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The Tcpdump Group git mirrors - tcpdump/blob - print-arp.c
2 * Copyright (c) 1988, 1989, 1990, 1991, 1992, 1993, 1994, 1995, 1996, 1997
3 * The Regents of the University of California. All rights reserved.
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
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.
22 /* \summary: Address Resolution Protocol (ARP) printer */
28 #include <netdissect-stdinc.h>
32 #include "netdissect.h"
33 #include "addrtoname.h"
35 #include "ethertype.h"
38 static const char tstr
[] = "[|ARP]";
41 * Address Resolution Protocol.
43 * See RFC 826 for protocol description. ARP packets are variable
44 * in size; the arphdr structure defines the fixed-length portion.
45 * Protocol type values are the same as those for 10 Mb/s Ethernet.
46 * It is followed by the variable-sized fields ar_sha, arp_spa,
47 * arp_tha and arp_tpa in that order, according to the lengths
48 * specified. Field names used correspond to RFC 826.
51 u_short ar_hrd
; /* format of hardware address */
52 #define ARPHRD_ETHER 1 /* ethernet hardware format */
53 #define ARPHRD_IEEE802 6 /* token-ring hardware format */
54 #define ARPHRD_ARCNET 7 /* arcnet hardware format */
55 #define ARPHRD_FRELAY 15 /* frame relay hardware format */
56 #define ARPHRD_ATM2225 19 /* ATM (RFC 2225) */
57 #define ARPHRD_STRIP 23 /* Ricochet Starmode Radio hardware format */
58 #define ARPHRD_IEEE1394 24 /* IEEE 1394 (FireWire) hardware format */
59 u_short ar_pro
; /* format of protocol address */
60 u_char ar_hln
; /* length of hardware address */
61 u_char ar_pln
; /* length of protocol address */
62 u_short ar_op
; /* one of: */
63 #define ARPOP_REQUEST 1 /* request to resolve address */
64 #define ARPOP_REPLY 2 /* response to previous request */
65 #define ARPOP_REVREQUEST 3 /* request protocol address given hardware */
66 #define ARPOP_REVREPLY 4 /* response giving protocol address */
67 #define ARPOP_INVREQUEST 8 /* request to identify peer */
68 #define ARPOP_INVREPLY 9 /* response identifying peer */
69 #define ARPOP_NAK 10 /* NAK - only valif for ATM ARP */
72 * The remaining fields are variable in size,
73 * according to the sizes above.
76 u_char ar_sha
[]; /* sender hardware address */
77 u_char ar_spa
[]; /* sender protocol address */
78 u_char ar_tha
[]; /* target hardware address */
79 u_char ar_tpa
[]; /* target protocol address */
81 #define ar_sha(ap) (((const u_char *)((ap)+1))+0)
82 #define ar_spa(ap) (((const u_char *)((ap)+1))+ (ap)->ar_hln)
83 #define ar_tha(ap) (((const u_char *)((ap)+1))+ (ap)->ar_hln+(ap)->ar_pln)
84 #define ar_tpa(ap) (((const u_char *)((ap)+1))+2*(ap)->ar_hln+(ap)->ar_pln)
89 #define HRD(ap) EXTRACT_16BITS(&(ap)->ar_hrd)
90 #define HRD_LEN(ap) ((ap)->ar_hln)
91 #define PROTO_LEN(ap) ((ap)->ar_pln)
92 #define OP(ap) EXTRACT_16BITS(&(ap)->ar_op)
93 #define PRO(ap) EXTRACT_16BITS(&(ap)->ar_pro)
94 #define SHA(ap) (ar_sha(ap))
95 #define SPA(ap) (ar_spa(ap))
96 #define THA(ap) (ar_tha(ap))
97 #define TPA(ap) (ar_tpa(ap))
100 static const struct tok arpop_values
[] = {
101 { ARPOP_REQUEST
, "Request" },
102 { ARPOP_REPLY
, "Reply" },
103 { ARPOP_REVREQUEST
, "Reverse Request" },
104 { ARPOP_REVREPLY
, "Reverse Reply" },
105 { ARPOP_INVREQUEST
, "Inverse Request" },
106 { ARPOP_INVREPLY
, "Inverse Reply" },
107 { ARPOP_NAK
, "NACK Reply" },
111 static const struct tok arphrd_values
[] = {
112 { ARPHRD_ETHER
, "Ethernet" },
113 { ARPHRD_IEEE802
, "TokenRing" },
114 { ARPHRD_ARCNET
, "ArcNet" },
115 { ARPHRD_FRELAY
, "FrameRelay" },
116 { ARPHRD_STRIP
, "Strip" },
117 { ARPHRD_IEEE1394
, "IEEE 1394" },
118 { ARPHRD_ATM2225
, "ATM" },
123 * ATM Address Resolution Protocol.
125 * See RFC 2225 for protocol description. ATMARP packets are similar
126 * to ARP packets, except that there are no length fields for the
127 * protocol address - instead, there are type/length fields for
128 * the ATM number and subaddress - and the hardware addresses consist
129 * of an ATM number and an ATM subaddress.
131 struct atmarp_pkthdr
{
132 u_short aar_hrd
; /* format of hardware address */
133 u_short aar_pro
; /* format of protocol address */
134 u_char aar_shtl
; /* length of source ATM number */
135 u_char aar_sstl
; /* length of source ATM subaddress */
136 #define ATMARP_IS_E164 0x40 /* bit in type/length for E.164 format */
137 #define ATMARP_LEN_MASK 0x3F /* length of {sub}address in type/length */
138 u_short aar_op
; /* same as regular ARP */
139 u_char aar_spln
; /* length of source protocol address */
140 u_char aar_thtl
; /* length of target ATM number */
141 u_char aar_tstl
; /* length of target ATM subaddress */
142 u_char aar_tpln
; /* length of target protocol address */
144 * The remaining fields are variable in size,
145 * according to the sizes above.
148 u_char aar_sha
[]; /* source ATM number */
149 u_char aar_ssa
[]; /* source ATM subaddress */
150 u_char aar_spa
[]; /* sender protocol address */
151 u_char aar_tha
[]; /* target ATM number */
152 u_char aar_tsa
[]; /* target ATM subaddress */
153 u_char aar_tpa
[]; /* target protocol address */
156 #define ATMHRD(ap) EXTRACT_16BITS(&(ap)->aar_hrd)
157 #define ATMSHRD_LEN(ap) ((ap)->aar_shtl & ATMARP_LEN_MASK)
158 #define ATMSSLN(ap) ((ap)->aar_sstl & ATMARP_LEN_MASK)
159 #define ATMSPROTO_LEN(ap) ((ap)->aar_spln)
160 #define ATMOP(ap) EXTRACT_16BITS(&(ap)->aar_op)
161 #define ATMPRO(ap) EXTRACT_16BITS(&(ap)->aar_pro)
162 #define ATMTHRD_LEN(ap) ((ap)->aar_thtl & ATMARP_LEN_MASK)
163 #define ATMTSLN(ap) ((ap)->aar_tstl & ATMARP_LEN_MASK)
164 #define ATMTPROTO_LEN(ap) ((ap)->aar_tpln)
165 #define aar_sha(ap) ((const u_char *)((ap)+1))
166 #define aar_ssa(ap) (aar_sha(ap) + ATMSHRD_LEN(ap))
167 #define aar_spa(ap) (aar_ssa(ap) + ATMSSLN(ap))
168 #define aar_tha(ap) (aar_spa(ap) + ATMSPROTO_LEN(ap))
169 #define aar_tsa(ap) (aar_tha(ap) + ATMTHRD_LEN(ap))
170 #define aar_tpa(ap) (aar_tsa(ap) + ATMTSLN(ap))
173 #define ATMSHA(ap) (aar_sha(ap))
174 #define ATMSSA(ap) (aar_ssa(ap))
175 #define ATMSPA(ap) (aar_spa(ap))
176 #define ATMTHA(ap) (aar_tha(ap))
177 #define ATMTSA(ap) (aar_tsa(ap))
178 #define ATMTPA(ap) (aar_tpa(ap))
180 static u_char ezero
[6];
183 atmarp_addr_print(netdissect_options
*ndo
,
184 const u_char
*ha
, u_int ha_len
, const u_char
*srca
,
188 ND_PRINT((ndo
, "<No address>"));
190 ND_PRINT((ndo
, "%s", linkaddr_string(ndo
, ha
, LINKADDR_ATM
, ha_len
)));
192 ND_PRINT((ndo
, ",%s",
193 linkaddr_string(ndo
, srca
, LINKADDR_ATM
, srca_len
)));
198 atmarp_print(netdissect_options
*ndo
,
199 const u_char
*bp
, u_int length
, u_int caplen
)
201 const struct atmarp_pkthdr
*ap
;
202 u_short pro
, hrd
, op
;
204 ap
= (const struct atmarp_pkthdr
*)bp
;
211 if (!ND_TTEST2(*aar_tpa(ap
), ATMTPROTO_LEN(ap
))) {
212 ND_PRINT((ndo
, "%s", tstr
));
213 ND_DEFAULTPRINT((const u_char
*)ap
, length
);
217 if (!ndo
->ndo_eflag
) {
218 ND_PRINT((ndo
, "ARP, "));
221 if ((pro
!= ETHERTYPE_IP
&& pro
!= ETHERTYPE_TRAIL
) ||
222 ATMSPROTO_LEN(ap
) != 4 ||
223 ATMTPROTO_LEN(ap
) != 4 ||
225 ND_PRINT((ndo
, "%s, %s (len %u/%u)",
226 tok2str(arphrd_values
, "Unknown Hardware (%u)", hrd
),
227 tok2str(ethertype_values
, "Unknown Protocol (0x%04x)", pro
),
231 /* don't know know about the address formats */
232 if (!ndo
->ndo_vflag
) {
237 /* print operation */
238 ND_PRINT((ndo
, "%s%s ",
239 ndo
->ndo_vflag
? ", " : "",
240 tok2str(arpop_values
, "Unknown (%u)", op
)));
245 ND_PRINT((ndo
, "who-has %s", ipaddr_string(ndo
, ATMTPA(ap
))));
246 if (ATMTHRD_LEN(ap
) != 0) {
247 ND_PRINT((ndo
, " ("));
248 atmarp_addr_print(ndo
, ATMTHA(ap
), ATMTHRD_LEN(ap
),
249 ATMTSA(ap
), ATMTSLN(ap
));
250 ND_PRINT((ndo
, ")"));
252 ND_PRINT((ndo
, "tell %s", ipaddr_string(ndo
, ATMSPA(ap
))));
256 ND_PRINT((ndo
, "%s is-at ", ipaddr_string(ndo
, ATMSPA(ap
))));
257 atmarp_addr_print(ndo
, ATMSHA(ap
), ATMSHRD_LEN(ap
), ATMSSA(ap
),
261 case ARPOP_INVREQUEST
:
262 ND_PRINT((ndo
, "who-is "));
263 atmarp_addr_print(ndo
, ATMTHA(ap
), ATMTHRD_LEN(ap
), ATMTSA(ap
),
265 ND_PRINT((ndo
, " tell "));
266 atmarp_addr_print(ndo
, ATMSHA(ap
), ATMSHRD_LEN(ap
), ATMSSA(ap
),
271 atmarp_addr_print(ndo
, ATMSHA(ap
), ATMSHRD_LEN(ap
), ATMSSA(ap
),
273 ND_PRINT((ndo
, "at %s", ipaddr_string(ndo
, ATMSPA(ap
))));
277 ND_PRINT((ndo
, "for %s", ipaddr_string(ndo
, ATMSPA(ap
))));
281 ND_DEFAULTPRINT((const u_char
*)ap
, caplen
);
286 ND_PRINT((ndo
, ", length %u", length
));
290 ND_PRINT((ndo
, "%s", tstr
));
294 arp_print(netdissect_options
*ndo
,
295 const u_char
*bp
, u_int length
, u_int caplen
)
297 const struct arp_pkthdr
*ap
;
298 u_short pro
, hrd
, op
, linkaddr
;
300 ap
= (const struct arp_pkthdr
*)bp
;
308 /* if its ATM then call the ATM ARP printer
309 for Frame-relay ARP most of the fields
310 are similar to Ethernet so overload the Ethernet Printer
311 and set the linkaddr type for linkaddr_string(ndo, ) accordingly */
315 atmarp_print(ndo
, bp
, length
, caplen
);
318 linkaddr
= LINKADDR_FRELAY
;
321 linkaddr
= LINKADDR_ETHER
;
325 if (!ND_TTEST2(*ar_tpa(ap
), PROTO_LEN(ap
))) {
326 ND_PRINT((ndo
, "%s", tstr
));
327 ND_DEFAULTPRINT((const u_char
*)ap
, length
);
331 if (!ndo
->ndo_eflag
) {
332 ND_PRINT((ndo
, "ARP, "));
335 /* print hardware type/len and proto type/len */
336 if ((pro
!= ETHERTYPE_IP
&& pro
!= ETHERTYPE_TRAIL
) ||
337 PROTO_LEN(ap
) != 4 ||
340 ND_PRINT((ndo
, "%s (len %u), %s (len %u)",
341 tok2str(arphrd_values
, "Unknown Hardware (%u)", hrd
),
343 tok2str(ethertype_values
, "Unknown Protocol (0x%04x)", pro
),
346 /* don't know know about the address formats */
347 if (!ndo
->ndo_vflag
) {
352 /* print operation */
353 ND_PRINT((ndo
, "%s%s ",
354 ndo
->ndo_vflag
? ", " : "",
355 tok2str(arpop_values
, "Unknown (%u)", op
)));
360 ND_PRINT((ndo
, "who-has %s", ipaddr_string(ndo
, TPA(ap
))));
361 if (memcmp((const char *)ezero
, (const char *)THA(ap
), HRD_LEN(ap
)) != 0)
362 ND_PRINT((ndo
, " (%s)",
363 linkaddr_string(ndo
, THA(ap
), linkaddr
, HRD_LEN(ap
))));
364 ND_PRINT((ndo
, " tell %s", ipaddr_string(ndo
, SPA(ap
))));
368 ND_PRINT((ndo
, "%s is-at %s",
369 ipaddr_string(ndo
, SPA(ap
)),
370 linkaddr_string(ndo
, SHA(ap
), linkaddr
, HRD_LEN(ap
))));
373 case ARPOP_REVREQUEST
:
374 ND_PRINT((ndo
, "who-is %s tell %s",
375 linkaddr_string(ndo
, THA(ap
), linkaddr
, HRD_LEN(ap
)),
376 linkaddr_string(ndo
, SHA(ap
), linkaddr
, HRD_LEN(ap
))));
380 ND_PRINT((ndo
, "%s at %s",
381 linkaddr_string(ndo
, THA(ap
), linkaddr
, HRD_LEN(ap
)),
382 ipaddr_string(ndo
, TPA(ap
))));
385 case ARPOP_INVREQUEST
:
386 ND_PRINT((ndo
, "who-is %s tell %s",
387 linkaddr_string(ndo
, THA(ap
), linkaddr
, HRD_LEN(ap
)),
388 linkaddr_string(ndo
, SHA(ap
), linkaddr
, HRD_LEN(ap
))));
392 ND_PRINT((ndo
,"%s at %s",
393 linkaddr_string(ndo
, SHA(ap
), linkaddr
, HRD_LEN(ap
)),
394 ipaddr_string(ndo
, SPA(ap
))));
398 ND_DEFAULTPRINT((const u_char
*)ap
, caplen
);
403 ND_PRINT((ndo
, ", length %u", length
));
407 ND_PRINT((ndo
, "%s", tstr
));