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ip_encap.c revision 1.71.2.1
      1  1.71.2.1    martin /*	$NetBSD: ip_encap.c,v 1.71.2.1 2020/01/23 10:14:30 martin Exp $	*/
      2       1.7    itojun /*	$KAME: ip_encap.c,v 1.73 2001/10/02 08:30:58 itojun 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  * My grandfather said that there's a devil inside tunnelling technology...
     34       1.1    itojun  *
     35       1.1    itojun  * We have surprisingly many protocols that want packets with IP protocol
     36       1.1    itojun  * #4 or #41.  Here's a list of protocols that want protocol #41:
     37       1.1    itojun  *	RFC1933 configured tunnel
     38       1.1    itojun  *	RFC1933 automatic tunnel
     39       1.1    itojun  *	RFC2401 IPsec tunnel
     40       1.1    itojun  *	RFC2473 IPv6 generic packet tunnelling
     41       1.1    itojun  *	RFC2529 6over4 tunnel
     42       1.7    itojun  *	RFC3056 6to4 tunnel
     43       1.7    itojun  *	isatap tunnel
     44       1.1    itojun  *	mobile-ip6 (uses RFC2473)
     45       1.1    itojun  * Here's a list of protocol that want protocol #4:
     46       1.1    itojun  *	RFC1853 IPv4-in-IPv4 tunnelling
     47       1.1    itojun  *	RFC2003 IPv4 encapsulation within IPv4
     48       1.1    itojun  *	RFC2344 reverse tunnelling for mobile-ip4
     49       1.1    itojun  *	RFC2401 IPsec tunnel
     50       1.1    itojun  * Well, what can I say.  They impose different en/decapsulation mechanism
     51       1.1    itojun  * from each other, so they need separate protocol handler.  The only one
     52       1.1    itojun  * we can easily determine by protocol # is IPsec, which always has
     53       1.1    itojun  * AH/ESP/IPComp header right after outer IP header.
     54       1.1    itojun  *
     55       1.1    itojun  * So, clearly good old protosw does not work for protocol #4 and #41.
     56       1.1    itojun  * The code will let you match protocol via src/dst address pair.
     57       1.1    itojun  */
     58       1.1    itojun /* XXX is M_NETADDR correct? */
     59       1.6     lukem 
     60       1.7    itojun /*
     61      1.55  knakahar  * With USE_RADIX the code will use radix table for tunnel lookup, for
     62       1.7    itojun  * tunnels registered with encap_attach() with a addr/mask pair.
     63       1.7    itojun  * Faster on machines with thousands of tunnel registerations (= interfaces).
     64       1.7    itojun  *
     65       1.7    itojun  * The code assumes that radix table code can handle non-continuous netmask,
     66       1.7    itojun  * as it will pass radix table memory region with (src + dst) sockaddr pair.
     67       1.7    itojun  */
     68      1.55  knakahar #define USE_RADIX
     69       1.7    itojun 
     70       1.6     lukem #include <sys/cdefs.h>
     71  1.71.2.1    martin __KERNEL_RCSID(0, "$NetBSD: ip_encap.c,v 1.71.2.1 2020/01/23 10:14:30 martin Exp $");
     72       1.1    itojun 
     73      1.46     pooka #ifdef _KERNEL_OPT
     74       1.4    itojun #include "opt_mrouting.h"
     75       1.4    itojun #include "opt_inet.h"
     76      1.61  knakahar #include "opt_net_mpsafe.h"
     77      1.46     pooka #endif
     78       1.1    itojun 
     79       1.1    itojun #include <sys/param.h>
     80       1.1    itojun #include <sys/systm.h>
     81       1.1    itojun #include <sys/socket.h>
     82      1.71  knakahar #include <sys/socketvar.h> /* for softnet_lock */
     83       1.1    itojun #include <sys/sockio.h>
     84       1.1    itojun #include <sys/mbuf.h>
     85       1.1    itojun #include <sys/errno.h>
     86       1.4    itojun #include <sys/queue.h>
     87      1.47  knakahar #include <sys/kmem.h>
     88      1.56  knakahar #include <sys/mutex.h>
     89      1.59  knakahar #include <sys/condvar.h>
     90      1.56  knakahar #include <sys/psref.h>
     91      1.56  knakahar #include <sys/pslist.h>
     92       1.1    itojun 
     93       1.1    itojun #include <net/if.h>
     94       1.1    itojun 
     95       1.1    itojun #include <netinet/in.h>
     96       1.1    itojun #include <netinet/in_systm.h>
     97       1.1    itojun #include <netinet/ip.h>
     98       1.1    itojun #include <netinet/ip_var.h>
     99       1.1    itojun #include <netinet/ip_encap.h>
    100       1.1    itojun #ifdef MROUTING
    101       1.1    itojun #include <netinet/ip_mroute.h>
    102       1.1    itojun #endif /* MROUTING */
    103       1.1    itojun 
    104       1.1    itojun #ifdef INET6
    105       1.1    itojun #include <netinet/ip6.h>
    106       1.1    itojun #include <netinet6/ip6_var.h>
    107      1.51  knakahar #include <netinet6/ip6protosw.h> /* for struct ip6ctlparam */
    108       1.7    itojun #include <netinet6/in6_var.h>
    109       1.7    itojun #include <netinet6/in6_pcb.h>
    110       1.7    itojun #include <netinet/icmp6.h>
    111       1.1    itojun #endif
    112       1.1    itojun 
    113      1.61  knakahar #ifdef NET_MPSAFE
    114      1.61  knakahar #define ENCAP_MPSAFE	1
    115      1.61  knakahar #endif
    116      1.61  knakahar 
    117       1.7    itojun enum direction { INBOUND, OUTBOUND };
    118       1.7    itojun 
    119       1.7    itojun #ifdef INET
    120      1.56  knakahar static struct encaptab *encap4_lookup(struct mbuf *, int, int, enum direction,
    121      1.56  knakahar     struct psref *);
    122       1.7    itojun #endif
    123       1.7    itojun #ifdef INET6
    124      1.56  knakahar static struct encaptab *encap6_lookup(struct mbuf *, int, int, enum direction,
    125      1.56  knakahar     struct psref *);
    126       1.7    itojun #endif
    127      1.22     perry static int encap_add(struct encaptab *);
    128      1.22     perry static int encap_remove(struct encaptab *);
    129      1.22     perry static int encap_afcheck(int, const struct sockaddr *, const struct sockaddr *);
    130      1.55  knakahar #ifdef USE_RADIX
    131      1.22     perry static struct radix_node_head *encap_rnh(int);
    132      1.22     perry static int mask_matchlen(const struct sockaddr *);
    133      1.55  knakahar #else
    134      1.55  knakahar static int mask_match(const struct encaptab *, const struct sockaddr *,
    135      1.55  knakahar 		const struct sockaddr *);
    136      1.55  knakahar #endif
    137       1.1    itojun 
    138      1.56  knakahar /*
    139      1.56  knakahar  * In encap[46]_lookup(), ep->func can sleep(e.g. rtalloc1) while walking
    140      1.56  knakahar  * encap_table. So, it cannot use pserialize_read_enter()
    141      1.56  knakahar  */
    142      1.56  knakahar static struct {
    143      1.56  knakahar 	struct pslist_head	list;
    144      1.56  knakahar 	pserialize_t		psz;
    145      1.56  knakahar 	struct psref_class	*elem_class; /* for the element of et_list */
    146      1.56  knakahar } encaptab  __cacheline_aligned = {
    147      1.56  knakahar 	.list = PSLIST_INITIALIZER,
    148      1.56  knakahar };
    149      1.56  knakahar #define encap_table encaptab.list
    150       1.1    itojun 
    151      1.59  knakahar static struct {
    152      1.59  knakahar 	kmutex_t	lock;
    153      1.59  knakahar 	kcondvar_t	cv;
    154      1.59  knakahar 	struct lwp	*busy;
    155      1.59  knakahar } encap_whole __cacheline_aligned;
    156      1.59  knakahar 
    157      1.55  knakahar #ifdef USE_RADIX
    158       1.7    itojun struct radix_node_head *encap_head[2];	/* 0 for AF_INET, 1 for AF_INET6 */
    159      1.57  knakahar static bool encap_head_updating = false;
    160      1.55  knakahar #endif
    161       1.7    itojun 
    162      1.63     ozaki static bool encap_initialized = false;
    163      1.59  knakahar /*
    164      1.59  knakahar  * must be done before other encap interfaces initialization.
    165      1.59  knakahar  */
    166      1.59  knakahar void
    167      1.59  knakahar encapinit(void)
    168      1.59  knakahar {
    169      1.59  knakahar 
    170      1.63     ozaki 	if (encap_initialized)
    171      1.63     ozaki 		return;
    172      1.63     ozaki 
    173      1.60  knakahar 	encaptab.psz = pserialize_create();
    174      1.60  knakahar 	encaptab.elem_class = psref_class_create("encapelem", IPL_SOFTNET);
    175      1.60  knakahar 
    176      1.59  knakahar 	mutex_init(&encap_whole.lock, MUTEX_DEFAULT, IPL_NONE);
    177      1.59  knakahar 	cv_init(&encap_whole.cv, "ip_encap cv");
    178      1.59  knakahar 	encap_whole.busy = NULL;
    179      1.63     ozaki 
    180      1.63     ozaki 	encap_initialized = true;
    181      1.59  knakahar }
    182      1.59  knakahar 
    183       1.1    itojun void
    184      1.23     perry encap_init(void)
    185       1.1    itojun {
    186       1.7    itojun 	static int initialized = 0;
    187       1.7    itojun 
    188       1.7    itojun 	if (initialized)
    189       1.7    itojun 		return;
    190       1.7    itojun 	initialized++;
    191       1.1    itojun #if 0
    192       1.1    itojun 	/*
    193       1.1    itojun 	 * we cannot use LIST_INIT() here, since drivers may want to call
    194       1.4    itojun 	 * encap_attach(), on driver attach.  encap_init() will be called
    195       1.1    itojun 	 * on AF_INET{,6} initialization, which happens after driver
    196       1.1    itojun 	 * initialization - using LIST_INIT() here can nuke encap_attach()
    197       1.1    itojun 	 * from drivers.
    198       1.1    itojun 	 */
    199      1.56  knakahar 	PSLIST_INIT(&encap_table);
    200       1.1    itojun #endif
    201       1.7    itojun 
    202      1.55  knakahar #ifdef USE_RADIX
    203       1.7    itojun 	/*
    204      1.38     pooka 	 * initialize radix lookup table when the radix subsystem is inited.
    205       1.7    itojun 	 */
    206      1.38     pooka 	rn_delayedinit((void *)&encap_head[0],
    207      1.38     pooka 	    sizeof(struct sockaddr_pack) << 3);
    208       1.7    itojun #ifdef INET6
    209      1.38     pooka 	rn_delayedinit((void *)&encap_head[1],
    210      1.38     pooka 	    sizeof(struct sockaddr_pack) << 3);
    211       1.7    itojun #endif
    212      1.55  knakahar #endif
    213       1.1    itojun }
    214       1.1    itojun 
    215       1.4    itojun #ifdef INET
    216       1.7    itojun static struct encaptab *
    217      1.56  knakahar encap4_lookup(struct mbuf *m, int off, int proto, enum direction dir,
    218      1.56  knakahar     struct psref *match_psref)
    219       1.1    itojun {
    220       1.1    itojun 	struct ip *ip;
    221      1.33     pooka 	struct ip_pack4 pack;
    222       1.1    itojun 	struct encaptab *ep, *match;
    223       1.1    itojun 	int prio, matchprio;
    224      1.56  knakahar 	int s;
    225      1.55  knakahar #ifdef USE_RADIX
    226       1.7    itojun 	struct radix_node_head *rnh = encap_rnh(AF_INET);
    227       1.7    itojun 	struct radix_node *rn;
    228      1.55  knakahar #endif
    229       1.1    itojun 
    230      1.41     ozaki 	KASSERT(m->m_len >= sizeof(*ip));
    231      1.41     ozaki 
    232       1.1    itojun 	ip = mtod(m, struct ip *);
    233       1.1    itojun 
    234      1.35    cegger 	memset(&pack, 0, sizeof(pack));
    235       1.7    itojun 	pack.p.sp_len = sizeof(pack);
    236       1.7    itojun 	pack.mine.sin_family = pack.yours.sin_family = AF_INET;
    237       1.7    itojun 	pack.mine.sin_len = pack.yours.sin_len = sizeof(struct sockaddr_in);
    238       1.7    itojun 	if (dir == INBOUND) {
    239       1.7    itojun 		pack.mine.sin_addr = ip->ip_dst;
    240       1.7    itojun 		pack.yours.sin_addr = ip->ip_src;
    241       1.7    itojun 	} else {
    242       1.7    itojun 		pack.mine.sin_addr = ip->ip_src;
    243       1.7    itojun 		pack.yours.sin_addr = ip->ip_dst;
    244       1.7    itojun 	}
    245       1.1    itojun 
    246       1.1    itojun 	match = NULL;
    247       1.1    itojun 	matchprio = 0;
    248       1.7    itojun 
    249      1.56  knakahar 	s = pserialize_read_enter();
    250      1.55  knakahar #ifdef USE_RADIX
    251      1.57  knakahar 	if (encap_head_updating) {
    252      1.57  knakahar 		/*
    253      1.57  knakahar 		 * Update in progress. Do nothing.
    254      1.57  knakahar 		 */
    255      1.57  knakahar 		pserialize_read_exit(s);
    256      1.57  knakahar 		return NULL;
    257      1.57  knakahar 	}
    258      1.57  knakahar 
    259      1.30  christos 	rn = rnh->rnh_matchaddr((void *)&pack, rnh);
    260       1.7    itojun 	if (rn && (rn->rn_flags & RNF_ROOT) == 0) {
    261      1.56  knakahar 		struct encaptab *encapp = (struct encaptab *)rn;
    262      1.56  knakahar 
    263      1.56  knakahar 		psref_acquire(match_psref, &encapp->psref,
    264      1.56  knakahar 		    encaptab.elem_class);
    265      1.56  knakahar 		match = encapp;
    266       1.7    itojun 		matchprio = mask_matchlen(match->srcmask) +
    267       1.7    itojun 		    mask_matchlen(match->dstmask);
    268       1.7    itojun 	}
    269      1.55  knakahar #endif
    270      1.56  knakahar 	PSLIST_READER_FOREACH(ep, &encap_table, struct encaptab, chain) {
    271      1.56  knakahar 		struct psref elem_psref;
    272      1.56  knakahar 
    273       1.1    itojun 		if (ep->af != AF_INET)
    274       1.1    itojun 			continue;
    275       1.1    itojun 		if (ep->proto >= 0 && ep->proto != proto)
    276       1.1    itojun 			continue;
    277      1.56  knakahar 
    278      1.56  knakahar 		psref_acquire(&elem_psref, &ep->psref,
    279      1.56  knakahar 		    encaptab.elem_class);
    280      1.56  knakahar 		if (ep->func) {
    281      1.56  knakahar 			pserialize_read_exit(s);
    282      1.56  knakahar 			/* ep->func is sleepable. e.g. rtalloc1 */
    283       1.1    itojun 			prio = (*ep->func)(m, off, proto, ep->arg);
    284      1.56  knakahar 			s = pserialize_read_enter();
    285      1.56  knakahar 		} else {
    286      1.55  knakahar #ifdef USE_RADIX
    287      1.56  knakahar 			psref_release(&elem_psref, &ep->psref,
    288      1.56  knakahar 			    encaptab.elem_class);
    289       1.7    itojun 			continue;
    290      1.55  knakahar #else
    291      1.55  knakahar 			prio = mask_match(ep, (struct sockaddr *)&pack.mine,
    292      1.55  knakahar 			    (struct sockaddr *)&pack.yours);
    293      1.55  knakahar #endif
    294      1.55  knakahar 		}
    295       1.1    itojun 
    296       1.1    itojun 		/*
    297       1.1    itojun 		 * We prioritize the matches by using bit length of the
    298       1.1    itojun 		 * matches.  mask_match() and user-supplied matching function
    299       1.1    itojun 		 * should return the bit length of the matches (for example,
    300       1.1    itojun 		 * if both src/dst are matched for IPv4, 64 should be returned).
    301       1.1    itojun 		 * 0 or negative return value means "it did not match".
    302       1.1    itojun 		 *
    303       1.1    itojun 		 * The question is, since we have two "mask" portion, we
    304       1.1    itojun 		 * cannot really define total order between entries.
    305       1.1    itojun 		 * For example, which of these should be preferred?
    306       1.1    itojun 		 * mask_match() returns 48 (32 + 16) for both of them.
    307       1.1    itojun 		 *	src=3ffe::/16, dst=3ffe:501::/32
    308       1.1    itojun 		 *	src=3ffe:501::/32, dst=3ffe::/16
    309       1.1    itojun 		 *
    310       1.1    itojun 		 * We need to loop through all the possible candidates
    311       1.1    itojun 		 * to get the best match - the search takes O(n) for
    312       1.1    itojun 		 * n attachments (i.e. interfaces).
    313       1.7    itojun 		 *
    314       1.7    itojun 		 * For radix-based lookup, I guess source takes precedence.
    315       1.7    itojun 		 * See rn_{refines,lexobetter} for the correct answer.
    316       1.1    itojun 		 */
    317      1.56  knakahar 		if (prio <= 0) {
    318      1.56  knakahar 			psref_release(&elem_psref, &ep->psref,
    319      1.56  knakahar 			    encaptab.elem_class);
    320       1.1    itojun 			continue;
    321      1.56  knakahar 		}
    322       1.1    itojun 		if (prio > matchprio) {
    323      1.56  knakahar 			/* release last matched ep */
    324      1.56  knakahar 			if (match != NULL)
    325      1.56  knakahar 				psref_release(match_psref, &match->psref,
    326      1.56  knakahar 				    encaptab.elem_class);
    327      1.56  knakahar 
    328      1.56  knakahar 			psref_copy(match_psref, &elem_psref,
    329      1.56  knakahar 			    encaptab.elem_class);
    330       1.1    itojun 			matchprio = prio;
    331       1.1    itojun 			match = ep;
    332       1.1    itojun 		}
    333      1.56  knakahar 		KASSERTMSG((match == NULL) || psref_held(&match->psref,
    334      1.56  knakahar 			encaptab.elem_class),
    335      1.56  knakahar 		    "current match = %p, but not hold its psref", match);
    336      1.56  knakahar 
    337      1.56  knakahar 		psref_release(&elem_psref, &ep->psref,
    338      1.56  knakahar 		    encaptab.elem_class);
    339       1.1    itojun 	}
    340      1.56  knakahar 	pserialize_read_exit(s);
    341       1.1    itojun 
    342       1.7    itojun 	return match;
    343       1.7    itojun }
    344       1.7    itojun 
    345       1.7    itojun void
    346      1.70      maxv encap4_input(struct mbuf *m, int off, int proto)
    347       1.7    itojun {
    348      1.51  knakahar 	const struct encapsw *esw;
    349       1.7    itojun 	struct encaptab *match;
    350      1.56  knakahar 	struct psref match_psref;
    351       1.7    itojun 
    352      1.56  knakahar 	match = encap4_lookup(m, off, proto, INBOUND, &match_psref);
    353       1.1    itojun 	if (match) {
    354       1.1    itojun 		/* found a match, "match" has the best one */
    355      1.51  knakahar 		esw = match->esw;
    356      1.51  knakahar 		if (esw && esw->encapsw4.pr_input) {
    357      1.66  knakahar 			(*esw->encapsw4.pr_input)(m, off, proto, match->arg);
    358      1.56  knakahar 			psref_release(&match_psref, &match->psref,
    359      1.56  knakahar 			    encaptab.elem_class);
    360      1.54  knakahar 		} else {
    361      1.56  knakahar 			psref_release(&match_psref, &match->psref,
    362      1.56  knakahar 			    encaptab.elem_class);
    363       1.1    itojun 			m_freem(m);
    364      1.54  knakahar 		}
    365       1.1    itojun 		return;
    366       1.1    itojun 	}
    367       1.1    itojun 
    368       1.1    itojun 	/* last resort: inject to raw socket */
    369      1.69  knakahar 	SOFTNET_LOCK_IF_NET_MPSAFE();
    370       1.1    itojun 	rip_input(m, off, proto);
    371      1.69  knakahar 	SOFTNET_UNLOCK_IF_NET_MPSAFE();
    372       1.1    itojun }
    373       1.1    itojun #endif
    374       1.1    itojun 
    375       1.1    itojun #ifdef INET6
    376       1.7    itojun static struct encaptab *
    377      1.56  knakahar encap6_lookup(struct mbuf *m, int off, int proto, enum direction dir,
    378      1.56  knakahar     struct psref *match_psref)
    379       1.1    itojun {
    380       1.1    itojun 	struct ip6_hdr *ip6;
    381      1.33     pooka 	struct ip_pack6 pack;
    382       1.7    itojun 	int prio, matchprio;
    383      1.56  knakahar 	int s;
    384       1.1    itojun 	struct encaptab *ep, *match;
    385      1.55  knakahar #ifdef USE_RADIX
    386       1.7    itojun 	struct radix_node_head *rnh = encap_rnh(AF_INET6);
    387       1.7    itojun 	struct radix_node *rn;
    388      1.55  knakahar #endif
    389       1.1    itojun 
    390      1.41     ozaki 	KASSERT(m->m_len >= sizeof(*ip6));
    391      1.41     ozaki 
    392       1.1    itojun 	ip6 = mtod(m, struct ip6_hdr *);
    393       1.1    itojun 
    394      1.35    cegger 	memset(&pack, 0, sizeof(pack));
    395       1.7    itojun 	pack.p.sp_len = sizeof(pack);
    396       1.7    itojun 	pack.mine.sin6_family = pack.yours.sin6_family = AF_INET6;
    397       1.7    itojun 	pack.mine.sin6_len = pack.yours.sin6_len = sizeof(struct sockaddr_in6);
    398       1.7    itojun 	if (dir == INBOUND) {
    399       1.7    itojun 		pack.mine.sin6_addr = ip6->ip6_dst;
    400       1.7    itojun 		pack.yours.sin6_addr = ip6->ip6_src;
    401       1.7    itojun 	} else {
    402       1.7    itojun 		pack.mine.sin6_addr = ip6->ip6_src;
    403       1.7    itojun 		pack.yours.sin6_addr = ip6->ip6_dst;
    404       1.7    itojun 	}
    405       1.1    itojun 
    406       1.1    itojun 	match = NULL;
    407       1.1    itojun 	matchprio = 0;
    408       1.7    itojun 
    409      1.56  knakahar 	s = pserialize_read_enter();
    410      1.55  knakahar #ifdef USE_RADIX
    411      1.57  knakahar 	if (encap_head_updating) {
    412      1.57  knakahar 		/*
    413      1.57  knakahar 		 * Update in progress. Do nothing.
    414      1.57  knakahar 		 */
    415      1.57  knakahar 		pserialize_read_exit(s);
    416      1.57  knakahar 		return NULL;
    417      1.57  knakahar 	}
    418      1.57  knakahar 
    419      1.30  christos 	rn = rnh->rnh_matchaddr((void *)&pack, rnh);
    420       1.7    itojun 	if (rn && (rn->rn_flags & RNF_ROOT) == 0) {
    421      1.56  knakahar 		struct encaptab *encapp = (struct encaptab *)rn;
    422      1.56  knakahar 
    423      1.56  knakahar 		psref_acquire(match_psref, &encapp->psref,
    424      1.56  knakahar 		    encaptab.elem_class);
    425      1.56  knakahar 		match = encapp;
    426       1.7    itojun 		matchprio = mask_matchlen(match->srcmask) +
    427       1.7    itojun 		    mask_matchlen(match->dstmask);
    428       1.7    itojun 	}
    429      1.55  knakahar #endif
    430      1.56  knakahar 	PSLIST_READER_FOREACH(ep, &encap_table, struct encaptab, chain) {
    431      1.56  knakahar 		struct psref elem_psref;
    432      1.56  knakahar 
    433       1.1    itojun 		if (ep->af != AF_INET6)
    434       1.1    itojun 			continue;
    435       1.1    itojun 		if (ep->proto >= 0 && ep->proto != proto)
    436       1.1    itojun 			continue;
    437      1.56  knakahar 
    438      1.56  knakahar 		psref_acquire(&elem_psref, &ep->psref,
    439      1.56  knakahar 		    encaptab.elem_class);
    440      1.56  knakahar 
    441      1.56  knakahar 		if (ep->func) {
    442      1.56  knakahar 			pserialize_read_exit(s);
    443      1.56  knakahar 			/* ep->func is sleepable. e.g. rtalloc1 */
    444       1.7    itojun 			prio = (*ep->func)(m, off, proto, ep->arg);
    445      1.56  knakahar 			s = pserialize_read_enter();
    446      1.56  knakahar 		} else {
    447      1.55  knakahar #ifdef USE_RADIX
    448      1.56  knakahar 			psref_release(&elem_psref, &ep->psref,
    449      1.56  knakahar 			    encaptab.elem_class);
    450       1.7    itojun 			continue;
    451      1.55  knakahar #else
    452      1.55  knakahar 			prio = mask_match(ep, (struct sockaddr *)&pack.mine,
    453      1.55  knakahar 			    (struct sockaddr *)&pack.yours);
    454      1.55  knakahar #endif
    455      1.55  knakahar 		}
    456       1.1    itojun 
    457       1.7    itojun 		/* see encap4_lookup() for issues here */
    458      1.56  knakahar 		if (prio <= 0) {
    459      1.56  knakahar 			psref_release(&elem_psref, &ep->psref,
    460      1.56  knakahar 			    encaptab.elem_class);
    461       1.1    itojun 			continue;
    462      1.56  knakahar 		}
    463       1.1    itojun 		if (prio > matchprio) {
    464      1.56  knakahar 			/* release last matched ep */
    465      1.56  knakahar 			if (match != NULL)
    466      1.56  knakahar 				psref_release(match_psref, &match->psref,
    467      1.56  knakahar 				    encaptab.elem_class);
    468      1.56  knakahar 
    469      1.56  knakahar 			psref_copy(match_psref, &elem_psref,
    470      1.56  knakahar 			    encaptab.elem_class);
    471       1.1    itojun 			matchprio = prio;
    472       1.1    itojun 			match = ep;
    473       1.1    itojun 		}
    474      1.56  knakahar 		KASSERTMSG((match == NULL) || psref_held(&match->psref,
    475      1.56  knakahar 			encaptab.elem_class),
    476      1.56  knakahar 		    "current match = %p, but not hold its psref", match);
    477      1.56  knakahar 
    478      1.56  knakahar 		psref_release(&elem_psref, &ep->psref,
    479      1.56  knakahar 		    encaptab.elem_class);
    480       1.1    itojun 	}
    481      1.56  knakahar 	pserialize_read_exit(s);
    482       1.1    itojun 
    483       1.7    itojun 	return match;
    484       1.7    itojun }
    485       1.7    itojun 
    486       1.7    itojun int
    487      1.23     perry encap6_input(struct mbuf **mp, int *offp, int proto)
    488       1.7    itojun {
    489       1.7    itojun 	struct mbuf *m = *mp;
    490      1.51  knakahar 	const struct encapsw *esw;
    491       1.7    itojun 	struct encaptab *match;
    492      1.56  knakahar 	struct psref match_psref;
    493      1.69  knakahar 	int rv;
    494       1.7    itojun 
    495      1.56  knakahar 	match = encap6_lookup(m, *offp, proto, INBOUND, &match_psref);
    496       1.7    itojun 
    497       1.1    itojun 	if (match) {
    498       1.1    itojun 		/* found a match */
    499      1.51  knakahar 		esw = match->esw;
    500      1.51  knakahar 		if (esw && esw->encapsw6.pr_input) {
    501      1.56  knakahar 			int ret;
    502      1.66  knakahar 			ret = (*esw->encapsw6.pr_input)(mp, offp, proto,
    503      1.66  knakahar 			    match->arg);
    504      1.56  knakahar 			psref_release(&match_psref, &match->psref,
    505      1.56  knakahar 			    encaptab.elem_class);
    506      1.56  knakahar 			return ret;
    507       1.1    itojun 		} else {
    508      1.56  knakahar 			psref_release(&match_psref, &match->psref,
    509      1.56  knakahar 			    encaptab.elem_class);
    510       1.1    itojun 			m_freem(m);
    511       1.1    itojun 			return IPPROTO_DONE;
    512       1.1    itojun 		}
    513       1.1    itojun 	}
    514       1.1    itojun 
    515       1.1    itojun 	/* last resort: inject to raw socket */
    516      1.69  knakahar 	SOFTNET_LOCK_IF_NET_MPSAFE();
    517      1.69  knakahar 	rv = rip6_input(mp, offp, proto);
    518      1.69  knakahar 	SOFTNET_UNLOCK_IF_NET_MPSAFE();
    519      1.69  knakahar 	return rv;
    520       1.1    itojun }
    521       1.1    itojun #endif
    522       1.1    itojun 
    523      1.54  knakahar /*
    524      1.54  knakahar  * XXX
    525      1.54  knakahar  * The encaptab list and the rnh radix tree must be manipulated atomically.
    526      1.54  knakahar  */
    527       1.7    itojun static int
    528      1.23     perry encap_add(struct encaptab *ep)
    529       1.1    itojun {
    530      1.55  knakahar #ifdef USE_RADIX
    531       1.7    itojun 	struct radix_node_head *rnh = encap_rnh(ep->af);
    532      1.55  knakahar #endif
    533       1.1    itojun 
    534      1.56  knakahar 	KASSERT(encap_lock_held());
    535      1.54  knakahar 
    536      1.55  knakahar #ifdef USE_RADIX
    537       1.7    itojun 	if (!ep->func && rnh) {
    538      1.57  knakahar 		/* Disable access to the radix tree for reader. */
    539      1.57  knakahar 		encap_head_updating = true;
    540      1.56  knakahar 		/* Wait for all readers to drain. */
    541      1.56  knakahar 		pserialize_perform(encaptab.psz);
    542      1.56  knakahar 
    543      1.30  christos 		if (!rnh->rnh_addaddr((void *)ep->addrpack,
    544      1.30  christos 		    (void *)ep->maskpack, rnh, ep->nodes)) {
    545      1.57  knakahar 			encap_head_updating = false;
    546      1.56  knakahar 			return EEXIST;
    547       1.7    itojun 		}
    548      1.57  knakahar 
    549      1.57  knakahar 		/*
    550      1.57  knakahar 		 * The ep added to the radix tree must be skipped while
    551      1.57  knakahar 		 * encap[46]_lookup walks encaptab list. In other words,
    552      1.57  knakahar 		 * encap_add() does not need to care whether the ep has
    553      1.57  knakahar 		 * been added encaptab list or not yet.
    554      1.57  knakahar 		 * So, we can re-enable access to the radix tree for now.
    555      1.57  knakahar 		 */
    556      1.57  knakahar 		encap_head_updating = false;
    557       1.7    itojun 	}
    558      1.55  knakahar #endif
    559      1.56  knakahar 	PSLIST_WRITER_INSERT_HEAD(&encap_table, ep, chain);
    560       1.7    itojun 
    561      1.56  knakahar 	return 0;
    562       1.7    itojun }
    563       1.7    itojun 
    564      1.54  knakahar /*
    565      1.54  knakahar  * XXX
    566      1.54  knakahar  * The encaptab list and the rnh radix tree must be manipulated atomically.
    567      1.54  knakahar  */
    568       1.7    itojun static int
    569      1.23     perry encap_remove(struct encaptab *ep)
    570       1.7    itojun {
    571      1.55  knakahar #ifdef USE_RADIX
    572       1.7    itojun 	struct radix_node_head *rnh = encap_rnh(ep->af);
    573      1.55  knakahar #endif
    574       1.7    itojun 	int error = 0;
    575       1.7    itojun 
    576      1.56  knakahar 	KASSERT(encap_lock_held());
    577      1.54  knakahar 
    578      1.55  knakahar #ifdef USE_RADIX
    579       1.7    itojun 	if (!ep->func && rnh) {
    580      1.57  knakahar 		/* Disable access to the radix tree for reader. */
    581      1.57  knakahar 		encap_head_updating = true;
    582      1.56  knakahar 		/* Wait for all readers to drain. */
    583      1.56  knakahar 		pserialize_perform(encaptab.psz);
    584      1.56  knakahar 
    585      1.30  christos 		if (!rnh->rnh_deladdr((void *)ep->addrpack,
    586      1.30  christos 		    (void *)ep->maskpack, rnh))
    587       1.7    itojun 			error = ESRCH;
    588      1.57  knakahar 
    589      1.57  knakahar 		/*
    590      1.57  knakahar 		 * The ep added to the radix tree must be skipped while
    591      1.57  knakahar 		 * encap[46]_lookup walks encaptab list. In other words,
    592      1.57  knakahar 		 * encap_add() does not need to care whether the ep has
    593      1.57  knakahar 		 * been added encaptab list or not yet.
    594      1.57  knakahar 		 * So, we can re-enable access to the radix tree for now.
    595      1.57  knakahar 		 */
    596      1.57  knakahar 		encap_head_updating = false;
    597       1.7    itojun 	}
    598      1.55  knakahar #endif
    599      1.56  knakahar 	PSLIST_WRITER_REMOVE(ep, chain);
    600      1.56  knakahar 
    601       1.7    itojun 	return error;
    602       1.7    itojun }
    603       1.7    itojun 
    604       1.7    itojun static int
    605      1.23     perry encap_afcheck(int af, const struct sockaddr *sp, const struct sockaddr *dp)
    606       1.7    itojun {
    607       1.7    itojun 	if (sp && dp) {
    608       1.7    itojun 		if (sp->sa_len != dp->sa_len)
    609       1.7    itojun 			return EINVAL;
    610       1.7    itojun 		if (af != sp->sa_family || af != dp->sa_family)
    611       1.7    itojun 			return EINVAL;
    612       1.7    itojun 	} else if (!sp && !dp)
    613       1.7    itojun 		;
    614       1.7    itojun 	else
    615       1.7    itojun 		return EINVAL;
    616       1.7    itojun 
    617       1.7    itojun 	switch (af) {
    618       1.7    itojun 	case AF_INET:
    619       1.7    itojun 		if (sp && sp->sa_len != sizeof(struct sockaddr_in))
    620       1.7    itojun 			return EINVAL;
    621       1.7    itojun 		if (dp && dp->sa_len != sizeof(struct sockaddr_in))
    622       1.7    itojun 			return EINVAL;
    623       1.7    itojun 		break;
    624       1.7    itojun #ifdef INET6
    625       1.7    itojun 	case AF_INET6:
    626       1.7    itojun 		if (sp && sp->sa_len != sizeof(struct sockaddr_in6))
    627       1.7    itojun 			return EINVAL;
    628       1.7    itojun 		if (dp && dp->sa_len != sizeof(struct sockaddr_in6))
    629       1.7    itojun 			return EINVAL;
    630       1.7    itojun 		break;
    631       1.7    itojun #endif
    632       1.7    itojun 	default:
    633       1.7    itojun 		return EAFNOSUPPORT;
    634       1.7    itojun 	}
    635       1.7    itojun 
    636       1.7    itojun 	return 0;
    637       1.1    itojun }
    638       1.1    itojun 
    639       1.1    itojun /*
    640       1.1    itojun  * sp (src ptr) is always my side, and dp (dst ptr) is always remote side.
    641       1.1    itojun  * length of mask (sm and dm) is assumed to be same as sp/dp.
    642       1.1    itojun  * Return value will be necessary as input (cookie) for encap_detach().
    643       1.1    itojun  */
    644       1.1    itojun const struct encaptab *
    645      1.23     perry encap_attach(int af, int proto,
    646      1.23     perry     const struct sockaddr *sp, const struct sockaddr *sm,
    647      1.23     perry     const struct sockaddr *dp, const struct sockaddr *dm,
    648      1.51  knakahar     const struct encapsw *esw, void *arg)
    649       1.1    itojun {
    650       1.1    itojun 	struct encaptab *ep;
    651       1.1    itojun 	int error;
    652      1.61  knakahar 	int pss;
    653       1.7    itojun 	size_t l;
    654      1.33     pooka 	struct ip_pack4 *pack4;
    655       1.7    itojun #ifdef INET6
    656      1.33     pooka 	struct ip_pack6 *pack6;
    657       1.7    itojun #endif
    658      1.61  knakahar #ifndef ENCAP_MPSAFE
    659      1.61  knakahar 	int s;
    660       1.1    itojun 
    661       1.1    itojun 	s = splsoftnet();
    662      1.61  knakahar #endif
    663       1.1    itojun 	/* sanity check on args */
    664       1.7    itojun 	error = encap_afcheck(af, sp, dp);
    665       1.7    itojun 	if (error)
    666       1.1    itojun 		goto fail;
    667       1.1    itojun 
    668       1.1    itojun 	/* check if anyone have already attached with exactly same config */
    669      1.56  knakahar 	pss = pserialize_read_enter();
    670      1.56  knakahar 	PSLIST_READER_FOREACH(ep, &encap_table, struct encaptab, chain) {
    671       1.1    itojun 		if (ep->af != af)
    672       1.1    itojun 			continue;
    673       1.1    itojun 		if (ep->proto != proto)
    674       1.1    itojun 			continue;
    675       1.7    itojun 		if (ep->func)
    676       1.7    itojun 			continue;
    677      1.41     ozaki 
    678      1.43  riastrad 		KASSERT(ep->src != NULL);
    679      1.43  riastrad 		KASSERT(ep->dst != NULL);
    680      1.43  riastrad 		KASSERT(ep->srcmask != NULL);
    681      1.43  riastrad 		KASSERT(ep->dstmask != NULL);
    682      1.41     ozaki 
    683       1.7    itojun 		if (ep->src->sa_len != sp->sa_len ||
    684      1.34    cegger 		    memcmp(ep->src, sp, sp->sa_len) != 0 ||
    685      1.34    cegger 		    memcmp(ep->srcmask, sm, sp->sa_len) != 0)
    686       1.7    itojun 			continue;
    687       1.7    itojun 		if (ep->dst->sa_len != dp->sa_len ||
    688      1.34    cegger 		    memcmp(ep->dst, dp, dp->sa_len) != 0 ||
    689      1.34    cegger 		    memcmp(ep->dstmask, dm, dp->sa_len) != 0)
    690       1.1    itojun 			continue;
    691       1.1    itojun 
    692       1.1    itojun 		error = EEXIST;
    693      1.56  knakahar 		pserialize_read_exit(pss);
    694       1.1    itojun 		goto fail;
    695       1.1    itojun 	}
    696      1.56  knakahar 	pserialize_read_exit(pss);
    697       1.3   thorpej 
    698       1.7    itojun 	switch (af) {
    699       1.7    itojun 	case AF_INET:
    700       1.7    itojun 		l = sizeof(*pack4);
    701       1.7    itojun 		break;
    702       1.7    itojun #ifdef INET6
    703       1.7    itojun 	case AF_INET6:
    704       1.7    itojun 		l = sizeof(*pack6);
    705       1.7    itojun 		break;
    706       1.7    itojun #endif
    707       1.7    itojun 	default:
    708       1.7    itojun 		goto fail;
    709       1.7    itojun 	}
    710       1.7    itojun 
    711      1.20    itojun 	/* M_NETADDR ok? */
    712      1.47  knakahar 	ep = kmem_zalloc(sizeof(*ep), KM_NOSLEEP);
    713       1.1    itojun 	if (ep == NULL) {
    714       1.1    itojun 		error = ENOBUFS;
    715       1.1    itojun 		goto fail;
    716       1.1    itojun 	}
    717      1.47  knakahar 	ep->addrpack = kmem_zalloc(l, KM_NOSLEEP);
    718       1.7    itojun 	if (ep->addrpack == NULL) {
    719       1.7    itojun 		error = ENOBUFS;
    720       1.7    itojun 		goto gc;
    721       1.7    itojun 	}
    722      1.47  knakahar 	ep->maskpack = kmem_zalloc(l, KM_NOSLEEP);
    723       1.7    itojun 	if (ep->maskpack == NULL) {
    724       1.7    itojun 		error = ENOBUFS;
    725       1.7    itojun 		goto gc;
    726       1.7    itojun 	}
    727       1.1    itojun 
    728       1.1    itojun 	ep->af = af;
    729       1.1    itojun 	ep->proto = proto;
    730       1.7    itojun 	ep->addrpack->sa_len = l & 0xff;
    731       1.7    itojun 	ep->maskpack->sa_len = l & 0xff;
    732       1.7    itojun 	switch (af) {
    733       1.7    itojun 	case AF_INET:
    734      1.33     pooka 		pack4 = (struct ip_pack4 *)ep->addrpack;
    735       1.7    itojun 		ep->src = (struct sockaddr *)&pack4->mine;
    736       1.7    itojun 		ep->dst = (struct sockaddr *)&pack4->yours;
    737      1.33     pooka 		pack4 = (struct ip_pack4 *)ep->maskpack;
    738       1.7    itojun 		ep->srcmask = (struct sockaddr *)&pack4->mine;
    739       1.7    itojun 		ep->dstmask = (struct sockaddr *)&pack4->yours;
    740       1.7    itojun 		break;
    741       1.7    itojun #ifdef INET6
    742       1.7    itojun 	case AF_INET6:
    743      1.33     pooka 		pack6 = (struct ip_pack6 *)ep->addrpack;
    744       1.7    itojun 		ep->src = (struct sockaddr *)&pack6->mine;
    745       1.7    itojun 		ep->dst = (struct sockaddr *)&pack6->yours;
    746      1.33     pooka 		pack6 = (struct ip_pack6 *)ep->maskpack;
    747       1.7    itojun 		ep->srcmask = (struct sockaddr *)&pack6->mine;
    748       1.7    itojun 		ep->dstmask = (struct sockaddr *)&pack6->yours;
    749       1.7    itojun 		break;
    750       1.7    itojun #endif
    751       1.7    itojun 	}
    752       1.7    itojun 
    753      1.37   tsutsui 	memcpy(ep->src, sp, sp->sa_len);
    754      1.37   tsutsui 	memcpy(ep->srcmask, sm, sp->sa_len);
    755      1.37   tsutsui 	memcpy(ep->dst, dp, dp->sa_len);
    756      1.37   tsutsui 	memcpy(ep->dstmask, dm, dp->sa_len);
    757      1.51  knakahar 	ep->esw = esw;
    758       1.1    itojun 	ep->arg = arg;
    759      1.56  knakahar 	psref_target_init(&ep->psref, encaptab.elem_class);
    760       1.1    itojun 
    761       1.7    itojun 	error = encap_add(ep);
    762       1.7    itojun 	if (error)
    763       1.7    itojun 		goto gc;
    764       1.1    itojun 
    765       1.1    itojun 	error = 0;
    766      1.61  knakahar #ifndef ENCAP_MPSAFE
    767       1.1    itojun 	splx(s);
    768      1.61  knakahar #endif
    769       1.1    itojun 	return ep;
    770       1.1    itojun 
    771       1.7    itojun gc:
    772       1.7    itojun 	if (ep->addrpack)
    773      1.47  knakahar 		kmem_free(ep->addrpack, l);
    774       1.7    itojun 	if (ep->maskpack)
    775      1.47  knakahar 		kmem_free(ep->maskpack, l);
    776       1.7    itojun 	if (ep)
    777      1.47  knakahar 		kmem_free(ep, sizeof(*ep));
    778       1.1    itojun fail:
    779      1.61  knakahar #ifndef ENCAP_MPSAFE
    780       1.1    itojun 	splx(s);
    781      1.61  knakahar #endif
    782       1.1    itojun 	return NULL;
    783       1.1    itojun }
    784       1.1    itojun 
    785       1.1    itojun const struct encaptab *
    786      1.23     perry encap_attach_func(int af, int proto,
    787      1.26    martin     int (*func)(struct mbuf *, int, int, void *),
    788      1.51  knakahar     const struct encapsw *esw, void *arg)
    789       1.1    itojun {
    790       1.1    itojun 	struct encaptab *ep;
    791       1.1    itojun 	int error;
    792      1.61  knakahar #ifndef ENCAP_MPSAFE
    793       1.1    itojun 	int s;
    794       1.1    itojun 
    795       1.1    itojun 	s = splsoftnet();
    796      1.61  knakahar #endif
    797       1.1    itojun 	/* sanity check on args */
    798       1.1    itojun 	if (!func) {
    799       1.1    itojun 		error = EINVAL;
    800       1.1    itojun 		goto fail;
    801       1.1    itojun 	}
    802       1.1    itojun 
    803       1.7    itojun 	error = encap_afcheck(af, NULL, NULL);
    804       1.7    itojun 	if (error)
    805       1.7    itojun 		goto fail;
    806       1.7    itojun 
    807      1.47  knakahar 	ep = kmem_alloc(sizeof(*ep), KM_NOSLEEP);	/*XXX*/
    808       1.1    itojun 	if (ep == NULL) {
    809       1.1    itojun 		error = ENOBUFS;
    810       1.1    itojun 		goto fail;
    811       1.1    itojun 	}
    812      1.35    cegger 	memset(ep, 0, sizeof(*ep));
    813       1.1    itojun 
    814       1.1    itojun 	ep->af = af;
    815       1.1    itojun 	ep->proto = proto;
    816       1.1    itojun 	ep->func = func;
    817      1.51  knakahar 	ep->esw = esw;
    818       1.1    itojun 	ep->arg = arg;
    819      1.56  knakahar 	psref_target_init(&ep->psref, encaptab.elem_class);
    820       1.1    itojun 
    821       1.7    itojun 	error = encap_add(ep);
    822       1.7    itojun 	if (error)
    823      1.67      maxv 		goto gc;
    824       1.1    itojun 
    825       1.1    itojun 	error = 0;
    826      1.61  knakahar #ifndef ENCAP_MPSAFE
    827       1.1    itojun 	splx(s);
    828      1.61  knakahar #endif
    829       1.1    itojun 	return ep;
    830       1.1    itojun 
    831      1.67      maxv gc:
    832      1.67      maxv 	kmem_free(ep, sizeof(*ep));
    833       1.1    itojun fail:
    834      1.61  knakahar #ifndef ENCAP_MPSAFE
    835       1.1    itojun 	splx(s);
    836      1.61  knakahar #endif
    837       1.1    itojun 	return NULL;
    838       1.1    itojun }
    839       1.1    itojun 
    840       1.7    itojun /* XXX encap4_ctlinput() is necessary if we set DF=1 on outer IPv4 header */
    841       1.7    itojun 
    842       1.7    itojun #ifdef INET6
    843      1.32        ad void *
    844      1.29    dyoung encap6_ctlinput(int cmd, const struct sockaddr *sa, void *d0)
    845       1.7    itojun {
    846       1.7    itojun 	void *d = d0;
    847       1.7    itojun 	struct ip6_hdr *ip6;
    848       1.7    itojun 	struct mbuf *m;
    849       1.7    itojun 	int off;
    850       1.7    itojun 	struct ip6ctlparam *ip6cp = NULL;
    851       1.7    itojun 	int nxt;
    852      1.56  knakahar 	int s;
    853       1.7    itojun 	struct encaptab *ep;
    854      1.51  knakahar 	const struct encapsw *esw;
    855       1.7    itojun 
    856       1.7    itojun 	if (sa->sa_family != AF_INET6 ||
    857       1.7    itojun 	    sa->sa_len != sizeof(struct sockaddr_in6))
    858      1.32        ad 		return NULL;
    859       1.7    itojun 
    860       1.7    itojun 	if ((unsigned)cmd >= PRC_NCMDS)
    861      1.32        ad 		return NULL;
    862       1.7    itojun 	if (cmd == PRC_HOSTDEAD)
    863       1.7    itojun 		d = NULL;
    864       1.7    itojun 	else if (cmd == PRC_MSGSIZE)
    865       1.7    itojun 		; /* special code is present, see below */
    866       1.7    itojun 	else if (inet6ctlerrmap[cmd] == 0)
    867      1.32        ad 		return NULL;
    868       1.7    itojun 
    869       1.7    itojun 	/* if the parameter is from icmp6, decode it. */
    870       1.7    itojun 	if (d != NULL) {
    871       1.7    itojun 		ip6cp = (struct ip6ctlparam *)d;
    872       1.7    itojun 		m = ip6cp->ip6c_m;
    873       1.7    itojun 		ip6 = ip6cp->ip6c_ip6;
    874       1.7    itojun 		off = ip6cp->ip6c_off;
    875       1.7    itojun 		nxt = ip6cp->ip6c_nxt;
    876      1.15   mycroft 
    877      1.15   mycroft 		if (ip6 && cmd == PRC_MSGSIZE) {
    878      1.15   mycroft 			int valid = 0;
    879      1.15   mycroft 			struct encaptab *match;
    880      1.56  knakahar 			struct psref elem_psref;
    881      1.15   mycroft 
    882      1.15   mycroft 			/*
    883      1.15   mycroft 		 	* Check to see if we have a valid encap configuration.
    884      1.15   mycroft 		 	*/
    885      1.56  knakahar 			match = encap6_lookup(m, off, nxt, OUTBOUND,
    886      1.56  knakahar 			    &elem_psref);
    887  1.71.2.1    martin 			if (match) {
    888      1.15   mycroft 				valid++;
    889  1.71.2.1    martin 				psref_release(&elem_psref, &match->psref,
    890  1.71.2.1    martin 				    encaptab.elem_class);
    891  1.71.2.1    martin 			}
    892      1.15   mycroft 
    893      1.15   mycroft 			/*
    894      1.15   mycroft 		 	* Depending on the value of "valid" and routing table
    895      1.15   mycroft 		 	* size (mtudisc_{hi,lo}wat), we will:
    896      1.15   mycroft 		 	* - recalcurate the new MTU and create the
    897      1.15   mycroft 		 	*   corresponding routing entry, or
    898      1.15   mycroft 		 	* - ignore the MTU change notification.
    899      1.15   mycroft 		 	*/
    900      1.15   mycroft 			icmp6_mtudisc_update((struct ip6ctlparam *)d, valid);
    901      1.15   mycroft 		}
    902       1.7    itojun 	} else {
    903       1.7    itojun 		m = NULL;
    904       1.7    itojun 		ip6 = NULL;
    905       1.7    itojun 		nxt = -1;
    906       1.7    itojun 	}
    907       1.7    itojun 
    908       1.7    itojun 	/* inform all listeners */
    909      1.56  knakahar 
    910      1.56  knakahar 	s = pserialize_read_enter();
    911      1.56  knakahar 	PSLIST_READER_FOREACH(ep, &encap_table, struct encaptab, chain) {
    912      1.56  knakahar 		struct psref elem_psref;
    913      1.56  knakahar 
    914       1.7    itojun 		if (ep->af != AF_INET6)
    915       1.7    itojun 			continue;
    916       1.7    itojun 		if (ep->proto >= 0 && ep->proto != nxt)
    917       1.7    itojun 			continue;
    918       1.7    itojun 
    919       1.7    itojun 		/* should optimize by looking at address pairs */
    920       1.7    itojun 
    921       1.7    itojun 		/* XXX need to pass ep->arg or ep itself to listeners */
    922      1.56  knakahar 		psref_acquire(&elem_psref, &ep->psref,
    923      1.56  knakahar 		    encaptab.elem_class);
    924      1.51  knakahar 		esw = ep->esw;
    925      1.51  knakahar 		if (esw && esw->encapsw6.pr_ctlinput) {
    926      1.56  knakahar 			pserialize_read_exit(s);
    927      1.56  knakahar 			/* pr_ctlinput is sleepable. e.g. rtcache_free */
    928      1.52  knakahar 			(*esw->encapsw6.pr_ctlinput)(cmd, sa, d, ep->arg);
    929      1.56  knakahar 			s = pserialize_read_enter();
    930      1.51  knakahar 		}
    931      1.56  knakahar 		psref_release(&elem_psref, &ep->psref,
    932      1.56  knakahar 		    encaptab.elem_class);
    933       1.7    itojun 	}
    934      1.56  knakahar 	pserialize_read_exit(s);
    935       1.7    itojun 
    936       1.7    itojun 	rip6_ctlinput(cmd, sa, d0);
    937      1.32        ad 	return NULL;
    938       1.7    itojun }
    939       1.7    itojun #endif
    940       1.7    itojun 
    941       1.1    itojun int
    942      1.23     perry encap_detach(const struct encaptab *cookie)
    943       1.1    itojun {
    944       1.1    itojun 	const struct encaptab *ep = cookie;
    945      1.56  knakahar 	struct encaptab *p;
    946       1.7    itojun 	int error;
    947       1.1    itojun 
    948      1.56  knakahar 	KASSERT(encap_lock_held());
    949      1.56  knakahar 
    950      1.56  knakahar 	PSLIST_WRITER_FOREACH(p, &encap_table, struct encaptab, chain) {
    951       1.1    itojun 		if (p == ep) {
    952       1.7    itojun 			error = encap_remove(p);
    953       1.7    itojun 			if (error)
    954       1.7    itojun 				return error;
    955      1.56  knakahar 			else
    956      1.56  knakahar 				break;
    957      1.56  knakahar 		}
    958      1.56  knakahar 	}
    959      1.56  knakahar 	if (p == NULL)
    960      1.56  knakahar 		return ENOENT;
    961      1.56  knakahar 
    962      1.56  knakahar 	pserialize_perform(encaptab.psz);
    963      1.56  knakahar 	psref_target_destroy(&p->psref,
    964      1.56  knakahar 	    encaptab.elem_class);
    965      1.56  knakahar 	if (!ep->func) {
    966      1.56  knakahar 		kmem_free(p->addrpack, ep->addrpack->sa_len);
    967      1.56  knakahar 		kmem_free(p->maskpack, ep->maskpack->sa_len);
    968       1.1    itojun 	}
    969      1.56  knakahar 	kmem_free(p, sizeof(*p));
    970       1.1    itojun 
    971      1.56  knakahar 	return 0;
    972       1.7    itojun }
    973       1.7    itojun 
    974      1.55  knakahar #ifdef USE_RADIX
    975       1.7    itojun static struct radix_node_head *
    976      1.23     perry encap_rnh(int af)
    977       1.7    itojun {
    978       1.7    itojun 
    979       1.7    itojun 	switch (af) {
    980       1.7    itojun 	case AF_INET:
    981       1.7    itojun 		return encap_head[0];
    982       1.7    itojun #ifdef INET6
    983       1.7    itojun 	case AF_INET6:
    984       1.7    itojun 		return encap_head[1];
    985       1.7    itojun #endif
    986       1.7    itojun 	default:
    987       1.7    itojun 		return NULL;
    988       1.7    itojun 	}
    989       1.7    itojun }
    990       1.7    itojun 
    991       1.7    itojun static int
    992      1.23     perry mask_matchlen(const struct sockaddr *sa)
    993       1.7    itojun {
    994       1.7    itojun 	const char *p, *ep;
    995       1.7    itojun 	int l;
    996       1.7    itojun 
    997       1.7    itojun 	p = (const char *)sa;
    998       1.7    itojun 	ep = p + sa->sa_len;
    999       1.7    itojun 	p += 2;	/* sa_len + sa_family */
   1000       1.7    itojun 
   1001       1.7    itojun 	l = 0;
   1002       1.7    itojun 	while (p < ep) {
   1003       1.7    itojun 		l += (*p ? 8 : 0);	/* estimate */
   1004       1.7    itojun 		p++;
   1005       1.7    itojun 	}
   1006       1.7    itojun 	return l;
   1007       1.1    itojun }
   1008      1.55  knakahar #endif
   1009      1.55  knakahar 
   1010      1.55  knakahar #ifndef USE_RADIX
   1011      1.55  knakahar static int
   1012      1.55  knakahar mask_match(const struct encaptab *ep,
   1013      1.55  knakahar 	   const struct sockaddr *sp,
   1014      1.55  knakahar 	   const struct sockaddr *dp)
   1015      1.55  knakahar {
   1016      1.55  knakahar 	struct sockaddr_storage s;
   1017      1.55  knakahar 	struct sockaddr_storage d;
   1018      1.55  knakahar 	int i;
   1019      1.55  knakahar 	const u_int8_t *p, *q;
   1020      1.55  knakahar 	u_int8_t *r;
   1021      1.55  knakahar 	int matchlen;
   1022      1.55  knakahar 
   1023      1.55  knakahar 	KASSERTMSG(ep->func == NULL, "wrong encaptab passed to mask_match");
   1024      1.55  knakahar 
   1025      1.55  knakahar 	if (sp->sa_len > sizeof(s) || dp->sa_len > sizeof(d))
   1026      1.55  knakahar 		return 0;
   1027      1.55  knakahar 	if (sp->sa_family != ep->af || dp->sa_family != ep->af)
   1028      1.55  knakahar 		return 0;
   1029      1.55  knakahar 	if (sp->sa_len != ep->src->sa_len || dp->sa_len != ep->dst->sa_len)
   1030      1.55  knakahar 		return 0;
   1031      1.55  knakahar 
   1032      1.55  knakahar 	matchlen = 0;
   1033      1.55  knakahar 
   1034      1.55  knakahar 	p = (const u_int8_t *)sp;
   1035      1.55  knakahar 	q = (const u_int8_t *)ep->srcmask;
   1036      1.55  knakahar 	r = (u_int8_t *)&s;
   1037      1.55  knakahar 	for (i = 0 ; i < sp->sa_len; i++) {
   1038      1.55  knakahar 		r[i] = p[i] & q[i];
   1039      1.55  knakahar 		/* XXX estimate */
   1040      1.55  knakahar 		matchlen += (q[i] ? 8 : 0);
   1041      1.55  knakahar 	}
   1042      1.55  knakahar 
   1043      1.55  knakahar 	p = (const u_int8_t *)dp;
   1044      1.55  knakahar 	q = (const u_int8_t *)ep->dstmask;
   1045      1.55  knakahar 	r = (u_int8_t *)&d;
   1046      1.55  knakahar 	for (i = 0 ; i < dp->sa_len; i++) {
   1047      1.55  knakahar 		r[i] = p[i] & q[i];
   1048      1.55  knakahar 		/* XXX rough estimate */
   1049      1.55  knakahar 		matchlen += (q[i] ? 8 : 0);
   1050      1.55  knakahar 	}
   1051      1.55  knakahar 
   1052      1.55  knakahar 	/* need to overwrite len/family portion as we don't compare them */
   1053      1.55  knakahar 	s.ss_len = sp->sa_len;
   1054      1.55  knakahar 	s.ss_family = sp->sa_family;
   1055      1.55  knakahar 	d.ss_len = dp->sa_len;
   1056      1.55  knakahar 	d.ss_family = dp->sa_family;
   1057      1.55  knakahar 
   1058      1.55  knakahar 	if (memcmp(&s, ep->src, ep->src->sa_len) == 0 &&
   1059      1.55  knakahar 	    memcmp(&d, ep->dst, ep->dst->sa_len) == 0) {
   1060      1.55  knakahar 		return matchlen;
   1061      1.55  knakahar 	} else
   1062      1.55  knakahar 		return 0;
   1063      1.55  knakahar }
   1064      1.55  knakahar #endif
   1065       1.1    itojun 
   1066      1.59  knakahar int
   1067      1.54  knakahar encap_lock_enter(void)
   1068      1.54  knakahar {
   1069      1.59  knakahar 	int error;
   1070      1.59  knakahar 
   1071      1.59  knakahar 	mutex_enter(&encap_whole.lock);
   1072      1.59  knakahar 	while (encap_whole.busy != NULL) {
   1073      1.59  knakahar 		error = cv_wait_sig(&encap_whole.cv, &encap_whole.lock);
   1074      1.59  knakahar 		if (error) {
   1075      1.59  knakahar 			mutex_exit(&encap_whole.lock);
   1076      1.59  knakahar 			return error;
   1077      1.59  knakahar 		}
   1078      1.59  knakahar 	}
   1079      1.59  knakahar 	KASSERT(encap_whole.busy == NULL);
   1080      1.59  knakahar 	encap_whole.busy = curlwp;
   1081      1.59  knakahar 	mutex_exit(&encap_whole.lock);
   1082      1.54  knakahar 
   1083      1.59  knakahar 	return 0;
   1084      1.54  knakahar }
   1085      1.54  knakahar 
   1086      1.54  knakahar void
   1087      1.54  knakahar encap_lock_exit(void)
   1088      1.54  knakahar {
   1089      1.54  knakahar 
   1090      1.59  knakahar 	mutex_enter(&encap_whole.lock);
   1091      1.59  knakahar 	KASSERT(encap_whole.busy == curlwp);
   1092      1.59  knakahar 	encap_whole.busy = NULL;
   1093      1.59  knakahar 	cv_broadcast(&encap_whole.cv);
   1094      1.59  knakahar 	mutex_exit(&encap_whole.lock);
   1095      1.54  knakahar }
   1096      1.56  knakahar 
   1097      1.56  knakahar bool
   1098      1.56  knakahar encap_lock_held(void)
   1099      1.56  knakahar {
   1100      1.56  knakahar 
   1101      1.59  knakahar 	return (encap_whole.busy == curlwp);
   1102      1.56  knakahar }
   1103