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add -n option to suppress clearing the build tree and add -DNO_CLEAN
[FreeBSD/FreeBSD.git] / sbin / routed / rdisc.c
1 /*
2  * Copyright (c) 1995
3  *      The Regents of the University of California.  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  * 4. Neither the name of the University nor the names of its contributors
14  *    may be used to endorse or promote products derived from this software
15  *    without specific prior written permission.
16  *
17  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
18  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
19  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
20  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
21  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
22  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
23  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
24  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
25  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
26  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
27  * SUCH DAMAGE.
28  *
29  * $FreeBSD$
30  */
31
32 #include "defs.h"
33 #include <netinet/in_systm.h>
34 #include <netinet/ip.h>
35 #include <netinet/ip_icmp.h>
36
37 #ifdef __NetBSD__
38 __RCSID("$NetBSD$");
39 #elif defined(__FreeBSD__)
40 __RCSID("$FreeBSD$");
41 #else
42 __RCSID("$Revision: 2.27 $");
43 #ident "$Revision: 2.27 $"
44 #endif
45
46 /* router advertisement ICMP packet */
47 struct icmp_ad {
48         u_int8_t    icmp_type;          /* type of message */
49         u_int8_t    icmp_code;          /* type sub code */
50         u_int16_t   icmp_cksum;         /* ones complement cksum of struct */
51         u_int8_t    icmp_ad_num;        /* # of following router addresses */
52         u_int8_t    icmp_ad_asize;      /* 2--words in each advertisement */
53         u_int16_t   icmp_ad_life;       /* seconds of validity */
54         struct icmp_ad_info {
55             n_long  icmp_ad_addr;
56             n_long  icmp_ad_pref;
57         } icmp_ad_info[1];
58 };
59
60 /* router solicitation ICMP packet */
61 struct icmp_so {
62         u_int8_t    icmp_type;          /* type of message */
63         u_int8_t    icmp_code;          /* type sub code */
64         u_int16_t   icmp_cksum;         /* ones complement cksum of struct */
65         n_long      icmp_so_rsvd;
66 };
67
68 union ad_u {
69         struct icmp icmp;
70         struct icmp_ad ad;
71         struct icmp_so so;
72 };
73
74
75 int     rdisc_sock = -1;                /* router-discovery raw socket */
76 struct interface *rdisc_sock_mcast;     /* current multicast interface */
77
78 struct timeval rdisc_timer;
79 int rdisc_ok;                           /* using solicited route */
80
81
82 #define MAX_ADS 16                      /* at least one per interface */
83 struct dr {                             /* accumulated advertisements */
84     struct interface *dr_ifp;
85     naddr   dr_gate;                    /* gateway */
86     time_t  dr_ts;                      /* when received */
87     time_t  dr_life;                    /* lifetime in host byte order */
88     n_long  dr_recv_pref;               /* received but biased preference */
89     n_long  dr_pref;                    /* preference adjusted by metric */
90 } *cur_drp, drs[MAX_ADS];
91
92 /* convert between signed, balanced around zero,
93  * and unsigned zero-based preferences */
94 #define SIGN_PREF(p) ((p) ^ MIN_PreferenceLevel)
95 #define UNSIGN_PREF(p) SIGN_PREF(p)
96 /* adjust unsigned preference by interface metric,
97  * without driving it to infinity */
98 #define PREF(p, ifp) ((int)(p) <= ((ifp)->int_metric+(ifp)->int_adj_outmetric)\
99                       ? ((p) != 0 ? 1 : 0)                                  \
100                       : (p) - ((ifp)->int_metric+(ifp)->int_adj_outmetric))
101
102 static void rdisc_sort(void);
103
104
105 /* dump an ICMP Router Discovery Advertisement Message
106  */
107 static void
108 trace_rdisc(const char  *act,
109             naddr       from,
110             naddr       to,
111             struct interface *ifp,
112             union ad_u  *p,
113             u_int       len)
114 {
115         int i;
116         n_long *wp, *lim;
117
118
119         if (!TRACEPACKETS || ftrace == 0)
120                 return;
121
122         lastlog();
123
124         if (p->icmp.icmp_type == ICMP_ROUTERADVERT) {
125                 (void)fprintf(ftrace, "%s Router Ad"
126                               " from %s to %s via %s life=%d\n",
127                               act, naddr_ntoa(from), naddr_ntoa(to),
128                               ifp ? ifp->int_name : "?",
129                               ntohs(p->ad.icmp_ad_life));
130                 if (!TRACECONTENTS)
131                         return;
132
133                 wp = &p->ad.icmp_ad_info[0].icmp_ad_addr;
134                 lim = &wp[(len - sizeof(p->ad)) / sizeof(*wp)];
135                 for (i = 0; i < p->ad.icmp_ad_num && wp <= lim; i++) {
136                         (void)fprintf(ftrace, "\t%s preference=%d",
137                                       naddr_ntoa(wp[0]), (int)ntohl(wp[1]));
138                         wp += p->ad.icmp_ad_asize;
139                 }
140                 (void)fputc('\n',ftrace);
141
142         } else {
143                 trace_act("%s Router Solic. from %s to %s via %s value=%#x",
144                           act, naddr_ntoa(from), naddr_ntoa(to),
145                           ifp ? ifp->int_name : "?",
146                           (int)ntohl(p->so.icmp_so_rsvd));
147         }
148 }
149
150 /* prepare Router Discovery socket.
151  */
152 static void
153 get_rdisc_sock(void)
154 {
155         if (rdisc_sock < 0) {
156                 rdisc_sock = socket(AF_INET, SOCK_RAW, IPPROTO_ICMP);
157                 if (rdisc_sock < 0)
158                         BADERR(1,"rdisc_sock = socket()");
159                 fix_sock(rdisc_sock,"rdisc_sock");
160                 fix_select();
161         }
162 }
163
164
165 /* Pick multicast group for router-discovery socket
166  */
167 void
168 set_rdisc_mg(struct interface *ifp,
169              int on)                    /* 0=turn it off */
170 {
171         struct group_req gr;
172         struct sockaddr_in *sin;
173
174         if (rdisc_sock < 0) {
175                 /* Create the raw socket so that we can hear at least
176                  * broadcast router discovery packets.
177                  */
178                 if ((ifp->int_state & IS_NO_RDISC) == IS_NO_RDISC
179                     || !on)
180                         return;
181                 get_rdisc_sock();
182         }
183
184         if (!(ifp->int_if_flags & IFF_MULTICAST)) {
185                 ifp->int_state &= ~(IS_ALL_HOSTS | IS_ALL_ROUTERS);
186                 return;
187         }
188
189         memset(&gr, 0, sizeof(gr));
190         gr.gr_interface = ifp->int_index;
191         sin = (struct sockaddr_in *)&gr.gr_group;
192         sin->sin_family = AF_INET;
193 #ifdef _HAVE_SIN_LEN
194         sin->sin_len = sizeof(struct sockaddr_in);
195 #endif
196
197         if (supplier
198             || (ifp->int_state & IS_NO_ADV_IN)
199             || !on) {
200                 /* stop listening to advertisements
201                  */
202                 if (ifp->int_state & IS_ALL_HOSTS) {
203                         sin->sin_addr.s_addr = htonl(INADDR_ALLHOSTS_GROUP);
204                         if (setsockopt(rdisc_sock, IPPROTO_IP,
205                                        MCAST_LEAVE_GROUP,
206                                        &gr, sizeof(gr)) < 0)
207                                 LOGERR("MCAST_LEAVE_GROUP ALLHOSTS");
208                         ifp->int_state &= ~IS_ALL_HOSTS;
209                 }
210
211         } else if (!(ifp->int_state & IS_ALL_HOSTS)) {
212                 /* start listening to advertisements
213                  */
214                 sin->sin_addr.s_addr = htonl(INADDR_ALLHOSTS_GROUP);
215                 if (setsockopt(rdisc_sock, IPPROTO_IP, MCAST_JOIN_GROUP,
216                                &gr, sizeof(gr)) < 0) {
217                         LOGERR("MCAST_JOIN_GROUP ALLHOSTS");
218                 } else {
219                         ifp->int_state |= IS_ALL_HOSTS;
220                 }
221         }
222
223         if (!supplier
224             || (ifp->int_state & IS_NO_ADV_OUT)
225             || !on) {
226                 /* stop listening to solicitations
227                  */
228                 if (ifp->int_state & IS_ALL_ROUTERS) {
229                         sin->sin_addr.s_addr = htonl(INADDR_ALLROUTERS_GROUP);
230                         if (setsockopt(rdisc_sock, IPPROTO_IP,
231                                        MCAST_LEAVE_GROUP,
232                                        &gr, sizeof(gr)) < 0)
233                                 LOGERR("MCAST_LEAVE_GROUP ALLROUTERS");
234                         ifp->int_state &= ~IS_ALL_ROUTERS;
235                 }
236
237         } else if (!(ifp->int_state & IS_ALL_ROUTERS)) {
238                 /* start hearing solicitations
239                  */
240                 sin->sin_addr.s_addr = htonl(INADDR_ALLROUTERS_GROUP);
241                 if (setsockopt(rdisc_sock, IPPROTO_IP, MCAST_JOIN_GROUP,
242                                &gr, sizeof(gr)) < 0) {
243                         LOGERR("MCAST_JOIN_GROUP ALLROUTERS");
244                 } else {
245                         ifp->int_state |= IS_ALL_ROUTERS;
246                 }
247         }
248 }
249
250
251 /* start supplying routes
252  */
253 void
254 set_supplier(void)
255 {
256         struct interface *ifp;
257         struct dr *drp;
258
259         if (supplier_set)
260                 return;
261
262         trace_act("start supplying routes");
263
264         /* Forget discovered routes.
265          */
266         for (drp = drs; drp < &drs[MAX_ADS]; drp++) {
267                 drp->dr_recv_pref = 0;
268                 drp->dr_life = 0;
269         }
270         rdisc_age(0);
271
272         supplier_set = 1;
273         supplier = 1;
274
275         /* Do not start advertising until we have heard some RIP routes */
276         LIM_SEC(rdisc_timer, now.tv_sec+MIN_WAITTIME);
277
278         /* Switch router discovery multicast groups from soliciting
279          * to advertising.
280          */
281         for (ifp = ifnet; ifp; ifp = ifp->int_next) {
282                 if (ifp->int_state & IS_BROKE)
283                         continue;
284                 ifp->int_rdisc_cnt = 0;
285                 ifp->int_rdisc_timer.tv_usec = rdisc_timer.tv_usec;
286                 ifp->int_rdisc_timer.tv_sec = now.tv_sec+MIN_WAITTIME;
287                 set_rdisc_mg(ifp, 1);
288         }
289
290         /* get rid of any redirects */
291         del_redirects(0,0);
292 }
293
294
295 /* age discovered routes and find the best one
296  */
297 void
298 rdisc_age(naddr bad_gate)
299 {
300         time_t sec;
301         struct dr *drp;
302
303
304         /* If only advertising, then do only that. */
305         if (supplier) {
306                 /* If switching from client to server, get rid of old
307                  * default routes.
308                  */
309                 if (cur_drp != 0)
310                         rdisc_sort();
311                 rdisc_adv();
312                 return;
313         }
314
315         /* If we are being told about a bad router,
316          * then age the discovered default route, and if there is
317          * no alternative, solicit a replacement.
318          */
319         if (bad_gate != 0) {
320                 /* Look for the bad discovered default route.
321                  * Age it and note its interface.
322                  */
323                 for (drp = drs; drp < &drs[MAX_ADS]; drp++) {
324                         if (drp->dr_ts == 0)
325                                 continue;
326
327                         /* When we find the bad router, then age the route
328                          * to at most SUPPLY_INTERVAL.
329                          * This is contrary to RFC 1256, but defends against
330                          * black holes.
331                          */
332                         if (drp->dr_gate == bad_gate) {
333                                 sec = (now.tv_sec - drp->dr_life
334                                        + SUPPLY_INTERVAL);
335                                 if (drp->dr_ts > sec) {
336                                         trace_act("age 0.0.0.0 --> %s via %s",
337                                                   naddr_ntoa(drp->dr_gate),
338                                                   drp->dr_ifp->int_name);
339                                         drp->dr_ts = sec;
340                                 }
341                                 break;
342                         }
343                 }
344         }
345
346         rdisc_sol();
347         rdisc_sort();
348
349         /* Delete old redirected routes to keep the kernel table small,
350          * and to prevent black holes.  Check that the kernel table
351          * matches the daemon table (i.e. has the default route).
352          * But only if RIP is not running and we are not dealing with
353          * a bad gateway, since otherwise age() will be called.
354          */
355         if (rip_sock < 0 && bad_gate == 0)
356                 age(0);
357 }
358
359
360 /* Zap all routes discovered via an interface that has gone bad
361  *      This should only be called when !(ifp->int_state & IS_ALIAS)
362  */
363 void
364 if_bad_rdisc(struct interface *ifp)
365 {
366         struct dr *drp;
367
368         for (drp = drs; drp < &drs[MAX_ADS]; drp++) {
369                 if (drp->dr_ifp != ifp)
370                         continue;
371                 drp->dr_recv_pref = 0;
372                 drp->dr_ts = 0;
373                 drp->dr_life = 0;
374         }
375
376         /* make a note to re-solicit, turn RIP on or off, etc. */
377         rdisc_timer.tv_sec = 0;
378 }
379
380
381 /* mark an interface ok for router discovering.
382  */
383 void
384 if_ok_rdisc(struct interface *ifp)
385 {
386         set_rdisc_mg(ifp, 1);
387
388         ifp->int_rdisc_cnt = 0;
389         ifp->int_rdisc_timer.tv_sec = now.tv_sec + (supplier
390                                                     ? MIN_WAITTIME
391                                                     : MAX_SOLICITATION_DELAY);
392         if (timercmp(&rdisc_timer, &ifp->int_rdisc_timer, >))
393                 rdisc_timer = ifp->int_rdisc_timer;
394 }
395
396
397 /* get rid of a dead discovered router
398  */
399 static void
400 del_rdisc(struct dr *drp)
401 {
402         struct interface *ifp;
403         naddr gate;
404         int i;
405
406
407         del_redirects(gate = drp->dr_gate, 0);
408         drp->dr_ts = 0;
409         drp->dr_life = 0;
410
411
412         /* Count the other discovered routes on the interface.
413          */
414         i = 0;
415         ifp = drp->dr_ifp;
416         for (drp = drs; drp < &drs[MAX_ADS]; drp++) {
417                 if (drp->dr_ts != 0
418                     && drp->dr_ifp == ifp)
419                         i++;
420         }
421
422         /* If that was the last good discovered router on the interface,
423          * then solicit a new one.
424          * This is contrary to RFC 1256, but defends against black holes.
425          */
426         if (i != 0) {
427                 trace_act("discovered router %s via %s"
428                           " is bad--have %d remaining",
429                           naddr_ntoa(gate), ifp->int_name, i);
430         } else if (ifp->int_rdisc_cnt >= MAX_SOLICITATIONS) {
431                 trace_act("last discovered router %s via %s"
432                           " is bad--re-solicit",
433                           naddr_ntoa(gate), ifp->int_name);
434                 ifp->int_rdisc_cnt = 0;
435                 ifp->int_rdisc_timer.tv_sec = 0;
436                 rdisc_sol();
437         } else {
438                 trace_act("last discovered router %s via %s"
439                           " is bad--wait to solicit",
440                           naddr_ntoa(gate), ifp->int_name);
441         }
442 }
443
444
445 /* Find the best discovered route,
446  * and discard stale routers.
447  */
448 static void
449 rdisc_sort(void)
450 {
451         struct dr *drp, *new_drp;
452         struct rt_entry *rt;
453         struct rt_spare new;
454         struct interface *ifp;
455         u_int new_st = 0;
456         n_long new_pref = 0;
457
458
459         /* Find the best discovered route.
460          */
461         new_drp = 0;
462         for (drp = drs; drp < &drs[MAX_ADS]; drp++) {
463                 if (drp->dr_ts == 0)
464                         continue;
465                 ifp = drp->dr_ifp;
466
467                 /* Get rid of expired discovered routers.
468                  */
469                 if (drp->dr_ts + drp->dr_life <= now.tv_sec) {
470                         del_rdisc(drp);
471                         continue;
472                 }
473
474                 LIM_SEC(rdisc_timer, drp->dr_ts+drp->dr_life+1);
475
476                 /* Update preference with possibly changed interface
477                  * metric.
478                  */
479                 drp->dr_pref = PREF(drp->dr_recv_pref, ifp);
480
481                 /* Prefer the current route to prevent thrashing.
482                  * Prefer shorter lifetimes to speed the detection of
483                  * bad routers.
484                  * Avoid sick interfaces.
485                  */
486                 if (new_drp == 0
487                     || (!((new_st ^ drp->dr_ifp->int_state) & IS_SICK)
488                         && (new_pref < drp->dr_pref
489                             || (new_pref == drp->dr_pref
490                                 && (drp == cur_drp
491                                     || (new_drp != cur_drp
492                                         && new_drp->dr_life > drp->dr_life)))))
493                     || ((new_st & IS_SICK)
494                         && !(drp->dr_ifp->int_state & IS_SICK))) {
495                             new_drp = drp;
496                             new_st = drp->dr_ifp->int_state;
497                             new_pref = drp->dr_pref;
498                 }
499         }
500
501         /* switch to a better default route
502          */
503         if (new_drp != cur_drp) {
504                 rt = rtget(RIP_DEFAULT, 0);
505
506                 /* Stop using discovered routes if they are all bad
507                  */
508                 if (new_drp == 0) {
509                         trace_act("turn off Router Discovery client");
510                         rdisc_ok = 0;
511
512                         if (rt != 0
513                             && (rt->rt_state & RS_RDISC)) {
514                                 new = rt->rt_spares[0];
515                                 new.rts_metric = HOPCNT_INFINITY;
516                                 new.rts_time = now.tv_sec - GARBAGE_TIME;
517                                 rtchange(rt, rt->rt_state & ~RS_RDISC,
518                                          &new, 0);
519                                 rtswitch(rt, 0);
520                         }
521
522                 } else {
523                         if (cur_drp == 0) {
524                                 trace_act("turn on Router Discovery client"
525                                           " using %s via %s",
526                                           naddr_ntoa(new_drp->dr_gate),
527                                           new_drp->dr_ifp->int_name);
528                                 rdisc_ok = 1;
529
530                         } else {
531                                 trace_act("switch Router Discovery from"
532                                           " %s via %s to %s via %s",
533                                           naddr_ntoa(cur_drp->dr_gate),
534                                           cur_drp->dr_ifp->int_name,
535                                           naddr_ntoa(new_drp->dr_gate),
536                                           new_drp->dr_ifp->int_name);
537                         }
538
539                         memset(&new, 0, sizeof(new));
540                         new.rts_ifp = new_drp->dr_ifp;
541                         new.rts_gate = new_drp->dr_gate;
542                         new.rts_router = new_drp->dr_gate;
543                         new.rts_metric = HOPCNT_INFINITY-1;
544                         new.rts_time = now.tv_sec;
545                         if (rt != 0) {
546                                 rtchange(rt, rt->rt_state | RS_RDISC, &new, 0);
547                         } else {
548                                 rtadd(RIP_DEFAULT, 0, RS_RDISC, &new);
549                         }
550                 }
551
552                 cur_drp = new_drp;
553         }
554
555         /* turn RIP on or off */
556         if (!rdisc_ok || rip_interfaces > 1) {
557                 rip_on(0);
558         } else {
559                 rip_off();
560         }
561 }
562
563
564 /* handle a single address in an advertisement
565  */
566 static void
567 parse_ad(naddr from,
568          naddr gate,
569          n_long pref,                   /* signed and in network order */
570          u_short life,                  /* in host byte order */
571          struct interface *ifp)
572 {
573         static struct msg_limit bad_gate;
574         struct dr *drp, *new_drp;
575
576
577         if (gate == RIP_DEFAULT
578             || !check_dst(gate)) {
579                 msglim(&bad_gate, from,"router %s advertising bad gateway %s",
580                        naddr_ntoa(from),
581                        naddr_ntoa(gate));
582                 return;
583         }
584
585         /* ignore pointers to ourself and routes via unreachable networks
586          */
587         if (ifwithaddr(gate, 1, 0) != 0) {
588                 trace_pkt("    discard Router Discovery Ad pointing at us");
589                 return;
590         }
591         if (!on_net(gate, ifp->int_net, ifp->int_mask)) {
592                 trace_pkt("    discard Router Discovery Ad"
593                           " toward unreachable net");
594                 return;
595         }
596
597         /* Convert preference to an unsigned value
598          * and later bias it by the metric of the interface.
599          */
600         pref = UNSIGN_PREF(ntohl(pref));
601
602         if (pref == 0 || life < MinMaxAdvertiseInterval) {
603                 pref = 0;
604                 life = 0;
605         }
606
607         for (new_drp = 0, drp = drs; drp < &drs[MAX_ADS]; drp++) {
608                 /* accept new info for a familiar entry
609                  */
610                 if (drp->dr_gate == gate) {
611                         new_drp = drp;
612                         break;
613                 }
614
615                 if (life == 0)
616                         continue;       /* do not worry about dead ads */
617
618                 if (drp->dr_ts == 0) {
619                         new_drp = drp;  /* use unused entry */
620
621                 } else if (new_drp == 0) {
622                         /* look for an entry worse than the new one to
623                          * reuse.
624                          */
625                         if ((!(ifp->int_state & IS_SICK)
626                              && (drp->dr_ifp->int_state & IS_SICK))
627                             || (pref > drp->dr_pref
628                                 && !((ifp->int_state ^ drp->dr_ifp->int_state)
629                                      & IS_SICK)))
630                                 new_drp = drp;
631
632                 } else if (new_drp->dr_ts != 0) {
633                         /* look for the least valuable entry to reuse
634                          */
635                         if ((!(new_drp->dr_ifp->int_state & IS_SICK)
636                              && (drp->dr_ifp->int_state & IS_SICK))
637                             || (new_drp->dr_pref > drp->dr_pref
638                                 && !((new_drp->dr_ifp->int_state
639                                       ^ drp->dr_ifp->int_state)
640                                      & IS_SICK)))
641                                 new_drp = drp;
642                 }
643         }
644
645         /* forget it if all of the current entries are better */
646         if (new_drp == 0)
647                 return;
648
649         new_drp->dr_ifp = ifp;
650         new_drp->dr_gate = gate;
651         new_drp->dr_ts = now.tv_sec;
652         new_drp->dr_life = life;
653         new_drp->dr_recv_pref = pref;
654         /* bias functional preference by metric of the interface */
655         new_drp->dr_pref = PREF(pref,ifp);
656
657         /* after hearing a good advertisement, stop asking
658          */
659         if (!(ifp->int_state & IS_SICK))
660                 ifp->int_rdisc_cnt = MAX_SOLICITATIONS;
661 }
662
663
664 /* Compute the IP checksum
665  *      This assumes the packet is less than 32K long.
666  */
667 static u_short
668 in_cksum(u_short *p,
669          u_int len)
670 {
671         u_int sum = 0;
672         int nwords = len >> 1;
673
674         while (nwords-- != 0)
675                 sum += *p++;
676
677         if (len & 1)
678                 sum += *(u_char *)p;
679
680         /* end-around-carry */
681         sum = (sum >> 16) + (sum & 0xffff);
682         sum += (sum >> 16);
683         return (~sum);
684 }
685
686
687 /* Send a router discovery advertisement or solicitation ICMP packet.
688  */
689 static void
690 send_rdisc(union ad_u *p,
691            int p_size,
692            struct interface *ifp,
693            naddr dst,                   /* 0 or unicast destination */
694            int  type)                   /* 0=unicast, 1=bcast, 2=mcast */
695 {
696         struct sockaddr_in rsin;
697         int flags;
698         const char *msg;
699
700
701         memset(&rsin, 0, sizeof(rsin));
702         rsin.sin_addr.s_addr = dst;
703         rsin.sin_family = AF_INET;
704 #ifdef _HAVE_SIN_LEN
705         rsin.sin_len = sizeof(rsin);
706 #endif
707         flags = MSG_DONTROUTE;
708
709         switch (type) {
710         case 0:                         /* unicast */
711         default:
712                 msg = "Send";
713                 break;
714
715         case 1:                         /* broadcast */
716                 if (ifp->int_if_flags & IFF_POINTOPOINT) {
717                         msg = "Send pt-to-pt";
718                         rsin.sin_addr.s_addr = ifp->int_dstaddr;
719                 } else {
720                         msg = "Send broadcast";
721                         rsin.sin_addr.s_addr = ifp->int_brdaddr;
722                 }
723                 break;
724
725         case 2:                         /* multicast */
726                 msg = "Send multicast";
727                 if (ifp->int_state & IS_DUP) {
728                         trace_act("abort multicast output via %s"
729                                   " with duplicate address",
730                                   ifp->int_name);
731                         return;
732                 }
733                 if (rdisc_sock_mcast != ifp) {
734                         /* select the right interface. */
735                         struct ip_mreqn mreqn;
736
737                         memset(&mreqn, 0, sizeof(struct ip_mreqn));
738                         mreqn.imr_ifindex = ifp->int_index;
739                         if (0 > setsockopt(rdisc_sock,
740                                            IPPROTO_IP, IP_MULTICAST_IF,
741                                            &mreqn,
742                                            sizeof(mreqn))) {
743                                 LOGERR("setsockopt(rdisc_sock,"
744                                        "IP_MULTICAST_IF)");
745                                 rdisc_sock_mcast = 0;
746                                 return;
747                         }
748                         rdisc_sock_mcast = ifp;
749                 }
750                 flags = 0;
751                 break;
752         }
753
754         if (rdisc_sock < 0)
755                 get_rdisc_sock();
756
757         trace_rdisc(msg, ifp->int_addr, rsin.sin_addr.s_addr, ifp,
758                     p, p_size);
759
760         if (0 > sendto(rdisc_sock, p, p_size, flags,
761                        (struct sockaddr *)&rsin, sizeof(rsin))) {
762                 if (ifp == 0 || !(ifp->int_state & IS_BROKE))
763                         msglog("sendto(%s%s%s): %s",
764                                ifp != 0 ? ifp->int_name : "",
765                                ifp != 0 ? ", " : "",
766                                inet_ntoa(rsin.sin_addr),
767                                strerror(errno));
768                 if (ifp != 0)
769                         if_sick(ifp);
770         }
771 }
772
773
774 /* Send an advertisement
775  */
776 static void
777 send_adv(struct interface *ifp,
778          naddr  dst,                    /* 0 or unicast destination */
779          int    type)                   /* 0=unicast, 1=bcast, 2=mcast */
780 {
781         union ad_u u;
782         n_long pref;
783
784
785         memset(&u, 0, sizeof(u.ad));
786
787         u.ad.icmp_type = ICMP_ROUTERADVERT;
788         u.ad.icmp_ad_num = 1;
789         u.ad.icmp_ad_asize = sizeof(u.ad.icmp_ad_info[0])/4;
790
791         u.ad.icmp_ad_life = stopint ? 0 : htons(ifp->int_rdisc_int*3);
792
793         /* Convert the configured preference to an unsigned value,
794          * bias it by the interface metric, and then send it as a
795          * signed, network byte order value.
796          */
797         pref = UNSIGN_PREF(ifp->int_rdisc_pref);
798         u.ad.icmp_ad_info[0].icmp_ad_pref = htonl(SIGN_PREF(PREF(pref, ifp)));
799
800         u.ad.icmp_ad_info[0].icmp_ad_addr = ifp->int_addr;
801
802         u.ad.icmp_cksum = in_cksum((u_short*)&u.ad, sizeof(u.ad));
803
804         send_rdisc(&u, sizeof(u.ad), ifp, dst, type);
805 }
806
807
808 /* Advertise for Router Discovery
809  */
810 void
811 rdisc_adv(void)
812 {
813         struct interface *ifp;
814
815         if (!supplier)
816                 return;
817
818         rdisc_timer.tv_sec = now.tv_sec + NEVER;
819
820         for (ifp = ifnet; ifp; ifp = ifp->int_next) {
821                 if (0 != (ifp->int_state & (IS_NO_ADV_OUT | IS_BROKE)))
822                         continue;
823
824                 if (!timercmp(&ifp->int_rdisc_timer, &now, >)
825                     || stopint) {
826                         send_adv(ifp, htonl(INADDR_ALLHOSTS_GROUP),
827                                  (ifp->int_state&IS_BCAST_RDISC) ? 1 : 2);
828                         ifp->int_rdisc_cnt++;
829
830                         intvl_random(&ifp->int_rdisc_timer,
831                                      (ifp->int_rdisc_int*3)/4,
832                                      ifp->int_rdisc_int);
833                         if (ifp->int_rdisc_cnt < MAX_INITIAL_ADVERTS
834                             && (ifp->int_rdisc_timer.tv_sec
835                                 > MAX_INITIAL_ADVERT_INTERVAL)) {
836                                 ifp->int_rdisc_timer.tv_sec
837                                 = MAX_INITIAL_ADVERT_INTERVAL;
838                         }
839                         timevaladd(&ifp->int_rdisc_timer, &now);
840                 }
841
842                 if (timercmp(&rdisc_timer, &ifp->int_rdisc_timer, >))
843                         rdisc_timer = ifp->int_rdisc_timer;
844         }
845 }
846
847
848 /* Solicit for Router Discovery
849  */
850 void
851 rdisc_sol(void)
852 {
853         struct interface *ifp;
854         union ad_u u;
855
856
857         if (supplier)
858                 return;
859
860         rdisc_timer.tv_sec = now.tv_sec + NEVER;
861
862         for (ifp = ifnet; ifp; ifp = ifp->int_next) {
863                 if (0 != (ifp->int_state & (IS_NO_SOL_OUT | IS_BROKE))
864                     || ifp->int_rdisc_cnt >= MAX_SOLICITATIONS)
865                         continue;
866
867                 if (!timercmp(&ifp->int_rdisc_timer, &now, >)) {
868                         memset(&u, 0, sizeof(u.so));
869                         u.so.icmp_type = ICMP_ROUTERSOLICIT;
870                         u.so.icmp_cksum = in_cksum((u_short*)&u.so,
871                                                    sizeof(u.so));
872                         send_rdisc(&u, sizeof(u.so), ifp,
873                                    htonl(INADDR_ALLROUTERS_GROUP),
874                                    ((ifp->int_state&IS_BCAST_RDISC) ? 1 : 2));
875
876                         if (++ifp->int_rdisc_cnt >= MAX_SOLICITATIONS)
877                                 continue;
878
879                         ifp->int_rdisc_timer.tv_sec = SOLICITATION_INTERVAL;
880                         ifp->int_rdisc_timer.tv_usec = 0;
881                         timevaladd(&ifp->int_rdisc_timer, &now);
882                 }
883
884                 if (timercmp(&rdisc_timer, &ifp->int_rdisc_timer, >))
885                         rdisc_timer = ifp->int_rdisc_timer;
886         }
887 }
888
889
890 /* check the IP header of a possible Router Discovery ICMP packet */
891 static struct interface *               /* 0 if bad */
892 ck_icmp(const char *act,
893         naddr   from,
894         struct interface *ifp,
895         naddr   to,
896         union ad_u *p,
897         u_int   len)
898 {
899         const char *type;
900
901
902         if (p->icmp.icmp_type == ICMP_ROUTERADVERT) {
903                 type = "advertisement";
904         } else if (p->icmp.icmp_type == ICMP_ROUTERSOLICIT) {
905                 type = "solicitation";
906         } else {
907                 return 0;
908         }
909
910         if (p->icmp.icmp_code != 0) {
911                 trace_pkt("unrecognized ICMP Router %s code=%d from %s to %s",
912                           type, p->icmp.icmp_code,
913                           naddr_ntoa(from), naddr_ntoa(to));
914                 return 0;
915         }
916
917         trace_rdisc(act, from, to, ifp, p, len);
918
919         if (ifp == 0)
920                 trace_pkt("unknown interface for router-discovery %s"
921                           " from %s to %s",
922                           type, naddr_ntoa(from), naddr_ntoa(to));
923
924         return ifp;
925 }
926
927
928 /* read packets from the router discovery socket
929  */
930 void
931 read_d(void)
932 {
933         static struct msg_limit bad_asize, bad_len;
934 #ifdef USE_PASSIFNAME
935         static struct msg_limit  bad_name;
936 #endif
937         struct sockaddr_in from;
938         int n, fromlen, cc, hlen;
939         struct {
940 #ifdef USE_PASSIFNAME
941                 char    ifname[IFNAMSIZ];
942 #endif
943                 union {
944                         struct ip ip;
945                         u_short s[512/2];
946                         u_char  b[512];
947                 } pkt;
948         } buf;
949         union ad_u *p;
950         n_long *wp;
951         struct interface *ifp;
952
953
954         for (;;) {
955                 fromlen = sizeof(from);
956                 cc = recvfrom(rdisc_sock, &buf, sizeof(buf), 0,
957                               (struct sockaddr*)&from,
958                               &fromlen);
959                 if (cc <= 0) {
960                         if (cc < 0 && errno != EWOULDBLOCK)
961                                 LOGERR("recvfrom(rdisc_sock)");
962                         break;
963                 }
964                 if (fromlen != sizeof(struct sockaddr_in))
965                         logbad(1,"impossible recvfrom(rdisc_sock) fromlen=%d",
966                                fromlen);
967 #ifdef USE_PASSIFNAME
968                 if ((cc -= sizeof(buf.ifname)) < 0)
969                         logbad(0,"missing USE_PASSIFNAME; only %d bytes",
970                                cc+sizeof(buf.ifname));
971 #endif
972
973                 hlen = buf.pkt.ip.ip_hl << 2;
974                 if (cc < hlen + ICMP_MINLEN)
975                         continue;
976                 p = (union ad_u *)&buf.pkt.b[hlen];
977                 cc -= hlen;
978
979 #ifdef USE_PASSIFNAME
980                 ifp = ifwithname(buf.ifname, 0);
981                 if (ifp == 0)
982                         msglim(&bad_name, from.sin_addr.s_addr,
983                                "impossible rdisc if_ name %.*s",
984                                IFNAMSIZ, buf.ifname);
985 #else
986                 /* If we could tell the interface on which a packet from
987                  * address 0 arrived, we could deal with such solicitations.
988                  */
989                 ifp = ((from.sin_addr.s_addr == 0)
990                        ? 0 : iflookup(from.sin_addr.s_addr));
991 #endif
992                 ifp = ck_icmp("Recv", from.sin_addr.s_addr, ifp,
993                               buf.pkt.ip.ip_dst.s_addr, p, cc);
994                 if (ifp == 0)
995                         continue;
996                 if (ifwithaddr(from.sin_addr.s_addr, 0, 0)) {
997                         trace_pkt("    "
998                                   "discard our own Router Discovery message");
999                         continue;
1000                 }
1001
1002                 switch (p->icmp.icmp_type) {
1003                 case ICMP_ROUTERADVERT:
1004                         if (p->ad.icmp_ad_asize*4
1005                             < (int)sizeof(p->ad.icmp_ad_info[0])) {
1006                                 msglim(&bad_asize, from.sin_addr.s_addr,
1007                                        "intolerable rdisc address size=%d",
1008                                        p->ad.icmp_ad_asize);
1009                                 continue;
1010                         }
1011                         if (p->ad.icmp_ad_num == 0) {
1012                                 trace_pkt("    empty?");
1013                                 continue;
1014                         }
1015                         if (cc != (int)(sizeof(p->ad)
1016                                         - sizeof(p->ad.icmp_ad_info)
1017                                         + (p->ad.icmp_ad_num
1018                                            * sizeof(p->ad.icmp_ad_info[0])))) {
1019                                 msglim(&bad_len, from.sin_addr.s_addr,
1020                                        "rdisc length %d does not match ad_num"
1021                                        " %d", cc, p->ad.icmp_ad_num);
1022                                 continue;
1023                         }
1024                         if (supplier)
1025                                 continue;
1026                         if (ifp->int_state & IS_NO_ADV_IN)
1027                                 continue;
1028
1029                         wp = &p->ad.icmp_ad_info[0].icmp_ad_addr;
1030                         for (n = 0; n < p->ad.icmp_ad_num; n++) {
1031                                 parse_ad(from.sin_addr.s_addr,
1032                                          wp[0], wp[1],
1033                                          ntohs(p->ad.icmp_ad_life),
1034                                          ifp);
1035                                 wp += p->ad.icmp_ad_asize;
1036                         }
1037                         break;
1038
1039
1040                 case ICMP_ROUTERSOLICIT:
1041                         if (!supplier)
1042                                 continue;
1043                         if (ifp->int_state & IS_NO_ADV_OUT)
1044                                 continue;
1045                         if (stopint)
1046                                 continue;
1047
1048                         /* XXX
1049                          * We should handle messages from address 0.
1050                          */
1051
1052                         /* Respond with a point-to-point advertisement */
1053                         send_adv(ifp, from.sin_addr.s_addr, 0);
1054                         break;
1055                 }
1056         }
1057
1058         rdisc_sort();
1059 }