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ip6_mroute.c revision 1.22
      1 /*	$NetBSD: ip6_mroute.c,v 1.22 2001/07/25 09:23:46 itojun Exp $	*/
      2 /*	$KAME: ip6_mroute.c,v 1.49 2001/07/25 09:21:18 jinmei Exp $	*/
      3 
      4 /*
      5  * Copyright (C) 1998 WIDE Project.
      6  * All rights reserved.
      7  *
      8  * Redistribution and use in source and binary forms, with or without
      9  * modification, are permitted provided that the following conditions
     10  * are met:
     11  * 1. Redistributions of source code must retain the above copyright
     12  *    notice, this list of conditions and the following disclaimer.
     13  * 2. Redistributions in binary form must reproduce the above copyright
     14  *    notice, this list of conditions and the following disclaimer in the
     15  *    documentation and/or other materials provided with the distribution.
     16  * 3. Neither the name of the project nor the names of its contributors
     17  *    may be used to endorse or promote products derived from this software
     18  *    without specific prior written permission.
     19  *
     20  * THIS SOFTWARE IS PROVIDED BY THE PROJECT AND CONTRIBUTORS ``AS IS'' AND
     21  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     22  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     23  * ARE DISCLAIMED.  IN NO EVENT SHALL THE PROJECT OR CONTRIBUTORS BE LIABLE
     24  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     25  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     26  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     27  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     28  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     29  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     30  * SUCH DAMAGE.
     31  */
     32 
     33 /*	BSDI ip_mroute.c,v 2.10 1996/11/14 00:29:52 jch Exp	*/
     34 
     35 /*
     36  * IP multicast forwarding procedures
     37  *
     38  * Written by David Waitzman, BBN Labs, August 1988.
     39  * Modified by Steve Deering, Stanford, February 1989.
     40  * Modified by Mark J. Steiglitz, Stanford, May, 1991
     41  * Modified by Van Jacobson, LBL, January 1993
     42  * Modified by Ajit Thyagarajan, PARC, August 1993
     43  * Modified by Bill Fenenr, PARC, April 1994
     44  *
     45  * MROUTING Revision: 3.5.1.2 + PIM-SMv2 (pimd) Support
     46  */
     47 
     48 #include "opt_inet.h"
     49 
     50 #ifndef _KERNEL
     51 # ifdef KERNEL
     52 #  define _KERNEL
     53 # endif
     54 #endif
     55 
     56 #include <sys/param.h>
     57 #include <sys/systm.h>
     58 #include <sys/callout.h>
     59 #include <sys/mbuf.h>
     60 #include <sys/socket.h>
     61 #include <sys/socketvar.h>
     62 #include <sys/sockio.h>
     63 #include <sys/protosw.h>
     64 #include <sys/errno.h>
     65 #include <sys/time.h>
     66 #include <sys/kernel.h>
     67 #include <sys/ioctl.h>
     68 #include <sys/syslog.h>
     69 
     70 #include <net/if.h>
     71 #include <net/route.h>
     72 #include <net/raw_cb.h>
     73 
     74 #include <netinet/in.h>
     75 #include <netinet/in_var.h>
     76 
     77 #include <netinet/ip6.h>
     78 #include <netinet6/ip6_var.h>
     79 #include <netinet6/ip6_mroute.h>
     80 #include <netinet6/pim6.h>
     81 #include <netinet6/pim6_var.h>
     82 
     83 #include <net/net_osdep.h>
     84 
     85 #define M_HASCL(m) ((m)->m_flags & M_EXT)
     86 
     87 static int ip6_mdq __P((struct mbuf *, struct ifnet *, struct mf6c *));
     88 static void phyint_send __P((struct ip6_hdr *, struct mif6 *, struct mbuf *));
     89 
     90 static int set_pim6 __P((int *));
     91 static int get_pim6 __P((struct mbuf *));
     92 static int socket_send __P((struct socket *, struct mbuf *,
     93 			    struct sockaddr_in6 *));
     94 static int register_send __P((struct ip6_hdr *, struct mif6 *,
     95 			      struct mbuf *));
     96 
     97 /*
     98  * Globals.  All but ip6_mrouter, ip6_mrtproto and mrt6stat could be static,
     99  * except for netstat or debugging purposes.
    100  */
    101 struct socket  *ip6_mrouter  = NULL;
    102 int		ip6_mrouter_ver = 0;
    103 int		ip6_mrtproto = IPPROTO_PIM;    /* for netstat only */
    104 struct mrt6stat	mrt6stat;
    105 
    106 #define NO_RTE_FOUND 	0x1
    107 #define RTE_FOUND	0x2
    108 
    109 struct mf6c	*mf6ctable[MF6CTBLSIZ];
    110 u_char		nexpire[MF6CTBLSIZ];
    111 static struct mif6 mif6table[MAXMIFS];
    112 #ifdef MRT6DEBUG
    113 u_int		mrt6debug = 0;	  /* debug level 	*/
    114 #define		DEBUG_MFC	0x02
    115 #define		DEBUG_FORWARD	0x04
    116 #define		DEBUG_EXPIRE	0x08
    117 #define		DEBUG_XMIT	0x10
    118 #define         DEBUG_REG       0x20
    119 #define         DEBUG_PIM       0x40
    120 #endif
    121 
    122 static void	expire_upcalls __P((void *));
    123 #define		EXPIRE_TIMEOUT	(hz / 4)	/* 4x / second */
    124 #define		UPCALL_EXPIRE	6		/* number of timeouts */
    125 
    126 #ifdef INET
    127 #ifdef MROUTING
    128 extern struct socket *ip_mrouter;
    129 #endif
    130 #endif
    131 
    132 /*
    133  * 'Interfaces' associated with decapsulator (so we can tell
    134  * packets that went through it from ones that get reflected
    135  * by a broken gateway).  These interfaces are never linked into
    136  * the system ifnet list & no routes point to them.  I.e., packets
    137  * can't be sent this way.  They only exist as a placeholder for
    138  * multicast source verification.
    139  */
    140 struct ifnet multicast_register_if;
    141 
    142 #define ENCAP_HOPS 64
    143 
    144 /*
    145  * Private variables.
    146  */
    147 static mifi_t nummifs = 0;
    148 static mifi_t reg_mif_num = (mifi_t)-1;
    149 
    150 static struct pim6stat pim6stat;
    151 
    152 /*
    153  * one-back cache used by ipip_input to locate a tunnel's mif
    154  * given a datagram's src ip address.
    155  */
    156 static int pim6;
    157 
    158 /*
    159  * Hash function for a source, group entry
    160  */
    161 #define MF6CHASH(a, g) MF6CHASHMOD((a).s6_addr32[0] ^ (a).s6_addr32[1] ^ \
    162 				   (a).s6_addr32[2] ^ (a).s6_addr32[3] ^ \
    163 				   (g).s6_addr32[0] ^ (g).s6_addr32[1] ^ \
    164 				   (g).s6_addr32[2] ^ (g).s6_addr32[3])
    165 
    166 /*
    167  * Find a route for a given origin IPv6 address and Multicast group address.
    168  * Quality of service parameter to be added in the future!!!
    169  */
    170 
    171 #define MF6CFIND(o, g, rt) do { \
    172 	struct mf6c *_rt = mf6ctable[MF6CHASH(o,g)]; \
    173 	rt = NULL; \
    174 	mrt6stat.mrt6s_mfc_lookups++; \
    175 	while (_rt) { \
    176 		if (IN6_ARE_ADDR_EQUAL(&_rt->mf6c_origin.sin6_addr, &(o)) && \
    177 		    IN6_ARE_ADDR_EQUAL(&_rt->mf6c_mcastgrp.sin6_addr, &(g)) && \
    178 		    (_rt->mf6c_stall == NULL)) { \
    179 			rt = _rt; \
    180 			break; \
    181 		} \
    182 		_rt = _rt->mf6c_next; \
    183 	} \
    184 	if (rt == NULL) { \
    185 		mrt6stat.mrt6s_mfc_misses++; \
    186 	} \
    187 } while (0)
    188 
    189 /*
    190  * Macros to compute elapsed time efficiently
    191  * Borrowed from Van Jacobson's scheduling code
    192  */
    193 #define TV_DELTA(a, b, delta) do { \
    194 	    int xxs; \
    195 		\
    196 	    delta = (a).tv_usec - (b).tv_usec; \
    197 	    if ((xxs = (a).tv_sec - (b).tv_sec)) { \
    198 	       switch (xxs) { \
    199 		      case 2: \
    200 			  delta += 1000000; \
    201 			      /* fall through */ \
    202 		      case 1: \
    203 			  delta += 1000000; \
    204 			  break; \
    205 		      default: \
    206 			  delta += (1000000 * xxs); \
    207 	       } \
    208 	    } \
    209 } while (0)
    210 
    211 #define TV_LT(a, b) (((a).tv_usec < (b).tv_usec && \
    212 	      (a).tv_sec <= (b).tv_sec) || (a).tv_sec < (b).tv_sec)
    213 
    214 #ifdef UPCALL_TIMING
    215 #define UPCALL_MAX	50
    216 u_long upcall_data[UPCALL_MAX + 1];
    217 static void collate();
    218 #endif /* UPCALL_TIMING */
    219 
    220 static int get_sg_cnt __P((struct sioc_sg_req6 *));
    221 static int get_mif6_cnt __P((struct sioc_mif_req6 *));
    222 static int ip6_mrouter_init __P((struct socket *, struct mbuf *, int));
    223 static int add_m6if __P((struct mif6ctl *));
    224 static int del_m6if __P((mifi_t *));
    225 static int add_m6fc __P((struct mf6cctl *));
    226 static int del_m6fc __P((struct mf6cctl *));
    227 
    228 static struct callout expire_upcalls_ch = CALLOUT_INITIALIZER;
    229 
    230 /*
    231  * Handle MRT setsockopt commands to modify the multicast routing tables.
    232  */
    233 int
    234 ip6_mrouter_set(cmd, so, m)
    235 	int cmd;
    236 	struct socket *so;
    237 	struct mbuf *m;
    238 {
    239 	if (cmd != MRT6_INIT && so != ip6_mrouter)
    240 		return EACCES;
    241 
    242 	switch (cmd) {
    243 	 case MRT6_OINIT:     return ip6_mrouter_init(so, m, cmd);
    244 	 case MRT6_INIT:      return ip6_mrouter_init(so, m, cmd);
    245 	 case MRT6_DONE:      return ip6_mrouter_done();
    246 	 case MRT6_ADD_MIF:   return add_m6if(mtod(m, struct mif6ctl *));
    247 	 case MRT6_DEL_MIF:   return del_m6if(mtod(m, mifi_t *));
    248 	 case MRT6_ADD_MFC:   return add_m6fc(mtod(m, struct mf6cctl *));
    249 	 case MRT6_DEL_MFC:   return del_m6fc(mtod(m, struct mf6cctl *));
    250 	 case MRT6_PIM:       return set_pim6(mtod(m, int *));
    251 	 default:            return EOPNOTSUPP;
    252 	}
    253 }
    254 
    255 /*
    256  * Handle MRT getsockopt commands
    257  */
    258 int
    259 ip6_mrouter_get(cmd, so, m)
    260 	int cmd;
    261 	struct socket *so;
    262 	struct mbuf **m;
    263 {
    264 	struct mbuf *mb;
    265 
    266 	if (so != ip6_mrouter) return EACCES;
    267 
    268 	*m = mb = m_get(M_WAIT, MT_SOOPTS);
    269 
    270 	switch (cmd) {
    271 	 case MRT6_PIM:       return get_pim6(mb);
    272 	 default:
    273 		 m_free(mb);
    274 		 return EOPNOTSUPP;
    275 	}
    276 }
    277 
    278 /*
    279  * Handle ioctl commands to obtain information from the cache
    280  */
    281 int
    282 mrt6_ioctl(cmd, data)
    283 	int cmd;
    284 	caddr_t data;
    285 {
    286     int error = 0;
    287 
    288     switch (cmd) {
    289      case SIOCGETSGCNT_IN6:
    290 	     return(get_sg_cnt((struct sioc_sg_req6 *)data));
    291 	     break;		/* for safety */
    292      case SIOCGETMIFCNT_IN6:
    293 	     return(get_mif6_cnt((struct sioc_mif_req6 *)data));
    294 	     break;		/* for safety */
    295      default:
    296 	     return (EINVAL);
    297 	     break;
    298     }
    299     return error;
    300 }
    301 
    302 /*
    303  * returns the packet, byte, rpf-failure count for the source group provided
    304  */
    305 static int
    306 get_sg_cnt(req)
    307 	struct sioc_sg_req6 *req;
    308 {
    309 	struct mf6c *rt;
    310 	int s;
    311 
    312 	s = splsoftnet();
    313 	MF6CFIND(req->src.sin6_addr, req->grp.sin6_addr, rt);
    314 	splx(s);
    315 	if (rt != NULL) {
    316 		req->pktcnt = rt->mf6c_pkt_cnt;
    317 		req->bytecnt = rt->mf6c_byte_cnt;
    318 		req->wrong_if = rt->mf6c_wrong_if;
    319 	} else
    320 		return(ESRCH);
    321 #if 0
    322 		req->pktcnt = req->bytecnt = req->wrong_if = 0xffffffff;
    323 #endif
    324 
    325 	return 0;
    326 }
    327 
    328 /*
    329  * returns the input and output packet and byte counts on the mif provided
    330  */
    331 static int
    332 get_mif6_cnt(req)
    333 	struct sioc_mif_req6 *req;
    334 {
    335 	mifi_t mifi = req->mifi;
    336 
    337 	if (mifi >= nummifs)
    338 		return EINVAL;
    339 
    340 	req->icount = mif6table[mifi].m6_pkt_in;
    341 	req->ocount = mif6table[mifi].m6_pkt_out;
    342 	req->ibytes = mif6table[mifi].m6_bytes_in;
    343 	req->obytes = mif6table[mifi].m6_bytes_out;
    344 
    345 	return 0;
    346 }
    347 
    348 /*
    349  * Get PIM processiong global
    350  */
    351 static int
    352 get_pim6(m)
    353 	struct mbuf *m;
    354 {
    355 	int *i;
    356 
    357 	i = mtod(m, int *);
    358 
    359 	*i = pim6;
    360 
    361 	return 0;
    362 }
    363 
    364 static int
    365 set_pim6(i)
    366 	int *i;
    367 {
    368 	if ((*i != 1) && (*i != 0))
    369 		return EINVAL;
    370 
    371 	pim6 = *i;
    372 
    373 	return 0;
    374 }
    375 
    376 /*
    377  * Enable multicast routing
    378  */
    379 static int
    380 ip6_mrouter_init(so, m, cmd)
    381 	struct socket *so;
    382 	struct mbuf *m;
    383 	int cmd;
    384 {
    385 	int *v;
    386 
    387 #ifdef MRT6DEBUG
    388 	if (mrt6debug)
    389 		log(LOG_DEBUG,
    390 		    "ip6_mrouter_init: so_type = %d, pr_protocol = %d\n",
    391 		    so->so_type, so->so_proto->pr_protocol);
    392 #endif
    393 
    394 	if (so->so_type != SOCK_RAW ||
    395 	    so->so_proto->pr_protocol != IPPROTO_ICMPV6)
    396 		return EOPNOTSUPP;
    397 
    398 	if (!m || (m->m_len != sizeof(int *)))
    399 		return ENOPROTOOPT;
    400 
    401 	v = mtod(m, int *);
    402 	if (*v != 1)
    403 		return ENOPROTOOPT;
    404 
    405 	if (ip6_mrouter != NULL) return EADDRINUSE;
    406 
    407 	ip6_mrouter = so;
    408 	ip6_mrouter_ver = cmd;
    409 
    410 	bzero((caddr_t)mf6ctable, sizeof(mf6ctable));
    411 	bzero((caddr_t)nexpire, sizeof(nexpire));
    412 
    413 	pim6 = 0;/* used for stubbing out/in pim stuff */
    414 
    415 	callout_reset(&expire_upcalls_ch, EXPIRE_TIMEOUT,
    416 	    expire_upcalls, NULL);
    417 
    418 #ifdef MRT6DEBUG
    419 	if (mrt6debug)
    420 		log(LOG_DEBUG, "ip6_mrouter_init\n");
    421 #endif
    422 
    423 	return 0;
    424 }
    425 
    426 /*
    427  * Disable multicast routing
    428  */
    429 int
    430 ip6_mrouter_done()
    431 {
    432 	mifi_t mifi;
    433 	int i;
    434 	struct ifnet *ifp;
    435 	struct in6_ifreq ifr;
    436 	struct mf6c *rt;
    437 	struct rtdetq *rte;
    438 	int s;
    439 
    440 	s = splsoftnet();
    441 
    442 	/*
    443 	 * For each phyint in use, disable promiscuous reception of all IPv6
    444 	 * multicasts.
    445 	 */
    446 #ifdef INET
    447 #ifdef MROUTING
    448 	/*
    449 	 * If there is still IPv4 multicast routing daemon,
    450 	 * we remain interfaces to receive all muliticasted packets.
    451 	 * XXX: there may be an interface in which the IPv4 multicast
    452 	 * daemon is not interested...
    453 	 */
    454 	if (!ip_mrouter)
    455 #endif
    456 #endif
    457 	{
    458 		for (mifi = 0; mifi < nummifs; mifi++) {
    459 			if (mif6table[mifi].m6_ifp &&
    460 			    !(mif6table[mifi].m6_flags & MIFF_REGISTER)) {
    461 				ifr.ifr_addr.sin6_family = AF_INET6;
    462 				ifr.ifr_addr.sin6_addr= in6addr_any;
    463 				ifp = mif6table[mifi].m6_ifp;
    464 				(*ifp->if_ioctl)(ifp, SIOCDELMULTI,
    465 						 (caddr_t)&ifr);
    466 			}
    467 		}
    468 	}
    469 #ifdef notyet
    470 	bzero((caddr_t)qtable, sizeof(qtable));
    471 	bzero((caddr_t)tbftable, sizeof(tbftable));
    472 #endif
    473 	bzero((caddr_t)mif6table, sizeof(mif6table));
    474 	nummifs = 0;
    475 
    476 	pim6 = 0; /* used to stub out/in pim specific code */
    477 
    478 	callout_stop(&expire_upcalls_ch);
    479 
    480 	/*
    481 	 * Free all multicast forwarding cache entries.
    482 	 */
    483 	for (i = 0; i < MF6CTBLSIZ; i++) {
    484 		rt = mf6ctable[i];
    485 		while (rt) {
    486 			struct mf6c *frt;
    487 
    488 			for (rte = rt->mf6c_stall; rte != NULL; ) {
    489 				struct rtdetq *n = rte->next;
    490 
    491 				m_free(rte->m);
    492 				free(rte, M_MRTABLE);
    493 				rte = n;
    494 			}
    495 			frt = rt;
    496 			rt = rt->mf6c_next;
    497 			free(frt, M_MRTABLE);
    498 		}
    499 	}
    500 
    501 	bzero((caddr_t)mf6ctable, sizeof(mf6ctable));
    502 
    503 	/*
    504 	 * Reset de-encapsulation cache
    505 	 */
    506 	reg_mif_num = -1;
    507 
    508 	ip6_mrouter = NULL;
    509 	ip6_mrouter_ver = 0;
    510 
    511 	splx(s);
    512 
    513 #ifdef MRT6DEBUG
    514 	if (mrt6debug)
    515 		log(LOG_DEBUG, "ip6_mrouter_done\n");
    516 #endif
    517 
    518 	return 0;
    519 }
    520 
    521 static struct sockaddr_in6 sin6 = { sizeof(sin6), AF_INET6 };
    522 
    523 /*
    524  * Add a mif to the mif table
    525  */
    526 static int
    527 add_m6if(mifcp)
    528 	struct mif6ctl *mifcp;
    529 {
    530 	struct mif6 *mifp;
    531 	struct ifnet *ifp;
    532 	struct in6_ifreq ifr;
    533 	int error, s;
    534 #ifdef notyet
    535 	struct tbf *m_tbf = tbftable + mifcp->mif6c_mifi;
    536 #endif
    537 
    538 	if (mifcp->mif6c_mifi >= MAXMIFS)
    539 		return EINVAL;
    540 	mifp = mif6table + mifcp->mif6c_mifi;
    541 	if (mifp->m6_ifp)
    542 		return EADDRINUSE; /* XXX: is it appropriate? */
    543 	if (mifcp->mif6c_pifi == 0 || mifcp->mif6c_pifi > if_index)
    544 		return ENXIO;
    545 	/*
    546 	 * XXX: some OSes can remove ifp and clear ifindex2ifnet[id]
    547 	 * even for id between 0 and if_index.
    548 	 */
    549 	if ((ifp = ifindex2ifnet[mifcp->mif6c_pifi]) == NULL)
    550 		return ENXIO;
    551 
    552 	if (mifcp->mif6c_flags & MIFF_REGISTER) {
    553 		if (reg_mif_num == (mifi_t)-1) {
    554 			strcpy(multicast_register_if.if_xname,
    555 			       "register_mif"); /* XXX */
    556 			multicast_register_if.if_flags |= IFF_LOOPBACK;
    557 			multicast_register_if.if_index = mifcp->mif6c_mifi;
    558 			reg_mif_num = mifcp->mif6c_mifi;
    559 		}
    560 
    561 		ifp = &multicast_register_if;
    562 
    563 	} /* if REGISTER */
    564 	else {
    565 		/* Make sure the interface supports multicast */
    566 		if ((ifp->if_flags & IFF_MULTICAST) == 0)
    567 			return EOPNOTSUPP;
    568 
    569 		s = splsoftnet();
    570 		/*
    571 		 * Enable promiscuous reception of all IPv6 multicasts
    572 		 * from the interface.
    573 		 */
    574 		ifr.ifr_addr.sin6_family = AF_INET6;
    575 		ifr.ifr_addr.sin6_addr = in6addr_any;
    576 		error = (*ifp->if_ioctl)(ifp, SIOCADDMULTI, (caddr_t)&ifr);
    577 		splx(s);
    578 		if (error)
    579 			return error;
    580 	}
    581 
    582 	s = splsoftnet();
    583 	mifp->m6_flags     = mifcp->mif6c_flags;
    584 	mifp->m6_ifp       = ifp;
    585 #ifdef notyet
    586 	/* scaling up here allows division by 1024 in critical code */
    587 	mifp->m6_rate_limit = mifcp->mif6c_rate_limit * 1024 / 1000;
    588 #endif
    589 	/* initialize per mif pkt counters */
    590 	mifp->m6_pkt_in    = 0;
    591 	mifp->m6_pkt_out   = 0;
    592 	mifp->m6_bytes_in  = 0;
    593 	mifp->m6_bytes_out = 0;
    594 	splx(s);
    595 
    596 	/* Adjust nummifs up if the mifi is higher than nummifs */
    597 	if (nummifs <= mifcp->mif6c_mifi)
    598 		nummifs = mifcp->mif6c_mifi + 1;
    599 
    600 #ifdef MRT6DEBUG
    601 	if (mrt6debug)
    602 		log(LOG_DEBUG,
    603 		    "add_mif #%d, phyint %s%d\n",
    604 		    mifcp->mif6c_mifi,
    605 		    ifp->if_name, ifp->if_unit);
    606 #endif
    607 
    608 	return 0;
    609 }
    610 
    611 /*
    612  * Delete a mif from the mif table
    613  */
    614 static int
    615 del_m6if(mifip)
    616 	mifi_t *mifip;
    617 {
    618 	struct mif6 *mifp = mif6table + *mifip;
    619 	mifi_t mifi;
    620 	struct ifnet *ifp;
    621 	struct in6_ifreq ifr;
    622 	int s;
    623 
    624 	if (*mifip >= nummifs)
    625 		return EINVAL;
    626 	if (mifp->m6_ifp == NULL)
    627 		return EINVAL;
    628 
    629 	s = splsoftnet();
    630 
    631 	if (!(mifp->m6_flags & MIFF_REGISTER)) {
    632 		/*
    633 		 * XXX: what if there is yet IPv4 multicast daemon
    634 		 *      using the interface?
    635 		 */
    636 		ifp = mifp->m6_ifp;
    637 
    638 		ifr.ifr_addr.sin6_family = AF_INET6;
    639 		ifr.ifr_addr.sin6_addr = in6addr_any;
    640 		(*ifp->if_ioctl)(ifp, SIOCDELMULTI, (caddr_t)&ifr);
    641 	}
    642 
    643 #ifdef notyet
    644 	bzero((caddr_t)qtable[*mifip], sizeof(qtable[*mifip]));
    645 	bzero((caddr_t)mifp->m6_tbf, sizeof(*(mifp->m6_tbf)));
    646 #endif
    647 	bzero((caddr_t)mifp, sizeof (*mifp));
    648 
    649 	/* Adjust nummifs down */
    650 	for (mifi = nummifs; mifi > 0; mifi--)
    651 		if (mif6table[mifi - 1].m6_ifp)
    652 			break;
    653 	nummifs = mifi;
    654 
    655 	splx(s);
    656 
    657 #ifdef MRT6DEBUG
    658 	if (mrt6debug)
    659 		log(LOG_DEBUG, "del_m6if %d, nummifs %d\n", *mifip, nummifs);
    660 #endif
    661 
    662 	return 0;
    663 }
    664 
    665 /*
    666  * Add an mfc entry
    667  */
    668 static int
    669 add_m6fc(mfccp)
    670 	struct mf6cctl *mfccp;
    671 {
    672 	struct mf6c *rt;
    673 	u_long hash;
    674 	struct rtdetq *rte;
    675 	u_short nstl;
    676 	int s;
    677 
    678 	MF6CFIND(mfccp->mf6cc_origin.sin6_addr,
    679 		 mfccp->mf6cc_mcastgrp.sin6_addr, rt);
    680 
    681 	/* If an entry already exists, just update the fields */
    682 	if (rt) {
    683 #ifdef MRT6DEBUG
    684 		if (mrt6debug & DEBUG_MFC)
    685 			log(LOG_DEBUG,"add_m6fc update o %s g %s p %x\n",
    686 			    ip6_sprintf(&mfccp->mf6cc_origin.sin6_addr),
    687 			    ip6_sprintf(&mfccp->mf6cc_mcastgrp.sin6_addr),
    688 			    mfccp->mf6cc_parent);
    689 #endif
    690 
    691 		s = splsoftnet();
    692 		rt->mf6c_parent = mfccp->mf6cc_parent;
    693 		rt->mf6c_ifset = mfccp->mf6cc_ifset;
    694 		splx(s);
    695 		return 0;
    696 	}
    697 
    698 	/*
    699 	 * Find the entry for which the upcall was made and update
    700 	 */
    701 	s = splsoftnet();
    702 	hash = MF6CHASH(mfccp->mf6cc_origin.sin6_addr,
    703 			mfccp->mf6cc_mcastgrp.sin6_addr);
    704 	for (rt = mf6ctable[hash], nstl = 0; rt; rt = rt->mf6c_next) {
    705 		if (IN6_ARE_ADDR_EQUAL(&rt->mf6c_origin.sin6_addr,
    706 				       &mfccp->mf6cc_origin.sin6_addr) &&
    707 		    IN6_ARE_ADDR_EQUAL(&rt->mf6c_mcastgrp.sin6_addr,
    708 				       &mfccp->mf6cc_mcastgrp.sin6_addr) &&
    709 		    (rt->mf6c_stall != NULL)) {
    710 
    711 			if (nstl++)
    712 				log(LOG_ERR,
    713 				    "add_m6fc: %s o %s g %s p %x dbx %p\n",
    714 				    "multiple kernel entries",
    715 				    ip6_sprintf(&mfccp->mf6cc_origin.sin6_addr),
    716 				    ip6_sprintf(&mfccp->mf6cc_mcastgrp.sin6_addr),
    717 				    mfccp->mf6cc_parent, rt->mf6c_stall);
    718 
    719 #ifdef MRT6DEBUG
    720 			if (mrt6debug & DEBUG_MFC)
    721 				log(LOG_DEBUG,
    722 				    "add_m6fc o %s g %s p %x dbg %x\n",
    723 				    ip6_sprintf(&mfccp->mf6cc_origin.sin6_addr),
    724 				    ip6_sprintf(&mfccp->mf6cc_mcastgrp.sin6_addr),
    725 				    mfccp->mf6cc_parent, rt->mf6c_stall);
    726 #endif
    727 
    728 			rt->mf6c_origin     = mfccp->mf6cc_origin;
    729 			rt->mf6c_mcastgrp   = mfccp->mf6cc_mcastgrp;
    730 			rt->mf6c_parent     = mfccp->mf6cc_parent;
    731 			rt->mf6c_ifset	    = mfccp->mf6cc_ifset;
    732 			/* initialize pkt counters per src-grp */
    733 			rt->mf6c_pkt_cnt    = 0;
    734 			rt->mf6c_byte_cnt   = 0;
    735 			rt->mf6c_wrong_if   = 0;
    736 
    737 			rt->mf6c_expire = 0;	/* Don't clean this guy up */
    738 			nexpire[hash]--;
    739 
    740 			/* free packets Qed at the end of this entry */
    741 			for (rte = rt->mf6c_stall; rte != NULL; ) {
    742 				struct rtdetq *n = rte->next;
    743 				ip6_mdq(rte->m, rte->ifp, rt);
    744 				m_freem(rte->m);
    745 #ifdef UPCALL_TIMING
    746 				collate(&(rte->t));
    747 #endif /* UPCALL_TIMING */
    748 				free(rte, M_MRTABLE);
    749 				rte = n;
    750 			}
    751 			rt->mf6c_stall = NULL;
    752 		}
    753 	}
    754 
    755 	/*
    756 	 * It is possible that an entry is being inserted without an upcall
    757 	 */
    758 	if (nstl == 0) {
    759 #ifdef MRT6DEBUG
    760 		if (mrt6debug & DEBUG_MFC)
    761 			log(LOG_DEBUG,"add_mfc no upcall h %d o %s g %s p %x\n",
    762 			    hash,
    763 			    ip6_sprintf(&mfccp->mf6cc_origin.sin6_addr),
    764 			    ip6_sprintf(&mfccp->mf6cc_mcastgrp.sin6_addr),
    765 			    mfccp->mf6cc_parent);
    766 #endif
    767 
    768 		for (rt = mf6ctable[hash]; rt; rt = rt->mf6c_next) {
    769 
    770 			if (IN6_ARE_ADDR_EQUAL(&rt->mf6c_origin.sin6_addr,
    771 					       &mfccp->mf6cc_origin.sin6_addr)&&
    772 			    IN6_ARE_ADDR_EQUAL(&rt->mf6c_mcastgrp.sin6_addr,
    773 					       &mfccp->mf6cc_mcastgrp.sin6_addr)) {
    774 
    775 				rt->mf6c_origin     = mfccp->mf6cc_origin;
    776 				rt->mf6c_mcastgrp   = mfccp->mf6cc_mcastgrp;
    777 				rt->mf6c_parent     = mfccp->mf6cc_parent;
    778 				rt->mf6c_ifset	    = mfccp->mf6cc_ifset;
    779 				/* initialize pkt counters per src-grp */
    780 				rt->mf6c_pkt_cnt    = 0;
    781 				rt->mf6c_byte_cnt   = 0;
    782 				rt->mf6c_wrong_if   = 0;
    783 
    784 				if (rt->mf6c_expire)
    785 					nexpire[hash]--;
    786 				rt->mf6c_expire	   = 0;
    787 			}
    788 		}
    789 		if (rt == NULL) {
    790 			/* no upcall, so make a new entry */
    791 			rt = (struct mf6c *)malloc(sizeof(*rt), M_MRTABLE,
    792 						  M_NOWAIT);
    793 			if (rt == NULL) {
    794 				splx(s);
    795 				return ENOBUFS;
    796 			}
    797 
    798 			/* insert new entry at head of hash chain */
    799 			rt->mf6c_origin     = mfccp->mf6cc_origin;
    800 			rt->mf6c_mcastgrp   = mfccp->mf6cc_mcastgrp;
    801 			rt->mf6c_parent     = mfccp->mf6cc_parent;
    802 			rt->mf6c_ifset	    = mfccp->mf6cc_ifset;
    803 			/* initialize pkt counters per src-grp */
    804 			rt->mf6c_pkt_cnt    = 0;
    805 			rt->mf6c_byte_cnt   = 0;
    806 			rt->mf6c_wrong_if   = 0;
    807 			rt->mf6c_expire     = 0;
    808 			rt->mf6c_stall = NULL;
    809 
    810 			/* link into table */
    811 			rt->mf6c_next  = mf6ctable[hash];
    812 			mf6ctable[hash] = rt;
    813 		}
    814 	}
    815 	splx(s);
    816 	return 0;
    817 }
    818 
    819 #ifdef UPCALL_TIMING
    820 /*
    821  * collect delay statistics on the upcalls
    822  */
    823 static void
    824 collate(t)
    825 	struct timeval *t;
    826 {
    827 	u_long d;
    828 	struct timeval tp;
    829 	u_long delta;
    830 
    831 	GET_TIME(tp);
    832 
    833 	if (TV_LT(*t, tp))
    834 	{
    835 		TV_DELTA(tp, *t, delta);
    836 
    837 		d = delta >> 10;
    838 		if (d > UPCALL_MAX)
    839 			d = UPCALL_MAX;
    840 
    841 		++upcall_data[d];
    842 	}
    843 }
    844 #endif /* UPCALL_TIMING */
    845 
    846 /*
    847  * Delete an mfc entry
    848  */
    849 static int
    850 del_m6fc(mfccp)
    851 	struct mf6cctl *mfccp;
    852 {
    853 	struct sockaddr_in6 	origin;
    854 	struct sockaddr_in6 	mcastgrp;
    855 	struct mf6c 		*rt;
    856 	struct mf6c	 	**nptr;
    857 	u_long 		hash;
    858 	int s;
    859 
    860 	origin = mfccp->mf6cc_origin;
    861 	mcastgrp = mfccp->mf6cc_mcastgrp;
    862 	hash = MF6CHASH(origin.sin6_addr, mcastgrp.sin6_addr);
    863 
    864 #ifdef MRT6DEBUG
    865 	if (mrt6debug & DEBUG_MFC)
    866 		log(LOG_DEBUG,"del_m6fc orig %s mcastgrp %s\n",
    867 		    ip6_sprintf(&origin.sin6_addr),
    868 		    ip6_sprintf(&mcastgrp.sin6_addr));
    869 #endif
    870 
    871 	s = splsoftnet();
    872 
    873 	nptr = &mf6ctable[hash];
    874 	while ((rt = *nptr) != NULL) {
    875 		if (IN6_ARE_ADDR_EQUAL(&origin.sin6_addr,
    876 				       &rt->mf6c_origin.sin6_addr) &&
    877 		    IN6_ARE_ADDR_EQUAL(&mcastgrp.sin6_addr,
    878 				       &rt->mf6c_mcastgrp.sin6_addr) &&
    879 		    rt->mf6c_stall == NULL)
    880 			break;
    881 
    882 		nptr = &rt->mf6c_next;
    883 	}
    884 	if (rt == NULL) {
    885 		splx(s);
    886 		return EADDRNOTAVAIL;
    887 	}
    888 
    889 	*nptr = rt->mf6c_next;
    890 	free(rt, M_MRTABLE);
    891 
    892 	splx(s);
    893 
    894 	return 0;
    895 }
    896 
    897 static int
    898 socket_send(s, mm, src)
    899 	struct socket *s;
    900 	struct mbuf *mm;
    901 	struct sockaddr_in6 *src;
    902 {
    903 	if (s) {
    904 		if (sbappendaddr(&s->so_rcv,
    905 				 (struct sockaddr *)src,
    906 				 mm, (struct mbuf *)0) != 0) {
    907 			sorwakeup(s);
    908 			return 0;
    909 		}
    910 	}
    911 	m_freem(mm);
    912 	return -1;
    913 }
    914 
    915 /*
    916  * IPv6 multicast forwarding function. This function assumes that the packet
    917  * pointed to by "ip6" has arrived on (or is about to be sent to) the interface
    918  * pointed to by "ifp", and the packet is to be relayed to other networks
    919  * that have members of the packet's destination IPv6 multicast group.
    920  *
    921  * The packet is returned unscathed to the caller, unless it is
    922  * erroneous, in which case a non-zero return value tells the caller to
    923  * discard it.
    924  */
    925 
    926 int
    927 ip6_mforward(ip6, ifp, m)
    928 	struct ip6_hdr *ip6;
    929 	struct ifnet *ifp;
    930 	struct mbuf *m;
    931 {
    932 	struct mf6c *rt;
    933 	struct mif6 *mifp;
    934 	struct mbuf *mm;
    935 	int s;
    936 	mifi_t mifi;
    937 	long time_second = time.tv_sec;
    938 
    939 #ifdef MRT6DEBUG
    940 	if (mrt6debug & DEBUG_FORWARD)
    941 		log(LOG_DEBUG, "ip6_mforward: src %s, dst %s, ifindex %d\n",
    942 		    ip6_sprintf(&ip6->ip6_src), ip6_sprintf(&ip6->ip6_dst),
    943 		    ifp->if_index);
    944 #endif
    945 
    946 	/*
    947 	 * Don't forward a packet with Hop limit of zero or one,
    948 	 * or a packet destined to a local-only group.
    949 	 */
    950 	if (ip6->ip6_hlim <= 1 || IN6_IS_ADDR_MC_NODELOCAL(&ip6->ip6_dst) ||
    951 	    IN6_IS_ADDR_MC_LINKLOCAL(&ip6->ip6_dst))
    952 		return 0;
    953 	ip6->ip6_hlim--;
    954 
    955 	/*
    956 	 * Source address check: do not forward packets with unspecified
    957 	 * source. It was discussed in July 2000, on ipngwg mailing list.
    958 	 * This is rather more serious than unicast cases, because some
    959 	 * MLD packets can be sent with the unspecified source address
    960 	 * (although such packets must normally set 1 to the hop limit field).
    961 	 */
    962 	if (IN6_IS_ADDR_UNSPECIFIED(&ip6->ip6_src)) {
    963 		ip6stat.ip6s_cantforward++;
    964 		if (ip6_log_time + ip6_log_interval < time_second) {
    965 			ip6_log_time = time_second;
    966 			log(LOG_DEBUG,
    967 			    "cannot forward "
    968 			    "from %s to %s nxt %d received on %s\n",
    969 			    ip6_sprintf(&ip6->ip6_src),
    970 			    ip6_sprintf(&ip6->ip6_dst),
    971 			    ip6->ip6_nxt,
    972 			    if_name(m->m_pkthdr.rcvif));
    973 		}
    974 		return 0;
    975 	}
    976 
    977 	/*
    978 	 * Determine forwarding mifs from the forwarding cache table
    979 	 */
    980 	s = splsoftnet();
    981 	MF6CFIND(ip6->ip6_src, ip6->ip6_dst, rt);
    982 
    983 	/* Entry exists, so forward if necessary */
    984 	if (rt) {
    985 		splx(s);
    986 		return (ip6_mdq(m, ifp, rt));
    987 	} else {
    988 		/*
    989 		 * If we don't have a route for packet's origin,
    990 		 * Make a copy of the packet &
    991 		 * send message to routing daemon
    992 		 */
    993 
    994 		struct mbuf *mb0;
    995 		struct rtdetq *rte;
    996 		u_long hash;
    997 /*		int i, npkts;*/
    998 #ifdef UPCALL_TIMING
    999 		struct timeval tp;
   1000 
   1001 		GET_TIME(tp);
   1002 #endif /* UPCALL_TIMING */
   1003 
   1004 		mrt6stat.mrt6s_no_route++;
   1005 #ifdef MRT6DEBUG
   1006 		if (mrt6debug & (DEBUG_FORWARD | DEBUG_MFC))
   1007 			log(LOG_DEBUG, "ip6_mforward: no rte s %s g %s\n",
   1008 			    ip6_sprintf(&ip6->ip6_src),
   1009 			    ip6_sprintf(&ip6->ip6_dst));
   1010 #endif
   1011 
   1012 		/*
   1013 		 * Allocate mbufs early so that we don't do extra work if we
   1014 		 * are just going to fail anyway.
   1015 		 */
   1016 		rte = (struct rtdetq *)malloc(sizeof(*rte), M_MRTABLE,
   1017 					      M_NOWAIT);
   1018 		if (rte == NULL) {
   1019 			splx(s);
   1020 			return ENOBUFS;
   1021 		}
   1022 		mb0 = m_copy(m, 0, M_COPYALL);
   1023 		/*
   1024 		 * Pullup packet header if needed before storing it,
   1025 		 * as other references may modify it in the meantime.
   1026 		 */
   1027 		if (mb0 &&
   1028 		    (M_HASCL(mb0) || mb0->m_len < sizeof(struct ip6_hdr)))
   1029 			mb0 = m_pullup(mb0, sizeof(struct ip6_hdr));
   1030 		if (mb0 == NULL) {
   1031 			free(rte, M_MRTABLE);
   1032 			splx(s);
   1033 			return ENOBUFS;
   1034 		}
   1035 
   1036 		/* is there an upcall waiting for this packet? */
   1037 		hash = MF6CHASH(ip6->ip6_src, ip6->ip6_dst);
   1038 		for (rt = mf6ctable[hash]; rt; rt = rt->mf6c_next) {
   1039 			if (IN6_ARE_ADDR_EQUAL(&ip6->ip6_src,
   1040 					       &rt->mf6c_origin.sin6_addr) &&
   1041 			    IN6_ARE_ADDR_EQUAL(&ip6->ip6_dst,
   1042 					       &rt->mf6c_mcastgrp.sin6_addr) &&
   1043 			    (rt->mf6c_stall != NULL))
   1044 				break;
   1045 		}
   1046 
   1047 		if (rt == NULL) {
   1048 			struct mrt6msg *im;
   1049 			struct omrt6msg *oim;
   1050 
   1051 			/* no upcall, so make a new entry */
   1052 			rt = (struct mf6c *)malloc(sizeof(*rt), M_MRTABLE,
   1053 						  M_NOWAIT);
   1054 			if (rt == NULL) {
   1055 				free(rte, M_MRTABLE);
   1056 				m_freem(mb0);
   1057 				splx(s);
   1058 				return ENOBUFS;
   1059 			}
   1060 			/*
   1061 			 * Make a copy of the header to send to the user
   1062 			 * level process
   1063 			 */
   1064 			mm = m_copy(mb0, 0, sizeof(struct ip6_hdr));
   1065 
   1066 			if (mm == NULL) {
   1067 				free(rte, M_MRTABLE);
   1068 				m_freem(mb0);
   1069 				free(rt, M_MRTABLE);
   1070 				splx(s);
   1071 				return ENOBUFS;
   1072 			}
   1073 
   1074 			/*
   1075 			 * Send message to routing daemon
   1076 			 */
   1077 			sin6.sin6_addr = ip6->ip6_src;
   1078 
   1079 			im = NULL;
   1080 			oim = NULL;
   1081 			switch (ip6_mrouter_ver) {
   1082 			case MRT6_OINIT:
   1083 				oim = mtod(mm, struct omrt6msg *);
   1084 				oim->im6_msgtype = MRT6MSG_NOCACHE;
   1085 				oim->im6_mbz = 0;
   1086 				break;
   1087 			case MRT6_INIT:
   1088 				im = mtod(mm, struct mrt6msg *);
   1089 				im->im6_msgtype = MRT6MSG_NOCACHE;
   1090 				im->im6_mbz = 0;
   1091 				break;
   1092 			default:
   1093 				free(rte, M_MRTABLE);
   1094 				m_freem(mb0);
   1095 				free(rt, M_MRTABLE);
   1096 				splx(s);
   1097 				return EINVAL;
   1098 			}
   1099 
   1100 #ifdef MRT6DEBUG
   1101 			if (mrt6debug & DEBUG_FORWARD)
   1102 				log(LOG_DEBUG,
   1103 				    "getting the iif info in the kernel\n");
   1104 #endif
   1105 
   1106 			for (mifp = mif6table, mifi = 0;
   1107 			     mifi < nummifs && mifp->m6_ifp != ifp;
   1108 			     mifp++, mifi++)
   1109 				;
   1110 
   1111 			switch (ip6_mrouter_ver) {
   1112 			case MRT6_OINIT:
   1113 				oim->im6_mif = mifi;
   1114 				break;
   1115 			case MRT6_INIT:
   1116 				im->im6_mif = mifi;
   1117 				break;
   1118 			}
   1119 
   1120 			if (socket_send(ip6_mrouter, mm, &sin6) < 0) {
   1121 				log(LOG_WARNING, "ip6_mforward: ip6_mrouter "
   1122 				    "socket queue full\n");
   1123 				mrt6stat.mrt6s_upq_sockfull++;
   1124 				free(rte, M_MRTABLE);
   1125 				m_freem(mb0);
   1126 				free(rt, M_MRTABLE);
   1127 				splx(s);
   1128 				return ENOBUFS;
   1129 			}
   1130 
   1131 			mrt6stat.mrt6s_upcalls++;
   1132 
   1133 			/* insert new entry at head of hash chain */
   1134 			bzero(rt, sizeof(*rt));
   1135 			rt->mf6c_origin.sin6_family = AF_INET6;
   1136 			rt->mf6c_origin.sin6_len = sizeof(struct sockaddr_in6);
   1137 			rt->mf6c_origin.sin6_addr = ip6->ip6_src;
   1138 			rt->mf6c_mcastgrp.sin6_family = AF_INET6;
   1139 			rt->mf6c_mcastgrp.sin6_len = sizeof(struct sockaddr_in6);
   1140 			rt->mf6c_mcastgrp.sin6_addr = ip6->ip6_dst;
   1141 			rt->mf6c_expire = UPCALL_EXPIRE;
   1142 			nexpire[hash]++;
   1143 			rt->mf6c_parent = MF6C_INCOMPLETE_PARENT;
   1144 
   1145 			/* link into table */
   1146 			rt->mf6c_next  = mf6ctable[hash];
   1147 			mf6ctable[hash] = rt;
   1148 			/* Add this entry to the end of the queue */
   1149 			rt->mf6c_stall = rte;
   1150 		} else {
   1151 			/* determine if q has overflowed */
   1152 			struct rtdetq **p;
   1153 			int npkts = 0;
   1154 
   1155 			for (p = &rt->mf6c_stall; *p != NULL; p = &(*p)->next)
   1156 				if (++npkts > MAX_UPQ6) {
   1157 					mrt6stat.mrt6s_upq_ovflw++;
   1158 					free(rte, M_MRTABLE);
   1159 					m_freem(mb0);
   1160 					splx(s);
   1161 					return 0;
   1162 				}
   1163 
   1164 			/* Add this entry to the end of the queue */
   1165 			*p = rte;
   1166 		}
   1167 
   1168 		rte->next = NULL;
   1169 		rte->m = mb0;
   1170 		rte->ifp = ifp;
   1171 #ifdef UPCALL_TIMING
   1172 		rte->t = tp;
   1173 #endif /* UPCALL_TIMING */
   1174 
   1175 		splx(s);
   1176 
   1177 		return 0;
   1178 	}
   1179 }
   1180 
   1181 /*
   1182  * Clean up cache entries if upcalls are not serviced
   1183  * Call from the Slow Timeout mechanism, every half second.
   1184  */
   1185 static void
   1186 expire_upcalls(unused)
   1187 	void *unused;
   1188 {
   1189 	struct rtdetq *rte;
   1190 	struct mf6c *mfc, **nptr;
   1191 	int i;
   1192 	int s;
   1193 
   1194 	s = splsoftnet();
   1195 	for (i = 0; i < MF6CTBLSIZ; i++) {
   1196 		if (nexpire[i] == 0)
   1197 			continue;
   1198 		nptr = &mf6ctable[i];
   1199 		while ((mfc = *nptr) != NULL) {
   1200 			rte = mfc->mf6c_stall;
   1201 			/*
   1202 			 * Skip real cache entries
   1203 			 * Make sure it wasn't marked to not expire (shouldn't happen)
   1204 			 * If it expires now
   1205 			 */
   1206 			if (rte != NULL &&
   1207 			    mfc->mf6c_expire != 0 &&
   1208 			    --mfc->mf6c_expire == 0) {
   1209 #ifdef MRT6DEBUG
   1210 				if (mrt6debug & DEBUG_EXPIRE)
   1211 					log(LOG_DEBUG, "expire_upcalls: expiring (%s %s)\n",
   1212 					    ip6_sprintf(&mfc->mf6c_origin.sin6_addr),
   1213 					    ip6_sprintf(&mfc->mf6c_mcastgrp.sin6_addr));
   1214 #endif
   1215 				/*
   1216 				 * drop all the packets
   1217 				 * free the mbuf with the pkt, if, timing info
   1218 				 */
   1219 				do {
   1220 					struct rtdetq *n = rte->next;
   1221 					m_freem(rte->m);
   1222 					free(rte, M_MRTABLE);
   1223 					rte = n;
   1224 				} while (rte != NULL);
   1225 				mrt6stat.mrt6s_cache_cleanups++;
   1226 				nexpire[i]--;
   1227 
   1228 				*nptr = mfc->mf6c_next;
   1229 				free(mfc, M_MRTABLE);
   1230 			} else {
   1231 				nptr = &mfc->mf6c_next;
   1232 			}
   1233 		}
   1234 	}
   1235 	splx(s);
   1236 	callout_reset(&expire_upcalls_ch, EXPIRE_TIMEOUT,
   1237 	    expire_upcalls, NULL);
   1238 }
   1239 
   1240 /*
   1241  * Packet forwarding routine once entry in the cache is made
   1242  */
   1243 static int
   1244 ip6_mdq(m, ifp, rt)
   1245 	struct mbuf *m;
   1246 	struct ifnet *ifp;
   1247 	struct mf6c *rt;
   1248 {
   1249 	struct ip6_hdr *ip6 = mtod(m, struct ip6_hdr *);
   1250 	mifi_t mifi, iif;
   1251 	struct mif6 *mifp;
   1252 	int plen = m->m_pkthdr.len;
   1253 
   1254 /*
   1255  * Macro to send packet on mif.  Since RSVP packets don't get counted on
   1256  * input, they shouldn't get counted on output, so statistics keeping is
   1257  * separate.
   1258  */
   1259 
   1260 #define MC6_SEND(ip6, mifp, m) do {				\
   1261 		if ((mifp)->m6_flags & MIFF_REGISTER)		\
   1262 		    register_send((ip6), (mifp), (m));		\
   1263 		else						\
   1264 		    phyint_send((ip6), (mifp), (m));		\
   1265 } while (0)
   1266 
   1267 	/*
   1268 	 * Don't forward if it didn't arrive from the parent mif
   1269 	 * for its origin.
   1270 	 */
   1271 	mifi = rt->mf6c_parent;
   1272 	if ((mifi >= nummifs) || (mif6table[mifi].m6_ifp != ifp)) {
   1273 		/* came in the wrong interface */
   1274 #ifdef MRT6DEBUG
   1275 		if (mrt6debug & DEBUG_FORWARD)
   1276 			log(LOG_DEBUG,
   1277 			    "wrong if: ifid %d mifi %d mififid %x\n",
   1278 			    ifp->if_index, mifi,
   1279 			    mif6table[mifi].m6_ifp->if_index);
   1280 #endif
   1281 		mrt6stat.mrt6s_wrong_if++;
   1282 		rt->mf6c_wrong_if++;
   1283 		/*
   1284 		 * If we are doing PIM processing, and we are forwarding
   1285 		 * packets on this interface, send a message to the
   1286 		 * routing daemon.
   1287 		 */
   1288 		/* have to make sure this is a valid mif */
   1289 		if (mifi < nummifs && mif6table[mifi].m6_ifp)
   1290 			if (pim6 && (m->m_flags & M_LOOP) == 0) {
   1291 				/*
   1292 				 * Check the M_LOOP flag to avoid an
   1293 				 * unnecessary PIM assert.
   1294 				 * XXX: M_LOOP is an ad-hoc hack...
   1295 				 */
   1296 				static struct sockaddr_in6 sin6 =
   1297 				{ sizeof(sin6), AF_INET6 };
   1298 
   1299 				struct mbuf *mm;
   1300 				struct mrt6msg *im;
   1301 				struct omrt6msg *oim;
   1302 
   1303 				mm = m_copy(m, 0, sizeof(struct ip6_hdr));
   1304 				if (mm &&
   1305 				    (M_HASCL(mm) ||
   1306 				     mm->m_len < sizeof(struct ip6_hdr)))
   1307 					mm = m_pullup(mm, sizeof(struct ip6_hdr));
   1308 				if (mm == NULL)
   1309 					return ENOBUFS;
   1310 
   1311 				oim = NULL;
   1312 				im = NULL;
   1313 				switch (ip6_mrouter_ver) {
   1314 				case MRT6_OINIT:
   1315 					oim = mtod(mm, struct omrt6msg *);
   1316 					oim->im6_msgtype = MRT6MSG_WRONGMIF;
   1317 					oim->im6_mbz = 0;
   1318 					break;
   1319 				case MRT6_INIT:
   1320 					im = mtod(mm, struct mrt6msg *);
   1321 					im->im6_msgtype = MRT6MSG_WRONGMIF;
   1322 					im->im6_mbz = 0;
   1323 					break;
   1324 				default:
   1325 					m_freem(mm);
   1326 					return EINVAL;
   1327 				}
   1328 
   1329 				for (mifp = mif6table, iif = 0;
   1330 				     iif < nummifs && mifp &&
   1331 					     mifp->m6_ifp != ifp;
   1332 				     mifp++, iif++)
   1333 					;
   1334 
   1335 				switch (ip6_mrouter_ver) {
   1336 				case MRT6_OINIT:
   1337 					oim->im6_mif = iif;
   1338 					sin6.sin6_addr = oim->im6_src;
   1339 					break;
   1340 				case MRT6_INIT:
   1341 					im->im6_mif = iif;
   1342 					sin6.sin6_addr = im->im6_src;
   1343 					break;
   1344 				}
   1345 
   1346 				mrt6stat.mrt6s_upcalls++;
   1347 
   1348 				if (socket_send(ip6_mrouter, mm, &sin6) < 0) {
   1349 #ifdef MRT6DEBUG
   1350 					if (mrt6debug)
   1351 						log(LOG_WARNING, "mdq, ip6_mrouter socket queue full\n");
   1352 #endif
   1353 					++mrt6stat.mrt6s_upq_sockfull;
   1354 					return ENOBUFS;
   1355 				}	/* if socket Q full */
   1356 			}		/* if PIM */
   1357 		return 0;
   1358 	}			/* if wrong iif */
   1359 
   1360 	/* If I sourced this packet, it counts as output, else it was input. */
   1361 	if (m->m_pkthdr.rcvif == NULL) {
   1362 		/* XXX: is rcvif really NULL when output?? */
   1363 		mif6table[mifi].m6_pkt_out++;
   1364 		mif6table[mifi].m6_bytes_out += plen;
   1365 	} else {
   1366 		mif6table[mifi].m6_pkt_in++;
   1367 		mif6table[mifi].m6_bytes_in += plen;
   1368 	}
   1369 	rt->mf6c_pkt_cnt++;
   1370 	rt->mf6c_byte_cnt += plen;
   1371 
   1372 	/*
   1373 	 * For each mif, forward a copy of the packet if there are group
   1374 	 * members downstream on the interface.
   1375 	 */
   1376 	for (mifp = mif6table, mifi = 0; mifi < nummifs; mifp++, mifi++)
   1377 		if (IF_ISSET(mifi, &rt->mf6c_ifset)) {
   1378 #ifdef notyet
   1379 			/*
   1380 			 * check if the outgoing packet is going to break
   1381 			 * a scope boundary.
   1382 			 * XXX For packets through PIM register tunnel
   1383 			 * interface, we believe a routing daemon.
   1384 			 */
   1385 			if ((mif6table[rt->mf6c_parent].m6_flags &
   1386 			     MIFF_REGISTER) == 0 &&
   1387 			    (mif6table[mifi].m6_flags & MIFF_REGISTER) == 0 &&
   1388 			    (in6_addr2scopeid(ifp, &ip6->ip6_dst) !=
   1389 			     in6_addr2scopeid(mif6table[mifi].m6_ifp,
   1390 					      &ip6->ip6_dst) ||
   1391 			     in6_addr2scopeid(ifp, &ip6->ip6_src) !=
   1392 			     in6_addr2scopeid(mif6table[mifi].m6_ifp,
   1393 					      &ip6->ip6_src))) {
   1394 				ip6stat.ip6s_badscope++;
   1395 				continue;
   1396 			}
   1397 #endif
   1398 
   1399 			mifp->m6_pkt_out++;
   1400 			mifp->m6_bytes_out += plen;
   1401 			MC6_SEND(ip6, mifp, m);
   1402 		}
   1403 	return 0;
   1404 }
   1405 
   1406 static void
   1407 phyint_send(ip6, mifp, m)
   1408     struct ip6_hdr *ip6;
   1409     struct mif6 *mifp;
   1410     struct mbuf *m;
   1411 {
   1412 	struct mbuf *mb_copy;
   1413 	struct ifnet *ifp = mifp->m6_ifp;
   1414 	int error = 0;
   1415 	int s = splsoftnet();
   1416 	static struct route_in6 ro;
   1417 	struct	in6_multi *in6m;
   1418 	struct sockaddr_in6 *dst6;
   1419 
   1420 	/*
   1421 	 * Make a new reference to the packet; make sure that
   1422 	 * the IPv6 header is actually copied, not just referenced,
   1423 	 * so that ip6_output() only scribbles on the copy.
   1424 	 */
   1425 	mb_copy = m_copy(m, 0, M_COPYALL);
   1426 	if (mb_copy &&
   1427 	    (M_HASCL(mb_copy) || mb_copy->m_len < sizeof(struct ip6_hdr)))
   1428 		mb_copy = m_pullup(mb_copy, sizeof(struct ip6_hdr));
   1429 	if (mb_copy == NULL) {
   1430 		splx(s);
   1431 		return;
   1432 	}
   1433 	/* set MCAST flag to the outgoing packet */
   1434 	mb_copy->m_flags |= M_MCAST;
   1435 
   1436 	/*
   1437 	 * If we sourced the packet, call ip6_output since we may devide
   1438 	 * the packet into fragments when the packet is too big for the
   1439 	 * outgoing interface.
   1440 	 * Otherwise, we can simply send the packet to the interface
   1441 	 * sending queue.
   1442 	 */
   1443 	if (m->m_pkthdr.rcvif == NULL) {
   1444 		struct ip6_moptions im6o;
   1445 
   1446 		im6o.im6o_multicast_ifp = ifp;
   1447 		/* XXX: ip6_output will override ip6->ip6_hlim */
   1448 		im6o.im6o_multicast_hlim = ip6->ip6_hlim;
   1449 		im6o.im6o_multicast_loop = 1;
   1450 		error = ip6_output(mb_copy, NULL, &ro,
   1451 				   IPV6_FORWARDING, &im6o, NULL);
   1452 
   1453 #ifdef MRT6DEBUG
   1454 		if (mrt6debug & DEBUG_XMIT)
   1455 			log(LOG_DEBUG, "phyint_send on mif %d err %d\n",
   1456 			    mifp - mif6table, error);
   1457 #endif
   1458 		splx(s);
   1459 		return;
   1460 	}
   1461 
   1462 	/*
   1463 	 * If we belong to the destination multicast group
   1464 	 * on the outgoing interface, loop back a copy.
   1465 	 */
   1466 	dst6 = (struct sockaddr_in6 *)&ro.ro_dst;
   1467 	IN6_LOOKUP_MULTI(ip6->ip6_dst, ifp, in6m);
   1468 	if (in6m != NULL) {
   1469 		dst6->sin6_len = sizeof(struct sockaddr_in6);
   1470 		dst6->sin6_family = AF_INET6;
   1471 		dst6->sin6_addr = ip6->ip6_dst;
   1472 		ip6_mloopback(ifp, m, (struct sockaddr_in6 *)&ro.ro_dst);
   1473 	}
   1474 	/*
   1475 	 * Put the packet into the sending queue of the outgoing interface
   1476 	 * if it would fit in the MTU of the interface.
   1477 	 */
   1478 	if (mb_copy->m_pkthdr.len < ifp->if_mtu || ifp->if_mtu < IPV6_MMTU) {
   1479 		dst6->sin6_len = sizeof(struct sockaddr_in6);
   1480 		dst6->sin6_family = AF_INET6;
   1481 		dst6->sin6_addr = ip6->ip6_dst;
   1482 		/*
   1483 		 * We just call if_output instead of nd6_output here, since
   1484 		 * we need no ND for a multicast forwarded packet...right?
   1485 		 */
   1486 		error = (*ifp->if_output)(ifp, mb_copy,
   1487 		    (struct sockaddr *)&ro.ro_dst, NULL);
   1488 #ifdef MRT6DEBUG
   1489 		if (mrt6debug & DEBUG_XMIT)
   1490 			log(LOG_DEBUG, "phyint_send on mif %d err %d\n",
   1491 			    mifp - mif6table, error);
   1492 #endif
   1493 	} else {
   1494 #ifdef MULTICAST_PMTUD
   1495 		icmp6_error(mb_copy, ICMP6_PACKET_TOO_BIG, 0, ifp->if_mtu);
   1496 #else
   1497 #ifdef MRT6DEBUG
   1498 		if (mrt6debug & DEBUG_XMIT)
   1499 			log(LOG_DEBUG,
   1500 			    "phyint_send: packet too big on %s o %s g %s"
   1501 			    " size %d(discarded)\n",
   1502 			    if_name(ifp),
   1503 			    ip6_sprintf(&ip6->ip6_src),
   1504 			    ip6_sprintf(&ip6->ip6_dst),
   1505 			    mb_copy->m_pkthdr.len);
   1506 #endif /* MRT6DEBUG */
   1507 		m_freem(mb_copy); /* simply discard the packet */
   1508 #endif
   1509 	}
   1510 
   1511 	splx(s);
   1512 }
   1513 
   1514 static int
   1515 register_send(ip6, mif, m)
   1516 	struct ip6_hdr *ip6;
   1517 	struct mif6 *mif;
   1518 	struct mbuf *m;
   1519 {
   1520 	struct mbuf *mm;
   1521 	int i, len = m->m_pkthdr.len;
   1522 	static struct sockaddr_in6 sin6 = { sizeof(sin6), AF_INET6 };
   1523 	struct mrt6msg *im6;
   1524 
   1525 #ifdef MRT6DEBUG
   1526 	if (mrt6debug)
   1527 		log(LOG_DEBUG, "** IPv6 register_send **\n src %s dst %s\n",
   1528 		    ip6_sprintf(&ip6->ip6_src), ip6_sprintf(&ip6->ip6_dst));
   1529 #endif
   1530 	++pim6stat.pim6s_snd_registers;
   1531 
   1532 	/* Make a copy of the packet to send to the user level process */
   1533 	MGETHDR(mm, M_DONTWAIT, MT_HEADER);
   1534 	if (mm == NULL)
   1535 		return ENOBUFS;
   1536 	mm->m_data += max_linkhdr;
   1537 	mm->m_len = sizeof(struct ip6_hdr);
   1538 
   1539 	if ((mm->m_next = m_copy(m, 0, M_COPYALL)) == NULL) {
   1540 		m_freem(mm);
   1541 		return ENOBUFS;
   1542 	}
   1543 	i = MHLEN - M_LEADINGSPACE(mm);
   1544 	if (i > len)
   1545 		i = len;
   1546 	mm = m_pullup(mm, i);
   1547 	if (mm == NULL){
   1548 		m_freem(mm);
   1549 		return ENOBUFS;
   1550 	}
   1551 /* TODO: check it! */
   1552 	mm->m_pkthdr.len = len + sizeof(struct ip6_hdr);
   1553 
   1554 	/*
   1555 	 * Send message to routing daemon
   1556 	 */
   1557 	sin6.sin6_addr = ip6->ip6_src;
   1558 
   1559 	im6 = mtod(mm, struct mrt6msg *);
   1560 	im6->im6_msgtype      = MRT6MSG_WHOLEPKT;
   1561 	im6->im6_mbz          = 0;
   1562 
   1563 	im6->im6_mif = mif - mif6table;
   1564 
   1565 	/* iif info is not given for reg. encap.n */
   1566 	mrt6stat.mrt6s_upcalls++;
   1567 
   1568 	if (socket_send(ip6_mrouter, mm, &sin6) < 0) {
   1569 #ifdef MRT6DEBUG
   1570 		if (mrt6debug)
   1571 			log(LOG_WARNING,
   1572 			    "register_send: ip_mrouter socket queue full\n");
   1573 #endif
   1574 		++mrt6stat.mrt6s_upq_sockfull;
   1575 		return ENOBUFS;
   1576 	}
   1577 	return 0;
   1578 }
   1579 
   1580 /*
   1581  * PIM sparse mode hook
   1582  * Receives the pim control messages, and passes them up to the listening
   1583  * socket, using rip6_input.
   1584  * The only message processed is the REGISTER pim message; the pim header
   1585  * is stripped off, and the inner packet is passed to register_mforward.
   1586  */
   1587 int
   1588 pim6_input(mp, offp, proto)
   1589 	struct mbuf **mp;
   1590 	int *offp, proto;
   1591 {
   1592 	struct pim *pim; /* pointer to a pim struct */
   1593 	struct ip6_hdr *ip6;
   1594 	int pimlen;
   1595 	struct mbuf *m = *mp;
   1596 	int minlen;
   1597 	int off = *offp;
   1598 
   1599 	++pim6stat.pim6s_rcv_total;
   1600 
   1601 	ip6 = mtod(m, struct ip6_hdr *);
   1602 	pimlen = m->m_pkthdr.len - *offp;
   1603 
   1604 	/*
   1605 	 * Validate lengths
   1606 	 */
   1607 	if (pimlen < PIM_MINLEN) {
   1608 		++pim6stat.pim6s_rcv_tooshort;
   1609 #ifdef MRT6DEBUG
   1610 		if (mrt6debug & DEBUG_PIM)
   1611 			log(LOG_DEBUG,"pim6_input: PIM packet too short\n");
   1612 #endif
   1613 		m_freem(m);
   1614 		return(IPPROTO_DONE);
   1615 	}
   1616 
   1617 	/*
   1618 	 * if the packet is at least as big as a REGISTER, go ahead
   1619 	 * and grab the PIM REGISTER header size, to avoid another
   1620 	 * possible m_pullup() later.
   1621 	 *
   1622 	 * PIM_MINLEN       == pimhdr + u_int32 == 8
   1623 	 * PIM6_REG_MINLEN   == pimhdr + reghdr + eip6hdr == 4 + 4 + 40
   1624 	 */
   1625 	minlen = (pimlen >= PIM6_REG_MINLEN) ? PIM6_REG_MINLEN : PIM_MINLEN;
   1626 
   1627 	/*
   1628 	 * Make sure that the IP6 and PIM headers in contiguous memory, and
   1629 	 * possibly the PIM REGISTER header
   1630 	 */
   1631 #ifndef PULLDOWN_TEST
   1632 	IP6_EXTHDR_CHECK(m, off, minlen, IPPROTO_DONE);
   1633 	/* adjust pointer */
   1634 	ip6 = mtod(m, struct ip6_hdr *);
   1635 
   1636 	/* adjust mbuf to point to the PIM header */
   1637 	pim = (struct pim *)((caddr_t)ip6 + off);
   1638 #else
   1639 	IP6_EXTHDR_GET(pim, struct pim *, m, off, minlen);
   1640 	if (pim == NULL) {
   1641 		pim6stat.pim6s_rcv_tooshort++;
   1642 		return IPPROTO_DONE;
   1643 	}
   1644 #endif
   1645 
   1646 #define PIM6_CHECKSUM
   1647 #ifdef PIM6_CHECKSUM
   1648 	{
   1649 		int cksumlen;
   1650 
   1651 		/*
   1652 		 * Validate checksum.
   1653 		 * If PIM REGISTER, exclude the data packet
   1654 		 */
   1655 		if (pim->pim_type == PIM_REGISTER)
   1656 			cksumlen = PIM_MINLEN;
   1657 		else
   1658 			cksumlen = pimlen;
   1659 
   1660 		if (in6_cksum(m, IPPROTO_PIM, off, cksumlen)) {
   1661 			++pim6stat.pim6s_rcv_badsum;
   1662 #ifdef MRT6DEBUG
   1663 			if (mrt6debug & DEBUG_PIM)
   1664 				log(LOG_DEBUG,
   1665 				    "pim6_input: invalid checksum\n");
   1666 #endif
   1667 			m_freem(m);
   1668 			return(IPPROTO_DONE);
   1669 		}
   1670 	}
   1671 #endif /* PIM_CHECKSUM */
   1672 
   1673 	/* PIM version check */
   1674 	if (pim->pim_ver != PIM_VERSION) {
   1675 		++pim6stat.pim6s_rcv_badversion;
   1676 #ifdef MRT6DEBUG
   1677 		log(LOG_ERR,
   1678 		    "pim6_input: incorrect version %d, expecting %d\n",
   1679 		    pim->pim_ver, PIM_VERSION);
   1680 #endif
   1681 		m_freem(m);
   1682 		return(IPPROTO_DONE);
   1683 	}
   1684 
   1685 	if (pim->pim_type == PIM_REGISTER) {
   1686 		/*
   1687 		 * since this is a REGISTER, we'll make a copy of the register
   1688 		 * headers ip6+pim+u_int32_t+encap_ip6, to be passed up to the
   1689 		 * routing daemon.
   1690 		 */
   1691 		static struct sockaddr_in6 dst = { sizeof(dst), AF_INET6 };
   1692 
   1693 		struct mbuf *mcp;
   1694 		struct ip6_hdr *eip6;
   1695 		u_int32_t *reghdr;
   1696 		int rc;
   1697 
   1698 		++pim6stat.pim6s_rcv_registers;
   1699 
   1700 		if ((reg_mif_num >= nummifs) || (reg_mif_num == (mifi_t) -1)) {
   1701 #ifdef MRT6DEBUG
   1702 			if (mrt6debug & DEBUG_PIM)
   1703 				log(LOG_DEBUG,
   1704 				    "pim6_input: register mif not set: %d\n",
   1705 				    reg_mif_num);
   1706 #endif
   1707 			m_freem(m);
   1708 			return(IPPROTO_DONE);
   1709 		}
   1710 
   1711 		reghdr = (u_int32_t *)(pim + 1);
   1712 
   1713 		if ((ntohl(*reghdr) & PIM_NULL_REGISTER))
   1714 			goto pim6_input_to_daemon;
   1715 
   1716 		/*
   1717 		 * Validate length
   1718 		 */
   1719 		if (pimlen < PIM6_REG_MINLEN) {
   1720 			++pim6stat.pim6s_rcv_tooshort;
   1721 			++pim6stat.pim6s_rcv_badregisters;
   1722 #ifdef MRT6DEBUG
   1723 			log(LOG_ERR,
   1724 			    "pim6_input: register packet size too "
   1725 			    "small %d from %s\n",
   1726 			    pimlen, ip6_sprintf(&ip6->ip6_src));
   1727 #endif
   1728 			m_freem(m);
   1729 			return(IPPROTO_DONE);
   1730 		}
   1731 
   1732 		eip6 = (struct ip6_hdr *) (reghdr + 1);
   1733 #ifdef MRT6DEBUG
   1734 		if (mrt6debug & DEBUG_PIM)
   1735 			log(LOG_DEBUG,
   1736 			    "pim6_input[register], eip6: %s -> %s, "
   1737 			    "eip6 plen %d\n",
   1738 			    ip6_sprintf(&eip6->ip6_src),
   1739 			    ip6_sprintf(&eip6->ip6_dst),
   1740 			    ntohs(eip6->ip6_plen));
   1741 #endif
   1742 
   1743 		/* verify the version number of the inner packet */
   1744 		if ((eip6->ip6_vfc & IPV6_VERSION_MASK) != IPV6_VERSION) {
   1745 			++pim6stat.pim6s_rcv_badregisters;
   1746 #ifdef MRT6DEBUG
   1747 			log(LOG_DEBUG, "pim6_input: invalid IP version (%d) "
   1748 			    "of the inner packet\n",
   1749 			    (eip6->ip6_vfc & IPV6_VERSION));
   1750 #endif
   1751 			m_freem(m);
   1752 			return(IPPROTO_NONE);
   1753 		}
   1754 
   1755 		/* verify the inner packet is destined to a mcast group */
   1756 		if (!IN6_IS_ADDR_MULTICAST(&eip6->ip6_dst)) {
   1757 			++pim6stat.pim6s_rcv_badregisters;
   1758 #ifdef MRT6DEBUG
   1759 			if (mrt6debug & DEBUG_PIM)
   1760 				log(LOG_DEBUG,
   1761 				    "pim6_input: inner packet of register "
   1762 				    "is not multicast %s\n",
   1763 				    ip6_sprintf(&eip6->ip6_dst));
   1764 #endif
   1765 			m_freem(m);
   1766 			return(IPPROTO_DONE);
   1767 		}
   1768 
   1769 		/*
   1770 		 * make a copy of the whole header to pass to the daemon later.
   1771 		 */
   1772 		mcp = m_copy(m, 0, off + PIM6_REG_MINLEN);
   1773 		if (mcp == NULL) {
   1774 #ifdef MRT6DEBUG
   1775 			log(LOG_ERR,
   1776 			    "pim6_input: pim register: "
   1777 			    "could not copy register head\n");
   1778 #endif
   1779 			m_freem(m);
   1780 			return(IPPROTO_DONE);
   1781 		}
   1782 
   1783 		/*
   1784 		 * forward the inner ip6 packet; point m_data at the inner ip6.
   1785 		 */
   1786 		m_adj(m, off + PIM_MINLEN);
   1787 #ifdef MRT6DEBUG
   1788 		if (mrt6debug & DEBUG_PIM) {
   1789 			log(LOG_DEBUG,
   1790 			    "pim6_input: forwarding decapsulated register: "
   1791 			    "src %s, dst %s, mif %d\n",
   1792 			    ip6_sprintf(&eip6->ip6_src),
   1793 			    ip6_sprintf(&eip6->ip6_dst),
   1794 			    reg_mif_num);
   1795 		}
   1796 #endif
   1797 
   1798  		rc = looutput(mif6table[reg_mif_num].m6_ifp, m,
   1799 			      (struct sockaddr *) &dst,
   1800 			      (struct rtentry *) NULL);
   1801 
   1802 		/* prepare the register head to send to the mrouting daemon */
   1803 		m = mcp;
   1804 	}
   1805 
   1806 	/*
   1807 	 * Pass the PIM message up to the daemon; if it is a register message
   1808 	 * pass the 'head' only up to the daemon. This includes the
   1809 	 * encapsulator ip6 header, pim header, register header and the
   1810 	 * encapsulated ip6 header.
   1811 	 */
   1812   pim6_input_to_daemon:
   1813 	rip6_input(&m, offp, proto);
   1814 	return(IPPROTO_DONE);
   1815 }
   1816