in.c revision 1.97 1 /* $NetBSD: in.c,v 1.97 2004/07/07 01:39:00 mycroft Exp $ */
2
3 /*
4 * Copyright (C) 1995, 1996, 1997, and 1998 WIDE Project.
5 * All rights reserved.
6 *
7 * Redistribution and use in source and binary forms, with or without
8 * modification, are permitted provided that the following conditions
9 * are met:
10 * 1. Redistributions of source code must retain the above copyright
11 * notice, this list of conditions and the following disclaimer.
12 * 2. Redistributions in binary form must reproduce the above copyright
13 * notice, this list of conditions and the following disclaimer in the
14 * documentation and/or other materials provided with the distribution.
15 * 3. Neither the name of the project nor the names of its contributors
16 * may be used to endorse or promote products derived from this software
17 * without specific prior written permission.
18 *
19 * THIS SOFTWARE IS PROVIDED BY THE PROJECT AND CONTRIBUTORS ``AS IS'' AND
20 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
21 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
22 * ARE DISCLAIMED. IN NO EVENT SHALL THE PROJECT OR CONTRIBUTORS BE LIABLE
23 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
24 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
25 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
26 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
27 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
28 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
29 * SUCH DAMAGE.
30 */
31
32 /*-
33 * Copyright (c) 1998 The NetBSD Foundation, Inc.
34 * All rights reserved.
35 *
36 * This code is derived from software contributed to The NetBSD Foundation
37 * by Public Access Networks Corporation ("Panix"). It was developed under
38 * contract to Panix by Eric Haszlakiewicz and Thor Lancelot Simon.
39 *
40 * Redistribution and use in source and binary forms, with or without
41 * modification, are permitted provided that the following conditions
42 * are met:
43 * 1. Redistributions of source code must retain the above copyright
44 * notice, this list of conditions and the following disclaimer.
45 * 2. Redistributions in binary form must reproduce the above copyright
46 * notice, this list of conditions and the following disclaimer in the
47 * documentation and/or other materials provided with the distribution.
48 * 3. All advertising materials mentioning features or use of this software
49 * must display the following acknowledgement:
50 * This product includes software developed by the NetBSD
51 * Foundation, Inc. and its contributors.
52 * 4. Neither the name of The NetBSD Foundation nor the names of its
53 * contributors may be used to endorse or promote products derived
54 * from this software without specific prior written permission.
55 *
56 * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
57 * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
58 * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
59 * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
60 * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
61 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
62 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
63 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
64 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
65 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
66 * POSSIBILITY OF SUCH DAMAGE.
67 */
68
69 /*
70 * Copyright (c) 1982, 1986, 1991, 1993
71 * The Regents of the University of California. All rights reserved.
72 *
73 * Redistribution and use in source and binary forms, with or without
74 * modification, are permitted provided that the following conditions
75 * are met:
76 * 1. Redistributions of source code must retain the above copyright
77 * notice, this list of conditions and the following disclaimer.
78 * 2. Redistributions in binary form must reproduce the above copyright
79 * notice, this list of conditions and the following disclaimer in the
80 * documentation and/or other materials provided with the distribution.
81 * 3. Neither the name of the University nor the names of its contributors
82 * may be used to endorse or promote products derived from this software
83 * without specific prior written permission.
84 *
85 * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
86 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
87 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
88 * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
89 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
90 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
91 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
92 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
93 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
94 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
95 * SUCH DAMAGE.
96 *
97 * @(#)in.c 8.4 (Berkeley) 1/9/95
98 */
99
100 #include <sys/cdefs.h>
101 __KERNEL_RCSID(0, "$NetBSD: in.c,v 1.97 2004/07/07 01:39:00 mycroft Exp $");
102
103 #include "opt_inet.h"
104 #include "opt_inet_conf.h"
105 #include "opt_mrouting.h"
106 #include "opt_pfil_hooks.h"
107
108 #include <sys/param.h>
109 #include <sys/ioctl.h>
110 #include <sys/errno.h>
111 #include <sys/malloc.h>
112 #include <sys/socket.h>
113 #include <sys/socketvar.h>
114 #include <sys/systm.h>
115 #include <sys/proc.h>
116 #include <sys/syslog.h>
117
118 #include <net/if.h>
119 #include <net/route.h>
120
121 #include <net/if_ether.h>
122
123 #include <netinet/in_systm.h>
124 #include <netinet/in.h>
125 #include <netinet/in_var.h>
126 #include <netinet/ip.h>
127 #include <netinet/ip_var.h>
128 #include <netinet/in_pcb.h>
129 #include <netinet/if_inarp.h>
130 #include <netinet/ip_mroute.h>
131 #include <netinet/igmp_var.h>
132
133 #ifdef PFIL_HOOKS
134 #include <net/pfil.h>
135 #endif
136
137 #ifdef INET
138 static u_int in_mask2len __P((struct in_addr *));
139 static void in_len2mask __P((struct in_addr *, u_int));
140 static int in_lifaddr_ioctl __P((struct socket *, u_long, caddr_t,
141 struct ifnet *, struct proc *));
142
143 static int in_addprefix __P((struct in_ifaddr *, int));
144 static int in_scrubprefix __P((struct in_ifaddr *));
145
146 #ifndef SUBNETSARELOCAL
147 #define SUBNETSARELOCAL 1
148 #endif
149
150 #ifndef HOSTZEROBROADCAST
151 #define HOSTZEROBROADCAST 1
152 #endif
153
154 int subnetsarelocal = SUBNETSARELOCAL;
155 int hostzeroisbroadcast = HOSTZEROBROADCAST;
156
157 /*
158 * This list is used to keep track of in_multi chains which belong to
159 * deleted interface addresses. We use in_ifaddr so that a chain head
160 * won't be deallocated until all multicast address record are deleted.
161 */
162 static TAILQ_HEAD(, in_ifaddr) in_mk = TAILQ_HEAD_INITIALIZER(in_mk);
163
164 /*
165 * Return 1 if an internet address is for a ``local'' host
166 * (one to which we have a connection). If subnetsarelocal
167 * is true, this includes other subnets of the local net.
168 * Otherwise, it includes only the directly-connected (sub)nets.
169 */
170 int
171 in_localaddr(in)
172 struct in_addr in;
173 {
174 struct in_ifaddr *ia;
175
176 if (subnetsarelocal) {
177 TAILQ_FOREACH(ia, &in_ifaddrhead, ia_list)
178 if ((in.s_addr & ia->ia_netmask) == ia->ia_net)
179 return (1);
180 } else {
181 TAILQ_FOREACH(ia, &in_ifaddrhead, ia_list)
182 if ((in.s_addr & ia->ia_subnetmask) == ia->ia_subnet)
183 return (1);
184 }
185 return (0);
186 }
187
188 /*
189 * Determine whether an IP address is in a reserved set of addresses
190 * that may not be forwarded, or whether datagrams to that destination
191 * may be forwarded.
192 */
193 int
194 in_canforward(in)
195 struct in_addr in;
196 {
197 u_int32_t net;
198
199 if (IN_EXPERIMENTAL(in.s_addr) || IN_MULTICAST(in.s_addr))
200 return (0);
201 if (IN_CLASSA(in.s_addr)) {
202 net = in.s_addr & IN_CLASSA_NET;
203 if (net == 0 || net == htonl(IN_LOOPBACKNET << IN_CLASSA_NSHIFT))
204 return (0);
205 }
206 return (1);
207 }
208
209 /*
210 * Trim a mask in a sockaddr
211 */
212 void
213 in_socktrim(ap)
214 struct sockaddr_in *ap;
215 {
216 char *cplim = (char *) &ap->sin_addr;
217 char *cp = (char *) (&ap->sin_addr + 1);
218
219 ap->sin_len = 0;
220 while (--cp >= cplim)
221 if (*cp) {
222 (ap)->sin_len = cp - (char *) (ap) + 1;
223 break;
224 }
225 }
226
227 /*
228 * Routine to take an Internet address and convert into a
229 * "dotted quad" representation for printing.
230 */
231 const char *
232 in_fmtaddr(addr)
233 struct in_addr addr;
234 {
235 static char buf[sizeof("123.456.789.123")];
236
237 addr.s_addr = ntohl(addr.s_addr);
238
239 snprintf(buf, sizeof(buf), "%d.%d.%d.%d",
240 (addr.s_addr >> 24) & 0xFF,
241 (addr.s_addr >> 16) & 0xFF,
242 (addr.s_addr >> 8) & 0xFF,
243 (addr.s_addr >> 0) & 0xFF);
244 return buf;
245 }
246
247 /*
248 * Maintain the "in_maxmtu" variable, which is the largest
249 * mtu for non-local interfaces with AF_INET addresses assigned
250 * to them that are up.
251 */
252 unsigned long in_maxmtu;
253
254 void
255 in_setmaxmtu()
256 {
257 struct in_ifaddr *ia;
258 struct ifnet *ifp;
259 unsigned long maxmtu = 0;
260
261 TAILQ_FOREACH(ia, &in_ifaddrhead, ia_list) {
262 if ((ifp = ia->ia_ifp) == 0)
263 continue;
264 if ((ifp->if_flags & (IFF_UP|IFF_LOOPBACK)) != IFF_UP)
265 continue;
266 if (ifp->if_mtu > maxmtu)
267 maxmtu = ifp->if_mtu;
268 }
269 if (maxmtu)
270 in_maxmtu = maxmtu;
271 }
272
273 static u_int
274 in_mask2len(mask)
275 struct in_addr *mask;
276 {
277 u_int x, y;
278 u_char *p;
279
280 p = (u_char *)mask;
281 for (x = 0; x < sizeof(*mask); x++) {
282 if (p[x] != 0xff)
283 break;
284 }
285 y = 0;
286 if (x < sizeof(*mask)) {
287 for (y = 0; y < 8; y++) {
288 if ((p[x] & (0x80 >> y)) == 0)
289 break;
290 }
291 }
292 return x * 8 + y;
293 }
294
295 static void
296 in_len2mask(mask, len)
297 struct in_addr *mask;
298 u_int len;
299 {
300 u_int i;
301 u_char *p;
302
303 p = (u_char *)mask;
304 bzero(mask, sizeof(*mask));
305 for (i = 0; i < len / 8; i++)
306 p[i] = 0xff;
307 if (len % 8)
308 p[i] = (0xff00 >> (len % 8)) & 0xff;
309 }
310
311 /*
312 * Generic internet control operations (ioctl's).
313 * Ifp is 0 if not an interface-specific ioctl.
314 */
315 /* ARGSUSED */
316 int
317 in_control(so, cmd, data, ifp, p)
318 struct socket *so;
319 u_long cmd;
320 caddr_t data;
321 struct ifnet *ifp;
322 struct proc *p;
323 {
324 struct ifreq *ifr = (struct ifreq *)data;
325 struct in_ifaddr *ia = 0;
326 struct in_aliasreq *ifra = (struct in_aliasreq *)data;
327 struct sockaddr_in oldaddr;
328 int error, hostIsNew, maskIsNew;
329
330 switch (cmd) {
331 case SIOCALIFADDR:
332 case SIOCDLIFADDR:
333 if (p == 0 || (error = suser(p->p_ucred, &p->p_acflag)))
334 return (EPERM);
335 /*fall through*/
336 case SIOCGLIFADDR:
337 if (!ifp)
338 return EINVAL;
339 return in_lifaddr_ioctl(so, cmd, data, ifp, p);
340 }
341
342 /*
343 * Find address for this interface, if it exists.
344 */
345 if (ifp)
346 IFP_TO_IA(ifp, ia);
347
348 switch (cmd) {
349
350 case SIOCAIFADDR:
351 case SIOCDIFADDR:
352 case SIOCGIFALIAS:
353 if (ifra->ifra_addr.sin_family == AF_INET)
354 LIST_FOREACH(ia,
355 &IN_IFADDR_HASH(ifra->ifra_addr.sin_addr.s_addr),
356 ia_hash) {
357 if (ia->ia_ifp == ifp &&
358 in_hosteq(ia->ia_addr.sin_addr,
359 ifra->ifra_addr.sin_addr))
360 break;
361 }
362 if (cmd == SIOCDIFADDR) {
363 if (ia == 0)
364 return (EADDRNOTAVAIL);
365 #if 1 /*def COMPAT_43*/
366 if (ifra->ifra_addr.sin_family == AF_UNSPEC)
367 ifra->ifra_addr.sin_family = AF_INET;
368 #endif
369 }
370 /* FALLTHROUGH */
371 case SIOCSIFADDR:
372 case SIOCSIFDSTADDR:
373 if (ifra->ifra_addr.sin_family != AF_INET)
374 return (EAFNOSUPPORT);
375 /* FALLTHROUGH */
376 case SIOCSIFNETMASK:
377 if (ifp == 0)
378 panic("in_control");
379
380 if (cmd == SIOCGIFALIAS)
381 break;
382
383 if (p == 0 || (error = suser(p->p_ucred, &p->p_acflag)))
384 return (EPERM);
385
386 if (ia == 0) {
387 MALLOC(ia, struct in_ifaddr *, sizeof(*ia),
388 M_IFADDR, M_WAITOK);
389 if (ia == 0)
390 return (ENOBUFS);
391 bzero((caddr_t)ia, sizeof *ia);
392 TAILQ_INSERT_TAIL(&in_ifaddrhead, ia, ia_list);
393 IFAREF(&ia->ia_ifa);
394 TAILQ_INSERT_TAIL(&ifp->if_addrlist, &ia->ia_ifa,
395 ifa_list);
396 IFAREF(&ia->ia_ifa);
397 ia->ia_ifa.ifa_addr = sintosa(&ia->ia_addr);
398 ia->ia_ifa.ifa_dstaddr = sintosa(&ia->ia_dstaddr);
399 ia->ia_ifa.ifa_netmask = sintosa(&ia->ia_sockmask);
400 ia->ia_sockmask.sin_len = 8;
401 if (ifp->if_flags & IFF_BROADCAST) {
402 ia->ia_broadaddr.sin_len = sizeof(ia->ia_addr);
403 ia->ia_broadaddr.sin_family = AF_INET;
404 }
405 ia->ia_ifp = ifp;
406 LIST_INIT(&ia->ia_multiaddrs);
407 }
408 break;
409
410 case SIOCSIFBRDADDR:
411 if (p == 0 || (error = suser(p->p_ucred, &p->p_acflag)))
412 return (EPERM);
413 /* FALLTHROUGH */
414
415 case SIOCGIFADDR:
416 case SIOCGIFNETMASK:
417 case SIOCGIFDSTADDR:
418 case SIOCGIFBRDADDR:
419 if (ia == 0)
420 return (EADDRNOTAVAIL);
421 break;
422 }
423 switch (cmd) {
424
425 case SIOCGIFADDR:
426 *satosin(&ifr->ifr_addr) = ia->ia_addr;
427 break;
428
429 case SIOCGIFBRDADDR:
430 if ((ifp->if_flags & IFF_BROADCAST) == 0)
431 return (EINVAL);
432 *satosin(&ifr->ifr_dstaddr) = ia->ia_broadaddr;
433 break;
434
435 case SIOCGIFDSTADDR:
436 if ((ifp->if_flags & IFF_POINTOPOINT) == 0)
437 return (EINVAL);
438 *satosin(&ifr->ifr_dstaddr) = ia->ia_dstaddr;
439 break;
440
441 case SIOCGIFNETMASK:
442 *satosin(&ifr->ifr_addr) = ia->ia_sockmask;
443 break;
444
445 case SIOCSIFDSTADDR:
446 if ((ifp->if_flags & IFF_POINTOPOINT) == 0)
447 return (EINVAL);
448 oldaddr = ia->ia_dstaddr;
449 ia->ia_dstaddr = *satosin(&ifr->ifr_dstaddr);
450 if (ifp->if_ioctl && (error = (*ifp->if_ioctl)
451 (ifp, SIOCSIFDSTADDR, (caddr_t)ia))) {
452 ia->ia_dstaddr = oldaddr;
453 return (error);
454 }
455 if (ia->ia_flags & IFA_ROUTE) {
456 ia->ia_ifa.ifa_dstaddr = sintosa(&oldaddr);
457 rtinit(&(ia->ia_ifa), (int)RTM_DELETE, RTF_HOST);
458 ia->ia_ifa.ifa_dstaddr = sintosa(&ia->ia_dstaddr);
459 rtinit(&(ia->ia_ifa), (int)RTM_ADD, RTF_HOST|RTF_UP);
460 }
461 break;
462
463 case SIOCSIFBRDADDR:
464 if ((ifp->if_flags & IFF_BROADCAST) == 0)
465 return (EINVAL);
466 ia->ia_broadaddr = *satosin(&ifr->ifr_broadaddr);
467 break;
468
469 case SIOCSIFADDR:
470 error = in_ifinit(ifp, ia, satosin(&ifr->ifr_addr), 1);
471 #ifdef PFIL_HOOK
472 if (!error)
473 (void)pfil_run_hooks(&if_pfil,
474 (struct mbuf **)SIOCSIFADDR, ifp, PFIL_IFADDR);
475 #endif
476 return error;
477
478 case SIOCSIFNETMASK:
479 in_ifscrub(ifp, ia);
480 ia->ia_sockmask = *satosin(&ifr->ifr_addr);
481 ia->ia_subnetmask = ia->ia_sockmask.sin_addr.s_addr;
482 error = in_ifinit(ifp, ia, NULL, 0);
483 return (error);
484
485 case SIOCAIFADDR:
486 maskIsNew = 0;
487 hostIsNew = 1;
488 error = 0;
489 if (ia->ia_addr.sin_family == AF_INET) {
490 if (ifra->ifra_addr.sin_len == 0) {
491 ifra->ifra_addr = ia->ia_addr;
492 hostIsNew = 0;
493 } else if (in_hosteq(ia->ia_addr.sin_addr, ifra->ifra_addr.sin_addr))
494 hostIsNew = 0;
495 }
496 if (ifra->ifra_mask.sin_len) {
497 in_ifscrub(ifp, ia);
498 ia->ia_sockmask = ifra->ifra_mask;
499 ia->ia_subnetmask = ia->ia_sockmask.sin_addr.s_addr;
500 maskIsNew = 1;
501 }
502 if ((ifp->if_flags & IFF_POINTOPOINT) &&
503 (ifra->ifra_dstaddr.sin_family == AF_INET)) {
504 in_ifscrub(ifp, ia);
505 ia->ia_dstaddr = ifra->ifra_dstaddr;
506 maskIsNew = 1; /* We lie; but the effect's the same */
507 }
508 if (ifra->ifra_addr.sin_family == AF_INET &&
509 (hostIsNew || maskIsNew)) {
510 error = in_ifinit(ifp, ia, &ifra->ifra_addr, 0);
511 }
512 if ((ifp->if_flags & IFF_BROADCAST) &&
513 (ifra->ifra_broadaddr.sin_family == AF_INET))
514 ia->ia_broadaddr = ifra->ifra_broadaddr;
515 return (error);
516
517 case SIOCGIFALIAS:
518 ifra->ifra_mask = ia->ia_sockmask;
519 if ((ifp->if_flags & IFF_POINTOPOINT) &&
520 (ia->ia_dstaddr.sin_family == AF_INET))
521 ifra->ifra_dstaddr = ia->ia_dstaddr;
522 else if ((ifp->if_flags & IFF_BROADCAST) &&
523 (ia->ia_broadaddr.sin_family == AF_INET))
524 ifra->ifra_broadaddr = ia->ia_broadaddr;
525 else
526 bzero(&ifra->ifra_broadaddr,
527 sizeof(ifra->ifra_broadaddr));
528 #ifdef PFIL_HOOK
529 (void)pfil_run_hooks(&if_pfil,
530 (struct mbuf **)SIOCGIFALIAS, ifp, PFIL_IFADDR);
531 #endif
532 return 0;
533
534 case SIOCDIFADDR:
535 in_purgeaddr(&ia->ia_ifa, ifp);
536 #ifdef PFIL_HOOK
537 (void)pfil_run_hooks(&if_pfil, (struct mbuf **)SIOCDIFADDR,
538 ifp, PFIL_IFADDR);
539 #endif
540 break;
541
542 #ifdef MROUTING
543 case SIOCGETVIFCNT:
544 case SIOCGETSGCNT:
545 return (mrt_ioctl(so, cmd, data));
546 #endif /* MROUTING */
547
548 default:
549 if (ifp == 0 || ifp->if_ioctl == 0)
550 return (EOPNOTSUPP);
551 error = (*ifp->if_ioctl)(ifp, cmd, data);
552 in_setmaxmtu();
553 return (error);
554 }
555 return (0);
556 }
557
558 void
559 in_purgeaddr(ifa, ifp)
560 struct ifaddr *ifa;
561 struct ifnet *ifp;
562 {
563 struct in_ifaddr *ia = (void *) ifa;
564
565 in_ifscrub(ifp, ia);
566 LIST_REMOVE(ia, ia_hash);
567 TAILQ_REMOVE(&ifp->if_addrlist, &ia->ia_ifa, ifa_list);
568 IFAFREE(&ia->ia_ifa);
569 TAILQ_REMOVE(&in_ifaddrhead, ia, ia_list);
570 if (ia->ia_allhosts != NULL)
571 in_delmulti(ia->ia_allhosts);
572 IFAFREE(&ia->ia_ifa);
573 in_setmaxmtu();
574 }
575
576 void
577 in_purgeif(ifp)
578 struct ifnet *ifp;
579 {
580 struct ifaddr *ifa, *nifa;
581
582 for (ifa = TAILQ_FIRST(&ifp->if_addrlist); ifa != NULL; ifa = nifa) {
583 nifa = TAILQ_NEXT(ifa, ifa_list);
584 if (ifa->ifa_addr->sa_family != AF_INET)
585 continue;
586 in_purgeaddr(ifa, ifp);
587 }
588
589 igmp_purgeif(ifp);
590 #ifdef MROUTING
591 ip_mrouter_detach(ifp);
592 #endif
593 }
594
595 /*
596 * SIOC[GAD]LIFADDR.
597 * SIOCGLIFADDR: get first address. (???)
598 * SIOCGLIFADDR with IFLR_PREFIX:
599 * get first address that matches the specified prefix.
600 * SIOCALIFADDR: add the specified address.
601 * SIOCALIFADDR with IFLR_PREFIX:
602 * EINVAL since we can't deduce hostid part of the address.
603 * SIOCDLIFADDR: delete the specified address.
604 * SIOCDLIFADDR with IFLR_PREFIX:
605 * delete the first address that matches the specified prefix.
606 * return values:
607 * EINVAL on invalid parameters
608 * EADDRNOTAVAIL on prefix match failed/specified address not found
609 * other values may be returned from in_ioctl()
610 */
611 static int
612 in_lifaddr_ioctl(so, cmd, data, ifp, p)
613 struct socket *so;
614 u_long cmd;
615 caddr_t data;
616 struct ifnet *ifp;
617 struct proc *p;
618 {
619 struct if_laddrreq *iflr = (struct if_laddrreq *)data;
620 struct ifaddr *ifa;
621 struct sockaddr *sa;
622
623 /* sanity checks */
624 if (!data || !ifp) {
625 panic("invalid argument to in_lifaddr_ioctl");
626 /*NOTRECHED*/
627 }
628
629 switch (cmd) {
630 case SIOCGLIFADDR:
631 /* address must be specified on GET with IFLR_PREFIX */
632 if ((iflr->flags & IFLR_PREFIX) == 0)
633 break;
634 /*FALLTHROUGH*/
635 case SIOCALIFADDR:
636 case SIOCDLIFADDR:
637 /* address must be specified on ADD and DELETE */
638 sa = (struct sockaddr *)&iflr->addr;
639 if (sa->sa_family != AF_INET)
640 return EINVAL;
641 if (sa->sa_len != sizeof(struct sockaddr_in))
642 return EINVAL;
643 /* XXX need improvement */
644 sa = (struct sockaddr *)&iflr->dstaddr;
645 if (sa->sa_family
646 && sa->sa_family != AF_INET)
647 return EINVAL;
648 if (sa->sa_len && sa->sa_len != sizeof(struct sockaddr_in))
649 return EINVAL;
650 break;
651 default: /*shouldn't happen*/
652 #if 0
653 panic("invalid cmd to in_lifaddr_ioctl");
654 /*NOTREACHED*/
655 #else
656 return EOPNOTSUPP;
657 #endif
658 }
659 if (sizeof(struct in_addr) * 8 < iflr->prefixlen)
660 return EINVAL;
661
662 switch (cmd) {
663 case SIOCALIFADDR:
664 {
665 struct in_aliasreq ifra;
666
667 if (iflr->flags & IFLR_PREFIX)
668 return EINVAL;
669
670 /* copy args to in_aliasreq, perform ioctl(SIOCAIFADDR_IN). */
671 bzero(&ifra, sizeof(ifra));
672 bcopy(iflr->iflr_name, ifra.ifra_name,
673 sizeof(ifra.ifra_name));
674
675 bcopy(&iflr->addr, &ifra.ifra_addr,
676 ((struct sockaddr *)&iflr->addr)->sa_len);
677
678 if (((struct sockaddr *)&iflr->dstaddr)->sa_family) { /*XXX*/
679 bcopy(&iflr->dstaddr, &ifra.ifra_dstaddr,
680 ((struct sockaddr *)&iflr->dstaddr)->sa_len);
681 }
682
683 ifra.ifra_mask.sin_family = AF_INET;
684 ifra.ifra_mask.sin_len = sizeof(struct sockaddr_in);
685 in_len2mask(&ifra.ifra_mask.sin_addr, iflr->prefixlen);
686
687 return in_control(so, SIOCAIFADDR, (caddr_t)&ifra, ifp, p);
688 }
689 case SIOCGLIFADDR:
690 case SIOCDLIFADDR:
691 {
692 struct in_ifaddr *ia;
693 struct in_addr mask, candidate, match;
694 struct sockaddr_in *sin;
695 int cmp;
696
697 bzero(&mask, sizeof(mask));
698 if (iflr->flags & IFLR_PREFIX) {
699 /* lookup a prefix rather than address. */
700 in_len2mask(&mask, iflr->prefixlen);
701
702 sin = (struct sockaddr_in *)&iflr->addr;
703 match.s_addr = sin->sin_addr.s_addr;
704 match.s_addr &= mask.s_addr;
705
706 /* if you set extra bits, that's wrong */
707 if (match.s_addr != sin->sin_addr.s_addr)
708 return EINVAL;
709
710 cmp = 1;
711 } else {
712 if (cmd == SIOCGLIFADDR) {
713 /* on getting an address, take the 1st match */
714 cmp = 0; /*XXX*/
715 } else {
716 /* on deleting an address, do exact match */
717 in_len2mask(&mask, 32);
718 sin = (struct sockaddr_in *)&iflr->addr;
719 match.s_addr = sin->sin_addr.s_addr;
720
721 cmp = 1;
722 }
723 }
724
725 TAILQ_FOREACH(ifa, &ifp->if_addrlist, ifa_list) {
726 if (ifa->ifa_addr->sa_family != AF_INET)
727 continue;
728 if (!cmp)
729 break;
730 candidate.s_addr = ((struct sockaddr_in *)&ifa->ifa_addr)->sin_addr.s_addr;
731 candidate.s_addr &= mask.s_addr;
732 if (candidate.s_addr == match.s_addr)
733 break;
734 }
735 if (!ifa)
736 return EADDRNOTAVAIL;
737 ia = (struct in_ifaddr *)ifa;
738
739 if (cmd == SIOCGLIFADDR) {
740 /* fill in the if_laddrreq structure */
741 bcopy(&ia->ia_addr, &iflr->addr, ia->ia_addr.sin_len);
742
743 if ((ifp->if_flags & IFF_POINTOPOINT) != 0) {
744 bcopy(&ia->ia_dstaddr, &iflr->dstaddr,
745 ia->ia_dstaddr.sin_len);
746 } else
747 bzero(&iflr->dstaddr, sizeof(iflr->dstaddr));
748
749 iflr->prefixlen =
750 in_mask2len(&ia->ia_sockmask.sin_addr);
751
752 iflr->flags = 0; /*XXX*/
753
754 return 0;
755 } else {
756 struct in_aliasreq ifra;
757
758 /* fill in_aliasreq and do ioctl(SIOCDIFADDR_IN) */
759 bzero(&ifra, sizeof(ifra));
760 bcopy(iflr->iflr_name, ifra.ifra_name,
761 sizeof(ifra.ifra_name));
762
763 bcopy(&ia->ia_addr, &ifra.ifra_addr,
764 ia->ia_addr.sin_len);
765 if ((ifp->if_flags & IFF_POINTOPOINT) != 0) {
766 bcopy(&ia->ia_dstaddr, &ifra.ifra_dstaddr,
767 ia->ia_dstaddr.sin_len);
768 }
769 bcopy(&ia->ia_sockmask, &ifra.ifra_dstaddr,
770 ia->ia_sockmask.sin_len);
771
772 return in_control(so, SIOCDIFADDR, (caddr_t)&ifra,
773 ifp, p);
774 }
775 }
776 }
777
778 return EOPNOTSUPP; /*just for safety*/
779 }
780
781 /*
782 * Delete any existing route for an interface.
783 */
784 void
785 in_ifscrub(ifp, ia)
786 struct ifnet *ifp;
787 struct in_ifaddr *ia;
788 {
789
790 in_scrubprefix(ia);
791 }
792
793 /*
794 * Initialize an interface's internet address
795 * and routing table entry.
796 */
797 int
798 in_ifinit(ifp, ia, sin, scrub)
799 struct ifnet *ifp;
800 struct in_ifaddr *ia;
801 struct sockaddr_in *sin;
802 int scrub;
803 {
804 u_int32_t i;
805 struct sockaddr_in oldaddr;
806 int s = splnet(), flags = RTF_UP, error;
807
808 if (!sin)
809 sin = &ia->ia_addr;
810
811 /*
812 * Set up new addresses.
813 */
814 oldaddr = ia->ia_addr;
815 if (ia->ia_addr.sin_family == AF_INET)
816 LIST_REMOVE(ia, ia_hash);
817 ia->ia_addr = *sin;
818 LIST_INSERT_HEAD(&IN_IFADDR_HASH(ia->ia_addr.sin_addr.s_addr), ia, ia_hash);
819
820 /*
821 * Give the interface a chance to initialize
822 * if this is its first address,
823 * and to validate the address if necessary.
824 */
825 if (ifp->if_ioctl &&
826 (error = (*ifp->if_ioctl)(ifp, SIOCSIFADDR, (caddr_t)ia)))
827 goto bad;
828 splx(s);
829 if (scrub) {
830 ia->ia_ifa.ifa_addr = sintosa(&oldaddr);
831 in_ifscrub(ifp, ia);
832 ia->ia_ifa.ifa_addr = sintosa(&ia->ia_addr);
833 }
834
835 i = ia->ia_addr.sin_addr.s_addr;
836 if (IN_CLASSA(i))
837 ia->ia_netmask = IN_CLASSA_NET;
838 else if (IN_CLASSB(i))
839 ia->ia_netmask = IN_CLASSB_NET;
840 else
841 ia->ia_netmask = IN_CLASSC_NET;
842 /*
843 * The subnet mask usually includes at least the standard network part,
844 * but may may be smaller in the case of supernetting.
845 * If it is set, we believe it.
846 */
847 if (ia->ia_subnetmask == 0) {
848 ia->ia_subnetmask = ia->ia_netmask;
849 ia->ia_sockmask.sin_addr.s_addr = ia->ia_subnetmask;
850 } else
851 ia->ia_netmask &= ia->ia_subnetmask;
852
853 ia->ia_net = i & ia->ia_netmask;
854 ia->ia_subnet = i & ia->ia_subnetmask;
855 in_socktrim(&ia->ia_sockmask);
856 /* re-calculate the "in_maxmtu" value */
857 in_setmaxmtu();
858 /*
859 * Add route for the network.
860 */
861 ia->ia_ifa.ifa_metric = ifp->if_metric;
862 if (ifp->if_flags & IFF_BROADCAST) {
863 ia->ia_broadaddr.sin_addr.s_addr =
864 ia->ia_subnet | ~ia->ia_subnetmask;
865 ia->ia_netbroadcast.s_addr =
866 ia->ia_net | ~ia->ia_netmask;
867 } else if (ifp->if_flags & IFF_LOOPBACK) {
868 ia->ia_dstaddr = ia->ia_addr;
869 flags |= RTF_HOST;
870 } else if (ifp->if_flags & IFF_POINTOPOINT) {
871 if (ia->ia_dstaddr.sin_family != AF_INET)
872 return (0);
873 flags |= RTF_HOST;
874 }
875 error = in_addprefix(ia, flags);
876 /*
877 * If the interface supports multicast, join the "all hosts"
878 * multicast group on that interface.
879 */
880 if ((ifp->if_flags & IFF_MULTICAST) != 0 && ia->ia_allhosts == NULL) {
881 struct in_addr addr;
882
883 addr.s_addr = INADDR_ALLHOSTS_GROUP;
884 ia->ia_allhosts = in_addmulti(&addr, ifp);
885 }
886 return (error);
887 bad:
888 splx(s);
889 LIST_REMOVE(ia, ia_hash);
890 ia->ia_addr = oldaddr;
891 if (ia->ia_addr.sin_family == AF_INET)
892 LIST_INSERT_HEAD(&IN_IFADDR_HASH(ia->ia_addr.sin_addr.s_addr),
893 ia, ia_hash);
894 return (error);
895 }
896
897 #define rtinitflags(x) \
898 ((((x)->ia_ifp->if_flags & (IFF_LOOPBACK | IFF_POINTOPOINT)) != 0) \
899 ? RTF_HOST : 0)
900
901 /*
902 * add a route to prefix ("connected route" in cisco terminology).
903 * does nothing if there's some interface address with the same prefix already.
904 */
905 static int
906 in_addprefix(target, flags)
907 struct in_ifaddr *target;
908 int flags;
909 {
910 struct in_ifaddr *ia;
911 struct in_addr prefix, mask, p;
912 int error;
913
914 if ((flags & RTF_HOST) != 0)
915 prefix = target->ia_dstaddr.sin_addr;
916 else {
917 prefix = target->ia_addr.sin_addr;
918 mask = target->ia_sockmask.sin_addr;
919 prefix.s_addr &= mask.s_addr;
920 }
921
922 TAILQ_FOREACH(ia, &in_ifaddrhead, ia_list) {
923 if (rtinitflags(ia))
924 p = ia->ia_dstaddr.sin_addr;
925 else {
926 p = ia->ia_addr.sin_addr;
927 p.s_addr &= ia->ia_sockmask.sin_addr.s_addr;
928 }
929
930 if (prefix.s_addr != p.s_addr)
931 continue;
932
933 /*
934 * if we got a matching prefix route inserted by other
935 * interface address, we don't need to bother
936 */
937 if (ia->ia_flags & IFA_ROUTE)
938 return 0;
939 }
940
941 /*
942 * noone seem to have prefix route. insert it.
943 */
944 error = rtinit(&target->ia_ifa, (int)RTM_ADD, flags);
945 if (!error)
946 target->ia_flags |= IFA_ROUTE;
947 return error;
948 }
949
950 /*
951 * remove a route to prefix ("connected route" in cisco terminology).
952 * re-installs the route by using another interface address, if there's one
953 * with the same prefix (otherwise we lose the route mistakenly).
954 */
955 static int
956 in_scrubprefix(target)
957 struct in_ifaddr *target;
958 {
959 struct in_ifaddr *ia;
960 struct in_addr prefix, mask, p;
961 int error;
962
963 if ((target->ia_flags & IFA_ROUTE) == 0)
964 return 0;
965
966 if (rtinitflags(target))
967 prefix = target->ia_dstaddr.sin_addr;
968 else {
969 prefix = target->ia_addr.sin_addr;
970 mask = target->ia_sockmask.sin_addr;
971 prefix.s_addr &= mask.s_addr;
972 }
973
974 TAILQ_FOREACH(ia, &in_ifaddrhead, ia_list) {
975 if (rtinitflags(ia))
976 p = ia->ia_dstaddr.sin_addr;
977 else {
978 p = ia->ia_addr.sin_addr;
979 p.s_addr &= ia->ia_sockmask.sin_addr.s_addr;
980 }
981
982 if (prefix.s_addr != p.s_addr)
983 continue;
984
985 /*
986 * if we got a matching prefix route, move IFA_ROUTE to him
987 */
988 if ((ia->ia_flags & IFA_ROUTE) == 0) {
989 rtinit(&(target->ia_ifa), (int)RTM_DELETE,
990 rtinitflags(target));
991 target->ia_flags &= ~IFA_ROUTE;
992
993 error = rtinit(&ia->ia_ifa, (int)RTM_ADD,
994 rtinitflags(ia) | RTF_UP);
995 if (error == 0)
996 ia->ia_flags |= IFA_ROUTE;
997 return error;
998 }
999 }
1000
1001 /*
1002 * noone seem to have prefix route. remove it.
1003 */
1004 rtinit(&(target->ia_ifa), (int)RTM_DELETE, rtinitflags(target));
1005 target->ia_flags &= ~IFA_ROUTE;
1006 return 0;
1007 }
1008
1009 #undef rtinitflags
1010
1011 /*
1012 * Return 1 if the address might be a local broadcast address.
1013 */
1014 int
1015 in_broadcast(in, ifp)
1016 struct in_addr in;
1017 struct ifnet *ifp;
1018 {
1019 struct ifaddr *ifa;
1020
1021 if (in.s_addr == INADDR_BROADCAST ||
1022 in_nullhost(in))
1023 return 1;
1024 if ((ifp->if_flags & IFF_BROADCAST) == 0)
1025 return 0;
1026 /*
1027 * Look through the list of addresses for a match
1028 * with a broadcast address.
1029 */
1030 #define ia (ifatoia(ifa))
1031 TAILQ_FOREACH(ifa, &ifp->if_addrlist, ifa_list)
1032 if (ifa->ifa_addr->sa_family == AF_INET &&
1033 !in_hosteq(in, ia->ia_addr.sin_addr) &&
1034 (in_hosteq(in, ia->ia_broadaddr.sin_addr) ||
1035 in_hosteq(in, ia->ia_netbroadcast) ||
1036 (hostzeroisbroadcast &&
1037 /*
1038 * Check for old-style (host 0) broadcast.
1039 */
1040 (in.s_addr == ia->ia_subnet ||
1041 in.s_addr == ia->ia_net))))
1042 return 1;
1043 return (0);
1044 #undef ia
1045 }
1046
1047 /*
1048 * Add an address to the list of IP multicast addresses for a given interface.
1049 */
1050 struct in_multi *
1051 in_addmulti(ap, ifp)
1052 struct in_addr *ap;
1053 struct ifnet *ifp;
1054 {
1055 struct in_multi *inm;
1056 struct ifreq ifr;
1057 int s = splsoftnet();
1058
1059 /*
1060 * See if address already in list.
1061 */
1062 IN_LOOKUP_MULTI(*ap, ifp, inm);
1063 if (inm != NULL) {
1064 /*
1065 * Found it; just increment the reference count.
1066 */
1067 ++inm->inm_refcount;
1068 } else {
1069 /*
1070 * New address; allocate a new multicast record
1071 * and link it into the interface's multicast list.
1072 */
1073 inm = pool_get(&inmulti_pool, PR_NOWAIT);
1074 if (inm == NULL) {
1075 splx(s);
1076 return (NULL);
1077 }
1078 inm->inm_addr = *ap;
1079 inm->inm_ifp = ifp;
1080 inm->inm_refcount = 1;
1081 LIST_INSERT_HEAD(
1082 &IN_MULTI_HASH(inm->inm_addr.s_addr, ifp),
1083 inm, inm_list);
1084 /*
1085 * Ask the network driver to update its multicast reception
1086 * filter appropriately for the new address.
1087 */
1088 satosin(&ifr.ifr_addr)->sin_len = sizeof(struct sockaddr_in);
1089 satosin(&ifr.ifr_addr)->sin_family = AF_INET;
1090 satosin(&ifr.ifr_addr)->sin_addr = *ap;
1091 if ((ifp->if_ioctl == NULL) ||
1092 (*ifp->if_ioctl)(ifp, SIOCADDMULTI,(caddr_t)&ifr) != 0) {
1093 LIST_REMOVE(inm, inm_list);
1094 pool_put(&inmulti_pool, inm);
1095 splx(s);
1096 return (NULL);
1097 }
1098 /*
1099 * Let IGMP know that we have joined a new IP multicast group.
1100 */
1101 if (igmp_joingroup(inm) != 0) {
1102 LIST_REMOVE(inm, inm_list);
1103 pool_put(&inmulti_pool, inm);
1104 splx(s);
1105 return (NULL);
1106 }
1107 in_multientries++;
1108 }
1109 splx(s);
1110 return (inm);
1111 }
1112
1113 /*
1114 * Delete a multicast address record.
1115 */
1116 void
1117 in_delmulti(inm)
1118 struct in_multi *inm;
1119 {
1120 struct ifreq ifr;
1121 int s = splsoftnet();
1122
1123 if (--inm->inm_refcount == 0) {
1124 /*
1125 * No remaining claims to this record; let IGMP know that
1126 * we are leaving the multicast group.
1127 */
1128 igmp_leavegroup(inm);
1129 /*
1130 * Unlink from list.
1131 */
1132 LIST_REMOVE(inm, inm_list);
1133 in_multientries--;
1134 /*
1135 * Notify the network driver to update its multicast reception
1136 * filter.
1137 */
1138 satosin(&ifr.ifr_addr)->sin_family = AF_INET;
1139 satosin(&ifr.ifr_addr)->sin_addr = inm->inm_addr;
1140 (*inm->inm_ifp->if_ioctl)(inm->inm_ifp, SIOCDELMULTI,
1141 (caddr_t)&ifr);
1142 pool_put(&inmulti_pool, inm);
1143 }
1144 splx(s);
1145 }
1146 #endif
1147