1 /* $NetBSD: in_pcb.c,v 1.138 2011/05/03 18:28:45 dyoung Exp $ */ 2 3 /* 4 * Copyright (C) 1995, 1996, 1997, and 1998 WIDE Project. 5 * All rights reserved. 6 * 7 * Redistribution and use in source and binary forms, with or without 8 * modification, are permitted provided that the following conditions 9 * are met: 10 * 1. Redistributions of source code must retain the above copyright 11 * notice, this list of conditions and the following disclaimer. 12 * 2. Redistributions in binary form must reproduce the above copyright 13 * notice, this list of conditions and the following disclaimer in the 14 * documentation and/or other materials provided with the distribution. 15 * 3. Neither the name of the project nor the names of its contributors 16 * may be used to endorse or promote products derived from this software 17 * without specific prior written permission. 18 * 19 * THIS SOFTWARE IS PROVIDED BY THE PROJECT AND CONTRIBUTORS ``AS IS'' AND 20 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 21 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 22 * ARE DISCLAIMED. IN NO EVENT SHALL THE PROJECT OR CONTRIBUTORS BE LIABLE 23 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 24 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 25 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 26 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 27 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 28 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 29 * SUCH DAMAGE. 30 */ 31 32 /*- 33 * Copyright (c) 1998, 2011 The NetBSD Foundation, Inc. 34 * All rights reserved. 35 * 36 * This code is derived from software contributed to The NetBSD Foundation 37 * by Coyote Point Systems, Inc. 38 * This code is derived from software contributed to The NetBSD Foundation 39 * by Public Access Networks Corporation ("Panix"). It was developed under 40 * contract to Panix by Eric Haszlakiewicz and Thor Lancelot Simon. 41 * 42 * Redistribution and use in source and binary forms, with or without 43 * modification, are permitted provided that the following conditions 44 * are met: 45 * 1. Redistributions of source code must retain the above copyright 46 * notice, this list of conditions and the following disclaimer. 47 * 2. Redistributions in binary form must reproduce the above copyright 48 * notice, this list of conditions and the following disclaimer in the 49 * documentation and/or other materials provided with the distribution. 50 * 51 * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS 52 * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED 53 * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR 54 * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS 55 * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR 56 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF 57 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS 58 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN 59 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) 60 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE 61 * POSSIBILITY OF SUCH DAMAGE. 62 */ 63 64 /* 65 * Copyright (c) 1982, 1986, 1991, 1993, 1995 66 * The Regents of the University of California. All rights reserved. 67 * 68 * Redistribution and use in source and binary forms, with or without 69 * modification, are permitted provided that the following conditions 70 * are met: 71 * 1. Redistributions of source code must retain the above copyright 72 * notice, this list of conditions and the following disclaimer. 73 * 2. Redistributions in binary form must reproduce the above copyright 74 * notice, this list of conditions and the following disclaimer in the 75 * documentation and/or other materials provided with the distribution. 76 * 3. Neither the name of the University nor the names of its contributors 77 * may be used to endorse or promote products derived from this software 78 * without specific prior written permission. 79 * 80 * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND 81 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 82 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 83 * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE 84 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 85 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 86 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 87 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 88 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 89 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 90 * SUCH DAMAGE. 91 * 92 * @(#)in_pcb.c 8.4 (Berkeley) 5/24/95 93 */ 94 95 #include <sys/cdefs.h> 96 __KERNEL_RCSID(0, "$NetBSD: in_pcb.c,v 1.138 2011/05/03 18:28:45 dyoung Exp $"); 97 98 #include "opt_inet.h" 99 #include "opt_ipsec.h" 100 101 #include <sys/param.h> 102 #include <sys/systm.h> 103 #include <sys/malloc.h> 104 #include <sys/mbuf.h> 105 #include <sys/protosw.h> 106 #include <sys/socket.h> 107 #include <sys/socketvar.h> 108 #include <sys/ioctl.h> 109 #include <sys/errno.h> 110 #include <sys/time.h> 111 #include <sys/once.h> 112 #include <sys/pool.h> 113 #include <sys/proc.h> 114 #include <sys/kauth.h> 115 #include <sys/uidinfo.h> 116 #include <sys/domain.h> 117 118 #include <net/if.h> 119 #include <net/route.h> 120 121 #include <netinet/in.h> 122 #include <netinet/in_systm.h> 123 #include <netinet/ip.h> 124 #include <netinet/in_pcb.h> 125 #include <netinet/in_var.h> 126 #include <netinet/ip_var.h> 127 128 #ifdef INET6 129 #include <netinet/ip6.h> 130 #include <netinet6/ip6_var.h> 131 #include <netinet6/in6_pcb.h> 132 #endif 133 134 #ifdef IPSEC 135 #include <netinet6/ipsec.h> 136 #include <netkey/key.h> 137 #elif FAST_IPSEC 138 #include <netipsec/ipsec.h> 139 #include <netipsec/key.h> 140 #endif /* IPSEC */ 141 142 #include <netinet/tcp_vtw.h> 143 144 struct in_addr zeroin_addr; 145 146 #define INPCBHASH_PORT(table, lport) \ 147 &(table)->inpt_porthashtbl[ntohs(lport) & (table)->inpt_porthash] 148 #define INPCBHASH_BIND(table, laddr, lport) \ 149 &(table)->inpt_bindhashtbl[ \ 150 ((ntohl((laddr).s_addr) + ntohs(lport))) & (table)->inpt_bindhash] 151 #define INPCBHASH_CONNECT(table, faddr, fport, laddr, lport) \ 152 &(table)->inpt_connecthashtbl[ \ 153 ((ntohl((faddr).s_addr) + ntohs(fport)) + \ 154 (ntohl((laddr).s_addr) + ntohs(lport))) & (table)->inpt_connecthash] 155 156 int anonportmin = IPPORT_ANONMIN; 157 int anonportmax = IPPORT_ANONMAX; 158 int lowportmin = IPPORT_RESERVEDMIN; 159 int lowportmax = IPPORT_RESERVEDMAX; 160 161 static struct pool inpcb_pool; 162 163 static int 164 inpcb_poolinit(void) 165 { 166 167 pool_init(&inpcb_pool, sizeof(struct inpcb), 0, 0, 0, "inpcbpl", NULL, 168 IPL_NET); 169 return 0; 170 } 171 172 void 173 in_pcbinit(struct inpcbtable *table, int bindhashsize, int connecthashsize) 174 { 175 static ONCE_DECL(control); 176 177 CIRCLEQ_INIT(&table->inpt_queue); 178 table->inpt_porthashtbl = hashinit(bindhashsize, HASH_LIST, true, 179 &table->inpt_porthash); 180 table->inpt_bindhashtbl = hashinit(bindhashsize, HASH_LIST, true, 181 &table->inpt_bindhash); 182 table->inpt_connecthashtbl = hashinit(connecthashsize, HASH_LIST, true, 183 &table->inpt_connecthash); 184 table->inpt_lastlow = IPPORT_RESERVEDMAX; 185 table->inpt_lastport = (u_int16_t)anonportmax; 186 187 RUN_ONCE(&control, inpcb_poolinit); 188 } 189 190 int 191 in_pcballoc(struct socket *so, void *v) 192 { 193 struct inpcbtable *table = v; 194 struct inpcb *inp; 195 int s; 196 #if defined(IPSEC) || defined(FAST_IPSEC) 197 int error; 198 #endif 199 200 s = splnet(); 201 inp = pool_get(&inpcb_pool, PR_NOWAIT); 202 splx(s); 203 if (inp == NULL) 204 return (ENOBUFS); 205 memset((void *)inp, 0, sizeof(*inp)); 206 inp->inp_af = AF_INET; 207 inp->inp_table = table; 208 inp->inp_socket = so; 209 inp->inp_errormtu = -1; 210 #if defined(IPSEC) || defined(FAST_IPSEC) 211 error = ipsec_init_pcbpolicy(so, &inp->inp_sp); 212 if (error != 0) { 213 s = splnet(); 214 pool_put(&inpcb_pool, inp); 215 splx(s); 216 return error; 217 } 218 #endif 219 so->so_pcb = inp; 220 s = splnet(); 221 CIRCLEQ_INSERT_HEAD(&table->inpt_queue, &inp->inp_head, 222 inph_queue); 223 LIST_INSERT_HEAD(INPCBHASH_PORT(table, inp->inp_lport), &inp->inp_head, 224 inph_lhash); 225 in_pcbstate(inp, INP_ATTACHED); 226 splx(s); 227 return (0); 228 } 229 230 static int 231 in_pcbsetport(struct sockaddr_in *sin, struct inpcb *inp, kauth_cred_t cred) 232 { 233 struct inpcbtable *table = inp->inp_table; 234 struct socket *so = inp->inp_socket; 235 int cnt; 236 u_int16_t mymin, mymax; 237 u_int16_t *lastport; 238 u_int16_t lport = 0; 239 enum kauth_network_req req; 240 int error; 241 242 if (inp->inp_flags & INP_LOWPORT) { 243 #ifndef IPNOPRIVPORTS 244 req = KAUTH_REQ_NETWORK_BIND_PRIVPORT; 245 #else 246 req = KAUTH_REQ_NETWORK_BIND_PORT; 247 #endif 248 249 mymin = lowportmin; 250 mymax = lowportmax; 251 lastport = &table->inpt_lastlow; 252 } else { 253 req = KAUTH_REQ_NETWORK_BIND_PORT; 254 255 mymin = anonportmin; 256 mymax = anonportmax; 257 lastport = &table->inpt_lastport; 258 } 259 260 /* XXX-kauth: KAUTH_REQ_NETWORK_BIND_AUTOASSIGN_{,PRIV}PORT */ 261 error = kauth_authorize_network(cred, KAUTH_NETWORK_BIND, req, so, sin, 262 NULL); 263 if (error) 264 return (EACCES); 265 266 if (mymin > mymax) { /* sanity check */ 267 u_int16_t swp; 268 269 swp = mymin; 270 mymin = mymax; 271 mymax = swp; 272 } 273 274 lport = *lastport - 1; 275 for (cnt = mymax - mymin + 1; cnt; cnt--, lport--) { 276 vestigial_inpcb_t vestigial; 277 278 if (lport < mymin || lport > mymax) 279 lport = mymax; 280 if (!in_pcblookup_port(table, sin->sin_addr, htons(lport), 1, 281 &vestigial) && !vestigial.valid) { 282 /* We have a free port, check with the secmodel(s). */ 283 sin->sin_port = lport; 284 error = kauth_authorize_network(cred, 285 KAUTH_NETWORK_BIND, req, so, sin, NULL); 286 if (error) { 287 /* Secmodel says no. Keep looking. */ 288 continue; 289 } 290 291 goto found; 292 } 293 } 294 295 return (EAGAIN); 296 297 found: 298 inp->inp_flags |= INP_ANONPORT; 299 *lastport = lport; 300 lport = htons(lport); 301 inp->inp_lport = lport; 302 in_pcbstate(inp, INP_BOUND); 303 304 return (0); 305 } 306 307 static int 308 in_pcbbind_addr(struct inpcb *inp, struct sockaddr_in *sin, kauth_cred_t cred) 309 { 310 if (sin->sin_family != AF_INET) 311 return (EAFNOSUPPORT); 312 313 if (IN_MULTICAST(sin->sin_addr.s_addr)) { 314 /* Always succeed; port reuse handled in in_pcbbind_port(). */ 315 } else if (!in_nullhost(sin->sin_addr)) { 316 struct in_ifaddr *ia = NULL; 317 318 INADDR_TO_IA(sin->sin_addr, ia); 319 /* check for broadcast addresses */ 320 if (ia == NULL) 321 ia = ifatoia(ifa_ifwithaddr(sintosa(sin))); 322 if (ia == NULL) 323 return (EADDRNOTAVAIL); 324 } 325 326 inp->inp_laddr = sin->sin_addr; 327 328 return (0); 329 } 330 331 static int 332 in_pcbbind_port(struct inpcb *inp, struct sockaddr_in *sin, kauth_cred_t cred) 333 { 334 struct inpcbtable *table = inp->inp_table; 335 struct socket *so = inp->inp_socket; 336 int reuseport = (so->so_options & SO_REUSEPORT); 337 int wild = 0, error; 338 339 if (IN_MULTICAST(sin->sin_addr.s_addr)) { 340 /* 341 * Treat SO_REUSEADDR as SO_REUSEPORT for multicast; 342 * allow complete duplication of binding if 343 * SO_REUSEPORT is set, or if SO_REUSEADDR is set 344 * and a multicast address is bound on both 345 * new and duplicated sockets. 346 */ 347 if (so->so_options & SO_REUSEADDR) 348 reuseport = SO_REUSEADDR|SO_REUSEPORT; 349 } 350 351 if (sin->sin_port == 0) { 352 error = in_pcbsetport(sin, inp, cred); 353 if (error) 354 return (error); 355 } else { 356 struct inpcb *t; 357 vestigial_inpcb_t vestige; 358 #ifdef INET6 359 struct in6pcb *t6; 360 struct in6_addr mapped; 361 #endif 362 enum kauth_network_req req; 363 364 if ((so->so_options & (SO_REUSEADDR|SO_REUSEPORT)) == 0) 365 wild = 1; 366 367 #ifndef IPNOPRIVPORTS 368 if (ntohs(sin->sin_port) < IPPORT_RESERVED) 369 req = KAUTH_REQ_NETWORK_BIND_PRIVPORT; 370 else 371 #endif /* !IPNOPRIVPORTS */ 372 req = KAUTH_REQ_NETWORK_BIND_PORT; 373 374 error = kauth_authorize_network(cred, KAUTH_NETWORK_BIND, req, 375 so, sin, NULL); 376 if (error) 377 return (EACCES); 378 379 #ifdef INET6 380 memset(&mapped, 0, sizeof(mapped)); 381 mapped.s6_addr16[5] = 0xffff; 382 memcpy(&mapped.s6_addr32[3], &sin->sin_addr, 383 sizeof(mapped.s6_addr32[3])); 384 t6 = in6_pcblookup_port(table, &mapped, sin->sin_port, wild, &vestige); 385 if (t6 && (reuseport & t6->in6p_socket->so_options) == 0) 386 return (EADDRINUSE); 387 if (!t6 && vestige.valid) { 388 if (!!reuseport != !!vestige.reuse_port) { 389 return EADDRINUSE; 390 } 391 } 392 #endif 393 394 /* XXX-kauth */ 395 if (so->so_uidinfo->ui_uid && !IN_MULTICAST(sin->sin_addr.s_addr)) { 396 t = in_pcblookup_port(table, sin->sin_addr, sin->sin_port, 1, &vestige); 397 /* 398 * XXX: investigate ramifications of loosening this 399 * restriction so that as long as both ports have 400 * SO_REUSEPORT allow the bind 401 */ 402 if (t && 403 (!in_nullhost(sin->sin_addr) || 404 !in_nullhost(t->inp_laddr) || 405 (t->inp_socket->so_options & SO_REUSEPORT) == 0) 406 && (so->so_uidinfo->ui_uid != t->inp_socket->so_uidinfo->ui_uid)) { 407 return (EADDRINUSE); 408 } 409 if (!t && vestige.valid) { 410 if ((!in_nullhost(sin->sin_addr) 411 || !in_nullhost(vestige.laddr.v4) 412 || !vestige.reuse_port) 413 && so->so_uidinfo->ui_uid != vestige.uid) { 414 return EADDRINUSE; 415 } 416 } 417 } 418 t = in_pcblookup_port(table, sin->sin_addr, sin->sin_port, wild, &vestige); 419 if (t && (reuseport & t->inp_socket->so_options) == 0) 420 return (EADDRINUSE); 421 if (!t 422 && vestige.valid 423 && !(reuseport && vestige.reuse_port)) 424 return EADDRINUSE; 425 426 inp->inp_lport = sin->sin_port; 427 in_pcbstate(inp, INP_BOUND); 428 } 429 430 LIST_REMOVE(&inp->inp_head, inph_lhash); 431 LIST_INSERT_HEAD(INPCBHASH_PORT(table, inp->inp_lport), &inp->inp_head, 432 inph_lhash); 433 434 return (0); 435 } 436 437 int 438 in_pcbbind(void *v, struct mbuf *nam, struct lwp *l) 439 { 440 struct inpcb *inp = v; 441 struct sockaddr_in *sin = NULL; /* XXXGCC */ 442 struct sockaddr_in lsin; 443 int error; 444 445 if (inp->inp_af != AF_INET) 446 return (EINVAL); 447 448 if (TAILQ_FIRST(&in_ifaddrhead) == 0) 449 return (EADDRNOTAVAIL); 450 if (inp->inp_lport || !in_nullhost(inp->inp_laddr)) 451 return (EINVAL); 452 453 if (nam != NULL) { 454 sin = mtod(nam, struct sockaddr_in *); 455 if (nam->m_len != sizeof (*sin)) 456 return (EINVAL); 457 } else { 458 lsin = *((const struct sockaddr_in *) 459 inp->inp_socket->so_proto->pr_domain->dom_sa_any); 460 sin = &lsin; 461 } 462 463 /* Bind address. */ 464 error = in_pcbbind_addr(inp, sin, l->l_cred); 465 if (error) 466 return (error); 467 468 /* Bind port. */ 469 error = in_pcbbind_port(inp, sin, l->l_cred); 470 if (error) { 471 inp->inp_laddr.s_addr = INADDR_ANY; 472 473 return (error); 474 } 475 476 return (0); 477 } 478 479 /* 480 * Connect from a socket to a specified address. 481 * Both address and port must be specified in argument sin. 482 * If don't have a local address for this socket yet, 483 * then pick one. 484 */ 485 int 486 in_pcbconnect(void *v, struct mbuf *nam, struct lwp *l) 487 { 488 struct inpcb *inp = v; 489 struct in_ifaddr *ia = NULL; 490 struct sockaddr_in *ifaddr = NULL; 491 struct sockaddr_in *sin = mtod(nam, struct sockaddr_in *); 492 vestigial_inpcb_t vestige; 493 int error; 494 495 if (inp->inp_af != AF_INET) 496 return (EINVAL); 497 498 if (nam->m_len != sizeof (*sin)) 499 return (EINVAL); 500 if (sin->sin_family != AF_INET) 501 return (EAFNOSUPPORT); 502 if (sin->sin_port == 0) 503 return (EADDRNOTAVAIL); 504 if (TAILQ_FIRST(&in_ifaddrhead) != 0) { 505 /* 506 * If the destination address is INADDR_ANY, 507 * use any local address (likely loopback). 508 * If the supplied address is INADDR_BROADCAST, 509 * use the broadcast address of an interface 510 * which supports broadcast. (loopback does not) 511 */ 512 513 if (in_nullhost(sin->sin_addr)) { 514 sin->sin_addr = 515 TAILQ_FIRST(&in_ifaddrhead)->ia_addr.sin_addr; 516 } else if (sin->sin_addr.s_addr == INADDR_BROADCAST) { 517 TAILQ_FOREACH(ia, &in_ifaddrhead, ia_list) { 518 if (ia->ia_ifp->if_flags & IFF_BROADCAST) { 519 sin->sin_addr = 520 ia->ia_broadaddr.sin_addr; 521 break; 522 } 523 } 524 } 525 } 526 /* 527 * If we haven't bound which network number to use as ours, 528 * we will use the number of the outgoing interface. 529 * This depends on having done a routing lookup, which 530 * we will probably have to do anyway, so we might 531 * as well do it now. On the other hand if we are 532 * sending to multiple destinations we may have already 533 * done the lookup, so see if we can use the route 534 * from before. In any case, we only 535 * chose a port number once, even if sending to multiple 536 * destinations. 537 */ 538 if (in_nullhost(inp->inp_laddr)) { 539 int xerror; 540 ifaddr = in_selectsrc(sin, &inp->inp_route, 541 inp->inp_socket->so_options, inp->inp_moptions, &xerror); 542 if (ifaddr == NULL) { 543 if (xerror == 0) 544 xerror = EADDRNOTAVAIL; 545 return xerror; 546 } 547 INADDR_TO_IA(ifaddr->sin_addr, ia); 548 if (ia == NULL) 549 return (EADDRNOTAVAIL); 550 } 551 if (in_pcblookup_connect(inp->inp_table, sin->sin_addr, sin->sin_port, 552 !in_nullhost(inp->inp_laddr) ? inp->inp_laddr : ifaddr->sin_addr, 553 inp->inp_lport, &vestige) != 0 554 || vestige.valid) 555 return (EADDRINUSE); 556 if (in_nullhost(inp->inp_laddr)) { 557 if (inp->inp_lport == 0) { 558 error = in_pcbbind(inp, NULL, l); 559 /* 560 * This used to ignore the return value 561 * completely, but we need to check for 562 * ephemeral port shortage. 563 * And attempts to request low ports if not root. 564 */ 565 if (error != 0) 566 return (error); 567 } 568 inp->inp_laddr = ifaddr->sin_addr; 569 } 570 inp->inp_faddr = sin->sin_addr; 571 inp->inp_fport = sin->sin_port; 572 in_pcbstate(inp, INP_CONNECTED); 573 #if defined(IPSEC) || defined(FAST_IPSEC) 574 if (inp->inp_socket->so_type == SOCK_STREAM) 575 ipsec_pcbconn(inp->inp_sp); 576 #endif 577 return (0); 578 } 579 580 void 581 in_pcbdisconnect(void *v) 582 { 583 struct inpcb *inp = v; 584 585 if (inp->inp_af != AF_INET) 586 return; 587 588 inp->inp_faddr = zeroin_addr; 589 inp->inp_fport = 0; 590 in_pcbstate(inp, INP_BOUND); 591 #if defined(IPSEC) || defined(FAST_IPSEC) 592 ipsec_pcbdisconn(inp->inp_sp); 593 #endif 594 if (inp->inp_socket->so_state & SS_NOFDREF) 595 in_pcbdetach(inp); 596 } 597 598 void 599 in_pcbdetach(void *v) 600 { 601 struct inpcb *inp = v; 602 struct socket *so = inp->inp_socket; 603 int s; 604 605 if (inp->inp_af != AF_INET) 606 return; 607 608 #if defined(IPSEC) || defined(FAST_IPSEC) 609 ipsec4_delete_pcbpolicy(inp); 610 #endif /*IPSEC*/ 611 so->so_pcb = 0; 612 if (inp->inp_options) 613 (void)m_free(inp->inp_options); 614 rtcache_free(&inp->inp_route); 615 ip_freemoptions(inp->inp_moptions); 616 s = splnet(); 617 in_pcbstate(inp, INP_ATTACHED); 618 LIST_REMOVE(&inp->inp_head, inph_lhash); 619 CIRCLEQ_REMOVE(&inp->inp_table->inpt_queue, &inp->inp_head, 620 inph_queue); 621 pool_put(&inpcb_pool, inp); 622 splx(s); 623 sofree(so); /* drops the socket's lock */ 624 mutex_enter(softnet_lock); /* reacquire the softnet_lock */ 625 } 626 627 void 628 in_setsockaddr(struct inpcb *inp, struct mbuf *nam) 629 { 630 struct sockaddr_in *sin; 631 632 if (inp->inp_af != AF_INET) 633 return; 634 635 sin = mtod(nam, struct sockaddr_in *); 636 sockaddr_in_init(sin, &inp->inp_laddr, inp->inp_lport); 637 nam->m_len = sin->sin_len; 638 } 639 640 void 641 in_setpeeraddr(struct inpcb *inp, struct mbuf *nam) 642 { 643 struct sockaddr_in *sin; 644 645 if (inp->inp_af != AF_INET) 646 return; 647 648 sin = mtod(nam, struct sockaddr_in *); 649 sockaddr_in_init(sin, &inp->inp_faddr, inp->inp_fport); 650 nam->m_len = sin->sin_len; 651 } 652 653 /* 654 * Pass some notification to all connections of a protocol 655 * associated with address dst. The local address and/or port numbers 656 * may be specified to limit the search. The "usual action" will be 657 * taken, depending on the ctlinput cmd. The caller must filter any 658 * cmds that are uninteresting (e.g., no error in the map). 659 * Call the protocol specific routine (if any) to report 660 * any errors for each matching socket. 661 * 662 * Must be called at splsoftnet. 663 */ 664 int 665 in_pcbnotify(struct inpcbtable *table, struct in_addr faddr, u_int fport_arg, 666 struct in_addr laddr, u_int lport_arg, int errno, 667 void (*notify)(struct inpcb *, int)) 668 { 669 struct inpcbhead *head; 670 struct inpcb *inp, *ninp; 671 u_int16_t fport = fport_arg, lport = lport_arg; 672 int nmatch; 673 674 if (in_nullhost(faddr) || notify == 0) 675 return (0); 676 677 nmatch = 0; 678 head = INPCBHASH_CONNECT(table, faddr, fport, laddr, lport); 679 for (inp = (struct inpcb *)LIST_FIRST(head); inp != NULL; inp = ninp) { 680 ninp = (struct inpcb *)LIST_NEXT(inp, inp_hash); 681 if (inp->inp_af != AF_INET) 682 continue; 683 if (in_hosteq(inp->inp_faddr, faddr) && 684 inp->inp_fport == fport && 685 inp->inp_lport == lport && 686 in_hosteq(inp->inp_laddr, laddr)) { 687 (*notify)(inp, errno); 688 nmatch++; 689 } 690 } 691 return (nmatch); 692 } 693 694 void 695 in_pcbnotifyall(struct inpcbtable *table, struct in_addr faddr, int errno, 696 void (*notify)(struct inpcb *, int)) 697 { 698 struct inpcb *inp, *ninp; 699 700 if (in_nullhost(faddr) || notify == 0) 701 return; 702 703 for (inp = (struct inpcb *)CIRCLEQ_FIRST(&table->inpt_queue); 704 inp != (void *)&table->inpt_queue; 705 inp = ninp) { 706 ninp = (struct inpcb *)CIRCLEQ_NEXT(inp, inp_queue); 707 if (inp->inp_af != AF_INET) 708 continue; 709 if (in_hosteq(inp->inp_faddr, faddr)) 710 (*notify)(inp, errno); 711 } 712 } 713 714 void 715 in_pcbpurgeif0(struct inpcbtable *table, struct ifnet *ifp) 716 { 717 struct inpcb *inp, *ninp; 718 struct ip_moptions *imo; 719 int i, gap; 720 721 for (inp = (struct inpcb *)CIRCLEQ_FIRST(&table->inpt_queue); 722 inp != (void *)&table->inpt_queue; 723 inp = ninp) { 724 ninp = (struct inpcb *)CIRCLEQ_NEXT(inp, inp_queue); 725 if (inp->inp_af != AF_INET) 726 continue; 727 imo = inp->inp_moptions; 728 if (imo != NULL) { 729 /* 730 * Unselect the outgoing interface if it is being 731 * detached. 732 */ 733 if (imo->imo_multicast_ifp == ifp) 734 imo->imo_multicast_ifp = NULL; 735 736 /* 737 * Drop multicast group membership if we joined 738 * through the interface being detached. 739 */ 740 for (i = 0, gap = 0; i < imo->imo_num_memberships; 741 i++) { 742 if (imo->imo_membership[i]->inm_ifp == ifp) { 743 in_delmulti(imo->imo_membership[i]); 744 gap++; 745 } else if (gap != 0) 746 imo->imo_membership[i - gap] = 747 imo->imo_membership[i]; 748 } 749 imo->imo_num_memberships -= gap; 750 } 751 } 752 } 753 754 void 755 in_pcbpurgeif(struct inpcbtable *table, struct ifnet *ifp) 756 { 757 struct rtentry *rt; 758 struct inpcb *inp, *ninp; 759 760 for (inp = (struct inpcb *)CIRCLEQ_FIRST(&table->inpt_queue); 761 inp != (void *)&table->inpt_queue; 762 inp = ninp) { 763 ninp = (struct inpcb *)CIRCLEQ_NEXT(inp, inp_queue); 764 if (inp->inp_af != AF_INET) 765 continue; 766 if ((rt = rtcache_validate(&inp->inp_route)) != NULL && 767 rt->rt_ifp == ifp) 768 in_rtchange(inp, 0); 769 } 770 } 771 772 /* 773 * Check for alternatives when higher level complains 774 * about service problems. For now, invalidate cached 775 * routing information. If the route was created dynamically 776 * (by a redirect), time to try a default gateway again. 777 */ 778 void 779 in_losing(struct inpcb *inp) 780 { 781 struct rtentry *rt; 782 struct rt_addrinfo info; 783 784 if (inp->inp_af != AF_INET) 785 return; 786 787 if ((rt = rtcache_validate(&inp->inp_route)) == NULL) 788 return; 789 790 memset(&info, 0, sizeof(info)); 791 info.rti_info[RTAX_DST] = rtcache_getdst(&inp->inp_route); 792 info.rti_info[RTAX_GATEWAY] = rt->rt_gateway; 793 info.rti_info[RTAX_NETMASK] = rt_mask(rt); 794 rt_missmsg(RTM_LOSING, &info, rt->rt_flags, 0); 795 if (rt->rt_flags & RTF_DYNAMIC) 796 (void) rtrequest(RTM_DELETE, rt_getkey(rt), 797 rt->rt_gateway, rt_mask(rt), rt->rt_flags, 798 NULL); 799 /* 800 * A new route can be allocated 801 * the next time output is attempted. 802 */ 803 rtcache_free(&inp->inp_route); 804 } 805 806 /* 807 * After a routing change, flush old routing. A new route can be 808 * allocated the next time output is attempted. 809 */ 810 void 811 in_rtchange(struct inpcb *inp, int errno) 812 { 813 814 if (inp->inp_af != AF_INET) 815 return; 816 817 rtcache_free(&inp->inp_route); 818 819 /* XXX SHOULD NOTIFY HIGHER-LEVEL PROTOCOLS */ 820 } 821 822 struct inpcb * 823 in_pcblookup_port(struct inpcbtable *table, struct in_addr laddr, 824 u_int lport_arg, int lookup_wildcard, vestigial_inpcb_t *vp) 825 { 826 struct inpcbhead *head; 827 struct inpcb_hdr *inph; 828 struct inpcb *inp, *match = 0; 829 int matchwild = 3, wildcard; 830 u_int16_t lport = lport_arg; 831 832 if (vp) 833 vp->valid = 0; 834 835 head = INPCBHASH_PORT(table, lport); 836 LIST_FOREACH(inph, head, inph_lhash) { 837 inp = (struct inpcb *)inph; 838 if (inp->inp_af != AF_INET) 839 continue; 840 841 if (inp->inp_lport != lport) 842 continue; 843 wildcard = 0; 844 if (!in_nullhost(inp->inp_faddr)) 845 wildcard++; 846 if (in_nullhost(inp->inp_laddr)) { 847 if (!in_nullhost(laddr)) 848 wildcard++; 849 } else { 850 if (in_nullhost(laddr)) 851 wildcard++; 852 else { 853 if (!in_hosteq(inp->inp_laddr, laddr)) 854 continue; 855 } 856 } 857 if (wildcard && !lookup_wildcard) 858 continue; 859 if (wildcard < matchwild) { 860 match = inp; 861 matchwild = wildcard; 862 if (matchwild == 0) 863 break; 864 } 865 } 866 if (match && matchwild == 0) 867 return match; 868 869 if (vp && table->vestige) { 870 void *state = (*table->vestige->init_ports4)(laddr, lport_arg, lookup_wildcard); 871 vestigial_inpcb_t better; 872 873 while (table->vestige 874 && (*table->vestige->next_port4)(state, vp)) { 875 876 if (vp->lport != lport) 877 continue; 878 wildcard = 0; 879 if (!in_nullhost(vp->faddr.v4)) 880 wildcard++; 881 if (in_nullhost(vp->laddr.v4)) { 882 if (!in_nullhost(laddr)) 883 wildcard++; 884 } else { 885 if (in_nullhost(laddr)) 886 wildcard++; 887 else { 888 if (!in_hosteq(vp->laddr.v4, laddr)) 889 continue; 890 } 891 } 892 if (wildcard && !lookup_wildcard) 893 continue; 894 if (wildcard < matchwild) { 895 better = *vp; 896 match = (void*)&better; 897 898 matchwild = wildcard; 899 if (matchwild == 0) 900 break; 901 } 902 } 903 904 if (match) { 905 if (match != (void*)&better) 906 return match; 907 else { 908 *vp = better; 909 return 0; 910 } 911 } 912 } 913 914 return (match); 915 } 916 917 #ifdef DIAGNOSTIC 918 int in_pcbnotifymiss = 0; 919 #endif 920 921 struct inpcb * 922 in_pcblookup_connect(struct inpcbtable *table, 923 struct in_addr faddr, u_int fport_arg, 924 struct in_addr laddr, u_int lport_arg, 925 vestigial_inpcb_t *vp) 926 { 927 struct inpcbhead *head; 928 struct inpcb_hdr *inph; 929 struct inpcb *inp; 930 u_int16_t fport = fport_arg, lport = lport_arg; 931 932 if (vp) 933 vp->valid = 0; 934 935 head = INPCBHASH_CONNECT(table, faddr, fport, laddr, lport); 936 LIST_FOREACH(inph, head, inph_hash) { 937 inp = (struct inpcb *)inph; 938 if (inp->inp_af != AF_INET) 939 continue; 940 941 if (in_hosteq(inp->inp_faddr, faddr) && 942 inp->inp_fport == fport && 943 inp->inp_lport == lport && 944 in_hosteq(inp->inp_laddr, laddr)) 945 goto out; 946 } 947 if (vp && table->vestige) { 948 if ((*table->vestige->lookup4)(faddr, fport_arg, 949 laddr, lport_arg, vp)) 950 return 0; 951 } 952 953 #ifdef DIAGNOSTIC 954 if (in_pcbnotifymiss) { 955 printf("in_pcblookup_connect: faddr=%08x fport=%d laddr=%08x lport=%d\n", 956 ntohl(faddr.s_addr), ntohs(fport), 957 ntohl(laddr.s_addr), ntohs(lport)); 958 } 959 #endif 960 return (0); 961 962 out: 963 /* Move this PCB to the head of hash chain. */ 964 inph = &inp->inp_head; 965 if (inph != LIST_FIRST(head)) { 966 LIST_REMOVE(inph, inph_hash); 967 LIST_INSERT_HEAD(head, inph, inph_hash); 968 } 969 return (inp); 970 } 971 972 struct inpcb * 973 in_pcblookup_bind(struct inpcbtable *table, 974 struct in_addr laddr, u_int lport_arg) 975 { 976 struct inpcbhead *head; 977 struct inpcb_hdr *inph; 978 struct inpcb *inp; 979 u_int16_t lport = lport_arg; 980 981 head = INPCBHASH_BIND(table, laddr, lport); 982 LIST_FOREACH(inph, head, inph_hash) { 983 inp = (struct inpcb *)inph; 984 if (inp->inp_af != AF_INET) 985 continue; 986 987 if (inp->inp_lport == lport && 988 in_hosteq(inp->inp_laddr, laddr)) 989 goto out; 990 } 991 head = INPCBHASH_BIND(table, zeroin_addr, lport); 992 LIST_FOREACH(inph, head, inph_hash) { 993 inp = (struct inpcb *)inph; 994 if (inp->inp_af != AF_INET) 995 continue; 996 997 if (inp->inp_lport == lport && 998 in_hosteq(inp->inp_laddr, zeroin_addr)) 999 goto out; 1000 } 1001 #ifdef DIAGNOSTIC 1002 if (in_pcbnotifymiss) { 1003 printf("in_pcblookup_bind: laddr=%08x lport=%d\n", 1004 ntohl(laddr.s_addr), ntohs(lport)); 1005 } 1006 #endif 1007 return (0); 1008 1009 out: 1010 /* Move this PCB to the head of hash chain. */ 1011 inph = &inp->inp_head; 1012 if (inph != LIST_FIRST(head)) { 1013 LIST_REMOVE(inph, inph_hash); 1014 LIST_INSERT_HEAD(head, inph, inph_hash); 1015 } 1016 return (inp); 1017 } 1018 1019 void 1020 in_pcbstate(struct inpcb *inp, int state) 1021 { 1022 1023 if (inp->inp_af != AF_INET) 1024 return; 1025 1026 if (inp->inp_state > INP_ATTACHED) 1027 LIST_REMOVE(&inp->inp_head, inph_hash); 1028 1029 switch (state) { 1030 case INP_BOUND: 1031 LIST_INSERT_HEAD(INPCBHASH_BIND(inp->inp_table, 1032 inp->inp_laddr, inp->inp_lport), &inp->inp_head, 1033 inph_hash); 1034 break; 1035 case INP_CONNECTED: 1036 LIST_INSERT_HEAD(INPCBHASH_CONNECT(inp->inp_table, 1037 inp->inp_faddr, inp->inp_fport, 1038 inp->inp_laddr, inp->inp_lport), &inp->inp_head, 1039 inph_hash); 1040 break; 1041 } 1042 1043 inp->inp_state = state; 1044 } 1045 1046 struct rtentry * 1047 in_pcbrtentry(struct inpcb *inp) 1048 { 1049 struct route *ro; 1050 union { 1051 struct sockaddr dst; 1052 struct sockaddr_in dst4; 1053 } u; 1054 1055 if (inp->inp_af != AF_INET) 1056 return (NULL); 1057 1058 ro = &inp->inp_route; 1059 1060 sockaddr_in_init(&u.dst4, &inp->inp_faddr, 0); 1061 return rtcache_lookup(ro, &u.dst); 1062 } 1063 1064 struct sockaddr_in * 1065 in_selectsrc(struct sockaddr_in *sin, struct route *ro, 1066 int soopts, struct ip_moptions *mopts, int *errorp) 1067 { 1068 struct rtentry *rt = NULL; 1069 struct in_ifaddr *ia = NULL; 1070 1071 /* 1072 * If route is known or can be allocated now, take the 1073 * source address from the interface. Otherwise, punt. 1074 */ 1075 if ((soopts & SO_DONTROUTE) != 0) 1076 rtcache_free(ro); 1077 else { 1078 union { 1079 struct sockaddr dst; 1080 struct sockaddr_in dst4; 1081 } u; 1082 1083 sockaddr_in_init(&u.dst4, &sin->sin_addr, 0); 1084 rt = rtcache_lookup(ro, &u.dst); 1085 } 1086 /* 1087 * If we found a route, use the address 1088 * corresponding to the outgoing interface 1089 * unless it is the loopback (in case a route 1090 * to our address on another net goes to loopback). 1091 * 1092 * XXX Is this still true? Do we care? 1093 */ 1094 if (rt != NULL && (rt->rt_ifp->if_flags & IFF_LOOPBACK) == 0) 1095 ia = ifatoia(rt->rt_ifa); 1096 if (ia == NULL) { 1097 u_int16_t fport = sin->sin_port; 1098 1099 sin->sin_port = 0; 1100 ia = ifatoia(ifa_ifwithladdr(sintosa(sin))); 1101 sin->sin_port = fport; 1102 if (ia == NULL) { 1103 /* Find 1st non-loopback AF_INET address */ 1104 TAILQ_FOREACH(ia, &in_ifaddrhead, ia_list) { 1105 if (!(ia->ia_ifp->if_flags & IFF_LOOPBACK)) 1106 break; 1107 } 1108 } 1109 if (ia == NULL) { 1110 *errorp = EADDRNOTAVAIL; 1111 return NULL; 1112 } 1113 } 1114 /* 1115 * If the destination address is multicast and an outgoing 1116 * interface has been set as a multicast option, use the 1117 * address of that interface as our source address. 1118 */ 1119 if (IN_MULTICAST(sin->sin_addr.s_addr) && mopts != NULL) { 1120 struct ip_moptions *imo; 1121 struct ifnet *ifp; 1122 1123 imo = mopts; 1124 if (imo->imo_multicast_ifp != NULL) { 1125 ifp = imo->imo_multicast_ifp; 1126 IFP_TO_IA(ifp, ia); /* XXX */ 1127 if (ia == 0) { 1128 *errorp = EADDRNOTAVAIL; 1129 return NULL; 1130 } 1131 } 1132 } 1133 if (ia->ia_ifa.ifa_getifa != NULL) { 1134 ia = ifatoia((*ia->ia_ifa.ifa_getifa)(&ia->ia_ifa, 1135 sintosa(sin))); 1136 } 1137 #ifdef GETIFA_DEBUG 1138 else 1139 printf("%s: missing ifa_getifa\n", __func__); 1140 #endif 1141 return satosin(&ia->ia_addr); 1142 } 1143