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print the optional (payload) CLNP header in ERPDUs
[tcpdump] / print-isoclns.c
1 /*
2 * Copyright (c) 1992, 1993, 1994, 1995, 1996
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 * Original code by Matt Thomas, Digital Equipment Corporation
22 *
23 * Extensively modified by Hannes Gredler (hannes@juniper.net) for more
24 * complete IS-IS & CLNP support.
25 */
26
27 #ifndef lint
28 static const char rcsid[] _U_ =
29 "@(#) $Header: /tcpdump/master/tcpdump/print-isoclns.c,v 1.131 2005-03-22 08:18:10 hannes Exp $ (LBL)";
30 #endif
31
32 #ifdef HAVE_CONFIG_H
33 #include "config.h"
34 #endif
35
36 #include <tcpdump-stdinc.h>
37
38 #include <stdio.h>
39 #include <string.h>
40
41 #include "interface.h"
42 #include "addrtoname.h"
43 #include "ethertype.h"
44 #include "ether.h"
45 #include "nlpid.h"
46 #include "extract.h"
47 #include "gmpls.h"
48 #include "oui.h"
49
50 #define IPV4 1 /* AFI value */
51 #define IPV6 2 /* AFI value */
52
53 /*
54 * IS-IS is defined in ISO 10589. Look there for protocol definitions.
55 */
56
57 #define SYSTEM_ID_LEN ETHER_ADDR_LEN
58 #define NODE_ID_LEN SYSTEM_ID_LEN+1
59 #define LSP_ID_LEN SYSTEM_ID_LEN+2
60
61 #define ISIS_VERSION 1
62 #define ESIS_VERSION 1
63 #define CLNP_VERSION 1
64
65 #define ISIS_PDU_TYPE_MASK 0x1F
66 #define ESIS_PDU_TYPE_MASK 0x1F
67 #define CLNP_PDU_TYPE_MASK 0x1F
68 #define CLNP_FLAG_MASK 0xE0
69 #define ISIS_LAN_PRIORITY_MASK 0x7F
70
71 #define ISIS_PDU_L1_LAN_IIH 15
72 #define ISIS_PDU_L2_LAN_IIH 16
73 #define ISIS_PDU_PTP_IIH 17
74 #define ISIS_PDU_L1_LSP 18
75 #define ISIS_PDU_L2_LSP 20
76 #define ISIS_PDU_L1_CSNP 24
77 #define ISIS_PDU_L2_CSNP 25
78 #define ISIS_PDU_L1_PSNP 26
79 #define ISIS_PDU_L2_PSNP 27
80
81 static struct tok isis_pdu_values[] = {
82 { ISIS_PDU_L1_LAN_IIH, "L1 Lan IIH"},
83 { ISIS_PDU_L2_LAN_IIH, "L2 Lan IIH"},
84 { ISIS_PDU_PTP_IIH, "p2p IIH"},
85 { ISIS_PDU_L1_LSP, "L1 LSP"},
86 { ISIS_PDU_L2_LSP, "L2 LSP"},
87 { ISIS_PDU_L1_CSNP, "L1 CSNP"},
88 { ISIS_PDU_L2_CSNP, "L2 CSNP"},
89 { ISIS_PDU_L1_PSNP, "L1 PSNP"},
90 { ISIS_PDU_L2_PSNP, "L2 PSNP"},
91 { 0, NULL}
92 };
93
94 /*
95 * A TLV is a tuple of a type, length and a value and is normally used for
96 * encoding information in all sorts of places. This is an enumeration of
97 * the well known types.
98 *
99 * list taken from rfc3359 plus some memory from veterans ;-)
100 */
101
102 #define ISIS_TLV_AREA_ADDR 1 /* iso10589 */
103 #define ISIS_TLV_IS_REACH 2 /* iso10589 */
104 #define ISIS_TLV_ESNEIGH 3 /* iso10589 */
105 #define ISIS_TLV_PART_DIS 4 /* iso10589 */
106 #define ISIS_TLV_PREFIX_NEIGH 5 /* iso10589 */
107 #define ISIS_TLV_ISNEIGH 6 /* iso10589 */
108 #define ISIS_TLV_ISNEIGH_VARLEN 7 /* iso10589 */
109 #define ISIS_TLV_PADDING 8 /* iso10589 */
110 #define ISIS_TLV_LSP 9 /* iso10589 */
111 #define ISIS_TLV_AUTH 10 /* iso10589, rfc3567 */
112 #define ISIS_TLV_CHECKSUM 12 /* rfc3358 */
113 #define ISIS_TLV_LSP_BUFFERSIZE 14 /* iso10589 rev2 */
114 #define ISIS_TLV_EXT_IS_REACH 22 /* draft-ietf-isis-traffic-05 */
115 #define ISIS_TLV_IS_ALIAS_ID 24 /* draft-ietf-isis-ext-lsp-frags-02 */
116 #define ISIS_TLV_DECNET_PHASE4 42
117 #define ISIS_TLV_LUCENT_PRIVATE 66
118 #define ISIS_TLV_INT_IP_REACH 128 /* rfc1195, rfc2966 */
119 #define ISIS_TLV_PROTOCOLS 129 /* rfc1195 */
120 #define ISIS_TLV_EXT_IP_REACH 130 /* rfc1195, rfc2966 */
121 #define ISIS_TLV_IDRP_INFO 131 /* rfc1195 */
122 #define ISIS_TLV_IPADDR 132 /* rfc1195 */
123 #define ISIS_TLV_IPAUTH 133 /* rfc1195 */
124 #define ISIS_TLV_TE_ROUTER_ID 134 /* draft-ietf-isis-traffic-05 */
125 #define ISIS_TLV_EXTD_IP_REACH 135 /* draft-ietf-isis-traffic-05 */
126 #define ISIS_TLV_HOSTNAME 137 /* rfc2763 */
127 #define ISIS_TLV_SHARED_RISK_GROUP 138 /* draft-ietf-isis-gmpls-extensions */
128 #define ISIS_TLV_NORTEL_PRIVATE1 176
129 #define ISIS_TLV_NORTEL_PRIVATE2 177
130 #define ISIS_TLV_RESTART_SIGNALING 211 /* draft-ietf-isis-restart-01 */
131 #define ISIS_TLV_MT_IS_REACH 222 /* draft-ietf-isis-wg-multi-topology-05 */
132 #define ISIS_TLV_MT_SUPPORTED 229 /* draft-ietf-isis-wg-multi-topology-05 */
133 #define ISIS_TLV_IP6ADDR 232 /* draft-ietf-isis-ipv6-02 */
134 #define ISIS_TLV_MT_IP_REACH 235 /* draft-ietf-isis-wg-multi-topology-05 */
135 #define ISIS_TLV_IP6_REACH 236 /* draft-ietf-isis-ipv6-02 */
136 #define ISIS_TLV_MT_IP6_REACH 237 /* draft-ietf-isis-wg-multi-topology-05 */
137 #define ISIS_TLV_PTP_ADJ 240 /* rfc3373 */
138 #define ISIS_TLV_IIH_SEQNR 241 /* draft-shen-isis-iih-sequence-00 */
139 #define ISIS_TLV_VENDOR_PRIVATE 250 /* draft-ietf-isis-experimental-tlv-01 */
140
141 static struct tok isis_tlv_values[] = {
142 { ISIS_TLV_AREA_ADDR, "Area address(es)"},
143 { ISIS_TLV_IS_REACH, "IS Reachability"},
144 { ISIS_TLV_ESNEIGH, "ES Neighbor(s)"},
145 { ISIS_TLV_PART_DIS, "Partition DIS"},
146 { ISIS_TLV_PREFIX_NEIGH, "Prefix Neighbors"},
147 { ISIS_TLV_ISNEIGH, "IS Neighbor(s)"},
148 { ISIS_TLV_ISNEIGH_VARLEN, "IS Neighbor(s) (variable length)"},
149 { ISIS_TLV_PADDING, "Padding"},
150 { ISIS_TLV_LSP, "LSP entries"},
151 { ISIS_TLV_AUTH, "Authentication"},
152 { ISIS_TLV_CHECKSUM, "Checksum"},
153 { ISIS_TLV_LSP_BUFFERSIZE, "LSP Buffersize"},
154 { ISIS_TLV_EXT_IS_REACH, "Extended IS Reachability"},
155 { ISIS_TLV_IS_ALIAS_ID, "IS Alias ID"},
156 { ISIS_TLV_DECNET_PHASE4, "DECnet Phase IV"},
157 { ISIS_TLV_LUCENT_PRIVATE, "Lucent Proprietary"},
158 { ISIS_TLV_INT_IP_REACH, "IPv4 Internal Reachability"},
159 { ISIS_TLV_PROTOCOLS, "Protocols supported"},
160 { ISIS_TLV_EXT_IP_REACH, "IPv4 External Reachability"},
161 { ISIS_TLV_IDRP_INFO, "Inter-Domain Information Type"},
162 { ISIS_TLV_IPADDR, "IPv4 Interface address(es)"},
163 { ISIS_TLV_IPAUTH, "IPv4 authentication (deprecated)"},
164 { ISIS_TLV_TE_ROUTER_ID, "Traffic Engineering Router ID"},
165 { ISIS_TLV_EXTD_IP_REACH, "Extended IPv4 Reachability"},
166 { ISIS_TLV_SHARED_RISK_GROUP, "Shared Risk Link Group"},
167 { ISIS_TLV_NORTEL_PRIVATE1, "Nortel Proprietary"},
168 { ISIS_TLV_NORTEL_PRIVATE2, "Nortel Proprietary"},
169 { ISIS_TLV_HOSTNAME, "Hostname"},
170 { ISIS_TLV_RESTART_SIGNALING, "Restart Signaling"},
171 { ISIS_TLV_MT_IS_REACH, "Multi Topology IS Reachability"},
172 { ISIS_TLV_MT_SUPPORTED, "Multi Topology"},
173 { ISIS_TLV_IP6ADDR, "IPv6 Interface address(es)"},
174 { ISIS_TLV_MT_IP_REACH, "Multi-Topology IPv4 Reachability"},
175 { ISIS_TLV_IP6_REACH, "IPv6 reachability"},
176 { ISIS_TLV_MT_IP6_REACH, "Multi-Topology IP6 Reachability"},
177 { ISIS_TLV_PTP_ADJ, "Point-to-point Adjacency State"},
178 { ISIS_TLV_IIH_SEQNR, "Hello PDU Sequence Number"},
179 { ISIS_TLV_VENDOR_PRIVATE, "Vendor Private"},
180 { 0, NULL }
181 };
182
183 #define ESIS_OPTION_PROTOCOLS 129
184 #define ESIS_OPTION_QOS_MAINTENANCE 195 /* iso9542 */
185 #define ESIS_OPTION_SECURITY 197 /* iso9542 */
186 #define ESIS_OPTION_ES_CONF_TIME 198 /* iso9542 */
187 #define ESIS_OPTION_PRIORITY 205 /* iso9542 */
188 #define ESIS_OPTION_ADDRESS_MASK 225 /* iso9542 */
189 #define ESIS_OPTION_SNPA_MASK 226 /* iso9542 */
190
191 static struct tok esis_option_values[] = {
192 { ESIS_OPTION_PROTOCOLS, "Protocols supported"},
193 { ESIS_OPTION_QOS_MAINTENANCE, "QoS Maintenance" },
194 { ESIS_OPTION_SECURITY, "Security" },
195 { ESIS_OPTION_ES_CONF_TIME, "ES Configuration Time" },
196 { ESIS_OPTION_PRIORITY, "Priority" },
197 { ESIS_OPTION_ADDRESS_MASK, "Addressk Mask" },
198 { ESIS_OPTION_SNPA_MASK, "SNPA Mask" },
199 { 0, NULL }
200 };
201
202 #define CLNP_OPTION_DISCARD_REASON 193
203 #define CLNP_OPTION_QOS_MAINTENANCE 195 /* iso8473 */
204 #define CLNP_OPTION_PRIORITY 205 /* iso8473 */
205
206 static struct tok clnp_option_values[] = {
207 { CLNP_OPTION_DISCARD_REASON, "Discard Reason"},
208 { CLNP_OPTION_PRIORITY, "Priority"},
209 { CLNP_OPTION_QOS_MAINTENANCE, "QoS Maintenance"},
210 { 0, NULL }
211 };
212
213 static struct tok clnp_option_rfd_class_values[] = {
214 { 0x0, "General"},
215 { 0x8, "Address"},
216 { 0x9, "Source Routeing"},
217 { 0xa, "Lifetime"},
218 { 0xb, "PDU Discarded"},
219 { 0xc, "Reassembly"},
220 { 0, NULL }
221 };
222
223 static struct tok clnp_option_rfd_general_values[] = {
224 { 0x0, "Reason not specified"},
225 { 0x1, "Protocol procedure error"},
226 { 0x2, "Incorrect checksum"},
227 { 0x3, "PDU discarded due to congestion"},
228 { 0x4, "Header syntax error (cannot be parsed)"},
229 { 0x5, "Segmentation needed but not permitted"},
230 { 0x6, "Incomplete PDU received"},
231 { 0x7, "Duplicate option"},
232 { 0, NULL }
233 };
234
235 static struct tok clnp_option_rfd_address_values[] = {
236 { 0x0, "Destination address unreachable"},
237 { 0x1, "Destination address unknown"},
238 { 0, NULL }
239 };
240
241 static struct tok clnp_option_rfd_source_routeing_values[] = {
242 { 0x0, "Unspecified source routeing error"},
243 { 0x1, "Syntax error in source routeing field"},
244 { 0x2, "Unknown address in source routeing field"},
245 { 0x3, "Path not acceptable"},
246 { 0, NULL }
247 };
248
249 static struct tok clnp_option_rfd_lifetime_values[] = {
250 { 0x0, "Lifetime expired while data unit in transit"},
251 { 0x1, "Lifetime expired during reassembly"},
252 { 0, NULL }
253 };
254
255 static struct tok clnp_option_rfd_pdu_discard_values[] = {
256 { 0x0, "Unsupported option not specified"},
257 { 0x1, "Unsupported protocol version"},
258 { 0x2, "Unsupported security option"},
259 { 0x3, "Unsupported source routeing option"},
260 { 0x4, "Unsupported recording of route option"},
261 { 0, NULL }
262 };
263
264 static struct tok clnp_option_rfd_reassembly_values[] = {
265 { 0x0, "Reassembly interference"},
266 { 0, NULL }
267 };
268
269 /* array of 16 error-classes */
270 static struct tok *clnp_option_rfd_error_class[] = {
271 clnp_option_rfd_general_values,
272 NULL,
273 NULL,
274 NULL,
275 NULL,
276 NULL,
277 NULL,
278 NULL,
279 clnp_option_rfd_address_values,
280 clnp_option_rfd_source_routeing_values,
281 clnp_option_rfd_lifetime_values,
282 clnp_option_rfd_pdu_discard_values,
283 clnp_option_rfd_reassembly_values,
284 NULL,
285 NULL,
286 NULL
287 };
288
289
290 #define ISIS_SUBTLV_EXT_IS_REACH_ADMIN_GROUP 3 /* draft-ietf-isis-traffic-05 */
291 #define ISIS_SUBTLV_EXT_IS_REACH_LINK_LOCAL_REMOTE_ID 4 /* draft-ietf-isis-gmpls-extensions */
292 #define ISIS_SUBTLV_EXT_IS_REACH_LINK_REMOTE_ID 5 /* draft-ietf-isis-traffic-05 */
293 #define ISIS_SUBTLV_EXT_IS_REACH_IPV4_INTF_ADDR 6 /* draft-ietf-isis-traffic-05 */
294 #define ISIS_SUBTLV_EXT_IS_REACH_IPV4_NEIGHBOR_ADDR 8 /* draft-ietf-isis-traffic-05 */
295 #define ISIS_SUBTLV_EXT_IS_REACH_MAX_LINK_BW 9 /* draft-ietf-isis-traffic-05 */
296 #define ISIS_SUBTLV_EXT_IS_REACH_RESERVABLE_BW 10 /* draft-ietf-isis-traffic-05 */
297 #define ISIS_SUBTLV_EXT_IS_REACH_UNRESERVED_BW 11 /* draft-ietf-isis-traffic-05 */
298 #define ISIS_SUBTLV_EXT_IS_REACH_DIFFSERV_TE 12 /* draft-ietf-tewg-diff-te-proto-06 */
299 #define ISIS_SUBTLV_EXT_IS_REACH_TE_METRIC 18 /* draft-ietf-isis-traffic-05 */
300 #define ISIS_SUBTLV_EXT_IS_REACH_LINK_PROTECTION_TYPE 20 /* draft-ietf-isis-gmpls-extensions */
301 #define ISIS_SUBTLV_EXT_IS_REACH_INTF_SW_CAP_DESCR 21 /* draft-ietf-isis-gmpls-extensions */
302
303 static struct tok isis_ext_is_reach_subtlv_values[] = {
304 { ISIS_SUBTLV_EXT_IS_REACH_ADMIN_GROUP, "Administrative groups" },
305 { ISIS_SUBTLV_EXT_IS_REACH_LINK_LOCAL_REMOTE_ID, "Link Local/Remote Identifier" },
306 { ISIS_SUBTLV_EXT_IS_REACH_LINK_REMOTE_ID, "Link Remote Identifier" },
307 { ISIS_SUBTLV_EXT_IS_REACH_IPV4_INTF_ADDR, "IPv4 interface address" },
308 { ISIS_SUBTLV_EXT_IS_REACH_IPV4_NEIGHBOR_ADDR, "IPv4 neighbor address" },
309 { ISIS_SUBTLV_EXT_IS_REACH_MAX_LINK_BW, "Maximum link bandwidth" },
310 { ISIS_SUBTLV_EXT_IS_REACH_RESERVABLE_BW, "Reservable link bandwidth" },
311 { ISIS_SUBTLV_EXT_IS_REACH_UNRESERVED_BW, "Unreserved bandwidth" },
312 { ISIS_SUBTLV_EXT_IS_REACH_DIFFSERV_TE, "Diffserv TE" },
313 { ISIS_SUBTLV_EXT_IS_REACH_TE_METRIC, "Traffic Engineering Metric" },
314 { ISIS_SUBTLV_EXT_IS_REACH_LINK_PROTECTION_TYPE, "Link Protection Type" },
315 { ISIS_SUBTLV_EXT_IS_REACH_INTF_SW_CAP_DESCR, "Interface Switching Capability" },
316 { 250, "Reserved for cisco specific extensions" },
317 { 251, "Reserved for cisco specific extensions" },
318 { 252, "Reserved for cisco specific extensions" },
319 { 253, "Reserved for cisco specific extensions" },
320 { 254, "Reserved for cisco specific extensions" },
321 { 255, "Reserved for future expansion" },
322 { 0, NULL }
323 };
324
325 #define ISIS_SUBTLV_EXTD_IP_REACH_ADMIN_TAG32 1 /* draft-ietf-isis-admin-tags-01 */
326 #define ISIS_SUBTLV_EXTD_IP_REACH_ADMIN_TAG64 2 /* draft-ietf-isis-admin-tags-01 */
327 #define ISIS_SUBTLV_EXTD_IP_REACH_MGMT_PREFIX_COLOR 117 /* draft-ietf-isis-wg-multi-topology-05 */
328
329 static struct tok isis_ext_ip_reach_subtlv_values[] = {
330 { ISIS_SUBTLV_EXTD_IP_REACH_ADMIN_TAG32, "32-Bit Administrative tag" },
331 { ISIS_SUBTLV_EXTD_IP_REACH_ADMIN_TAG64, "64-Bit Administrative tag" },
332 { ISIS_SUBTLV_EXTD_IP_REACH_MGMT_PREFIX_COLOR, "Management Prefix Color" },
333 { 0, NULL }
334 };
335
336 #define ISIS_SUBTLV_AUTH_SIMPLE 1
337 #define ISIS_SUBTLV_AUTH_MD5 54
338 #define ISIS_SUBTLV_AUTH_MD5_LEN 16
339 #define ISIS_SUBTLV_AUTH_PRIVATE 255
340
341 static struct tok isis_subtlv_auth_values[] = {
342 { ISIS_SUBTLV_AUTH_SIMPLE, "simple text password"},
343 { ISIS_SUBTLV_AUTH_MD5, "HMAC-MD5 password"},
344 { ISIS_SUBTLV_AUTH_PRIVATE, "Routing Domain private password"},
345 { 0, NULL }
346 };
347
348 #define ISIS_SUBTLV_IDRP_RES 0
349 #define ISIS_SUBTLV_IDRP_LOCAL 1
350 #define ISIS_SUBTLV_IDRP_ASN 2
351
352 static struct tok isis_subtlv_idrp_values[] = {
353 { ISIS_SUBTLV_IDRP_RES, "Reserved"},
354 { ISIS_SUBTLV_IDRP_LOCAL, "Routing-Domain Specific"},
355 { ISIS_SUBTLV_IDRP_ASN, "AS Number Tag"},
356 { 0, NULL}
357 };
358
359 #define CLNP_SEGMENT_PART 0x80
360 #define CLNP_MORE_SEGMENTS 0x40
361 #define CLNP_REQUEST_ER 0x20
362
363 static struct tok clnp_flag_values[] = {
364 { CLNP_SEGMENT_PART, "Segmentation permitted"},
365 { CLNP_MORE_SEGMENTS, "more Segments"},
366 { CLNP_REQUEST_ER, "request Error Report"},
367 { 0, NULL}
368 };
369
370 #define ISIS_MASK_LSP_OL_BIT(x) ((x)&0x4)
371 #define ISIS_MASK_LSP_ISTYPE_BITS(x) ((x)&0x3)
372 #define ISIS_MASK_LSP_PARTITION_BIT(x) ((x)&0x80)
373 #define ISIS_MASK_LSP_ATT_BITS(x) ((x)&0x78)
374 #define ISIS_MASK_LSP_ATT_ERROR_BIT(x) ((x)&0x40)
375 #define ISIS_MASK_LSP_ATT_EXPENSE_BIT(x) ((x)&0x20)
376 #define ISIS_MASK_LSP_ATT_DELAY_BIT(x) ((x)&0x10)
377 #define ISIS_MASK_LSP_ATT_DEFAULT_BIT(x) ((x)&0x8)
378
379 #define ISIS_MASK_MTID(x) ((x)&0x0fff)
380 #define ISIS_MASK_MTFLAGS(x) ((x)&0xf000)
381
382 static struct tok isis_mt_flag_values[] = {
383 { 0x4000, "sub-TLVs present"},
384 { 0x8000, "ATT bit set"},
385 { 0, NULL}
386 };
387
388 #define ISIS_MASK_TLV_EXTD_IP_UPDOWN(x) ((x)&0x80)
389 #define ISIS_MASK_TLV_EXTD_IP_SUBTLV(x) ((x)&0x40)
390
391 #define ISIS_MASK_TLV_EXTD_IP6_IE(x) ((x)&0x40)
392 #define ISIS_MASK_TLV_EXTD_IP6_SUBTLV(x) ((x)&0x20)
393
394 #define ISIS_LSP_TLV_METRIC_SUPPORTED(x) ((x)&0x80)
395 #define ISIS_LSP_TLV_METRIC_IE(x) ((x)&0x40)
396 #define ISIS_LSP_TLV_METRIC_UPDOWN(x) ((x)&0x80)
397 #define ISIS_LSP_TLV_METRIC_VALUE(x) ((x)&0x3f)
398
399 #define ISIS_MASK_TLV_SHARED_RISK_GROUP(x) ((x)&0x1)
400
401 static struct tok isis_mt_values[] = {
402 { 0, "IPv4 unicast"},
403 { 1, "In-Band Management"},
404 { 2, "IPv6 unicast"},
405 { 3, "Multicast"},
406 { 4095, "Development, Experimental or Proprietary"},
407 { 0, NULL }
408 };
409
410 static struct tok isis_iih_circuit_type_values[] = {
411 { 1, "Level 1 only"},
412 { 2, "Level 2 only"},
413 { 3, "Level 1, Level 2"},
414 { 0, NULL}
415 };
416
417 #define ISIS_LSP_TYPE_UNUSED0 0
418 #define ISIS_LSP_TYPE_LEVEL_1 1
419 #define ISIS_LSP_TYPE_UNUSED2 2
420 #define ISIS_LSP_TYPE_LEVEL_2 3
421
422 static struct tok isis_lsp_istype_values[] = {
423 { ISIS_LSP_TYPE_UNUSED0, "Unused 0x0 (invalid)"},
424 { ISIS_LSP_TYPE_LEVEL_1, "L1 IS"},
425 { ISIS_LSP_TYPE_UNUSED2, "Unused 0x2 (invalid)"},
426 { ISIS_LSP_TYPE_LEVEL_2, "L1L2 IS"},
427 { 0, NULL }
428 };
429
430 /*
431 * Katz's point to point adjacency TLV uses codes to tell us the state of
432 * the remote adjacency. Enumerate them.
433 */
434
435 #define ISIS_PTP_ADJ_UP 0
436 #define ISIS_PTP_ADJ_INIT 1
437 #define ISIS_PTP_ADJ_DOWN 2
438
439 static struct tok isis_ptp_adjancey_values[] = {
440 { ISIS_PTP_ADJ_UP, "Up" },
441 { ISIS_PTP_ADJ_INIT, "Initializing" },
442 { ISIS_PTP_ADJ_DOWN, "Down" },
443 { 0, NULL}
444 };
445
446 struct isis_tlv_ptp_adj {
447 u_int8_t adjacency_state;
448 u_int8_t extd_local_circuit_id[4];
449 u_int8_t neighbor_sysid[SYSTEM_ID_LEN];
450 u_int8_t neighbor_extd_local_circuit_id[4];
451 };
452
453 static int osi_cksum(const u_int8_t *, u_int);
454 static int clnp_print(const u_int8_t *, u_int);
455 static void esis_print(const u_int8_t *, u_int);
456 static int isis_print(const u_int8_t *, u_int);
457
458 struct isis_metric_block {
459 u_int8_t metric_default;
460 u_int8_t metric_delay;
461 u_int8_t metric_expense;
462 u_int8_t metric_error;
463 };
464
465 struct isis_tlv_is_reach {
466 struct isis_metric_block isis_metric_block;
467 u_int8_t neighbor_nodeid[NODE_ID_LEN];
468 };
469
470 struct isis_tlv_es_reach {
471 struct isis_metric_block isis_metric_block;
472 u_int8_t neighbor_sysid[SYSTEM_ID_LEN];
473 };
474
475 struct isis_tlv_ip_reach {
476 struct isis_metric_block isis_metric_block;
477 u_int8_t prefix[4];
478 u_int8_t mask[4];
479 };
480
481 static struct tok isis_is_reach_virtual_values[] = {
482 { 0, "IsNotVirtual"},
483 { 1, "IsVirtual"},
484 { 0, NULL }
485 };
486
487 static struct tok isis_restart_flag_values[] = {
488 { 0x1, "Restart Request"},
489 { 0x2, "Restart Acknowledgement"},
490 { 0, NULL }
491 };
492
493 struct isis_common_header {
494 u_int8_t nlpid;
495 u_int8_t fixed_len;
496 u_int8_t version; /* Protocol version */
497 u_int8_t id_length;
498 u_int8_t pdu_type; /* 3 MSbits are reserved */
499 u_int8_t pdu_version; /* Packet format version */
500 u_int8_t reserved;
501 u_int8_t max_area;
502 };
503
504 struct isis_iih_lan_header {
505 u_int8_t circuit_type;
506 u_int8_t source_id[SYSTEM_ID_LEN];
507 u_int8_t holding_time[2];
508 u_int8_t pdu_len[2];
509 u_int8_t priority;
510 u_int8_t lan_id[NODE_ID_LEN];
511 };
512
513 struct isis_iih_ptp_header {
514 u_int8_t circuit_type;
515 u_int8_t source_id[SYSTEM_ID_LEN];
516 u_int8_t holding_time[2];
517 u_int8_t pdu_len[2];
518 u_int8_t circuit_id;
519 };
520
521 struct isis_lsp_header {
522 u_int8_t pdu_len[2];
523 u_int8_t remaining_lifetime[2];
524 u_int8_t lsp_id[LSP_ID_LEN];
525 u_int8_t sequence_number[4];
526 u_int8_t checksum[2];
527 u_int8_t typeblock;
528 };
529
530 struct isis_csnp_header {
531 u_int8_t pdu_len[2];
532 u_int8_t source_id[NODE_ID_LEN];
533 u_int8_t start_lsp_id[LSP_ID_LEN];
534 u_int8_t end_lsp_id[LSP_ID_LEN];
535 };
536
537 struct isis_psnp_header {
538 u_int8_t pdu_len[2];
539 u_int8_t source_id[NODE_ID_LEN];
540 };
541
542 struct isis_tlv_lsp {
543 u_int8_t remaining_lifetime[2];
544 u_int8_t lsp_id[LSP_ID_LEN];
545 u_int8_t sequence_number[4];
546 u_int8_t checksum[2];
547 };
548
549 #define ISIS_COMMON_HEADER_SIZE (sizeof(struct isis_common_header))
550 #define ISIS_IIH_LAN_HEADER_SIZE (sizeof(struct isis_iih_lan_header))
551 #define ISIS_IIH_PTP_HEADER_SIZE (sizeof(struct isis_iih_ptp_header))
552 #define ISIS_LSP_HEADER_SIZE (sizeof(struct isis_lsp_header))
553 #define ISIS_CSNP_HEADER_SIZE (sizeof(struct isis_csnp_header))
554 #define ISIS_PSNP_HEADER_SIZE (sizeof(struct isis_psnp_header))
555
556 void isoclns_print(const u_int8_t *p, u_int length, u_int caplen)
557 {
558 const struct isis_common_header *header;
559
560 header = (const struct isis_common_header *)p;
561
562 if (caplen <= 1) { /* enough bytes on the wire ? */
563 printf("|OSI");
564 return;
565 }
566
567 if (eflag)
568 printf("OSI NLPID %s (0x%02x): ",
569 tok2str(nlpid_values,"Unknown",*p),
570 *p);
571
572 switch (*p) {
573
574 case NLPID_CLNP:
575 if (!clnp_print(p, length))
576 print_unknown_data(p,"\n\t",caplen);
577 break;
578
579 case NLPID_ESIS:
580 esis_print(p, length);
581 return;
582
583 case NLPID_ISIS:
584 if (!isis_print(p, length))
585 print_unknown_data(p,"\n\t",caplen);
586 break;
587
588 case NLPID_NULLNS:
589 (void)printf(", length: %u", length);
590 break;
591
592 case NLPID_Q933:
593 q933_print(p+1, length-1);
594 break;
595
596 case NLPID_IP:
597 ip_print(p+1, length-1);
598 break;
599
600 #ifdef INET6
601 case NLPID_IP6:
602 ip6_print(p+1, length-1);
603 break;
604 #endif
605
606 case NLPID_PPP:
607 ppp_print(p+1, length-1);
608 break;
609
610 default:
611 if (!eflag)
612 printf("OSI NLPID 0x%02x unknown",*p);
613 (void)printf(", length: %u", length);
614 if (caplen > 1)
615 print_unknown_data(p,"\n\t",caplen);
616 break;
617 }
618 }
619
620 #define CLNP_PDU_ER 1
621 #define CLNP_PDU_DT 28
622 #define CLNP_PDU_MD 29
623 #define CLNP_PDU_ERQ 30
624 #define CLNP_PDU_ERP 31
625
626 static struct tok clnp_pdu_values[] = {
627 { CLNP_PDU_ER, "Error Report"},
628 { CLNP_PDU_MD, "MD"},
629 { CLNP_PDU_DT, "Data"},
630 { CLNP_PDU_ERQ, "Echo Request"},
631 { CLNP_PDU_ERP, "Echo Response"},
632 { 0, NULL }
633 };
634
635 struct clnp_header_t {
636 u_int8_t nlpid;
637 u_int8_t length_indicator;
638 u_int8_t version;
639 u_int8_t lifetime; /* units of 500ms */
640 u_int8_t type;
641 u_int8_t segment_length[2];
642 u_int8_t cksum[2];
643 };
644
645 struct clnp_segment_header_t {
646 u_int8_t data_unit_id[2];
647 u_int8_t segment_offset[2];
648 u_int8_t total_length[2];
649 };
650
651 /*
652 * clnp_print
653 * Decode CLNP packets. Return 0 on error.
654 */
655
656 static int clnp_print (const u_int8_t *pptr, u_int length)
657 {
658 const u_int8_t *optr,*source_address,*dest_address;
659 u_int li,source_address_length,dest_address_length, clnp_pdu_type, clnp_flags;
660 const struct clnp_header_t *clnp_header;
661 const struct clnp_segment_header_t *clnp_segment_header;
662 u_int8_t rfd_error_major,rfd_error_minor;
663
664 clnp_header = (const struct clnp_header_t *) pptr;
665 TCHECK(*clnp_header);
666
667 li = clnp_header->length_indicator;
668 optr = pptr;
669
670 if (!eflag)
671 printf("CLNP");
672
673 /*
674 * Sanity checking of the header.
675 */
676
677 if (clnp_header->version != CLNP_VERSION) {
678 printf("version %d packet not supported", clnp_header->version);
679 return (0);
680 }
681
682 /* FIXME further header sanity checking */
683
684 clnp_pdu_type = clnp_header->type & CLNP_PDU_TYPE_MASK;
685 clnp_flags = clnp_header->type & CLNP_FLAG_MASK;
686
687 pptr += sizeof(struct clnp_header_t);
688 li -= sizeof(struct clnp_header_t);
689 dest_address_length = *pptr;
690 dest_address = pptr + 1;
691
692 pptr += (1 + dest_address_length);
693 li -= (1 + dest_address_length);
694 source_address_length = *pptr;
695 source_address = pptr +1;
696
697 pptr += (1 + source_address_length);
698 li -= (1 + source_address_length);
699
700 if (vflag < 1) {
701 printf("%s%s > %s, %s, length %u",
702 eflag ? "" : ", ",
703 isonsap_string(source_address, source_address_length),
704 isonsap_string(dest_address, dest_address_length),
705 tok2str(clnp_pdu_values,"unknown (%u)",clnp_pdu_type),
706 length);
707 return (1);
708 }
709 printf("%slength %u",eflag ? "" : ", ",length);
710
711 printf("\n\t%s PDU, hlen: %u, v: %u, lifetime: %u.%us, Segment PDU length: %u, checksum: 0x%04x ",
712 tok2str(clnp_pdu_values, "unknown (%u)",clnp_pdu_type),
713 clnp_header->length_indicator,
714 clnp_header->version,
715 clnp_header->lifetime/2,
716 (clnp_header->lifetime%2)*5,
717 EXTRACT_16BITS(clnp_header->segment_length),
718 EXTRACT_16BITS(clnp_header->cksum));
719
720 /* do not attempt to verify the checksum if it is zero */
721 if (EXTRACT_16BITS(clnp_header->cksum) == 0)
722 printf("(unverified)");
723 else printf("(%s)", osi_cksum(optr, clnp_header->length_indicator) ? "incorrect" : "correct");
724
725 printf("\n\tFlags [%s]",
726 bittok2str(clnp_flag_values,"none",clnp_flags));
727
728 printf("\n\tsource address (length %u): %s\n\tdest address (length %u): %s",
729 source_address_length,
730 isonsap_string(source_address, source_address_length),
731 dest_address_length,
732 isonsap_string(dest_address,dest_address_length));
733
734 if (clnp_flags & CLNP_SEGMENT_PART) {
735 clnp_segment_header = (const struct clnp_segment_header_t *) pptr;
736 printf("\n\tData Unit ID: 0x%04x, Segment Offset: %u, Total PDU Length: %u",
737 EXTRACT_16BITS(clnp_segment_header->data_unit_id),
738 EXTRACT_16BITS(clnp_segment_header->segment_offset),
739 EXTRACT_16BITS(clnp_segment_header->total_length));
740 pptr+=sizeof(const struct clnp_segment_header_t);
741 li-=sizeof(const struct clnp_segment_header_t);
742 }
743
744 /* now walk the options */
745 while (li >= 2) {
746 u_int op, opli;
747 const u_int8_t *tptr;
748
749 if (snapend - pptr < 2)
750 return (0);
751 if (li < 2) {
752 printf(", bad opts/li");
753 return (0);
754 }
755 op = *pptr++;
756 opli = *pptr++;
757 li -= 2;
758 if (opli > li) {
759 printf(", opt (%d) too long", op);
760 return (0);
761 }
762 li -= opli;
763 tptr = pptr;
764
765 if (snapend < pptr)
766 return(0);
767
768 printf("\n\t %s Option #%u, length %u, value: ",
769 tok2str(clnp_option_values,"Unknown",op),
770 op,
771 opli);
772
773 switch (op) {
774
775 case CLNP_OPTION_PRIORITY:
776 printf("%u", *tptr);
777 break;
778
779 case CLNP_OPTION_DISCARD_REASON:
780 rfd_error_major = (*tptr&0xf0) >> 4;
781 rfd_error_minor = *tptr&0x0f;
782 printf("\n\t Class: %s Error (0x%01x), %s (0x%01x)",
783 tok2str(clnp_option_rfd_class_values,"Unknown",rfd_error_major),
784 rfd_error_major,
785 tok2str(clnp_option_rfd_error_class[rfd_error_major],"Unknown",rfd_error_minor),
786 rfd_error_minor);
787 break;
788
789 /*
790 * FIXME those are the defined Options that lack a decoder
791 * you are welcome to contribute code ;-)
792 */
793
794 default:
795 print_unknown_data(tptr,"\n\t ",opli);
796 break;
797 }
798 if (vflag > 1)
799 print_unknown_data(pptr,"\n\t ",opli);
800 pptr += opli;
801 }
802
803 switch (clnp_pdu_type) {
804
805 case CLNP_PDU_ER: /* fall through */
806 case CLNP_PDU_ERP:
807 if (*(pptr) == NLPID_CLNP) {
808 printf("\n\t-----original packet-----\n\t");
809 /* FIXME recursion protection */
810 clnp_print(pptr, length-clnp_header->length_indicator);
811 break;
812 }
813
814 case CLNP_PDU_DT:
815 case CLNP_PDU_MD:
816 case CLNP_PDU_ERQ:
817
818 default:
819 /* dump the PDU specific data */
820 printf("\n\t undecoded non-header data, length %u",length-clnp_header->length_indicator);
821 print_unknown_data(pptr,"\n\t ",length-(pptr-optr));
822
823 }
824
825 return (1);
826
827 trunc:
828 fputs("[|clnp]", stdout);
829 return (1);
830
831 }
832
833
834 #define ESIS_PDU_REDIRECT 6
835 #define ESIS_PDU_ESH 2
836 #define ESIS_PDU_ISH 4
837
838 static struct tok esis_pdu_values[] = {
839 { ESIS_PDU_REDIRECT, "redirect"},
840 { ESIS_PDU_ESH, "ESH"},
841 { ESIS_PDU_ISH, "ISH"},
842 { 0, NULL }
843 };
844
845 struct esis_header_t {
846 u_int8_t nlpid;
847 u_int8_t length_indicator;
848 u_int8_t version;
849 u_int8_t reserved;
850 u_int8_t type;
851 u_int8_t holdtime[2];
852 u_int8_t cksum[2];
853 };
854
855 static void
856 esis_print(const u_int8_t *pptr, u_int length)
857 {
858 const u_int8_t *optr;
859 u_int li,esis_pdu_type,source_address_length, source_address_number;
860 const struct esis_header_t *esis_header;
861
862 if (!eflag)
863 printf("ES-IS");
864
865 if (length <= 2) {
866 if (qflag)
867 printf("bad pkt!");
868 else
869 printf("no header at all!");
870 return;
871 }
872
873 esis_header = (const struct esis_header_t *) pptr;
874 li = esis_header->length_indicator;
875 optr = pptr;
876
877 /*
878 * Sanity checking of the header.
879 */
880
881 if (esis_header->nlpid != NLPID_ESIS) {
882 printf(" nlpid 0x%02x packet not supported", esis_header->nlpid);
883 return;
884 }
885
886 if (esis_header->version != ESIS_VERSION) {
887 printf(" version %d packet not supported", esis_header->version);
888 return;
889 }
890
891 if (li > length) {
892 printf(" length indicator(%d) > PDU size (%d)!", li, length);
893 return;
894 }
895
896 if (li < sizeof(struct esis_header_t) + 2) {
897 printf(" length indicator < min PDU size %d:", li);
898 while (--length != 0)
899 printf("%02X", *pptr++);
900 return;
901 }
902
903 esis_pdu_type = esis_header->type & ESIS_PDU_TYPE_MASK;
904
905 if (vflag < 1) {
906 printf("%s%s, length %u",
907 eflag ? "" : ", ",
908 tok2str(esis_pdu_values,"unknown type (%u)",esis_pdu_type),
909 length);
910 return;
911 } else
912 printf("%slength %u\n\t%s (%u)",
913 eflag ? "" : ", ",
914 length,
915 tok2str(esis_pdu_values,"unknown type: %u", esis_pdu_type),
916 esis_pdu_type);
917
918 printf(", v: %u%s", esis_header->version, esis_header->version == ESIS_VERSION ? "" : "unsupported" );
919 printf(", checksum: 0x%04x ", EXTRACT_16BITS(esis_header->cksum));
920 /* do not attempt to verify the checksum if it is zero */
921 if (EXTRACT_16BITS(esis_header->cksum) == 0)
922 printf("(unverified)");
923 else printf("(%s)", osi_cksum(pptr, li) ? "incorrect" : "correct");
924
925 printf(", holding time: %us, length indicator: %u",EXTRACT_16BITS(esis_header->holdtime),li);
926
927 if (vflag > 1)
928 print_unknown_data(optr,"\n\t",sizeof(struct esis_header_t));
929
930 pptr += sizeof(struct esis_header_t);
931 li -= sizeof(struct esis_header_t);
932
933 switch (esis_pdu_type) {
934 case ESIS_PDU_REDIRECT: {
935 const u_int8_t *dst, *snpa, *tptr;
936
937 dst = pptr; pptr += *pptr + 1;
938 if (pptr > snapend)
939 return;
940 printf("\n\t %s", isonsap_string(dst+1,*dst));
941 snpa = pptr; pptr += *pptr + 1;
942 tptr = pptr; pptr += *pptr + 1;
943 if (pptr > snapend)
944 return;
945
946 if (tptr[0] == 0)
947 printf("\n\t %s", etheraddr_string(&snpa[1]));
948 else
949 printf("\n\t %s", isonsap_string(tptr+1,*tptr));
950 break;
951 }
952
953 case ESIS_PDU_ESH:
954 source_address_number = *pptr;
955 pptr++;
956 li--;
957
958 printf("\n\t Number of Source Addresses: %u", source_address_number);
959
960 while (source_address_number > 0) {
961 source_address_length = *pptr;
962 printf("\n\t NET (length: %u): %s",
963 source_address_length,
964 isonsap_string(pptr+1,source_address_length));
965
966 pptr += source_address_length+1;
967 li -= source_address_length+1;
968 source_address_number--;
969 }
970
971 break;
972
973 case ESIS_PDU_ISH: {
974 source_address_length = *pptr;
975 printf("\n\t NET (length: %u): %s", source_address_length, isonsap_string(pptr+1, source_address_length));
976 pptr += source_address_length+1;
977 li -= source_address_length +1;
978 break;
979 }
980
981 default:
982 if (vflag <= 1) {
983 if (pptr < snapend)
984 print_unknown_data(pptr,"\n\t ",snapend-pptr);
985 }
986 return;
987 }
988
989 /* now walk the options */
990 while (li >= 2) {
991 u_int op, opli;
992 const u_int8_t *tptr;
993
994 if (snapend - pptr < 2)
995 return;
996 if (li < 2) {
997 printf(", bad opts/li");
998 return;
999 }
1000 op = *pptr++;
1001 opli = *pptr++;
1002 li -= 2;
1003 if (opli > li) {
1004 printf(", opt (%d) too long", op);
1005 return;
1006 }
1007 li -= opli;
1008 tptr = pptr;
1009
1010 if (snapend < pptr)
1011 return;
1012
1013 printf("\n\t %s Option #%u, length %u, value: ",
1014 tok2str(esis_option_values,"Unknown",op),
1015 op,
1016 opli);
1017
1018 switch (op) {
1019
1020 case ESIS_OPTION_ES_CONF_TIME:
1021 printf("%us", EXTRACT_16BITS(tptr));
1022 break;
1023
1024
1025 case ESIS_OPTION_PROTOCOLS:
1026 while (opli>0) {
1027 printf("%s (0x%02x)",
1028 tok2str(nlpid_values,
1029 "unknown",
1030 *tptr),
1031 *tptr);
1032 if (opli>1) /* further NPLIDs ? - put comma */
1033 printf(", ");
1034 tptr++;
1035 opli--;
1036 }
1037 break;
1038
1039 /*
1040 * FIXME those are the defined Options that lack a decoder
1041 * you are welcome to contribute code ;-)
1042 */
1043
1044 case ESIS_OPTION_QOS_MAINTENANCE:
1045 case ESIS_OPTION_SECURITY:
1046 case ESIS_OPTION_PRIORITY:
1047 case ESIS_OPTION_ADDRESS_MASK:
1048 case ESIS_OPTION_SNPA_MASK:
1049
1050 default:
1051 print_unknown_data(tptr,"\n\t ",opli);
1052 break;
1053 }
1054 if (vflag > 1)
1055 print_unknown_data(pptr,"\n\t ",opli);
1056 pptr += opli;
1057 }
1058 }
1059
1060 /* shared routine for printing system, node and lsp-ids */
1061 static char *
1062 isis_print_id(const u_int8_t *cp, int id_len)
1063 {
1064 int i;
1065 static char id[sizeof("xxxx.xxxx.xxxx.yy-zz")];
1066 char *pos = id;
1067
1068 for (i = 1; i <= SYSTEM_ID_LEN; i++) {
1069 snprintf(pos, sizeof(id) - (pos - id), "%02x", *cp++);
1070 pos += strlen(pos);
1071 if (i == 2 || i == 4)
1072 *pos++ = '.';
1073 }
1074 if (id_len >= NODE_ID_LEN) {
1075 snprintf(pos, sizeof(id) - (pos - id), ".%02x", *cp++);
1076 pos += strlen(pos);
1077 }
1078 if (id_len == LSP_ID_LEN)
1079 snprintf(pos, sizeof(id) - (pos - id), "-%02x", *cp);
1080 return (id);
1081 }
1082
1083 /* print the 4-byte metric block which is common found in the old-style TLVs */
1084 static int
1085 isis_print_metric_block (const struct isis_metric_block *isis_metric_block)
1086 {
1087 printf(", Default Metric: %d, %s",
1088 ISIS_LSP_TLV_METRIC_VALUE(isis_metric_block->metric_default),
1089 ISIS_LSP_TLV_METRIC_IE(isis_metric_block->metric_default) ? "External" : "Internal");
1090 if (!ISIS_LSP_TLV_METRIC_SUPPORTED(isis_metric_block->metric_delay))
1091 printf("\n\t\t Delay Metric: %d, %s",
1092 ISIS_LSP_TLV_METRIC_VALUE(isis_metric_block->metric_delay),
1093 ISIS_LSP_TLV_METRIC_IE(isis_metric_block->metric_delay) ? "External" : "Internal");
1094 if (!ISIS_LSP_TLV_METRIC_SUPPORTED(isis_metric_block->metric_expense))
1095 printf("\n\t\t Expense Metric: %d, %s",
1096 ISIS_LSP_TLV_METRIC_VALUE(isis_metric_block->metric_expense),
1097 ISIS_LSP_TLV_METRIC_IE(isis_metric_block->metric_expense) ? "External" : "Internal");
1098 if (!ISIS_LSP_TLV_METRIC_SUPPORTED(isis_metric_block->metric_error))
1099 printf("\n\t\t Error Metric: %d, %s",
1100 ISIS_LSP_TLV_METRIC_VALUE(isis_metric_block->metric_error),
1101 ISIS_LSP_TLV_METRIC_IE(isis_metric_block->metric_error) ? "External" : "Internal");
1102
1103 return(1); /* everything is ok */
1104 }
1105
1106 static int
1107 isis_print_tlv_ip_reach (const u_int8_t *cp, const char *ident, int length)
1108 {
1109 int prefix_len;
1110 const struct isis_tlv_ip_reach *tlv_ip_reach;
1111
1112 tlv_ip_reach = (const struct isis_tlv_ip_reach *)cp;
1113
1114 while (length > 0) {
1115 if ((size_t)length < sizeof(*tlv_ip_reach)) {
1116 printf("short IPv4 Reachability (%d vs %lu)",
1117 length,
1118 (unsigned long)sizeof(*tlv_ip_reach));
1119 return (0);
1120 }
1121
1122 if (!TTEST(*tlv_ip_reach))
1123 return (0);
1124
1125 prefix_len = mask2plen(EXTRACT_32BITS(tlv_ip_reach->mask));
1126
1127 if (prefix_len == -1)
1128 printf("%sIPv4 prefix: %s mask %s",
1129 ident,
1130 ipaddr_string((tlv_ip_reach->prefix)),
1131 ipaddr_string((tlv_ip_reach->mask)));
1132 else
1133 printf("%sIPv4 prefix: %15s/%u",
1134 ident,
1135 ipaddr_string((tlv_ip_reach->prefix)),
1136 prefix_len);
1137
1138 printf(", Distribution: %s, Metric: %u, %s",
1139 ISIS_LSP_TLV_METRIC_UPDOWN(tlv_ip_reach->isis_metric_block.metric_default) ? "down" : "up",
1140 ISIS_LSP_TLV_METRIC_VALUE(tlv_ip_reach->isis_metric_block.metric_default),
1141 ISIS_LSP_TLV_METRIC_IE(tlv_ip_reach->isis_metric_block.metric_default) ? "External" : "Internal");
1142
1143 if (!ISIS_LSP_TLV_METRIC_SUPPORTED(tlv_ip_reach->isis_metric_block.metric_delay))
1144 printf("%s Delay Metric: %u, %s",
1145 ident,
1146 ISIS_LSP_TLV_METRIC_VALUE(tlv_ip_reach->isis_metric_block.metric_delay),
1147 ISIS_LSP_TLV_METRIC_IE(tlv_ip_reach->isis_metric_block.metric_delay) ? "External" : "Internal");
1148
1149 if (!ISIS_LSP_TLV_METRIC_SUPPORTED(tlv_ip_reach->isis_metric_block.metric_expense))
1150 printf("%s Expense Metric: %u, %s",
1151 ident,
1152 ISIS_LSP_TLV_METRIC_VALUE(tlv_ip_reach->isis_metric_block.metric_expense),
1153 ISIS_LSP_TLV_METRIC_IE(tlv_ip_reach->isis_metric_block.metric_expense) ? "External" : "Internal");
1154
1155 if (!ISIS_LSP_TLV_METRIC_SUPPORTED(tlv_ip_reach->isis_metric_block.metric_error))
1156 printf("%s Error Metric: %u, %s",
1157 ident,
1158 ISIS_LSP_TLV_METRIC_VALUE(tlv_ip_reach->isis_metric_block.metric_error),
1159 ISIS_LSP_TLV_METRIC_IE(tlv_ip_reach->isis_metric_block.metric_error) ? "External" : "Internal");
1160
1161 length -= sizeof(struct isis_tlv_ip_reach);
1162 tlv_ip_reach++;
1163 }
1164 return (1);
1165 }
1166
1167 /*
1168 * this is the common IP-REACH subTLV decoder it is called
1169 * from various EXTD-IP REACH TLVs (135,235,236,237)
1170 */
1171
1172 static int
1173 isis_print_ip_reach_subtlv (const u_int8_t *tptr,int subt,int subl,const char *ident) {
1174
1175 /* first lets see if we know the subTLVs name*/
1176 printf("%s%s subTLV #%u, length: %u",
1177 ident,
1178 tok2str(isis_ext_ip_reach_subtlv_values,
1179 "unknown",
1180 subt),
1181 subt,
1182 subl);
1183
1184 if (!TTEST2(*tptr,subl))
1185 goto trunctlv;
1186
1187 switch(subt) {
1188 case ISIS_SUBTLV_EXTD_IP_REACH_MGMT_PREFIX_COLOR: /* fall through */
1189 case ISIS_SUBTLV_EXTD_IP_REACH_ADMIN_TAG32:
1190 while (subl >= 4) {
1191 printf(", 0x%08x (=%u)",
1192 EXTRACT_32BITS(tptr),
1193 EXTRACT_32BITS(tptr));
1194 tptr+=4;
1195 subl-=4;
1196 }
1197 break;
1198 case ISIS_SUBTLV_EXTD_IP_REACH_ADMIN_TAG64:
1199 while (subl >= 8) {
1200 printf(", 0x%08x%08x",
1201 EXTRACT_32BITS(tptr),
1202 EXTRACT_32BITS(tptr+4));
1203 tptr+=8;
1204 subl-=8;
1205 }
1206 break;
1207 default:
1208 if(!print_unknown_data(tptr,"\n\t\t ",
1209 subl))
1210 return(0);
1211 break;
1212 }
1213 return(1);
1214
1215 trunctlv:
1216 printf("%spacket exceeded snapshot",ident);
1217 return(0);
1218 }
1219
1220 /*
1221 * this is the common IS-REACH subTLV decoder it is called
1222 * from isis_print_ext_is_reach()
1223 */
1224
1225 static int
1226 isis_print_is_reach_subtlv (const u_int8_t *tptr,int subt,int subl,const char *ident) {
1227
1228 int priority_level,bandwidth_constraint;
1229 union { /* int to float conversion buffer for several subTLVs */
1230 float f;
1231 u_int32_t i;
1232 } bw;
1233
1234 /* first lets see if we know the subTLVs name*/
1235 printf("%s%s subTLV #%u, length: %u",
1236 ident,
1237 tok2str(isis_ext_is_reach_subtlv_values,
1238 "unknown",
1239 subt),
1240 subt,
1241 subl);
1242
1243 if (!TTEST2(*tptr,subl))
1244 goto trunctlv;
1245
1246 switch(subt) {
1247 case ISIS_SUBTLV_EXT_IS_REACH_ADMIN_GROUP:
1248 case ISIS_SUBTLV_EXT_IS_REACH_LINK_LOCAL_REMOTE_ID:
1249 case ISIS_SUBTLV_EXT_IS_REACH_LINK_REMOTE_ID:
1250 if (subl >= 4) {
1251 printf(", 0x%08x", EXTRACT_32BITS(tptr));
1252 if (subl == 8) /* draft-ietf-isis-gmpls-extensions */
1253 printf(", 0x%08x", EXTRACT_32BITS(tptr+4));
1254 }
1255 break;
1256 case ISIS_SUBTLV_EXT_IS_REACH_IPV4_INTF_ADDR:
1257 case ISIS_SUBTLV_EXT_IS_REACH_IPV4_NEIGHBOR_ADDR:
1258 if (subl >= 4)
1259 printf(", %s", ipaddr_string(tptr));
1260 break;
1261 case ISIS_SUBTLV_EXT_IS_REACH_MAX_LINK_BW :
1262 case ISIS_SUBTLV_EXT_IS_REACH_RESERVABLE_BW:
1263 if (subl >= 4) {
1264 bw.i = EXTRACT_32BITS(tptr);
1265 printf(", %.3f Mbps", bw.f*8/1000000 );
1266 }
1267 break;
1268 case ISIS_SUBTLV_EXT_IS_REACH_UNRESERVED_BW :
1269 if (subl >= 32) {
1270 for (priority_level = 0; priority_level < 8; priority_level++) {
1271 bw.i = EXTRACT_32BITS(tptr);
1272 printf("%s priority level %d: %.3f Mbps",
1273 ident,
1274 priority_level,
1275 bw.f*8/1000000 );
1276 tptr+=4;
1277 }
1278 }
1279 break;
1280 case ISIS_SUBTLV_EXT_IS_REACH_DIFFSERV_TE:
1281 printf("%sBandwidth Constraints Model ID: %s (%u)",
1282 ident,
1283 tok2str(diffserv_te_bc_values, "unknown", *tptr),
1284 *tptr);
1285 tptr++;
1286 /* decode BCs until the subTLV ends */
1287 for (bandwidth_constraint = 0; bandwidth_constraint < (subl-1)/4; bandwidth_constraint++) {
1288 bw.i = EXTRACT_32BITS(tptr);
1289 printf("%s Bandwidth constraint %d: %.3f Mbps",
1290 ident,
1291 bandwidth_constraint,
1292 bw.f*8/1000000 );
1293 tptr+=4;
1294 }
1295 break;
1296 case ISIS_SUBTLV_EXT_IS_REACH_TE_METRIC:
1297 if (subl >= 3)
1298 printf(", %u", EXTRACT_24BITS(tptr));
1299 break;
1300 case ISIS_SUBTLV_EXT_IS_REACH_LINK_PROTECTION_TYPE:
1301 if (subl >= 2) {
1302 printf(", %s, Priority %u",
1303 bittok2str(gmpls_link_prot_values, "none", *tptr),
1304 *(tptr+1));
1305 }
1306 break;
1307 case ISIS_SUBTLV_EXT_IS_REACH_INTF_SW_CAP_DESCR:
1308 if (subl >= 36) {
1309 printf("%s Interface Switching Capability:%s",
1310 ident,
1311 tok2str(gmpls_switch_cap_values, "Unknown", *(tptr)));
1312 printf(", LSP Encoding: %s",
1313 tok2str(gmpls_encoding_values, "Unknown", *(tptr+1)));
1314 tptr+=4;
1315 printf("%s Max LSP Bandwidth:",ident);
1316 for (priority_level = 0; priority_level < 8; priority_level++) {
1317 bw.i = EXTRACT_32BITS(tptr);
1318 printf("%s priority level %d: %.3f Mbps",
1319 ident,
1320 priority_level,
1321 bw.f*8/1000000 );
1322 tptr+=4;
1323 }
1324 subl-=36;
1325 /* there is some optional stuff left to decode but this is as of yet
1326 not specified so just lets hexdump what is left */
1327 if(subl>0){
1328 if(!print_unknown_data(tptr,"\n\t\t ",
1329 subl-36))
1330 return(0);
1331 }
1332 }
1333 break;
1334 default:
1335 if(!print_unknown_data(tptr,"\n\t\t ",
1336 subl))
1337 return(0);
1338 break;
1339 }
1340 return(1);
1341
1342 trunctlv:
1343 printf("%spacket exceeded snapshot",ident);
1344 return(0);
1345 }
1346
1347
1348 /*
1349 * this is the common IS-REACH decoder it is called
1350 * from various EXTD-IS REACH style TLVs (22,24,222)
1351 */
1352
1353 static int
1354 isis_print_ext_is_reach (const u_int8_t *tptr,const char *ident, int tlv_type) {
1355
1356 char ident_buffer[20];
1357 int subtlv_type,subtlv_len,subtlv_sum_len;
1358 int proc_bytes = 0; /* how many bytes did we process ? */
1359
1360 if (!TTEST2(*tptr, NODE_ID_LEN))
1361 return(0);
1362
1363 printf("%sIS Neighbor: %s", ident, isis_print_id(tptr, NODE_ID_LEN));
1364 tptr+=(NODE_ID_LEN);
1365
1366 if (tlv_type != ISIS_TLV_IS_ALIAS_ID) { /* the Alias TLV Metric field is implicit 0 */
1367 if (!TTEST2(*tptr, 3)) /* and is therefore skipped */
1368 return(0);
1369 printf(", Metric: %d",EXTRACT_24BITS(tptr));
1370 tptr+=3;
1371 }
1372
1373 if (!TTEST2(*tptr, 1))
1374 return(0);
1375 subtlv_sum_len=*(tptr++); /* read out subTLV length */
1376 proc_bytes=NODE_ID_LEN+3+1;
1377 printf(", %ssub-TLVs present",subtlv_sum_len ? "" : "no ");
1378 if (subtlv_sum_len) {
1379 printf(" (%u)",subtlv_sum_len);
1380 while (subtlv_sum_len>0) {
1381 if (!TTEST2(*tptr,2))
1382 return(0);
1383 subtlv_type=*(tptr++);
1384 subtlv_len=*(tptr++);
1385 /* prepend the ident string */
1386 snprintf(ident_buffer, sizeof(ident_buffer), "%s ",ident);
1387 if(!isis_print_is_reach_subtlv(tptr,subtlv_type,subtlv_len,ident_buffer))
1388 return(0);
1389 tptr+=subtlv_len;
1390 subtlv_sum_len-=(subtlv_len+2);
1391 proc_bytes+=(subtlv_len+2);
1392 }
1393 }
1394 return(proc_bytes);
1395 }
1396
1397 /*
1398 * this is the common Multi Topology ID decoder
1399 * it is called from various MT-TLVs (222,229,235,237)
1400 */
1401
1402 static int
1403 isis_print_mtid (const u_int8_t *tptr,const char *ident) {
1404
1405 if (!TTEST2(*tptr, 2))
1406 return(0);
1407
1408 printf("%s%s",
1409 ident,
1410 tok2str(isis_mt_values,
1411 "Reserved for IETF Consensus",
1412 ISIS_MASK_MTID(EXTRACT_16BITS(tptr))));
1413
1414 printf(" Topology (0x%03x), Flags: [%s]",
1415 ISIS_MASK_MTID(EXTRACT_16BITS(tptr)),
1416 bittok2str(isis_mt_flag_values, "none",ISIS_MASK_MTFLAGS(EXTRACT_16BITS(tptr))));
1417
1418 return(2);
1419 }
1420
1421 /*
1422 * this is the common extended IP reach decoder
1423 * it is called from TLVs (135,235,236,237)
1424 * we process the TLV and optional subTLVs and return
1425 * the amount of processed bytes
1426 */
1427
1428 static int
1429 isis_print_extd_ip_reach (const u_int8_t *tptr, const char *ident, u_int16_t afi) {
1430
1431 char ident_buffer[20];
1432 u_int8_t prefix[16]; /* shared copy buffer for IPv4 and IPv6 prefixes */
1433 u_int metric, status_byte, bit_length, byte_length, sublen, processed, subtlvtype, subtlvlen;
1434
1435 if (!TTEST2(*tptr, 4))
1436 return (0);
1437 metric = EXTRACT_32BITS(tptr);
1438 processed=4;
1439 tptr+=4;
1440
1441 if (afi == IPV4) {
1442 if (!TTEST2(*tptr, 1)) /* fetch status byte */
1443 return (0);
1444 status_byte=*(tptr++);
1445 bit_length = status_byte&0x3f;
1446 processed++;
1447 #ifdef INET6
1448 } else if (afi == IPV6) {
1449 if (!TTEST2(*tptr, 1)) /* fetch status & prefix_len byte */
1450 return (0);
1451 status_byte=*(tptr++);
1452 bit_length=*(tptr++);
1453 processed+=2;
1454 #endif
1455 } else
1456 return (0); /* somebody is fooling us */
1457
1458 byte_length = (bit_length + 7) / 8; /* prefix has variable length encoding */
1459
1460 if (!TTEST2(*tptr, byte_length))
1461 return (0);
1462 memset(prefix, 0, 16); /* clear the copy buffer */
1463 memcpy(prefix,tptr,byte_length); /* copy as much as is stored in the TLV */
1464 tptr+=byte_length;
1465 processed+=byte_length;
1466
1467 if (afi == IPV4)
1468 printf("%sIPv4 prefix: %15s/%u",
1469 ident,
1470 ipaddr_string(prefix),
1471 bit_length);
1472 #ifdef INET6
1473 if (afi == IPV6)
1474 printf("%sIPv6 prefix: %s/%u",
1475 ident,
1476 ip6addr_string(prefix),
1477 bit_length);
1478 #endif
1479
1480 printf(", Distribution: %s, Metric: %u",
1481 ISIS_MASK_TLV_EXTD_IP_UPDOWN(status_byte) ? "down" : "up",
1482 metric);
1483
1484 if (afi == IPV4 && ISIS_MASK_TLV_EXTD_IP_SUBTLV(status_byte))
1485 printf(", sub-TLVs present");
1486 #ifdef INET6
1487 if (afi == IPV6)
1488 printf(", %s%s",
1489 ISIS_MASK_TLV_EXTD_IP6_IE(status_byte) ? "External" : "Internal",
1490 ISIS_MASK_TLV_EXTD_IP6_SUBTLV(status_byte) ? ", sub-TLVs present" : "");
1491 #endif
1492
1493 if ((ISIS_MASK_TLV_EXTD_IP_SUBTLV(status_byte) && afi == IPV4) ||
1494 (ISIS_MASK_TLV_EXTD_IP6_SUBTLV(status_byte) && afi == IPV6)) {
1495 /* assume that one prefix can hold more
1496 than one subTLV - therefore the first byte must reflect
1497 the aggregate bytecount of the subTLVs for this prefix
1498 */
1499 if (!TTEST2(*tptr, 1))
1500 return (0);
1501 sublen=*(tptr++);
1502 processed+=sublen+1;
1503 printf(" (%u)",sublen); /* print out subTLV length */
1504
1505 while (sublen>0) {
1506 if (!TTEST2(*tptr,2))
1507 return (0);
1508 subtlvtype=*(tptr++);
1509 subtlvlen=*(tptr++);
1510 /* prepend the ident string */
1511 snprintf(ident_buffer, sizeof(ident_buffer), "%s ",ident);
1512 if(!isis_print_ip_reach_subtlv(tptr,subtlvtype,subtlvlen,ident_buffer))
1513 return(0);
1514 tptr+=subtlvlen;
1515 sublen-=(subtlvlen+2);
1516 }
1517 }
1518 return (processed);
1519 }
1520
1521 /*
1522 * isis_print
1523 * Decode IS-IS packets. Return 0 on error.
1524 */
1525
1526 static int isis_print (const u_int8_t *p, u_int length)
1527 {
1528 const struct isis_common_header *isis_header;
1529
1530 const struct isis_iih_lan_header *header_iih_lan;
1531 const struct isis_iih_ptp_header *header_iih_ptp;
1532 const struct isis_lsp_header *header_lsp;
1533 const struct isis_csnp_header *header_csnp;
1534 const struct isis_psnp_header *header_psnp;
1535
1536 const struct isis_tlv_lsp *tlv_lsp;
1537 const struct isis_tlv_ptp_adj *tlv_ptp_adj;
1538 const struct isis_tlv_is_reach *tlv_is_reach;
1539 const struct isis_tlv_es_reach *tlv_es_reach;
1540
1541 u_int8_t pdu_type, max_area, id_length, tlv_type, tlv_len, tmp, alen, lan_alen, prefix_len;
1542 u_int8_t ext_is_len, ext_ip_len, mt_len;
1543 const u_int8_t *optr, *pptr, *tptr;
1544 u_short packet_len,pdu_len;
1545 u_int i,vendor_id;
1546
1547 packet_len=length;
1548 optr = p; /* initialize the _o_riginal pointer to the packet start -
1549 need it for parsing the checksum TLV */
1550 isis_header = (const struct isis_common_header *)p;
1551 TCHECK(*isis_header);
1552 pptr = p+(ISIS_COMMON_HEADER_SIZE);
1553 header_iih_lan = (const struct isis_iih_lan_header *)pptr;
1554 header_iih_ptp = (const struct isis_iih_ptp_header *)pptr;
1555 header_lsp = (const struct isis_lsp_header *)pptr;
1556 header_csnp = (const struct isis_csnp_header *)pptr;
1557 header_psnp = (const struct isis_psnp_header *)pptr;
1558
1559 if (!eflag)
1560 printf("IS-IS");
1561
1562 /*
1563 * Sanity checking of the header.
1564 */
1565
1566 if (isis_header->version != ISIS_VERSION) {
1567 printf("version %d packet not supported", isis_header->version);
1568 return (0);
1569 }
1570
1571 if ((isis_header->id_length != SYSTEM_ID_LEN) && (isis_header->id_length != 0)) {
1572 printf("system ID length of %d is not supported",
1573 isis_header->id_length);
1574 return (0);
1575 }
1576
1577 if (isis_header->pdu_version != ISIS_VERSION) {
1578 printf("version %d packet not supported", isis_header->pdu_version);
1579 return (0);
1580 }
1581
1582 max_area = isis_header->max_area;
1583 switch(max_area) {
1584 case 0:
1585 max_area = 3; /* silly shit */
1586 break;
1587 case 255:
1588 printf("bad packet -- 255 areas");
1589 return (0);
1590 default:
1591 break;
1592 }
1593
1594 id_length = isis_header->id_length;
1595 switch(id_length) {
1596 case 0:
1597 id_length = 6; /* silly shit again */
1598 break;
1599 case 1: /* 1-8 are valid sys-ID lenghts */
1600 case 2:
1601 case 3:
1602 case 4:
1603 case 5:
1604 case 6:
1605 case 7:
1606 case 8:
1607 break;
1608 case 255:
1609 id_length = 0; /* entirely useless */
1610 break;
1611 default:
1612 break;
1613 }
1614
1615 /* toss any non 6-byte sys-ID len PDUs */
1616 if (id_length != 6 ) {
1617 printf("bad packet -- illegal sys-ID length (%u)", id_length);
1618 return (0);
1619 }
1620
1621 pdu_type=isis_header->pdu_type;
1622
1623 /* in non-verbose mode print the basic PDU Type plus PDU specific brief information*/
1624 if (vflag < 1) {
1625 printf("%s%s",
1626 eflag ? "" : ", ",
1627 tok2str(isis_pdu_values,"unknown PDU-Type %u",pdu_type));
1628
1629 switch (pdu_type) {
1630
1631 case ISIS_PDU_L1_LAN_IIH:
1632 case ISIS_PDU_L2_LAN_IIH:
1633 printf(", src-id %s",
1634 isis_print_id(header_iih_lan->source_id,SYSTEM_ID_LEN));
1635 printf(", lan-id %s, prio %u",
1636 isis_print_id(header_iih_lan->lan_id,NODE_ID_LEN),
1637 header_iih_lan->priority);
1638 break;
1639 case ISIS_PDU_PTP_IIH:
1640 printf(", src-id %s", isis_print_id(header_iih_ptp->source_id,SYSTEM_ID_LEN));
1641 break;
1642 case ISIS_PDU_L1_LSP:
1643 case ISIS_PDU_L2_LSP:
1644 printf(", lsp-id %s, seq 0x%08x, lifetime %5us",
1645 isis_print_id(header_lsp->lsp_id, LSP_ID_LEN),
1646 EXTRACT_32BITS(header_lsp->sequence_number),
1647 EXTRACT_16BITS(header_lsp->remaining_lifetime));
1648 break;
1649 case ISIS_PDU_L1_CSNP:
1650 case ISIS_PDU_L2_CSNP:
1651 printf(", src-id %s", isis_print_id(header_csnp->source_id,NODE_ID_LEN));
1652 break;
1653 case ISIS_PDU_L1_PSNP:
1654 case ISIS_PDU_L2_PSNP:
1655 printf(", src-id %s", isis_print_id(header_psnp->source_id,NODE_ID_LEN));
1656 break;
1657
1658 }
1659 printf(", length %u", length);
1660
1661 return(1);
1662 }
1663
1664 /* ok they seem to want to know everything - lets fully decode it */
1665 printf("%slength %u", eflag ? "" : ", ",length);
1666
1667 printf("\n\t%s, hlen: %u, v: %u, pdu-v: %u, sys-id-len: %u (%u), max-area: %u (%u)",
1668 tok2str(isis_pdu_values,
1669 "unknown, type %u",
1670 pdu_type),
1671 isis_header->fixed_len,
1672 isis_header->version,
1673 isis_header->pdu_version,
1674 id_length,
1675 isis_header->id_length,
1676 max_area,
1677 isis_header->max_area);
1678
1679 if (vflag > 1) {
1680 if(!print_unknown_data(optr,"\n\t",8)) /* provide the _o_riginal pointer */
1681 return(0); /* for optionally debugging the common header */
1682 }
1683
1684 switch (pdu_type) {
1685
1686 case ISIS_PDU_L1_LAN_IIH:
1687 case ISIS_PDU_L2_LAN_IIH:
1688 if (isis_header->fixed_len != (ISIS_COMMON_HEADER_SIZE+ISIS_IIH_LAN_HEADER_SIZE)) {
1689 printf(", bogus fixed header length %u should be %lu",
1690 isis_header->fixed_len, (unsigned long)ISIS_IIH_LAN_HEADER_SIZE);
1691 return (0);
1692 }
1693
1694 pdu_len=EXTRACT_16BITS(header_iih_lan->pdu_len);
1695 if (packet_len>pdu_len) {
1696 packet_len=pdu_len; /* do TLV decoding as long as it makes sense */
1697 length=pdu_len;
1698 }
1699
1700 TCHECK(*header_iih_lan);
1701 printf("\n\t source-id: %s, holding time: %us, Flags: [%s]",
1702 isis_print_id(header_iih_lan->source_id,SYSTEM_ID_LEN),
1703 EXTRACT_16BITS(header_iih_lan->holding_time),
1704 tok2str(isis_iih_circuit_type_values,
1705 "unknown circuit type 0x%02x",
1706 header_iih_lan->circuit_type));
1707
1708 printf("\n\t lan-id: %s, Priority: %u, PDU length: %u",
1709 isis_print_id(header_iih_lan->lan_id, NODE_ID_LEN),
1710 (header_iih_lan->priority) & ISIS_LAN_PRIORITY_MASK,
1711 pdu_len);
1712
1713 if (vflag > 1) {
1714 if(!print_unknown_data(pptr,"\n\t ",ISIS_IIH_LAN_HEADER_SIZE))
1715 return(0);
1716 }
1717
1718 packet_len -= (ISIS_COMMON_HEADER_SIZE+ISIS_IIH_LAN_HEADER_SIZE);
1719 pptr = p + (ISIS_COMMON_HEADER_SIZE+ISIS_IIH_LAN_HEADER_SIZE);
1720 break;
1721
1722 case ISIS_PDU_PTP_IIH:
1723 if (isis_header->fixed_len != (ISIS_COMMON_HEADER_SIZE+ISIS_IIH_PTP_HEADER_SIZE)) {
1724 printf(", bogus fixed header length %u should be %lu",
1725 isis_header->fixed_len, (unsigned long)ISIS_IIH_PTP_HEADER_SIZE);
1726 return (0);
1727 }
1728
1729 pdu_len=EXTRACT_16BITS(header_iih_ptp->pdu_len);
1730 if (packet_len>pdu_len) {
1731 packet_len=pdu_len; /* do TLV decoding as long as it makes sense */
1732 length=pdu_len;
1733 }
1734
1735 TCHECK(*header_iih_ptp);
1736 printf("\n\t source-id: %s, holding time: %us, Flags: [%s]",
1737 isis_print_id(header_iih_ptp->source_id,SYSTEM_ID_LEN),
1738 EXTRACT_16BITS(header_iih_ptp->holding_time),
1739 tok2str(isis_iih_circuit_type_values,
1740 "unknown circuit type 0x%02x",
1741 header_iih_ptp->circuit_type));
1742
1743 printf("\n\t circuit-id: 0x%02x, PDU length: %u",
1744 header_iih_ptp->circuit_id,
1745 pdu_len);
1746
1747 if (vflag > 1) {
1748 if(!print_unknown_data(pptr,"\n\t ",ISIS_IIH_PTP_HEADER_SIZE))
1749 return(0);
1750 }
1751
1752 packet_len -= (ISIS_COMMON_HEADER_SIZE+ISIS_IIH_PTP_HEADER_SIZE);
1753 pptr = p + (ISIS_COMMON_HEADER_SIZE+ISIS_IIH_PTP_HEADER_SIZE);
1754 break;
1755
1756 case ISIS_PDU_L1_LSP:
1757 case ISIS_PDU_L2_LSP:
1758 if (isis_header->fixed_len != (ISIS_COMMON_HEADER_SIZE+ISIS_LSP_HEADER_SIZE)) {
1759 printf(", bogus fixed header length %u should be %lu",
1760 isis_header->fixed_len, (unsigned long)ISIS_LSP_HEADER_SIZE);
1761 return (0);
1762 }
1763
1764 pdu_len=EXTRACT_16BITS(header_lsp->pdu_len);
1765 if (packet_len>pdu_len) {
1766 packet_len=pdu_len; /* do TLV decoding as long as it makes sense */
1767 length=pdu_len;
1768 }
1769
1770 TCHECK(*header_lsp);
1771 printf("\n\t lsp-id: %s, seq: 0x%08x, lifetime: %5us\n\t chksum: 0x%04x",
1772 isis_print_id(header_lsp->lsp_id, LSP_ID_LEN),
1773 EXTRACT_32BITS(header_lsp->sequence_number),
1774 EXTRACT_16BITS(header_lsp->remaining_lifetime),
1775 EXTRACT_16BITS(header_lsp->checksum));
1776
1777 /* if this is a purge do not attempt to verify the checksum */
1778 if ( EXTRACT_16BITS(header_lsp->remaining_lifetime) == 0 &&
1779 EXTRACT_16BITS(header_lsp->checksum) == 0)
1780 printf(" (purged)");
1781 else
1782 /* verify the checksum -
1783 * checking starts at the lsp-id field at byte position [12]
1784 * hence the length needs to be reduced by 12 bytes */
1785 printf(" (%s)", (osi_cksum((u_int8_t *)header_lsp->lsp_id, length-12)) ? "incorrect" : "correct");
1786
1787 printf(", PDU length: %u, Flags: [ %s",
1788 pdu_len,
1789 ISIS_MASK_LSP_OL_BIT(header_lsp->typeblock) ? "Overload bit set, " : "");
1790
1791 if (ISIS_MASK_LSP_ATT_BITS(header_lsp->typeblock)) {
1792 printf("%s", ISIS_MASK_LSP_ATT_DEFAULT_BIT(header_lsp->typeblock) ? "default " : "");
1793 printf("%s", ISIS_MASK_LSP_ATT_DELAY_BIT(header_lsp->typeblock) ? "delay " : "");
1794 printf("%s", ISIS_MASK_LSP_ATT_EXPENSE_BIT(header_lsp->typeblock) ? "expense " : "");
1795 printf("%s", ISIS_MASK_LSP_ATT_ERROR_BIT(header_lsp->typeblock) ? "error " : "");
1796 printf("ATT bit set, ");
1797 }
1798 printf("%s", ISIS_MASK_LSP_PARTITION_BIT(header_lsp->typeblock) ? "P bit set, " : "");
1799 printf("%s ]", tok2str(isis_lsp_istype_values,"Unknown(0x%x)",ISIS_MASK_LSP_ISTYPE_BITS(header_lsp->typeblock)));
1800
1801 if (vflag > 1) {
1802 if(!print_unknown_data(pptr,"\n\t ",ISIS_LSP_HEADER_SIZE))
1803 return(0);
1804 }
1805
1806 packet_len -= (ISIS_COMMON_HEADER_SIZE+ISIS_LSP_HEADER_SIZE);
1807 pptr = p + (ISIS_COMMON_HEADER_SIZE+ISIS_LSP_HEADER_SIZE);
1808 break;
1809
1810 case ISIS_PDU_L1_CSNP:
1811 case ISIS_PDU_L2_CSNP:
1812 if (isis_header->fixed_len != (ISIS_COMMON_HEADER_SIZE+ISIS_CSNP_HEADER_SIZE)) {
1813 printf(", bogus fixed header length %u should be %lu",
1814 isis_header->fixed_len, (unsigned long)ISIS_CSNP_HEADER_SIZE);
1815 return (0);
1816 }
1817
1818 pdu_len=EXTRACT_16BITS(header_csnp->pdu_len);
1819 if (packet_len>pdu_len) {
1820 packet_len=pdu_len; /* do TLV decoding as long as it makes sense */
1821 length=pdu_len;
1822 }
1823
1824 TCHECK(*header_csnp);
1825 printf("\n\t source-id: %s, PDU length: %u",
1826 isis_print_id(header_csnp->source_id, NODE_ID_LEN),
1827 pdu_len);
1828 printf("\n\t start lsp-id: %s",
1829 isis_print_id(header_csnp->start_lsp_id, LSP_ID_LEN));
1830 printf("\n\t end lsp-id: %s",
1831 isis_print_id(header_csnp->end_lsp_id, LSP_ID_LEN));
1832
1833 if (vflag > 1) {
1834 if(!print_unknown_data(pptr,"\n\t ",ISIS_CSNP_HEADER_SIZE))
1835 return(0);
1836 }
1837
1838 packet_len -= (ISIS_COMMON_HEADER_SIZE+ISIS_CSNP_HEADER_SIZE);
1839 pptr = p + (ISIS_COMMON_HEADER_SIZE+ISIS_CSNP_HEADER_SIZE);
1840 break;
1841
1842 case ISIS_PDU_L1_PSNP:
1843 case ISIS_PDU_L2_PSNP:
1844 if (isis_header->fixed_len != (ISIS_COMMON_HEADER_SIZE+ISIS_PSNP_HEADER_SIZE)) {
1845 printf("- bogus fixed header length %u should be %lu",
1846 isis_header->fixed_len, (unsigned long)ISIS_PSNP_HEADER_SIZE);
1847 return (0);
1848 }
1849
1850 pdu_len=EXTRACT_16BITS(header_psnp->pdu_len);
1851 if (packet_len>pdu_len) {
1852 packet_len=pdu_len; /* do TLV decoding as long as it makes sense */
1853 length=pdu_len;
1854 }
1855
1856 TCHECK(*header_psnp);
1857 printf("\n\t source-id: %s, PDU length: %u",
1858 isis_print_id(header_psnp->source_id, NODE_ID_LEN),
1859 pdu_len);
1860
1861 if (vflag > 1) {
1862 if(!print_unknown_data(pptr,"\n\t ",ISIS_PSNP_HEADER_SIZE))
1863 return(0);
1864 }
1865
1866 packet_len -= (ISIS_COMMON_HEADER_SIZE+ISIS_PSNP_HEADER_SIZE);
1867 pptr = p + (ISIS_COMMON_HEADER_SIZE+ISIS_PSNP_HEADER_SIZE);
1868 break;
1869
1870 default:
1871 if(!print_unknown_data(pptr,"\n\t ",length))
1872 return(0);
1873 return (0);
1874 }
1875
1876 /*
1877 * Now print the TLV's.
1878 */
1879
1880 while (packet_len >= 2) {
1881 if (pptr == snapend) {
1882 return (1);
1883 }
1884
1885 if (!TTEST2(*pptr, 2)) {
1886 printf("\n\t\t packet exceeded snapshot (%ld) bytes",
1887 (long)(pptr-snapend));
1888 return (1);
1889 }
1890 tlv_type = *pptr++;
1891 tlv_len = *pptr++;
1892 tmp =tlv_len; /* copy temporary len & pointer to packet data */
1893 tptr = pptr;
1894 packet_len -= 2;
1895 if (tlv_len > packet_len) {
1896 break;
1897 }
1898
1899 /* first lets see if we know the TLVs name*/
1900 printf("\n\t %s TLV #%u, length: %u",
1901 tok2str(isis_tlv_values,
1902 "unknown",
1903 tlv_type),
1904 tlv_type,
1905 tlv_len);
1906
1907 /* now check if we have a decoder otherwise do a hexdump at the end*/
1908 switch (tlv_type) {
1909 case ISIS_TLV_AREA_ADDR:
1910 if (!TTEST2(*tptr, 1))
1911 goto trunctlv;
1912 alen = *tptr++;
1913 while (tmp && alen < tmp) {
1914 printf("\n\t Area address (length: %u): %s",
1915 alen,
1916 isonsap_string(tptr,alen));
1917 tptr += alen;
1918 tmp -= alen + 1;
1919 if (tmp==0) /* if this is the last area address do not attemt a boundary check */
1920 break;
1921 if (!TTEST2(*tptr, 1))
1922 goto trunctlv;
1923 alen = *tptr++;
1924 }
1925 break;
1926 case ISIS_TLV_ISNEIGH:
1927 while (tmp >= ETHER_ADDR_LEN) {
1928 if (!TTEST2(*tptr, ETHER_ADDR_LEN))
1929 goto trunctlv;
1930 printf("\n\t SNPA: %s",isis_print_id(tptr,ETHER_ADDR_LEN));
1931 tmp -= ETHER_ADDR_LEN;
1932 tptr += ETHER_ADDR_LEN;
1933 }
1934 break;
1935
1936 case ISIS_TLV_ISNEIGH_VARLEN:
1937 if (!TTEST2(*tptr, 1))
1938 goto trunctlv;
1939 lan_alen = *tptr++; /* LAN adress length */
1940 tmp --;
1941 printf("\n\t LAN address length %u bytes ",lan_alen);
1942 while (tmp >= lan_alen) {
1943 if (!TTEST2(*tptr, lan_alen))
1944 goto trunctlv;
1945 printf("\n\t\tIS Neighbor: %s",isis_print_id(tptr,lan_alen));
1946 tmp -= lan_alen;
1947 tptr +=lan_alen;
1948 }
1949 break;
1950
1951 case ISIS_TLV_PADDING:
1952 break;
1953
1954 case ISIS_TLV_MT_IS_REACH:
1955 while (tmp >= 2+NODE_ID_LEN+3+1) {
1956 mt_len = isis_print_mtid(tptr, "\n\t ");
1957 if (mt_len == 0) /* did something go wrong ? */
1958 goto trunctlv;
1959 tptr+=mt_len;
1960 tmp-=mt_len;
1961
1962 ext_is_len = isis_print_ext_is_reach(tptr,"\n\t ",tlv_type);
1963 if (ext_is_len == 0) /* did something go wrong ? */
1964 goto trunctlv;
1965
1966 tmp-=ext_is_len;
1967 tptr+=ext_is_len;
1968 }
1969 break;
1970
1971 case ISIS_TLV_IS_ALIAS_ID:
1972 while (tmp >= NODE_ID_LEN+1) { /* is it worth attempting a decode ? */
1973 ext_is_len = isis_print_ext_is_reach(tptr,"\n\t ",tlv_type);
1974 if (ext_is_len == 0) /* did something go wrong ? */
1975 goto trunctlv;
1976 tmp-=ext_is_len;
1977 tptr+=ext_is_len;
1978 }
1979 break;
1980
1981 case ISIS_TLV_EXT_IS_REACH:
1982 while (tmp >= NODE_ID_LEN+3+1) { /* is it worth attempting a decode ? */
1983 ext_is_len = isis_print_ext_is_reach(tptr,"\n\t ",tlv_type);
1984 if (ext_is_len == 0) /* did something go wrong ? */
1985 goto trunctlv;
1986 tmp-=ext_is_len;
1987 tptr+=ext_is_len;
1988 }
1989 break;
1990 case ISIS_TLV_IS_REACH:
1991 if (!TTEST2(*tptr,1)) /* check if there is one byte left to read out the virtual flag */
1992 goto trunctlv;
1993 printf("\n\t %s",
1994 tok2str(isis_is_reach_virtual_values,
1995 "bogus virtual flag 0x%02x",
1996 *tptr++));
1997 tlv_is_reach = (const struct isis_tlv_is_reach *)tptr;
1998 while (tmp >= sizeof(struct isis_tlv_is_reach)) {
1999 if (!TTEST(*tlv_is_reach))
2000 goto trunctlv;
2001 printf("\n\t IS Neighbor: %s",
2002 isis_print_id(tlv_is_reach->neighbor_nodeid, NODE_ID_LEN));
2003 isis_print_metric_block(&tlv_is_reach->isis_metric_block);
2004 tmp -= sizeof(struct isis_tlv_is_reach);
2005 tlv_is_reach++;
2006 }
2007 break;
2008
2009 case ISIS_TLV_ESNEIGH:
2010 tlv_es_reach = (const struct isis_tlv_es_reach *)tptr;
2011 while (tmp >= sizeof(struct isis_tlv_es_reach)) {
2012 if (!TTEST(*tlv_es_reach))
2013 goto trunctlv;
2014 printf("\n\t ES Neighbor: %s",
2015 isis_print_id(tlv_es_reach->neighbor_sysid,SYSTEM_ID_LEN));
2016 isis_print_metric_block(&tlv_es_reach->isis_metric_block);
2017 tmp -= sizeof(struct isis_tlv_es_reach);
2018 tlv_es_reach++;
2019 }
2020 break;
2021
2022 /* those two TLVs share the same format */
2023 case ISIS_TLV_INT_IP_REACH:
2024 case ISIS_TLV_EXT_IP_REACH:
2025 if (!isis_print_tlv_ip_reach(pptr, "\n\t ", tlv_len))
2026 return (1);
2027 break;
2028
2029 case ISIS_TLV_EXTD_IP_REACH:
2030 while (tmp>0) {
2031 ext_ip_len = isis_print_extd_ip_reach(tptr, "\n\t ", IPV4);
2032 if (ext_ip_len == 0) /* did something go wrong ? */
2033 goto trunctlv;
2034 tptr+=ext_ip_len;
2035 tmp-=ext_ip_len;
2036 }
2037 break;
2038
2039 case ISIS_TLV_MT_IP_REACH:
2040 while (tmp>0) {
2041 mt_len = isis_print_mtid(tptr, "\n\t ");
2042 if (mt_len == 0) /* did something go wrong ? */
2043 goto trunctlv;
2044 tptr+=mt_len;
2045 tmp-=mt_len;
2046
2047 ext_ip_len = isis_print_extd_ip_reach(tptr, "\n\t ", IPV4);
2048 if (ext_ip_len == 0) /* did something go wrong ? */
2049 goto trunctlv;
2050 tptr+=ext_ip_len;
2051 tmp-=ext_ip_len;
2052 }
2053 break;
2054
2055 #ifdef INET6
2056 case ISIS_TLV_IP6_REACH:
2057 while (tmp>0) {
2058 ext_ip_len = isis_print_extd_ip_reach(tptr, "\n\t ", IPV6);
2059 if (ext_ip_len == 0) /* did something go wrong ? */
2060 goto trunctlv;
2061 tptr+=ext_ip_len;
2062 tmp-=ext_ip_len;
2063 }
2064 break;
2065
2066 case ISIS_TLV_MT_IP6_REACH:
2067 while (tmp>0) {
2068 mt_len = isis_print_mtid(tptr, "\n\t ");
2069 if (mt_len == 0) /* did something go wrong ? */
2070 goto trunctlv;
2071 tptr+=mt_len;
2072 tmp-=mt_len;
2073
2074 ext_ip_len = isis_print_extd_ip_reach(tptr, "\n\t ", IPV6);
2075 if (ext_ip_len == 0) /* did something go wrong ? */
2076 goto trunctlv;
2077 tptr+=ext_ip_len;
2078 tmp-=ext_ip_len;
2079 }
2080 break;
2081
2082 case ISIS_TLV_IP6ADDR:
2083 while (tmp>0) {
2084 if (!TTEST2(*tptr, 16))
2085 goto trunctlv;
2086
2087 printf("\n\t IPv6 interface address: %s",
2088 ip6addr_string(tptr));
2089
2090 tptr += 16;
2091 tmp -= 16;
2092 }
2093 break;
2094 #endif
2095 case ISIS_TLV_AUTH:
2096 if (!TTEST2(*tptr, 1))
2097 goto trunctlv;
2098
2099 printf("\n\t %s: ",
2100 tok2str(isis_subtlv_auth_values,
2101 "unknown Authentication type 0x%02x",
2102 *tptr));
2103
2104 switch (*tptr) {
2105 case ISIS_SUBTLV_AUTH_SIMPLE:
2106 for(i=1;i<tlv_len;i++) {
2107 if (!TTEST2(*(tptr+i), 1))
2108 goto trunctlv;
2109 printf("%c",*(tptr+i));
2110 }
2111 break;
2112 case ISIS_SUBTLV_AUTH_MD5:
2113 for(i=1;i<tlv_len;i++) {
2114 if (!TTEST2(*(tptr+i), 1))
2115 goto trunctlv;
2116 printf("%02x",*(tptr+i));
2117 }
2118 if (tlv_len != ISIS_SUBTLV_AUTH_MD5_LEN+1)
2119 printf(", (malformed subTLV) ");
2120 break;
2121 case ISIS_SUBTLV_AUTH_PRIVATE:
2122 default:
2123 if(!print_unknown_data(tptr+1,"\n\t\t ",tlv_len-1))
2124 return(0);
2125 break;
2126 }
2127 break;
2128
2129 case ISIS_TLV_PTP_ADJ:
2130 tlv_ptp_adj = (const struct isis_tlv_ptp_adj *)tptr;
2131 if(tmp>=1) {
2132 if (!TTEST2(*tptr, 1))
2133 goto trunctlv;
2134 printf("\n\t Adjacency State: %s (%u)",
2135 tok2str(isis_ptp_adjancey_values, "unknown", *tptr),
2136 *tptr);
2137 tmp--;
2138 }
2139 if(tmp>sizeof(tlv_ptp_adj->extd_local_circuit_id)) {
2140 if (!TTEST2(tlv_ptp_adj->extd_local_circuit_id,
2141 sizeof(tlv_ptp_adj->extd_local_circuit_id)))
2142 goto trunctlv;
2143 printf("\n\t Extended Local circuit-ID: 0x%08x",
2144 EXTRACT_32BITS(tlv_ptp_adj->extd_local_circuit_id));
2145 tmp-=sizeof(tlv_ptp_adj->extd_local_circuit_id);
2146 }
2147 if(tmp>=SYSTEM_ID_LEN) {
2148 if (!TTEST2(tlv_ptp_adj->neighbor_sysid, SYSTEM_ID_LEN))
2149 goto trunctlv;
2150 printf("\n\t Neighbor System-ID: %s",
2151 isis_print_id(tlv_ptp_adj->neighbor_sysid,SYSTEM_ID_LEN));
2152 tmp-=SYSTEM_ID_LEN;
2153 }
2154 if(tmp>=sizeof(tlv_ptp_adj->neighbor_extd_local_circuit_id)) {
2155 if (!TTEST2(tlv_ptp_adj->neighbor_extd_local_circuit_id,
2156 sizeof(tlv_ptp_adj->neighbor_extd_local_circuit_id)))
2157 goto trunctlv;
2158 printf("\n\t Neighbor Extended Local circuit-ID: 0x%08x",
2159 EXTRACT_32BITS(tlv_ptp_adj->neighbor_extd_local_circuit_id));
2160 }
2161 break;
2162
2163 case ISIS_TLV_PROTOCOLS:
2164 printf("\n\t NLPID(s): ");
2165 while (tmp>0) {
2166 if (!TTEST2(*(tptr), 1))
2167 goto trunctlv;
2168 printf("%s (0x%02x)",
2169 tok2str(nlpid_values,
2170 "unknown",
2171 *tptr),
2172 *tptr);
2173 if (tmp>1) /* further NPLIDs ? - put comma */
2174 printf(", ");
2175 tptr++;
2176 tmp--;
2177 }
2178 break;
2179
2180 case ISIS_TLV_TE_ROUTER_ID:
2181 if (!TTEST2(*pptr, 4))
2182 goto trunctlv;
2183 printf("\n\t Traffic Engineering Router ID: %s", ipaddr_string(pptr));
2184 break;
2185
2186 case ISIS_TLV_IPADDR:
2187 while (tmp>0) {
2188 if (!TTEST2(*tptr, 4))
2189 goto trunctlv;
2190 printf("\n\t IPv4 interface address: %s", ipaddr_string(tptr));
2191 tptr += 4;
2192 tmp -= 4;
2193 }
2194 break;
2195
2196 case ISIS_TLV_HOSTNAME:
2197 printf("\n\t Hostname: ");
2198 while (tmp>0) {
2199 if (!TTEST2(*tptr, 1))
2200 goto trunctlv;
2201 printf("%c",*tptr++);
2202 tmp--;
2203 }
2204 break;
2205
2206 case ISIS_TLV_SHARED_RISK_GROUP:
2207 if (!TTEST2(*tptr, NODE_ID_LEN))
2208 goto trunctlv;
2209 printf("\n\t IS Neighbor: %s", isis_print_id(tptr, NODE_ID_LEN));
2210 tptr+=(NODE_ID_LEN);
2211 tmp-=(NODE_ID_LEN);
2212
2213 if (!TTEST2(*tptr, 1))
2214 goto trunctlv;
2215 printf(", Flags: [%s]", ISIS_MASK_TLV_SHARED_RISK_GROUP(*tptr++) ? "numbered" : "unnumbered");
2216 tmp--;
2217
2218 if (!TTEST2(*tptr,4))
2219 goto trunctlv;
2220 printf("\n\t IPv4 interface address: %s", ipaddr_string(tptr));
2221 tptr+=4;
2222 tmp-=4;
2223
2224 if (!TTEST2(*tptr,4))
2225 goto trunctlv;
2226 printf("\n\t IPv4 neighbor address: %s", ipaddr_string(tptr));
2227 tptr+=4;
2228 tmp-=4;
2229
2230 while (tmp>0) {
2231 if (!TTEST2(*tptr, 4))
2232 goto trunctlv;
2233 printf("\n\t Link-ID: 0x%08x", EXTRACT_32BITS(tptr));
2234 tptr+=4;
2235 tmp-=4;
2236 }
2237 break;
2238
2239 case ISIS_TLV_LSP:
2240 tlv_lsp = (const struct isis_tlv_lsp *)tptr;
2241 while(tmp>0) {
2242 if (!TTEST((tlv_lsp->lsp_id)[LSP_ID_LEN-1]))
2243 goto trunctlv;
2244 printf("\n\t lsp-id: %s",
2245 isis_print_id(tlv_lsp->lsp_id, LSP_ID_LEN));
2246 if (!TTEST2(tlv_lsp->sequence_number, 4))
2247 goto trunctlv;
2248 printf(", seq: 0x%08x",EXTRACT_32BITS(tlv_lsp->sequence_number));
2249 if (!TTEST2(tlv_lsp->remaining_lifetime, 2))
2250 goto trunctlv;
2251 printf(", lifetime: %5ds",EXTRACT_16BITS(tlv_lsp->remaining_lifetime));
2252 if (!TTEST2(tlv_lsp->checksum, 2))
2253 goto trunctlv;
2254 printf(", chksum: 0x%04x",EXTRACT_16BITS(tlv_lsp->checksum));
2255 tmp-=sizeof(struct isis_tlv_lsp);
2256 tlv_lsp++;
2257 }
2258 break;
2259
2260 case ISIS_TLV_CHECKSUM:
2261 if (!TTEST2(*tptr, 2))
2262 goto trunctlv;
2263 printf("\n\t checksum: 0x%04x ", EXTRACT_16BITS(tptr));
2264 /* do not attempt to verify the checksum if it is zero
2265 * most likely a HMAC-MD5 TLV is also present and
2266 * to avoid conflicts the checksum TLV is zeroed.
2267 * see rfc3358 for details
2268 */
2269 if (EXTRACT_16BITS(tptr) == 0)
2270 printf("(unverified)");
2271 else printf("(%s)", osi_cksum(optr, length) ? "incorrect" : "correct");
2272 break;
2273
2274 case ISIS_TLV_MT_SUPPORTED:
2275 while (tmp>1) {
2276 /* length can only be a multiple of 2, otherwise there is
2277 something broken -> so decode down until length is 1 */
2278 if (tmp!=1) {
2279 mt_len = isis_print_mtid(tptr, "\n\t ");
2280 if (mt_len == 0) /* did something go wrong ? */
2281 goto trunctlv;
2282 tptr+=mt_len;
2283 tmp-=mt_len;
2284 } else {
2285 printf("\n\t malformed MT-ID");
2286 break;
2287 }
2288 }
2289 break;
2290
2291 case ISIS_TLV_RESTART_SIGNALING:
2292 if (!TTEST2(*tptr, 3))
2293 goto trunctlv;
2294 printf("\n\t Flags [%s], Remaining holding time %us",
2295 bittok2str(isis_restart_flag_values, "none", *tptr),
2296 EXTRACT_16BITS(tptr+1));
2297 tptr+=3;
2298 break;
2299
2300 case ISIS_TLV_IDRP_INFO:
2301 if (!TTEST2(*tptr, 1))
2302 goto trunctlv;
2303 printf("\n\t Inter-Domain Information Type: %s",
2304 tok2str(isis_subtlv_idrp_values,
2305 "Unknown (0x%02x)",
2306 *tptr));
2307 switch (*tptr++) {
2308 case ISIS_SUBTLV_IDRP_ASN:
2309 if (!TTEST2(*tptr, 2)) /* fetch AS number */
2310 goto trunctlv;
2311 printf("AS Number: %u",EXTRACT_16BITS(tptr));
2312 break;
2313 case ISIS_SUBTLV_IDRP_LOCAL:
2314 case ISIS_SUBTLV_IDRP_RES:
2315 default:
2316 if(!print_unknown_data(tptr,"\n\t ",tlv_len-1))
2317 return(0);
2318 break;
2319 }
2320 break;
2321
2322 case ISIS_TLV_LSP_BUFFERSIZE:
2323 if (!TTEST2(*tptr, 2))
2324 goto trunctlv;
2325 printf("\n\t LSP Buffersize: %u",EXTRACT_16BITS(tptr));
2326 break;
2327
2328 case ISIS_TLV_PART_DIS:
2329 while (tmp >= SYSTEM_ID_LEN) {
2330 if (!TTEST2(*tptr, SYSTEM_ID_LEN))
2331 goto trunctlv;
2332 printf("\n\t %s",isis_print_id(tptr,SYSTEM_ID_LEN));
2333 tptr+=SYSTEM_ID_LEN;
2334 tmp-=SYSTEM_ID_LEN;
2335 }
2336 break;
2337
2338 case ISIS_TLV_PREFIX_NEIGH:
2339 if (!TTEST2(*tptr, sizeof(struct isis_metric_block)))
2340 goto trunctlv;
2341 printf("\n\t Metric Block");
2342 isis_print_metric_block((const struct isis_metric_block *)tptr);
2343 tptr+=sizeof(struct isis_metric_block);
2344 tmp-=sizeof(struct isis_metric_block);
2345
2346 while(tmp>0) {
2347 if (!TTEST2(*tptr, 1))
2348 goto trunctlv;
2349 prefix_len=*tptr++; /* read out prefix length in semioctets*/
2350 tmp--;
2351 if (!TTEST2(*tptr, prefix_len/2))
2352 goto trunctlv;
2353 printf("\n\t\tAddress: %s/%u",
2354 isonsap_string(tptr,prefix_len/2),
2355 prefix_len*4);
2356 tptr+=prefix_len/2;
2357 tmp-=prefix_len/2;
2358 }
2359 break;
2360
2361 case ISIS_TLV_IIH_SEQNR:
2362 if (!TTEST2(*tptr, 4)) /* check if four bytes are on the wire */
2363 goto trunctlv;
2364 printf("\n\t Sequence number: %u", EXTRACT_32BITS(tptr) );
2365 break;
2366
2367 case ISIS_TLV_VENDOR_PRIVATE:
2368 if (!TTEST2(*tptr, 3)) /* check if enough byte for a full oui */
2369 goto trunctlv;
2370 vendor_id = EXTRACT_24BITS(tptr);
2371 printf("\n\t Vendor: %s (%u)",
2372 tok2str(oui_values,"Unknown",vendor_id),
2373 vendor_id);
2374 tptr+=3;
2375 tmp-=3;
2376 if (tmp > 0) /* hexdump the rest */
2377 if(!print_unknown_data(tptr,"\n\t\t",tmp))
2378 return(0);
2379 break;
2380 /*
2381 * FIXME those are the defined TLVs that lack a decoder
2382 * you are welcome to contribute code ;-)
2383 */
2384
2385 case ISIS_TLV_DECNET_PHASE4:
2386 case ISIS_TLV_LUCENT_PRIVATE:
2387 case ISIS_TLV_IPAUTH:
2388 case ISIS_TLV_NORTEL_PRIVATE1:
2389 case ISIS_TLV_NORTEL_PRIVATE2:
2390
2391 default:
2392 if (vflag <= 1) {
2393 if(!print_unknown_data(pptr,"\n\t\t",tlv_len))
2394 return(0);
2395 }
2396 break;
2397 }
2398 /* do we want to see an additionally hexdump ? */
2399 if (vflag> 1) {
2400 if(!print_unknown_data(pptr,"\n\t ",tlv_len))
2401 return(0);
2402 }
2403
2404 pptr += tlv_len;
2405 packet_len -= tlv_len;
2406 }
2407
2408 if (packet_len != 0) {
2409 printf("\n\t %u straggler bytes", packet_len);
2410 }
2411 return (1);
2412
2413 trunc:
2414 fputs("[|isis]", stdout);
2415 return (1);
2416
2417 trunctlv:
2418 printf("\n\t\t packet exceeded snapshot");
2419 return(1);
2420 }
2421
2422 /*
2423 * Verify the checksum. See 8473-1, Appendix C, section C.4.
2424 */
2425
2426 static int
2427 osi_cksum(const u_int8_t *tptr, u_int len)
2428 {
2429 int32_t c0 = 0, c1 = 0;
2430
2431 while ((int)--len >= 0) {
2432 c0 += *tptr++;
2433 c0 %= 255;
2434 c1 += c0;
2435 c1 %= 255;
2436 }
2437 return (c0 | c1);
2438 }