route.c revision 1.48.4.2 1 /* $NetBSD: route.c,v 1.48.4.2 2001/04/05 12:42:38 he Exp $ */
2
3 /*
4 * Copyright (c) 1983, 1988, 1993
5 * The Regents of the University of California. 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. All advertising materials mentioning features or use of this software
16 * must display the following acknowledgement:
17 * This product includes software developed by the University of
18 * California, Berkeley and its contributors.
19 * 4. Neither the name of the University nor the names of its contributors
20 * may be used to endorse or promote products derived from this software
21 * without specific prior written permission.
22 *
23 * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
24 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
25 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
26 * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
27 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
28 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
29 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
30 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
31 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
32 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
33 * SUCH DAMAGE.
34 */
35
36 #include <sys/cdefs.h>
37 #ifndef lint
38 #if 0
39 static char sccsid[] = "from: @(#)route.c 8.3 (Berkeley) 3/9/94";
40 #else
41 __RCSID("$NetBSD: route.c,v 1.48.4.2 2001/04/05 12:42:38 he Exp $");
42 #endif
43 #endif /* not lint */
44
45 #include <sys/param.h>
46 #include <sys/protosw.h>
47 #include <sys/socket.h>
48 #include <sys/mbuf.h>
49 #include <sys/un.h>
50
51 #include <net/if.h>
52 #include <net/if_dl.h>
53 #include <net/if_types.h>
54 #define _KERNEL
55 #include <net/route.h>
56 #undef _KERNEL
57 #include <netinet/in.h>
58 #include <netatalk/at.h>
59 #include <netiso/iso.h>
60
61 #include <netns/ns.h>
62
63 #include <sys/sysctl.h>
64
65 #include <arpa/inet.h>
66
67 #include <err.h>
68 #include <netdb.h>
69 #include <stdio.h>
70 #include <stdlib.h>
71 #include <string.h>
72 #include <unistd.h>
73
74 #include "netstat.h"
75
76 #define kget(p, d) (kread((u_long)(p), (char *)&(d), sizeof (d)))
77
78 /* alignment constraint for routing socket */
79 #define ROUNDUP(a) \
80 ((a) > 0 ? (1 + (((a) - 1) | (sizeof(long) - 1))) : sizeof(long))
81 #define ADVANCE(x, n) (x += ROUNDUP((n)->sa_len))
82
83 /*
84 * Definitions for showing gateway flags.
85 */
86 struct bits {
87 short b_mask;
88 char b_val;
89 } bits[] = {
90 { RTF_UP, 'U' },
91 { RTF_GATEWAY, 'G' },
92 { RTF_HOST, 'H' },
93 { RTF_REJECT, 'R' },
94 { RTF_DYNAMIC, 'D' },
95 { RTF_MODIFIED, 'M' },
96 { RTF_DONE, 'd' }, /* Completed -- for routing messages only */
97 { RTF_MASK, 'm' }, /* Mask Present -- for routing messages only */
98 { RTF_CLONING, 'C' },
99 { RTF_XRESOLVE, 'X' },
100 { RTF_LLINFO, 'L' },
101 { RTF_STATIC, 'S' },
102 { RTF_BLACKHOLE,'B' },
103 { RTF_CLONED, 'c' },
104 { RTF_PROTO1, '1' },
105 { RTF_PROTO2, '2' },
106 { 0 }
107 };
108
109 /*
110 * XXX we put all of the sockaddr types in here to force the alignment
111 * to be correct.
112 */
113 static union sockaddr_union {
114 struct sockaddr u_sa;
115 struct sockaddr_in u_in;
116 struct sockaddr_un u_un;
117 struct sockaddr_iso u_iso;
118 struct sockaddr_at u_at;
119 struct sockaddr_dl u_dl;
120 struct sockaddr_ns u_ns;
121 u_short u_data[128];
122 int u_dummy; /* force word-alignment */
123 } pt_u;
124
125 int do_rtent = 0;
126 struct rtentry rtentry;
127 struct radix_node rnode;
128 struct radix_mask rmask;
129
130 int NewTree = 0;
131
132 static struct sockaddr *kgetsa __P((struct sockaddr *));
133 static void p_tree __P((struct radix_node *));
134 static void p_rtnode __P((void));
135 static void ntreestuff __P((void));
136 static void np_rtentry __P((struct rt_msghdr *));
137 static void p_sockaddr __P((const struct sockaddr *,
138 const struct sockaddr *, int, int));
139 static void p_flags __P((int));
140 static void p_rtentry __P((struct rtentry *));
141 static void ntreestuff __P((void));
142 static u_long forgemask __P((u_long));
143 static void domask __P((char *, size_t, u_long, u_long));
144 #ifdef INET6
145 char *netname6 __P((struct sockaddr_in6 *, struct in6_addr *));
146 #endif
147
148 /*
149 * Print routing tables.
150 */
151 void
152 routepr(rtree)
153 u_long rtree;
154 {
155 struct radix_node_head *rnh, head;
156 int i;
157
158 printf("Routing tables\n");
159
160 if (Aflag == 0 && NewTree)
161 ntreestuff();
162 else {
163 if (rtree == 0) {
164 printf("rt_tables: symbol not in namelist\n");
165 return;
166 }
167
168 kget(rtree, rt_tables);
169 for (i = 0; i <= AF_MAX; i++) {
170 if ((rnh = rt_tables[i]) == 0)
171 continue;
172 kget(rnh, head);
173 if (i == AF_UNSPEC) {
174 if (Aflag && af == 0) {
175 printf("Netmasks:\n");
176 p_tree(head.rnh_treetop);
177 }
178 } else if (af == AF_UNSPEC || af == i) {
179 pr_family(i);
180 do_rtent = 1;
181 pr_rthdr(i);
182 p_tree(head.rnh_treetop);
183 }
184 }
185 }
186 }
187
188 /*
189 * Print address family header before a section of the routing table.
190 */
191 void
192 pr_family(af)
193 int af;
194 {
195 char *afname;
196
197 switch (af) {
198 case AF_INET:
199 afname = "Internet";
200 break;
201 #ifdef INET6
202 case AF_INET6:
203 afname = "Internet6";
204 break;
205 #endif
206 case AF_NS:
207 afname = "XNS";
208 break;
209 case AF_ISO:
210 afname = "ISO";
211 break;
212 case AF_APPLETALK:
213 afname = "AppleTalk";
214 break;
215 case AF_CCITT:
216 afname = "X.25";
217 break;
218 default:
219 afname = NULL;
220 break;
221 }
222 if (afname)
223 printf("\n%s:\n", afname);
224 else
225 printf("\nProtocol Family %d:\n", af);
226 }
227
228 /* column widths; each followed by one space */
229 #ifndef INET6
230 #define WID_DST(af) 18 /* width of destination column */
231 #define WID_GW(af) 18 /* width of gateway column */
232 #else
233 /* width of destination/gateway column */
234 /* strlen("fe80::aaaa:bbbb:cccc:dddd") == 25, strlen("/128") == 4 */
235 #define WID_DST(af) ((af) == AF_INET6 ? (nflag ? 29 : 18) : 18)
236 #define WID_GW(af) ((af) == AF_INET6 ? (nflag ? 25 : 18) : 18)
237 #endif /* INET6 */
238
239 /*
240 * Print header for routing table columns.
241 */
242 void
243 pr_rthdr(af)
244 int af;
245 {
246
247 if (Aflag)
248 printf("%-8.8s ","Address");
249 printf("%-*.*s %-*.*s %-6.6s %6.6s%8.8s %6.6s %s\n",
250 WID_DST(af), WID_DST(af), "Destination",
251 WID_GW(af), WID_GW(af), "Gateway",
252 "Flags", "Refs", "Use", "Mtu", "Interface");
253 }
254
255 static struct sockaddr *
256 kgetsa(dst)
257 struct sockaddr *dst;
258 {
259
260 kget(dst, pt_u.u_sa);
261 if (pt_u.u_sa.sa_len > sizeof (pt_u.u_sa))
262 kread((u_long)dst, (char *)pt_u.u_data, pt_u.u_sa.sa_len);
263 return (&pt_u.u_sa);
264 }
265
266 static void
267 p_tree(rn)
268 struct radix_node *rn;
269 {
270
271 again:
272 kget(rn, rnode);
273 if (rnode.rn_b < 0) {
274 if (Aflag)
275 printf("%-8.8lx ", (u_long) rn);
276 if (rnode.rn_flags & RNF_ROOT) {
277 if (Aflag)
278 printf("(root node)%s",
279 rnode.rn_dupedkey ? " =>\n" : "\n");
280 } else if (do_rtent) {
281 kget(rn, rtentry);
282 p_rtentry(&rtentry);
283 if (Aflag)
284 p_rtnode();
285 } else {
286 p_sockaddr(kgetsa((struct sockaddr *)rnode.rn_key),
287 NULL, 0, 44);
288 putchar('\n');
289 }
290 if ((rn = rnode.rn_dupedkey) != NULL)
291 goto again;
292 } else {
293 if (Aflag && do_rtent) {
294 printf("%-8.8lx ", (u_long) rn);
295 p_rtnode();
296 }
297 rn = rnode.rn_r;
298 p_tree(rnode.rn_l);
299 p_tree(rn);
300 }
301 }
302
303 static void
304 p_rtnode()
305 {
306 struct radix_mask *rm = rnode.rn_mklist;
307 char nbuf[20];
308
309 if (rnode.rn_b < 0) {
310 if (rnode.rn_mask) {
311 printf("\t mask ");
312 p_sockaddr(kgetsa((struct sockaddr *)rnode.rn_mask),
313 NULL, 0, -1);
314 } else if (rm == 0)
315 return;
316 } else {
317 (void)snprintf(nbuf, sizeof nbuf, "(%d)", rnode.rn_b);
318 printf("%6.6s %8.8lx : %8.8lx", nbuf, (u_long) rnode.rn_l,
319 (u_long) rnode.rn_r);
320 }
321 while (rm) {
322 kget(rm, rmask);
323 (void)snprintf(nbuf, sizeof nbuf, " %d refs, ", rmask.rm_refs);
324 printf(" mk = %8.8lx {(%d),%s", (u_long) rm,
325 -1 - rmask.rm_b, rmask.rm_refs ? nbuf : " ");
326 if (rmask.rm_flags & RNF_NORMAL) {
327 struct radix_node rnode_aux;
328 printf(" <normal>, ");
329 kget(rmask.rm_leaf, rnode_aux);
330 p_sockaddr(kgetsa((struct sockaddr *)rnode_aux.rn_mask),
331 NULL, 0, -1);
332 } else
333 p_sockaddr(kgetsa((struct sockaddr *)rmask.rm_mask),
334 NULL, 0, -1);
335 putchar('}');
336 if ((rm = rmask.rm_mklist) != NULL)
337 printf(" ->");
338 }
339 putchar('\n');
340 }
341
342 static void
343 ntreestuff()
344 {
345 size_t needed;
346 int mib[6];
347 char *buf, *next, *lim;
348 struct rt_msghdr *rtm;
349
350 mib[0] = CTL_NET;
351 mib[1] = PF_ROUTE;
352 mib[2] = 0;
353 mib[3] = 0;
354 mib[4] = NET_RT_DUMP;
355 mib[5] = 0;
356 if (sysctl(mib, 6, NULL, &needed, NULL, 0) < 0)
357 err(1, "route sysctl estimate");
358 if ((buf = malloc(needed)) == 0)
359 errx(1, "out of space");
360 if (sysctl(mib, 6, buf, &needed, NULL, 0) < 0)
361 err(1, "sysctl of routing table");
362 lim = buf + needed;
363 for (next = buf; next < lim; next += rtm->rtm_msglen) {
364 rtm = (struct rt_msghdr *)next;
365 np_rtentry(rtm);
366 }
367 }
368
369 static void
370 np_rtentry(rtm)
371 struct rt_msghdr *rtm;
372 {
373 struct sockaddr *sa = (struct sockaddr *)(rtm + 1);
374 #ifdef notdef
375 static int masks_done, banner_printed;
376 #endif
377 static int old_af;
378 int af = 0, interesting = RTF_UP | RTF_GATEWAY | RTF_HOST;
379
380 if (Lflag && (rtm->rtm_flags & RTF_LLINFO))
381 return;
382 #ifdef notdef
383 /* for the moment, netmasks are skipped over */
384 if (!banner_printed) {
385 printf("Netmasks:\n");
386 banner_printed = 1;
387 }
388 if (masks_done == 0) {
389 if (rtm->rtm_addrs != RTA_DST ) {
390 masks_done = 1;
391 af = sa->sa_family;
392 }
393 } else
394 #endif
395 af = sa->sa_family;
396 if (af != old_af) {
397 pr_family(af);
398 old_af = af;
399 }
400 if (rtm->rtm_addrs == RTA_DST)
401 p_sockaddr(sa, NULL, 0, 36);
402 else {
403 p_sockaddr(sa, NULL, rtm->rtm_flags, 16);
404 #if 0
405 if (sa->sa_len == 0)
406 sa->sa_len = sizeof(long);
407 #endif
408 sa = (struct sockaddr *)(ROUNDUP(sa->sa_len) + (char *)sa);
409 p_sockaddr(sa, NULL, 0, 18);
410 }
411 p_flags(rtm->rtm_flags & interesting);
412 putchar('\n');
413 }
414
415 static void
416 p_sockaddr(sa, mask, flags, width)
417 const struct sockaddr *sa, *mask;
418 int flags, width;
419 {
420 char workbuf[128], *cplim;
421 char *cp = workbuf;
422
423 switch(sa->sa_family) {
424 case AF_INET:
425 {
426 struct sockaddr_in *sin = (struct sockaddr_in *)sa;
427
428 if ((sin->sin_addr.s_addr == INADDR_ANY) &&
429 (mask != NULL) &&
430 (((struct sockaddr_in *)mask)->sin_addr.s_addr == 0))
431 cp = "default";
432 else if (flags & RTF_HOST)
433 cp = routename(sin->sin_addr.s_addr);
434 else if (mask)
435 cp = netname(sin->sin_addr.s_addr,
436 ((struct sockaddr_in *)mask)->sin_addr.s_addr);
437 else
438 cp = netname(sin->sin_addr.s_addr, INADDR_ANY);
439 break;
440 }
441
442 #ifdef INET6
443 case AF_INET6:
444 {
445 struct sockaddr_in6 *sa6 = (struct sockaddr_in6 *)sa;
446 #ifdef KAME_SCOPEID
447 struct in6_addr *in6 = &sa6->sin6_addr;
448
449 /*
450 * XXX: This is a special workaround for KAME kernels.
451 * sin6_scope_id field of SA should be set in the future.
452 */
453 if (IN6_IS_ADDR_LINKLOCAL(in6) ||
454 IN6_IS_ADDR_MC_LINKLOCAL(in6)) {
455 /* XXX: override is ok? */
456 sa6->sin6_scope_id = (u_int32_t)ntohs(*(u_short *)&in6->s6_addr[2]);
457 *(u_short *)&in6->s6_addr[2] = 0;
458 }
459 #endif
460
461 if (flags & RTF_HOST)
462 cp = routename6(sa6);
463 else if (mask) {
464 cp = netname6(sa6,
465 &((struct sockaddr_in6 *)mask)->sin6_addr);
466 } else
467 cp = netname6(sa6, NULL);
468 break;
469 }
470 #endif
471
472 #ifndef SMALL
473 case AF_APPLETALK:
474 case 0:
475 {
476 if (!(flags & RTF_HOST) && mask)
477 cp = atalk_print2(sa,mask,11);
478 else
479 cp = atalk_print(sa,11);
480 break;
481 }
482 case AF_NS:
483 cp = ns_print((struct sockaddr *)sa);
484 break;
485 #endif
486
487 case AF_LINK:
488 {
489 struct sockaddr_dl *sdl = (struct sockaddr_dl *)sa;
490
491 if (sdl->sdl_nlen == 0 && sdl->sdl_alen == 0 &&
492 sdl->sdl_slen == 0)
493 (void)snprintf(workbuf, sizeof workbuf, "link#%d",
494 sdl->sdl_index);
495 else switch (sdl->sdl_type) {
496 case IFT_FDDI:
497 case IFT_ETHER:
498 {
499 int i;
500 u_char *lla = (u_char *)sdl->sdl_data +
501 sdl->sdl_nlen;
502
503 cplim = "";
504 for (i = 0; i < sdl->sdl_alen; i++, lla++) {
505 /* XXX */
506 cp += sprintf(cp, "%s%02x", cplim, *lla);
507 cplim = ":";
508 }
509 cp = workbuf;
510 break;
511 }
512 default:
513 cp = link_ntoa(sdl);
514 break;
515 }
516 break;
517 }
518
519 default:
520 {
521 u_char *s = (u_char *)sa->sa_data, *slim;
522
523 slim = sa->sa_len + (u_char *) sa;
524 cplim = cp + sizeof(workbuf) - 6;
525 cp += sprintf(cp, "(%d)", sa->sa_family);
526 while (s < slim && cp < cplim) {
527 cp += sprintf(cp, " %02x", *s++);
528 if (s < slim)
529 cp += sprintf(cp, "%02x", *s++);
530 }
531 cp = workbuf;
532 }
533 }
534 if (width < 0 )
535 printf("%s ", cp);
536 else {
537 if (nflag)
538 printf("%-*s ", width, cp);
539 else
540 printf("%-*.*s ", width, width, cp);
541 }
542 }
543
544 static void
545 p_flags(f)
546 int f;
547 {
548 char name[33], *flags;
549 struct bits *p = bits;
550
551 for (flags = name; p->b_mask && flags - name < sizeof(name); p++)
552 if (p->b_mask & f)
553 *flags++ = p->b_val;
554 *flags = '\0';
555 printf("%-6.6s ", name);
556 }
557
558 static struct sockaddr *sockcopy __P((struct sockaddr *,
559 union sockaddr_union *));
560
561 /*
562 * copy a sockaddr into an allocated region, allocate at least sockaddr
563 * bytes and zero unused
564 */
565 static struct sockaddr *
566 sockcopy(sp, dp)
567 struct sockaddr *sp;
568 union sockaddr_union *dp;
569 {
570 int len;
571
572 if (sp == 0 || sp->sa_len == 0)
573 (void)memset(dp, 0, sizeof (*sp));
574 else {
575 len = (sp->sa_len >= sizeof (*sp)) ? sp->sa_len : sizeof (*sp);
576 (void)memcpy(dp, sp, len);
577 }
578 return ((struct sockaddr *)dp);
579 }
580
581 static void
582 p_rtentry(rt)
583 struct rtentry *rt;
584 {
585 static struct ifnet ifnet, *lastif;
586 union sockaddr_union addr_un, mask_un;
587 struct sockaddr *addr, *mask;
588 int af;
589
590 if (Lflag && (rt->rt_flags & RTF_LLINFO))
591 return;
592
593 memset(&addr_un, 0, sizeof(addr_un));
594 memset(&mask_un, 0, sizeof(mask_un));
595 addr = sockcopy(kgetsa(rt_key(rt)), &addr_un);
596 af = addr->sa_family;
597 if (rt_mask(rt))
598 mask = sockcopy(kgetsa(rt_mask(rt)), &mask_un);
599 else
600 mask = sockcopy(NULL, &mask_un);
601 p_sockaddr(addr, mask, rt->rt_flags, WID_DST(af));
602 p_sockaddr(kgetsa(rt->rt_gateway), NULL, RTF_HOST, WID_GW(af));
603 p_flags(rt->rt_flags);
604 printf("%6d %8lu ", rt->rt_refcnt, rt->rt_use);
605 if (rt->rt_rmx.rmx_mtu)
606 printf("%6lu", rt->rt_rmx.rmx_mtu);
607 else
608 printf("%6s", "-");
609 putchar((rt->rt_rmx.rmx_locks & RTV_MTU) ? 'L' : ' ');
610 if (rt->rt_ifp) {
611 if (rt->rt_ifp != lastif) {
612 kget(rt->rt_ifp, ifnet);
613 lastif = rt->rt_ifp;
614 }
615 printf(" %.16s%s", ifnet.if_xname,
616 rt->rt_nodes[0].rn_dupedkey ? " =>" : "");
617 }
618 putchar('\n');
619 if (vflag) {
620 printf("\texpire %10lu%c recvpipe %10ld%c "
621 "sendpipe %10ld%c\n",
622 rt->rt_rmx.rmx_expire,
623 (rt->rt_rmx.rmx_locks & RTV_EXPIRE) ? 'L' : ' ',
624 rt->rt_rmx.rmx_recvpipe,
625 (rt->rt_rmx.rmx_locks & RTV_RPIPE) ? 'L' : ' ',
626 rt->rt_rmx.rmx_sendpipe,
627 (rt->rt_rmx.rmx_locks & RTV_SPIPE) ? 'L' : ' ');
628 printf("\tssthresh %10lu%c rtt %10ld%c "
629 "rttvar %10ld%c\n",
630 rt->rt_rmx.rmx_ssthresh,
631 (rt->rt_rmx.rmx_locks & RTV_SSTHRESH) ? 'L' : ' ',
632 rt->rt_rmx.rmx_rtt,
633 (rt->rt_rmx.rmx_locks & RTV_RTT) ? 'L' : ' ',
634 rt->rt_rmx.rmx_rttvar,
635 (rt->rt_rmx.rmx_locks & RTV_RTTVAR) ? 'L' : ' ');
636 }
637
638 }
639
640 char *
641 routename(in)
642 u_int32_t in;
643 {
644 char *cp;
645 static char line[MAXHOSTNAMELEN + 1];
646 struct hostent *hp;
647 static char domain[MAXHOSTNAMELEN + 1];
648 static int first = 1;
649
650 if (first) {
651 first = 0;
652 if (gethostname(domain, MAXHOSTNAMELEN) == 0) {
653 domain[sizeof(domain) - 1] = '\0';
654 if ((cp = strchr(domain, '.')))
655 (void)strcpy(domain, cp + 1);
656 else
657 domain[0] = 0;
658 } else
659 domain[0] = 0;
660 }
661 cp = 0;
662 if (!nflag) {
663 hp = gethostbyaddr((char *)&in, sizeof (struct in_addr),
664 AF_INET);
665 if (hp) {
666 if ((cp = strchr(hp->h_name, '.')) &&
667 !strcmp(cp + 1, domain))
668 *cp = 0;
669 cp = hp->h_name;
670 }
671 }
672 if (cp) {
673 strncpy(line, cp, sizeof(line) - 1);
674 line[sizeof(line) - 1] = '\0';
675 } else {
676 #define C(x) ((x) & 0xff)
677 in = ntohl(in);
678 snprintf(line, sizeof line, "%u.%u.%u.%u",
679 C(in >> 24), C(in >> 16), C(in >> 8), C(in));
680 }
681 return (line);
682 }
683
684 static u_long
685 forgemask(a)
686 u_long a;
687 {
688 u_long m;
689
690 if (IN_CLASSA(a))
691 m = IN_CLASSA_NET;
692 else if (IN_CLASSB(a))
693 m = IN_CLASSB_NET;
694 else
695 m = IN_CLASSC_NET;
696 return (m);
697 }
698
699 static void
700 domask(dst, dlen, addr, mask)
701 char *dst;
702 size_t dlen;
703 u_long addr, mask;
704 {
705 int b, i;
706
707 if (!mask || (forgemask(addr) == mask)) {
708 *dst = '\0';
709 return;
710 }
711 i = 0;
712 for (b = 0; b < 32; b++)
713 if (mask & (1 << b)) {
714 int bb;
715
716 i = b;
717 for (bb = b+1; bb < 32; bb++)
718 if (!(mask & (1 << bb))) {
719 i = -1; /* noncontig */
720 break;
721 }
722 break;
723 }
724 if (i == -1)
725 (void)snprintf(dst, dlen, "&0x%lx", mask);
726 else
727 (void)snprintf(dst, dlen, "/%d", 32-i);
728 }
729
730 /*
731 * Return the name of the network whose address is given.
732 * The address is assumed to be that of a net or subnet, not a host.
733 */
734 char *
735 netname(in, mask)
736 u_int32_t in, mask;
737 {
738 char *cp = 0;
739 static char line[MAXHOSTNAMELEN + 4];
740 struct netent *np = 0;
741 u_int32_t net, omask;
742 u_int32_t i;
743 int subnetshift;
744
745 i = ntohl(in);
746 omask = mask = ntohl(mask);
747 if (!nflag && i != INADDR_ANY) {
748 if (mask == INADDR_ANY) {
749 switch (mask = forgemask(i)) {
750 case IN_CLASSA_NET:
751 subnetshift = 8;
752 break;
753 case IN_CLASSB_NET:
754 subnetshift = 8;
755 break;
756 case IN_CLASSC_NET:
757 subnetshift = 4;
758 break;
759 default:
760 abort();
761 }
762 /*
763 * If there are more bits than the standard mask
764 * would suggest, subnets must be in use.
765 * Guess at the subnet mask, assuming reasonable
766 * width subnet fields.
767 */
768 while (i &~ mask)
769 mask = (long)mask >> subnetshift;
770 }
771 net = i & mask;
772 /*
773 * Note: shift the hosts bits out in octet units, since
774 * not all versions of getnetbyaddr() do this for us (e.g.
775 * the current `etc/networks' parser).
776 */
777 while ((mask & 0xff) == 0)
778 mask >>= 8, net >>= 8;
779 np = getnetbyaddr(net, AF_INET);
780 if (np)
781 cp = np->n_name;
782 }
783 if (cp)
784 strncpy(line, cp, sizeof(line) - 1);
785 else if ((i & 0xffffff) == 0)
786 (void)snprintf(line, sizeof line, "%u", C(i >> 24));
787 else if ((i & 0xffff) == 0)
788 (void)snprintf(line, sizeof line, "%u.%u", C(i >> 24)
789 , C(i >> 16));
790 else if ((i & 0xff) == 0)
791 (void)snprintf(line, sizeof line, "%u.%u.%u", C(i >> 24),
792 C(i >> 16), C(i >> 8));
793 else
794 (void)snprintf(line, sizeof line, "%u.%u.%u.%u", C(i >> 24),
795 C(i >> 16), C(i >> 8), C(i));
796 domask(line + strlen(line), sizeof(line) - strlen(line), i, omask);
797 return (line);
798 }
799
800 #ifdef INET6
801 char *
802 netname6(sa6, mask)
803 struct sockaddr_in6 *sa6;
804 struct in6_addr *mask;
805 {
806 static char line[NI_MAXHOST];
807 u_char *p, *q;
808 u_char *lim;
809 int masklen, final = 0, illegal = 0;
810 #ifdef KAME_SCOPEID
811 int flag = NI_WITHSCOPEID;
812 #else
813 int flag = 0;
814 #endif
815 int error;
816 struct sockaddr_in6 sin6;
817
818 sin6 = *sa6;
819 if (mask) {
820 masklen = 0;
821 lim = (u_char *)mask + 16;
822 for (p = (u_char *)mask, q = (u_char *)&sin6.sin6_addr;
823 p < lim;
824 p++, q++) {
825 if (final && *p) {
826 illegal++;
827 *q = 0;
828 continue;
829 }
830
831 switch (*p & 0xff) {
832 case 0xff:
833 masklen += 8;
834 break;
835 case 0xfe:
836 masklen += 7;
837 final++;
838 break;
839 case 0xfc:
840 masklen += 6;
841 final++;
842 break;
843 case 0xf8:
844 masklen += 5;
845 final++;
846 break;
847 case 0xf0:
848 masklen += 4;
849 final++;
850 break;
851 case 0xe0:
852 masklen += 3;
853 final++;
854 break;
855 case 0xc0:
856 masklen += 2;
857 final++;
858 break;
859 case 0x80:
860 masklen += 1;
861 final++;
862 break;
863 case 0x00:
864 final++;
865 break;
866 default:
867 final++;
868 illegal++;
869 break;
870 }
871
872 if (!illegal)
873 *q &= *p;
874 else
875 *q = 0;
876 }
877 }
878 else
879 masklen = 128;
880
881 if (masklen == 0 && IN6_IS_ADDR_UNSPECIFIED(&sa6->sin6_addr))
882 return("default");
883
884 if (illegal)
885 fprintf(stderr, "illegal prefixlen\n");
886 if (nflag)
887 flag |= NI_NUMERICHOST;
888 error = getnameinfo((struct sockaddr *)&sin6, sin6.sin6_len,
889 line, sizeof(line), NULL, 0, flag);
890 if (error)
891 strcpy(line, "invalid");
892
893 if (nflag)
894 sprintf(&line[strlen(line)], "/%d", masklen);
895
896 return line;
897 }
898
899 char *
900 routename6(sa6)
901 struct sockaddr_in6 *sa6;
902 {
903 static char line[NI_MAXHOST];
904 #ifdef KAME_SCOPEID
905 int flag = NI_WITHSCOPEID;
906 #else
907 int flag = 0;
908 #endif
909 /* use local variable for safety */
910 struct sockaddr_in6 sa6_local;
911 int error;
912
913 memset(&sa6_local, 0, sizeof(sa6_local));
914 sa6_local.sin6_family = AF_INET6;
915 sa6_local.sin6_len = sizeof(struct sockaddr_in6);
916 sa6_local.sin6_addr = sa6->sin6_addr;
917 sa6_local.sin6_scope_id = sa6->sin6_scope_id;
918
919 if (nflag)
920 flag |= NI_NUMERICHOST;
921
922 error = getnameinfo((struct sockaddr *)&sa6_local, sa6_local.sin6_len,
923 line, sizeof(line), NULL, 0, flag);
924 if (error)
925 strcpy(line, "invalid");
926
927 return line;
928 }
929 #endif /*INET6*/
930
931 /*
932 * Print routing statistics
933 */
934 void
935 rt_stats(off)
936 u_long off;
937 {
938 struct rtstat rtstat;
939
940 if (off == 0) {
941 printf("rtstat: symbol not in namelist\n");
942 return;
943 }
944 kread(off, (char *)&rtstat, sizeof (rtstat));
945 printf("routing:\n");
946 printf("\t%u bad routing redirect%s\n",
947 rtstat.rts_badredirect, plural(rtstat.rts_badredirect));
948 printf("\t%u dynamically created route%s\n",
949 rtstat.rts_dynamic, plural(rtstat.rts_dynamic));
950 printf("\t%u new gateway%s due to redirects\n",
951 rtstat.rts_newgateway, plural(rtstat.rts_newgateway));
952 printf("\t%u destination%s found unreachable\n",
953 rtstat.rts_unreach, plural(rtstat.rts_unreach));
954 printf("\t%u use%s of a wildcard route\n",
955 rtstat.rts_wildcard, plural(rtstat.rts_wildcard));
956 }
957 short ns_nullh[] = {0,0,0};
958 short ns_bh[] = {-1,-1,-1};
959
960 char *
961 ns_print(sa)
962 struct sockaddr *sa;
963 {
964 struct sockaddr_ns *sns = (struct sockaddr_ns*)sa;
965 struct ns_addr work;
966 union {
967 union ns_net net_e;
968 u_long long_e;
969 } net;
970 u_short port;
971 static char mybuf[50], cport[10], chost[25];
972 char *host = "";
973 char *p;
974 u_char *q;
975
976 work = sns->sns_addr;
977 port = ntohs(work.x_port);
978 work.x_port = 0;
979 net.net_e = work.x_net;
980 if (ns_nullhost(work) && net.long_e == 0) {
981 if (port ) {
982 (void)snprintf(mybuf, sizeof mybuf, "*.%xH", port);
983 upHex(mybuf);
984 } else
985 (void)snprintf(mybuf, sizeof mybuf, "*.*");
986 return (mybuf);
987 }
988
989 if (memcmp(ns_bh, work.x_host.c_host, 6) == 0) {
990 host = "any";
991 } else if (memcmp(ns_nullh, work.x_host.c_host, 6) == 0) {
992 host = "*";
993 } else {
994 q = work.x_host.c_host;
995 (void)snprintf(chost, sizeof chost, "%02x%02x%02x%02x%02x%02xH",
996 q[0], q[1], q[2], q[3], q[4], q[5]);
997 for (p = chost; *p == '0' && p < chost + 12; p++)
998 continue;
999 host = p;
1000 }
1001 if (port)
1002 (void)snprintf(cport, sizeof cport, ".%xH", htons(port));
1003 else
1004 *cport = 0;
1005
1006 (void)snprintf(mybuf, sizeof mybuf, "%xH.%s%s", (int)ntohl(net.long_e),
1007 host, cport);
1008 upHex(mybuf);
1009 return (mybuf);
1010 }
1011
1012 char *
1013 ns_phost(sa)
1014 struct sockaddr *sa;
1015 {
1016 struct sockaddr_ns *sns = (struct sockaddr_ns *)sa;
1017 struct sockaddr_ns work;
1018 static union ns_net ns_zeronet;
1019 char *p;
1020
1021 work = *sns;
1022 work.sns_addr.x_port = 0;
1023 work.sns_addr.x_net = ns_zeronet;
1024
1025 p = ns_print((struct sockaddr *)&work);
1026 if (strncmp("0H.", p, 3) == 0)
1027 p += 3;
1028 return (p);
1029 }
1030
1031 void
1032 upHex(p0)
1033 char *p0;
1034 {
1035 char *p = p0;
1036
1037 for (; *p; p++)
1038 switch (*p) {
1039 case 'a':
1040 case 'b':
1041 case 'c':
1042 case 'd':
1043 case 'e':
1044 case 'f':
1045 *p += ('A' - 'a');
1046 }
1047 }
1048