1 1.180 ozaki /* $NetBSD: ip_icmp.c,v 1.180 2025/06/05 06:29:27 ozaki-r Exp $ */ 2 1.37 itojun 3 1.37 itojun /* 4 1.55 thorpej * Copyright (c) 1998, 2000 The NetBSD Foundation, Inc. 5 1.31 thorpej * All rights reserved. 6 1.31 thorpej * 7 1.31 thorpej * This code is derived from software contributed to The NetBSD Foundation 8 1.31 thorpej * by Public Access Networks Corporation ("Panix"). It was developed under 9 1.31 thorpej * contract to Panix by Eric Haszlakiewicz and Thor Lancelot Simon. 10 1.31 thorpej * 11 1.55 thorpej * This code is derived from software contributed to The NetBSD Foundation 12 1.55 thorpej * by Jason R. Thorpe of Zembu Labs, Inc. 13 1.55 thorpej * 14 1.31 thorpej * Redistribution and use in source and binary forms, with or without 15 1.31 thorpej * modification, are permitted provided that the following conditions 16 1.31 thorpej * are met: 17 1.31 thorpej * 1. Redistributions of source code must retain the above copyright 18 1.31 thorpej * notice, this list of conditions and the following disclaimer. 19 1.31 thorpej * 2. Redistributions in binary form must reproduce the above copyright 20 1.31 thorpej * notice, this list of conditions and the following disclaimer in the 21 1.31 thorpej * documentation and/or other materials provided with the distribution. 22 1.31 thorpej * 23 1.31 thorpej * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS 24 1.31 thorpej * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED 25 1.31 thorpej * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR 26 1.31 thorpej * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS 27 1.31 thorpej * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR 28 1.31 thorpej * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF 29 1.31 thorpej * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS 30 1.31 thorpej * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN 31 1.31 thorpej * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) 32 1.31 thorpej * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE 33 1.31 thorpej * POSSIBILITY OF SUCH DAMAGE. 34 1.31 thorpej */ 35 1.31 thorpej 36 1.1 cgd /* 37 1.165 maxv * Copyright (C) 1995, 1996, 1997, and 1998 WIDE Project. 38 1.165 maxv * All rights reserved. 39 1.165 maxv * 40 1.165 maxv * Redistribution and use in source and binary forms, with or without 41 1.165 maxv * modification, are permitted provided that the following conditions 42 1.165 maxv * are met: 43 1.165 maxv * 1. Redistributions of source code must retain the above copyright 44 1.165 maxv * notice, this list of conditions and the following disclaimer. 45 1.165 maxv * 2. Redistributions in binary form must reproduce the above copyright 46 1.165 maxv * notice, this list of conditions and the following disclaimer in the 47 1.165 maxv * documentation and/or other materials provided with the distribution. 48 1.165 maxv * 3. Neither the name of the project nor the names of its contributors 49 1.165 maxv * may be used to endorse or promote products derived from this software 50 1.165 maxv * without specific prior written permission. 51 1.165 maxv * 52 1.165 maxv * THIS SOFTWARE IS PROVIDED BY THE PROJECT AND CONTRIBUTORS ``AS IS'' AND 53 1.165 maxv * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 54 1.165 maxv * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 55 1.165 maxv * ARE DISCLAIMED. IN NO EVENT SHALL THE PROJECT OR CONTRIBUTORS BE LIABLE 56 1.165 maxv * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 57 1.165 maxv * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 58 1.165 maxv * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 59 1.165 maxv * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 60 1.165 maxv * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 61 1.165 maxv * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 62 1.165 maxv * SUCH DAMAGE. 63 1.165 maxv */ 64 1.165 maxv 65 1.165 maxv /* 66 1.9 mycroft * Copyright (c) 1982, 1986, 1988, 1993 67 1.9 mycroft * The Regents of the University of California. All rights reserved. 68 1.1 cgd * 69 1.1 cgd * Redistribution and use in source and binary forms, with or without 70 1.1 cgd * modification, are permitted provided that the following conditions 71 1.1 cgd * are met: 72 1.1 cgd * 1. Redistributions of source code must retain the above copyright 73 1.1 cgd * notice, this list of conditions and the following disclaimer. 74 1.1 cgd * 2. Redistributions in binary form must reproduce the above copyright 75 1.1 cgd * notice, this list of conditions and the following disclaimer in the 76 1.1 cgd * documentation and/or other materials provided with the distribution. 77 1.75 agc * 3. Neither the name of the University nor the names of its contributors 78 1.1 cgd * may be used to endorse or promote products derived from this software 79 1.1 cgd * without specific prior written permission. 80 1.1 cgd * 81 1.1 cgd * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND 82 1.1 cgd * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 83 1.1 cgd * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 84 1.1 cgd * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE 85 1.1 cgd * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 86 1.1 cgd * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 87 1.1 cgd * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 88 1.1 cgd * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 89 1.1 cgd * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 90 1.1 cgd * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 91 1.1 cgd * SUCH DAMAGE. 92 1.1 cgd * 93 1.10 cgd * @(#)ip_icmp.c 8.2 (Berkeley) 1/4/94 94 1.1 cgd */ 95 1.66 lukem 96 1.66 lukem #include <sys/cdefs.h> 97 1.180 ozaki __KERNEL_RCSID(0, "$NetBSD: ip_icmp.c,v 1.180 2025/06/05 06:29:27 ozaki-r Exp $"); 98 1.38 thorpej 99 1.141 pooka #ifdef _KERNEL_OPT 100 1.38 thorpej #include "opt_ipsec.h" 101 1.141 pooka #endif 102 1.1 cgd 103 1.4 mycroft #include <sys/param.h> 104 1.4 mycroft #include <sys/systm.h> 105 1.4 mycroft #include <sys/mbuf.h> 106 1.4 mycroft #include <sys/protosw.h> 107 1.4 mycroft #include <sys/socket.h> 108 1.155 ozaki #include <sys/socketvar.h> /* For softnet_lock */ 109 1.133 rmind #include <sys/kmem.h> 110 1.4 mycroft #include <sys/time.h> 111 1.4 mycroft #include <sys/kernel.h> 112 1.63 kml #include <sys/syslog.h> 113 1.19 christos #include <sys/sysctl.h> 114 1.1 cgd 115 1.9 mycroft #include <net/if.h> 116 1.4 mycroft #include <net/route.h> 117 1.1 cgd 118 1.4 mycroft #include <netinet/in.h> 119 1.4 mycroft #include <netinet/in_systm.h> 120 1.4 mycroft #include <netinet/in_var.h> 121 1.4 mycroft #include <netinet/ip.h> 122 1.4 mycroft #include <netinet/ip_icmp.h> 123 1.19 christos #include <netinet/ip_var.h> 124 1.39 sommerfe #include <netinet/in_pcb.h> 125 1.92 yamt #include <netinet/in_proto.h> 126 1.4 mycroft #include <netinet/icmp_var.h> 127 1.116 thorpej #include <netinet/icmp_private.h> 128 1.156 ozaki #include <netinet/wqinput.h> 129 1.1 cgd 130 1.131 christos #ifdef IPSEC 131 1.76 jonathan #include <netipsec/ipsec.h> 132 1.76 jonathan #include <netipsec/key.h> 133 1.165 maxv #endif 134 1.76 jonathan 135 1.1 cgd /* 136 1.1 cgd * ICMP routines: error generation, receive packet processing, and 137 1.1 cgd * routines to turnaround packets back to the originator, and 138 1.1 cgd * host table maintenance routines. 139 1.1 cgd */ 140 1.9 mycroft 141 1.165 maxv int icmpmaskrepl = 0; 142 1.165 maxv int icmpbmcastecho = 0; 143 1.165 maxv int icmpreturndatabytes = 8; 144 1.1 cgd 145 1.116 thorpej percpu_t *icmpstat_percpu; 146 1.87 cube 147 1.55 thorpej /* 148 1.55 thorpej * List of callbacks to notify when Path MTU changes are made. 149 1.55 thorpej */ 150 1.57 itojun struct icmp_mtudisc_callback { 151 1.57 itojun LIST_ENTRY(icmp_mtudisc_callback) mc_list; 152 1.89 perry void (*mc_func)(struct in_addr); 153 1.55 thorpej }; 154 1.55 thorpej 155 1.57 itojun LIST_HEAD(, icmp_mtudisc_callback) icmp_mtudisc_callbacks = 156 1.55 thorpej LIST_HEAD_INITIALIZER(&icmp_mtudisc_callbacks); 157 1.55 thorpej 158 1.165 maxv /* unused... */ 159 1.165 maxv u_int ip_next_mtu(u_int, int); 160 1.37 itojun 161 1.178 knakahar bool icmp_dynamic_rt_msg = false; 162 1.178 knakahar 163 1.167 maxv static int icmperrppslim = 100; /* 100pps */ 164 1.51 itojun static int icmperrpps_count = 0; 165 1.51 itojun static struct timeval icmperrppslim_last; 166 1.63 kml static int icmp_rediraccept = 1; 167 1.68 itojun static int icmp_redirtimeout = 600; 168 1.63 kml static struct rttimer_queue *icmp_redirect_timeout_q = NULL; 169 1.40 thorpej 170 1.165 maxv /* Protect mtudisc and redirect stuff */ 171 1.158 ozaki static kmutex_t icmp_mtx __cacheline_aligned; 172 1.158 ozaki 173 1.165 maxv static void icmp_send(struct mbuf *, struct mbuf *); 174 1.89 perry static void icmp_mtudisc_timeout(struct rtentry *, struct rttimer *); 175 1.89 perry static void icmp_redirect_timeout(struct rtentry *, struct rttimer *); 176 1.24 kml 177 1.121 pooka static void sysctl_netinet_icmp_setup(struct sysctllog **); 178 1.63 kml 179 1.156 ozaki /* workqueue-based pr_input */ 180 1.156 ozaki static struct wqinput *icmp_wqinput; 181 1.156 ozaki static void _icmp_input(struct mbuf *, int, int); 182 1.156 ozaki 183 1.63 kml void 184 1.90 perry icmp_init(void) 185 1.63 kml { 186 1.121 pooka 187 1.121 pooka sysctl_netinet_icmp_setup(NULL); 188 1.121 pooka 189 1.158 ozaki mutex_init(&icmp_mtx, MUTEX_DEFAULT, IPL_NONE); 190 1.67 itojun /* 191 1.67 itojun * This is only useful if the user initializes redirtimeout to 192 1.63 kml * something other than zero. 193 1.63 kml */ 194 1.158 ozaki mutex_enter(&icmp_mtx); 195 1.160 ozaki icmp_redirect_timeout_q = rt_timer_queue_create(icmp_redirtimeout); 196 1.158 ozaki mutex_exit(&icmp_mtx); 197 1.116 thorpej 198 1.116 thorpej icmpstat_percpu = percpu_alloc(sizeof(uint64_t) * ICMP_NSTATS); 199 1.156 ozaki icmp_wqinput = wqinput_create("icmp", _icmp_input); 200 1.63 kml } 201 1.63 kml 202 1.159 ozaki void 203 1.159 ozaki icmp_mtudisc_lock(void) 204 1.159 ozaki { 205 1.159 ozaki 206 1.159 ozaki mutex_enter(&icmp_mtx); 207 1.159 ozaki } 208 1.159 ozaki 209 1.159 ozaki void 210 1.159 ozaki icmp_mtudisc_unlock(void) 211 1.159 ozaki { 212 1.159 ozaki 213 1.159 ozaki mutex_exit(&icmp_mtx); 214 1.159 ozaki } 215 1.159 ozaki 216 1.1 cgd /* 217 1.55 thorpej * Register a Path MTU Discovery callback. 218 1.55 thorpej */ 219 1.55 thorpej void 220 1.90 perry icmp_mtudisc_callback_register(void (*func)(struct in_addr)) 221 1.55 thorpej { 222 1.158 ozaki struct icmp_mtudisc_callback *mc, *new; 223 1.158 ozaki 224 1.158 ozaki new = kmem_alloc(sizeof(*mc), KM_SLEEP); 225 1.55 thorpej 226 1.158 ozaki mutex_enter(&icmp_mtx); 227 1.55 thorpej for (mc = LIST_FIRST(&icmp_mtudisc_callbacks); mc != NULL; 228 1.55 thorpej mc = LIST_NEXT(mc, mc_list)) { 229 1.158 ozaki if (mc->mc_func == func) { 230 1.158 ozaki mutex_exit(&icmp_mtx); 231 1.158 ozaki kmem_free(new, sizeof(*mc)); 232 1.55 thorpej return; 233 1.158 ozaki } 234 1.55 thorpej } 235 1.55 thorpej 236 1.158 ozaki new->mc_func = func; 237 1.158 ozaki LIST_INSERT_HEAD(&icmp_mtudisc_callbacks, new, mc_list); 238 1.158 ozaki mutex_exit(&icmp_mtx); 239 1.55 thorpej } 240 1.55 thorpej 241 1.55 thorpej /* 242 1.162 maxv * Generate an error packet of type error in response to a bad IP packet. 'n' 243 1.162 maxv * contains this packet. We create 'm' and send it. 244 1.162 maxv * 245 1.162 maxv * As we are not required to return everything we have, we return whatever 246 1.162 maxv * we can return at ease. 247 1.162 maxv * 248 1.162 maxv * Note that ICMP datagrams longer than 576 octets are out of spec according 249 1.162 maxv * to RFC1812; the limit on icmpreturndatabytes will keep things below that 250 1.162 maxv * limit. 251 1.1 cgd */ 252 1.6 mycroft void 253 1.162 maxv icmp_error(struct mbuf *n, int type, int code, n_long dest, int destmtu) 254 1.1 cgd { 255 1.44 augustss struct ip *oip = mtod(n, struct ip *), *nip; 256 1.162 maxv const unsigned oiphlen = oip->ip_hl << 2; 257 1.44 augustss struct icmp *icp; 258 1.44 augustss struct mbuf *m; 259 1.100 peter struct m_tag *mtag; 260 1.163 maxv unsigned datalen, mblen; 261 1.163 maxv int totlen; 262 1.1 cgd 263 1.1 cgd if (type != ICMP_REDIRECT) 264 1.116 thorpej ICMP_STATINC(ICMP_STAT_ERROR); 265 1.162 maxv 266 1.1 cgd /* 267 1.162 maxv * Don't send error if: 268 1.162 maxv * - The original packet was encrypted. 269 1.162 maxv * - The packet is multicast or broadcast. 270 1.162 maxv * - The packet is not the first fragment of the message. 271 1.162 maxv * - The packet is an ICMP message with an unknown type. 272 1.1 cgd */ 273 1.42 itojun if (n->m_flags & M_DECRYPTED) 274 1.42 itojun goto freeit; 275 1.162 maxv if (n->m_flags & (M_BCAST|M_MCAST)) 276 1.162 maxv goto freeit; 277 1.70 itojun if (oip->ip_off &~ htons(IP_MF|IP_DF)) 278 1.1 cgd goto freeit; 279 1.1 cgd if (oip->ip_p == IPPROTO_ICMP && type != ICMP_REDIRECT && 280 1.162 maxv n->m_len >= oiphlen + ICMP_MINLEN) { 281 1.162 maxv struct icmp *oicp = (struct icmp *)((char *)oip + oiphlen); 282 1.162 maxv if (!ICMP_INFOTYPE(oicp->icmp_type)) { 283 1.162 maxv ICMP_STATINC(ICMP_STAT_OLDICMP); 284 1.162 maxv goto freeit; 285 1.162 maxv } 286 1.1 cgd } 287 1.40 thorpej 288 1.1 cgd /* 289 1.40 thorpej * First, do a rate limitation check. 290 1.40 thorpej */ 291 1.40 thorpej if (icmp_ratelimit(&oip->ip_src, type, code)) { 292 1.40 thorpej /* XXX stat */ 293 1.40 thorpej goto freeit; 294 1.40 thorpej } 295 1.40 thorpej 296 1.40 thorpej /* 297 1.162 maxv * Compute the number of bytes we will put in 'icmp_ip'. Truncate 298 1.162 maxv * it to the size of the mbuf, if it's too big. 299 1.52 sommerfe */ 300 1.173 riastrad datalen = oiphlen + uimin(icmpreturndatabytes, 301 1.162 maxv ntohs(oip->ip_len) - oiphlen); 302 1.52 sommerfe mblen = 0; 303 1.162 maxv for (m = n; m && (mblen < datalen); m = m->m_next) 304 1.52 sommerfe mblen += m->m_len; 305 1.173 riastrad datalen = uimin(mblen, datalen); 306 1.52 sommerfe 307 1.52 sommerfe /* 308 1.162 maxv * Compute the total length of the new packet. Truncate it if it's 309 1.162 maxv * bigger than the size of a cluster. 310 1.52 sommerfe */ 311 1.163 maxv CTASSERT(ICMP_MINLEN + sizeof(struct ip) <= MCLBYTES); 312 1.163 maxv totlen = sizeof(struct ip) + ICMP_MINLEN + datalen; 313 1.163 maxv if (totlen > MCLBYTES) { 314 1.163 maxv datalen = MCLBYTES - ICMP_MINLEN - sizeof(struct ip); 315 1.163 maxv totlen = MCLBYTES; 316 1.163 maxv } 317 1.52 sommerfe 318 1.162 maxv /* 319 1.162 maxv * Allocate the mbuf for the new packet. 320 1.162 maxv */ 321 1.179 mlelstv MGETHDR(m, M_DONTWAIT, MT_HEADER); 322 1.162 maxv if (m && (totlen > MHLEN)) { 323 1.52 sommerfe MCLGET(m, M_DONTWAIT); 324 1.52 sommerfe if ((m->m_flags & M_EXT) == 0) { 325 1.52 sommerfe m_freem(m); 326 1.52 sommerfe m = NULL; 327 1.52 sommerfe } 328 1.52 sommerfe } 329 1.1 cgd if (m == NULL) 330 1.1 cgd goto freeit; 331 1.72 matt MCLAIM(m, n->m_owner); 332 1.162 maxv m->m_len = totlen; 333 1.163 maxv m->m_pkthdr.len = m->m_len; 334 1.163 maxv m_copy_rcvif(m, n); 335 1.162 maxv 336 1.1 cgd if ((u_int)type > ICMP_MAXTYPE) 337 1.1 cgd panic("icmp_error"); 338 1.116 thorpej ICMP_STATINC(ICMP_STAT_OUTHIST + type); 339 1.162 maxv 340 1.164 maxv if ((m->m_flags & M_EXT) == 0) 341 1.177 maxv m_align(m, m->m_len); 342 1.164 maxv 343 1.162 maxv /* 344 1.163 maxv * Get pointers on the IP header and the ICMP header. 345 1.163 maxv */ 346 1.163 maxv nip = mtod(m, struct ip *); 347 1.163 maxv icp = (struct icmp *)(nip + 1); 348 1.163 maxv 349 1.163 maxv /* 350 1.162 maxv * Fill in the fields of the ICMP header: icmp_type, icmp_code 351 1.162 maxv * and icmp_ip. icmp_cksum gets filled later. 352 1.162 maxv */ 353 1.1 cgd icp->icmp_type = type; 354 1.162 maxv if (type == ICMP_REDIRECT) { 355 1.9 mycroft icp->icmp_gwaddr.s_addr = dest; 356 1.162 maxv } else { 357 1.1 cgd icp->icmp_void = 0; 358 1.67 itojun /* 359 1.9 mycroft * The following assignments assume an overlay with the 360 1.9 mycroft * zeroed icmp_void field. 361 1.9 mycroft */ 362 1.9 mycroft if (type == ICMP_PARAMPROB) { 363 1.9 mycroft icp->icmp_pptr = code; 364 1.9 mycroft code = 0; 365 1.9 mycroft } else if (type == ICMP_UNREACH && 366 1.96 christos code == ICMP_UNREACH_NEEDFRAG && destmtu) 367 1.96 christos icp->icmp_nextmtu = htons(destmtu); 368 1.1 cgd } 369 1.1 cgd icp->icmp_code = code; 370 1.162 maxv m_copydata(n, 0, datalen, (void *)&icp->icmp_ip); 371 1.1 cgd 372 1.1 cgd /* 373 1.162 maxv * Now, copy the old IP header (without options) in front of the 374 1.162 maxv * ICMP message. The src/dst fields will be swapped in icmp_reflect. 375 1.162 maxv */ 376 1.47 darrenr /* ip_v set in ip_output */ 377 1.47 darrenr nip->ip_hl = sizeof(struct ip) >> 2; 378 1.47 darrenr nip->ip_tos = 0; 379 1.70 itojun nip->ip_len = htons(m->m_len); 380 1.47 darrenr /* ip_id set in ip_output */ 381 1.70 itojun nip->ip_off = htons(0); 382 1.47 darrenr /* ip_ttl set in icmp_reflect */ 383 1.1 cgd nip->ip_p = IPPROTO_ICMP; 384 1.47 darrenr nip->ip_src = oip->ip_src; 385 1.47 darrenr nip->ip_dst = oip->ip_dst; 386 1.120 yamt /* move PF m_tag to new packet, if it exists */ 387 1.176 maxv mtag = m_tag_find(n, PACKET_TAG_PF); 388 1.100 peter if (mtag != NULL) { 389 1.100 peter m_tag_unlink(n, mtag); 390 1.100 peter m_tag_prepend(m, mtag); 391 1.100 peter } 392 1.162 maxv 393 1.1 cgd icmp_reflect(m); 394 1.1 cgd 395 1.1 cgd freeit: 396 1.1 cgd m_freem(n); 397 1.1 cgd } 398 1.1 cgd 399 1.103 christos struct sockaddr_in icmpsrc = { 400 1.166 maxv .sin_len = sizeof(struct sockaddr_in), 401 1.103 christos .sin_family = AF_INET, 402 1.103 christos }; 403 1.1 cgd 404 1.1 cgd /* 405 1.1 cgd * Process a received ICMP message. 406 1.1 cgd */ 407 1.156 ozaki static void 408 1.156 ozaki _icmp_input(struct mbuf *m, int hlen, int proto) 409 1.1 cgd { 410 1.44 augustss struct icmp *icp; 411 1.44 augustss struct ip *ip = mtod(m, struct ip *); 412 1.34 mycroft int icmplen; 413 1.44 augustss int i; 414 1.1 cgd struct in_ifaddr *ia; 415 1.109 dyoung void *(*ctlfunc)(int, const struct sockaddr *, void *); 416 1.9 mycroft int code; 417 1.63 kml struct rtentry *rt; 418 1.166 maxv struct sockaddr_in icmpdst = { 419 1.166 maxv .sin_len = sizeof(struct sockaddr_in), 420 1.166 maxv .sin_family = AF_INET, 421 1.166 maxv }; 422 1.166 maxv struct sockaddr_in icmpgw = { 423 1.166 maxv .sin_len = sizeof(struct sockaddr_in), 424 1.166 maxv .sin_family = AF_INET, 425 1.166 maxv }; 426 1.19 christos 427 1.1 cgd /* 428 1.1 cgd * Locate icmp structure in mbuf, and check 429 1.1 cgd * that not corrupted and of at least minimum length. 430 1.1 cgd */ 431 1.70 itojun icmplen = ntohs(ip->ip_len) - hlen; 432 1.1 cgd if (icmplen < ICMP_MINLEN) { 433 1.116 thorpej ICMP_STATINC(ICMP_STAT_TOOSHORT); 434 1.1 cgd goto freeit; 435 1.1 cgd } 436 1.173 riastrad i = hlen + uimin(icmplen, ICMP_ADVLENMIN); 437 1.169 maxv if (M_UNWRITABLE(m, i) && (m = m_pullup(m, i)) == NULL) { 438 1.116 thorpej ICMP_STATINC(ICMP_STAT_TOOSHORT); 439 1.1 cgd return; 440 1.1 cgd } 441 1.5 mycroft ip = mtod(m, struct ip *); 442 1.1 cgd m->m_len -= hlen; 443 1.1 cgd m->m_data += hlen; 444 1.1 cgd icp = mtod(m, struct icmp *); 445 1.69 thorpej /* Don't need to assert alignment, here. */ 446 1.1 cgd if (in_cksum(m, icmplen)) { 447 1.116 thorpej ICMP_STATINC(ICMP_STAT_CHECKSUM); 448 1.1 cgd goto freeit; 449 1.1 cgd } 450 1.1 cgd m->m_len += hlen; 451 1.1 cgd m->m_data -= hlen; 452 1.1 cgd 453 1.1 cgd if (icp->icmp_type > ICMP_MAXTYPE) 454 1.1 cgd goto raw; 455 1.116 thorpej ICMP_STATINC(ICMP_STAT_INHIST + icp->icmp_type); 456 1.1 cgd code = icp->icmp_code; 457 1.165 maxv 458 1.1 cgd switch (icp->icmp_type) { 459 1.1 cgd case ICMP_UNREACH: 460 1.9 mycroft switch (code) { 461 1.130 christos case ICMP_UNREACH_PROTOCOL: 462 1.130 christos code = PRC_UNREACH_PROTOCOL; 463 1.130 christos break; 464 1.102 yamt 465 1.130 christos case ICMP_UNREACH_PORT: 466 1.130 christos code = PRC_UNREACH_PORT; 467 1.130 christos break; 468 1.102 yamt 469 1.130 christos case ICMP_UNREACH_SRCFAIL: 470 1.130 christos code = PRC_UNREACH_SRCFAIL; 471 1.130 christos break; 472 1.102 yamt 473 1.130 christos case ICMP_UNREACH_NEEDFRAG: 474 1.130 christos code = PRC_MSGSIZE; 475 1.130 christos break; 476 1.102 yamt 477 1.130 christos case ICMP_UNREACH_NET: 478 1.130 christos case ICMP_UNREACH_NET_UNKNOWN: 479 1.130 christos case ICMP_UNREACH_NET_PROHIB: 480 1.130 christos case ICMP_UNREACH_TOSNET: 481 1.130 christos code = PRC_UNREACH_NET; 482 1.130 christos break; 483 1.9 mycroft 484 1.130 christos case ICMP_UNREACH_HOST: 485 1.130 christos case ICMP_UNREACH_HOST_UNKNOWN: 486 1.130 christos case ICMP_UNREACH_ISOLATED: 487 1.130 christos case ICMP_UNREACH_HOST_PROHIB: 488 1.130 christos case ICMP_UNREACH_TOSHOST: 489 1.130 christos case ICMP_UNREACH_ADMIN_PROHIBIT: 490 1.130 christos case ICMP_UNREACH_HOST_PREC: 491 1.130 christos case ICMP_UNREACH_PREC_CUTOFF: 492 1.130 christos code = PRC_UNREACH_HOST; 493 1.130 christos break; 494 1.67 itojun 495 1.130 christos default: 496 1.130 christos goto badcode; 497 1.9 mycroft } 498 1.1 cgd goto deliver; 499 1.1 cgd 500 1.1 cgd case ICMP_TIMXCEED: 501 1.1 cgd if (code > 1) 502 1.1 cgd goto badcode; 503 1.1 cgd code += PRC_TIMXCEED_INTRANS; 504 1.1 cgd goto deliver; 505 1.1 cgd 506 1.1 cgd case ICMP_PARAMPROB: 507 1.9 mycroft if (code > 1) 508 1.1 cgd goto badcode; 509 1.1 cgd code = PRC_PARAMPROB; 510 1.1 cgd goto deliver; 511 1.1 cgd 512 1.1 cgd case ICMP_SOURCEQUENCH: 513 1.1 cgd if (code) 514 1.1 cgd goto badcode; 515 1.1 cgd code = PRC_QUENCH; 516 1.20 mycroft goto deliver; 517 1.20 mycroft 518 1.1 cgd deliver: 519 1.1 cgd /* 520 1.1 cgd * Problem with datagram; advise higher level routines. 521 1.1 cgd */ 522 1.1 cgd if (icmplen < ICMP_ADVLENMIN || icmplen < ICMP_ADVLEN(icp) || 523 1.1 cgd icp->icmp_ip.ip_hl < (sizeof(struct ip) >> 2)) { 524 1.116 thorpej ICMP_STATINC(ICMP_STAT_BADLEN); 525 1.1 cgd goto freeit; 526 1.1 cgd } 527 1.168 maxv if (m->m_len < hlen + ICMP_ADVLEN(icp)) { 528 1.168 maxv m = m_pullup(m, hlen + ICMP_ADVLEN(icp)); 529 1.168 maxv if (m == NULL) 530 1.168 maxv goto freeit; 531 1.168 maxv } 532 1.168 maxv ip = mtod(m, struct ip *); 533 1.168 maxv icp = (struct icmp *)(mtod(m, uint8_t *) + hlen); 534 1.168 maxv 535 1.14 mycroft if (IN_MULTICAST(icp->icmp_ip.ip_dst.s_addr)) 536 1.13 mycroft goto badcode; 537 1.170 maxv 538 1.1 cgd icmpsrc.sin_addr = icp->icmp_ip.ip_dst; 539 1.144 riastrad ctlfunc = inetsw[ip_protox[icp->icmp_ip.ip_p]].pr_ctlinput; 540 1.19 christos if (ctlfunc) 541 1.55 thorpej (void) (*ctlfunc)(code, sintosa(&icmpsrc), 542 1.55 thorpej &icp->icmp_ip); 543 1.1 cgd break; 544 1.1 cgd 545 1.1 cgd badcode: 546 1.116 thorpej ICMP_STATINC(ICMP_STAT_BADCODE); 547 1.1 cgd break; 548 1.1 cgd 549 1.1 cgd case ICMP_ECHO: 550 1.122 christos if (!icmpbmcastecho && 551 1.122 christos (m->m_flags & (M_MCAST | M_BCAST)) != 0) { 552 1.122 christos ICMP_STATINC(ICMP_STAT_BMCASTECHO); 553 1.122 christos break; 554 1.122 christos } 555 1.1 cgd icp->icmp_type = ICMP_ECHOREPLY; 556 1.1 cgd goto reflect; 557 1.1 cgd 558 1.1 cgd case ICMP_TSTAMP: 559 1.1 cgd if (icmplen < ICMP_TSLEN) { 560 1.116 thorpej ICMP_STATINC(ICMP_STAT_BADLEN); 561 1.1 cgd break; 562 1.1 cgd } 563 1.122 christos if (!icmpbmcastecho && 564 1.122 christos (m->m_flags & (M_MCAST | M_BCAST)) != 0) { 565 1.122 christos ICMP_STATINC(ICMP_STAT_BMCASTTSTAMP); 566 1.122 christos break; 567 1.122 christos } 568 1.1 cgd icp->icmp_type = ICMP_TSTAMPREPLY; 569 1.1 cgd icp->icmp_rtime = iptime(); 570 1.1 cgd icp->icmp_ttime = icp->icmp_rtime; /* bogus, do later! */ 571 1.1 cgd goto reflect; 572 1.67 itojun 573 1.147 ozaki case ICMP_MASKREQ: { 574 1.147 ozaki struct ifnet *rcvif; 575 1.151 ozaki int s, ss; 576 1.157 ozaki struct ifaddr *ifa = NULL; 577 1.147 ozaki 578 1.9 mycroft if (icmpmaskrepl == 0) 579 1.9 mycroft break; 580 1.9 mycroft /* 581 1.9 mycroft * We are not able to respond with all ones broadcast 582 1.9 mycroft * unless we receive it over a point-to-point interface. 583 1.9 mycroft */ 584 1.23 thorpej if (icmplen < ICMP_MASKLEN) { 585 1.116 thorpej ICMP_STATINC(ICMP_STAT_BADLEN); 586 1.9 mycroft break; 587 1.23 thorpej } 588 1.15 mycroft if (ip->ip_dst.s_addr == INADDR_BROADCAST || 589 1.20 mycroft in_nullhost(ip->ip_dst)) 590 1.9 mycroft icmpdst.sin_addr = ip->ip_src; 591 1.15 mycroft else 592 1.9 mycroft icmpdst.sin_addr = ip->ip_dst; 593 1.151 ozaki ss = pserialize_read_enter(); 594 1.147 ozaki rcvif = m_get_rcvif(m, &s); 595 1.157 ozaki if (__predict_true(rcvif != NULL)) 596 1.157 ozaki ifa = ifaof_ifpforaddr(sintosa(&icmpdst), rcvif); 597 1.147 ozaki m_put_rcvif(rcvif, &s); 598 1.151 ozaki if (ifa == NULL) { 599 1.151 ozaki pserialize_read_exit(ss); 600 1.1 cgd break; 601 1.151 ozaki } 602 1.151 ozaki ia = ifatoia(ifa); 603 1.1 cgd icp->icmp_type = ICMP_MASKREPLY; 604 1.1 cgd icp->icmp_mask = ia->ia_sockmask.sin_addr.s_addr; 605 1.20 mycroft if (in_nullhost(ip->ip_src)) { 606 1.1 cgd if (ia->ia_ifp->if_flags & IFF_BROADCAST) 607 1.17 mycroft ip->ip_src = ia->ia_broadaddr.sin_addr; 608 1.1 cgd else if (ia->ia_ifp->if_flags & IFF_POINTOPOINT) 609 1.17 mycroft ip->ip_src = ia->ia_dstaddr.sin_addr; 610 1.1 cgd } 611 1.151 ozaki pserialize_read_exit(ss); 612 1.1 cgd reflect: 613 1.116 thorpej { 614 1.116 thorpej uint64_t *icps = percpu_getref(icmpstat_percpu); 615 1.116 thorpej icps[ICMP_STAT_REFLECT]++; 616 1.116 thorpej icps[ICMP_STAT_OUTHIST + icp->icmp_type]++; 617 1.116 thorpej percpu_putref(icmpstat_percpu); 618 1.116 thorpej } 619 1.1 cgd icmp_reflect(m); 620 1.1 cgd return; 621 1.147 ozaki } 622 1.1 cgd 623 1.1 cgd case ICMP_REDIRECT: 624 1.9 mycroft if (code > 3) 625 1.9 mycroft goto badcode; 626 1.63 kml if (icmp_rediraccept == 0) 627 1.63 kml goto freeit; 628 1.9 mycroft if (icmplen < ICMP_ADVLENMIN || icmplen < ICMP_ADVLEN(icp) || 629 1.9 mycroft icp->icmp_ip.ip_hl < (sizeof(struct ip) >> 2)) { 630 1.116 thorpej ICMP_STATINC(ICMP_STAT_BADLEN); 631 1.1 cgd break; 632 1.1 cgd } 633 1.1 cgd /* 634 1.1 cgd * Short circuit routing redirects to force 635 1.1 cgd * immediate change in the kernel's routing 636 1.1 cgd * tables. The message is also handed to anyone 637 1.1 cgd * listening on a raw socket (e.g. the routing 638 1.1 cgd * daemon for use in updating its tables). 639 1.1 cgd */ 640 1.1 cgd icmpgw.sin_addr = ip->ip_src; 641 1.1 cgd icmpdst.sin_addr = icp->icmp_gwaddr; 642 1.9 mycroft icmpsrc.sin_addr = icp->icmp_ip.ip_dst; 643 1.63 kml rt = NULL; 644 1.16 mycroft rtredirect(sintosa(&icmpsrc), sintosa(&icmpdst), 645 1.113 dyoung NULL, RTF_GATEWAY | RTF_HOST, sintosa(&icmpgw), &rt); 646 1.158 ozaki mutex_enter(&icmp_mtx); 647 1.63 kml if (rt != NULL && icmp_redirtimeout != 0) { 648 1.67 itojun i = rt_timer_add(rt, icmp_redirect_timeout, 649 1.63 kml icmp_redirect_timeout_q); 650 1.135 christos if (i) { 651 1.135 christos char buf[INET_ADDRSTRLEN]; 652 1.63 kml log(LOG_ERR, "ICMP: redirect failed to " 653 1.135 christos "register timeout for route to %s, " 654 1.67 itojun "code %d\n", 655 1.135 christos IN_PRINT(buf, &icp->icmp_ip.ip_dst), i); 656 1.135 christos } 657 1.63 kml } 658 1.158 ozaki mutex_exit(&icmp_mtx); 659 1.63 kml if (rt != NULL) 660 1.154 ozaki rt_unref(rt); 661 1.63 kml 662 1.16 mycroft pfctlinput(PRC_REDIRECT_HOST, sintosa(&icmpsrc)); 663 1.131 christos #if defined(IPSEC) 664 1.134 christos if (ipsec_used) 665 1.134 christos key_sa_routechange((struct sockaddr *)&icmpsrc); 666 1.37 itojun #endif 667 1.1 cgd break; 668 1.1 cgd 669 1.1 cgd /* 670 1.1 cgd * No kernel processing for the following; 671 1.1 cgd * just fall through to send to raw listener. 672 1.1 cgd */ 673 1.1 cgd case ICMP_ECHOREPLY: 674 1.9 mycroft case ICMP_ROUTERADVERT: 675 1.9 mycroft case ICMP_ROUTERSOLICIT: 676 1.1 cgd case ICMP_TSTAMPREPLY: 677 1.1 cgd case ICMP_IREQREPLY: 678 1.1 cgd case ICMP_MASKREPLY: 679 1.1 cgd default: 680 1.1 cgd break; 681 1.1 cgd } 682 1.1 cgd 683 1.1 cgd raw: 684 1.172 knakahar /* 685 1.172 knakahar * Currently, pim_input() is always called holding softnet_lock 686 1.172 knakahar * by ipintr()(!NET_MPSAFE) or PR_INPUT_WRAP()(NET_MPSAFE). 687 1.172 knakahar */ 688 1.172 knakahar KASSERT(mutex_owned(softnet_lock)); 689 1.37 itojun rip_input(m, hlen, proto); 690 1.1 cgd return; 691 1.1 cgd 692 1.1 cgd freeit: 693 1.1 cgd m_freem(m); 694 1.37 itojun return; 695 1.1 cgd } 696 1.1 cgd 697 1.156 ozaki void 698 1.174 maxv icmp_input(struct mbuf *m, int off, int proto) 699 1.156 ozaki { 700 1.174 maxv wqinput_input(icmp_wqinput, m, off, proto); 701 1.156 ozaki } 702 1.156 ozaki 703 1.1 cgd /* 704 1.1 cgd * Reflect the ip packet back to the source 705 1.1 cgd */ 706 1.6 mycroft void 707 1.90 perry icmp_reflect(struct mbuf *m) 708 1.1 cgd { 709 1.44 augustss struct ip *ip = mtod(m, struct ip *); 710 1.44 augustss struct in_ifaddr *ia; 711 1.44 augustss struct ifaddr *ifa; 712 1.139 christos struct sockaddr_in *sin; 713 1.1 cgd struct in_addr t; 714 1.136 ozaki struct mbuf *opts = NULL; 715 1.1 cgd int optlen = (ip->ip_hl << 2) - sizeof(struct ip); 716 1.147 ozaki struct ifnet *rcvif; 717 1.151 ozaki struct psref psref, psref_ia; 718 1.151 ozaki int s; 719 1.151 ozaki int bound; 720 1.151 ozaki 721 1.151 ozaki bound = curlwp_bind(); 722 1.1 cgd 723 1.9 mycroft if (!in_canforward(ip->ip_src) && 724 1.14 mycroft ((ip->ip_src.s_addr & IN_CLASSA_NET) != 725 1.14 mycroft htonl(IN_LOOPBACKNET << IN_CLASSA_NSHIFT))) { 726 1.9 mycroft m_freem(m); /* Bad return address */ 727 1.12 cgd goto done; /* ip_output() will check for broadcast */ 728 1.9 mycroft } 729 1.1 cgd t = ip->ip_dst; 730 1.1 cgd ip->ip_dst = ip->ip_src; 731 1.165 maxv 732 1.1 cgd /* 733 1.39 sommerfe * If the incoming packet was addressed directly to us, use 734 1.39 sommerfe * dst as the src for the reply. Otherwise (broadcast or 735 1.39 sommerfe * anonymous), use an address which corresponds to the 736 1.39 sommerfe * incoming interface, with a preference for the address which 737 1.39 sommerfe * corresponds to the route to the destination of the ICMP. 738 1.1 cgd */ 739 1.39 sommerfe 740 1.39 sommerfe /* Look for packet addressed to us */ 741 1.151 ozaki ia = in_get_ia_psref(t, &psref_ia); 742 1.151 ozaki if (ia && (ia->ia4_flags & IN_IFF_NOTREADY)) { 743 1.151 ozaki ia4_release(ia, &psref_ia); 744 1.138 roy ia = NULL; 745 1.151 ozaki } 746 1.39 sommerfe 747 1.147 ozaki rcvif = m_get_rcvif_psref(m, &psref); 748 1.147 ozaki 749 1.39 sommerfe /* look for packet sent to broadcast address */ 750 1.147 ozaki if (ia == NULL && rcvif && 751 1.147 ozaki (rcvif->if_flags & IFF_BROADCAST)) { 752 1.151 ozaki s = pserialize_read_enter(); 753 1.149 ozaki IFADDR_READER_FOREACH(ifa, rcvif) { 754 1.27 tls if (ifa->ifa_addr->sa_family != AF_INET) 755 1.27 tls continue; 756 1.39 sommerfe if (in_hosteq(t,ifatoia(ifa)->ia_broadaddr.sin_addr)) { 757 1.39 sommerfe ia = ifatoia(ifa); 758 1.138 roy if ((ia->ia4_flags & IN_IFF_NOTREADY) == 0) 759 1.138 roy break; 760 1.138 roy ia = NULL; 761 1.39 sommerfe } 762 1.27 tls } 763 1.151 ozaki if (ia != NULL) 764 1.151 ozaki ia4_acquire(ia, &psref_ia); 765 1.151 ozaki pserialize_read_exit(s); 766 1.1 cgd } 767 1.27 tls 768 1.139 christos sin = ia ? &ia->ia_addr : NULL; 769 1.39 sommerfe 770 1.70 itojun /* 771 1.70 itojun * if the packet is addressed somewhere else, compute the 772 1.70 itojun * source address for packets routed back to the source, and 773 1.70 itojun * use that, if it's an address on the interface which 774 1.70 itojun * received the packet 775 1.70 itojun */ 776 1.147 ozaki if (sin == NULL && rcvif) { 777 1.39 sommerfe struct sockaddr_in sin_dst; 778 1.39 sommerfe struct route icmproute; 779 1.39 sommerfe int errornum; 780 1.39 sommerfe 781 1.114 dyoung sockaddr_in_init(&sin_dst, &ip->ip_dst, 0); 782 1.108 dyoung memset(&icmproute, 0, sizeof(icmproute)); 783 1.39 sommerfe errornum = 0; 784 1.151 ozaki ia = in_selectsrc(&sin_dst, &icmproute, 0, NULL, &errornum, 785 1.151 ozaki &psref_ia); 786 1.39 sommerfe /* errornum is never used */ 787 1.107 joerg rtcache_free(&icmproute); 788 1.39 sommerfe /* check to make sure sin is a source address on rcvif */ 789 1.151 ozaki if (ia != NULL) { 790 1.151 ozaki sin = &ia->ia_addr; 791 1.39 sommerfe t = sin->sin_addr; 792 1.114 dyoung sin = NULL; 793 1.151 ozaki ia4_release(ia, &psref_ia); 794 1.151 ozaki ia = in_get_ia_on_iface_psref(t, rcvif, &psref_ia); 795 1.150 ozaki if (ia != NULL) 796 1.150 ozaki sin = &ia->ia_addr; 797 1.39 sommerfe } 798 1.39 sommerfe } 799 1.39 sommerfe 800 1.70 itojun /* 801 1.70 itojun * if it was not addressed to us, but the route doesn't go out 802 1.70 itojun * the source interface, pick an address on the source 803 1.70 itojun * interface. This can happen when routing is asymmetric, or 804 1.70 itojun * when the incoming packet was encapsulated 805 1.70 itojun */ 806 1.147 ozaki if (sin == NULL && rcvif) { 807 1.151 ozaki KASSERT(ia == NULL); 808 1.180 ozaki 809 1.180 ozaki ifa = if_first_addr_psref(rcvif, AF_INET, &psref_ia); 810 1.180 ozaki if (ifa != NULL) { 811 1.152 ozaki ia = ifatoia(ifa); 812 1.180 ozaki sin = &(ia->ia_addr); 813 1.39 sommerfe } 814 1.39 sommerfe } 815 1.39 sommerfe 816 1.147 ozaki m_put_rcvif_psref(rcvif, &psref); 817 1.147 ozaki 818 1.9 mycroft /* 819 1.9 mycroft * The following happens if the packet was not addressed to us, 820 1.27 tls * and was received on an interface with no IP address: 821 1.27 tls * We find the first AF_INET address on the first non-loopback 822 1.27 tls * interface. 823 1.9 mycroft */ 824 1.151 ozaki if (sin == NULL) { 825 1.151 ozaki KASSERT(ia == NULL); 826 1.151 ozaki s = pserialize_read_enter(); 827 1.148 ozaki IN_ADDRLIST_READER_FOREACH(ia) { 828 1.27 tls if (ia->ia_ifp->if_flags & IFF_LOOPBACK) 829 1.27 tls continue; 830 1.39 sommerfe sin = &ia->ia_addr; 831 1.151 ozaki ia4_acquire(ia, &psref_ia); 832 1.27 tls break; 833 1.27 tls } 834 1.151 ozaki pserialize_read_exit(s); 835 1.151 ozaki } 836 1.39 sommerfe 837 1.36 mycroft /* 838 1.36 mycroft * If we still didn't find an address, punt. We could have an 839 1.36 mycroft * interface up (and receiving packets) with no address. 840 1.36 mycroft */ 841 1.114 dyoung if (sin == NULL) { 842 1.151 ozaki KASSERT(ia == NULL); 843 1.36 mycroft m_freem(m); 844 1.36 mycroft goto done; 845 1.36 mycroft } 846 1.36 mycroft 847 1.39 sommerfe ip->ip_src = sin->sin_addr; 848 1.1 cgd ip->ip_ttl = MAXTTL; 849 1.1 cgd 850 1.151 ozaki if (ia != NULL) 851 1.151 ozaki ia4_release(ia, &psref_ia); 852 1.151 ozaki 853 1.1 cgd if (optlen > 0) { 854 1.44 augustss u_char *cp; 855 1.1 cgd int opt, cnt; 856 1.1 cgd u_int len; 857 1.1 cgd 858 1.1 cgd /* 859 1.1 cgd * Retrieve any source routing from the incoming packet; 860 1.1 cgd * add on any record-route or timestamp options. 861 1.1 cgd */ 862 1.165 maxv cp = (u_char *)(ip + 1); 863 1.161 ozaki if ((opts = ip_srcroute(m)) == NULL && 864 1.179 mlelstv (MGETHDR(opts, M_DONTWAIT, MT_HEADER))) { 865 1.72 matt MCLAIM(opts, m->m_owner); 866 1.1 cgd opts->m_len = sizeof(struct in_addr); 867 1.20 mycroft *mtod(opts, struct in_addr *) = zeroin_addr; 868 1.1 cgd } 869 1.165 maxv 870 1.1 cgd if (opts) { 871 1.165 maxv for (cnt = optlen; cnt > 0; cnt -= len, cp += len) { 872 1.165 maxv opt = cp[IPOPT_OPTVAL]; 873 1.165 maxv if (opt == IPOPT_EOL) 874 1.165 maxv break; 875 1.165 maxv if (opt == IPOPT_NOP) 876 1.165 maxv len = 1; 877 1.165 maxv else { 878 1.165 maxv if (cnt < IPOPT_OLEN + sizeof(*cp)) 879 1.165 maxv break; 880 1.165 maxv len = cp[IPOPT_OLEN]; 881 1.165 maxv if (len < IPOPT_OLEN + sizeof(*cp) || 882 1.165 maxv len > cnt) 883 1.165 maxv break; 884 1.165 maxv } 885 1.165 maxv 886 1.165 maxv /* Overflows can't happen */ 887 1.165 maxv KASSERT(opts->m_len + len <= MHLEN); 888 1.165 maxv 889 1.165 maxv if (opt == IPOPT_RR || opt == IPOPT_TS || 890 1.165 maxv opt == IPOPT_SECURITY) { 891 1.165 maxv memmove(mtod(opts, char *) + 892 1.165 maxv opts->m_len, cp, len); 893 1.165 maxv opts->m_len += len; 894 1.165 maxv } 895 1.165 maxv } 896 1.165 maxv 897 1.165 maxv /* Terminate & pad, if necessary */ 898 1.165 maxv if ((cnt = opts->m_len % 4) != 0) { 899 1.165 maxv for (; cnt < 4; cnt++) { 900 1.165 maxv *(mtod(opts, char *) + opts->m_len) = 901 1.165 maxv IPOPT_EOL; 902 1.165 maxv opts->m_len++; 903 1.165 maxv } 904 1.165 maxv } 905 1.1 cgd } 906 1.165 maxv 907 1.1 cgd /* 908 1.1 cgd * Now strip out original options by copying rest of first 909 1.1 cgd * mbuf's data back, and adjust the IP length. 910 1.1 cgd */ 911 1.70 itojun ip->ip_len = htons(ntohs(ip->ip_len) - optlen); 912 1.1 cgd ip->ip_hl = sizeof(struct ip) >> 2; 913 1.1 cgd m->m_len -= optlen; 914 1.1 cgd if (m->m_flags & M_PKTHDR) 915 1.1 cgd m->m_pkthdr.len -= optlen; 916 1.1 cgd optlen += sizeof(struct ip); 917 1.111 christos memmove(ip + 1, (char *)ip + optlen, 918 1.111 christos (unsigned)(m->m_len - sizeof(struct ip))); 919 1.1 cgd } 920 1.175 maxv m_tag_delete_chain(m); 921 1.3 hpeyerl m->m_flags &= ~(M_BCAST|M_MCAST); 922 1.73 tron 923 1.91 perry /* 924 1.73 tron * Clear any in-bound checksum flags for this packet. 925 1.73 tron */ 926 1.86 itojun if (m->m_flags & M_PKTHDR) 927 1.86 itojun m->m_pkthdr.csum_flags = 0; 928 1.73 tron 929 1.1 cgd icmp_send(m, opts); 930 1.9 mycroft done: 931 1.151 ozaki curlwp_bindx(bound); 932 1.1 cgd if (opts) 933 1.1 cgd (void)m_free(opts); 934 1.1 cgd } 935 1.1 cgd 936 1.1 cgd /* 937 1.1 cgd * Send an icmp packet back to the ip level, 938 1.1 cgd * after supplying a checksum. 939 1.1 cgd */ 940 1.165 maxv static void 941 1.90 perry icmp_send(struct mbuf *m, struct mbuf *opts) 942 1.1 cgd { 943 1.44 augustss struct ip *ip = mtod(m, struct ip *); 944 1.44 augustss int hlen; 945 1.44 augustss struct icmp *icp; 946 1.1 cgd 947 1.1 cgd hlen = ip->ip_hl << 2; 948 1.1 cgd m->m_data += hlen; 949 1.1 cgd m->m_len -= hlen; 950 1.1 cgd icp = mtod(m, struct icmp *); 951 1.1 cgd icp->icmp_cksum = 0; 952 1.70 itojun icp->icmp_cksum = in_cksum(m, ntohs(ip->ip_len) - hlen); 953 1.1 cgd m->m_data -= hlen; 954 1.1 cgd m->m_len += hlen; 955 1.170 maxv 956 1.114 dyoung (void)ip_output(m, opts, NULL, 0, NULL, NULL); 957 1.1 cgd } 958 1.1 cgd 959 1.1 cgd n_time 960 1.90 perry iptime(void) 961 1.1 cgd { 962 1.1 cgd struct timeval atv; 963 1.1 cgd u_long t; 964 1.1 cgd 965 1.1 cgd microtime(&atv); 966 1.1 cgd t = (atv.tv_sec % (24*60*60)) * 1000 + atv.tv_usec / 1000; 967 1.1 cgd return (htonl(t)); 968 1.9 mycroft } 969 1.9 mycroft 970 1.81 atatat /* 971 1.81 atatat * sysctl helper routine for net.inet.icmp.returndatabytes. ensures 972 1.81 atatat * that the new value is in the correct range. 973 1.81 atatat */ 974 1.81 atatat static int 975 1.81 atatat sysctl_net_inet_icmp_returndatabytes(SYSCTLFN_ARGS) 976 1.81 atatat { 977 1.81 atatat int error, t; 978 1.81 atatat struct sysctlnode node; 979 1.81 atatat 980 1.81 atatat node = *rnode; 981 1.81 atatat node.sysctl_data = &t; 982 1.81 atatat t = icmpreturndatabytes; 983 1.81 atatat error = sysctl_lookup(SYSCTLFN_CALL(&node)); 984 1.81 atatat if (error || newp == NULL) 985 1.165 maxv return error; 986 1.81 atatat 987 1.81 atatat if (t < 8 || t > 512) 988 1.165 maxv return EINVAL; 989 1.81 atatat icmpreturndatabytes = t; 990 1.81 atatat 991 1.165 maxv return 0; 992 1.81 atatat } 993 1.81 atatat 994 1.81 atatat /* 995 1.81 atatat * sysctl helper routine for net.inet.icmp.redirtimeout. ensures that 996 1.81 atatat * the given value is not less than zero and then resets the timeout 997 1.81 atatat * queue. 998 1.81 atatat */ 999 1.81 atatat static int 1000 1.81 atatat sysctl_net_inet_icmp_redirtimeout(SYSCTLFN_ARGS) 1001 1.9 mycroft { 1002 1.81 atatat int error, tmp; 1003 1.81 atatat struct sysctlnode node; 1004 1.9 mycroft 1005 1.158 ozaki mutex_enter(&icmp_mtx); 1006 1.158 ozaki 1007 1.81 atatat node = *rnode; 1008 1.81 atatat node.sysctl_data = &tmp; 1009 1.81 atatat tmp = icmp_redirtimeout; 1010 1.81 atatat error = sysctl_lookup(SYSCTLFN_CALL(&node)); 1011 1.81 atatat if (error || newp == NULL) 1012 1.158 ozaki goto out; 1013 1.158 ozaki if (tmp < 0) { 1014 1.158 ozaki error = EINVAL; 1015 1.158 ozaki goto out; 1016 1.158 ozaki } 1017 1.81 atatat icmp_redirtimeout = tmp; 1018 1.81 atatat 1019 1.81 atatat /* 1020 1.81 atatat * was it a *defined* side-effect that anyone even *reading* 1021 1.81 atatat * this value causes these things to happen? 1022 1.81 atatat */ 1023 1.81 atatat if (icmp_redirect_timeout_q != NULL) { 1024 1.81 atatat if (icmp_redirtimeout == 0) { 1025 1.153 ozaki rt_timer_queue_destroy(icmp_redirect_timeout_q); 1026 1.81 atatat icmp_redirect_timeout_q = NULL; 1027 1.81 atatat } else { 1028 1.81 atatat rt_timer_queue_change(icmp_redirect_timeout_q, 1029 1.81 atatat icmp_redirtimeout); 1030 1.63 kml } 1031 1.81 atatat } else if (icmp_redirtimeout > 0) { 1032 1.81 atatat icmp_redirect_timeout_q = 1033 1.81 atatat rt_timer_queue_create(icmp_redirtimeout); 1034 1.9 mycroft } 1035 1.158 ozaki error = 0; 1036 1.158 ozaki out: 1037 1.158 ozaki mutex_exit(&icmp_mtx); 1038 1.158 ozaki return error; 1039 1.81 atatat } 1040 1.81 atatat 1041 1.116 thorpej static int 1042 1.116 thorpej sysctl_net_inet_icmp_stats(SYSCTLFN_ARGS) 1043 1.116 thorpej { 1044 1.116 thorpej 1045 1.119 thorpej return (NETSTAT_SYSCTL(icmpstat_percpu, ICMP_NSTATS)); 1046 1.116 thorpej } 1047 1.116 thorpej 1048 1.121 pooka static void 1049 1.121 pooka sysctl_netinet_icmp_setup(struct sysctllog **clog) 1050 1.81 atatat { 1051 1.81 atatat 1052 1.82 atatat sysctl_createv(clog, 0, NULL, NULL, 1053 1.82 atatat CTLFLAG_PERMANENT, 1054 1.81 atatat CTLTYPE_NODE, "inet", NULL, 1055 1.81 atatat NULL, 0, NULL, 0, 1056 1.81 atatat CTL_NET, PF_INET, CTL_EOL); 1057 1.82 atatat sysctl_createv(clog, 0, NULL, NULL, 1058 1.82 atatat CTLFLAG_PERMANENT, 1059 1.84 atatat CTLTYPE_NODE, "icmp", 1060 1.84 atatat SYSCTL_DESCR("ICMPv4 related settings"), 1061 1.81 atatat NULL, 0, NULL, 0, 1062 1.81 atatat CTL_NET, PF_INET, IPPROTO_ICMP, CTL_EOL); 1063 1.81 atatat 1064 1.82 atatat sysctl_createv(clog, 0, NULL, NULL, 1065 1.82 atatat CTLFLAG_PERMANENT|CTLFLAG_READWRITE, 1066 1.84 atatat CTLTYPE_INT, "maskrepl", 1067 1.84 atatat SYSCTL_DESCR("Respond to ICMP_MASKREQ messages"), 1068 1.81 atatat NULL, 0, &icmpmaskrepl, 0, 1069 1.81 atatat CTL_NET, PF_INET, IPPROTO_ICMP, 1070 1.81 atatat ICMPCTL_MASKREPL, CTL_EOL); 1071 1.82 atatat sysctl_createv(clog, 0, NULL, NULL, 1072 1.82 atatat CTLFLAG_PERMANENT|CTLFLAG_READWRITE, 1073 1.84 atatat CTLTYPE_INT, "returndatabytes", 1074 1.84 atatat SYSCTL_DESCR("Number of bytes to return in an ICMP " 1075 1.84 atatat "error message"), 1076 1.81 atatat sysctl_net_inet_icmp_returndatabytes, 0, 1077 1.81 atatat &icmpreturndatabytes, 0, 1078 1.81 atatat CTL_NET, PF_INET, IPPROTO_ICMP, 1079 1.81 atatat ICMPCTL_RETURNDATABYTES, CTL_EOL); 1080 1.82 atatat sysctl_createv(clog, 0, NULL, NULL, 1081 1.82 atatat CTLFLAG_PERMANENT|CTLFLAG_READWRITE, 1082 1.84 atatat CTLTYPE_INT, "errppslimit", 1083 1.84 atatat SYSCTL_DESCR("Maximum number of outgoing ICMP error " 1084 1.84 atatat "messages per second"), 1085 1.81 atatat NULL, 0, &icmperrppslim, 0, 1086 1.81 atatat CTL_NET, PF_INET, IPPROTO_ICMP, 1087 1.81 atatat ICMPCTL_ERRPPSLIMIT, CTL_EOL); 1088 1.82 atatat sysctl_createv(clog, 0, NULL, NULL, 1089 1.82 atatat CTLFLAG_PERMANENT|CTLFLAG_READWRITE, 1090 1.84 atatat CTLTYPE_INT, "rediraccept", 1091 1.84 atatat SYSCTL_DESCR("Accept ICMP_REDIRECT messages"), 1092 1.81 atatat NULL, 0, &icmp_rediraccept, 0, 1093 1.81 atatat CTL_NET, PF_INET, IPPROTO_ICMP, 1094 1.81 atatat ICMPCTL_REDIRACCEPT, CTL_EOL); 1095 1.82 atatat sysctl_createv(clog, 0, NULL, NULL, 1096 1.82 atatat CTLFLAG_PERMANENT|CTLFLAG_READWRITE, 1097 1.84 atatat CTLTYPE_INT, "redirtimeout", 1098 1.84 atatat SYSCTL_DESCR("Lifetime of ICMP_REDIRECT generated " 1099 1.84 atatat "routes"), 1100 1.81 atatat sysctl_net_inet_icmp_redirtimeout, 0, 1101 1.81 atatat &icmp_redirtimeout, 0, 1102 1.81 atatat CTL_NET, PF_INET, IPPROTO_ICMP, 1103 1.81 atatat ICMPCTL_REDIRTIMEOUT, CTL_EOL); 1104 1.94 elad sysctl_createv(clog, 0, NULL, NULL, 1105 1.94 elad CTLFLAG_PERMANENT, 1106 1.94 elad CTLTYPE_STRUCT, "stats", 1107 1.94 elad SYSCTL_DESCR("ICMP statistics"), 1108 1.116 thorpej sysctl_net_inet_icmp_stats, 0, NULL, 0, 1109 1.94 elad CTL_NET, PF_INET, IPPROTO_ICMP, ICMPCTL_STATS, 1110 1.94 elad CTL_EOL); 1111 1.122 christos sysctl_createv(clog, 0, NULL, NULL, 1112 1.122 christos CTLFLAG_PERMANENT|CTLFLAG_READWRITE, 1113 1.122 christos CTLTYPE_INT, "bmcastecho", 1114 1.122 christos SYSCTL_DESCR("Respond to ICMP_ECHO or ICMP_TIMESTAMP " 1115 1.122 christos "message to the broadcast or multicast"), 1116 1.122 christos NULL, 0, &icmpbmcastecho, 0, 1117 1.122 christos CTL_NET, PF_INET, IPPROTO_ICMP, ICMPCTL_BMCASTECHO, 1118 1.122 christos CTL_EOL); 1119 1.178 knakahar sysctl_createv(clog, 0, NULL, NULL, 1120 1.178 knakahar CTLFLAG_PERMANENT|CTLFLAG_READWRITE, 1121 1.178 knakahar CTLTYPE_BOOL, "dynamic_rt_msg", 1122 1.178 knakahar SYSCTL_DESCR("Send routing message for RTF_DYNAMIC"), 1123 1.178 knakahar NULL, 0, &icmp_dynamic_rt_msg, 0, 1124 1.178 knakahar CTL_NET, PF_INET, IPPROTO_ICMP, ICMPCTL_DYNAMIC_RT_MSG, 1125 1.178 knakahar CTL_EOL); 1126 1.24 kml } 1127 1.24 kml 1128 1.116 thorpej void 1129 1.116 thorpej icmp_statinc(u_int stat) 1130 1.116 thorpej { 1131 1.116 thorpej 1132 1.116 thorpej KASSERT(stat < ICMP_NSTATS); 1133 1.116 thorpej ICMP_STATINC(stat); 1134 1.116 thorpej } 1135 1.116 thorpej 1136 1.165 maxv /* Table of common MTUs */ 1137 1.64 matt static const u_int mtu_table[] = { 1138 1.64 matt 65535, 65280, 32000, 17914, 9180, 8166, 1139 1.64 matt 4352, 2002, 1492, 1006, 508, 296, 68, 0 1140 1.64 matt }; 1141 1.64 matt 1142 1.55 thorpej void 1143 1.90 perry icmp_mtudisc(struct icmp *icp, struct in_addr faddr) 1144 1.24 kml { 1145 1.57 itojun struct icmp_mtudisc_callback *mc; 1146 1.55 thorpej struct sockaddr *dst = sintosa(&icmpsrc); 1147 1.24 kml struct rtentry *rt; 1148 1.26 kml u_long mtu = ntohs(icp->icmp_nextmtu); /* Why a long? IPv6 */ 1149 1.165 maxv int error; 1150 1.24 kml 1151 1.24 kml rt = rtalloc1(dst, 1); 1152 1.136 ozaki if (rt == NULL) 1153 1.24 kml return; 1154 1.67 itojun 1155 1.24 kml /* If we didn't get a host route, allocate one */ 1156 1.24 kml if ((rt->rt_flags & RTF_HOST) == 0) { 1157 1.24 kml struct rtentry *nrt; 1158 1.24 kml 1159 1.145 ozaki error = rtrequest(RTM_ADD, dst, rt->rt_gateway, NULL, 1160 1.24 kml RTF_GATEWAY | RTF_HOST | RTF_DYNAMIC, &nrt); 1161 1.24 kml if (error) { 1162 1.154 ozaki rt_unref(rt); 1163 1.24 kml return; 1164 1.24 kml } 1165 1.24 kml nrt->rt_rmx = rt->rt_rmx; 1166 1.178 knakahar rt_newmsg_dynamic(RTM_ADD, nrt); 1167 1.154 ozaki rt_unref(rt); 1168 1.24 kml rt = nrt; 1169 1.24 kml } 1170 1.154 ozaki 1171 1.158 ozaki mutex_enter(&icmp_mtx); 1172 1.29 kml error = rt_timer_add(rt, icmp_mtudisc_timeout, ip_mtudisc_timeout_q); 1173 1.158 ozaki mutex_exit(&icmp_mtx); 1174 1.29 kml if (error) { 1175 1.154 ozaki rt_unref(rt); 1176 1.29 kml return; 1177 1.29 kml } 1178 1.24 kml 1179 1.24 kml if (mtu == 0) { 1180 1.24 kml int i = 0; 1181 1.24 kml 1182 1.70 itojun mtu = ntohs(icp->icmp_ip.ip_len); 1183 1.24 kml /* Some 4.2BSD-based routers incorrectly adjust the ip_len */ 1184 1.24 kml if (mtu > rt->rt_rmx.rmx_mtu && rt->rt_rmx.rmx_mtu != 0) 1185 1.24 kml mtu -= (icp->icmp_ip.ip_hl << 2); 1186 1.24 kml 1187 1.26 kml /* If we still can't guess a value, try the route */ 1188 1.26 kml if (mtu == 0) { 1189 1.24 kml mtu = rt->rt_rmx.rmx_mtu; 1190 1.24 kml 1191 1.26 kml /* If no route mtu, default to the interface mtu */ 1192 1.26 kml if (mtu == 0) 1193 1.26 kml mtu = rt->rt_ifp->if_mtu; 1194 1.26 kml } 1195 1.26 kml 1196 1.165 maxv for (i = 0; i < sizeof(mtu_table) / sizeof(mtu_table[0]); i++) { 1197 1.26 kml if (mtu > mtu_table[i]) { 1198 1.26 kml mtu = mtu_table[i]; 1199 1.24 kml break; 1200 1.26 kml } 1201 1.165 maxv } 1202 1.24 kml } 1203 1.24 kml 1204 1.29 kml /* 1205 1.29 kml * XXX: RTV_MTU is overloaded, since the admin can set it 1206 1.29 kml * to turn off PMTU for a route, and the kernel can 1207 1.29 kml * set it to indicate a serious problem with PMTU 1208 1.29 kml * on a route. We should be using a separate flag 1209 1.29 kml * for the kernel to indicate this. 1210 1.29 kml */ 1211 1.29 kml 1212 1.24 kml if ((rt->rt_rmx.rmx_locks & RTV_MTU) == 0) { 1213 1.26 kml if (mtu < 296 || mtu > rt->rt_ifp->if_mtu) 1214 1.24 kml rt->rt_rmx.rmx_locks |= RTV_MTU; 1215 1.67 itojun else if (rt->rt_rmx.rmx_mtu > mtu || 1216 1.56 itojun rt->rt_rmx.rmx_mtu == 0) { 1217 1.116 thorpej ICMP_STATINC(ICMP_STAT_PMTUCHG); 1218 1.24 kml rt->rt_rmx.rmx_mtu = mtu; 1219 1.56 itojun } 1220 1.24 kml } 1221 1.26 kml 1222 1.154 ozaki if (rt != NULL) 1223 1.154 ozaki rt_unref(rt); 1224 1.55 thorpej 1225 1.55 thorpej /* 1226 1.55 thorpej * Notify protocols that the MTU for this destination 1227 1.55 thorpej * has changed. 1228 1.55 thorpej */ 1229 1.158 ozaki mutex_enter(&icmp_mtx); 1230 1.55 thorpej for (mc = LIST_FIRST(&icmp_mtudisc_callbacks); mc != NULL; 1231 1.55 thorpej mc = LIST_NEXT(mc, mc_list)) 1232 1.55 thorpej (*mc->mc_func)(faddr); 1233 1.158 ozaki mutex_exit(&icmp_mtx); 1234 1.37 itojun } 1235 1.37 itojun 1236 1.37 itojun /* 1237 1.37 itojun * Return the next larger or smaller MTU plateau (table from RFC 1191) 1238 1.37 itojun * given current value MTU. If DIR is less than zero, a larger plateau 1239 1.37 itojun * is returned; otherwise, a smaller value is returned. 1240 1.37 itojun */ 1241 1.98 matt u_int 1242 1.165 maxv ip_next_mtu(u_int mtu, int dir) /* XXX unused */ 1243 1.37 itojun { 1244 1.37 itojun int i; 1245 1.37 itojun 1246 1.64 matt for (i = 0; i < (sizeof mtu_table) / (sizeof mtu_table[0]); i++) { 1247 1.64 matt if (mtu >= mtu_table[i]) 1248 1.37 itojun break; 1249 1.37 itojun } 1250 1.37 itojun 1251 1.37 itojun if (dir < 0) { 1252 1.37 itojun if (i == 0) { 1253 1.37 itojun return 0; 1254 1.37 itojun } else { 1255 1.64 matt return mtu_table[i - 1]; 1256 1.37 itojun } 1257 1.37 itojun } else { 1258 1.64 matt if (mtu_table[i] == 0) { 1259 1.37 itojun return 0; 1260 1.64 matt } else if (mtu > mtu_table[i]) { 1261 1.64 matt return mtu_table[i]; 1262 1.37 itojun } else { 1263 1.64 matt return mtu_table[i + 1]; 1264 1.37 itojun } 1265 1.37 itojun } 1266 1.29 kml } 1267 1.29 kml 1268 1.29 kml static void 1269 1.105 christos icmp_mtudisc_timeout(struct rtentry *rt, struct rttimer *r) 1270 1.29 kml { 1271 1.171 ozaki struct rtentry *retrt; 1272 1.142 ozaki 1273 1.137 ozaki KASSERT(rt != NULL); 1274 1.142 ozaki rt_assert_referenced(rt); 1275 1.137 ozaki 1276 1.67 itojun if ((rt->rt_flags & (RTF_DYNAMIC | RTF_HOST)) == 1277 1.29 kml (RTF_DYNAMIC | RTF_HOST)) { 1278 1.145 ozaki rtrequest(RTM_DELETE, rt_getkey(rt), 1279 1.171 ozaki rt->rt_gateway, rt_mask(rt), rt->rt_flags, &retrt); 1280 1.178 knakahar rt_newmsg_dynamic(RTM_DELETE, retrt); 1281 1.171 ozaki rt_unref(rt); 1282 1.171 ozaki rt_free(retrt); 1283 1.29 kml } else { 1284 1.29 kml if ((rt->rt_rmx.rmx_locks & RTV_MTU) == 0) { 1285 1.29 kml rt->rt_rmx.rmx_mtu = 0; 1286 1.29 kml } 1287 1.63 kml } 1288 1.63 kml } 1289 1.63 kml 1290 1.63 kml static void 1291 1.105 christos icmp_redirect_timeout(struct rtentry *rt, struct rttimer *r) 1292 1.63 kml { 1293 1.171 ozaki struct rtentry *retrt; 1294 1.142 ozaki 1295 1.137 ozaki KASSERT(rt != NULL); 1296 1.142 ozaki rt_assert_referenced(rt); 1297 1.137 ozaki 1298 1.67 itojun if ((rt->rt_flags & (RTF_DYNAMIC | RTF_HOST)) == 1299 1.63 kml (RTF_DYNAMIC | RTF_HOST)) { 1300 1.145 ozaki rtrequest(RTM_DELETE, rt_getkey(rt), 1301 1.171 ozaki rt->rt_gateway, rt_mask(rt), rt->rt_flags, &retrt); 1302 1.178 knakahar rt_newmsg_dynamic(RTM_DELETE, retrt); 1303 1.171 ozaki rt_unref(rt); 1304 1.171 ozaki rt_free(retrt); 1305 1.29 kml } 1306 1.40 thorpej } 1307 1.40 thorpej 1308 1.40 thorpej /* 1309 1.40 thorpej * Perform rate limit check. 1310 1.40 thorpej * Returns 0 if it is okay to send the icmp packet. 1311 1.40 thorpej * Returns 1 if the router SHOULD NOT send this icmp packet due to rate 1312 1.40 thorpej * limitation. 1313 1.40 thorpej * 1314 1.40 thorpej * XXX per-destination/type check necessary? 1315 1.40 thorpej */ 1316 1.123 kefren int 1317 1.105 christos icmp_ratelimit(const struct in_addr *dst, const int type, 1318 1.105 christos const int code) 1319 1.40 thorpej { 1320 1.40 thorpej 1321 1.51 itojun /* PPS limit */ 1322 1.51 itojun if (!ppsratecheck(&icmperrppslim_last, &icmperrpps_count, 1323 1.51 itojun icmperrppslim)) { 1324 1.51 itojun /* The packet is subject to rate limit */ 1325 1.51 itojun return 1; 1326 1.51 itojun } 1327 1.51 itojun 1328 1.90 perry /* okay to send */ 1329 1.51 itojun return 0; 1330 1.1 cgd } 1331