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https://github.com/samba-team/samba.git
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499 lines
12 KiB
C
499 lines
12 KiB
C
/*
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Unix SMB/CIFS implementation.
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Copyright (C) Andrew Tridgell 1992-2001
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Copyright (C) Andrew Bartlett 2002
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Copyright (C) Rafal Szczesniak 2002
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 2 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to the Free Software
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Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
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*/
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/* the Samba secrets database stores any generated, private information
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such as the local SID and machine trust password */
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#include "includes.h"
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#undef DBGC_CLASS
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#define DBGC_CLASS DBGC_PASSDB
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static TDB_CONTEXT *tdb;
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/* open up the secrets database */
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BOOL secrets_init(void)
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{
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pstring fname;
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if (tdb)
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return True;
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pstrcpy(fname, lp_private_dir());
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pstrcat(fname,"/secrets.tdb");
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tdb = tdb_open_log(fname, 0, TDB_DEFAULT, O_RDWR|O_CREAT, 0600);
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if (!tdb) {
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DEBUG(0,("Failed to open %s\n", fname));
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return False;
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}
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return True;
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}
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/* read a entry from the secrets database - the caller must free the result
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if size is non-null then the size of the entry is put in there
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*/
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void *secrets_fetch(const char *key, size_t *size)
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{
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TDB_DATA kbuf, dbuf;
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secrets_init();
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if (!tdb)
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return NULL;
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kbuf.dptr = strdup(key);
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kbuf.dsize = strlen(key);
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dbuf = tdb_fetch(tdb, kbuf);
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if (size)
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*size = dbuf.dsize;
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free(kbuf.dptr);
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return dbuf.dptr;
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}
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/* store a secrets entry
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*/
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BOOL secrets_store(const char *key, const void *data, size_t size)
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{
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TDB_DATA kbuf, dbuf;
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int ret;
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secrets_init();
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if (!tdb)
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return False;
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kbuf.dptr = strdup(key);
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kbuf.dsize = strlen(key);
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dbuf.dptr = memdup(data, size);
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dbuf.dsize = size;
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ret = tdb_store(tdb, kbuf, dbuf, TDB_REPLACE);
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free(kbuf.dptr);
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free(dbuf.dptr);
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return ret == 0;
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}
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/* delete a secets database entry
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*/
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BOOL secrets_delete(const char *key)
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{
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TDB_DATA kbuf;
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int ret;
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secrets_init();
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if (!tdb)
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return False;
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kbuf.dptr = strdup(key);
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kbuf.dsize = strlen(key);
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ret = tdb_delete(tdb, kbuf);
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free(kbuf.dptr);
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return ret == 0;
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}
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BOOL secrets_store_domain_sid(const char *domain, const DOM_SID *sid)
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{
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fstring key;
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slprintf(key, sizeof(key)-1, "%s/%s", SECRETS_DOMAIN_SID, domain);
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strupper(key);
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return secrets_store(key, sid, sizeof(DOM_SID));
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}
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BOOL secrets_fetch_domain_sid(const char *domain, DOM_SID *sid)
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{
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DOM_SID *dyn_sid;
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fstring key;
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size_t size;
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slprintf(key, sizeof(key)-1, "%s/%s", SECRETS_DOMAIN_SID, domain);
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strupper(key);
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dyn_sid = (DOM_SID *)secrets_fetch(key, &size);
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if (dyn_sid == NULL)
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return False;
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if (size != sizeof(DOM_SID))
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{
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SAFE_FREE(dyn_sid);
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return False;
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}
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*sid = *dyn_sid;
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SAFE_FREE(dyn_sid);
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return True;
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}
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BOOL secrets_store_domain_guid(const char *domain, struct GUID *guid)
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{
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const char *s;
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fstring key;
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TALLOC_CTX *mem_ctx;
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BOOL ret;
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mem_ctx = talloc_init("secrets_store_domain_guid");
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if (!mem_ctx) {
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return False;
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}
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s = GUID_string(mem_ctx, guid);
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if (!s) {
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talloc_destroy(mem_ctx);
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return False;
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}
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slprintf(key, sizeof(key)-1, "%s/%s", SECRETS_DOMAIN_GUID, domain);
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strupper(key);
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ret = secrets_store(key, s, strlen(s)+1);
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talloc_destroy(mem_ctx);
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return ret;
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}
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BOOL secrets_fetch_domain_guid(const char *domain, struct GUID *guid)
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{
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char *dyn_guid;
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fstring key;
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size_t size;
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struct GUID new_guid;
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NTSTATUS status;
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slprintf(key, sizeof(key)-1, "%s/%s", SECRETS_DOMAIN_GUID, domain);
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strupper(key);
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dyn_guid = secrets_fetch(key, &size);
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DEBUG(6,("key is %s, size is %d\n", key, (int)size));
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if ((NULL == dyn_guid) && (ROLE_DOMAIN_PDC == lp_server_role())) {
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uuid_generate_random(&new_guid);
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if (!secrets_store_domain_guid(domain, &new_guid))
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return False;
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dyn_guid = secrets_fetch(key, &size);
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if (dyn_guid == NULL)
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return False;
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}
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status = GUID_from_string(dyn_guid, guid);
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SAFE_FREE(dyn_guid);
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if (!NT_STATUS_IS_OK(status)) {
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return False;
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}
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return True;
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}
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/**
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* Form a key for fetching the machine trust account password
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*
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* @param domain domain name
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*
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* @return stored password's key
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**/
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const char *trust_keystr(const char *domain)
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{
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static fstring keystr;
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slprintf(keystr,sizeof(keystr)-1,"%s/%s",
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SECRETS_MACHINE_ACCT_PASS, domain);
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strupper(keystr);
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return keystr;
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}
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/**
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* Form a key for fetching a trusted domain password
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*
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* @param domain trusted domain name
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*
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* @return stored password's key
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**/
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char *trustdom_keystr(const char *domain)
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{
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static char* keystr;
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asprintf(&keystr, "%s/%s", SECRETS_DOMTRUST_ACCT_PASS, domain);
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strupper(keystr);
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return keystr;
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}
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/************************************************************************
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Lock the trust password entry.
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************************************************************************/
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BOOL secrets_lock_trust_account_password(const char *domain, BOOL dolock)
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{
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if (!tdb)
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return False;
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if (dolock)
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return (tdb_lock_bystring(tdb, trust_keystr(domain),0) == 0);
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else
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tdb_unlock_bystring(tdb, trust_keystr(domain));
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return True;
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}
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/************************************************************************
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Routine to get the trust account password for a domain.
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The user of this function must have locked the trust password file using
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the above call.
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************************************************************************/
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BOOL secrets_fetch_trust_account_password(const char *domain, uint8 ret_pwd[16],
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time_t *pass_last_set_time)
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{
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struct machine_acct_pass *pass;
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char *plaintext;
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size_t size;
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plaintext = secrets_fetch_machine_password();
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if (plaintext) {
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/* we have an ADS password - use that */
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DEBUG(4,("Using ADS machine password\n"));
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E_md4hash(plaintext, ret_pwd);
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SAFE_FREE(plaintext);
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pass_last_set_time = 0;
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return True;
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}
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if (!(pass = secrets_fetch(trust_keystr(domain), &size))) {
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DEBUG(5, ("secrets_fetch failed!\n"));
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return False;
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}
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if (size != sizeof(*pass)) {
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DEBUG(0, ("secrets were of incorrect size!\n"));
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return False;
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}
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if (pass_last_set_time) *pass_last_set_time = pass->mod_time;
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memcpy(ret_pwd, pass->hash, 16);
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SAFE_FREE(pass);
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return True;
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}
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/************************************************************************
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Routine to get account password to trusted domain
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************************************************************************/
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BOOL secrets_fetch_trusted_domain_password(const char *domain, char** pwd,
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DOM_SID *sid, time_t *pass_last_set_time)
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{
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struct trusted_dom_pass *pass;
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size_t size;
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/* fetching trusted domain password structure */
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if (!(pass = secrets_fetch(trustdom_keystr(domain), &size))) {
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DEBUG(5, ("secrets_fetch failed!\n"));
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return False;
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}
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if (size != sizeof(*pass)) {
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DEBUG(0, ("secrets were of incorrect size!\n"));
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return False;
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}
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/* the trust's password */
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if (pwd) {
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*pwd = strdup(pass->pass);
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if (!*pwd) {
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return False;
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}
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}
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/* last change time */
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if (pass_last_set_time) *pass_last_set_time = pass->mod_time;
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/* domain sid */
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memcpy(&sid, &(pass->domain_sid), sizeof(sid));
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SAFE_FREE(pass);
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return True;
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}
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/************************************************************************
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Routine to set the trust account password for a domain.
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************************************************************************/
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BOOL secrets_store_trust_account_password(const char *domain, uint8 new_pwd[16])
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{
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struct machine_acct_pass pass;
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pass.mod_time = time(NULL);
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memcpy(pass.hash, new_pwd, 16);
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return secrets_store(trust_keystr(domain), (void *)&pass, sizeof(pass));
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}
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/**
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* Routine to set the password for trusted domain
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*
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* @param domain remote domain name
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* @param pwd plain text password of trust relationship
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* @param sid remote domain sid
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*
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* @return true if succeeded
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**/
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BOOL secrets_store_trusted_domain_password(const char* domain, smb_ucs2_t *uni_dom_name,
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size_t uni_name_len, const char* pwd,
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DOM_SID sid)
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{
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struct trusted_dom_pass pass;
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ZERO_STRUCT(pass);
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/* unicode domain name and its length */
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if (!uni_dom_name)
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return False;
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strncpy_w(pass.uni_name, uni_dom_name, sizeof(pass.uni_name) - 1);
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pass.uni_name_len = uni_name_len;
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/* last change time */
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pass.mod_time = time(NULL);
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/* password of the trust */
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pass.pass_len = strlen(pwd);
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fstrcpy(pass.pass, pwd);
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/* domain sid */
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memcpy(&(pass.domain_sid), &sid, sizeof(sid));
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return secrets_store(trustdom_keystr(domain), (void *)&pass, sizeof(pass));
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}
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/************************************************************************
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Routine to set the plaintext machine account password for a realm
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the password is assumed to be a null terminated ascii string
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************************************************************************/
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BOOL secrets_store_machine_password(const char *pass)
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{
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char *key;
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BOOL ret;
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asprintf(&key, "%s/%s", SECRETS_MACHINE_PASSWORD, lp_workgroup());
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strupper(key);
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ret = secrets_store(key, pass, strlen(pass)+1);
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free(key);
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return ret;
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}
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/************************************************************************
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Routine to fetch the plaintext machine account password for a realm
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the password is assumed to be a null terminated ascii string
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************************************************************************/
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char *secrets_fetch_machine_password(void)
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{
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char *key;
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char *ret;
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asprintf(&key, "%s/%s", SECRETS_MACHINE_PASSWORD, lp_workgroup());
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strupper(key);
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ret = (char *)secrets_fetch(key, NULL);
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free(key);
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return ret;
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}
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/************************************************************************
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Routine to delete the machine trust account password file for a domain.
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************************************************************************/
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BOOL trust_password_delete(const char *domain)
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{
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return secrets_delete(trust_keystr(domain));
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}
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/************************************************************************
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Routine to delete the password for trusted domain
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************************************************************************/
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BOOL trusted_domain_password_delete(const char *domain)
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{
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return secrets_delete(trustdom_keystr(domain));
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}
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BOOL secrets_store_ldap_pw(const char* dn, char* pw)
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{
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char *key = NULL;
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BOOL ret;
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if (asprintf(&key, "%s/%s", SECRETS_LDAP_BIND_PW, dn) < 0) {
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DEBUG(0, ("secrets_store_ldap_pw: asprintf failed!\n"));
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return False;
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}
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ret = secrets_store(key, pw, strlen(pw)+1);
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SAFE_FREE(key);
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return ret;
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}
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/*******************************************************************************
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Lock the secrets tdb based on a string - this is used as a primitive form of mutex
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between smbd instances.
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*******************************************************************************/
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BOOL secrets_named_mutex(const char *name, unsigned int timeout, size_t *p_ref_count)
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{
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size_t ref_count = *p_ref_count;
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int ret = 0;
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if (!message_init())
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return False;
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if (ref_count == 0) {
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ret = tdb_lock_bystring(tdb, name, timeout);
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if (ret == 0)
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DEBUG(10,("secrets_named_mutex: got mutex for %s\n", name ));
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}
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if (ret == 0) {
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*p_ref_count = ++ref_count;
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DEBUG(10,("secrets_named_mutex: ref_count for mutex %s = %u\n", name, (unsigned int)ref_count ));
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}
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return (ret == 0);
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}
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/*******************************************************************************
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Unlock a named mutex.
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*******************************************************************************/
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void secrets_named_mutex_release(const char *name, size_t *p_ref_count)
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{
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size_t ref_count = *p_ref_count;
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SMB_ASSERT(ref_count != 0);
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if (ref_count == 1) {
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tdb_unlock_bystring(tdb, name);
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DEBUG(10,("secrets_named_mutex: released mutex for %s\n", name ));
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}
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*p_ref_count = --ref_count;
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DEBUG(10,("secrets_named_mutex_release: ref_count for mutex %s = %u\n", name, (unsigned int)ref_count ));
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}
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