print-cfm.c revision 1.6.2.1 1 1.1 christos /*
2 1.1 christos * Copyright (c) 1998-2006 The TCPDUMP project
3 1.1 christos *
4 1.1 christos * Redistribution and use in source and binary forms, with or without
5 1.1 christos * modification, are permitted provided that: (1) source code
6 1.1 christos * distributions retain the above copyright notice and this paragraph
7 1.1 christos * in its entirety, and (2) distributions including binary code include
8 1.1 christos * the above copyright notice and this paragraph in its entirety in
9 1.1 christos * the documentation or other materials provided with the distribution.
10 1.1 christos * THIS SOFTWARE IS PROVIDED ``AS IS'' AND
11 1.1 christos * WITHOUT ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, WITHOUT
12 1.1 christos * LIMITATION, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS
13 1.1 christos * FOR A PARTICULAR PURPOSE.
14 1.1 christos *
15 1.1 christos * Original code by Hannes Gredler (hannes (at) juniper.net)
16 1.1 christos */
17 1.1 christos
18 1.6.2.1 pgoyette /* \summary: IEEE 802.1ag Connectivity Fault Management (CFM) protocols printer */
19 1.6.2.1 pgoyette
20 1.2 christos #include <sys/cdefs.h>
21 1.1 christos #ifndef lint
22 1.6.2.1 pgoyette __RCSID("$NetBSD: print-cfm.c,v 1.6.2.1 2017/03/20 06:56:22 pgoyette Exp $");
23 1.1 christos #endif
24 1.1 christos
25 1.1 christos #ifdef HAVE_CONFIG_H
26 1.1 christos #include "config.h"
27 1.1 christos #endif
28 1.1 christos
29 1.6.2.1 pgoyette #include <netdissect-stdinc.h>
30 1.1 christos
31 1.1 christos #include <stdio.h>
32 1.1 christos
33 1.6.2.1 pgoyette #include "netdissect.h"
34 1.1 christos #include "extract.h"
35 1.1 christos #include "ether.h"
36 1.1 christos #include "addrtoname.h"
37 1.1 christos #include "oui.h"
38 1.1 christos #include "af.h"
39 1.1 christos
40 1.1 christos struct cfm_common_header_t {
41 1.5 christos uint8_t mdlevel_version;
42 1.5 christos uint8_t opcode;
43 1.5 christos uint8_t flags;
44 1.5 christos uint8_t first_tlv_offset;
45 1.1 christos };
46 1.1 christos
47 1.1 christos #define CFM_VERSION 0
48 1.1 christos #define CFM_EXTRACT_VERSION(x) (((x)&0x1f))
49 1.1 christos #define CFM_EXTRACT_MD_LEVEL(x) (((x)&0xe0)>>5)
50 1.1 christos
51 1.1 christos #define CFM_OPCODE_CCM 1
52 1.1 christos #define CFM_OPCODE_LBR 2
53 1.1 christos #define CFM_OPCODE_LBM 3
54 1.1 christos #define CFM_OPCODE_LTR 4
55 1.1 christos #define CFM_OPCODE_LTM 5
56 1.1 christos
57 1.1 christos static const struct tok cfm_opcode_values[] = {
58 1.1 christos { CFM_OPCODE_CCM, "Continouity Check Message"},
59 1.1 christos { CFM_OPCODE_LBR, "Loopback Reply"},
60 1.1 christos { CFM_OPCODE_LBM, "Loopback Message"},
61 1.1 christos { CFM_OPCODE_LTR, "Linktrace Reply"},
62 1.1 christos { CFM_OPCODE_LTM, "Linktrace Message"},
63 1.1 christos { 0, NULL}
64 1.1 christos };
65 1.1 christos
66 1.1 christos /*
67 1.1 christos * Message Formats.
68 1.1 christos */
69 1.1 christos struct cfm_ccm_t {
70 1.5 christos uint8_t sequence[4];
71 1.5 christos uint8_t ma_epi[2];
72 1.6.2.1 pgoyette uint8_t names[48];
73 1.6.2.1 pgoyette uint8_t itu_t_y_1731[16];
74 1.1 christos };
75 1.1 christos
76 1.1 christos /*
77 1.1 christos * Timer Bases for the CCM Interval field.
78 1.1 christos * Expressed in units of seconds.
79 1.1 christos */
80 1.6.2.1 pgoyette static const float ccm_interval_base[8] = {0, 0.003333, 0.01, 0.1, 1, 10, 60, 600};
81 1.1 christos #define CCM_INTERVAL_MIN_MULTIPLIER 3.25
82 1.1 christos #define CCM_INTERVAL_MAX_MULTIPLIER 3.5
83 1.1 christos
84 1.1 christos #define CFM_CCM_RDI_FLAG 0x80
85 1.1 christos #define CFM_EXTRACT_CCM_INTERVAL(x) (((x)&0x07))
86 1.1 christos
87 1.1 christos #define CFM_CCM_MD_FORMAT_8021 0
88 1.1 christos #define CFM_CCM_MD_FORMAT_NONE 1
89 1.1 christos #define CFM_CCM_MD_FORMAT_DNS 2
90 1.1 christos #define CFM_CCM_MD_FORMAT_MAC 3
91 1.1 christos #define CFM_CCM_MD_FORMAT_CHAR 4
92 1.1 christos
93 1.1 christos static const struct tok cfm_md_nameformat_values[] = {
94 1.1 christos { CFM_CCM_MD_FORMAT_8021, "IEEE 802.1"},
95 1.1 christos { CFM_CCM_MD_FORMAT_NONE, "No MD Name present"},
96 1.1 christos { CFM_CCM_MD_FORMAT_DNS, "DNS string"},
97 1.1 christos { CFM_CCM_MD_FORMAT_MAC, "MAC + 16Bit Integer"},
98 1.1 christos { CFM_CCM_MD_FORMAT_CHAR, "Character string"},
99 1.1 christos { 0, NULL}
100 1.1 christos };
101 1.1 christos
102 1.1 christos #define CFM_CCM_MA_FORMAT_8021 0
103 1.1 christos #define CFM_CCM_MA_FORMAT_VID 1
104 1.1 christos #define CFM_CCM_MA_FORMAT_CHAR 2
105 1.1 christos #define CFM_CCM_MA_FORMAT_INT 3
106 1.1 christos #define CFM_CCM_MA_FORMAT_VPN 4
107 1.1 christos
108 1.1 christos static const struct tok cfm_ma_nameformat_values[] = {
109 1.1 christos { CFM_CCM_MA_FORMAT_8021, "IEEE 802.1"},
110 1.1 christos { CFM_CCM_MA_FORMAT_VID, "Primary VID"},
111 1.1 christos { CFM_CCM_MA_FORMAT_CHAR, "Character string"},
112 1.1 christos { CFM_CCM_MA_FORMAT_INT, "16Bit Integer"},
113 1.1 christos { CFM_CCM_MA_FORMAT_VPN, "RFC2685 VPN-ID"},
114 1.1 christos { 0, NULL}
115 1.1 christos };
116 1.1 christos
117 1.1 christos struct cfm_lbm_t {
118 1.5 christos uint8_t transaction_id[4];
119 1.1 christos };
120 1.1 christos
121 1.1 christos struct cfm_ltm_t {
122 1.5 christos uint8_t transaction_id[4];
123 1.5 christos uint8_t ttl;
124 1.5 christos uint8_t original_mac[ETHER_ADDR_LEN];
125 1.5 christos uint8_t target_mac[ETHER_ADDR_LEN];
126 1.1 christos };
127 1.1 christos
128 1.1 christos static const struct tok cfm_ltm_flag_values[] = {
129 1.1 christos { 0x80, "Use Forwarding-DB only"},
130 1.1 christos { 0, NULL}
131 1.1 christos };
132 1.1 christos
133 1.1 christos struct cfm_ltr_t {
134 1.5 christos uint8_t transaction_id[4];
135 1.5 christos uint8_t ttl;
136 1.5 christos uint8_t replay_action;
137 1.1 christos };
138 1.1 christos
139 1.1 christos static const struct tok cfm_ltr_flag_values[] = {
140 1.5 christos { 0x80, "UseFDB Only"},
141 1.5 christos { 0x40, "FwdYes"},
142 1.5 christos { 0x20, "Terminal MEP"},
143 1.1 christos { 0, NULL}
144 1.1 christos };
145 1.1 christos
146 1.1 christos static const struct tok cfm_ltr_replay_action_values[] = {
147 1.1 christos { 1, "Exact Match"},
148 1.1 christos { 2, "Filtering DB"},
149 1.1 christos { 3, "MIP CCM DB"},
150 1.1 christos { 0, NULL}
151 1.1 christos };
152 1.1 christos
153 1.1 christos
154 1.1 christos #define CFM_TLV_END 0
155 1.1 christos #define CFM_TLV_SENDER_ID 1
156 1.1 christos #define CFM_TLV_PORT_STATUS 2
157 1.1 christos #define CFM_TLV_INTERFACE_STATUS 3
158 1.1 christos #define CFM_TLV_DATA 4
159 1.1 christos #define CFM_TLV_REPLY_INGRESS 5
160 1.1 christos #define CFM_TLV_REPLY_EGRESS 6
161 1.1 christos #define CFM_TLV_PRIVATE 31
162 1.1 christos
163 1.1 christos static const struct tok cfm_tlv_values[] = {
164 1.1 christos { CFM_TLV_END, "End"},
165 1.1 christos { CFM_TLV_SENDER_ID, "Sender ID"},
166 1.1 christos { CFM_TLV_PORT_STATUS, "Port status"},
167 1.1 christos { CFM_TLV_INTERFACE_STATUS, "Interface status"},
168 1.1 christos { CFM_TLV_DATA, "Data"},
169 1.1 christos { CFM_TLV_REPLY_INGRESS, "Reply Ingress"},
170 1.1 christos { CFM_TLV_REPLY_EGRESS, "Reply Egress"},
171 1.1 christos { CFM_TLV_PRIVATE, "Organization Specific"},
172 1.1 christos { 0, NULL}
173 1.1 christos };
174 1.1 christos
175 1.1 christos /*
176 1.1 christos * TLVs
177 1.1 christos */
178 1.1 christos
179 1.1 christos struct cfm_tlv_header_t {
180 1.5 christos uint8_t type;
181 1.5 christos uint8_t length[2];
182 1.1 christos };
183 1.1 christos
184 1.1 christos /* FIXME define TLV formats */
185 1.1 christos
186 1.1 christos static const struct tok cfm_tlv_port_status_values[] = {
187 1.1 christos { 1, "Blocked"},
188 1.1 christos { 2, "Up"},
189 1.1 christos { 0, NULL}
190 1.1 christos };
191 1.1 christos
192 1.1 christos static const struct tok cfm_tlv_interface_status_values[] = {
193 1.1 christos { 1, "Up"},
194 1.1 christos { 2, "Down"},
195 1.1 christos { 3, "Testing"},
196 1.1 christos { 5, "Dormant"},
197 1.1 christos { 6, "not present"},
198 1.1 christos { 7, "lower Layer down"},
199 1.1 christos { 0, NULL}
200 1.1 christos };
201 1.1 christos
202 1.1 christos #define CFM_CHASSIS_ID_CHASSIS_COMPONENT 1
203 1.1 christos #define CFM_CHASSIS_ID_INTERFACE_ALIAS 2
204 1.1 christos #define CFM_CHASSIS_ID_PORT_COMPONENT 3
205 1.1 christos #define CFM_CHASSIS_ID_MAC_ADDRESS 4
206 1.1 christos #define CFM_CHASSIS_ID_NETWORK_ADDRESS 5
207 1.1 christos #define CFM_CHASSIS_ID_INTERFACE_NAME 6
208 1.1 christos #define CFM_CHASSIS_ID_LOCAL 7
209 1.1 christos
210 1.1 christos static const struct tok cfm_tlv_senderid_chassisid_values[] = {
211 1.1 christos { 0, "Reserved"},
212 1.1 christos { CFM_CHASSIS_ID_CHASSIS_COMPONENT, "Chassis component"},
213 1.1 christos { CFM_CHASSIS_ID_INTERFACE_ALIAS, "Interface alias"},
214 1.1 christos { CFM_CHASSIS_ID_PORT_COMPONENT, "Port component"},
215 1.1 christos { CFM_CHASSIS_ID_MAC_ADDRESS, "MAC address"},
216 1.1 christos { CFM_CHASSIS_ID_NETWORK_ADDRESS, "Network address"},
217 1.1 christos { CFM_CHASSIS_ID_INTERFACE_NAME, "Interface name"},
218 1.1 christos { CFM_CHASSIS_ID_LOCAL, "Locally assigned"},
219 1.1 christos { 0, NULL}
220 1.1 christos };
221 1.1 christos
222 1.1 christos
223 1.5 christos static int
224 1.6.2.1 pgoyette cfm_network_addr_print(netdissect_options *ndo,
225 1.6.2.1 pgoyette register const u_char *tptr)
226 1.6 christos {
227 1.6.2.1 pgoyette u_int network_addr_type;
228 1.1 christos u_int hexdump = FALSE;
229 1.1 christos
230 1.1 christos /*
231 1.1 christos * Altough AFIs are tpically 2 octects wide,
232 1.1 christos * 802.1ab specifies that this field width
233 1.1 christos * is only once octet
234 1.1 christos */
235 1.6.2.1 pgoyette network_addr_type = *tptr;
236 1.6.2.1 pgoyette ND_PRINT((ndo, "\n\t Network Address Type %s (%u)",
237 1.6.2.1 pgoyette tok2str(af_values, "Unknown", network_addr_type),
238 1.6.2.1 pgoyette network_addr_type));
239 1.1 christos
240 1.1 christos /*
241 1.1 christos * Resolve the passed in Address.
242 1.1 christos */
243 1.6.2.1 pgoyette switch(network_addr_type) {
244 1.1 christos case AFNUM_INET:
245 1.5 christos ND_PRINT((ndo, ", %s", ipaddr_string(ndo, tptr + 1)));
246 1.1 christos break;
247 1.1 christos
248 1.1 christos case AFNUM_INET6:
249 1.5 christos ND_PRINT((ndo, ", %s", ip6addr_string(ndo, tptr + 1)));
250 1.1 christos break;
251 1.1 christos
252 1.1 christos default:
253 1.1 christos hexdump = TRUE;
254 1.1 christos break;
255 1.1 christos }
256 1.1 christos
257 1.1 christos return hexdump;
258 1.1 christos }
259 1.1 christos
260 1.1 christos void
261 1.5 christos cfm_print(netdissect_options *ndo,
262 1.6 christos register const u_char *pptr, register u_int length)
263 1.6 christos {
264 1.1 christos const struct cfm_common_header_t *cfm_common_header;
265 1.1 christos const struct cfm_tlv_header_t *cfm_tlv_header;
266 1.6.2.1 pgoyette const uint8_t *tptr, *tlv_ptr;
267 1.6.2.1 pgoyette const uint8_t *namesp;
268 1.6.2.1 pgoyette u_int names_data_remaining;
269 1.6.2.1 pgoyette uint8_t md_nameformat, md_namelength;
270 1.6.2.1 pgoyette const uint8_t *md_name;
271 1.6.2.1 pgoyette uint8_t ma_nameformat, ma_namelength;
272 1.6.2.1 pgoyette const uint8_t *ma_name;
273 1.1 christos u_int hexdump, tlen, cfm_tlv_len, cfm_tlv_type, ccm_interval;
274 1.1 christos
275 1.1 christos
276 1.1 christos union {
277 1.1 christos const struct cfm_ccm_t *cfm_ccm;
278 1.1 christos const struct cfm_lbm_t *cfm_lbm;
279 1.1 christos const struct cfm_ltm_t *cfm_ltm;
280 1.1 christos const struct cfm_ltr_t *cfm_ltr;
281 1.1 christos } msg_ptr;
282 1.1 christos
283 1.1 christos tptr=pptr;
284 1.1 christos cfm_common_header = (const struct cfm_common_header_t *)pptr;
285 1.6.2.1 pgoyette if (length < sizeof(*cfm_common_header))
286 1.6.2.1 pgoyette goto tooshort;
287 1.5 christos ND_TCHECK(*cfm_common_header);
288 1.1 christos
289 1.1 christos /*
290 1.1 christos * Sanity checking of the header.
291 1.1 christos */
292 1.1 christos if (CFM_EXTRACT_VERSION(cfm_common_header->mdlevel_version) != CFM_VERSION) {
293 1.5 christos ND_PRINT((ndo, "CFMv%u not supported, length %u",
294 1.5 christos CFM_EXTRACT_VERSION(cfm_common_header->mdlevel_version), length));
295 1.1 christos return;
296 1.1 christos }
297 1.1 christos
298 1.5 christos ND_PRINT((ndo, "CFMv%u %s, MD Level %u, length %u",
299 1.1 christos CFM_EXTRACT_VERSION(cfm_common_header->mdlevel_version),
300 1.1 christos tok2str(cfm_opcode_values, "unknown (%u)", cfm_common_header->opcode),
301 1.1 christos CFM_EXTRACT_MD_LEVEL(cfm_common_header->mdlevel_version),
302 1.5 christos length));
303 1.1 christos
304 1.1 christos /*
305 1.1 christos * In non-verbose mode just print the opcode and md-level.
306 1.1 christos */
307 1.5 christos if (ndo->ndo_vflag < 1) {
308 1.1 christos return;
309 1.1 christos }
310 1.1 christos
311 1.5 christos ND_PRINT((ndo, "\n\tFirst TLV offset %u", cfm_common_header->first_tlv_offset));
312 1.1 christos
313 1.1 christos tptr += sizeof(const struct cfm_common_header_t);
314 1.1 christos tlen = length - sizeof(struct cfm_common_header_t);
315 1.1 christos
316 1.6.2.1 pgoyette /*
317 1.6.2.1 pgoyette * Sanity check the first TLV offset.
318 1.6.2.1 pgoyette */
319 1.6.2.1 pgoyette if (cfm_common_header->first_tlv_offset > tlen) {
320 1.6.2.1 pgoyette ND_PRINT((ndo, " (too large, must be <= %u)", tlen));
321 1.6.2.1 pgoyette return;
322 1.6.2.1 pgoyette }
323 1.6.2.1 pgoyette
324 1.1 christos switch (cfm_common_header->opcode) {
325 1.1 christos case CFM_OPCODE_CCM:
326 1.1 christos msg_ptr.cfm_ccm = (const struct cfm_ccm_t *)tptr;
327 1.6.2.1 pgoyette if (cfm_common_header->first_tlv_offset < sizeof(*msg_ptr.cfm_ccm)) {
328 1.6.2.1 pgoyette ND_PRINT((ndo, " (too small 1, must be >= %lu)",
329 1.6.2.1 pgoyette (unsigned long) sizeof(*msg_ptr.cfm_ccm)));
330 1.6.2.1 pgoyette return;
331 1.6.2.1 pgoyette }
332 1.6.2.1 pgoyette if (tlen < sizeof(*msg_ptr.cfm_ccm))
333 1.6.2.1 pgoyette goto tooshort;
334 1.6.2.1 pgoyette ND_TCHECK(*msg_ptr.cfm_ccm);
335 1.1 christos
336 1.1 christos ccm_interval = CFM_EXTRACT_CCM_INTERVAL(cfm_common_header->flags);
337 1.5 christos ND_PRINT((ndo, ", Flags [CCM Interval %u%s]",
338 1.1 christos ccm_interval,
339 1.1 christos cfm_common_header->flags & CFM_CCM_RDI_FLAG ?
340 1.5 christos ", RDI" : ""));
341 1.1 christos
342 1.1 christos /*
343 1.1 christos * Resolve the CCM interval field.
344 1.1 christos */
345 1.1 christos if (ccm_interval) {
346 1.5 christos ND_PRINT((ndo, "\n\t CCM Interval %.3fs"
347 1.1 christos ", min CCM Lifetime %.3fs, max CCM Lifetime %.3fs",
348 1.1 christos ccm_interval_base[ccm_interval],
349 1.1 christos ccm_interval_base[ccm_interval] * CCM_INTERVAL_MIN_MULTIPLIER,
350 1.5 christos ccm_interval_base[ccm_interval] * CCM_INTERVAL_MAX_MULTIPLIER));
351 1.1 christos }
352 1.1 christos
353 1.5 christos ND_PRINT((ndo, "\n\t Sequence Number 0x%08x, MA-End-Point-ID 0x%04x",
354 1.1 christos EXTRACT_32BITS(msg_ptr.cfm_ccm->sequence),
355 1.5 christos EXTRACT_16BITS(msg_ptr.cfm_ccm->ma_epi)));
356 1.1 christos
357 1.6.2.1 pgoyette namesp = msg_ptr.cfm_ccm->names;
358 1.6.2.1 pgoyette names_data_remaining = sizeof(msg_ptr.cfm_ccm->names);
359 1.1 christos
360 1.1 christos /*
361 1.1 christos * Resolve the MD fields.
362 1.1 christos */
363 1.6.2.1 pgoyette md_nameformat = *namesp;
364 1.6.2.1 pgoyette namesp++;
365 1.6.2.1 pgoyette names_data_remaining--; /* We know this is != 0 */
366 1.6.2.1 pgoyette if (md_nameformat != CFM_CCM_MD_FORMAT_NONE) {
367 1.6.2.1 pgoyette md_namelength = *namesp;
368 1.6.2.1 pgoyette namesp++;
369 1.6.2.1 pgoyette names_data_remaining--; /* We know this is !=0 */
370 1.6.2.1 pgoyette ND_PRINT((ndo, "\n\t MD Name Format %s (%u), MD Name length %u",
371 1.6.2.1 pgoyette tok2str(cfm_md_nameformat_values, "Unknown",
372 1.6.2.1 pgoyette md_nameformat),
373 1.6.2.1 pgoyette md_nameformat,
374 1.6.2.1 pgoyette md_namelength));
375 1.6.2.1 pgoyette
376 1.6.2.1 pgoyette /* -2 for the MA short name format and length */
377 1.6.2.1 pgoyette if (md_namelength > names_data_remaining - 2) {
378 1.6.2.1 pgoyette ND_PRINT((ndo, " (too large, must be <= %u)", names_data_remaining - 2));
379 1.6.2.1 pgoyette return;
380 1.6.2.1 pgoyette }
381 1.1 christos
382 1.6.2.1 pgoyette md_name = namesp;
383 1.5 christos ND_PRINT((ndo, "\n\t MD Name: "));
384 1.6.2.1 pgoyette switch (md_nameformat) {
385 1.1 christos case CFM_CCM_MD_FORMAT_DNS:
386 1.1 christos case CFM_CCM_MD_FORMAT_CHAR:
387 1.6.2.1 pgoyette safeputs(ndo, md_name, md_namelength);
388 1.1 christos break;
389 1.1 christos
390 1.1 christos case CFM_CCM_MD_FORMAT_MAC:
391 1.6.2.1 pgoyette if (md_namelength == 6) {
392 1.6.2.1 pgoyette ND_PRINT((ndo, "\n\t MAC %s", etheraddr_string(ndo,
393 1.6.2.1 pgoyette md_name)));
394 1.6.2.1 pgoyette } else {
395 1.6.2.1 pgoyette ND_PRINT((ndo, "\n\t MAC (length invalid)"));
396 1.6.2.1 pgoyette }
397 1.1 christos break;
398 1.1 christos
399 1.1 christos /* FIXME add printers for those MD formats - hexdump for now */
400 1.1 christos case CFM_CCM_MA_FORMAT_8021:
401 1.1 christos default:
402 1.6.2.1 pgoyette print_unknown_data(ndo, md_name, "\n\t ",
403 1.6.2.1 pgoyette md_namelength);
404 1.1 christos }
405 1.6.2.1 pgoyette namesp += md_namelength;
406 1.6.2.1 pgoyette names_data_remaining -= md_namelength;
407 1.6.2.1 pgoyette } else {
408 1.6.2.1 pgoyette ND_PRINT((ndo, "\n\t MD Name Format %s (%u)",
409 1.6.2.1 pgoyette tok2str(cfm_md_nameformat_values, "Unknown",
410 1.6.2.1 pgoyette md_nameformat),
411 1.6.2.1 pgoyette md_nameformat));
412 1.1 christos }
413 1.1 christos
414 1.1 christos
415 1.1 christos /*
416 1.1 christos * Resolve the MA fields.
417 1.1 christos */
418 1.6.2.1 pgoyette ma_nameformat = *namesp;
419 1.6.2.1 pgoyette namesp++;
420 1.6.2.1 pgoyette names_data_remaining--; /* We know this is != 0 */
421 1.6.2.1 pgoyette ma_namelength = *namesp;
422 1.6.2.1 pgoyette namesp++;
423 1.6.2.1 pgoyette names_data_remaining--; /* We know this is != 0 */
424 1.5 christos ND_PRINT((ndo, "\n\t MA Name-Format %s (%u), MA name length %u",
425 1.1 christos tok2str(cfm_ma_nameformat_values, "Unknown",
426 1.6.2.1 pgoyette ma_nameformat),
427 1.6.2.1 pgoyette ma_nameformat,
428 1.6.2.1 pgoyette ma_namelength));
429 1.6.2.1 pgoyette
430 1.6.2.1 pgoyette if (ma_namelength > names_data_remaining) {
431 1.6.2.1 pgoyette ND_PRINT((ndo, " (too large, must be <= %u)", names_data_remaining));
432 1.6.2.1 pgoyette return;
433 1.6.2.1 pgoyette }
434 1.1 christos
435 1.6.2.1 pgoyette ma_name = namesp;
436 1.5 christos ND_PRINT((ndo, "\n\t MA Name: "));
437 1.6.2.1 pgoyette switch (ma_nameformat) {
438 1.1 christos case CFM_CCM_MA_FORMAT_CHAR:
439 1.6.2.1 pgoyette safeputs(ndo, ma_name, ma_namelength);
440 1.1 christos break;
441 1.1 christos
442 1.1 christos /* FIXME add printers for those MA formats - hexdump for now */
443 1.1 christos case CFM_CCM_MA_FORMAT_8021:
444 1.1 christos case CFM_CCM_MA_FORMAT_VID:
445 1.1 christos case CFM_CCM_MA_FORMAT_INT:
446 1.1 christos case CFM_CCM_MA_FORMAT_VPN:
447 1.1 christos default:
448 1.6.2.1 pgoyette print_unknown_data(ndo, ma_name, "\n\t ", ma_namelength);
449 1.1 christos }
450 1.1 christos break;
451 1.1 christos
452 1.1 christos case CFM_OPCODE_LTM:
453 1.1 christos msg_ptr.cfm_ltm = (const struct cfm_ltm_t *)tptr;
454 1.6.2.1 pgoyette if (cfm_common_header->first_tlv_offset < sizeof(*msg_ptr.cfm_ltm)) {
455 1.6.2.1 pgoyette ND_PRINT((ndo, " (too small 4, must be >= %lu)",
456 1.6.2.1 pgoyette (unsigned long) sizeof(*msg_ptr.cfm_ltm)));
457 1.6.2.1 pgoyette return;
458 1.6.2.1 pgoyette }
459 1.6.2.1 pgoyette if (tlen < sizeof(*msg_ptr.cfm_ltm))
460 1.6.2.1 pgoyette goto tooshort;
461 1.6.2.1 pgoyette ND_TCHECK(*msg_ptr.cfm_ltm);
462 1.1 christos
463 1.5 christos ND_PRINT((ndo, ", Flags [%s]",
464 1.5 christos bittok2str(cfm_ltm_flag_values, "none", cfm_common_header->flags)));
465 1.1 christos
466 1.6.2.1 pgoyette ND_PRINT((ndo, "\n\t Transaction-ID 0x%08x, ttl %u",
467 1.1 christos EXTRACT_32BITS(msg_ptr.cfm_ltm->transaction_id),
468 1.5 christos msg_ptr.cfm_ltm->ttl));
469 1.1 christos
470 1.5 christos ND_PRINT((ndo, "\n\t Original-MAC %s, Target-MAC %s",
471 1.5 christos etheraddr_string(ndo, msg_ptr.cfm_ltm->original_mac),
472 1.5 christos etheraddr_string(ndo, msg_ptr.cfm_ltm->target_mac)));
473 1.1 christos break;
474 1.1 christos
475 1.1 christos case CFM_OPCODE_LTR:
476 1.1 christos msg_ptr.cfm_ltr = (const struct cfm_ltr_t *)tptr;
477 1.6.2.1 pgoyette if (cfm_common_header->first_tlv_offset < sizeof(*msg_ptr.cfm_ltr)) {
478 1.6.2.1 pgoyette ND_PRINT((ndo, " (too small 5, must be >= %lu)",
479 1.6.2.1 pgoyette (unsigned long) sizeof(*msg_ptr.cfm_ltr)));
480 1.6.2.1 pgoyette return;
481 1.6.2.1 pgoyette }
482 1.6.2.1 pgoyette if (tlen < sizeof(*msg_ptr.cfm_ltr))
483 1.6.2.1 pgoyette goto tooshort;
484 1.6.2.1 pgoyette ND_TCHECK(*msg_ptr.cfm_ltr);
485 1.1 christos
486 1.5 christos ND_PRINT((ndo, ", Flags [%s]",
487 1.5 christos bittok2str(cfm_ltr_flag_values, "none", cfm_common_header->flags)));
488 1.1 christos
489 1.6.2.1 pgoyette ND_PRINT((ndo, "\n\t Transaction-ID 0x%08x, ttl %u",
490 1.1 christos EXTRACT_32BITS(msg_ptr.cfm_ltr->transaction_id),
491 1.5 christos msg_ptr.cfm_ltr->ttl));
492 1.1 christos
493 1.5 christos ND_PRINT((ndo, "\n\t Replay-Action %s (%u)",
494 1.1 christos tok2str(cfm_ltr_replay_action_values,
495 1.1 christos "Unknown",
496 1.1 christos msg_ptr.cfm_ltr->replay_action),
497 1.5 christos msg_ptr.cfm_ltr->replay_action));
498 1.1 christos break;
499 1.1 christos
500 1.1 christos /*
501 1.1 christos * No message decoder yet.
502 1.1 christos * Hexdump everything up until the start of the TLVs
503 1.1 christos */
504 1.1 christos case CFM_OPCODE_LBR:
505 1.1 christos case CFM_OPCODE_LBM:
506 1.1 christos default:
507 1.6.2.1 pgoyette print_unknown_data(ndo, tptr, "\n\t ",
508 1.6.2.1 pgoyette tlen - cfm_common_header->first_tlv_offset);
509 1.1 christos break;
510 1.1 christos }
511 1.1 christos
512 1.1 christos tptr += cfm_common_header->first_tlv_offset;
513 1.1 christos tlen -= cfm_common_header->first_tlv_offset;
514 1.5 christos
515 1.1 christos while (tlen > 0) {
516 1.1 christos cfm_tlv_header = (const struct cfm_tlv_header_t *)tptr;
517 1.1 christos
518 1.1 christos /* Enough to read the tlv type ? */
519 1.5 christos ND_TCHECK2(*tptr, 1);
520 1.1 christos cfm_tlv_type=cfm_tlv_header->type;
521 1.1 christos
522 1.6.2.1 pgoyette ND_PRINT((ndo, "\n\t%s TLV (0x%02x)",
523 1.1 christos tok2str(cfm_tlv_values, "Unknown", cfm_tlv_type),
524 1.6.2.1 pgoyette cfm_tlv_type));
525 1.1 christos
526 1.6.2.1 pgoyette if (cfm_tlv_type == CFM_TLV_END) {
527 1.6.2.1 pgoyette /* Length is "Not present if the Type field is 0." */
528 1.1 christos return;
529 1.1 christos }
530 1.1 christos
531 1.6.2.1 pgoyette /* do we have the full tlv header ? */
532 1.6.2.1 pgoyette if (tlen < sizeof(struct cfm_tlv_header_t))
533 1.6.2.1 pgoyette goto tooshort;
534 1.6.2.1 pgoyette ND_TCHECK2(*tptr, sizeof(struct cfm_tlv_header_t));
535 1.6.2.1 pgoyette cfm_tlv_len=EXTRACT_16BITS(&cfm_tlv_header->length);
536 1.6.2.1 pgoyette
537 1.6.2.1 pgoyette ND_PRINT((ndo, ", length %u", cfm_tlv_len));
538 1.6.2.1 pgoyette
539 1.1 christos tptr += sizeof(struct cfm_tlv_header_t);
540 1.1 christos tlen -= sizeof(struct cfm_tlv_header_t);
541 1.1 christos tlv_ptr = tptr;
542 1.1 christos
543 1.6.2.1 pgoyette /* do we have the full tlv ? */
544 1.6.2.1 pgoyette if (tlen < cfm_tlv_len)
545 1.6.2.1 pgoyette goto tooshort;
546 1.6.2.1 pgoyette ND_TCHECK2(*tptr, cfm_tlv_len);
547 1.1 christos hexdump = FALSE;
548 1.1 christos
549 1.1 christos switch(cfm_tlv_type) {
550 1.1 christos case CFM_TLV_PORT_STATUS:
551 1.6.2.1 pgoyette if (cfm_tlv_len < 1) {
552 1.6.2.1 pgoyette ND_PRINT((ndo, " (too short, must be >= 1)"));
553 1.6.2.1 pgoyette return;
554 1.6.2.1 pgoyette }
555 1.5 christos ND_PRINT((ndo, ", Status: %s (%u)",
556 1.1 christos tok2str(cfm_tlv_port_status_values, "Unknown", *tptr),
557 1.5 christos *tptr));
558 1.1 christos break;
559 1.1 christos
560 1.1 christos case CFM_TLV_INTERFACE_STATUS:
561 1.6.2.1 pgoyette if (cfm_tlv_len < 1) {
562 1.6.2.1 pgoyette ND_PRINT((ndo, " (too short, must be >= 1)"));
563 1.6.2.1 pgoyette return;
564 1.6.2.1 pgoyette }
565 1.5 christos ND_PRINT((ndo, ", Status: %s (%u)",
566 1.1 christos tok2str(cfm_tlv_interface_status_values, "Unknown", *tptr),
567 1.5 christos *tptr));
568 1.1 christos break;
569 1.1 christos
570 1.1 christos case CFM_TLV_PRIVATE:
571 1.6.2.1 pgoyette if (cfm_tlv_len < 4) {
572 1.6.2.1 pgoyette ND_PRINT((ndo, " (too short, must be >= 4)"));
573 1.6.2.1 pgoyette return;
574 1.6.2.1 pgoyette }
575 1.5 christos ND_PRINT((ndo, ", Vendor: %s (%u), Sub-Type %u",
576 1.1 christos tok2str(oui_values,"Unknown", EXTRACT_24BITS(tptr)),
577 1.1 christos EXTRACT_24BITS(tptr),
578 1.5 christos *(tptr + 3)));
579 1.1 christos hexdump = TRUE;
580 1.1 christos break;
581 1.1 christos
582 1.1 christos case CFM_TLV_SENDER_ID:
583 1.1 christos {
584 1.1 christos u_int chassis_id_type, chassis_id_length;
585 1.1 christos u_int mgmt_addr_length;
586 1.1 christos
587 1.6.2.1 pgoyette if (cfm_tlv_len < 1) {
588 1.6.2.1 pgoyette ND_PRINT((ndo, " (too short, must be >= 1)"));
589 1.6.2.1 pgoyette return;
590 1.6.2.1 pgoyette }
591 1.6.2.1 pgoyette
592 1.1 christos /*
593 1.6.2.1 pgoyette * Get the Chassis ID length and check it.
594 1.1 christos */
595 1.1 christos chassis_id_length = *tptr;
596 1.1 christos tptr++;
597 1.1 christos tlen--;
598 1.6.2.1 pgoyette cfm_tlv_len--;
599 1.1 christos
600 1.1 christos if (chassis_id_length) {
601 1.6.2.1 pgoyette if (cfm_tlv_len < 1) {
602 1.6.2.1 pgoyette ND_PRINT((ndo, "\n\t (TLV too short)"));
603 1.6.2.1 pgoyette return;
604 1.6.2.1 pgoyette }
605 1.1 christos chassis_id_type = *tptr;
606 1.6.2.1 pgoyette cfm_tlv_len--;
607 1.5 christos ND_PRINT((ndo, "\n\t Chassis-ID Type %s (%u), Chassis-ID length %u",
608 1.1 christos tok2str(cfm_tlv_senderid_chassisid_values,
609 1.1 christos "Unknown",
610 1.1 christos chassis_id_type),
611 1.1 christos chassis_id_type,
612 1.5 christos chassis_id_length));
613 1.1 christos
614 1.6.2.1 pgoyette if (cfm_tlv_len < chassis_id_length) {
615 1.6.2.1 pgoyette ND_PRINT((ndo, "\n\t (TLV too short)"));
616 1.6.2.1 pgoyette return;
617 1.6.2.1 pgoyette }
618 1.6.2.1 pgoyette
619 1.1 christos switch (chassis_id_type) {
620 1.1 christos case CFM_CHASSIS_ID_MAC_ADDRESS:
621 1.5 christos ND_PRINT((ndo, "\n\t MAC %s", etheraddr_string(ndo, tptr + 1)));
622 1.1 christos break;
623 1.1 christos
624 1.1 christos case CFM_CHASSIS_ID_NETWORK_ADDRESS:
625 1.6.2.1 pgoyette hexdump |= cfm_network_addr_print(ndo, tptr);
626 1.1 christos break;
627 1.1 christos
628 1.1 christos case CFM_CHASSIS_ID_INTERFACE_NAME: /* fall through */
629 1.1 christos case CFM_CHASSIS_ID_INTERFACE_ALIAS:
630 1.1 christos case CFM_CHASSIS_ID_LOCAL:
631 1.1 christos case CFM_CHASSIS_ID_CHASSIS_COMPONENT:
632 1.1 christos case CFM_CHASSIS_ID_PORT_COMPONENT:
633 1.5 christos safeputs(ndo, tptr + 1, chassis_id_length);
634 1.1 christos break;
635 1.1 christos
636 1.1 christos default:
637 1.1 christos hexdump = TRUE;
638 1.1 christos break;
639 1.1 christos }
640 1.6.2.1 pgoyette cfm_tlv_len -= chassis_id_length;
641 1.1 christos
642 1.6.2.1 pgoyette tptr += 1 + chassis_id_length;
643 1.6.2.1 pgoyette tlen -= 1 + chassis_id_length;
644 1.6.2.1 pgoyette }
645 1.1 christos
646 1.1 christos /*
647 1.1 christos * Check if there is a Management Address.
648 1.1 christos */
649 1.6.2.1 pgoyette if (cfm_tlv_len == 0) {
650 1.6.2.1 pgoyette /* No, there isn't; we're done. */
651 1.6.2.1 pgoyette return;
652 1.1 christos }
653 1.1 christos
654 1.6.2.1 pgoyette mgmt_addr_length = *tptr;
655 1.1 christos tptr++;
656 1.1 christos tlen--;
657 1.6.2.1 pgoyette cfm_tlv_len--;
658 1.1 christos if (mgmt_addr_length) {
659 1.6.2.1 pgoyette if (cfm_tlv_len < mgmt_addr_length) {
660 1.6.2.1 pgoyette ND_PRINT((ndo, "\n\t (TLV too short)"));
661 1.6.2.1 pgoyette return;
662 1.6.2.1 pgoyette }
663 1.6.2.1 pgoyette cfm_tlv_len -= mgmt_addr_length;
664 1.6.2.1 pgoyette /*
665 1.6.2.1 pgoyette * XXX - this is an OID; print it as such.
666 1.6.2.1 pgoyette */
667 1.6.2.1 pgoyette tptr += mgmt_addr_length;
668 1.6.2.1 pgoyette tlen -= mgmt_addr_length;
669 1.6.2.1 pgoyette
670 1.6.2.1 pgoyette if (cfm_tlv_len < 1) {
671 1.6.2.1 pgoyette ND_PRINT((ndo, "\n\t (TLV too short)"));
672 1.6.2.1 pgoyette return;
673 1.6.2.1 pgoyette }
674 1.6.2.1 pgoyette
675 1.6.2.1 pgoyette mgmt_addr_length = *tptr;
676 1.6.2.1 pgoyette tptr++;
677 1.6.2.1 pgoyette tlen--;
678 1.6.2.1 pgoyette cfm_tlv_len--;
679 1.6.2.1 pgoyette if (mgmt_addr_length) {
680 1.6.2.1 pgoyette if (cfm_tlv_len < mgmt_addr_length) {
681 1.6.2.1 pgoyette ND_PRINT((ndo, "\n\t (TLV too short)"));
682 1.6.2.1 pgoyette return;
683 1.6.2.1 pgoyette }
684 1.6.2.1 pgoyette cfm_tlv_len -= mgmt_addr_length;
685 1.6.2.1 pgoyette /*
686 1.6.2.1 pgoyette * XXX - this is a TransportDomain; print it as such.
687 1.6.2.1 pgoyette */
688 1.6.2.1 pgoyette tptr += mgmt_addr_length;
689 1.6.2.1 pgoyette tlen -= mgmt_addr_length;
690 1.6.2.1 pgoyette }
691 1.1 christos }
692 1.6.2.1 pgoyette break;
693 1.1 christos }
694 1.1 christos
695 1.1 christos /*
696 1.1 christos * FIXME those are the defined TLVs that lack a decoder
697 1.1 christos * you are welcome to contribute code ;-)
698 1.1 christos */
699 1.1 christos
700 1.1 christos case CFM_TLV_DATA:
701 1.1 christos case CFM_TLV_REPLY_INGRESS:
702 1.1 christos case CFM_TLV_REPLY_EGRESS:
703 1.1 christos default:
704 1.1 christos hexdump = TRUE;
705 1.1 christos break;
706 1.1 christos }
707 1.1 christos /* do we want to see an additional hexdump ? */
708 1.5 christos if (hexdump || ndo->ndo_vflag > 1)
709 1.5 christos print_unknown_data(ndo, tlv_ptr, "\n\t ", cfm_tlv_len);
710 1.1 christos
711 1.1 christos tptr+=cfm_tlv_len;
712 1.1 christos tlen-=cfm_tlv_len;
713 1.1 christos }
714 1.1 christos return;
715 1.6.2.1 pgoyette
716 1.6.2.1 pgoyette tooshort:
717 1.6.2.1 pgoyette ND_PRINT((ndo, "\n\t\t packet is too short"));
718 1.6.2.1 pgoyette return;
719 1.6.2.1 pgoyette
720 1.1 christos trunc:
721 1.5 christos ND_PRINT((ndo, "\n\t\t packet exceeded snapshot"));
722 1.1 christos }
723