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1 /*
2 * Copyright (c) 1998-2007 The TCPDUMP project
3 *
4 * Redistribution and use in source and binary forms, with or without
5 * modification, are permitted provided that: (1) source code
6 * distributions retain the above copyright notice and this paragraph
7 * in its entirety, and (2) distributions including binary code include
8 * the above copyright notice and this paragraph in its entirety in
9 * the documentation or other materials provided with the distribution.
10 * THIS SOFTWARE IS PROVIDED ``AS IS'' AND
11 * WITHOUT ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, WITHOUT
12 * LIMITATION, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS
13 * FOR A PARTICULAR PURPOSE.
14 *
15 * support for the IEEE Link Discovery Protocol as per 802.1AB
16 *
17 * Original code by Hannes Gredler (hannes@juniper.net)
18 * IEEE and TIA extensions by Carles Kishimoto <carles.kishimoto@gmail.com>
19 * DCBX extensions by Kaladhar Musunuru <kaladharm@sourceforge.net>
20 */
21
22 #ifdef HAVE_CONFIG_H
23 #include "config.h"
24 #endif
25
26 #include <netdissect-stdinc.h>
27
28 #include <stdio.h>
29
30 #include "netdissect.h"
31 #include "extract.h"
32 #include "addrtoname.h"
33 #include "af.h"
34 #include "oui.h"
35
36 #define LLDP_EXTRACT_TYPE(x) (((x)&0xfe00)>>9)
37 #define LLDP_EXTRACT_LEN(x) ((x)&0x01ff)
38
39 /*
40 * TLV type codes
41 */
42 #define LLDP_END_TLV 0
43 #define LLDP_CHASSIS_ID_TLV 1
44 #define LLDP_PORT_ID_TLV 2
45 #define LLDP_TTL_TLV 3
46 #define LLDP_PORT_DESCR_TLV 4
47 #define LLDP_SYSTEM_NAME_TLV 5
48 #define LLDP_SYSTEM_DESCR_TLV 6
49 #define LLDP_SYSTEM_CAP_TLV 7
50 #define LLDP_MGMT_ADDR_TLV 8
51 #define LLDP_PRIVATE_TLV 127
52
53 static const struct tok lldp_tlv_values[] = {
54 { LLDP_END_TLV, "End" },
55 { LLDP_CHASSIS_ID_TLV, "Chassis ID" },
56 { LLDP_PORT_ID_TLV, "Port ID" },
57 { LLDP_TTL_TLV, "Time to Live" },
58 { LLDP_PORT_DESCR_TLV, "Port Description" },
59 { LLDP_SYSTEM_NAME_TLV, "System Name" },
60 { LLDP_SYSTEM_DESCR_TLV, "System Description" },
61 { LLDP_SYSTEM_CAP_TLV, "System Capabilities" },
62 { LLDP_MGMT_ADDR_TLV, "Management Address" },
63 { LLDP_PRIVATE_TLV, "Organization specific" },
64 { 0, NULL}
65 };
66
67 /*
68 * Chassis ID subtypes
69 */
70 #define LLDP_CHASSIS_CHASSIS_COMP_SUBTYPE 1
71 #define LLDP_CHASSIS_INTF_ALIAS_SUBTYPE 2
72 #define LLDP_CHASSIS_PORT_COMP_SUBTYPE 3
73 #define LLDP_CHASSIS_MAC_ADDR_SUBTYPE 4
74 #define LLDP_CHASSIS_NETWORK_ADDR_SUBTYPE 5
75 #define LLDP_CHASSIS_INTF_NAME_SUBTYPE 6
76 #define LLDP_CHASSIS_LOCAL_SUBTYPE 7
77
78 static const struct tok lldp_chassis_subtype_values[] = {
79 { LLDP_CHASSIS_CHASSIS_COMP_SUBTYPE, "Chassis component"},
80 { LLDP_CHASSIS_INTF_ALIAS_SUBTYPE, "Interface alias"},
81 { LLDP_CHASSIS_PORT_COMP_SUBTYPE, "Port component"},
82 { LLDP_CHASSIS_MAC_ADDR_SUBTYPE, "MAC address"},
83 { LLDP_CHASSIS_NETWORK_ADDR_SUBTYPE, "Network address"},
84 { LLDP_CHASSIS_INTF_NAME_SUBTYPE, "Interface name"},
85 { LLDP_CHASSIS_LOCAL_SUBTYPE, "Local"},
86 { 0, NULL}
87 };
88
89 /*
90 * Port ID subtypes
91 */
92 #define LLDP_PORT_INTF_ALIAS_SUBTYPE 1
93 #define LLDP_PORT_PORT_COMP_SUBTYPE 2
94 #define LLDP_PORT_MAC_ADDR_SUBTYPE 3
95 #define LLDP_PORT_NETWORK_ADDR_SUBTYPE 4
96 #define LLDP_PORT_INTF_NAME_SUBTYPE 5
97 #define LLDP_PORT_AGENT_CIRC_ID_SUBTYPE 6
98 #define LLDP_PORT_LOCAL_SUBTYPE 7
99
100 static const struct tok lldp_port_subtype_values[] = {
101 { LLDP_PORT_INTF_ALIAS_SUBTYPE, "Interface alias"},
102 { LLDP_PORT_PORT_COMP_SUBTYPE, "Port component"},
103 { LLDP_PORT_MAC_ADDR_SUBTYPE, "MAC address"},
104 { LLDP_PORT_NETWORK_ADDR_SUBTYPE, "Network Address"},
105 { LLDP_PORT_INTF_NAME_SUBTYPE, "Interface Name"},
106 { LLDP_PORT_AGENT_CIRC_ID_SUBTYPE, "Agent circuit ID"},
107 { LLDP_PORT_LOCAL_SUBTYPE, "Local"},
108 { 0, NULL}
109 };
110
111 /*
112 * System Capabilities
113 */
114 #define LLDP_CAP_OTHER (1 << 0)
115 #define LLDP_CAP_REPEATER (1 << 1)
116 #define LLDP_CAP_BRIDGE (1 << 2)
117 #define LLDP_CAP_WLAN_AP (1 << 3)
118 #define LLDP_CAP_ROUTER (1 << 4)
119 #define LLDP_CAP_PHONE (1 << 5)
120 #define LLDP_CAP_DOCSIS (1 << 6)
121 #define LLDP_CAP_STATION_ONLY (1 << 7)
122
123 static const struct tok lldp_cap_values[] = {
124 { LLDP_CAP_OTHER, "Other"},
125 { LLDP_CAP_REPEATER, "Repeater"},
126 { LLDP_CAP_BRIDGE, "Bridge"},
127 { LLDP_CAP_WLAN_AP, "WLAN AP"},
128 { LLDP_CAP_ROUTER, "Router"},
129 { LLDP_CAP_PHONE, "Telephone"},
130 { LLDP_CAP_DOCSIS, "Docsis"},
131 { LLDP_CAP_STATION_ONLY, "Station Only"},
132 { 0, NULL}
133 };
134
135 #define LLDP_PRIVATE_8021_SUBTYPE_PORT_VLAN_ID 1
136 #define LLDP_PRIVATE_8021_SUBTYPE_PROTOCOL_VLAN_ID 2
137 #define LLDP_PRIVATE_8021_SUBTYPE_VLAN_NAME 3
138 #define LLDP_PRIVATE_8021_SUBTYPE_PROTOCOL_IDENTITY 4
139 #define LLDP_PRIVATE_8021_SUBTYPE_CONGESTION_NOTIFICATION 8
140 #define LLDP_PRIVATE_8021_SUBTYPE_ETS_CONFIGURATION 9
141 #define LLDP_PRIVATE_8021_SUBTYPE_ETS_RECOMMENDATION 10
142 #define LLDP_PRIVATE_8021_SUBTYPE_PFC_CONFIGURATION 11
143 #define LLDP_PRIVATE_8021_SUBTYPE_APPLICATION_PRIORITY 12
144 #define LLDP_PRIVATE_8021_SUBTYPE_EVB 13
145 #define LLDP_PRIVATE_8021_SUBTYPE_CDCP 14
146
147 static const struct tok lldp_8021_subtype_values[] = {
148 { LLDP_PRIVATE_8021_SUBTYPE_PORT_VLAN_ID, "Port VLAN Id"},
149 { LLDP_PRIVATE_8021_SUBTYPE_PROTOCOL_VLAN_ID, "Port and Protocol VLAN ID"},
150 { LLDP_PRIVATE_8021_SUBTYPE_VLAN_NAME, "VLAN name"},
151 { LLDP_PRIVATE_8021_SUBTYPE_PROTOCOL_IDENTITY, "Protocol Identity"},
152 { LLDP_PRIVATE_8021_SUBTYPE_CONGESTION_NOTIFICATION, "Congestion Notification"},
153 { LLDP_PRIVATE_8021_SUBTYPE_ETS_CONFIGURATION, "ETS Configuration"},
154 { LLDP_PRIVATE_8021_SUBTYPE_ETS_RECOMMENDATION, "ETS Recommendation"},
155 { LLDP_PRIVATE_8021_SUBTYPE_PFC_CONFIGURATION, "Priority Flow Control Configuration"},
156 { LLDP_PRIVATE_8021_SUBTYPE_APPLICATION_PRIORITY, "Application Priority"},
157 { LLDP_PRIVATE_8021_SUBTYPE_EVB, "EVB"},
158 { LLDP_PRIVATE_8021_SUBTYPE_CDCP,"CDCP"},
159 { 0, NULL}
160 };
161
162 #define LLDP_8021_PORT_PROTOCOL_VLAN_SUPPORT (1 << 1)
163 #define LLDP_8021_PORT_PROTOCOL_VLAN_STATUS (1 << 2)
164
165 static const struct tok lldp_8021_port_protocol_id_values[] = {
166 { LLDP_8021_PORT_PROTOCOL_VLAN_SUPPORT, "supported"},
167 { LLDP_8021_PORT_PROTOCOL_VLAN_STATUS, "enabled"},
168 { 0, NULL}
169 };
170
171 #define LLDP_PRIVATE_8023_SUBTYPE_MACPHY 1
172 #define LLDP_PRIVATE_8023_SUBTYPE_MDIPOWER 2
173 #define LLDP_PRIVATE_8023_SUBTYPE_LINKAGGR 3
174 #define LLDP_PRIVATE_8023_SUBTYPE_MTU 4
175
176 static const struct tok lldp_8023_subtype_values[] = {
177 { LLDP_PRIVATE_8023_SUBTYPE_MACPHY, "MAC/PHY configuration/status"},
178 { LLDP_PRIVATE_8023_SUBTYPE_MDIPOWER, "Power via MDI"},
179 { LLDP_PRIVATE_8023_SUBTYPE_LINKAGGR, "Link aggregation"},
180 { LLDP_PRIVATE_8023_SUBTYPE_MTU, "Max frame size"},
181 { 0, NULL}
182 };
183
184 #define LLDP_PRIVATE_TIA_SUBTYPE_CAPABILITIES 1
185 #define LLDP_PRIVATE_TIA_SUBTYPE_NETWORK_POLICY 2
186 #define LLDP_PRIVATE_TIA_SUBTYPE_LOCAL_ID 3
187 #define LLDP_PRIVATE_TIA_SUBTYPE_EXTENDED_POWER_MDI 4
188 #define LLDP_PRIVATE_TIA_SUBTYPE_INVENTORY_HARDWARE_REV 5
189 #define LLDP_PRIVATE_TIA_SUBTYPE_INVENTORY_FIRMWARE_REV 6
190 #define LLDP_PRIVATE_TIA_SUBTYPE_INVENTORY_SOFTWARE_REV 7
191 #define LLDP_PRIVATE_TIA_SUBTYPE_INVENTORY_SERIAL_NUMBER 8
192 #define LLDP_PRIVATE_TIA_SUBTYPE_INVENTORY_MANUFACTURER_NAME 9
193 #define LLDP_PRIVATE_TIA_SUBTYPE_INVENTORY_MODEL_NAME 10
194 #define LLDP_PRIVATE_TIA_SUBTYPE_INVENTORY_ASSET_ID 11
195
196 static const struct tok lldp_tia_subtype_values[] = {
197 { LLDP_PRIVATE_TIA_SUBTYPE_CAPABILITIES, "LLDP-MED Capabilities" },
198 { LLDP_PRIVATE_TIA_SUBTYPE_NETWORK_POLICY, "Network policy" },
199 { LLDP_PRIVATE_TIA_SUBTYPE_LOCAL_ID, "Location identification" },
200 { LLDP_PRIVATE_TIA_SUBTYPE_EXTENDED_POWER_MDI, "Extended power-via-MDI" },
201 { LLDP_PRIVATE_TIA_SUBTYPE_INVENTORY_HARDWARE_REV, "Inventory - hardware revision" },
202 { LLDP_PRIVATE_TIA_SUBTYPE_INVENTORY_FIRMWARE_REV, "Inventory - firmware revision" },
203 { LLDP_PRIVATE_TIA_SUBTYPE_INVENTORY_SOFTWARE_REV, "Inventory - software revision" },
204 { LLDP_PRIVATE_TIA_SUBTYPE_INVENTORY_SERIAL_NUMBER, "Inventory - serial number" },
205 { LLDP_PRIVATE_TIA_SUBTYPE_INVENTORY_MANUFACTURER_NAME, "Inventory - manufacturer name" },
206 { LLDP_PRIVATE_TIA_SUBTYPE_INVENTORY_MODEL_NAME, "Inventory - model name" },
207 { LLDP_PRIVATE_TIA_SUBTYPE_INVENTORY_ASSET_ID, "Inventory - asset ID" },
208 { 0, NULL}
209 };
210
211 #define LLDP_PRIVATE_TIA_LOCATION_ALTITUDE_METERS 1
212 #define LLDP_PRIVATE_TIA_LOCATION_ALTITUDE_FLOORS 2
213
214 static const struct tok lldp_tia_location_altitude_type_values[] = {
215 { LLDP_PRIVATE_TIA_LOCATION_ALTITUDE_METERS, "meters"},
216 { LLDP_PRIVATE_TIA_LOCATION_ALTITUDE_FLOORS, "floors"},
217 { 0, NULL}
218 };
219
220 /* ANSI/TIA-1057 - Annex B */
221 #define LLDP_PRIVATE_TIA_LOCATION_LCI_CATYPE_A1 1
222 #define LLDP_PRIVATE_TIA_LOCATION_LCI_CATYPE_A2 2
223 #define LLDP_PRIVATE_TIA_LOCATION_LCI_CATYPE_A3 3
224 #define LLDP_PRIVATE_TIA_LOCATION_LCI_CATYPE_A4 4
225 #define LLDP_PRIVATE_TIA_LOCATION_LCI_CATYPE_A5 5
226 #define LLDP_PRIVATE_TIA_LOCATION_LCI_CATYPE_A6 6
227
228 static const struct tok lldp_tia_location_lci_catype_values[] = {
229 { LLDP_PRIVATE_TIA_LOCATION_LCI_CATYPE_A1, "national subdivisions (state,canton,region,province,prefecture)"},
230 { LLDP_PRIVATE_TIA_LOCATION_LCI_CATYPE_A2, "county, parish, gun, district"},
231 { LLDP_PRIVATE_TIA_LOCATION_LCI_CATYPE_A3, "city, township, shi"},
232 { LLDP_PRIVATE_TIA_LOCATION_LCI_CATYPE_A4, "city division, borough, city district, ward chou"},
233 { LLDP_PRIVATE_TIA_LOCATION_LCI_CATYPE_A5, "neighborhood, block"},
234 { LLDP_PRIVATE_TIA_LOCATION_LCI_CATYPE_A6, "street"},
235 { 0, NULL}
236 };
237
238 static const struct tok lldp_tia_location_lci_what_values[] = {
239 { 0, "location of DHCP server"},
240 { 1, "location of the network element believed to be closest to the client"},
241 { 2, "location of the client"},
242 { 0, NULL}
243 };
244
245 /*
246 * From RFC 3636 - dot3MauType
247 */
248 #define LLDP_MAU_TYPE_UNKNOWN 0
249 #define LLDP_MAU_TYPE_AUI 1
250 #define LLDP_MAU_TYPE_10BASE_5 2
251 #define LLDP_MAU_TYPE_FOIRL 3
252 #define LLDP_MAU_TYPE_10BASE_2 4
253 #define LLDP_MAU_TYPE_10BASE_T 5
254 #define LLDP_MAU_TYPE_10BASE_FP 6
255 #define LLDP_MAU_TYPE_10BASE_FB 7
256 #define LLDP_MAU_TYPE_10BASE_FL 8
257 #define LLDP_MAU_TYPE_10BROAD36 9
258 #define LLDP_MAU_TYPE_10BASE_T_HD 10
259 #define LLDP_MAU_TYPE_10BASE_T_FD 11
260 #define LLDP_MAU_TYPE_10BASE_FL_HD 12
261 #define LLDP_MAU_TYPE_10BASE_FL_FD 13
262 #define LLDP_MAU_TYPE_100BASE_T4 14
263 #define LLDP_MAU_TYPE_100BASE_TX_HD 15
264 #define LLDP_MAU_TYPE_100BASE_TX_FD 16
265 #define LLDP_MAU_TYPE_100BASE_FX_HD 17
266 #define LLDP_MAU_TYPE_100BASE_FX_FD 18
267 #define LLDP_MAU_TYPE_100BASE_T2_HD 19
268 #define LLDP_MAU_TYPE_100BASE_T2_FD 20
269 #define LLDP_MAU_TYPE_1000BASE_X_HD 21
270 #define LLDP_MAU_TYPE_1000BASE_X_FD 22
271 #define LLDP_MAU_TYPE_1000BASE_LX_HD 23
272 #define LLDP_MAU_TYPE_1000BASE_LX_FD 24
273 #define LLDP_MAU_TYPE_1000BASE_SX_HD 25
274 #define LLDP_MAU_TYPE_1000BASE_SX_FD 26
275 #define LLDP_MAU_TYPE_1000BASE_CX_HD 27
276 #define LLDP_MAU_TYPE_1000BASE_CX_FD 28
277 #define LLDP_MAU_TYPE_1000BASE_T_HD 29
278 #define LLDP_MAU_TYPE_1000BASE_T_FD 30
279 #define LLDP_MAU_TYPE_10GBASE_X 31
280 #define LLDP_MAU_TYPE_10GBASE_LX4 32
281 #define LLDP_MAU_TYPE_10GBASE_R 33
282 #define LLDP_MAU_TYPE_10GBASE_ER 34
283 #define LLDP_MAU_TYPE_10GBASE_LR 35
284 #define LLDP_MAU_TYPE_10GBASE_SR 36
285 #define LLDP_MAU_TYPE_10GBASE_W 37
286 #define LLDP_MAU_TYPE_10GBASE_EW 38
287 #define LLDP_MAU_TYPE_10GBASE_LW 39
288 #define LLDP_MAU_TYPE_10GBASE_SW 40
289
290 static const struct tok lldp_mau_types_values[] = {
291 { LLDP_MAU_TYPE_UNKNOWN, "Unknown"},
292 { LLDP_MAU_TYPE_AUI, "AUI"},
293 { LLDP_MAU_TYPE_10BASE_5, "10BASE_5"},
294 { LLDP_MAU_TYPE_FOIRL, "FOIRL"},
295 { LLDP_MAU_TYPE_10BASE_2, "10BASE2"},
296 { LLDP_MAU_TYPE_10BASE_T, "10BASET duplex mode unknown"},
297 { LLDP_MAU_TYPE_10BASE_FP, "10BASEFP"},
298 { LLDP_MAU_TYPE_10BASE_FB, "10BASEFB"},
299 { LLDP_MAU_TYPE_10BASE_FL, "10BASEFL duplex mode unknown"},
300 { LLDP_MAU_TYPE_10BROAD36, "10BROAD36"},
301 { LLDP_MAU_TYPE_10BASE_T_HD, "10BASET hdx"},
302 { LLDP_MAU_TYPE_10BASE_T_FD, "10BASET fdx"},
303 { LLDP_MAU_TYPE_10BASE_FL_HD, "10BASEFL hdx"},
304 { LLDP_MAU_TYPE_10BASE_FL_FD, "10BASEFL fdx"},
305 { LLDP_MAU_TYPE_100BASE_T4, "100BASET4"},
306 { LLDP_MAU_TYPE_100BASE_TX_HD, "100BASETX hdx"},
307 { LLDP_MAU_TYPE_100BASE_TX_FD, "100BASETX fdx"},
308 { LLDP_MAU_TYPE_100BASE_FX_HD, "100BASEFX hdx"},
309 { LLDP_MAU_TYPE_100BASE_FX_FD, "100BASEFX fdx"},
310 { LLDP_MAU_TYPE_100BASE_T2_HD, "100BASET2 hdx"},
311 { LLDP_MAU_TYPE_100BASE_T2_FD, "100BASET2 fdx"},
312 { LLDP_MAU_TYPE_1000BASE_X_HD, "1000BASEX hdx"},
313 { LLDP_MAU_TYPE_1000BASE_X_FD, "1000BASEX fdx"},
314 { LLDP_MAU_TYPE_1000BASE_LX_HD, "1000BASELX hdx"},
315 { LLDP_MAU_TYPE_1000BASE_LX_FD, "1000BASELX fdx"},
316 { LLDP_MAU_TYPE_1000BASE_SX_HD, "1000BASESX hdx"},
317 { LLDP_MAU_TYPE_1000BASE_SX_FD, "1000BASESX fdx"},
318 { LLDP_MAU_TYPE_1000BASE_CX_HD, "1000BASECX hdx"},
319 { LLDP_MAU_TYPE_1000BASE_CX_FD, "1000BASECX fdx"},
320 { LLDP_MAU_TYPE_1000BASE_T_HD, "1000BASET hdx"},
321 { LLDP_MAU_TYPE_1000BASE_T_FD, "1000BASET fdx"},
322 { LLDP_MAU_TYPE_10GBASE_X, "10GBASEX"},
323 { LLDP_MAU_TYPE_10GBASE_LX4, "10GBASELX4"},
324 { LLDP_MAU_TYPE_10GBASE_R, "10GBASER"},
325 { LLDP_MAU_TYPE_10GBASE_ER, "10GBASEER"},
326 { LLDP_MAU_TYPE_10GBASE_LR, "10GBASELR"},
327 { LLDP_MAU_TYPE_10GBASE_SR, "10GBASESR"},
328 { LLDP_MAU_TYPE_10GBASE_W, "10GBASEW"},
329 { LLDP_MAU_TYPE_10GBASE_EW, "10GBASEEW"},
330 { LLDP_MAU_TYPE_10GBASE_LW, "10GBASELW"},
331 { LLDP_MAU_TYPE_10GBASE_SW, "10GBASESW"},
332 { 0, NULL}
333 };
334
335 #define LLDP_8023_AUTONEGOTIATION_SUPPORT (1 << 0)
336 #define LLDP_8023_AUTONEGOTIATION_STATUS (1 << 1)
337
338 static const struct tok lldp_8023_autonegotiation_values[] = {
339 { LLDP_8023_AUTONEGOTIATION_SUPPORT, "supported"},
340 { LLDP_8023_AUTONEGOTIATION_STATUS, "enabled"},
341 { 0, NULL}
342 };
343
344 #define LLDP_TIA_CAPABILITY_MED (1 << 0)
345 #define LLDP_TIA_CAPABILITY_NETWORK_POLICY (1 << 1)
346 #define LLDP_TIA_CAPABILITY_LOCATION_IDENTIFICATION (1 << 2)
347 #define LLDP_TIA_CAPABILITY_EXTENDED_POWER_MDI_PSE (1 << 3)
348 #define LLDP_TIA_CAPABILITY_EXTENDED_POWER_MDI_PD (1 << 4)
349 #define LLDP_TIA_CAPABILITY_INVENTORY (1 << 5)
350
351 static const struct tok lldp_tia_capabilities_values[] = {
352 { LLDP_TIA_CAPABILITY_MED, "LLDP-MED capabilities"},
353 { LLDP_TIA_CAPABILITY_NETWORK_POLICY, "network policy"},
354 { LLDP_TIA_CAPABILITY_LOCATION_IDENTIFICATION, "location identification"},
355 { LLDP_TIA_CAPABILITY_EXTENDED_POWER_MDI_PSE, "extended power via MDI-PSE"},
356 { LLDP_TIA_CAPABILITY_EXTENDED_POWER_MDI_PD, "extended power via MDI-PD"},
357 { LLDP_TIA_CAPABILITY_INVENTORY, "Inventory"},
358 { 0, NULL}
359 };
360
361 #define LLDP_TIA_DEVICE_TYPE_ENDPOINT_CLASS_1 1
362 #define LLDP_TIA_DEVICE_TYPE_ENDPOINT_CLASS_2 2
363 #define LLDP_TIA_DEVICE_TYPE_ENDPOINT_CLASS_3 3
364 #define LLDP_TIA_DEVICE_TYPE_NETWORK_CONNECTIVITY 4
365
366 static const struct tok lldp_tia_device_type_values[] = {
367 { LLDP_TIA_DEVICE_TYPE_ENDPOINT_CLASS_1, "endpoint class 1"},
368 { LLDP_TIA_DEVICE_TYPE_ENDPOINT_CLASS_2, "endpoint class 2"},
369 { LLDP_TIA_DEVICE_TYPE_ENDPOINT_CLASS_3, "endpoint class 3"},
370 { LLDP_TIA_DEVICE_TYPE_NETWORK_CONNECTIVITY, "network connectivity"},
371 { 0, NULL}
372 };
373
374 #define LLDP_TIA_APPLICATION_TYPE_VOICE 1
375 #define LLDP_TIA_APPLICATION_TYPE_VOICE_SIGNALING 2
376 #define LLDP_TIA_APPLICATION_TYPE_GUEST_VOICE 3
377 #define LLDP_TIA_APPLICATION_TYPE_GUEST_VOICE_SIGNALING 4
378 #define LLDP_TIA_APPLICATION_TYPE_SOFTPHONE_VOICE 5
379 #define LLDP_TIA_APPLICATION_TYPE_VIDEO_CONFERENCING 6
380 #define LLDP_TIA_APPLICATION_TYPE_STREAMING_VIDEO 7
381 #define LLDP_TIA_APPLICATION_TYPE_VIDEO_SIGNALING 8
382
383 static const struct tok lldp_tia_application_type_values[] = {
384 { LLDP_TIA_APPLICATION_TYPE_VOICE, "voice"},
385 { LLDP_TIA_APPLICATION_TYPE_VOICE_SIGNALING, "voice signaling"},
386 { LLDP_TIA_APPLICATION_TYPE_GUEST_VOICE, "guest voice"},
387 { LLDP_TIA_APPLICATION_TYPE_GUEST_VOICE_SIGNALING, "guest voice signaling"},
388 { LLDP_TIA_APPLICATION_TYPE_SOFTPHONE_VOICE, "softphone voice"},
389 { LLDP_TIA_APPLICATION_TYPE_VIDEO_CONFERENCING, "video conferencing"},
390 { LLDP_TIA_APPLICATION_TYPE_STREAMING_VIDEO, "streaming video"},
391 { LLDP_TIA_APPLICATION_TYPE_VIDEO_SIGNALING, "video signaling"},
392 { 0, NULL}
393 };
394
395 #define LLDP_TIA_NETWORK_POLICY_X_BIT (1 << 5)
396 #define LLDP_TIA_NETWORK_POLICY_T_BIT (1 << 6)
397 #define LLDP_TIA_NETWORK_POLICY_U_BIT (1 << 7)
398
399 static const struct tok lldp_tia_network_policy_bits_values[] = {
400 { LLDP_TIA_NETWORK_POLICY_U_BIT, "Unknown"},
401 { LLDP_TIA_NETWORK_POLICY_T_BIT, "Tagged"},
402 { LLDP_TIA_NETWORK_POLICY_X_BIT, "reserved"},
403 { 0, NULL}
404 };
405
406 #define LLDP_EXTRACT_NETWORK_POLICY_VLAN(x) (((x)&0x1ffe)>>1)
407 #define LLDP_EXTRACT_NETWORK_POLICY_L2_PRIORITY(x) (((x)&0x01ff)>>6)
408 #define LLDP_EXTRACT_NETWORK_POLICY_DSCP(x) ((x)&0x003f)
409
410 #define LLDP_TIA_LOCATION_DATA_FORMAT_COORDINATE_BASED 1
411 #define LLDP_TIA_LOCATION_DATA_FORMAT_CIVIC_ADDRESS 2
412 #define LLDP_TIA_LOCATION_DATA_FORMAT_ECS_ELIN 3
413
414 static const struct tok lldp_tia_location_data_format_values[] = {
415 { LLDP_TIA_LOCATION_DATA_FORMAT_COORDINATE_BASED, "coordinate-based LCI"},
416 { LLDP_TIA_LOCATION_DATA_FORMAT_CIVIC_ADDRESS, "civic address LCI"},
417 { LLDP_TIA_LOCATION_DATA_FORMAT_ECS_ELIN, "ECS ELIN"},
418 { 0, NULL}
419 };
420
421 #define LLDP_TIA_LOCATION_DATUM_WGS_84 1
422 #define LLDP_TIA_LOCATION_DATUM_NAD_83_NAVD_88 2
423 #define LLDP_TIA_LOCATION_DATUM_NAD_83_MLLW 3
424
425 static const struct tok lldp_tia_location_datum_type_values[] = {
426 { LLDP_TIA_LOCATION_DATUM_WGS_84, "World Geodesic System 1984"},
427 { LLDP_TIA_LOCATION_DATUM_NAD_83_NAVD_88, "North American Datum 1983 (NAVD88)"},
428 { LLDP_TIA_LOCATION_DATUM_NAD_83_MLLW, "North American Datum 1983 (MLLW)"},
429 { 0, NULL}
430 };
431
432 #define LLDP_TIA_POWER_SOURCE_PSE 1
433 #define LLDP_TIA_POWER_SOURCE_LOCAL 2
434 #define LLDP_TIA_POWER_SOURCE_PSE_AND_LOCAL 3
435
436 static const struct tok lldp_tia_power_source_values[] = {
437 { LLDP_TIA_POWER_SOURCE_PSE, "PSE - primary power source"},
438 { LLDP_TIA_POWER_SOURCE_LOCAL, "local - backup power source"},
439 { LLDP_TIA_POWER_SOURCE_PSE_AND_LOCAL, "PSE+local - reserved"},
440 { 0, NULL}
441 };
442
443 #define LLDP_TIA_POWER_PRIORITY_CRITICAL 1
444 #define LLDP_TIA_POWER_PRIORITY_HIGH 2
445 #define LLDP_TIA_POWER_PRIORITY_LOW 3
446
447 static const struct tok lldp_tia_power_priority_values[] = {
448 { LLDP_TIA_POWER_PRIORITY_CRITICAL, "critical"},
449 { LLDP_TIA_POWER_PRIORITY_HIGH, "high"},
450 { LLDP_TIA_POWER_PRIORITY_LOW, "low"},
451 { 0, NULL}
452 };
453
454 #define LLDP_TIA_POWER_VAL_MAX 1024
455
456 static const struct tok lldp_tia_inventory_values[] = {
457 { LLDP_PRIVATE_TIA_SUBTYPE_INVENTORY_HARDWARE_REV, "Hardware revision" },
458 { LLDP_PRIVATE_TIA_SUBTYPE_INVENTORY_FIRMWARE_REV, "Firmware revision" },
459 { LLDP_PRIVATE_TIA_SUBTYPE_INVENTORY_SOFTWARE_REV, "Software revision" },
460 { LLDP_PRIVATE_TIA_SUBTYPE_INVENTORY_SERIAL_NUMBER, "Serial number" },
461 { LLDP_PRIVATE_TIA_SUBTYPE_INVENTORY_MANUFACTURER_NAME, "Manufacturer name" },
462 { LLDP_PRIVATE_TIA_SUBTYPE_INVENTORY_MODEL_NAME, "Model name" },
463 { LLDP_PRIVATE_TIA_SUBTYPE_INVENTORY_ASSET_ID, "Asset ID" },
464 { 0, NULL}
465 };
466
467 /*
468 * From RFC 3636 - ifMauAutoNegCapAdvertisedBits
469 */
470 #define LLDP_MAU_PMD_OTHER (1 << 15)
471 #define LLDP_MAU_PMD_10BASE_T (1 << 14)
472 #define LLDP_MAU_PMD_10BASE_T_FD (1 << 13)
473 #define LLDP_MAU_PMD_100BASE_T4 (1 << 12)
474 #define LLDP_MAU_PMD_100BASE_TX (1 << 11)
475 #define LLDP_MAU_PMD_100BASE_TX_FD (1 << 10)
476 #define LLDP_MAU_PMD_100BASE_T2 (1 << 9)
477 #define LLDP_MAU_PMD_100BASE_T2_FD (1 << 8)
478 #define LLDP_MAU_PMD_FDXPAUSE (1 << 7)
479 #define LLDP_MAU_PMD_FDXAPAUSE (1 << 6)
480 #define LLDP_MAU_PMD_FDXSPAUSE (1 << 5)
481 #define LLDP_MAU_PMD_FDXBPAUSE (1 << 4)
482 #define LLDP_MAU_PMD_1000BASE_X (1 << 3)
483 #define LLDP_MAU_PMD_1000BASE_X_FD (1 << 2)
484 #define LLDP_MAU_PMD_1000BASE_T (1 << 1)
485 #define LLDP_MAU_PMD_1000BASE_T_FD (1 << 0)
486
487 static const struct tok lldp_pmd_capability_values[] = {
488 { LLDP_MAU_PMD_10BASE_T, "10BASE-T hdx"},
489 { LLDP_MAU_PMD_10BASE_T_FD, "10BASE-T fdx"},
490 { LLDP_MAU_PMD_100BASE_T4, "100BASE-T4"},
491 { LLDP_MAU_PMD_100BASE_TX, "100BASE-TX hdx"},
492 { LLDP_MAU_PMD_100BASE_TX_FD, "100BASE-TX fdx"},
493 { LLDP_MAU_PMD_100BASE_T2, "100BASE-T2 hdx"},
494 { LLDP_MAU_PMD_100BASE_T2_FD, "100BASE-T2 fdx"},
495 { LLDP_MAU_PMD_FDXPAUSE, "Pause for fdx links"},
496 { LLDP_MAU_PMD_FDXAPAUSE, "Asym PAUSE for fdx"},
497 { LLDP_MAU_PMD_FDXSPAUSE, "Sym PAUSE for fdx"},
498 { LLDP_MAU_PMD_FDXBPAUSE, "Asym and Sym PAUSE for fdx"},
499 { LLDP_MAU_PMD_1000BASE_X, "1000BASE-{X LX SX CX} hdx"},
500 { LLDP_MAU_PMD_1000BASE_X_FD, "1000BASE-{X LX SX CX} fdx"},
501 { LLDP_MAU_PMD_1000BASE_T, "1000BASE-T hdx"},
502 { LLDP_MAU_PMD_1000BASE_T_FD, "1000BASE-T fdx"},
503 { 0, NULL}
504 };
505
506 #define LLDP_MDI_PORT_CLASS (1 << 0)
507 #define LLDP_MDI_POWER_SUPPORT (1 << 1)
508 #define LLDP_MDI_POWER_STATE (1 << 2)
509 #define LLDP_MDI_PAIR_CONTROL_ABILITY (1 << 3)
510
511 static const struct tok lldp_mdi_values[] = {
512 { LLDP_MDI_PORT_CLASS, "PSE"},
513 { LLDP_MDI_POWER_SUPPORT, "supported"},
514 { LLDP_MDI_POWER_STATE, "enabled"},
515 { LLDP_MDI_PAIR_CONTROL_ABILITY, "can be controlled"},
516 { 0, NULL}
517 };
518
519 #define LLDP_MDI_PSE_PORT_POWER_PAIRS_SIGNAL 1
520 #define LLDP_MDI_PSE_PORT_POWER_PAIRS_SPARE 2
521
522 static const struct tok lldp_mdi_power_pairs_values[] = {
523 { LLDP_MDI_PSE_PORT_POWER_PAIRS_SIGNAL, "signal"},
524 { LLDP_MDI_PSE_PORT_POWER_PAIRS_SPARE, "spare"},
525 { 0, NULL}
526 };
527
528 #define LLDP_MDI_POWER_CLASS0 1
529 #define LLDP_MDI_POWER_CLASS1 2
530 #define LLDP_MDI_POWER_CLASS2 3
531 #define LLDP_MDI_POWER_CLASS3 4
532 #define LLDP_MDI_POWER_CLASS4 5
533
534 static const struct tok lldp_mdi_power_class_values[] = {
535 { LLDP_MDI_POWER_CLASS0, "class0"},
536 { LLDP_MDI_POWER_CLASS1, "class1"},
537 { LLDP_MDI_POWER_CLASS2, "class2"},
538 { LLDP_MDI_POWER_CLASS3, "class3"},
539 { LLDP_MDI_POWER_CLASS4, "class4"},
540 { 0, NULL}
541 };
542
543 #define LLDP_AGGREGATION_CAPABILTIY (1 << 0)
544 #define LLDP_AGGREGATION_STATUS (1 << 1)
545
546 static const struct tok lldp_aggregation_values[] = {
547 { LLDP_AGGREGATION_CAPABILTIY, "supported"},
548 { LLDP_AGGREGATION_STATUS, "enabled"},
549 { 0, NULL}
550 };
551
552 /*
553 * DCBX protocol subtypes.
554 */
555 #define LLDP_DCBX_SUBTYPE_1 1
556 #define LLDP_DCBX_SUBTYPE_2 2
557
558 static const struct tok lldp_dcbx_subtype_values[] = {
559 { LLDP_DCBX_SUBTYPE_1, "DCB Capability Exchange Protocol Rev 1" },
560 { LLDP_DCBX_SUBTYPE_2, "DCB Capability Exchange Protocol Rev 1.01" },
561 { 0, NULL}
562 };
563
564 #define LLDP_DCBX_CONTROL_TLV 1
565 #define LLDP_DCBX_PRIORITY_GROUPS_TLV 2
566 #define LLDP_DCBX_PRIORITY_FLOW_CONTROL_TLV 3
567 #define LLDP_DCBX_APPLICATION_TLV 4
568
569 /*
570 * Interface numbering subtypes.
571 */
572 #define LLDP_INTF_NUMB_IFX_SUBTYPE 2
573 #define LLDP_INTF_NUMB_SYSPORT_SUBTYPE 3
574
575 static const struct tok lldp_intf_numb_subtype_values[] = {
576 { LLDP_INTF_NUMB_IFX_SUBTYPE, "Interface Index" },
577 { LLDP_INTF_NUMB_SYSPORT_SUBTYPE, "System Port Number" },
578 { 0, NULL}
579 };
580
581 #define LLDP_INTF_NUM_LEN 5
582
583 #define LLDP_EVB_MODE_NOT_SUPPORTED 0
584 #define LLDP_EVB_MODE_EVB_BRIDGE 1
585 #define LLDP_EVB_MODE_EVB_STATION 2
586 #define LLDP_EVB_MODE_RESERVED 3
587
588 static const struct tok lldp_evb_mode_values[]={
589 { LLDP_EVB_MODE_NOT_SUPPORTED, "Not Supported"},
590 { LLDP_EVB_MODE_EVB_BRIDGE, "EVB Bridge"},
591 { LLDP_EVB_MODE_EVB_STATION, "EVB Staion"},
592 { LLDP_EVB_MODE_RESERVED, "Reserved for future Standardization"},
593 };
594
595 #define NO_OF_BITS 8
596 #define LLDP_PRIVATE_8021_SUBTYPE_CONGESTION_NOTIFICATION_LENGTH 6
597 #define LLDP_PRIVATE_8021_SUBTYPE_ETS_CONFIGURATION_LENGTH 25
598 #define LLDP_PRIVATE_8021_SUBTYPE_ETS_RECOMMENDATION_LENGTH 25
599 #define LLDP_PRIVATE_8021_SUBTYPE_PFC_CONFIGURATION_LENGTH 6
600 #define LLDP_PRIVATE_8021_SUBTYPE_APPLICATION_PRIORITY_MIN_LENGTH 5
601 #define LLDP_PRIVATE_8021_SUBTYPE_EVB_LENGTH 9
602 #define LLDP_PRIVATE_8021_SUBTYPE_CDCP_MIN_LENGTH 8
603
604 static void
605 print_ets_priority_assignment_table(netdissect_options *ndo,
606 const u_char *ptr)
607 {
608 ND_PRINT((ndo, "\n\t Priority Assignment Table"));
609 ND_PRINT((ndo, "\n\t Priority : 0 1 2 3 4 5 6 7"));
610 ND_PRINT((ndo, "\n\t Value : %-3d %-3d %-3d %-3d %-3d %-3d %-3d %-3d",
611 ptr[0]>>4,ptr[0]&0x0f,ptr[1]>>4,ptr[1]&0x0f,ptr[2]>>4,
612 ptr[2] & 0x0f, ptr[3] >> 4, ptr[3] & 0x0f));
613 }
614
615 static void
616 print_tc_bandwidth_table(netdissect_options *ndo,
617 const u_char *ptr)
618 {
619 ND_PRINT((ndo, "\n\t TC Bandwidth Table"));
620 ND_PRINT((ndo, "\n\t TC%% : 0 1 2 3 4 5 6 7"));
621 ND_PRINT((ndo, "\n\t Value : %-3d %-3d %-3d %-3d %-3d %-3d %-3d %-3d",
622 ptr[0], ptr[1], ptr[2], ptr[3], ptr[4], ptr[5], ptr[6], ptr[7]));
623 }
624
625 static void
626 print_tsa_assignment_table(netdissect_options *ndo,
627 const u_char *ptr)
628 {
629 ND_PRINT((ndo, "\n\t TSA Assignment Table"));
630 ND_PRINT((ndo, "\n\t Traffic Class: 0 1 2 3 4 5 6 7"));
631 ND_PRINT((ndo, "\n\t Value : %-3d %-3d %-3d %-3d %-3d %-3d %-3d %-3d",
632 ptr[0], ptr[1], ptr[2], ptr[3], ptr[4], ptr[5], ptr[6], ptr[7]));
633 }
634
635 /*
636 * Print IEEE 802.1 private extensions. (802.1AB annex E)
637 */
638 static int
639 lldp_private_8021_print(netdissect_options *ndo,
640 const u_char *tptr, u_int tlv_len)
641 {
642 int subtype, hexdump = FALSE;
643 u_int sublen;
644 u_int tval;
645 uint8_t i;
646
647 if (tlv_len < 4) {
648 return hexdump;
649 }
650 subtype = *(tptr+3);
651
652 ND_PRINT((ndo, "\n\t %s Subtype (%u)",
653 tok2str(lldp_8021_subtype_values, "unknown", subtype),
654 subtype));
655
656 switch (subtype) {
657 case LLDP_PRIVATE_8021_SUBTYPE_PORT_VLAN_ID:
658 if (tlv_len < 6) {
659 return hexdump;
660 }
661 ND_PRINT((ndo, "\n\t port vlan id (PVID): %u",
662 EXTRACT_16BITS(tptr + 4)));
663 break;
664 case LLDP_PRIVATE_8021_SUBTYPE_PROTOCOL_VLAN_ID:
665 if (tlv_len < 7) {
666 return hexdump;
667 }
668 ND_PRINT((ndo, "\n\t port and protocol vlan id (PPVID): %u, flags [%s] (0x%02x)",
669 EXTRACT_16BITS(tptr+5),
670 bittok2str(lldp_8021_port_protocol_id_values, "none", *(tptr+4)),
671 *(tptr + 4)));
672 break;
673 case LLDP_PRIVATE_8021_SUBTYPE_VLAN_NAME:
674 if (tlv_len < 6) {
675 return hexdump;
676 }
677 ND_PRINT((ndo, "\n\t vlan id (VID): %u", EXTRACT_16BITS(tptr + 4)));
678 if (tlv_len < 7) {
679 return hexdump;
680 }
681 sublen = *(tptr+6);
682 if (tlv_len < 7+sublen) {
683 return hexdump;
684 }
685 ND_PRINT((ndo, "\n\t vlan name: "));
686 safeputs(ndo, tptr + 7, sublen);
687 break;
688 case LLDP_PRIVATE_8021_SUBTYPE_PROTOCOL_IDENTITY:
689 if (tlv_len < 5) {
690 return hexdump;
691 }
692 sublen = *(tptr+4);
693 if (tlv_len < 5+sublen) {
694 return hexdump;
695 }
696 ND_PRINT((ndo, "\n\t protocol identity: "));
697 safeputs(ndo, tptr + 5, sublen);
698 break;
699 case LLDP_PRIVATE_8021_SUBTYPE_CONGESTION_NOTIFICATION:
700 if(tlv_len<LLDP_PRIVATE_8021_SUBTYPE_CONGESTION_NOTIFICATION_LENGTH){
701 return hexdump;
702 }
703 tval=*(tptr+4);
704 ND_PRINT((ndo, "\n\t Pre-Priority CNPV Indicator"));
705 ND_PRINT((ndo, "\n\t Priority : 0 1 2 3 4 5 6 7"));
706 ND_PRINT((ndo, "\n\t Value : "));
707 for(i=0;i<NO_OF_BITS;i++)
708 ND_PRINT((ndo, "%-2d ", (tval >> i) & 0x01));
709 tval=*(tptr+5);
710 ND_PRINT((ndo, "\n\t Pre-Priority Ready Indicator"));
711 ND_PRINT((ndo, "\n\t Priority : 0 1 2 3 4 5 6 7"));
712 ND_PRINT((ndo, "\n\t Value : "));
713 for(i=0;i<NO_OF_BITS;i++)
714 ND_PRINT((ndo, "%-2d ", (tval >> i) & 0x01));
715 break;
716
717 case LLDP_PRIVATE_8021_SUBTYPE_ETS_CONFIGURATION:
718 if(tlv_len<LLDP_PRIVATE_8021_SUBTYPE_ETS_CONFIGURATION_LENGTH) {
719 return hexdump;
720 }
721 tval=*(tptr+4);
722 ND_PRINT((ndo, "\n\t Willing:%d, CBS:%d, RES:%d, Max TCs:%d",
723 tval >> 7, (tval >> 6) & 0x02, (tval >> 3) & 0x07, tval & 0x07));
724
725 /*Print Priority Assignment Table*/
726 print_ets_priority_assignment_table(ndo, tptr + 5);
727
728 /*Print TC Bandwidth Table*/
729 print_tc_bandwidth_table(ndo, tptr + 9);
730
731 /* Print TSA Assignment Table */
732 print_tsa_assignment_table(ndo, tptr + 17);
733
734 break;
735
736 case LLDP_PRIVATE_8021_SUBTYPE_ETS_RECOMMENDATION:
737 if(tlv_len<LLDP_PRIVATE_8021_SUBTYPE_ETS_RECOMMENDATION_LENGTH) {
738 return hexdump;
739 }
740 ND_PRINT((ndo, "\n\t RES: %d", *(tptr + 4)));
741 /*Print Priority Assignment Table */
742 print_ets_priority_assignment_table(ndo, tptr + 5);
743 /*Print TC Bandwidth Table */
744 print_tc_bandwidth_table(ndo, tptr + 9);
745 /* Print TSA Assignment Table */
746 print_tsa_assignment_table(ndo, tptr + 17);
747 break;
748
749 case LLDP_PRIVATE_8021_SUBTYPE_PFC_CONFIGURATION:
750 if(tlv_len<LLDP_PRIVATE_8021_SUBTYPE_PFC_CONFIGURATION_LENGTH) {
751 return hexdump;
752 }
753 tval=*(tptr+4);
754 ND_PRINT((ndo, "\n\t Willing: %d, MBC: %d, RES: %d, PFC cap:%d ",
755 tval >> 7, (tval >> 6) & 0x01, (tval >> 4) & 0x03, (tval & 0x0f)));
756 ND_PRINT((ndo, "\n\t PFC Enable"));
757 tval=*(tptr+5);
758 ND_PRINT((ndo, "\n\t Priority : 0 1 2 3 4 5 6 7"));
759 ND_PRINT((ndo, "\n\t Value : "));
760 for(i=0;i<NO_OF_BITS;i++)
761 ND_PRINT((ndo, "%-2d ", (tval >> i) & 0x01));
762 break;
763
764 case LLDP_PRIVATE_8021_SUBTYPE_APPLICATION_PRIORITY:
765 if(tlv_len<LLDP_PRIVATE_8021_SUBTYPE_APPLICATION_PRIORITY_MIN_LENGTH) {
766 return hexdump;
767 }
768 ND_PRINT((ndo, "\n\t RES: %d", *(tptr + 4)));
769 if(tlv_len<=LLDP_PRIVATE_8021_SUBTYPE_APPLICATION_PRIORITY_MIN_LENGTH){
770 return hexdump;
771 }
772 /* Length of Application Priority Table */
773 sublen=tlv_len-5;
774 if(sublen%3!=0){
775 return hexdump;
776 }
777 i=0;
778 ND_PRINT((ndo, "\n\t Application Priority Table"));
779 while(i<sublen) {
780 tval=*(tptr+i+5);
781 ND_PRINT((ndo, "\n\t Priority: %d, RES: %d, Sel: %d",
782 tval >> 5, (tval >> 3) & 0x03, (tval & 0x07)));
783 ND_PRINT((ndo, "Protocol ID: %d", EXTRACT_16BITS(tptr + i + 5)));
784 i=i+3;
785 }
786 break;
787 case LLDP_PRIVATE_8021_SUBTYPE_EVB:
788 if(tlv_len<LLDP_PRIVATE_8021_SUBTYPE_EVB_LENGTH){
789 return hexdump;
790 }
791 ND_PRINT((ndo, "\n\t EVB Bridge Status"));
792 tval=*(tptr+4);
793 ND_PRINT((ndo, "\n\t RES: %d, BGID: %d, RRCAP: %d, RRCTR: %d",
794 tval >> 3, (tval >> 2) & 0x01, (tval >> 1) & 0x01, tval & 0x01));
795 ND_PRINT((ndo, "\n\t EVB Station Status"));
796 tval=*(tptr+5);
797 ND_PRINT((ndo, "\n\t RES: %d, SGID: %d, RRREQ: %d,RRSTAT: %d",
798 tval >> 4, (tval >> 3) & 0x01, (tval >> 2) & 0x01, tval & 0x03));
799 tval=*(tptr+6);
800 ND_PRINT((ndo, "\n\t R: %d, RTE: %d, ",tval >> 5, tval & 0x1f));
801 tval=*(tptr+7);
802 ND_PRINT((ndo, "EVB Mode: %s [%d]",
803 tok2str(lldp_evb_mode_values, "unknown", tval >> 6), tval >> 6));
804 ND_PRINT((ndo, "\n\t ROL: %d, RWD: %d, ", (tval >> 5) & 0x01, tval & 0x1f));
805 tval=*(tptr+8);
806 ND_PRINT((ndo, "RES: %d, ROL: %d, RKA: %d", tval >> 6, (tval >> 5) & 0x01, tval & 0x1f));
807 break;
808
809 case LLDP_PRIVATE_8021_SUBTYPE_CDCP:
810 if(tlv_len<LLDP_PRIVATE_8021_SUBTYPE_CDCP_MIN_LENGTH){
811 return hexdump;
812 }
813 tval=*(tptr+4);
814 ND_PRINT((ndo, "\n\t Role: %d, RES: %d, Scomp: %d ",
815 tval >> 7, (tval >> 4) & 0x07, (tval >> 3) & 0x01));
816 ND_PRINT((ndo, "ChnCap: %d", EXTRACT_16BITS(tptr + 6) & 0x0fff));
817 sublen=tlv_len-8;
818 if(sublen%3!=0) {
819 return hexdump;
820 }
821 i=0;
822 while(i<sublen) {
823 tval=EXTRACT_24BITS(tptr+i+8);
824 ND_PRINT((ndo, "\n\t SCID: %d, SVID: %d",
825 tval >> 12, tval & 0x000fff));
826 i=i+3;
827 }
828 break;
829
830 default:
831 hexdump = TRUE;
832 break;
833 }
834
835 return hexdump;
836 }
837
838 /*
839 * Print IEEE 802.3 private extensions. (802.3bc)
840 */
841 static int
842 lldp_private_8023_print(netdissect_options *ndo,
843 const u_char *tptr, u_int tlv_len)
844 {
845 int subtype, hexdump = FALSE;
846
847 if (tlv_len < 4) {
848 return hexdump;
849 }
850 subtype = *(tptr+3);
851
852 ND_PRINT((ndo, "\n\t %s Subtype (%u)",
853 tok2str(lldp_8023_subtype_values, "unknown", subtype),
854 subtype));
855
856 switch (subtype) {
857 case LLDP_PRIVATE_8023_SUBTYPE_MACPHY:
858 if (tlv_len < 9) {
859 return hexdump;
860 }
861 ND_PRINT((ndo, "\n\t autonegotiation [%s] (0x%02x)",
862 bittok2str(lldp_8023_autonegotiation_values, "none", *(tptr+4)),
863 *(tptr + 4)));
864 ND_PRINT((ndo, "\n\t PMD autoneg capability [%s] (0x%04x)",
865 bittok2str(lldp_pmd_capability_values,"unknown", EXTRACT_16BITS(tptr+5)),
866 EXTRACT_16BITS(tptr + 5)));
867 ND_PRINT((ndo, "\n\t MAU type %s (0x%04x)",
868 tok2str(lldp_mau_types_values, "unknown", EXTRACT_16BITS(tptr+7)),
869 EXTRACT_16BITS(tptr + 7)));
870 break;
871
872 case LLDP_PRIVATE_8023_SUBTYPE_MDIPOWER:
873 if (tlv_len < 7) {
874 return hexdump;
875 }
876 ND_PRINT((ndo, "\n\t MDI power support [%s], power pair %s, power class %s",
877 bittok2str(lldp_mdi_values, "none", *(tptr+4)),
878 tok2str(lldp_mdi_power_pairs_values, "unknown", *(tptr+5)),
879 tok2str(lldp_mdi_power_class_values, "unknown", *(tptr + 6))));
880 break;
881
882 case LLDP_PRIVATE_8023_SUBTYPE_LINKAGGR:
883 if (tlv_len < 9) {
884 return hexdump;
885 }
886 ND_PRINT((ndo, "\n\t aggregation status [%s], aggregation port ID %u",
887 bittok2str(lldp_aggregation_values, "none", *(tptr+4)),
888 EXTRACT_32BITS(tptr + 5)));
889 break;
890
891 case LLDP_PRIVATE_8023_SUBTYPE_MTU:
892 ND_PRINT((ndo, "\n\t MTU size %u", EXTRACT_16BITS(tptr + 4)));
893 break;
894
895 default:
896 hexdump = TRUE;
897 break;
898 }
899
900 return hexdump;
901 }
902
903 /*
904 * Extract 34bits of latitude/longitude coordinates.
905 */
906 static uint64_t
907 lldp_extract_latlon(const u_char *tptr)
908 {
909 uint64_t latlon;
910
911 latlon = *tptr & 0x3;
912 latlon = (latlon << 32) | EXTRACT_32BITS(tptr+1);
913
914 return latlon;
915 }
916
917 /*
918 * Print private TIA extensions.
919 */
920 static int
921 lldp_private_tia_print(netdissect_options *ndo,
922 const u_char *tptr, u_int tlv_len)
923 {
924 int subtype, hexdump = FALSE;
925 uint8_t location_format;
926 uint16_t power_val;
927 u_int lci_len;
928 uint8_t ca_type, ca_len;
929
930 if (tlv_len < 4) {
931 return hexdump;
932 }
933 subtype = *(tptr+3);
934
935 ND_PRINT((ndo, "\n\t %s Subtype (%u)",
936 tok2str(lldp_tia_subtype_values, "unknown", subtype),
937 subtype));
938
939 switch (subtype) {
940 case LLDP_PRIVATE_TIA_SUBTYPE_CAPABILITIES:
941 if (tlv_len < 7) {
942 return hexdump;
943 }
944 ND_PRINT((ndo, "\n\t Media capabilities [%s] (0x%04x)",
945 bittok2str(lldp_tia_capabilities_values, "none",
946 EXTRACT_16BITS(tptr + 4)), EXTRACT_16BITS(tptr + 4)));
947 ND_PRINT((ndo, "\n\t Device type [%s] (0x%02x)",
948 tok2str(lldp_tia_device_type_values, "unknown", *(tptr+6)),
949 *(tptr + 6)));
950 break;
951
952 case LLDP_PRIVATE_TIA_SUBTYPE_NETWORK_POLICY:
953 if (tlv_len < 8) {
954 return hexdump;
955 }
956 ND_PRINT((ndo, "\n\t Application type [%s] (0x%02x)",
957 tok2str(lldp_tia_application_type_values, "none", *(tptr+4)),
958 *(tptr + 4)));
959 ND_PRINT((ndo, ", Flags [%s]", bittok2str(
960 lldp_tia_network_policy_bits_values, "none", *(tptr + 5))));
961 ND_PRINT((ndo, "\n\t Vlan id %u",
962 LLDP_EXTRACT_NETWORK_POLICY_VLAN(EXTRACT_16BITS(tptr + 5))));
963 ND_PRINT((ndo, ", L2 priority %u",
964 LLDP_EXTRACT_NETWORK_POLICY_L2_PRIORITY(EXTRACT_16BITS(tptr + 6))));
965 ND_PRINT((ndo, ", DSCP value %u",
966 LLDP_EXTRACT_NETWORK_POLICY_DSCP(EXTRACT_16BITS(tptr + 6))));
967 break;
968
969 case LLDP_PRIVATE_TIA_SUBTYPE_LOCAL_ID:
970 if (tlv_len < 5) {
971 return hexdump;
972 }
973 location_format = *(tptr+4);
974 ND_PRINT((ndo, "\n\t Location data format %s (0x%02x)",
975 tok2str(lldp_tia_location_data_format_values, "unknown", location_format),
976 location_format));
977
978 switch (location_format) {
979 case LLDP_TIA_LOCATION_DATA_FORMAT_COORDINATE_BASED:
980 if (tlv_len < 21) {
981 return hexdump;
982 }
983 ND_PRINT((ndo, "\n\t Latitude resolution %u, latitude value %" PRIu64,
984 (*(tptr + 5) >> 2), lldp_extract_latlon(tptr + 5)));
985 ND_PRINT((ndo, "\n\t Longitude resolution %u, longitude value %" PRIu64,
986 (*(tptr + 10) >> 2), lldp_extract_latlon(tptr + 10)));
987 ND_PRINT((ndo, "\n\t Altitude type %s (%u)",
988 tok2str(lldp_tia_location_altitude_type_values, "unknown",(*(tptr+15)>>4)),
989 (*(tptr + 15) >> 4)));
990 ND_PRINT((ndo, "\n\t Altitude resolution %u, altitude value 0x%x",
991 (EXTRACT_16BITS(tptr+15)>>6)&0x3f,
992 ((EXTRACT_32BITS(tptr + 16) & 0x3fffffff))));
993 ND_PRINT((ndo, "\n\t Datum %s (0x%02x)",
994 tok2str(lldp_tia_location_datum_type_values, "unknown", *(tptr+20)),
995 *(tptr + 20)));
996 break;
997
998 case LLDP_TIA_LOCATION_DATA_FORMAT_CIVIC_ADDRESS:
999 if (tlv_len < 6) {
1000 return hexdump;
1001 }
1002 lci_len = *(tptr+5);
1003 if (lci_len < 3) {
1004 return hexdump;
1005 }
1006 if (tlv_len < 7+lci_len) {
1007 return hexdump;
1008 }
1009 ND_PRINT((ndo, "\n\t LCI length %u, LCI what %s (0x%02x), Country-code ",
1010 lci_len,
1011 tok2str(lldp_tia_location_lci_what_values, "unknown", *(tptr+6)),
1012 *(tptr + 6)));
1013
1014 /* Country code */
1015 safeputs(ndo, tptr + 7, 2);
1016
1017 lci_len = lci_len-3;
1018 tptr = tptr + 9;
1019
1020 /* Decode each civic address element */
1021 while (lci_len > 0) {
1022 if (lci_len < 2) {
1023 return hexdump;
1024 }
1025 ca_type = *(tptr);
1026 ca_len = *(tptr+1);
1027
1028 tptr += 2;
1029 lci_len -= 2;
1030
1031 ND_PRINT((ndo, "\n\t CA type \'%s\' (%u), length %u: ",
1032 tok2str(lldp_tia_location_lci_catype_values, "unknown", ca_type),
1033 ca_type, ca_len));
1034
1035 /* basic sanity check */
1036 if ( ca_type == 0 || ca_len == 0) {
1037 return hexdump;
1038 }
1039 if (lci_len < ca_len) {
1040 return hexdump;
1041 }
1042
1043 safeputs(ndo, tptr, ca_len);
1044 tptr += ca_len;
1045 lci_len -= ca_len;
1046 }
1047 break;
1048
1049 case LLDP_TIA_LOCATION_DATA_FORMAT_ECS_ELIN:
1050 ND_PRINT((ndo, "\n\t ECS ELIN id "));
1051 safeputs(ndo, tptr + 5, tlv_len - 5);
1052 break;
1053
1054 default:
1055 ND_PRINT((ndo, "\n\t Location ID "));
1056 print_unknown_data(ndo, tptr + 5, "\n\t ", tlv_len - 5);
1057 }
1058 break;
1059
1060 case LLDP_PRIVATE_TIA_SUBTYPE_EXTENDED_POWER_MDI:
1061 if (tlv_len < 7) {
1062 return hexdump;
1063 }
1064 ND_PRINT((ndo, "\n\t Power type [%s]",
1065 (*(tptr + 4) & 0xC0 >> 6) ? "PD device" : "PSE device"));
1066 ND_PRINT((ndo, ", Power source [%s]",
1067 tok2str(lldp_tia_power_source_values, "none", (*(tptr + 4) & 0x30) >> 4)));
1068 ND_PRINT((ndo, "\n\t Power priority [%s] (0x%02x)",
1069 tok2str(lldp_tia_power_priority_values, "none", *(tptr+4)&0x0f),
1070 *(tptr + 4) & 0x0f));
1071 power_val = EXTRACT_16BITS(tptr+5);
1072 if (power_val < LLDP_TIA_POWER_VAL_MAX) {
1073 ND_PRINT((ndo, ", Power %.1f Watts", ((float)power_val) / 10));
1074 } else {
1075 ND_PRINT((ndo, ", Power %u (Reserved)", power_val));
1076 }
1077 break;
1078
1079 case LLDP_PRIVATE_TIA_SUBTYPE_INVENTORY_HARDWARE_REV:
1080 case LLDP_PRIVATE_TIA_SUBTYPE_INVENTORY_FIRMWARE_REV:
1081 case LLDP_PRIVATE_TIA_SUBTYPE_INVENTORY_SOFTWARE_REV:
1082 case LLDP_PRIVATE_TIA_SUBTYPE_INVENTORY_SERIAL_NUMBER:
1083 case LLDP_PRIVATE_TIA_SUBTYPE_INVENTORY_MANUFACTURER_NAME:
1084 case LLDP_PRIVATE_TIA_SUBTYPE_INVENTORY_MODEL_NAME:
1085 case LLDP_PRIVATE_TIA_SUBTYPE_INVENTORY_ASSET_ID:
1086 ND_PRINT((ndo, "\n\t %s ",
1087 tok2str(lldp_tia_inventory_values, "unknown", subtype)));
1088 safeputs(ndo, tptr + 4, tlv_len - 4);
1089 break;
1090
1091 default:
1092 hexdump = TRUE;
1093 break;
1094 }
1095
1096 return hexdump;
1097 }
1098
1099 /*
1100 * Print DCBX Protocol fields (V 1.01).
1101 */
1102 static int
1103 lldp_private_dcbx_print(netdissect_options *ndo,
1104 const u_char *pptr, u_int len)
1105 {
1106 int subtype, hexdump = FALSE;
1107 uint8_t tval;
1108 uint16_t tlv;
1109 uint32_t i, pgval, uval;
1110 u_int tlen, tlv_type, tlv_len;
1111 const u_char *tptr, *mptr;
1112
1113 if (len < 4) {
1114 return hexdump;
1115 }
1116 subtype = *(pptr+3);
1117
1118 ND_PRINT((ndo, "\n\t %s Subtype (%u)",
1119 tok2str(lldp_dcbx_subtype_values, "unknown", subtype),
1120 subtype));
1121
1122 /* by passing old version */
1123 if (subtype == LLDP_DCBX_SUBTYPE_1)
1124 return TRUE;
1125
1126 tptr = pptr + 4;
1127 tlen = len - 4;
1128
1129 while (tlen >= sizeof(tlv)) {
1130
1131 ND_TCHECK2(*tptr, sizeof(tlv));
1132
1133 tlv = EXTRACT_16BITS(tptr);
1134
1135 tlv_type = LLDP_EXTRACT_TYPE(tlv);
1136 tlv_len = LLDP_EXTRACT_LEN(tlv);
1137 hexdump = FALSE;
1138
1139 tlen -= sizeof(tlv);
1140 tptr += sizeof(tlv);
1141
1142 /* loop check */
1143 if (!tlv_type || !tlv_len) {
1144 break;
1145 }
1146
1147 ND_TCHECK2(*tptr, tlv_len);
1148 if (tlen < tlv_len) {
1149 goto trunc;
1150 }
1151
1152 /* decode every tlv */
1153 switch (tlv_type) {
1154 case LLDP_DCBX_CONTROL_TLV:
1155 if (tlv_len < 10) {
1156 goto trunc;
1157 }
1158 ND_PRINT((ndo, "\n\t Control - Protocol Control (type 0x%x, length %d)",
1159 LLDP_DCBX_CONTROL_TLV, tlv_len));
1160 ND_PRINT((ndo, "\n\t Oper_Version: %d", *tptr));
1161 ND_PRINT((ndo, "\n\t Max_Version: %d", *(tptr + 1)));
1162 ND_PRINT((ndo, "\n\t Sequence Number: %d", EXTRACT_32BITS(tptr + 2)));
1163 ND_PRINT((ndo, "\n\t Acknowledgement Number: %d",
1164 EXTRACT_32BITS(tptr + 6)));
1165 break;
1166 case LLDP_DCBX_PRIORITY_GROUPS_TLV:
1167 if (tlv_len < 17) {
1168 goto trunc;
1169 }
1170 ND_PRINT((ndo, "\n\t Feature - Priority Group (type 0x%x, length %d)",
1171 LLDP_DCBX_PRIORITY_GROUPS_TLV, tlv_len));
1172 ND_PRINT((ndo, "\n\t Oper_Version: %d", *tptr));
1173 ND_PRINT((ndo, "\n\t Max_Version: %d", *(tptr + 1)));
1174 ND_PRINT((ndo, "\n\t Info block(0x%02X): ", *(tptr + 2)));
1175 tval = *(tptr+2);
1176 ND_PRINT((ndo, "Enable bit: %d, Willing bit: %d, Error Bit: %d",
1177 (tval & 0x80) ? 1 : 0, (tval & 0x40) ? 1 : 0,
1178 (tval & 0x20) ? 1 : 0));
1179 ND_PRINT((ndo, "\n\t SubType: %d", *(tptr + 3)));
1180 ND_PRINT((ndo, "\n\t Priority Allocation"));
1181
1182 /*
1183 * Array of 8 4-bit priority group ID values; we fetch all
1184 * 32 bits and extract each nibble.
1185 */
1186 pgval = EXTRACT_32BITS(tptr+4);
1187 for (i = 0; i <= 7; i++) {
1188 ND_PRINT((ndo, "\n\t PgId_%d: %d",
1189 i, (pgval >> (28 - 4 * i)) & 0xF));
1190 }
1191 ND_PRINT((ndo, "\n\t Priority Group Allocation"));
1192 for (i = 0; i <= 7; i++)
1193 ND_PRINT((ndo, "\n\t Pg percentage[%d]: %d", i, *(tptr + 8 + i)));
1194 ND_PRINT((ndo, "\n\t NumTCsSupported: %d", *(tptr + 8 + 8)));
1195 break;
1196 case LLDP_DCBX_PRIORITY_FLOW_CONTROL_TLV:
1197 if (tlv_len < 6) {
1198 goto trunc;
1199 }
1200 ND_PRINT((ndo, "\n\t Feature - Priority Flow Control"));
1201 ND_PRINT((ndo, " (type 0x%x, length %d)",
1202 LLDP_DCBX_PRIORITY_FLOW_CONTROL_TLV, tlv_len));
1203 ND_PRINT((ndo, "\n\t Oper_Version: %d", *tptr));
1204 ND_PRINT((ndo, "\n\t Max_Version: %d", *(tptr + 1)));
1205 ND_PRINT((ndo, "\n\t Info block(0x%02X): ", *(tptr + 2)));
1206 tval = *(tptr+2);
1207 ND_PRINT((ndo, "Enable bit: %d, Willing bit: %d, Error Bit: %d",
1208 (tval & 0x80) ? 1 : 0, (tval & 0x40) ? 1 : 0,
1209 (tval & 0x20) ? 1 : 0));
1210 ND_PRINT((ndo, "\n\t SubType: %d", *(tptr + 3)));
1211 tval = *(tptr+4);
1212 ND_PRINT((ndo, "\n\t PFC Config (0x%02X)", *(tptr + 4)));
1213 for (i = 0; i <= 7; i++)
1214 ND_PRINT((ndo, "\n\t Priority Bit %d: %s",
1215 i, (tval & (1 << i)) ? "Enabled" : "Disabled"));
1216 ND_PRINT((ndo, "\n\t NumTCPFCSupported: %d", *(tptr + 5)));
1217 break;
1218 case LLDP_DCBX_APPLICATION_TLV:
1219 if (tlv_len < 4) {
1220 goto trunc;
1221 }
1222 ND_PRINT((ndo, "\n\t Feature - Application (type 0x%x, length %d)",
1223 LLDP_DCBX_APPLICATION_TLV, tlv_len));
1224 ND_PRINT((ndo, "\n\t Oper_Version: %d", *tptr));
1225 ND_PRINT((ndo, "\n\t Max_Version: %d", *(tptr + 1)));
1226 ND_PRINT((ndo, "\n\t Info block(0x%02X): ", *(tptr + 2)));
1227 tval = *(tptr+2);
1228 ND_PRINT((ndo, "Enable bit: %d, Willing bit: %d, Error Bit: %d",
1229 (tval & 0x80) ? 1 : 0, (tval & 0x40) ? 1 : 0,
1230 (tval & 0x20) ? 1 : 0));
1231 ND_PRINT((ndo, "\n\t SubType: %d", *(tptr + 3)));
1232 tval = tlv_len - 4;
1233 mptr = tptr + 4;
1234 while (tval >= 6) {
1235 ND_PRINT((ndo, "\n\t Application Value"));
1236 ND_PRINT((ndo, "\n\t Application Protocol ID: 0x%04x",
1237 EXTRACT_16BITS(mptr)));
1238 uval = EXTRACT_24BITS(mptr+2);
1239 ND_PRINT((ndo, "\n\t SF (0x%x) Application Protocol ID is %s",
1240 (uval >> 22),
1241 (uval >> 22) ? "Socket Number" : "L2 EtherType"));
1242 ND_PRINT((ndo, "\n\t OUI: 0x%06x", uval & 0x3fffff));
1243 ND_PRINT((ndo, "\n\t User Priority Map: 0x%02x", *(mptr + 5)));
1244 tval = tval - 6;
1245 mptr = mptr + 6;
1246 }
1247 break;
1248 default:
1249 hexdump = TRUE;
1250 break;
1251 }
1252
1253 /* do we also want to see a hex dump ? */
1254 if (ndo->ndo_vflag > 1 || (ndo->ndo_vflag && hexdump)) {
1255 print_unknown_data(ndo, tptr, "\n\t ", tlv_len);
1256 }
1257
1258 tlen -= tlv_len;
1259 tptr += tlv_len;
1260 }
1261
1262 trunc:
1263 return hexdump;
1264 }
1265
1266 static char *
1267 lldp_network_addr_print(netdissect_options *ndo, const u_char *tptr, u_int len)
1268 {
1269 uint8_t af;
1270 static char buf[BUFSIZE];
1271 const char * (*pfunc)(netdissect_options *, const u_char *);
1272
1273 if (len < 1)
1274 return NULL;
1275 len--;
1276 af = *tptr;
1277 switch (af) {
1278 case AFNUM_INET:
1279 if (len < 4)
1280 return NULL;
1281 /* This cannot be assigned to ipaddr_string(), which is a macro. */
1282 pfunc = getname;
1283 break;
1284 case AFNUM_INET6:
1285 if (len < 16)
1286 return NULL;
1287 /* This cannot be assigned to ip6addr_string(), which is a macro. */
1288 pfunc = getname6;
1289 break;
1290 case AFNUM_802:
1291 if (len < 6)
1292 return NULL;
1293 pfunc = etheraddr_string;
1294 break;
1295 default:
1296 pfunc = NULL;
1297 break;
1298 }
1299
1300 if (!pfunc) {
1301 snprintf(buf, sizeof(buf), "AFI %s (%u), no AF printer !",
1302 tok2str(af_values, "Unknown", af), af);
1303 } else {
1304 snprintf(buf, sizeof(buf), "AFI %s (%u): %s",
1305 tok2str(af_values, "Unknown", af), af, (*pfunc)(ndo, tptr+1));
1306 }
1307
1308 return buf;
1309 }
1310
1311 static int
1312 lldp_mgmt_addr_tlv_print(netdissect_options *ndo,
1313 const u_char *pptr, u_int len)
1314 {
1315 uint8_t mgmt_addr_len, intf_num_subtype, oid_len;
1316 const u_char *tptr;
1317 u_int tlen;
1318 char *mgmt_addr;
1319
1320 tlen = len;
1321 tptr = pptr;
1322
1323 if (tlen < 1) {
1324 return 0;
1325 }
1326 mgmt_addr_len = *tptr++;
1327 tlen--;
1328
1329 if (tlen < mgmt_addr_len) {
1330 return 0;
1331 }
1332
1333 mgmt_addr = lldp_network_addr_print(ndo, tptr, mgmt_addr_len);
1334 if (mgmt_addr == NULL) {
1335 return 0;
1336 }
1337 ND_PRINT((ndo, "\n\t Management Address length %u, %s",
1338 mgmt_addr_len, mgmt_addr));
1339 tptr += mgmt_addr_len;
1340 tlen -= mgmt_addr_len;
1341
1342 if (tlen < LLDP_INTF_NUM_LEN) {
1343 return 0;
1344 }
1345
1346 intf_num_subtype = *tptr;
1347 ND_PRINT((ndo, "\n\t %s Interface Numbering (%u): %u",
1348 tok2str(lldp_intf_numb_subtype_values, "Unknown", intf_num_subtype),
1349 intf_num_subtype,
1350 EXTRACT_32BITS(tptr + 1)));
1351
1352 tptr += LLDP_INTF_NUM_LEN;
1353 tlen -= LLDP_INTF_NUM_LEN;
1354
1355 /*
1356 * The OID is optional.
1357 */
1358 if (tlen) {
1359 oid_len = *tptr;
1360
1361 if (tlen < oid_len) {
1362 return 0;
1363 }
1364 if (oid_len) {
1365 ND_PRINT((ndo, "\n\t OID length %u", oid_len));
1366 safeputs(ndo, tptr + 1, oid_len);
1367 }
1368 }
1369
1370 return 1;
1371 }
1372
1373 void
1374 lldp_print(netdissect_options *ndo,
1375 register const u_char *pptr, register u_int len)
1376 {
1377 uint8_t subtype;
1378 uint16_t tlv, cap, ena_cap;
1379 u_int oui, tlen, hexdump, tlv_type, tlv_len;
1380 const u_char *tptr;
1381 char *network_addr;
1382
1383 tptr = pptr;
1384 tlen = len;
1385
1386 ND_PRINT((ndo, "LLDP, length %u", len));
1387
1388 while (tlen >= sizeof(tlv)) {
1389
1390 ND_TCHECK2(*tptr, sizeof(tlv));
1391
1392 tlv = EXTRACT_16BITS(tptr);
1393
1394 tlv_type = LLDP_EXTRACT_TYPE(tlv);
1395 tlv_len = LLDP_EXTRACT_LEN(tlv);
1396 hexdump = FALSE;
1397
1398 tlen -= sizeof(tlv);
1399 tptr += sizeof(tlv);
1400
1401 if (ndo->ndo_vflag) {
1402 ND_PRINT((ndo, "\n\t%s TLV (%u), length %u",
1403 tok2str(lldp_tlv_values, "Unknown", tlv_type),
1404 tlv_type, tlv_len));
1405 }
1406
1407 /* infinite loop check */
1408 if (!tlv_type || !tlv_len) {
1409 break;
1410 }
1411
1412 ND_TCHECK2(*tptr, tlv_len);
1413 if (tlen < tlv_len) {
1414 goto trunc;
1415 }
1416
1417 switch (tlv_type) {
1418
1419 case LLDP_CHASSIS_ID_TLV:
1420 if (ndo->ndo_vflag) {
1421 if (tlv_len < 2) {
1422 goto trunc;
1423 }
1424 subtype = *tptr;
1425 ND_PRINT((ndo, "\n\t Subtype %s (%u): ",
1426 tok2str(lldp_chassis_subtype_values, "Unknown", subtype),
1427 subtype));
1428
1429 switch (subtype) {
1430 case LLDP_CHASSIS_MAC_ADDR_SUBTYPE:
1431 if (tlv_len < 1+6) {
1432 goto trunc;
1433 }
1434 ND_PRINT((ndo, "%s", etheraddr_string(ndo, tptr + 1)));
1435 break;
1436
1437 case LLDP_CHASSIS_INTF_NAME_SUBTYPE: /* fall through */
1438 case LLDP_CHASSIS_LOCAL_SUBTYPE:
1439 case LLDP_CHASSIS_CHASSIS_COMP_SUBTYPE:
1440 case LLDP_CHASSIS_INTF_ALIAS_SUBTYPE:
1441 case LLDP_CHASSIS_PORT_COMP_SUBTYPE:
1442 safeputs(ndo, tptr + 1, tlv_len - 1);
1443 break;
1444
1445 case LLDP_CHASSIS_NETWORK_ADDR_SUBTYPE:
1446 network_addr = lldp_network_addr_print(ndo, tptr+1, tlv_len-1);
1447 if (network_addr == NULL) {
1448 goto trunc;
1449 }
1450 ND_PRINT((ndo, "%s", network_addr));
1451 break;
1452
1453 default:
1454 hexdump = TRUE;
1455 break;
1456 }
1457 }
1458 break;
1459
1460 case LLDP_PORT_ID_TLV:
1461 if (ndo->ndo_vflag) {
1462 if (tlv_len < 2) {
1463 goto trunc;
1464 }
1465 subtype = *tptr;
1466 ND_PRINT((ndo, "\n\t Subtype %s (%u): ",
1467 tok2str(lldp_port_subtype_values, "Unknown", subtype),
1468 subtype));
1469
1470 switch (subtype) {
1471 case LLDP_PORT_MAC_ADDR_SUBTYPE:
1472 if (tlv_len < 1+6) {
1473 goto trunc;
1474 }
1475 ND_PRINT((ndo, "%s", etheraddr_string(ndo, tptr + 1)));
1476 break;
1477
1478 case LLDP_PORT_INTF_NAME_SUBTYPE: /* fall through */
1479 case LLDP_PORT_LOCAL_SUBTYPE:
1480 case LLDP_PORT_AGENT_CIRC_ID_SUBTYPE:
1481 case LLDP_PORT_INTF_ALIAS_SUBTYPE:
1482 case LLDP_PORT_PORT_COMP_SUBTYPE:
1483 safeputs(ndo, tptr + 1, tlv_len - 1);
1484 break;
1485
1486 case LLDP_PORT_NETWORK_ADDR_SUBTYPE:
1487 network_addr = lldp_network_addr_print(ndo, tptr+1, tlv_len-1);
1488 if (network_addr == NULL) {
1489 goto trunc;
1490 }
1491 ND_PRINT((ndo, "%s", network_addr));
1492 break;
1493
1494 default:
1495 hexdump = TRUE;
1496 break;
1497 }
1498 }
1499 break;
1500
1501 case LLDP_TTL_TLV:
1502 if (ndo->ndo_vflag) {
1503 if (tlv_len < 2) {
1504 goto trunc;
1505 }
1506 ND_PRINT((ndo, ": TTL %us", EXTRACT_16BITS(tptr)));
1507 }
1508 break;
1509
1510 case LLDP_PORT_DESCR_TLV:
1511 if (ndo->ndo_vflag) {
1512 ND_PRINT((ndo, ": "));
1513 safeputs(ndo, tptr, tlv_len);
1514 }
1515 break;
1516
1517 case LLDP_SYSTEM_NAME_TLV:
1518 /*
1519 * The system name is also print in non-verbose mode
1520 * similar to the CDP printer.
1521 */
1522 ND_PRINT((ndo, ": "));
1523 safeputs(ndo, tptr, tlv_len);
1524 break;
1525
1526 case LLDP_SYSTEM_DESCR_TLV:
1527 if (ndo->ndo_vflag) {
1528 ND_PRINT((ndo, "\n\t "));
1529 safeputs(ndo, tptr, tlv_len);
1530 }
1531 break;
1532
1533 case LLDP_SYSTEM_CAP_TLV:
1534 if (ndo->ndo_vflag) {
1535 /*
1536 * XXX - IEEE Std 802.1AB-2009 says the first octet
1537 * if a chassis ID subtype, with the system
1538 * capabilities and enabled capabilities following
1539 * it.
1540 */
1541 if (tlv_len < 4) {
1542 goto trunc;
1543 }
1544 cap = EXTRACT_16BITS(tptr);
1545 ena_cap = EXTRACT_16BITS(tptr+2);
1546 ND_PRINT((ndo, "\n\t System Capabilities [%s] (0x%04x)",
1547 bittok2str(lldp_cap_values, "none", cap), cap));
1548 ND_PRINT((ndo, "\n\t Enabled Capabilities [%s] (0x%04x)",
1549 bittok2str(lldp_cap_values, "none", ena_cap), ena_cap));
1550 }
1551 break;
1552
1553 case LLDP_MGMT_ADDR_TLV:
1554 if (ndo->ndo_vflag) {
1555 if (!lldp_mgmt_addr_tlv_print(ndo, tptr, tlv_len)) {
1556 goto trunc;
1557 }
1558 }
1559 break;
1560
1561 case LLDP_PRIVATE_TLV:
1562 if (ndo->ndo_vflag) {
1563 if (tlv_len < 3) {
1564 goto trunc;
1565 }
1566 oui = EXTRACT_24BITS(tptr);
1567 ND_PRINT((ndo, ": OUI %s (0x%06x)", tok2str(oui_values, "Unknown", oui), oui));
1568
1569 switch (oui) {
1570 case OUI_IEEE_8021_PRIVATE:
1571 hexdump = lldp_private_8021_print(ndo, tptr, tlv_len);
1572 break;
1573 case OUI_IEEE_8023_PRIVATE:
1574 hexdump = lldp_private_8023_print(ndo, tptr, tlv_len);
1575 break;
1576 case OUI_TIA:
1577 hexdump = lldp_private_tia_print(ndo, tptr, tlv_len);
1578 break;
1579 case OUI_DCBX:
1580 hexdump = lldp_private_dcbx_print(ndo, tptr, tlv_len);
1581 break;
1582 default:
1583 hexdump = TRUE;
1584 break;
1585 }
1586 }
1587 break;
1588
1589 default:
1590 hexdump = TRUE;
1591 break;
1592 }
1593
1594 /* do we also want to see a hex dump ? */
1595 if (ndo->ndo_vflag > 1 || (ndo->ndo_vflag && hexdump)) {
1596 print_unknown_data(ndo, tptr, "\n\t ", tlv_len);
1597 }
1598
1599 tlen -= tlv_len;
1600 tptr += tlv_len;
1601 }
1602 return;
1603 trunc:
1604 ND_PRINT((ndo, "\n\t[|LLDP]"));
1605 }
1606
1607 /*
1608 * Local Variables:
1609 * c-style: whitesmith
1610 * c-basic-offset: 4
1611 * End:
1612 */