1 1.43 andvar /* $NetBSD: mtrace.c,v 1.43 2021/10/21 13:21:55 andvar Exp $ */ 2 1.4 thorpej 3 1.1 mycroft /* 4 1.1 mycroft * mtrace.c 5 1.1 mycroft * 6 1.1 mycroft * This tool traces the branch of a multicast tree from a source to a 7 1.1 mycroft * receiver for a particular multicast group and gives statistics 8 1.1 mycroft * about packet rate and loss for each hop along the path. It can 9 1.1 mycroft * usually be invoked just as 10 1.1 mycroft * 11 1.1 mycroft * mtrace source 12 1.1 mycroft * 13 1.1 mycroft * to trace the route from that source to the local host for a default 14 1.1 mycroft * group when only the route is desired and not group-specific packet 15 1.1 mycroft * counts. See the usage line for more complex forms. 16 1.1 mycroft * 17 1.1 mycroft * 18 1.1 mycroft * Released 4 Apr 1995. This program was adapted by Steve Casner 19 1.1 mycroft * (USC/ISI) from a prototype written by Ajit Thyagarajan (UDel and 20 1.1 mycroft * Xerox PARC). It attempts to parallel in command syntax and output 21 1.1 mycroft * format the unicast traceroute program written by Van Jacobson (LBL) 22 1.1 mycroft * for the parts where that makes sense. 23 1.1 mycroft * 24 1.29 wiz * Copyright (c) 1998-2001. 25 1.29 wiz * The University of Southern California/Information Sciences Institute. 26 1.1 mycroft * All rights reserved. 27 1.1 mycroft * 28 1.29 wiz * Redistribution and use in source and binary forms, with or without 29 1.29 wiz * modification, are permitted provided that the following conditions 30 1.29 wiz * are met: 31 1.29 wiz * 1. Redistributions of source code must retain the above copyright 32 1.29 wiz * notice, this list of conditions and the following disclaimer. 33 1.29 wiz * 2. Redistributions in binary form must reproduce the above copyright 34 1.29 wiz * notice, this list of conditions and the following disclaimer in the 35 1.29 wiz * documentation and/or other materials provided with the distribution. 36 1.29 wiz * 3. Neither the name of the project nor the names of its contributors 37 1.29 wiz * may be used to endorse or promote products derived from this software 38 1.29 wiz * without specific prior written permission. 39 1.29 wiz * 40 1.29 wiz * THIS SOFTWARE IS PROVIDED BY THE PROJECT AND CONTRIBUTORS ``AS IS'' AND 41 1.29 wiz * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 42 1.29 wiz * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 43 1.29 wiz * ARE DISCLAIMED. IN NO EVENT SHALL THE PROJECT OR CONTRIBUTORS BE LIABLE 44 1.29 wiz * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 45 1.29 wiz * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 46 1.29 wiz * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 47 1.29 wiz * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 48 1.29 wiz * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 49 1.29 wiz * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 50 1.29 wiz * SUCH DAMAGE. 51 1.1 mycroft */ 52 1.1 mycroft 53 1.8 lukem #include <sys/cdefs.h> 54 1.5 mycroft #ifndef lint 55 1.43 andvar __RCSID("$NetBSD: mtrace.c,v 1.43 2021/10/21 13:21:55 andvar Exp $"); 56 1.5 mycroft #endif 57 1.5 mycroft 58 1.8 lukem #include <sys/types.h> 59 1.8 lukem #include <sys/ioctl.h> 60 1.1 mycroft #include <sys/time.h> 61 1.25 itojun #include <poll.h> 62 1.8 lukem #include <netinet/in.h> 63 1.8 lukem #include <arpa/inet.h> 64 1.8 lukem #include <ctype.h> 65 1.1 mycroft #include <memory.h> 66 1.8 lukem #include <netdb.h> 67 1.1 mycroft #include <string.h> 68 1.32 itojun #include <ifaddrs.h> 69 1.1 mycroft #include "defs.h" 70 1.8 lukem 71 1.5 mycroft #include <stdarg.h> 72 1.5 mycroft #ifdef SUNOS5 73 1.5 mycroft #include <sys/systeminfo.h> 74 1.5 mycroft #endif 75 1.1 mycroft 76 1.1 mycroft #define DEFAULT_TIMEOUT 3 /* How long to wait before retrying requests */ 77 1.1 mycroft #define DEFAULT_RETRIES 3 /* How many times to try */ 78 1.1 mycroft #define MAXHOPS UNREACHABLE /* Don't need more hops than max metric */ 79 1.1 mycroft #define UNICAST_TTL 255 /* TTL for unicast response */ 80 1.1 mycroft #define MULTICAST_TTL1 64 /* Default TTL for multicast query/response */ 81 1.1 mycroft #define MULTICAST_TTL_INC 32 /* TTL increment for increase after timeout */ 82 1.1 mycroft #define MULTICAST_TTL_MAX 192 /* Maximum TTL allowed (protect low-BW links */ 83 1.1 mycroft 84 1.1 mycroft struct resp_buf { 85 1.1 mycroft u_long qtime; /* Time query was issued */ 86 1.1 mycroft u_long rtime; /* Time response was received */ 87 1.1 mycroft int len; /* Number of reports or length of data */ 88 1.1 mycroft struct igmp igmp; /* IGMP header */ 89 1.1 mycroft union { 90 1.1 mycroft struct { 91 1.1 mycroft struct tr_query q; /* Query/response header */ 92 1.1 mycroft struct tr_resp r[MAXHOPS]; /* Per-hop reports */ 93 1.1 mycroft } t; 94 1.1 mycroft char d[MAX_DVMRP_DATA_LEN]; /* Neighbor data */ 95 1.1 mycroft } u; 96 1.1 mycroft } base, incr[2]; 97 1.1 mycroft 98 1.1 mycroft #define qhdr u.t.q 99 1.1 mycroft #define resps u.t.r 100 1.1 mycroft #define ndata u.d 101 1.1 mycroft 102 1.1 mycroft char names[MAXHOPS][40]; 103 1.5 mycroft int reset[MAXHOPS]; /* To get around 3.4 bug, ... */ 104 1.5 mycroft int swaps[MAXHOPS]; /* To get around 3.6 bug, ... */ 105 1.1 mycroft 106 1.1 mycroft int timeout = DEFAULT_TIMEOUT; 107 1.1 mycroft int nqueries = DEFAULT_RETRIES; 108 1.1 mycroft int numeric = FALSE; 109 1.1 mycroft int debug = 0; 110 1.1 mycroft int passive = FALSE; 111 1.1 mycroft int multicast = FALSE; 112 1.5 mycroft int statint = 10; 113 1.5 mycroft int verbose = 0; 114 1.1 mycroft 115 1.1 mycroft u_int32_t defgrp; /* Default group if not specified */ 116 1.1 mycroft u_int32_t query_cast; /* All routers multicast addr */ 117 1.1 mycroft u_int32_t resp_cast; /* Mtrace response multicast addr */ 118 1.1 mycroft 119 1.1 mycroft u_int32_t lcl_addr = 0; /* This host address, in NET order */ 120 1.1 mycroft u_int32_t dst_netmask; /* netmask to go with qdst */ 121 1.1 mycroft 122 1.1 mycroft /* 123 1.1 mycroft * Query/response parameters, all initialized to zero and set later 124 1.1 mycroft * to default values or from options. 125 1.1 mycroft */ 126 1.5 mycroft u_int32_t qsrc = 0; /* Source address in the query */ 127 1.5 mycroft u_int32_t qgrp = 0; /* Group address in the query */ 128 1.5 mycroft u_int32_t qdst = 0; /* Destination (receiver) address in query */ 129 1.5 mycroft u_char qno = 0; /* Max number of hops to query */ 130 1.5 mycroft u_int32_t raddr = 0; /* Address where response should be sent */ 131 1.5 mycroft int qttl = 0; /* TTL for the query packet */ 132 1.5 mycroft u_char rttl = 0; /* TTL for the response packet */ 133 1.5 mycroft u_int32_t gwy = 0; /* User-supplied last-hop router address */ 134 1.5 mycroft u_int32_t tdst = 0; /* Address where trace is sent (last-hop) */ 135 1.1 mycroft 136 1.1 mycroft vifi_t numvifs; /* to keep loader happy */ 137 1.1 mycroft /* (see kern.c) */ 138 1.1 mycroft 139 1.20 wiz u_long byteswap(u_long); 140 1.38 lukem const char * inet_name(u_int32_t addr); 141 1.38 lukem u_int32_t host_addr(const char *name); 142 1.5 mycroft /* u_int is promoted u_char */ 143 1.38 lukem const char * proto_type(u_int type); 144 1.38 lukem const char * flag_type(u_int type); 145 1.5 mycroft 146 1.20 wiz u_int32_t get_netmask(int s, u_int32_t dst); 147 1.20 wiz int get_ttl(struct resp_buf *buf); 148 1.20 wiz int t_diff(u_long a, u_long b); 149 1.20 wiz u_long fixtime(u_long time); 150 1.20 wiz int send_recv(u_int32_t dst, int type, int code, 151 1.20 wiz int tries, struct resp_buf *save); 152 1.38 lukem const char * print_host(u_int32_t addr); 153 1.38 lukem const char * print_host2(u_int32_t addr1, u_int32_t addr2); 154 1.20 wiz void print_trace(int index, struct resp_buf *buf); 155 1.38 lukem int what_kind(struct resp_buf *buf, const char *why); 156 1.38 lukem const char * scale(int *hop); 157 1.20 wiz void stat_line(struct tr_resp *r, struct tr_resp *s, 158 1.20 wiz int have_next, int *res); 159 1.20 wiz void fixup_stats(struct resp_buf *base, 160 1.20 wiz struct resp_buf *prev, 161 1.20 wiz struct resp_buf *new); 162 1.20 wiz int print_stats(struct resp_buf *base, 163 1.20 wiz struct resp_buf *prev, 164 1.20 wiz struct resp_buf *new); 165 1.20 wiz void check_vif_state(void); 166 1.39 joerg void passive_mode(void) __dead; 167 1.5 mycroft 168 1.20 wiz int main(int argc, char *argv[]); 169 1.28 wiz /* logit() prototyped in defs.h */ 170 1.2 thorpej 171 1.1 mycroft 172 1.38 lukem const char * 173 1.20 wiz inet_name(u_int32_t addr) 174 1.1 mycroft { 175 1.1 mycroft struct hostent *e; 176 1.1 mycroft 177 1.1 mycroft e = gethostbyaddr((char *)&addr, sizeof(addr), AF_INET); 178 1.1 mycroft 179 1.1 mycroft return e ? e->h_name : "?"; 180 1.1 mycroft } 181 1.1 mycroft 182 1.1 mycroft 183 1.1 mycroft u_int32_t 184 1.38 lukem host_addr(const char *name) 185 1.1 mycroft { 186 1.5 mycroft struct hostent *e = (struct hostent *)0; 187 1.5 mycroft u_int32_t addr; 188 1.1 mycroft int i, dots = 3; 189 1.1 mycroft char buf[40]; 190 1.38 lukem const char *ip = name; 191 1.1 mycroft char *op = buf; 192 1.1 mycroft 193 1.2 thorpej /* 194 1.5 mycroft * Undo BSD's favor -- take fewer than 4 octets as net/subnet address 195 1.5 mycroft * if the name is all numeric. 196 1.2 thorpej */ 197 1.2 thorpej for (i = sizeof(buf) - 7; i > 0; --i) { 198 1.5 mycroft if (*ip == '.') --dots; 199 1.5 mycroft else if (*ip == '\0') break; 200 1.35 dsl else if (!isdigit((unsigned char)*ip)) dots = 0; /* Not numeric, don't add zeroes */ 201 1.5 mycroft *op++ = *ip++; 202 1.2 thorpej } 203 1.2 thorpej for (i = 0; i < dots; ++i) { 204 1.5 mycroft *op++ = '.'; 205 1.2 thorpej *op++ = '0'; 206 1.2 thorpej } 207 1.2 thorpej *op = '\0'; 208 1.2 thorpej 209 1.5 mycroft if (dots <= 0) e = gethostbyname(name); 210 1.10 mrg if (e) memcpy((char *)&addr, e->h_addr_list[0], sizeof(addr)); 211 1.5 mycroft else { 212 1.5 mycroft addr = inet_addr(buf); 213 1.38 lukem if (addr == (in_addr_t)-1) { 214 1.5 mycroft addr = 0; 215 1.1 mycroft printf("Could not parse %s as host name or address\n", name); 216 1.5 mycroft } 217 1.1 mycroft } 218 1.5 mycroft return addr; 219 1.1 mycroft } 220 1.1 mycroft 221 1.1 mycroft 222 1.38 lukem const char * 223 1.20 wiz proto_type(u_int type) 224 1.1 mycroft { 225 1.1 mycroft static char buf[80]; 226 1.1 mycroft 227 1.1 mycroft switch (type) { 228 1.1 mycroft case PROTO_DVMRP: 229 1.1 mycroft return ("DVMRP"); 230 1.1 mycroft case PROTO_MOSPF: 231 1.1 mycroft return ("MOSPF"); 232 1.1 mycroft case PROTO_PIM: 233 1.1 mycroft return ("PIM"); 234 1.1 mycroft case PROTO_CBT: 235 1.1 mycroft return ("CBT"); 236 1.12 he case PROTO_PIM_SPEC: 237 1.12 he return ("PIM-special"); 238 1.12 he case PROTO_PIM_STAT: 239 1.12 he return ("PIM-static"); 240 1.12 he case PROTO_DVMRP_STAT: 241 1.12 he return ("DVMRP-static"); 242 1.12 he case PROTO_PIM_MBGP: 243 1.12 he return ("PIM/MBGP"); 244 1.1 mycroft default: 245 1.7 mrg (void)snprintf(buf, sizeof buf, "Unknown protocol code %d", type); 246 1.1 mycroft return (buf); 247 1.1 mycroft } 248 1.1 mycroft } 249 1.1 mycroft 250 1.1 mycroft 251 1.38 lukem const char * 252 1.20 wiz flag_type(u_int type) 253 1.1 mycroft { 254 1.1 mycroft static char buf[80]; 255 1.1 mycroft 256 1.1 mycroft switch (type) { 257 1.1 mycroft case TR_NO_ERR: 258 1.1 mycroft return (""); 259 1.1 mycroft case TR_WRONG_IF: 260 1.1 mycroft return ("Wrong interface"); 261 1.1 mycroft case TR_PRUNED: 262 1.1 mycroft return ("Prune sent upstream"); 263 1.1 mycroft case TR_OPRUNED: 264 1.1 mycroft return ("Output pruned"); 265 1.1 mycroft case TR_SCOPED: 266 1.1 mycroft return ("Hit scope boundary"); 267 1.1 mycroft case TR_NO_RTE: 268 1.1 mycroft return ("No route"); 269 1.1 mycroft case TR_OLD_ROUTER: 270 1.1 mycroft return ("Next router no mtrace"); 271 1.1 mycroft case TR_NO_FWD: 272 1.1 mycroft return ("Not forwarding"); 273 1.1 mycroft case TR_NO_SPACE: 274 1.1 mycroft return ("No space in packet"); 275 1.12 he case TR_RP_OR_CORE: 276 1.12 he return ("RP/Core"); 277 1.12 he case TR_RPF_INT: 278 1.12 he return ("Trace packet on RPT interface"); 279 1.12 he case TR_NO_MULTICAST: 280 1.12 he return ("Trace packet on non-MC interface"); 281 1.12 he case TR_ADMIN_DENY: 282 1.12 he return ("Trace admin-denied"); 283 1.1 mycroft default: 284 1.7 mrg (void)snprintf(buf, sizeof buf, "Unknown error code %d", type); 285 1.1 mycroft return (buf); 286 1.1 mycroft } 287 1.1 mycroft } 288 1.1 mycroft 289 1.1 mycroft /* 290 1.1 mycroft * If destination is on a local net, get the netmask, else set the 291 1.1 mycroft * netmask to all ones. There are two side effects: if the local 292 1.1 mycroft * address was not explicitly set, and if the destination is on a 293 1.1 mycroft * local net, use that one; in either case, verify that the local 294 1.1 mycroft * address is valid. 295 1.1 mycroft */ 296 1.1 mycroft 297 1.1 mycroft u_int32_t 298 1.20 wiz get_netmask(int s, u_int32_t dst) 299 1.1 mycroft { 300 1.1 mycroft u_int32_t if_addr, if_mask; 301 1.1 mycroft u_int32_t retval = 0xFFFFFFFF; 302 1.1 mycroft int found = FALSE; 303 1.32 itojun struct ifaddrs *ifap, *ifa; 304 1.1 mycroft 305 1.32 itojun if (getifaddrs(&ifap) != 0) { 306 1.32 itojun perror("getifaddrs"); 307 1.1 mycroft return (retval); 308 1.1 mycroft } 309 1.32 itojun for (ifa = ifap; ifa; ifa = ifa->ifa_next) { 310 1.34 itojun if (ifa->ifa_addr->sa_family != AF_INET) 311 1.34 itojun continue; 312 1.32 itojun if_addr = ((struct sockaddr_in *)ifa->ifa_addr)->sin_addr.s_addr; 313 1.32 itojun if_mask = ((struct sockaddr_in *)ifa->ifa_netmask)->sin_addr.s_addr; 314 1.32 itojun if ((dst & if_mask) == (if_addr & if_mask)) { 315 1.32 itojun retval = if_mask; 316 1.32 itojun if (lcl_addr == 0) 317 1.32 itojun lcl_addr = if_addr; 318 1.1 mycroft } 319 1.32 itojun if (lcl_addr == if_addr) 320 1.32 itojun found = TRUE; 321 1.1 mycroft } 322 1.1 mycroft if (!found && lcl_addr != 0) { 323 1.1 mycroft printf("Interface address is not valid\n"); 324 1.1 mycroft exit(1); 325 1.1 mycroft } 326 1.32 itojun freeifaddrs(ifap); 327 1.1 mycroft return (retval); 328 1.1 mycroft } 329 1.1 mycroft 330 1.1 mycroft 331 1.1 mycroft int 332 1.20 wiz get_ttl(struct resp_buf *buf) 333 1.1 mycroft { 334 1.5 mycroft int rno; 335 1.5 mycroft struct tr_resp *b; 336 1.5 mycroft u_int ttl; 337 1.1 mycroft 338 1.1 mycroft if (buf && (rno = buf->len) > 0) { 339 1.1 mycroft b = buf->resps + rno - 1; 340 1.1 mycroft ttl = b->tr_fttl; 341 1.1 mycroft 342 1.1 mycroft while (--rno > 0) { 343 1.1 mycroft --b; 344 1.5 mycroft if (ttl < b->tr_fttl) ttl = b->tr_fttl; 345 1.5 mycroft else ++ttl; 346 1.1 mycroft } 347 1.1 mycroft ttl += MULTICAST_TTL_INC; 348 1.5 mycroft if (ttl < MULTICAST_TTL1) ttl = MULTICAST_TTL1; 349 1.5 mycroft if (ttl > MULTICAST_TTL_MAX) ttl = MULTICAST_TTL_MAX; 350 1.1 mycroft return (ttl); 351 1.5 mycroft } else return(MULTICAST_TTL1); 352 1.1 mycroft } 353 1.1 mycroft 354 1.1 mycroft /* 355 1.1 mycroft * Calculate the difference between two 32-bit NTP timestamps and return 356 1.1 mycroft * the result in milliseconds. 357 1.1 mycroft */ 358 1.1 mycroft int 359 1.20 wiz t_diff(u_long a, u_long b) 360 1.1 mycroft { 361 1.1 mycroft int d = a - b; 362 1.1 mycroft 363 1.1 mycroft return ((d * 125) >> 13); 364 1.1 mycroft } 365 1.1 mycroft 366 1.1 mycroft /* 367 1.1 mycroft * Fixup for incorrect time format in 3.3 mrouted. 368 1.1 mycroft * This is possible because (JAN_1970 mod 64K) is quite close to 32K, 369 1.1 mycroft * so correct and incorrect times will be far apart. 370 1.1 mycroft */ 371 1.1 mycroft u_long 372 1.38 lukem fixtime(u_long tim) 373 1.1 mycroft { 374 1.38 lukem if (abs((int)(tim-base.qtime)) > 0x3FFFFFFF) 375 1.38 lukem tim = ((tim & 0xFFFF0000) + (JAN_1970 << 16)) + 376 1.38 lukem ((tim & 0xFFFF) << 14) / 15625; 377 1.38 lukem return (tim); 378 1.1 mycroft } 379 1.1 mycroft 380 1.5 mycroft /* 381 1.5 mycroft * Swap bytes for poor little-endian machines that don't byte-swap 382 1.5 mycroft */ 383 1.5 mycroft u_long 384 1.20 wiz byteswap(u_long v) 385 1.5 mycroft { 386 1.5 mycroft return ((v << 24) | ((v & 0xff00) << 8) | 387 1.5 mycroft ((v >> 8) & 0xff00) | (v >> 24)); 388 1.5 mycroft } 389 1.5 mycroft 390 1.1 mycroft int 391 1.20 wiz send_recv(u_int32_t dst, int type, int code, int tries, struct resp_buf *save) 392 1.1 mycroft { 393 1.24 mycroft struct pollfd set[1]; 394 1.1 mycroft struct timeval tq, tr, tv; 395 1.1 mycroft struct ip *ip; 396 1.1 mycroft struct igmp *igmp; 397 1.1 mycroft struct tr_query *query, *rquery; 398 1.1 mycroft int ipdatalen, iphdrlen, igmpdatalen; 399 1.1 mycroft u_int32_t local, group; 400 1.1 mycroft int datalen; 401 1.37 mrg int count, recvlen; 402 1.37 mrg socklen_t dummy; 403 1.1 mycroft int len; 404 1.2 thorpej int i; 405 1.1 mycroft 406 1.1 mycroft if (type == IGMP_MTRACE_QUERY) { 407 1.1 mycroft group = qgrp; 408 1.1 mycroft datalen = sizeof(struct tr_query); 409 1.1 mycroft } else { 410 1.1 mycroft group = htonl(MROUTED_LEVEL); 411 1.1 mycroft datalen = 0; 412 1.1 mycroft } 413 1.5 mycroft if (IN_MULTICAST(ntohl(dst))) local = lcl_addr; 414 1.5 mycroft else local = INADDR_ANY; 415 1.1 mycroft 416 1.1 mycroft /* 417 1.36 wiz * If the reply address was not explicitly specified, start off 418 1.1 mycroft * with the unicast address of this host. Then, if there is no 419 1.1 mycroft * response after trying half the tries with unicast, switch to 420 1.1 mycroft * the standard multicast reply address. If the TTL was also not 421 1.1 mycroft * specified, set a multicast TTL and if needed increase it for the 422 1.1 mycroft * last quarter of the tries. 423 1.1 mycroft */ 424 1.1 mycroft query = (struct tr_query *)(send_buf + MIN_IP_HEADER_LEN + IGMP_MINLEN); 425 1.1 mycroft query->tr_raddr = raddr ? raddr : multicast ? resp_cast : lcl_addr; 426 1.1 mycroft query->tr_rttl = rttl ? rttl : 427 1.1 mycroft IN_MULTICAST(ntohl(query->tr_raddr)) ? get_ttl(save) : UNICAST_TTL; 428 1.5 mycroft query->tr_src = qsrc; 429 1.5 mycroft query->tr_dst = qdst; 430 1.1 mycroft 431 1.1 mycroft for (i = tries ; i > 0; --i) { 432 1.1 mycroft if (tries == nqueries && raddr == 0) { 433 1.1 mycroft if (i == ((nqueries + 1) >> 1)) { 434 1.1 mycroft query->tr_raddr = resp_cast; 435 1.1 mycroft if (rttl == 0) query->tr_rttl = get_ttl(save); 436 1.1 mycroft } 437 1.1 mycroft if (i <= ((nqueries + 3) >> 2) && rttl == 0) { 438 1.1 mycroft query->tr_rttl += MULTICAST_TTL_INC; 439 1.1 mycroft if (query->tr_rttl > MULTICAST_TTL_MAX) 440 1.1 mycroft query->tr_rttl = MULTICAST_TTL_MAX; 441 1.1 mycroft } 442 1.1 mycroft } 443 1.1 mycroft 444 1.1 mycroft /* 445 1.1 mycroft * Change the qid for each request sent to avoid being confused 446 1.1 mycroft * by duplicate responses 447 1.1 mycroft */ 448 1.33 itojun query->tr_qid = arc4random() >> 8; 449 1.1 mycroft 450 1.1 mycroft /* 451 1.1 mycroft * Set timer to calculate delays, then send query 452 1.1 mycroft */ 453 1.1 mycroft gettimeofday(&tq, 0); 454 1.1 mycroft send_igmp(local, dst, type, code, group, datalen); 455 1.1 mycroft 456 1.1 mycroft /* 457 1.1 mycroft * Wait for response, discarding false alarms 458 1.1 mycroft */ 459 1.24 mycroft set[0].fd = igmp_socket; 460 1.24 mycroft set[0].events = POLLIN; 461 1.1 mycroft while (TRUE) { 462 1.1 mycroft gettimeofday(&tv, 0); 463 1.1 mycroft tv.tv_sec = tq.tv_sec + timeout - tv.tv_sec; 464 1.1 mycroft tv.tv_usec = tq.tv_usec - tv.tv_usec; 465 1.5 mycroft if (tv.tv_usec < 0) tv.tv_usec += 1000000L, --tv.tv_sec; 466 1.5 mycroft if (tv.tv_sec < 0) tv.tv_sec = tv.tv_usec = 0; 467 1.1 mycroft 468 1.24 mycroft count = poll(set, 1, tv.tv_sec * 1000 + tv.tv_usec / 1000); 469 1.1 mycroft 470 1.1 mycroft if (count < 0) { 471 1.5 mycroft if (errno != EINTR) perror("select"); 472 1.1 mycroft continue; 473 1.1 mycroft } else if (count == 0) { 474 1.1 mycroft printf("* "); 475 1.1 mycroft fflush(stdout); 476 1.1 mycroft break; 477 1.1 mycroft } 478 1.1 mycroft 479 1.1 mycroft gettimeofday(&tr, 0); 480 1.1 mycroft recvlen = recvfrom(igmp_socket, recv_buf, RECV_BUF_SIZE, 481 1.1 mycroft 0, (struct sockaddr *)0, &dummy); 482 1.1 mycroft 483 1.1 mycroft if (recvlen <= 0) { 484 1.5 mycroft if (recvlen && errno != EINTR) perror("recvfrom"); 485 1.1 mycroft continue; 486 1.1 mycroft } 487 1.1 mycroft 488 1.38 lukem if (recvlen < (int)sizeof(struct ip)) { 489 1.1 mycroft fprintf(stderr, 490 1.1 mycroft "packet too short (%u bytes) for IP header", recvlen); 491 1.1 mycroft continue; 492 1.1 mycroft } 493 1.1 mycroft ip = (struct ip *) recv_buf; 494 1.1 mycroft if (ip->ip_p == 0) /* ignore cache creation requests */ 495 1.1 mycroft continue; 496 1.1 mycroft 497 1.1 mycroft iphdrlen = ip->ip_hl << 2; 498 1.1 mycroft ipdatalen = ip->ip_len; 499 1.1 mycroft if (iphdrlen + ipdatalen != recvlen) { 500 1.1 mycroft fprintf(stderr, 501 1.1 mycroft "packet shorter (%u bytes) than hdr+data len (%u+%u)\n", 502 1.1 mycroft recvlen, iphdrlen, ipdatalen); 503 1.1 mycroft continue; 504 1.1 mycroft } 505 1.1 mycroft 506 1.1 mycroft igmp = (struct igmp *) (recv_buf + iphdrlen); 507 1.1 mycroft igmpdatalen = ipdatalen - IGMP_MINLEN; 508 1.1 mycroft if (igmpdatalen < 0) { 509 1.1 mycroft fprintf(stderr, 510 1.1 mycroft "IP data field too short (%u bytes) for IGMP from %s\n", 511 1.31 dsl ipdatalen, inet_fmt(ip->ip_src.s_addr)); 512 1.1 mycroft continue; 513 1.1 mycroft } 514 1.1 mycroft 515 1.1 mycroft switch (igmp->igmp_type) { 516 1.1 mycroft 517 1.1 mycroft case IGMP_DVMRP: 518 1.5 mycroft if (igmp->igmp_code != DVMRP_NEIGHBORS2) continue; 519 1.1 mycroft len = igmpdatalen; 520 1.5 mycroft /* 521 1.5 mycroft * Accept DVMRP_NEIGHBORS2 response if it comes from the 522 1.5 mycroft * address queried or if that address is one of the local 523 1.5 mycroft * addresses in the response. 524 1.5 mycroft */ 525 1.5 mycroft if (ip->ip_src.s_addr != dst) { 526 1.5 mycroft u_int32_t *p = (u_int32_t *)(igmp + 1); 527 1.5 mycroft u_int32_t *ep = p + (len >> 2); 528 1.5 mycroft while (p < ep) { 529 1.5 mycroft u_int32_t laddr = *p++; 530 1.5 mycroft int n = ntohl(*p++) & 0xFF; 531 1.5 mycroft if (laddr == dst) { 532 1.5 mycroft ep = p + 1; /* ensure p < ep after loop */ 533 1.5 mycroft break; 534 1.5 mycroft } 535 1.5 mycroft p += n; 536 1.5 mycroft } 537 1.5 mycroft if (p >= ep) continue; 538 1.5 mycroft } 539 1.1 mycroft break; 540 1.1 mycroft 541 1.5 mycroft case IGMP_MTRACE_QUERY: /* For backward compatibility with 3.3 */ 542 1.1 mycroft case IGMP_MTRACE_REPLY: 543 1.38 lukem if (igmpdatalen <= (int)QLEN) continue; 544 1.1 mycroft if ((igmpdatalen - QLEN)%RLEN) { 545 1.1 mycroft printf("packet with incorrect datalen\n"); 546 1.1 mycroft continue; 547 1.1 mycroft } 548 1.1 mycroft 549 1.1 mycroft /* 550 1.1 mycroft * Ignore responses that don't match query. 551 1.1 mycroft */ 552 1.1 mycroft rquery = (struct tr_query *)(igmp + 1); 553 1.5 mycroft if (rquery->tr_qid != query->tr_qid) continue; 554 1.5 mycroft if (rquery->tr_src != qsrc) continue; 555 1.5 mycroft if (rquery->tr_dst != qdst) continue; 556 1.1 mycroft len = (igmpdatalen - QLEN)/RLEN; 557 1.1 mycroft 558 1.1 mycroft /* 559 1.1 mycroft * Ignore trace queries passing through this node when 560 1.1 mycroft * mtrace is run on an mrouter that is in the path 561 1.5 mycroft * (needed only because IGMP_MTRACE_QUERY is accepted above 562 1.1 mycroft * for backward compatibility with multicast release 3.3). 563 1.1 mycroft */ 564 1.1 mycroft if (igmp->igmp_type == IGMP_MTRACE_QUERY) { 565 1.1 mycroft struct tr_resp *r = (struct tr_resp *)(rquery+1) + len - 1; 566 1.1 mycroft u_int32_t smask; 567 1.1 mycroft 568 1.1 mycroft VAL_TO_MASK(smask, r->tr_smask); 569 1.1 mycroft if (len < code && (r->tr_inaddr & smask) != (qsrc & smask) 570 1.1 mycroft && r->tr_rmtaddr != 0 && !(r->tr_rflags & 0x80)) 571 1.1 mycroft continue; 572 1.1 mycroft } 573 1.1 mycroft 574 1.1 mycroft /* 575 1.1 mycroft * A match, we'll keep this one. 576 1.1 mycroft */ 577 1.1 mycroft if (len > code) { 578 1.1 mycroft fprintf(stderr, 579 1.1 mycroft "Num hops received (%d) exceeds request (%d)\n", 580 1.1 mycroft len, code); 581 1.1 mycroft } 582 1.1 mycroft rquery->tr_raddr = query->tr_raddr; /* Insure these are */ 583 1.1 mycroft rquery->tr_rttl = query->tr_rttl; /* as we sent them */ 584 1.1 mycroft break; 585 1.1 mycroft 586 1.1 mycroft default: 587 1.1 mycroft continue; 588 1.1 mycroft } 589 1.1 mycroft 590 1.1 mycroft /* 591 1.1 mycroft * Most of the sanity checking done at this point. 592 1.1 mycroft * Return this packet we have been waiting for. 593 1.1 mycroft */ 594 1.1 mycroft if (save) { 595 1.1 mycroft save->qtime = ((tq.tv_sec + JAN_1970) << 16) + 596 1.1 mycroft (tq.tv_usec << 10) / 15625; 597 1.1 mycroft save->rtime = ((tr.tv_sec + JAN_1970) << 16) + 598 1.1 mycroft (tr.tv_usec << 10) / 15625; 599 1.1 mycroft save->len = len; 600 1.1 mycroft bcopy((char *)igmp, (char *)&save->igmp, ipdatalen); 601 1.1 mycroft } 602 1.1 mycroft return (recvlen); 603 1.1 mycroft } 604 1.1 mycroft } 605 1.1 mycroft return (0); 606 1.1 mycroft } 607 1.1 mycroft 608 1.5 mycroft /* 609 1.5 mycroft * Most of this code is duplicated elsewhere. I'm not sure if 610 1.5 mycroft * the duplication is absolutely required or not. 611 1.5 mycroft * 612 1.5 mycroft * Ideally, this would keep track of ongoing statistics 613 1.5 mycroft * collection and print out statistics. (& keep track 614 1.5 mycroft * of h-b-h traces and only print the longest) For now, 615 1.5 mycroft * it just snoops on what traces it can. 616 1.5 mycroft */ 617 1.5 mycroft void 618 1.20 wiz passive_mode(void) 619 1.5 mycroft { 620 1.5 mycroft struct timeval tr; 621 1.5 mycroft struct ip *ip; 622 1.5 mycroft struct igmp *igmp; 623 1.5 mycroft struct tr_resp *r; 624 1.5 mycroft int ipdatalen, iphdrlen, igmpdatalen; 625 1.37 mrg int len, recvlen; 626 1.37 mrg socklen_t dummy; 627 1.5 mycroft u_int32_t smask; 628 1.5 mycroft 629 1.5 mycroft if (raddr) { 630 1.5 mycroft if (IN_MULTICAST(ntohl(raddr))) k_join(raddr, INADDR_ANY); 631 1.5 mycroft } else k_join(htonl(0xE0000120), INADDR_ANY); 632 1.5 mycroft 633 1.5 mycroft while (1) { 634 1.5 mycroft recvlen = recvfrom(igmp_socket, recv_buf, RECV_BUF_SIZE, 635 1.5 mycroft 0, (struct sockaddr *)0, &dummy); 636 1.5 mycroft gettimeofday(&tr,0); 637 1.5 mycroft 638 1.5 mycroft if (recvlen <= 0) { 639 1.5 mycroft if (recvlen && errno != EINTR) perror("recvfrom"); 640 1.5 mycroft continue; 641 1.5 mycroft } 642 1.5 mycroft 643 1.38 lukem if (recvlen < (int)sizeof(struct ip)) { 644 1.5 mycroft fprintf(stderr, 645 1.5 mycroft "packet too short (%u bytes) for IP header", recvlen); 646 1.5 mycroft continue; 647 1.5 mycroft } 648 1.5 mycroft ip = (struct ip *) recv_buf; 649 1.5 mycroft if (ip->ip_p == 0) /* ignore cache creation requests */ 650 1.5 mycroft continue; 651 1.5 mycroft 652 1.5 mycroft iphdrlen = ip->ip_hl << 2; 653 1.5 mycroft ipdatalen = ip->ip_len; 654 1.5 mycroft if (iphdrlen + ipdatalen != recvlen) { 655 1.5 mycroft fprintf(stderr, 656 1.5 mycroft "packet shorter (%u bytes) than hdr+data len (%u+%u)\n", 657 1.5 mycroft recvlen, iphdrlen, ipdatalen); 658 1.5 mycroft continue; 659 1.5 mycroft } 660 1.5 mycroft 661 1.5 mycroft igmp = (struct igmp *) (recv_buf + iphdrlen); 662 1.5 mycroft igmpdatalen = ipdatalen - IGMP_MINLEN; 663 1.5 mycroft if (igmpdatalen < 0) { 664 1.5 mycroft fprintf(stderr, 665 1.5 mycroft "IP data field too short (%u bytes) for IGMP from %s\n", 666 1.31 dsl ipdatalen, inet_fmt(ip->ip_src.s_addr)); 667 1.5 mycroft continue; 668 1.5 mycroft } 669 1.5 mycroft 670 1.5 mycroft switch (igmp->igmp_type) { 671 1.5 mycroft 672 1.5 mycroft case IGMP_MTRACE_QUERY: /* For backward compatibility with 3.3 */ 673 1.5 mycroft case IGMP_MTRACE_REPLY: 674 1.38 lukem if (igmpdatalen < (int)QLEN) continue; 675 1.5 mycroft if ((igmpdatalen - QLEN)%RLEN) { 676 1.5 mycroft printf("packet with incorrect datalen\n"); 677 1.5 mycroft continue; 678 1.5 mycroft } 679 1.5 mycroft 680 1.5 mycroft len = (igmpdatalen - QLEN)/RLEN; 681 1.5 mycroft 682 1.5 mycroft break; 683 1.5 mycroft 684 1.5 mycroft default: 685 1.5 mycroft continue; 686 1.5 mycroft } 687 1.5 mycroft 688 1.5 mycroft base.qtime = ((tr.tv_sec + JAN_1970) << 16) + 689 1.5 mycroft (tr.tv_usec << 10) / 15625; 690 1.5 mycroft base.rtime = ((tr.tv_sec + JAN_1970) << 16) + 691 1.5 mycroft (tr.tv_usec << 10) / 15625; 692 1.5 mycroft base.len = len; 693 1.5 mycroft bcopy((char *)igmp, (char *)&base.igmp, ipdatalen); 694 1.5 mycroft /* 695 1.5 mycroft * If the user specified which traces to monitor, 696 1.5 mycroft * only accept traces that correspond to the 697 1.5 mycroft * request 698 1.5 mycroft */ 699 1.5 mycroft if ((qsrc != 0 && qsrc != base.qhdr.tr_src) || 700 1.5 mycroft (qdst != 0 && qdst != base.qhdr.tr_dst) || 701 1.5 mycroft (qgrp != 0 && qgrp != igmp->igmp_group.s_addr)) 702 1.5 mycroft continue; 703 1.5 mycroft 704 1.5 mycroft printf("Mtrace from %s to %s via group %s (mxhop=%d)\n", 705 1.31 dsl inet_fmt(base.qhdr.tr_dst), 706 1.31 dsl inet_fmt(base.qhdr.tr_src), 707 1.31 dsl inet_fmt(igmp->igmp_group.s_addr), 708 1.30 itojun igmp->igmp_code); 709 1.5 mycroft if (len == 0) 710 1.5 mycroft continue; 711 1.5 mycroft printf(" 0 "); 712 1.5 mycroft print_host(base.qhdr.tr_dst); 713 1.5 mycroft printf("\n"); 714 1.5 mycroft print_trace(1, &base); 715 1.5 mycroft r = base.resps + base.len - 1; 716 1.5 mycroft VAL_TO_MASK(smask, r->tr_smask); 717 1.5 mycroft if ((r->tr_inaddr & smask) == (base.qhdr.tr_src & smask)) { 718 1.5 mycroft printf("%3d ", -(base.len+1)); 719 1.5 mycroft print_host(base.qhdr.tr_src); 720 1.5 mycroft printf("\n"); 721 1.5 mycroft } else if (r->tr_rmtaddr != 0) { 722 1.5 mycroft printf("%3d ", -(base.len+1)); 723 1.5 mycroft what_kind(&base, r->tr_rflags == TR_OLD_ROUTER ? 724 1.5 mycroft "doesn't support mtrace" 725 1.5 mycroft : "is the next hop"); 726 1.5 mycroft } 727 1.5 mycroft printf("\n"); 728 1.5 mycroft } 729 1.5 mycroft } 730 1.1 mycroft 731 1.38 lukem const char * 732 1.20 wiz print_host(u_int32_t addr) 733 1.1 mycroft { 734 1.5 mycroft return print_host2(addr, 0); 735 1.5 mycroft } 736 1.5 mycroft 737 1.5 mycroft /* 738 1.5 mycroft * On some routers, one interface has a name and the other doesn't. 739 1.5 mycroft * We always print the address of the outgoing interface, but can 740 1.5 mycroft * sometimes get the name from the incoming interface. This might be 741 1.5 mycroft * confusing but should be slightly more helpful than just a "?". 742 1.5 mycroft */ 743 1.38 lukem const char * 744 1.20 wiz print_host2(u_int32_t addr1, u_int32_t addr2) 745 1.5 mycroft { 746 1.38 lukem const char *name; 747 1.1 mycroft 748 1.1 mycroft if (numeric) { 749 1.31 dsl printf("%s", inet_fmt(addr1)); 750 1.1 mycroft return (""); 751 1.1 mycroft } 752 1.5 mycroft name = inet_name(addr1); 753 1.5 mycroft if (*name == '?' && *(name + 1) == '\0' && addr2 != 0) 754 1.5 mycroft name = inet_name(addr2); 755 1.31 dsl printf("%s (%s)", name, inet_fmt(addr1)); 756 1.1 mycroft return (name); 757 1.1 mycroft } 758 1.1 mycroft 759 1.1 mycroft /* 760 1.1 mycroft * Print responses as received (reverse path from dst to src) 761 1.1 mycroft */ 762 1.1 mycroft void 763 1.38 lukem print_trace(int idx, struct resp_buf *buf) 764 1.1 mycroft { 765 1.1 mycroft struct tr_resp *r; 766 1.38 lukem const char *name; 767 1.1 mycroft int i; 768 1.5 mycroft int hop; 769 1.38 lukem const char *ms, *ft; 770 1.1 mycroft 771 1.38 lukem i = abs(idx); 772 1.1 mycroft r = buf->resps + i - 1; 773 1.1 mycroft 774 1.1 mycroft for (; i <= buf->len; ++i, ++r) { 775 1.38 lukem if (idx > 0) printf("%3d ", -i); 776 1.5 mycroft name = print_host2(r->tr_outaddr, r->tr_inaddr); 777 1.5 mycroft printf(" %s thresh^ %d", proto_type(r->tr_rproto), r->tr_fttl); 778 1.5 mycroft if (verbose) { 779 1.5 mycroft hop = t_diff(fixtime(ntohl(r->tr_qarr)), buf->qtime); 780 1.5 mycroft ms = scale(&hop); 781 1.5 mycroft printf(" %d%s", hop, ms); 782 1.5 mycroft } 783 1.13 he ft = flag_type(r->tr_rflags); 784 1.13 he if (strlen(ft) != 0) 785 1.13 he printf(" %s", ft); 786 1.13 he printf("\n"); 787 1.1 mycroft memcpy(names[i-1], name, sizeof(names[0]) - 1); 788 1.1 mycroft names[i-1][sizeof(names[0])-1] = '\0'; 789 1.1 mycroft } 790 1.1 mycroft } 791 1.1 mycroft 792 1.1 mycroft /* 793 1.1 mycroft * See what kind of router is the next hop 794 1.1 mycroft */ 795 1.5 mycroft int 796 1.38 lukem what_kind(struct resp_buf *buf, const char *why) 797 1.1 mycroft { 798 1.1 mycroft u_int32_t smask; 799 1.5 mycroft int retval; 800 1.1 mycroft int hops = buf->len; 801 1.1 mycroft struct tr_resp *r = buf->resps + hops - 1; 802 1.1 mycroft u_int32_t next = r->tr_rmtaddr; 803 1.1 mycroft 804 1.5 mycroft retval = send_recv(next, IGMP_DVMRP, DVMRP_ASK_NEIGHBORS2, 1, &incr[0]); 805 1.1 mycroft print_host(next); 806 1.5 mycroft if (retval) { 807 1.1 mycroft u_int32_t version = ntohl(incr[0].igmp.igmp_group.s_addr); 808 1.1 mycroft u_int32_t *p = (u_int32_t *)incr[0].ndata; 809 1.1 mycroft u_int32_t *ep = p + (incr[0].len >> 2); 810 1.38 lukem const char *type = ""; 811 1.5 mycroft retval = 0; 812 1.5 mycroft switch (version & 0xFF) { 813 1.5 mycroft case 1: 814 1.5 mycroft type = "proteon/mrouted "; 815 1.5 mycroft retval = 1; 816 1.5 mycroft break; 817 1.5 mycroft 818 1.5 mycroft case 2: 819 1.5 mycroft case 3: 820 1.5 mycroft if (((version >> 8) & 0xFF) < 3) retval = 1; 821 1.5 mycroft /* Fall through */ 822 1.5 mycroft case 4: 823 1.5 mycroft type = "mrouted "; 824 1.5 mycroft break; 825 1.5 mycroft 826 1.5 mycroft case 10: 827 1.5 mycroft type = "cisco "; 828 1.5 mycroft } 829 1.5 mycroft printf(" [%s%d.%d] %s\n", 830 1.5 mycroft type, version & 0xFF, (version >> 8) & 0xFF, 831 1.5 mycroft why); 832 1.1 mycroft VAL_TO_MASK(smask, r->tr_smask); 833 1.1 mycroft while (p < ep) { 834 1.5 mycroft u_int32_t laddr = *p++; 835 1.5 mycroft int flags = (ntohl(*p) & 0xFF00) >> 8; 836 1.5 mycroft int n = ntohl(*p++) & 0xFF; 837 1.5 mycroft if (!(flags & (DVMRP_NF_DOWN | DVMRP_NF_DISABLED)) && 838 1.5 mycroft (laddr & smask) == (qsrc & smask)) { 839 1.1 mycroft printf("%3d ", -(hops+2)); 840 1.1 mycroft print_host(qsrc); 841 1.1 mycroft printf("\n"); 842 1.5 mycroft return 1; 843 1.1 mycroft } 844 1.1 mycroft p += n; 845 1.1 mycroft } 846 1.5 mycroft return retval; 847 1.1 mycroft } 848 1.5 mycroft printf(" %s\n", why); 849 1.5 mycroft return 0; 850 1.1 mycroft } 851 1.1 mycroft 852 1.1 mycroft 853 1.38 lukem const char * 854 1.20 wiz scale(int *hop) 855 1.1 mycroft { 856 1.1 mycroft if (*hop > -1000 && *hop < 10000) return (" ms"); 857 1.1 mycroft *hop /= 1000; 858 1.1 mycroft if (*hop > -1000 && *hop < 10000) return (" s "); 859 1.1 mycroft return ("s "); 860 1.1 mycroft } 861 1.1 mycroft 862 1.1 mycroft /* 863 1.1 mycroft * Calculate and print one line of packet loss and packet rate statistics. 864 1.1 mycroft * Checks for count of all ones from mrouted 2.3 that doesn't have counters. 865 1.1 mycroft */ 866 1.1 mycroft #define NEITHER 0 867 1.1 mycroft #define INS 1 868 1.1 mycroft #define OUTS 2 869 1.1 mycroft #define BOTH 3 870 1.1 mycroft void 871 1.20 wiz stat_line(struct tr_resp *r, struct tr_resp *s, int have_next, int *rst) 872 1.1 mycroft { 873 1.5 mycroft int timediff = (fixtime(ntohl(s->tr_qarr)) - 874 1.1 mycroft fixtime(ntohl(r->tr_qarr))) >> 16; 875 1.5 mycroft int v_lost, v_pct; 876 1.5 mycroft int g_lost, g_pct; 877 1.5 mycroft int v_out = ntohl(s->tr_vifout) - ntohl(r->tr_vifout); 878 1.5 mycroft int g_out = ntohl(s->tr_pktcnt) - ntohl(r->tr_pktcnt); 879 1.5 mycroft int v_pps, g_pps; 880 1.1 mycroft char v_str[8], g_str[8]; 881 1.5 mycroft int have = NEITHER; 882 1.5 mycroft int res = *rst; 883 1.1 mycroft 884 1.5 mycroft if (timediff == 0) timediff = 1; 885 1.1 mycroft v_pps = v_out / timediff; 886 1.1 mycroft g_pps = g_out / timediff; 887 1.1 mycroft 888 1.8 lukem if ((v_out && (s->tr_vifout != 0xFFFFFFFF && s->tr_vifout != 0)) || 889 1.5 mycroft (r->tr_vifout != 0xFFFFFFFF && r->tr_vifout != 0)) 890 1.5 mycroft have |= OUTS; 891 1.1 mycroft 892 1.1 mycroft if (have_next) { 893 1.5 mycroft --r, --s, --rst; 894 1.5 mycroft if ((s->tr_vifin != 0xFFFFFFFF && s->tr_vifin != 0) || 895 1.5 mycroft (r->tr_vifin != 0xFFFFFFFF && r->tr_vifin != 0)) 896 1.1 mycroft have |= INS; 897 1.5 mycroft if (*rst) 898 1.5 mycroft res = 1; 899 1.1 mycroft } 900 1.1 mycroft 901 1.1 mycroft switch (have) { 902 1.1 mycroft case BOTH: 903 1.1 mycroft v_lost = v_out - (ntohl(s->tr_vifin) - ntohl(r->tr_vifin)); 904 1.5 mycroft if (v_out) v_pct = (v_lost * 100 + (v_out >> 1)) / v_out; 905 1.5 mycroft else v_pct = 0; 906 1.1 mycroft if (-100 < v_pct && v_pct < 101 && v_out > 10) 907 1.7 mrg (void)snprintf(v_str, sizeof v_str, "%3d", v_pct); 908 1.5 mycroft else memcpy(v_str, " --", 4); 909 1.1 mycroft 910 1.1 mycroft g_lost = g_out - (ntohl(s->tr_pktcnt) - ntohl(r->tr_pktcnt)); 911 1.5 mycroft if (g_out) g_pct = (g_lost * 100 + (g_out >> 1))/ g_out; 912 1.5 mycroft else g_pct = 0; 913 1.1 mycroft if (-100 < g_pct && g_pct < 101 && g_out > 10) 914 1.7 mrg (void)snprintf(g_str, sizeof g_str, "%3d", g_pct); 915 1.5 mycroft else memcpy(g_str, " --", 4); 916 1.5 mycroft 917 1.5 mycroft printf("%6d/%-5d=%s%%%4d pps", 918 1.5 mycroft v_lost, v_out, v_str, v_pps); 919 1.5 mycroft if (res) 920 1.5 mycroft printf("\n"); 921 1.2 thorpej else 922 1.5 mycroft printf("%6d/%-5d=%s%%%4d pps\n", 923 1.5 mycroft g_lost, g_out, g_str, g_pps); 924 1.1 mycroft break; 925 1.1 mycroft 926 1.1 mycroft case INS: 927 1.5 mycroft v_out = ntohl(s->tr_vifin) - ntohl(r->tr_vifin); 928 1.1 mycroft v_pps = v_out / timediff; 929 1.1 mycroft /* Fall through */ 930 1.1 mycroft 931 1.1 mycroft case OUTS: 932 1.5 mycroft printf(" %-5d %4d pps", 933 1.5 mycroft v_out, v_pps); 934 1.5 mycroft if (res) 935 1.5 mycroft printf("\n"); 936 1.5 mycroft else 937 1.5 mycroft printf(" %-5d %4d pps\n", 938 1.5 mycroft g_out, g_pps); 939 1.1 mycroft break; 940 1.1 mycroft 941 1.1 mycroft case NEITHER: 942 1.1 mycroft printf("\n"); 943 1.1 mycroft break; 944 1.1 mycroft } 945 1.5 mycroft 946 1.5 mycroft if (debug > 2) { 947 1.8 lukem printf("\t\t\t\tv_in: %ld ", (long)ntohl(s->tr_vifin)); 948 1.8 lukem printf("v_out: %ld ", (long)ntohl(s->tr_vifout)); 949 1.8 lukem printf("pkts: %ld\n", (long)ntohl(s->tr_pktcnt)); 950 1.8 lukem printf("\t\t\t\tv_in: %ld ", (long)ntohl(r->tr_vifin)); 951 1.8 lukem printf("v_out: %ld ", (long)ntohl(r->tr_vifout)); 952 1.8 lukem printf("pkts: %ld\n", (long)ntohl(r->tr_pktcnt)); 953 1.8 lukem printf("\t\t\t\tv_in: %ld ", 954 1.8 lukem (long)ntohl(s->tr_vifin)-ntohl(r->tr_vifin)); 955 1.8 lukem printf("v_out: %ld ", 956 1.8 lukem (long)(ntohl(s->tr_vifout) - ntohl(r->tr_vifout))); 957 1.8 lukem printf("pkts: %ld ", (long)(ntohl(s->tr_pktcnt) - ntohl(r->tr_pktcnt))); 958 1.5 mycroft printf("time: %d\n", timediff); 959 1.5 mycroft printf("\t\t\t\tres: %d\n", res); 960 1.5 mycroft } 961 1.1 mycroft } 962 1.1 mycroft 963 1.1 mycroft /* 964 1.5 mycroft * A fixup to check if any pktcnt has been reset, and to fix the 965 1.5 mycroft * byteorder bugs in mrouted 3.6 on little-endian machines. 966 1.1 mycroft */ 967 1.1 mycroft void 968 1.38 lukem fixup_stats(struct resp_buf *basep, struct resp_buf *prev, struct resp_buf *new) 969 1.1 mycroft { 970 1.38 lukem int rno = basep->len; 971 1.38 lukem struct tr_resp *b = basep->resps + rno; 972 1.5 mycroft struct tr_resp *p = prev->resps + rno; 973 1.5 mycroft struct tr_resp *n = new->resps + rno; 974 1.5 mycroft int *r = reset + rno; 975 1.5 mycroft int *s = swaps + rno; 976 1.5 mycroft int res; 977 1.5 mycroft 978 1.5 mycroft /* Check for byte-swappers */ 979 1.5 mycroft while (--rno >= 0) { 980 1.5 mycroft --n; --p; --b; --s; 981 1.40 joerg if (*s || (ntohl(n->tr_vifout) - ntohl(p->tr_vifout)) > 100000) { 982 1.5 mycroft /* This host sends byteswapped reports; swap 'em */ 983 1.5 mycroft if (!*s) { 984 1.5 mycroft *s = 1; 985 1.5 mycroft b->tr_qarr = byteswap(b->tr_qarr); 986 1.5 mycroft b->tr_vifin = byteswap(b->tr_vifin); 987 1.5 mycroft b->tr_vifout = byteswap(b->tr_vifout); 988 1.5 mycroft b->tr_pktcnt = byteswap(b->tr_pktcnt); 989 1.5 mycroft } 990 1.1 mycroft 991 1.5 mycroft n->tr_qarr = byteswap(n->tr_qarr); 992 1.5 mycroft n->tr_vifin = byteswap(n->tr_vifin); 993 1.5 mycroft n->tr_vifout = byteswap(n->tr_vifout); 994 1.5 mycroft n->tr_pktcnt = byteswap(n->tr_pktcnt); 995 1.5 mycroft } 996 1.5 mycroft } 997 1.1 mycroft 998 1.38 lukem rno = basep->len; 999 1.38 lukem b = basep->resps + rno; 1000 1.5 mycroft p = prev->resps + rno; 1001 1.1 mycroft n = new->resps + rno; 1002 1.1 mycroft 1003 1.5 mycroft while (--rno >= 0) { 1004 1.5 mycroft --n; --p; --b; --r; 1005 1.5 mycroft res = ((ntohl(n->tr_pktcnt) < ntohl(b->tr_pktcnt)) || 1006 1.5 mycroft (ntohl(n->tr_pktcnt) < ntohl(p->tr_pktcnt))); 1007 1.5 mycroft if (debug > 2) 1008 1.5 mycroft printf("\t\tr=%d, res=%d\n", *r, res); 1009 1.5 mycroft if (*r) { 1010 1.5 mycroft if (res || *r > 1) { 1011 1.5 mycroft /* 1012 1.5 mycroft * This router appears to be a 3.4 with that nasty ol' 1013 1.5 mycroft * neighbor version bug, which causes it to constantly 1014 1.5 mycroft * reset. Just nuke the statistics for this node, and 1015 1.5 mycroft * don't even bother giving it the benefit of the 1016 1.5 mycroft * doubt from now on. 1017 1.5 mycroft */ 1018 1.5 mycroft p->tr_pktcnt = b->tr_pktcnt = n->tr_pktcnt; 1019 1.8 lukem r++; 1020 1.5 mycroft } else { 1021 1.5 mycroft /* 1022 1.5 mycroft * This is simply the situation that the original 1023 1.5 mycroft * fixup_stats was meant to deal with -- that a 1024 1.5 mycroft * 3.3 or 3.4 router deleted a cache entry while 1025 1.5 mycroft * traffic was still active. 1026 1.5 mycroft */ 1027 1.5 mycroft *r = 0; 1028 1.5 mycroft break; 1029 1.5 mycroft } 1030 1.5 mycroft } else 1031 1.5 mycroft *r = res; 1032 1.5 mycroft } 1033 1.5 mycroft 1034 1.5 mycroft if (rno < 0) return; 1035 1.5 mycroft 1036 1.38 lukem rno = basep->len; 1037 1.38 lukem b = basep->resps + rno; 1038 1.5 mycroft p = prev->resps + rno; 1039 1.5 mycroft 1040 1.5 mycroft while (--rno >= 0) (--b)->tr_pktcnt = (--p)->tr_pktcnt; 1041 1.1 mycroft } 1042 1.1 mycroft 1043 1.1 mycroft /* 1044 1.1 mycroft * Print responses with statistics for forward path (from src to dst) 1045 1.1 mycroft */ 1046 1.5 mycroft int 1047 1.38 lukem print_stats(struct resp_buf *basep, struct resp_buf *prev, struct resp_buf *new) 1048 1.1 mycroft { 1049 1.1 mycroft int rtt, hop; 1050 1.38 lukem const char *ms; 1051 1.31 dsl char *s1; 1052 1.5 mycroft u_int32_t smask; 1053 1.38 lukem int rno = basep->len - 1; 1054 1.38 lukem struct tr_resp *b = basep->resps + rno; 1055 1.5 mycroft struct tr_resp *p = prev->resps + rno; 1056 1.5 mycroft struct tr_resp *n = new->resps + rno; 1057 1.5 mycroft int *r = reset + rno; 1058 1.5 mycroft u_long resptime = new->rtime; 1059 1.5 mycroft u_long qarrtime = fixtime(ntohl(n->tr_qarr)); 1060 1.5 mycroft u_int ttl = n->tr_fttl; 1061 1.38 lukem int first = (basep == prev); 1062 1.1 mycroft 1063 1.1 mycroft VAL_TO_MASK(smask, b->tr_smask); 1064 1.1 mycroft printf(" Source Response Dest"); 1065 1.1 mycroft printf(" Packet Statistics For Only For Traffic\n"); 1066 1.31 dsl s1 = inet_fmt(qsrc); 1067 1.1 mycroft printf("%-15s %-15s All Multicast Traffic From %s\n", 1068 1.1 mycroft ((b->tr_inaddr & smask) == (qsrc & smask)) ? s1 : " * * * ", 1069 1.38 lukem inet_fmt(basep->qhdr.tr_raddr), s1); 1070 1.1 mycroft rtt = t_diff(resptime, new->qtime); 1071 1.1 mycroft ms = scale(&rtt); 1072 1.5 mycroft printf(" %c __/ rtt%5d%s Lost/Sent = Pct Rate To %s\n", 1073 1.31 dsl first ? 'v' : '|', rtt, ms, inet_fmt(qgrp)); 1074 1.5 mycroft if (!first) { 1075 1.5 mycroft hop = t_diff(resptime, qarrtime); 1076 1.5 mycroft ms = scale(&hop); 1077 1.5 mycroft printf(" v / hop%5d%s", hop, ms); 1078 1.5 mycroft printf(" --------------------- --------------------\n"); 1079 1.5 mycroft } 1080 1.1 mycroft if (debug > 2) { 1081 1.8 lukem printf("\t\t\t\tv_in: %ld ", (long)ntohl(n->tr_vifin)); 1082 1.8 lukem printf("v_out: %ld ", (long)ntohl(n->tr_vifout)); 1083 1.8 lukem printf("pkts: %ld\n", (long)ntohl(n->tr_pktcnt)); 1084 1.8 lukem printf("\t\t\t\tv_in: %ld ", (long)ntohl(b->tr_vifin)); 1085 1.8 lukem printf("v_out: %ld ", (long)ntohl(b->tr_vifout)); 1086 1.8 lukem printf("pkts: %ld\n", (long)ntohl(b->tr_pktcnt)); 1087 1.8 lukem printf("\t\t\t\tv_in: %ld ", 1088 1.8 lukem (long)(ntohl(n->tr_vifin) - ntohl(b->tr_vifin))); 1089 1.8 lukem printf("v_out: %ld ", 1090 1.8 lukem (long)(ntohl(n->tr_vifout) - ntohl(b->tr_vifout))); 1091 1.8 lukem printf("pkts: %ld\n", 1092 1.8 lukem (long)(ntohl(n->tr_pktcnt) - ntohl(b->tr_pktcnt))); 1093 1.5 mycroft printf("\t\t\t\treset: %d\n", *r); 1094 1.1 mycroft } 1095 1.1 mycroft 1096 1.1 mycroft while (TRUE) { 1097 1.41 christos if ((n->tr_inaddr != b->tr_inaddr) || (p->tr_inaddr != b->tr_inaddr)) 1098 1.5 mycroft return 1; /* Route changed */ 1099 1.5 mycroft 1100 1.1 mycroft if ((n->tr_inaddr != n->tr_outaddr)) 1101 1.31 dsl printf("%-15s\n", inet_fmt(n->tr_inaddr)); 1102 1.31 dsl printf("%-15s %-14s %s\n", inet_fmt(n->tr_outaddr), names[rno], 1103 1.1 mycroft flag_type(n->tr_rflags)); 1104 1.1 mycroft 1105 1.1 mycroft if (rno-- < 1) break; 1106 1.1 mycroft 1107 1.5 mycroft printf(" %c ^ ttl%5d ", first ? 'v' : '|', ttl); 1108 1.5 mycroft stat_line(p, n, TRUE, r); 1109 1.5 mycroft if (!first) { 1110 1.5 mycroft resptime = qarrtime; 1111 1.5 mycroft qarrtime = fixtime(ntohl((n-1)->tr_qarr)); 1112 1.5 mycroft hop = t_diff(resptime, qarrtime); 1113 1.5 mycroft ms = scale(&hop); 1114 1.5 mycroft printf(" v | hop%5d%s", hop, ms); 1115 1.5 mycroft stat_line(b, n, TRUE, r); 1116 1.5 mycroft } 1117 1.1 mycroft 1118 1.5 mycroft --b, --p, --n, --r; 1119 1.5 mycroft if (ttl < n->tr_fttl) ttl = n->tr_fttl; 1120 1.5 mycroft else ++ttl; 1121 1.1 mycroft } 1122 1.1 mycroft 1123 1.5 mycroft printf(" %c \\__ ttl%5d ", first ? 'v' : '|', ttl); 1124 1.5 mycroft stat_line(p, n, FALSE, r); 1125 1.5 mycroft if (!first) { 1126 1.5 mycroft hop = t_diff(qarrtime, new->qtime); 1127 1.5 mycroft ms = scale(&hop); 1128 1.5 mycroft printf(" v \\ hop%5d%s", hop, ms); 1129 1.5 mycroft stat_line(b, n, FALSE, r); 1130 1.5 mycroft } 1131 1.31 dsl printf("%-15s %s\n", inet_fmt(qdst), inet_fmt(lcl_addr)); 1132 1.1 mycroft printf(" Receiver Query Source\n\n"); 1133 1.5 mycroft return 0; 1134 1.1 mycroft } 1135 1.1 mycroft 1136 1.1 mycroft 1137 1.1 mycroft /*************************************************************************** 1138 1.1 mycroft * main 1139 1.1 mycroft ***************************************************************************/ 1140 1.1 mycroft 1141 1.1 mycroft int 1142 1.20 wiz main(int argc, char **argv) 1143 1.1 mycroft { 1144 1.1 mycroft int udp; 1145 1.1 mycroft struct sockaddr_in addr; 1146 1.37 mrg socklen_t addrlen = sizeof(addr); 1147 1.1 mycroft int recvlen; 1148 1.1 mycroft struct timeval tv; 1149 1.1 mycroft struct resp_buf *prev, *new; 1150 1.1 mycroft struct tr_resp *r; 1151 1.1 mycroft u_int32_t smask; 1152 1.1 mycroft int rno; 1153 1.5 mycroft int hops, nexthop, tries; 1154 1.5 mycroft u_int32_t lastout = 0; 1155 1.1 mycroft int numstats = 1; 1156 1.1 mycroft int waittime; 1157 1.1 mycroft 1158 1.1 mycroft if (geteuid() != 0) { 1159 1.1 mycroft fprintf(stderr, "mtrace: must be root\n"); 1160 1.1 mycroft exit(1); 1161 1.1 mycroft } 1162 1.21 itojun init_igmp(); 1163 1.21 itojun if (setuid(getuid()) == -1) 1164 1.28 wiz logit(LOG_ERR, errno, "setuid"); 1165 1.1 mycroft 1166 1.5 mycroft argv++, argc--; 1167 1.5 mycroft if (argc == 0) goto usage; 1168 1.2 thorpej 1169 1.5 mycroft while (argc > 0 && *argv[0] == '-') { 1170 1.38 lukem const char *p = *argv++; argc--; 1171 1.5 mycroft p++; 1172 1.5 mycroft do { 1173 1.5 mycroft char c = *p++; 1174 1.38 lukem const char *arg = (char *) 0; 1175 1.35 dsl if (isdigit((unsigned char)*p)) { 1176 1.5 mycroft arg = p; 1177 1.5 mycroft p = ""; 1178 1.5 mycroft } else if (argc > 0) arg = argv[0]; 1179 1.5 mycroft switch (c) { 1180 1.5 mycroft case 'd': /* Unlisted debug print option */ 1181 1.35 dsl if (arg && isdigit((unsigned char)*arg)) { 1182 1.5 mycroft debug = atoi(arg); 1183 1.5 mycroft if (debug < 0) debug = 0; 1184 1.5 mycroft if (debug > 3) debug = 3; 1185 1.5 mycroft if (arg == argv[0]) argv++, argc--; 1186 1.5 mycroft break; 1187 1.5 mycroft } else 1188 1.5 mycroft goto usage; 1189 1.43 andvar case 'M': /* Use multicast for response */ 1190 1.5 mycroft multicast = TRUE; 1191 1.5 mycroft break; 1192 1.5 mycroft case 'l': /* Loop updating stats indefinitely */ 1193 1.5 mycroft numstats = 3153600; 1194 1.5 mycroft break; 1195 1.5 mycroft case 'n': /* Don't reverse map host addresses */ 1196 1.5 mycroft numeric = TRUE; 1197 1.5 mycroft break; 1198 1.5 mycroft case 'p': /* Passive listen for traces */ 1199 1.5 mycroft passive = TRUE; 1200 1.5 mycroft break; 1201 1.5 mycroft case 'v': /* Verbosity */ 1202 1.5 mycroft verbose = TRUE; 1203 1.5 mycroft break; 1204 1.5 mycroft case 's': /* Short form, don't wait for stats */ 1205 1.5 mycroft numstats = 0; 1206 1.5 mycroft break; 1207 1.5 mycroft case 'w': /* Time to wait for packet arrival */ 1208 1.35 dsl if (arg && isdigit((unsigned char)*arg)) { 1209 1.5 mycroft timeout = atoi(arg); 1210 1.5 mycroft if (timeout < 1) timeout = 1; 1211 1.5 mycroft if (arg == argv[0]) argv++, argc--; 1212 1.5 mycroft break; 1213 1.5 mycroft } else 1214 1.5 mycroft goto usage; 1215 1.5 mycroft case 'm': /* Max number of hops to trace */ 1216 1.35 dsl if (arg && isdigit((unsigned char)*arg)) { 1217 1.5 mycroft qno = atoi(arg); 1218 1.5 mycroft if (qno > MAXHOPS) qno = MAXHOPS; 1219 1.5 mycroft else if (qno < 1) qno = 0; 1220 1.5 mycroft if (arg == argv[0]) argv++, argc--; 1221 1.5 mycroft break; 1222 1.5 mycroft } else 1223 1.5 mycroft goto usage; 1224 1.5 mycroft case 'q': /* Number of query retries */ 1225 1.35 dsl if (arg && isdigit((unsigned char)*arg)) { 1226 1.5 mycroft nqueries = atoi(arg); 1227 1.5 mycroft if (nqueries < 1) nqueries = 1; 1228 1.5 mycroft if (arg == argv[0]) argv++, argc--; 1229 1.5 mycroft break; 1230 1.5 mycroft } else 1231 1.5 mycroft goto usage; 1232 1.5 mycroft case 'g': /* Last-hop gateway (dest of query) */ 1233 1.5 mycroft if (arg && (gwy = host_addr(arg))) { 1234 1.5 mycroft if (arg == argv[0]) argv++, argc--; 1235 1.5 mycroft break; 1236 1.5 mycroft } else 1237 1.5 mycroft goto usage; 1238 1.5 mycroft case 't': /* TTL for query packet */ 1239 1.35 dsl if (arg && isdigit((unsigned char)*arg)) { 1240 1.5 mycroft qttl = atoi(arg); 1241 1.5 mycroft if (qttl < 1) qttl = 1; 1242 1.5 mycroft rttl = qttl; 1243 1.5 mycroft if (arg == argv[0]) argv++, argc--; 1244 1.5 mycroft break; 1245 1.5 mycroft } else 1246 1.5 mycroft goto usage; 1247 1.5 mycroft case 'r': /* Dest for response packet */ 1248 1.5 mycroft if (arg && (raddr = host_addr(arg))) { 1249 1.5 mycroft if (arg == argv[0]) argv++, argc--; 1250 1.5 mycroft break; 1251 1.5 mycroft } else 1252 1.5 mycroft goto usage; 1253 1.5 mycroft case 'i': /* Local interface address */ 1254 1.5 mycroft if (arg && (lcl_addr = host_addr(arg))) { 1255 1.5 mycroft if (arg == argv[0]) argv++, argc--; 1256 1.5 mycroft break; 1257 1.5 mycroft } else 1258 1.5 mycroft goto usage; 1259 1.5 mycroft case 'S': /* Stat accumulation interval */ 1260 1.35 dsl if (arg && isdigit((unsigned char)*arg)) { 1261 1.5 mycroft statint = atoi(arg); 1262 1.5 mycroft if (statint < 1) statint = 1; 1263 1.5 mycroft if (arg == argv[0]) argv++, argc--; 1264 1.5 mycroft break; 1265 1.5 mycroft } else 1266 1.5 mycroft goto usage; 1267 1.5 mycroft default: 1268 1.5 mycroft goto usage; 1269 1.5 mycroft } 1270 1.5 mycroft } while (*p); 1271 1.5 mycroft } 1272 1.2 thorpej 1273 1.5 mycroft if (argc > 0 && (qsrc = host_addr(argv[0]))) { /* Source of path */ 1274 1.5 mycroft if (IN_MULTICAST(ntohl(qsrc))) goto usage; 1275 1.5 mycroft argv++, argc--; 1276 1.5 mycroft if (argc > 0 && (qdst = host_addr(argv[0]))) { /* Dest of path */ 1277 1.5 mycroft argv++, argc--; 1278 1.5 mycroft if (argc > 0 && (qgrp = host_addr(argv[0]))) { /* Path via group */ 1279 1.5 mycroft argv++, argc--; 1280 1.5 mycroft } 1281 1.5 mycroft if (IN_MULTICAST(ntohl(qdst))) { 1282 1.5 mycroft u_int32_t temp = qdst; 1283 1.5 mycroft qdst = qgrp; 1284 1.5 mycroft qgrp = temp; 1285 1.5 mycroft if (IN_MULTICAST(ntohl(qdst))) goto usage; 1286 1.5 mycroft } else if (qgrp && !IN_MULTICAST(ntohl(qgrp))) goto usage; 1287 1.5 mycroft } 1288 1.5 mycroft } 1289 1.2 thorpej 1290 1.5 mycroft if (passive) { 1291 1.5 mycroft passive_mode(); 1292 1.5 mycroft return(0); 1293 1.1 mycroft } 1294 1.1 mycroft 1295 1.5 mycroft if (argc > 0 || qsrc == 0) { 1296 1.5 mycroft usage: printf("\ 1297 1.5 mycroft Usage: mtrace [-Mlnps] [-w wait] [-m max_hops] [-q nqueries] [-g gateway]\n\ 1298 1.5 mycroft [-S statint] [-t ttl] [-r resp_dest] [-i if_addr] source [receiver] [group]\n"); 1299 1.5 mycroft exit(1); 1300 1.1 mycroft } 1301 1.1 mycroft 1302 1.1 mycroft /* 1303 1.1 mycroft * Set useful defaults for as many parameters as possible. 1304 1.1 mycroft */ 1305 1.1 mycroft 1306 1.1 mycroft defgrp = htonl(0xE0020001); /* MBone Audio (224.2.0.1) */ 1307 1.1 mycroft query_cast = htonl(0xE0000002); /* All routers multicast addr */ 1308 1.1 mycroft resp_cast = htonl(0xE0000120); /* Mtrace response multicast addr */ 1309 1.5 mycroft if (qgrp == 0) qgrp = defgrp; 1310 1.1 mycroft 1311 1.1 mycroft /* 1312 1.1 mycroft * Get default local address for multicasts to use in setting defaults. 1313 1.1 mycroft */ 1314 1.19 itojun memset(&addr, 0, sizeof(addr)); 1315 1.1 mycroft addr.sin_family = AF_INET; 1316 1.1 mycroft #if (defined(BSD) && (BSD >= 199103)) 1317 1.1 mycroft addr.sin_len = sizeof(addr); 1318 1.1 mycroft #endif 1319 1.1 mycroft addr.sin_addr.s_addr = qgrp; 1320 1.1 mycroft addr.sin_port = htons(2000); /* Any port above 1024 will do */ 1321 1.1 mycroft 1322 1.1 mycroft if (((udp = socket(AF_INET, SOCK_DGRAM, 0)) < 0) || 1323 1.1 mycroft (connect(udp, (struct sockaddr *) &addr, sizeof(addr)) < 0) || 1324 1.1 mycroft getsockname(udp, (struct sockaddr *) &addr, &addrlen) < 0) { 1325 1.1 mycroft perror("Determining local address"); 1326 1.17 wiz exit(1); 1327 1.1 mycroft } 1328 1.1 mycroft 1329 1.5 mycroft #ifdef SUNOS5 1330 1.1 mycroft /* 1331 1.5 mycroft * SunOS 5.X prior to SunOS 2.6, getsockname returns 0 for udp socket. 1332 1.5 mycroft * This call to sysinfo will return the hostname. 1333 1.5 mycroft * If the default multicast interfface (set with the route 1334 1.5 mycroft * for 224.0.0.0) is not the same as the hostname, 1335 1.5 mycroft * mtrace -i [if_addr] will have to be used. 1336 1.1 mycroft */ 1337 1.5 mycroft if (addr.sin_addr.s_addr == 0) { 1338 1.5 mycroft char myhostname[MAXHOSTNAMELEN]; 1339 1.5 mycroft struct hostent *hp; 1340 1.5 mycroft int error; 1341 1.5 mycroft 1342 1.5 mycroft error = sysinfo(SI_HOSTNAME, myhostname, sizeof(myhostname)); 1343 1.5 mycroft if (error == -1) { 1344 1.5 mycroft perror("Getting my hostname"); 1345 1.17 wiz exit(1); 1346 1.5 mycroft } 1347 1.5 mycroft 1348 1.5 mycroft hp = gethostbyname(myhostname); 1349 1.5 mycroft if (hp == NULL || hp->h_addrtype != AF_INET || 1350 1.5 mycroft hp->h_length != sizeof(addr.sin_addr)) { 1351 1.5 mycroft perror("Finding IP address for my hostname"); 1352 1.17 wiz exit(1); 1353 1.5 mycroft } 1354 1.5 mycroft 1355 1.10 mrg memcpy((char *)&addr.sin_addr.s_addr, hp->h_addr, 1356 1.10 mrg sizeof(addr.sin_addr.s_addr)); 1357 1.5 mycroft } 1358 1.5 mycroft #endif 1359 1.1 mycroft 1360 1.1 mycroft /* 1361 1.5 mycroft * Default destination for path to be queried is the local host. 1362 1.1 mycroft */ 1363 1.5 mycroft if (qdst == 0) qdst = lcl_addr ? lcl_addr : addr.sin_addr.s_addr; 1364 1.1 mycroft dst_netmask = get_netmask(udp, qdst); 1365 1.1 mycroft close(udp); 1366 1.5 mycroft if (lcl_addr == 0) lcl_addr = addr.sin_addr.s_addr; 1367 1.1 mycroft 1368 1.5 mycroft /* 1369 1.5 mycroft * Protect against unicast queries to mrouted versions that might crash. 1370 1.5 mycroft */ 1371 1.5 mycroft if (gwy && !IN_MULTICAST(ntohl(gwy))) 1372 1.5 mycroft if (send_recv(gwy, IGMP_DVMRP, DVMRP_ASK_NEIGHBORS2, 1, &incr[0])) { 1373 1.5 mycroft int version = ntohl(incr[0].igmp.igmp_group.s_addr) & 0xFFFF; 1374 1.5 mycroft if (version == 0x0303 || version == 0x0503) { 1375 1.5 mycroft printf("Don't use -g to address an mrouted 3.%d, it might crash\n", 1376 1.5 mycroft (version >> 8) & 0xFF); 1377 1.1 mycroft exit(0); 1378 1.1 mycroft } 1379 1.5 mycroft } 1380 1.1 mycroft 1381 1.1 mycroft printf("Mtrace from %s to %s via group %s\n", 1382 1.31 dsl inet_fmt(qsrc), inet_fmt(qdst), 1383 1.31 dsl inet_fmt(qgrp)); 1384 1.1 mycroft 1385 1.1 mycroft if ((qdst & dst_netmask) == (qsrc & dst_netmask)) { 1386 1.1 mycroft printf("Source & receiver are directly connected, no path to trace\n"); 1387 1.1 mycroft exit(0); 1388 1.1 mycroft } 1389 1.1 mycroft 1390 1.1 mycroft /* 1391 1.5 mycroft * If the response is to be a multicast address, make sure we 1392 1.5 mycroft * are listening on that multicast address. 1393 1.1 mycroft */ 1394 1.5 mycroft if (raddr) { 1395 1.5 mycroft if (IN_MULTICAST(ntohl(raddr))) k_join(raddr, lcl_addr); 1396 1.5 mycroft } else k_join(resp_cast, lcl_addr); 1397 1.1 mycroft 1398 1.1 mycroft /* 1399 1.5 mycroft * If the destination is on the local net, the last-hop router can 1400 1.5 mycroft * be found by multicast to the all-routers multicast group. 1401 1.5 mycroft * Otherwise, use the group address that is the subject of the 1402 1.5 mycroft * query since by definition the last-hop router will be a member. 1403 1.5 mycroft * Set default TTLs for local remote multicasts. 1404 1.1 mycroft */ 1405 1.5 mycroft restart: 1406 1.5 mycroft 1407 1.5 mycroft if (gwy == 0) 1408 1.5 mycroft if ((qdst & dst_netmask) == (lcl_addr & dst_netmask)) tdst = query_cast; 1409 1.5 mycroft else tdst = qgrp; 1410 1.5 mycroft else tdst = gwy; 1411 1.5 mycroft 1412 1.5 mycroft if (IN_MULTICAST(ntohl(tdst))) { 1413 1.5 mycroft k_set_loop(1); /* If I am running on a router, I need to hear this */ 1414 1.5 mycroft if (tdst == query_cast) k_set_ttl(qttl ? qttl : 1); 1415 1.5 mycroft else k_set_ttl(qttl ? qttl : MULTICAST_TTL1); 1416 1.5 mycroft } 1417 1.1 mycroft 1418 1.1 mycroft /* 1419 1.5 mycroft * Try a query at the requested number of hops or MAXHOPS if unspecified. 1420 1.1 mycroft */ 1421 1.1 mycroft if (qno == 0) { 1422 1.1 mycroft hops = MAXHOPS; 1423 1.1 mycroft tries = 1; 1424 1.1 mycroft printf("Querying full reverse path... "); 1425 1.1 mycroft fflush(stdout); 1426 1.1 mycroft } else { 1427 1.1 mycroft hops = qno; 1428 1.1 mycroft tries = nqueries; 1429 1.1 mycroft printf("Querying reverse path, maximum %d hops... ", qno); 1430 1.1 mycroft fflush(stdout); 1431 1.2 thorpej } 1432 1.1 mycroft base.rtime = 0; 1433 1.1 mycroft base.len = 0; 1434 1.1 mycroft 1435 1.5 mycroft recvlen = send_recv(tdst, IGMP_MTRACE_QUERY, hops, tries, &base); 1436 1.1 mycroft 1437 1.1 mycroft /* 1438 1.1 mycroft * If the initial query was successful, print it. Otherwise, if 1439 1.1 mycroft * the query max hop count is the default of zero, loop starting 1440 1.5 mycroft * from one until there is no response for four hops. The extra 1441 1.5 mycroft * hops allow getting past an mtrace-capable mrouter that can't 1442 1.5 mycroft * send multicast packets because all phyints are disabled. 1443 1.1 mycroft */ 1444 1.1 mycroft if (recvlen) { 1445 1.1 mycroft printf("\n 0 "); 1446 1.1 mycroft print_host(qdst); 1447 1.1 mycroft printf("\n"); 1448 1.1 mycroft print_trace(1, &base); 1449 1.1 mycroft r = base.resps + base.len - 1; 1450 1.5 mycroft if (r->tr_rflags == TR_OLD_ROUTER || r->tr_rflags == TR_NO_SPACE || 1451 1.5 mycroft qno != 0) { 1452 1.1 mycroft printf("%3d ", -(base.len+1)); 1453 1.5 mycroft what_kind(&base, r->tr_rflags == TR_OLD_ROUTER ? 1454 1.5 mycroft "doesn't support mtrace" 1455 1.5 mycroft : "is the next hop"); 1456 1.1 mycroft } else { 1457 1.1 mycroft VAL_TO_MASK(smask, r->tr_smask); 1458 1.1 mycroft if ((r->tr_inaddr & smask) == (qsrc & smask)) { 1459 1.1 mycroft printf("%3d ", -(base.len+1)); 1460 1.1 mycroft print_host(qsrc); 1461 1.1 mycroft printf("\n"); 1462 1.1 mycroft } 1463 1.1 mycroft } 1464 1.1 mycroft } else if (qno == 0) { 1465 1.1 mycroft printf("switching to hop-by-hop:\n 0 "); 1466 1.1 mycroft print_host(qdst); 1467 1.1 mycroft printf("\n"); 1468 1.1 mycroft 1469 1.5 mycroft for (hops = 1, nexthop = 1; hops <= MAXHOPS; ++hops) { 1470 1.1 mycroft printf("%3d ", -hops); 1471 1.1 mycroft fflush(stdout); 1472 1.1 mycroft 1473 1.5 mycroft /* 1474 1.5 mycroft * After a successful first hop, try switching to the unicast 1475 1.5 mycroft * address of the last-hop router instead of multicasting the 1476 1.5 mycroft * trace query. This should be safe for mrouted versions 3.3 1477 1.5 mycroft * and 3.5 because there is a long route timeout with metric 1478 1.5 mycroft * infinity before a route disappears. Switching to unicast 1479 1.5 mycroft * reduces the amount of multicast traffic and avoids a bug 1480 1.5 mycroft * with duplicate suppression in mrouted 3.5. 1481 1.5 mycroft */ 1482 1.5 mycroft if (hops == 2 && gwy == 0 && 1483 1.5 mycroft (recvlen = send_recv(lastout, IGMP_MTRACE_QUERY, hops, 1, &base))) 1484 1.5 mycroft tdst = lastout; 1485 1.5 mycroft else recvlen = send_recv(tdst, IGMP_MTRACE_QUERY, hops, nqueries, &base); 1486 1.1 mycroft 1487 1.1 mycroft if (recvlen == 0) { 1488 1.5 mycroft if (hops == 1) break; 1489 1.5 mycroft if (hops == nexthop) { 1490 1.5 mycroft if (what_kind(&base, "didn't respond")) { 1491 1.5 mycroft /* the ask_neighbors determined that the 1492 1.5 mycroft * not-responding router is the first-hop. */ 1493 1.5 mycroft break; 1494 1.5 mycroft } 1495 1.5 mycroft } else if (hops < nexthop + 3) { 1496 1.5 mycroft printf("\n"); 1497 1.5 mycroft } else { 1498 1.5 mycroft printf("...giving up\n"); 1499 1.5 mycroft break; 1500 1.5 mycroft } 1501 1.5 mycroft continue; 1502 1.1 mycroft } 1503 1.1 mycroft r = base.resps + base.len - 1; 1504 1.5 mycroft if (base.len == hops && 1505 1.5 mycroft (hops == 1 || (base.resps+nexthop-2)->tr_outaddr == lastout)) { 1506 1.5 mycroft if (hops == nexthop) { 1507 1.5 mycroft print_trace(-hops, &base); 1508 1.5 mycroft } else { 1509 1.5 mycroft printf("\nResuming...\n"); 1510 1.5 mycroft print_trace(nexthop, &base); 1511 1.1 mycroft } 1512 1.5 mycroft } else { 1513 1.5 mycroft if (base.len < hops) { 1514 1.5 mycroft /* 1515 1.5 mycroft * A shorter trace than requested means a fatal error 1516 1.5 mycroft * occurred along the path, or that the route changed 1517 1.5 mycroft * to a shorter one. 1518 1.5 mycroft * 1519 1.5 mycroft * If the trace is longer than the last one we received, 1520 1.5 mycroft * then we are resuming from a skipped router (but there 1521 1.5 mycroft * is still probably a problem). 1522 1.5 mycroft * 1523 1.5 mycroft * If the trace is shorter than the last one we 1524 1.5 mycroft * received, then the route must have changed (and 1525 1.5 mycroft * there is still probably a problem). 1526 1.5 mycroft */ 1527 1.5 mycroft if (nexthop <= base.len) { 1528 1.5 mycroft printf("\nResuming...\n"); 1529 1.5 mycroft print_trace(nexthop, &base); 1530 1.5 mycroft } else if (nexthop > base.len + 1) { 1531 1.5 mycroft hops = base.len; 1532 1.5 mycroft printf("\nRoute must have changed...\n"); 1533 1.5 mycroft print_trace(1, &base); 1534 1.5 mycroft } 1535 1.5 mycroft } else { 1536 1.5 mycroft /* 1537 1.5 mycroft * The last hop address is not the same as it was; 1538 1.5 mycroft * the route probably changed underneath us. 1539 1.5 mycroft */ 1540 1.5 mycroft hops = base.len; 1541 1.5 mycroft printf("\nRoute must have changed...\n"); 1542 1.5 mycroft print_trace(1, &base); 1543 1.1 mycroft } 1544 1.1 mycroft } 1545 1.5 mycroft lastout = r->tr_outaddr; 1546 1.1 mycroft 1547 1.5 mycroft if (base.len < hops || 1548 1.5 mycroft r->tr_rmtaddr == 0 || 1549 1.5 mycroft (r->tr_rflags & 0x80)) { 1550 1.5 mycroft VAL_TO_MASK(smask, r->tr_smask); 1551 1.5 mycroft if (r->tr_rmtaddr) { 1552 1.5 mycroft if (hops != nexthop) { 1553 1.5 mycroft printf("\n%3d ", -(base.len+1)); 1554 1.5 mycroft } 1555 1.5 mycroft what_kind(&base, r->tr_rflags == TR_OLD_ROUTER ? 1556 1.5 mycroft "doesn't support mtrace" : 1557 1.5 mycroft "would be the next hop"); 1558 1.5 mycroft /* XXX could do segmented trace if TR_NO_SPACE */ 1559 1.5 mycroft } else if (r->tr_rflags == TR_NO_ERR && 1560 1.5 mycroft (r->tr_inaddr & smask) == (qsrc & smask)) { 1561 1.5 mycroft printf("%3d ", -(hops + 1)); 1562 1.5 mycroft print_host(qsrc); 1563 1.5 mycroft printf("\n"); 1564 1.5 mycroft } 1565 1.1 mycroft break; 1566 1.1 mycroft } 1567 1.5 mycroft 1568 1.5 mycroft nexthop = hops + 1; 1569 1.1 mycroft } 1570 1.1 mycroft } 1571 1.1 mycroft 1572 1.1 mycroft if (base.rtime == 0) { 1573 1.1 mycroft printf("Timed out receiving responses\n"); 1574 1.11 ross if (IN_MULTICAST(ntohl(tdst))) { 1575 1.5 mycroft if (tdst == query_cast) 1576 1.1 mycroft printf("Perhaps no local router has a route for source %s\n", 1577 1.31 dsl inet_fmt(qsrc)); 1578 1.1 mycroft else 1579 1.11 ross printf("Perhaps receiver %s is not a member of group %s,\n" 1580 1.11 ross "or no router local to it has a route for source %s,\n" 1581 1.11 ross "or multicast at ttl %d doesn't reach its last-hop router" 1582 1.11 ross " for that source\n", 1583 1.31 dsl inet_fmt(qdst), inet_fmt(qgrp), inet_fmt(qsrc), 1584 1.11 ross qttl ? qttl : MULTICAST_TTL1); 1585 1.11 ross } 1586 1.1 mycroft exit(1); 1587 1.1 mycroft } 1588 1.1 mycroft 1589 1.1 mycroft printf("Round trip time %d ms\n\n", t_diff(base.rtime, base.qtime)); 1590 1.1 mycroft 1591 1.1 mycroft /* 1592 1.1 mycroft * Use the saved response which was the longest one received, 1593 1.1 mycroft * and make additional probes after delay to measure loss. 1594 1.1 mycroft */ 1595 1.1 mycroft raddr = base.qhdr.tr_raddr; 1596 1.1 mycroft rttl = base.qhdr.tr_rttl; 1597 1.1 mycroft gettimeofday(&tv, 0); 1598 1.5 mycroft waittime = statint - (((tv.tv_sec + JAN_1970) & 0xFFFF) - (base.qtime >> 16)); 1599 1.5 mycroft prev = &base; 1600 1.5 mycroft new = &incr[numstats&1]; 1601 1.1 mycroft 1602 1.1 mycroft while (numstats--) { 1603 1.1 mycroft if (waittime < 1) printf("\n"); 1604 1.1 mycroft else { 1605 1.1 mycroft printf("Waiting to accumulate statistics... "); 1606 1.1 mycroft fflush(stdout); 1607 1.1 mycroft sleep((unsigned)waittime); 1608 1.1 mycroft } 1609 1.1 mycroft rno = base.len; 1610 1.5 mycroft recvlen = send_recv(tdst, IGMP_MTRACE_QUERY, rno, nqueries, new); 1611 1.1 mycroft 1612 1.1 mycroft if (recvlen == 0) { 1613 1.1 mycroft printf("Timed out.\n"); 1614 1.1 mycroft exit(1); 1615 1.1 mycroft } 1616 1.1 mycroft 1617 1.1 mycroft if (rno != new->len) { 1618 1.5 mycroft printf("Trace length doesn't match:\n"); 1619 1.5 mycroft /* 1620 1.5 mycroft * XXX Should this trace result be printed, or is that 1621 1.5 mycroft * too verbose? Perhaps it should just say restarting. 1622 1.5 mycroft * But if the path is changing quickly, this may be the 1623 1.5 mycroft * only snapshot of the current path. But, if the path 1624 1.5 mycroft * is changing that quickly, does the current path really 1625 1.5 mycroft * matter? 1626 1.5 mycroft */ 1627 1.5 mycroft print_trace(1, new); 1628 1.5 mycroft printf("Restarting.\n\n"); 1629 1.5 mycroft numstats++; 1630 1.5 mycroft goto restart; 1631 1.1 mycroft } 1632 1.1 mycroft 1633 1.1 mycroft printf("Results after %d seconds:\n\n", 1634 1.5 mycroft (int)((new->qtime - base.qtime) >> 16)); 1635 1.5 mycroft fixup_stats(&base, prev, new); 1636 1.5 mycroft if (print_stats(&base, prev, new)) { 1637 1.5 mycroft printf("Route changed:\n"); 1638 1.5 mycroft print_trace(1, new); 1639 1.5 mycroft printf("Restarting.\n\n"); 1640 1.5 mycroft goto restart; 1641 1.5 mycroft } 1642 1.1 mycroft prev = new; 1643 1.1 mycroft new = &incr[numstats&1]; 1644 1.5 mycroft waittime = statint; 1645 1.1 mycroft } 1646 1.1 mycroft 1647 1.1 mycroft /* 1648 1.1 mycroft * If the response was multicast back, leave the group 1649 1.1 mycroft */ 1650 1.5 mycroft if (raddr) { 1651 1.5 mycroft if (IN_MULTICAST(ntohl(raddr))) k_leave(raddr, lcl_addr); 1652 1.5 mycroft } else k_leave(resp_cast, lcl_addr); 1653 1.1 mycroft 1654 1.1 mycroft return (0); 1655 1.1 mycroft } 1656 1.1 mycroft 1657 1.1 mycroft void 1658 1.20 wiz check_vif_state(void) 1659 1.1 mycroft { 1660 1.28 wiz logit(LOG_WARNING, errno, "sendto"); 1661 1.1 mycroft } 1662 1.1 mycroft 1663 1.1 mycroft /* 1664 1.1 mycroft * Log errors and other messages to stderr, according to the severity 1665 1.1 mycroft * of the message and the current debug level. For errors of severity 1666 1.1 mycroft * LOG_ERR or worse, terminate the program. 1667 1.1 mycroft */ 1668 1.5 mycroft void 1669 1.28 wiz logit(int severity, int syserr, const char *format, ...) 1670 1.1 mycroft { 1671 1.18 wiz va_list ap; 1672 1.1 mycroft 1673 1.1 mycroft switch (debug) { 1674 1.5 mycroft case 0: if (severity > LOG_WARNING) return; 1675 1.42 mrg /* FALLTHROUGH */ 1676 1.5 mycroft case 1: if (severity > LOG_NOTICE) return; 1677 1.42 mrg /* FALLTHROUGH */ 1678 1.5 mycroft case 2: if (severity > LOG_INFO ) return; 1679 1.42 mrg /* FALLTHROUGH */ 1680 1.1 mycroft default: 1681 1.22 itojun if (severity == LOG_WARNING) 1682 1.22 itojun fprintf(stderr, "warning - "); 1683 1.18 wiz va_start(ap, format); 1684 1.15 is vfprintf(stderr, format, ap); 1685 1.18 wiz va_end(ap); 1686 1.1 mycroft if (syserr == 0) 1687 1.1 mycroft fprintf(stderr, "\n"); 1688 1.1 mycroft else 1689 1.9 kleink fprintf(stderr, ": %s\n", strerror(syserr)); 1690 1.1 mycroft } 1691 1.17 wiz if (severity <= LOG_ERR) exit(1); 1692 1.1 mycroft } 1693 1.1 mycroft 1694 1.1 mycroft /* dummies */ 1695 1.20 wiz void accept_probe(u_int32_t src, u_int32_t dst, char *p, int datalen, 1696 1.20 wiz u_int32_t level) 1697 1.5 mycroft { 1698 1.5 mycroft } 1699 1.20 wiz void accept_group_report(u_int32_t src, u_int32_t dst, u_int32_t group, 1700 1.20 wiz int r_type) 1701 1.5 mycroft { 1702 1.5 mycroft } 1703 1.20 wiz void accept_neighbor_request2(u_int32_t src, u_int32_t dst) 1704 1.5 mycroft { 1705 1.5 mycroft } 1706 1.20 wiz void accept_report(u_int32_t src, u_int32_t dst, char *p, int datalen, 1707 1.20 wiz u_int32_t level) 1708 1.5 mycroft { 1709 1.5 mycroft } 1710 1.20 wiz void accept_neighbor_request(u_int32_t src, u_int32_t dst) 1711 1.5 mycroft { 1712 1.5 mycroft } 1713 1.20 wiz void accept_prune(u_int32_t src, u_int32_t dst, char *p, int datalen) 1714 1.5 mycroft { 1715 1.5 mycroft } 1716 1.20 wiz void accept_graft(u_int32_t src, u_int32_t dst, char *p, int datalen) 1717 1.5 mycroft { 1718 1.5 mycroft } 1719 1.20 wiz void accept_g_ack(u_int32_t src, u_int32_t dst, char *p, int datalen) 1720 1.5 mycroft { 1721 1.5 mycroft } 1722 1.20 wiz void add_table_entry(u_int32_t origin, u_int32_t mcastgrp) 1723 1.5 mycroft { 1724 1.5 mycroft } 1725 1.20 wiz void accept_leave_message(u_int32_t src, u_int32_t dst, u_int32_t group) 1726 1.5 mycroft { 1727 1.5 mycroft } 1728 1.20 wiz void accept_mtrace(u_int32_t src, u_int32_t dst, u_int32_t group, char *data, 1729 1.20 wiz u_int no, int datalen) 1730 1.5 mycroft { 1731 1.5 mycroft } 1732 1.20 wiz void accept_membership_query(u_int32_t src, u_int32_t dst, u_int32_t group, 1733 1.20 wiz int tmo) 1734 1.5 mycroft { 1735 1.5 mycroft } 1736 1.20 wiz void accept_neighbors(u_int32_t src, u_int32_t dst, u_char *p, int datalen, 1737 1.20 wiz u_int32_t level) 1738 1.5 mycroft { 1739 1.5 mycroft } 1740 1.20 wiz void accept_neighbors2(u_int32_t src, u_int32_t dst, u_char *p, int datalen, 1741 1.20 wiz u_int32_t level) 1742 1.5 mycroft { 1743 1.5 mycroft } 1744 1.20 wiz void accept_info_request(u_int32_t src, u_int32_t dst, u_char *p, int datalen) 1745 1.5 mycroft { 1746 1.5 mycroft } 1747 1.20 wiz void accept_info_reply(u_int32_t src, u_int32_t dst, u_char *p, int datalen) 1748 1.5 mycroft { 1749 1.5 mycroft } 1750