2 * Routines for VLAN 802.1Q ethernet header disassembly
6 * Wireshark - Network traffic analyzer
7 * By Gerald Combs <gerald@wireshark.org>
8 * Copyright 1998 Gerald Combs
10 * This program is free software; you can redistribute it and/or
11 * modify it under the terms of the GNU General Public License
12 * as published by the Free Software Foundation; either version 2
13 * of the License, or (at your option) any later version.
15 * This program is distributed in the hope that it will be useful,
16 * but WITHOUT ANY WARRANTY; without even the implied warranty of
17 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
18 * GNU General Public License for more details.
20 * You should have received a copy of the GNU General Public License
21 * along with this program; if not, write to the Free Software
22 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
25 #define NEW_PROTO_TREE_API
30 #include <epan/packet.h>
31 #include <wsutil/pint.h>
32 #include <epan/expert.h>
33 #include "packet-ieee8023.h"
34 #include "packet-ipx.h"
35 #include "packet-llc.h"
36 #include "packet-vlan.h"
37 #include <epan/etypes.h>
38 #include <epan/prefs.h>
40 void proto_reg_handoff_vlan(void);
42 static unsigned int q_in_q_ethertype
= 0x9100;
44 static gboolean vlan_summary_in_tree
= TRUE
;
47 static dissector_handle_t vlan_handle
;
49 static header_field_info
*hfi_vlan
= NULL
;
51 #define VLAN_HFI_INIT HFI_INIT(proto_vlan)
53 /* From Table G-2 of IEEE standard 802.1D-2004 */
54 static const value_string pri_vals
[] = {
57 { 0, "Best Effort (default)" },
58 { 3, "Excellent Effort" },
59 { 4, "Controlled Load" },
60 { 5, "Video, < 100ms latency and jitter" },
61 { 6, "Voice, < 10ms latency and jitter" },
62 { 7, "Network Control" },
66 static header_field_info hfi_vlan_priority VLAN_HFI_INIT
= {
67 "Priority", "vlan.priority", FT_UINT16
, BASE_DEC
,
68 VALS(pri_vals
), 0xE000, "Descriptions are recommendations from IEEE standard 802.1D-2004", HFILL
};
70 static const value_string cfi_vals
[] = {
72 { 1, "Non-canonical" },
76 static header_field_info hfi_vlan_cfi VLAN_HFI_INIT
= {
77 "CFI", "vlan.cfi", FT_UINT16
, BASE_DEC
,
78 VALS(cfi_vals
), 0x1000, "Canonical Format Identifier", HFILL
};
80 static header_field_info hfi_vlan_id VLAN_HFI_INIT
= {
81 "ID", "vlan.id", FT_UINT16
, BASE_DEC
,
82 NULL
, 0x0FFF, "VLAN ID", HFILL
};
84 static header_field_info hfi_vlan_etype VLAN_HFI_INIT
= {
85 "Type", "vlan.etype", FT_UINT16
, BASE_HEX
,
86 VALS(etype_vals
), 0x0, "Ethertype", HFILL
};
88 static header_field_info hfi_vlan_len VLAN_HFI_INIT
= {
89 "Length", "vlan.len", FT_UINT16
, BASE_DEC
,
90 NULL
, 0x0, NULL
, HFILL
};
92 static header_field_info hfi_vlan_trailer VLAN_HFI_INIT
= {
93 "Trailer", "vlan.trailer", FT_BYTES
, BASE_NONE
,
94 NULL
, 0x0, "VLAN Trailer", HFILL
};
97 static gint ett_vlan
= -1;
99 static expert_field ei_vlan_len
= EI_INIT
;
102 capture_vlan(const guchar
*pd
, int offset
, int len
, packet_counts
*ld
) {
104 if ( !BYTES_ARE_IN_FRAME(offset
,len
,5) ) {
108 encap_proto
= pntohs( &pd
[offset
+2] );
109 if ( encap_proto
<= IEEE_802_3_MAX_LEN
) {
110 if ( pd
[offset
+4] == 0xff && pd
[offset
+5] == 0xff ) {
113 capture_llc(pd
,offset
+4,len
,ld
);
116 capture_ethertype(encap_proto
, pd
, offset
+4, len
, ld
);
121 dissect_vlan(tvbuff_t
*tvb
, packet_info
*pinfo
, proto_tree
*tree
)
125 volatile guint16 encap_proto
;
126 volatile gboolean is_802_2
;
127 proto_tree
*volatile vlan_tree
;
129 col_set_str(pinfo
->cinfo
, COL_PROTOCOL
, "VLAN");
130 col_clear(pinfo
->cinfo
, COL_INFO
);
132 tci
= tvb_get_ntohs( tvb
, 0 );
134 col_add_fstr(pinfo
->cinfo
, COL_INFO
, "PRI: %u CFI: %u ID: %u",
135 (tci
>> 13), ((tci
>> 12) & 1), (tci
& 0xFFF));
136 col_add_fstr(pinfo
->cinfo
, COL_8021Q_VLAN_ID
, "%u", (tci
& 0xFFF));
141 ti
= proto_tree_add_item(tree
, hfi_vlan
, tvb
, 0, 4, ENC_NA
);
143 if (vlan_summary_in_tree
) {
144 proto_item_append_text(ti
, ", PRI: %u, CFI: %u, ID: %u",
145 (tci
>> 13), ((tci
>> 12) & 1), (tci
& 0xFFF));
148 vlan_tree
= proto_item_add_subtree(ti
, ett_vlan
);
150 proto_tree_add_item(vlan_tree
, &hfi_vlan_priority
, tvb
, 0, 2, ENC_BIG_ENDIAN
);
151 proto_tree_add_item(vlan_tree
, &hfi_vlan_cfi
, tvb
, 0, 2, ENC_BIG_ENDIAN
);
152 proto_tree_add_item(vlan_tree
, &hfi_vlan_id
, tvb
, 0, 2, ENC_BIG_ENDIAN
);
155 encap_proto
= tvb_get_ntohs(tvb
, 2);
156 if (encap_proto
<= IEEE_802_3_MAX_LEN
) {
157 /* Is there an 802.2 layer? I can tell by looking at the first 2
158 bytes after the VLAN header. If they are 0xffff, then what
159 follows the VLAN header is an IPX payload, meaning no 802.2.
160 (IPX/SPX is they only thing that can be contained inside a
161 straight 802.3 packet, so presumably the same applies for
162 Ethernet VLAN packets). A non-0xffff value means that there's an
163 802.2 layer inside the VLAN layer */
166 /* Don't throw an exception for this check (even a BoundsError) */
167 if (tvb_length_remaining(tvb
, 4) >= 2) {
168 if (tvb_get_ntohs(tvb
, 4) == 0xffff) {
173 dissect_802_3(encap_proto
, is_802_2
, tvb
, 4, pinfo
, tree
, vlan_tree
,
174 hfi_vlan_len
.id
, hfi_vlan_trailer
.id
, &ei_vlan_len
, 0);
176 ethertype(encap_proto
, tvb
, 4, pinfo
, tree
, vlan_tree
,
177 hfi_vlan_etype
.id
, hfi_vlan_trailer
.id
, 0);
182 proto_register_vlan(void)
184 #ifndef HAVE_HFI_SECTION_INIT
185 static header_field_info
*hfi
[] = {
193 #endif /* HAVE_HFI_SECTION_INIT */
195 static gint
*ett
[] = {
199 static ei_register_info ei
[] = {
200 { &ei_vlan_len
, { "vlan.len.past_end", PI_MALFORMED
, PI_ERROR
, "Length field value goes past the end of the payload", EXPFILL
}},
203 module_t
*vlan_module
;
204 expert_module_t
* expert_vlan
;
207 proto_vlan
= proto_register_protocol("802.1Q Virtual LAN", "VLAN", "vlan");
208 hfi_vlan
= proto_registrar_get_nth(proto_vlan
);
210 proto_register_fields(proto_vlan
, hfi
, array_length(hfi
));
211 proto_register_subtree_array(ett
, array_length(ett
));
212 expert_vlan
= expert_register_protocol(proto_vlan
);
213 expert_register_field_array(expert_vlan
, ei
, array_length(ei
));
215 vlan_module
= prefs_register_protocol(proto_vlan
, proto_reg_handoff_vlan
);
216 prefs_register_bool_preference(vlan_module
, "summary_in_tree",
217 "Show vlan summary in protocol tree",
218 "Whether the vlan summary line should be shown in the protocol tree",
219 &vlan_summary_in_tree
);
220 prefs_register_uint_preference(vlan_module
, "qinq_ethertype",
221 "802.1QinQ Ethertype (in hex)",
222 "The (hexadecimal) Ethertype used to indicate 802.1QinQ VLAN in VLAN tunneling.",
223 16, &q_in_q_ethertype
);
225 vlan_handle
= create_dissector_handle(dissect_vlan
, proto_vlan
);
229 proto_reg_handoff_vlan(void)
231 static gboolean prefs_initialized
= FALSE
;
232 static unsigned int old_q_in_q_ethertype
;
234 if (!prefs_initialized
)
236 dissector_add_uint("ethertype", ETHERTYPE_VLAN
, vlan_handle
);
237 prefs_initialized
= TRUE
;
241 dissector_delete_uint("ethertype", old_q_in_q_ethertype
, vlan_handle
);
244 old_q_in_q_ethertype
= q_in_q_ethertype
;
246 dissector_add_uint("ethertype", q_in_q_ethertype
, vlan_handle
);