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in6_src.c revision 1.53.12.1
      1  1.53.12.1       tls /*	$NetBSD: in6_src.c,v 1.53.12.1 2014/08/10 06:56:30 tls Exp $	*/
      2       1.23    rpaulo /*	$KAME: in6_src.c,v 1.159 2005/10/19 01:40:32 t-momose Exp $	*/
      3        1.1    itojun 
      4        1.1    itojun /*
      5        1.1    itojun  * Copyright (C) 1995, 1996, 1997, and 1998 WIDE Project.
      6        1.1    itojun  * All rights reserved.
      7        1.1    itojun  *
      8        1.1    itojun  * Redistribution and use in source and binary forms, with or without
      9        1.1    itojun  * modification, are permitted provided that the following conditions
     10        1.1    itojun  * are met:
     11        1.1    itojun  * 1. Redistributions of source code must retain the above copyright
     12        1.1    itojun  *    notice, this list of conditions and the following disclaimer.
     13        1.1    itojun  * 2. Redistributions in binary form must reproduce the above copyright
     14        1.1    itojun  *    notice, this list of conditions and the following disclaimer in the
     15        1.1    itojun  *    documentation and/or other materials provided with the distribution.
     16        1.1    itojun  * 3. Neither the name of the project nor the names of its contributors
     17        1.1    itojun  *    may be used to endorse or promote products derived from this software
     18        1.1    itojun  *    without specific prior written permission.
     19        1.1    itojun  *
     20        1.1    itojun  * THIS SOFTWARE IS PROVIDED BY THE PROJECT AND CONTRIBUTORS ``AS IS'' AND
     21        1.1    itojun  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     22        1.1    itojun  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     23        1.1    itojun  * ARE DISCLAIMED.  IN NO EVENT SHALL THE PROJECT OR CONTRIBUTORS BE LIABLE
     24        1.1    itojun  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     25        1.1    itojun  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     26        1.1    itojun  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     27        1.1    itojun  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     28        1.1    itojun  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     29        1.1    itojun  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     30        1.1    itojun  * SUCH DAMAGE.
     31        1.1    itojun  */
     32        1.1    itojun 
     33        1.1    itojun /*
     34        1.1    itojun  * Copyright (c) 1982, 1986, 1991, 1993
     35        1.1    itojun  *	The Regents of the University of California.  All rights reserved.
     36        1.1    itojun  *
     37        1.1    itojun  * Redistribution and use in source and binary forms, with or without
     38        1.1    itojun  * modification, are permitted provided that the following conditions
     39        1.1    itojun  * are met:
     40        1.1    itojun  * 1. Redistributions of source code must retain the above copyright
     41        1.1    itojun  *    notice, this list of conditions and the following disclaimer.
     42        1.1    itojun  * 2. Redistributions in binary form must reproduce the above copyright
     43        1.1    itojun  *    notice, this list of conditions and the following disclaimer in the
     44        1.1    itojun  *    documentation and/or other materials provided with the distribution.
     45       1.23    rpaulo  * 3. All advertising materials mentioning features or use of this software
     46       1.23    rpaulo  *    must display the following acknowledgement:
     47       1.23    rpaulo  *	This product includes software developed by the University of
     48       1.23    rpaulo  *	California, Berkeley and its contributors.
     49       1.23    rpaulo  * 4. Neither the name of the University nor the names of its contributors
     50        1.1    itojun  *    may be used to endorse or promote products derived from this software
     51        1.1    itojun  *    without specific prior written permission.
     52        1.1    itojun  *
     53        1.1    itojun  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     54        1.1    itojun  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     55        1.1    itojun  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     56        1.1    itojun  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     57        1.1    itojun  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     58        1.1    itojun  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     59        1.1    itojun  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     60        1.1    itojun  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     61        1.1    itojun  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     62        1.1    itojun  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     63        1.1    itojun  * SUCH DAMAGE.
     64        1.1    itojun  *
     65        1.1    itojun  *	@(#)in_pcb.c	8.2 (Berkeley) 1/4/94
     66        1.1    itojun  */
     67        1.9     lukem 
     68        1.9     lukem #include <sys/cdefs.h>
     69  1.53.12.1       tls __KERNEL_RCSID(0, "$NetBSD: in6_src.c,v 1.53.12.1 2014/08/10 06:56:30 tls Exp $");
     70        1.1    itojun 
     71        1.1    itojun #include "opt_inet.h"
     72        1.1    itojun 
     73        1.1    itojun #include <sys/param.h>
     74        1.1    itojun #include <sys/systm.h>
     75        1.1    itojun #include <sys/malloc.h>
     76        1.1    itojun #include <sys/mbuf.h>
     77        1.1    itojun #include <sys/protosw.h>
     78        1.1    itojun #include <sys/socket.h>
     79        1.1    itojun #include <sys/socketvar.h>
     80        1.1    itojun #include <sys/ioctl.h>
     81        1.1    itojun #include <sys/errno.h>
     82        1.1    itojun #include <sys/time.h>
     83       1.23    rpaulo #include <sys/kernel.h>
     84        1.1    itojun #include <sys/proc.h>
     85       1.26      elad #include <sys/kauth.h>
     86        1.1    itojun 
     87        1.1    itojun #include <net/if.h>
     88       1.23    rpaulo #include <net/if_types.h>
     89        1.1    itojun #include <net/route.h>
     90        1.1    itojun 
     91        1.1    itojun #include <netinet/in.h>
     92        1.1    itojun #include <netinet/in_var.h>
     93        1.1    itojun #include <netinet/in_systm.h>
     94        1.1    itojun #include <netinet/ip.h>
     95        1.1    itojun #include <netinet/in_pcb.h>
     96       1.53  christos #include <netinet/portalgo.h>
     97        1.1    itojun #include <netinet6/in6_var.h>
     98        1.1    itojun #include <netinet/ip6.h>
     99        1.1    itojun #include <netinet6/in6_pcb.h>
    100        1.1    itojun #include <netinet6/ip6_var.h>
    101       1.43   thorpej #include <netinet6/ip6_private.h>
    102        1.1    itojun #include <netinet6/nd6.h>
    103       1.13    itojun #include <netinet6/scope6_var.h>
    104       1.23    rpaulo 
    105       1.23    rpaulo #include <net/net_osdep.h>
    106       1.23    rpaulo 
    107       1.23    rpaulo #ifdef MIP6
    108       1.23    rpaulo #include <netinet6/mip6.h>
    109       1.23    rpaulo #include <netinet6/mip6_var.h>
    110       1.23    rpaulo #include "mip.h"
    111       1.23    rpaulo #if NMIP > 0
    112       1.23    rpaulo #include <net/if_mip.h>
    113       1.23    rpaulo #endif /* NMIP > 0 */
    114       1.23    rpaulo #endif /* MIP6 */
    115       1.23    rpaulo 
    116       1.50    dyoung #include <netinet/tcp_vtw.h>
    117       1.50    dyoung 
    118       1.23    rpaulo #define ADDR_LABEL_NOTAPP (-1)
    119       1.23    rpaulo struct in6_addrpolicy defaultaddrpolicy;
    120       1.23    rpaulo 
    121       1.23    rpaulo #ifdef notyet /* until introducing ND extensions and address selection */
    122       1.23    rpaulo int ip6_prefer_tempaddr = 0;
    123       1.23    rpaulo #endif
    124       1.23    rpaulo 
    125       1.35    dyoung static int selectroute(struct sockaddr_in6 *, struct ip6_pktopts *,
    126       1.35    dyoung 	struct ip6_moptions *, struct route *, struct ifnet **,
    127       1.35    dyoung 	struct rtentry **, int, int);
    128       1.35    dyoung static int in6_selectif(struct sockaddr_in6 *, struct ip6_pktopts *,
    129       1.35    dyoung 	struct ip6_moptions *, struct route *, struct ifnet **);
    130       1.35    dyoung 
    131       1.35    dyoung static struct in6_addrpolicy *lookup_addrsel_policy(struct sockaddr_in6 *);
    132       1.35    dyoung 
    133       1.35    dyoung static void init_policy_queue(void);
    134       1.35    dyoung static int add_addrsel_policyent(struct in6_addrpolicy *);
    135       1.35    dyoung static int delete_addrsel_policyent(struct in6_addrpolicy *);
    136       1.35    dyoung static int walk_addrsel_policy(int (*)(struct in6_addrpolicy *, void *),
    137       1.35    dyoung 				    void *);
    138       1.35    dyoung static int dump_addrsel_policyent(struct in6_addrpolicy *, void *);
    139       1.35    dyoung static struct in6_addrpolicy *match_addrsel_policy(struct sockaddr_in6 *);
    140        1.1    itojun 
    141        1.1    itojun /*
    142        1.5    itojun  * Return an IPv6 address, which is the most appropriate for a given
    143        1.1    itojun  * destination and user specified options.
    144        1.5    itojun  * If necessary, this function lookups the routing table and returns
    145        1.1    itojun  * an entry to the caller for later use.
    146        1.1    itojun  */
    147       1.23    rpaulo #if 0				/* diabled ad-hoc */
    148       1.23    rpaulo #define REPLACE(r) do {\
    149       1.23    rpaulo 	if ((r) < sizeof(ip6stat.ip6s_sources_rule) / \
    150       1.23    rpaulo 		sizeof(ip6stat.ip6s_sources_rule[0])) /* check for safety */ \
    151       1.23    rpaulo 		ip6stat.ip6s_sources_rule[(r)]++; \
    152       1.23    rpaulo 	/* printf("in6_selectsrc: replace %s with %s by %d\n", ia_best ? ip6_sprintf(&ia_best->ia_addr.sin6_addr) : "none", ip6_sprintf(&ia->ia_addr.sin6_addr), (r)); */ \
    153       1.23    rpaulo 	goto replace; \
    154       1.23    rpaulo } while(0)
    155       1.23    rpaulo #define NEXT(r) do {\
    156       1.23    rpaulo 	if ((r) < sizeof(ip6stat.ip6s_sources_rule) / \
    157       1.23    rpaulo 		sizeof(ip6stat.ip6s_sources_rule[0])) /* check for safety */ \
    158       1.23    rpaulo 		ip6stat.ip6s_sources_rule[(r)]++; \
    159       1.23    rpaulo 	/* printf("in6_selectsrc: keep %s against %s by %d\n", ia_best ? ip6_sprintf(&ia_best->ia_addr.sin6_addr) : "none", ip6_sprintf(&ia->ia_addr.sin6_addr), (r)); */ \
    160       1.23    rpaulo 	goto next; 		/* XXX: we can't use 'continue' here */ \
    161       1.23    rpaulo } while(0)
    162       1.23    rpaulo #define BREAK(r) do { \
    163       1.23    rpaulo 	if ((r) < sizeof(ip6stat.ip6s_sources_rule) / \
    164       1.23    rpaulo 		sizeof(ip6stat.ip6s_sources_rule[0])) /* check for safety */ \
    165       1.23    rpaulo 		ip6stat.ip6s_sources_rule[(r)]++; \
    166       1.23    rpaulo 	goto out; 		/* XXX: we can't use 'break' here */ \
    167       1.23    rpaulo } while(0)
    168       1.23    rpaulo #else
    169       1.23    rpaulo #define REPLACE(r) goto replace
    170       1.23    rpaulo #define NEXT(r) goto next
    171       1.23    rpaulo #define BREAK(r) goto out
    172       1.23    rpaulo #endif
    173       1.23    rpaulo 
    174        1.1    itojun struct in6_addr *
    175       1.38  christos in6_selectsrc(struct sockaddr_in6 *dstsock, struct ip6_pktopts *opts,
    176       1.38  christos 	struct ip6_moptions *mopts, struct route *ro, struct in6_addr *laddr,
    177       1.38  christos 	struct ifnet **ifpp, int *errorp)
    178        1.1    itojun {
    179       1.23    rpaulo 	struct in6_addr dst;
    180       1.23    rpaulo 	struct ifnet *ifp = NULL;
    181       1.23    rpaulo 	struct in6_ifaddr *ia = NULL, *ia_best = NULL;
    182        1.1    itojun 	struct in6_pktinfo *pi = NULL;
    183       1.23    rpaulo 	int dst_scope = -1, best_scope = -1, best_matchlen = -1;
    184       1.23    rpaulo 	struct in6_addrpolicy *dst_policy = NULL, *best_policy = NULL;
    185       1.23    rpaulo 	u_int32_t odstzone;
    186       1.28    dyoung 	int error;
    187       1.23    rpaulo #ifdef notyet /* until introducing ND extensions and address selection */
    188       1.23    rpaulo 	int prefer_tempaddr;
    189       1.23    rpaulo #endif
    190       1.23    rpaulo #if defined(MIP6) && NMIP > 0
    191       1.23    rpaulo 	u_int8_t ip6po_usecoa = 0;
    192       1.23    rpaulo #endif /* MIP6 && NMIP > 0 */
    193        1.1    itojun 
    194       1.23    rpaulo 	dst = dstsock->sin6_addr; /* make a copy for local operation */
    195        1.1    itojun 	*errorp = 0;
    196       1.23    rpaulo 	if (ifpp)
    197       1.23    rpaulo 		*ifpp = NULL;
    198        1.1    itojun 
    199        1.1    itojun 	/*
    200       1.28    dyoung 	 * Try to determine the outgoing interface for the given destination.
    201       1.28    dyoung 	 * We do this regardless of whether the socket is bound, since the
    202       1.28    dyoung 	 * caller may need this information as a side effect of the call
    203       1.28    dyoung 	 * to this function (e.g., for identifying the appropriate scope zone
    204       1.28    dyoung 	 * ID).
    205       1.28    dyoung 	 */
    206       1.28    dyoung 	error = in6_selectif(dstsock, opts, mopts, ro, &ifp);
    207       1.28    dyoung 	if (ifpp)
    208       1.28    dyoung 		*ifpp = ifp;
    209       1.28    dyoung 
    210       1.28    dyoung 	/*
    211        1.1    itojun 	 * If the source address is explicitly specified by the caller,
    212       1.23    rpaulo 	 * check if the requested source address is indeed a unicast address
    213       1.23    rpaulo 	 * assigned to the node, and can be used as the packet's source
    214       1.23    rpaulo 	 * address.  If everything is okay, use the address as source.
    215        1.1    itojun 	 */
    216        1.1    itojun 	if (opts && (pi = opts->ip6po_pktinfo) &&
    217       1.23    rpaulo 	    !IN6_IS_ADDR_UNSPECIFIED(&pi->ipi6_addr)) {
    218       1.23    rpaulo 		struct sockaddr_in6 srcsock;
    219       1.23    rpaulo 		struct in6_ifaddr *ia6;
    220       1.23    rpaulo 
    221       1.23    rpaulo 		/*
    222       1.23    rpaulo 		 * Determine the appropriate zone id of the source based on
    223       1.23    rpaulo 		 * the zone of the destination and the outgoing interface.
    224       1.23    rpaulo 		 * If the specified address is ambiguous wrt the scope zone,
    225       1.23    rpaulo 		 * the interface must be specified; otherwise, ifa_ifwithaddr()
    226       1.23    rpaulo 		 * will fail matching the address.
    227       1.23    rpaulo 		 */
    228       1.46    cegger 		memset(&srcsock, 0, sizeof(srcsock));
    229       1.23    rpaulo 		srcsock.sin6_family = AF_INET6;
    230       1.23    rpaulo 		srcsock.sin6_len = sizeof(srcsock);
    231       1.23    rpaulo 		srcsock.sin6_addr = pi->ipi6_addr;
    232       1.23    rpaulo 		if (ifp) {
    233       1.23    rpaulo 			*errorp = in6_setscope(&srcsock.sin6_addr, ifp, NULL);
    234       1.23    rpaulo 			if (*errorp != 0)
    235       1.23    rpaulo 				return (NULL);
    236       1.23    rpaulo 		}
    237       1.23    rpaulo 
    238       1.23    rpaulo 		ia6 = (struct in6_ifaddr *)ifa_ifwithaddr((struct sockaddr *)(&srcsock));
    239       1.23    rpaulo 		if (ia6 == NULL ||
    240       1.23    rpaulo 		    (ia6->ia6_flags & (IN6_IFF_ANYCAST | IN6_IFF_NOTREADY))) {
    241       1.23    rpaulo 			*errorp = EADDRNOTAVAIL;
    242       1.23    rpaulo 			return (NULL);
    243       1.23    rpaulo 		}
    244       1.23    rpaulo 		pi->ipi6_addr = srcsock.sin6_addr; /* XXX: this overrides pi */
    245       1.23    rpaulo 		if (ifpp)
    246       1.23    rpaulo 			*ifpp = ifp;
    247       1.23    rpaulo 		return (&ia6->ia_addr.sin6_addr);
    248       1.23    rpaulo 	}
    249        1.1    itojun 
    250        1.1    itojun 	/*
    251       1.28    dyoung 	 * If the socket has already bound the source, just use it.  We don't
    252       1.28    dyoung 	 * care at the moment whether in6_selectif() succeeded above, even
    253       1.28    dyoung 	 * though it would eventually cause an error.
    254        1.1    itojun 	 */
    255        1.1    itojun 	if (laddr && !IN6_IS_ADDR_UNSPECIFIED(laddr))
    256       1.15    itojun 		return (laddr);
    257        1.1    itojun 
    258        1.1    itojun 	/*
    259       1.28    dyoung 	 * The outgoing interface is crucial in the general selection procedure
    260       1.28    dyoung 	 * below.  If it is not known at this point, we fail.
    261       1.28    dyoung 	 */
    262       1.28    dyoung 	if (ifp == NULL) {
    263       1.28    dyoung 		*errorp = error;
    264       1.28    dyoung 		return (NULL);
    265       1.28    dyoung 	}
    266       1.28    dyoung 
    267       1.28    dyoung 	/*
    268       1.28    dyoung 	 * If the address is not yet determined, choose the best one based on
    269       1.23    rpaulo 	 * the outgoing interface and the destination address.
    270        1.1    itojun 	 */
    271        1.1    itojun 
    272       1.23    rpaulo #if defined(MIP6) && NMIP > 0
    273        1.1    itojun 	/*
    274       1.23    rpaulo 	 * a caller can specify IP6PO_USECOA to not to use a home
    275       1.23    rpaulo 	 * address.  for example, the case that the neighbour
    276       1.23    rpaulo 	 * unreachability detection to the global address.
    277        1.1    itojun 	 */
    278       1.23    rpaulo 	if (opts != NULL &&
    279       1.23    rpaulo 	    (opts->ip6po_flags & IP6PO_USECOA) != 0) {
    280       1.23    rpaulo 		ip6po_usecoa = 1;
    281       1.23    rpaulo 	}
    282       1.23    rpaulo #endif /* MIP6 && NMIP > 0 */
    283       1.23    rpaulo 
    284       1.23    rpaulo #ifdef DIAGNOSTIC
    285       1.23    rpaulo 	if (ifp == NULL)	/* this should not happen */
    286       1.23    rpaulo 		panic("in6_selectsrc: NULL ifp");
    287       1.23    rpaulo #endif
    288       1.23    rpaulo 	*errorp = in6_setscope(&dst, ifp, &odstzone);
    289       1.23    rpaulo 	if (*errorp != 0)
    290       1.23    rpaulo 		return (NULL);
    291       1.23    rpaulo 
    292       1.23    rpaulo 	for (ia = in6_ifaddr; ia; ia = ia->ia_next) {
    293       1.23    rpaulo 		int new_scope = -1, new_matchlen = -1;
    294       1.23    rpaulo 		struct in6_addrpolicy *new_policy = NULL;
    295       1.23    rpaulo 		u_int32_t srczone, osrczone, dstzone;
    296       1.23    rpaulo 		struct in6_addr src;
    297       1.23    rpaulo 		struct ifnet *ifp1 = ia->ia_ifp;
    298       1.23    rpaulo 
    299        1.1    itojun 		/*
    300       1.23    rpaulo 		 * We'll never take an address that breaks the scope zone
    301       1.23    rpaulo 		 * of the destination.  We also skip an address if its zone
    302       1.23    rpaulo 		 * does not contain the outgoing interface.
    303       1.23    rpaulo 		 * XXX: we should probably use sin6_scope_id here.
    304        1.1    itojun 		 */
    305       1.23    rpaulo 		if (in6_setscope(&dst, ifp1, &dstzone) ||
    306       1.23    rpaulo 		    odstzone != dstzone) {
    307       1.23    rpaulo 			continue;
    308       1.23    rpaulo 		}
    309       1.23    rpaulo 		src = ia->ia_addr.sin6_addr;
    310       1.23    rpaulo 		if (in6_setscope(&src, ifp, &osrczone) ||
    311       1.23    rpaulo 		    in6_setscope(&src, ifp1, &srczone) ||
    312       1.23    rpaulo 		    osrczone != srczone) {
    313       1.23    rpaulo 			continue;
    314       1.23    rpaulo 		}
    315       1.23    rpaulo 
    316       1.23    rpaulo 		/* avoid unusable addresses */
    317       1.23    rpaulo 		if ((ia->ia6_flags &
    318       1.23    rpaulo 		     (IN6_IFF_NOTREADY | IN6_IFF_ANYCAST | IN6_IFF_DETACHED))) {
    319       1.23    rpaulo 				continue;
    320       1.23    rpaulo 		}
    321       1.23    rpaulo 		if (!ip6_use_deprecated && IFA6_IS_DEPRECATED(ia))
    322       1.23    rpaulo 			continue;
    323       1.23    rpaulo 
    324       1.23    rpaulo #if defined(MIP6) && NMIP > 0
    325       1.23    rpaulo 		/* avoid unusable home addresses. */
    326       1.23    rpaulo 		if ((ia->ia6_flags & IN6_IFF_HOME) &&
    327       1.23    rpaulo 		    !mip6_ifa6_is_addr_valid_hoa(ia))
    328       1.23    rpaulo 			continue;
    329       1.23    rpaulo #endif /* MIP6 && NMIP > 0 */
    330       1.23    rpaulo 
    331       1.23    rpaulo 		/* Rule 1: Prefer same address */
    332       1.23    rpaulo 		if (IN6_ARE_ADDR_EQUAL(&dst, &ia->ia_addr.sin6_addr)) {
    333       1.23    rpaulo 			ia_best = ia;
    334       1.23    rpaulo 			BREAK(1); /* there should be no better candidate */
    335        1.1    itojun 		}
    336        1.1    itojun 
    337       1.23    rpaulo 		if (ia_best == NULL)
    338       1.23    rpaulo 			REPLACE(0);
    339       1.23    rpaulo 
    340       1.23    rpaulo 		/* Rule 2: Prefer appropriate scope */
    341       1.23    rpaulo 		if (dst_scope < 0)
    342       1.23    rpaulo 			dst_scope = in6_addrscope(&dst);
    343       1.23    rpaulo 		new_scope = in6_addrscope(&ia->ia_addr.sin6_addr);
    344       1.23    rpaulo 		if (IN6_ARE_SCOPE_CMP(best_scope, new_scope) < 0) {
    345       1.23    rpaulo 			if (IN6_ARE_SCOPE_CMP(best_scope, dst_scope) < 0)
    346       1.23    rpaulo 				REPLACE(2);
    347       1.23    rpaulo 			NEXT(2);
    348       1.23    rpaulo 		} else if (IN6_ARE_SCOPE_CMP(new_scope, best_scope) < 0) {
    349       1.23    rpaulo 			if (IN6_ARE_SCOPE_CMP(new_scope, dst_scope) < 0)
    350       1.23    rpaulo 				NEXT(2);
    351       1.23    rpaulo 			REPLACE(2);
    352       1.23    rpaulo 		}
    353        1.1    itojun 
    354       1.23    rpaulo 		/*
    355       1.23    rpaulo 		 * Rule 3: Avoid deprecated addresses.  Note that the case of
    356       1.23    rpaulo 		 * !ip6_use_deprecated is already rejected above.
    357       1.23    rpaulo 		 */
    358       1.23    rpaulo 		if (!IFA6_IS_DEPRECATED(ia_best) && IFA6_IS_DEPRECATED(ia))
    359       1.23    rpaulo 			NEXT(3);
    360       1.23    rpaulo 		if (IFA6_IS_DEPRECATED(ia_best) && !IFA6_IS_DEPRECATED(ia))
    361       1.23    rpaulo 			REPLACE(3);
    362       1.23    rpaulo 
    363       1.23    rpaulo 		/* Rule 4: Prefer home addresses */
    364       1.23    rpaulo #if defined(MIP6) && NMIP > 0
    365       1.23    rpaulo 		if (!MIP6_IS_MN)
    366       1.23    rpaulo 			goto skip_rule4;
    367       1.23    rpaulo 
    368       1.23    rpaulo 		if ((ia_best->ia6_flags & IN6_IFF_HOME) == 0 &&
    369       1.23    rpaulo 		    (ia->ia6_flags & IN6_IFF_HOME) == 0) {
    370       1.23    rpaulo 			/* both address are not home addresses. */
    371       1.23    rpaulo 			goto skip_rule4;
    372       1.23    rpaulo 		}
    373        1.1    itojun 
    374       1.23    rpaulo 		/*
    375       1.23    rpaulo 		 * If SA is simultaneously a home address and care-of
    376       1.23    rpaulo 		 * address and SB is not, then prefer SA. Similarly,
    377       1.23    rpaulo 		 * if SB is simultaneously a home address and care-of
    378       1.23    rpaulo 		 * address and SA is not, then prefer SB.
    379       1.23    rpaulo 		 */
    380       1.23    rpaulo 		if (((ia_best->ia6_flags & IN6_IFF_HOME) != 0 &&
    381       1.23    rpaulo 			ia_best->ia_ifp->if_type != IFT_MIP)
    382       1.23    rpaulo 		    &&
    383       1.23    rpaulo 		    ((ia->ia6_flags & IN6_IFF_HOME) != 0 &&
    384       1.23    rpaulo 			ia->ia_ifp->if_type == IFT_MIP))
    385       1.23    rpaulo 			NEXT(4);
    386       1.23    rpaulo 		if (((ia_best->ia6_flags & IN6_IFF_HOME) != 0 &&
    387       1.23    rpaulo 			ia_best->ia_ifp->if_type == IFT_MIP)
    388       1.23    rpaulo 		    &&
    389       1.23    rpaulo 		    ((ia->ia6_flags & IN6_IFF_HOME) != 0 &&
    390       1.23    rpaulo 			ia->ia_ifp->if_type != IFT_MIP))
    391       1.23    rpaulo 			REPLACE(4);
    392       1.23    rpaulo 		if (ip6po_usecoa == 0) {
    393       1.23    rpaulo 			/*
    394       1.23    rpaulo 			 * If SA is just a home address and SB is just
    395       1.23    rpaulo 			 * a care-of address, then prefer
    396       1.23    rpaulo 			 * SA. Similarly, if SB is just a home address
    397       1.23    rpaulo 			 * and SA is just a care-of address, then
    398       1.23    rpaulo 			 * prefer SB.
    399       1.23    rpaulo 			 */
    400       1.23    rpaulo 			if ((ia_best->ia6_flags & IN6_IFF_HOME) != 0 &&
    401       1.23    rpaulo 			    (ia->ia6_flags & IN6_IFF_HOME) == 0) {
    402       1.23    rpaulo 				NEXT(4);
    403       1.23    rpaulo 			}
    404       1.23    rpaulo 			if ((ia_best->ia6_flags & IN6_IFF_HOME) == 0 &&
    405       1.23    rpaulo 			    (ia->ia6_flags & IN6_IFF_HOME) != 0) {
    406       1.23    rpaulo 				REPLACE(4);
    407       1.23    rpaulo 			}
    408       1.23    rpaulo 		} else {
    409       1.23    rpaulo 			/*
    410       1.23    rpaulo 			 * a sender don't want to use a home address
    411       1.23    rpaulo 			 * because:
    412       1.23    rpaulo 			 *
    413       1.23    rpaulo 			 * 1) we cannot use.  (ex. NS or NA to global
    414       1.23    rpaulo 			 * addresses.)
    415       1.23    rpaulo 			 *
    416       1.23    rpaulo 			 * 2) a user specified not to use.
    417       1.23    rpaulo 			 * (ex. mip6control -u)
    418       1.23    rpaulo 			 */
    419       1.23    rpaulo 			if ((ia_best->ia6_flags & IN6_IFF_HOME) == 0 &&
    420       1.23    rpaulo 			    (ia->ia6_flags & IN6_IFF_HOME) != 0) {
    421       1.23    rpaulo 				/* XXX breaks stat */
    422       1.23    rpaulo 				NEXT(0);
    423       1.23    rpaulo 			}
    424       1.23    rpaulo 			if ((ia_best->ia6_flags & IN6_IFF_HOME) != 0 &&
    425       1.23    rpaulo 			    (ia->ia6_flags & IN6_IFF_HOME) == 0) {
    426       1.23    rpaulo 				/* XXX breaks stat */
    427       1.23    rpaulo 				REPLACE(0);
    428        1.1    itojun 			}
    429       1.23    rpaulo 		}
    430       1.23    rpaulo 	skip_rule4:
    431       1.23    rpaulo #endif /* MIP6 && NMIP > 0 */
    432       1.23    rpaulo 
    433       1.23    rpaulo 		/* Rule 5: Prefer outgoing interface */
    434       1.23    rpaulo 		if (ia_best->ia_ifp == ifp && ia->ia_ifp != ifp)
    435       1.23    rpaulo 			NEXT(5);
    436       1.23    rpaulo 		if (ia_best->ia_ifp != ifp && ia->ia_ifp == ifp)
    437       1.23    rpaulo 			REPLACE(5);
    438       1.23    rpaulo 
    439       1.23    rpaulo 		/*
    440       1.23    rpaulo 		 * Rule 6: Prefer matching label
    441       1.23    rpaulo 		 * Note that best_policy should be non-NULL here.
    442       1.23    rpaulo 		 */
    443       1.23    rpaulo 		if (dst_policy == NULL)
    444       1.23    rpaulo 			dst_policy = lookup_addrsel_policy(dstsock);
    445       1.23    rpaulo 		if (dst_policy->label != ADDR_LABEL_NOTAPP) {
    446       1.23    rpaulo 			new_policy = lookup_addrsel_policy(&ia->ia_addr);
    447       1.23    rpaulo 			if (dst_policy->label == best_policy->label &&
    448       1.23    rpaulo 			    dst_policy->label != new_policy->label)
    449       1.23    rpaulo 				NEXT(6);
    450       1.23    rpaulo 			if (dst_policy->label != best_policy->label &&
    451       1.23    rpaulo 			    dst_policy->label == new_policy->label)
    452       1.23    rpaulo 				REPLACE(6);
    453       1.23    rpaulo 		}
    454       1.23    rpaulo 
    455       1.23    rpaulo 		/*
    456       1.23    rpaulo 		 * Rule 7: Prefer public addresses.
    457       1.23    rpaulo 		 * We allow users to reverse the logic by configuring
    458       1.23    rpaulo 		 * a sysctl variable, so that privacy conscious users can
    459       1.23    rpaulo 		 * always prefer temporary addresses.
    460       1.23    rpaulo 		 */
    461       1.23    rpaulo #ifdef notyet /* until introducing ND extensions and address selection */
    462       1.23    rpaulo 		if (opts == NULL ||
    463       1.23    rpaulo 		    opts->ip6po_prefer_tempaddr == IP6PO_TEMPADDR_SYSTEM) {
    464       1.23    rpaulo 			prefer_tempaddr = ip6_prefer_tempaddr;
    465       1.23    rpaulo 		} else if (opts->ip6po_prefer_tempaddr ==
    466       1.23    rpaulo 		    IP6PO_TEMPADDR_NOTPREFER) {
    467       1.23    rpaulo 			prefer_tempaddr = 0;
    468       1.23    rpaulo 		} else
    469       1.23    rpaulo 			prefer_tempaddr = 1;
    470       1.23    rpaulo 		if (!(ia_best->ia6_flags & IN6_IFF_TEMPORARY) &&
    471       1.23    rpaulo 		    (ia->ia6_flags & IN6_IFF_TEMPORARY)) {
    472       1.23    rpaulo 			if (prefer_tempaddr)
    473       1.23    rpaulo 				REPLACE(7);
    474       1.23    rpaulo 			else
    475       1.23    rpaulo 				NEXT(7);
    476       1.23    rpaulo 		}
    477       1.23    rpaulo 		if ((ia_best->ia6_flags & IN6_IFF_TEMPORARY) &&
    478       1.23    rpaulo 		    !(ia->ia6_flags & IN6_IFF_TEMPORARY)) {
    479       1.23    rpaulo 			if (prefer_tempaddr)
    480       1.23    rpaulo 				NEXT(7);
    481       1.23    rpaulo 			else
    482       1.23    rpaulo 				REPLACE(7);
    483        1.1    itojun 		}
    484       1.23    rpaulo #endif
    485       1.23    rpaulo 
    486       1.23    rpaulo 		/*
    487       1.23    rpaulo 		 * Rule 8: prefer addresses on alive interfaces.
    488       1.23    rpaulo 		 * This is a KAME specific rule.
    489       1.23    rpaulo 		 */
    490       1.23    rpaulo 		if ((ia_best->ia_ifp->if_flags & IFF_UP) &&
    491       1.23    rpaulo 		    !(ia->ia_ifp->if_flags & IFF_UP))
    492       1.23    rpaulo 			NEXT(8);
    493       1.23    rpaulo 		if (!(ia_best->ia_ifp->if_flags & IFF_UP) &&
    494       1.23    rpaulo 		    (ia->ia_ifp->if_flags & IFF_UP))
    495       1.23    rpaulo 			REPLACE(8);
    496       1.23    rpaulo 
    497       1.23    rpaulo 		/*
    498       1.23    rpaulo 		 * Rule 9: prefer addresses on "preferred" interfaces.
    499       1.23    rpaulo 		 * This is a KAME specific rule.
    500       1.23    rpaulo 		 */
    501       1.23    rpaulo #ifdef notyet			/* until introducing address selection */
    502       1.23    rpaulo #define NDI_BEST ND_IFINFO(ia_best->ia_ifp)
    503       1.23    rpaulo #define NDI_NEW  ND_IFINFO(ia->ia_ifp)
    504       1.23    rpaulo 		if ((NDI_BEST->flags & ND6_IFF_PREFER_SOURCE) &&
    505       1.23    rpaulo 		    !(NDI_NEW->flags & ND6_IFF_PREFER_SOURCE))
    506       1.23    rpaulo 			NEXT(9);
    507       1.23    rpaulo 		if (!(NDI_BEST->flags & ND6_IFF_PREFER_SOURCE) &&
    508       1.23    rpaulo 		    (NDI_NEW->flags & ND6_IFF_PREFER_SOURCE))
    509       1.23    rpaulo 			REPLACE(9);
    510       1.23    rpaulo #undef NDI_BEST
    511       1.23    rpaulo #undef NDI_NEW
    512       1.23    rpaulo #endif
    513       1.23    rpaulo 
    514       1.23    rpaulo 		/*
    515       1.23    rpaulo 		 * Rule 14: Use longest matching prefix.
    516       1.23    rpaulo 		 * Note: in the address selection draft, this rule is
    517       1.23    rpaulo 		 * documented as "Rule 8".  However, since it is also
    518       1.23    rpaulo 		 * documented that this rule can be overridden, we assign
    519       1.23    rpaulo 		 * a large number so that it is easy to assign smaller numbers
    520       1.23    rpaulo 		 * to more preferred rules.
    521       1.23    rpaulo 		 */
    522       1.23    rpaulo 		new_matchlen = in6_matchlen(&ia->ia_addr.sin6_addr, &dst);
    523       1.23    rpaulo 		if (best_matchlen < new_matchlen)
    524       1.23    rpaulo 			REPLACE(14);
    525       1.23    rpaulo 		if (new_matchlen < best_matchlen)
    526       1.23    rpaulo 			NEXT(14);
    527       1.23    rpaulo 
    528       1.23    rpaulo 		/* Rule 15 is reserved. */
    529       1.23    rpaulo 
    530       1.23    rpaulo 		/*
    531       1.23    rpaulo 		 * Last resort: just keep the current candidate.
    532       1.23    rpaulo 		 * Or, do we need more rules?
    533       1.23    rpaulo 		 */
    534       1.23    rpaulo 		continue;
    535       1.23    rpaulo 
    536       1.23    rpaulo 	  replace:
    537       1.23    rpaulo 		ia_best = ia;
    538       1.23    rpaulo 		best_scope = (new_scope >= 0 ? new_scope :
    539       1.23    rpaulo 			      in6_addrscope(&ia_best->ia_addr.sin6_addr));
    540       1.23    rpaulo 		best_policy = (new_policy ? new_policy :
    541       1.23    rpaulo 			       lookup_addrsel_policy(&ia_best->ia_addr));
    542       1.23    rpaulo 		best_matchlen = (new_matchlen >= 0 ? new_matchlen :
    543       1.23    rpaulo 				 in6_matchlen(&ia_best->ia_addr.sin6_addr,
    544       1.23    rpaulo 					      &dst));
    545       1.23    rpaulo 
    546       1.23    rpaulo 	  next:
    547       1.23    rpaulo 		continue;
    548       1.23    rpaulo 
    549       1.23    rpaulo 	  out:
    550       1.23    rpaulo 		break;
    551       1.23    rpaulo 	}
    552       1.23    rpaulo 
    553       1.23    rpaulo 	if ((ia = ia_best) == NULL) {
    554       1.23    rpaulo 		*errorp = EADDRNOTAVAIL;
    555       1.23    rpaulo 		return (NULL);
    556       1.23    rpaulo 	}
    557       1.23    rpaulo 
    558       1.23    rpaulo 	return (&ia->ia_addr.sin6_addr);
    559       1.23    rpaulo }
    560       1.23    rpaulo #undef REPLACE
    561       1.23    rpaulo #undef BREAK
    562       1.23    rpaulo #undef NEXT
    563       1.23    rpaulo 
    564       1.23    rpaulo static int
    565       1.38  christos selectroute(struct sockaddr_in6 *dstsock, struct ip6_pktopts *opts,
    566       1.38  christos 	struct ip6_moptions *mopts, struct route *ro, struct ifnet **retifp,
    567       1.38  christos 	struct rtentry **retrt, int clone, int norouteok)
    568       1.23    rpaulo {
    569       1.23    rpaulo 	int error = 0;
    570       1.23    rpaulo 	struct ifnet *ifp = NULL;
    571       1.23    rpaulo 	struct rtentry *rt = NULL;
    572       1.23    rpaulo 	struct sockaddr_in6 *sin6_next;
    573       1.23    rpaulo 	struct in6_pktinfo *pi = NULL;
    574       1.23    rpaulo 	struct in6_addr *dst;
    575       1.23    rpaulo 
    576       1.23    rpaulo 	dst = &dstsock->sin6_addr;
    577       1.23    rpaulo 
    578       1.23    rpaulo #if 0
    579       1.23    rpaulo 	if (dstsock->sin6_addr.s6_addr32[0] == 0 &&
    580       1.23    rpaulo 	    dstsock->sin6_addr.s6_addr32[1] == 0 &&
    581       1.23    rpaulo 	    !IN6_IS_ADDR_LOOPBACK(&dstsock->sin6_addr)) {
    582       1.23    rpaulo 		printf("in6_selectroute: strange destination %s\n",
    583       1.23    rpaulo 		       ip6_sprintf(&dstsock->sin6_addr));
    584       1.23    rpaulo 	} else {
    585       1.23    rpaulo 		printf("in6_selectroute: destination = %s%%%d\n",
    586       1.23    rpaulo 		       ip6_sprintf(&dstsock->sin6_addr),
    587       1.23    rpaulo 		       dstsock->sin6_scope_id); /* for debug */
    588       1.23    rpaulo 	}
    589       1.23    rpaulo #endif
    590       1.23    rpaulo 
    591       1.23    rpaulo 	/* If the caller specify the outgoing interface explicitly, use it. */
    592       1.23    rpaulo 	if (opts && (pi = opts->ip6po_pktinfo) != NULL && pi->ipi6_ifindex) {
    593       1.23    rpaulo 		/* XXX boundary check is assumed to be already done. */
    594  1.53.12.1       tls 		ifp = if_byindex(pi->ipi6_ifindex);
    595       1.23    rpaulo 		if (ifp != NULL &&
    596       1.23    rpaulo 		    (norouteok || retrt == NULL ||
    597       1.23    rpaulo 		    IN6_IS_ADDR_MULTICAST(dst))) {
    598       1.23    rpaulo 			/*
    599       1.23    rpaulo 			 * we do not have to check or get the route for
    600       1.23    rpaulo 			 * multicast.
    601       1.23    rpaulo 			 */
    602       1.23    rpaulo 			goto done;
    603       1.23    rpaulo 		} else
    604       1.23    rpaulo 			goto getroute;
    605        1.1    itojun 	}
    606        1.1    itojun 
    607        1.1    itojun 	/*
    608       1.23    rpaulo 	 * If the destination address is a multicast address and the outgoing
    609       1.23    rpaulo 	 * interface for the address is specified by the caller, use it.
    610        1.1    itojun 	 */
    611       1.23    rpaulo 	if (IN6_IS_ADDR_MULTICAST(dst) &&
    612       1.23    rpaulo 	    mopts != NULL && (ifp = mopts->im6o_multicast_ifp) != NULL) {
    613       1.23    rpaulo 		goto done; /* we do not need a route for multicast. */
    614       1.23    rpaulo 	}
    615       1.23    rpaulo 
    616       1.23    rpaulo   getroute:
    617       1.23    rpaulo 	/*
    618       1.23    rpaulo 	 * If the next hop address for the packet is specified by the caller,
    619       1.23    rpaulo 	 * use it as the gateway.
    620       1.23    rpaulo 	 */
    621       1.23    rpaulo 	if (opts && opts->ip6po_nexthop) {
    622       1.35    dyoung 		struct route *ron;
    623       1.23    rpaulo 
    624       1.23    rpaulo 		sin6_next = satosin6(opts->ip6po_nexthop);
    625       1.23    rpaulo 
    626       1.23    rpaulo 		/* at this moment, we only support AF_INET6 next hops */
    627       1.23    rpaulo 		if (sin6_next->sin6_family != AF_INET6) {
    628       1.23    rpaulo 			error = EAFNOSUPPORT; /* or should we proceed? */
    629       1.23    rpaulo 			goto done;
    630       1.23    rpaulo 		}
    631       1.23    rpaulo 
    632       1.23    rpaulo 		/*
    633       1.23    rpaulo 		 * If the next hop is an IPv6 address, then the node identified
    634       1.23    rpaulo 		 * by that address must be a neighbor of the sending host.
    635       1.23    rpaulo 		 */
    636       1.37    dyoung 		ron = &opts->ip6po_nextroute;
    637       1.37    dyoung 		if ((rt = rtcache_lookup(ron, sin6tosa(sin6_next))) == NULL ||
    638       1.37    dyoung 		    (rt->rt_flags & RTF_GATEWAY) != 0 ||
    639       1.37    dyoung 		    !nd6_is_addr_neighbor(sin6_next, rt->rt_ifp)) {
    640       1.35    dyoung 			rtcache_free(ron);
    641       1.23    rpaulo 			error = EHOSTUNREACH;
    642       1.23    rpaulo 			goto done;
    643       1.23    rpaulo 		}
    644       1.23    rpaulo 		ifp = rt->rt_ifp;
    645       1.23    rpaulo 
    646       1.23    rpaulo 		/*
    647       1.23    rpaulo 		 * When cloning is required, try to allocate a route to the
    648       1.23    rpaulo 		 * destination so that the caller can store path MTU
    649       1.23    rpaulo 		 * information.
    650       1.23    rpaulo 		 */
    651       1.23    rpaulo 		if (!clone)
    652       1.23    rpaulo 			goto done;
    653        1.1    itojun 	}
    654        1.1    itojun 
    655        1.1    itojun 	/*
    656       1.23    rpaulo 	 * Use a cached route if it exists and is valid, else try to allocate
    657       1.23    rpaulo 	 * a new one.  Note that we should check the address family of the
    658       1.13    itojun 	 * cached destination, in case of sharing the cache with IPv4.
    659        1.1    itojun 	 */
    660       1.31    dyoung 	if (ro != NULL) {
    661       1.37    dyoung 		union {
    662       1.37    dyoung 			struct sockaddr		dst;
    663       1.37    dyoung 			struct sockaddr_in6	dst6;
    664       1.37    dyoung 		} u;
    665       1.37    dyoung 
    666       1.37    dyoung 		/* No route yet, so try to acquire one */
    667       1.37    dyoung 		u.dst6 = *dstsock;
    668       1.37    dyoung 		u.dst6.sin6_scope_id = 0;
    669       1.37    dyoung 		rt = rtcache_lookup1(ro, &u.dst, clone);
    670        1.1    itojun 
    671        1.1    itojun 		/*
    672       1.23    rpaulo 		 * do not care about the result if we have the nexthop
    673       1.23    rpaulo 		 * explicitly specified.
    674        1.1    itojun 		 */
    675       1.23    rpaulo 		if (opts && opts->ip6po_nexthop)
    676       1.23    rpaulo 			goto done;
    677        1.1    itojun 
    678       1.37    dyoung 		if (rt == NULL)
    679       1.23    rpaulo 			error = EHOSTUNREACH;
    680       1.33     joerg 		else
    681       1.37    dyoung 			ifp = rt->rt_ifp;
    682       1.23    rpaulo 
    683       1.23    rpaulo 		/*
    684       1.23    rpaulo 		 * Check if the outgoing interface conflicts with
    685       1.23    rpaulo 		 * the interface specified by ipi6_ifindex (if specified).
    686       1.23    rpaulo 		 * Note that loopback interface is always okay.
    687       1.23    rpaulo 		 * (this may happen when we are sending a packet to one of
    688       1.23    rpaulo 		 *  our own addresses.)
    689       1.23    rpaulo 		 */
    690       1.23    rpaulo 		if (opts && opts->ip6po_pktinfo &&
    691       1.23    rpaulo 		    opts->ip6po_pktinfo->ipi6_ifindex) {
    692       1.23    rpaulo 			if (!(ifp->if_flags & IFF_LOOPBACK) &&
    693       1.23    rpaulo 			    ifp->if_index !=
    694       1.23    rpaulo 			    opts->ip6po_pktinfo->ipi6_ifindex) {
    695       1.23    rpaulo 				error = EHOSTUNREACH;
    696       1.23    rpaulo 				goto done;
    697       1.23    rpaulo 			}
    698       1.23    rpaulo 		}
    699       1.23    rpaulo 	}
    700       1.23    rpaulo 
    701       1.23    rpaulo   done:
    702       1.23    rpaulo 	if (ifp == NULL && rt == NULL) {
    703        1.1    itojun 		/*
    704       1.23    rpaulo 		 * This can happen if the caller did not pass a cached route
    705       1.23    rpaulo 		 * nor any other hints.  We treat this case an error.
    706        1.1    itojun 		 */
    707       1.23    rpaulo 		error = EHOSTUNREACH;
    708       1.23    rpaulo 	}
    709       1.23    rpaulo 	if (error == EHOSTUNREACH)
    710       1.43   thorpej 		IP6_STATINC(IP6_STAT_NOROUTE);
    711        1.1    itojun 
    712       1.23    rpaulo 	if (retifp != NULL)
    713       1.23    rpaulo 		*retifp = ifp;
    714       1.23    rpaulo 	if (retrt != NULL)
    715       1.23    rpaulo 		*retrt = rt;	/* rt may be NULL */
    716        1.1    itojun 
    717       1.23    rpaulo 	return (error);
    718       1.23    rpaulo }
    719       1.23    rpaulo 
    720       1.23    rpaulo static int
    721       1.38  christos in6_selectif(struct sockaddr_in6 *dstsock, struct ip6_pktopts *opts,
    722       1.38  christos 	struct ip6_moptions *mopts, struct route *ro, struct ifnet **retifp)
    723       1.23    rpaulo {
    724       1.23    rpaulo 	int error, clone;
    725       1.23    rpaulo 	struct rtentry *rt = NULL;
    726       1.23    rpaulo 
    727       1.23    rpaulo 	clone = IN6_IS_ADDR_MULTICAST(&dstsock->sin6_addr) ? 0 : 1;
    728       1.23    rpaulo 	if ((error = selectroute(dstsock, opts, mopts, ro, retifp,
    729       1.23    rpaulo 	    &rt, clone, 1)) != 0) {
    730       1.23    rpaulo 		return (error);
    731        1.1    itojun 	}
    732        1.1    itojun 
    733       1.23    rpaulo 	/*
    734       1.23    rpaulo 	 * do not use a rejected or black hole route.
    735       1.23    rpaulo 	 * XXX: this check should be done in the L2 output routine.
    736       1.23    rpaulo 	 * However, if we skipped this check here, we'd see the following
    737       1.23    rpaulo 	 * scenario:
    738       1.23    rpaulo 	 * - install a rejected route for a scoped address prefix
    739       1.23    rpaulo 	 *   (like fe80::/10)
    740       1.23    rpaulo 	 * - send a packet to a destination that matches the scoped prefix,
    741       1.23    rpaulo 	 *   with ambiguity about the scope zone.
    742       1.23    rpaulo 	 * - pick the outgoing interface from the route, and disambiguate the
    743       1.23    rpaulo 	 *   scope zone with the interface.
    744       1.23    rpaulo 	 * - ip6_output() would try to get another route with the "new"
    745       1.23    rpaulo 	 *   destination, which may be valid.
    746       1.23    rpaulo 	 * - we'd see no error on output.
    747       1.23    rpaulo 	 * Although this may not be very harmful, it should still be confusing.
    748       1.23    rpaulo 	 * We thus reject the case here.
    749       1.23    rpaulo 	 */
    750       1.23    rpaulo 	if (rt && (rt->rt_flags & (RTF_REJECT | RTF_BLACKHOLE)))
    751       1.23    rpaulo 		return (rt->rt_flags & RTF_HOST ? EHOSTUNREACH : ENETUNREACH);
    752       1.23    rpaulo 
    753       1.23    rpaulo 	/*
    754       1.23    rpaulo 	 * Adjust the "outgoing" interface.  If we're going to loop the packet
    755       1.23    rpaulo 	 * back to ourselves, the ifp would be the loopback interface.
    756       1.23    rpaulo 	 * However, we'd rather know the interface associated to the
    757       1.23    rpaulo 	 * destination address (which should probably be one of our own
    758       1.23    rpaulo 	 * addresses.)
    759       1.23    rpaulo 	 */
    760       1.23    rpaulo 	if (rt && rt->rt_ifa && rt->rt_ifa->ifa_ifp)
    761       1.23    rpaulo 		*retifp = rt->rt_ifa->ifa_ifp;
    762       1.23    rpaulo 
    763       1.15    itojun 	return (0);
    764        1.1    itojun }
    765        1.1    itojun 
    766       1.38  christos /*
    767       1.38  christos  * close - meaningful only for bsdi and freebsd.
    768       1.38  christos  */
    769       1.38  christos 
    770       1.23    rpaulo int
    771       1.38  christos in6_selectroute(struct sockaddr_in6 *dstsock, struct ip6_pktopts *opts,
    772       1.38  christos 	struct ip6_moptions *mopts, struct route *ro, struct ifnet **retifp,
    773       1.38  christos 	struct rtentry **retrt, int clone)
    774       1.23    rpaulo {
    775       1.35    dyoung 	return selectroute(dstsock, opts, mopts, ro, retifp,
    776       1.35    dyoung 	    retrt, clone, 0);
    777       1.23    rpaulo }
    778       1.23    rpaulo 
    779        1.1    itojun /*
    780        1.1    itojun  * Default hop limit selection. The precedence is as follows:
    781        1.1    itojun  * 1. Hoplimit value specified via ioctl.
    782        1.1    itojun  * 2. (If the outgoing interface is detected) the current
    783        1.1    itojun  *     hop limit of the interface specified by router advertisement.
    784        1.1    itojun  * 3. The system default hoplimit.
    785        1.1    itojun */
    786        1.1    itojun int
    787       1.38  christos in6_selecthlim(struct in6pcb *in6p, struct ifnet *ifp)
    788        1.1    itojun {
    789        1.1    itojun 	if (in6p && in6p->in6p_hops >= 0)
    790       1.15    itojun 		return (in6p->in6p_hops);
    791        1.1    itojun 	else if (ifp)
    792       1.15    itojun 		return (ND_IFINFO(ifp)->chlim);
    793        1.1    itojun 	else
    794       1.15    itojun 		return (ip6_defhlim);
    795        1.1    itojun }
    796        1.1    itojun 
    797        1.1    itojun /*
    798        1.1    itojun  * Find an empty port and set it to the specified PCB.
    799        1.1    itojun  */
    800        1.1    itojun int
    801       1.47      elad in6_pcbsetport(struct sockaddr_in6 *sin6, struct in6pcb *in6p, struct lwp *l)
    802        1.1    itojun {
    803        1.1    itojun 	struct socket *so = in6p->in6p_socket;
    804       1.17    itojun 	struct inpcbtable *table = in6p->in6p_table;
    805       1.17    itojun 	u_int16_t lport, *lastport;
    806       1.47      elad 	enum kauth_network_req req;
    807       1.52  christos 	int error = 0;
    808       1.52  christos 
    809        1.1    itojun 	if (in6p->in6p_flags & IN6P_LOWPORT) {
    810        1.3    itojun #ifndef IPNOPRIVPORTS
    811       1.47      elad 		req = KAUTH_REQ_NETWORK_BIND_PRIVPORT;
    812       1.47      elad #else
    813       1.47      elad 		req = KAUTH_REQ_NETWORK_BIND_PORT;
    814        1.3    itojun #endif
    815       1.17    itojun 		lastport = &table->inpt_lastlow;
    816        1.1    itojun 	} else {
    817       1.47      elad 		req = KAUTH_REQ_NETWORK_BIND_PORT;
    818       1.47      elad 
    819       1.17    itojun 		lastport = &table->inpt_lastport;
    820        1.1    itojun 	}
    821       1.23    rpaulo 
    822       1.47      elad 	/* XXX-kauth: KAUTH_REQ_NETWORK_BIND_AUTOASSIGN_{,PRIV}PORT */
    823       1.47      elad 	error = kauth_authorize_network(l->l_cred, KAUTH_NETWORK_BIND, req, so,
    824       1.47      elad 	    sin6, NULL);
    825       1.47      elad 	if (error)
    826       1.48      elad 		return (EACCES);
    827       1.47      elad 
    828       1.52  christos        /*
    829       1.52  christos         * Use RFC6056 randomized port selection
    830       1.52  christos         */
    831       1.53  christos 	error = portalgo_randport(&lport, &in6p->in6p_head, l->l_cred);
    832       1.52  christos 	if (error)
    833       1.52  christos 		return error;
    834       1.47      elad 
    835       1.17    itojun 	in6p->in6p_flags |= IN6P_ANONPORT;
    836       1.17    itojun 	*lastport = lport;
    837       1.17    itojun 	in6p->in6p_lport = htons(lport);
    838       1.17    itojun 	in6_pcbstate(in6p, IN6P_BOUND);
    839       1.15    itojun 	return (0);		/* success */
    840        1.2    itojun }
    841        1.2    itojun 
    842       1.23    rpaulo void
    843       1.39    dyoung addrsel_policy_init(void)
    844       1.23    rpaulo {
    845       1.23    rpaulo 	init_policy_queue();
    846       1.23    rpaulo 
    847       1.23    rpaulo 	/* initialize the "last resort" policy */
    848       1.46    cegger 	memset(&defaultaddrpolicy, 0, sizeof(defaultaddrpolicy));
    849       1.23    rpaulo 	defaultaddrpolicy.label = ADDR_LABEL_NOTAPP;
    850       1.23    rpaulo }
    851       1.23    rpaulo 
    852       1.23    rpaulo static struct in6_addrpolicy *
    853       1.38  christos lookup_addrsel_policy(struct sockaddr_in6 *key)
    854       1.23    rpaulo {
    855       1.23    rpaulo 	struct in6_addrpolicy *match = NULL;
    856       1.23    rpaulo 
    857       1.23    rpaulo 	match = match_addrsel_policy(key);
    858       1.23    rpaulo 
    859       1.23    rpaulo 	if (match == NULL)
    860       1.23    rpaulo 		match = &defaultaddrpolicy;
    861       1.23    rpaulo 	else
    862       1.23    rpaulo 		match->use++;
    863       1.23    rpaulo 
    864       1.23    rpaulo 	return (match);
    865       1.23    rpaulo }
    866       1.23    rpaulo 
    867        1.2    itojun /*
    868       1.23    rpaulo  * Subroutines to manage the address selection policy table via sysctl.
    869        1.2    itojun  */
    870       1.45  christos struct sel_walkarg {
    871       1.23    rpaulo 	size_t	w_total;
    872       1.23    rpaulo 	size_t	w_given;
    873       1.36  christos 	void *	w_where;
    874       1.36  christos 	void *w_limit;
    875       1.23    rpaulo };
    876       1.23    rpaulo 
    877       1.23    rpaulo int
    878       1.30  christos in6_src_sysctl(void *oldp, size_t *oldlenp, void *newp, size_t newlen)
    879       1.23    rpaulo {
    880       1.23    rpaulo 	int error = 0;
    881       1.23    rpaulo 	int s;
    882       1.23    rpaulo 
    883       1.23    rpaulo 	s = splsoftnet();
    884       1.23    rpaulo 
    885       1.23    rpaulo 	if (newp) {
    886       1.23    rpaulo 		error = EPERM;
    887       1.23    rpaulo 		goto end;
    888       1.23    rpaulo 	}
    889       1.23    rpaulo 	if (oldp && oldlenp == NULL) {
    890       1.23    rpaulo 		error = EINVAL;
    891       1.23    rpaulo 		goto end;
    892       1.23    rpaulo 	}
    893       1.23    rpaulo 	if (oldp || oldlenp) {
    894       1.45  christos 		struct sel_walkarg w;
    895       1.24  christos 		size_t oldlen = *oldlenp;
    896       1.23    rpaulo 
    897       1.36  christos 		memset(&w, 0, sizeof(w));
    898       1.23    rpaulo 		w.w_given = oldlen;
    899       1.23    rpaulo 		w.w_where = oldp;
    900       1.23    rpaulo 		if (oldp)
    901       1.36  christos 			w.w_limit = (char *)oldp + oldlen;
    902       1.23    rpaulo 
    903       1.23    rpaulo 		error = walk_addrsel_policy(dump_addrsel_policyent, &w);
    904       1.23    rpaulo 
    905       1.23    rpaulo 		*oldlenp = w.w_total;
    906       1.23    rpaulo 		if (oldp && w.w_total > oldlen && error == 0)
    907       1.23    rpaulo 			error = ENOMEM;
    908       1.23    rpaulo 	}
    909       1.23    rpaulo 
    910       1.23    rpaulo   end:
    911       1.23    rpaulo 	splx(s);
    912       1.23    rpaulo 
    913       1.23    rpaulo 	return (error);
    914       1.23    rpaulo }
    915       1.23    rpaulo 
    916        1.2    itojun int
    917       1.38  christos in6_src_ioctl(u_long cmd, void *data)
    918        1.2    itojun {
    919       1.23    rpaulo 	int i;
    920       1.23    rpaulo 	struct in6_addrpolicy ent0;
    921        1.2    itojun 
    922       1.23    rpaulo 	if (cmd != SIOCAADDRCTL_POLICY && cmd != SIOCDADDRCTL_POLICY)
    923       1.23    rpaulo 		return (EOPNOTSUPP); /* check for safety */
    924        1.2    itojun 
    925       1.23    rpaulo 	ent0 = *(struct in6_addrpolicy *)data;
    926        1.2    itojun 
    927       1.23    rpaulo 	if (ent0.label == ADDR_LABEL_NOTAPP)
    928       1.23    rpaulo 		return (EINVAL);
    929       1.23    rpaulo 	/* check if the prefix mask is consecutive. */
    930       1.23    rpaulo 	if (in6_mask2len(&ent0.addrmask.sin6_addr, NULL) < 0)
    931       1.23    rpaulo 		return (EINVAL);
    932       1.23    rpaulo 	/* clear trailing garbages (if any) of the prefix address. */
    933       1.23    rpaulo 	for (i = 0; i < 4; i++) {
    934       1.23    rpaulo 		ent0.addr.sin6_addr.s6_addr32[i] &=
    935       1.23    rpaulo 			ent0.addrmask.sin6_addr.s6_addr32[i];
    936       1.23    rpaulo 	}
    937       1.23    rpaulo 	ent0.use = 0;
    938        1.2    itojun 
    939       1.23    rpaulo 	switch (cmd) {
    940       1.23    rpaulo 	case SIOCAADDRCTL_POLICY:
    941       1.23    rpaulo 		return (add_addrsel_policyent(&ent0));
    942       1.23    rpaulo 	case SIOCDADDRCTL_POLICY:
    943       1.23    rpaulo 		return (delete_addrsel_policyent(&ent0));
    944        1.2    itojun 	}
    945        1.2    itojun 
    946       1.23    rpaulo 	return (0);		/* XXX: compromise compilers */
    947        1.2    itojun }
    948        1.2    itojun 
    949        1.2    itojun /*
    950       1.23    rpaulo  * The followings are implementation of the policy table using a
    951       1.23    rpaulo  * simple tail queue.
    952       1.23    rpaulo  * XXX such details should be hidden.
    953       1.23    rpaulo  * XXX implementation using binary tree should be more efficient.
    954        1.2    itojun  */
    955       1.23    rpaulo struct addrsel_policyent {
    956       1.23    rpaulo 	TAILQ_ENTRY(addrsel_policyent) ape_entry;
    957       1.23    rpaulo 	struct in6_addrpolicy ape_policy;
    958       1.23    rpaulo };
    959       1.23    rpaulo 
    960       1.23    rpaulo TAILQ_HEAD(addrsel_policyhead, addrsel_policyent);
    961       1.23    rpaulo 
    962       1.23    rpaulo struct addrsel_policyhead addrsel_policytab;
    963       1.23    rpaulo 
    964       1.23    rpaulo static void
    965       1.41      matt init_policy_queue(void)
    966       1.23    rpaulo {
    967       1.23    rpaulo 	TAILQ_INIT(&addrsel_policytab);
    968       1.23    rpaulo }
    969       1.23    rpaulo 
    970       1.23    rpaulo static int
    971       1.38  christos add_addrsel_policyent(struct in6_addrpolicy *newpolicy)
    972       1.23    rpaulo {
    973       1.23    rpaulo 	struct addrsel_policyent *new, *pol;
    974       1.23    rpaulo 
    975       1.23    rpaulo 	/* duplication check */
    976       1.23    rpaulo 	for (pol = TAILQ_FIRST(&addrsel_policytab); pol;
    977       1.23    rpaulo 	     pol = TAILQ_NEXT(pol, ape_entry)) {
    978       1.23    rpaulo 		if (IN6_ARE_ADDR_EQUAL(&newpolicy->addr.sin6_addr,
    979       1.23    rpaulo 		    &pol->ape_policy.addr.sin6_addr) &&
    980       1.23    rpaulo 		    IN6_ARE_ADDR_EQUAL(&newpolicy->addrmask.sin6_addr,
    981       1.23    rpaulo 		    &pol->ape_policy.addrmask.sin6_addr)) {
    982       1.23    rpaulo 			return (EEXIST);	/* or override it? */
    983       1.23    rpaulo 		}
    984       1.23    rpaulo 	}
    985       1.23    rpaulo 
    986       1.44    cegger 	new = malloc(sizeof(*new), M_IFADDR, M_WAITOK|M_ZERO);
    987       1.23    rpaulo 
    988       1.23    rpaulo 	/* XXX: should validate entry */
    989       1.23    rpaulo 	new->ape_policy = *newpolicy;
    990       1.23    rpaulo 
    991       1.23    rpaulo 	TAILQ_INSERT_TAIL(&addrsel_policytab, new, ape_entry);
    992       1.23    rpaulo 
    993       1.23    rpaulo 	return (0);
    994       1.23    rpaulo }
    995       1.23    rpaulo 
    996       1.23    rpaulo static int
    997       1.38  christos delete_addrsel_policyent(struct in6_addrpolicy *key)
    998        1.2    itojun {
    999       1.23    rpaulo 	struct addrsel_policyent *pol;
   1000       1.23    rpaulo 
   1001       1.23    rpaulo 	/* search for the entry in the table */
   1002       1.23    rpaulo 	for (pol = TAILQ_FIRST(&addrsel_policytab); pol;
   1003       1.23    rpaulo 	     pol = TAILQ_NEXT(pol, ape_entry)) {
   1004       1.23    rpaulo 		if (IN6_ARE_ADDR_EQUAL(&key->addr.sin6_addr,
   1005       1.23    rpaulo 		    &pol->ape_policy.addr.sin6_addr) &&
   1006       1.23    rpaulo 		    IN6_ARE_ADDR_EQUAL(&key->addrmask.sin6_addr,
   1007       1.23    rpaulo 		    &pol->ape_policy.addrmask.sin6_addr)) {
   1008       1.23    rpaulo 			break;
   1009       1.23    rpaulo 		}
   1010       1.23    rpaulo 	}
   1011       1.23    rpaulo 	if (pol == NULL) {
   1012       1.23    rpaulo 		return (ESRCH);
   1013       1.23    rpaulo 	}
   1014        1.2    itojun 
   1015       1.23    rpaulo 	TAILQ_REMOVE(&addrsel_policytab, pol, ape_entry);
   1016        1.2    itojun 
   1017       1.23    rpaulo 	return (0);
   1018       1.23    rpaulo }
   1019       1.23    rpaulo 
   1020       1.23    rpaulo static int
   1021       1.35    dyoung walk_addrsel_policy(int (*callback)(struct in6_addrpolicy *, void *), void *w)
   1022       1.23    rpaulo {
   1023       1.23    rpaulo 	struct addrsel_policyent *pol;
   1024       1.23    rpaulo 	int error = 0;
   1025        1.2    itojun 
   1026       1.35    dyoung 	TAILQ_FOREACH(pol, &addrsel_policytab, ape_entry) {
   1027       1.35    dyoung 		if ((error = (*callback)(&pol->ape_policy, w)) != 0)
   1028       1.35    dyoung 			return error;
   1029        1.2    itojun 	}
   1030        1.2    itojun 
   1031       1.35    dyoung 	return error;
   1032        1.5    itojun }
   1033        1.5    itojun 
   1034       1.23    rpaulo static int
   1035       1.35    dyoung dump_addrsel_policyent(struct in6_addrpolicy *pol, void *arg)
   1036       1.23    rpaulo {
   1037       1.23    rpaulo 	int error = 0;
   1038       1.45  christos 	struct sel_walkarg *w = arg;
   1039       1.23    rpaulo 
   1040       1.36  christos 	if (w->w_where && (char *)w->w_where + sizeof(*pol) <= (char *)w->w_limit) {
   1041       1.23    rpaulo 		if ((error = copyout(pol, w->w_where, sizeof(*pol))) != 0)
   1042       1.35    dyoung 			return error;
   1043       1.36  christos 		w->w_where = (char *)w->w_where + sizeof(*pol);
   1044       1.23    rpaulo 	}
   1045       1.23    rpaulo 	w->w_total += sizeof(*pol);
   1046       1.23    rpaulo 
   1047       1.35    dyoung 	return error;
   1048       1.23    rpaulo }
   1049       1.23    rpaulo 
   1050       1.23    rpaulo static struct in6_addrpolicy *
   1051       1.38  christos match_addrsel_policy(struct sockaddr_in6 *key)
   1052        1.5    itojun {
   1053       1.23    rpaulo 	struct addrsel_policyent *pent;
   1054       1.23    rpaulo 	struct in6_addrpolicy *bestpol = NULL, *pol;
   1055       1.23    rpaulo 	int matchlen, bestmatchlen = -1;
   1056       1.23    rpaulo 	u_char *mp, *ep, *k, *p, m;
   1057       1.23    rpaulo 
   1058       1.23    rpaulo 	for (pent = TAILQ_FIRST(&addrsel_policytab); pent;
   1059       1.23    rpaulo 	     pent = TAILQ_NEXT(pent, ape_entry)) {
   1060       1.23    rpaulo 		matchlen = 0;
   1061       1.23    rpaulo 
   1062       1.23    rpaulo 		pol = &pent->ape_policy;
   1063       1.23    rpaulo 		mp = (u_char *)&pol->addrmask.sin6_addr;
   1064       1.23    rpaulo 		ep = mp + 16;	/* XXX: scope field? */
   1065       1.23    rpaulo 		k = (u_char *)&key->sin6_addr;
   1066       1.23    rpaulo 		p = (u_char *)&pol->addr.sin6_addr;
   1067       1.23    rpaulo 		for (; mp < ep && *mp; mp++, k++, p++) {
   1068       1.23    rpaulo 			m = *mp;
   1069       1.23    rpaulo 			if ((*k & m) != *p)
   1070       1.23    rpaulo 				goto next; /* not match */
   1071       1.23    rpaulo 			if (m == 0xff) /* short cut for a typical case */
   1072       1.23    rpaulo 				matchlen += 8;
   1073       1.23    rpaulo 			else {
   1074       1.23    rpaulo 				while (m >= 0x80) {
   1075       1.23    rpaulo 					matchlen++;
   1076       1.23    rpaulo 					m <<= 1;
   1077       1.23    rpaulo 				}
   1078       1.23    rpaulo 			}
   1079       1.23    rpaulo 		}
   1080       1.23    rpaulo 
   1081       1.23    rpaulo 		/* matched.  check if this is better than the current best. */
   1082       1.23    rpaulo 		if (bestpol == NULL ||
   1083       1.23    rpaulo 		    matchlen > bestmatchlen) {
   1084       1.23    rpaulo 			bestpol = pol;
   1085       1.23    rpaulo 			bestmatchlen = matchlen;
   1086       1.23    rpaulo 		}
   1087       1.23    rpaulo 
   1088       1.23    rpaulo 	  next:
   1089       1.23    rpaulo 		continue;
   1090       1.23    rpaulo 	}
   1091       1.23    rpaulo 
   1092       1.23    rpaulo 	return (bestpol);
   1093        1.1    itojun }
   1094