in.c revision 1.2 1 /*
2 * Copyright (c) 1982, 1986, 1991 Regents of the University of California.
3 * All rights reserved.
4 *
5 * Redistribution and use in source and binary forms, with or without
6 * modification, are permitted provided that the following conditions
7 * are met:
8 * 1. Redistributions of source code must retain the above copyright
9 * notice, this list of conditions and the following disclaimer.
10 * 2. Redistributions in binary form must reproduce the above copyright
11 * notice, this list of conditions and the following disclaimer in the
12 * documentation and/or other materials provided with the distribution.
13 * 3. All advertising materials mentioning features or use of this software
14 * must display the following acknowledgement:
15 * This product includes software developed by the University of
16 * California, Berkeley and its contributors.
17 * 4. Neither the name of the University nor the names of its contributors
18 * may be used to endorse or promote products derived from this software
19 * without specific prior written permission.
20 *
21 * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
22 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
23 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
24 * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
25 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
26 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
27 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
28 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
29 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
30 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
31 * SUCH DAMAGE.
32 *
33 * from: @(#)in.c 7.17 (Berkeley) 4/20/91
34 * $Id: in.c,v 1.2 1993/05/18 18:20:07 cgd Exp $
35 */
36
37 #include "param.h"
38 #include "ioctl.h"
39 #include "select.h"
40 #include "mbuf.h"
41 #include "socket.h"
42 #include "socketvar.h"
43 #include "in_systm.h"
44 #include "net/if.h"
45 #include "net/route.h"
46 #include "net/af.h"
47 #include "in.h"
48 #include "in_var.h"
49
50 #ifdef INET
51 /*
52 * Formulate an Internet address from network + host.
53 */
54 struct in_addr
55 in_makeaddr(net, host)
56 u_long net, host;
57 {
58 register struct in_ifaddr *ia;
59 register u_long mask;
60 u_long addr;
61
62 if (IN_CLASSA(net))
63 mask = IN_CLASSA_HOST;
64 else if (IN_CLASSB(net))
65 mask = IN_CLASSB_HOST;
66 else
67 mask = IN_CLASSC_HOST;
68 for (ia = in_ifaddr; ia; ia = ia->ia_next)
69 if ((ia->ia_netmask & net) == ia->ia_net) {
70 mask = ~ia->ia_subnetmask;
71 break;
72 }
73 addr = htonl(net | (host & mask));
74 return (*(struct in_addr *)&addr);
75 }
76
77 /*
78 * Return the network number from an internet address.
79 */
80 u_long
81 in_netof(in)
82 struct in_addr in;
83 {
84 register u_long i = ntohl(in.s_addr);
85 register u_long net;
86 register struct in_ifaddr *ia;
87
88 if (IN_CLASSA(i))
89 net = i & IN_CLASSA_NET;
90 else if (IN_CLASSB(i))
91 net = i & IN_CLASSB_NET;
92 else if (IN_CLASSC(i))
93 net = i & IN_CLASSC_NET;
94 else
95 return (0);
96
97 /*
98 * Check whether network is a subnet;
99 * if so, return subnet number.
100 */
101 for (ia = in_ifaddr; ia; ia = ia->ia_next)
102 if (net == ia->ia_net)
103 return (i & ia->ia_subnetmask);
104 return (net);
105 }
106
107 /*
108 * Compute and save network mask as sockaddr from an internet address.
109 */
110 in_sockmaskof(in, sockmask)
111 struct in_addr in;
112 register struct sockaddr_in *sockmask;
113 {
114 register u_long net;
115 register u_long mask;
116 {
117 register u_long i = ntohl(in.s_addr);
118
119 if (i == 0)
120 net = 0, mask = 0;
121 else if (IN_CLASSA(i))
122 net = i & IN_CLASSA_NET, mask = IN_CLASSA_NET;
123 else if (IN_CLASSB(i))
124 net = i & IN_CLASSB_NET, mask = IN_CLASSB_NET;
125 else if (IN_CLASSC(i))
126 net = i & IN_CLASSC_NET, mask = IN_CLASSC_NET;
127 else
128 net = i, mask = -1;
129 }
130 {
131 register struct in_ifaddr *ia;
132 /*
133 * Check whether network is a subnet;
134 * if so, return subnet number.
135 */
136 for (ia = in_ifaddr; ia; ia = ia->ia_next)
137 if (net == ia->ia_net)
138 mask = ia->ia_subnetmask;
139 }
140 {
141 register char *cpbase = (char *)&(sockmask->sin_addr);
142 register char *cp = (char *)(1 + &(sockmask->sin_addr));
143
144 sockmask->sin_addr.s_addr = htonl(mask);
145 sockmask->sin_len = 0;
146 while (--cp >= cpbase)
147 if (*cp) {
148 sockmask->sin_len = 1 + cp - (caddr_t)sockmask;
149 break;
150 }
151 }
152 }
153
154 /*
155 * Return the host portion of an internet address.
156 */
157 u_long
158 in_lnaof(in)
159 struct in_addr in;
160 {
161 register u_long i = ntohl(in.s_addr);
162 register u_long net, host;
163 register struct in_ifaddr *ia;
164
165 if (IN_CLASSA(i)) {
166 net = i & IN_CLASSA_NET;
167 host = i & IN_CLASSA_HOST;
168 } else if (IN_CLASSB(i)) {
169 net = i & IN_CLASSB_NET;
170 host = i & IN_CLASSB_HOST;
171 } else if (IN_CLASSC(i)) {
172 net = i & IN_CLASSC_NET;
173 host = i & IN_CLASSC_HOST;
174 } else
175 return (i);
176
177 /*
178 * Check whether network is a subnet;
179 * if so, use the modified interpretation of `host'.
180 */
181 for (ia = in_ifaddr; ia; ia = ia->ia_next)
182 if (net == ia->ia_net)
183 return (host &~ ia->ia_subnetmask);
184 return (host);
185 }
186
187 #ifndef SUBNETSARELOCAL
188 #define SUBNETSARELOCAL 1
189 #endif
190 int subnetsarelocal = SUBNETSARELOCAL;
191 /*
192 * Return 1 if an internet address is for a ``local'' host
193 * (one to which we have a connection). If subnetsarelocal
194 * is true, this includes other subnets of the local net.
195 * Otherwise, it includes only the directly-connected (sub)nets.
196 */
197 in_localaddr(in)
198 struct in_addr in;
199 {
200 register u_long i = ntohl(in.s_addr);
201 register struct in_ifaddr *ia;
202
203 if (subnetsarelocal) {
204 for (ia = in_ifaddr; ia; ia = ia->ia_next)
205 if ((i & ia->ia_netmask) == ia->ia_net)
206 return (1);
207 } else {
208 for (ia = in_ifaddr; ia; ia = ia->ia_next)
209 if ((i & ia->ia_subnetmask) == ia->ia_subnet)
210 return (1);
211 }
212 return (0);
213 }
214
215 /*
216 * Determine whether an IP address is in a reserved set of addresses
217 * that may not be forwarded, or whether datagrams to that destination
218 * may be forwarded.
219 */
220 in_canforward(in)
221 struct in_addr in;
222 {
223 register u_long i = ntohl(in.s_addr);
224 register u_long net;
225
226 if (IN_EXPERIMENTAL(i))
227 return (0);
228 if (IN_CLASSA(i)) {
229 net = i & IN_CLASSA_NET;
230 if (net == 0 || net == IN_LOOPBACKNET)
231 return (0);
232 }
233 return (1);
234 }
235
236 int in_interfaces; /* number of external internet interfaces */
237 extern struct ifnet loif;
238
239 /*
240 * Generic internet control operations (ioctl's).
241 * Ifp is 0 if not an interface-specific ioctl.
242 */
243 /* ARGSUSED */
244 in_control(so, cmd, data, ifp)
245 struct socket *so;
246 int cmd;
247 caddr_t data;
248 register struct ifnet *ifp;
249 {
250 register struct ifreq *ifr = (struct ifreq *)data;
251 register struct in_ifaddr *ia = 0;
252 register struct ifaddr *ifa;
253 struct in_ifaddr *oia;
254 struct in_aliasreq *ifra = (struct in_aliasreq *)data;
255 struct mbuf *m;
256 struct sockaddr_in oldaddr;
257 int error, hostIsNew, maskIsNew;
258 u_long i;
259
260 /*
261 * Find address for this interface, if it exists.
262 */
263 if (ifp)
264 for (ia = in_ifaddr; ia; ia = ia->ia_next)
265 if (ia->ia_ifp == ifp)
266 break;
267
268 switch (cmd) {
269
270 case SIOCAIFADDR:
271 case SIOCDIFADDR:
272 if (ifra->ifra_addr.sin_family == AF_INET)
273 for (oia = ia; ia; ia = ia->ia_next) {
274 if (ia->ia_ifp == ifp &&
275 ia->ia_addr.sin_addr.s_addr ==
276 ifra->ifra_addr.sin_addr.s_addr)
277 break;
278 }
279 if (cmd == SIOCDIFADDR && ia == 0)
280 return (EADDRNOTAVAIL);
281 /* FALLTHROUGH */
282 case SIOCSIFADDR:
283 case SIOCSIFNETMASK:
284 case SIOCSIFDSTADDR:
285 if ((so->so_state & SS_PRIV) == 0)
286 return (EPERM);
287
288 if (ifp == 0)
289 panic("in_control");
290 if (ia == (struct in_ifaddr *)0) {
291 m = m_getclr(M_WAIT, MT_IFADDR);
292 if (m == (struct mbuf *)NULL)
293 return (ENOBUFS);
294 if (ia = in_ifaddr) {
295 for ( ; ia->ia_next; ia = ia->ia_next)
296 ;
297 ia->ia_next = mtod(m, struct in_ifaddr *);
298 } else
299 in_ifaddr = mtod(m, struct in_ifaddr *);
300 ia = mtod(m, struct in_ifaddr *);
301 if (ifa = ifp->if_addrlist) {
302 for ( ; ifa->ifa_next; ifa = ifa->ifa_next)
303 ;
304 ifa->ifa_next = (struct ifaddr *) ia;
305 } else
306 ifp->if_addrlist = (struct ifaddr *) ia;
307 ia->ia_ifa.ifa_addr = (struct sockaddr *)&ia->ia_addr;
308 ia->ia_ifa.ifa_dstaddr
309 = (struct sockaddr *)&ia->ia_dstaddr;
310 ia->ia_ifa.ifa_netmask
311 = (struct sockaddr *)&ia->ia_sockmask;
312 ia->ia_sockmask.sin_len = 8;
313 if (ifp->if_flags & IFF_BROADCAST) {
314 ia->ia_broadaddr.sin_len = sizeof(ia->ia_addr);
315 ia->ia_broadaddr.sin_family = AF_INET;
316 }
317 ia->ia_ifp = ifp;
318 if (ifp != &loif)
319 in_interfaces++;
320 }
321 break;
322
323 case SIOCSIFBRDADDR:
324 if ((so->so_state & SS_PRIV) == 0)
325 return (EPERM);
326 /* FALLTHROUGH */
327
328 case SIOCGIFADDR:
329 case SIOCGIFNETMASK:
330 case SIOCGIFDSTADDR:
331 case SIOCGIFBRDADDR:
332 if (ia == (struct in_ifaddr *)0)
333 return (EADDRNOTAVAIL);
334 break;
335
336 default:
337 return (EOPNOTSUPP);
338 break;
339 }
340 switch (cmd) {
341
342 case SIOCGIFADDR:
343 *((struct sockaddr_in *)&ifr->ifr_addr) = ia->ia_addr;
344 break;
345
346 case SIOCGIFBRDADDR:
347 if ((ifp->if_flags & IFF_BROADCAST) == 0)
348 return (EINVAL);
349 *((struct sockaddr_in *)&ifr->ifr_dstaddr) = ia->ia_broadaddr;
350 break;
351
352 case SIOCGIFDSTADDR:
353 if ((ifp->if_flags & IFF_POINTOPOINT) == 0)
354 return (EINVAL);
355 *((struct sockaddr_in *)&ifr->ifr_dstaddr) = ia->ia_dstaddr;
356 break;
357
358 case SIOCGIFNETMASK:
359 *((struct sockaddr_in *)&ifr->ifr_addr) = ia->ia_sockmask;
360 break;
361
362 case SIOCSIFDSTADDR:
363 if ((ifp->if_flags & IFF_POINTOPOINT) == 0)
364 return (EINVAL);
365 oldaddr = ia->ia_dstaddr;
366 ia->ia_dstaddr = *(struct sockaddr_in *)&ifr->ifr_dstaddr;
367 if (ifp->if_ioctl &&
368 (error = (*ifp->if_ioctl)(ifp, SIOCSIFDSTADDR, ia))) {
369 ia->ia_dstaddr = oldaddr;
370 return (error);
371 }
372 if (ia->ia_flags & IFA_ROUTE) {
373 ia->ia_ifa.ifa_dstaddr = (struct sockaddr *)&oldaddr;
374 rtinit(&(ia->ia_ifa), (int)RTM_DELETE, RTF_HOST);
375 ia->ia_ifa.ifa_dstaddr =
376 (struct sockaddr *)&ia->ia_dstaddr;
377 rtinit(&(ia->ia_ifa), (int)RTM_ADD, RTF_HOST|RTF_UP);
378 }
379 break;
380
381 case SIOCSIFBRDADDR:
382 if ((ifp->if_flags & IFF_BROADCAST) == 0)
383 return (EINVAL);
384 ia->ia_broadaddr = *(struct sockaddr_in *)&ifr->ifr_broadaddr;
385 break;
386
387 case SIOCSIFADDR:
388 return (in_ifinit(ifp, ia,
389 (struct sockaddr_in *) &ifr->ifr_addr, 1));
390
391 case SIOCSIFNETMASK:
392 i = ifra->ifra_addr.sin_addr.s_addr;
393 ia->ia_subnetmask = ntohl(ia->ia_sockmask.sin_addr.s_addr = i);
394 break;
395
396 case SIOCAIFADDR:
397 maskIsNew = 0;
398 hostIsNew = 1;
399 error = 0;
400 if (ia->ia_addr.sin_family == AF_INET) {
401 if (ifra->ifra_addr.sin_len == 0) {
402 ifra->ifra_addr = ia->ia_addr;
403 hostIsNew = 0;
404 } else if (ifra->ifra_addr.sin_addr.s_addr ==
405 ia->ia_addr.sin_addr.s_addr)
406 hostIsNew = 0;
407 }
408 if (ifra->ifra_mask.sin_len) {
409 in_ifscrub(ifp, ia);
410 ia->ia_sockmask = ifra->ifra_mask;
411 ia->ia_subnetmask =
412 ntohl(ia->ia_sockmask.sin_addr.s_addr);
413 maskIsNew = 1;
414 }
415 if ((ifp->if_flags & IFF_POINTOPOINT) &&
416 (ifra->ifra_dstaddr.sin_family == AF_INET)) {
417 in_ifscrub(ifp, ia);
418 ia->ia_dstaddr = ifra->ifra_dstaddr;
419 maskIsNew = 1; /* We lie; but the effect's the same */
420 }
421 if (ifra->ifra_addr.sin_family == AF_INET &&
422 (hostIsNew || maskIsNew))
423 error = in_ifinit(ifp, ia, &ifra->ifra_addr, 0);
424 if ((ifp->if_flags & IFF_BROADCAST) &&
425 (ifra->ifra_broadaddr.sin_family == AF_INET))
426 ia->ia_broadaddr = ifra->ifra_broadaddr;
427 return (error);
428
429 case SIOCDIFADDR:
430 in_ifscrub(ifp, ia);
431 if ((ifa = ifp->if_addrlist) == (struct ifaddr *)ia)
432 ifp->if_addrlist = ifa->ifa_next;
433 else {
434 while (ifa->ifa_next &&
435 (ifa->ifa_next != (struct ifaddr *)ia))
436 ifa = ifa->ifa_next;
437 if (ifa->ifa_next)
438 ifa->ifa_next = ((struct ifaddr *)ia)->ifa_next;
439 else
440 printf("Couldn't unlink inifaddr from ifp\n");
441 }
442 oia = ia;
443 if (oia == (ia = in_ifaddr))
444 in_ifaddr = ia->ia_next;
445 else {
446 while (ia->ia_next && (ia->ia_next != oia))
447 ia = ia->ia_next;
448 if (ia->ia_next)
449 ia->ia_next = oia->ia_next;
450 else
451 printf("Didn't unlink inifadr from list\n");
452 }
453 (void) m_free(dtom(oia));
454 break;
455
456 default:
457 if (ifp == 0 || ifp->if_ioctl == 0)
458 return (EOPNOTSUPP);
459 return ((*ifp->if_ioctl)(ifp, cmd, data));
460 }
461 return (0);
462 }
463
464 /*
465 * Delete any existing route for an interface.
466 */
467 in_ifscrub(ifp, ia)
468 register struct ifnet *ifp;
469 register struct in_ifaddr *ia;
470 {
471
472 if ((ia->ia_flags & IFA_ROUTE) == 0)
473 return;
474 if (ifp->if_flags & (IFF_LOOPBACK|IFF_POINTOPOINT))
475 rtinit(&(ia->ia_ifa), (int)RTM_DELETE, RTF_HOST);
476 else
477 rtinit(&(ia->ia_ifa), (int)RTM_DELETE, 0);
478 ia->ia_flags &= ~IFA_ROUTE;
479 }
480
481 /*
482 * Initialize an interface's internet address
483 * and routing table entry.
484 */
485 in_ifinit(ifp, ia, sin, scrub)
486 register struct ifnet *ifp;
487 register struct in_ifaddr *ia;
488 struct sockaddr_in *sin;
489 {
490 register u_long i = ntohl(sin->sin_addr.s_addr);
491 struct sockaddr_in oldaddr;
492 int s = splimp(), error, flags = RTF_UP;
493
494 oldaddr = ia->ia_addr;
495 ia->ia_addr = *sin;
496 /*
497 * Give the interface a chance to initialize
498 * if this is its first address,
499 * and to validate the address if necessary.
500 */
501 if (ifp->if_ioctl && (error = (*ifp->if_ioctl)(ifp, SIOCSIFADDR, ia))) {
502 splx(s);
503 ia->ia_addr = oldaddr;
504 return (error);
505 }
506 splx(s);
507 if (scrub) {
508 ia->ia_ifa.ifa_addr = (struct sockaddr *)&oldaddr;
509 in_ifscrub(ifp, ia);
510 ia->ia_ifa.ifa_addr = (struct sockaddr *)&ia->ia_addr;
511 }
512 if (IN_CLASSA(i))
513 ia->ia_netmask = IN_CLASSA_NET;
514 else if (IN_CLASSB(i))
515 ia->ia_netmask = IN_CLASSB_NET;
516 else
517 ia->ia_netmask = IN_CLASSC_NET;
518 ia->ia_net = i & ia->ia_netmask;
519 /*
520 * The subnet mask includes at least the standard network part,
521 * but may already have been set to a larger value.
522 */
523 ia->ia_subnetmask |= ia->ia_netmask;
524 ia->ia_subnet = i & ia->ia_subnetmask;
525 ia->ia_sockmask.sin_addr.s_addr = htonl(ia->ia_subnetmask);
526 {
527 register char *cp = (char *) (1 + &(ia->ia_sockmask.sin_addr));
528 register char *cpbase = (char *) &(ia->ia_sockmask.sin_addr);
529 while (--cp >= cpbase)
530 if (*cp) {
531 ia->ia_sockmask.sin_len =
532 1 + cp - (char *) &(ia->ia_sockmask);
533 break;
534 }
535 }
536 /*
537 * Add route for the network.
538 */
539 if (ifp->if_flags & IFF_BROADCAST) {
540 ia->ia_broadaddr.sin_addr =
541 in_makeaddr(ia->ia_subnet, INADDR_BROADCAST);
542 ia->ia_netbroadcast.s_addr =
543 htonl(ia->ia_net | (INADDR_BROADCAST &~ ia->ia_netmask));
544 } else if (ifp->if_flags & IFF_LOOPBACK) {
545 ia->ia_ifa.ifa_dstaddr = ia->ia_ifa.ifa_addr;
546 flags |= RTF_HOST;
547 } else if (ifp->if_flags & IFF_POINTOPOINT) {
548 if (ia->ia_dstaddr.sin_family != AF_INET)
549 return (0);
550 flags |= RTF_HOST;
551 }
552 if ((error = rtinit(&(ia->ia_ifa), (int)RTM_ADD, flags)) == 0)
553 ia->ia_flags |= IFA_ROUTE;
554 return (error);
555 }
556
557 /*
558 * Return address info for specified internet network.
559 */
560 struct in_ifaddr *
561 in_iaonnetof(net)
562 u_long net;
563 {
564 register struct in_ifaddr *ia;
565
566 for (ia = in_ifaddr; ia; ia = ia->ia_next)
567 if (ia->ia_subnet == net)
568 return (ia);
569 return ((struct in_ifaddr *)0);
570 }
571
572 /*
573 * Return 1 if the address might be a local broadcast address.
574 */
575 in_broadcast(in)
576 struct in_addr in;
577 {
578 register struct in_ifaddr *ia;
579 u_long t;
580
581 /*
582 * Look through the list of addresses for a match
583 * with a broadcast address.
584 */
585 for (ia = in_ifaddr; ia; ia = ia->ia_next)
586 if (ia->ia_ifp->if_flags & IFF_BROADCAST) {
587 if (ia->ia_broadaddr.sin_addr.s_addr == in.s_addr)
588 return (1);
589 /*
590 * Check for old-style (host 0) broadcast.
591 */
592 if ((t = ntohl(in.s_addr)) == ia->ia_subnet || t == ia->ia_net)
593 return (1);
594 }
595 if (in.s_addr == INADDR_BROADCAST || in.s_addr == INADDR_ANY)
596 return (1);
597 return (0);
598 }
599 #endif
600