_key(uint8_t schannel_key
[16])
172 return secrets_store(SECRETS_LOCAL_SCHANNEL_KEY
, schannel_key
, 16);
175 bool secrets_fetch_local_schannel_key(uint8_t schannel_key
[16])
180 key
= (uint8_t *)secrets_fetch(SECRETS_LOCAL_SCHANNEL_KEY
, &size
);
190 memcpy(schannel_key
, key
, 16);
196 * Form a key for fetching a trusted domain password
198 * @param domain trusted domain name
200 * @return stored password's key
202 static char *trustdom_keystr(const char *domain
)
206 keystr
= talloc_asprintf_strupper_m(talloc_tos(), "%s/%s",
207 SECRETS_DOMTRUST_ACCT_PASS
,
209 SMB_ASSERT(keystr
!= NULL
);
213 /************************************************************************
214 Routine to get account password to trusted domain
215 ************************************************************************/
217 bool secrets_fetch_trusted_domain_password(const char *domain
, char** pwd
,
218 struct dom_sid
*sid
, time_t *pass_last_set_time
)
220 struct TRUSTED_DOM_PASS pass
;
221 enum ndr_err_code ndr_err
;
223 /* unpacking structures */
226 /* fetching trusted domain password structure */
227 if (!(blob
.data
= (uint8_t *)secrets_fetch(trustdom_keystr(domain
),
229 DEBUG(5, ("secrets_fetch failed!\n"));
233 /* unpack trusted domain password */
234 ndr_err
= ndr_pull_struct_blob(&blob
, talloc_tos(), &pass
,
235 (ndr_pull_flags_fn_t
)ndr_pull_TRUSTED_DOM_PASS
);
236 if (!NDR_ERR_CODE_IS_SUCCESS(ndr_err
)) {
240 SAFE_FREE(blob
.data
);
242 /* the trust's password */
244 *pwd
= SMB_STRDUP(pass
.pass
);
250 /* last change time */
251 if (pass_last_set_time
) *pass_last_set_time
= pass
.mod_time
;
254 if (sid
!= NULL
) sid_copy(sid
, &pass
.domain_sid
);
260 * Routine to store the password for trusted domain
262 * @param domain remote domain name
263 * @param pwd plain text password of trust relationship
264 * @param sid remote domain sid
266 * @return true if succeeded
269 bool secrets_store_trusted_domain_password(const char* domain
, const char* pwd
,
270 const struct dom_sid
*sid
)
274 /* packing structures */
276 enum ndr_err_code ndr_err
;
277 struct TRUSTED_DOM_PASS pass
;
280 pass
.uni_name
= domain
;
281 pass
.uni_name_len
= strlen(domain
)+1;
283 /* last change time */
284 pass
.mod_time
= time(NULL
);
286 /* password of the trust */
287 pass
.pass_len
= strlen(pwd
);
291 sid_copy(&pass
.domain_sid
, sid
);
293 ndr_err
= ndr_push_struct_blob(&blob
, talloc_tos(), &pass
,
294 (ndr_push_flags_fn_t
)ndr_push_TRUSTED_DOM_PASS
);
295 if (!NDR_ERR_CODE_IS_SUCCESS(ndr_err
)) {
299 ret
= secrets_store(trustdom_keystr(domain
), blob
.data
, blob
.length
);
301 data_blob_free(&blob
);
306 /************************************************************************
307 Routine to delete the password for trusted domain
308 ************************************************************************/
310 bool trusted_domain_password_delete(const char *domain
)
312 return secrets_delete(trustdom_keystr(domain
));
315 bool secrets_store_ldap_pw(const char* dn
, char* pw
)
320 if (asprintf(&key
, "%s/%s", SECRETS_LDAP_BIND_PW
, dn
) < 0) {
321 DEBUG(0, ("secrets_store_ldap_pw: asprintf failed!\n"));
325 ret
= secrets_store(key
, pw
, strlen(pw
)+1);
331 /*******************************************************************
332 Find the ldap password.
333 ******************************************************************/
335 bool fetch_ldap_pw(char **dn
, char** pw
)
340 *dn
= smb_xstrdup(lp_ldap_admin_dn());
342 if (asprintf(&key
, "%s/%s", SECRETS_LDAP_BIND_PW
, *dn
) < 0) {
344 DEBUG(0, ("fetch_ldap_pw: asprintf failed!\n"));
348 *pw
=(char *)secrets_fetch(key
, &size
);
352 /* Upgrade 2.2 style entry */
354 char* old_style_key
= SMB_STRDUP(*dn
);
356 fstring old_style_pw
;
358 if (!old_style_key
) {
359 DEBUG(0, ("fetch_ldap_pw: strdup failed!\n"));
363 for (p
=old_style_key
; *p
; p
++)
364 if (*p
== ',') *p
= '/';
366 data
=(char *)secrets_fetch(old_style_key
, &size
);
367 if ((data
== NULL
) || (size
< sizeof(old_style_pw
))) {
368 DEBUG(0,("fetch_ldap_pw: neither ldap secret retrieved!\n"));
369 SAFE_FREE(old_style_key
);
375 size
= MIN(size
, sizeof(fstring
)-1);
376 strncpy(old_style_pw
, data
, size
);
377 old_style_pw
[size
] = 0;
381 if (!secrets_store_ldap_pw(*dn
, old_style_pw
)) {
382 DEBUG(0,("fetch_ldap_pw: ldap secret could not be upgraded!\n"));
383 SAFE_FREE(old_style_key
);
387 if (!secrets_delete(old_style_key
)) {
388 DEBUG(0,("fetch_ldap_pw: old ldap secret could not be deleted!\n"));
391 SAFE_FREE(old_style_key
);
393 *pw
= smb_xstrdup(old_style_pw
);
400 * Get trusted domains info from secrets.tdb.
403 struct list_trusted_domains_state
{
405 struct trustdom_info
**domains
;
408 static int list_trusted_domain(struct db_record
*rec
, void *private_data
)
410 const size_t prefix_len
= strlen(SECRETS_DOMTRUST_ACCT_PASS
);
411 struct TRUSTED_DOM_PASS pass
;
412 enum ndr_err_code ndr_err
;
414 struct trustdom_info
*dom_info
;
416 struct list_trusted_domains_state
*state
=
417 (struct list_trusted_domains_state
*)private_data
;
419 if ((rec
->key
.dsize
< prefix_len
)
420 || (strncmp((char *)rec
->key
.dptr
, SECRETS_DOMTRUST_ACCT_PASS
,
425 blob
= data_blob_const(rec
->value
.dptr
, rec
->value
.dsize
);
427 ndr_err
= ndr_pull_struct_blob(&blob
, talloc_tos(), &pass
,
428 (ndr_pull_flags_fn_t
)ndr_pull_TRUSTED_DOM_PASS
);
429 if (!NDR_ERR_CODE_IS_SUCCESS(ndr_err
)) {
433 if (pass
.domain_sid
.num_auths
!= 4) {
434 DEBUG(0, ("SID %s is not a domain sid, has %d "
435 "auths instead of 4\n",
436 sid_string_dbg(&pass
.domain_sid
),
437 pass
.domain_sid
.num_auths
));
441 if (!(dom_info
= TALLOC_P(state
->domains
, struct trustdom_info
))) {
442 DEBUG(0, ("talloc failed\n"));
446 dom_info
->name
= talloc_strdup(dom_info
, pass
.uni_name
);
447 if (!dom_info
->name
) {
448 TALLOC_FREE(dom_info
);
452 sid_copy(&dom_info
->sid
, &pass
.domain_sid
);
454 ADD_TO_ARRAY(state
->domains
, struct trustdom_info
*, dom_info
,
455 &state
->domains
, &state
->num_domains
);
457 if (state
->domains
== NULL
) {
458 state
->num_domains
= 0;
464 NTSTATUS
secrets_trusted_domains(TALLOC_CTX
*mem_ctx
, uint32
*num_domains
,
465 struct trustdom_info
***domains
)
467 struct list_trusted_domains_state state
;
471 if (db_ctx
== NULL
) {
472 return NT_STATUS_ACCESS_DENIED
;
475 state
.num_domains
= 0;
478 * Make sure that a talloc context for the trustdom_info structs
482 if (!(state
.domains
= TALLOC_ARRAY(
483 mem_ctx
, struct trustdom_info
*, 1))) {
484 return NT_STATUS_NO_MEMORY
;
487 db_ctx
->traverse_read(db_ctx
, list_trusted_domain
, (void *)&state
);
489 *num_domains
= state
.num_domains
;
490 *domains
= state
.domains
;
494 /*******************************************************************************
495 Store a complete AFS keyfile into secrets.tdb.
496 *******************************************************************************/
498 bool secrets_store_afs_keyfile(const char *cell
, const struct afs_keyfile
*keyfile
)
502 if ((cell
== NULL
) || (keyfile
== NULL
))
505 if (ntohl(keyfile
->nkeys
) > SECRETS_AFS_MAXKEYS
)
508 slprintf(key
, sizeof(key
)-1, "%s/%s", SECRETS_AFS_KEYFILE
, cell
);
509 return secrets_store(key
, keyfile
, sizeof(struct afs_keyfile
));
512 /*******************************************************************************
513 Fetch the current (highest) AFS key from secrets.tdb
514 *******************************************************************************/
515 bool secrets_fetch_afs_key(const char *cell
, struct afs_key
*result
)
518 struct afs_keyfile
*keyfile
;
522 slprintf(key
, sizeof(key
)-1, "%s/%s", SECRETS_AFS_KEYFILE
, cell
);
524 keyfile
= (struct afs_keyfile
*)secrets_fetch(key
, &size
);
529 if (size
!= sizeof(struct afs_keyfile
)) {
534 i
= ntohl(keyfile
->nkeys
);
536 if (i
> SECRETS_AFS_MAXKEYS
) {
541 *result
= keyfile
->entry
[i
-1];
543 result
->kvno
= ntohl(result
->kvno
);
550 /******************************************************************************
551 When kerberos is not available, choose between anonymous or
552 authenticated connections.
554 We need to use an authenticated connection if DCs have the
555 RestrictAnonymous registry entry set > 0, or the "Additional
556 restrictions for anonymous connections" set in the win2k Local
559 Caller to free() result in domain, username, password
560 *******************************************************************************/
561 void secrets_fetch_ipc_userpass(char **username
, char **domain
, char **password
)
563 *username
= (char *)secrets_fetch(SECRETS_AUTH_USER
, NULL
);
564 *domain
= (char *)secrets_fetch(SECRETS_AUTH_DOMAIN
, NULL
);
565 *password
= (char *)secrets_fetch(SECRETS_AUTH_PASSWORD
, NULL
);
567 if (*username
&& **username
) {
569 if (!*domain
|| !**domain
)
570 *domain
= smb_xstrdup(lp_workgroup());
572 if (!*password
|| !**password
)
573 *password
= smb_xstrdup("");
575 DEBUG(3, ("IPC$ connections done by user %s\\%s\n",
576 *domain
, *username
));
579 DEBUG(3, ("IPC$ connections done anonymously\n"));
580 *username
= smb_xstrdup("");
581 *domain
= smb_xstrdup("");
582 *password
= smb_xstrdup("");
586 bool secrets_store_generic(const char *owner
, const char *key
, const char *secret
)
591 if (asprintf(&tdbkey
, "SECRETS/GENERIC/%s/%s", owner
, key
) < 0) {
592 DEBUG(0, ("asprintf failed!\n"));
596 ret
= secrets_store(tdbkey
, secret
, strlen(secret
)+1);
602 bool secrets_delete_generic(const char *owner
, const char *key
)
607 if (asprintf(&tdbkey
, "SECRETS/GENERIC/%s/%s", owner
, key
) < 0) {
608 DEBUG(0, ("asprintf failed!\n"));
612 ret
= secrets_delete(tdbkey
);
618 /*******************************************************************
619 Find the ldap password.
620 ******************************************************************/
622 char *secrets_fetch_generic(const char *owner
, const char *key
)
627 if (( ! owner
) || ( ! key
)) {
628 DEBUG(1, ("Invalid Parameters"));
632 if (asprintf(&tdbkey
, "SECRETS/GENERIC/%s/%s", owner
, key
) < 0) {
633 DEBUG(0, ("Out of memory!\n"));
637 secret
= (char *)secrets_fetch(tdbkey
, NULL
);