1 1.1 christos /* 2 1.1 christos * Copyright (c) 1992, 1993, 1994, 1995, 1996, 1997 3 1.1 christos * The Regents of the University of California. All rights reserved. 4 1.1 christos * 5 1.1 christos * Redistribution and use in source and binary forms, with or without 6 1.1 christos * modification, are permitted provided that: (1) source code distributions 7 1.1 christos * retain the above copyright notice and this paragraph in its entirety, (2) 8 1.1 christos * distributions including binary code include the above copyright notice and 9 1.1 christos * this paragraph in its entirety in the documentation or other materials 10 1.1 christos * provided with the distribution, and (3) all advertising materials mentioning 11 1.1 christos * features or use of this software display the following acknowledgement: 12 1.1 christos * ``This product includes software developed by the University of California, 13 1.1 christos * Lawrence Berkeley Laboratory and its contributors.'' Neither the name of 14 1.1 christos * the University nor the names of its contributors may be used to endorse 15 1.1 christos * or promote products derived from this software without specific prior 16 1.1 christos * written permission. 17 1.1 christos * THIS SOFTWARE IS PROVIDED ``AS IS'' AND WITHOUT ANY EXPRESS OR IMPLIED 18 1.1 christos * WARRANTIES, INCLUDING, WITHOUT LIMITATION, THE IMPLIED WARRANTIES OF 19 1.1 christos * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE. 20 1.1 christos * 21 1.1 christos * OSPF support contributed by Jeffrey Honig (jch (at) mitchell.cit.cornell.edu) 22 1.1 christos */ 23 1.1 christos 24 1.2 christos #include <sys/cdefs.h> 25 1.1 christos #ifndef lint 26 1.12 christos __RCSID("$NetBSD: print-ospf6.c,v 1.12 2024/09/02 16:15:32 christos Exp $"); 27 1.1 christos #endif 28 1.1 christos 29 1.7 spz /* \summary: IPv6 Open Shortest Path First (OSPFv3) printer */ 30 1.7 spz 31 1.11 christos #include <config.h> 32 1.1 christos 33 1.11 christos #include "netdissect-stdinc.h" 34 1.1 christos 35 1.1 christos #include <string.h> 36 1.1 christos 37 1.6 christos #include "netdissect.h" 38 1.1 christos #include "addrtoname.h" 39 1.1 christos #include "extract.h" 40 1.1 christos 41 1.1 christos #include "ospf.h" 42 1.5 christos 43 1.5 christos #define OSPF_TYPE_HELLO 1 /* Hello */ 44 1.5 christos #define OSPF_TYPE_DD 2 /* Database Description */ 45 1.5 christos #define OSPF_TYPE_LS_REQ 3 /* Link State Request */ 46 1.5 christos #define OSPF_TYPE_LS_UPDATE 4 /* Link State Update */ 47 1.5 christos #define OSPF_TYPE_LS_ACK 5 /* Link State Ack */ 48 1.5 christos 49 1.5 christos /* Options *_options */ 50 1.5 christos #define OSPF6_OPTION_V6 0x01 /* V6 bit: A bit for peeping tom */ 51 1.5 christos #define OSPF6_OPTION_E 0x02 /* E bit: External routes advertised */ 52 1.5 christos #define OSPF6_OPTION_MC 0x04 /* MC bit: Multicast capable */ 53 1.5 christos #define OSPF6_OPTION_N 0x08 /* N bit: For type-7 LSA */ 54 1.5 christos #define OSPF6_OPTION_R 0x10 /* R bit: Router bit */ 55 1.5 christos #define OSPF6_OPTION_DC 0x20 /* DC bit: Demand circuits */ 56 1.5 christos /* The field is actually 24-bit (RFC5340 Section A.2). */ 57 1.5 christos #define OSPF6_OPTION_AF 0x0100 /* AF bit: Multiple address families */ 58 1.5 christos #define OSPF6_OPTION_L 0x0200 /* L bit: Link-local signaling (LLS) */ 59 1.5 christos #define OSPF6_OPTION_AT 0x0400 /* AT bit: Authentication trailer */ 60 1.5 christos 61 1.5 christos 62 1.5 christos /* db_flags */ 63 1.5 christos #define OSPF6_DB_INIT 0x04 /* */ 64 1.5 christos #define OSPF6_DB_MORE 0x02 65 1.5 christos #define OSPF6_DB_MASTER 0x01 66 1.5 christos #define OSPF6_DB_M6 0x10 /* IPv6 MTU */ 67 1.5 christos 68 1.5 christos /* ls_type */ 69 1.5 christos #define LS_TYPE_ROUTER 1 /* router link */ 70 1.5 christos #define LS_TYPE_NETWORK 2 /* network link */ 71 1.5 christos #define LS_TYPE_INTER_AP 3 /* Inter-Area-Prefix */ 72 1.5 christos #define LS_TYPE_INTER_AR 4 /* Inter-Area-Router */ 73 1.5 christos #define LS_TYPE_ASE 5 /* ASE */ 74 1.5 christos #define LS_TYPE_GROUP 6 /* Group membership */ 75 1.5 christos #define LS_TYPE_NSSA 7 /* NSSA */ 76 1.5 christos #define LS_TYPE_LINK 8 /* Link LSA */ 77 1.5 christos #define LS_TYPE_INTRA_AP 9 /* Intra-Area-Prefix */ 78 1.5 christos #define LS_TYPE_INTRA_ATE 10 /* Intra-Area-TE */ 79 1.5 christos #define LS_TYPE_GRACE 11 /* Grace LSA */ 80 1.5 christos #define LS_TYPE_RI 12 /* Router information */ 81 1.5 christos #define LS_TYPE_INTER_ASTE 13 /* Inter-AS-TE */ 82 1.5 christos #define LS_TYPE_L1VPN 14 /* L1VPN */ 83 1.5 christos #define LS_TYPE_MASK 0x1fff 84 1.5 christos 85 1.5 christos #define LS_SCOPE_LINKLOCAL 0x0000 86 1.5 christos #define LS_SCOPE_AREA 0x2000 87 1.5 christos #define LS_SCOPE_AS 0x4000 88 1.5 christos #define LS_SCOPE_MASK 0x6000 89 1.5 christos #define LS_SCOPE_U 0x8000 90 1.5 christos 91 1.5 christos /* rla_link.link_type */ 92 1.5 christos #define RLA_TYPE_ROUTER 1 /* point-to-point to another router */ 93 1.5 christos #define RLA_TYPE_TRANSIT 2 /* connection to transit network */ 94 1.5 christos #define RLA_TYPE_VIRTUAL 4 /* virtual link */ 95 1.5 christos 96 1.5 christos /* rla_flags */ 97 1.5 christos #define RLA_FLAG_B 0x01 98 1.5 christos #define RLA_FLAG_E 0x02 99 1.5 christos #define RLA_FLAG_V 0x04 100 1.5 christos #define RLA_FLAG_W 0x08 101 1.11 christos #define RLA_FLAG_Nt 0x10 102 1.5 christos 103 1.5 christos /* lsa_prefix options */ 104 1.5 christos #define LSA_PREFIX_OPT_NU 0x01 105 1.5 christos #define LSA_PREFIX_OPT_LA 0x02 106 1.5 christos #define LSA_PREFIX_OPT_MC 0x04 107 1.5 christos #define LSA_PREFIX_OPT_P 0x08 108 1.5 christos #define LSA_PREFIX_OPT_DN 0x10 109 1.11 christos #define LSA_PREFIX_OPT_N 0x20 110 1.5 christos 111 1.5 christos /* sla_tosmetric breakdown */ 112 1.5 christos #define SLA_MASK_TOS 0x7f000000 113 1.5 christos #define SLA_MASK_METRIC 0x00ffffff 114 1.5 christos #define SLA_SHIFT_TOS 24 115 1.5 christos 116 1.5 christos /* asla_metric */ 117 1.5 christos #define ASLA_FLAG_FWDADDR 0x02000000 118 1.5 christos #define ASLA_FLAG_ROUTETAG 0x01000000 119 1.5 christos #define ASLA_MASK_METRIC 0x00ffffff 120 1.5 christos 121 1.5 christos /* RFC6506 Section 4.1 */ 122 1.5 christos #define OSPF6_AT_HDRLEN 16U 123 1.5 christos #define OSPF6_AUTH_TYPE_HMAC 0x0001 124 1.5 christos 125 1.11 christos typedef nd_uint32_t rtrid_t; 126 1.5 christos 127 1.5 christos /* link state advertisement header */ 128 1.5 christos struct lsa6_hdr { 129 1.11 christos nd_uint16_t ls_age; 130 1.11 christos nd_uint16_t ls_type; 131 1.5 christos rtrid_t ls_stateid; 132 1.5 christos rtrid_t ls_router; 133 1.11 christos nd_uint32_t ls_seq; 134 1.11 christos nd_uint16_t ls_chksum; 135 1.11 christos nd_uint16_t ls_length; 136 1.5 christos }; 137 1.5 christos 138 1.5 christos /* Length of an IPv6 address, in bytes. */ 139 1.5 christos #define IPV6_ADDR_LEN_BYTES (128/8) 140 1.5 christos 141 1.5 christos struct lsa6_prefix { 142 1.11 christos nd_uint8_t lsa_p_len; 143 1.11 christos nd_uint8_t lsa_p_opt; 144 1.11 christos nd_uint16_t lsa_p_metric; 145 1.11 christos nd_byte lsa_p_prefix[IPV6_ADDR_LEN_BYTES]; /* maximum length */ 146 1.5 christos }; 147 1.5 christos 148 1.5 christos /* link state advertisement */ 149 1.5 christos struct lsa6 { 150 1.5 christos struct lsa6_hdr ls_hdr; 151 1.5 christos 152 1.5 christos /* Link state types */ 153 1.5 christos union { 154 1.5 christos /* Router links advertisements */ 155 1.5 christos struct { 156 1.5 christos union { 157 1.11 christos nd_uint8_t flg; 158 1.11 christos nd_uint32_t opt; 159 1.5 christos } rla_flgandopt; 160 1.5 christos #define rla_flags rla_flgandopt.flg 161 1.5 christos #define rla_options rla_flgandopt.opt 162 1.5 christos struct rlalink6 { 163 1.11 christos nd_uint8_t link_type; 164 1.11 christos nd_byte link_zero; 165 1.11 christos nd_uint16_t link_metric; 166 1.11 christos nd_uint32_t link_ifid; 167 1.11 christos nd_uint32_t link_nifid; 168 1.5 christos rtrid_t link_nrtid; 169 1.5 christos } rla_link[1]; /* may repeat */ 170 1.5 christos } un_rla; 171 1.5 christos 172 1.5 christos /* Network links advertisements */ 173 1.5 christos struct { 174 1.11 christos nd_uint32_t nla_options; 175 1.5 christos rtrid_t nla_router[1]; /* may repeat */ 176 1.5 christos } un_nla; 177 1.5 christos 178 1.5 christos /* Inter Area Prefix LSA */ 179 1.5 christos struct { 180 1.11 christos nd_uint32_t inter_ap_metric; 181 1.5 christos struct lsa6_prefix inter_ap_prefix[1]; 182 1.5 christos } un_inter_ap; 183 1.5 christos 184 1.5 christos /* AS external links advertisements */ 185 1.5 christos struct { 186 1.11 christos nd_uint32_t asla_metric; 187 1.5 christos struct lsa6_prefix asla_prefix[1]; 188 1.5 christos /* some optional fields follow */ 189 1.5 christos } un_asla; 190 1.5 christos 191 1.5 christos #if 0 192 1.5 christos /* Summary links advertisements */ 193 1.5 christos struct { 194 1.11 christos nd_ipv4 sla_mask; 195 1.11 christos nd_uint32_t sla_tosmetric[1]; /* may repeat */ 196 1.5 christos } un_sla; 197 1.5 christos 198 1.5 christos /* Multicast group membership */ 199 1.5 christos struct mcla { 200 1.11 christos nd_uint32_t mcla_vtype; 201 1.11 christos nd_ipv4 mcla_vid; 202 1.5 christos } un_mcla[1]; 203 1.5 christos #endif 204 1.5 christos 205 1.5 christos /* Type 7 LSA */ 206 1.5 christos 207 1.5 christos /* Link LSA */ 208 1.5 christos struct llsa { 209 1.5 christos union { 210 1.11 christos nd_uint8_t pri; 211 1.11 christos nd_uint32_t opt; 212 1.5 christos } llsa_priandopt; 213 1.5 christos #define llsa_priority llsa_priandopt.pri 214 1.5 christos #define llsa_options llsa_priandopt.opt 215 1.11 christos nd_ipv6 llsa_lladdr; 216 1.11 christos nd_uint32_t llsa_nprefix; 217 1.5 christos struct lsa6_prefix llsa_prefix[1]; 218 1.5 christos } un_llsa; 219 1.5 christos 220 1.5 christos /* Intra-Area-Prefix */ 221 1.5 christos struct { 222 1.11 christos nd_uint16_t intra_ap_nprefix; 223 1.11 christos nd_uint16_t intra_ap_lstype; 224 1.5 christos rtrid_t intra_ap_lsid; 225 1.5 christos rtrid_t intra_ap_rtid; 226 1.5 christos struct lsa6_prefix intra_ap_prefix[1]; 227 1.5 christos } un_intra_ap; 228 1.5 christos } lsa_un; 229 1.5 christos }; 230 1.5 christos 231 1.5 christos /* 232 1.5 christos * the main header 233 1.5 christos */ 234 1.5 christos struct ospf6hdr { 235 1.11 christos nd_uint8_t ospf6_version; 236 1.11 christos nd_uint8_t ospf6_type; 237 1.11 christos nd_uint16_t ospf6_len; 238 1.5 christos rtrid_t ospf6_routerid; 239 1.5 christos rtrid_t ospf6_areaid; 240 1.11 christos nd_uint16_t ospf6_chksum; 241 1.11 christos nd_uint8_t ospf6_instanceid; 242 1.11 christos nd_uint8_t ospf6_rsvd; 243 1.5 christos }; 244 1.5 christos 245 1.5 christos /* 246 1.5 christos * The OSPF6 header length is 16 bytes, regardless of how your compiler 247 1.5 christos * might choose to pad the above structure. 248 1.5 christos */ 249 1.5 christos #define OSPF6HDR_LEN 16 250 1.5 christos 251 1.5 christos /* Hello packet */ 252 1.5 christos struct hello6 { 253 1.11 christos nd_uint32_t hello_ifid; 254 1.5 christos union { 255 1.11 christos nd_uint8_t pri; 256 1.11 christos nd_uint32_t opt; 257 1.5 christos } hello_priandopt; 258 1.5 christos #define hello_priority hello_priandopt.pri 259 1.5 christos #define hello_options hello_priandopt.opt 260 1.11 christos nd_uint16_t hello_helloint; 261 1.11 christos nd_uint16_t hello_deadint; 262 1.5 christos rtrid_t hello_dr; 263 1.5 christos rtrid_t hello_bdr; 264 1.5 christos rtrid_t hello_neighbor[1]; /* may repeat */ 265 1.5 christos }; 266 1.5 christos 267 1.5 christos /* Database Description packet */ 268 1.5 christos struct dd6 { 269 1.11 christos nd_uint32_t db_options; 270 1.11 christos nd_uint16_t db_mtu; 271 1.11 christos nd_uint8_t db_mbz; 272 1.11 christos nd_uint8_t db_flags; 273 1.11 christos nd_uint32_t db_seq; 274 1.5 christos struct lsa6_hdr db_lshdr[1]; /* may repeat */ 275 1.5 christos }; 276 1.5 christos 277 1.5 christos /* Link State Request */ 278 1.5 christos struct lsr6 { 279 1.11 christos nd_uint16_t ls_mbz; 280 1.11 christos nd_uint16_t ls_type; 281 1.5 christos rtrid_t ls_stateid; 282 1.5 christos rtrid_t ls_router; 283 1.5 christos }; 284 1.5 christos 285 1.5 christos /* Link State Update */ 286 1.5 christos struct lsu6 { 287 1.11 christos nd_uint32_t lsu_count; 288 1.5 christos struct lsa6 lsu_lsa[1]; /* may repeat */ 289 1.5 christos }; 290 1.5 christos 291 1.1 christos 292 1.1 christos static const struct tok ospf6_option_values[] = { 293 1.1 christos { OSPF6_OPTION_V6, "V6" }, 294 1.1 christos { OSPF6_OPTION_E, "External" }, 295 1.5 christos { OSPF6_OPTION_MC, "Deprecated" }, 296 1.1 christos { OSPF6_OPTION_N, "NSSA" }, 297 1.1 christos { OSPF6_OPTION_R, "Router" }, 298 1.1 christos { OSPF6_OPTION_DC, "Demand Circuit" }, 299 1.5 christos { OSPF6_OPTION_AF, "AFs Support" }, 300 1.5 christos { OSPF6_OPTION_L, "LLS" }, 301 1.5 christos { OSPF6_OPTION_AT, "Authentication Trailer" }, 302 1.1 christos { 0, NULL } 303 1.1 christos }; 304 1.1 christos 305 1.1 christos static const struct tok ospf6_rla_flag_values[] = { 306 1.1 christos { RLA_FLAG_B, "ABR" }, 307 1.1 christos { RLA_FLAG_E, "External" }, 308 1.1 christos { RLA_FLAG_V, "Virtual-Link Endpoint" }, 309 1.11 christos { RLA_FLAG_W, "Deprecated" }, 310 1.11 christos { RLA_FLAG_Nt, "NSSA Translator" }, 311 1.1 christos { 0, NULL } 312 1.1 christos }; 313 1.1 christos 314 1.1 christos static const struct tok ospf6_asla_flag_values[] = { 315 1.1 christos { ASLA_FLAG_EXTERNAL, "External Type 2" }, 316 1.5 christos { ASLA_FLAG_FWDADDR, "Forwarding" }, 317 1.1 christos { ASLA_FLAG_ROUTETAG, "Tag" }, 318 1.1 christos { 0, NULL } 319 1.1 christos }; 320 1.1 christos 321 1.4 christos static const struct tok ospf6_type_values[] = { 322 1.1 christos { OSPF_TYPE_HELLO, "Hello" }, 323 1.1 christos { OSPF_TYPE_DD, "Database Description" }, 324 1.1 christos { OSPF_TYPE_LS_REQ, "LS-Request" }, 325 1.1 christos { OSPF_TYPE_LS_UPDATE, "LS-Update" }, 326 1.1 christos { OSPF_TYPE_LS_ACK, "LS-Ack" }, 327 1.1 christos { 0, NULL } 328 1.1 christos }; 329 1.1 christos 330 1.4 christos static const struct tok ospf6_lsa_values[] = { 331 1.1 christos { LS_TYPE_ROUTER, "Router" }, 332 1.1 christos { LS_TYPE_NETWORK, "Network" }, 333 1.1 christos { LS_TYPE_INTER_AP, "Inter-Area Prefix" }, 334 1.1 christos { LS_TYPE_INTER_AR, "Inter-Area Router" }, 335 1.1 christos { LS_TYPE_ASE, "External" }, 336 1.5 christos { LS_TYPE_GROUP, "Deprecated" }, 337 1.1 christos { LS_TYPE_NSSA, "NSSA" }, 338 1.1 christos { LS_TYPE_LINK, "Link" }, 339 1.1 christos { LS_TYPE_INTRA_AP, "Intra-Area Prefix" }, 340 1.1 christos { LS_TYPE_INTRA_ATE, "Intra-Area TE" }, 341 1.1 christos { LS_TYPE_GRACE, "Grace" }, 342 1.5 christos { LS_TYPE_RI, "Router Information" }, 343 1.5 christos { LS_TYPE_INTER_ASTE, "Inter-AS-TE" }, 344 1.5 christos { LS_TYPE_L1VPN, "Layer 1 VPN" }, 345 1.1 christos { 0, NULL } 346 1.1 christos }; 347 1.1 christos 348 1.4 christos static const struct tok ospf6_ls_scope_values[] = { 349 1.1 christos { LS_SCOPE_LINKLOCAL, "Link Local" }, 350 1.1 christos { LS_SCOPE_AREA, "Area Local" }, 351 1.1 christos { LS_SCOPE_AS, "Domain Wide" }, 352 1.1 christos { 0, NULL } 353 1.1 christos }; 354 1.1 christos 355 1.4 christos static const struct tok ospf6_dd_flag_values[] = { 356 1.1 christos { OSPF6_DB_INIT, "Init" }, 357 1.1 christos { OSPF6_DB_MORE, "More" }, 358 1.1 christos { OSPF6_DB_MASTER, "Master" }, 359 1.5 christos { OSPF6_DB_M6, "IPv6 MTU" }, 360 1.1 christos { 0, NULL } 361 1.1 christos }; 362 1.1 christos 363 1.4 christos static const struct tok ospf6_lsa_prefix_option_values[] = { 364 1.1 christos { LSA_PREFIX_OPT_NU, "No Unicast" }, 365 1.1 christos { LSA_PREFIX_OPT_LA, "Local address" }, 366 1.5 christos { LSA_PREFIX_OPT_MC, "Deprecated" }, 367 1.1 christos { LSA_PREFIX_OPT_P, "Propagate" }, 368 1.1 christos { LSA_PREFIX_OPT_DN, "Down" }, 369 1.11 christos { LSA_PREFIX_OPT_N, "N-bit" }, 370 1.1 christos { 0, NULL } 371 1.1 christos }; 372 1.1 christos 373 1.5 christos static const struct tok ospf6_auth_type_str[] = { 374 1.5 christos { OSPF6_AUTH_TYPE_HMAC, "HMAC" }, 375 1.5 christos { 0, NULL } 376 1.5 christos }; 377 1.1 christos 378 1.1 christos static void 379 1.5 christos ospf6_print_ls_type(netdissect_options *ndo, 380 1.11 christos u_int ls_type, const rtrid_t *ls_stateid) 381 1.1 christos { 382 1.11 christos ND_PRINT("\n\t %s LSA (%u), %s Scope%s, LSA-ID %s", 383 1.1 christos tok2str(ospf6_lsa_values, "Unknown", ls_type & LS_TYPE_MASK), 384 1.1 christos ls_type & LS_TYPE_MASK, 385 1.1 christos tok2str(ospf6_ls_scope_values, "Unknown", ls_type & LS_SCOPE_MASK), 386 1.1 christos ls_type &0x8000 ? ", transitive" : "", /* U-bit */ 387 1.11 christos GET_IPADDR_STRING(ls_stateid)); 388 1.1 christos } 389 1.1 christos 390 1.10 kamil UNALIGNED_OK 391 1.1 christos static int 392 1.5 christos ospf6_print_lshdr(netdissect_options *ndo, 393 1.11 christos const struct lsa6_hdr *lshp, const u_char *dataend) 394 1.1 christos { 395 1.12 christos u_int ls_length; 396 1.12 christos 397 1.6 christos if ((const u_char *)(lshp + 1) > dataend) 398 1.5 christos goto trunc; 399 1.1 christos 400 1.12 christos ls_length = GET_BE_U_2(lshp->ls_length); 401 1.12 christos if (ls_length < sizeof(struct lsa_hdr)) { 402 1.12 christos ND_PRINT("\n\t Bogus length %u < header (%zu)", ls_length, 403 1.12 christos sizeof(struct lsa_hdr)); 404 1.12 christos goto trunc; 405 1.12 christos } 406 1.12 christos 407 1.11 christos ND_PRINT("\n\t Advertising Router %s, seq 0x%08x, age %us, length %zu", 408 1.11 christos GET_IPADDR_STRING(lshp->ls_router), 409 1.11 christos GET_BE_U_4(lshp->ls_seq), 410 1.11 christos GET_BE_U_2(lshp->ls_age), 411 1.12 christos ls_length-sizeof(struct lsa6_hdr)); 412 1.1 christos 413 1.11 christos ospf6_print_ls_type(ndo, GET_BE_U_2(lshp->ls_type), 414 1.11 christos &lshp->ls_stateid); 415 1.1 christos 416 1.1 christos return (0); 417 1.1 christos trunc: 418 1.1 christos return (1); 419 1.1 christos } 420 1.1 christos 421 1.1 christos static int 422 1.5 christos ospf6_print_lsaprefix(netdissect_options *ndo, 423 1.5 christos const uint8_t *tptr, u_int lsa_length) 424 1.1 christos { 425 1.6 christos const struct lsa6_prefix *lsapp = (const struct lsa6_prefix *)tptr; 426 1.1 christos u_int wordlen; 427 1.11 christos nd_ipv6 prefix; 428 1.1 christos 429 1.5 christos if (lsa_length < sizeof (*lsapp) - IPV6_ADDR_LEN_BYTES) 430 1.3 christos goto trunc; 431 1.5 christos lsa_length -= sizeof (*lsapp) - IPV6_ADDR_LEN_BYTES; 432 1.11 christos ND_TCHECK_LEN(lsapp, sizeof(*lsapp) - IPV6_ADDR_LEN_BYTES); 433 1.11 christos wordlen = (GET_U_1(lsapp->lsa_p_len) + 31) / 32; 434 1.11 christos if (wordlen * 4 > sizeof(nd_ipv6)) { 435 1.11 christos ND_PRINT(" bogus prefixlen /%u", GET_U_1(lsapp->lsa_p_len)); 436 1.1 christos goto trunc; 437 1.1 christos } 438 1.3 christos if (lsa_length < wordlen * 4) 439 1.3 christos goto trunc; 440 1.3 christos lsa_length -= wordlen * 4; 441 1.11 christos memset(prefix, 0, sizeof(prefix)); 442 1.11 christos GET_CPY_BYTES(prefix, lsapp->lsa_p_prefix, wordlen * 4); 443 1.11 christos ND_PRINT("\n\t\t%s/%u", ip6addr_string(ndo, prefix), /* local buffer, not packet data; don't use GET_IP6ADDR_STRING() */ 444 1.11 christos GET_U_1(lsapp->lsa_p_len)); 445 1.11 christos if (GET_U_1(lsapp->lsa_p_opt)) { 446 1.11 christos ND_PRINT(", Options [%s]", 447 1.1 christos bittok2str(ospf6_lsa_prefix_option_values, 448 1.11 christos "none", GET_U_1(lsapp->lsa_p_opt))); 449 1.1 christos } 450 1.11 christos ND_PRINT(", metric %u", GET_BE_U_2(lsapp->lsa_p_metric)); 451 1.5 christos return sizeof(*lsapp) - IPV6_ADDR_LEN_BYTES + wordlen * 4; 452 1.1 christos 453 1.1 christos trunc: 454 1.1 christos return -1; 455 1.1 christos } 456 1.1 christos 457 1.1 christos 458 1.1 christos /* 459 1.1 christos * Print a single link state advertisement. If truncated return 1, else 0. 460 1.1 christos */ 461 1.10 kamil UNALIGNED_OK 462 1.1 christos static int 463 1.5 christos ospf6_print_lsa(netdissect_options *ndo, 464 1.11 christos const struct lsa6 *lsap, const u_char *dataend) 465 1.1 christos { 466 1.11 christos const struct rlalink6 *rlp; 467 1.1 christos #if 0 468 1.11 christos const struct tos_metric *tosp; 469 1.1 christos #endif 470 1.11 christos const rtrid_t *ap; 471 1.1 christos #if 0 472 1.11 christos const struct aslametric *almp; 473 1.11 christos const struct mcla *mcp; 474 1.1 christos #endif 475 1.11 christos const struct llsa *llsap; 476 1.11 christos const struct lsa6_prefix *lsapp; 477 1.1 christos #if 0 478 1.11 christos const uint32_t *lp; 479 1.1 christos #endif 480 1.11 christos u_int prefixes; 481 1.11 christos int bytelen; 482 1.11 christos u_int length, lsa_length; 483 1.5 christos uint32_t flags32; 484 1.5 christos const uint8_t *tptr; 485 1.1 christos 486 1.5 christos if (ospf6_print_lshdr(ndo, &lsap->ls_hdr, dataend)) 487 1.1 christos return (1); 488 1.11 christos length = GET_BE_U_2(lsap->ls_hdr.ls_length); 489 1.3 christos 490 1.3 christos /* 491 1.3 christos * The LSA length includes the length of the header; 492 1.3 christos * it must have a value that's at least that length. 493 1.3 christos * If it does, find the length of what follows the 494 1.3 christos * header. 495 1.3 christos */ 496 1.6 christos if (length < sizeof(struct lsa6_hdr) || (const u_char *)lsap + length > dataend) 497 1.11 christos return (1); 498 1.1 christos lsa_length = length - sizeof(struct lsa6_hdr); 499 1.6 christos tptr = (const uint8_t *)lsap+sizeof(struct lsa6_hdr); 500 1.1 christos 501 1.11 christos switch (GET_BE_U_2(lsap->ls_hdr.ls_type)) { 502 1.1 christos case LS_TYPE_ROUTER | LS_SCOPE_AREA: 503 1.3 christos if (lsa_length < sizeof (lsap->lsa_un.un_rla.rla_options)) 504 1.3 christos return (1); 505 1.3 christos lsa_length -= sizeof (lsap->lsa_un.un_rla.rla_options); 506 1.11 christos ND_PRINT("\n\t Options [%s]", 507 1.5 christos bittok2str(ospf6_option_values, "none", 508 1.11 christos GET_BE_U_4(lsap->lsa_un.un_rla.rla_options))); 509 1.11 christos ND_PRINT(", RLA-Flags [%s]", 510 1.5 christos bittok2str(ospf6_rla_flag_values, "none", 511 1.11 christos GET_U_1(lsap->lsa_un.un_rla.rla_flags))); 512 1.1 christos 513 1.1 christos rlp = lsap->lsa_un.un_rla.rla_link; 514 1.3 christos while (lsa_length != 0) { 515 1.3 christos if (lsa_length < sizeof (*rlp)) 516 1.3 christos return (1); 517 1.3 christos lsa_length -= sizeof (*rlp); 518 1.11 christos ND_TCHECK_SIZE(rlp); 519 1.11 christos switch (GET_U_1(rlp->link_type)) { 520 1.1 christos 521 1.1 christos case RLA_TYPE_VIRTUAL: 522 1.11 christos ND_PRINT("\n\t Virtual Link: Neighbor Router-ID %s" 523 1.1 christos "\n\t Neighbor Interface-ID %s, Interface %s", 524 1.11 christos GET_IPADDR_STRING(rlp->link_nrtid), 525 1.11 christos GET_IPADDR_STRING(rlp->link_nifid), 526 1.11 christos GET_IPADDR_STRING(rlp->link_ifid)); 527 1.1 christos break; 528 1.1 christos 529 1.1 christos case RLA_TYPE_ROUTER: 530 1.11 christos ND_PRINT("\n\t Neighbor Router-ID %s" 531 1.1 christos "\n\t Neighbor Interface-ID %s, Interface %s", 532 1.11 christos GET_IPADDR_STRING(rlp->link_nrtid), 533 1.11 christos GET_IPADDR_STRING(rlp->link_nifid), 534 1.11 christos GET_IPADDR_STRING(rlp->link_ifid)); 535 1.1 christos break; 536 1.1 christos 537 1.1 christos case RLA_TYPE_TRANSIT: 538 1.11 christos ND_PRINT("\n\t Neighbor Network-ID %s" 539 1.1 christos "\n\t Neighbor Interface-ID %s, Interface %s", 540 1.11 christos GET_IPADDR_STRING(rlp->link_nrtid), 541 1.11 christos GET_IPADDR_STRING(rlp->link_nifid), 542 1.11 christos GET_IPADDR_STRING(rlp->link_ifid)); 543 1.1 christos break; 544 1.1 christos 545 1.1 christos default: 546 1.11 christos ND_PRINT("\n\t Unknown Router Links Type 0x%02x", 547 1.11 christos GET_U_1(rlp->link_type)); 548 1.1 christos return (0); 549 1.1 christos } 550 1.11 christos ND_PRINT(", metric %u", GET_BE_U_2(rlp->link_metric)); 551 1.1 christos rlp++; 552 1.1 christos } 553 1.1 christos break; 554 1.1 christos 555 1.1 christos case LS_TYPE_NETWORK | LS_SCOPE_AREA: 556 1.3 christos if (lsa_length < sizeof (lsap->lsa_un.un_nla.nla_options)) 557 1.3 christos return (1); 558 1.3 christos lsa_length -= sizeof (lsap->lsa_un.un_nla.nla_options); 559 1.11 christos ND_PRINT("\n\t Options [%s]", 560 1.5 christos bittok2str(ospf6_option_values, "none", 561 1.11 christos GET_BE_U_4(lsap->lsa_un.un_nla.nla_options))); 562 1.3 christos 563 1.11 christos ND_PRINT("\n\t Connected Routers:"); 564 1.1 christos ap = lsap->lsa_un.un_nla.nla_router; 565 1.3 christos while (lsa_length != 0) { 566 1.3 christos if (lsa_length < sizeof (*ap)) 567 1.3 christos return (1); 568 1.3 christos lsa_length -= sizeof (*ap); 569 1.11 christos ND_PRINT("\n\t\t%s", GET_IPADDR_STRING(ap)); 570 1.1 christos ++ap; 571 1.1 christos } 572 1.1 christos break; 573 1.1 christos 574 1.1 christos case LS_TYPE_INTER_AP | LS_SCOPE_AREA: 575 1.3 christos if (lsa_length < sizeof (lsap->lsa_un.un_inter_ap.inter_ap_metric)) 576 1.3 christos return (1); 577 1.3 christos lsa_length -= sizeof (lsap->lsa_un.un_inter_ap.inter_ap_metric); 578 1.11 christos ND_PRINT(", metric %u", 579 1.11 christos GET_BE_U_4(lsap->lsa_un.un_inter_ap.inter_ap_metric) & SLA_MASK_METRIC); 580 1.3 christos 581 1.6 christos tptr = (const uint8_t *)lsap->lsa_un.un_inter_ap.inter_ap_prefix; 582 1.3 christos while (lsa_length != 0) { 583 1.5 christos bytelen = ospf6_print_lsaprefix(ndo, tptr, lsa_length); 584 1.3 christos if (bytelen < 0) 585 1.1 christos goto trunc; 586 1.11 christos /* 587 1.11 christos * ospf6_print_lsaprefix() will return -1 if 588 1.11 christos * the length is too high, so this will not 589 1.11 christos * underflow. 590 1.11 christos */ 591 1.3 christos lsa_length -= bytelen; 592 1.3 christos tptr += bytelen; 593 1.1 christos } 594 1.1 christos break; 595 1.3 christos 596 1.3 christos case LS_TYPE_ASE | LS_SCOPE_AS: 597 1.3 christos if (lsa_length < sizeof (lsap->lsa_un.un_asla.asla_metric)) 598 1.3 christos return (1); 599 1.3 christos lsa_length -= sizeof (lsap->lsa_un.un_asla.asla_metric); 600 1.11 christos flags32 = GET_BE_U_4(lsap->lsa_un.un_asla.asla_metric); 601 1.11 christos ND_PRINT("\n\t Flags [%s]", 602 1.11 christos bittok2str(ospf6_asla_flag_values, "none", flags32)); 603 1.11 christos ND_PRINT(" metric %u", 604 1.11 christos GET_BE_U_4(lsap->lsa_un.un_asla.asla_metric) & 605 1.11 christos ASLA_MASK_METRIC); 606 1.3 christos 607 1.6 christos tptr = (const uint8_t *)lsap->lsa_un.un_asla.asla_prefix; 608 1.6 christos lsapp = (const struct lsa6_prefix *)tptr; 609 1.5 christos bytelen = ospf6_print_lsaprefix(ndo, tptr, lsa_length); 610 1.1 christos if (bytelen < 0) 611 1.1 christos goto trunc; 612 1.11 christos /* 613 1.11 christos * ospf6_print_lsaprefix() will return -1 if 614 1.11 christos * the length is too high, so this will not 615 1.11 christos * underflow. 616 1.11 christos */ 617 1.3 christos lsa_length -= bytelen; 618 1.3 christos tptr += bytelen; 619 1.3 christos 620 1.3 christos if ((flags32 & ASLA_FLAG_FWDADDR) != 0) { 621 1.11 christos if (lsa_length < sizeof (nd_ipv6)) 622 1.3 christos return (1); 623 1.11 christos lsa_length -= sizeof (nd_ipv6); 624 1.11 christos ND_PRINT(" forward %s", 625 1.11 christos GET_IP6ADDR_STRING(tptr)); 626 1.11 christos tptr += sizeof(nd_ipv6); 627 1.3 christos } 628 1.1 christos 629 1.3 christos if ((flags32 & ASLA_FLAG_ROUTETAG) != 0) { 630 1.5 christos if (lsa_length < sizeof (uint32_t)) 631 1.3 christos return (1); 632 1.5 christos lsa_length -= sizeof (uint32_t); 633 1.11 christos ND_PRINT(" tag %s", 634 1.11 christos GET_IPADDR_STRING(tptr)); 635 1.5 christos tptr += sizeof(uint32_t); 636 1.3 christos } 637 1.1 christos 638 1.11 christos if (GET_U_1(lsapp->lsa_p_metric)) { 639 1.5 christos if (lsa_length < sizeof (uint32_t)) 640 1.3 christos return (1); 641 1.5 christos lsa_length -= sizeof (uint32_t); 642 1.11 christos ND_PRINT(" RefLSID: %s", 643 1.11 christos GET_IPADDR_STRING(tptr)); 644 1.5 christos tptr += sizeof(uint32_t); 645 1.1 christos } 646 1.1 christos break; 647 1.1 christos 648 1.1 christos case LS_TYPE_LINK: 649 1.1 christos /* Link LSA */ 650 1.1 christos llsap = &lsap->lsa_un.un_llsa; 651 1.3 christos if (lsa_length < sizeof (llsap->llsa_priandopt)) 652 1.3 christos return (1); 653 1.3 christos lsa_length -= sizeof (llsap->llsa_priandopt); 654 1.11 christos ND_TCHECK_SIZE(&llsap->llsa_priandopt); 655 1.11 christos ND_PRINT("\n\t Options [%s]", 656 1.5 christos bittok2str(ospf6_option_values, "none", 657 1.11 christos GET_BE_U_4(llsap->llsa_options))); 658 1.3 christos 659 1.3 christos if (lsa_length < sizeof (llsap->llsa_lladdr) + sizeof (llsap->llsa_nprefix)) 660 1.3 christos return (1); 661 1.3 christos lsa_length -= sizeof (llsap->llsa_lladdr) + sizeof (llsap->llsa_nprefix); 662 1.11 christos prefixes = GET_BE_U_4(llsap->llsa_nprefix); 663 1.11 christos ND_PRINT("\n\t Priority %u, Link-local address %s, Prefixes %u:", 664 1.11 christos GET_U_1(llsap->llsa_priority), 665 1.11 christos GET_IP6ADDR_STRING(llsap->llsa_lladdr), 666 1.11 christos prefixes); 667 1.1 christos 668 1.6 christos tptr = (const uint8_t *)llsap->llsa_prefix; 669 1.3 christos while (prefixes > 0) { 670 1.5 christos bytelen = ospf6_print_lsaprefix(ndo, tptr, lsa_length); 671 1.3 christos if (bytelen < 0) 672 1.3 christos goto trunc; 673 1.3 christos prefixes--; 674 1.11 christos /* 675 1.11 christos * ospf6_print_lsaprefix() will return -1 if 676 1.11 christos * the length is too high, so this will not 677 1.11 christos * underflow. 678 1.11 christos */ 679 1.3 christos lsa_length -= bytelen; 680 1.3 christos tptr += bytelen; 681 1.3 christos } 682 1.1 christos break; 683 1.1 christos 684 1.1 christos case LS_TYPE_INTRA_AP | LS_SCOPE_AREA: 685 1.1 christos /* Intra-Area-Prefix LSA */ 686 1.3 christos if (lsa_length < sizeof (lsap->lsa_un.un_intra_ap.intra_ap_rtid)) 687 1.3 christos return (1); 688 1.3 christos lsa_length -= sizeof (lsap->lsa_un.un_intra_ap.intra_ap_rtid); 689 1.11 christos ND_TCHECK_4(lsap->lsa_un.un_intra_ap.intra_ap_rtid); 690 1.5 christos ospf6_print_ls_type(ndo, 691 1.11 christos GET_BE_U_2(lsap->lsa_un.un_intra_ap.intra_ap_lstype), 692 1.1 christos &lsap->lsa_un.un_intra_ap.intra_ap_lsid); 693 1.3 christos 694 1.3 christos if (lsa_length < sizeof (lsap->lsa_un.un_intra_ap.intra_ap_nprefix)) 695 1.3 christos return (1); 696 1.3 christos lsa_length -= sizeof (lsap->lsa_un.un_intra_ap.intra_ap_nprefix); 697 1.11 christos prefixes = GET_BE_U_2(lsap->lsa_un.un_intra_ap.intra_ap_nprefix); 698 1.11 christos ND_PRINT("\n\t Prefixes %u:", prefixes); 699 1.1 christos 700 1.6 christos tptr = (const uint8_t *)lsap->lsa_un.un_intra_ap.intra_ap_prefix; 701 1.3 christos while (prefixes > 0) { 702 1.5 christos bytelen = ospf6_print_lsaprefix(ndo, tptr, lsa_length); 703 1.3 christos if (bytelen < 0) 704 1.3 christos goto trunc; 705 1.3 christos prefixes--; 706 1.11 christos /* 707 1.11 christos * ospf6_print_lsaprefix() will return -1 if 708 1.11 christos * the length is too high, so this will not 709 1.11 christos * underflow. 710 1.11 christos */ 711 1.3 christos lsa_length -= bytelen; 712 1.3 christos tptr += bytelen; 713 1.3 christos } 714 1.1 christos break; 715 1.1 christos 716 1.1 christos case LS_TYPE_GRACE | LS_SCOPE_LINKLOCAL: 717 1.11 christos if (ospf_grace_lsa_print(ndo, tptr, lsa_length) == -1) { 718 1.1 christos return 1; 719 1.1 christos } 720 1.3 christos break; 721 1.1 christos 722 1.1 christos case LS_TYPE_INTRA_ATE | LS_SCOPE_LINKLOCAL: 723 1.11 christos if (ospf_te_lsa_print(ndo, tptr, lsa_length) == -1) { 724 1.3 christos return 1; 725 1.3 christos } 726 1.3 christos break; 727 1.1 christos 728 1.1 christos default: 729 1.5 christos if(!print_unknown_data(ndo,tptr, 730 1.3 christos "\n\t ", 731 1.3 christos lsa_length)) { 732 1.3 christos return (1); 733 1.3 christos } 734 1.3 christos break; 735 1.1 christos } 736 1.1 christos 737 1.1 christos return (0); 738 1.1 christos trunc: 739 1.1 christos return (1); 740 1.1 christos } 741 1.1 christos 742 1.10 kamil UNALIGNED_OK 743 1.1 christos static int 744 1.5 christos ospf6_decode_v3(netdissect_options *ndo, 745 1.11 christos const struct ospf6hdr *op, 746 1.11 christos const u_char *dataend) 747 1.1 christos { 748 1.11 christos const rtrid_t *ap; 749 1.11 christos const struct lsr6 *lsrp; 750 1.11 christos const struct lsa6_hdr *lshp; 751 1.11 christos const struct lsa6 *lsap; 752 1.12 christos uint32_t i; 753 1.1 christos 754 1.11 christos switch (GET_U_1(op->ospf6_type)) { 755 1.1 christos 756 1.5 christos case OSPF_TYPE_HELLO: { 757 1.11 christos const struct hello6 *hellop = (const struct hello6 *)((const uint8_t *)op + OSPF6HDR_LEN); 758 1.5 christos 759 1.11 christos ND_PRINT("\n\tOptions [%s]", 760 1.5 christos bittok2str(ospf6_option_values, "none", 761 1.11 christos GET_BE_U_4(hellop->hello_options))); 762 1.5 christos 763 1.11 christos ND_PRINT("\n\t Hello Timer %us, Dead Timer %us, Interface-ID %s, Priority %u", 764 1.11 christos GET_BE_U_2(hellop->hello_helloint), 765 1.11 christos GET_BE_U_2(hellop->hello_deadint), 766 1.11 christos GET_IPADDR_STRING(hellop->hello_ifid), 767 1.11 christos GET_U_1(hellop->hello_priority)); 768 1.11 christos 769 1.11 christos if (GET_BE_U_4(hellop->hello_dr) != 0) 770 1.11 christos ND_PRINT("\n\t Designated Router %s", 771 1.11 christos GET_IPADDR_STRING(hellop->hello_dr)); 772 1.11 christos if (GET_BE_U_4(hellop->hello_bdr) != 0) 773 1.11 christos ND_PRINT(", Backup Designated Router %s", 774 1.11 christos GET_IPADDR_STRING(hellop->hello_bdr)); 775 1.5 christos if (ndo->ndo_vflag > 1) { 776 1.11 christos ND_PRINT("\n\t Neighbor List:"); 777 1.5 christos ap = hellop->hello_neighbor; 778 1.6 christos while ((const u_char *)ap < dataend) { 779 1.11 christos ND_PRINT("\n\t %s", GET_IPADDR_STRING(ap)); 780 1.1 christos ++ap; 781 1.1 christos } 782 1.1 christos } 783 1.1 christos break; /* HELLO */ 784 1.5 christos } 785 1.1 christos 786 1.5 christos case OSPF_TYPE_DD: { 787 1.11 christos const struct dd6 *ddp = (const struct dd6 *)((const uint8_t *)op + OSPF6HDR_LEN); 788 1.5 christos 789 1.11 christos ND_PRINT("\n\tOptions [%s]", 790 1.5 christos bittok2str(ospf6_option_values, "none", 791 1.11 christos GET_BE_U_4(ddp->db_options))); 792 1.11 christos ND_PRINT(", DD Flags [%s]", 793 1.11 christos bittok2str(ospf6_dd_flag_values,"none",GET_U_1(ddp->db_flags))); 794 1.11 christos 795 1.11 christos ND_PRINT(", MTU %u, DD-Sequence 0x%08x", 796 1.11 christos GET_BE_U_2(ddp->db_mtu), 797 1.11 christos GET_BE_U_4(ddp->db_seq)); 798 1.5 christos if (ndo->ndo_vflag > 1) { 799 1.5 christos /* Print all the LS adv's */ 800 1.5 christos lshp = ddp->db_lshdr; 801 1.6 christos while ((const u_char *)lshp < dataend) { 802 1.5 christos if (ospf6_print_lshdr(ndo, lshp++, dataend)) 803 1.5 christos goto trunc; 804 1.5 christos } 805 1.5 christos } 806 1.1 christos break; 807 1.5 christos } 808 1.1 christos 809 1.1 christos case OSPF_TYPE_LS_REQ: 810 1.5 christos if (ndo->ndo_vflag > 1) { 811 1.6 christos lsrp = (const struct lsr6 *)((const uint8_t *)op + OSPF6HDR_LEN); 812 1.6 christos while ((const u_char *)lsrp < dataend) { 813 1.11 christos ND_TCHECK_SIZE(lsrp); 814 1.11 christos ND_PRINT("\n\t Advertising Router %s", 815 1.11 christos GET_IPADDR_STRING(lsrp->ls_router)); 816 1.11 christos ospf6_print_ls_type(ndo, 817 1.11 christos GET_BE_U_2(lsrp->ls_type), 818 1.1 christos &lsrp->ls_stateid); 819 1.1 christos ++lsrp; 820 1.1 christos } 821 1.1 christos } 822 1.1 christos break; 823 1.1 christos 824 1.1 christos case OSPF_TYPE_LS_UPDATE: 825 1.5 christos if (ndo->ndo_vflag > 1) { 826 1.11 christos const struct lsu6 *lsup = (const struct lsu6 *)((const uint8_t *)op + OSPF6HDR_LEN); 827 1.5 christos 828 1.11 christos i = GET_BE_U_4(lsup->lsu_count); 829 1.5 christos lsap = lsup->lsu_lsa; 830 1.6 christos while ((const u_char *)lsap < dataend && i--) { 831 1.5 christos if (ospf6_print_lsa(ndo, lsap, dataend)) 832 1.1 christos goto trunc; 833 1.6 christos lsap = (const struct lsa6 *)((const u_char *)lsap + 834 1.11 christos GET_BE_U_2(lsap->ls_hdr.ls_length)); 835 1.1 christos } 836 1.1 christos } 837 1.1 christos break; 838 1.1 christos 839 1.1 christos case OSPF_TYPE_LS_ACK: 840 1.5 christos if (ndo->ndo_vflag > 1) { 841 1.6 christos lshp = (const struct lsa6_hdr *)((const uint8_t *)op + OSPF6HDR_LEN); 842 1.6 christos while ((const u_char *)lshp < dataend) { 843 1.5 christos if (ospf6_print_lshdr(ndo, lshp++, dataend)) 844 1.5 christos goto trunc; 845 1.1 christos } 846 1.1 christos } 847 1.1 christos break; 848 1.1 christos 849 1.1 christos default: 850 1.1 christos break; 851 1.1 christos } 852 1.1 christos return (0); 853 1.1 christos trunc: 854 1.1 christos return (1); 855 1.1 christos } 856 1.1 christos 857 1.5 christos /* RFC5613 Section 2.2 (w/o the TLVs) */ 858 1.5 christos static int 859 1.5 christos ospf6_print_lls(netdissect_options *ndo, 860 1.5 christos const u_char *cp, const u_int len) 861 1.5 christos { 862 1.5 christos uint16_t llsdatalen; 863 1.5 christos 864 1.5 christos if (len == 0) 865 1.5 christos return 0; 866 1.5 christos if (len < OSPF_LLS_HDRLEN) 867 1.5 christos goto trunc; 868 1.5 christos /* Checksum */ 869 1.11 christos ND_PRINT("\n\tLLS Checksum 0x%04x", GET_BE_U_2(cp)); 870 1.5 christos cp += 2; 871 1.5 christos /* LLS Data Length */ 872 1.11 christos llsdatalen = GET_BE_U_2(cp); 873 1.11 christos ND_PRINT(", Data Length %u", llsdatalen); 874 1.5 christos if (llsdatalen < OSPF_LLS_HDRLEN || llsdatalen > len) 875 1.5 christos goto trunc; 876 1.5 christos cp += 2; 877 1.5 christos /* LLS TLVs */ 878 1.11 christos ND_TCHECK_LEN(cp, llsdatalen - OSPF_LLS_HDRLEN); 879 1.5 christos /* FIXME: code in print-ospf.c can be reused to decode the TLVs */ 880 1.5 christos 881 1.5 christos return llsdatalen; 882 1.5 christos trunc: 883 1.5 christos return -1; 884 1.5 christos } 885 1.5 christos 886 1.5 christos /* RFC6506 Section 4.1 */ 887 1.5 christos static int 888 1.5 christos ospf6_decode_at(netdissect_options *ndo, 889 1.5 christos const u_char *cp, const u_int len) 890 1.5 christos { 891 1.5 christos uint16_t authdatalen; 892 1.5 christos 893 1.5 christos if (len == 0) 894 1.5 christos return 0; 895 1.5 christos if (len < OSPF6_AT_HDRLEN) 896 1.5 christos goto trunc; 897 1.5 christos /* Authentication Type */ 898 1.11 christos ND_PRINT("\n\tAuthentication Type %s", 899 1.11 christos tok2str(ospf6_auth_type_str, "unknown (0x%04x)", GET_BE_U_2(cp))); 900 1.5 christos cp += 2; 901 1.5 christos /* Auth Data Len */ 902 1.11 christos authdatalen = GET_BE_U_2(cp); 903 1.11 christos ND_PRINT(", Length %u", authdatalen); 904 1.5 christos if (authdatalen < OSPF6_AT_HDRLEN || authdatalen > len) 905 1.5 christos goto trunc; 906 1.5 christos cp += 2; 907 1.5 christos /* Reserved */ 908 1.5 christos cp += 2; 909 1.5 christos /* Security Association ID */ 910 1.11 christos ND_PRINT(", SAID %u", GET_BE_U_2(cp)); 911 1.5 christos cp += 2; 912 1.5 christos /* Cryptographic Sequence Number (High-Order 32 Bits) */ 913 1.11 christos ND_PRINT(", CSN 0x%08x", GET_BE_U_4(cp)); 914 1.5 christos cp += 4; 915 1.5 christos /* Cryptographic Sequence Number (Low-Order 32 Bits) */ 916 1.11 christos ND_PRINT(":%08x", GET_BE_U_4(cp)); 917 1.5 christos cp += 4; 918 1.5 christos /* Authentication Data */ 919 1.11 christos ND_TCHECK_LEN(cp, authdatalen - OSPF6_AT_HDRLEN); 920 1.5 christos if (ndo->ndo_vflag > 1) 921 1.5 christos print_unknown_data(ndo,cp, "\n\tAuthentication Data ", authdatalen - OSPF6_AT_HDRLEN); 922 1.5 christos return 0; 923 1.5 christos 924 1.5 christos trunc: 925 1.5 christos return 1; 926 1.5 christos } 927 1.5 christos 928 1.5 christos /* The trailing data may include LLS and/or AT data (in this specific order). 929 1.5 christos * LLS data may be present only in Hello and DBDesc packets with the L-bit set. 930 1.5 christos * AT data may be present in Hello and DBDesc packets with the AT-bit set or in 931 1.5 christos * any other packet type, thus decode the AT data regardless of the AT-bit. 932 1.5 christos */ 933 1.10 kamil UNALIGNED_OK 934 1.5 christos static int 935 1.5 christos ospf6_decode_v3_trailer(netdissect_options *ndo, 936 1.5 christos const struct ospf6hdr *op, const u_char *cp, const unsigned len) 937 1.5 christos { 938 1.11 christos uint8_t type; 939 1.5 christos int llslen = 0; 940 1.5 christos int lls_hello = 0; 941 1.5 christos int lls_dd = 0; 942 1.5 christos 943 1.11 christos type = GET_U_1(op->ospf6_type); 944 1.11 christos if (type == OSPF_TYPE_HELLO) { 945 1.6 christos const struct hello6 *hellop = (const struct hello6 *)((const uint8_t *)op + OSPF6HDR_LEN); 946 1.11 christos if (GET_BE_U_4(hellop->hello_options) & OSPF6_OPTION_L) 947 1.5 christos lls_hello = 1; 948 1.11 christos } else if (type == OSPF_TYPE_DD) { 949 1.6 christos const struct dd6 *ddp = (const struct dd6 *)((const uint8_t *)op + OSPF6HDR_LEN); 950 1.11 christos if (GET_BE_U_4(ddp->db_options) & OSPF6_OPTION_L) 951 1.5 christos lls_dd = 1; 952 1.5 christos } 953 1.5 christos if ((lls_hello || lls_dd) && (llslen = ospf6_print_lls(ndo, cp, len)) < 0) 954 1.5 christos goto trunc; 955 1.5 christos return ospf6_decode_at(ndo, cp + llslen, len - llslen); 956 1.5 christos 957 1.5 christos trunc: 958 1.5 christos return 1; 959 1.5 christos } 960 1.5 christos 961 1.10 kamil UNALIGNED_OK 962 1.1 christos void 963 1.5 christos ospf6_print(netdissect_options *ndo, 964 1.11 christos const u_char *bp, u_int length) 965 1.1 christos { 966 1.11 christos const struct ospf6hdr *op; 967 1.11 christos const u_char *dataend; 968 1.11 christos const char *cp; 969 1.5 christos uint16_t datalen; 970 1.1 christos 971 1.11 christos ndo->ndo_protocol = "ospf3"; 972 1.6 christos op = (const struct ospf6hdr *)bp; 973 1.1 christos 974 1.1 christos /* If the type is valid translate it, or just print the type */ 975 1.1 christos /* value. If it's not valid, say so and return */ 976 1.11 christos cp = tok2str(ospf6_type_values, "unknown packet type (%u)", 977 1.11 christos GET_U_1(op->ospf6_type)); 978 1.11 christos ND_PRINT("OSPFv%u, %s, length %u", GET_U_1(op->ospf6_version), cp, 979 1.11 christos length); 980 1.1 christos if (*cp == 'u') { 981 1.1 christos return; 982 1.5 christos } 983 1.1 christos 984 1.5 christos if(!ndo->ndo_vflag) { /* non verbose - so lets bail out here */ 985 1.5 christos return; 986 1.5 christos } 987 1.1 christos 988 1.5 christos /* OSPFv3 data always comes first and optional trailing data may follow. */ 989 1.11 christos datalen = GET_BE_U_2(op->ospf6_len); 990 1.5 christos if (datalen > length) { 991 1.11 christos ND_PRINT(" [len %u]", datalen); 992 1.1 christos return; 993 1.1 christos } 994 1.5 christos dataend = bp + datalen; 995 1.5 christos 996 1.11 christos ND_PRINT("\n\tRouter-ID %s", GET_IPADDR_STRING(op->ospf6_routerid)); 997 1.1 christos 998 1.11 christos if (GET_BE_U_4(op->ospf6_areaid) != 0) 999 1.11 christos ND_PRINT(", Area %s", GET_IPADDR_STRING(op->ospf6_areaid)); 1000 1.1 christos else 1001 1.11 christos ND_PRINT(", Backbone Area"); 1002 1.11 christos if (GET_U_1(op->ospf6_instanceid)) 1003 1.11 christos ND_PRINT(", Instance %u", GET_U_1(op->ospf6_instanceid)); 1004 1.1 christos 1005 1.1 christos /* Do rest according to version. */ 1006 1.11 christos switch (GET_U_1(op->ospf6_version)) { 1007 1.1 christos 1008 1.1 christos case 3: 1009 1.1 christos /* ospf version 3 */ 1010 1.5 christos if (ospf6_decode_v3(ndo, op, dataend) || 1011 1.5 christos ospf6_decode_v3_trailer(ndo, op, dataend, length - datalen)) 1012 1.1 christos goto trunc; 1013 1.1 christos break; 1014 1.1 christos } /* end switch on version */ 1015 1.1 christos 1016 1.1 christos return; 1017 1.1 christos trunc: 1018 1.11 christos nd_print_trunc(ndo); 1019 1.1 christos } 1020