2 * Copyright (c) 1992, 1993, 1994, 1995, 1996
3 * The Regents of the University of California. All rights reserved.
5 * Redistribution and use in source and binary forms, with or without
6 * modification, are permitted provided that: (1) source code distributions
7 * retain the above copyright notice and this paragraph in its entirety, (2)
8 * distributions including binary code include the above copyright notice and
9 * this paragraph in its entirety in the documentation or other materials
10 * provided with the distribution, and (3) all advertising materials mentioning
11 * features or use of this software display the following acknowledgement:
12 * ``This product includes software developed by the University of California,
13 * Lawrence Berkeley Laboratory and its contributors.'' Neither the name of
14 * the University nor the names of its contributors may be used to endorse
15 * or promote products derived from this software without specific prior
17 * THIS SOFTWARE IS PROVIDED ``AS IS'' AND WITHOUT ANY EXPRESS OR IMPLIED
18 * WARRANTIES, INCLUDING, WITHOUT LIMITATION, THE IMPLIED WARRANTIES OF
19 * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE.
21 * Original code by Matt Thomas, Digital Equipment Corporation
23 * Extensively modified by Hannes Gredler (hannes@gredler.at) for more
24 * complete IS-IS & CLNP support.
27 /* \summary: ISO CLNS, ESIS, and ISIS printer */
32 * CLNP: ISO 8473 (respective ITU version is at http://www.itu.int/rec/T-REC-X.233/en/)
41 #include "netdissect-stdinc.h"
45 #include "netdissect.h"
46 #include "addrtoname.h"
51 #include "signature.h"
55 * IS-IS is defined in ISO 10589. Look there for protocol definitions.
58 #define SYSTEM_ID_LEN MAC_ADDR_LEN
59 #define NODE_ID_LEN (SYSTEM_ID_LEN+1)
60 #define LSP_ID_LEN (SYSTEM_ID_LEN+2)
62 #define ISIS_VERSION 1
63 #define ESIS_VERSION 1
64 #define CLNP_VERSION 1
66 #define ISIS_PDU_TYPE_MASK 0x1F
67 #define ESIS_PDU_TYPE_MASK 0x1F
68 #define CLNP_PDU_TYPE_MASK 0x1F
69 #define CLNP_FLAG_MASK 0xE0
70 #define ISIS_LAN_PRIORITY_MASK 0x7F
72 #define ISIS_PDU_L1_LAN_IIH 15
73 #define ISIS_PDU_L2_LAN_IIH 16
74 #define ISIS_PDU_PTP_IIH 17
75 #define ISIS_PDU_L1_LSP 18
76 #define ISIS_PDU_L2_LSP 20
77 #define ISIS_PDU_L1_CSNP 24
78 #define ISIS_PDU_L2_CSNP 25
79 #define ISIS_PDU_L1_PSNP 26
80 #define ISIS_PDU_L2_PSNP 27
82 static const struct tok isis_pdu_values
[] = {
83 { ISIS_PDU_L1_LAN_IIH
, "L1 Lan IIH"},
84 { ISIS_PDU_L2_LAN_IIH
, "L2 Lan IIH"},
85 { ISIS_PDU_PTP_IIH
, "p2p IIH"},
86 { ISIS_PDU_L1_LSP
, "L1 LSP"},
87 { ISIS_PDU_L2_LSP
, "L2 LSP"},
88 { ISIS_PDU_L1_CSNP
, "L1 CSNP"},
89 { ISIS_PDU_L2_CSNP
, "L2 CSNP"},
90 { ISIS_PDU_L1_PSNP
, "L1 PSNP"},
91 { ISIS_PDU_L2_PSNP
, "L2 PSNP"},
96 * A TLV is a tuple of a type, length and a value and is normally used for
97 * encoding information in all sorts of places. This is an enumeration of
98 * the well known types.
100 * list taken from rfc3359 plus some memory from veterans ;-)
103 #define ISIS_TLV_AREA_ADDR 1 /* iso10589 */
104 #define ISIS_TLV_IS_REACH 2 /* iso10589 */
105 #define ISIS_TLV_ESNEIGH 3 /* iso10589 */
106 #define ISIS_TLV_PART_DIS 4 /* iso10589 */
107 #define ISIS_TLV_PREFIX_NEIGH 5 /* iso10589 */
108 #define ISIS_TLV_ISNEIGH 6 /* iso10589 */
109 #define ISIS_TLV_ISNEIGH_VARLEN 7 /* iso10589 */
110 #define ISIS_TLV_PADDING 8 /* iso10589 */
111 #define ISIS_TLV_LSP 9 /* iso10589 */
112 #define ISIS_TLV_AUTH 10 /* iso10589, rfc3567 */
113 #define ISIS_TLV_CHECKSUM 12 /* rfc3358 */
114 #define ISIS_TLV_CHECKSUM_MINLEN 2
115 #define ISIS_TLV_POI 13 /* rfc6232 */
116 #define ISIS_TLV_LSP_BUFFERSIZE 14 /* iso10589 rev2 */
117 #define ISIS_TLV_EXT_IS_REACH 22 /* rfc5305 */
118 #define ISIS_TLV_IS_ALIAS_ID 24 /* rfc5311 */
119 #define ISIS_TLV_DECNET_PHASE4 42
120 #define ISIS_TLV_LUCENT_PRIVATE 66
121 #define ISIS_TLV_INT_IP_REACH 128 /* rfc1195, rfc2966 */
122 #define ISIS_TLV_PROTOCOLS 129 /* rfc1195 */
123 #define ISIS_TLV_EXT_IP_REACH 130 /* rfc1195, rfc2966 */
124 #define ISIS_TLV_IDRP_INFO 131 /* rfc1195 */
125 #define ISIS_TLV_IPADDR 132 /* rfc1195 */
126 #define ISIS_TLV_IPAUTH 133 /* rfc1195 */
127 #define ISIS_TLV_TE_ROUTER_ID 134 /* rfc5305 */
128 #define ISIS_TLV_EXTD_IP_REACH 135 /* rfc5305 */
129 #define ISIS_TLV_HOSTNAME 137 /* rfc2763 */
130 #define ISIS_TLV_SHARED_RISK_GROUP 138 /* draft-ietf-isis-gmpls-extensions */
131 #define ISIS_TLV_MT_PORT_CAP 143 /* rfc6165 */
132 #define ISIS_TLV_MT_CAPABILITY 144 /* rfc6329 */
133 #define ISIS_TLV_NORTEL_PRIVATE1 176
134 #define ISIS_TLV_NORTEL_PRIVATE2 177
135 #define ISIS_TLV_RESTART_SIGNALING 211 /* rfc3847 */
136 #define ISIS_TLV_RESTART_SIGNALING_FLAGLEN 1
137 #define ISIS_TLV_RESTART_SIGNALING_HOLDTIMELEN 2
138 #define ISIS_TLV_MT_IS_REACH 222 /* draft-ietf-isis-wg-multi-topology-05 */
139 #define ISIS_TLV_MT_SUPPORTED 229 /* draft-ietf-isis-wg-multi-topology-05 */
140 #define ISIS_TLV_IP6ADDR 232 /* draft-ietf-isis-ipv6-02 */
141 #define ISIS_TLV_MT_IP_REACH 235 /* draft-ietf-isis-wg-multi-topology-05 */
142 #define ISIS_TLV_IP6_REACH 236 /* draft-ietf-isis-ipv6-02 */
143 #define ISIS_TLV_MT_IP6_REACH 237 /* draft-ietf-isis-wg-multi-topology-05 */
144 #define ISIS_TLV_PTP_ADJ 240 /* rfc3373 */
145 #define ISIS_TLV_IIH_SEQNR 241 /* draft-shen-isis-iih-sequence-00 */
146 #define ISIS_TLV_VENDOR_PRIVATE 250 /* draft-ietf-isis-experimental-tlv-01 */
147 #define ISIS_TLV_VENDOR_PRIVATE_MINLEN 3
149 static const struct tok isis_tlv_values
[] = {
150 { ISIS_TLV_AREA_ADDR
, "Area address(es)"},
151 { ISIS_TLV_IS_REACH
, "IS Reachability"},
152 { ISIS_TLV_ESNEIGH
, "ES Neighbor(s)"},
153 { ISIS_TLV_PART_DIS
, "Partition DIS"},
154 { ISIS_TLV_PREFIX_NEIGH
, "Prefix Neighbors"},
155 { ISIS_TLV_ISNEIGH
, "IS Neighbor(s)"},
156 { ISIS_TLV_ISNEIGH_VARLEN
, "IS Neighbor(s) (variable length)"},
157 { ISIS_TLV_PADDING
, "Padding"},
158 { ISIS_TLV_LSP
, "LSP entries"},
159 { ISIS_TLV_AUTH
, "Authentication"},
160 { ISIS_TLV_CHECKSUM
, "Checksum"},
161 { ISIS_TLV_POI
, "Purge Originator Identifier"},
162 { ISIS_TLV_LSP_BUFFERSIZE
, "LSP Buffersize"},
163 { ISIS_TLV_EXT_IS_REACH
, "Extended IS Reachability"},
164 { ISIS_TLV_IS_ALIAS_ID
, "IS Alias ID"},
165 { ISIS_TLV_DECNET_PHASE4
, "DECnet Phase IV"},
166 { ISIS_TLV_LUCENT_PRIVATE
, "Lucent Proprietary"},
167 { ISIS_TLV_INT_IP_REACH
, "IPv4 Internal Reachability"},
168 { ISIS_TLV_PROTOCOLS
, "Protocols supported"},
169 { ISIS_TLV_EXT_IP_REACH
, "IPv4 External Reachability"},
170 { ISIS_TLV_IDRP_INFO
, "Inter-Domain Information Type"},
171 { ISIS_TLV_IPADDR
, "IPv4 Interface address(es)"},
172 { ISIS_TLV_IPAUTH
, "IPv4 authentication (deprecated)"},
173 { ISIS_TLV_TE_ROUTER_ID
, "Traffic Engineering Router ID"},
174 { ISIS_TLV_EXTD_IP_REACH
, "Extended IPv4 Reachability"},
175 { ISIS_TLV_SHARED_RISK_GROUP
, "Shared Risk Link Group"},
176 { ISIS_TLV_MT_PORT_CAP
, "Multi-Topology-Aware Port Capability"},
177 { ISIS_TLV_MT_CAPABILITY
, "Multi-Topology Capability"},
178 { ISIS_TLV_NORTEL_PRIVATE1
, "Nortel Proprietary"},
179 { ISIS_TLV_NORTEL_PRIVATE2
, "Nortel Proprietary"},
180 { ISIS_TLV_HOSTNAME
, "Hostname"},
181 { ISIS_TLV_RESTART_SIGNALING
, "Restart Signaling"},
182 { ISIS_TLV_MT_IS_REACH
, "Multi Topology IS Reachability"},
183 { ISIS_TLV_MT_SUPPORTED
, "Multi Topology"},
184 { ISIS_TLV_IP6ADDR
, "IPv6 Interface address(es)"},
185 { ISIS_TLV_MT_IP_REACH
, "Multi-Topology IPv4 Reachability"},
186 { ISIS_TLV_IP6_REACH
, "IPv6 reachability"},
187 { ISIS_TLV_MT_IP6_REACH
, "Multi-Topology IP6 Reachability"},
188 { ISIS_TLV_PTP_ADJ
, "Point-to-point Adjacency State"},
189 { ISIS_TLV_IIH_SEQNR
, "Hello PDU Sequence Number"},
190 { ISIS_TLV_VENDOR_PRIVATE
, "Vendor Private"},
194 #define ESIS_OPTION_PROTOCOLS 129
195 #define ESIS_OPTION_QOS_MAINTENANCE 195 /* iso9542 */
196 #define ESIS_OPTION_SECURITY 197 /* iso9542 */
197 #define ESIS_OPTION_ES_CONF_TIME 198 /* iso9542 */
198 #define ESIS_OPTION_PRIORITY 205 /* iso9542 */
199 #define ESIS_OPTION_ADDRESS_MASK 225 /* iso9542 */
200 #define ESIS_OPTION_SNPA_MASK 226 /* iso9542 */
202 static const struct tok esis_option_values
[] = {
203 { ESIS_OPTION_PROTOCOLS
, "Protocols supported"},
204 { ESIS_OPTION_QOS_MAINTENANCE
, "QoS Maintenance" },
205 { ESIS_OPTION_SECURITY
, "Security" },
206 { ESIS_OPTION_ES_CONF_TIME
, "ES Configuration Time" },
207 { ESIS_OPTION_PRIORITY
, "Priority" },
208 { ESIS_OPTION_ADDRESS_MASK
, "Addressk Mask" },
209 { ESIS_OPTION_SNPA_MASK
, "SNPA Mask" },
213 #define CLNP_OPTION_DISCARD_REASON 193
214 #define CLNP_OPTION_QOS_MAINTENANCE 195 /* iso8473 */
215 #define CLNP_OPTION_SECURITY 197 /* iso8473 */
216 #define CLNP_OPTION_SOURCE_ROUTING 200 /* iso8473 */
217 #define CLNP_OPTION_ROUTE_RECORDING 203 /* iso8473 */
218 #define CLNP_OPTION_PADDING 204 /* iso8473 */
219 #define CLNP_OPTION_PRIORITY 205 /* iso8473 */
221 static const struct tok clnp_option_values
[] = {
222 { CLNP_OPTION_DISCARD_REASON
, "Discard Reason"},
223 { CLNP_OPTION_PRIORITY
, "Priority"},
224 { CLNP_OPTION_QOS_MAINTENANCE
, "QoS Maintenance"},
225 { CLNP_OPTION_SECURITY
, "Security"},
226 { CLNP_OPTION_SOURCE_ROUTING
, "Source Routing"},
227 { CLNP_OPTION_ROUTE_RECORDING
, "Route Recording"},
228 { CLNP_OPTION_PADDING
, "Padding"},
232 static const struct tok clnp_option_rfd_class_values
[] = {
235 { 0x9, "Source Routeing"},
237 { 0xb, "PDU Discarded"},
238 { 0xc, "Reassembly"},
242 static const struct tok clnp_option_rfd_general_values
[] = {
243 { 0x0, "Reason not specified"},
244 { 0x1, "Protocol procedure error"},
245 { 0x2, "Incorrect checksum"},
246 { 0x3, "PDU discarded due to congestion"},
247 { 0x4, "Header syntax error (cannot be parsed)"},
248 { 0x5, "Segmentation needed but not permitted"},
249 { 0x6, "Incomplete PDU received"},
250 { 0x7, "Duplicate option"},
254 static const struct tok clnp_option_rfd_address_values
[] = {
255 { 0x0, "Destination address unreachable"},
256 { 0x1, "Destination address unknown"},
260 static const struct tok clnp_option_rfd_source_routeing_values
[] = {
261 { 0x0, "Unspecified source routeing error"},
262 { 0x1, "Syntax error in source routeing field"},
263 { 0x2, "Unknown address in source routeing field"},
264 { 0x3, "Path not acceptable"},
268 static const struct tok clnp_option_rfd_lifetime_values
[] = {
269 { 0x0, "Lifetime expired while data unit in transit"},
270 { 0x1, "Lifetime expired during reassembly"},
274 static const struct tok clnp_option_rfd_pdu_discard_values
[] = {
275 { 0x0, "Unsupported option not specified"},
276 { 0x1, "Unsupported protocol version"},
277 { 0x2, "Unsupported security option"},
278 { 0x3, "Unsupported source routeing option"},
279 { 0x4, "Unsupported recording of route option"},
283 static const struct tok clnp_option_rfd_reassembly_values
[] = {
284 { 0x0, "Reassembly interference"},
288 /* array of 16 error-classes */
289 static const struct tok
*clnp_option_rfd_error_class
[] = {
290 clnp_option_rfd_general_values
,
298 clnp_option_rfd_address_values
,
299 clnp_option_rfd_source_routeing_values
,
300 clnp_option_rfd_lifetime_values
,
301 clnp_option_rfd_pdu_discard_values
,
302 clnp_option_rfd_reassembly_values
,
308 #define CLNP_OPTION_OPTION_QOS_MASK 0x3f
309 #define CLNP_OPTION_SCOPE_MASK 0xc0
310 #define CLNP_OPTION_SCOPE_SA_SPEC 0x40
311 #define CLNP_OPTION_SCOPE_DA_SPEC 0x80
312 #define CLNP_OPTION_SCOPE_GLOBAL 0xc0
314 static const struct tok clnp_option_scope_values
[] = {
315 { CLNP_OPTION_SCOPE_SA_SPEC
, "Source Address Specific"},
316 { CLNP_OPTION_SCOPE_DA_SPEC
, "Destination Address Specific"},
317 { CLNP_OPTION_SCOPE_GLOBAL
, "Globally unique"},
321 static const struct tok clnp_option_sr_rr_values
[] = {
327 static const struct tok clnp_option_sr_rr_string_values
[] = {
328 { CLNP_OPTION_SOURCE_ROUTING
, "source routing"},
329 { CLNP_OPTION_ROUTE_RECORDING
, "recording of route in progress"},
333 static const struct tok clnp_option_qos_global_values
[] = {
335 { 0x10, "sequencing vs. delay"},
336 { 0x08, "congested"},
337 { 0x04, "delay vs. cost"},
338 { 0x02, "error vs. delay"},
339 { 0x01, "error vs. cost"},
343 #define ISIS_SUBTLV_EXT_IS_REACH_ADMIN_GROUP 3 /* rfc5305 */
344 #define ISIS_SUBTLV_EXT_IS_REACH_LINK_LOCAL_REMOTE_ID 4 /* rfc4205 */
345 #define ISIS_SUBTLV_EXT_IS_REACH_LINK_REMOTE_ID 5 /* rfc5305 */
346 #define ISIS_SUBTLV_EXT_IS_REACH_IPV4_INTF_ADDR 6 /* rfc5305 */
347 #define ISIS_SUBTLV_EXT_IS_REACH_IPV4_NEIGHBOR_ADDR 8 /* rfc5305 */
348 #define ISIS_SUBTLV_EXT_IS_REACH_MAX_LINK_BW 9 /* rfc5305 */
349 #define ISIS_SUBTLV_EXT_IS_REACH_RESERVABLE_BW 10 /* rfc5305 */
350 #define ISIS_SUBTLV_EXT_IS_REACH_UNRESERVED_BW 11 /* rfc4124 */
351 #define ISIS_SUBTLV_EXT_IS_REACH_BW_CONSTRAINTS_OLD 12 /* draft-ietf-tewg-diff-te-proto-06 */
352 #define ISIS_SUBTLV_EXT_IS_REACH_TE_METRIC 18 /* rfc5305 */
353 #define ISIS_SUBTLV_EXT_IS_REACH_LINK_ATTRIBUTE 19 /* draft-ietf-isis-link-attr-01 */
354 #define ISIS_SUBTLV_EXT_IS_REACH_LINK_PROTECTION_TYPE 20 /* rfc4205 */
355 #define ISIS_SUBTLV_EXT_IS_REACH_INTF_SW_CAP_DESCR 21 /* rfc4205 */
356 #define ISIS_SUBTLV_EXT_IS_REACH_BW_CONSTRAINTS 22 /* rfc4124 */
358 #define ISIS_SUBTLV_SPB_METRIC 29 /* rfc6329 */
360 static const struct tok isis_ext_is_reach_subtlv_values
[] = {
361 { ISIS_SUBTLV_EXT_IS_REACH_ADMIN_GROUP
, "Administrative groups" },
362 { ISIS_SUBTLV_EXT_IS_REACH_LINK_LOCAL_REMOTE_ID
, "Link Local/Remote Identifier" },
363 { ISIS_SUBTLV_EXT_IS_REACH_LINK_REMOTE_ID
, "Link Remote Identifier" },
364 { ISIS_SUBTLV_EXT_IS_REACH_IPV4_INTF_ADDR
, "IPv4 interface address" },
365 { ISIS_SUBTLV_EXT_IS_REACH_IPV4_NEIGHBOR_ADDR
, "IPv4 neighbor address" },
366 { ISIS_SUBTLV_EXT_IS_REACH_MAX_LINK_BW
, "Maximum link bandwidth" },
367 { ISIS_SUBTLV_EXT_IS_REACH_RESERVABLE_BW
, "Reservable link bandwidth" },
368 { ISIS_SUBTLV_EXT_IS_REACH_UNRESERVED_BW
, "Unreserved bandwidth" },
369 { ISIS_SUBTLV_EXT_IS_REACH_TE_METRIC
, "Traffic Engineering Metric" },
370 { ISIS_SUBTLV_EXT_IS_REACH_LINK_ATTRIBUTE
, "Link Attribute" },
371 { ISIS_SUBTLV_EXT_IS_REACH_LINK_PROTECTION_TYPE
, "Link Protection Type" },
372 { ISIS_SUBTLV_EXT_IS_REACH_INTF_SW_CAP_DESCR
, "Interface Switching Capability" },
373 { ISIS_SUBTLV_EXT_IS_REACH_BW_CONSTRAINTS_OLD
, "Bandwidth Constraints (old)" },
374 { ISIS_SUBTLV_EXT_IS_REACH_BW_CONSTRAINTS
, "Bandwidth Constraints" },
375 { ISIS_SUBTLV_SPB_METRIC
, "SPB Metric" },
376 { 250, "Reserved for cisco specific extensions" },
377 { 251, "Reserved for cisco specific extensions" },
378 { 252, "Reserved for cisco specific extensions" },
379 { 253, "Reserved for cisco specific extensions" },
380 { 254, "Reserved for cisco specific extensions" },
381 { 255, "Reserved for future expansion" },
385 #define ISIS_SUBTLV_EXTD_IP_REACH_ADMIN_TAG32 1 /* draft-ietf-isis-admin-tags-01 */
386 #define ISIS_SUBTLV_EXTD_IP_REACH_ADMIN_TAG64 2 /* draft-ietf-isis-admin-tags-01 */
387 #define ISIS_SUBTLV_EXTD_IP_REACH_MGMT_PREFIX_COLOR 117 /* draft-ietf-isis-wg-multi-topology-05 */
389 static const struct tok isis_ext_ip_reach_subtlv_values
[] = {
390 { ISIS_SUBTLV_EXTD_IP_REACH_ADMIN_TAG32
, "32-Bit Administrative tag" },
391 { ISIS_SUBTLV_EXTD_IP_REACH_ADMIN_TAG64
, "64-Bit Administrative tag" },
392 { ISIS_SUBTLV_EXTD_IP_REACH_MGMT_PREFIX_COLOR
, "Management Prefix Color" },
396 static const struct tok isis_subtlv_link_attribute_values
[] = {
397 { 0x01, "Local Protection Available" },
398 { 0x02, "Link excluded from local protection path" },
399 { 0x04, "Local maintenance required"},
403 #define ISIS_SUBTLV_AUTH_SIMPLE 1
404 #define ISIS_SUBTLV_AUTH_GENERIC 3 /* rfc 5310 */
405 #define ISIS_SUBTLV_AUTH_MD5 54
406 #define ISIS_SUBTLV_AUTH_MD5_LEN 16
407 #define ISIS_SUBTLV_AUTH_PRIVATE 255
409 static const struct tok isis_subtlv_auth_values
[] = {
410 { ISIS_SUBTLV_AUTH_SIMPLE
, "simple text password"},
411 { ISIS_SUBTLV_AUTH_GENERIC
, "Generic Crypto key-id"},
412 { ISIS_SUBTLV_AUTH_MD5
, "HMAC-MD5 password"},
413 { ISIS_SUBTLV_AUTH_PRIVATE
, "Routing Domain private password"},
417 #define ISIS_SUBTLV_IDRP_RES 0
418 #define ISIS_SUBTLV_IDRP_LOCAL 1
419 #define ISIS_SUBTLV_IDRP_ASN 2
421 static const struct tok isis_subtlv_idrp_values
[] = {
422 { ISIS_SUBTLV_IDRP_RES
, "Reserved"},
423 { ISIS_SUBTLV_IDRP_LOCAL
, "Routing-Domain Specific"},
424 { ISIS_SUBTLV_IDRP_ASN
, "AS Number Tag"},
428 #define ISIS_SUBTLV_SPB_MCID 4
429 #define ISIS_SUBTLV_SPB_DIGEST 5
430 #define ISIS_SUBTLV_SPB_BVID 6
432 #define ISIS_SUBTLV_SPB_INSTANCE 1
433 #define ISIS_SUBTLV_SPBM_SI 3
435 #define ISIS_SPB_MCID_LEN 51
436 #define ISIS_SUBTLV_SPB_MCID_MIN_LEN 102
437 #define ISIS_SUBTLV_SPB_DIGEST_MIN_LEN 33
438 #define ISIS_SUBTLV_SPB_BVID_MIN_LEN 6
439 #define ISIS_SUBTLV_SPB_INSTANCE_MIN_LEN 19
440 #define ISIS_SUBTLV_SPB_INSTANCE_VLAN_TUPLE_LEN 8
442 static const struct tok isis_mt_port_cap_subtlv_values
[] = {
443 { ISIS_SUBTLV_SPB_MCID
, "SPB MCID" },
444 { ISIS_SUBTLV_SPB_DIGEST
, "SPB Digest" },
445 { ISIS_SUBTLV_SPB_BVID
, "SPB BVID" },
449 static const struct tok isis_mt_capability_subtlv_values
[] = {
450 { ISIS_SUBTLV_SPB_INSTANCE
, "SPB Instance" },
451 { ISIS_SUBTLV_SPBM_SI
, "SPBM Service Identifier and Unicast Address" },
455 struct isis_spb_mcid
{
456 nd_uint8_t format_id
;
458 nd_uint16_t revision_lvl
;
462 struct isis_subtlv_spb_mcid
{
463 struct isis_spb_mcid mcid
;
464 struct isis_spb_mcid aux_mcid
;
467 struct isis_subtlv_spb_instance
{
468 nd_byte cist_root_id
[8];
469 nd_uint32_t cist_external_root_path_cost
;
470 nd_uint16_t bridge_priority
;
471 nd_uint32_t spsourceid
;
472 nd_uint8_t no_of_trees
;
475 #define CLNP_SEGMENT_PART 0x80
476 #define CLNP_MORE_SEGMENTS 0x40
477 #define CLNP_REQUEST_ER 0x20
479 static const struct tok clnp_flag_values
[] = {
480 { CLNP_SEGMENT_PART
, "Segmentation permitted"},
481 { CLNP_MORE_SEGMENTS
, "more Segments"},
482 { CLNP_REQUEST_ER
, "request Error Report"},
486 #define ISIS_MASK_LSP_OL_BIT(x) (GET_U_1(x)&0x4)
487 #define ISIS_MASK_LSP_ISTYPE_BITS(x) (GET_U_1(x)&0x3)
488 #define ISIS_MASK_LSP_PARTITION_BIT(x) (GET_U_1(x)&0x80)
489 #define ISIS_MASK_LSP_ATT_BITS(x) (GET_U_1(x)&0x78)
490 #define ISIS_MASK_LSP_ATT_ERROR_BIT(x) (GET_U_1(x)&0x40)
491 #define ISIS_MASK_LSP_ATT_EXPENSE_BIT(x) (GET_U_1(x)&0x20)
492 #define ISIS_MASK_LSP_ATT_DELAY_BIT(x) (GET_U_1(x)&0x10)
493 #define ISIS_MASK_LSP_ATT_DEFAULT_BIT(x) (GET_U_1(x)&0x8)
495 #define ISIS_MASK_MTID(x) ((x)&0x0fff)
496 #define ISIS_MASK_MTFLAGS(x) ((x)&0xf000)
498 static const struct tok isis_mt_flag_values
[] = {
499 { 0x4000, "ATT bit set"},
500 { 0x8000, "Overload bit set"},
504 #define ISIS_MASK_TLV_EXTD_IP_UPDOWN(x) ((x)&0x80)
505 #define ISIS_MASK_TLV_EXTD_IP_SUBTLV(x) ((x)&0x40)
507 #define ISIS_MASK_TLV_EXTD_IP6_IE(x) ((x)&0x40)
508 #define ISIS_MASK_TLV_EXTD_IP6_SUBTLV(x) ((x)&0x20)
510 #define ISIS_LSP_TLV_METRIC_SUPPORTED(x) (GET_U_1(x)&0x80)
511 #define ISIS_LSP_TLV_METRIC_IE(x) (GET_U_1(x)&0x40)
512 #define ISIS_LSP_TLV_METRIC_UPDOWN(x) (GET_U_1(x)&0x80)
513 #define ISIS_LSP_TLV_METRIC_VALUE(x) (GET_U_1(x)&0x3f)
515 #define ISIS_MASK_TLV_SHARED_RISK_GROUP(x) ((x)&0x1)
517 static const struct tok isis_mt_values
[] = {
518 { 0, "IPv4 unicast"},
519 { 1, "In-Band Management"},
520 { 2, "IPv6 unicast"},
522 { 4095, "Development, Experimental or Proprietary"},
526 static const struct tok isis_iih_circuit_type_values
[] = {
527 { 1, "Level 1 only"},
528 { 2, "Level 2 only"},
529 { 3, "Level 1, Level 2"},
533 #define ISIS_LSP_TYPE_UNUSED0 0
534 #define ISIS_LSP_TYPE_LEVEL_1 1
535 #define ISIS_LSP_TYPE_UNUSED2 2
536 #define ISIS_LSP_TYPE_LEVEL_2 3
538 static const struct tok isis_lsp_istype_values
[] = {
539 { ISIS_LSP_TYPE_UNUSED0
, "Unused 0x0 (invalid)"},
540 { ISIS_LSP_TYPE_LEVEL_1
, "L1 IS"},
541 { ISIS_LSP_TYPE_UNUSED2
, "Unused 0x2 (invalid)"},
542 { ISIS_LSP_TYPE_LEVEL_2
, "L2 IS"},
547 * Katz's point to point adjacency TLV uses codes to tell us the state of
548 * the remote adjacency. Enumerate them.
551 #define ISIS_PTP_ADJ_UP 0
552 #define ISIS_PTP_ADJ_INIT 1
553 #define ISIS_PTP_ADJ_DOWN 2
555 static const struct tok isis_ptp_adjancey_values
[] = {
556 { ISIS_PTP_ADJ_UP
, "Up" },
557 { ISIS_PTP_ADJ_INIT
, "Initializing" },
558 { ISIS_PTP_ADJ_DOWN
, "Down" },
562 struct isis_tlv_ptp_adj
{
563 nd_uint8_t adjacency_state
;
564 nd_uint32_t extd_local_circuit_id
;
565 nd_byte neighbor_sysid
[SYSTEM_ID_LEN
];
566 nd_uint32_t neighbor_extd_local_circuit_id
;
569 static void osi_print_cksum(netdissect_options
*, const uint8_t *pptr
,
570 uint16_t checksum
, int checksum_offset
, u_int length
);
571 static int clnp_print(netdissect_options
*, const uint8_t *, u_int
);
572 static void esis_print(netdissect_options
*, const uint8_t *, u_int
);
573 static int isis_print(netdissect_options
*, const uint8_t *, u_int
);
575 struct isis_metric_block
{
576 nd_uint8_t metric_default
;
577 nd_uint8_t metric_delay
;
578 nd_uint8_t metric_expense
;
579 nd_uint8_t metric_error
;
582 struct isis_tlv_is_reach
{
583 struct isis_metric_block isis_metric_block
;
584 nd_byte neighbor_nodeid
[NODE_ID_LEN
];
587 struct isis_tlv_es_reach
{
588 struct isis_metric_block isis_metric_block
;
589 nd_byte neighbor_sysid
[SYSTEM_ID_LEN
];
592 struct isis_tlv_ip_reach
{
593 struct isis_metric_block isis_metric_block
;
598 static const struct tok isis_is_reach_virtual_values
[] = {
599 { 0, "IsNotVirtual"},
604 static const struct tok isis_restart_flag_values
[] = {
605 { 0x1, "Restart Request"},
606 { 0x2, "Restart Acknowledgement"},
607 { 0x4, "Suppress adjacency advertisement"},
611 struct isis_common_header
{
613 nd_uint8_t fixed_len
;
614 nd_uint8_t version
; /* Protocol version */
615 nd_uint8_t id_length
;
616 nd_uint8_t pdu_type
; /* 3 MSbits are reserved */
617 nd_uint8_t pdu_version
; /* Packet format version */
622 struct isis_iih_lan_header
{
623 nd_uint8_t circuit_type
;
624 nd_byte source_id
[SYSTEM_ID_LEN
];
625 nd_uint16_t holding_time
;
628 nd_byte lan_id
[NODE_ID_LEN
];
631 struct isis_iih_ptp_header
{
632 nd_uint8_t circuit_type
;
633 nd_byte source_id
[SYSTEM_ID_LEN
];
634 nd_uint16_t holding_time
;
636 nd_uint8_t circuit_id
;
639 struct isis_lsp_header
{
641 nd_uint16_t remaining_lifetime
;
642 nd_byte lsp_id
[LSP_ID_LEN
];
643 nd_uint32_t sequence_number
;
644 nd_uint16_t checksum
;
645 nd_uint8_t typeblock
;
648 struct isis_csnp_header
{
650 nd_byte source_id
[NODE_ID_LEN
];
651 nd_byte start_lsp_id
[LSP_ID_LEN
];
652 nd_byte end_lsp_id
[LSP_ID_LEN
];
655 struct isis_psnp_header
{
657 nd_byte source_id
[NODE_ID_LEN
];
660 struct isis_tlv_lsp
{
661 nd_uint16_t remaining_lifetime
;
662 nd_byte lsp_id
[LSP_ID_LEN
];
663 nd_uint32_t sequence_number
;
664 nd_uint16_t checksum
;
667 #define ISIS_COMMON_HEADER_SIZE (sizeof(struct isis_common_header))
668 #define ISIS_IIH_LAN_HEADER_SIZE (sizeof(struct isis_iih_lan_header))
669 #define ISIS_IIH_PTP_HEADER_SIZE (sizeof(struct isis_iih_ptp_header))
670 #define ISIS_LSP_HEADER_SIZE (sizeof(struct isis_lsp_header))
671 #define ISIS_CSNP_HEADER_SIZE (sizeof(struct isis_csnp_header))
672 #define ISIS_PSNP_HEADER_SIZE (sizeof(struct isis_psnp_header))
675 isoclns_print(netdissect_options
*ndo
, const u_char
*p
, u_int length
)
677 ndo
->ndo_protocol
= "isoclns";
678 ND_TCHECK_1(p
); /* enough bytes on the wire ? */
681 ND_PRINT("OSI NLPID %s (0x%02x): ",
682 tok2str(nlpid_values
, "Unknown", GET_U_1(p
)),
685 switch (GET_U_1(p
)) {
688 if (!clnp_print(ndo
, p
, length
))
689 print_unknown_data(ndo
, p
, "\n\t", length
);
693 esis_print(ndo
, p
, length
);
697 if (!isis_print(ndo
, p
, length
))
698 print_unknown_data(ndo
, p
, "\n\t", length
);
702 ND_PRINT("%slength: %u", ndo
->ndo_eflag
? "" : ", ", length
);
706 q933_print(ndo
, p
+ 1, length
- 1);
710 ip_print(ndo
, p
+ 1, length
- 1);
714 ip6_print(ndo
, p
+ 1, length
- 1);
718 ppp_print(ndo
, p
+ 1, length
- 1);
723 ND_PRINT("OSI NLPID 0x%02x unknown", GET_U_1(p
));
724 ND_PRINT("%slength: %u", ndo
->ndo_eflag
? "" : ", ", length
);
726 print_unknown_data(ndo
, p
, "\n\t", length
);
734 #define CLNP_PDU_ER 1
735 #define CLNP_PDU_DT 28
736 #define CLNP_PDU_MD 29
737 #define CLNP_PDU_ERQ 30
738 #define CLNP_PDU_ERP 31
740 static const struct tok clnp_pdu_values
[] = {
741 { CLNP_PDU_ER
, "Error Report"},
742 { CLNP_PDU_MD
, "MD"},
743 { CLNP_PDU_DT
, "Data"},
744 { CLNP_PDU_ERQ
, "Echo Request"},
745 { CLNP_PDU_ERP
, "Echo Response"},
749 struct clnp_header_t
{
751 nd_uint8_t length_indicator
;
753 nd_uint8_t lifetime
; /* units of 500ms */
755 nd_uint16_t segment_length
;
759 struct clnp_segment_header_t
{
760 nd_uint16_t data_unit_id
;
761 nd_uint16_t segment_offset
;
762 nd_uint16_t total_length
;
767 * Decode CLNP packets. Return 0 on error.
771 clnp_print(netdissect_options
*ndo
,
772 const uint8_t *pptr
, u_int length
)
774 const uint8_t *optr
,*source_address
,*dest_address
;
775 u_int li
,li_remaining
,tlen
,nsap_offset
,source_address_length
,dest_address_length
, clnp_pdu_type
, clnp_flags
;
776 const struct clnp_header_t
*clnp_header
;
777 const struct clnp_segment_header_t
*clnp_segment_header
;
778 uint8_t rfd_error
,rfd_error_major
,rfd_error_minor
;
780 ndo
->ndo_protocol
= "clnp";
781 clnp_header
= (const struct clnp_header_t
*) pptr
;
782 ND_TCHECK_SIZE(clnp_header
);
784 li
= GET_U_1(clnp_header
->length_indicator
);
789 nd_print_protocol_caps(ndo
);
792 * Sanity checking of the header.
795 if (GET_U_1(clnp_header
->version
) != CLNP_VERSION
) {
796 ND_PRINT("version %u packet not supported",
797 GET_U_1(clnp_header
->version
));
802 ND_PRINT(" length indicator(%u) > PDU size (%u)!", li
, length
);
806 if (li
< sizeof(struct clnp_header_t
)) {
807 ND_PRINT(" length indicator %u < min PDU size:", li
);
808 while (pptr
< ndo
->ndo_snapend
) {
809 ND_PRINT("%02X", GET_U_1(pptr
));
815 /* FIXME further header sanity checking */
817 clnp_pdu_type
= GET_U_1(clnp_header
->type
) & CLNP_PDU_TYPE_MASK
;
818 clnp_flags
= GET_U_1(clnp_header
->type
) & CLNP_FLAG_MASK
;
820 pptr
+= sizeof(struct clnp_header_t
);
821 li_remaining
-= sizeof(struct clnp_header_t
);
823 if (li_remaining
< 1) {
824 ND_PRINT("li < size of fixed part of CLNP header and addresses");
828 dest_address_length
= GET_U_1(pptr
);
831 if (li_remaining
< dest_address_length
) {
832 ND_PRINT("li < size of fixed part of CLNP header and addresses");
835 ND_TCHECK_LEN(pptr
, dest_address_length
);
837 pptr
+= dest_address_length
;
838 li_remaining
-= dest_address_length
;
840 if (li_remaining
< 1) {
841 ND_PRINT("li < size of fixed part of CLNP header and addresses");
845 source_address_length
= GET_U_1(pptr
);
848 if (li_remaining
< source_address_length
) {
849 ND_PRINT("li < size of fixed part of CLNP header and addresses");
852 ND_TCHECK_LEN(pptr
, source_address_length
);
853 source_address
= pptr
;
854 pptr
+= source_address_length
;
855 li_remaining
-= source_address_length
;
857 if (ndo
->ndo_vflag
< 1) {
858 ND_PRINT("%s%s > %s, %s, length %u",
859 ndo
->ndo_eflag
? "" : ", ",
860 isonsap_string(ndo
, source_address
, source_address_length
),
861 isonsap_string(ndo
, dest_address
, dest_address_length
),
862 tok2str(clnp_pdu_values
,"unknown (%u)",clnp_pdu_type
),
866 ND_PRINT("%slength %u", ndo
->ndo_eflag
? "" : ", ", length
);
868 ND_PRINT("\n\t%s PDU, hlen: %u, v: %u, lifetime: %u.%us, Segment PDU length: %u, checksum: 0x%04x",
869 tok2str(clnp_pdu_values
, "unknown (%u)",clnp_pdu_type
),
870 GET_U_1(clnp_header
->length_indicator
),
871 GET_U_1(clnp_header
->version
),
872 GET_U_1(clnp_header
->lifetime
)/2,
873 (GET_U_1(clnp_header
->lifetime
)%2)*5,
874 GET_BE_U_2(clnp_header
->segment_length
),
875 GET_BE_U_2(clnp_header
->cksum
));
877 osi_print_cksum(ndo
, optr
, GET_BE_U_2(clnp_header
->cksum
), 7,
878 GET_U_1(clnp_header
->length_indicator
));
880 ND_PRINT("\n\tFlags [%s]",
881 bittok2str(clnp_flag_values
, "none", clnp_flags
));
883 ND_PRINT("\n\tsource address (length %u): %s\n\tdest address (length %u): %s",
884 source_address_length
,
885 isonsap_string(ndo
, source_address
, source_address_length
),
887 isonsap_string(ndo
, dest_address
, dest_address_length
));
889 if (clnp_flags
& CLNP_SEGMENT_PART
) {
890 if (li_remaining
< sizeof(struct clnp_segment_header_t
)) {
891 ND_PRINT("li < size of fixed part of CLNP header, addresses, and segment part");
894 clnp_segment_header
= (const struct clnp_segment_header_t
*) pptr
;
895 ND_TCHECK_SIZE(clnp_segment_header
);
896 ND_PRINT("\n\tData Unit ID: 0x%04x, Segment Offset: %u, Total PDU Length: %u",
897 GET_BE_U_2(clnp_segment_header
->data_unit_id
),
898 GET_BE_U_2(clnp_segment_header
->segment_offset
),
899 GET_BE_U_2(clnp_segment_header
->total_length
));
900 pptr
+=sizeof(struct clnp_segment_header_t
);
901 li_remaining
-=sizeof(struct clnp_segment_header_t
);
904 /* now walk the options */
905 while (li_remaining
!= 0) {
909 if (li_remaining
< 2) {
910 ND_PRINT(", bad opts/li");
915 opli
= GET_U_1(pptr
+ 1);
918 if (opli
> li_remaining
) {
919 ND_PRINT(", opt (%u) too long", op
);
922 ND_TCHECK_LEN(pptr
, opli
);
923 li_remaining
-= opli
;
927 ND_PRINT("\n\t %s Option #%u, length %u, value: ",
928 tok2str(clnp_option_values
,"Unknown",op
),
933 * We've already checked that the entire option is present
934 * in the captured packet with the ND_TCHECK_LEN() call.
935 * Therefore, we don't need to do ND_TCHECK()/ND_TCHECK_LEN()
937 * We do, however, need to check tlen, to make sure we
938 * don't run past the end of the option.
943 case CLNP_OPTION_ROUTE_RECORDING
: /* those two options share the format */
944 case CLNP_OPTION_SOURCE_ROUTING
:
946 ND_PRINT(", bad opt len");
950 tok2str(clnp_option_sr_rr_values
,"Unknown",GET_U_1(tptr
)),
951 tok2str(clnp_option_sr_rr_string_values
, "Unknown Option %u", op
));
952 nsap_offset
=GET_U_1(tptr
+ 1);
953 if (nsap_offset
== 0) {
954 ND_PRINT(" Bad NSAP offset (0)");
957 nsap_offset
-=1; /* offset to nsap list */
958 if (nsap_offset
> tlen
) {
959 ND_PRINT(" Bad NSAP offset (past end of option)");
965 source_address_length
=GET_U_1(tptr
);
966 if (tlen
< source_address_length
+1) {
967 ND_PRINT("\n\t NSAP address goes past end of option");
970 if (source_address_length
> 0) {
971 source_address
=(tptr
+1);
972 ND_TCHECK_LEN(source_address
,
973 source_address_length
);
974 ND_PRINT("\n\t NSAP address (length %u): %s",
975 source_address_length
,
976 isonsap_string(ndo
, source_address
, source_address_length
));
978 tlen
-=source_address_length
+1;
982 case CLNP_OPTION_PRIORITY
:
984 ND_PRINT(", bad opt len");
987 ND_PRINT("0x%1x", GET_U_1(tptr
)&0x0f);
990 case CLNP_OPTION_QOS_MAINTENANCE
:
992 ND_PRINT(", bad opt len");
995 ND_PRINT("\n\t Format Code: %s",
996 tok2str(clnp_option_scope_values
, "Reserved", GET_U_1(tptr
) & CLNP_OPTION_SCOPE_MASK
));
998 if ((GET_U_1(tptr
)&CLNP_OPTION_SCOPE_MASK
) == CLNP_OPTION_SCOPE_GLOBAL
)
999 ND_PRINT("\n\t QoS Flags [%s]",
1000 bittok2str(clnp_option_qos_global_values
,
1002 GET_U_1(tptr
)&CLNP_OPTION_OPTION_QOS_MASK
));
1005 case CLNP_OPTION_SECURITY
:
1007 ND_PRINT(", bad opt len");
1010 ND_PRINT("\n\t Format Code: %s, Security-Level %u",
1011 tok2str(clnp_option_scope_values
,"Reserved",GET_U_1(tptr
)&CLNP_OPTION_SCOPE_MASK
),
1015 case CLNP_OPTION_DISCARD_REASON
:
1017 ND_PRINT(", bad opt len");
1020 rfd_error
= GET_U_1(tptr
);
1021 rfd_error_major
= (rfd_error
&0xf0) >> 4;
1022 rfd_error_minor
= rfd_error
&0x0f;
1023 ND_PRINT("\n\t Class: %s Error (0x%01x), %s (0x%01x)",
1024 tok2str(clnp_option_rfd_class_values
,"Unknown",rfd_error_major
),
1026 tok2str(clnp_option_rfd_error_class
[rfd_error_major
],"Unknown",rfd_error_minor
),
1030 case CLNP_OPTION_PADDING
:
1031 ND_PRINT("padding data");
1035 * FIXME those are the defined Options that lack a decoder
1036 * you are welcome to contribute code ;-)
1040 print_unknown_data(ndo
, tptr
, "\n\t ", opli
);
1043 if (ndo
->ndo_vflag
> 1)
1044 print_unknown_data(ndo
, pptr
, "\n\t ", opli
);
1048 switch (clnp_pdu_type
) {
1050 case CLNP_PDU_ER
: /* fall through */
1053 if (GET_U_1(pptr
) == NLPID_CLNP
) {
1054 ND_PRINT("\n\t-----original packet-----\n\t");
1055 /* FIXME recursion protection */
1056 clnp_print(ndo
, pptr
, length
- li
);
1060 /* The cases above break from the switch block if they see and print
1061 * a CLNP header in the Data part. For an Error Report PDU this is
1062 * described in Section 7.9.6 of ITU X.233 (1997 E), also known as
1063 * ISO/IEC 8473-1:1998(E). It is not clear why in this code the same
1064 * applies to an Echo Response PDU, as the standard does not specify
1065 * the contents -- could be a proprietary extension or a bug. In either
1066 * case, if the Data part does not contain a CLNP header, its structure
1067 * is considered unknown and the decoding falls through to print the
1077 /* dump the PDU specific data */
1078 if (length
-(pptr
-optr
) > 0) {
1079 ND_PRINT("\n\t undecoded non-header data, length %u", length
-li
);
1080 print_unknown_data(ndo
, pptr
, "\n\t ", length
- (int)(pptr
- optr
));
1087 nd_print_trunc(ndo
);
1093 #define ESIS_PDU_REDIRECT 6
1094 #define ESIS_PDU_ESH 2
1095 #define ESIS_PDU_ISH 4
1097 static const struct tok esis_pdu_values
[] = {
1098 { ESIS_PDU_REDIRECT
, "redirect"},
1099 { ESIS_PDU_ESH
, "ESH"},
1100 { ESIS_PDU_ISH
, "ISH"},
1104 struct esis_header_t
{
1106 nd_uint8_t length_indicator
;
1110 nd_uint16_t holdtime
;
1115 esis_print(netdissect_options
*ndo
,
1116 const uint8_t *pptr
, u_int length
)
1118 const uint8_t *optr
;
1119 u_int li
, version
, esis_pdu_type
, source_address_length
, source_address_number
;
1120 const struct esis_header_t
*esis_header
;
1122 ndo
->ndo_protocol
= "esis";
1123 if (!ndo
->ndo_eflag
)
1127 ND_PRINT(ndo
->ndo_qflag
? "bad pkt!" : "no header at all!");
1131 esis_header
= (const struct esis_header_t
*) pptr
;
1132 ND_TCHECK_SIZE(esis_header
);
1133 li
= GET_U_1(esis_header
->length_indicator
);
1137 * Sanity checking of the header.
1140 if (GET_U_1(esis_header
->nlpid
) != NLPID_ESIS
) {
1141 ND_PRINT(" nlpid 0x%02x packet not supported",
1142 GET_U_1(esis_header
->nlpid
));
1146 version
= GET_U_1(esis_header
->version
);
1147 if (version
!= ESIS_VERSION
) {
1148 ND_PRINT(" version %u packet not supported", version
);
1153 ND_PRINT(" length indicator(%u) > PDU size (%u)!", li
, length
);
1157 if (li
< sizeof(struct esis_header_t
) + 2) {
1158 ND_PRINT(" length indicator %u < min PDU size:", li
);
1159 while (pptr
< ndo
->ndo_snapend
) {
1160 ND_PRINT("%02X", GET_U_1(pptr
));
1166 esis_pdu_type
= GET_U_1(esis_header
->type
) & ESIS_PDU_TYPE_MASK
;
1168 if (ndo
->ndo_vflag
< 1) {
1169 ND_PRINT("%s%s, length %u",
1170 ndo
->ndo_eflag
? "" : ", ",
1171 tok2str(esis_pdu_values
,"unknown type (%u)",esis_pdu_type
),
1175 ND_PRINT("%slength %u\n\t%s (%u)",
1176 ndo
->ndo_eflag
? "" : ", ",
1178 tok2str(esis_pdu_values
,"unknown type: %u", esis_pdu_type
),
1181 ND_PRINT(", v: %u%s", version
, version
== ESIS_VERSION
? "" : "unsupported" );
1182 ND_PRINT(", checksum: 0x%04x", GET_BE_U_2(esis_header
->cksum
));
1184 osi_print_cksum(ndo
, pptr
, GET_BE_U_2(esis_header
->cksum
), 7,
1187 ND_PRINT(", holding time: %us, length indicator: %u",
1188 GET_BE_U_2(esis_header
->holdtime
), li
);
1190 if (ndo
->ndo_vflag
> 1)
1191 print_unknown_data(ndo
, optr
, "\n\t", sizeof(struct esis_header_t
));
1193 pptr
+= sizeof(struct esis_header_t
);
1194 li
-= sizeof(struct esis_header_t
);
1196 switch (esis_pdu_type
) {
1197 case ESIS_PDU_REDIRECT
: {
1198 const uint8_t *dst
, *snpa
, *neta
;
1199 u_int dstl
, snpal
, netal
;
1203 ND_PRINT(", bad redirect/li");
1206 dstl
= GET_U_1(pptr
);
1209 ND_TCHECK_LEN(pptr
, dstl
);
1211 ND_PRINT(", bad redirect/li");
1217 ND_PRINT("\n\t %s", isonsap_string(ndo
, dst
, dstl
));
1221 ND_PRINT(", bad redirect/li");
1224 snpal
= GET_U_1(pptr
);
1227 ND_TCHECK_LEN(pptr
, snpal
);
1229 ND_PRINT(", bad redirect/li");
1237 ND_PRINT(", bad redirect/li");
1240 netal
= GET_U_1(pptr
);
1242 ND_TCHECK_LEN(pptr
, netal
);
1244 ND_PRINT(", bad redirect/li");
1252 ND_PRINT("\n\t SNPA (length: %u): %s",
1254 etheraddr_string(ndo
, snpa
));
1256 ND_PRINT("\n\t SNPA (length: %u): %s",
1258 linkaddr_string(ndo
, snpa
, LINKADDR_OTHER
, snpal
));
1260 ND_PRINT("\n\t NET (length: %u) %s",
1262 isonsap_string(ndo
, neta
, netal
));
1269 ND_PRINT(", bad esh/li");
1272 source_address_number
= GET_U_1(pptr
);
1276 ND_PRINT("\n\t Number of Source Addresses: %u", source_address_number
);
1278 while (source_address_number
> 0) {
1281 ND_PRINT(", bad esh/li");
1284 source_address_length
= GET_U_1(pptr
);
1288 ND_TCHECK_LEN(pptr
, source_address_length
);
1289 if (li
< source_address_length
) {
1290 ND_PRINT(", bad esh/li");
1293 ND_PRINT("\n\t NET (length: %u): %s",
1294 source_address_length
,
1295 isonsap_string(ndo
, pptr
, source_address_length
));
1296 pptr
+= source_address_length
;
1297 li
-= source_address_length
;
1298 source_address_number
--;
1303 case ESIS_PDU_ISH
: {
1306 ND_PRINT(", bad ish/li");
1309 source_address_length
= GET_U_1(pptr
);
1312 ND_TCHECK_LEN(pptr
, source_address_length
);
1313 if (li
< source_address_length
) {
1314 ND_PRINT(", bad ish/li");
1317 ND_PRINT("\n\t NET (length: %u): %s", source_address_length
, isonsap_string(ndo
, pptr
, source_address_length
));
1318 pptr
+= source_address_length
;
1319 li
-= source_address_length
;
1324 if (ndo
->ndo_vflag
<= 1) {
1325 if (pptr
< ndo
->ndo_snapend
)
1326 print_unknown_data(ndo
, pptr
, "\n\t ", (int)(ndo
->ndo_snapend
- pptr
));
1331 /* now walk the options */
1334 const uint8_t *tptr
;
1337 ND_PRINT(", bad opts/li");
1342 opli
= GET_U_1(pptr
+ 1);
1346 ND_PRINT(", opt (%u) too long", op
);
1352 ND_PRINT("\n\t %s Option #%u, length %u, value: ",
1353 tok2str(esis_option_values
,"Unknown",op
),
1359 case ESIS_OPTION_ES_CONF_TIME
:
1362 ND_PRINT("%us", GET_BE_U_2(tptr
));
1364 ND_PRINT("(bad length)");
1367 case ESIS_OPTION_PROTOCOLS
:
1370 ND_PRINT("%s (0x%02x)",
1371 tok2str(nlpid_values
,
1375 if (opli
>1) /* further NPLIDs ? - put comma */
1383 * FIXME those are the defined Options that lack a decoder
1384 * you are welcome to contribute code ;-)
1387 case ESIS_OPTION_QOS_MAINTENANCE
:
1388 case ESIS_OPTION_SECURITY
:
1389 case ESIS_OPTION_PRIORITY
:
1390 case ESIS_OPTION_ADDRESS_MASK
:
1391 case ESIS_OPTION_SNPA_MASK
:
1394 print_unknown_data(ndo
, tptr
, "\n\t ", opli
);
1397 if (ndo
->ndo_vflag
> 1)
1398 print_unknown_data(ndo
, pptr
, "\n\t ", opli
);
1404 nd_print_trunc(ndo
);
1408 isis_print_mcid(netdissect_options
*ndo
,
1409 const struct isis_spb_mcid
*mcid
)
1413 ND_TCHECK_SIZE(mcid
);
1414 ND_PRINT("ID: %u, Name: ", GET_U_1(mcid
->format_id
));
1416 if (nd_printzp(ndo
, mcid
->name
, 32, ndo
->ndo_snapend
))
1419 ND_PRINT("\n\t Lvl: %u", GET_BE_U_2(mcid
->revision_lvl
));
1421 ND_PRINT(", Digest: ");
1424 ND_PRINT("%.2x ", mcid
->digest
[i
]);
1428 nd_print_trunc(ndo
);
1432 isis_print_mt_port_cap_subtlv(netdissect_options
*ndo
,
1433 const uint8_t *tptr
, u_int len
)
1435 u_int stlv_type
, stlv_len
;
1436 const struct isis_subtlv_spb_mcid
*subtlv_spb_mcid
;
1442 stlv_type
= GET_U_1(tptr
);
1443 stlv_len
= GET_U_1(tptr
+ 1);
1445 /* first lets see if we know the subTLVs name*/
1446 ND_PRINT("\n\t %s subTLV #%u, length: %u",
1447 tok2str(isis_mt_port_cap_subtlv_values
, "unknown", stlv_type
),
1452 /*len -= TLV_TYPE_LEN_OFFSET;*/
1455 /* Make sure the subTLV fits within the space left */
1457 goto subtlv_too_long
;
1458 /* Make sure the entire subTLV is in the captured data */
1459 ND_TCHECK_LEN(tptr
, stlv_len
);
1463 case ISIS_SUBTLV_SPB_MCID
:
1465 if (stlv_len
< ISIS_SUBTLV_SPB_MCID_MIN_LEN
)
1466 goto subtlv_too_short
;
1468 subtlv_spb_mcid
= (const struct isis_subtlv_spb_mcid
*)tptr
;
1470 ND_PRINT("\n\t MCID: ");
1471 isis_print_mcid(ndo
, &(subtlv_spb_mcid
->mcid
));
1473 /*tptr += SPB_MCID_MIN_LEN;
1474 len -= SPB_MCID_MIN_LEN; */
1476 ND_PRINT("\n\t AUX-MCID: ");
1477 isis_print_mcid(ndo
, &(subtlv_spb_mcid
->aux_mcid
));
1479 /*tptr += SPB_MCID_MIN_LEN;
1480 len -= SPB_MCID_MIN_LEN; */
1481 tptr
+= ISIS_SUBTLV_SPB_MCID_MIN_LEN
;
1482 len
-= ISIS_SUBTLV_SPB_MCID_MIN_LEN
;
1483 stlv_len
-= ISIS_SUBTLV_SPB_MCID_MIN_LEN
;
1488 case ISIS_SUBTLV_SPB_DIGEST
:
1490 if (stlv_len
< ISIS_SUBTLV_SPB_DIGEST_MIN_LEN
)
1491 goto subtlv_too_short
;
1493 ND_PRINT("\n\t RES: %u V: %u A: %u D: %u",
1494 (GET_U_1(tptr
) >> 5),
1495 ((GET_U_1(tptr
) >> 4) & 0x01),
1496 ((GET_U_1(tptr
) >> 2) & 0x03),
1497 (GET_U_1(tptr
) & 0x03));
1501 ND_PRINT("\n\t Digest: ");
1505 ND_PRINT("%08x ", GET_BE_U_4(tptr
));
1506 if (i
%4 == 0 && i
!= 8)
1511 len
-= ISIS_SUBTLV_SPB_DIGEST_MIN_LEN
;
1512 stlv_len
-= ISIS_SUBTLV_SPB_DIGEST_MIN_LEN
;
1517 case ISIS_SUBTLV_SPB_BVID
:
1519 while (stlv_len
!= 0)
1522 goto subtlv_too_short
;
1523 ND_PRINT("\n\t ECT: %08x",
1531 goto subtlv_too_short
;
1532 ND_PRINT(" BVID: %u, U:%01x M:%01x ",
1533 (GET_BE_U_2(tptr
) >> 4) ,
1534 (GET_BE_U_2(tptr
) >> 3) & 0x01,
1535 (GET_BE_U_2(tptr
) >> 2) & 0x01);
1554 nd_print_trunc(ndo
);
1558 ND_PRINT(" (> containing TLV length)");
1562 ND_PRINT(" (too short)");
1567 isis_print_mt_capability_subtlv(netdissect_options
*ndo
,
1568 const uint8_t *tptr
, u_int len
)
1570 u_int stlv_type
, stlv_len
, treecount
;
1575 stlv_type
= GET_U_1(tptr
);
1576 stlv_len
= GET_U_1(tptr
+ 1);
1580 /* first lets see if we know the subTLVs name*/
1581 ND_PRINT("\n\t %s subTLV #%u, length: %u",
1582 tok2str(isis_mt_capability_subtlv_values
, "unknown", stlv_type
),
1586 /* Make sure the subTLV fits within the space left */
1588 goto subtlv_too_long
;
1589 /* Make sure the entire subTLV is in the captured data */
1590 ND_TCHECK_LEN(tptr
, stlv_len
);
1594 case ISIS_SUBTLV_SPB_INSTANCE
:
1595 if (stlv_len
< ISIS_SUBTLV_SPB_INSTANCE_MIN_LEN
)
1596 goto subtlv_too_short
;
1598 ND_PRINT("\n\t CIST Root-ID: %08x", GET_BE_U_4(tptr
));
1600 ND_PRINT(" %08x", GET_BE_U_4(tptr
));
1602 ND_PRINT(", Path Cost: %08x", GET_BE_U_4(tptr
));
1604 ND_PRINT(", Prio: %u", GET_BE_U_2(tptr
));
1606 ND_PRINT("\n\t RES: %u",
1607 GET_BE_U_2(tptr
) >> 5);
1609 (GET_BE_U_2(tptr
) >> 4) & 0x0001);
1610 ND_PRINT(", SPSource-ID: %u",
1611 (GET_BE_U_4(tptr
) & 0x000fffff));
1613 ND_PRINT(", No of Trees: %x", GET_U_1(tptr
));
1615 treecount
= GET_U_1(tptr
);
1618 len
-= ISIS_SUBTLV_SPB_INSTANCE_MIN_LEN
;
1619 stlv_len
-= ISIS_SUBTLV_SPB_INSTANCE_MIN_LEN
;
1623 if (stlv_len
< ISIS_SUBTLV_SPB_INSTANCE_VLAN_TUPLE_LEN
)
1626 ND_PRINT("\n\t U:%u, M:%u, A:%u, RES:%u",
1628 (GET_U_1(tptr
) >> 6) & 0x01,
1629 (GET_U_1(tptr
) >> 5) & 0x01,
1630 (GET_U_1(tptr
) & 0x1f));
1634 ND_PRINT(", ECT: %08x", GET_BE_U_4(tptr
));
1638 ND_PRINT(", BVID: %u, SPVID: %u",
1639 (GET_BE_U_3(tptr
) >> 12) & 0x000fff,
1640 GET_BE_U_3(tptr
) & 0x000fff);
1643 len
-= ISIS_SUBTLV_SPB_INSTANCE_VLAN_TUPLE_LEN
;
1644 stlv_len
-= ISIS_SUBTLV_SPB_INSTANCE_VLAN_TUPLE_LEN
;
1650 case ISIS_SUBTLV_SPBM_SI
:
1654 ND_PRINT("\n\t BMAC: %08x", GET_BE_U_4(tptr
));
1656 ND_PRINT("%04x", GET_BE_U_2(tptr
));
1659 ND_PRINT(", RES: %u, VID: %u", GET_BE_U_2(tptr
) >> 12,
1660 (GET_BE_U_2(tptr
)) & 0x0fff);
1666 while (stlv_len
>= 4) {
1668 ND_PRINT("\n\t T: %u, R: %u, RES: %u, ISID: %u",
1669 (GET_BE_U_4(tptr
) >> 31),
1670 (GET_BE_U_4(tptr
) >> 30) & 0x01,
1671 (GET_BE_U_4(tptr
) >> 24) & 0x03f,
1672 (GET_BE_U_4(tptr
)) & 0x0ffffff);
1690 nd_print_trunc(ndo
);
1694 ND_PRINT(" (> containing TLV length)");
1698 ND_PRINT(" (too short)");
1702 /* shared routine for printing system, node and lsp-ids */
1704 isis_print_id(netdissect_options
*ndo
, const uint8_t *cp
, u_int id_len
)
1707 static char id
[sizeof("xxxx.xxxx.xxxx.yy-zz")];
1711 sysid_len
= SYSTEM_ID_LEN
;
1712 if (sysid_len
> id_len
)
1714 for (i
= 1; i
<= sysid_len
; i
++) {
1715 snprintf(pos
, sizeof(id
) - (pos
- id
), "%02x", GET_U_1(cp
));
1718 if (i
== 2 || i
== 4)
1721 if (id_len
>= NODE_ID_LEN
) {
1722 snprintf(pos
, sizeof(id
) - (pos
- id
), ".%02x", GET_U_1(cp
));
1726 if (id_len
== LSP_ID_LEN
)
1727 snprintf(pos
, sizeof(id
) - (pos
- id
), "-%02x", GET_U_1(cp
));
1731 /* print the 4-byte metric block which is common found in the old-style TLVs */
1733 isis_print_metric_block(netdissect_options
*ndo
,
1734 const struct isis_metric_block
*isis_metric_block
)
1736 ND_PRINT(", Default Metric: %u, %s",
1737 ISIS_LSP_TLV_METRIC_VALUE(isis_metric_block
->metric_default
),
1738 ISIS_LSP_TLV_METRIC_IE(isis_metric_block
->metric_default
) ? "External" : "Internal");
1739 if (!ISIS_LSP_TLV_METRIC_SUPPORTED(isis_metric_block
->metric_delay
))
1740 ND_PRINT("\n\t\t Delay Metric: %u, %s",
1741 ISIS_LSP_TLV_METRIC_VALUE(isis_metric_block
->metric_delay
),
1742 ISIS_LSP_TLV_METRIC_IE(isis_metric_block
->metric_delay
) ? "External" : "Internal");
1743 if (!ISIS_LSP_TLV_METRIC_SUPPORTED(isis_metric_block
->metric_expense
))
1744 ND_PRINT("\n\t\t Expense Metric: %u, %s",
1745 ISIS_LSP_TLV_METRIC_VALUE(isis_metric_block
->metric_expense
),
1746 ISIS_LSP_TLV_METRIC_IE(isis_metric_block
->metric_expense
) ? "External" : "Internal");
1747 if (!ISIS_LSP_TLV_METRIC_SUPPORTED(isis_metric_block
->metric_error
))
1748 ND_PRINT("\n\t\t Error Metric: %u, %s",
1749 ISIS_LSP_TLV_METRIC_VALUE(isis_metric_block
->metric_error
),
1750 ISIS_LSP_TLV_METRIC_IE(isis_metric_block
->metric_error
) ? "External" : "Internal");
1752 return(1); /* everything is ok */
1756 isis_print_tlv_ip_reach(netdissect_options
*ndo
,
1757 const uint8_t *cp
, const char *ident
, u_int length
)
1760 const struct isis_tlv_ip_reach
*tlv_ip_reach
;
1762 tlv_ip_reach
= (const struct isis_tlv_ip_reach
*)cp
;
1764 while (length
> 0) {
1765 if ((size_t)length
< sizeof(*tlv_ip_reach
)) {
1766 ND_PRINT("short IPv4 Reachability (%u vs %lu)",
1768 (unsigned long)sizeof(*tlv_ip_reach
));
1772 ND_TCHECK_SIZE(tlv_ip_reach
);
1774 prefix_len
= mask2plen(GET_IPV4_TO_HOST_ORDER(tlv_ip_reach
->mask
));
1776 if (prefix_len
== -1)
1777 ND_PRINT("%sIPv4 prefix: %s mask %s",
1779 ipaddr_string(ndo
, (tlv_ip_reach
->prefix
)),
1780 ipaddr_string(ndo
, (tlv_ip_reach
->mask
)));
1782 ND_PRINT("%sIPv4 prefix: %15s/%u",
1784 ipaddr_string(ndo
, (tlv_ip_reach
->prefix
)),
1787 ND_PRINT(", Distribution: %s, Metric: %u, %s",
1788 ISIS_LSP_TLV_METRIC_UPDOWN(tlv_ip_reach
->isis_metric_block
.metric_default
) ? "down" : "up",
1789 ISIS_LSP_TLV_METRIC_VALUE(tlv_ip_reach
->isis_metric_block
.metric_default
),
1790 ISIS_LSP_TLV_METRIC_IE(tlv_ip_reach
->isis_metric_block
.metric_default
) ? "External" : "Internal");
1792 if (!ISIS_LSP_TLV_METRIC_SUPPORTED(tlv_ip_reach
->isis_metric_block
.metric_delay
))
1793 ND_PRINT("%s Delay Metric: %u, %s",
1795 ISIS_LSP_TLV_METRIC_VALUE(tlv_ip_reach
->isis_metric_block
.metric_delay
),
1796 ISIS_LSP_TLV_METRIC_IE(tlv_ip_reach
->isis_metric_block
.metric_delay
) ? "External" : "Internal");
1798 if (!ISIS_LSP_TLV_METRIC_SUPPORTED(tlv_ip_reach
->isis_metric_block
.metric_expense
))
1799 ND_PRINT("%s Expense Metric: %u, %s",
1801 ISIS_LSP_TLV_METRIC_VALUE(tlv_ip_reach
->isis_metric_block
.metric_expense
),
1802 ISIS_LSP_TLV_METRIC_IE(tlv_ip_reach
->isis_metric_block
.metric_expense
) ? "External" : "Internal");
1804 if (!ISIS_LSP_TLV_METRIC_SUPPORTED(tlv_ip_reach
->isis_metric_block
.metric_error
))
1805 ND_PRINT("%s Error Metric: %u, %s",
1807 ISIS_LSP_TLV_METRIC_VALUE(tlv_ip_reach
->isis_metric_block
.metric_error
),
1808 ISIS_LSP_TLV_METRIC_IE(tlv_ip_reach
->isis_metric_block
.metric_error
) ? "External" : "Internal");
1810 length
-= sizeof(struct isis_tlv_ip_reach
);
1819 * this is the common IP-REACH subTLV decoder it is called
1820 * from various EXTD-IP REACH TLVs (135,235,236,237)
1824 isis_print_ip_reach_subtlv(netdissect_options
*ndo
,
1825 const uint8_t *tptr
, u_int subt
, u_int subl
,
1828 /* first lets see if we know the subTLVs name*/
1829 ND_PRINT("%s%s subTLV #%u, length: %u",
1830 ident
, tok2str(isis_ext_ip_reach_subtlv_values
, "unknown", subt
),
1833 ND_TCHECK_LEN(tptr
, subl
);
1836 case ISIS_SUBTLV_EXTD_IP_REACH_MGMT_PREFIX_COLOR
: /* fall through */
1837 case ISIS_SUBTLV_EXTD_IP_REACH_ADMIN_TAG32
:
1839 ND_PRINT(", 0x%08x (=%u)",
1846 case ISIS_SUBTLV_EXTD_IP_REACH_ADMIN_TAG64
:
1848 ND_PRINT(", 0x%08x%08x",
1850 GET_BE_U_4(tptr
+ 4));
1856 if (!print_unknown_data(ndo
, tptr
, "\n\t\t ", subl
))
1863 nd_print_trunc(ndo
);
1868 * this is the common IS-REACH decoder it is called
1869 * from various EXTD-IS REACH style TLVs (22,24,222)
1873 isis_print_ext_is_reach(netdissect_options
*ndo
,
1874 const uint8_t *tptr
, const char *ident
, u_int tlv_type
,
1875 u_int tlv_remaining
)
1877 char ident_buffer
[20];
1878 u_int subtlv_type
,subtlv_len
,subtlv_sum_len
;
1879 int proc_bytes
= 0; /* how many bytes did we process ? */
1880 u_int te_class
,priority_level
,gmpls_switch_cap
;
1881 union { /* int to float conversion buffer for several subTLVs */
1886 ND_TCHECK_LEN(tptr
, NODE_ID_LEN
);
1887 if (tlv_remaining
< NODE_ID_LEN
)
1890 ND_PRINT("%sIS Neighbor: %s", ident
, isis_print_id(ndo
, tptr
, NODE_ID_LEN
));
1892 tlv_remaining
-=NODE_ID_LEN
;
1893 proc_bytes
+=NODE_ID_LEN
;
1895 if (tlv_type
!= ISIS_TLV_IS_ALIAS_ID
) { /* the Alias TLV Metric field is implicit 0 */
1897 if (tlv_remaining
< 3)
1899 ND_PRINT(", Metric: %u", GET_BE_U_3(tptr
));
1906 if (tlv_remaining
< 1)
1908 subtlv_sum_len
=GET_U_1(tptr
); /* read out subTLV length */
1912 ND_PRINT(", %ssub-TLVs present",subtlv_sum_len
? "" : "no ");
1913 if (subtlv_sum_len
) {
1914 ND_PRINT(" (%u)", subtlv_sum_len
);
1915 /* prepend the indent string */
1916 snprintf(ident_buffer
, sizeof(ident_buffer
), "%s ",ident
);
1917 ident
= ident_buffer
;
1918 while (subtlv_sum_len
!= 0) {
1920 if (tlv_remaining
< 2) {
1921 ND_PRINT("%sRemaining data in TLV shorter than a subTLV header",ident
);
1922 proc_bytes
+= tlv_remaining
;
1925 if (subtlv_sum_len
< 2) {
1926 ND_PRINT("%sRemaining data in subTLVs shorter than a subTLV header",ident
);
1927 proc_bytes
+= subtlv_sum_len
;
1930 subtlv_type
=GET_U_1(tptr
);
1931 subtlv_len
=GET_U_1(tptr
+ 1);
1934 subtlv_sum_len
-= 2;
1936 ND_PRINT("%s%s subTLV #%u, length: %u",
1937 ident
, tok2str(isis_ext_is_reach_subtlv_values
, "unknown", subtlv_type
),
1938 subtlv_type
, subtlv_len
);
1940 if (subtlv_sum_len
< subtlv_len
) {
1941 ND_PRINT(" (remaining data in subTLVs shorter than the current subTLV)");
1942 proc_bytes
+= subtlv_sum_len
;
1946 if (tlv_remaining
< subtlv_len
) {
1947 ND_PRINT(" (> remaining tlv length)");
1948 proc_bytes
+= tlv_remaining
;
1952 ND_TCHECK_LEN(tptr
, subtlv_len
);
1954 switch(subtlv_type
) {
1955 case ISIS_SUBTLV_EXT_IS_REACH_ADMIN_GROUP
:
1956 case ISIS_SUBTLV_EXT_IS_REACH_LINK_LOCAL_REMOTE_ID
:
1957 case ISIS_SUBTLV_EXT_IS_REACH_LINK_REMOTE_ID
:
1958 if (subtlv_len
>= 4) {
1959 ND_PRINT(", 0x%08x", GET_BE_U_4(tptr
));
1960 if (subtlv_len
== 8) /* rfc4205 */
1961 ND_PRINT(", 0x%08x", GET_BE_U_4(tptr
+ 4));
1964 case ISIS_SUBTLV_EXT_IS_REACH_IPV4_INTF_ADDR
:
1965 case ISIS_SUBTLV_EXT_IS_REACH_IPV4_NEIGHBOR_ADDR
:
1966 if (subtlv_len
>= sizeof(nd_ipv4
))
1967 ND_PRINT(", %s", ipaddr_string(ndo
, tptr
));
1969 case ISIS_SUBTLV_EXT_IS_REACH_MAX_LINK_BW
:
1970 case ISIS_SUBTLV_EXT_IS_REACH_RESERVABLE_BW
:
1971 if (subtlv_len
>= 4) {
1972 bw
.i
= GET_BE_U_4(tptr
);
1973 ND_PRINT(", %.3f Mbps", bw
.f
* 8 / 1000000);
1976 case ISIS_SUBTLV_EXT_IS_REACH_UNRESERVED_BW
:
1977 if (subtlv_len
>= 32) {
1978 for (te_class
= 0; te_class
< 8; te_class
++) {
1979 bw
.i
= GET_BE_U_4(tptr
);
1980 ND_PRINT("%s TE-Class %u: %.3f Mbps",
1983 bw
.f
* 8 / 1000000);
1986 subtlv_sum_len
-= 4;
1991 case ISIS_SUBTLV_EXT_IS_REACH_BW_CONSTRAINTS
: /* fall through */
1992 case ISIS_SUBTLV_EXT_IS_REACH_BW_CONSTRAINTS_OLD
:
1993 if (subtlv_len
== 0)
1995 ND_PRINT("%sBandwidth Constraints Model ID: %s (%u)",
1997 tok2str(diffserv_te_bc_values
, "unknown", GET_U_1(tptr
)),
2003 /* decode BCs until the subTLV ends */
2004 for (te_class
= 0; subtlv_len
!= 0; te_class
++) {
2007 bw
.i
= GET_BE_U_4(tptr
);
2008 ND_PRINT("%s Bandwidth constraint CT%u: %.3f Mbps",
2011 bw
.f
* 8 / 1000000);
2014 subtlv_sum_len
-= 4;
2018 case ISIS_SUBTLV_EXT_IS_REACH_TE_METRIC
:
2019 if (subtlv_len
>= 3)
2020 ND_PRINT(", %u", GET_BE_U_3(tptr
));
2022 case ISIS_SUBTLV_EXT_IS_REACH_LINK_ATTRIBUTE
:
2023 if (subtlv_len
== 2) {
2024 ND_PRINT(", [ %s ] (0x%04x)",
2025 bittok2str(isis_subtlv_link_attribute_values
,
2031 case ISIS_SUBTLV_EXT_IS_REACH_LINK_PROTECTION_TYPE
:
2032 if (subtlv_len
>= 2) {
2033 ND_PRINT(", %s, Priority %u",
2034 bittok2str(gmpls_link_prot_values
, "none", GET_U_1(tptr
)),
2038 case ISIS_SUBTLV_SPB_METRIC
:
2039 if (subtlv_len
>= 6) {
2040 ND_PRINT(", LM: %u", GET_BE_U_3(tptr
));
2043 subtlv_sum_len
-= 3;
2045 ND_PRINT(", P: %u", GET_U_1(tptr
));
2050 ND_PRINT(", P-ID: %u", GET_BE_U_2(tptr
));
2053 case ISIS_SUBTLV_EXT_IS_REACH_INTF_SW_CAP_DESCR
:
2054 if (subtlv_len
>= 36) {
2055 gmpls_switch_cap
= GET_U_1(tptr
);
2056 ND_PRINT("%s Interface Switching Capability:%s",
2058 tok2str(gmpls_switch_cap_values
, "Unknown", gmpls_switch_cap
));
2059 ND_PRINT(", LSP Encoding: %s",
2060 tok2str(gmpls_encoding_values
, "Unknown", GET_U_1((tptr
+ 1))));
2063 subtlv_sum_len
-= 4;
2065 ND_PRINT("%s Max LSP Bandwidth:", ident
);
2066 for (priority_level
= 0; priority_level
< 8; priority_level
++) {
2067 bw
.i
= GET_BE_U_4(tptr
);
2068 ND_PRINT("%s priority level %u: %.3f Mbps",
2071 bw
.f
* 8 / 1000000);
2074 subtlv_sum_len
-= 4;
2077 switch (gmpls_switch_cap
) {
2084 bw
.i
= GET_BE_U_4(tptr
);
2085 ND_PRINT("%s Min LSP Bandwidth: %.3f Mbps", ident
, bw
.f
* 8 / 1000000);
2086 ND_PRINT("%s Interface MTU: %u", ident
,
2087 GET_BE_U_2(tptr
+ 4));
2092 bw
.i
= GET_BE_U_4(tptr
);
2093 ND_PRINT("%s Min LSP Bandwidth: %.3f Mbps", ident
, bw
.f
* 8 / 1000000);
2094 ND_PRINT("%s Indication %s", ident
,
2095 tok2str(gmpls_switch_cap_tsc_indication_values
, "Unknown (%u)", GET_U_1((tptr
+ 4))));
2098 /* there is some optional stuff left to decode but this is as of yet
2099 not specified so just lets hexdump what is left */
2100 if (subtlv_len
!= 0) {
2101 if (!print_unknown_data(ndo
, tptr
, "\n\t\t ", subtlv_len
))
2108 if (!print_unknown_data(ndo
, tptr
, "\n\t\t ", subtlv_len
))
2114 tlv_remaining
-= subtlv_len
;
2115 subtlv_sum_len
-= subtlv_len
;
2116 proc_bytes
+= subtlv_len
;
2126 * this is the common Multi Topology ID decoder
2127 * it is called from various MT-TLVs (222,229,235,237)
2131 isis_print_mtid(netdissect_options
*ndo
,
2132 const uint8_t *tptr
, const char *ident
, u_int tlv_remaining
)
2134 if (tlv_remaining
< 2)
2140 tok2str(isis_mt_values
,
2141 "Reserved for IETF Consensus",
2142 ISIS_MASK_MTID(GET_BE_U_2(tptr
))));
2144 ND_PRINT(" Topology (0x%03x), Flags: [%s]",
2145 ISIS_MASK_MTID(GET_BE_U_2(tptr
)),
2146 bittok2str(isis_mt_flag_values
, "none",ISIS_MASK_MTFLAGS(GET_BE_U_2(tptr
))));
2154 * this is the common extended IP reach decoder
2155 * it is called from TLVs (135,235,236,237)
2156 * we process the TLV and optional subTLVs and return
2157 * the amount of processed bytes
2161 isis_print_extd_ip_reach(netdissect_options
*ndo
,
2162 const uint8_t *tptr
, const char *ident
, uint16_t afi
)
2164 char ident_buffer
[20];
2165 uint8_t prefix
[sizeof(nd_ipv6
)]; /* shared copy buffer for IPv4 and IPv6 prefixes */
2166 u_int metric
, status_byte
, bit_length
, byte_length
, sublen
, processed
, subtlvtype
, subtlvlen
;
2169 metric
= GET_BE_U_4(tptr
);
2173 if (afi
== AF_INET
) {
2175 status_byte
=GET_U_1(tptr
);
2177 bit_length
= status_byte
&0x3f;
2178 if (bit_length
> 32) {
2179 ND_PRINT("%sIPv4 prefix: bad bit length %u",
2185 } else if (afi
== AF_INET6
) {
2187 status_byte
=GET_U_1(tptr
);
2188 bit_length
=GET_U_1(tptr
+ 1);
2189 if (bit_length
> 128) {
2190 ND_PRINT("%sIPv6 prefix: bad bit length %u",
2198 return (0); /* somebody is fooling us */
2200 byte_length
= (bit_length
+ 7) / 8; /* prefix has variable length encoding */
2202 ND_TCHECK_LEN(tptr
, byte_length
);
2203 memset(prefix
, 0, sizeof(prefix
)); /* clear the copy buffer */
2204 memcpy(prefix
,tptr
,byte_length
); /* copy as much as is stored in the TLV */
2206 processed
+=byte_length
;
2209 ND_PRINT("%sIPv4 prefix: %15s/%u",
2211 ipaddr_string(ndo
, prefix
),
2213 else if (afi
== AF_INET6
)
2214 ND_PRINT("%sIPv6 prefix: %s/%u",
2216 ip6addr_string(ndo
, prefix
),
2219 ND_PRINT(", Distribution: %s, Metric: %u",
2220 ISIS_MASK_TLV_EXTD_IP_UPDOWN(status_byte
) ? "down" : "up",
2223 if (afi
== AF_INET
&& ISIS_MASK_TLV_EXTD_IP_SUBTLV(status_byte
))
2224 ND_PRINT(", sub-TLVs present");
2225 else if (afi
== AF_INET6
)
2227 ISIS_MASK_TLV_EXTD_IP6_IE(status_byte
) ? "External" : "Internal",
2228 ISIS_MASK_TLV_EXTD_IP6_SUBTLV(status_byte
) ? ", sub-TLVs present" : "");
2230 if ((afi
== AF_INET
&& ISIS_MASK_TLV_EXTD_IP_SUBTLV(status_byte
))
2231 || (afi
== AF_INET6
&& ISIS_MASK_TLV_EXTD_IP6_SUBTLV(status_byte
))
2233 /* assume that one prefix can hold more
2234 than one subTLV - therefore the first byte must reflect
2235 the aggregate bytecount of the subTLVs for this prefix
2238 sublen
=GET_U_1(tptr
);
2240 processed
+=sublen
+1;
2241 ND_PRINT(" (%u)", sublen
); /* print out subTLV length */
2245 subtlvtype
=GET_U_1(tptr
);
2246 subtlvlen
=GET_U_1(tptr
+ 1);
2248 /* prepend the indent string */
2249 snprintf(ident_buffer
, sizeof(ident_buffer
), "%s ",ident
);
2250 if (!isis_print_ip_reach_subtlv(ndo
, tptr
, subtlvtype
, subtlvlen
, ident_buffer
))
2253 sublen
-=(subtlvlen
+2);
2262 * Clear checksum and lifetime prior to signature verification.
2265 isis_clear_checksum_lifetime(void *header
)
2267 struct isis_lsp_header
*header_lsp
= (struct isis_lsp_header
*) header
;
2269 header_lsp
->checksum
[0] = 0;
2270 header_lsp
->checksum
[1] = 0;
2271 header_lsp
->remaining_lifetime
[0] = 0;
2272 header_lsp
->remaining_lifetime
[1] = 0;
2277 * Decode IS-IS packets. Return 0 on error.
2281 isis_print(netdissect_options
*ndo
,
2282 const uint8_t *p
, u_int length
)
2284 const struct isis_common_header
*isis_header
;
2286 const struct isis_iih_lan_header
*header_iih_lan
;
2287 const struct isis_iih_ptp_header
*header_iih_ptp
;
2288 const struct isis_lsp_header
*header_lsp
;
2289 const struct isis_csnp_header
*header_csnp
;
2290 const struct isis_psnp_header
*header_psnp
;
2292 const struct isis_tlv_lsp
*tlv_lsp
;
2293 const struct isis_tlv_ptp_adj
*tlv_ptp_adj
;
2294 const struct isis_tlv_is_reach
*tlv_is_reach
;
2295 const struct isis_tlv_es_reach
*tlv_es_reach
;
2297 uint8_t version
, pdu_version
, fixed_len
;
2298 uint8_t pdu_type
, pdu_max_area
, max_area
, pdu_id_length
, id_length
, tlv_type
, tlv_len
, tlen
, alen
, lan_alen
, prefix_len
;
2299 u_int ext_is_len
, ext_ip_len
;
2301 uint8_t isis_subtlv_idrp
;
2302 const uint8_t *optr
, *pptr
, *tptr
;
2304 u_short pdu_len
, key_id
;
2307 uint8_t num_system_ids
;
2310 ndo
->ndo_protocol
= "isis";
2312 optr
= p
; /* initialize the _o_riginal pointer to the packet start -
2313 need it for parsing the checksum TLV and authentication
2315 isis_header
= (const struct isis_common_header
*)p
;
2316 ND_TCHECK_SIZE(isis_header
);
2317 if (length
< ISIS_COMMON_HEADER_SIZE
)
2319 pptr
= p
+(ISIS_COMMON_HEADER_SIZE
);
2320 header_iih_lan
= (const struct isis_iih_lan_header
*)pptr
;
2321 header_iih_ptp
= (const struct isis_iih_ptp_header
*)pptr
;
2322 header_lsp
= (const struct isis_lsp_header
*)pptr
;
2323 header_csnp
= (const struct isis_csnp_header
*)pptr
;
2324 header_psnp
= (const struct isis_psnp_header
*)pptr
;
2326 if (!ndo
->ndo_eflag
)
2330 * Sanity checking of the header.
2333 version
= GET_U_1(isis_header
->version
);
2334 if (version
!= ISIS_VERSION
) {
2335 ND_PRINT("version %u packet not supported", version
);
2339 pdu_id_length
= GET_U_1(isis_header
->id_length
);
2340 if ((pdu_id_length
!= SYSTEM_ID_LEN
) && (pdu_id_length
!= 0)) {
2341 ND_PRINT("system ID length of %u is not supported",
2346 pdu_version
= GET_U_1(isis_header
->pdu_version
);
2347 if (pdu_version
!= ISIS_VERSION
) {
2348 ND_PRINT("version %u packet not supported", pdu_version
);
2352 fixed_len
= GET_U_1(isis_header
->fixed_len
);
2353 if (length
< fixed_len
) {
2354 ND_PRINT("fixed header length %u > packet length %u", fixed_len
, length
);
2358 if (fixed_len
< ISIS_COMMON_HEADER_SIZE
) {
2359 ND_PRINT("fixed header length %u < minimum header size %u", fixed_len
, (u_int
)ISIS_COMMON_HEADER_SIZE
);
2363 pdu_max_area
= GET_U_1(isis_header
->max_area
);
2364 switch(pdu_max_area
) {
2366 max_area
= 3; /* silly shit */
2369 ND_PRINT("bad packet -- 255 areas");
2372 max_area
= pdu_max_area
;
2376 switch(pdu_id_length
) {
2378 id_length
= 6; /* silly shit again */
2380 case 1: /* 1-8 are valid sys-ID lengths */
2388 id_length
= pdu_id_length
;
2391 id_length
= 0; /* entirely useless */
2394 id_length
= pdu_id_length
;
2398 /* toss any non 6-byte sys-ID len PDUs */
2399 if (id_length
!= 6 ) {
2400 ND_PRINT("bad packet -- illegal sys-ID length (%u)", id_length
);
2404 pdu_type
= GET_U_1(isis_header
->pdu_type
);
2406 /* in non-verbose mode print the basic PDU Type plus PDU specific brief information*/
2407 if (ndo
->ndo_vflag
== 0) {
2409 ndo
->ndo_eflag
? "" : ", ",
2410 tok2str(isis_pdu_values
, "unknown PDU-Type %u", pdu_type
));
2412 /* ok they seem to want to know everything - lets fully decode it */
2413 ND_PRINT("%slength %u", ndo
->ndo_eflag
? "" : ", ", length
);
2415 ND_PRINT("\n\t%s, hlen: %u, v: %u, pdu-v: %u, sys-id-len: %u (%u), max-area: %u (%u)",
2416 tok2str(isis_pdu_values
,
2427 if (ndo
->ndo_vflag
> 1) {
2428 if (!print_unknown_data(ndo
, optr
, "\n\t", 8)) /* provide the _o_riginal pointer */
2429 return (0); /* for optionally debugging the common header */
2435 case ISIS_PDU_L1_LAN_IIH
:
2436 case ISIS_PDU_L2_LAN_IIH
:
2437 if (fixed_len
!= (ISIS_COMMON_HEADER_SIZE
+ISIS_IIH_LAN_HEADER_SIZE
)) {
2438 ND_PRINT(", bogus fixed header length %u should be %lu",
2439 fixed_len
, (unsigned long)(ISIS_COMMON_HEADER_SIZE
+ISIS_IIH_LAN_HEADER_SIZE
));
2442 ND_TCHECK_SIZE(header_iih_lan
);
2443 if (length
< ISIS_COMMON_HEADER_SIZE
+ISIS_IIH_LAN_HEADER_SIZE
)
2445 if (ndo
->ndo_vflag
== 0) {
2446 ND_PRINT(", src-id %s",
2447 isis_print_id(ndo
, header_iih_lan
->source_id
, SYSTEM_ID_LEN
));
2448 ND_PRINT(", lan-id %s, prio %u",
2449 isis_print_id(ndo
, header_iih_lan
->lan_id
,NODE_ID_LEN
),
2450 GET_U_1(header_iih_lan
->priority
));
2451 ND_PRINT(", length %u", length
);
2454 pdu_len
=GET_BE_U_2(header_iih_lan
->pdu_len
);
2455 if (packet_len
>pdu_len
) {
2456 packet_len
=pdu_len
; /* do TLV decoding as long as it makes sense */
2460 ND_PRINT("\n\t source-id: %s, holding time: %us, Flags: [%s]",
2461 isis_print_id(ndo
, header_iih_lan
->source_id
,SYSTEM_ID_LEN
),
2462 GET_BE_U_2(header_iih_lan
->holding_time
),
2463 tok2str(isis_iih_circuit_type_values
,
2464 "unknown circuit type 0x%02x",
2465 GET_U_1(header_iih_lan
->circuit_type
)));
2467 ND_PRINT("\n\t lan-id: %s, Priority: %u, PDU length: %u",
2468 isis_print_id(ndo
, header_iih_lan
->lan_id
, NODE_ID_LEN
),
2469 GET_U_1(header_iih_lan
->priority
) & ISIS_LAN_PRIORITY_MASK
,
2472 if (ndo
->ndo_vflag
> 1) {
2473 if (!print_unknown_data(ndo
, pptr
, "\n\t ", ISIS_IIH_LAN_HEADER_SIZE
))
2477 packet_len
-= (ISIS_COMMON_HEADER_SIZE
+ISIS_IIH_LAN_HEADER_SIZE
);
2478 pptr
= p
+ (ISIS_COMMON_HEADER_SIZE
+ISIS_IIH_LAN_HEADER_SIZE
);
2481 case ISIS_PDU_PTP_IIH
:
2482 if (fixed_len
!= (ISIS_COMMON_HEADER_SIZE
+ISIS_IIH_PTP_HEADER_SIZE
)) {
2483 ND_PRINT(", bogus fixed header length %u should be %lu",
2484 fixed_len
, (unsigned long)(ISIS_COMMON_HEADER_SIZE
+ISIS_IIH_PTP_HEADER_SIZE
));
2487 ND_TCHECK_SIZE(header_iih_ptp
);
2488 if (length
< ISIS_COMMON_HEADER_SIZE
+ISIS_IIH_PTP_HEADER_SIZE
)
2490 if (ndo
->ndo_vflag
== 0) {
2491 ND_PRINT(", src-id %s", isis_print_id(ndo
, header_iih_ptp
->source_id
, SYSTEM_ID_LEN
));
2492 ND_PRINT(", length %u", length
);
2495 pdu_len
=GET_BE_U_2(header_iih_ptp
->pdu_len
);
2496 if (packet_len
>pdu_len
) {
2497 packet_len
=pdu_len
; /* do TLV decoding as long as it makes sense */
2501 ND_PRINT("\n\t source-id: %s, holding time: %us, Flags: [%s]",
2502 isis_print_id(ndo
, header_iih_ptp
->source_id
,SYSTEM_ID_LEN
),
2503 GET_BE_U_2(header_iih_ptp
->holding_time
),
2504 tok2str(isis_iih_circuit_type_values
,
2505 "unknown circuit type 0x%02x",
2506 GET_U_1(header_iih_ptp
->circuit_type
)));
2508 ND_PRINT("\n\t circuit-id: 0x%02x, PDU length: %u",
2509 GET_U_1(header_iih_ptp
->circuit_id
),
2512 if (ndo
->ndo_vflag
> 1) {
2513 if (!print_unknown_data(ndo
, pptr
, "\n\t ", ISIS_IIH_PTP_HEADER_SIZE
))
2517 packet_len
-= (ISIS_COMMON_HEADER_SIZE
+ISIS_IIH_PTP_HEADER_SIZE
);
2518 pptr
= p
+ (ISIS_COMMON_HEADER_SIZE
+ISIS_IIH_PTP_HEADER_SIZE
);
2521 case ISIS_PDU_L1_LSP
:
2522 case ISIS_PDU_L2_LSP
:
2523 if (fixed_len
!= (ISIS_COMMON_HEADER_SIZE
+ISIS_LSP_HEADER_SIZE
)) {
2524 ND_PRINT(", bogus fixed header length %u should be %lu",
2525 fixed_len
, (unsigned long)ISIS_LSP_HEADER_SIZE
);
2528 ND_TCHECK_SIZE(header_lsp
);
2529 if (length
< ISIS_COMMON_HEADER_SIZE
+ISIS_LSP_HEADER_SIZE
)
2531 if (ndo
->ndo_vflag
== 0) {
2532 ND_PRINT(", lsp-id %s, seq 0x%08x, lifetime %5us",
2533 isis_print_id(ndo
, header_lsp
->lsp_id
, LSP_ID_LEN
),
2534 GET_BE_U_4(header_lsp
->sequence_number
),
2535 GET_BE_U_2(header_lsp
->remaining_lifetime
));
2536 ND_PRINT(", length %u", length
);
2539 pdu_len
=GET_BE_U_2(header_lsp
->pdu_len
);
2540 if (packet_len
>pdu_len
) {
2541 packet_len
=pdu_len
; /* do TLV decoding as long as it makes sense */
2545 ND_PRINT("\n\t lsp-id: %s, seq: 0x%08x, lifetime: %5us\n\t chksum: 0x%04x",
2546 isis_print_id(ndo
, header_lsp
->lsp_id
, LSP_ID_LEN
),
2547 GET_BE_U_4(header_lsp
->sequence_number
),
2548 GET_BE_U_2(header_lsp
->remaining_lifetime
),
2549 GET_BE_U_2(header_lsp
->checksum
));
2551 osi_print_cksum(ndo
, (const uint8_t *)header_lsp
->lsp_id
,
2552 GET_BE_U_2(header_lsp
->checksum
),
2555 ND_PRINT(", PDU length: %u, Flags: [ %s",
2557 ISIS_MASK_LSP_OL_BIT(header_lsp
->typeblock
) ? "Overload bit set, " : "");
2559 if (ISIS_MASK_LSP_ATT_BITS(header_lsp
->typeblock
)) {
2560 ND_PRINT("%s", ISIS_MASK_LSP_ATT_DEFAULT_BIT(header_lsp
->typeblock
) ? "default " : "");
2561 ND_PRINT("%s", ISIS_MASK_LSP_ATT_DELAY_BIT(header_lsp
->typeblock
) ? "delay " : "");
2562 ND_PRINT("%s", ISIS_MASK_LSP_ATT_EXPENSE_BIT(header_lsp
->typeblock
) ? "expense " : "");
2563 ND_PRINT("%s", ISIS_MASK_LSP_ATT_ERROR_BIT(header_lsp
->typeblock
) ? "error " : "");
2564 ND_PRINT("ATT bit set, ");
2566 ND_PRINT("%s", ISIS_MASK_LSP_PARTITION_BIT(header_lsp
->typeblock
) ? "P bit set, " : "");
2567 ND_PRINT("%s ]", tok2str(isis_lsp_istype_values
, "Unknown(0x%x)",
2568 ISIS_MASK_LSP_ISTYPE_BITS(header_lsp
->typeblock
)));
2570 if (ndo
->ndo_vflag
> 1) {
2571 if (!print_unknown_data(ndo
, pptr
, "\n\t ", ISIS_LSP_HEADER_SIZE
))
2575 packet_len
-= (ISIS_COMMON_HEADER_SIZE
+ISIS_LSP_HEADER_SIZE
);
2576 pptr
= p
+ (ISIS_COMMON_HEADER_SIZE
+ISIS_LSP_HEADER_SIZE
);
2579 case ISIS_PDU_L1_CSNP
:
2580 case ISIS_PDU_L2_CSNP
:
2581 if (fixed_len
!= (ISIS_COMMON_HEADER_SIZE
+ISIS_CSNP_HEADER_SIZE
)) {
2582 ND_PRINT(", bogus fixed header length %u should be %lu",
2583 fixed_len
, (unsigned long)(ISIS_COMMON_HEADER_SIZE
+ISIS_CSNP_HEADER_SIZE
));
2586 ND_TCHECK_SIZE(header_csnp
);
2587 if (length
< ISIS_COMMON_HEADER_SIZE
+ISIS_CSNP_HEADER_SIZE
)
2589 if (ndo
->ndo_vflag
== 0) {
2590 ND_PRINT(", src-id %s", isis_print_id(ndo
, header_csnp
->source_id
, NODE_ID_LEN
));
2591 ND_PRINT(", length %u", length
);
2594 pdu_len
=GET_BE_U_2(header_csnp
->pdu_len
);
2595 if (packet_len
>pdu_len
) {
2596 packet_len
=pdu_len
; /* do TLV decoding as long as it makes sense */
2600 ND_PRINT("\n\t source-id: %s, PDU length: %u",
2601 isis_print_id(ndo
, header_csnp
->source_id
, NODE_ID_LEN
),
2603 ND_PRINT("\n\t start lsp-id: %s",
2604 isis_print_id(ndo
, header_csnp
->start_lsp_id
, LSP_ID_LEN
));
2605 ND_PRINT("\n\t end lsp-id: %s",
2606 isis_print_id(ndo
, header_csnp
->end_lsp_id
, LSP_ID_LEN
));
2608 if (ndo
->ndo_vflag
> 1) {
2609 if (!print_unknown_data(ndo
, pptr
, "\n\t ", ISIS_CSNP_HEADER_SIZE
))
2613 packet_len
-= (ISIS_COMMON_HEADER_SIZE
+ISIS_CSNP_HEADER_SIZE
);
2614 pptr
= p
+ (ISIS_COMMON_HEADER_SIZE
+ISIS_CSNP_HEADER_SIZE
);
2617 case ISIS_PDU_L1_PSNP
:
2618 case ISIS_PDU_L2_PSNP
:
2619 if (fixed_len
!= (ISIS_COMMON_HEADER_SIZE
+ISIS_PSNP_HEADER_SIZE
)) {
2620 ND_PRINT("- bogus fixed header length %u should be %lu",
2621 fixed_len
, (unsigned long)(ISIS_COMMON_HEADER_SIZE
+ISIS_PSNP_HEADER_SIZE
));
2624 ND_TCHECK_SIZE(header_psnp
);
2625 if (length
< ISIS_COMMON_HEADER_SIZE
+ISIS_PSNP_HEADER_SIZE
)
2627 if (ndo
->ndo_vflag
== 0) {
2628 ND_PRINT(", src-id %s", isis_print_id(ndo
, header_psnp
->source_id
, NODE_ID_LEN
));
2629 ND_PRINT(", length %u", length
);
2632 pdu_len
=GET_BE_U_2(header_psnp
->pdu_len
);
2633 if (packet_len
>pdu_len
) {
2634 packet_len
=pdu_len
; /* do TLV decoding as long as it makes sense */
2638 ND_PRINT("\n\t source-id: %s, PDU length: %u",
2639 isis_print_id(ndo
, header_psnp
->source_id
, NODE_ID_LEN
),
2642 if (ndo
->ndo_vflag
> 1) {
2643 if (!print_unknown_data(ndo
, pptr
, "\n\t ", ISIS_PSNP_HEADER_SIZE
))
2647 packet_len
-= (ISIS_COMMON_HEADER_SIZE
+ISIS_PSNP_HEADER_SIZE
);
2648 pptr
= p
+ (ISIS_COMMON_HEADER_SIZE
+ISIS_PSNP_HEADER_SIZE
);
2652 if (ndo
->ndo_vflag
== 0) {
2653 ND_PRINT(", length %u", length
);
2656 (void)print_unknown_data(ndo
, pptr
, "\n\t ", length
);
2661 * Now print the TLV's.
2664 while (packet_len
> 0) {
2668 tlv_type
= GET_U_1(pptr
);
2669 tlv_len
= GET_U_1(pptr
+ 1);
2672 tlen
= tlv_len
; /* copy temporary len & pointer to packet data */
2675 /* first lets see if we know the TLVs name*/
2676 ND_PRINT("\n\t %s TLV #%u, length: %u",
2677 tok2str(isis_tlv_values
,
2683 if (packet_len
< tlv_len
)
2686 /* now check if we have a decoder otherwise do a hexdump at the end*/
2688 case ISIS_TLV_AREA_ADDR
:
2691 alen
= GET_U_1(tptr
);
2696 ND_TCHECK_LEN(tptr
, alen
);
2697 ND_PRINT("\n\t Area address (length: %u): %s",
2699 isonsap_string(ndo
, tptr
, alen
));
2704 case ISIS_TLV_ISNEIGH
:
2706 if (tlen
< MAC_ADDR_LEN
)
2708 ND_TCHECK_LEN(tptr
, MAC_ADDR_LEN
);
2709 ND_PRINT("\n\t SNPA: %s", isis_print_id(ndo
, tptr
, MAC_ADDR_LEN
));
2710 tlen
-= MAC_ADDR_LEN
;
2711 tptr
+= MAC_ADDR_LEN
;
2715 case ISIS_TLV_ISNEIGH_VARLEN
:
2719 lan_alen
= GET_U_1(tptr
); /* LAN address length */
2722 if (lan_alen
== 0) {
2723 ND_PRINT("\n\t LAN address length 0 bytes");
2724 nd_print_invalid(ndo
);
2727 ND_PRINT("\n\t LAN address length %u bytes ", lan_alen
);
2729 if (tlen
< lan_alen
)
2731 ND_TCHECK_LEN(tptr
, lan_alen
);
2732 ND_PRINT("\n\t\tIS Neighbor: %s", isis_print_id(ndo
, tptr
, lan_alen
));
2738 case ISIS_TLV_PADDING
:
2741 case ISIS_TLV_MT_IS_REACH
:
2742 mt_len
= isis_print_mtid(ndo
, tptr
, "\n\t ", tlen
);
2743 if (mt_len
== 0) /* did something go wrong ? */
2748 ext_is_len
= isis_print_ext_is_reach(ndo
, tptr
, "\n\t ", tlv_type
, tlen
);
2749 if (ext_is_len
== 0) /* did something go wrong ? */
2751 if (tlen
< ext_is_len
) {
2752 ND_PRINT(" [remaining tlv length %u < %u]", tlen
, ext_is_len
);
2753 nd_print_invalid(ndo
);
2756 tlen
-=(uint8_t)ext_is_len
;
2757 tptr
+=(uint8_t)ext_is_len
;
2761 case ISIS_TLV_IS_ALIAS_ID
:
2763 ext_is_len
= isis_print_ext_is_reach(ndo
, tptr
, "\n\t ", tlv_type
, tlen
);
2764 if (ext_is_len
== 0) /* did something go wrong ? */
2766 if (tlen
< ext_is_len
) {
2767 ND_PRINT(" [remaining tlv length %u < %u]", tlen
, ext_is_len
);
2768 nd_print_invalid(ndo
);
2771 tlen
-=(uint8_t)ext_is_len
;
2772 tptr
+=(uint8_t)ext_is_len
;
2776 case ISIS_TLV_EXT_IS_REACH
:
2778 ext_is_len
= isis_print_ext_is_reach(ndo
, tptr
, "\n\t ", tlv_type
, tlen
);
2779 if (ext_is_len
== 0) /* did something go wrong ? */
2781 if (tlen
< ext_is_len
) {
2782 ND_PRINT(" [remaining tlv length %u < %u]", tlen
, ext_is_len
);
2783 nd_print_invalid(ndo
);
2786 tlen
-=(uint8_t)ext_is_len
;
2787 tptr
+=(uint8_t)ext_is_len
;
2790 case ISIS_TLV_IS_REACH
:
2793 ND_TCHECK_1(tptr
); /* check if there is one byte left to read out the virtual flag */
2795 tok2str(isis_is_reach_virtual_values
,
2796 "bogus virtual flag 0x%02x",
2800 tlv_is_reach
= (const struct isis_tlv_is_reach
*)tptr
;
2802 if (tlen
< sizeof(struct isis_tlv_is_reach
))
2804 ND_TCHECK_SIZE(tlv_is_reach
);
2805 ND_PRINT("\n\t IS Neighbor: %s",
2806 isis_print_id(ndo
, tlv_is_reach
->neighbor_nodeid
, NODE_ID_LEN
));
2807 isis_print_metric_block(ndo
, &tlv_is_reach
->isis_metric_block
);
2808 tlen
-= sizeof(struct isis_tlv_is_reach
);
2813 case ISIS_TLV_ESNEIGH
:
2814 tlv_es_reach
= (const struct isis_tlv_es_reach
*)tptr
;
2816 if (tlen
< sizeof(struct isis_tlv_es_reach
))
2818 ND_TCHECK_SIZE(tlv_es_reach
);
2819 ND_PRINT("\n\t ES Neighbor: %s",
2820 isis_print_id(ndo
, tlv_es_reach
->neighbor_sysid
, SYSTEM_ID_LEN
));
2821 isis_print_metric_block(ndo
, &tlv_es_reach
->isis_metric_block
);
2822 tlen
-= sizeof(struct isis_tlv_es_reach
);
2827 /* those two TLVs share the same format */
2828 case ISIS_TLV_INT_IP_REACH
:
2829 case ISIS_TLV_EXT_IP_REACH
:
2830 if (!isis_print_tlv_ip_reach(ndo
, pptr
, "\n\t ", tlv_len
))
2834 case ISIS_TLV_EXTD_IP_REACH
:
2836 ext_ip_len
= isis_print_extd_ip_reach(ndo
, tptr
, "\n\t ", AF_INET
);
2837 if (ext_ip_len
== 0) /* did something go wrong ? */
2839 if (tlen
< ext_ip_len
) {
2840 ND_PRINT(" [remaining tlv length %u < %u]", tlen
, ext_ip_len
);
2841 nd_print_invalid(ndo
);
2844 tlen
-=(uint8_t)ext_ip_len
;
2845 tptr
+=(uint8_t)ext_ip_len
;
2849 case ISIS_TLV_MT_IP_REACH
:
2850 mt_len
= isis_print_mtid(ndo
, tptr
, "\n\t ", tlen
);
2851 if (mt_len
== 0) { /* did something go wrong ? */
2858 ext_ip_len
= isis_print_extd_ip_reach(ndo
, tptr
, "\n\t ", AF_INET
);
2859 if (ext_ip_len
== 0) /* did something go wrong ? */
2861 if (tlen
< ext_ip_len
) {
2862 ND_PRINT(" [remaining tlv length %u < %u]", tlen
, ext_ip_len
);
2863 nd_print_invalid(ndo
);
2866 tlen
-=(uint8_t)ext_ip_len
;
2867 tptr
+=(uint8_t)ext_ip_len
;
2871 case ISIS_TLV_IP6_REACH
:
2873 ext_ip_len
= isis_print_extd_ip_reach(ndo
, tptr
, "\n\t ", AF_INET6
);
2874 if (ext_ip_len
== 0) /* did something go wrong ? */
2876 if (tlen
< ext_ip_len
) {
2877 ND_PRINT(" [remaining tlv length %u < %u]", tlen
, ext_ip_len
);
2878 nd_print_invalid(ndo
);
2881 tlen
-=(uint8_t)ext_ip_len
;
2882 tptr
+=(uint8_t)ext_ip_len
;
2886 case ISIS_TLV_MT_IP6_REACH
:
2887 mt_len
= isis_print_mtid(ndo
, tptr
, "\n\t ", tlen
);
2888 if (mt_len
== 0) { /* did something go wrong ? */
2895 ext_ip_len
= isis_print_extd_ip_reach(ndo
, tptr
, "\n\t ", AF_INET6
);
2896 if (ext_ip_len
== 0) /* did something go wrong ? */
2898 if (tlen
< ext_ip_len
) {
2899 ND_PRINT(" [remaining tlv length %u < %u]", tlen
, ext_ip_len
);
2900 nd_print_invalid(ndo
);
2903 tlen
-=(uint8_t)ext_ip_len
;
2904 tptr
+=(uint8_t)ext_ip_len
;
2908 case ISIS_TLV_IP6ADDR
:
2910 if (tlen
< sizeof(nd_ipv6
))
2912 ND_TCHECK_LEN(tptr
, sizeof(nd_ipv6
));
2914 ND_PRINT("\n\t IPv6 interface address: %s",
2915 ip6addr_string(ndo
, tptr
));
2917 tptr
+= sizeof(nd_ipv6
);
2918 tlen
-= sizeof(nd_ipv6
);
2925 auth_type
= GET_U_1(tptr
);
2929 ND_PRINT("\n\t %s: ",
2930 tok2str(isis_subtlv_auth_values
,
2931 "unknown Authentication type 0x%02x",
2934 switch (auth_type
) {
2935 case ISIS_SUBTLV_AUTH_SIMPLE
:
2936 if (nd_printzp(ndo
, tptr
, tlen
, ndo
->ndo_snapend
))
2939 case ISIS_SUBTLV_AUTH_MD5
:
2940 for(i
=0;i
<tlen
;i
++) {
2941 ND_TCHECK_1(tptr
+ i
);
2942 ND_PRINT("%02x", GET_U_1(tptr
+ i
));
2944 if (tlen
!= ISIS_SUBTLV_AUTH_MD5_LEN
)
2945 ND_PRINT(", (invalid subTLV) ");
2947 sigcheck
= signature_verify(ndo
, optr
, length
, tptr
,
2948 isis_clear_checksum_lifetime
,
2950 ND_PRINT(" (%s)", tok2str(signature_check_values
, "Unknown", sigcheck
));
2953 case ISIS_SUBTLV_AUTH_GENERIC
:
2957 key_id
= GET_BE_U_2(tptr
);
2958 ND_PRINT("%u, password: ", key_id
);
2961 for(i
=0;i
<tlen
;i
++) {
2962 ND_TCHECK_1(tptr
+ i
);
2963 ND_PRINT("%02x", GET_U_1(tptr
+ i
));
2966 case ISIS_SUBTLV_AUTH_PRIVATE
:
2968 if (!print_unknown_data(ndo
, tptr
, "\n\t\t ", tlen
))
2974 case ISIS_TLV_PTP_ADJ
:
2975 tlv_ptp_adj
= (const struct isis_tlv_ptp_adj
*)tptr
;
2978 ND_PRINT("\n\t Adjacency State: %s (%u)",
2979 tok2str(isis_ptp_adjancey_values
, "unknown", GET_U_1(tptr
)),
2983 if(tlen
>sizeof(tlv_ptp_adj
->extd_local_circuit_id
)) {
2984 ND_TCHECK_4(tlv_ptp_adj
->extd_local_circuit_id
);
2985 ND_PRINT("\n\t Extended Local circuit-ID: 0x%08x",
2986 GET_BE_U_4(tlv_ptp_adj
->extd_local_circuit_id
));
2987 tlen
-=sizeof(tlv_ptp_adj
->extd_local_circuit_id
);
2989 if(tlen
>=SYSTEM_ID_LEN
) {
2990 ND_TCHECK_LEN(tlv_ptp_adj
->neighbor_sysid
, SYSTEM_ID_LEN
);
2991 ND_PRINT("\n\t Neighbor System-ID: %s",
2992 isis_print_id(ndo
, tlv_ptp_adj
->neighbor_sysid
, SYSTEM_ID_LEN
));
2993 tlen
-=SYSTEM_ID_LEN
;
2995 if(tlen
>=sizeof(tlv_ptp_adj
->neighbor_extd_local_circuit_id
)) {
2996 ND_TCHECK_4(tlv_ptp_adj
->neighbor_extd_local_circuit_id
);
2997 ND_PRINT("\n\t Neighbor Extended Local circuit-ID: 0x%08x",
2998 GET_BE_U_4(tlv_ptp_adj
->neighbor_extd_local_circuit_id
));
3002 case ISIS_TLV_PROTOCOLS
:
3003 ND_PRINT("\n\t NLPID(s): ");
3006 ND_PRINT("%s (0x%02x)",
3007 tok2str(nlpid_values
,
3011 if (tlen
>1) /* further NPLIDs ? - put comma */
3018 case ISIS_TLV_MT_PORT_CAP
:
3024 ND_PRINT("\n\t RES: %u, MTID(s): %u",
3025 (GET_BE_U_2(tptr
) >> 12),
3026 (GET_BE_U_2(tptr
) & 0x0fff));
3032 isis_print_mt_port_cap_subtlv(ndo
, tptr
, tlen
);
3037 case ISIS_TLV_MT_CAPABILITY
:
3042 ND_PRINT("\n\t O: %u, RES: %u, MTID(s): %u",
3043 (GET_BE_U_2(tptr
) >> 15) & 0x01,
3044 (GET_BE_U_2(tptr
) >> 12) & 0x07,
3045 GET_BE_U_2(tptr
) & 0x0fff);
3051 isis_print_mt_capability_subtlv(ndo
, tptr
, tlen
);
3055 case ISIS_TLV_TE_ROUTER_ID
:
3056 if (tlen
< sizeof(nd_ipv4
))
3058 ND_TCHECK_LEN(pptr
, sizeof(nd_ipv4
));
3059 ND_PRINT("\n\t Traffic Engineering Router ID: %s", ipaddr_string(ndo
, pptr
));
3062 case ISIS_TLV_IPADDR
:
3064 if (tlen
< sizeof(nd_ipv4
))
3066 ND_TCHECK_LEN(tptr
, sizeof(nd_ipv4
));
3067 ND_PRINT("\n\t IPv4 interface address: %s", ipaddr_string(ndo
, tptr
));
3068 tptr
+= sizeof(nd_ipv4
);
3069 tlen
-= sizeof(nd_ipv4
);
3073 case ISIS_TLV_HOSTNAME
:
3074 ND_PRINT("\n\t Hostname: ");
3075 if (nd_printzp(ndo
, tptr
, tlen
, ndo
->ndo_snapend
))
3079 case ISIS_TLV_SHARED_RISK_GROUP
:
3080 if (tlen
< NODE_ID_LEN
)
3082 ND_TCHECK_LEN(tptr
, NODE_ID_LEN
);
3083 ND_PRINT("\n\t IS Neighbor: %s", isis_print_id(ndo
, tptr
, NODE_ID_LEN
));
3090 ND_PRINT(", Flags: [%s]",
3091 ISIS_MASK_TLV_SHARED_RISK_GROUP(GET_U_1(tptr
)) ? "numbered" : "unnumbered");
3095 if (tlen
< sizeof(nd_ipv4
))
3097 ND_TCHECK_LEN(tptr
, sizeof(nd_ipv4
));
3098 ND_PRINT("\n\t IPv4 interface address: %s", ipaddr_string(ndo
, tptr
));
3099 tptr
+=sizeof(nd_ipv4
);
3100 tlen
-=sizeof(nd_ipv4
);
3102 if (tlen
< sizeof(nd_ipv4
))
3104 ND_TCHECK_LEN(tptr
, sizeof(nd_ipv4
));
3105 ND_PRINT("\n\t IPv4 neighbor address: %s", ipaddr_string(ndo
, tptr
));
3106 tptr
+=sizeof(nd_ipv4
);
3107 tlen
-=sizeof(nd_ipv4
);
3113 ND_PRINT("\n\t Link-ID: 0x%08x", GET_BE_U_4(tptr
));
3120 tlv_lsp
= (const struct isis_tlv_lsp
*)tptr
;
3122 if (tlen
< sizeof(struct isis_tlv_lsp
))
3124 ND_TCHECK_1(tlv_lsp
->lsp_id
+ LSP_ID_LEN
- 1);
3125 ND_PRINT("\n\t lsp-id: %s",
3126 isis_print_id(ndo
, tlv_lsp
->lsp_id
, LSP_ID_LEN
));
3127 ND_TCHECK_4(tlv_lsp
->sequence_number
);
3128 ND_PRINT(", seq: 0x%08x",
3129 GET_BE_U_4(tlv_lsp
->sequence_number
));
3130 ND_TCHECK_2(tlv_lsp
->remaining_lifetime
);
3131 ND_PRINT(", lifetime: %5ds",
3132 GET_BE_U_2(tlv_lsp
->remaining_lifetime
));
3133 ND_TCHECK_2(tlv_lsp
->checksum
);
3134 ND_PRINT(", chksum: 0x%04x", GET_BE_U_2(tlv_lsp
->checksum
));
3135 tlen
-=sizeof(struct isis_tlv_lsp
);
3140 case ISIS_TLV_CHECKSUM
:
3141 if (tlen
< ISIS_TLV_CHECKSUM_MINLEN
)
3143 ND_TCHECK_LEN(tptr
, ISIS_TLV_CHECKSUM_MINLEN
);
3144 ND_PRINT("\n\t checksum: 0x%04x ", GET_BE_U_2(tptr
));
3145 /* do not attempt to verify the checksum if it is zero
3146 * most likely a HMAC-MD5 TLV is also present and
3147 * to avoid conflicts the checksum TLV is zeroed.
3148 * see rfc3358 for details
3150 osi_print_cksum(ndo
, optr
, GET_BE_U_2(tptr
), (int)(tptr
-optr
),
3158 num_system_ids
= GET_U_1(tptr
);
3161 if (num_system_ids
== 0) {
3163 ND_PRINT(" No system IDs supplied");
3165 if (tlen
< SYSTEM_ID_LEN
)
3167 ND_TCHECK_LEN(tptr
, SYSTEM_ID_LEN
);
3168 ND_PRINT("\n\t Purge Originator System-ID: %s",
3169 isis_print_id(ndo
, tptr
, SYSTEM_ID_LEN
));
3170 tptr
+= SYSTEM_ID_LEN
;
3171 tlen
-= SYSTEM_ID_LEN
;
3173 if (num_system_ids
> 1) {
3174 if (tlen
< SYSTEM_ID_LEN
)
3176 ND_TCHECK_LEN(tptr
, SYSTEM_ID_LEN
);
3177 ND_TCHECK_LEN(tptr
, 2 * SYSTEM_ID_LEN
+ 1);
3178 ND_PRINT("\n\t Received from System-ID: %s",
3179 isis_print_id(ndo
, tptr
, SYSTEM_ID_LEN
));
3184 case ISIS_TLV_MT_SUPPORTED
:
3186 /* length can only be a multiple of 2, otherwise there is
3187 something broken -> so decode down until length is 1 */
3189 mt_len
= isis_print_mtid(ndo
, tptr
, "\n\t ", tlen
);
3190 if (mt_len
== 0) /* did something go wrong ? */
3195 ND_PRINT("\n\t invalid MT-ID");
3201 case ISIS_TLV_RESTART_SIGNALING
:
3202 /* first attempt to decode the flags */
3203 if (tlen
< ISIS_TLV_RESTART_SIGNALING_FLAGLEN
)
3205 ND_TCHECK_LEN(tptr
, ISIS_TLV_RESTART_SIGNALING_FLAGLEN
);
3206 ND_PRINT("\n\t Flags [%s]",
3207 bittok2str(isis_restart_flag_values
, "none", GET_U_1(tptr
)));
3208 tptr
+=ISIS_TLV_RESTART_SIGNALING_FLAGLEN
;
3209 tlen
-=ISIS_TLV_RESTART_SIGNALING_FLAGLEN
;
3211 /* is there anything other than the flags field? */
3215 if (tlen
< ISIS_TLV_RESTART_SIGNALING_HOLDTIMELEN
)
3217 ND_TCHECK_LEN(tptr
, ISIS_TLV_RESTART_SIGNALING_HOLDTIMELEN
);
3219 ND_PRINT(", Remaining holding time %us", GET_BE_U_2(tptr
));
3220 tptr
+=ISIS_TLV_RESTART_SIGNALING_HOLDTIMELEN
;
3221 tlen
-=ISIS_TLV_RESTART_SIGNALING_HOLDTIMELEN
;
3223 /* is there an additional sysid field present ?*/
3224 if (tlen
== SYSTEM_ID_LEN
) {
3225 ND_TCHECK_LEN(tptr
, SYSTEM_ID_LEN
);
3226 ND_PRINT(", for %s", isis_print_id(ndo
, tptr
,SYSTEM_ID_LEN
));
3230 case ISIS_TLV_IDRP_INFO
:
3234 isis_subtlv_idrp
= GET_U_1(tptr
);
3235 ND_PRINT("\n\t Inter-Domain Information Type: %s",
3236 tok2str(isis_subtlv_idrp_values
,
3241 switch (isis_subtlv_idrp
) {
3242 case ISIS_SUBTLV_IDRP_ASN
:
3245 ND_TCHECK_2(tptr
); /* fetch AS number */
3246 ND_PRINT("AS Number: %u", GET_BE_U_2(tptr
));
3248 case ISIS_SUBTLV_IDRP_LOCAL
:
3249 case ISIS_SUBTLV_IDRP_RES
:
3251 if (!print_unknown_data(ndo
, tptr
, "\n\t ", tlen
))
3257 case ISIS_TLV_LSP_BUFFERSIZE
:
3261 ND_PRINT("\n\t LSP Buffersize: %u", GET_BE_U_2(tptr
));
3264 case ISIS_TLV_PART_DIS
:
3266 if (tlen
< SYSTEM_ID_LEN
)
3268 ND_TCHECK_LEN(tptr
, SYSTEM_ID_LEN
);
3269 ND_PRINT("\n\t %s", isis_print_id(ndo
, tptr
, SYSTEM_ID_LEN
));
3270 tptr
+=SYSTEM_ID_LEN
;
3271 tlen
-=SYSTEM_ID_LEN
;
3275 case ISIS_TLV_PREFIX_NEIGH
:
3276 if (tlen
< sizeof(struct isis_metric_block
))
3278 ND_TCHECK_LEN(tptr
, sizeof(struct isis_metric_block
));
3279 ND_PRINT("\n\t Metric Block");
3280 isis_print_metric_block(ndo
, (const struct isis_metric_block
*)tptr
);
3281 tptr
+=sizeof(struct isis_metric_block
);
3282 tlen
-=sizeof(struct isis_metric_block
);
3286 prefix_len
=GET_U_1(tptr
); /* read out prefix length in semioctets*/
3289 if (prefix_len
< 2) {
3290 ND_PRINT("\n\t\tAddress: prefix length %u < 2", prefix_len
);
3293 if (tlen
< prefix_len
/2)
3295 ND_TCHECK_LEN(tptr
, prefix_len
/ 2);
3296 ND_PRINT("\n\t\tAddress: %s/%u",
3297 isonsap_string(ndo
, tptr
, prefix_len
/ 2), prefix_len
* 4);
3303 case ISIS_TLV_IIH_SEQNR
:
3306 ND_TCHECK_4(tptr
); /* check if four bytes are on the wire */
3307 ND_PRINT("\n\t Sequence number: %u", GET_BE_U_4(tptr
));
3310 case ISIS_TLV_VENDOR_PRIVATE
:
3313 ND_TCHECK_3(tptr
); /* check if enough byte for a full oui */
3314 vendor_id
= GET_BE_U_3(tptr
);
3315 ND_PRINT("\n\t Vendor: %s (%u)",
3316 tok2str(oui_values
, "Unknown", vendor_id
),
3320 if (tlen
!= 0) /* hexdump the rest */
3321 if (!print_unknown_data(ndo
, tptr
, "\n\t\t", tlen
))
3325 * FIXME those are the defined TLVs that lack a decoder
3326 * you are welcome to contribute code ;-)
3329 case ISIS_TLV_DECNET_PHASE4
:
3330 case ISIS_TLV_LUCENT_PRIVATE
:
3331 case ISIS_TLV_IPAUTH
:
3332 case ISIS_TLV_NORTEL_PRIVATE1
:
3333 case ISIS_TLV_NORTEL_PRIVATE2
:
3336 if (ndo
->ndo_vflag
<= 1) {
3337 if (!print_unknown_data(ndo
, pptr
, "\n\t\t", tlv_len
))
3343 /* do we want to see an additionally hexdump ? */
3344 if (ndo
->ndo_vflag
> 1) {
3345 if (!print_unknown_data(ndo
, pptr
, "\n\t ", tlv_len
))
3350 packet_len
-= tlv_len
;
3353 if (packet_len
!= 0) {
3354 ND_PRINT("\n\t %u straggler bytes", packet_len
);
3359 nd_print_trunc(ndo
);
3364 osi_print_cksum(netdissect_options
*ndo
, const uint8_t *pptr
,
3365 uint16_t checksum
, int checksum_offset
, u_int length
)
3367 uint16_t calculated_checksum
;
3369 /* do not attempt to verify the checksum if it is zero,
3370 * if the offset is nonsense,
3371 * or the base pointer is not sane
3374 || checksum_offset
< 0
3375 || !ND_TTEST_2(pptr
+ checksum_offset
)
3376 || (u_int
)checksum_offset
> length
3377 || !ND_TTEST_LEN(pptr
, length
)) {
3378 ND_PRINT(" (unverified)");
3381 ND_PRINT("\nosi_print_cksum: %p %d %u\n", pptr
, checksum_offset
, length
);
3383 calculated_checksum
= create_osi_cksum(pptr
, checksum_offset
, length
);
3384 if (checksum
== calculated_checksum
) {
3385 ND_PRINT(" (correct)");
3387 ND_PRINT(" (incorrect should be 0x%04x)", calculated_checksum
);