xref: /netbsd-src/sbin/route/route.c (revision de1dfb1250df962f1ff3a011772cf58e605aed11)
1 /*	$NetBSD: route.c,v 1.73 2004/05/15 14:13:36 itojun Exp $	*/
2 
3 /*
4  * Copyright (c) 1983, 1989, 1991, 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. Neither the name of the University 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 REGENTS 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 REGENTS 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 #include <sys/cdefs.h>
33 #ifndef lint
34 __COPYRIGHT("@(#) Copyright (c) 1983, 1989, 1991, 1993\n\
35 	The Regents of the University of California.  All rights reserved.\n");
36 #endif /* not lint */
37 
38 #ifndef lint
39 #if 0
40 static char sccsid[] = "@(#)route.c	8.6 (Berkeley) 4/28/95";
41 #else
42 __RCSID("$NetBSD: route.c,v 1.73 2004/05/15 14:13:36 itojun Exp $");
43 #endif
44 #endif /* not lint */
45 
46 #include <sys/param.h>
47 #include <sys/file.h>
48 #include <sys/socket.h>
49 #include <sys/ioctl.h>
50 #include <sys/mbuf.h>
51 #include <sys/sysctl.h>
52 
53 #include <net/if.h>
54 #include <net/route.h>
55 #include <net/if_dl.h>
56 #include <netinet/in.h>
57 #include <netatalk/at.h>
58 #include <netns/ns.h>
59 #include <netiso/iso.h>
60 #include <netccitt/x25.h>
61 #include <arpa/inet.h>
62 #include <netdb.h>
63 
64 #include <errno.h>
65 #include <unistd.h>
66 #include <stdio.h>
67 #include <ctype.h>
68 #include <stdlib.h>
69 #include <string.h>
70 #include <time.h>
71 #include <paths.h>
72 #include <err.h>
73 
74 #include "keywords.h"
75 #include "extern.h"
76 
77 typedef union sockunion *sup;
78 
79 int main __P((int, char **));
80 static void usage __P((char *)) __attribute__((__noreturn__));
81 static char *any_ntoa __P((const struct sockaddr *));
82 static void set_metric __P((char *, int));
83 static int newroute __P((int, char **));
84 static void inet_makenetandmask __P((u_int32_t, struct sockaddr_in *));
85 #ifdef INET6
86 static int inet6_makenetandmask __P((struct sockaddr_in6 *));
87 #endif
88 static int getaddr __P((int, char *, struct hostent **));
89 static int flushroutes __P((int, char *[], int));
90 #ifndef SMALL
91 static int prefixlen __P((char *));
92 static int x25_makemask __P((void));
93 static void interfaces __P((void));
94 static void monitor __P((void));
95 static void print_getmsg __P((struct rt_msghdr *, int));
96 static const char *linkstate __P((struct if_msghdr *));
97 #endif /* SMALL */
98 static int rtmsg __P((int, int ));
99 static void mask_addr __P((void));
100 static void print_rtmsg __P((struct rt_msghdr *, int));
101 static void pmsg_common __P((struct rt_msghdr *));
102 static void pmsg_addrs __P((char *, int));
103 static void bprintf __P((FILE *, int, u_char *));
104 static int keyword __P((char *));
105 static void sodump __P((sup, char *));
106 static void sockaddr __P((char *, struct sockaddr *));
107 
108 union	sockunion {
109 	struct	sockaddr sa;
110 	struct	sockaddr_in sin;
111 #ifdef INET6
112 	struct	sockaddr_in6 sin6;
113 #endif
114 	struct	sockaddr_at sat;
115 	struct	sockaddr_dl sdl;
116 #ifndef SMALL
117 	struct	sockaddr_ns sns;
118 	struct	sockaddr_iso siso;
119 	struct	sockaddr_x25 sx25;
120 #endif /* SMALL */
121 } so_dst, so_gate, so_mask, so_genmask, so_ifa, so_ifp;
122 
123 int	pid, rtm_addrs;
124 int	sock;
125 int	forcehost, forcenet, doflush, nflag, af, qflag, tflag;
126 int	iflag, verbose, aflen = sizeof (struct sockaddr_in);
127 int	locking, lockrest, debugonly, shortoutput, rv;
128 struct	rt_metrics rt_metrics;
129 u_int32_t  rtm_inits;
130 short ns_nullh[] = {0,0,0};
131 short ns_bh[] = {-1,-1,-1};
132 
133 
134 static void
135 usage(cp)
136 	char *cp;
137 {
138 
139 	if (cp)
140 		warnx("botched keyword: %s", cp);
141 	(void) fprintf(stderr,
142 	    "usage: %s [ -fnqvs ] cmd [[ -<qualifers> ] args ]\n",
143 	    getprogname());
144 	exit(1);
145 	/* NOTREACHED */
146 }
147 
148 #define ROUNDUP(a) \
149 	((a) > 0 ? (1 + (((a) - 1) | (sizeof(long) - 1))) : sizeof(long))
150 #define ADVANCE(x, n) (x += ROUNDUP((n)->sa_len))
151 
152 int
153 main(argc, argv)
154 	int argc;
155 	char **argv;
156 {
157 	int ch;
158 
159 	if (argc < 2)
160 		usage(NULL);
161 
162 	while ((ch = getopt(argc, argv, "fnqvdts")) != -1)
163 		switch(ch) {
164 		case 'f':
165 			doflush = 1;
166 			break;
167 		case 'n':
168 			nflag = 1;
169 			break;
170 		case 'q':
171 			qflag = 1;
172 			break;
173 		case 'v':
174 			verbose = 1;
175 			break;
176 		case 't':
177 			tflag = 1;
178 			break;
179 		case 'd':
180 			debugonly = 1;
181 			break;
182 		case 's':
183 			shortoutput = 1;
184 			break;
185 		case '?':
186 		default:
187 			usage(NULL);
188 			/*NOTREACHED*/
189 		}
190 	argc -= optind;
191 	argv += optind;
192 
193 	pid = getpid();
194 	if (tflag)
195 		sock = open("/dev/null", O_WRONLY, 0);
196 	else
197 		sock = socket(PF_ROUTE, SOCK_RAW, 0);
198 	if (sock < 0)
199 		err(1, "socket");
200 
201 	if (*argv == NULL) {
202 		if (doflush)
203 			ch = K_FLUSH;
204 		else
205 			goto no_cmd;
206 	} else
207 		ch = keyword(*argv);
208 
209 	switch (ch) {
210 #ifndef SMALL
211 	case K_GET:
212 #endif /* SMALL */
213 	case K_CHANGE:
214 	case K_ADD:
215 	case K_DELETE:
216 		if (doflush)
217 			(void)flushroutes(1, argv, 0);
218 		return newroute(argc, argv);
219 
220 	case K_SHOW:
221 		show(argc, argv);
222 		return 0;
223 
224 #ifndef SMALL
225 	case K_MONITOR:
226 		monitor();
227 		return 0;
228 
229 #endif /* SMALL */
230 	case K_FLUSH:
231 		return flushroutes(argc, argv, 0);
232 
233 	case K_FLUSHALL:
234 		return flushroutes(argc, argv, 1);
235 	no_cmd:
236 	default:
237 		usage(*argv);
238 		/*NOTREACHED*/
239 	}
240 }
241 
242 /*
243  * Purge all entries in the routing tables not
244  * associated with network interfaces.
245  */
246 static int
247 flushroutes(argc, argv, doall)
248 	int argc;
249 	char *argv[];
250 	int doall;
251 {
252 	size_t needed;
253 	int mib[6], rlen, seqno;
254 	char *buf, *next, *lim;
255 	struct rt_msghdr *rtm;
256 
257 	af = 0;
258 	shutdown(sock, SHUT_RD); /* Don't want to read back our messages */
259 	if (argc > 1) {
260 		argv++;
261 		if (argc == 2 && **argv == '-')
262 		    switch (keyword(*argv + 1)) {
263 			case K_INET:
264 				af = AF_INET;
265 				break;
266 #ifdef INET6
267 			case K_INET6:
268 				af = AF_INET6;
269 				break;
270 #endif
271 #ifndef SMALL
272 			case K_ATALK:
273 				af = AF_APPLETALK;
274 				break;
275 			case K_XNS:
276 				af = AF_NS;
277 				break;
278 #endif /* SMALL */
279 			case K_LINK:
280 				af = AF_LINK;
281 				break;
282 #ifndef SMALL
283 			case K_ISO:
284 			case K_OSI:
285 				af = AF_ISO;
286 				break;
287 			case K_X25:
288 				af = AF_CCITT;
289 #endif /* SMALL */
290 			default:
291 				goto bad;
292 		} else
293 bad:			usage(*argv);
294 	}
295 	mib[0] = CTL_NET;
296 	mib[1] = PF_ROUTE;
297 	mib[2] = 0;		/* protocol */
298 	mib[3] = 0;		/* wildcard address family */
299 	mib[4] = NET_RT_DUMP;
300 	mib[5] = 0;		/* no flags */
301 	if (sysctl(mib, 6, NULL, &needed, NULL, 0) < 0)
302 		err(1, "route-sysctl-estimate");
303 	if (needed == 0)
304 		return 0;
305 	if ((buf = malloc(needed)) == NULL)
306 		err(1, "malloc");
307 	if (sysctl(mib, 6, buf, &needed, NULL, 0) < 0)
308 		err(1, "actual retrieval of routing table");
309 	lim = buf + needed;
310 	if (verbose) {
311 		(void) printf("Examining routing table from sysctl\n");
312 		if (af) printf("(address family %s)\n", (*argv + 1));
313 	}
314 	seqno = 0;		/* ??? */
315 	for (next = buf; next < lim; next += rtm->rtm_msglen) {
316 		rtm = (struct rt_msghdr *)next;
317 		if (verbose)
318 			print_rtmsg(rtm, rtm->rtm_msglen);
319 		if (!(rtm->rtm_flags & (RTF_GATEWAY | RTF_STATIC |
320 					RTF_LLINFO)) && !doall)
321 			continue;
322 		if (af) {
323 			struct sockaddr *sa = (struct sockaddr *)(rtm + 1);
324 
325 			if (sa->sa_family != af)
326 				continue;
327 		}
328 		if (debugonly)
329 			continue;
330 		rtm->rtm_type = RTM_DELETE;
331 		rtm->rtm_seq = seqno;
332 		rlen = write(sock, next, rtm->rtm_msglen);
333 		if (rlen < (int)rtm->rtm_msglen) {
334 			warn("write to routing socket, got %d for rlen", rlen);
335 			break;
336 		}
337 		seqno++;
338 		if (qflag)
339 			continue;
340 		if (verbose)
341 			print_rtmsg(rtm, rlen);
342 		else {
343 			struct sockaddr *sa = (struct sockaddr *)(rtm + 1);
344 			(void) printf("%-20.20s ",
345 			    routename(sa, NULL, rtm->rtm_flags));
346 			sa = (struct sockaddr *)(ROUNDUP(sa->sa_len) + (char *)sa);
347 			(void) printf("%-20.20s ",
348 			    routename(sa, NULL, RTF_HOST));
349 			(void) printf("done\n");
350 		}
351 	}
352 	return 0;
353 }
354 
355 
356 static char hexlist[] = "0123456789abcdef";
357 
358 static char *
359 any_ntoa(sa)
360 	const struct sockaddr *sa;
361 {
362 	static char obuf[3 * 256];
363 	const char *in;
364 	char *out;
365 	int len;
366 
367 	len = sa->sa_len - offsetof(struct sockaddr, sa_data);
368 	in  = sa->sa_data;
369 	out = obuf;
370 
371 	do {
372 		*out++ = hexlist[(*in >> 4) & 15];
373 		*out++ = hexlist[(*in++)    & 15];
374 		*out++ = '.';
375 	} while (--len > 0);
376 	out[-1] = '\0';
377 	return obuf;
378 }
379 
380 
381 int
382 netmask_length(nm, family)
383 	struct sockaddr *nm;
384 	int family;
385 {
386 	static int
387 	    /* number of bits in a nibble */
388 	    _t[] = { 0,1,1,2,1,2,2,3,1,2,2,3,2,3,3,4 },
389 	    /* good nibbles are 1111, 1110, 1100, 1000, 0000 */
390 	    _g[] = { 1,0,0,0,0,0,0,0,1,0,0,0,1,0,1,1 };
391 	int mask, good, zeroes, maskbytes, bit, i;
392 	unsigned char *maskdata;
393 
394 	if (nm == NULL)
395 		return 0;
396 
397 	mask = 0;
398 	good = 1;
399 	zeroes = 0;
400 
401 	switch (family) {
402 	case AF_INET: {
403 		struct sockaddr_in *nsin = (struct sockaddr_in *)nm;
404 		maskdata = (unsigned char *) &nsin->sin_addr;
405 		maskbytes = nsin->sin_len -
406 		    ((caddr_t)&nsin->sin_addr - (caddr_t)nsin);
407 		break;
408 	}
409 	case AF_INET6: {
410 		struct sockaddr_in6 *sin6 = (struct sockaddr_in6 *)nm;
411 		maskdata = (unsigned char *) &sin6->sin6_addr;
412 		maskbytes = sin6->sin6_len -
413 		    ((caddr_t)&sin6->sin6_addr - (caddr_t)sin6);
414 		break;
415 	}
416 	default:
417 		return 0;
418 	}
419 
420 	/*
421 	 * Count the bits in the nibbles of the mask, and marking the
422 	 * netmask as not good (or at best, non-standard and very
423 	 * discouraged, in the case of AF_INET) if we find either of
424 	 * a nibble with non-contiguous bits, or a non-zero nibble
425 	 * after we've found a zero nibble.
426 	 */
427 	for (i = 0; i < maskbytes; i++) {
428 		/* high nibble */
429 		mask += bit = _t[maskdata[i] >> 4];
430 		good &= _g[maskdata[i] >> 4];
431 		if (zeroes && bit)
432 			good = 0;
433 		if (bit == 0)
434 			zeroes = 1;
435 		/* low nibble */
436 		mask += bit = _t[maskdata[i] & 0xf];
437 		good &= _g[maskdata[i] & 0xf];
438 		if (zeroes && bit)
439 			good = 0;
440 		if (bit == 0)
441 			zeroes = 1;
442 	}
443 
444 	/*
445 	 * Always return the number of bits found, but as a negative
446 	 * if the mask wasn't one we like.
447 	 */
448 	return good ? mask : -mask;
449 }
450 
451 char *
452 netmask_string(mask, len)
453 	struct sockaddr *mask;
454 	int len;
455 {
456 	static char smask[16];
457 
458 	if (len >= 0)
459 		snprintf(smask, sizeof(smask), "%d", len);
460 	else {
461 		/* XXX AF_INET only?! */
462 		struct sockaddr_in nsin;
463 
464 		memset(&nsin, 0, sizeof(nsin));
465 		memcpy(&nsin, mask, mask->sa_len);
466 		snprintf(smask, sizeof(smask), "%s", inet_ntoa(nsin.sin_addr));
467 	}
468 
469 	return smask;
470 }
471 
472 
473 char *
474 routename(sa, nm, flags)
475 	struct sockaddr *sa, *nm;
476 	int flags;
477 {
478 	char *cp;
479 	static char line[50];
480 	struct hostent *hp;
481 	static char domain[MAXHOSTNAMELEN + 1];
482 	static int first = 1;
483 	struct in_addr in;
484 	int nml;
485 
486 	if ((flags & RTF_HOST) == 0)
487 		return netname(sa, nm);
488 
489 	if (first) {
490 		first = 0;
491 		if (gethostname(domain, MAXHOSTNAMELEN) == 0 &&
492 		    (cp = strchr(domain, '.')))
493 			(void)strlcpy(domain, cp + 1, sizeof(domain));
494 		else
495 			domain[0] = 0;
496 	}
497 
498 	if (sa->sa_len == 0)
499 		strlcpy(line, "default", sizeof(line));
500 	else switch (sa->sa_family) {
501 
502 	case AF_INET:
503 		in = ((struct sockaddr_in *)sa)->sin_addr;
504 		nml = netmask_length(nm, AF_INET);
505 
506 		cp = 0;
507 		if (in.s_addr == INADDR_ANY || sa->sa_len < 4) {
508 			if (nml == 0)
509 				cp = "default";
510 			else {
511 				static char notdefault[sizeof(NOTDEFSTRING)];
512 
513 				snprintf(notdefault, sizeof(notdefault),
514 				    "0.0.0.0/%s", netmask_string(nm, nml));
515 				cp = notdefault;
516 			}
517 		}
518 		if (cp == 0 && !nflag) {
519 			hp = gethostbyaddr((char *)&in, sizeof (struct in_addr),
520 				AF_INET);
521 			if (hp) {
522 				if ((cp = strchr(hp->h_name, '.')) &&
523 				    !strcmp(cp + 1, domain))
524 					*cp = 0;
525 				cp = hp->h_name;
526 			}
527 		}
528 		if (cp)
529 			(void)strlcpy(line, cp, sizeof(line));
530 		else
531 			(void)strlcpy(line, inet_ntoa(in), sizeof(line));
532 		break;
533 
534 	case AF_LINK:
535 		return (link_ntoa((struct sockaddr_dl *)sa));
536 
537 #ifndef SMALL
538 #ifdef INET6
539 	case AF_INET6:
540 	    {
541 		struct sockaddr_in6 sin6;
542 		int niflags;
543 
544 #ifdef NI_WITHSCOPEID
545 		niflags = NI_WITHSCOPEID;
546 #else
547 		niflags = 0;
548 #endif
549 		if (nflag)
550 			niflags |= NI_NUMERICHOST;
551 		memset(&sin6, 0, sizeof(sin6));
552 		memcpy(&sin6, sa, sa->sa_len);
553 		sin6.sin6_len = sizeof(struct sockaddr_in6);
554 		sin6.sin6_family = AF_INET6;
555 #ifdef __KAME__
556 		if (sa->sa_len == sizeof(struct sockaddr_in6) &&
557 		    (IN6_IS_ADDR_LINKLOCAL(&sin6.sin6_addr) ||
558 		     IN6_IS_ADDR_MC_LINKLOCAL(&sin6.sin6_addr)) &&
559 		    sin6.sin6_scope_id == 0) {
560 			sin6.sin6_scope_id =
561 			    ntohs(*(u_int16_t *)&sin6.sin6_addr.s6_addr[2]);
562 			sin6.sin6_addr.s6_addr[2] = 0;
563 			sin6.sin6_addr.s6_addr[3] = 0;
564 		}
565 #endif
566 		nml = netmask_length(nm, AF_INET6);
567 		if (IN6_IS_ADDR_UNSPECIFIED(&sin6.sin6_addr)) {
568 			if (nml == 0)
569 				strlcpy(line, "::", sizeof(line));
570 			else
571 				/* noncontiguous never happens in ipv6 */
572 				snprintf(line, sizeof(line), "::/%d", nml);
573 		}
574 
575 		else if (getnameinfo((struct sockaddr *)&sin6, sin6.sin6_len,
576 		    line, sizeof(line), NULL, 0, niflags) != 0)
577 			strlcpy(line, "invalid", sizeof(line));
578 		break;
579 	    }
580 #endif
581 
582 	case AF_NS:
583 		return (ns_print((struct sockaddr_ns *)sa));
584 
585 	case AF_ISO:
586 		(void)snprintf(line, sizeof line, "iso %s",
587 		    iso_ntoa(&((struct sockaddr_iso *)sa)->siso_addr));
588 		break;
589 
590 	case AF_APPLETALK:
591 		(void) snprintf(line, sizeof(line), "atalk %d.%d",
592 		    ((struct sockaddr_at *)sa)->sat_addr.s_net,
593 		    ((struct sockaddr_at *)sa)->sat_addr.s_node);
594 		break;
595 #endif /* SMALL */
596 
597 	default:
598 		(void)snprintf(line, sizeof line, "(%d) %s",
599 			sa->sa_family, any_ntoa(sa));
600 		break;
601 
602 	}
603 	return (line);
604 }
605 
606 /*
607  * Return the name of the network whose address is given.
608  * The address is assumed to be that of a net or subnet, not a host.
609  */
610 char *
611 netname(sa, nm)
612 	struct sockaddr *sa, *nm;
613 {
614 	char *cp = 0;
615 	static char line[50];
616 	struct netent *np = 0;
617 	u_int32_t net, mask;
618 	u_int32_t i;
619 	int subnetshift, nml;
620 	struct in_addr in;
621 
622 	switch (sa->sa_family) {
623 
624 	case AF_INET:
625 		in = ((struct sockaddr_in *)sa)->sin_addr;
626 		i = ntohl(in.s_addr);
627 		nml = netmask_length(nm, AF_INET);
628 		if (i == 0) {
629 			if (nml == 0)
630 				cp = "default";
631 			else {
632 				static char notdefault[sizeof(NOTDEFSTRING)];
633 
634 				snprintf(notdefault, sizeof(notdefault),
635 				    "0.0.0.0/%s", netmask_string(nm, nml));
636 				cp = notdefault;
637 			}
638 		}
639 		else if (!nflag) {
640 			if (IN_CLASSA(i)) {
641 				mask = IN_CLASSA_NET;
642 				subnetshift = 8;
643 			} else if (IN_CLASSB(i)) {
644 				mask = IN_CLASSB_NET;
645 				subnetshift = 8;
646 			} else {
647 				mask = IN_CLASSC_NET;
648 				subnetshift = 4;
649 			}
650 			/*
651 			 * If there are more bits than the standard mask
652 			 * would suggest, subnets must be in use.
653 			 * Guess at the subnet mask, assuming reasonable
654 			 * width subnet fields.
655 			 */
656 			while (i &~ mask)
657 				mask = (int32_t)mask >> subnetshift;
658 			net = i & mask;
659 			while ((mask & 1) == 0)
660 				mask >>= 1, net >>= 1;
661 			np = getnetbyaddr(net, AF_INET);
662 			if (np)
663 				cp = np->n_name;
664 		}
665 		if (cp)
666 			(void)strlcpy(line, cp, sizeof(line));
667 		else {
668 #if 0	/* XXX - This is silly... */
669 #define C(x)	((x) & 0xff)
670 			if ((i & 0xffffff) == 0)
671 				(void)snprintf(line, sizeof line, "%u",
672 				    C(i >> 24));
673 			else if ((i & 0xffff) == 0)
674 				(void)snprintf(line, sizeof line, "%u.%u",
675 				    C(i >> 24), C(i >> 16));
676 			else if ((i & 0xff) == 0)
677 				(void)snprintf(line, sizeof line, "%u.%u.%u",
678 				    C(i >> 24), C(i >> 16), C(i >> 8));
679 			else
680 				(void)snprintf(line, sizeof line, "%u.%u.%u.%u",
681 				    C(i >> 24), C(i >> 16), C(i >> 8), C(i));
682 #undef C
683 #else /* XXX */
684 			if (nml == 0)
685 				strlcpy(line, inet_ntoa(in), sizeof(line));
686 			else
687 				snprintf(line, sizeof(line), "%s/%d", inet_ntoa(in), nml);
688 #endif /* XXX */
689 		}
690 		break;
691 
692 	case AF_LINK:
693 		return (link_ntoa((struct sockaddr_dl *)sa));
694 
695 #ifndef SMALL
696 #ifdef INET6
697 	case AF_INET6:
698 	    {
699 		struct sockaddr_in6 sin6;
700 		int niflags;
701 
702 #ifdef NI_WITHSCOPEID
703 		niflags = NI_WITHSCOPEID;
704 #else
705 		niflags = 0;
706 #endif
707 		if (nflag)
708 			niflags |= NI_NUMERICHOST;
709 		memset(&sin6, 0, sizeof(sin6));
710 		memcpy(&sin6, sa, sa->sa_len);
711 		sin6.sin6_len = sizeof(struct sockaddr_in6);
712 		sin6.sin6_family = AF_INET6;
713 #ifdef __KAME__
714 		if (sa->sa_len == sizeof(struct sockaddr_in6) &&
715 		    (IN6_IS_ADDR_LINKLOCAL(&sin6.sin6_addr) ||
716 		     IN6_IS_ADDR_MC_LINKLOCAL(&sin6.sin6_addr)) &&
717 		    sin6.sin6_scope_id == 0) {
718 			sin6.sin6_scope_id =
719 			    ntohs(*(u_int16_t *)&sin6.sin6_addr.s6_addr[2]);
720 			sin6.sin6_addr.s6_addr[2] = 0;
721 			sin6.sin6_addr.s6_addr[3] = 0;
722 		}
723 #endif
724 		nml = netmask_length(nm, AF_INET6);
725 		if (IN6_IS_ADDR_UNSPECIFIED(&sin6.sin6_addr)) {
726 			if (nml == 0)
727 				strlcpy(line, "::", sizeof(line));
728 			else
729 				/* noncontiguous never happens in ipv6 */
730 				snprintf(line, sizeof(line), "::/%d", nml);
731 		}
732 
733 		else if (getnameinfo((struct sockaddr *)&sin6, sin6.sin6_len,
734 		    line, sizeof(line), NULL, 0, niflags) != 0)
735 			strlcpy(line, "invalid", sizeof(line));
736 		break;
737 	    }
738 #endif
739 
740 	case AF_NS:
741 		return (ns_print((struct sockaddr_ns *)sa));
742 
743 	case AF_ISO:
744 		(void)snprintf(line, sizeof line, "iso %s",
745 		    iso_ntoa(&((struct sockaddr_iso *)sa)->siso_addr));
746 		break;
747 
748 	case AF_APPLETALK:
749 		(void) snprintf(line, sizeof(line), "atalk %d.%d",
750 		    ((struct sockaddr_at *)sa)->sat_addr.s_net,
751 		    ((struct sockaddr_at *)sa)->sat_addr.s_node);
752 		break;
753 #endif /* SMALL */
754 
755 	default:
756 		(void)snprintf(line, sizeof line, "af %d: %s",
757 			sa->sa_family, any_ntoa(sa));
758 		break;
759 	}
760 	return (line);
761 }
762 
763 static void
764 set_metric(value, key)
765 	char *value;
766 	int key;
767 {
768 	int flag = 0;
769 	u_long noval, *valp = &noval;
770 
771 	switch (key) {
772 #define caseof(x, y, z)	case x: valp = &rt_metrics.z; flag = y; break
773 	caseof(K_MTU, RTV_MTU, rmx_mtu);
774 	caseof(K_HOPCOUNT, RTV_HOPCOUNT, rmx_hopcount);
775 	caseof(K_EXPIRE, RTV_EXPIRE, rmx_expire);
776 	caseof(K_RECVPIPE, RTV_RPIPE, rmx_recvpipe);
777 	caseof(K_SENDPIPE, RTV_SPIPE, rmx_sendpipe);
778 	caseof(K_SSTHRESH, RTV_SSTHRESH, rmx_ssthresh);
779 	caseof(K_RTT, RTV_RTT, rmx_rtt);
780 	caseof(K_RTTVAR, RTV_RTTVAR, rmx_rttvar);
781 	}
782 	rtm_inits |= flag;
783 	if (lockrest || locking)
784 		rt_metrics.rmx_locks |= flag;
785 	if (locking)
786 		locking = 0;
787 	*valp = atoi(value);
788 }
789 
790 static int
791 newroute(argc, argv)
792 	int argc;
793 	char **argv;
794 {
795 	char *cmd, *dest = "", *gateway = "";
796 	const char *error;
797 	int ishost = 0, ret, attempts, oerrno, flags = RTF_STATIC;
798 	int key;
799 	struct hostent *hp = 0;
800 
801 	cmd = argv[0];
802 	af = 0;
803 	if (*cmd != 'g')
804 		shutdown(sock, SHUT_RD); /* Don't want to read back our messages */
805 	while (--argc > 0) {
806 		if (**(++argv)== '-') {
807 			switch (key = keyword(1 + *argv)) {
808 
809 			case K_SA:
810 				af = PF_ROUTE;
811 				aflen = sizeof(union sockunion);
812 				break;
813 
814 #ifndef SMALL
815 			case K_ATALK:
816 				af = AF_APPLETALK;
817 				aflen = sizeof(struct sockaddr_at);
818 				break;
819 #endif
820 
821 			case K_INET:
822 				af = AF_INET;
823 				aflen = sizeof(struct sockaddr_in);
824 				break;
825 
826 #ifdef INET6
827 			case K_INET6:
828 				af = AF_INET6;
829 				aflen = sizeof(struct sockaddr_in6);
830 				break;
831 #endif
832 
833 			case K_LINK:
834 				af = AF_LINK;
835 				aflen = sizeof(struct sockaddr_dl);
836 				break;
837 
838 #ifndef SMALL
839 			case K_OSI:
840 			case K_ISO:
841 				af = AF_ISO;
842 				aflen = sizeof(struct sockaddr_iso);
843 				break;
844 
845 			case K_X25:
846 				af = AF_CCITT;
847 				aflen = sizeof(struct sockaddr_x25);
848 				break;
849 
850 			case K_XNS:
851 				af = AF_NS;
852 				aflen = sizeof(struct sockaddr_ns);
853 				break;
854 #endif /* SMALL */
855 
856 			case K_IFACE:
857 			case K_INTERFACE:
858 				iflag++;
859 				break;
860 			case K_NOSTATIC:
861 				flags &= ~RTF_STATIC;
862 				break;
863 			case K_LLINFO:
864 				flags |= RTF_LLINFO;
865 				break;
866 			case K_LOCK:
867 				locking = 1;
868 				break;
869 			case K_LOCKREST:
870 				lockrest = 1;
871 				break;
872 			case K_HOST:
873 				forcehost++;
874 				break;
875 			case K_REJECT:
876 				flags |= RTF_REJECT;
877 				break;
878 			case K_BLACKHOLE:
879 				flags |= RTF_BLACKHOLE;
880 				break;
881 			case K_CLONED:
882 				flags |= RTF_CLONED;
883 				break;
884 			case K_PROTO1:
885 				flags |= RTF_PROTO1;
886 				break;
887 			case K_PROTO2:
888 				flags |= RTF_PROTO2;
889 				break;
890 			case K_CLONING:
891 				flags |= RTF_CLONING;
892 				break;
893 			case K_XRESOLVE:
894 				flags |= RTF_XRESOLVE;
895 				break;
896 			case K_STATIC:
897 				flags |= RTF_STATIC;
898 				break;
899 			case K_IFA:
900 				if (!--argc)
901 					usage(1+*argv);
902 				(void) getaddr(RTA_IFA, *++argv, 0);
903 				break;
904 			case K_IFP:
905 				if (!--argc)
906 					usage(1+*argv);
907 				(void) getaddr(RTA_IFP, *++argv, 0);
908 				break;
909 			case K_GENMASK:
910 				if (!--argc)
911 					usage(1+*argv);
912 				(void) getaddr(RTA_GENMASK, *++argv, 0);
913 				break;
914 			case K_GATEWAY:
915 				if (!--argc)
916 					usage(1+*argv);
917 				(void) getaddr(RTA_GATEWAY, *++argv, 0);
918 				break;
919 			case K_DST:
920 				if (!--argc)
921 					usage(1+*argv);
922 				ishost = getaddr(RTA_DST, *++argv, &hp);
923 				dest = *argv;
924 				break;
925 			case K_NETMASK:
926 				if (!--argc)
927 					usage(1+*argv);
928 				(void) getaddr(RTA_NETMASK, *++argv, 0);
929 				/* FALLTHROUGH */
930 			case K_NET:
931 				forcenet++;
932 				break;
933 			case K_PREFIXLEN:
934 				if (!--argc)
935 					usage(1+*argv);
936 				ishost = prefixlen(*++argv);
937 				break;
938 			case K_MTU:
939 			case K_HOPCOUNT:
940 			case K_EXPIRE:
941 			case K_RECVPIPE:
942 			case K_SENDPIPE:
943 			case K_SSTHRESH:
944 			case K_RTT:
945 			case K_RTTVAR:
946 				if (!--argc)
947 					usage(1+*argv);
948 				set_metric(*++argv, key);
949 				break;
950 			default:
951 				usage(1+*argv);
952 			}
953 		} else {
954 			if ((rtm_addrs & RTA_DST) == 0) {
955 				dest = *argv;
956 				ishost = getaddr(RTA_DST, *argv, &hp);
957 			} else if ((rtm_addrs & RTA_GATEWAY) == 0) {
958 				gateway = *argv;
959 				(void) getaddr(RTA_GATEWAY, *argv, &hp);
960 			} else {
961 				ret = atoi(*argv);
962 
963 				if (ret == 0) {
964 				    if (strcmp(*argv, "0") == 0) {
965 					if (!qflag)  {
966 					    warnx("%s, %s",
967 						"old usage of trailing 0",
968 						"assuming route to if");
969 					}
970 				    } else
971 					usage((char *)NULL);
972 				    iflag = 1;
973 				    continue;
974 				} else if (ret > 0 && ret < 10) {
975 				    if (!qflag) {
976 					warnx("%s, %s",
977 					    "old usage of trailing digit",
978 					    "assuming route via gateway");
979 				    }
980 				    iflag = 0;
981 				    continue;
982 				}
983 				(void) getaddr(RTA_NETMASK, *argv, 0);
984 			}
985 		}
986 	}
987 	if (forcehost && forcenet)
988 		errx(1, "-host and -net conflict");
989 	else if (forcehost)
990 		ishost = 1;
991 	else if (forcenet)
992 		ishost = 0;
993 	flags |= RTF_UP;
994 	if (ishost)
995 		flags |= RTF_HOST;
996 	if (iflag == 0)
997 		flags |= RTF_GATEWAY;
998 	for (attempts = 1; ; attempts++) {
999 		errno = 0;
1000 		if ((ret = rtmsg(*cmd, flags)) == 0)
1001 			break;
1002 		if (errno != ENETUNREACH && errno != ESRCH)
1003 			break;
1004 		if (af == AF_INET && *gateway && hp && hp->h_addr_list[1]) {
1005 			hp->h_addr_list++;
1006 			memmove(&so_gate.sin.sin_addr, hp->h_addr_list[0],
1007 			    hp->h_length);
1008 		} else
1009 			break;
1010 	}
1011 	if (*cmd == 'g')
1012 		return rv;
1013 	oerrno = errno;
1014 	if (!qflag) {
1015 		(void) printf("%s %s %s", cmd, ishost? "host" : "net", dest);
1016 		if (*gateway) {
1017 			(void) printf(": gateway %s", gateway);
1018 			if (attempts > 1 && ret == 0 && af == AF_INET)
1019 			    (void) printf(" (%s)",
1020 			        inet_ntoa(so_gate.sin.sin_addr));
1021 		}
1022 		if (ret == 0)
1023 			(void) printf("\n");
1024 	}
1025 	if (ret != 0) {
1026 		switch (oerrno) {
1027 		case ESRCH:
1028 			error = "not in table";
1029 			break;
1030 		case EBUSY:
1031 			error = "entry in use";
1032 			break;
1033 		case ENOBUFS:
1034 			error = "routing table overflow";
1035 			break;
1036 		default:
1037 			error = strerror(oerrno);
1038 			break;
1039 		}
1040 		(void) printf(": %s\n", error);
1041 		return 1;
1042 	}
1043 	return 0;
1044 }
1045 
1046 static void
1047 inet_makenetandmask(u_int32_t net, struct sockaddr_in *isin)
1048 {
1049 	u_int32_t addr, mask = 0;
1050 	char *cp;
1051 
1052 	rtm_addrs |= RTA_NETMASK;
1053 	if (net == 0)
1054 		mask = addr = 0;
1055 	else if (net < 128) {
1056 		addr = net << IN_CLASSA_NSHIFT;
1057 		mask = IN_CLASSA_NET;
1058 	} else if (net < 192) {
1059 		addr = net << IN_CLASSA_NSHIFT;
1060 		mask = IN_CLASSB_NET;
1061 	} else if (net < 224) {
1062 		addr = net << IN_CLASSA_NSHIFT;
1063 		mask = IN_CLASSC_NET;
1064 	} else if (net < 256) {
1065 		addr = net << IN_CLASSA_NSHIFT;
1066 		mask = IN_CLASSD_NET;
1067 	} else if (net < 49152) { /* 192 * 256 */
1068 		addr = net << IN_CLASSB_NSHIFT;
1069 		mask = IN_CLASSB_NET;
1070 	} else if (net < 57344) { /* 224 * 256 */
1071 		addr = net << IN_CLASSB_NSHIFT;
1072 		mask = IN_CLASSC_NET;
1073 	} else if (net < 65536) {
1074 		addr = net << IN_CLASSB_NSHIFT;
1075 		mask = IN_CLASSB_NET;
1076 	} else if (net < 14680064L) { /* 224 * 65536 */
1077 		addr = net << IN_CLASSC_NSHIFT;
1078 		mask = IN_CLASSC_NET;
1079 	} else if (net < 16777216L) {
1080 		addr = net << IN_CLASSC_NSHIFT;
1081 		mask = IN_CLASSD_NET;
1082 	} else {
1083 		addr = net;
1084 		if ((addr & IN_CLASSA_HOST) == 0)
1085 			mask =  IN_CLASSA_NET;
1086 		else if ((addr & IN_CLASSB_HOST) == 0)
1087 			mask =  IN_CLASSB_NET;
1088 		else if ((addr & IN_CLASSC_HOST) == 0)
1089 			mask =  IN_CLASSC_NET;
1090 		else
1091 			mask = -1;
1092 	}
1093 	isin->sin_addr.s_addr = htonl(addr);
1094 	isin = &so_mask.sin;
1095 	isin->sin_addr.s_addr = htonl(mask);
1096 	isin->sin_len = 0;
1097 	isin->sin_family = 0;
1098 	cp = (char *)(&isin->sin_addr + 1);
1099 	while (*--cp == 0 && cp > (char *)isin)
1100 		;
1101 	isin->sin_len = 1 + cp - (char *)isin;
1102 }
1103 
1104 #ifdef INET6
1105 /*
1106  * XXX the function may need more improvement...
1107  */
1108 static int
1109 inet6_makenetandmask(sin6)
1110 	struct sockaddr_in6 *sin6;
1111 {
1112 	char *plen;
1113 	struct in6_addr in6;
1114 
1115 	plen = NULL;
1116 	if (IN6_IS_ADDR_UNSPECIFIED(&sin6->sin6_addr) &&
1117 	    sin6->sin6_scope_id == 0) {
1118 		plen = "0";
1119 	} else if ((sin6->sin6_addr.s6_addr[0] & 0xe0) == 0x20) {
1120 		/* aggregatable global unicast - RFC2374 */
1121 		memset(&in6, 0, sizeof(in6));
1122 		if (!memcmp(&sin6->sin6_addr.s6_addr[8], &in6.s6_addr[8], 8))
1123 			plen = "64";
1124 	}
1125 
1126 	if (!plen || strcmp(plen, "128") == 0)
1127 		return 1;
1128 	else {
1129 		rtm_addrs |= RTA_NETMASK;
1130 		(void)prefixlen(plen);
1131 		return 0;
1132 	}
1133 }
1134 #endif
1135 
1136 /*
1137  * Interpret an argument as a network address of some kind,
1138  * returning 1 if a host address, 0 if a network address.
1139  */
1140 static int
1141 getaddr(which, s, hpp)
1142 	int which;
1143 	char *s;
1144 	struct hostent **hpp;
1145 {
1146 	sup su;
1147 	struct hostent *hp;
1148 	struct netent *np;
1149 	u_int32_t val;
1150 	char *t;
1151 	int afamily;  /* local copy of af so we can change it */
1152 
1153 	if (af == 0) {
1154 		af = AF_INET;
1155 		aflen = sizeof(struct sockaddr_in);
1156 	}
1157 	afamily = af;
1158 	rtm_addrs |= which;
1159 	switch (which) {
1160 	case RTA_DST:
1161 		su = &so_dst;
1162 		break;
1163 	case RTA_GATEWAY:
1164 		su = &so_gate;
1165 		break;
1166 	case RTA_NETMASK:
1167 		su = &so_mask;
1168 		break;
1169 	case RTA_GENMASK:
1170 		su = &so_genmask;
1171 		break;
1172 	case RTA_IFP:
1173 		su = &so_ifp;
1174 		afamily = AF_LINK;
1175 		break;
1176 	case RTA_IFA:
1177 		su = &so_ifa;
1178 		su->sa.sa_family = af;
1179 		break;
1180 	default:
1181 		su = NULL;
1182 		usage("Internal Error");
1183 		/*NOTREACHED*/
1184 	}
1185 	su->sa.sa_len = aflen;
1186 	su->sa.sa_family = afamily; /* cases that don't want it have left already */
1187 	if (strcmp(s, "default") == 0) {
1188 		switch (which) {
1189 		case RTA_DST:
1190 			forcenet++;
1191 			(void) getaddr(RTA_NETMASK, s, 0);
1192 			break;
1193 		case RTA_NETMASK:
1194 		case RTA_GENMASK:
1195 			su->sa.sa_len = 0;
1196 		}
1197 		return (0);
1198 	}
1199 	switch (afamily) {
1200 #ifndef SMALL
1201 #ifdef INET6
1202 	case AF_INET6:
1203 	    {
1204 		struct addrinfo hints, *res;
1205 		char *slash = 0;
1206 
1207 		if (which == RTA_DST && (slash = (strrchr(s, '/'))) != 0)
1208 			*slash = '\0';
1209 		memset(&hints, 0, sizeof(hints));
1210 		hints.ai_family = afamily;	/*AF_INET6*/
1211 		hints.ai_flags = AI_NUMERICHOST;
1212 		hints.ai_socktype = SOCK_DGRAM;		/*dummy*/
1213 		if (getaddrinfo(s, "0", &hints, &res) != 0) {
1214 			hints.ai_flags = 0;
1215 			if (slash) {
1216 				*slash = '/';
1217 				slash = 0;
1218 			}
1219 			if (getaddrinfo(s, "0", &hints, &res) != 0) {
1220 				(void) fprintf(stderr, "%s: bad value\n", s);
1221 				exit(1);
1222 			}
1223 		}
1224 		if (slash)
1225 			*slash = '/';
1226 		if (sizeof(su->sin6) != res->ai_addrlen) {
1227 			(void) fprintf(stderr, "%s: bad value\n", s);
1228 			exit(1);
1229 		}
1230 		if (res->ai_next) {
1231 			(void) fprintf(stderr,
1232 			    "%s: resolved to multiple values\n", s);
1233 			exit(1);
1234 		}
1235 		memcpy(&su->sin6, res->ai_addr, sizeof(su->sin6));
1236 		freeaddrinfo(res);
1237 #ifdef __KAME__
1238 		if ((IN6_IS_ADDR_LINKLOCAL(&su->sin6.sin6_addr) ||
1239 		     IN6_IS_ADDR_MC_LINKLOCAL(&su->sin6.sin6_addr)) &&
1240 		    su->sin6.sin6_scope_id) {
1241 			*(u_int16_t *)&su->sin6.sin6_addr.s6_addr[2] =
1242 				htons(su->sin6.sin6_scope_id);
1243 			su->sin6.sin6_scope_id = 0;
1244 		}
1245 #endif
1246 		if (hints.ai_flags == AI_NUMERICHOST) {
1247 			if (slash)
1248 				return (prefixlen(slash + 1));
1249 			if (which == RTA_DST)
1250 				return (inet6_makenetandmask(&su->sin6));
1251 			return (0);
1252 		} else
1253 			return (1);
1254 	    }
1255 #endif
1256 
1257 	case AF_NS:
1258 		if (which == RTA_DST) {
1259 			struct sockaddr_ns *sms = &(so_mask.sns);
1260 			memset(sms, 0, sizeof(*sms));
1261 			sms->sns_family = 0;
1262 			sms->sns_len = 6;
1263 			sms->sns_addr.x_net = *(union ns_net *)ns_bh;
1264 			rtm_addrs |= RTA_NETMASK;
1265 		}
1266 		su->sns.sns_addr = ns_addr(s);
1267 		return (!ns_nullhost(su->sns.sns_addr));
1268 
1269 	case AF_OSI:
1270 		su->siso.siso_addr = *iso_addr(s);
1271 		if (which == RTA_NETMASK || which == RTA_GENMASK) {
1272 			char *cp = (char *)TSEL(&su->siso);
1273 			su->siso.siso_nlen = 0;
1274 			do {--cp ;} while ((cp > (char *)su) && (*cp == 0));
1275 			su->siso.siso_len = 1 + cp - (char *)su;
1276 		}
1277 		return (1);
1278 
1279 	case AF_CCITT:
1280 		ccitt_addr(s, &su->sx25);
1281 		return (which == RTA_DST ? x25_makemask() : 1);
1282 #endif /* SMALL */
1283 
1284 	case PF_ROUTE:
1285 		su->sa.sa_len = sizeof(*su);
1286 		sockaddr(s, &su->sa);
1287 		return (1);
1288 
1289 #ifndef SMALL
1290 	case AF_APPLETALK:
1291 		t = strchr (s, '.');
1292 		if (!t) {
1293 badataddr:
1294 			errx(1, "bad address: %s", s);
1295 		}
1296 		val = atoi (s);
1297 		if (val > 65535)
1298 			goto badataddr;
1299 		su->sat.sat_addr.s_net = val;
1300 		val = atoi (t);
1301 		if (val > 256)
1302 			goto badataddr;
1303 		su->sat.sat_addr.s_node = val;
1304 		rtm_addrs |= RTA_NETMASK;
1305 		return(forcehost || su->sat.sat_addr.s_node != 0);
1306 #endif
1307 
1308 	case AF_LINK:
1309 		link_addr(s, &su->sdl);
1310 		return (1);
1311 
1312 	case AF_INET:
1313 	default:
1314 		break;
1315 	}
1316 
1317 	if (hpp == NULL)
1318 		hpp = &hp;
1319 	*hpp = NULL;
1320 
1321 	if ((t = strchr(s, '/')) != NULL && which == RTA_DST) {
1322 		*t = '\0';
1323 		if ((val = inet_addr(s)) != INADDR_NONE) {
1324 			inet_makenetandmask(htonl(val), &su->sin);
1325 			return prefixlen(&t[1]);
1326 		}
1327 		*t = '/';
1328 	}
1329 	if (((val = inet_addr(s)) != INADDR_NONE) &&
1330 	    (which != RTA_DST || forcenet == 0)) {
1331 		su->sin.sin_addr.s_addr = val;
1332 		if (inet_lnaof(su->sin.sin_addr) != INADDR_ANY)
1333 			return (1);
1334 		else {
1335 			val = ntohl(val);
1336 			goto netdone;
1337 		}
1338 	}
1339 	if ((val = inet_network(s)) != INADDR_NONE ||
1340 	    ((np = getnetbyname(s)) != NULL && (val = np->n_net) != 0)) {
1341 netdone:
1342 		if (which == RTA_DST)
1343 			inet_makenetandmask(val, &su->sin);
1344 		return (0);
1345 	}
1346 	hp = gethostbyname(s);
1347 	if (hp) {
1348 		*hpp = hp;
1349 		su->sin.sin_family = hp->h_addrtype;
1350 		memmove(&su->sin.sin_addr, hp->h_addr, hp->h_length);
1351 		return (1);
1352 	}
1353 	errx(1, "bad value: %s", s);
1354 }
1355 
1356 int
1357 prefixlen(s)
1358 	char *s;
1359 {
1360 	int len = atoi(s), q, r;
1361 	int max;
1362 
1363 	switch (af) {
1364 	case AF_INET:
1365 		max = sizeof(struct in_addr) * 8;
1366 		break;
1367 #ifdef INET6
1368 	case AF_INET6:
1369 		max = sizeof(struct in6_addr) * 8;
1370 		break;
1371 #endif
1372 	default:
1373 		(void) fprintf(stderr,
1374 		    "prefixlen is not supported with af %d\n", af);
1375 		exit(1);
1376 	}
1377 
1378 	rtm_addrs |= RTA_NETMASK;
1379 	if (len < -1 || len > max) {
1380 		(void) fprintf(stderr, "%s: bad value\n", s);
1381 		exit(1);
1382 	}
1383 
1384 	q = len >> 3;
1385 	r = len & 7;
1386 	switch (af) {
1387 	case AF_INET:
1388 		memset(&so_mask, 0, sizeof(so_mask));
1389 		so_mask.sin.sin_family = AF_INET;
1390 		so_mask.sin.sin_len = sizeof(struct sockaddr_in);
1391 		so_mask.sin.sin_addr.s_addr = htonl(0xffffffff << (32 - len));
1392 		break;
1393 #ifdef INET6
1394 	case AF_INET6:
1395 		so_mask.sin6.sin6_family = AF_INET6;
1396 		so_mask.sin6.sin6_len = sizeof(struct sockaddr_in6);
1397 		memset((void *)&so_mask.sin6.sin6_addr, 0,
1398 			sizeof(so_mask.sin6.sin6_addr));
1399 		if (q > 0)
1400 			memset((void *)&so_mask.sin6.sin6_addr, 0xff, q);
1401 		if (r > 0)
1402 			*((u_char *)&so_mask.sin6.sin6_addr + q) =
1403 			    (0xff00 >> r) & 0xff;
1404 		break;
1405 #endif
1406 	}
1407 	return (len == max);
1408 }
1409 
1410 #ifndef SMALL
1411 int
1412 x25_makemask()
1413 {
1414 	char *cp;
1415 
1416 	if ((rtm_addrs & RTA_NETMASK) == 0) {
1417 		rtm_addrs |= RTA_NETMASK;
1418 		for (cp = (char *)&so_mask.sx25.x25_net;
1419 		     cp < &so_mask.sx25.x25_opts.op_flags; cp++)
1420 			*cp = -1;
1421 		so_mask.sx25.x25_len = (u_char)&(((sup)0)->sx25.x25_opts);
1422 	}
1423 	return 0;
1424 }
1425 
1426 
1427 char *
1428 ns_print(sns)
1429 	struct sockaddr_ns *sns;
1430 {
1431 	struct ns_addr work;
1432 	union { union ns_net net_e; u_int32_t int32_t_e; } net;
1433 	u_short port;
1434 	static char mybuf[50], cport[10], chost[25];
1435 	char *host = "";
1436 	char *p;
1437 	u_char *q;
1438 
1439 	work = sns->sns_addr;
1440 	port = ntohs(work.x_port);
1441 	work.x_port = 0;
1442 	net.net_e  = work.x_net;
1443 	if (ns_nullhost(work) && net.int32_t_e == 0) {
1444 		if (!port)
1445 			return ("*.*");
1446 		(void)snprintf(mybuf, sizeof mybuf, "*.%XH", port);
1447 		return (mybuf);
1448 	}
1449 
1450 	if (memcmp(ns_bh, work.x_host.c_host, 6) == 0)
1451 		host = "any";
1452 	else if (memcmp(ns_nullh, work.x_host.c_host, 6) == 0)
1453 		host = "*";
1454 	else {
1455 		q = work.x_host.c_host;
1456 		(void)snprintf(chost, sizeof chost, "%02X%02X%02X%02X%02X%02XH",
1457 			q[0], q[1], q[2], q[3], q[4], q[5]);
1458 		for (p = chost; *p == '0' && p < chost + 12; p++)
1459 			/* void */;
1460 		host = p;
1461 	}
1462 	if (port)
1463 		(void)snprintf(cport, sizeof cport, ".%XH", htons(port));
1464 	else
1465 		*cport = 0;
1466 
1467 	(void)snprintf(mybuf, sizeof mybuf, "%XH.%s%s",
1468 	    (u_int32_t)ntohl(net.int32_t_e), host, cport);
1469 	return (mybuf);
1470 }
1471 
1472 static void
1473 interfaces()
1474 {
1475 	size_t needed;
1476 	int mib[6];
1477 	char *buf, *lim, *next;
1478 	struct rt_msghdr *rtm;
1479 
1480 	mib[0] = CTL_NET;
1481 	mib[1] = PF_ROUTE;
1482 	mib[2] = 0;		/* protocol */
1483 	mib[3] = 0;		/* wildcard address family */
1484 	mib[4] = NET_RT_IFLIST;
1485 	mib[5] = 0;		/* no flags */
1486 	if (sysctl(mib, 6, NULL, &needed, NULL, 0) < 0)
1487 		err(1, "route-sysctl-estimate");
1488 	if ((buf = malloc(needed)) == NULL)
1489 		err(1, "malloc");
1490 	if (sysctl(mib, 6, buf, &needed, NULL, 0) < 0)
1491 		err(1, "actual retrieval of interface table");
1492 	lim = buf + needed;
1493 	for (next = buf; next < lim; next += rtm->rtm_msglen) {
1494 		rtm = (struct rt_msghdr *)next;
1495 		print_rtmsg(rtm, rtm->rtm_msglen);
1496 	}
1497 }
1498 
1499 static void
1500 monitor()
1501 {
1502 	int n;
1503 	char msg[2048];
1504 
1505 	verbose = 1;
1506 	if (debugonly) {
1507 		interfaces();
1508 		exit(0);
1509 	}
1510 	for(;;) {
1511 		time_t now;
1512 		n = read(sock, msg, 2048);
1513 		now = time(NULL);
1514 		(void) printf("got message of size %d on %s", n, ctime(&now));
1515 		print_rtmsg((struct rt_msghdr *)msg, n);
1516 	}
1517 }
1518 
1519 #endif /* SMALL */
1520 
1521 
1522 struct {
1523 	struct	rt_msghdr m_rtm;
1524 	char	m_space[512];
1525 } m_rtmsg;
1526 
1527 static int
1528 rtmsg(cmd, flags)
1529 	int cmd, flags;
1530 {
1531 	static int seq;
1532 	int rlen;
1533 	char *cp = m_rtmsg.m_space;
1534 	int l;
1535 
1536 #define NEXTADDR(w, u) \
1537 	if (rtm_addrs & (w)) {\
1538 	    l = ROUNDUP(u.sa.sa_len); memmove(cp, &(u), l); cp += l;\
1539 	    if (verbose && ! shortoutput) sodump(&(u),"u");\
1540 	}
1541 
1542 	errno = 0;
1543 	memset(&m_rtmsg, 0, sizeof(m_rtmsg));
1544 	if (cmd == 'a')
1545 		cmd = RTM_ADD;
1546 	else if (cmd == 'c')
1547 		cmd = RTM_CHANGE;
1548 	else if (cmd == 'g') {
1549 #ifdef	SMALL
1550 		return (-1);
1551 #else	/* SMALL */
1552 		cmd = RTM_GET;
1553 		if (so_ifp.sa.sa_family == 0) {
1554 			so_ifp.sa.sa_family = AF_LINK;
1555 			so_ifp.sa.sa_len = sizeof(struct sockaddr_dl);
1556 			rtm_addrs |= RTA_IFP;
1557 		}
1558 #endif	/* SMALL */
1559 	} else
1560 		cmd = RTM_DELETE;
1561 #define rtm m_rtmsg.m_rtm
1562 	rtm.rtm_type = cmd;
1563 	rtm.rtm_flags = flags;
1564 	rtm.rtm_version = RTM_VERSION;
1565 	rtm.rtm_seq = ++seq;
1566 	rtm.rtm_addrs = rtm_addrs;
1567 	rtm.rtm_rmx = rt_metrics;
1568 	rtm.rtm_inits = rtm_inits;
1569 
1570 	if (rtm_addrs & RTA_NETMASK)
1571 		mask_addr();
1572 	NEXTADDR(RTA_DST, so_dst);
1573 	NEXTADDR(RTA_GATEWAY, so_gate);
1574 	NEXTADDR(RTA_NETMASK, so_mask);
1575 	NEXTADDR(RTA_GENMASK, so_genmask);
1576 	NEXTADDR(RTA_IFP, so_ifp);
1577 	NEXTADDR(RTA_IFA, so_ifa);
1578 	rtm.rtm_msglen = l = cp - (char *)&m_rtmsg;
1579 	if (verbose && ! shortoutput)
1580 		print_rtmsg(&rtm, l);
1581 	if (debugonly)
1582 		return (0);
1583 	if ((rlen = write(sock, (char *)&m_rtmsg, l)) < 0) {
1584 		perror("writing to routing socket");
1585 		return (-1);
1586 	}
1587 #ifndef	SMALL
1588 	if (cmd == RTM_GET) {
1589 		do {
1590 			l = read(sock, (char *)&m_rtmsg, sizeof(m_rtmsg));
1591 		} while (l > 0 && (rtm.rtm_seq != seq || rtm.rtm_pid != pid));
1592 		if (l < 0)
1593 			err(1, "read from routing socket");
1594 		else
1595 			print_getmsg(&rtm, l);
1596 	}
1597 #endif	/* SMALL */
1598 #undef rtm
1599 	return (0);
1600 }
1601 
1602 static void
1603 mask_addr()
1604 {
1605 	int olen = so_mask.sa.sa_len;
1606 	char *cp1 = olen + (char *)&so_mask, *cp2;
1607 
1608 	for (so_mask.sa.sa_len = 0; cp1 > (char *)&so_mask; )
1609 		if (*--cp1 != 0) {
1610 			so_mask.sa.sa_len = 1 + cp1 - (char *)&so_mask;
1611 			break;
1612 		}
1613 	if ((rtm_addrs & RTA_DST) == 0)
1614 		return;
1615 	switch (so_dst.sa.sa_family) {
1616 	case AF_INET:
1617 #ifdef INET6
1618 	case AF_INET6:
1619 #endif
1620 #ifndef SMALL
1621 	case AF_APPLETALK:
1622 	case AF_NS:
1623 	case AF_CCITT:
1624 #endif /* SMALL */
1625 	case 0:
1626 		return;
1627 #ifndef SMALL
1628 	case AF_ISO:
1629 		olen = MIN(so_dst.siso.siso_nlen,
1630 			   MAX(so_mask.sa.sa_len - 6, 0));
1631 		break;
1632 #endif /* SMALL */
1633 	}
1634 	cp1 = so_mask.sa.sa_len + 1 + (char *)&so_dst;
1635 	cp2 = so_dst.sa.sa_len + 1 + (char *)&so_dst;
1636 	while (cp2 > cp1)
1637 		*--cp2 = 0;
1638 	cp2 = so_mask.sa.sa_len + 1 + (char *)&so_mask;
1639 	while (cp1 > so_dst.sa.sa_data)
1640 		*--cp1 &= *--cp2;
1641 #ifndef SMALL
1642 	switch (so_dst.sa.sa_family) {
1643 	case AF_ISO:
1644 		so_dst.siso.siso_nlen = olen;
1645 		break;
1646 	}
1647 #endif /* SMALL */
1648 }
1649 
1650 char *msgtypes[] = {
1651 	"",
1652 	"RTM_ADD: Add Route",
1653 	"RTM_DELETE: Delete Route",
1654 	"RTM_CHANGE: Change Metrics or flags",
1655 	"RTM_GET: Report Metrics",
1656 	"RTM_LOSING: Kernel Suspects Partitioning",
1657 	"RTM_REDIRECT: Told to use different route",
1658 	"RTM_MISS: Lookup failed on this address",
1659 	"RTM_LOCK: fix specified metrics",
1660 	"RTM_OLDADD: caused by SIOCADDRT",
1661 	"RTM_OLDDEL: caused by SIOCDELRT",
1662 	"RTM_RESOLVE: Route created by cloning",
1663 	"RTM_NEWADDR: address being added to iface",
1664 	"RTM_DELADDR: address being removed from iface",
1665 	"RTM_OIFINFO: iface status change (pre-1.5)",
1666 	"RTM_IFINFO: iface status change",
1667 	"RTM_IFANNOUNCE: iface arrival/departure",
1668 	0,
1669 };
1670 
1671 char metricnames[] =
1672 "\011pksent\010rttvar\7rtt\6ssthresh\5sendpipe\4recvpipe\3expire\2hopcount\1mtu";
1673 char routeflags[] =
1674 "\1UP\2GATEWAY\3HOST\4REJECT\5DYNAMIC\6MODIFIED\7DONE\010MASK_PRESENT\011CLONING\012XRESOLVE\013LLINFO\014STATIC\015BLACKHOLE\016CLONED\017PROTO2\020PROTO1";
1675 char ifnetflags[] =
1676 "\1UP\2BROADCAST\3DEBUG\4LOOPBACK\5PTP\6NOTRAILERS\7RUNNING\010NOARP\011PPROMISC\012ALLMULTI\013OACTIVE\014SIMPLEX\015LINK0\016LINK1\017LINK2\020MULTICAST";
1677 char addrnames[] =
1678 "\1DST\2GATEWAY\3NETMASK\4GENMASK\5IFP\6IFA\7AUTHOR\010BRD";
1679 
1680 
1681 #ifndef SMALL
1682 static const char *
1683 linkstate(ifm)
1684 	struct if_msghdr *ifm;
1685 {
1686 	static char buf[64];
1687 
1688 	switch (ifm->ifm_data.ifi_link_state) {
1689 	case LINK_STATE_UNKNOWN:
1690 		return "carrier: unknown";
1691 	case LINK_STATE_DOWN:
1692 		return "carrier: no carrier";
1693 	case LINK_STATE_UP:
1694 		return "carrier: active";
1695 	default:
1696 		(void)snprintf(buf, sizeof(buf), "carrier: 0x%x",
1697 		    ifm->ifm_data.ifi_link_state);
1698 		return buf;
1699 	}
1700 }
1701 #endif /* SMALL */
1702 
1703 static void
1704 print_rtmsg(rtm, msglen)
1705 	struct rt_msghdr *rtm;
1706 	int msglen;
1707 {
1708 	struct if_msghdr *ifm;
1709 	struct ifa_msghdr *ifam;
1710 	struct if_announcemsghdr *ifan;
1711 
1712 	if (verbose == 0)
1713 		return;
1714 	if (rtm->rtm_version != RTM_VERSION) {
1715 		(void) printf("routing message version %d not understood\n",
1716 		    rtm->rtm_version);
1717 		return;
1718 	}
1719 	if (msgtypes[rtm->rtm_type])
1720 		(void)printf("%s: ", msgtypes[rtm->rtm_type]);
1721 	else
1722 		(void)printf("#%d: ", rtm->rtm_type);
1723 	(void)printf("len %d, ", rtm->rtm_msglen);
1724 	switch (rtm->rtm_type) {
1725 	case RTM_IFINFO:
1726 		ifm = (struct if_msghdr *)rtm;
1727 		(void) printf("if# %d, %s, flags:", ifm->ifm_index,
1728 #ifdef SMALL
1729 		    ""
1730 #else
1731 		    linkstate(ifm)
1732 #endif /* SMALL */
1733 		    );
1734 		bprintf(stdout, ifm->ifm_flags, ifnetflags);
1735 		pmsg_addrs((char *)(ifm + 1), ifm->ifm_addrs);
1736 		break;
1737 	case RTM_NEWADDR:
1738 	case RTM_DELADDR:
1739 		ifam = (struct ifa_msghdr *)rtm;
1740 		(void) printf("metric %d, flags:", ifam->ifam_metric);
1741 		bprintf(stdout, ifam->ifam_flags, routeflags);
1742 		pmsg_addrs((char *)(ifam + 1), ifam->ifam_addrs);
1743 		break;
1744 	case RTM_IFANNOUNCE:
1745 		ifan = (struct if_announcemsghdr *)rtm;
1746 		(void) printf("if# %d, what: ", ifan->ifan_index);
1747 		switch (ifan->ifan_what) {
1748 		case IFAN_ARRIVAL:
1749 			printf("arrival");
1750 			break;
1751 		case IFAN_DEPARTURE:
1752 			printf("departure");
1753 			break;
1754 		default:
1755 			printf("#%d", ifan->ifan_what);
1756 			break;
1757 		}
1758 		printf("\n");
1759 		break;
1760 	default:
1761 		(void) printf("pid: %d, seq %d, errno %d, flags:",
1762 			rtm->rtm_pid, rtm->rtm_seq, rtm->rtm_errno);
1763 		bprintf(stdout, rtm->rtm_flags, routeflags);
1764 		pmsg_common(rtm);
1765 	}
1766 }
1767 
1768 #ifndef	SMALL
1769 static void
1770 print_getmsg(rtm, msglen)
1771 	struct rt_msghdr *rtm;
1772 	int msglen;
1773 {
1774 	struct sockaddr *dst = NULL, *gate = NULL, *mask = NULL, *ifa = NULL;
1775 	struct sockaddr_dl *ifp = NULL;
1776 	struct sockaddr *sa;
1777 	char *cp;
1778 	int i;
1779 
1780 	if (! shortoutput)
1781 		(void) printf("   route to: %s\n",
1782 		    routename((struct sockaddr *) &so_dst, NULL, RTF_HOST));
1783 	if (rtm->rtm_version != RTM_VERSION) {
1784 		warnx("routing message version %d not understood",
1785 		    rtm->rtm_version);
1786 		return;
1787 	}
1788 	if (rtm->rtm_msglen > msglen) {
1789 		warnx("message length mismatch, in packet %d, returned %d",
1790 		    rtm->rtm_msglen, msglen);
1791 	}
1792 	if (rtm->rtm_errno)  {
1793 		warn("RTM_GET");
1794 		return;
1795 	}
1796 	cp = ((char *)(rtm + 1));
1797 	if (rtm->rtm_addrs)
1798 		for (i = 1; i; i <<= 1)
1799 			if (i & rtm->rtm_addrs) {
1800 				sa = (struct sockaddr *)cp;
1801 				switch (i) {
1802 				case RTA_DST:
1803 					dst = sa;
1804 					break;
1805 				case RTA_GATEWAY:
1806 					gate = sa;
1807 					break;
1808 				case RTA_NETMASK:
1809 					mask = sa;
1810 					break;
1811 				case RTA_IFP:
1812 					if (sa->sa_family == AF_LINK &&
1813 					   ((struct sockaddr_dl *)sa)->sdl_nlen)
1814 						ifp = (struct sockaddr_dl *)sa;
1815 					break;
1816 				case RTA_IFA:
1817 					ifa = sa;
1818 					break;
1819 				}
1820 				ADVANCE(cp, sa);
1821 			}
1822 	if (dst && mask)
1823 		mask->sa_family = dst->sa_family;	/* XXX */
1824 	if (dst && ! shortoutput)
1825 		(void)printf("destination: %s\n",
1826 		    routename(dst, mask, RTF_HOST));
1827 	if (mask && ! shortoutput) {
1828 		int savenflag = nflag;
1829 
1830 		nflag = 1;
1831 		(void)printf("       mask: %s\n",
1832 		    routename(mask, NULL, RTF_HOST));
1833 		nflag = savenflag;
1834 	}
1835 	if (gate && rtm->rtm_flags & RTF_GATEWAY && ! shortoutput)
1836 		(void)printf("    gateway: %s\n",
1837 		    routename(gate, NULL, RTF_HOST));
1838 	if (ifa && ! shortoutput)
1839 		(void)printf(" local addr: %s\n",
1840 		    routename(ifa, NULL, RTF_HOST));
1841 	if (ifp && ! shortoutput)
1842 		(void)printf("  interface: %.*s\n",
1843 		    ifp->sdl_nlen, ifp->sdl_data);
1844 	if (! shortoutput) {
1845 		(void)printf("      flags: ");
1846 		bprintf(stdout, rtm->rtm_flags, routeflags);
1847 	}
1848 
1849 #define lock(f)	((rtm->rtm_rmx.rmx_locks & __CONCAT(RTV_,f)) ? 'L' : ' ')
1850 #define msec(u)	(((u) + 500) / 1000)		/* usec to msec */
1851 
1852 	if (! shortoutput) {
1853 		(void) printf("\n%s\n", "\
1854  recvpipe  sendpipe  ssthresh  rtt,msec    rttvar  hopcount      mtu     expire");
1855 		printf("%8ld%c ", rtm->rtm_rmx.rmx_recvpipe, lock(RPIPE));
1856 		printf("%8ld%c ", rtm->rtm_rmx.rmx_sendpipe, lock(SPIPE));
1857 		printf("%8ld%c ", rtm->rtm_rmx.rmx_ssthresh, lock(SSTHRESH));
1858 		printf("%8ld%c ", msec(rtm->rtm_rmx.rmx_rtt), lock(RTT));
1859 		printf("%8ld%c ", msec(rtm->rtm_rmx.rmx_rttvar), lock(RTTVAR));
1860 		printf("%8ld%c ", rtm->rtm_rmx.rmx_hopcount, lock(HOPCOUNT));
1861 		printf("%8ld%c ", rtm->rtm_rmx.rmx_mtu, lock(MTU));
1862 		if (rtm->rtm_rmx.rmx_expire)
1863 			rtm->rtm_rmx.rmx_expire -= time(0);
1864 		printf("%8ld%c\n", rtm->rtm_rmx.rmx_expire, lock(EXPIRE));
1865 	}
1866 #undef lock
1867 #undef msec
1868 #define	RTA_IGN	(RTA_DST|RTA_GATEWAY|RTA_NETMASK|RTA_IFP|RTA_IFA|RTA_BRD)
1869 
1870 	if ((rtm->rtm_addrs & RTF_GATEWAY) == 0)
1871 		rv = 1;
1872 	else {
1873 		char *name;
1874 		int addrs;
1875 
1876 		cp = (char *)(rtm + 1);
1877 		addrs = rtm->rtm_addrs;
1878 
1879 		for (i = 1; i; i <<= 1) {
1880 			sa = (struct sockaddr *)cp;
1881 			if (i == RTF_GATEWAY) {
1882 				name = routename(sa, NULL, RTF_HOST);
1883 				if (name[0] == '\0')
1884 					rv = 1;
1885 				else if (shortoutput)
1886 					printf("%s\n", name);
1887 			}
1888 			if (i & addrs)
1889 				ADVANCE(cp, sa);
1890 		}
1891 	}
1892 
1893 	if (shortoutput)
1894 		return;
1895 	else if (verbose)
1896 		pmsg_common(rtm);
1897 	else if (rtm->rtm_addrs &~ RTA_IGN) {
1898 		(void) printf("sockaddrs: ");
1899 		bprintf(stdout, rtm->rtm_addrs, addrnames);
1900 		putchar('\n');
1901 	}
1902 #undef	RTA_IGN
1903 }
1904 #endif	/* SMALL */
1905 
1906 void
1907 pmsg_common(rtm)
1908 	struct rt_msghdr *rtm;
1909 {
1910 	(void) printf("\nlocks: ");
1911 	bprintf(stdout, rtm->rtm_rmx.rmx_locks, metricnames);
1912 	(void) printf(" inits: ");
1913 	bprintf(stdout, rtm->rtm_inits, metricnames);
1914 	pmsg_addrs(((char *)(rtm + 1)), rtm->rtm_addrs);
1915 }
1916 
1917 static void
1918 pmsg_addrs(cp, addrs)
1919 	char	*cp;
1920 	int	addrs;
1921 {
1922 	struct sockaddr *sa;
1923 	int i;
1924 
1925 	if (addrs != 0) {
1926 		(void) printf("\nsockaddrs: ");
1927 		bprintf(stdout, addrs, addrnames);
1928 		(void) putchar('\n');
1929 		for (i = 1; i; i <<= 1)
1930 			if (i & addrs) {
1931 				sa = (struct sockaddr *)cp;
1932 				(void) printf(" %s",
1933 				    routename(sa, NULL, RTF_HOST));
1934 				ADVANCE(cp, sa);
1935 			}
1936 	}
1937 	(void) putchar('\n');
1938 	(void) fflush(stdout);
1939 }
1940 
1941 static void
1942 bprintf(fp, b, s)
1943 	FILE *fp;
1944 	int b;
1945 	u_char *s;
1946 {
1947 	int i;
1948 	int gotsome = 0;
1949 
1950 	if (b == 0)
1951 		return;
1952 	while ((i = *s++) != 0) {
1953 		if (b & (1 << (i-1))) {
1954 			if (gotsome == 0)
1955 				i = '<';
1956 			else
1957 				i = ',';
1958 			(void) putc(i, fp);
1959 			gotsome = 1;
1960 			for (; (i = *s) > 32; s++)
1961 				(void) putc(i, fp);
1962 		} else
1963 			while (*s > 32)
1964 				s++;
1965 	}
1966 	if (gotsome)
1967 		(void) putc('>', fp);
1968 }
1969 
1970 static int
1971 keyword(cp)
1972 	char *cp;
1973 {
1974 	struct keytab *kt = keywords;
1975 
1976 	while (kt->kt_cp && strcmp(kt->kt_cp, cp))
1977 		kt++;
1978 	return kt->kt_i;
1979 }
1980 
1981 static void
1982 sodump(su, which)
1983 	sup su;
1984 	char *which;
1985 {
1986 #ifdef INET6
1987 	char ntop_buf[NI_MAXHOST];
1988 #endif
1989 
1990 	switch (su->sa.sa_family) {
1991 	case AF_INET:
1992 		(void) printf("%s: inet %s; ",
1993 		    which, inet_ntoa(su->sin.sin_addr));
1994 		break;
1995 #ifndef SMALL
1996 	case AF_APPLETALK:
1997 		(void) printf("%s: atalk %d.%d; ",
1998 		    which, su->sat.sat_addr.s_net, su->sat.sat_addr.s_node);
1999 		break;
2000 #endif
2001 	case AF_LINK:
2002 		(void) printf("%s: link %s; ",
2003 		    which, link_ntoa(&su->sdl));
2004 		break;
2005 #ifndef SMALL
2006 #ifdef INET6
2007 	case AF_INET6:
2008 		(void) printf("%s: inet6 %s; ",
2009 		    which, inet_ntop(AF_INET6, &su->sin6.sin6_addr,
2010 				     ntop_buf, sizeof(ntop_buf)));
2011 		break;
2012 #endif
2013 	case AF_ISO:
2014 		(void) printf("%s: iso %s; ",
2015 		    which, iso_ntoa(&su->siso.siso_addr));
2016 		break;
2017 	case AF_NS:
2018 		(void) printf("%s: xns %s; ",
2019 		    which, ns_ntoa(su->sns.sns_addr));
2020 		break;
2021 #endif /* SMALL */
2022 	default:
2023 		(void) printf("af %p: %s; ",
2024 			which, any_ntoa(&su->sa));
2025 	}
2026 	(void) fflush(stdout);
2027 }
2028 
2029 /* States*/
2030 #define VIRGIN	0
2031 #define GOTONE	1
2032 #define GOTTWO	2
2033 /* Inputs */
2034 #define	DIGIT	(4*0)
2035 #define	END	(4*1)
2036 #define DELIM	(4*2)
2037 
2038 static void
2039 sockaddr(addr, sa)
2040 	char *addr;
2041 	struct sockaddr *sa;
2042 {
2043 	char *cp = (char *)sa;
2044 	int size = sa->sa_len;
2045 	char *cplim = cp + size;
2046 	int byte = 0, state = VIRGIN, new = 0;
2047 
2048 	(void) memset(cp, 0, size);
2049 	cp++;
2050 	do {
2051 		if ((*addr >= '0') && (*addr <= '9')) {
2052 			new = *addr - '0';
2053 		} else if ((*addr >= 'a') && (*addr <= 'f')) {
2054 			new = *addr - 'a' + 10;
2055 		} else if ((*addr >= 'A') && (*addr <= 'F')) {
2056 			new = *addr - 'A' + 10;
2057 		} else if (*addr == 0)
2058 			state |= END;
2059 		else
2060 			state |= DELIM;
2061 		addr++;
2062 		switch (state /* | INPUT */) {
2063 		case GOTTWO | DIGIT:
2064 			*cp++ = byte; /*FALLTHROUGH*/
2065 		case VIRGIN | DIGIT:
2066 			state = GOTONE; byte = new; continue;
2067 		case GOTONE | DIGIT:
2068 			state = GOTTWO; byte = new + (byte << 4); continue;
2069 		default: /* | DELIM */
2070 			state = VIRGIN; *cp++ = byte; byte = 0; continue;
2071 		case GOTONE | END:
2072 		case GOTTWO | END:
2073 			*cp++ = byte; /* FALLTHROUGH */
2074 		case VIRGIN | END:
2075 			break;
2076 		}
2077 		break;
2078 	} while (cp < cplim);
2079 	sa->sa_len = cp - (char *)sa;
2080 }
2081