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|
/*
Unix SMB/CIFS implementation.
dsgetdcname
Copyright (C) Gerald Carter 2006
Copyright (C) Guenther Deschner 2007-2008
This program is free software; you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation; either version 3 of the License, or
(at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program. If not, see <http://www.gnu.org/licenses/>.
*/
#include "includes.h"
#define DSGETDCNAME_FMT "DSGETDCNAME/DOMAIN/%s"
/* 15 minutes */
#define DSGETDCNAME_CACHE_TTL 60*15
struct ip_service_name {
struct sockaddr_storage ss;
unsigned port;
const char *hostname;
};
/****************************************************************
****************************************************************/
void debug_dsdcinfo_flags(int lvl, uint32_t flags)
{
DEBUG(lvl,("debug_dsdcinfo_flags: 0x%08x\n\t", flags));
if (flags & DS_FORCE_REDISCOVERY)
DEBUGADD(lvl,("DS_FORCE_REDISCOVERY "));
if (flags & 0x000000002)
DEBUGADD(lvl,("0x00000002 "));
if (flags & 0x000000004)
DEBUGADD(lvl,("0x00000004 "));
if (flags & 0x000000008)
DEBUGADD(lvl,("0x00000008 "));
if (flags & DS_DIRECTORY_SERVICE_REQUIRED)
DEBUGADD(lvl,("DS_DIRECTORY_SERVICE_REQUIRED "));
if (flags & DS_DIRECTORY_SERVICE_PREFERRED)
DEBUGADD(lvl,("DS_DIRECTORY_SERVICE_PREFERRED "));
if (flags & DS_GC_SERVER_REQUIRED)
DEBUGADD(lvl,("DS_GC_SERVER_REQUIRED "));
if (flags & DS_PDC_REQUIRED)
DEBUGADD(lvl,("DS_PDC_REQUIRED "));
if (flags & DS_BACKGROUND_ONLY)
DEBUGADD(lvl,("DS_BACKGROUND_ONLY "));
if (flags & DS_IP_REQUIRED)
DEBUGADD(lvl,("DS_IP_REQUIRED "));
if (flags & DS_KDC_REQUIRED)
DEBUGADD(lvl,("DS_KDC_REQUIRED "));
if (flags & DS_TIMESERV_REQUIRED)
DEBUGADD(lvl,("DS_TIMESERV_REQUIRED "));
if (flags & DS_WRITABLE_REQUIRED)
DEBUGADD(lvl,("DS_WRITABLE_REQUIRED "));
if (flags & DS_GOOD_TIMESERV_PREFERRED)
DEBUGADD(lvl,("DS_GOOD_TIMESERV_PREFERRED "));
if (flags & DS_AVOID_SELF)
DEBUGADD(lvl,("DS_AVOID_SELF "));
if (flags & DS_ONLY_LDAP_NEEDED)
DEBUGADD(lvl,("DS_ONLY_LDAP_NEEDED "));
if (flags & DS_IS_FLAT_NAME)
DEBUGADD(lvl,("DS_IS_FLAT_NAME "));
if (flags & DS_IS_DNS_NAME)
DEBUGADD(lvl,("DS_IS_DNS_NAME "));
if (flags & 0x00040000)
DEBUGADD(lvl,("0x00040000 "));
if (flags & 0x00080000)
DEBUGADD(lvl,("0x00080000 "));
if (flags & 0x00100000)
DEBUGADD(lvl,("0x00100000 "));
if (flags & 0x00200000)
DEBUGADD(lvl,("0x00200000 "));
if (flags & 0x00400000)
DEBUGADD(lvl,("0x00400000 "));
if (flags & 0x00800000)
DEBUGADD(lvl,("0x00800000 "));
if (flags & 0x01000000)
DEBUGADD(lvl,("0x01000000 "));
if (flags & 0x02000000)
DEBUGADD(lvl,("0x02000000 "));
if (flags & 0x04000000)
DEBUGADD(lvl,("0x04000000 "));
if (flags & 0x08000000)
DEBUGADD(lvl,("0x08000000 "));
if (flags & 0x10000000)
DEBUGADD(lvl,("0x10000000 "));
if (flags & 0x20000000)
DEBUGADD(lvl,("0x20000000 "));
if (flags & DS_RETURN_DNS_NAME)
DEBUGADD(lvl,("DS_RETURN_DNS_NAME "));
if (flags & DS_RETURN_FLAT_NAME)
DEBUGADD(lvl,("DS_RETURN_FLAT_NAME "));
if (flags)
DEBUGADD(lvl,("\n"));
}
/*********************************************************************
********************************************************************/
static int pack_dsdcinfo(struct netr_DsRGetDCNameInfo *info,
unsigned char **buf)
{
unsigned char *buffer = NULL;
int len = 0;
int buflen = 0;
UUID_FLAT guid_flat;
DEBUG(10,("pack_dsdcinfo: Packing dsdcinfo\n"));
ZERO_STRUCT(guid_flat);
if (!GUID_all_zero(&info->domain_guid)) {
smb_uuid_pack(info->domain_guid, &guid_flat);
}
again:
len = 0;
if (buflen > 0) {
DEBUG(10,("pack_dsdcinfo: Packing domain %s (%s)\n",
info->domain_name, info->dc_unc));
}
len += tdb_pack(buffer+len, buflen-len, "ffdBffdff",
info->dc_unc,
info->dc_address,
info->dc_address_type,
UUID_FLAT_SIZE, guid_flat.info,
info->domain_name,
info->forest_name,
info->dc_flags,
info->dc_site_name,
info->client_site_name);
if (buflen < len) {
SAFE_FREE(buffer);
if ((buffer = SMB_MALLOC_ARRAY(unsigned char, len)) == NULL ) {
DEBUG(0,("pack_dsdcinfo: failed to alloc buffer!\n"));
buflen = -1;
goto done;
}
buflen = len;
goto again;
}
*buf = buffer;
done:
return buflen;
}
/*********************************************************************
********************************************************************/
static NTSTATUS unpack_dsdcinfo(TALLOC_CTX *mem_ctx,
unsigned char *buf,
int buflen,
struct netr_DsRGetDCNameInfo **info_ret)
{
int len = 0;
struct netr_DsRGetDCNameInfo *info = NULL;
uint32_t guid_len = 0;
unsigned char *guid_buf = NULL;
UUID_FLAT guid_flat;
/* forgive me 6 times */
fstring dc_unc;
fstring dc_address;
fstring domain_name;
fstring forest_name;
fstring dc_site_name;
fstring client_site_name;
info = TALLOC_ZERO_P(mem_ctx, struct netr_DsRGetDCNameInfo);
NT_STATUS_HAVE_NO_MEMORY(info);
len += tdb_unpack(buf+len, buflen-len, "ffdBffdff",
&dc_unc,
&dc_address,
&info->dc_address_type,
&guid_len, &guid_buf,
&domain_name,
&forest_name,
&info->dc_flags,
&dc_site_name,
&client_site_name);
if (len == -1) {
DEBUG(5,("unpack_dsdcinfo: Failed to unpack domain\n"));
goto failed;
}
info->dc_unc =
talloc_strdup(mem_ctx, dc_unc);
info->dc_address =
talloc_strdup(mem_ctx, dc_address);
info->domain_name =
talloc_strdup(mem_ctx, domain_name);
info->forest_name =
talloc_strdup(mem_ctx, forest_name);
info->dc_site_name =
talloc_strdup(mem_ctx, dc_site_name);
info->client_site_name =
talloc_strdup(mem_ctx, client_site_name);
if (!info->dc_unc ||
!info->dc_address ||
!info->domain_name ||
!info->forest_name ||
!info->dc_site_name ||
!info->client_site_name) {
goto failed;
}
if (guid_len > 0) {
struct GUID guid;
if (guid_len != UUID_FLAT_SIZE) {
goto failed;
}
memcpy(&guid_flat.info, guid_buf, guid_len);
smb_uuid_unpack(guid_flat, &guid);
info->domain_guid = guid;
SAFE_FREE(guid_buf);
}
DEBUG(10,("unpack_dcscinfo: Unpacked domain %s (%s)\n",
info->domain_name, info->dc_unc));
*info_ret = info;
return NT_STATUS_OK;
failed:
TALLOC_FREE(info);
SAFE_FREE(guid_buf);
return NT_STATUS_NO_MEMORY;
}
/****************************************************************
****************************************************************/
static char *dsgetdcname_cache_key(TALLOC_CTX *mem_ctx, const char *domain)
{
if (!mem_ctx || !domain) {
return NULL;
}
return talloc_asprintf_strupper_m(mem_ctx, DSGETDCNAME_FMT, domain);
}
/****************************************************************
****************************************************************/
static NTSTATUS dsgetdcname_cache_delete(TALLOC_CTX *mem_ctx,
const char *domain_name)
{
char *key;
if (!gencache_init()) {
return NT_STATUS_INTERNAL_DB_ERROR;
}
key = dsgetdcname_cache_key(mem_ctx, domain_name);
if (!key) {
return NT_STATUS_NO_MEMORY;
}
if (!gencache_del(key)) {
return NT_STATUS_UNSUCCESSFUL;
}
return NT_STATUS_OK;
}
/****************************************************************
****************************************************************/
static NTSTATUS dsgetdcname_cache_store(TALLOC_CTX *mem_ctx,
const char *domain_name,
struct netr_DsRGetDCNameInfo *info)
{
time_t expire_time;
char *key;
bool ret = false;
DATA_BLOB blob;
unsigned char *buf = NULL;
int len = 0;
if (!gencache_init()) {
return NT_STATUS_INTERNAL_DB_ERROR;
}
key = dsgetdcname_cache_key(mem_ctx, domain_name);
if (!key) {
return NT_STATUS_NO_MEMORY;
}
expire_time = time(NULL) + DSGETDCNAME_CACHE_TTL;
len = pack_dsdcinfo(info, &buf);
if (len == -1) {
return NT_STATUS_UNSUCCESSFUL;
}
blob = data_blob(buf, len);
SAFE_FREE(buf);
if (gencache_lock_entry(key) != 0) {
data_blob_free(&blob);
return NT_STATUS_LOCK_NOT_GRANTED;
}
ret = gencache_set_data_blob(key, &blob, expire_time);
data_blob_free(&blob);
gencache_unlock_entry(key);
return ret ? NT_STATUS_OK : NT_STATUS_UNSUCCESSFUL;
}
/****************************************************************
****************************************************************/
static NTSTATUS dsgetdcname_cache_refresh(TALLOC_CTX *mem_ctx,
const char *domain_name,
struct GUID *domain_guid,
uint32_t flags,
const char *site_name,
struct netr_DsRGetDCNameInfo *info)
{
struct cldap_netlogon_reply r;
/* check if matching entry is older then 15 minutes, if yes, send
* CLDAP/MAILSLOT ping again and store the cached data */
ZERO_STRUCT(r);
if (ads_cldap_netlogon(info->dc_unc,
info->domain_name, &r)) {
dsgetdcname_cache_delete(mem_ctx, domain_name);
return dsgetdcname_cache_store(mem_ctx,
info->domain_name,
info);
}
return NT_STATUS_INVALID_NETWORK_RESPONSE;
}
/****************************************************************
****************************************************************/
#define RETURN_ON_FALSE(x) if (!x) return false;
static bool check_cldap_reply_required_flags(uint32_t ret_flags,
uint32_t req_flags)
{
if (req_flags & DS_PDC_REQUIRED)
RETURN_ON_FALSE(ret_flags & ADS_PDC);
if (req_flags & DS_GC_SERVER_REQUIRED)
RETURN_ON_FALSE(ret_flags & ADS_GC);
if (req_flags & DS_ONLY_LDAP_NEEDED)
RETURN_ON_FALSE(ret_flags & ADS_LDAP);
if ((req_flags & DS_DIRECTORY_SERVICE_REQUIRED) ||
(req_flags & DS_DIRECTORY_SERVICE_PREFERRED))
RETURN_ON_FALSE(ret_flags & ADS_DS);
if (req_flags & DS_KDC_REQUIRED)
RETURN_ON_FALSE(ret_flags & ADS_KDC);
if (req_flags & DS_TIMESERV_REQUIRED)
RETURN_ON_FALSE(ret_flags & ADS_TIMESERV);
if (req_flags & DS_WRITABLE_REQUIRED)
RETURN_ON_FALSE(ret_flags & ADS_WRITABLE);
return true;
}
/****************************************************************
****************************************************************/
static NTSTATUS dsgetdcname_cache_fetch(TALLOC_CTX *mem_ctx,
const char *domain_name,
struct GUID *domain_guid,
uint32_t flags,
const char *site_name,
struct netr_DsRGetDCNameInfo **info,
bool *expired)
{
char *key;
DATA_BLOB blob;
NTSTATUS status;
if (!gencache_init()) {
return NT_STATUS_INTERNAL_DB_ERROR;
}
key = dsgetdcname_cache_key(mem_ctx, domain_name);
if (!key) {
return NT_STATUS_NO_MEMORY;
}
if (!gencache_get_data_blob(key, &blob, expired)) {
return NT_STATUS_OBJECT_NAME_NOT_FOUND;
}
status = unpack_dsdcinfo(mem_ctx, blob.data, blob.length, info);
if (!NT_STATUS_IS_OK(status)) {
data_blob_free(&blob);
return status;
}
data_blob_free(&blob);
/* check flags */
if (!check_cldap_reply_required_flags((*info)->dc_flags, flags)) {
DEBUG(10,("invalid flags\n"));
return NT_STATUS_INVALID_PARAMETER;
}
if ((flags & DS_IP_REQUIRED) &&
((*info)->dc_address_type != DS_ADDRESS_TYPE_INET)) {
return NT_STATUS_INVALID_PARAMETER_MIX;
}
return NT_STATUS_OK;
}
/****************************************************************
****************************************************************/
static NTSTATUS dsgetdcname_cached(TALLOC_CTX *mem_ctx,
const char *domain_name,
struct GUID *domain_guid,
uint32_t flags,
const char *site_name,
struct netr_DsRGetDCNameInfo **info)
{
NTSTATUS status;
bool expired = false;
status = dsgetdcname_cache_fetch(mem_ctx, domain_name, domain_guid,
flags, site_name, info, &expired);
if (!NT_STATUS_IS_OK(status)) {
DEBUG(10,("dsgetdcname_cached: cache fetch failed with: %s\n",
nt_errstr(status)));
return NT_STATUS_DOMAIN_CONTROLLER_NOT_FOUND;
}
if (flags & DS_BACKGROUND_ONLY) {
return status;
}
if (expired) {
status = dsgetdcname_cache_refresh(mem_ctx, domain_name,
domain_guid, flags,
site_name, *info);
if (!NT_STATUS_IS_OK(status)) {
return status;
}
}
return status;
}
/****************************************************************
****************************************************************/
static bool check_allowed_required_flags(uint32_t flags)
{
uint32_t return_type = flags & (DS_RETURN_FLAT_NAME|DS_RETURN_DNS_NAME);
uint32_t offered_type = flags & (DS_IS_FLAT_NAME|DS_IS_DNS_NAME);
uint32_t query_type = flags & (DS_BACKGROUND_ONLY|DS_FORCE_REDISCOVERY);
/* FIXME: check for DSGETDC_VALID_FLAGS and check for excluse bits
* (DS_PDC_REQUIRED, DS_KDC_REQUIRED, DS_GC_SERVER_REQUIRED) */
debug_dsdcinfo_flags(10, flags);
if (return_type == (DS_RETURN_FLAT_NAME|DS_RETURN_DNS_NAME)) {
return false;
}
if (offered_type == (DS_IS_DNS_NAME|DS_IS_FLAT_NAME)) {
return false;
}
if (query_type == (DS_BACKGROUND_ONLY|DS_FORCE_REDISCOVERY)) {
return false;
}
#if 0
if ((flags & DS_RETURN_DNS_NAME) && (!(flags & DS_IP_REQUIRED))) {
printf("gd: here5 \n");
return false;
}
#endif
return true;
}
/****************************************************************
****************************************************************/
static NTSTATUS discover_dc_netbios(TALLOC_CTX *mem_ctx,
const char *domain_name,
uint32_t flags,
struct ip_service_name **returned_dclist,
int *return_count)
{
if (lp_disable_netbios()) {
return NT_STATUS_NOT_SUPPORTED;
}
/* FIXME: code here */
return NT_STATUS_DOMAIN_CONTROLLER_NOT_FOUND;
}
/****************************************************************
****************************************************************/
static NTSTATUS discover_dc_dns(TALLOC_CTX *mem_ctx,
const char *domain_name,
struct GUID *domain_guid,
uint32_t flags,
const char *site_name,
struct ip_service_name **returned_dclist,
int *return_count)
{
int i, j;
NTSTATUS status;
struct dns_rr_srv *dcs = NULL;
int numdcs = 0;
int numaddrs = 0;
if ((!(flags & DS_DIRECTORY_SERVICE_REQUIRED)) &&
(!(flags & DS_KDC_REQUIRED)) &&
(!(flags & DS_GC_SERVER_REQUIRED)) &&
(!(flags & DS_PDC_REQUIRED))) {
DEBUG(1,("discover_dc_dns: invalid flags\n"));
return NT_STATUS_INVALID_PARAMETER;
}
if (flags & DS_PDC_REQUIRED) {
status = ads_dns_query_pdc(mem_ctx, domain_name,
&dcs, &numdcs);
} else if (flags & DS_GC_SERVER_REQUIRED) {
status = ads_dns_query_gcs(mem_ctx, domain_name, site_name,
&dcs, &numdcs);
} else if (flags & DS_KDC_REQUIRED) {
status = ads_dns_query_kdcs(mem_ctx, domain_name, site_name,
&dcs, &numdcs);
} else if (flags & DS_DIRECTORY_SERVICE_REQUIRED) {
status = ads_dns_query_dcs(mem_ctx, domain_name, site_name,
&dcs, &numdcs);
} else if (domain_guid) {
status = ads_dns_query_dcs_guid(mem_ctx, domain_name,
domain_guid, &dcs, &numdcs);
} else {
/* FIXME: ? */
DEBUG(1,("discover_dc_dns: not enough input\n"));
status = NT_STATUS_DOMAIN_CONTROLLER_NOT_FOUND;
}
if (!NT_STATUS_IS_OK(status)) {
return status;
}
if (numdcs == 0) {
return NT_STATUS_DOMAIN_CONTROLLER_NOT_FOUND;
}
for (i=0;i<numdcs;i++) {
numaddrs += MAX(dcs[i].num_ips,1);
}
if ((*returned_dclist = TALLOC_ZERO_ARRAY(mem_ctx,
struct ip_service_name,
numaddrs)) == NULL) {
return NT_STATUS_NO_MEMORY;
}
/* now unroll the list of IP addresses */
*return_count = 0;
i = 0;
j = 0;
while (i < numdcs && (*return_count<numaddrs)) {
struct ip_service_name *r = &(*returned_dclist)[*return_count];
r->port = dcs[i].port;
r->hostname = dcs[i].hostname;
if (!(flags & DS_IP_REQUIRED)) {
(*return_count)++;
continue;
}
/* If we don't have an IP list for a name, lookup it up */
if (!dcs[i].ss_s) {
interpret_string_addr(&r->ss, dcs[i].hostname, 0);
i++;
j = 0;
} else {
/* use the IP addresses from the SRV sresponse */
if (j >= dcs[i].num_ips) {
i++;
j = 0;
continue;
}
r->ss = dcs[i].ss_s[j];
j++;
}
/* make sure it is a valid IP. I considered checking the
* negative connection cache, but this is the wrong place for
* it. Maybe only as a hac. After think about it, if all of
* the IP addresses retuend from DNS are dead, what hope does a
* netbios name lookup have? The standard reason for falling
* back to netbios lookups is that our DNS server doesn't know
* anything about the DC's -- jerry */
if (!is_zero_addr(&r->ss)) {
(*return_count)++;
continue;
}
}
return (*return_count > 0) ? NT_STATUS_OK :
NT_STATUS_DOMAIN_CONTROLLER_NOT_FOUND;
}
/****************************************************************
****************************************************************/
static NTSTATUS make_domain_controller_info(TALLOC_CTX *mem_ctx,
const char *dc_unc,
const char *dc_address,
uint32_t dc_address_type,
const struct GUID *domain_guid,
const char *domain_name,
const char *forest_name,
uint32_t flags,
const char *dc_site_name,
const char *client_site_name,
struct netr_DsRGetDCNameInfo **info_out)
{
struct netr_DsRGetDCNameInfo *info;
info = TALLOC_ZERO_P(mem_ctx, struct netr_DsRGetDCNameInfo);
NT_STATUS_HAVE_NO_MEMORY(info);
if (dc_unc) {
info->dc_unc = talloc_strdup(mem_ctx, dc_unc);
NT_STATUS_HAVE_NO_MEMORY(info->dc_unc);
}
if (dc_address) {
info->dc_address = talloc_strdup(mem_ctx, dc_address);
NT_STATUS_HAVE_NO_MEMORY(info->dc_address);
}
info->dc_address_type = dc_address_type;
if (domain_guid) {
info->domain_guid = *domain_guid;
}
if (domain_name) {
info->domain_name = talloc_strdup(mem_ctx, domain_name);
NT_STATUS_HAVE_NO_MEMORY(info->domain_name);
}
if (forest_name) {
info->forest_name = talloc_strdup(mem_ctx, forest_name);
NT_STATUS_HAVE_NO_MEMORY(info->forest_name);
}
info->dc_flags = flags;
if (dc_site_name) {
info->dc_site_name = talloc_strdup(mem_ctx, dc_site_name);
NT_STATUS_HAVE_NO_MEMORY(info->dc_site_name);
}
if (client_site_name) {
info->client_site_name = talloc_strdup(mem_ctx,
client_site_name);
NT_STATUS_HAVE_NO_MEMORY(info->client_site_name);
}
*info_out = info;
return NT_STATUS_OK;
}
/****************************************************************
****************************************************************/
static NTSTATUS process_dc_dns(TALLOC_CTX *mem_ctx,
const char *domain_name,
uint32_t flags,
struct ip_service_name **dclist,
int num_dcs,
struct netr_DsRGetDCNameInfo **info)
{
int i = 0;
bool valid_dc = false;
struct cldap_netlogon_reply r;
const char *dc_hostname, *dc_domain_name;
const char *dc_address;
uint32_t dc_address_type;
uint32_t dc_flags;
struct GUID dc_guid;
for (i=0; i<num_dcs; i++) {
ZERO_STRUCT(r);
if ((ads_cldap_netlogon(dclist[i]->hostname,
domain_name, &r)) &&
(check_cldap_reply_required_flags(r.flags, flags))) {
valid_dc = true;
break;
}
continue;
}
if (!valid_dc) {
return NT_STATUS_DOMAIN_CONTROLLER_NOT_FOUND;
}
dc_flags = r.flags;
if (flags & DS_RETURN_FLAT_NAME) {
if (!strlen(r.netbios_hostname) || !strlen(r.netbios_domain)) {
return NT_STATUS_DOMAIN_CONTROLLER_NOT_FOUND;
}
dc_hostname = r.netbios_hostname;
dc_domain_name = r.netbios_domain;
} else if (flags & DS_RETURN_DNS_NAME) {
if (!strlen(r.hostname) || !strlen(r.domain)) {
return NT_STATUS_DOMAIN_CONTROLLER_NOT_FOUND;
}
dc_hostname = r.hostname;
dc_domain_name = r.domain;
dc_flags |= DS_DNS_DOMAIN | DS_DNS_CONTROLLER;
} else {
/* FIXME */
dc_hostname = r.hostname;
dc_domain_name = r.domain;
dc_flags |= DS_DNS_DOMAIN | DS_DNS_CONTROLLER;
}
if (flags & DS_IP_REQUIRED) {
char addr[INET6_ADDRSTRLEN];
print_sockaddr(addr, sizeof(addr), &dclist[i]->ss);
dc_address = talloc_asprintf(mem_ctx, "\\\\%s",
addr);
dc_address_type = DS_ADDRESS_TYPE_INET;
} else {
dc_address = talloc_asprintf(mem_ctx, "\\\\%s",
r.netbios_hostname);
dc_address_type = DS_ADDRESS_TYPE_NETBIOS;
}
NT_STATUS_HAVE_NO_MEMORY(dc_address);
smb_uuid_unpack(r.guid, &dc_guid);
if (r.forest) {
dc_flags |= DS_DNS_FOREST;
}
return make_domain_controller_info(mem_ctx,
dc_hostname,
dc_address,
dc_address_type,
&dc_guid,
dc_domain_name,
r.forest,
dc_flags,
r.server_site_name,
r.client_site_name,
info);
}
/****************************************************************
****************************************************************/
static NTSTATUS process_dc_netbios(TALLOC_CTX *mem_ctx,
const char *domain_name,
uint32_t flags,
struct ip_service_name **dclist,
int num_dcs,
struct netr_DsRGetDCNameInfo **info)
{
/* FIXME: code here */
return NT_STATUS_NOT_SUPPORTED;
}
/****************************************************************
****************************************************************/
static NTSTATUS dsgetdcname_rediscover(TALLOC_CTX *mem_ctx,
const char *domain_name,
struct GUID *domain_guid,
uint32_t flags,
const char *site_name,
struct netr_DsRGetDCNameInfo **info)
{
NTSTATUS status = NT_STATUS_DOMAIN_CONTROLLER_NOT_FOUND;
struct ip_service_name *dclist;
int num_dcs;
DEBUG(10,("dsgetdcname_rediscover\n"));
if (flags & DS_IS_FLAT_NAME) {
status = discover_dc_netbios(mem_ctx, domain_name, flags,
&dclist, &num_dcs);
NT_STATUS_NOT_OK_RETURN(status);
return process_dc_netbios(mem_ctx, domain_name, flags,
&dclist, num_dcs, info);
}
if (flags & DS_IS_DNS_NAME) {
status = discover_dc_dns(mem_ctx, domain_name, domain_guid,
flags, site_name, &dclist, &num_dcs);
NT_STATUS_NOT_OK_RETURN(status);
return process_dc_dns(mem_ctx, domain_name, flags,
&dclist, num_dcs, info);
}
status = discover_dc_dns(mem_ctx, domain_name, domain_guid, flags,
site_name, &dclist, &num_dcs);
if (NT_STATUS_IS_OK(status) && num_dcs != 0) {
status = process_dc_dns(mem_ctx, domain_name, flags, &dclist,
num_dcs, info);
if (NT_STATUS_IS_OK(status)) {
return status;
}
}
status = discover_dc_netbios(mem_ctx, domain_name, flags, &dclist,
&num_dcs);
NT_STATUS_NOT_OK_RETURN(status);
return process_dc_netbios(mem_ctx, domain_name, flags, &dclist,
num_dcs, info);
}
/********************************************************************
dsgetdcname.
This will be the only public function here.
********************************************************************/
NTSTATUS dsgetdcname(TALLOC_CTX *mem_ctx,
const char *domain_name,
struct GUID *domain_guid,
const char *site_name,
uint32_t flags,
struct netr_DsRGetDCNameInfo **info)
{
NTSTATUS status = NT_STATUS_DOMAIN_CONTROLLER_NOT_FOUND;
struct netr_DsRGetDCNameInfo *myinfo = NULL;
DEBUG(10,("dsgetdcname: domain_name: %s, "
"domain_guid: %s, site_name: %s, flags: 0x%08x\n",
domain_name,
domain_guid ? GUID_string(mem_ctx, domain_guid) : "(null)",
site_name, flags));
*info = NULL;
if (!check_allowed_required_flags(flags)) {
DEBUG(0,("invalid flags specified\n"));
return NT_STATUS_INVALID_PARAMETER;
}
if (flags & DS_FORCE_REDISCOVERY) {
goto rediscover;
}
status = dsgetdcname_cached(mem_ctx, domain_name, domain_guid,
flags, site_name, &myinfo);
if (NT_STATUS_IS_OK(status)) {
*info = myinfo;
return status;
}
if (flags & DS_BACKGROUND_ONLY) {
return status;
}
rediscover:
status = dsgetdcname_rediscover(mem_ctx, domain_name,
domain_guid, flags, site_name,
&myinfo);
if (NT_STATUS_IS_OK(status)) {
dsgetdcname_cache_store(mem_ctx, domain_name, myinfo);
*info = myinfo;
}
return status;
}
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