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[tcpdump] / addrtoname.c
1 /*
2 * Copyright (c) 1990, 1991, 1992, 1993, 1994, 1995, 1996, 1997
3 * The Regents of the University of California. All rights reserved.
4 *
5 * Redistribution and use in source and binary forms, with or without
6 * modification, are permitted provided that: (1) source code distributions
7 * retain the above copyright notice and this paragraph in its entirety, (2)
8 * distributions including binary code include the above copyright notice and
9 * this paragraph in its entirety in the documentation or other materials
10 * provided with the distribution, and (3) all advertising materials mentioning
11 * features or use of this software display the following acknowledgement:
12 * ``This product includes software developed by the University of California,
13 * Lawrence Berkeley Laboratory and its contributors.'' Neither the name of
14 * the University nor the names of its contributors may be used to endorse
15 * or promote products derived from this software without specific prior
16 * written permission.
17 * THIS SOFTWARE IS PROVIDED ``AS IS'' AND WITHOUT ANY EXPRESS OR IMPLIED
18 * WARRANTIES, INCLUDING, WITHOUT LIMITATION, THE IMPLIED WARRANTIES OF
19 * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE.
20 *
21 * Internet, ethernet, port, and protocol string to address
22 * and address to string conversion routines
23 */
24 #ifndef lint
25 static const char rcsid[] _U_ =
26 "@(#) $Header: /tcpdump/master/tcpdump/addrtoname.c,v 1.112 2005-04-20 11:17:18 guy Exp $ (LBL)";
27 #endif
28
29 #ifdef HAVE_CONFIG_H
30 #include "config.h"
31 #endif
32
33 #include <tcpdump-stdinc.h>
34
35 #ifdef USE_ETHER_NTOHOST
36 #ifdef HAVE_NETINET_IF_ETHER_H
37 struct mbuf; /* Squelch compiler warnings on some platforms for */
38 struct rtentry; /* declarations in <net/if.h> */
39 #include <net/if.h> /* for "struct ifnet" in "struct arpcom" on Solaris */
40 #include <netinet/if_ether.h>
41 #endif /* HAVE_NETINET_IF_ETHER_H */
42 #ifdef NETINET_ETHER_H_DECLARES_ETHER_NTOHOST
43 #include <netinet/ether.h>
44 #endif /* NETINET_ETHER_H_DECLARES_ETHER_NTOHOST */
45
46 #if !defined(HAVE_DECL_ETHER_NTOHOST) || !HAVE_DECL_ETHER_NTOHOST
47 #ifndef HAVE_STRUCT_ETHER_ADDR
48 struct ether_addr {
49 unsigned char ether_addr_octet[6];
50 };
51 #endif
52 extern int ether_ntohost(char *, const struct ether_addr *);
53 #endif
54
55 #endif /* USE_ETHER_NTOHOST */
56
57 #include <pcap.h>
58 #include <pcap-namedb.h>
59 #include <signal.h>
60 #include <stdio.h>
61 #include <string.h>
62 #include <stdlib.h>
63
64 #include "interface.h"
65 #include "addrtoname.h"
66 #include "llc.h"
67 #include "setsignal.h"
68 #include "extract.h"
69 #include "oui.h"
70
71 /*
72 * hash tables for whatever-to-name translations
73 *
74 * XXX there has to be error checks against strdup(3) failure
75 */
76
77 #define HASHNAMESIZE 4096
78 #define BUFSIZE 128
79
80 struct hnamemem {
81 u_int32_t addr;
82 const char *name;
83 struct hnamemem *nxt;
84 };
85
86 struct hnamemem hnametable[HASHNAMESIZE];
87 struct hnamemem tporttable[HASHNAMESIZE];
88 struct hnamemem uporttable[HASHNAMESIZE];
89 struct hnamemem eprototable[HASHNAMESIZE];
90 struct hnamemem dnaddrtable[HASHNAMESIZE];
91 struct hnamemem llcsaptable[HASHNAMESIZE];
92 struct hnamemem ipxsaptable[HASHNAMESIZE];
93
94 #if defined(INET6) && defined(WIN32)
95 /*
96 * fake gethostbyaddr for Win2k/XP
97 * gethostbyaddr() returns incorrect value when AF_INET6 is passed
98 * to 3rd argument.
99 *
100 * h_name in struct hostent is only valid.
101 */
102 static struct hostent *
103 win32_gethostbyaddr(const char *addr, int len, int type)
104 {
105 static struct hostent host;
106 static char hostbuf[NI_MAXHOST];
107 char hname[NI_MAXHOST];
108 struct sockaddr_in6 addr6;
109
110 host.h_name = hostbuf;
111 switch (type) {
112 case AF_INET:
113 return gethostbyaddr(addr, len, type);
114 break;
115 case AF_INET6:
116 memset(&addr6, 0, sizeof(addr6));
117 addr6.sin6_family = AF_INET6;
118 memcpy(&addr6.sin6_addr, addr, len);
119 if (getnameinfo((struct sockaddr *)&addr6, sizeof(addr6),
120 hname, sizeof(hname), NULL, 0, 0)) {
121 return NULL;
122 } else {
123 strcpy(host.h_name, hname);
124 return &host;
125 }
126 break;
127 default:
128 return NULL;
129 }
130 }
131 #define gethostbyaddr win32_gethostbyaddr
132 #endif /* INET6 & WIN32 */
133
134 #ifdef INET6
135 struct h6namemem {
136 struct in6_addr addr;
137 char *name;
138 struct h6namemem *nxt;
139 };
140
141 struct h6namemem h6nametable[HASHNAMESIZE];
142 #endif /* INET6 */
143
144 struct enamemem {
145 u_short e_addr0;
146 u_short e_addr1;
147 u_short e_addr2;
148 const char *e_name;
149 u_char *e_nsap; /* used only for nsaptable[] */
150 #define e_bs e_nsap /* for bytestringtable */
151 struct enamemem *e_nxt;
152 };
153
154 struct enamemem enametable[HASHNAMESIZE];
155 struct enamemem nsaptable[HASHNAMESIZE];
156 struct enamemem bytestringtable[HASHNAMESIZE];
157
158 struct protoidmem {
159 u_int32_t p_oui;
160 u_short p_proto;
161 const char *p_name;
162 struct protoidmem *p_nxt;
163 };
164
165 struct protoidmem protoidtable[HASHNAMESIZE];
166
167 /*
168 * A faster replacement for inet_ntoa().
169 */
170 const char *
171 intoa(u_int32_t addr)
172 {
173 register char *cp;
174 register u_int byte;
175 register int n;
176 static char buf[sizeof(".xxx.xxx.xxx.xxx")];
177
178 NTOHL(addr);
179 cp = buf + sizeof(buf);
180 *--cp = '\0';
181
182 n = 4;
183 do {
184 byte = addr & 0xff;
185 *--cp = byte % 10 + '0';
186 byte /= 10;
187 if (byte > 0) {
188 *--cp = byte % 10 + '0';
189 byte /= 10;
190 if (byte > 0)
191 *--cp = byte + '0';
192 }
193 *--cp = '.';
194 addr >>= 8;
195 } while (--n > 0);
196
197 return cp + 1;
198 }
199
200 static u_int32_t f_netmask;
201 static u_int32_t f_localnet;
202
203 /*
204 * Return a name for the IP address pointed to by ap. This address
205 * is assumed to be in network byte order.
206 *
207 * NOTE: ap is *NOT* necessarily part of the packet data (not even if
208 * this is being called with the "ipaddr_string()" macro), so you
209 * *CANNOT* use the TCHECK{2}/TTEST{2} macros on it. Furthermore,
210 * even in cases where it *is* part of the packet data, the caller
211 * would still have to check for a null return value, even if it's
212 * just printing the return value with "%s" - not all versions of
213 * printf print "(null)" with "%s" and a null pointer, some of them
214 * don't check for a null pointer and crash in that case.
215 *
216 * The callers of this routine should, before handing this routine
217 * a pointer to packet data, be sure that the data is present in
218 * the packet buffer. They should probably do those checks anyway,
219 * as other data at that layer might not be IP addresses, and it
220 * also needs to check whether they're present in the packet buffer.
221 */
222 const char *
223 getname(const u_char *ap)
224 {
225 register struct hostent *hp;
226 u_int32_t addr;
227 static struct hnamemem *p; /* static for longjmp() */
228
229 memcpy(&addr, ap, sizeof(addr));
230 p = &hnametable[addr & (HASHNAMESIZE-1)];
231 for (; p->nxt; p = p->nxt) {
232 if (p->addr == addr)
233 return (p->name);
234 }
235 p->addr = addr;
236 p->nxt = newhnamemem();
237
238 /*
239 * Print names unless:
240 * (1) -n was given.
241 * (2) Address is foreign and -f was given. (If -f was not
242 * given, f_netmask and f_localnet are 0 and the test
243 * evaluates to true)
244 */
245 if (!nflag &&
246 (addr & f_netmask) == f_localnet) {
247 hp = gethostbyaddr((char *)&addr, 4, AF_INET);
248 if (hp) {
249 char *dotp;
250
251 p->name = strdup(hp->h_name);
252 if (Nflag) {
253 /* Remove domain qualifications */
254 dotp = strchr(p->name, '.');
255 if (dotp)
256 *dotp = '\0';
257 }
258 return (p->name);
259 }
260 }
261 p->name = strdup(intoa(addr));
262 return (p->name);
263 }
264
265 #ifdef INET6
266 /*
267 * Return a name for the IP6 address pointed to by ap. This address
268 * is assumed to be in network byte order.
269 */
270 const char *
271 getname6(const u_char *ap)
272 {
273 register struct hostent *hp;
274 struct in6_addr addr;
275 static struct h6namemem *p; /* static for longjmp() */
276 register const char *cp;
277 char ntop_buf[INET6_ADDRSTRLEN];
278
279 memcpy(&addr, ap, sizeof(addr));
280 p = &h6nametable[*(u_int16_t *)&addr.s6_addr[14] & (HASHNAMESIZE-1)];
281 for (; p->nxt; p = p->nxt) {
282 if (memcmp(&p->addr, &addr, sizeof(addr)) == 0)
283 return (p->name);
284 }
285 p->addr = addr;
286 p->nxt = newh6namemem();
287
288 /*
289 * Do not print names if -n was given.
290 */
291 if (!nflag) {
292 hp = gethostbyaddr((char *)&addr, sizeof(addr), AF_INET6);
293 if (hp) {
294 char *dotp;
295
296 p->name = strdup(hp->h_name);
297 if (Nflag) {
298 /* Remove domain qualifications */
299 dotp = strchr(p->name, '.');
300 if (dotp)
301 *dotp = '\0';
302 }
303 return (p->name);
304 }
305 }
306 cp = inet_ntop(AF_INET6, &addr, ntop_buf, sizeof(ntop_buf));
307 p->name = strdup(cp);
308 return (p->name);
309 }
310 #endif /* INET6 */
311
312 static char hex[] = "0123456789abcdef";
313
314
315 /* Find the hash node that corresponds the ether address 'ep' */
316
317 static inline struct enamemem *
318 lookup_emem(const u_char *ep)
319 {
320 register u_int i, j, k;
321 struct enamemem *tp;
322
323 k = (ep[0] << 8) | ep[1];
324 j = (ep[2] << 8) | ep[3];
325 i = (ep[4] << 8) | ep[5];
326
327 tp = &enametable[(i ^ j) & (HASHNAMESIZE-1)];
328 while (tp->e_nxt)
329 if (tp->e_addr0 == i &&
330 tp->e_addr1 == j &&
331 tp->e_addr2 == k)
332 return tp;
333 else
334 tp = tp->e_nxt;
335 tp->e_addr0 = i;
336 tp->e_addr1 = j;
337 tp->e_addr2 = k;
338 tp->e_nxt = (struct enamemem *)calloc(1, sizeof(*tp));
339 if (tp->e_nxt == NULL)
340 error("lookup_emem: calloc");
341
342 return tp;
343 }
344
345 /*
346 * Find the hash node that corresponds to the bytestring 'bs'
347 * with length 'nlen'
348 */
349
350 static inline struct enamemem *
351 lookup_bytestring(register const u_char *bs, const unsigned int nlen)
352 {
353 struct enamemem *tp;
354 register u_int i, j, k;
355
356 if (nlen >= 6) {
357 k = (bs[0] << 8) | bs[1];
358 j = (bs[2] << 8) | bs[3];
359 i = (bs[4] << 8) | bs[5];
360 } else if (nlen >= 4) {
361 k = (bs[0] << 8) | bs[1];
362 j = (bs[2] << 8) | bs[3];
363 i = 0;
364 } else
365 i = j = k = 0;
366
367 tp = &bytestringtable[(i ^ j) & (HASHNAMESIZE-1)];
368 while (tp->e_nxt)
369 if (tp->e_addr0 == i &&
370 tp->e_addr1 == j &&
371 tp->e_addr2 == k &&
372 memcmp((const char *)bs, (const char *)(tp->e_bs), nlen) == 0)
373 return tp;
374 else
375 tp = tp->e_nxt;
376
377 tp->e_addr0 = i;
378 tp->e_addr1 = j;
379 tp->e_addr2 = k;
380
381 tp->e_bs = (u_char *) calloc(1, nlen + 1);
382 memcpy(tp->e_bs, bs, nlen);
383 tp->e_nxt = (struct enamemem *)calloc(1, sizeof(*tp));
384 if (tp->e_nxt == NULL)
385 error("lookup_bytestring: calloc");
386
387 return tp;
388 }
389
390 /* Find the hash node that corresponds the NSAP 'nsap' */
391
392 static inline struct enamemem *
393 lookup_nsap(register const u_char *nsap)
394 {
395 register u_int i, j, k;
396 unsigned int nlen = *nsap;
397 struct enamemem *tp;
398 const u_char *ensap = nsap + nlen - 6;
399
400 if (nlen > 6) {
401 k = (ensap[0] << 8) | ensap[1];
402 j = (ensap[2] << 8) | ensap[3];
403 i = (ensap[4] << 8) | ensap[5];
404 }
405 else
406 i = j = k = 0;
407
408 tp = &nsaptable[(i ^ j) & (HASHNAMESIZE-1)];
409 while (tp->e_nxt)
410 if (tp->e_addr0 == i &&
411 tp->e_addr1 == j &&
412 tp->e_addr2 == k &&
413 tp->e_nsap[0] == nlen &&
414 memcmp((const char *)&(nsap[1]),
415 (char *)&(tp->e_nsap[1]), nlen) == 0)
416 return tp;
417 else
418 tp = tp->e_nxt;
419 tp->e_addr0 = i;
420 tp->e_addr1 = j;
421 tp->e_addr2 = k;
422 tp->e_nsap = (u_char *)malloc(nlen + 1);
423 if (tp->e_nsap == NULL)
424 error("lookup_nsap: malloc");
425 memcpy((char *)tp->e_nsap, (const char *)nsap, nlen + 1);
426 tp->e_nxt = (struct enamemem *)calloc(1, sizeof(*tp));
427 if (tp->e_nxt == NULL)
428 error("lookup_nsap: calloc");
429
430 return tp;
431 }
432
433 /* Find the hash node that corresponds the protoid 'pi'. */
434
435 static inline struct protoidmem *
436 lookup_protoid(const u_char *pi)
437 {
438 register u_int i, j;
439 struct protoidmem *tp;
440
441 /* 5 octets won't be aligned */
442 i = (((pi[0] << 8) + pi[1]) << 8) + pi[2];
443 j = (pi[3] << 8) + pi[4];
444 /* XXX should be endian-insensitive, but do big-endian testing XXX */
445
446 tp = &protoidtable[(i ^ j) & (HASHNAMESIZE-1)];
447 while (tp->p_nxt)
448 if (tp->p_oui == i && tp->p_proto == j)
449 return tp;
450 else
451 tp = tp->p_nxt;
452 tp->p_oui = i;
453 tp->p_proto = j;
454 tp->p_nxt = (struct protoidmem *)calloc(1, sizeof(*tp));
455 if (tp->p_nxt == NULL)
456 error("lookup_protoid: calloc");
457
458 return tp;
459 }
460
461 const char *
462 etheraddr_string(register const u_char *ep)
463 {
464 register u_int i, oui;
465 register char *cp;
466 register struct enamemem *tp;
467 char buf[BUFSIZE];
468
469 tp = lookup_emem(ep);
470 if (tp->e_name)
471 return (tp->e_name);
472 #ifdef USE_ETHER_NTOHOST
473 if (!nflag) {
474 char buf2[BUFSIZE];
475
476 /*
477 * We don't cast it to "const struct ether_addr *"
478 * because some systems don't modify the Ethernet
479 * address but fail to declare the second argument
480 * as a "const" pointer.
481 */
482 if (ether_ntohost(buf2, (struct ether_addr *)ep) == 0) {
483 tp->e_name = strdup(buf2);
484 return (tp->e_name);
485 }
486 }
487 #endif
488 cp = buf;
489 oui=EXTRACT_24BITS(ep);
490 *cp++ = hex[*ep >> 4 ];
491 *cp++ = hex[*ep++ & 0xf];
492 for (i = 5; (int)--i >= 0;) {
493 *cp++ = ':';
494 *cp++ = hex[*ep >> 4 ];
495 *cp++ = hex[*ep++ & 0xf];
496 }
497
498 if (!nflag) {
499 snprintf(cp,BUFSIZE," (oui %s)",
500 tok2str(oui_values,"Unknown",oui));
501 } else
502 *cp = '\0';
503 tp->e_name = strdup(buf);
504 return (tp->e_name);
505 }
506
507 const char *
508 linkaddr_string(const u_char *ep, const unsigned int len)
509 {
510 register u_int i;
511 register char *cp;
512 register struct enamemem *tp;
513
514 if (len == 6) /* XXX not totally correct... */
515 return etheraddr_string(ep);
516
517 tp = lookup_bytestring(ep, len);
518 if (tp->e_name)
519 return (tp->e_name);
520
521 tp->e_name = cp = (char *)malloc(len*3);
522 if (tp->e_name == NULL)
523 error("linkaddr_string: malloc");
524 *cp++ = hex[*ep >> 4];
525 *cp++ = hex[*ep++ & 0xf];
526 for (i = len-1; i > 0 ; --i) {
527 *cp++ = ':';
528 *cp++ = hex[*ep >> 4];
529 *cp++ = hex[*ep++ & 0xf];
530 }
531 *cp = '\0';
532 return (tp->e_name);
533 }
534
535 const char *
536 etherproto_string(u_short port)
537 {
538 register char *cp;
539 register struct hnamemem *tp;
540 register u_int32_t i = port;
541 char buf[sizeof("0000")];
542
543 for (tp = &eprototable[i & (HASHNAMESIZE-1)]; tp->nxt; tp = tp->nxt)
544 if (tp->addr == i)
545 return (tp->name);
546
547 tp->addr = i;
548 tp->nxt = newhnamemem();
549
550 cp = buf;
551 NTOHS(port);
552 *cp++ = hex[port >> 12 & 0xf];
553 *cp++ = hex[port >> 8 & 0xf];
554 *cp++ = hex[port >> 4 & 0xf];
555 *cp++ = hex[port & 0xf];
556 *cp++ = '\0';
557 tp->name = strdup(buf);
558 return (tp->name);
559 }
560
561 const char *
562 protoid_string(register const u_char *pi)
563 {
564 register u_int i, j;
565 register char *cp;
566 register struct protoidmem *tp;
567 char buf[sizeof("00:00:00:00:00")];
568
569 tp = lookup_protoid(pi);
570 if (tp->p_name)
571 return tp->p_name;
572
573 cp = buf;
574 if ((j = *pi >> 4) != 0)
575 *cp++ = hex[j];
576 *cp++ = hex[*pi++ & 0xf];
577 for (i = 4; (int)--i >= 0;) {
578 *cp++ = ':';
579 if ((j = *pi >> 4) != 0)
580 *cp++ = hex[j];
581 *cp++ = hex[*pi++ & 0xf];
582 }
583 *cp = '\0';
584 tp->p_name = strdup(buf);
585 return (tp->p_name);
586 }
587
588 const char *
589 llcsap_string(u_char sap)
590 {
591 register struct hnamemem *tp;
592 register u_int32_t i = sap;
593 char buf[sizeof("sap 00")];
594
595 for (tp = &llcsaptable[i & (HASHNAMESIZE-1)]; tp->nxt; tp = tp->nxt)
596 if (tp->addr == i)
597 return (tp->name);
598
599 tp->addr = i;
600 tp->nxt = newhnamemem();
601
602 snprintf(buf, sizeof(buf), "sap %02x", sap & 0xff);
603 tp->name = strdup(buf);
604 return (tp->name);
605 }
606
607 #define ISONSAP_MAX_LENGTH 20
608 const char *
609 isonsap_string(const u_char *nsap, register u_int nsap_length)
610 {
611 register u_int nsap_idx;
612 register char *cp;
613 register struct enamemem *tp;
614
615 if (nsap_length < 1 || nsap_length > ISONSAP_MAX_LENGTH)
616 error("isonsap_string: illegal length");
617
618 tp = lookup_nsap(nsap);
619 if (tp->e_name)
620 return tp->e_name;
621
622 tp->e_name = cp = (char *)malloc(sizeof("xx.xxxx.xxxx.xxxx.xxxx.xxxx.xxxx.xxxx.xxxx.xxxx.xx"));
623 if (cp == NULL)
624 error("isonsap_string: malloc");
625
626 for (nsap_idx = 0; nsap_idx < nsap_length; nsap_idx++) {
627 *cp++ = hex[*nsap >> 4];
628 *cp++ = hex[*nsap++ & 0xf];
629 if (((nsap_idx & 1) == 0) &&
630 (nsap_idx + 1 < nsap_length)) {
631 *cp++ = '.';
632 }
633 }
634 *cp = '\0';
635 return (tp->e_name);
636 }
637
638 const char *
639 tcpport_string(u_short port)
640 {
641 register struct hnamemem *tp;
642 register u_int32_t i = port;
643 char buf[sizeof("00000")];
644
645 for (tp = &tporttable[i & (HASHNAMESIZE-1)]; tp->nxt; tp = tp->nxt)
646 if (tp->addr == i)
647 return (tp->name);
648
649 tp->addr = i;
650 tp->nxt = newhnamemem();
651
652 (void)snprintf(buf, sizeof(buf), "%u", i);
653 tp->name = strdup(buf);
654 return (tp->name);
655 }
656
657 const char *
658 udpport_string(register u_short port)
659 {
660 register struct hnamemem *tp;
661 register u_int32_t i = port;
662 char buf[sizeof("00000")];
663
664 for (tp = &uporttable[i & (HASHNAMESIZE-1)]; tp->nxt; tp = tp->nxt)
665 if (tp->addr == i)
666 return (tp->name);
667
668 tp->addr = i;
669 tp->nxt = newhnamemem();
670
671 (void)snprintf(buf, sizeof(buf), "%u", i);
672 tp->name = strdup(buf);
673 return (tp->name);
674 }
675
676 const char *
677 ipxsap_string(u_short port)
678 {
679 register char *cp;
680 register struct hnamemem *tp;
681 register u_int32_t i = port;
682 char buf[sizeof("0000")];
683
684 for (tp = &ipxsaptable[i & (HASHNAMESIZE-1)]; tp->nxt; tp = tp->nxt)
685 if (tp->addr == i)
686 return (tp->name);
687
688 tp->addr = i;
689 tp->nxt = newhnamemem();
690
691 cp = buf;
692 NTOHS(port);
693 *cp++ = hex[port >> 12 & 0xf];
694 *cp++ = hex[port >> 8 & 0xf];
695 *cp++ = hex[port >> 4 & 0xf];
696 *cp++ = hex[port & 0xf];
697 *cp++ = '\0';
698 tp->name = strdup(buf);
699 return (tp->name);
700 }
701
702 static void
703 init_servarray(void)
704 {
705 struct servent *sv;
706 register struct hnamemem *table;
707 register int i;
708 char buf[sizeof("0000000000")];
709
710 while ((sv = getservent()) != NULL) {
711 int port = ntohs(sv->s_port);
712 i = port & (HASHNAMESIZE-1);
713 if (strcmp(sv->s_proto, "tcp") == 0)
714 table = &tporttable[i];
715 else if (strcmp(sv->s_proto, "udp") == 0)
716 table = &uporttable[i];
717 else
718 continue;
719
720 while (table->name)
721 table = table->nxt;
722 if (nflag) {
723 (void)snprintf(buf, sizeof(buf), "%d", port);
724 table->name = strdup(buf);
725 } else
726 table->name = strdup(sv->s_name);
727 table->addr = port;
728 table->nxt = newhnamemem();
729 }
730 endservent();
731 }
732
733 /* in libpcap.a (nametoaddr.c) */
734 #if defined(WIN32) && !defined(USE_STATIC_LIBPCAP)
735 __declspec(dllimport)
736 #else
737 extern
738 #endif
739 const struct eproto {
740 const char *s;
741 u_short p;
742 } eproto_db[];
743
744 static void
745 init_eprotoarray(void)
746 {
747 register int i;
748 register struct hnamemem *table;
749
750 for (i = 0; eproto_db[i].s; i++) {
751 int j = htons(eproto_db[i].p) & (HASHNAMESIZE-1);
752 table = &eprototable[j];
753 while (table->name)
754 table = table->nxt;
755 table->name = eproto_db[i].s;
756 table->addr = htons(eproto_db[i].p);
757 table->nxt = newhnamemem();
758 }
759 }
760
761 static struct protoidlist {
762 const u_char protoid[5];
763 const char *name;
764 } protoidlist[] = {
765 {{ 0x00, 0x00, 0x0c, 0x01, 0x07 }, "CiscoMLS" },
766 {{ 0x00, 0x00, 0x0c, 0x20, 0x00 }, "CiscoCDP" },
767 {{ 0x00, 0x00, 0x0c, 0x20, 0x01 }, "CiscoCGMP" },
768 {{ 0x00, 0x00, 0x0c, 0x20, 0x03 }, "CiscoVTP" },
769 {{ 0x00, 0xe0, 0x2b, 0x00, 0xbb }, "ExtremeEDP" },
770 {{ 0x00, 0x00, 0x00, 0x00, 0x00 }, NULL }
771 };
772
773 /*
774 * SNAP proto IDs with org code 0:0:0 are actually encapsulated Ethernet
775 * types.
776 */
777 static void
778 init_protoidarray(void)
779 {
780 register int i;
781 register struct protoidmem *tp;
782 struct protoidlist *pl;
783 u_char protoid[5];
784
785 protoid[0] = 0;
786 protoid[1] = 0;
787 protoid[2] = 0;
788 for (i = 0; eproto_db[i].s; i++) {
789 u_short etype = htons(eproto_db[i].p);
790
791 memcpy((char *)&protoid[3], (char *)&etype, 2);
792 tp = lookup_protoid(protoid);
793 tp->p_name = strdup(eproto_db[i].s);
794 }
795 /* Hardwire some SNAP proto ID names */
796 for (pl = protoidlist; pl->name != NULL; ++pl) {
797 tp = lookup_protoid(pl->protoid);
798 /* Don't override existing name */
799 if (tp->p_name != NULL)
800 continue;
801
802 tp->p_name = pl->name;
803 }
804 }
805
806 static struct etherlist {
807 const u_char addr[6];
808 const char *name;
809 } etherlist[] = {
810 {{ 0xff, 0xff, 0xff, 0xff, 0xff, 0xff }, "Broadcast" },
811 {{ 0x00, 0x00, 0x00, 0x00, 0x00, 0x00 }, NULL }
812 };
813
814 /*
815 * Initialize the ethers hash table. We take two different approaches
816 * depending on whether or not the system provides the ethers name
817 * service. If it does, we just wire in a few names at startup,
818 * and etheraddr_string() fills in the table on demand. If it doesn't,
819 * then we suck in the entire /etc/ethers file at startup. The idea
820 * is that parsing the local file will be fast, but spinning through
821 * all the ethers entries via NIS & next_etherent might be very slow.
822 *
823 * XXX pcap_next_etherent doesn't belong in the pcap interface, but
824 * since the pcap module already does name-to-address translation,
825 * it's already does most of the work for the ethernet address-to-name
826 * translation, so we just pcap_next_etherent as a convenience.
827 */
828 static void
829 init_etherarray(void)
830 {
831 register struct etherlist *el;
832 register struct enamemem *tp;
833 #ifdef USE_ETHER_NTOHOST
834 char name[256];
835 #else
836 register struct pcap_etherent *ep;
837 register FILE *fp;
838
839 /* Suck in entire ethers file */
840 fp = fopen(PCAP_ETHERS_FILE, "r");
841 if (fp != NULL) {
842 while ((ep = pcap_next_etherent(fp)) != NULL) {
843 tp = lookup_emem(ep->addr);
844 tp->e_name = strdup(ep->name);
845 }
846 (void)fclose(fp);
847 }
848 #endif
849
850 /* Hardwire some ethernet names */
851 for (el = etherlist; el->name != NULL; ++el) {
852 tp = lookup_emem(el->addr);
853 /* Don't override existing name */
854 if (tp->e_name != NULL)
855 continue;
856
857 #ifdef USE_ETHER_NTOHOST
858 /*
859 * Use YP/NIS version of name if available.
860 *
861 * We don't cast it to "const struct ether_addr *"
862 * because some systems don't modify the Ethernet
863 * address but fail to declare the second argument
864 * as a "const" pointer.
865 */
866 if (ether_ntohost(name, (struct ether_addr *)el->addr) == 0) {
867 tp->e_name = strdup(name);
868 continue;
869 }
870 #endif
871 tp->e_name = el->name;
872 }
873 }
874
875 static struct tok llcsap_db[] = {
876 { LLCSAP_NULL, "null" },
877 { LLCSAP_8021B_I, "802.1b-gsap" },
878 { LLCSAP_8021B_G, "802.1b-isap" },
879 { LLCSAP_IP, "ip-sap" },
880 { LLCSAP_PROWAYNM, "proway-nm" },
881 { LLCSAP_8021D, "802.1d" },
882 { LLCSAP_RS511, "eia-rs511" },
883 { LLCSAP_ISO8208, "x.25/llc2" },
884 { LLCSAP_PROWAY, "proway" },
885 { LLCSAP_SNAP, "snap" },
886 { LLCSAP_IPX, "IPX" },
887 { LLCSAP_NETBEUI, "netbeui" },
888 { LLCSAP_ISONS, "iso-clns" },
889 { LLCSAP_GLOBAL, "global" },
890 { 0, NULL }
891 };
892
893 static void
894 init_llcsaparray(void)
895 {
896 register int i;
897 register struct hnamemem *table;
898
899 for (i = 0; llcsap_db[i].s != NULL; i++) {
900 table = &llcsaptable[llcsap_db[i].v];
901 while (table->name)
902 table = table->nxt;
903 table->name = llcsap_db[i].s;
904 table->addr = llcsap_db[i].v;
905 table->nxt = newhnamemem();
906 }
907 }
908
909 static struct tok ipxsap_db[] = {
910 { 0x0000, "Unknown" },
911 { 0x0001, "User" },
912 { 0x0002, "User Group" },
913 { 0x0003, "PrintQueue" },
914 { 0x0004, "FileServer" },
915 { 0x0005, "JobServer" },
916 { 0x0006, "Gateway" },
917 { 0x0007, "PrintServer" },
918 { 0x0008, "ArchiveQueue" },
919 { 0x0009, "ArchiveServer" },
920 { 0x000a, "JobQueue" },
921 { 0x000b, "Administration" },
922 { 0x000F, "Novell TI-RPC" },
923 { 0x0017, "Diagnostics" },
924 { 0x0020, "NetBIOS" },
925 { 0x0021, "NAS SNA Gateway" },
926 { 0x0023, "NACS AsyncGateway" },
927 { 0x0024, "RemoteBridge/RoutingService" },
928 { 0x0026, "BridgeServer" },
929 { 0x0027, "TCP/IP Gateway" },
930 { 0x0028, "Point-to-point X.25 BridgeServer" },
931 { 0x0029, "3270 Gateway" },
932 { 0x002a, "CHI Corp" },
933 { 0x002c, "PC Chalkboard" },
934 { 0x002d, "TimeSynchServer" },
935 { 0x002e, "ARCserve5.0/PalindromeBackup" },
936 { 0x0045, "DI3270 Gateway" },
937 { 0x0047, "AdvertisingPrintServer" },
938 { 0x004a, "NetBlazerModems" },
939 { 0x004b, "BtrieveVAP" },
940 { 0x004c, "NetwareSQL" },
941 { 0x004d, "XtreeNetwork" },
942 { 0x0050, "BtrieveVAP4.11" },
943 { 0x0052, "QuickLink" },
944 { 0x0053, "PrintQueueUser" },
945 { 0x0058, "Multipoint X.25 Router" },
946 { 0x0060, "STLB/NLM" },
947 { 0x0064, "ARCserve" },
948 { 0x0066, "ARCserve3.0" },
949 { 0x0072, "WAN CopyUtility" },
950 { 0x007a, "TES-NetwareVMS" },
951 { 0x0092, "WATCOM Debugger/EmeraldTapeBackupServer" },
952 { 0x0095, "DDA OBGYN" },
953 { 0x0098, "NetwareAccessServer" },
954 { 0x009a, "Netware for VMS II/NamedPipeServer" },
955 { 0x009b, "NetwareAccessServer" },
956 { 0x009e, "PortableNetwareServer/SunLinkNVT" },
957 { 0x00a1, "PowerchuteAPC UPS" },
958 { 0x00aa, "LAWserve" },
959 { 0x00ac, "CompaqIDA StatusMonitor" },
960 { 0x0100, "PIPE STAIL" },
961 { 0x0102, "LAN ProtectBindery" },
962 { 0x0103, "OracleDataBaseServer" },
963 { 0x0107, "Netware386/RSPX RemoteConsole" },
964 { 0x010f, "NovellSNA Gateway" },
965 { 0x0111, "TestServer" },
966 { 0x0112, "HP PrintServer" },
967 { 0x0114, "CSA MUX" },
968 { 0x0115, "CSA LCA" },
969 { 0x0116, "CSA CM" },
970 { 0x0117, "CSA SMA" },
971 { 0x0118, "CSA DBA" },
972 { 0x0119, "CSA NMA" },
973 { 0x011a, "CSA SSA" },
974 { 0x011b, "CSA STATUS" },
975 { 0x011e, "CSA APPC" },
976 { 0x0126, "SNA TEST SSA Profile" },
977 { 0x012a, "CSA TRACE" },
978 { 0x012b, "NetwareSAA" },
979 { 0x012e, "IKARUS VirusScan" },
980 { 0x0130, "CommunicationsExecutive" },
981 { 0x0133, "NNS DomainServer/NetwareNamingServicesDomain" },
982 { 0x0135, "NetwareNamingServicesProfile" },
983 { 0x0137, "Netware386 PrintQueue/NNS PrintQueue" },
984 { 0x0141, "LAN SpoolServer" },
985 { 0x0152, "IRMALAN Gateway" },
986 { 0x0154, "NamedPipeServer" },
987 { 0x0166, "NetWareManagement" },
988 { 0x0168, "Intel PICKIT CommServer/Intel CAS TalkServer" },
989 { 0x0173, "Compaq" },
990 { 0x0174, "Compaq SNMP Agent" },
991 { 0x0175, "Compaq" },
992 { 0x0180, "XTreeServer/XTreeTools" },
993 { 0x018A, "NASI ServicesBroadcastServer" },
994 { 0x01b0, "GARP Gateway" },
995 { 0x01b1, "Binfview" },
996 { 0x01bf, "IntelLanDeskManager" },
997 { 0x01ca, "AXTEC" },
998 { 0x01cb, "ShivaNetModem/E" },
999 { 0x01cc, "ShivaLanRover/E" },
1000 { 0x01cd, "ShivaLanRover/T" },
1001 { 0x01ce, "ShivaUniversal" },
1002 { 0x01d8, "CastelleFAXPressServer" },
1003 { 0x01da, "CastelleLANPressPrintServer" },
1004 { 0x01dc, "CastelleFAX/Xerox7033 FaxServer/ExcelLanFax" },
1005 { 0x01f0, "LEGATO" },
1006 { 0x01f5, "LEGATO" },
1007 { 0x0233, "NMS Agent/NetwareManagementAgent" },
1008 { 0x0237, "NMS IPX Discovery/LANternReadWriteChannel" },
1009 { 0x0238, "NMS IP Discovery/LANternTrapAlarmChannel" },
1010 { 0x023a, "LANtern" },
1011 { 0x023c, "MAVERICK" },
1012 { 0x023f, "NovellSMDR" },
1013 { 0x024e, "NetwareConnect" },
1014 { 0x024f, "NASI ServerBroadcast Cisco" },
1015 { 0x026a, "NMS ServiceConsole" },
1016 { 0x026b, "TimeSynchronizationServer Netware 4.x" },
1017 { 0x0278, "DirectoryServer Netware 4.x" },
1018 { 0x027b, "NetwareManagementAgent" },
1019 { 0x0280, "Novell File and Printer Sharing Service for PC" },
1020 { 0x0304, "NovellSAA Gateway" },
1021 { 0x0308, "COM/VERMED" },
1022 { 0x030a, "GalacticommWorldgroupServer" },
1023 { 0x030c, "IntelNetport2/HP JetDirect/HP Quicksilver" },
1024 { 0x0320, "AttachmateGateway" },
1025 { 0x0327, "MicrosoftDiagnostiocs" },
1026 { 0x0328, "WATCOM SQL Server" },
1027 { 0x0335, "MultiTechSystems MultisynchCommServer" },
1028 { 0x0343, "Xylogics RemoteAccessServer/LANModem" },
1029 { 0x0355, "ArcadaBackupExec" },
1030 { 0x0358, "MSLCD1" },
1031 { 0x0361, "NETINELO" },
1032 { 0x037e, "Powerchute UPS Monitoring" },
1033 { 0x037f, "ViruSafeNotify" },
1034 { 0x0386, "HP Bridge" },
1035 { 0x0387, "HP Hub" },
1036 { 0x0394, "NetWare SAA Gateway" },
1037 { 0x039b, "LotusNotes" },
1038 { 0x03b7, "CertusAntiVirus" },
1039 { 0x03c4, "ARCserve4.0" },
1040 { 0x03c7, "LANspool3.5" },
1041 { 0x03d7, "LexmarkPrinterServer" },
1042 { 0x03d8, "LexmarkXLE PrinterServer" },
1043 { 0x03dd, "BanyanENS NetwareClient" },
1044 { 0x03de, "GuptaSequelBaseServer/NetWareSQL" },
1045 { 0x03e1, "UnivelUnixware" },
1046 { 0x03e4, "UnivelUnixware" },
1047 { 0x03fc, "IntelNetport" },
1048 { 0x03fd, "PrintServerQueue" },
1049 { 0x040A, "ipnServer" },
1050 { 0x040D, "LVERRMAN" },
1051 { 0x040E, "LVLIC" },
1052 { 0x0414, "NET Silicon (DPI)/Kyocera" },
1053 { 0x0429, "SiteLockVirus" },
1054 { 0x0432, "UFHELPR???" },
1055 { 0x0433, "Synoptics281xAdvancedSNMPAgent" },
1056 { 0x0444, "MicrosoftNT SNA Server" },
1057 { 0x0448, "Oracle" },
1058 { 0x044c, "ARCserve5.01" },
1059 { 0x0457, "CanonGP55" },
1060 { 0x045a, "QMS Printers" },
1061 { 0x045b, "DellSCSI Array" },
1062 { 0x0491, "NetBlazerModems" },
1063 { 0x04ac, "OnTimeScheduler" },
1064 { 0x04b0, "CD-Net" },
1065 { 0x0513, "EmulexNQA" },
1066 { 0x0520, "SiteLockChecks" },
1067 { 0x0529, "SiteLockChecks" },
1068 { 0x052d, "CitrixOS2 AppServer" },
1069 { 0x0535, "Tektronix" },
1070 { 0x0536, "Milan" },
1071 { 0x055d, "Attachmate SNA gateway" },
1072 { 0x056b, "IBM8235 ModemServer" },
1073 { 0x056c, "ShivaLanRover/E PLUS" },
1074 { 0x056d, "ShivaLanRover/T PLUS" },
1075 { 0x0580, "McAfeeNetShield" },
1076 { 0x05B8, "NLM to workstation communication (Revelation Software)" },
1077 { 0x05BA, "CompatibleSystemsRouters" },
1078 { 0x05BE, "CheyenneHierarchicalStorageManager" },
1079 { 0x0606, "JCWatermarkImaging" },
1080 { 0x060c, "AXISNetworkPrinter" },
1081 { 0x0610, "AdaptecSCSIManagement" },
1082 { 0x0621, "IBM AntiVirus" },
1083 { 0x0640, "Windows95 RemoteRegistryService" },
1084 { 0x064e, "MicrosoftIIS" },
1085 { 0x067b, "Microsoft Win95/98 File and Print Sharing for NetWare" },
1086 { 0x067c, "Microsoft Win95/98 File and Print Sharing for NetWare" },
1087 { 0x076C, "Xerox" },
1088 { 0x079b, "ShivaLanRover/E 115" },
1089 { 0x079c, "ShivaLanRover/T 115" },
1090 { 0x07B4, "CubixWorldDesk" },
1091 { 0x07c2, "Quarterdeck IWare Connect V2.x NLM" },
1092 { 0x07c1, "Quarterdeck IWare Connect V3.x NLM" },
1093 { 0x0810, "ELAN License Server Demo" },
1094 { 0x0824, "ShivaLanRoverAccessSwitch/E" },
1095 { 0x086a, "ISSC Collector" },
1096 { 0x087f, "ISSC DAS AgentAIX" },
1097 { 0x0880, "Intel Netport PRO" },
1098 { 0x0881, "Intel Netport PRO" },
1099 { 0x0b29, "SiteLock" },
1100 { 0x0c29, "SiteLockApplications" },
1101 { 0x0c2c, "LicensingServer" },
1102 { 0x2101, "PerformanceTechnologyInstantInternet" },
1103 { 0x2380, "LAI SiteLock" },
1104 { 0x238c, "MeetingMaker" },
1105 { 0x4808, "SiteLockServer/SiteLockMetering" },
1106 { 0x5555, "SiteLockUser" },
1107 { 0x6312, "Tapeware" },
1108 { 0x6f00, "RabbitGateway" },
1109 { 0x7703, "MODEM" },
1110 { 0x8002, "NetPortPrinters" },
1111 { 0x8008, "WordPerfectNetworkVersion" },
1112 { 0x85BE, "Cisco EIGRP" },
1113 { 0x8888, "WordPerfectNetworkVersion/QuickNetworkManagement" },
1114 { 0x9000, "McAfeeNetShield" },
1115 { 0x9604, "CSA-NT_MON" },
1116 { 0xb6a8, "OceanIsleReachoutRemoteControl" },
1117 { 0xf11f, "SiteLockMetering" },
1118 { 0xf1ff, "SiteLock" },
1119 { 0xf503, "Microsoft SQL Server" },
1120 { 0xF905, "IBM TimeAndPlace" },
1121 { 0xfbfb, "TopCallIII FaxServer" },
1122 { 0xffff, "AnyService/Wildcard" },
1123 { 0, (char *)0 }
1124 };
1125
1126 static void
1127 init_ipxsaparray(void)
1128 {
1129 register int i;
1130 register struct hnamemem *table;
1131
1132 for (i = 0; ipxsap_db[i].s != NULL; i++) {
1133 int j = htons(ipxsap_db[i].v) & (HASHNAMESIZE-1);
1134 table = &ipxsaptable[j];
1135 while (table->name)
1136 table = table->nxt;
1137 table->name = ipxsap_db[i].s;
1138 table->addr = htons(ipxsap_db[i].v);
1139 table->nxt = newhnamemem();
1140 }
1141 }
1142
1143 /*
1144 * Initialize the address to name translation machinery. We map all
1145 * non-local IP addresses to numeric addresses if fflag is true (i.e.,
1146 * to prevent blocking on the nameserver). localnet is the IP address
1147 * of the local network. mask is its subnet mask.
1148 */
1149 void
1150 init_addrtoname(u_int32_t localnet, u_int32_t mask)
1151 {
1152 if (fflag) {
1153 f_localnet = localnet;
1154 f_netmask = mask;
1155 }
1156 if (nflag)
1157 /*
1158 * Simplest way to suppress names.
1159 */
1160 return;
1161
1162 init_etherarray();
1163 init_servarray();
1164 init_eprotoarray();
1165 init_llcsaparray();
1166 init_protoidarray();
1167 init_ipxsaparray();
1168 }
1169
1170 const char *
1171 dnaddr_string(u_short dnaddr)
1172 {
1173 register struct hnamemem *tp;
1174
1175 for (tp = &dnaddrtable[dnaddr & (HASHNAMESIZE-1)]; tp->nxt != 0;
1176 tp = tp->nxt)
1177 if (tp->addr == dnaddr)
1178 return (tp->name);
1179
1180 tp->addr = dnaddr;
1181 tp->nxt = newhnamemem();
1182 if (nflag)
1183 tp->name = dnnum_string(dnaddr);
1184 else
1185 tp->name = dnname_string(dnaddr);
1186
1187 return(tp->name);
1188 }
1189
1190 /* Return a zero'ed hnamemem struct and cuts down on calloc() overhead */
1191 struct hnamemem *
1192 newhnamemem(void)
1193 {
1194 register struct hnamemem *p;
1195 static struct hnamemem *ptr = NULL;
1196 static u_int num = 0;
1197
1198 if (num <= 0) {
1199 num = 64;
1200 ptr = (struct hnamemem *)calloc(num, sizeof (*ptr));
1201 if (ptr == NULL)
1202 error("newhnamemem: calloc");
1203 }
1204 --num;
1205 p = ptr++;
1206 return (p);
1207 }
1208
1209 #ifdef INET6
1210 /* Return a zero'ed h6namemem struct and cuts down on calloc() overhead */
1211 struct h6namemem *
1212 newh6namemem(void)
1213 {
1214 register struct h6namemem *p;
1215 static struct h6namemem *ptr = NULL;
1216 static u_int num = 0;
1217
1218 if (num <= 0) {
1219 num = 64;
1220 ptr = (struct h6namemem *)calloc(num, sizeof (*ptr));
1221 if (ptr == NULL)
1222 error("newh6namemem: calloc");
1223 }
1224 --num;
1225 p = ptr++;
1226 return (p);
1227 }
1228 #endif /* INET6 */