2 * Copyright (c) 1988, 1989, 1990, 1991, 1992, 1993, 1994, 1995, 1996, 1997, 2000
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 static const char rcsid
[] _U_
=
23 "@(#) $Header: /tcpdump/master/tcpdump/print-ether.c,v 1.106 2008-02-06 10:47:53 guy Exp $ (LBL)";
30 #include <tcpdump-stdinc.h>
35 #include "interface.h"
36 #include "addrtoname.h"
37 #include "ethertype.h"
41 const struct tok ethertype_values
[] = {
42 { ETHERTYPE_IP
, "IPv4" },
43 { ETHERTYPE_MPLS
, "MPLS unicast" },
44 { ETHERTYPE_MPLS_MULTI
, "MPLS multicast" },
45 { ETHERTYPE_IPV6
, "IPv6" },
46 { ETHERTYPE_8021Q
, "802.1Q" },
47 { ETHERTYPE_VMAN
, "VMAN" },
48 { ETHERTYPE_PUP
, "PUP" },
49 { ETHERTYPE_ARP
, "ARP"},
50 { ETHERTYPE_REVARP
, "Reverse ARP"},
51 { ETHERTYPE_NS
, "NS" },
52 { ETHERTYPE_SPRITE
, "Sprite" },
53 { ETHERTYPE_TRAIL
, "Trail" },
54 { ETHERTYPE_MOPDL
, "MOP DL" },
55 { ETHERTYPE_MOPRC
, "MOP RC" },
56 { ETHERTYPE_DN
, "DN" },
57 { ETHERTYPE_LAT
, "LAT" },
58 { ETHERTYPE_SCA
, "SCA" },
59 { ETHERTYPE_TEB
, "TEB" },
60 { ETHERTYPE_LANBRIDGE
, "Lanbridge" },
61 { ETHERTYPE_DECDNS
, "DEC DNS" },
62 { ETHERTYPE_DECDTS
, "DEC DTS" },
63 { ETHERTYPE_VEXP
, "VEXP" },
64 { ETHERTYPE_VPROD
, "VPROD" },
65 { ETHERTYPE_ATALK
, "Appletalk" },
66 { ETHERTYPE_AARP
, "Appletalk ARP" },
67 { ETHERTYPE_IPX
, "IPX" },
68 { ETHERTYPE_PPP
, "PPP" },
69 { ETHERTYPE_MPCP
, "MPCP" },
70 { ETHERTYPE_SLOW
, "Slow Protocols" },
71 { ETHERTYPE_PPPOED
, "PPPoE D" },
72 { ETHERTYPE_PPPOES
, "PPPoE S" },
73 { ETHERTYPE_EAPOL
, "EAPOL" },
74 { ETHERTYPE_RRCP
, "RRCP" },
75 { ETHERTYPE_JUMBO
, "Jumbo" },
76 { ETHERTYPE_LOOPBACK
, "Loopback" },
77 { ETHERTYPE_ISO
, "OSI" },
78 { ETHERTYPE_GRE_ISO
, "GRE-OSI" },
79 { ETHERTYPE_CFM_OLD
, "CFM (old)" },
80 { ETHERTYPE_CFM
, "CFM" },
81 { ETHERTYPE_LLDP
, "LLDP" },
86 ether_hdr_print(register const u_char
*bp
, u_int length
)
88 register const struct ether_header
*ep
;
89 ep
= (const struct ether_header
*)bp
;
91 (void)printf("%s > %s",
92 etheraddr_string(ESRC(ep
)),
93 etheraddr_string(EDST(ep
)));
96 if (ntohs(ep
->ether_type
) <= ETHERMTU
)
97 (void)printf(", 802.3");
99 (void)printf(", ethertype %s (0x%04x)",
100 tok2str(ethertype_values
,"Unknown", ntohs(ep
->ether_type
)),
101 ntohs(ep
->ether_type
));
103 if (ntohs(ep
->ether_type
) <= ETHERMTU
)
104 (void)printf(", 802.3");
106 (void)printf(", %s", tok2str(ethertype_values
,"Unknown Ethertype (0x%04x)", ntohs(ep
->ether_type
)));
109 (void)printf(", length %u: ", length
);
113 ether_print(const u_char
*p
, u_int length
, u_int caplen
)
115 struct ether_header
*ep
;
117 u_short extracted_ether_type
;
119 if (caplen
< ETHER_HDRLEN
) {
125 ether_hdr_print(p
, length
);
127 length
-= ETHER_HDRLEN
;
128 caplen
-= ETHER_HDRLEN
;
129 ep
= (struct ether_header
*)p
;
132 ether_type
= ntohs(ep
->ether_type
);
135 * Is it (gag) an 802.3 encapsulation?
137 if (ether_type
<= ETHERMTU
) {
138 /* Try to print the LLC-layer header & higher layers */
139 if (llc_print(p
, length
, caplen
, ESRC(ep
), EDST(ep
),
140 &extracted_ether_type
) == 0) {
141 /* ether_type not known, print raw packet */
143 ether_hdr_print((u_char
*)ep
, length
+ ETHER_HDRLEN
);
145 if (!suppress_default_print
)
146 default_print(p
, caplen
);
148 } else if (ether_encap_print(ether_type
, p
, length
, caplen
,
149 &extracted_ether_type
) == 0) {
150 /* ether_type not known, print raw packet */
152 ether_hdr_print((u_char
*)ep
, length
+ ETHER_HDRLEN
);
154 if (!suppress_default_print
)
155 default_print(p
, caplen
);
160 * This is the top level routine of the printer. 'p' points
161 * to the ether header of the packet, 'h->ts' is the timestamp,
162 * 'h->len' is the length of the packet off the wire, and 'h->caplen'
163 * is the number of bytes actually captured.
166 ether_if_print(const struct pcap_pkthdr
*h
, const u_char
*p
)
168 ether_print(p
, h
->len
, h
->caplen
);
170 return (ETHER_HDRLEN
);
174 * Prints the packet encapsulated in an Ethernet data segment
175 * (or an equivalent encapsulation), given the Ethernet type code.
177 * Returns non-zero if it can do so, zero if the ethertype is unknown.
179 * The Ethernet type code is passed through a pointer; if it was
180 * ETHERTYPE_8021Q, it gets updated to be the Ethernet type of
181 * the 802.1Q payload, for the benefit of lower layers that might
182 * want to know what it is.
186 ether_encap_print(u_short ether_type
, const u_char
*p
,
187 u_int length
, u_int caplen
, u_short
*extracted_ether_type
)
190 *extracted_ether_type
= ether_type
;
192 switch (ether_type
) {
195 ip_print(gndo
, p
, length
);
200 ip6_print(p
, length
);
205 case ETHERTYPE_REVARP
:
206 arp_print(gndo
, p
, length
, caplen
);
210 decnet_print(p
, length
, caplen
);
213 case ETHERTYPE_ATALK
:
215 fputs("et1 ", stdout
);
216 atalk_print(p
, length
);
220 aarp_print(p
, length
);
224 printf("(NOV-ETHII) ");
225 ipx_print(p
, length
);
228 case ETHERTYPE_8021Q
:
230 printf("vlan %u, p %u%s, ",
231 ntohs(*(u_int16_t
*)p
) & 0xfff,
232 ntohs(*(u_int16_t
*)p
) >> 13,
233 (ntohs(*(u_int16_t
*)p
) & 0x1000) ? ", CFI" : "");
235 ether_type
= ntohs(*(u_int16_t
*)(p
+ 2));
240 if (ether_type
> ETHERMTU
) {
242 printf("ethertype %s, ",
243 tok2str(ethertype_values
,"0x%04x", ether_type
));
247 *extracted_ether_type
= 0;
249 if (llc_print(p
, length
, caplen
, p
- 18, p
- 12,
250 extracted_ether_type
) == 0) {
251 ether_hdr_print(p
- 18, length
+ 4);
253 if (!suppress_default_print
) {
254 default_print(p
- 18, caplen
+ 4);
261 case ETHERTYPE_JUMBO
:
262 ether_type
= ntohs(*(u_int16_t
*)(p
));
267 if (ether_type
> ETHERMTU
) {
269 printf("ethertype %s, ",
270 tok2str(ethertype_values
,"0x%04x", ether_type
));
274 *extracted_ether_type
= 0;
276 if (llc_print(p
, length
, caplen
, p
- 16, p
- 10,
277 extracted_ether_type
) == 0) {
278 ether_hdr_print(p
- 16, length
+ 2);
280 if (!suppress_default_print
) {
281 default_print(p
- 16, caplen
+ 2);
288 isoclns_print(p
+1, length
-1, length
-1);
291 case ETHERTYPE_PPPOED
:
292 case ETHERTYPE_PPPOES
:
293 case ETHERTYPE_PPPOED2
:
294 case ETHERTYPE_PPPOES2
:
295 pppoe_print(p
, length
);
298 case ETHERTYPE_EAPOL
:
299 eap_print(gndo
, p
, length
);
303 rrcp_print(gndo
, p
- 14 , length
+ 14);
309 ppp_print(p
, length
);
314 mpcp_print(p
, length
);
318 slow_print(p
, length
);
322 case ETHERTYPE_CFM_OLD
:
323 cfm_print(p
, length
);
327 lldp_print(p
, length
);
330 case ETHERTYPE_LOOPBACK
:
334 case ETHERTYPE_MPLS_MULTI
:
335 mpls_print(p
, length
);
340 case ETHERTYPE_MOPRC
:
341 case ETHERTYPE_MOPDL
:
342 /* default_print for now */
351 * c-style: whitesmith