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in_pcb.c revision 1.1.1.3
      1 /*
      2  * Copyright (c) 1982, 1986, 1991, 1993, 1995
      3  *	The Regents of the University of California.  All rights reserved.
      4  *
      5  * Redistribution and use in source and binary forms, with or without
      6  * modification, are permitted provided that the following conditions
      7  * are met:
      8  * 1. Redistributions of source code must retain the above copyright
      9  *    notice, this list of conditions and the following disclaimer.
     10  * 2. Redistributions in binary form must reproduce the above copyright
     11  *    notice, this list of conditions and the following disclaimer in the
     12  *    documentation and/or other materials provided with the distribution.
     13  * 3. All advertising materials mentioning features or use of this software
     14  *    must display the following acknowledgement:
     15  *	This product includes software developed by the University of
     16  *	California, Berkeley and its contributors.
     17  * 4. Neither the name of the University nor the names of its contributors
     18  *    may be used to endorse or promote products derived from this software
     19  *    without specific prior written permission.
     20  *
     21  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     22  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     23  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     24  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     25  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     26  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     27  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     28  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     29  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     30  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     31  * SUCH DAMAGE.
     32  *
     33  *	@(#)in_pcb.c	8.4 (Berkeley) 5/24/95
     34  */
     35 
     36 #include <sys/param.h>
     37 #include <sys/systm.h>
     38 #include <sys/malloc.h>
     39 #include <sys/mbuf.h>
     40 #include <sys/protosw.h>
     41 #include <sys/socket.h>
     42 #include <sys/socketvar.h>
     43 #include <sys/ioctl.h>
     44 #include <sys/errno.h>
     45 #include <sys/time.h>
     46 #include <sys/proc.h>
     47 
     48 #include <net/if.h>
     49 #include <net/route.h>
     50 
     51 #include <netinet/in.h>
     52 #include <netinet/in_systm.h>
     53 #include <netinet/ip.h>
     54 #include <netinet/in_pcb.h>
     55 #include <netinet/in_var.h>
     56 #include <netinet/ip_var.h>
     57 
     58 struct	in_addr zeroin_addr;
     59 
     60 int
     61 in_pcballoc(so, head)
     62 	struct socket *so;
     63 	struct inpcb *head;
     64 {
     65 	register struct inpcb *inp;
     66 
     67 	MALLOC(inp, struct inpcb *, sizeof(*inp), M_PCB, M_NOWAIT);
     68 	if (inp == NULL)
     69 		return (ENOBUFS);
     70 	bzero((caddr_t)inp, sizeof(*inp));
     71 	inp->inp_head = head;
     72 	inp->inp_socket = so;
     73 	insque(inp, head);
     74 	so->so_pcb = (caddr_t)inp;
     75 	return (0);
     76 }
     77 
     78 int
     79 in_pcbbind(inp, nam)
     80 	register struct inpcb *inp;
     81 	struct mbuf *nam;
     82 {
     83 	register struct socket *so = inp->inp_socket;
     84 	register struct inpcb *head = inp->inp_head;
     85 	register struct sockaddr_in *sin;
     86 	struct proc *p = curproc;		/* XXX */
     87 	u_short lport = 0;
     88 	int wild = 0, reuseport = (so->so_options & SO_REUSEPORT);
     89 	int error;
     90 
     91 	if (in_ifaddr == 0)
     92 		return (EADDRNOTAVAIL);
     93 	if (inp->inp_lport || inp->inp_laddr.s_addr != INADDR_ANY)
     94 		return (EINVAL);
     95 	if ((so->so_options & (SO_REUSEADDR|SO_REUSEPORT)) == 0 &&
     96 	    ((so->so_proto->pr_flags & PR_CONNREQUIRED) == 0 ||
     97 	     (so->so_options & SO_ACCEPTCONN) == 0))
     98 		wild = INPLOOKUP_WILDCARD;
     99 	if (nam) {
    100 		sin = mtod(nam, struct sockaddr_in *);
    101 		if (nam->m_len != sizeof (*sin))
    102 			return (EINVAL);
    103 #ifdef notdef
    104 		/*
    105 		 * We should check the family, but old programs
    106 		 * incorrectly fail to initialize it.
    107 		 */
    108 		if (sin->sin_family != AF_INET)
    109 			return (EAFNOSUPPORT);
    110 #endif
    111 		lport = sin->sin_port;
    112 		if (IN_MULTICAST(ntohl(sin->sin_addr.s_addr))) {
    113 			/*
    114 			 * Treat SO_REUSEADDR as SO_REUSEPORT for multicast;
    115 			 * allow complete duplication of binding if
    116 			 * SO_REUSEPORT is set, or if SO_REUSEADDR is set
    117 			 * and a multicast address is bound on both
    118 			 * new and duplicated sockets.
    119 			 */
    120 			if (so->so_options & SO_REUSEADDR)
    121 				reuseport = SO_REUSEADDR|SO_REUSEPORT;
    122 		} else if (sin->sin_addr.s_addr != INADDR_ANY) {
    123 			sin->sin_port = 0;		/* yech... */
    124 			if (ifa_ifwithaddr((struct sockaddr *)sin) == 0)
    125 				return (EADDRNOTAVAIL);
    126 		}
    127 		if (lport) {
    128 			struct inpcb *t;
    129 
    130 			/* GROSS */
    131 			if (ntohs(lport) < IPPORT_RESERVED &&
    132 			    (error = suser(p->p_ucred, &p->p_acflag)))
    133 				return (EACCES);
    134 			t = in_pcblookup(head, zeroin_addr, 0,
    135 			    sin->sin_addr, lport, wild);
    136 			if (t && (reuseport & t->inp_socket->so_options) == 0)
    137 				return (EADDRINUSE);
    138 		}
    139 		inp->inp_laddr = sin->sin_addr;
    140 	}
    141 	if (lport == 0)
    142 		do {
    143 			if (head->inp_lport++ < IPPORT_RESERVED ||
    144 			    head->inp_lport > IPPORT_USERRESERVED)
    145 				head->inp_lport = IPPORT_RESERVED;
    146 			lport = htons(head->inp_lport);
    147 		} while (in_pcblookup(head,
    148 			    zeroin_addr, 0, inp->inp_laddr, lport, wild));
    149 	inp->inp_lport = lport;
    150 	return (0);
    151 }
    152 
    153 /*
    154  * Connect from a socket to a specified address.
    155  * Both address and port must be specified in argument sin.
    156  * If don't have a local address for this socket yet,
    157  * then pick one.
    158  */
    159 int
    160 in_pcbconnect(inp, nam)
    161 	register struct inpcb *inp;
    162 	struct mbuf *nam;
    163 {
    164 	struct in_ifaddr *ia;
    165 	struct sockaddr_in *ifaddr;
    166 	register struct sockaddr_in *sin = mtod(nam, struct sockaddr_in *);
    167 
    168 	if (nam->m_len != sizeof (*sin))
    169 		return (EINVAL);
    170 	if (sin->sin_family != AF_INET)
    171 		return (EAFNOSUPPORT);
    172 	if (sin->sin_port == 0)
    173 		return (EADDRNOTAVAIL);
    174 	if (in_ifaddr) {
    175 		/*
    176 		 * If the destination address is INADDR_ANY,
    177 		 * use the primary local address.
    178 		 * If the supplied address is INADDR_BROADCAST,
    179 		 * and the primary interface supports broadcast,
    180 		 * choose the broadcast address for that interface.
    181 		 */
    182 #define	satosin(sa)	((struct sockaddr_in *)(sa))
    183 #define sintosa(sin)	((struct sockaddr *)(sin))
    184 #define ifatoia(ifa)	((struct in_ifaddr *)(ifa))
    185 		if (sin->sin_addr.s_addr == INADDR_ANY)
    186 		    sin->sin_addr = IA_SIN(in_ifaddr)->sin_addr;
    187 		else if (sin->sin_addr.s_addr == (u_long)INADDR_BROADCAST &&
    188 		  (in_ifaddr->ia_ifp->if_flags & IFF_BROADCAST))
    189 		    sin->sin_addr = satosin(&in_ifaddr->ia_broadaddr)->sin_addr;
    190 	}
    191 	if (inp->inp_laddr.s_addr == INADDR_ANY) {
    192 		register struct route *ro;
    193 
    194 		ia = (struct in_ifaddr *)0;
    195 		/*
    196 		 * If route is known or can be allocated now,
    197 		 * our src addr is taken from the i/f, else punt.
    198 		 */
    199 		ro = &inp->inp_route;
    200 		if (ro->ro_rt &&
    201 		    (satosin(&ro->ro_dst)->sin_addr.s_addr !=
    202 			sin->sin_addr.s_addr ||
    203 		    inp->inp_socket->so_options & SO_DONTROUTE)) {
    204 			RTFREE(ro->ro_rt);
    205 			ro->ro_rt = (struct rtentry *)0;
    206 		}
    207 		if ((inp->inp_socket->so_options & SO_DONTROUTE) == 0 && /*XXX*/
    208 		    (ro->ro_rt == (struct rtentry *)0 ||
    209 		    ro->ro_rt->rt_ifp == (struct ifnet *)0)) {
    210 			/* No route yet, so try to acquire one */
    211 			ro->ro_dst.sa_family = AF_INET;
    212 			ro->ro_dst.sa_len = sizeof(struct sockaddr_in);
    213 			((struct sockaddr_in *) &ro->ro_dst)->sin_addr =
    214 				sin->sin_addr;
    215 			rtalloc(ro);
    216 		}
    217 		/*
    218 		 * If we found a route, use the address
    219 		 * corresponding to the outgoing interface
    220 		 * unless it is the loopback (in case a route
    221 		 * to our address on another net goes to loopback).
    222 		 */
    223 		if (ro->ro_rt && !(ro->ro_rt->rt_ifp->if_flags & IFF_LOOPBACK))
    224 			ia = ifatoia(ro->ro_rt->rt_ifa);
    225 		if (ia == 0) {
    226 			u_short fport = sin->sin_port;
    227 
    228 			sin->sin_port = 0;
    229 			ia = ifatoia(ifa_ifwithdstaddr(sintosa(sin)));
    230 			if (ia == 0)
    231 				ia = ifatoia(ifa_ifwithnet(sintosa(sin)));
    232 			sin->sin_port = fport;
    233 			if (ia == 0)
    234 				ia = in_ifaddr;
    235 			if (ia == 0)
    236 				return (EADDRNOTAVAIL);
    237 		}
    238 		/*
    239 		 * If the destination address is multicast and an outgoing
    240 		 * interface has been set as a multicast option, use the
    241 		 * address of that interface as our source address.
    242 		 */
    243 		if (IN_MULTICAST(ntohl(sin->sin_addr.s_addr)) &&
    244 		    inp->inp_moptions != NULL) {
    245 			struct ip_moptions *imo;
    246 			struct ifnet *ifp;
    247 
    248 			imo = inp->inp_moptions;
    249 			if (imo->imo_multicast_ifp != NULL) {
    250 				ifp = imo->imo_multicast_ifp;
    251 				for (ia = in_ifaddr; ia; ia = ia->ia_next)
    252 					if (ia->ia_ifp == ifp)
    253 						break;
    254 				if (ia == 0)
    255 					return (EADDRNOTAVAIL);
    256 			}
    257 		}
    258 		ifaddr = (struct sockaddr_in *)&ia->ia_addr;
    259 	}
    260 	if (in_pcblookup(inp->inp_head,
    261 	    sin->sin_addr,
    262 	    sin->sin_port,
    263 	    inp->inp_laddr.s_addr ? inp->inp_laddr : ifaddr->sin_addr,
    264 	    inp->inp_lport,
    265 	    0))
    266 		return (EADDRINUSE);
    267 	if (inp->inp_laddr.s_addr == INADDR_ANY) {
    268 		if (inp->inp_lport == 0)
    269 			(void)in_pcbbind(inp, (struct mbuf *)0);
    270 		inp->inp_laddr = ifaddr->sin_addr;
    271 	}
    272 	inp->inp_faddr = sin->sin_addr;
    273 	inp->inp_fport = sin->sin_port;
    274 	return (0);
    275 }
    276 
    277 int
    278 in_pcbdisconnect(inp)
    279 	struct inpcb *inp;
    280 {
    281 
    282 	inp->inp_faddr.s_addr = INADDR_ANY;
    283 	inp->inp_fport = 0;
    284 	if (inp->inp_socket->so_state & SS_NOFDREF)
    285 		in_pcbdetach(inp);
    286 }
    287 
    288 int
    289 in_pcbdetach(inp)
    290 	struct inpcb *inp;
    291 {
    292 	struct socket *so = inp->inp_socket;
    293 
    294 	so->so_pcb = 0;
    295 	sofree(so);
    296 	if (inp->inp_options)
    297 		(void)m_free(inp->inp_options);
    298 	if (inp->inp_route.ro_rt)
    299 		rtfree(inp->inp_route.ro_rt);
    300 	ip_freemoptions(inp->inp_moptions);
    301 	remque(inp);
    302 	FREE(inp, M_PCB);
    303 }
    304 
    305 int
    306 in_setsockaddr(inp, nam)
    307 	register struct inpcb *inp;
    308 	struct mbuf *nam;
    309 {
    310 	register struct sockaddr_in *sin;
    311 
    312 	nam->m_len = sizeof (*sin);
    313 	sin = mtod(nam, struct sockaddr_in *);
    314 	bzero((caddr_t)sin, sizeof (*sin));
    315 	sin->sin_family = AF_INET;
    316 	sin->sin_len = sizeof(*sin);
    317 	sin->sin_port = inp->inp_lport;
    318 	sin->sin_addr = inp->inp_laddr;
    319 }
    320 
    321 int
    322 in_setpeeraddr(inp, nam)
    323 	struct inpcb *inp;
    324 	struct mbuf *nam;
    325 {
    326 	register struct sockaddr_in *sin;
    327 
    328 	nam->m_len = sizeof (*sin);
    329 	sin = mtod(nam, struct sockaddr_in *);
    330 	bzero((caddr_t)sin, sizeof (*sin));
    331 	sin->sin_family = AF_INET;
    332 	sin->sin_len = sizeof(*sin);
    333 	sin->sin_port = inp->inp_fport;
    334 	sin->sin_addr = inp->inp_faddr;
    335 }
    336 
    337 /*
    338  * Pass some notification to all connections of a protocol
    339  * associated with address dst.  The local address and/or port numbers
    340  * may be specified to limit the search.  The "usual action" will be
    341  * taken, depending on the ctlinput cmd.  The caller must filter any
    342  * cmds that are uninteresting (e.g., no error in the map).
    343  * Call the protocol specific routine (if any) to report
    344  * any errors for each matching socket.
    345  *
    346  * Must be called at splnet.
    347  */
    348 int
    349 in_pcbnotify(head, dst, fport_arg, laddr, lport_arg, cmd, notify)
    350 	struct inpcb *head;
    351 	struct sockaddr *dst;
    352 	u_int fport_arg, lport_arg;
    353 	struct in_addr laddr;
    354 	int cmd;
    355 	void (*notify) __P((struct inpcb *, int));
    356 {
    357 	extern u_char inetctlerrmap[];
    358 	register struct inpcb *inp, *oinp;
    359 	struct in_addr faddr;
    360 	u_short fport = fport_arg, lport = lport_arg;
    361 	int errno;
    362 
    363 	if ((unsigned)cmd > PRC_NCMDS || dst->sa_family != AF_INET)
    364 		return;
    365 	faddr = ((struct sockaddr_in *)dst)->sin_addr;
    366 	if (faddr.s_addr == INADDR_ANY)
    367 		return;
    368 
    369 	/*
    370 	 * Redirects go to all references to the destination,
    371 	 * and use in_rtchange to invalidate the route cache.
    372 	 * Dead host indications: notify all references to the destination.
    373 	 * Otherwise, if we have knowledge of the local port and address,
    374 	 * deliver only to that socket.
    375 	 */
    376 	if (PRC_IS_REDIRECT(cmd) || cmd == PRC_HOSTDEAD) {
    377 		fport = 0;
    378 		lport = 0;
    379 		laddr.s_addr = 0;
    380 		if (cmd != PRC_HOSTDEAD)
    381 			notify = in_rtchange;
    382 	}
    383 	errno = inetctlerrmap[cmd];
    384 	for (inp = head->inp_next; inp != head;) {
    385 		if (inp->inp_faddr.s_addr != faddr.s_addr ||
    386 		    inp->inp_socket == 0 ||
    387 		    (lport && inp->inp_lport != lport) ||
    388 		    (laddr.s_addr && inp->inp_laddr.s_addr != laddr.s_addr) ||
    389 		    (fport && inp->inp_fport != fport)) {
    390 			inp = inp->inp_next;
    391 			continue;
    392 		}
    393 		oinp = inp;
    394 		inp = inp->inp_next;
    395 		if (notify)
    396 			(*notify)(oinp, errno);
    397 	}
    398 }
    399 
    400 /*
    401  * Check for alternatives when higher level complains
    402  * about service problems.  For now, invalidate cached
    403  * routing information.  If the route was created dynamically
    404  * (by a redirect), time to try a default gateway again.
    405  */
    406 int
    407 in_losing(inp)
    408 	struct inpcb *inp;
    409 {
    410 	register struct rtentry *rt;
    411 	struct rt_addrinfo info;
    412 
    413 	if ((rt = inp->inp_route.ro_rt)) {
    414 		inp->inp_route.ro_rt = 0;
    415 		bzero((caddr_t)&info, sizeof(info));
    416 		info.rti_info[RTAX_DST] =
    417 			(struct sockaddr *)&inp->inp_route.ro_dst;
    418 		info.rti_info[RTAX_GATEWAY] = rt->rt_gateway;
    419 		info.rti_info[RTAX_NETMASK] = rt_mask(rt);
    420 		rt_missmsg(RTM_LOSING, &info, rt->rt_flags, 0);
    421 		if (rt->rt_flags & RTF_DYNAMIC)
    422 			(void) rtrequest(RTM_DELETE, rt_key(rt),
    423 				rt->rt_gateway, rt_mask(rt), rt->rt_flags,
    424 				(struct rtentry **)0);
    425 		else
    426 		/*
    427 		 * A new route can be allocated
    428 		 * the next time output is attempted.
    429 		 */
    430 			rtfree(rt);
    431 	}
    432 }
    433 
    434 /*
    435  * After a routing change, flush old routing
    436  * and allocate a (hopefully) better one.
    437  */
    438 void
    439 in_rtchange(inp, errno)
    440 	register struct inpcb *inp;
    441 	int errno;
    442 {
    443 	if (inp->inp_route.ro_rt) {
    444 		rtfree(inp->inp_route.ro_rt);
    445 		inp->inp_route.ro_rt = 0;
    446 		/*
    447 		 * A new route can be allocated the next time
    448 		 * output is attempted.
    449 		 */
    450 	}
    451 }
    452 
    453 struct inpcb *
    454 in_pcblookup(head, faddr, fport_arg, laddr, lport_arg, flags)
    455 	struct inpcb *head;
    456 	struct in_addr faddr, laddr;
    457 	u_int fport_arg, lport_arg;
    458 	int flags;
    459 {
    460 	register struct inpcb *inp, *match = 0;
    461 	int matchwild = 3, wildcard;
    462 	u_short fport = fport_arg, lport = lport_arg;
    463 
    464 	for (inp = head->inp_next; inp != head; inp = inp->inp_next) {
    465 		if (inp->inp_lport != lport)
    466 			continue;
    467 		wildcard = 0;
    468 		if (inp->inp_laddr.s_addr != INADDR_ANY) {
    469 			if (laddr.s_addr == INADDR_ANY)
    470 				wildcard++;
    471 			else if (inp->inp_laddr.s_addr != laddr.s_addr)
    472 				continue;
    473 		} else {
    474 			if (laddr.s_addr != INADDR_ANY)
    475 				wildcard++;
    476 		}
    477 		if (inp->inp_faddr.s_addr != INADDR_ANY) {
    478 			if (faddr.s_addr == INADDR_ANY)
    479 				wildcard++;
    480 			else if (inp->inp_faddr.s_addr != faddr.s_addr ||
    481 			    inp->inp_fport != fport)
    482 				continue;
    483 		} else {
    484 			if (faddr.s_addr != INADDR_ANY)
    485 				wildcard++;
    486 		}
    487 		if (wildcard && (flags & INPLOOKUP_WILDCARD) == 0)
    488 			continue;
    489 		if (wildcard < matchwild) {
    490 			match = inp;
    491 			matchwild = wildcard;
    492 			if (matchwild == 0)
    493 				break;
    494 		}
    495 	}
    496 	return (match);
    497 }
    498