2 Unix SMB/CIFS implementation.
4 multiple interface handling
6 Copyright (C) Andrew Tridgell 1992-2005
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/>.
23 #include "system/network.h"
24 #include "lib/socket/netif.h"
25 #include "../lib/util/dlinklist.h"
27 /** used for network interfaces */
29 struct interface
*next
, *prev
;
37 #define ALLONES ((uint32_t)0xFFFFFFFF)
39 address construction based on a patch from fred@datalync.com
41 #define MKBCADDR(_IP, _NM) ((_IP & _NM) | (_NM ^ ALLONES))
42 #define MKNETADDR(_IP, _NM) (_IP & _NM)
44 /****************************************************************************
45 Try and find an interface that matches an ip. If we cannot, return NULL
46 **************************************************************************/
47 static struct interface
*iface_find(struct interface
*interfaces
,
48 struct in_addr ip
, bool CheckMask
)
51 if (is_zero_ip_v4(ip
)) return interfaces
;
53 for (i
=interfaces
;i
;i
=i
->next
)
55 if (same_net_v4(i
->ip
,ip
,i
->nmask
)) return i
;
56 } else if (i
->ip
.s_addr
== ip
.s_addr
) return i
;
62 /****************************************************************************
63 add an interface to the linked list of interfaces
64 ****************************************************************************/
65 static void add_interface(TALLOC_CTX
*mem_ctx
, struct in_addr ip
, struct in_addr nmask
, struct interface
**interfaces
)
67 struct interface
*iface
;
70 if (iface_find(*interfaces
, ip
, false)) {
71 DEBUG(3,("not adding duplicate interface %s\n",inet_ntoa(ip
)));
75 iface
= talloc(*interfaces
== NULL
? mem_ctx
: *interfaces
, struct interface
);
83 bcast
.s_addr
= MKBCADDR(iface
->ip
.s_addr
, iface
->nmask
.s_addr
);
85 /* keep string versions too, to avoid people tripping over the implied
86 static in inet_ntoa() */
87 iface
->ip_s
= talloc_strdup(iface
, inet_ntoa(iface
->ip
));
88 iface
->nmask_s
= talloc_strdup(iface
, inet_ntoa(iface
->nmask
));
90 if (nmask
.s_addr
!= ~0) {
91 iface
->bcast_s
= talloc_strdup(iface
, inet_ntoa(bcast
));
94 DLIST_ADD_END(*interfaces
, iface
, struct interface
*);
96 DEBUG(2,("added interface ip=%s nmask=%s\n", iface
->ip_s
, iface
->nmask_s
));
102 interpret a single element from a interfaces= config line
104 This handles the following different forms:
106 1) wildcard interface name
112 static void interpret_interface(TALLOC_CTX
*mem_ctx
,
114 struct iface_struct
*probed_ifaces
,
116 struct interface
**local_interfaces
)
118 struct in_addr ip
, nmask
;
126 /* first check if it is an interface name */
127 for (i
=0;i
<total_probed
;i
++) {
128 if (gen_fnmatch(token
, probed_ifaces
[i
].name
) == 0) {
129 add_interface(mem_ctx
, probed_ifaces
[i
].ip
,
130 probed_ifaces
[i
].netmask
,
137 /* maybe it is a DNS name */
138 p
= strchr_m(token
,'/');
140 /* don't try to do dns lookups on wildcard names */
141 if (strpbrk(token
, "*?") != NULL
) {
144 ip
.s_addr
= interpret_addr2(token
).s_addr
;
145 for (i
=0;i
<total_probed
;i
++) {
146 if (ip
.s_addr
== probed_ifaces
[i
].ip
.s_addr
) {
147 add_interface(mem_ctx
, probed_ifaces
[i
].ip
,
148 probed_ifaces
[i
].netmask
,
153 DEBUG(2,("can't determine netmask for %s\n", token
));
157 address
= talloc_strdup(mem_ctx
, token
);
158 p
= strchr_m(address
,'/');
160 /* parse it into an IP address/netmasklength pair */
163 ip
.s_addr
= interpret_addr2(address
).s_addr
;
166 nmask
.s_addr
= interpret_addr2(p
).s_addr
;
168 nmask
.s_addr
= htonl(((ALLONES
>> atoi(p
)) ^ ALLONES
));
171 /* maybe the first component was a broadcast address */
172 if (ip
.s_addr
== MKBCADDR(ip
.s_addr
, nmask
.s_addr
) ||
173 ip
.s_addr
== MKNETADDR(ip
.s_addr
, nmask
.s_addr
)) {
174 for (i
=0;i
<total_probed
;i
++) {
175 if (same_net_v4(ip
, probed_ifaces
[i
].ip
, nmask
)) {
176 add_interface(mem_ctx
, probed_ifaces
[i
].ip
, nmask
,
178 talloc_free(address
);
182 DEBUG(2,("Can't determine ip for broadcast address %s\n", address
));
183 talloc_free(address
);
187 add_interface(mem_ctx
, ip
, nmask
, local_interfaces
);
188 talloc_free(address
);
193 load the list of network interfaces
195 void load_interfaces(TALLOC_CTX
*mem_ctx
, const char **interfaces
, struct interface
**local_interfaces
)
197 const char **ptr
= interfaces
;
199 struct iface_struct ifaces
[MAX_INTERFACES
];
200 struct in_addr loopback_ip
;
203 *local_interfaces
= NULL
;
205 loopback_ip
= interpret_addr2("127.0.0.1");
207 /* probe the kernel for interfaces */
208 total_probed
= get_interfaces(ifaces
, MAX_INTERFACES
);
210 /* if we don't have a interfaces line then use all interfaces
212 if (!ptr
|| !*ptr
|| !**ptr
) {
213 if (total_probed
<= 0) {
214 DEBUG(0,("ERROR: Could not determine network interfaces, you must use a interfaces config line\n"));
216 for (i
=0;i
<total_probed
;i
++) {
217 if (ifaces
[i
].ip
.s_addr
!= loopback_ip
.s_addr
) {
218 add_interface(mem_ctx
, ifaces
[i
].ip
,
219 ifaces
[i
].netmask
, local_interfaces
);
224 while (ptr
&& *ptr
) {
225 interpret_interface(mem_ctx
, *ptr
, ifaces
, total_probed
, local_interfaces
);
229 if (!*local_interfaces
) {
230 DEBUG(0,("WARNING: no network interfaces found\n"));
235 how many interfaces do we have
237 int iface_count(struct interface
*ifaces
)
242 for (i
=ifaces
;i
;i
=i
->next
)
248 return IP of the Nth interface
250 const char *iface_n_ip(struct interface
*ifaces
, int n
)
254 for (i
=ifaces
;i
&& n
;i
=i
->next
)
264 return bcast of the Nth interface
266 const char *iface_n_bcast(struct interface
*ifaces
, int n
)
270 for (i
=ifaces
;i
&& n
;i
=i
->next
)
280 return netmask of the Nth interface
282 const char *iface_n_netmask(struct interface
*ifaces
, int n
)
286 for (i
=ifaces
;i
&& n
;i
=i
->next
)
296 return the local IP address that best matches a destination IP, or
297 our first interface if none match
299 const char *iface_best_ip(struct interface
*ifaces
, const char *dest
)
301 struct interface
*iface
;
304 ip
.s_addr
= interpret_addr(dest
);
305 iface
= iface_find(ifaces
, ip
, true);
309 return iface_n_ip(ifaces
, 0);
313 return true if an IP is one one of our local networks
315 bool iface_is_local(struct interface
*ifaces
, const char *dest
)
319 ip
.s_addr
= interpret_addr(dest
);
320 if (iface_find(ifaces
, ip
, true)) {
327 return true if a IP matches a IP/netmask pair
329 bool iface_same_net(const char *ip1
, const char *ip2
, const char *netmask
)
331 return same_net_v4(interpret_addr2(ip1
),
332 interpret_addr2(ip2
),
333 interpret_addr2(netmask
));