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keysock.c revision 1.53.2.2
      1  1.53.2.2  pgoyette /*	$NetBSD: keysock.c,v 1.53.2.2 2017/05/19 00:22:58 pgoyette Exp $	*/
      2       1.1  jonathan /*	$FreeBSD: src/sys/netipsec/keysock.c,v 1.3.2.1 2003/01/24 05:11:36 sam Exp $	*/
      3       1.1  jonathan /*	$KAME: keysock.c,v 1.25 2001/08/13 20:07:41 itojun Exp $	*/
      4       1.1  jonathan 
      5       1.1  jonathan /*
      6       1.1  jonathan  * Copyright (C) 1995, 1996, 1997, and 1998 WIDE Project.
      7       1.1  jonathan  * All rights reserved.
      8       1.1  jonathan  *
      9       1.1  jonathan  * Redistribution and use in source and binary forms, with or without
     10       1.1  jonathan  * modification, are permitted provided that the following conditions
     11       1.1  jonathan  * are met:
     12       1.1  jonathan  * 1. Redistributions of source code must retain the above copyright
     13       1.1  jonathan  *    notice, this list of conditions and the following disclaimer.
     14       1.1  jonathan  * 2. Redistributions in binary form must reproduce the above copyright
     15       1.1  jonathan  *    notice, this list of conditions and the following disclaimer in the
     16       1.1  jonathan  *    documentation and/or other materials provided with the distribution.
     17       1.1  jonathan  * 3. Neither the name of the project nor the names of its contributors
     18       1.1  jonathan  *    may be used to endorse or promote products derived from this software
     19       1.1  jonathan  *    without specific prior written permission.
     20       1.1  jonathan  *
     21       1.1  jonathan  * THIS SOFTWARE IS PROVIDED BY THE PROJECT AND CONTRIBUTORS ``AS IS'' AND
     22       1.1  jonathan  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     23       1.1  jonathan  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     24       1.1  jonathan  * ARE DISCLAIMED.  IN NO EVENT SHALL THE PROJECT OR CONTRIBUTORS BE LIABLE
     25       1.1  jonathan  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     26       1.1  jonathan  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     27       1.1  jonathan  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     28       1.1  jonathan  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     29       1.1  jonathan  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     30       1.1  jonathan  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     31       1.1  jonathan  * SUCH DAMAGE.
     32       1.1  jonathan  */
     33       1.1  jonathan 
     34       1.1  jonathan #include <sys/cdefs.h>
     35  1.53.2.2  pgoyette __KERNEL_RCSID(0, "$NetBSD: keysock.c,v 1.53.2.2 2017/05/19 00:22:58 pgoyette Exp $");
     36       1.1  jonathan 
     37       1.1  jonathan /* This code has derived from sys/net/rtsock.c on FreeBSD2.2.5 */
     38       1.1  jonathan 
     39       1.1  jonathan #include <sys/types.h>
     40       1.1  jonathan #include <sys/param.h>
     41       1.1  jonathan #include <sys/domain.h>
     42       1.1  jonathan #include <sys/errno.h>
     43       1.1  jonathan #include <sys/kernel.h>
     44      1.23     rmind #include <sys/kmem.h>
     45       1.1  jonathan #include <sys/mbuf.h>
     46       1.1  jonathan #include <sys/protosw.h>
     47       1.1  jonathan #include <sys/signalvar.h>
     48       1.1  jonathan #include <sys/socket.h>
     49       1.1  jonathan #include <sys/socketvar.h>
     50       1.1  jonathan #include <sys/sysctl.h>
     51       1.1  jonathan #include <sys/systm.h>
     52  1.53.2.2  pgoyette #include <sys/cpu.h>
     53       1.1  jonathan 
     54       1.1  jonathan #include <net/raw_cb.h>
     55       1.1  jonathan #include <net/route.h>
     56       1.1  jonathan 
     57       1.1  jonathan #include <net/pfkeyv2.h>
     58       1.1  jonathan #include <netipsec/key.h>
     59       1.1  jonathan #include <netipsec/keysock.h>
     60       1.1  jonathan #include <netipsec/key_debug.h>
     61       1.1  jonathan 
     62      1.15   thorpej #include <netipsec/ipsec_private.h>
     63       1.1  jonathan 
     64       1.1  jonathan struct key_cb {
     65       1.1  jonathan 	int key_count;
     66       1.1  jonathan 	int any_count;
     67       1.1  jonathan };
     68       1.1  jonathan static struct key_cb key_cb;
     69       1.1  jonathan 
     70      1.11  christos static struct sockaddr key_dst = {
     71      1.11  christos     .sa_len = 2,
     72      1.11  christos     .sa_family = PF_KEY,
     73      1.11  christos };
     74      1.11  christos static struct sockaddr key_src = {
     75      1.11  christos     .sa_len = 2,
     76      1.11  christos     .sa_family = PF_KEY,
     77      1.11  christos };
     78       1.1  jonathan 
     79      1.49  riastrad static const struct protosw keysw[];
     80       1.5  jonathan 
     81      1.17       dsl static int key_sendup0(struct rawcb *, struct mbuf *, int, int);
     82       1.1  jonathan 
     83      1.19     joerg int key_registered_sb_max = (2048 * MHLEN); /* XXX arbitrary */
     84       1.5  jonathan 
     85       1.1  jonathan /*
     86       1.1  jonathan  * key_output()
     87       1.1  jonathan  */
     88      1.49  riastrad static int
     89      1.49  riastrad key_output(struct mbuf *m, struct socket *so)
     90       1.1  jonathan {
     91       1.1  jonathan 	struct sadb_msg *msg;
     92       1.1  jonathan 	int len, error = 0;
     93       1.1  jonathan 	int s;
     94       1.1  jonathan 
     95      1.53     ozaki 	KASSERT(m != NULL);
     96       1.1  jonathan 
     97      1.15   thorpej 	{
     98      1.15   thorpej 		uint64_t *ps = PFKEY_STAT_GETREF();
     99      1.15   thorpej 		ps[PFKEY_STAT_OUT_TOTAL]++;
    100      1.15   thorpej 		ps[PFKEY_STAT_OUT_BYTES] += m->m_pkthdr.len;
    101      1.15   thorpej 		PFKEY_STAT_PUTREF();
    102      1.15   thorpej 	}
    103       1.1  jonathan 
    104       1.1  jonathan 	len = m->m_pkthdr.len;
    105       1.1  jonathan 	if (len < sizeof(struct sadb_msg)) {
    106      1.15   thorpej 		PFKEY_STATINC(PFKEY_STAT_OUT_TOOSHORT);
    107       1.1  jonathan 		error = EINVAL;
    108       1.1  jonathan 		goto end;
    109       1.1  jonathan 	}
    110       1.1  jonathan 
    111       1.1  jonathan 	if (m->m_len < sizeof(struct sadb_msg)) {
    112       1.1  jonathan 		if ((m = m_pullup(m, sizeof(struct sadb_msg))) == 0) {
    113      1.15   thorpej 			PFKEY_STATINC(PFKEY_STAT_OUT_NOMEM);
    114       1.1  jonathan 			error = ENOBUFS;
    115       1.1  jonathan 			goto end;
    116       1.1  jonathan 		}
    117       1.1  jonathan 	}
    118       1.1  jonathan 
    119      1.53     ozaki 	KASSERT((m->m_flags & M_PKTHDR) != 0);
    120       1.1  jonathan 
    121      1.52     ozaki 	if (KEYDEBUG_ON(KEYDEBUG_KEY_DUMP))
    122      1.52     ozaki 		kdebug_mbuf(m);
    123       1.1  jonathan 
    124       1.1  jonathan 	msg = mtod(m, struct sadb_msg *);
    125      1.15   thorpej 	PFKEY_STATINC(PFKEY_STAT_OUT_MSGTYPE + msg->sadb_msg_type);
    126       1.1  jonathan 	if (len != PFKEY_UNUNIT64(msg->sadb_msg_len)) {
    127      1.15   thorpej 		PFKEY_STATINC(PFKEY_STAT_OUT_INVLEN);
    128       1.1  jonathan 		error = EINVAL;
    129       1.1  jonathan 		goto end;
    130       1.1  jonathan 	}
    131       1.1  jonathan 
    132       1.1  jonathan 	/*XXX giant lock*/
    133       1.1  jonathan 	s = splsoftnet();
    134       1.1  jonathan 	error = key_parse(m, so);
    135       1.1  jonathan 	m = NULL;
    136       1.1  jonathan 	splx(s);
    137       1.1  jonathan end:
    138       1.1  jonathan 	if (m)
    139       1.1  jonathan 		m_freem(m);
    140       1.1  jonathan 	return error;
    141       1.1  jonathan }
    142       1.1  jonathan 
    143       1.1  jonathan /*
    144       1.1  jonathan  * send message to the socket.
    145       1.1  jonathan  */
    146       1.1  jonathan static int
    147      1.11  christos key_sendup0(
    148      1.11  christos     struct rawcb *rp,
    149      1.11  christos     struct mbuf *m,
    150      1.11  christos     int promisc,
    151      1.11  christos     int sbprio
    152      1.11  christos )
    153       1.1  jonathan {
    154       1.1  jonathan 	int error;
    155       1.5  jonathan 	int ok;
    156       1.1  jonathan 
    157       1.1  jonathan 	if (promisc) {
    158       1.1  jonathan 		struct sadb_msg *pmsg;
    159       1.1  jonathan 
    160       1.1  jonathan 		M_PREPEND(m, sizeof(struct sadb_msg), M_DONTWAIT);
    161       1.1  jonathan 		if (m && m->m_len < sizeof(struct sadb_msg))
    162       1.1  jonathan 			m = m_pullup(m, sizeof(struct sadb_msg));
    163       1.1  jonathan 		if (!m) {
    164      1.15   thorpej 			PFKEY_STATINC(PFKEY_STAT_IN_NOMEM);
    165       1.1  jonathan 			return ENOBUFS;
    166       1.1  jonathan 		}
    167       1.1  jonathan 		m->m_pkthdr.len += sizeof(*pmsg);
    168       1.1  jonathan 
    169       1.1  jonathan 		pmsg = mtod(m, struct sadb_msg *);
    170      1.18    cegger 		memset(pmsg, 0, sizeof(*pmsg));
    171       1.1  jonathan 		pmsg->sadb_msg_version = PF_KEY_V2;
    172       1.1  jonathan 		pmsg->sadb_msg_type = SADB_X_PROMISC;
    173       1.1  jonathan 		pmsg->sadb_msg_len = PFKEY_UNIT64(m->m_pkthdr.len);
    174       1.1  jonathan 		/* pid and seq? */
    175       1.1  jonathan 
    176      1.15   thorpej 		PFKEY_STATINC(PFKEY_STAT_IN_MSGTYPE + pmsg->sadb_msg_type);
    177       1.1  jonathan 	}
    178       1.1  jonathan 
    179       1.5  jonathan 	if (sbprio == 0)
    180       1.5  jonathan 		ok = sbappendaddr(&rp->rcb_socket->so_rcv,
    181       1.5  jonathan 			       (struct sockaddr *)&key_src, m, NULL);
    182       1.5  jonathan 	else
    183       1.5  jonathan 		ok = sbappendaddrchain(&rp->rcb_socket->so_rcv,
    184       1.5  jonathan 			       (struct sockaddr *)&key_src, m, sbprio);
    185       1.5  jonathan 
    186       1.5  jonathan 	  if (!ok) {
    187      1.15   thorpej 		PFKEY_STATINC(PFKEY_STAT_IN_NOMEM);
    188       1.1  jonathan 		m_freem(m);
    189       1.1  jonathan 		error = ENOBUFS;
    190       1.1  jonathan 	} else
    191       1.1  jonathan 		error = 0;
    192       1.1  jonathan 	sorwakeup(rp->rcb_socket);
    193       1.1  jonathan 	return error;
    194       1.1  jonathan }
    195       1.1  jonathan 
    196       1.1  jonathan /* XXX this interface should be obsoleted. */
    197       1.1  jonathan int
    198      1.14  degroote key_sendup(struct socket *so, struct sadb_msg *msg, u_int len,
    199      1.14  degroote 	   int target)	/*target of the resulting message*/
    200       1.1  jonathan {
    201       1.1  jonathan 	struct mbuf *m, *n, *mprev;
    202       1.1  jonathan 	int tlen;
    203       1.1  jonathan 
    204      1.53     ozaki 	KASSERT(so != NULL);
    205      1.53     ozaki 	KASSERT(msg != NULL);
    206       1.1  jonathan 
    207      1.52     ozaki 	if (KEYDEBUG_ON(KEYDEBUG_KEY_DUMP)) {
    208       1.1  jonathan 		printf("key_sendup: \n");
    209      1.52     ozaki 		kdebug_sadb(msg);
    210      1.52     ozaki 	}
    211       1.1  jonathan 
    212       1.1  jonathan 	/*
    213       1.1  jonathan 	 * we increment statistics here, just in case we have ENOBUFS
    214       1.1  jonathan 	 * in this function.
    215       1.1  jonathan 	 */
    216      1.15   thorpej 	{
    217      1.15   thorpej 		uint64_t *ps = PFKEY_STAT_GETREF();
    218      1.15   thorpej 		ps[PFKEY_STAT_IN_TOTAL]++;
    219      1.15   thorpej 		ps[PFKEY_STAT_IN_BYTES] += len;
    220      1.15   thorpej 		ps[PFKEY_STAT_IN_MSGTYPE + msg->sadb_msg_type]++;
    221      1.15   thorpej 		PFKEY_STAT_PUTREF();
    222      1.15   thorpej 	}
    223       1.1  jonathan 
    224       1.1  jonathan 	/*
    225       1.1  jonathan 	 * Get mbuf chain whenever possible (not clusters),
    226       1.1  jonathan 	 * to save socket buffer.  We'll be generating many SADB_ACQUIRE
    227       1.1  jonathan 	 * messages to listening key sockets.  If we simply allocate clusters,
    228       1.1  jonathan 	 * sbappendaddr() will raise ENOBUFS due to too little sbspace().
    229       1.1  jonathan 	 * sbspace() computes # of actual data bytes AND mbuf region.
    230       1.1  jonathan 	 *
    231       1.1  jonathan 	 * TODO: SADB_ACQUIRE filters should be implemented.
    232       1.1  jonathan 	 */
    233       1.1  jonathan 	tlen = len;
    234       1.1  jonathan 	m = mprev = NULL;
    235       1.1  jonathan 	while (tlen > 0) {
    236      1.27  christos 		int mlen;
    237       1.1  jonathan 		if (tlen == len) {
    238       1.1  jonathan 			MGETHDR(n, M_DONTWAIT, MT_DATA);
    239      1.27  christos 			mlen = MHLEN;
    240       1.1  jonathan 		} else {
    241       1.1  jonathan 			MGET(n, M_DONTWAIT, MT_DATA);
    242      1.27  christos 			mlen = MLEN;
    243       1.1  jonathan 		}
    244       1.1  jonathan 		if (!n) {
    245      1.15   thorpej 			PFKEY_STATINC(PFKEY_STAT_IN_NOMEM);
    246       1.1  jonathan 			return ENOBUFS;
    247       1.1  jonathan 		}
    248      1.27  christos 		n->m_len = mlen;
    249       1.1  jonathan 		if (tlen >= MCLBYTES) {	/*XXX better threshold? */
    250       1.1  jonathan 			MCLGET(n, M_DONTWAIT);
    251       1.1  jonathan 			if ((n->m_flags & M_EXT) == 0) {
    252       1.1  jonathan 				m_free(n);
    253       1.1  jonathan 				m_freem(m);
    254      1.15   thorpej 				PFKEY_STATINC(PFKEY_STAT_IN_NOMEM);
    255       1.1  jonathan 				return ENOBUFS;
    256       1.1  jonathan 			}
    257       1.1  jonathan 			n->m_len = MCLBYTES;
    258       1.1  jonathan 		}
    259       1.1  jonathan 
    260       1.1  jonathan 		if (tlen < n->m_len)
    261       1.1  jonathan 			n->m_len = tlen;
    262       1.1  jonathan 		n->m_next = NULL;
    263       1.1  jonathan 		if (m == NULL)
    264       1.1  jonathan 			m = mprev = n;
    265       1.1  jonathan 		else {
    266       1.1  jonathan 			mprev->m_next = n;
    267       1.1  jonathan 			mprev = n;
    268       1.1  jonathan 		}
    269       1.1  jonathan 		tlen -= n->m_len;
    270       1.1  jonathan 		n = NULL;
    271       1.1  jonathan 	}
    272       1.1  jonathan 	m->m_pkthdr.len = len;
    273      1.50     ozaki 	m_reset_rcvif(m);
    274      1.13  degroote 	m_copyback(m, 0, len, msg);
    275       1.1  jonathan 
    276       1.1  jonathan 	/* avoid duplicated statistics */
    277      1.15   thorpej 	{
    278      1.15   thorpej 		uint64_t *ps = PFKEY_STAT_GETREF();
    279      1.15   thorpej 		ps[PFKEY_STAT_IN_TOTAL]--;
    280      1.15   thorpej 		ps[PFKEY_STAT_IN_BYTES] -= len;
    281      1.15   thorpej 		ps[PFKEY_STAT_IN_MSGTYPE + msg->sadb_msg_type]--;
    282      1.15   thorpej 		PFKEY_STAT_PUTREF();
    283      1.15   thorpej 	}
    284       1.1  jonathan 
    285       1.1  jonathan 	return key_sendup_mbuf(so, m, target);
    286       1.1  jonathan }
    287       1.1  jonathan 
    288       1.1  jonathan /* so can be NULL if target != KEY_SENDUP_ONE */
    289       1.1  jonathan int
    290      1.14  degroote key_sendup_mbuf(struct socket *so, struct mbuf *m,
    291      1.14  degroote 		int target/*, sbprio */)
    292       1.1  jonathan {
    293       1.1  jonathan 	struct mbuf *n;
    294       1.1  jonathan 	struct keycb *kp;
    295       1.1  jonathan 	int sendup;
    296       1.1  jonathan 	struct rawcb *rp;
    297       1.1  jonathan 	int error = 0;
    298       1.5  jonathan 	int sbprio = 0; /* XXX should be a parameter */
    299       1.1  jonathan 
    300      1.53     ozaki 	KASSERT(m != NULL);
    301  1.53.2.1  pgoyette 	KASSERT(so != NULL || target != KEY_SENDUP_ONE);
    302       1.7     perry 
    303       1.5  jonathan 	/*
    304       1.5  jonathan 	 * RFC 2367 says ACQUIRE and other kernel-generated messages
    305       1.5  jonathan 	 * are special. We treat all KEY_SENDUP_REGISTERED messages
    306       1.5  jonathan 	 * as special, delivering them to all registered sockets
    307       1.5  jonathan 	 * even if the socket is at or above its so->so_rcv.sb_max limits.
    308       1.5  jonathan 	 * The only constraint is that the  so_rcv data fall below
    309       1.5  jonathan 	 * key_registered_sb_max.
    310       1.5  jonathan 	 * Doing that check here avoids reworking every key_sendup_mbuf()
    311       1.5  jonathan 	 * in the short term. . The rework will be done after a technical
    312       1.5  jonathan 	 * conensus that this approach is appropriate.
    313       1.5  jonathan  	 */
    314       1.5  jonathan 	if (target == KEY_SENDUP_REGISTERED) {
    315       1.5  jonathan 		sbprio = SB_PRIO_BESTEFFORT;
    316       1.5  jonathan 	}
    317       1.1  jonathan 
    318      1.15   thorpej 	{
    319      1.15   thorpej 		uint64_t *ps = PFKEY_STAT_GETREF();
    320      1.15   thorpej 		ps[PFKEY_STAT_IN_TOTAL]++;
    321      1.15   thorpej 		ps[PFKEY_STAT_IN_BYTES] += m->m_pkthdr.len;
    322      1.15   thorpej 		PFKEY_STAT_PUTREF();
    323      1.15   thorpej 	}
    324       1.1  jonathan 	if (m->m_len < sizeof(struct sadb_msg)) {
    325       1.1  jonathan #if 1
    326       1.1  jonathan 		m = m_pullup(m, sizeof(struct sadb_msg));
    327       1.1  jonathan 		if (m == NULL) {
    328      1.15   thorpej 			PFKEY_STATINC(PFKEY_STAT_IN_NOMEM);
    329       1.1  jonathan 			return ENOBUFS;
    330       1.1  jonathan 		}
    331       1.1  jonathan #else
    332       1.1  jonathan 		/* don't bother pulling it up just for stats */
    333       1.1  jonathan #endif
    334       1.1  jonathan 	}
    335       1.1  jonathan 	if (m->m_len >= sizeof(struct sadb_msg)) {
    336       1.1  jonathan 		struct sadb_msg *msg;
    337       1.1  jonathan 		msg = mtod(m, struct sadb_msg *);
    338      1.15   thorpej 		PFKEY_STATINC(PFKEY_STAT_IN_MSGTYPE + msg->sadb_msg_type);
    339       1.1  jonathan 	}
    340       1.1  jonathan 
    341      1.51     ozaki 	LIST_FOREACH(rp, &rawcb, rcb_list)
    342       1.1  jonathan 	{
    343       1.5  jonathan 		struct socket * kso = rp->rcb_socket;
    344       1.1  jonathan 		if (rp->rcb_proto.sp_family != PF_KEY)
    345       1.1  jonathan 			continue;
    346       1.1  jonathan 		if (rp->rcb_proto.sp_protocol
    347       1.1  jonathan 		 && rp->rcb_proto.sp_protocol != PF_KEY_V2) {
    348       1.1  jonathan 			continue;
    349       1.1  jonathan 		}
    350       1.1  jonathan 
    351       1.1  jonathan 		kp = (struct keycb *)rp;
    352       1.1  jonathan 
    353       1.1  jonathan 		/*
    354       1.1  jonathan 		 * If you are in promiscuous mode, and when you get broadcasted
    355       1.1  jonathan 		 * reply, you'll get two PF_KEY messages.
    356       1.1  jonathan 		 * (based on pf_key (at) inner.net message on 14 Oct 1998)
    357       1.1  jonathan 		 */
    358       1.1  jonathan 		if (((struct keycb *)rp)->kp_promisc) {
    359       1.1  jonathan 			if ((n = m_copy(m, 0, (int)M_COPYALL)) != NULL) {
    360       1.5  jonathan 				(void)key_sendup0(rp, n, 1, 0);
    361       1.1  jonathan 				n = NULL;
    362       1.1  jonathan 			}
    363       1.1  jonathan 		}
    364       1.1  jonathan 
    365       1.1  jonathan 		/* the exact target will be processed later */
    366       1.1  jonathan 		if (so && sotorawcb(so) == rp)
    367       1.1  jonathan 			continue;
    368       1.1  jonathan 
    369       1.1  jonathan 		sendup = 0;
    370       1.1  jonathan 		switch (target) {
    371       1.1  jonathan 		case KEY_SENDUP_ONE:
    372       1.1  jonathan 			/* the statement has no effect */
    373       1.1  jonathan 			if (so && sotorawcb(so) == rp)
    374       1.1  jonathan 				sendup++;
    375       1.1  jonathan 			break;
    376       1.1  jonathan 		case KEY_SENDUP_ALL:
    377       1.1  jonathan 			sendup++;
    378       1.1  jonathan 			break;
    379       1.1  jonathan 		case KEY_SENDUP_REGISTERED:
    380       1.5  jonathan 			if (kp->kp_registered) {
    381       1.5  jonathan 				if (kso->so_rcv.sb_cc <= key_registered_sb_max)
    382       1.5  jonathan 					sendup++;
    383       1.5  jonathan 			  	else
    384       1.5  jonathan 			  		printf("keysock: "
    385       1.5  jonathan 					       "registered sendup dropped, "
    386       1.5  jonathan 					       "sb_cc %ld max %d\n",
    387       1.5  jonathan 					       kso->so_rcv.sb_cc,
    388       1.5  jonathan 					       key_registered_sb_max);
    389       1.5  jonathan 			}
    390       1.1  jonathan 			break;
    391       1.1  jonathan 		}
    392      1.15   thorpej 		PFKEY_STATINC(PFKEY_STAT_IN_MSGTARGET + target);
    393       1.1  jonathan 
    394       1.1  jonathan 		if (!sendup)
    395       1.1  jonathan 			continue;
    396       1.1  jonathan 
    397       1.1  jonathan 		if ((n = m_copy(m, 0, (int)M_COPYALL)) == NULL) {
    398       1.1  jonathan 			m_freem(m);
    399      1.15   thorpej 			PFKEY_STATINC(PFKEY_STAT_IN_NOMEM);
    400       1.1  jonathan 			return ENOBUFS;
    401       1.1  jonathan 		}
    402       1.1  jonathan 
    403       1.5  jonathan 		if ((error = key_sendup0(rp, n, 0, 0)) != 0) {
    404       1.1  jonathan 			m_freem(m);
    405       1.1  jonathan 			return error;
    406       1.1  jonathan 		}
    407       1.1  jonathan 
    408       1.1  jonathan 		n = NULL;
    409       1.1  jonathan 	}
    410       1.1  jonathan 
    411       1.5  jonathan 	/* The 'later' time for processing the exact target has arrived */
    412       1.1  jonathan 	if (so) {
    413       1.5  jonathan 		error = key_sendup0(sotorawcb(so), m, 0, sbprio);
    414       1.1  jonathan 		m = NULL;
    415       1.1  jonathan 	} else {
    416       1.1  jonathan 		error = 0;
    417       1.1  jonathan 		m_freem(m);
    418       1.1  jonathan 	}
    419       1.1  jonathan 	return error;
    420       1.1  jonathan }
    421       1.1  jonathan 
    422      1.23     rmind static int
    423      1.23     rmind key_attach(struct socket *so, int proto)
    424      1.23     rmind {
    425      1.23     rmind 	struct keycb *kp;
    426      1.23     rmind 	int s, error;
    427      1.23     rmind 
    428      1.23     rmind 	KASSERT(sotorawcb(so) == NULL);
    429      1.23     rmind 	kp = kmem_zalloc(sizeof(*kp), KM_SLEEP);
    430      1.25     rmind 	kp->kp_raw.rcb_len = sizeof(*kp);
    431      1.23     rmind 	so->so_pcb = kp;
    432      1.23     rmind 
    433      1.23     rmind 	s = splsoftnet();
    434      1.23     rmind 	error = raw_attach(so, proto);
    435      1.23     rmind 	if (error) {
    436      1.23     rmind 		PFKEY_STATINC(PFKEY_STAT_SOCKERR);
    437      1.23     rmind 		kmem_free(kp, sizeof(*kp));
    438      1.23     rmind 		so->so_pcb = NULL;
    439      1.23     rmind 		goto out;
    440      1.23     rmind 	}
    441      1.23     rmind 
    442      1.23     rmind 	kp->kp_promisc = kp->kp_registered = 0;
    443      1.23     rmind 
    444      1.23     rmind 	if (kp->kp_raw.rcb_proto.sp_protocol == PF_KEY) /* XXX: AF_KEY */
    445      1.23     rmind 		key_cb.key_count++;
    446      1.23     rmind 	key_cb.any_count++;
    447      1.23     rmind 	kp->kp_raw.rcb_laddr = &key_src;
    448      1.23     rmind 	kp->kp_raw.rcb_faddr = &key_dst;
    449      1.23     rmind 	soisconnected(so);
    450      1.23     rmind 	so->so_options |= SO_USELOOPBACK;
    451      1.23     rmind out:
    452      1.23     rmind 	KASSERT(solocked(so));
    453      1.23     rmind 	splx(s);
    454      1.23     rmind 	return error;
    455      1.23     rmind }
    456      1.23     rmind 
    457      1.23     rmind static void
    458      1.23     rmind key_detach(struct socket *so)
    459      1.23     rmind {
    460      1.23     rmind 	struct keycb *kp = (struct keycb *)sotorawcb(so);
    461      1.23     rmind 	int s;
    462      1.23     rmind 
    463  1.53.2.2  pgoyette 	KASSERT(!cpu_softintr_p());
    464      1.23     rmind 	KASSERT(solocked(so));
    465      1.23     rmind 	KASSERT(kp != NULL);
    466      1.23     rmind 
    467      1.23     rmind 	s = splsoftnet();
    468      1.23     rmind 	if (kp->kp_raw.rcb_proto.sp_protocol == PF_KEY) /* XXX: AF_KEY */
    469      1.23     rmind 		key_cb.key_count--;
    470      1.23     rmind 	key_cb.any_count--;
    471      1.23     rmind 	key_freereg(so);
    472      1.23     rmind 	raw_detach(so);
    473      1.23     rmind 	splx(s);
    474      1.23     rmind }
    475      1.23     rmind 
    476      1.28       rtr static int
    477      1.46       rtr key_accept(struct socket *so, struct sockaddr *nam)
    478      1.35       rtr {
    479      1.35       rtr 	KASSERT(solocked(so));
    480      1.35       rtr 
    481      1.35       rtr 	panic("key_accept");
    482      1.39       rtr 
    483      1.35       rtr 	return EOPNOTSUPP;
    484      1.35       rtr }
    485      1.35       rtr 
    486      1.35       rtr static int
    487      1.45       rtr key_bind(struct socket *so, struct sockaddr *nam, struct lwp *l)
    488      1.37       rtr {
    489      1.37       rtr 	KASSERT(solocked(so));
    490      1.37       rtr 
    491      1.37       rtr 	return EOPNOTSUPP;
    492      1.37       rtr }
    493      1.37       rtr 
    494      1.37       rtr static int
    495      1.40       rtr key_listen(struct socket *so, struct lwp *l)
    496      1.37       rtr {
    497      1.37       rtr 	KASSERT(solocked(so));
    498      1.37       rtr 
    499      1.37       rtr 	return EOPNOTSUPP;
    500      1.37       rtr }
    501      1.37       rtr 
    502      1.37       rtr static int
    503      1.48       rtr key_connect(struct socket *so, struct sockaddr *nam, struct lwp *l)
    504      1.38       rtr {
    505      1.38       rtr 	KASSERT(solocked(so));
    506      1.38       rtr 
    507      1.38       rtr 	return EOPNOTSUPP;
    508      1.38       rtr }
    509      1.38       rtr 
    510      1.38       rtr static int
    511      1.43       rtr key_connect2(struct socket *so, struct socket *so2)
    512      1.43       rtr {
    513      1.43       rtr 	KASSERT(solocked(so));
    514      1.43       rtr 
    515      1.43       rtr 	return EOPNOTSUPP;
    516      1.43       rtr }
    517      1.43       rtr 
    518      1.43       rtr static int
    519      1.39       rtr key_disconnect(struct socket *so)
    520      1.39       rtr {
    521      1.39       rtr 	struct rawcb *rp = sotorawcb(so);
    522      1.39       rtr 	int s;
    523      1.39       rtr 
    524      1.39       rtr 	KASSERT(solocked(so));
    525      1.39       rtr 	KASSERT(rp != NULL);
    526      1.39       rtr 
    527      1.39       rtr 	s = splsoftnet();
    528      1.39       rtr 	soisdisconnected(so);
    529      1.39       rtr 	raw_disconnect(rp);
    530      1.39       rtr 	splx(s);
    531      1.39       rtr 
    532      1.39       rtr 	return 0;
    533      1.39       rtr }
    534      1.39       rtr 
    535      1.39       rtr static int
    536      1.39       rtr key_shutdown(struct socket *so)
    537      1.39       rtr {
    538      1.39       rtr 	int s;
    539      1.39       rtr 
    540      1.39       rtr 	KASSERT(solocked(so));
    541      1.39       rtr 
    542      1.39       rtr 	/*
    543      1.39       rtr 	 * Mark the connection as being incapable of further input.
    544      1.39       rtr 	 */
    545      1.39       rtr 	s = splsoftnet();
    546      1.39       rtr 	socantsendmore(so);
    547      1.39       rtr 	splx(s);
    548      1.39       rtr 
    549      1.39       rtr 	return 0;
    550      1.39       rtr }
    551      1.39       rtr 
    552      1.39       rtr static int
    553      1.39       rtr key_abort(struct socket *so)
    554      1.39       rtr {
    555      1.39       rtr 	KASSERT(solocked(so));
    556      1.39       rtr 
    557      1.39       rtr 	panic("key_abort");
    558      1.39       rtr 
    559      1.39       rtr 	return EOPNOTSUPP;
    560      1.39       rtr }
    561      1.39       rtr 
    562      1.39       rtr static int
    563      1.29       rtr key_ioctl(struct socket *so, u_long cmd, void *nam, struct ifnet *ifp)
    564      1.28       rtr {
    565      1.28       rtr 	return EOPNOTSUPP;
    566      1.28       rtr }
    567      1.28       rtr 
    568      1.30       rtr static int
    569      1.30       rtr key_stat(struct socket *so, struct stat *ub)
    570      1.30       rtr {
    571      1.33       rtr 	KASSERT(solocked(so));
    572      1.33       rtr 
    573      1.32       rtr 	return 0;
    574      1.30       rtr }
    575      1.30       rtr 
    576      1.34       rtr static int
    577      1.46       rtr key_peeraddr(struct socket *so, struct sockaddr *nam)
    578      1.34       rtr {
    579      1.34       rtr 	struct rawcb *rp = sotorawcb(so);
    580      1.34       rtr 
    581      1.34       rtr 	KASSERT(solocked(so));
    582      1.34       rtr 	KASSERT(rp != NULL);
    583      1.34       rtr 	KASSERT(nam != NULL);
    584      1.34       rtr 
    585      1.34       rtr 	if (rp->rcb_faddr == NULL)
    586      1.34       rtr 		return ENOTCONN;
    587      1.34       rtr 
    588      1.34       rtr 	raw_setpeeraddr(rp, nam);
    589      1.34       rtr 	return 0;
    590      1.34       rtr }
    591      1.34       rtr 
    592      1.34       rtr static int
    593      1.46       rtr key_sockaddr(struct socket *so, struct sockaddr *nam)
    594      1.34       rtr {
    595      1.34       rtr 	struct rawcb *rp = sotorawcb(so);
    596      1.34       rtr 
    597      1.34       rtr 	KASSERT(solocked(so));
    598      1.34       rtr 	KASSERT(rp != NULL);
    599      1.34       rtr 	KASSERT(nam != NULL);
    600      1.34       rtr 
    601      1.34       rtr 	if (rp->rcb_faddr == NULL)
    602      1.34       rtr 		return ENOTCONN;
    603      1.34       rtr 
    604      1.34       rtr 	raw_setsockaddr(rp, nam);
    605      1.34       rtr 	return 0;
    606      1.34       rtr }
    607      1.34       rtr 
    608      1.36       rtr static int
    609      1.42       rtr key_rcvd(struct socket *so, int flags, struct lwp *l)
    610      1.42       rtr {
    611      1.42       rtr 	KASSERT(solocked(so));
    612      1.42       rtr 
    613      1.42       rtr 	return EOPNOTSUPP;
    614      1.42       rtr }
    615      1.42       rtr 
    616      1.42       rtr static int
    617      1.36       rtr key_recvoob(struct socket *so, struct mbuf *m, int flags)
    618      1.36       rtr {
    619      1.36       rtr 	KASSERT(solocked(so));
    620      1.36       rtr 
    621      1.36       rtr 	return EOPNOTSUPP;
    622      1.36       rtr }
    623      1.36       rtr 
    624      1.36       rtr static int
    625      1.48       rtr key_send(struct socket *so, struct mbuf *m, struct sockaddr *nam,
    626      1.41       rtr     struct mbuf *control, struct lwp *l)
    627      1.41       rtr {
    628      1.41       rtr 	int error = 0;
    629      1.41       rtr 	int s;
    630      1.41       rtr 
    631      1.41       rtr 	KASSERT(solocked(so));
    632      1.49  riastrad 	KASSERT(so->so_proto == &keysw[0]);
    633      1.41       rtr 
    634      1.41       rtr 	s = splsoftnet();
    635      1.49  riastrad 	error = raw_send(so, m, nam, control, l, &key_output);
    636      1.41       rtr 	splx(s);
    637      1.41       rtr 
    638      1.41       rtr 	return error;
    639      1.41       rtr }
    640      1.41       rtr 
    641      1.41       rtr static int
    642      1.36       rtr key_sendoob(struct socket *so, struct mbuf *m, struct mbuf *control)
    643      1.36       rtr {
    644      1.36       rtr 	KASSERT(solocked(so));
    645      1.36       rtr 
    646      1.36       rtr 	m_freem(m);
    647      1.36       rtr 	m_freem(control);
    648      1.36       rtr 
    649      1.36       rtr 	return EOPNOTSUPP;
    650      1.36       rtr }
    651      1.36       rtr 
    652      1.43       rtr static int
    653      1.43       rtr key_purgeif(struct socket *so, struct ifnet *ifa)
    654      1.43       rtr {
    655      1.43       rtr 
    656      1.43       rtr 	panic("key_purgeif");
    657      1.43       rtr 
    658      1.43       rtr 	return EOPNOTSUPP;
    659      1.43       rtr }
    660      1.43       rtr 
    661       1.1  jonathan /*
    662       1.1  jonathan  * Definitions of protocols supported in the KEY domain.
    663       1.1  jonathan  */
    664       1.1  jonathan 
    665       1.6      matt DOMAIN_DEFINE(keydomain);
    666       1.1  jonathan 
    667      1.24     rmind PR_WRAP_USRREQS(key)
    668      1.24     rmind #define	key_attach	key_attach_wrapper
    669      1.24     rmind #define	key_detach	key_detach_wrapper
    670      1.35       rtr #define	key_accept	key_accept_wrapper
    671      1.37       rtr #define	key_bind	key_bind_wrapper
    672      1.37       rtr #define	key_listen	key_listen_wrapper
    673      1.38       rtr #define	key_connect	key_connect_wrapper
    674      1.43       rtr #define	key_connect2	key_connect2_wrapper
    675      1.39       rtr #define	key_disconnect	key_disconnect_wrapper
    676      1.39       rtr #define	key_shutdown	key_shutdown_wrapper
    677      1.39       rtr #define	key_abort	key_abort_wrapper
    678      1.28       rtr #define	key_ioctl	key_ioctl_wrapper
    679      1.30       rtr #define	key_stat	key_stat_wrapper
    680      1.34       rtr #define	key_peeraddr	key_peeraddr_wrapper
    681      1.34       rtr #define	key_sockaddr	key_sockaddr_wrapper
    682      1.42       rtr #define	key_rcvd	key_rcvd_wrapper
    683      1.36       rtr #define	key_recvoob	key_recvoob_wrapper
    684      1.41       rtr #define	key_send	key_send_wrapper
    685      1.36       rtr #define	key_sendoob	key_sendoob_wrapper
    686      1.43       rtr #define	key_purgeif	key_purgeif_wrapper
    687      1.22     rmind 
    688      1.49  riastrad static const struct pr_usrreqs key_usrreqs = {
    689      1.23     rmind 	.pr_attach	= key_attach,
    690      1.23     rmind 	.pr_detach	= key_detach,
    691      1.35       rtr 	.pr_accept	= key_accept,
    692      1.37       rtr 	.pr_bind	= key_bind,
    693      1.37       rtr 	.pr_listen	= key_listen,
    694      1.38       rtr 	.pr_connect	= key_connect,
    695      1.43       rtr 	.pr_connect2	= key_connect2,
    696      1.39       rtr 	.pr_disconnect	= key_disconnect,
    697      1.39       rtr 	.pr_shutdown	= key_shutdown,
    698      1.39       rtr 	.pr_abort	= key_abort,
    699      1.28       rtr 	.pr_ioctl	= key_ioctl,
    700      1.30       rtr 	.pr_stat	= key_stat,
    701      1.34       rtr 	.pr_peeraddr	= key_peeraddr,
    702      1.34       rtr 	.pr_sockaddr	= key_sockaddr,
    703      1.42       rtr 	.pr_rcvd	= key_rcvd,
    704      1.36       rtr 	.pr_recvoob	= key_recvoob,
    705      1.41       rtr 	.pr_send	= key_send,
    706      1.36       rtr 	.pr_sendoob	= key_sendoob,
    707      1.43       rtr 	.pr_purgeif	= key_purgeif,
    708      1.22     rmind };
    709      1.22     rmind 
    710      1.49  riastrad static const struct protosw keysw[] = {
    711      1.10      matt     {
    712      1.10      matt 	.pr_type = SOCK_RAW,
    713      1.10      matt 	.pr_domain = &keydomain,
    714      1.10      matt 	.pr_protocol = PF_KEY_V2,
    715      1.10      matt 	.pr_flags = PR_ATOMIC|PR_ADDR,
    716      1.10      matt 	.pr_ctlinput = raw_ctlinput,
    717      1.22     rmind 	.pr_usrreqs = &key_usrreqs,
    718      1.10      matt 	.pr_init = raw_init,
    719      1.10      matt     }
    720       1.1  jonathan };
    721       1.1  jonathan 
    722      1.10      matt struct domain keydomain = {
    723      1.10      matt     .dom_family = PF_KEY,
    724      1.10      matt     .dom_name = "key",
    725      1.10      matt     .dom_init = key_init,
    726      1.10      matt     .dom_protosw = keysw,
    727      1.10      matt     .dom_protoswNPROTOSW = &keysw[__arraycount(keysw)],
    728      1.10      matt };
    729