mirror of
https://github.com/samba-team/samba.git
synced 2024-12-25 23:21:54 +03:00
2b27c93a9a
* autogenerate lsa ndr code
* rename 'enum SID_NAME_USE' to 'enum lsa_SidType'
* merge a log more security descriptor functions from
gen_ndr/ndr_security.c in SAMBA_4_0
The most embarassing thing is the "#define strlen_m strlen"
We need a real implementation in SAMBA_3_0 which I'll work on
after this code is in.
(This used to be commit 3da9f80c28
)
577 lines
12 KiB
C
577 lines
12 KiB
C
/*
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Unix SMB/CIFS implementation.
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winbind client code
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Copyright (C) Tim Potter 2000
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Copyright (C) Andrew Tridgell 2000
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This library is free software; you can redistribute it and/or
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modify it under the terms of the GNU Library General Public
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License as published by the Free Software Foundation; either
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version 2 of the License, or (at your option) any later version.
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This library 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 GNU
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Library General Public License for more details.
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You should have received a copy of the GNU Library General Public
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License along with this library; if not, write to the
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Free Software Foundation, Inc., 59 Temple Place - Suite 330,
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Boston, MA 02111-1307, USA.
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*/
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#include "includes.h"
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#include "nsswitch/winbind_nss.h"
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#undef DBGC_CLASS
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#define DBGC_CLASS DBGC_WINBIND
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NSS_STATUS winbindd_request_response(int req_type,
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struct winbindd_request *request,
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struct winbindd_response *response);
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/* Call winbindd to convert a name to a sid */
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BOOL winbind_lookup_name(const char *dom_name, const char *name, DOM_SID *sid,
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enum lsa_SidType *name_type)
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{
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struct winbindd_request request;
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struct winbindd_response response;
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NSS_STATUS result;
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if (!sid || !name_type)
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return False;
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/* Send off request */
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ZERO_STRUCT(request);
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ZERO_STRUCT(response);
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fstrcpy(request.data.name.dom_name, dom_name);
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fstrcpy(request.data.name.name, name);
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if ((result = winbindd_request_response(WINBINDD_LOOKUPNAME, &request,
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&response)) == NSS_STATUS_SUCCESS) {
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if (!string_to_sid(sid, response.data.sid.sid))
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return False;
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*name_type = (enum lsa_SidType)response.data.sid.type;
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}
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return result == NSS_STATUS_SUCCESS;
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}
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/* Call winbindd to convert sid to name */
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BOOL winbind_lookup_sid(TALLOC_CTX *mem_ctx, const DOM_SID *sid,
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const char **domain, const char **name,
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enum lsa_SidType *name_type)
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{
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struct winbindd_request request;
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struct winbindd_response response;
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NSS_STATUS result;
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/* Initialise request */
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ZERO_STRUCT(request);
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ZERO_STRUCT(response);
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fstrcpy(request.data.sid, sid_string_static(sid));
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/* Make request */
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result = winbindd_request_response(WINBINDD_LOOKUPSID, &request,
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&response);
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if (result != NSS_STATUS_SUCCESS) {
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return False;
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}
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/* Copy out result */
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if (domain != NULL) {
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*domain = talloc_strdup(mem_ctx, response.data.name.dom_name);
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if (*domain == NULL) {
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DEBUG(0, ("talloc failed\n"));
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return False;
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}
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}
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if (name != NULL) {
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*name = talloc_strdup(mem_ctx, response.data.name.name);
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if (*name == NULL) {
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DEBUG(0, ("talloc failed\n"));
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return False;
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}
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}
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*name_type = (enum lsa_SidType)response.data.name.type;
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DEBUG(10, ("winbind_lookup_sid: SUCCESS: SID %s -> %s %s\n",
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sid_string_static(sid), response.data.name.dom_name,
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response.data.name.name));
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return True;
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}
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BOOL winbind_lookup_rids(TALLOC_CTX *mem_ctx,
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const DOM_SID *domain_sid,
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int num_rids, uint32 *rids,
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const char **domain_name,
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const char ***names, enum lsa_SidType **types)
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{
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size_t i, buflen;
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ssize_t len;
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char *ridlist;
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char *p;
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struct winbindd_request request;
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struct winbindd_response response;
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NSS_STATUS result;
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if (num_rids == 0) {
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return False;
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}
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/* Initialise request */
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ZERO_STRUCT(request);
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ZERO_STRUCT(response);
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fstrcpy(request.data.sid, sid_string_static(domain_sid));
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len = 0;
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buflen = 0;
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ridlist = NULL;
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for (i=0; i<num_rids; i++) {
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sprintf_append(mem_ctx, &ridlist, &len, &buflen,
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"%ld\n", rids[i]);
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}
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if ((num_rids != 0) && (ridlist == NULL)) {
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return False;
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}
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request.extra_data.data = ridlist;
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request.extra_len = strlen(ridlist)+1;
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result = winbindd_request_response(WINBINDD_LOOKUPRIDS,
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&request, &response);
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TALLOC_FREE(ridlist);
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if (result != NSS_STATUS_SUCCESS) {
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return False;
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}
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*domain_name = talloc_strdup(mem_ctx, response.data.domain_name);
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*names = TALLOC_ARRAY(mem_ctx, const char *, num_rids);
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*types = TALLOC_ARRAY(mem_ctx, enum lsa_SidType, num_rids);
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if ((*names == NULL) || (*types == NULL)) {
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goto fail;
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}
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p = (char *)response.extra_data.data;
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for (i=0; i<num_rids; i++) {
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char *q;
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if (*p == '\0') {
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DEBUG(10, ("Got invalid reply: %s\n",
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(char *)response.extra_data.data));
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goto fail;
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}
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(*types)[i] = (enum lsa_SidType)strtoul(p, &q, 10);
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if (*q != ' ') {
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DEBUG(10, ("Got invalid reply: %s\n",
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(char *)response.extra_data.data));
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goto fail;
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}
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p = q+1;
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q = strchr(p, '\n');
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if (q == NULL) {
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DEBUG(10, ("Got invalid reply: %s\n",
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(char *)response.extra_data.data));
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goto fail;
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}
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*q = '\0';
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(*names)[i] = talloc_strdup(*names, p);
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p = q+1;
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}
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if (*p != '\0') {
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DEBUG(10, ("Got invalid reply: %s\n",
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(char *)response.extra_data.data));
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goto fail;
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}
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SAFE_FREE(response.extra_data.data);
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return True;
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fail:
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TALLOC_FREE(*names);
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TALLOC_FREE(*types);
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return False;
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}
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/* Call winbindd to convert SID to uid */
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BOOL winbind_sid_to_uid(uid_t *puid, const DOM_SID *sid)
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{
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struct winbindd_request request;
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struct winbindd_response response;
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int result;
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fstring sid_str;
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if (!puid)
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return False;
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/* Initialise request */
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ZERO_STRUCT(request);
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ZERO_STRUCT(response);
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sid_to_string(sid_str, sid);
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fstrcpy(request.data.sid, sid_str);
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/* Make request */
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result = winbindd_request_response(WINBINDD_SID_TO_UID, &request, &response);
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/* Copy out result */
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if (result == NSS_STATUS_SUCCESS) {
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*puid = response.data.uid;
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}
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return (result == NSS_STATUS_SUCCESS);
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}
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/* Call winbindd to convert uid to sid */
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BOOL winbind_uid_to_sid(DOM_SID *sid, uid_t uid)
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{
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struct winbindd_request request;
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struct winbindd_response response;
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int result;
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if (!sid)
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return False;
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/* Initialise request */
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ZERO_STRUCT(request);
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ZERO_STRUCT(response);
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request.data.uid = uid;
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/* Make request */
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result = winbindd_request_response(WINBINDD_UID_TO_SID, &request, &response);
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/* Copy out result */
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if (result == NSS_STATUS_SUCCESS) {
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if (!string_to_sid(sid, response.data.sid.sid))
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return False;
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} else {
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sid_copy(sid, &global_sid_NULL);
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}
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return (result == NSS_STATUS_SUCCESS);
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}
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/* Call winbindd to convert SID to gid */
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BOOL winbind_sid_to_gid(gid_t *pgid, const DOM_SID *sid)
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{
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struct winbindd_request request;
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struct winbindd_response response;
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int result;
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fstring sid_str;
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if (!pgid)
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return False;
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/* Initialise request */
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ZERO_STRUCT(request);
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ZERO_STRUCT(response);
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sid_to_string(sid_str, sid);
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fstrcpy(request.data.sid, sid_str);
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/* Make request */
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result = winbindd_request_response(WINBINDD_SID_TO_GID, &request, &response);
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/* Copy out result */
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if (result == NSS_STATUS_SUCCESS) {
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*pgid = response.data.gid;
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}
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return (result == NSS_STATUS_SUCCESS);
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}
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/* Call winbindd to convert gid to sid */
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BOOL winbind_gid_to_sid(DOM_SID *sid, gid_t gid)
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{
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struct winbindd_request request;
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struct winbindd_response response;
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int result;
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if (!sid)
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return False;
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/* Initialise request */
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ZERO_STRUCT(request);
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ZERO_STRUCT(response);
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request.data.gid = gid;
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/* Make request */
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result = winbindd_request_response(WINBINDD_GID_TO_SID, &request, &response);
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/* Copy out result */
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if (result == NSS_STATUS_SUCCESS) {
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if (!string_to_sid(sid, response.data.sid.sid))
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return False;
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} else {
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sid_copy(sid, &global_sid_NULL);
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}
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return (result == NSS_STATUS_SUCCESS);
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}
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BOOL winbind_allocate_uid(uid_t *uid)
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{
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struct winbindd_request request;
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struct winbindd_response response;
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int result;
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/* Initialise request */
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ZERO_STRUCT(request);
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ZERO_STRUCT(response);
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/* Make request */
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result = winbindd_request_response(WINBINDD_ALLOCATE_UID,
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&request, &response);
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if (result != NSS_STATUS_SUCCESS)
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return False;
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/* Copy out result */
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*uid = response.data.uid;
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return True;
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}
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BOOL winbind_allocate_gid(gid_t *gid)
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{
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struct winbindd_request request;
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struct winbindd_response response;
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int result;
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/* Initialise request */
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ZERO_STRUCT(request);
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ZERO_STRUCT(response);
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/* Make request */
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result = winbindd_request_response(WINBINDD_ALLOCATE_GID,
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&request, &response);
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if (result != NSS_STATUS_SUCCESS)
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return False;
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/* Copy out result */
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*gid = response.data.gid;
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return True;
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}
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/* Fetch the list of groups a user is a member of from winbindd. This is
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used by winbind_getgroups. */
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static int wb_getgroups(const char *user, gid_t **groups)
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{
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struct winbindd_request request;
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struct winbindd_response response;
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int result;
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/* Call winbindd */
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ZERO_STRUCT(request);
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fstrcpy(request.data.username, user);
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ZERO_STRUCT(response);
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result = winbindd_request_response(WINBINDD_GETGROUPS, &request, &response);
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if (result == NSS_STATUS_SUCCESS) {
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/* Return group list. Don't forget to free the group list
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when finished. */
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*groups = (gid_t *)response.extra_data.data;
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return response.data.num_entries;
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}
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return -1;
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}
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/* Call winbindd to initialise group membership. This is necessary for
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some systems (i.e RH5.2) that do not have an initgroups function as part
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of the nss extension. In RH5.2 this is implemented using getgrent()
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which can be amazingly inefficient as well as having problems with
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username case. */
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int winbind_initgroups(char *user, gid_t gid)
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{
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gid_t *groups = NULL;
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int result;
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/* Call normal initgroups if we are a local user */
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if (!strchr(user, *lp_winbind_separator())) {
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return initgroups(user, gid);
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}
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result = wb_getgroups(user, &groups);
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DEBUG(10,("winbind_getgroups: %s: result = %s\n", user,
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result == -1 ? "FAIL" : "SUCCESS"));
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if (result != -1) {
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int ngroups = result, i;
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BOOL is_member = False;
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/* Check to see if the passed gid is already in the list */
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for (i = 0; i < ngroups; i++) {
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if (groups[i] == gid) {
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is_member = True;
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}
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}
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/* Add group to list if necessary */
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if (!is_member) {
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groups = SMB_REALLOC_ARRAY(groups, gid_t, ngroups + 1);
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if (!groups) {
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errno = ENOMEM;
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result = -1;
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goto done;
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}
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groups[ngroups] = gid;
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ngroups++;
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}
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/* Set the groups */
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if (sys_setgroups(ngroups, groups) == -1) {
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errno = EPERM;
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result = -1;
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goto done;
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}
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} else {
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/* The call failed. Set errno to something so we don't get
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a bogus value from the last failed system call. */
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errno = EIO;
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}
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/* Free response data if necessary */
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done:
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SAFE_FREE(groups);
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return result;
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}
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/* Return a list of groups the user is a member of. This function is
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useful for large systems where inverting the group database would be too
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time consuming. If size is zero, list is not modified and the total
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number of groups for the user is returned. */
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int winbind_getgroups(const char *user, gid_t **list)
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{
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/*
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* Don't do the lookup if the name has no separator _and_ we are not in
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* 'winbind use default domain' mode.
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*/
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if (!(strchr(user, *lp_winbind_separator()) || lp_winbind_use_default_domain()))
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return -1;
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/* Fetch list of groups */
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return wb_getgroups(user, list);
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}
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/**********************************************************************
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simple wrapper function to see if winbindd is alive
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**********************************************************************/
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BOOL winbind_ping( void )
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{
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NSS_STATUS result;
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result = winbindd_request_response(WINBINDD_PING, NULL, NULL);
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return result == NSS_STATUS_SUCCESS;
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}
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/**********************************************************************
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Is a domain trusted?
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result == NSS_STATUS_UNAVAIL: winbind not around
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result == NSS_STATUS_NOTFOUND: winbind around, but domain missing
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Due to a bad API NSS_STATUS_NOTFOUND is returned both when winbind_off and
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when winbind return WINBINDD_ERROR. So the semantics of this routine depends
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on winbind_on. Grepping for winbind_off I just found 3 places where winbind
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is turned off, and this does not conflict (as far as I have seen) with the
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callers of is_trusted_domains.
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I *hate* global variables....
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Volker
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**********************************************************************/
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NSS_STATUS wb_is_trusted_domain(const char *domain)
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{
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struct winbindd_request request;
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struct winbindd_response response;
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/* Call winbindd */
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ZERO_STRUCT(request);
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ZERO_STRUCT(response);
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fstrcpy(request.domain_name, domain);
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return winbindd_request_response(WINBINDD_DOMAIN_INFO, &request, &response);
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}
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