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route.c revision 1.6
      1 /*
      2  * Copyright (c) 1983, 1988 Regents of the University of California.
      3  * All rights reserved.
      4  *
      5  * Redistribution and use in source and binary forms, with or without
      6  * modification, are permitted provided that the following conditions
      7  * are met:
      8  * 1. Redistributions of source code must retain the above copyright
      9  *    notice, this list of conditions and the following disclaimer.
     10  * 2. Redistributions in binary form must reproduce the above copyright
     11  *    notice, this list of conditions and the following disclaimer in the
     12  *    documentation and/or other materials provided with the distribution.
     13  * 3. All advertising materials mentioning features or use of this software
     14  *    must display the following acknowledgement:
     15  *	This product includes software developed by the University of
     16  *	California, Berkeley and its contributors.
     17  * 4. Neither the name of the University nor the names of its contributors
     18  *    may be used to endorse or promote products derived from this software
     19  *    without specific prior written permission.
     20  *
     21  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     22  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     23  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     24  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     25  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     26  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     27  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     28  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     29  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     30  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     31  * SUCH DAMAGE.
     32  */
     33 
     34 #ifndef lint
     35 /*static char sccsid[] = "from: @(#)route.c	5.20 (Berkeley) 11/29/90";*/
     36 static char rcsid[] = "$Id: route.c,v 1.6 1994/03/06 09:45:24 cgd Exp $";
     37 #endif /* not lint */
     38 
     39 #include <sys/param.h>
     40 #include <sys/socket.h>
     41 #include <sys/mbuf.h>
     42 
     43 #include <net/if.h>
     44 #define  KERNEL
     45 #include <net/route.h>
     46 #undef KERNEL
     47 #include <netinet/in.h>
     48 
     49 #ifdef NS
     50 #include <netns/ns.h>
     51 #endif
     52 
     53 #ifdef ISO
     54 #include <netiso/iso.h>
     55 #include <net/if_dl.h>
     56 #include <netiso/iso_snpac.h>
     57 #endif
     58 
     59 #include <netdb.h>
     60 #include <sys/kinfo.h>
     61 
     62 #include <stdio.h>
     63 #include <string.h>
     64 
     65 extern	int nflag, aflag, Aflag, af;
     66 int do_rtent;
     67 extern	char *routename(), *netname(), *plural();
     68 #ifdef NS
     69 extern	char *ns_print();
     70 #endif
     71 extern	char *malloc();
     72 #define kget(p, d) \
     73 	(kvm_read((off_t)(p), (char *)&(d), sizeof (d)))
     74 
     75 /*
     76  * Definitions for showing gateway flags.
     77  */
     78 struct bits {
     79 	short	b_mask;
     80 	char	b_val;
     81 } bits[] = {
     82 	{ RTF_UP,	'U' },
     83 	{ RTF_GATEWAY,	'G' },
     84 	{ RTF_HOST,	'H' },
     85 	{ RTF_DYNAMIC,	'D' },
     86 	{ RTF_MODIFIED,	'M' },
     87 	{ RTF_CLONING,	'C' },
     88 	{ RTF_XRESOLVE,	'X' },
     89 	{ RTF_LLINFO,	'L' },
     90 	{ RTF_REJECT,	'R' },
     91 	{ 0 }
     92 };
     93 
     94 #ifdef ISO
     95 struct bits2 {
     96 	short	b_mask;
     97 	char	b_val;
     98 } bits2[] = {
     99 	{ SNPA_ES,	'E' },
    100 	{ SNPA_IS,	'I' },
    101 	{ SNPA_PERM,	'P' },
    102 	{ 0 }
    103 };
    104 #endif
    105 
    106 /*
    107  * Print routing tables.
    108  */
    109 routepr(hostaddr, netaddr, hashsizeaddr, treeaddr)
    110 	off_t hostaddr, netaddr, hashsizeaddr, treeaddr;
    111 {
    112 	struct mbuf mb;
    113 	register struct ortentry *rt;
    114 	register struct mbuf *m;
    115 	char name[16], *flags;
    116 	struct mbuf **routehash;
    117 	int hashsize;
    118 	int i, doinghost = 1;
    119 
    120 	printf("Routing tables\n");
    121 	if (treeaddr)
    122 		return treestuff(treeaddr);
    123 	if (hostaddr == 0) {
    124 		printf("rthost: symbol not in namelist\n");
    125 		return;
    126 	}
    127 	if (netaddr == 0) {
    128 		printf("rtnet: symbol not in namelist\n");
    129 		return;
    130 	}
    131 	if (hashsizeaddr == 0) {
    132 		printf("rthashsize: symbol not in namelist\n");
    133 		return;
    134 	}
    135 	kget(hashsizeaddr, hashsize);
    136 	routehash = (struct mbuf **)malloc( hashsize*sizeof (struct mbuf *) );
    137 	kvm_read(hostaddr, (char *)routehash, hashsize*sizeof (struct mbuf *));
    138 again:
    139 	for (i = 0; i < hashsize; i++) {
    140 		if (routehash[i] == 0)
    141 			continue;
    142 		m = routehash[i];
    143 		while (m) {
    144 			kget(m, mb);
    145 			if (Aflag)
    146 				printf("%8.8x ", m);
    147 			p_ortentry((struct ortentry *)(mb.m_dat));
    148 			m = mb.m_next;
    149 		}
    150 	}
    151 	if (doinghost) {
    152 		kvm_read(netaddr, (char *)routehash,
    153 			hashsize*sizeof (struct mbuf *));
    154 		doinghost = 0;
    155 		goto again;
    156 	}
    157 	free((char *)routehash);
    158 	return;
    159 }
    160 
    161 
    162 char *
    163 af_name(af)
    164 {
    165 	static char buf[10];
    166 
    167 	switch(af) {
    168 	case AF_INET:
    169 		return "inet";
    170 	case AF_UNIX:
    171 		return "unix";
    172 	case AF_NS:
    173 		return "ns";
    174 	case AF_ISO:
    175 		return "iso";
    176 	default:
    177 		sprintf(buf, "%d", af);
    178 	}
    179 	return buf;
    180 }
    181 
    182 void
    183 p_heading(af)
    184 {
    185 	if (Aflag)
    186 		printf("%-8.8s ","Address");
    187 	switch(af) {
    188 	case AF_INET:
    189 		printf("%-16.16s %-18.18s %-6.6s %6.6s %8.8s  %s\n",
    190 			"Destination", "Gateway",
    191 			"Flags", "Refs", "Use", "Interface");
    192 		break;
    193 	case AF_ISO:
    194 		if (nflag) {
    195 			printf("%-50.50s %-17.17s %-5.5s %s\n",
    196 				"Destination", "Media addr", "Flags", "Intf");
    197 		} else {
    198 			printf("%-12.12s %-19.19s %-17.17s %-6.6s %6s %8s %s\n",
    199 				"NSAP-prefix", "Area/Id", "Media addr",
    200 				"Flags", "Refs", "Use", "Intf");
    201 		}
    202 		break;
    203 	default:
    204 		printf("%-16.16s %-18.18s %-6.6s  %6.6s%8.8s  %s\n",
    205 			"Destination", "Gateway",
    206 			"Flags", "Refs", "Use", "Interface");
    207 	}
    208 }
    209 
    210 
    211 static union {
    212 	struct	sockaddr u_sa;
    213 	u_short	u_data[128];
    214 } pt_u;
    215 int do_rtent = 0;
    216 struct rtentry rtentry;
    217 struct radix_node rnode;
    218 struct radix_mask rmask;
    219 
    220 int NewTree = 0;
    221 treestuff(rtree)
    222 off_t rtree;
    223 {
    224 	struct radix_node_head *rnh, head;
    225 
    226 	if (Aflag == 0 && NewTree)
    227 		return(ntreestuff());
    228 	for (kget(rtree, rnh); rnh; rnh = head.rnh_next) {
    229 		kget(rnh, head);
    230 		if (head.rnh_af == 0) {
    231 			if (Aflag || af == AF_UNSPEC) {
    232 				printf("Netmasks:\n");
    233 				p_tree(head.rnh_treetop);
    234 			}
    235 		} else if (af == AF_UNSPEC || af == head.rnh_af) {
    236 			printf("\nRoute Tree for Protocol Family %s:\n",
    237 					af_name(head.rnh_af));
    238 			p_heading(head.rnh_af);
    239 			do_rtent = 1;
    240 			p_tree(head.rnh_treetop);
    241 		}
    242 	}
    243 }
    244 
    245 struct sockaddr *
    246 kgetsa(dst)
    247 register struct sockaddr *dst;
    248 {
    249 	kget(dst, pt_u.u_sa);
    250 	if (pt_u.u_sa.sa_len > sizeof (pt_u.u_sa)) {
    251 		kvm_read((off_t)dst, pt_u.u_data, pt_u.u_sa.sa_len);
    252 	}
    253 	return (&pt_u.u_sa);
    254 }
    255 
    256 p_tree(rn)
    257 struct radix_node *rn;
    258 {
    259 
    260 again:
    261 	kget(rn, rnode);
    262 	if (rnode.rn_b < 0) {
    263 		if (Aflag)
    264 			printf("%-8.8x ", rn);
    265 		if (rnode.rn_flags & RNF_ROOT)
    266 			printf("(root node)%s",
    267 				    rnode.rn_dupedkey ? " =>\n" : "\n");
    268 		else if (do_rtent) {
    269 			kget(rn, rtentry);
    270 			p_rtentry(&rtentry);
    271 			if (Aflag)
    272 				p_rtnode();
    273 		} else {
    274 			p_sockaddr(kgetsa((struct sockaddr *)rnode.rn_key),
    275 				    0, 44);
    276 			putchar('\n');
    277 		}
    278 		if (rn = rnode.rn_dupedkey)
    279 			goto again;
    280 	} else {
    281 		if (Aflag && do_rtent) {
    282 			printf("%-8.8x ", rn);
    283 			p_rtnode();
    284 		}
    285 		rn = rnode.rn_r;
    286 		p_tree(rnode.rn_l);
    287 		p_tree(rn);
    288 	}
    289 }
    290 char nbuf[20];
    291 
    292 p_rtnode()
    293 {
    294 
    295 	struct radix_mask *rm = rnode.rn_mklist;
    296 	if (rnode.rn_b < 0) {
    297 		if (rnode.rn_mask) {
    298 			printf("\t  mask ");
    299 			p_sockaddr(kgetsa((struct sockaddr *)rnode.rn_mask),
    300 				    0, -1);
    301 		} else if (rm == 0)
    302 			return;
    303 	} else {
    304 		sprintf(nbuf, "(%d)", rnode.rn_b);
    305 		printf("%6.6s %8.8x : %8.8x", nbuf, rnode.rn_l, rnode.rn_r);
    306 	}
    307 	while (rm) {
    308 		kget(rm, rmask);
    309 		sprintf(nbuf, " %d refs, ", rmask.rm_refs);
    310 		printf(" mk = %8.8x {(%d),%s",
    311 			rm, -1 - rmask.rm_b, rmask.rm_refs ? nbuf : " ");
    312 		p_sockaddr(kgetsa((struct sockaddr *)rmask.rm_mask), 0, -1);
    313 		putchar('}');
    314 		if (rm = rmask.rm_mklist)
    315 			printf(" ->");
    316 	}
    317 	putchar('\n');
    318 }
    319 
    320 ntreestuff()
    321 {
    322 	int needed;
    323 	char *buf, *next, *lim;
    324 	register struct rt_msghdr *rtm;
    325 
    326 	if ((needed = getkerninfo(KINFO_RT_DUMP, 0, 0, 0)) < 0)
    327 		{ perror("route-getkerninfo-estimate"); exit(1);}
    328 	if ((buf = malloc(needed)) == 0)
    329 		{ printf("out of space\n"); exit(1);}
    330 	if (getkerninfo(KINFO_RT_DUMP, buf, &needed, 0) < 0)
    331 		{ perror("actual retrieval of routing table"); exit(1);}
    332 	lim  = buf + needed;
    333 	for (next = buf; next < lim; next += rtm->rtm_msglen) {
    334 		rtm = (struct rt_msghdr *)next;
    335 		np_rtentry(rtm);
    336 	}
    337 }
    338 
    339 np_rtentry(rtm)
    340 register struct rt_msghdr *rtm;
    341 {
    342 	register struct sockaddr *sa = (struct sockaddr *)(rtm + 1);
    343 	static int masks_done, old_af, banner_printed;
    344 	int af = 0, interesting = RTF_UP | RTF_GATEWAY | RTF_HOST;
    345 
    346 #ifdef notdef
    347 	/* for the moment, netmasks are skipped over */
    348 	if (!banner_printed) {
    349 		printf("Netmasks:\n");
    350 		banner_printed = 1;
    351 	}
    352 	if (masks_done == 0) {
    353 		if (rtm->rtm_addrs != RTA_DST ) {
    354 			masks_done = 1;
    355 			af = sa->sa_family;
    356 		}
    357 	} else
    358 #endif
    359 		af = sa->sa_family;
    360 	if (af != old_af) {
    361 		printf("\nRoute Tree for Protocol Family %d:\n", af);
    362 		old_af = af;
    363 	}
    364 	if (rtm->rtm_addrs == RTA_DST)
    365 		p_sockaddr(sa, 0, 36);
    366 	else {
    367 		p_sockaddr(sa, rtm->rtm_flags, 16);
    368 		if (sa->sa_len == 0)
    369 			sa->sa_len = sizeof(long);
    370 		sa = (struct sockaddr *)(sa->sa_len + (char *)sa);
    371 		p_sockaddr(sa, 0, 18);
    372 	}
    373 	p_flags(rtm->rtm_flags & interesting, "%-6.6s ");
    374 	putchar('\n');
    375 }
    376 
    377 #ifdef ISO
    378 extern char* dl_print();
    379 #endif
    380 
    381 p_sockaddr(sa, flags, width)
    382 struct sockaddr *sa;
    383 int flags, width;
    384 {
    385 	char format[20], workbuf[128], *cp, *cplim;
    386 	register char *cpout;
    387 
    388 	switch(sa->sa_family) {
    389 	case AF_INET:
    390 	    {
    391 		register struct sockaddr_in *sin = (struct sockaddr_in *)sa;
    392 
    393 		cp = (sin->sin_addr.s_addr == 0) ? "default" :
    394 		      ((flags & RTF_HOST) ?
    395 			routename(sin->sin_addr) : netname(sin->sin_addr, 0L));
    396 	    }
    397 		break;
    398 
    399 #ifdef NS
    400 	case AF_NS:
    401 		cp = ns_print((struct sockaddr_ns *)sa);
    402 		break;
    403 #endif
    404 #ifdef ISO
    405 	case AF_ISO:
    406 		cp = iso_ntoa(&((struct sockaddr_iso *)sa)->siso_addr);
    407 		break;
    408 
    409 	case AF_LINK:
    410 		cp = dl_print((struct sockaddr_dl *)sa);
    411 		break;
    412 #endif
    413 
    414 	default:
    415 	    {
    416 		register u_char *s = ((u_char *)sa->sa_data), *slim;
    417 
    418 		slim = (u_char *) sa + sa->sa_len;
    419 		cp = workbuf;
    420 		cplim = cp + sizeof(workbuf) - 6;
    421 		cp += sprintf(cp, "(%d)", sa->sa_family);
    422 		for (; s < slim && cp < cplim; s += 2)
    423 			cp += sprintf(cp, " %02x%02x", s[0], s[1]);
    424 		cp = workbuf;
    425 	    }
    426 	}
    427 	if (width < 0 )
    428 		printf("%s ", cp);
    429 	else {
    430 		if (nflag)
    431 			printf("%-*s ", width, cp);
    432 		else
    433 			printf("%-*.*s ", width, width, cp);
    434 	}
    435 }
    436 
    437 p_flags(f, format)
    438 register int f;
    439 char *format;
    440 {
    441 	char name[33], *flags;
    442 	register struct bits *p = bits;
    443 	for (flags = name; p->b_mask; p++)
    444 		if (p->b_mask & f)
    445 			*flags++ = p->b_val;
    446 	*flags = '\0';
    447 	printf(format, name);
    448 }
    449 
    450 
    451 #ifdef ISO
    452 
    453 p_iso_flags(f, lli, format)
    454 	register int f;
    455 	char *format;
    456 	caddr_t lli;
    457 {
    458 	struct llinfo_llc ls;
    459 	char name[33], *flags;
    460 	register struct bits *p = bits;
    461 	register struct bits2 *p2 = bits2;
    462 
    463 	for (flags = name; p->b_mask; p++)
    464 		if (p->b_mask & f)
    465 			*flags++ = p->b_val;
    466 	if (lli) {
    467 		kget(lli, ls);
    468 		for (; p2->b_mask; p2++)
    469 			if (p2->b_mask & ls.lc_flags)
    470 				*flags++ = p2->b_val;
    471 	}
    472 	*flags = '\0';
    473 	printf(format, name);
    474 }
    475 
    476 static char *hexlist = "0123456789abcdef";
    477 
    478 char *
    479 iso_areatoa(isoa)
    480         const struct iso_addr *isoa;
    481 {
    482 	static char obuf[16];
    483 	register char *out = obuf;
    484 	register int i;
    485 	/* Assumption: ISO address always with 2 byte area, 1 byte NSEL */
    486 	/* and 6 bytes ID */
    487 	register u_char *in = (u_char*)isoa->isoa_genaddr + isoa->isoa_len - 9;
    488 	u_char *inlim = in + 2;
    489 
    490 	if (isoa->isoa_len < 10) return "";
    491 	while (in < inlim) {
    492 		i = *in++;
    493 		out[1] = hexlist[i & 0xf];
    494 		i >>= 4;
    495 		out[0] = hexlist[i];
    496 		out += 2;
    497 	}
    498 	*out = 0;
    499 	return(obuf);
    500 }
    501 
    502 char *
    503 iso_idtoa(isoa)
    504         const struct iso_addr *isoa;
    505 {
    506 	static char obuf[16];
    507 	register char *out = obuf;
    508 	register int i;
    509 	/* Assumption: ISO address always with 1 byte NSEL and 6 bytes ID */
    510 	register u_char *in = (u_char*)isoa->isoa_genaddr + isoa->isoa_len - 7;
    511 	u_char *inlim = in + 6;
    512 
    513 	if (isoa->isoa_len < 10) return "";
    514 	out[1] = 0;
    515 	while (in < inlim) {
    516 		i = *in++;
    517 		if ((inlim - in) % 2 || out == obuf)
    518 			*out++ = '.';
    519 		out[1] = hexlist[i & 0xf];
    520 		i >>= 4;
    521 		out[0] = hexlist[i];
    522 		out += 2;
    523 	}
    524 	*out = 0;
    525 	return(obuf + 1);
    526 }
    527 
    528 p_iso_route(rt, sa)
    529 	struct rtentry *rt;
    530 	struct sockaddr *sa;
    531 {
    532 	struct sockaddr_iso *siso = (struct sockaddr_iso *)sa;
    533 
    534 	if (nflag) {
    535 		p_sockaddr(sa, rt->rt_flags, 50);
    536 		p_sockaddr(kgetsa(rt->rt_gateway), 0, 17);
    537 		p_iso_flags(rt->rt_flags, rt->rt_llinfo, "%-6.6s");
    538 		p_interface_nl(rt);
    539 	} else {
    540 		p_sockaddr(sa, rt->rt_flags, 12);
    541 		printf("%4.4s/%14.14s ",
    542 			iso_areatoa(&siso->siso_addr),
    543 			iso_idtoa(&siso->siso_addr));
    544 		p_sockaddr(kgetsa(rt->rt_gateway), 0, 17);
    545 		p_iso_flags(rt->rt_flags, rt->rt_llinfo, "%-6.6s ");
    546 		printf("%6d %8d", rt->rt_refcnt, rt->rt_use);
    547 		p_interface_nl(rt);
    548 	}
    549 }
    550 #endif /* ISO */
    551 
    552 p_interface_nl(rt)
    553 	struct rtentry *rt;
    554 {
    555 	struct ifnet ifnet;
    556 	char name[16];
    557 
    558 	if (rt->rt_ifp == 0) {
    559 		putchar('\n');
    560 		return;
    561 	}
    562 	kget(rt->rt_ifp, ifnet);
    563 	kvm_read((off_t)ifnet.if_name, name, 16);
    564 	printf(" %.15s%d%s", name, ifnet.if_unit,
    565 		rt->rt_nodes[0].rn_dupedkey ? " =>\n" : "\n");
    566 }
    567 
    568 p_rtentry(rt)
    569 register struct rtentry *rt;
    570 {
    571 	struct sockaddr *sa;
    572 
    573 	sa = kgetsa(rt_key(rt));
    574 	if (sa->sa_family == AF_ISO) {
    575 		p_iso_route(rt, sa);
    576 		return;
    577 	}
    578 	p_sockaddr(sa, rt->rt_flags, 16);
    579 	p_sockaddr(kgetsa(rt->rt_gateway), RTF_HOST, 18);
    580 	p_flags(rt->rt_flags, "%-6.6s ");
    581 	printf("%6d %8d ", rt->rt_refcnt, rt->rt_use);
    582 	p_interface_nl(rt);
    583 }
    584 
    585 p_ortentry(rt)
    586 register struct ortentry *rt;
    587 {
    588 	char name[16], *flags;
    589 	register struct bits *p;
    590 	register struct sockaddr_in *sin;
    591 	struct ifnet ifnet;
    592 
    593 	p_sockaddr(&rt->rt_dst, rt->rt_flags, 16);
    594 	p_sockaddr(&rt->rt_gateway, 0, 18);
    595 	p_flags(rt->rt_flags, "%-6.6s ");
    596 	printf("%6d %8d ", rt->rt_refcnt, rt->rt_use);
    597 	if (rt->rt_ifp == 0) {
    598 		putchar('\n');
    599 		return;
    600 	}
    601 	kget(rt->rt_ifp, ifnet);
    602 	kvm_read((off_t)ifnet.if_name, name, 16);
    603 	printf(" %.15s%d\n", name, ifnet.if_unit);
    604 }
    605 
    606 char *
    607 routename(in)
    608 	struct in_addr in;
    609 {
    610 	register char *cp;
    611 	static char line[MAXHOSTNAMELEN + 1];
    612 	struct hostent *hp;
    613 	static char domain[MAXHOSTNAMELEN + 1];
    614 	static int first = 1;
    615 	char *index();
    616 
    617 	if (first) {
    618 		first = 0;
    619 		if (gethostname(domain, MAXHOSTNAMELEN) == 0 &&
    620 		    (cp = index(domain, '.')))
    621 			(void) strcpy(domain, cp + 1);
    622 		else
    623 			domain[0] = 0;
    624 	}
    625 	cp = 0;
    626 	if (!nflag) {
    627 		hp = gethostbyaddr((char *)&in, sizeof (struct in_addr),
    628 			AF_INET);
    629 		if (hp) {
    630 			if ((cp = index(hp->h_name, '.')) &&
    631 			    !strcmp(cp + 1, domain))
    632 				*cp = 0;
    633 			cp = hp->h_name;
    634 		}
    635 	}
    636 	if (cp)
    637 		strncpy(line, cp, sizeof(line) - 1);
    638 	else {
    639 #define C(x)	((x) & 0xff)
    640 		in.s_addr = ntohl(in.s_addr);
    641 		sprintf(line, "%u.%u.%u.%u", C(in.s_addr >> 24),
    642 			C(in.s_addr >> 16), C(in.s_addr >> 8), C(in.s_addr));
    643 	}
    644 	return (line);
    645 }
    646 
    647 /*
    648  * Return the name of the network whose address is given.
    649  * The address is assumed to be that of a net or subnet, not a host.
    650  */
    651 char *
    652 netname(in, mask)
    653 	struct in_addr in;
    654 	u_long mask;
    655 {
    656 	char *cp = 0;
    657 	static char line[MAXHOSTNAMELEN + 1];
    658 	struct netent *np = 0;
    659 	u_long net;
    660 	register i;
    661 	int subnetshift;
    662 
    663 	i = ntohl(in.s_addr);
    664 	if (!nflag && i) {
    665 		if (mask == 0) {
    666 			if (IN_CLASSA(i)) {
    667 				mask = IN_CLASSA_NET;
    668 				subnetshift = 8;
    669 			} else if (IN_CLASSB(i)) {
    670 				mask = IN_CLASSB_NET;
    671 				subnetshift = 8;
    672 			} else {
    673 				mask = IN_CLASSC_NET;
    674 				subnetshift = 4;
    675 			}
    676 			/*
    677 			 * If there are more bits than the standard mask
    678 			 * would suggest, subnets must be in use.
    679 			 * Guess at the subnet mask, assuming reasonable
    680 			 * width subnet fields.
    681 			 */
    682 			while (i &~ mask)
    683 				mask = (long)mask >> subnetshift;
    684 		}
    685 		net = i & mask;
    686 		while ((mask & 1) == 0)
    687 			mask >>= 1, net >>= 1;
    688 		np = getnetbyaddr(net, AF_INET);
    689 		if (np)
    690 			cp = np->n_name;
    691 	}
    692 	if (cp)
    693 		strncpy(line, cp, sizeof(line) - 1);
    694 	else if ((i & 0xffffff) == 0)
    695 		sprintf(line, "%u", C(i >> 24));
    696 	else if ((i & 0xffff) == 0)
    697 		sprintf(line, "%u.%u", C(i >> 24) , C(i >> 16));
    698 	else if ((i & 0xff) == 0)
    699 		sprintf(line, "%u.%u.%u", C(i >> 24), C(i >> 16), C(i >> 8));
    700 	else
    701 		sprintf(line, "%u.%u.%u.%u", C(i >> 24),
    702 			C(i >> 16), C(i >> 8), C(i));
    703 	return (line);
    704 }
    705 
    706 /*
    707  * Print routing statistics
    708  */
    709 rt_stats(off)
    710 	off_t off;
    711 {
    712 	struct rtstat rtstat;
    713 
    714 	if (off == 0) {
    715 		printf("rtstat: symbol not in namelist\n");
    716 		return;
    717 	}
    718 	kvm_read(off, (char *)&rtstat, sizeof (rtstat));
    719 	printf("routing:\n");
    720 	printf("\t%u bad routing redirect%s\n",
    721 		rtstat.rts_badredirect, plural(rtstat.rts_badredirect));
    722 	printf("\t%u dynamically created route%s\n",
    723 		rtstat.rts_dynamic, plural(rtstat.rts_dynamic));
    724 	printf("\t%u new gateway%s due to redirects\n",
    725 		rtstat.rts_newgateway, plural(rtstat.rts_newgateway));
    726 	printf("\t%u destination%s found unreachable\n",
    727 		rtstat.rts_unreach, plural(rtstat.rts_unreach));
    728 	printf("\t%u use%s of a wildcard route\n",
    729 		rtstat.rts_wildcard, plural(rtstat.rts_wildcard));
    730 }
    731 #ifdef NS
    732 short ns_nullh[] = {0,0,0};
    733 short ns_bh[] = {-1,-1,-1};
    734 
    735 char *
    736 ns_print(sns)
    737 struct sockaddr_ns *sns;
    738 {
    739 	struct ns_addr work;
    740 	union { union ns_net net_e; u_long long_e; } net;
    741 	u_short port;
    742 	static char mybuf[50], cport[10], chost[25];
    743 	char *host = "";
    744 	register char *p; register u_char *q;
    745 
    746 	work = sns->sns_addr;
    747 	port = ntohs(work.x_port);
    748 	work.x_port = 0;
    749 	net.net_e  = work.x_net;
    750 	if (ns_nullhost(work) && net.long_e == 0) {
    751 		if (port ) {
    752 			sprintf(mybuf, "*.%xH", port);
    753 			upHex(mybuf);
    754 		} else
    755 			sprintf(mybuf, "*.*");
    756 		return (mybuf);
    757 	}
    758 
    759 	if (bcmp(ns_bh, work.x_host.c_host, 6) == 0) {
    760 		host = "any";
    761 	} else if (bcmp(ns_nullh, work.x_host.c_host, 6) == 0) {
    762 		host = "*";
    763 	} else {
    764 		q = work.x_host.c_host;
    765 		sprintf(chost, "%02x%02x%02x%02x%02x%02xH",
    766 			q[0], q[1], q[2], q[3], q[4], q[5]);
    767 		for (p = chost; *p == '0' && p < chost + 12; p++);
    768 		host = p;
    769 	}
    770 	if (port)
    771 		sprintf(cport, ".%xH", htons(port));
    772 	else
    773 		*cport = 0;
    774 
    775 	sprintf(mybuf,"%xH.%s%s", ntohl(net.long_e), host, cport);
    776 	upHex(mybuf);
    777 	return(mybuf);
    778 }
    779 
    780 char *
    781 ns_phost(sns)
    782 struct sockaddr_ns *sns;
    783 {
    784 	struct sockaddr_ns work;
    785 	static union ns_net ns_zeronet;
    786 	char *p;
    787 
    788 	work = *sns;
    789 	work.sns_addr.x_port = 0;
    790 	work.sns_addr.x_net = ns_zeronet;
    791 
    792 	p = ns_print(&work);
    793 	if (strncmp("0H.", p, 3) == 0) p += 3;
    794 	return(p);
    795 }
    796 upHex(p0)
    797 char *p0;
    798 {
    799 	register char *p = p0;
    800 	for (; *p; p++) switch (*p) {
    801 
    802 	case 'a': case 'b': case 'c': case 'd': case 'e': case 'f':
    803 		*p += ('A' - 'a');
    804 	}
    805 }
    806 #endif /* NS */
    807 #ifdef ISO
    808 
    809 char *
    810 dl_print(sdl)
    811 	struct sockaddr_dl *sdl;
    812 {
    813 	static char buf[20];
    814 	char *cp = buf, *dp;
    815 	int i;
    816 
    817 	dp = sdl->sdl_data;
    818 	for (i = 0; i < sdl->sdl_nlen; i++)
    819 		*cp++ = *dp++;
    820 	if (sdl->sdl_nlen != 0 && sdl->sdl_alen != 0)
    821 		*cp++ = ':';
    822 	for (; i < sdl->sdl_nlen + sdl->sdl_alen; i++)
    823 		cp += sprintf(cp, "%x%c", *dp++ & 0xff,
    824 			i + 1 == sdl->sdl_nlen + sdl->sdl_alen ? ' ' : '.');
    825 	*cp = 0;
    826 	return buf;
    827 }
    828 #endif /* ISO */
    829