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rtsock.c revision 1.199
      1  1.199     ozaki /*	$NetBSD: rtsock.c,v 1.199 2016/12/12 03:55:57 ozaki-r Exp $	*/
      2   1.30    itojun 
      3   1.30    itojun /*
      4   1.30    itojun  * Copyright (C) 1995, 1996, 1997, and 1998 WIDE Project.
      5   1.30    itojun  * All rights reserved.
      6   1.75     perry  *
      7   1.30    itojun  * Redistribution and use in source and binary forms, with or without
      8   1.30    itojun  * modification, are permitted provided that the following conditions
      9   1.30    itojun  * are met:
     10   1.30    itojun  * 1. Redistributions of source code must retain the above copyright
     11   1.30    itojun  *    notice, this list of conditions and the following disclaimer.
     12   1.30    itojun  * 2. Redistributions in binary form must reproduce the above copyright
     13   1.30    itojun  *    notice, this list of conditions and the following disclaimer in the
     14   1.30    itojun  *    documentation and/or other materials provided with the distribution.
     15   1.30    itojun  * 3. Neither the name of the project nor the names of its contributors
     16   1.30    itojun  *    may be used to endorse or promote products derived from this software
     17   1.30    itojun  *    without specific prior written permission.
     18   1.75     perry  *
     19   1.30    itojun  * THIS SOFTWARE IS PROVIDED BY THE PROJECT AND CONTRIBUTORS ``AS IS'' AND
     20   1.30    itojun  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     21   1.30    itojun  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     22   1.30    itojun  * ARE DISCLAIMED.  IN NO EVENT SHALL THE PROJECT OR CONTRIBUTORS BE LIABLE
     23   1.30    itojun  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     24   1.30    itojun  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     25   1.30    itojun  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     26   1.30    itojun  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     27   1.30    itojun  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     28   1.30    itojun  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     29   1.30    itojun  * SUCH DAMAGE.
     30   1.30    itojun  */
     31   1.11       cgd 
     32    1.1       cgd /*
     33   1.10   mycroft  * Copyright (c) 1988, 1991, 1993
     34   1.10   mycroft  *	The Regents of the University of California.  All rights reserved.
     35    1.1       cgd  *
     36    1.1       cgd  * Redistribution and use in source and binary forms, with or without
     37    1.1       cgd  * modification, are permitted provided that the following conditions
     38    1.1       cgd  * are met:
     39    1.1       cgd  * 1. Redistributions of source code must retain the above copyright
     40    1.1       cgd  *    notice, this list of conditions and the following disclaimer.
     41    1.1       cgd  * 2. Redistributions in binary form must reproduce the above copyright
     42    1.1       cgd  *    notice, this list of conditions and the following disclaimer in the
     43    1.1       cgd  *    documentation and/or other materials provided with the distribution.
     44   1.64       agc  * 3. Neither the name of the University nor the names of its contributors
     45    1.1       cgd  *    may be used to endorse or promote products derived from this software
     46    1.1       cgd  *    without specific prior written permission.
     47    1.1       cgd  *
     48    1.1       cgd  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     49    1.1       cgd  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     50    1.1       cgd  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     51    1.1       cgd  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     52    1.1       cgd  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     53    1.1       cgd  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     54    1.1       cgd  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     55    1.1       cgd  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     56    1.1       cgd  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     57    1.1       cgd  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     58    1.1       cgd  * SUCH DAMAGE.
     59    1.1       cgd  *
     60   1.26      fvdl  *	@(#)rtsock.c	8.7 (Berkeley) 10/12/95
     61    1.1       cgd  */
     62   1.54     lukem 
     63   1.54     lukem #include <sys/cdefs.h>
     64  1.199     ozaki __KERNEL_RCSID(0, "$NetBSD: rtsock.c,v 1.199 2016/12/12 03:55:57 ozaki-r Exp $");
     65   1.31   thorpej 
     66  1.133      matt #ifdef _KERNEL_OPT
     67   1.31   thorpej #include "opt_inet.h"
     68  1.129    kefren #include "opt_mpls.h"
     69  1.120  christos #include "opt_compat_netbsd.h"
     70  1.174       rjs #include "opt_sctp.h"
     71  1.120  christos #endif
     72    1.1       cgd 
     73    1.5   mycroft #include <sys/param.h>
     74    1.5   mycroft #include <sys/systm.h>
     75   1.10   mycroft #include <sys/proc.h>
     76    1.5   mycroft #include <sys/socket.h>
     77    1.5   mycroft #include <sys/socketvar.h>
     78    1.5   mycroft #include <sys/domain.h>
     79    1.5   mycroft #include <sys/protosw.h>
     80   1.17  christos #include <sys/sysctl.h>
     81   1.84      elad #include <sys/kauth.h>
     82  1.145     rmind #include <sys/kmem.h>
     83   1.99        ad #include <sys/intr.h>
     84   1.17  christos 
     85    1.5   mycroft #include <net/if.h>
     86  1.178     ozaki #include <net/if_llatbl.h>
     87  1.178     ozaki #include <net/if_types.h>
     88    1.5   mycroft #include <net/route.h>
     89    1.5   mycroft #include <net/raw_cb.h>
     90    1.1       cgd 
     91  1.178     ozaki #include <netinet/in_var.h>
     92  1.178     ozaki #include <netinet/if_inarp.h>
     93  1.178     ozaki 
     94  1.129    kefren #include <netmpls/mpls.h>
     95  1.129    kefren 
     96  1.174       rjs #ifdef SCTP
     97  1.174       rjs extern void sctp_add_ip_address(struct ifaddr *);
     98  1.174       rjs extern void sctp_delete_ip_address(struct ifaddr *);
     99  1.174       rjs #endif
    100  1.174       rjs 
    101  1.196       roy #if defined(COMPAT_14) || defined(COMPAT_50) || defined(COMPAT_70)
    102  1.120  christos #include <compat/net/if.h>
    103  1.133      matt #include <compat/net/route.h>
    104  1.133      matt #endif
    105  1.133      matt #ifdef COMPAT_RTSOCK
    106  1.133      matt #define	RTM_XVERSION	RTM_OVERSION
    107  1.196       roy #define	RTM_XNEWADDR	RTM_ONEWADDR
    108  1.196       roy #define	RTM_XDELADDR	RTM_ODELADDR
    109  1.196       roy #define	RTM_XCHGADDR	RTM_OCHGADDR
    110  1.133      matt #define	RT_XADVANCE(a,b) RT_OADVANCE(a,b)
    111  1.133      matt #define	RT_XROUNDUP(n)	RT_OROUNDUP(n)
    112  1.133      matt #define	PF_XROUTE	PF_OROUTE
    113  1.133      matt #define	rt_xmsghdr	rt_msghdr50
    114  1.133      matt #define	if_xmsghdr	if_msghdr	/* if_msghdr50 is for RTM_OIFINFO */
    115  1.133      matt #define	ifa_xmsghdr	ifa_msghdr50
    116  1.133      matt #define	if_xannouncemsghdr	if_announcemsghdr50
    117  1.133      matt #define	COMPATNAME(x)	compat_50_ ## x
    118  1.133      matt #define	DOMAINNAME	"oroute"
    119  1.133      matt CTASSERT(sizeof(struct ifa_xmsghdr) == 20);
    120  1.133      matt DOMAIN_DEFINE(compat_50_routedomain); /* forward declare and add to link set */
    121  1.196       roy #undef COMPAT_70
    122  1.168     ozaki #else /* COMPAT_RTSOCK */
    123  1.133      matt #define	RTM_XVERSION	RTM_VERSION
    124  1.196       roy #define	RTM_XNEWADDR	RTM_NEWADDR
    125  1.196       roy #define	RTM_XDELADDR	RTM_DELADDR
    126  1.196       roy #define	RTM_XCHGADDR	RTM_CHGADDR
    127  1.133      matt #define	RT_XADVANCE(a,b) RT_ADVANCE(a,b)
    128  1.133      matt #define	RT_XROUNDUP(n)	RT_ROUNDUP(n)
    129  1.133      matt #define	PF_XROUTE	PF_ROUTE
    130  1.133      matt #define	rt_xmsghdr	rt_msghdr
    131  1.133      matt #define	if_xmsghdr	if_msghdr
    132  1.133      matt #define	ifa_xmsghdr	ifa_msghdr
    133  1.133      matt #define	if_xannouncemsghdr	if_announcemsghdr
    134  1.133      matt #define	COMPATNAME(x)	x
    135  1.133      matt #define	DOMAINNAME	"route"
    136  1.196       roy CTASSERT(sizeof(struct ifa_xmsghdr) == 32);
    137  1.133      matt #ifdef COMPAT_50
    138  1.133      matt #define	COMPATCALL(name, args)	compat_50_ ## name args
    139  1.133      matt #endif
    140  1.133      matt DOMAIN_DEFINE(routedomain); /* forward declare and add to link set */
    141  1.133      matt #undef COMPAT_50
    142  1.133      matt #undef COMPAT_14
    143  1.168     ozaki #endif /* COMPAT_RTSOCK */
    144  1.133      matt 
    145  1.133      matt #ifndef COMPATCALL
    146  1.133      matt #define	COMPATCALL(name, args)	do { } while (/*CONSTCOND*/ 0)
    147  1.120  christos #endif
    148  1.120  christos 
    149  1.165  christos #ifdef RTSOCK_DEBUG
    150  1.188     ozaki #define RT_IN_PRINT(info, b, a) (in_print((b), sizeof(b), \
    151  1.188     ozaki     &((const struct sockaddr_in *)(info)->rti_info[(a)])->sin_addr), (b))
    152  1.165  christos #endif /* RTSOCK_DEBUG */
    153  1.165  christos 
    154  1.133      matt struct route_info COMPATNAME(route_info) = {
    155  1.133      matt 	.ri_dst = { .sa_len = 2, .sa_family = PF_XROUTE, },
    156  1.133      matt 	.ri_src = { .sa_len = 2, .sa_family = PF_XROUTE, },
    157  1.133      matt 	.ri_maxqlen = IFQ_MAXLEN,
    158  1.133      matt };
    159   1.58      matt 
    160  1.134    kefren #define	PRESERVED_RTF	(RTF_UP | RTF_GATEWAY | RTF_HOST | RTF_DONE | RTF_MASK)
    161  1.134    kefren 
    162  1.133      matt static void COMPATNAME(route_init)(void);
    163  1.175  riastrad static int COMPATNAME(route_output)(struct mbuf *, struct socket *);
    164   1.10   mycroft 
    165   1.72  christos static int rt_xaddrs(u_char, const char *, const char *, struct rt_addrinfo *);
    166   1.78    dyoung static struct mbuf *rt_makeifannouncemsg(struct ifnet *, int, int,
    167   1.78    dyoung     struct rt_addrinfo *);
    168  1.178     ozaki static int rt_msg2(int, struct rt_addrinfo *, void *, struct rt_walkarg *, int *);
    169  1.133      matt static void rt_setmetrics(int, const struct rt_xmsghdr *, struct rtentry *);
    170  1.133      matt static void rtm_setmetrics(const struct rtentry *, struct rt_xmsghdr *);
    171  1.127     pooka static void sysctl_net_route_setup(struct sysctllog **);
    172   1.94    dyoung static int sysctl_dumpentry(struct rtentry *, void *);
    173  1.120  christos static int sysctl_iflist(int, struct rt_walkarg *, int);
    174   1.69      matt static int sysctl_rtable(SYSCTLFN_PROTO);
    175  1.123      yamt static void rt_adjustcount(int, int);
    176   1.10   mycroft 
    177  1.175  riastrad static const struct protosw COMPATNAME(route_protosw)[];
    178  1.175  riastrad 
    179  1.123      yamt static void
    180   1.69      matt rt_adjustcount(int af, int cnt)
    181   1.27  christos {
    182  1.133      matt 	struct route_cb * const cb = &COMPATNAME(route_info).ri_cb;
    183  1.133      matt 
    184  1.133      matt 	cb->any_count += cnt;
    185  1.133      matt 
    186   1.27  christos 	switch (af) {
    187   1.27  christos 	case AF_INET:
    188  1.133      matt 		cb->ip_count += cnt;
    189   1.27  christos 		return;
    190   1.30    itojun #ifdef INET6
    191   1.30    itojun 	case AF_INET6:
    192  1.133      matt 		cb->ip6_count += cnt;
    193   1.30    itojun 		return;
    194   1.30    itojun #endif
    195  1.129    kefren 	case AF_MPLS:
    196  1.133      matt 		cb->mpls_count += cnt;
    197   1.27  christos 		return;
    198   1.27  christos 	}
    199   1.27  christos }
    200  1.123      yamt 
    201  1.145     rmind static int
    202  1.145     rmind COMPATNAME(route_attach)(struct socket *so, int proto)
    203    1.1       cgd {
    204  1.145     rmind 	struct rawcb *rp;
    205  1.145     rmind 	int s, error;
    206  1.145     rmind 
    207  1.145     rmind 	KASSERT(sotorawcb(so) == NULL);
    208  1.145     rmind 	rp = kmem_zalloc(sizeof(*rp), KM_SLEEP);
    209  1.147     rmind 	rp->rcb_len = sizeof(*rp);
    210  1.145     rmind 	so->so_pcb = rp;
    211   1.10   mycroft 
    212   1.14   mycroft 	s = splsoftnet();
    213  1.145     rmind 	if ((error = raw_attach(so, proto)) == 0) {
    214   1.27  christos 		rt_adjustcount(rp->rcb_proto.sp_protocol, 1);
    215  1.133      matt 		rp->rcb_laddr = &COMPATNAME(route_info).ri_src;
    216  1.133      matt 		rp->rcb_faddr = &COMPATNAME(route_info).ri_dst;
    217    1.1       cgd 	}
    218    1.1       cgd 	splx(s);
    219  1.145     rmind 
    220  1.145     rmind 	if (error) {
    221  1.145     rmind 		kmem_free(rp, sizeof(*rp));
    222  1.145     rmind 		so->so_pcb = NULL;
    223  1.145     rmind 		return error;
    224  1.145     rmind 	}
    225  1.145     rmind 
    226  1.145     rmind 	soisconnected(so);
    227  1.145     rmind 	so->so_options |= SO_USELOOPBACK;
    228  1.145     rmind 	KASSERT(solocked(so));
    229  1.145     rmind 
    230  1.145     rmind 	return error;
    231  1.145     rmind }
    232  1.145     rmind 
    233  1.145     rmind static void
    234  1.145     rmind COMPATNAME(route_detach)(struct socket *so)
    235  1.145     rmind {
    236  1.145     rmind 	struct rawcb *rp = sotorawcb(so);
    237  1.145     rmind 	int s;
    238  1.145     rmind 
    239  1.145     rmind 	KASSERT(rp != NULL);
    240  1.145     rmind 	KASSERT(solocked(so));
    241  1.145     rmind 
    242  1.145     rmind 	s = splsoftnet();
    243  1.145     rmind 	rt_adjustcount(rp->rcb_proto.sp_protocol, -1);
    244  1.145     rmind 	raw_detach(so);
    245  1.145     rmind 	splx(s);
    246  1.145     rmind }
    247  1.145     rmind 
    248  1.145     rmind static int
    249  1.169       rtr COMPATNAME(route_accept)(struct socket *so, struct sockaddr *nam)
    250  1.155       rtr {
    251  1.155       rtr 	KASSERT(solocked(so));
    252  1.155       rtr 
    253  1.155       rtr 	panic("route_accept");
    254  1.157       rtr 
    255  1.157       rtr 	return EOPNOTSUPP;
    256  1.157       rtr }
    257  1.157       rtr 
    258  1.157       rtr static int
    259  1.167       rtr COMPATNAME(route_bind)(struct socket *so, struct sockaddr *nam, struct lwp *l)
    260  1.157       rtr {
    261  1.157       rtr 	KASSERT(solocked(so));
    262  1.157       rtr 
    263  1.157       rtr 	return EOPNOTSUPP;
    264  1.157       rtr }
    265  1.157       rtr 
    266  1.157       rtr static int
    267  1.160       rtr COMPATNAME(route_listen)(struct socket *so, struct lwp *l)
    268  1.157       rtr {
    269  1.157       rtr 	KASSERT(solocked(so));
    270  1.157       rtr 
    271  1.155       rtr 	return EOPNOTSUPP;
    272  1.155       rtr }
    273  1.155       rtr 
    274  1.155       rtr static int
    275  1.171       rtr COMPATNAME(route_connect)(struct socket *so, struct sockaddr *nam, struct lwp *l)
    276  1.158       rtr {
    277  1.158       rtr 	KASSERT(solocked(so));
    278  1.158       rtr 
    279  1.158       rtr 	return EOPNOTSUPP;
    280  1.158       rtr }
    281  1.158       rtr 
    282  1.158       rtr static int
    283  1.163       rtr COMPATNAME(route_connect2)(struct socket *so, struct socket *so2)
    284  1.163       rtr {
    285  1.163       rtr 	KASSERT(solocked(so));
    286  1.163       rtr 
    287  1.163       rtr 	return EOPNOTSUPP;
    288  1.163       rtr }
    289  1.163       rtr 
    290  1.163       rtr static int
    291  1.159       rtr COMPATNAME(route_disconnect)(struct socket *so)
    292  1.159       rtr {
    293  1.159       rtr 	struct rawcb *rp = sotorawcb(so);
    294  1.159       rtr 	int s;
    295  1.159       rtr 
    296  1.159       rtr 	KASSERT(solocked(so));
    297  1.159       rtr 	KASSERT(rp != NULL);
    298  1.159       rtr 
    299  1.159       rtr 	s = splsoftnet();
    300  1.159       rtr 	soisdisconnected(so);
    301  1.159       rtr 	raw_disconnect(rp);
    302  1.159       rtr 	splx(s);
    303  1.159       rtr 
    304  1.159       rtr 	return 0;
    305  1.159       rtr }
    306  1.159       rtr 
    307  1.159       rtr static int
    308  1.159       rtr COMPATNAME(route_shutdown)(struct socket *so)
    309  1.159       rtr {
    310  1.159       rtr 	int s;
    311  1.159       rtr 
    312  1.159       rtr 	KASSERT(solocked(so));
    313  1.159       rtr 
    314  1.159       rtr 	/*
    315  1.159       rtr 	 * Mark the connection as being incapable of further input.
    316  1.159       rtr 	 */
    317  1.159       rtr 	s = splsoftnet();
    318  1.159       rtr 	socantsendmore(so);
    319  1.159       rtr 	splx(s);
    320  1.159       rtr 	return 0;
    321  1.159       rtr }
    322  1.159       rtr 
    323  1.159       rtr static int
    324  1.159       rtr COMPATNAME(route_abort)(struct socket *so)
    325  1.159       rtr {
    326  1.159       rtr 	KASSERT(solocked(so));
    327  1.159       rtr 
    328  1.159       rtr 	panic("route_abort");
    329  1.159       rtr 
    330  1.159       rtr 	return EOPNOTSUPP;
    331  1.159       rtr }
    332  1.159       rtr 
    333  1.159       rtr static int
    334  1.149       rtr COMPATNAME(route_ioctl)(struct socket *so, u_long cmd, void *nam,
    335  1.149       rtr     struct ifnet * ifp)
    336  1.148       rtr {
    337  1.148       rtr 	return EOPNOTSUPP;
    338  1.148       rtr }
    339  1.148       rtr 
    340  1.148       rtr static int
    341  1.150       rtr COMPATNAME(route_stat)(struct socket *so, struct stat *ub)
    342  1.150       rtr {
    343  1.153       rtr 	KASSERT(solocked(so));
    344  1.153       rtr 
    345  1.152       rtr 	return 0;
    346  1.150       rtr }
    347  1.150       rtr 
    348  1.150       rtr static int
    349  1.169       rtr COMPATNAME(route_peeraddr)(struct socket *so, struct sockaddr *nam)
    350  1.154       rtr {
    351  1.154       rtr 	struct rawcb *rp = sotorawcb(so);
    352  1.154       rtr 
    353  1.154       rtr 	KASSERT(solocked(so));
    354  1.154       rtr 	KASSERT(rp != NULL);
    355  1.154       rtr 	KASSERT(nam != NULL);
    356  1.154       rtr 
    357  1.154       rtr 	if (rp->rcb_faddr == NULL)
    358  1.154       rtr 		return ENOTCONN;
    359  1.154       rtr 
    360  1.154       rtr 	raw_setpeeraddr(rp, nam);
    361  1.154       rtr 	return 0;
    362  1.154       rtr }
    363  1.154       rtr 
    364  1.154       rtr static int
    365  1.169       rtr COMPATNAME(route_sockaddr)(struct socket *so, struct sockaddr *nam)
    366  1.154       rtr {
    367  1.154       rtr 	struct rawcb *rp = sotorawcb(so);
    368  1.154       rtr 
    369  1.154       rtr 	KASSERT(solocked(so));
    370  1.154       rtr 	KASSERT(rp != NULL);
    371  1.154       rtr 	KASSERT(nam != NULL);
    372  1.154       rtr 
    373  1.154       rtr 	if (rp->rcb_faddr == NULL)
    374  1.154       rtr 		return ENOTCONN;
    375  1.154       rtr 
    376  1.154       rtr 	raw_setsockaddr(rp, nam);
    377  1.154       rtr 	return 0;
    378  1.154       rtr }
    379  1.154       rtr 
    380  1.154       rtr static int
    381  1.162       rtr COMPATNAME(route_rcvd)(struct socket *so, int flags, struct lwp *l)
    382  1.162       rtr {
    383  1.162       rtr 	KASSERT(solocked(so));
    384  1.162       rtr 
    385  1.162       rtr 	return EOPNOTSUPP;
    386  1.162       rtr }
    387  1.162       rtr 
    388  1.162       rtr static int
    389  1.156       rtr COMPATNAME(route_recvoob)(struct socket *so, struct mbuf *m, int flags)
    390  1.156       rtr {
    391  1.156       rtr 	KASSERT(solocked(so));
    392  1.156       rtr 
    393  1.156       rtr 	return EOPNOTSUPP;
    394  1.156       rtr }
    395  1.156       rtr 
    396  1.156       rtr static int
    397  1.161       rtr COMPATNAME(route_send)(struct socket *so, struct mbuf *m,
    398  1.171       rtr     struct sockaddr *nam, struct mbuf *control, struct lwp *l)
    399  1.161       rtr {
    400  1.161       rtr 	int error = 0;
    401  1.161       rtr 	int s;
    402  1.161       rtr 
    403  1.161       rtr 	KASSERT(solocked(so));
    404  1.175  riastrad 	KASSERT(so->so_proto == &COMPATNAME(route_protosw)[0]);
    405  1.161       rtr 
    406  1.161       rtr 	s = splsoftnet();
    407  1.175  riastrad 	error = raw_send(so, m, nam, control, l, &COMPATNAME(route_output));
    408  1.161       rtr 	splx(s);
    409  1.161       rtr 
    410  1.161       rtr 	return error;
    411  1.161       rtr }
    412  1.161       rtr 
    413  1.161       rtr static int
    414  1.156       rtr COMPATNAME(route_sendoob)(struct socket *so, struct mbuf *m,
    415  1.156       rtr     struct mbuf *control)
    416  1.156       rtr {
    417  1.156       rtr 	KASSERT(solocked(so));
    418  1.156       rtr 
    419  1.156       rtr 	m_freem(m);
    420  1.156       rtr 	m_freem(control);
    421  1.156       rtr 
    422  1.156       rtr 	return EOPNOTSUPP;
    423  1.156       rtr }
    424  1.163       rtr static int
    425  1.163       rtr COMPATNAME(route_purgeif)(struct socket *so, struct ifnet *ifp)
    426  1.163       rtr {
    427  1.163       rtr 
    428  1.163       rtr 	panic("route_purgeif");
    429  1.163       rtr 
    430  1.163       rtr 	return EOPNOTSUPP;
    431  1.163       rtr }
    432  1.156       rtr 
    433  1.179     ozaki #ifdef INET
    434  1.178     ozaki static int
    435  1.178     ozaki route_get_sdl_index(struct rt_addrinfo *info, int *sdl_index)
    436  1.178     ozaki {
    437  1.178     ozaki 	struct rtentry *nrt;
    438  1.178     ozaki 	int error;
    439  1.178     ozaki 
    440  1.178     ozaki 	error = rtrequest1(RTM_GET, info, &nrt);
    441  1.178     ozaki 	if (error != 0)
    442  1.178     ozaki 		return error;
    443  1.178     ozaki 	/*
    444  1.178     ozaki 	 * nrt->rt_ifp->if_index may not be correct
    445  1.178     ozaki 	 * due to changing to ifplo0.
    446  1.178     ozaki 	 */
    447  1.178     ozaki 	*sdl_index = satosdl(nrt->rt_gateway)->sdl_index;
    448  1.199     ozaki 	rt_unref(nrt);
    449  1.178     ozaki 
    450  1.178     ozaki 	return 0;
    451  1.178     ozaki }
    452  1.179     ozaki #endif /* INET */
    453  1.178     ozaki 
    454  1.178     ozaki static void
    455  1.178     ozaki route_get_sdl(const struct ifnet *ifp, const struct sockaddr *dst,
    456  1.178     ozaki     struct sockaddr_dl *sdl, int *flags)
    457  1.178     ozaki {
    458  1.181  christos 	struct llentry *la;
    459  1.178     ozaki 
    460  1.178     ozaki 	KASSERT(ifp != NULL);
    461  1.178     ozaki 
    462  1.178     ozaki 	IF_AFDATA_RLOCK(ifp);
    463  1.178     ozaki 	switch (dst->sa_family) {
    464  1.178     ozaki 	case AF_INET:
    465  1.178     ozaki 		la = lla_lookup(LLTABLE(ifp), 0, dst);
    466  1.178     ozaki 		break;
    467  1.178     ozaki 	case AF_INET6:
    468  1.178     ozaki 		la = lla_lookup(LLTABLE6(ifp), 0, dst);
    469  1.178     ozaki 		break;
    470  1.178     ozaki 	default:
    471  1.181  christos 		la = NULL;
    472  1.178     ozaki 		KASSERTMSG(0, "Invalid AF=%d\n", dst->sa_family);
    473  1.178     ozaki 		break;
    474  1.178     ozaki 	}
    475  1.178     ozaki 	IF_AFDATA_RUNLOCK(ifp);
    476  1.178     ozaki 
    477  1.181  christos 	void *a = (LLE_IS_VALID(la) && (la->la_flags & LLE_VALID) == LLE_VALID)
    478  1.181  christos 	    ? &la->ll_addr : NULL;
    479  1.181  christos 
    480  1.181  christos 	a = sockaddr_dl_init(sdl, sizeof(*sdl), ifp->if_index, ifp->if_type,
    481  1.182  christos 	    NULL, 0, a, ifp->if_addrlen);
    482  1.181  christos 	KASSERT(a != NULL);
    483  1.178     ozaki 
    484  1.178     ozaki 	if (la != NULL) {
    485  1.178     ozaki 		*flags = la->la_flags;
    486  1.178     ozaki 		LLE_RUNLOCK(la);
    487  1.178     ozaki 	}
    488  1.178     ozaki }
    489  1.178     ozaki 
    490  1.187     ozaki static int
    491  1.187     ozaki route_output_report(struct rtentry *rt, struct rt_addrinfo *info,
    492  1.187     ozaki     struct rt_xmsghdr *rtm, struct rt_xmsghdr **new_rtm)
    493  1.187     ozaki {
    494  1.187     ozaki 	int len;
    495  1.187     ozaki 	struct ifnet *ifp;
    496  1.187     ozaki 
    497  1.187     ozaki 	if ((rtm->rtm_addrs & (RTA_IFP | RTA_IFA)) == 0)
    498  1.187     ozaki 		;
    499  1.187     ozaki 	else if ((ifp = rt->rt_ifp) != NULL) {
    500  1.187     ozaki 		const struct ifaddr *rtifa;
    501  1.187     ozaki 		info->rti_info[RTAX_IFP] = ifp->if_dl->ifa_addr;
    502  1.187     ozaki 		/* rtifa used to be simply rt->rt_ifa.
    503  1.187     ozaki 		 * If rt->rt_ifa != NULL, then
    504  1.187     ozaki 		 * rt_get_ifa() != NULL.  So this
    505  1.187     ozaki 		 * ought to still be safe. --dyoung
    506  1.187     ozaki 		 */
    507  1.187     ozaki 		rtifa = rt_get_ifa(rt);
    508  1.187     ozaki 		info->rti_info[RTAX_IFA] = rtifa->ifa_addr;
    509  1.187     ozaki #ifdef RTSOCK_DEBUG
    510  1.187     ozaki 		if (info->rti_info[RTAX_IFA]->sa_family == AF_INET) {
    511  1.187     ozaki 			char ibuf[INET_ADDRSTRLEN];
    512  1.187     ozaki 			char abuf[INET_ADDRSTRLEN];
    513  1.187     ozaki 			printf("%s: copying out RTAX_IFA %s "
    514  1.187     ozaki 			    "for info->rti_info[RTAX_DST] %s "
    515  1.187     ozaki 			    "ifa_getifa %p ifa_seqno %p\n",
    516  1.187     ozaki 			    __func__,
    517  1.188     ozaki 			    RT_IN_PRINT(info, ibuf, RTAX_IFA),
    518  1.188     ozaki 			    RT_IN_PRINT(info, abuf, RTAX_DST),
    519  1.187     ozaki 			    (void *)rtifa->ifa_getifa,
    520  1.187     ozaki 			    rtifa->ifa_seqno);
    521  1.187     ozaki 		}
    522  1.187     ozaki #endif /* RTSOCK_DEBUG */
    523  1.187     ozaki 		if (ifp->if_flags & IFF_POINTOPOINT)
    524  1.187     ozaki 			info->rti_info[RTAX_BRD] = rtifa->ifa_dstaddr;
    525  1.187     ozaki 		else
    526  1.187     ozaki 			info->rti_info[RTAX_BRD] = NULL;
    527  1.187     ozaki 		rtm->rtm_index = ifp->if_index;
    528  1.187     ozaki 	} else {
    529  1.187     ozaki 		info->rti_info[RTAX_IFP] = NULL;
    530  1.187     ozaki 		info->rti_info[RTAX_IFA] = NULL;
    531  1.187     ozaki 	}
    532  1.187     ozaki 	(void)rt_msg2(rtm->rtm_type, info, NULL, NULL, &len);
    533  1.187     ozaki 	if (len > rtm->rtm_msglen) {
    534  1.187     ozaki 		struct rt_xmsghdr *old_rtm = rtm;
    535  1.187     ozaki 		R_Malloc(*new_rtm, struct rt_xmsghdr *, len);
    536  1.187     ozaki 		if (*new_rtm == NULL)
    537  1.187     ozaki 			return ENOBUFS;
    538  1.187     ozaki 		(void)memcpy(*new_rtm, old_rtm, old_rtm->rtm_msglen);
    539  1.187     ozaki 		rtm = *new_rtm;
    540  1.187     ozaki 	}
    541  1.187     ozaki 	(void)rt_msg2(rtm->rtm_type, info, rtm, NULL, 0);
    542  1.187     ozaki 	rtm->rtm_flags = rt->rt_flags;
    543  1.187     ozaki 	rtm_setmetrics(rt, rtm);
    544  1.187     ozaki 	rtm->rtm_addrs = info->rti_addrs;
    545  1.187     ozaki 
    546  1.187     ozaki 	return 0;
    547  1.187     ozaki }
    548  1.187     ozaki 
    549  1.192     ozaki static struct ifaddr *
    550  1.192     ozaki route_output_get_ifa(const struct rt_addrinfo info, const struct rtentry *rt,
    551  1.194     ozaki     struct ifnet **ifp, struct psref *psref)
    552  1.192     ozaki {
    553  1.192     ozaki 	struct ifaddr *ifa = NULL;
    554  1.192     ozaki 
    555  1.192     ozaki 	*ifp = NULL;
    556  1.192     ozaki 	if (info.rti_info[RTAX_IFP] != NULL) {
    557  1.194     ozaki 		ifa = ifa_ifwithnet_psref(info.rti_info[RTAX_IFP], psref);
    558  1.192     ozaki 		if (ifa == NULL)
    559  1.192     ozaki 			goto next;
    560  1.192     ozaki 		*ifp = ifa->ifa_ifp;
    561  1.192     ozaki 		if (info.rti_info[RTAX_IFA] == NULL &&
    562  1.192     ozaki 		    info.rti_info[RTAX_GATEWAY] == NULL)
    563  1.192     ozaki 			goto next;
    564  1.192     ozaki 		if (info.rti_info[RTAX_IFA] == NULL) {
    565  1.192     ozaki 			/* route change <dst> <gw> -ifp <if> */
    566  1.194     ozaki 			ifa = ifaof_ifpforaddr_psref(info.rti_info[RTAX_GATEWAY],
    567  1.194     ozaki 			    *ifp, psref);
    568  1.192     ozaki 		} else {
    569  1.192     ozaki 			/* route change <dst> -ifp <if> -ifa <addr> */
    570  1.194     ozaki 			ifa = ifa_ifwithaddr_psref(info.rti_info[RTAX_IFA], psref);
    571  1.192     ozaki 			if (ifa != NULL)
    572  1.192     ozaki 				goto out;
    573  1.194     ozaki 			ifa = ifaof_ifpforaddr_psref(info.rti_info[RTAX_IFA],
    574  1.194     ozaki 			    *ifp, psref);
    575  1.192     ozaki 		}
    576  1.192     ozaki 		goto out;
    577  1.192     ozaki 	}
    578  1.192     ozaki next:
    579  1.192     ozaki 	if (info.rti_info[RTAX_IFA] != NULL) {
    580  1.192     ozaki 		/* route change <dst> <gw> -ifa <addr> */
    581  1.194     ozaki 		ifa = ifa_ifwithaddr_psref(info.rti_info[RTAX_IFA], psref);
    582  1.192     ozaki 		if (ifa != NULL)
    583  1.192     ozaki 			goto out;
    584  1.192     ozaki 	}
    585  1.192     ozaki 	if (info.rti_info[RTAX_GATEWAY] != NULL) {
    586  1.192     ozaki 		/* route change <dst> <gw> */
    587  1.194     ozaki 		ifa = ifa_ifwithroute_psref(rt->rt_flags, rt_getkey(rt),
    588  1.194     ozaki 		    info.rti_info[RTAX_GATEWAY], psref);
    589  1.192     ozaki 	}
    590  1.192     ozaki out:
    591  1.192     ozaki 	if (ifa != NULL && *ifp == NULL)
    592  1.192     ozaki 		*ifp = ifa->ifa_ifp;
    593  1.192     ozaki 	return ifa;
    594  1.192     ozaki }
    595  1.192     ozaki 
    596  1.198     ozaki static int
    597  1.198     ozaki route_output_change(struct rtentry *rt, struct rt_addrinfo *info,
    598  1.198     ozaki     struct rt_xmsghdr *rtm)
    599  1.198     ozaki {
    600  1.198     ozaki 	int error = 0;
    601  1.198     ozaki 	struct ifnet *ifp, *new_ifp;
    602  1.198     ozaki 	struct ifaddr *ifa, *new_ifa;
    603  1.198     ozaki 	struct psref psref_ifa, psref_new_ifa, psref_ifp;
    604  1.198     ozaki 
    605  1.198     ozaki 	/*
    606  1.198     ozaki 	 * new gateway could require new ifaddr, ifp;
    607  1.198     ozaki 	 * flags may also be different; ifp may be specified
    608  1.198     ozaki 	 * by ll sockaddr when protocol address is ambiguous
    609  1.198     ozaki 	 */
    610  1.198     ozaki 	ifp = rt_getifp(info, &psref_ifp);
    611  1.198     ozaki 	ifa = rt_getifa(info, &psref_ifa);
    612  1.198     ozaki 	if (ifa == NULL) {
    613  1.198     ozaki 		error = ENETUNREACH;
    614  1.198     ozaki 		goto out;
    615  1.198     ozaki 	}
    616  1.198     ozaki 	if (info->rti_info[RTAX_GATEWAY]) {
    617  1.198     ozaki 		error = rt_setgate(rt, info->rti_info[RTAX_GATEWAY]);
    618  1.198     ozaki 		if (error != 0)
    619  1.198     ozaki 			goto out;
    620  1.198     ozaki 	}
    621  1.198     ozaki 	if (info->rti_info[RTAX_TAG]) {
    622  1.198     ozaki 		const struct sockaddr *tag;
    623  1.198     ozaki 		tag = rt_settag(rt, info->rti_info[RTAX_TAG]);
    624  1.198     ozaki 		if (tag == NULL) {
    625  1.198     ozaki 			error = ENOBUFS;
    626  1.198     ozaki 			goto out;
    627  1.198     ozaki 		}
    628  1.198     ozaki 	}
    629  1.198     ozaki 	/* new gateway could require new ifaddr, ifp;
    630  1.198     ozaki 	   flags may also be different; ifp may be specified
    631  1.198     ozaki 	   by ll sockaddr when protocol address is ambiguous */
    632  1.198     ozaki 	new_ifa = route_output_get_ifa(*info, rt, &new_ifp, &psref_new_ifa);
    633  1.198     ozaki 	if (new_ifa != NULL) {
    634  1.198     ozaki 		ifa_release(ifa, &psref_ifa);
    635  1.198     ozaki 		ifa = new_ifa;
    636  1.198     ozaki 	}
    637  1.198     ozaki 	if (ifa) {
    638  1.198     ozaki 		struct ifaddr *oifa = rt->rt_ifa;
    639  1.199     ozaki 		if (oifa != ifa &&
    640  1.199     ozaki 		    !ifa_is_destroying(ifa) && !if_is_deactivated(new_ifp)) {
    641  1.198     ozaki 			if (oifa && oifa->ifa_rtrequest)
    642  1.198     ozaki 				oifa->ifa_rtrequest(RTM_DELETE, rt, info);
    643  1.198     ozaki 			rt_replace_ifa(rt, ifa);
    644  1.198     ozaki 			rt->rt_ifp = new_ifp;
    645  1.198     ozaki 		}
    646  1.198     ozaki 		if (new_ifa == NULL)
    647  1.198     ozaki 			ifa_release(ifa, &psref_ifa);
    648  1.198     ozaki 	}
    649  1.198     ozaki 	ifa_release(new_ifa, &psref_new_ifa);
    650  1.199     ozaki 	if (new_ifp && rt->rt_ifp != new_ifp
    651  1.199     ozaki 	    && !if_is_deactivated(new_ifp))
    652  1.198     ozaki 		rt->rt_ifp = new_ifp;
    653  1.198     ozaki 	rt_setmetrics(rtm->rtm_inits, rtm, rt);
    654  1.198     ozaki 	if (rt->rt_flags != info->rti_flags)
    655  1.198     ozaki 		rt->rt_flags = (info->rti_flags & ~PRESERVED_RTF)
    656  1.198     ozaki 		    | (rt->rt_flags & PRESERVED_RTF);
    657  1.198     ozaki 	if (rt->rt_ifa && rt->rt_ifa->ifa_rtrequest)
    658  1.198     ozaki 		rt->rt_ifa->ifa_rtrequest(RTM_ADD, rt, info);
    659  1.198     ozaki out:
    660  1.198     ozaki 	if_put(ifp, &psref_ifp);
    661  1.198     ozaki 
    662  1.198     ozaki 	return error;
    663  1.198     ozaki }
    664  1.198     ozaki 
    665    1.1       cgd /*ARGSUSED*/
    666    1.9   mycroft int
    667  1.175  riastrad COMPATNAME(route_output)(struct mbuf *m, struct socket *so)
    668    1.1       cgd {
    669  1.133      matt 	struct sockproto proto = { .sp_family = PF_XROUTE, };
    670  1.133      matt 	struct rt_xmsghdr *rtm = NULL;
    671  1.187     ozaki 	struct rt_xmsghdr *old_rtm = NULL, *new_rtm = NULL;
    672   1.95    dyoung 	struct rtentry *rt = NULL;
    673   1.95    dyoung 	struct rtentry *saved_nrt = NULL;
    674   1.10   mycroft 	struct rt_addrinfo info;
    675  1.124       roy 	int len, error = 0;
    676   1.55  christos 	sa_family_t family;
    677  1.178     ozaki 	struct sockaddr_dl sdl;
    678  1.194     ozaki 	int bound = curlwp_bind();
    679  1.199     ozaki 	bool do_rt_free = false;
    680   1.17  christos 
    681   1.56     perry #define senderr(e) do { error = e; goto flush;} while (/*CONSTCOND*/ 0)
    682   1.95    dyoung 	if (m == NULL || ((m->m_len < sizeof(int32_t)) &&
    683  1.194     ozaki 	   (m = m_pullup(m, sizeof(int32_t))) == NULL)) {
    684  1.194     ozaki 		error = ENOBUFS;
    685  1.194     ozaki 		goto out;
    686  1.194     ozaki 	}
    687    1.1       cgd 	if ((m->m_flags & M_PKTHDR) == 0)
    688  1.133      matt 		panic("%s", __func__);
    689    1.1       cgd 	len = m->m_pkthdr.len;
    690    1.1       cgd 	if (len < sizeof(*rtm) ||
    691  1.133      matt 	    len != mtod(m, struct rt_xmsghdr *)->rtm_msglen) {
    692  1.114    dyoung 		info.rti_info[RTAX_DST] = NULL;
    693    1.1       cgd 		senderr(EINVAL);
    694   1.10   mycroft 	}
    695  1.133      matt 	R_Malloc(rtm, struct rt_xmsghdr *, len);
    696   1.95    dyoung 	if (rtm == NULL) {
    697  1.114    dyoung 		info.rti_info[RTAX_DST] = NULL;
    698    1.1       cgd 		senderr(ENOBUFS);
    699   1.10   mycroft 	}
    700  1.112    dyoung 	m_copydata(m, 0, len, rtm);
    701  1.133      matt 	if (rtm->rtm_version != RTM_XVERSION) {
    702  1.114    dyoung 		info.rti_info[RTAX_DST] = NULL;
    703    1.1       cgd 		senderr(EPROTONOSUPPORT);
    704   1.10   mycroft 	}
    705    1.1       cgd 	rtm->rtm_pid = curproc->p_pid;
    706   1.48   thorpej 	memset(&info, 0, sizeof(info));
    707   1.10   mycroft 	info.rti_addrs = rtm->rtm_addrs;
    708  1.112    dyoung 	if (rt_xaddrs(rtm->rtm_type, (const char *)(rtm + 1), len + (char *)rtm,
    709  1.133      matt 	    &info)) {
    710   1.42       erh 		senderr(EINVAL);
    711  1.133      matt 	}
    712   1.45    itojun 	info.rti_flags = rtm->rtm_flags;
    713   1.91    dyoung #ifdef RTSOCK_DEBUG
    714  1.114    dyoung 	if (info.rti_info[RTAX_DST]->sa_family == AF_INET) {
    715  1.165  christos 		char abuf[INET_ADDRSTRLEN];
    716  1.114    dyoung 		printf("%s: extracted info.rti_info[RTAX_DST] %s\n", __func__,
    717  1.188     ozaki 		    RT_IN_PRINT(&info, abuf, RTAX_DST));
    718   1.91    dyoung 	}
    719   1.91    dyoung #endif /* RTSOCK_DEBUG */
    720  1.115  christos 	if (info.rti_info[RTAX_DST] == NULL ||
    721  1.133      matt 	    (info.rti_info[RTAX_DST]->sa_family >= AF_MAX)) {
    722   1.26      fvdl 		senderr(EINVAL);
    723  1.133      matt 	}
    724  1.115  christos 	if (info.rti_info[RTAX_GATEWAY] != NULL &&
    725  1.133      matt 	    (info.rti_info[RTAX_GATEWAY]->sa_family >= AF_MAX)) {
    726    1.1       cgd 		senderr(EINVAL);
    727  1.133      matt 	}
    728   1.23   thorpej 
    729   1.23   thorpej 	/*
    730   1.23   thorpej 	 * Verify that the caller has the appropriate privilege; RTM_GET
    731   1.23   thorpej 	 * is the only operation the non-superuser is allowed.
    732   1.23   thorpej 	 */
    733   1.88      elad 	if (kauth_authorize_network(curlwp->l_cred, KAUTH_NETWORK_ROUTE,
    734   1.89      elad 	    0, rtm, NULL, NULL) != 0)
    735   1.23   thorpej 		senderr(EACCES);
    736   1.23   thorpej 
    737    1.1       cgd 	switch (rtm->rtm_type) {
    738   1.10   mycroft 
    739    1.1       cgd 	case RTM_ADD:
    740  1.133      matt 		if (info.rti_info[RTAX_GATEWAY] == NULL) {
    741    1.1       cgd 			senderr(EINVAL);
    742  1.133      matt 		}
    743  1.179     ozaki #ifdef INET
    744  1.178     ozaki 		/* support for new ARP code with keeping backcompat */
    745  1.178     ozaki 		if (info.rti_info[RTAX_GATEWAY]->sa_family == AF_LINK) {
    746  1.180  christos 			const struct sockaddr_dl *sdlp =
    747  1.180  christos 			    satocsdl(info.rti_info[RTAX_GATEWAY]);
    748  1.178     ozaki 
    749  1.180  christos 			/* Allow routing requests by interface index */
    750  1.180  christos 			if (sdlp->sdl_nlen == 0 && sdlp->sdl_alen == 0
    751  1.180  christos 			    && sdlp->sdl_slen == 0)
    752  1.180  christos 				goto fallback;
    753  1.178     ozaki 			/*
    754  1.178     ozaki 			 * Old arp binaries don't set the sdl_index
    755  1.178     ozaki 			 * so we have to complement it.
    756  1.178     ozaki 			 */
    757  1.180  christos 			int sdl_index = sdlp->sdl_index;
    758  1.178     ozaki 			if (sdl_index == 0) {
    759  1.178     ozaki 				error = route_get_sdl_index(&info, &sdl_index);
    760  1.178     ozaki 				if (error != 0)
    761  1.178     ozaki 					goto fallback;
    762  1.178     ozaki 			} else if (
    763  1.178     ozaki 			    info.rti_info[RTAX_DST]->sa_family == AF_INET) {
    764  1.178     ozaki 				/*
    765  1.178     ozaki 				 * XXX workaround for SIN_PROXY case; proxy arp
    766  1.178     ozaki 				 * entry should be in an interface that has
    767  1.178     ozaki 				 * a network route including the destination,
    768  1.178     ozaki 				 * not a local (link) route that may not be a
    769  1.178     ozaki 				 * desired place, for example a tap.
    770  1.178     ozaki 				 */
    771  1.178     ozaki 				const struct sockaddr_inarp *sina =
    772  1.178     ozaki 				    (const struct sockaddr_inarp *)
    773  1.178     ozaki 				    info.rti_info[RTAX_DST];
    774  1.178     ozaki 				if (sina->sin_other & SIN_PROXY) {
    775  1.178     ozaki 					error = route_get_sdl_index(&info,
    776  1.178     ozaki 					    &sdl_index);
    777  1.178     ozaki 					if (error != 0)
    778  1.178     ozaki 						goto fallback;
    779  1.178     ozaki 				}
    780  1.178     ozaki 			}
    781  1.178     ozaki 			error = lla_rt_output(rtm->rtm_type, rtm->rtm_flags,
    782  1.178     ozaki 			    rtm->rtm_rmx.rmx_expire, &info, sdl_index);
    783  1.178     ozaki 			break;
    784  1.178     ozaki 		}
    785  1.178     ozaki 	fallback:
    786  1.179     ozaki #endif /* INET */
    787   1.45    itojun 		error = rtrequest1(rtm->rtm_type, &info, &saved_nrt);
    788  1.172     ozaki 		if (error == 0) {
    789  1.133      matt 			rt_setmetrics(rtm->rtm_inits, rtm, saved_nrt);
    790  1.199     ozaki 			rt_unref(saved_nrt);
    791    1.1       cgd 		}
    792    1.1       cgd 		break;
    793    1.1       cgd 
    794    1.1       cgd 	case RTM_DELETE:
    795  1.179     ozaki #ifdef INET
    796  1.178     ozaki 		/* support for new ARP code */
    797  1.178     ozaki 		if (info.rti_info[RTAX_GATEWAY] &&
    798  1.178     ozaki 		    (info.rti_info[RTAX_GATEWAY]->sa_family == AF_LINK) &&
    799  1.178     ozaki 		    (rtm->rtm_flags & RTF_LLDATA) != 0) {
    800  1.178     ozaki 			error = lla_rt_output(rtm->rtm_type, rtm->rtm_flags,
    801  1.178     ozaki 			    rtm->rtm_rmx.rmx_expire, &info, 0);
    802  1.178     ozaki 			break;
    803  1.178     ozaki 		}
    804  1.179     ozaki #endif /* INET */
    805   1.45    itojun 		error = rtrequest1(rtm->rtm_type, &info, &saved_nrt);
    806  1.187     ozaki 		if (error != 0)
    807  1.187     ozaki 			break;
    808  1.187     ozaki 
    809  1.187     ozaki 		rt = saved_nrt;
    810  1.199     ozaki 		do_rt_free = true;
    811  1.187     ozaki 		info.rti_info[RTAX_DST] = rt_getkey(rt);
    812  1.187     ozaki 		info.rti_info[RTAX_GATEWAY] = rt->rt_gateway;
    813  1.187     ozaki 		info.rti_info[RTAX_NETMASK] = rt_mask(rt);
    814  1.187     ozaki 		info.rti_info[RTAX_TAG] = rt_gettag(rt);
    815  1.187     ozaki 		error = route_output_report(rt, &info, rtm, &new_rtm);
    816  1.187     ozaki 		if (error)
    817  1.187     ozaki 			senderr(error);
    818  1.187     ozaki 		if (new_rtm != NULL) {
    819  1.187     ozaki 			old_rtm = rtm;
    820  1.187     ozaki 			rtm = new_rtm;
    821   1.16       cgd 		}
    822    1.1       cgd 		break;
    823    1.1       cgd 
    824    1.1       cgd 	case RTM_GET:
    825    1.1       cgd 	case RTM_CHANGE:
    826    1.1       cgd 	case RTM_LOCK:
    827  1.115  christos                 /* XXX This will mask info.rti_info[RTAX_DST] with
    828  1.115  christos 		 * info.rti_info[RTAX_NETMASK] before
    829   1.95    dyoung                  * searching.  It did not used to do that.  --dyoung
    830   1.95    dyoung 		 */
    831  1.172     ozaki 		rt = NULL;
    832  1.103    dyoung 		error = rtrequest1(RTM_GET, &info, &rt);
    833   1.95    dyoung 		if (error != 0)
    834   1.95    dyoung 			senderr(error);
    835   1.61    itojun 		if (rtm->rtm_type != RTM_GET) {/* XXX: too grotty */
    836  1.115  christos 			if (memcmp(info.rti_info[RTAX_DST], rt_getkey(rt),
    837  1.115  christos 			    info.rti_info[RTAX_DST]->sa_len) != 0)
    838   1.61    itojun 				senderr(ESRCH);
    839  1.135    dyoung 			if (info.rti_info[RTAX_NETMASK] == NULL &&
    840  1.135    dyoung 			    rt_mask(rt) != NULL)
    841   1.61    itojun 				senderr(ETOOMANYREFS);
    842   1.61    itojun 		}
    843   1.37    itojun 
    844  1.178     ozaki 		/*
    845  1.178     ozaki 		 * XXX if arp/ndp requests an L2 entry, we have to obtain
    846  1.178     ozaki 		 * it from lltable while for the route command we have to
    847  1.178     ozaki 		 * return a route as it is. How to distinguish them?
    848  1.178     ozaki 		 * For newer arp/ndp, RTF_LLDATA flag set by arp/ndp
    849  1.178     ozaki 		 * indicates an L2 entry is requested. For old arp/ndp
    850  1.178     ozaki 		 * binaries, we check RTF_UP flag is NOT set; it works
    851  1.178     ozaki 		 * by the fact that arp/ndp don't set it while the route
    852  1.178     ozaki 		 * command sets it.
    853  1.178     ozaki 		 */
    854  1.178     ozaki 		if (((rtm->rtm_flags & RTF_LLDATA) != 0 ||
    855  1.178     ozaki 		     (rtm->rtm_flags & RTF_UP) == 0) &&
    856  1.178     ozaki 		    rtm->rtm_type == RTM_GET &&
    857  1.178     ozaki 		    sockaddr_cmp(rt_getkey(rt), info.rti_info[RTAX_DST]) != 0) {
    858  1.187     ozaki 			int ll_flags = 0;
    859  1.178     ozaki 			route_get_sdl(rt->rt_ifp, info.rti_info[RTAX_DST], &sdl,
    860  1.178     ozaki 			    &ll_flags);
    861  1.178     ozaki 			info.rti_info[RTAX_GATEWAY] = sstocsa(&sdl);
    862  1.187     ozaki 			error = route_output_report(rt, &info, rtm, &new_rtm);
    863  1.187     ozaki 			if (error)
    864  1.187     ozaki 				senderr(error);
    865  1.187     ozaki 			if (new_rtm != NULL) {
    866  1.187     ozaki 				old_rtm = rtm;
    867  1.187     ozaki 				rtm = new_rtm;
    868  1.187     ozaki 			}
    869  1.187     ozaki 			rtm->rtm_flags |= RTF_LLDATA;
    870  1.187     ozaki 			rtm->rtm_flags |= (ll_flags & LLE_STATIC) ? RTF_STATIC : 0;
    871  1.187     ozaki 			break;
    872  1.178     ozaki 		}
    873  1.178     ozaki 
    874   1.59    itojun 		switch (rtm->rtm_type) {
    875    1.1       cgd 		case RTM_GET:
    876  1.114    dyoung 			info.rti_info[RTAX_DST] = rt_getkey(rt);
    877  1.114    dyoung 			info.rti_info[RTAX_GATEWAY] = rt->rt_gateway;
    878  1.114    dyoung 			info.rti_info[RTAX_NETMASK] = rt_mask(rt);
    879  1.137      yamt 			info.rti_info[RTAX_TAG] = rt_gettag(rt);
    880  1.187     ozaki 			error = route_output_report(rt, &info, rtm, &new_rtm);
    881  1.187     ozaki 			if (error)
    882  1.187     ozaki 				senderr(error);
    883  1.187     ozaki 			if (new_rtm != NULL) {
    884  1.117  christos 				old_rtm = rtm;
    885  1.187     ozaki 				rtm = new_rtm;
    886  1.178     ozaki 			}
    887    1.1       cgd 			break;
    888    1.1       cgd 
    889  1.198     ozaki 		case RTM_CHANGE:
    890  1.199     ozaki 			error = rt_update_prepare(rt);
    891  1.199     ozaki 			if (error == 0) {
    892  1.199     ozaki 				error = route_output_change(rt, &info, rtm);
    893  1.199     ozaki 				rt_update_finish(rt);
    894  1.199     ozaki 			}
    895  1.198     ozaki 			if (error != 0)
    896  1.198     ozaki 				goto flush;
    897  1.115  christos 			/*FALLTHROUGH*/
    898    1.1       cgd 		case RTM_LOCK:
    899   1.10   mycroft 			rt->rt_rmx.rmx_locks &= ~(rtm->rtm_inits);
    900    1.1       cgd 			rt->rt_rmx.rmx_locks |=
    901   1.21  christos 			    (rtm->rtm_inits & rtm->rtm_rmx.rmx_locks);
    902    1.1       cgd 			break;
    903    1.1       cgd 		}
    904   1.10   mycroft 		break;
    905    1.1       cgd 
    906    1.1       cgd 	default:
    907    1.1       cgd 		senderr(EOPNOTSUPP);
    908    1.1       cgd 	}
    909    1.1       cgd 
    910    1.1       cgd flush:
    911    1.1       cgd 	if (rtm) {
    912    1.1       cgd 		if (error)
    913    1.1       cgd 			rtm->rtm_errno = error;
    914   1.75     perry 		else
    915    1.1       cgd 			rtm->rtm_flags |= RTF_DONE;
    916    1.1       cgd 	}
    917  1.115  christos 	family = info.rti_info[RTAX_DST] ? info.rti_info[RTAX_DST]->sa_family :
    918  1.115  christos 	    0;
    919  1.117  christos 	/* We cannot free old_rtm until we have stopped using the
    920  1.117  christos 	 * pointers in info, some of which may point to sockaddrs
    921  1.117  christos 	 * in old_rtm.
    922  1.117  christos 	 */
    923  1.117  christos 	if (old_rtm != NULL)
    924  1.117  christos 		Free(old_rtm);
    925  1.199     ozaki 	if (rt) {
    926  1.199     ozaki 		if (do_rt_free)
    927  1.199     ozaki 			rt_free(rt);
    928  1.199     ozaki 		else
    929  1.199     ozaki 			rt_unref(rt);
    930  1.199     ozaki 	}
    931    1.1       cgd     {
    932   1.95    dyoung 	struct rawcb *rp = NULL;
    933    1.1       cgd 	/*
    934    1.1       cgd 	 * Check to see if we don't want our own messages.
    935    1.1       cgd 	 */
    936    1.1       cgd 	if ((so->so_options & SO_USELOOPBACK) == 0) {
    937  1.133      matt 		if (COMPATNAME(route_info).ri_cb.any_count <= 1) {
    938    1.1       cgd 			if (rtm)
    939    1.1       cgd 				Free(rtm);
    940    1.1       cgd 			m_freem(m);
    941  1.194     ozaki 			goto out;
    942    1.1       cgd 		}
    943    1.1       cgd 		/* There is another listener, so construct message */
    944    1.1       cgd 		rp = sotorawcb(so);
    945    1.1       cgd 	}
    946    1.1       cgd 	if (rtm) {
    947  1.112    dyoung 		m_copyback(m, 0, rtm->rtm_msglen, rtm);
    948   1.47    itojun 		if (m->m_pkthdr.len < rtm->rtm_msglen) {
    949   1.46    itojun 			m_freem(m);
    950   1.46    itojun 			m = NULL;
    951   1.47    itojun 		} else if (m->m_pkthdr.len > rtm->rtm_msglen)
    952   1.46    itojun 			m_adj(m, rtm->rtm_msglen - m->m_pkthdr.len);
    953    1.1       cgd 		Free(rtm);
    954    1.1       cgd 	}
    955    1.1       cgd 	if (rp)
    956    1.1       cgd 		rp->rcb_proto.sp_family = 0; /* Avoid us */
    957   1.55  christos 	if (family)
    958   1.99        ad 		proto.sp_protocol = family;
    959   1.46    itojun 	if (m)
    960  1.133      matt 		raw_input(m, &proto, &COMPATNAME(route_info).ri_src,
    961  1.133      matt 		    &COMPATNAME(route_info).ri_dst);
    962    1.1       cgd 	if (rp)
    963  1.133      matt 		rp->rcb_proto.sp_family = PF_XROUTE;
    964    1.1       cgd     }
    965  1.194     ozaki out:
    966  1.194     ozaki 	curlwp_bindx(bound);
    967   1.95    dyoung 	return error;
    968    1.1       cgd }
    969    1.1       cgd 
    970  1.133      matt static void
    971  1.133      matt rt_setmetrics(int which, const struct rt_xmsghdr *in, struct rtentry *out)
    972    1.1       cgd {
    973  1.133      matt #define metric(f, e) if (which & (f)) out->rt_rmx.e = in->rtm_rmx.e;
    974    1.1       cgd 	metric(RTV_RPIPE, rmx_recvpipe);
    975    1.1       cgd 	metric(RTV_SPIPE, rmx_sendpipe);
    976    1.1       cgd 	metric(RTV_SSTHRESH, rmx_ssthresh);
    977    1.1       cgd 	metric(RTV_RTT, rmx_rtt);
    978    1.1       cgd 	metric(RTV_RTTVAR, rmx_rttvar);
    979    1.1       cgd 	metric(RTV_HOPCOUNT, rmx_hopcount);
    980    1.1       cgd 	metric(RTV_MTU, rmx_mtu);
    981    1.1       cgd #undef metric
    982  1.173     ozaki 	if (which & RTV_EXPIRE) {
    983  1.173     ozaki 		out->rt_rmx.rmx_expire = in->rtm_rmx.rmx_expire ?
    984  1.173     ozaki 		    time_wall_to_mono(in->rtm_rmx.rmx_expire) : 0;
    985  1.173     ozaki 	}
    986    1.1       cgd }
    987    1.1       cgd 
    988  1.133      matt static void
    989  1.133      matt rtm_setmetrics(const struct rtentry *in, struct rt_xmsghdr *out)
    990  1.133      matt {
    991  1.133      matt #define metric(e) out->rtm_rmx.e = in->rt_rmx.e;
    992  1.133      matt 	metric(rmx_recvpipe);
    993  1.133      matt 	metric(rmx_sendpipe);
    994  1.133      matt 	metric(rmx_ssthresh);
    995  1.133      matt 	metric(rmx_rtt);
    996  1.133      matt 	metric(rmx_rttvar);
    997  1.133      matt 	metric(rmx_hopcount);
    998  1.133      matt 	metric(rmx_mtu);
    999  1.133      matt #undef metric
   1000  1.173     ozaki 	out->rtm_rmx.rmx_expire = in->rt_rmx.rmx_expire ?
   1001  1.173     ozaki 	    time_mono_to_wall(in->rt_rmx.rmx_expire) : 0;
   1002  1.133      matt }
   1003  1.133      matt 
   1004   1.42       erh static int
   1005  1.115  christos rt_xaddrs(u_char rtmtype, const char *cp, const char *cplim,
   1006  1.115  christos     struct rt_addrinfo *rtinfo)
   1007   1.10   mycroft {
   1008   1.69      matt 	const struct sockaddr *sa = NULL;	/* Quell compiler warning */
   1009   1.39  augustss 	int i;
   1010   1.10   mycroft 
   1011  1.112    dyoung 	for (i = 0; i < RTAX_MAX && cp < cplim; i++) {
   1012   1.10   mycroft 		if ((rtinfo->rti_addrs & (1 << i)) == 0)
   1013   1.10   mycroft 			continue;
   1014  1.117  christos 		rtinfo->rti_info[i] = sa = (const struct sockaddr *)cp;
   1015  1.133      matt 		RT_XADVANCE(cp, sa);
   1016   1.10   mycroft 	}
   1017   1.44     enami 
   1018  1.115  christos 	/*
   1019  1.115  christos 	 * Check for extra addresses specified, except RTM_GET asking
   1020  1.115  christos 	 * for interface info.
   1021  1.115  christos 	 */
   1022   1.72  christos 	if (rtmtype == RTM_GET) {
   1023  1.115  christos 		if (((rtinfo->rti_addrs &
   1024  1.193    martin 		    (~((1 << RTAX_IFP) | (1 << RTAX_IFA)))) & (~0U << i)) != 0)
   1025   1.95    dyoung 			return 1;
   1026  1.193    martin 	} else if ((rtinfo->rti_addrs & (~0U << i)) != 0)
   1027  1.114    dyoung 		return 1;
   1028   1.44     enami 	/* Check for bad data length.  */
   1029   1.44     enami 	if (cp != cplim) {
   1030  1.112    dyoung 		if (i == RTAX_NETMASK + 1 && sa != NULL &&
   1031  1.133      matt 		    cp - RT_XROUNDUP(sa->sa_len) + sa->sa_len == cplim)
   1032   1.44     enami 			/*
   1033  1.114    dyoung 			 * The last sockaddr was info.rti_info[RTAX_NETMASK].
   1034   1.44     enami 			 * We accept this for now for the sake of old
   1035   1.44     enami 			 * binaries or third party softwares.
   1036   1.44     enami 			 */
   1037   1.44     enami 			;
   1038   1.44     enami 		else
   1039   1.95    dyoung 			return 1;
   1040   1.44     enami 	}
   1041   1.95    dyoung 	return 0;
   1042    1.1       cgd }
   1043    1.1       cgd 
   1044  1.132  christos static int
   1045  1.132  christos rt_getlen(int type)
   1046    1.1       cgd {
   1047  1.133      matt #ifndef COMPAT_RTSOCK
   1048  1.133      matt 	CTASSERT(__alignof(struct ifa_msghdr) >= sizeof(uint64_t));
   1049  1.133      matt 	CTASSERT(__alignof(struct if_msghdr) >= sizeof(uint64_t));
   1050  1.133      matt 	CTASSERT(__alignof(struct if_announcemsghdr) >= sizeof(uint64_t));
   1051  1.133      matt 	CTASSERT(__alignof(struct rt_msghdr) >= sizeof(uint64_t));
   1052  1.133      matt #endif
   1053  1.133      matt 
   1054   1.10   mycroft 	switch (type) {
   1055  1.196       roy 	case RTM_ODELADDR:
   1056  1.196       roy 	case RTM_ONEWADDR:
   1057  1.196       roy 	case RTM_OCHGADDR:
   1058  1.196       roy #ifdef COMPAT_70
   1059  1.196       roy 		return sizeof(struct ifa_msghdr70);
   1060  1.196       roy #else
   1061  1.196       roy #ifdef DIAGNOSTIC
   1062  1.196       roy 		printf("RTM_ONEWADDR\n");
   1063  1.196       roy #endif
   1064  1.196       roy 		return -1;
   1065  1.196       roy #endif
   1066   1.10   mycroft 	case RTM_DELADDR:
   1067   1.10   mycroft 	case RTM_NEWADDR:
   1068  1.131       roy 	case RTM_CHGADDR:
   1069  1.133      matt 		return sizeof(struct ifa_xmsghdr);
   1070   1.10   mycroft 
   1071  1.132  christos 	case RTM_OOIFINFO:
   1072   1.32    bouyer #ifdef COMPAT_14
   1073  1.132  christos 		return sizeof(struct if_msghdr14);
   1074  1.132  christos #else
   1075  1.132  christos #ifdef DIAGNOSTIC
   1076  1.132  christos 		printf("RTM_OOIFINFO\n");
   1077  1.132  christos #endif
   1078  1.132  christos 		return -1;
   1079  1.120  christos #endif
   1080  1.132  christos 	case RTM_OIFINFO:
   1081  1.120  christos #ifdef COMPAT_50
   1082  1.132  christos 		return sizeof(struct if_msghdr50);
   1083  1.132  christos #else
   1084  1.132  christos #ifdef DIAGNOSTIC
   1085  1.132  christos 		printf("RTM_OIFINFO\n");
   1086  1.132  christos #endif
   1087  1.132  christos 		return -1;
   1088   1.32    bouyer #endif
   1089   1.32    bouyer 
   1090   1.10   mycroft 	case RTM_IFINFO:
   1091  1.133      matt 		return sizeof(struct if_xmsghdr);
   1092   1.10   mycroft 
   1093   1.36   thorpej 	case RTM_IFANNOUNCE:
   1094   1.78    dyoung 	case RTM_IEEE80211:
   1095  1.133      matt 		return sizeof(struct if_xannouncemsghdr);
   1096   1.36   thorpej 
   1097   1.10   mycroft 	default:
   1098  1.133      matt 		return sizeof(struct rt_xmsghdr);
   1099   1.46    itojun 	}
   1100  1.132  christos }
   1101  1.132  christos 
   1102  1.132  christos 
   1103  1.132  christos struct mbuf *
   1104  1.133      matt COMPATNAME(rt_msg1)(int type, struct rt_addrinfo *rtinfo, void *data, int datalen)
   1105  1.132  christos {
   1106  1.133      matt 	struct rt_xmsghdr *rtm;
   1107  1.132  christos 	struct mbuf *m;
   1108  1.132  christos 	int i;
   1109  1.132  christos 	const struct sockaddr *sa;
   1110  1.132  christos 	int len, dlen;
   1111  1.132  christos 
   1112  1.132  christos 	m = m_gethdr(M_DONTWAIT, MT_DATA);
   1113  1.132  christos 	if (m == NULL)
   1114  1.132  christos 		return m;
   1115  1.133      matt 	MCLAIM(m, &COMPATNAME(routedomain).dom_mowner);
   1116  1.132  christos 
   1117  1.132  christos 	if ((len = rt_getlen(type)) == -1)
   1118  1.132  christos 		goto out;
   1119   1.47    itojun 	if (len > MHLEN + MLEN)
   1120  1.133      matt 		panic("%s: message too long", __func__);
   1121   1.47    itojun 	else if (len > MHLEN) {
   1122   1.32    bouyer 		m->m_next = m_get(M_DONTWAIT, MT_DATA);
   1123  1.132  christos 		if (m->m_next == NULL)
   1124  1.132  christos 			goto out;
   1125   1.58      matt 		MCLAIM(m->m_next, m->m_owner);
   1126   1.47    itojun 		m->m_pkthdr.len = len;
   1127   1.47    itojun 		m->m_len = MHLEN;
   1128   1.47    itojun 		m->m_next->m_len = len - MHLEN;
   1129   1.47    itojun 	} else {
   1130   1.47    itojun 		m->m_pkthdr.len = m->m_len = len;
   1131   1.32    bouyer 	}
   1132  1.189     ozaki 	m_reset_rcvif(m);
   1133   1.32    bouyer 	m_copyback(m, 0, datalen, data);
   1134  1.107  christos 	if (len > datalen)
   1135  1.107  christos 		(void)memset(mtod(m, char *) + datalen, 0, len - datalen);
   1136  1.133      matt 	rtm = mtod(m, struct rt_xmsghdr *);
   1137   1.10   mycroft 	for (i = 0; i < RTAX_MAX; i++) {
   1138   1.10   mycroft 		if ((sa = rtinfo->rti_info[i]) == NULL)
   1139   1.10   mycroft 			continue;
   1140   1.10   mycroft 		rtinfo->rti_addrs |= (1 << i);
   1141  1.133      matt 		dlen = RT_XROUNDUP(sa->sa_len);
   1142  1.133      matt 		m_copyback(m, len, sa->sa_len, sa);
   1143  1.133      matt 		if (dlen != sa->sa_len) {
   1144  1.140  christos 			/*
   1145  1.140  christos 			 * Up to 6 + 1 nul's since roundup is to
   1146  1.140  christos 			 * sizeof(uint64_t) (8 bytes)
   1147  1.140  christos 			 */
   1148  1.133      matt 			m_copyback(m, len + sa->sa_len,
   1149  1.133      matt 			    dlen - sa->sa_len, "\0\0\0\0\0\0");
   1150  1.133      matt 		}
   1151   1.10   mycroft 		len += dlen;
   1152   1.47    itojun 	}
   1153  1.132  christos 	if (m->m_pkthdr.len != len)
   1154  1.132  christos 		goto out;
   1155    1.1       cgd 	rtm->rtm_msglen = len;
   1156  1.133      matt 	rtm->rtm_version = RTM_XVERSION;
   1157    1.1       cgd 	rtm->rtm_type = type;
   1158   1.95    dyoung 	return m;
   1159  1.132  christos out:
   1160  1.132  christos 	m_freem(m);
   1161  1.132  christos 	return NULL;
   1162   1.10   mycroft }
   1163   1.10   mycroft 
   1164   1.29    chopps /*
   1165   1.29    chopps  * rt_msg2
   1166   1.29    chopps  *
   1167   1.29    chopps  *	 fills 'cp' or 'w'.w_tmem with the routing socket message and
   1168   1.29    chopps  *		returns the length of the message in 'lenp'.
   1169   1.29    chopps  *
   1170   1.29    chopps  * if walkarg is 0, cp is expected to be 0 or a buffer large enough to hold
   1171   1.29    chopps  *	the message
   1172   1.29    chopps  * otherwise walkarg's w_needed is updated and if the user buffer is
   1173   1.29    chopps  *	specified and w_needed indicates space exists the information is copied
   1174   1.29    chopps  *	into the temp space (w_tmem). w_tmem is [re]allocated if necessary,
   1175   1.29    chopps  *	if the allocation fails ENOBUFS is returned.
   1176   1.29    chopps  */
   1177   1.10   mycroft static int
   1178  1.120  christos rt_msg2(int type, struct rt_addrinfo *rtinfo, void *cpv, struct rt_walkarg *w,
   1179   1.69      matt 	int *lenp)
   1180   1.10   mycroft {
   1181   1.39  augustss 	int i;
   1182   1.10   mycroft 	int len, dlen, second_time = 0;
   1183   1.93  christos 	char *cp0, *cp = cpv;
   1184   1.10   mycroft 
   1185   1.10   mycroft 	rtinfo->rti_addrs = 0;
   1186   1.10   mycroft again:
   1187  1.132  christos 	if ((len = rt_getlen(type)) == -1)
   1188  1.132  christos 		return EINVAL;
   1189   1.10   mycroft 
   1190   1.17  christos 	if ((cp0 = cp) != NULL)
   1191   1.10   mycroft 		cp += len;
   1192   1.10   mycroft 	for (i = 0; i < RTAX_MAX; i++) {
   1193   1.68      matt 		const struct sockaddr *sa;
   1194   1.10   mycroft 
   1195   1.95    dyoung 		if ((sa = rtinfo->rti_info[i]) == NULL)
   1196   1.10   mycroft 			continue;
   1197   1.10   mycroft 		rtinfo->rti_addrs |= (1 << i);
   1198  1.133      matt 		dlen = RT_XROUNDUP(sa->sa_len);
   1199   1.10   mycroft 		if (cp) {
   1200  1.140  christos 			int diff = dlen - sa->sa_len;
   1201  1.140  christos 			(void)memcpy(cp, sa, (size_t)sa->sa_len);
   1202  1.140  christos 			cp += sa->sa_len;
   1203  1.140  christos 			if (diff > 0) {
   1204  1.140  christos 				(void)memset(cp, 0, (size_t)diff);
   1205  1.140  christos 				cp += diff;
   1206  1.140  christos 			}
   1207   1.10   mycroft 		}
   1208    1.1       cgd 		len += dlen;
   1209    1.1       cgd 	}
   1210   1.95    dyoung 	if (cp == NULL && w != NULL && !second_time) {
   1211  1.120  christos 		struct rt_walkarg *rw = w;
   1212   1.10   mycroft 
   1213   1.10   mycroft 		rw->w_needed += len;
   1214   1.10   mycroft 		if (rw->w_needed <= 0 && rw->w_where) {
   1215   1.10   mycroft 			if (rw->w_tmemsize < len) {
   1216   1.10   mycroft 				if (rw->w_tmem)
   1217   1.10   mycroft 					free(rw->w_tmem, M_RTABLE);
   1218  1.111  christos 				rw->w_tmem = malloc(len, M_RTABLE, M_NOWAIT);
   1219   1.17  christos 				if (rw->w_tmem)
   1220   1.10   mycroft 					rw->w_tmemsize = len;
   1221  1.111  christos 				else
   1222  1.111  christos 					rw->w_tmemsize = 0;
   1223   1.10   mycroft 			}
   1224   1.10   mycroft 			if (rw->w_tmem) {
   1225   1.10   mycroft 				cp = rw->w_tmem;
   1226   1.10   mycroft 				second_time = 1;
   1227   1.10   mycroft 				goto again;
   1228   1.29    chopps 			} else {
   1229   1.29    chopps 				rw->w_tmemneeded = len;
   1230   1.95    dyoung 				return ENOBUFS;
   1231   1.29    chopps 			}
   1232   1.10   mycroft 		}
   1233    1.1       cgd 	}
   1234   1.10   mycroft 	if (cp) {
   1235  1.133      matt 		struct rt_xmsghdr *rtm = (struct rt_xmsghdr *)cp0;
   1236   1.10   mycroft 
   1237  1.133      matt 		rtm->rtm_version = RTM_XVERSION;
   1238   1.10   mycroft 		rtm->rtm_type = type;
   1239   1.10   mycroft 		rtm->rtm_msglen = len;
   1240    1.1       cgd 	}
   1241   1.29    chopps 	if (lenp)
   1242   1.29    chopps 		*lenp = len;
   1243   1.95    dyoung 	return 0;
   1244   1.10   mycroft }
   1245   1.10   mycroft 
   1246  1.178     ozaki #ifndef COMPAT_RTSOCK
   1247  1.178     ozaki int
   1248  1.178     ozaki rt_msg3(int type, struct rt_addrinfo *rtinfo, void *cpv, struct rt_walkarg *w,
   1249  1.178     ozaki 	int *lenp)
   1250  1.178     ozaki {
   1251  1.178     ozaki 	return rt_msg2(type, rtinfo, cpv, w, lenp);
   1252  1.178     ozaki }
   1253  1.178     ozaki #endif
   1254  1.178     ozaki 
   1255   1.10   mycroft /*
   1256   1.10   mycroft  * This routine is called to generate a message from the routing
   1257   1.51       wiz  * socket indicating that a redirect has occurred, a routing lookup
   1258   1.10   mycroft  * has failed, or that a protocol has detected timeouts to a particular
   1259   1.10   mycroft  * destination.
   1260   1.10   mycroft  */
   1261   1.10   mycroft void
   1262  1.133      matt COMPATNAME(rt_missmsg)(int type, const struct rt_addrinfo *rtinfo, int flags,
   1263  1.133      matt     int error)
   1264   1.10   mycroft {
   1265  1.133      matt 	struct rt_xmsghdr rtm;
   1266   1.39  augustss 	struct mbuf *m;
   1267   1.68      matt 	const struct sockaddr *sa = rtinfo->rti_info[RTAX_DST];
   1268  1.133      matt 	struct rt_addrinfo info = *rtinfo;
   1269   1.10   mycroft 
   1270  1.133      matt 	COMPATCALL(rt_missmsg, (type, rtinfo, flags, error));
   1271  1.133      matt 	if (COMPATNAME(route_info).ri_cb.any_count == 0)
   1272   1.10   mycroft 		return;
   1273   1.48   thorpej 	memset(&rtm, 0, sizeof(rtm));
   1274  1.185       roy 	rtm.rtm_pid = curproc->p_pid;
   1275   1.32    bouyer 	rtm.rtm_flags = RTF_DONE | flags;
   1276   1.32    bouyer 	rtm.rtm_errno = error;
   1277  1.133      matt 	m = COMPATNAME(rt_msg1)(type, &info, &rtm, sizeof(rtm));
   1278   1.95    dyoung 	if (m == NULL)
   1279    1.1       cgd 		return;
   1280  1.133      matt 	mtod(m, struct rt_xmsghdr *)->rtm_addrs = info.rti_addrs;
   1281  1.133      matt 	COMPATNAME(route_enqueue)(m, sa ? sa->sa_family : 0);
   1282   1.10   mycroft }
   1283   1.10   mycroft 
   1284   1.10   mycroft /*
   1285   1.10   mycroft  * This routine is called to generate a message from the routing
   1286   1.10   mycroft  * socket indicating that the status of a network interface has changed.
   1287   1.10   mycroft  */
   1288   1.10   mycroft void
   1289  1.133      matt COMPATNAME(rt_ifmsg)(struct ifnet *ifp)
   1290   1.10   mycroft {
   1291  1.133      matt 	struct if_xmsghdr ifm;
   1292   1.10   mycroft 	struct mbuf *m;
   1293   1.10   mycroft 	struct rt_addrinfo info;
   1294   1.10   mycroft 
   1295  1.133      matt 	COMPATCALL(rt_ifmsg, (ifp));
   1296  1.133      matt 	if (COMPATNAME(route_info).ri_cb.any_count == 0)
   1297   1.10   mycroft 		return;
   1298  1.120  christos 	(void)memset(&info, 0, sizeof(info));
   1299  1.120  christos 	(void)memset(&ifm, 0, sizeof(ifm));
   1300   1.32    bouyer 	ifm.ifm_index = ifp->if_index;
   1301   1.32    bouyer 	ifm.ifm_flags = ifp->if_flags;
   1302   1.32    bouyer 	ifm.ifm_data = ifp->if_data;
   1303   1.32    bouyer 	ifm.ifm_addrs = 0;
   1304  1.133      matt 	m = COMPATNAME(rt_msg1)(RTM_IFINFO, &info, &ifm, sizeof(ifm));
   1305   1.95    dyoung 	if (m == NULL)
   1306   1.32    bouyer 		return;
   1307  1.133      matt 	COMPATNAME(route_enqueue)(m, 0);
   1308   1.32    bouyer #ifdef COMPAT_14
   1309  1.133      matt 	compat_14_rt_oifmsg(ifp);
   1310  1.120  christos #endif
   1311  1.120  christos #ifdef COMPAT_50
   1312  1.133      matt 	compat_50_rt_oifmsg(ifp);
   1313   1.32    bouyer #endif
   1314    1.1       cgd }
   1315    1.1       cgd 
   1316  1.196       roy #ifndef COMPAT_RTSOCK
   1317  1.196       roy static int
   1318  1.196       roy if_addrflags(struct ifaddr *ifa)
   1319  1.196       roy {
   1320  1.196       roy 
   1321  1.196       roy 	switch (ifa->ifa_addr->sa_family) {
   1322  1.196       roy #ifdef INET
   1323  1.196       roy 	case AF_INET:
   1324  1.196       roy 		return ((struct in_ifaddr *)ifa)->ia4_flags;
   1325  1.196       roy #endif
   1326  1.196       roy #ifdef INET6
   1327  1.196       roy 	case AF_INET6:
   1328  1.196       roy 		return ((struct in6_ifaddr *)ifa)->ia6_flags;
   1329  1.196       roy #endif
   1330  1.196       roy 	default:
   1331  1.196       roy 		return 0;
   1332  1.196       roy 	}
   1333  1.196       roy }
   1334  1.196       roy #endif
   1335  1.120  christos 
   1336    1.1       cgd /*
   1337   1.10   mycroft  * This is called to generate messages from the routing socket
   1338   1.10   mycroft  * indicating a network interface has had addresses associated with it.
   1339   1.10   mycroft  * if we ever reverse the logic and replace messages TO the routing
   1340   1.10   mycroft  * socket indicate a request to configure interfaces, then it will
   1341   1.10   mycroft  * be unnecessary as the routing socket will automatically generate
   1342   1.10   mycroft  * copies of it.
   1343   1.10   mycroft  */
   1344   1.10   mycroft void
   1345  1.133      matt COMPATNAME(rt_newaddrmsg)(int cmd, struct ifaddr *ifa, int error,
   1346  1.133      matt     struct rtentry *rt)
   1347   1.10   mycroft {
   1348  1.116    dyoung #define	cmdpass(__cmd, __pass)	(((__cmd) << 2) | (__pass))
   1349   1.10   mycroft 	struct rt_addrinfo info;
   1350  1.116    dyoung 	const struct sockaddr *sa;
   1351   1.10   mycroft 	int pass;
   1352  1.116    dyoung 	struct mbuf *m;
   1353  1.139  christos 	struct ifnet *ifp;
   1354  1.133      matt 	struct rt_xmsghdr rtm;
   1355  1.133      matt 	struct ifa_xmsghdr ifam;
   1356  1.116    dyoung 	int ncmd;
   1357   1.10   mycroft 
   1358  1.139  christos 	KASSERT(ifa != NULL);
   1359  1.196       roy 	KASSERT(ifa->ifa_addr != NULL);
   1360  1.139  christos 	ifp = ifa->ifa_ifp;
   1361  1.174       rjs #ifdef SCTP
   1362  1.174       rjs 	if (cmd == RTM_ADD) {
   1363  1.174       rjs 		sctp_add_ip_address(ifa);
   1364  1.174       rjs 	} else if (cmd == RTM_DELETE) {
   1365  1.174       rjs 		sctp_delete_ip_address(ifa);
   1366  1.174       rjs 	}
   1367  1.174       rjs #endif
   1368  1.174       rjs 
   1369  1.133      matt 	COMPATCALL(rt_newaddrmsg, (cmd, ifa, error, rt));
   1370  1.133      matt 	if (COMPATNAME(route_info).ri_cb.any_count == 0)
   1371   1.10   mycroft 		return;
   1372   1.10   mycroft 	for (pass = 1; pass < 3; pass++) {
   1373   1.48   thorpej 		memset(&info, 0, sizeof(info));
   1374  1.116    dyoung 		switch (cmdpass(cmd, pass)) {
   1375  1.116    dyoung 		case cmdpass(RTM_ADD, 1):
   1376  1.116    dyoung 		case cmdpass(RTM_CHANGE, 1):
   1377  1.116    dyoung 		case cmdpass(RTM_DELETE, 2):
   1378  1.138       roy 		case cmdpass(RTM_NEWADDR, 1):
   1379  1.138       roy 		case cmdpass(RTM_DELADDR, 1):
   1380  1.138       roy 		case cmdpass(RTM_CHGADDR, 1):
   1381  1.131       roy 			switch (cmd) {
   1382  1.138       roy 			case RTM_ADD:
   1383  1.196       roy 				ncmd = RTM_XNEWADDR;
   1384  1.138       roy 				break;
   1385  1.131       roy 			case RTM_DELETE:
   1386  1.196       roy 				ncmd = RTM_XDELADDR;
   1387  1.131       roy 				break;
   1388  1.131       roy 			case RTM_CHANGE:
   1389  1.196       roy 				ncmd = RTM_XCHGADDR;
   1390  1.196       roy 				break;
   1391  1.196       roy 			case RTM_NEWADDR:
   1392  1.196       roy 				ncmd = RTM_XNEWADDR;
   1393  1.196       roy 				break;
   1394  1.196       roy 			case RTM_DELADDR:
   1395  1.196       roy 				ncmd = RTM_XDELADDR;
   1396  1.196       roy 				break;
   1397  1.196       roy 			case RTM_CHGADDR:
   1398  1.196       roy 				ncmd = RTM_XCHGADDR;
   1399  1.131       roy 				break;
   1400  1.131       roy 			default:
   1401  1.196       roy 				panic("%s: unknown command %d", __func__, cmd);
   1402  1.131       roy 			}
   1403  1.196       roy #ifdef COMPAT_70
   1404  1.196       roy 			compat_70_rt_newaddrmsg1(ncmd, ifa);
   1405  1.196       roy #endif
   1406  1.114    dyoung 			info.rti_info[RTAX_IFA] = sa = ifa->ifa_addr;
   1407  1.139  christos 			KASSERT(ifp->if_dl != NULL);
   1408  1.114    dyoung 			info.rti_info[RTAX_IFP] = ifp->if_dl->ifa_addr;
   1409  1.114    dyoung 			info.rti_info[RTAX_NETMASK] = ifa->ifa_netmask;
   1410  1.114    dyoung 			info.rti_info[RTAX_BRD] = ifa->ifa_dstaddr;
   1411   1.48   thorpej 			memset(&ifam, 0, sizeof(ifam));
   1412   1.32    bouyer 			ifam.ifam_index = ifp->if_index;
   1413   1.32    bouyer 			ifam.ifam_metric = ifa->ifa_metric;
   1414   1.32    bouyer 			ifam.ifam_flags = ifa->ifa_flags;
   1415  1.196       roy #ifndef COMPAT_RTSOCK
   1416  1.196       roy 			ifam.ifam_pid = curproc->p_pid;
   1417  1.196       roy 			ifam.ifam_addrflags = if_addrflags(ifa);
   1418  1.196       roy #endif
   1419  1.133      matt 			m = COMPATNAME(rt_msg1)(ncmd, &info, &ifam, sizeof(ifam));
   1420   1.32    bouyer 			if (m == NULL)
   1421   1.10   mycroft 				continue;
   1422  1.133      matt 			mtod(m, struct ifa_xmsghdr *)->ifam_addrs =
   1423   1.32    bouyer 			    info.rti_addrs;
   1424  1.116    dyoung 			break;
   1425  1.116    dyoung 		case cmdpass(RTM_ADD, 2):
   1426  1.116    dyoung 		case cmdpass(RTM_CHANGE, 2):
   1427  1.116    dyoung 		case cmdpass(RTM_DELETE, 1):
   1428   1.95    dyoung 			if (rt == NULL)
   1429   1.10   mycroft 				continue;
   1430  1.114    dyoung 			info.rti_info[RTAX_NETMASK] = rt_mask(rt);
   1431  1.114    dyoung 			info.rti_info[RTAX_DST] = sa = rt_getkey(rt);
   1432  1.114    dyoung 			info.rti_info[RTAX_GATEWAY] = rt->rt_gateway;
   1433   1.48   thorpej 			memset(&rtm, 0, sizeof(rtm));
   1434  1.185       roy 			rtm.rtm_pid = curproc->p_pid;
   1435   1.32    bouyer 			rtm.rtm_index = ifp->if_index;
   1436   1.32    bouyer 			rtm.rtm_flags |= rt->rt_flags;
   1437   1.32    bouyer 			rtm.rtm_errno = error;
   1438  1.133      matt 			m = COMPATNAME(rt_msg1)(cmd, &info, &rtm, sizeof(rtm));
   1439   1.32    bouyer 			if (m == NULL)
   1440   1.10   mycroft 				continue;
   1441  1.133      matt 			mtod(m, struct rt_xmsghdr *)->rtm_addrs = info.rti_addrs;
   1442  1.116    dyoung 			break;
   1443  1.116    dyoung 		default:
   1444  1.116    dyoung 			continue;
   1445   1.10   mycroft 		}
   1446  1.104  christos #ifdef DIAGNOSTIC
   1447  1.104  christos 		if (m == NULL)
   1448  1.105  dholland 			panic("%s: called with wrong command", __func__);
   1449  1.104  christos #endif
   1450  1.133      matt 		COMPATNAME(route_enqueue)(m, sa ? sa->sa_family : 0);
   1451   1.10   mycroft 	}
   1452  1.116    dyoung #undef cmdpass
   1453  1.196       roy 
   1454   1.36   thorpej }
   1455   1.36   thorpej 
   1456   1.78    dyoung static struct mbuf *
   1457   1.78    dyoung rt_makeifannouncemsg(struct ifnet *ifp, int type, int what,
   1458   1.78    dyoung     struct rt_addrinfo *info)
   1459   1.78    dyoung {
   1460  1.133      matt 	struct if_xannouncemsghdr ifan;
   1461   1.78    dyoung 
   1462   1.78    dyoung 	memset(info, 0, sizeof(*info));
   1463   1.78    dyoung 	memset(&ifan, 0, sizeof(ifan));
   1464   1.78    dyoung 	ifan.ifan_index = ifp->if_index;
   1465   1.78    dyoung 	strlcpy(ifan.ifan_name, ifp->if_xname, sizeof(ifan.ifan_name));
   1466   1.78    dyoung 	ifan.ifan_what = what;
   1467  1.133      matt 	return COMPATNAME(rt_msg1)(type, info, &ifan, sizeof(ifan));
   1468   1.78    dyoung }
   1469   1.78    dyoung 
   1470   1.36   thorpej /*
   1471   1.36   thorpej  * This is called to generate routing socket messages indicating
   1472   1.36   thorpej  * network interface arrival and departure.
   1473   1.36   thorpej  */
   1474   1.36   thorpej void
   1475  1.133      matt COMPATNAME(rt_ifannouncemsg)(struct ifnet *ifp, int what)
   1476   1.36   thorpej {
   1477   1.36   thorpej 	struct mbuf *m;
   1478   1.36   thorpej 	struct rt_addrinfo info;
   1479   1.36   thorpej 
   1480  1.133      matt 	COMPATCALL(rt_ifannouncemsg, (ifp, what));
   1481  1.133      matt 	if (COMPATNAME(route_info).ri_cb.any_count == 0)
   1482   1.36   thorpej 		return;
   1483   1.78    dyoung 	m = rt_makeifannouncemsg(ifp, RTM_IFANNOUNCE, what, &info);
   1484   1.78    dyoung 	if (m == NULL)
   1485   1.78    dyoung 		return;
   1486  1.133      matt 	COMPATNAME(route_enqueue)(m, 0);
   1487   1.78    dyoung }
   1488   1.78    dyoung 
   1489   1.78    dyoung /*
   1490   1.78    dyoung  * This is called to generate routing socket messages indicating
   1491   1.78    dyoung  * IEEE80211 wireless events.
   1492   1.78    dyoung  * XXX we piggyback on the RTM_IFANNOUNCE msg format in a clumsy way.
   1493   1.78    dyoung  */
   1494   1.78    dyoung void
   1495  1.133      matt COMPATNAME(rt_ieee80211msg)(struct ifnet *ifp, int what, void *data,
   1496  1.133      matt 	size_t data_len)
   1497   1.78    dyoung {
   1498   1.78    dyoung 	struct mbuf *m;
   1499   1.78    dyoung 	struct rt_addrinfo info;
   1500   1.78    dyoung 
   1501  1.133      matt 	COMPATCALL(rt_ieee80211msg, (ifp, what, data, data_len));
   1502  1.133      matt 	if (COMPATNAME(route_info).ri_cb.any_count == 0)
   1503   1.78    dyoung 		return;
   1504   1.78    dyoung 	m = rt_makeifannouncemsg(ifp, RTM_IEEE80211, what, &info);
   1505   1.78    dyoung 	if (m == NULL)
   1506   1.36   thorpej 		return;
   1507   1.78    dyoung 	/*
   1508   1.78    dyoung 	 * Append the ieee80211 data.  Try to stick it in the
   1509   1.78    dyoung 	 * mbuf containing the ifannounce msg; otherwise allocate
   1510   1.78    dyoung 	 * a new mbuf and append.
   1511   1.78    dyoung 	 *
   1512   1.78    dyoung 	 * NB: we assume m is a single mbuf.
   1513   1.78    dyoung 	 */
   1514   1.78    dyoung 	if (data_len > M_TRAILINGSPACE(m)) {
   1515   1.78    dyoung 		struct mbuf *n = m_get(M_NOWAIT, MT_DATA);
   1516   1.78    dyoung 		if (n == NULL) {
   1517   1.78    dyoung 			m_freem(m);
   1518   1.78    dyoung 			return;
   1519   1.78    dyoung 		}
   1520   1.78    dyoung 		(void)memcpy(mtod(n, void *), data, data_len);
   1521   1.78    dyoung 		n->m_len = data_len;
   1522   1.78    dyoung 		m->m_next = n;
   1523   1.78    dyoung 	} else if (data_len > 0) {
   1524   1.98      matt 		(void)memcpy(mtod(m, uint8_t *) + m->m_len, data, data_len);
   1525   1.78    dyoung 		m->m_len += data_len;
   1526   1.78    dyoung 	}
   1527   1.78    dyoung 	if (m->m_flags & M_PKTHDR)
   1528   1.78    dyoung 		m->m_pkthdr.len += data_len;
   1529  1.133      matt 	mtod(m, struct if_xannouncemsghdr *)->ifan_msglen += data_len;
   1530  1.133      matt 	COMPATNAME(route_enqueue)(m, 0);
   1531   1.10   mycroft }
   1532   1.10   mycroft 
   1533   1.10   mycroft /*
   1534   1.10   mycroft  * This is used in dumping the kernel table via sysctl().
   1535    1.1       cgd  */
   1536   1.40    simonb static int
   1537   1.94    dyoung sysctl_dumpentry(struct rtentry *rt, void *v)
   1538    1.1       cgd {
   1539  1.120  christos 	struct rt_walkarg *w = v;
   1540   1.10   mycroft 	int error = 0, size;
   1541   1.10   mycroft 	struct rt_addrinfo info;
   1542    1.1       cgd 
   1543   1.10   mycroft 	if (w->w_op == NET_RT_FLAGS && !(rt->rt_flags & w->w_arg))
   1544   1.10   mycroft 		return 0;
   1545   1.48   thorpej 	memset(&info, 0, sizeof(info));
   1546  1.114    dyoung 	info.rti_info[RTAX_DST] = rt_getkey(rt);
   1547  1.114    dyoung 	info.rti_info[RTAX_GATEWAY] = rt->rt_gateway;
   1548  1.114    dyoung 	info.rti_info[RTAX_NETMASK] = rt_mask(rt);
   1549  1.142    kefren 	info.rti_info[RTAX_TAG] = rt_gettag(rt);
   1550   1.16       cgd 	if (rt->rt_ifp) {
   1551   1.91    dyoung 		const struct ifaddr *rtifa;
   1552  1.114    dyoung 		info.rti_info[RTAX_IFP] = rt->rt_ifp->if_dl->ifa_addr;
   1553   1.91    dyoung 		/* rtifa used to be simply rt->rt_ifa.  If rt->rt_ifa != NULL,
   1554   1.91    dyoung 		 * then rt_get_ifa() != NULL.  So this ought to still be safe.
   1555   1.91    dyoung 		 * --dyoung
   1556   1.91    dyoung 		 */
   1557   1.91    dyoung 		rtifa = rt_get_ifa(rt);
   1558  1.114    dyoung 		info.rti_info[RTAX_IFA] = rtifa->ifa_addr;
   1559   1.16       cgd 		if (rt->rt_ifp->if_flags & IFF_POINTOPOINT)
   1560  1.114    dyoung 			info.rti_info[RTAX_BRD] = rtifa->ifa_dstaddr;
   1561   1.16       cgd 	}
   1562   1.29    chopps 	if ((error = rt_msg2(RTM_GET, &info, 0, w, &size)))
   1563   1.95    dyoung 		return error;
   1564   1.29    chopps 	if (w->w_where && w->w_tmem && w->w_needed <= 0) {
   1565  1.133      matt 		struct rt_xmsghdr *rtm = (struct rt_xmsghdr *)w->w_tmem;
   1566   1.10   mycroft 
   1567   1.10   mycroft 		rtm->rtm_flags = rt->rt_flags;
   1568   1.10   mycroft 		rtm->rtm_use = rt->rt_use;
   1569  1.133      matt 		rtm_setmetrics(rt, rtm);
   1570   1.83  christos 		KASSERT(rt->rt_ifp != NULL);
   1571   1.10   mycroft 		rtm->rtm_index = rt->rt_ifp->if_index;
   1572   1.10   mycroft 		rtm->rtm_errno = rtm->rtm_pid = rtm->rtm_seq = 0;
   1573   1.10   mycroft 		rtm->rtm_addrs = info.rti_addrs;
   1574   1.21  christos 		if ((error = copyout(rtm, w->w_where, size)) != 0)
   1575   1.10   mycroft 			w->w_where = NULL;
   1576   1.10   mycroft 		else
   1577   1.93  christos 			w->w_where = (char *)w->w_where + size;
   1578   1.10   mycroft 	}
   1579   1.95    dyoung 	return error;
   1580   1.10   mycroft }
   1581    1.1       cgd 
   1582   1.40    simonb static int
   1583  1.195       roy sysctl_iflist_if(struct ifnet *ifp, struct rt_walkarg *w,
   1584  1.195       roy     struct rt_addrinfo *info, size_t len)
   1585  1.195       roy {
   1586  1.195       roy 	struct if_xmsghdr *ifm;
   1587  1.195       roy 	int error;
   1588  1.195       roy 
   1589  1.195       roy 	ifm = (struct if_xmsghdr *)w->w_tmem;
   1590  1.195       roy 	ifm->ifm_index = ifp->if_index;
   1591  1.195       roy 	ifm->ifm_flags = ifp->if_flags;
   1592  1.195       roy 	ifm->ifm_data = ifp->if_data;
   1593  1.195       roy 	ifm->ifm_addrs = info->rti_addrs;
   1594  1.195       roy 	if ((error = copyout(ifm, w->w_where, len)) == 0)
   1595  1.195       roy 		w->w_where = (char *)w->w_where + len;
   1596  1.195       roy 	return error;
   1597  1.195       roy }
   1598  1.195       roy 
   1599  1.195       roy static int
   1600  1.195       roy sysctl_iflist_addr(struct rt_walkarg *w, struct ifaddr *ifa,
   1601  1.195       roy      struct rt_addrinfo *info)
   1602  1.195       roy {
   1603  1.195       roy 	int len, error;
   1604  1.195       roy 
   1605  1.196       roy 	if ((error = rt_msg2(RTM_XNEWADDR, info, 0, w, &len)))
   1606  1.195       roy 		return error;
   1607  1.195       roy 	if (w->w_where && w->w_tmem && w->w_needed <= 0) {
   1608  1.195       roy 		struct ifa_xmsghdr *ifam;
   1609  1.195       roy 
   1610  1.195       roy 		ifam = (struct ifa_xmsghdr *)w->w_tmem;
   1611  1.195       roy 		ifam->ifam_index = ifa->ifa_ifp->if_index;
   1612  1.195       roy 		ifam->ifam_flags = ifa->ifa_flags;
   1613  1.195       roy 		ifam->ifam_metric = ifa->ifa_metric;
   1614  1.195       roy 		ifam->ifam_addrs = info->rti_addrs;
   1615  1.196       roy #ifndef COMPAT_RTSOCK
   1616  1.196       roy 		ifam->ifam_pid = 0;
   1617  1.196       roy 		ifam->ifam_addrflags = if_addrflags(ifa);
   1618  1.196       roy #endif
   1619  1.195       roy 		if ((error = copyout(w->w_tmem, w->w_where, len)) == 0)
   1620  1.195       roy 			w->w_where = (char *)w->w_where + len;
   1621  1.195       roy 	}
   1622  1.195       roy 	return error;
   1623  1.195       roy }
   1624  1.195       roy 
   1625  1.195       roy static int
   1626  1.120  christos sysctl_iflist(int af, struct rt_walkarg *w, int type)
   1627   1.10   mycroft {
   1628   1.39  augustss 	struct ifnet *ifp;
   1629   1.39  augustss 	struct ifaddr *ifa;
   1630   1.10   mycroft 	struct	rt_addrinfo info;
   1631  1.195       roy 	int	cmd, len, error = 0;
   1632  1.195       roy 	int	(*iflist_if)(struct ifnet *, struct rt_walkarg *,
   1633  1.195       roy 			     struct rt_addrinfo *, size_t);
   1634  1.196       roy 	int	(*iflist_addr)(struct rt_walkarg *, struct ifaddr *,
   1635  1.196       roy 			       struct rt_addrinfo *);
   1636  1.186     ozaki 	int s;
   1637  1.186     ozaki 	struct psref psref;
   1638  1.190     ozaki 	int bound = curlwp_bind();
   1639   1.10   mycroft 
   1640  1.195       roy 	switch (type) {
   1641  1.195       roy 	case NET_RT_IFLIST:
   1642  1.195       roy 		cmd = RTM_IFINFO;
   1643  1.195       roy 		iflist_if = sysctl_iflist_if;
   1644  1.196       roy 		iflist_addr = sysctl_iflist_addr;
   1645  1.195       roy 		break;
   1646  1.195       roy #ifdef COMPAT_14
   1647  1.196       roy 	case NET_RT_OOOIFLIST:
   1648  1.195       roy 		cmd = RTM_OOIFINFO;
   1649  1.195       roy 		iflist_if = compat_14_iflist;
   1650  1.196       roy 		iflist_addr = compat_70_iflist_addr;
   1651  1.195       roy 		break;
   1652  1.195       roy #endif
   1653  1.195       roy #ifdef COMPAT_50
   1654  1.196       roy 	case NET_RT_OOIFLIST:
   1655  1.195       roy 		cmd = RTM_OIFINFO;
   1656  1.195       roy 		iflist_if = compat_50_iflist;
   1657  1.196       roy 		iflist_addr = compat_70_iflist_addr;
   1658  1.196       roy 		break;
   1659  1.196       roy #endif
   1660  1.196       roy #ifdef COMPAT_70
   1661  1.196       roy 	case NET_RT_OIFLIST:
   1662  1.196       roy 		cmd = RTM_IFINFO;
   1663  1.196       roy 		iflist_if = sysctl_iflist_if;
   1664  1.196       roy 		iflist_addr = compat_70_iflist_addr;
   1665  1.195       roy 		break;
   1666  1.195       roy #endif
   1667  1.195       roy 	default:
   1668  1.195       roy #ifdef DIAGNOSTIC
   1669  1.195       roy 		printf("sysctl_iflist\n");
   1670  1.195       roy #endif
   1671  1.195       roy 		return EINVAL;
   1672  1.195       roy 	}
   1673  1.195       roy 
   1674   1.48   thorpej 	memset(&info, 0, sizeof(info));
   1675  1.186     ozaki 
   1676  1.186     ozaki 	s = pserialize_read_enter();
   1677  1.186     ozaki 	IFNET_READER_FOREACH(ifp) {
   1678   1.10   mycroft 		if (w->w_arg && w->w_arg != ifp->if_index)
   1679   1.10   mycroft 			continue;
   1680  1.191     ozaki 		if (IFADDR_READER_EMPTY(ifp))
   1681   1.81    rpaulo 			continue;
   1682  1.186     ozaki 
   1683  1.186     ozaki 		psref_acquire(&psref, &ifp->if_psref, ifnet_psref_class);
   1684  1.186     ozaki 		pserialize_read_exit(s);
   1685  1.186     ozaki 
   1686  1.114    dyoung 		info.rti_info[RTAX_IFP] = ifp->if_dl->ifa_addr;
   1687  1.195       roy 		if ((error = rt_msg2(cmd, &info, NULL, w, &len)) != 0)
   1688  1.186     ozaki 			goto release_exit;
   1689  1.114    dyoung 		info.rti_info[RTAX_IFP] = NULL;
   1690   1.29    chopps 		if (w->w_where && w->w_tmem && w->w_needed <= 0) {
   1691  1.195       roy 			if ((error = iflist_if(ifp, w, &info, len)) != 0)
   1692  1.195       roy 				goto release_exit;
   1693   1.10   mycroft 		}
   1694  1.191     ozaki 		IFADDR_READER_FOREACH(ifa, ifp) {
   1695   1.10   mycroft 			if (af && af != ifa->ifa_addr->sa_family)
   1696   1.10   mycroft 				continue;
   1697  1.114    dyoung 			info.rti_info[RTAX_IFA] = ifa->ifa_addr;
   1698  1.114    dyoung 			info.rti_info[RTAX_NETMASK] = ifa->ifa_netmask;
   1699  1.114    dyoung 			info.rti_info[RTAX_BRD] = ifa->ifa_dstaddr;
   1700  1.196       roy 			if ((error = iflist_addr(w, ifa, &info)) != 0)
   1701  1.186     ozaki 				goto release_exit;
   1702   1.10   mycroft 		}
   1703  1.115  christos 		info.rti_info[RTAX_IFA] = info.rti_info[RTAX_NETMASK] =
   1704  1.115  christos 		    info.rti_info[RTAX_BRD] = NULL;
   1705  1.186     ozaki 
   1706  1.186     ozaki 		s = pserialize_read_enter();
   1707  1.186     ozaki 		psref_release(&psref, &ifp->if_psref, ifnet_psref_class);
   1708   1.10   mycroft 	}
   1709  1.186     ozaki 	pserialize_read_exit(s);
   1710  1.190     ozaki 	curlwp_bindx(bound);
   1711  1.186     ozaki 
   1712   1.95    dyoung 	return 0;
   1713  1.186     ozaki 
   1714  1.186     ozaki release_exit:
   1715  1.186     ozaki 	psref_release(&psref, &ifp->if_psref, ifnet_psref_class);
   1716  1.190     ozaki 	curlwp_bindx(bound);
   1717  1.186     ozaki 	return error;
   1718    1.1       cgd }
   1719    1.1       cgd 
   1720   1.40    simonb static int
   1721   1.65    atatat sysctl_rtable(SYSCTLFN_ARGS)
   1722    1.1       cgd {
   1723   1.65    atatat 	void 	*where = oldp;
   1724   1.65    atatat 	size_t	*given = oldlenp;
   1725   1.10   mycroft 	int	i, s, error = EINVAL;
   1726   1.10   mycroft 	u_char  af;
   1727  1.120  christos 	struct	rt_walkarg w;
   1728    1.1       cgd 
   1729   1.66    atatat 	if (namelen == 1 && name[0] == CTL_QUERY)
   1730   1.95    dyoung 		return sysctl_query(SYSCTLFN_CALL(rnode));
   1731   1.66    atatat 
   1732  1.164      matt 	if (newp)
   1733   1.95    dyoung 		return EPERM;
   1734   1.10   mycroft 	if (namelen != 3)
   1735   1.95    dyoung 		return EINVAL;
   1736   1.10   mycroft 	af = name[0];
   1737   1.29    chopps 	w.w_tmemneeded = 0;
   1738   1.29    chopps 	w.w_tmemsize = 0;
   1739   1.29    chopps 	w.w_tmem = NULL;
   1740   1.29    chopps again:
   1741   1.29    chopps 	/* we may return here if a later [re]alloc of the t_mem buffer fails */
   1742   1.29    chopps 	if (w.w_tmemneeded) {
   1743  1.111  christos 		w.w_tmem = malloc(w.w_tmemneeded, M_RTABLE, M_WAITOK);
   1744   1.29    chopps 		w.w_tmemsize = w.w_tmemneeded;
   1745   1.29    chopps 		w.w_tmemneeded = 0;
   1746   1.29    chopps 	}
   1747   1.29    chopps 	w.w_op = name[1];
   1748   1.29    chopps 	w.w_arg = name[2];
   1749   1.10   mycroft 	w.w_given = *given;
   1750    1.1       cgd 	w.w_needed = 0 - w.w_given;
   1751   1.29    chopps 	w.w_where = where;
   1752    1.1       cgd 
   1753   1.14   mycroft 	s = splsoftnet();
   1754   1.10   mycroft 	switch (w.w_op) {
   1755   1.10   mycroft 
   1756   1.10   mycroft 	case NET_RT_DUMP:
   1757   1.10   mycroft 	case NET_RT_FLAGS:
   1758  1.179     ozaki #ifdef INET
   1759  1.178     ozaki 		/*
   1760  1.178     ozaki 		 * take care of llinfo entries, the caller must
   1761  1.178     ozaki 		 * specify an AF
   1762  1.178     ozaki 		 */
   1763  1.178     ozaki 		if (w.w_op == NET_RT_FLAGS &&
   1764  1.178     ozaki 		    (w.w_arg == 0 || w.w_arg & RTF_LLDATA)) {
   1765  1.178     ozaki 			if (af != 0)
   1766  1.178     ozaki 				error = lltable_sysctl_dumparp(af, &w);
   1767  1.178     ozaki 			else
   1768  1.178     ozaki 				error = EINVAL;
   1769  1.178     ozaki 			break;
   1770  1.178     ozaki 		}
   1771  1.179     ozaki #endif /* INET */
   1772  1.178     ozaki 
   1773   1.10   mycroft 		for (i = 1; i <= AF_MAX; i++)
   1774   1.94    dyoung 			if ((af == 0 || af == i) &&
   1775   1.94    dyoung 			    (error = rt_walktree(i, sysctl_dumpentry, &w)))
   1776   1.10   mycroft 				break;
   1777   1.10   mycroft 		break;
   1778   1.10   mycroft 
   1779   1.32    bouyer #ifdef COMPAT_14
   1780  1.196       roy 	case NET_RT_OOOIFLIST:
   1781  1.196       roy 		error = sysctl_iflist(af, &w, w.w_op);
   1782  1.196       roy 		break;
   1783  1.196       roy #endif
   1784  1.196       roy #ifdef COMPAT_50
   1785  1.120  christos 	case NET_RT_OOIFLIST:
   1786  1.120  christos 		error = sysctl_iflist(af, &w, w.w_op);
   1787  1.120  christos 		break;
   1788  1.120  christos #endif
   1789  1.196       roy #ifdef COMPAT_70
   1790   1.32    bouyer 	case NET_RT_OIFLIST:
   1791   1.32    bouyer 		error = sysctl_iflist(af, &w, w.w_op);
   1792   1.32    bouyer 		break;
   1793   1.32    bouyer #endif
   1794   1.10   mycroft 	case NET_RT_IFLIST:
   1795   1.32    bouyer 		error = sysctl_iflist(af, &w, w.w_op);
   1796  1.133      matt 		break;
   1797    1.1       cgd 	}
   1798   1.10   mycroft 	splx(s);
   1799   1.29    chopps 
   1800   1.29    chopps 	/* check to see if we couldn't allocate memory with NOWAIT */
   1801   1.29    chopps 	if (error == ENOBUFS && w.w_tmem == 0 && w.w_tmemneeded)
   1802   1.29    chopps 		goto again;
   1803   1.29    chopps 
   1804   1.10   mycroft 	if (w.w_tmem)
   1805   1.10   mycroft 		free(w.w_tmem, M_RTABLE);
   1806    1.1       cgd 	w.w_needed += w.w_given;
   1807   1.10   mycroft 	if (where) {
   1808   1.93  christos 		*given = (char *)w.w_where - (char *)where;
   1809   1.10   mycroft 		if (*given < w.w_needed)
   1810   1.95    dyoung 			return ENOMEM;
   1811   1.10   mycroft 	} else {
   1812   1.10   mycroft 		*given = (11 * w.w_needed) / 10;
   1813   1.10   mycroft 	}
   1814   1.95    dyoung 	return error;
   1815    1.1       cgd }
   1816    1.1       cgd 
   1817    1.1       cgd /*
   1818   1.99        ad  * Routing message software interrupt routine
   1819   1.99        ad  */
   1820   1.99        ad static void
   1821  1.133      matt COMPATNAME(route_intr)(void *cookie)
   1822   1.99        ad {
   1823  1.133      matt 	struct sockproto proto = { .sp_family = PF_XROUTE, };
   1824  1.133      matt 	struct route_info * const ri = &COMPATNAME(route_info);
   1825   1.99        ad 	struct mbuf *m;
   1826   1.99        ad 
   1827  1.101        ad 	mutex_enter(softnet_lock);
   1828  1.101        ad 	KERNEL_LOCK(1, NULL);
   1829  1.197     ozaki 	for (;;) {
   1830  1.197     ozaki 		IFQ_LOCK(&ri->ri_intrq);
   1831  1.133      matt 		IF_DEQUEUE(&ri->ri_intrq, m);
   1832  1.197     ozaki 		IFQ_UNLOCK(&ri->ri_intrq);
   1833   1.99        ad 		if (m == NULL)
   1834   1.99        ad 			break;
   1835  1.100      yamt 		proto.sp_protocol = M_GETCTX(m, uintptr_t);
   1836  1.133      matt 		raw_input(m, &proto, &ri->ri_src, &ri->ri_dst);
   1837   1.99        ad 	}
   1838  1.101        ad 	KERNEL_UNLOCK_ONE(NULL);
   1839  1.101        ad 	mutex_exit(softnet_lock);
   1840   1.99        ad }
   1841   1.99        ad 
   1842   1.99        ad /*
   1843   1.99        ad  * Enqueue a message to the software interrupt routine.
   1844   1.99        ad  */
   1845  1.120  christos void
   1846  1.133      matt COMPATNAME(route_enqueue)(struct mbuf *m, int family)
   1847   1.99        ad {
   1848  1.133      matt 	struct route_info * const ri = &COMPATNAME(route_info);
   1849  1.197     ozaki 	int wasempty;
   1850   1.99        ad 
   1851  1.197     ozaki 	IFQ_LOCK(&ri->ri_intrq);
   1852  1.133      matt 	if (IF_QFULL(&ri->ri_intrq)) {
   1853  1.133      matt 		IF_DROP(&ri->ri_intrq);
   1854  1.197     ozaki 		IFQ_UNLOCK(&ri->ri_intrq);
   1855   1.99        ad 		m_freem(m);
   1856   1.99        ad 	} else {
   1857  1.133      matt 		wasempty = IF_IS_EMPTY(&ri->ri_intrq);
   1858   1.99        ad 		M_SETCTX(m, (uintptr_t)family);
   1859  1.133      matt 		IF_ENQUEUE(&ri->ri_intrq, m);
   1860  1.197     ozaki 		IFQ_UNLOCK(&ri->ri_intrq);
   1861  1.197     ozaki 		if (wasempty) {
   1862  1.197     ozaki 			kpreempt_disable();
   1863  1.133      matt 			softint_schedule(ri->ri_sih);
   1864  1.197     ozaki 			kpreempt_enable();
   1865  1.197     ozaki 		}
   1866   1.99        ad 	}
   1867   1.99        ad }
   1868   1.99        ad 
   1869  1.133      matt static void
   1870  1.133      matt COMPATNAME(route_init)(void)
   1871   1.99        ad {
   1872  1.133      matt 	struct route_info * const ri = &COMPATNAME(route_info);
   1873  1.133      matt 
   1874  1.133      matt #ifndef COMPAT_RTSOCK
   1875  1.133      matt 	rt_init();
   1876  1.133      matt #endif
   1877   1.99        ad 
   1878  1.127     pooka 	sysctl_net_route_setup(NULL);
   1879  1.133      matt 	ri->ri_intrq.ifq_maxlen = ri->ri_maxqlen;
   1880  1.133      matt 	ri->ri_sih = softint_establish(SOFTINT_NET | SOFTINT_MPSAFE,
   1881  1.133      matt 	    COMPATNAME(route_intr), NULL);
   1882  1.197     ozaki 	IFQ_LOCK_INIT(&ri->ri_intrq);
   1883   1.99        ad }
   1884   1.99        ad 
   1885   1.99        ad /*
   1886    1.1       cgd  * Definitions of protocols supported in the ROUTE domain.
   1887    1.1       cgd  */
   1888  1.133      matt #ifndef COMPAT_RTSOCK
   1889  1.146     rmind PR_WRAP_USRREQS(route);
   1890  1.133      matt #else
   1891  1.146     rmind PR_WRAP_USRREQS(compat_50_route);
   1892  1.133      matt #endif
   1893    1.1       cgd 
   1894  1.144     rmind static const struct pr_usrreqs route_usrreqs = {
   1895  1.146     rmind 	.pr_attach	= COMPATNAME(route_attach_wrapper),
   1896  1.146     rmind 	.pr_detach	= COMPATNAME(route_detach_wrapper),
   1897  1.155       rtr 	.pr_accept	= COMPATNAME(route_accept_wrapper),
   1898  1.157       rtr 	.pr_bind	= COMPATNAME(route_bind_wrapper),
   1899  1.157       rtr 	.pr_listen	= COMPATNAME(route_listen_wrapper),
   1900  1.158       rtr 	.pr_connect	= COMPATNAME(route_connect_wrapper),
   1901  1.163       rtr 	.pr_connect2	= COMPATNAME(route_connect2_wrapper),
   1902  1.159       rtr 	.pr_disconnect	= COMPATNAME(route_disconnect_wrapper),
   1903  1.159       rtr 	.pr_shutdown	= COMPATNAME(route_shutdown_wrapper),
   1904  1.159       rtr 	.pr_abort	= COMPATNAME(route_abort_wrapper),
   1905  1.148       rtr 	.pr_ioctl	= COMPATNAME(route_ioctl_wrapper),
   1906  1.150       rtr 	.pr_stat	= COMPATNAME(route_stat_wrapper),
   1907  1.154       rtr 	.pr_peeraddr	= COMPATNAME(route_peeraddr_wrapper),
   1908  1.154       rtr 	.pr_sockaddr	= COMPATNAME(route_sockaddr_wrapper),
   1909  1.162       rtr 	.pr_rcvd	= COMPATNAME(route_rcvd_wrapper),
   1910  1.156       rtr 	.pr_recvoob	= COMPATNAME(route_recvoob_wrapper),
   1911  1.161       rtr 	.pr_send	= COMPATNAME(route_send_wrapper),
   1912  1.156       rtr 	.pr_sendoob	= COMPATNAME(route_sendoob_wrapper),
   1913  1.163       rtr 	.pr_purgeif	= COMPATNAME(route_purgeif_wrapper),
   1914  1.144     rmind };
   1915  1.144     rmind 
   1916  1.177  riastrad static const struct protosw COMPATNAME(route_protosw)[] = {
   1917   1.92      matt 	{
   1918   1.92      matt 		.pr_type = SOCK_RAW,
   1919  1.133      matt 		.pr_domain = &COMPATNAME(routedomain),
   1920   1.92      matt 		.pr_flags = PR_ATOMIC|PR_ADDR,
   1921   1.92      matt 		.pr_input = raw_input,
   1922   1.92      matt 		.pr_ctlinput = raw_ctlinput,
   1923  1.144     rmind 		.pr_usrreqs = &route_usrreqs,
   1924   1.92      matt 		.pr_init = raw_init,
   1925   1.92      matt 	},
   1926   1.92      matt };
   1927   1.69      matt 
   1928  1.133      matt struct domain COMPATNAME(routedomain) = {
   1929  1.133      matt 	.dom_family = PF_XROUTE,
   1930  1.133      matt 	.dom_name = DOMAINNAME,
   1931  1.133      matt 	.dom_init = COMPATNAME(route_init),
   1932  1.133      matt 	.dom_protosw = COMPATNAME(route_protosw),
   1933  1.177  riastrad 	.dom_protoswNPROTOSW =
   1934  1.177  riastrad 	    &COMPATNAME(route_protosw)[__arraycount(COMPATNAME(route_protosw))],
   1935    1.1       cgd };
   1936    1.1       cgd 
   1937  1.127     pooka static void
   1938  1.127     pooka sysctl_net_route_setup(struct sysctllog **clog)
   1939   1.65    atatat {
   1940   1.85      elad 	const struct sysctlnode *rnode = NULL;
   1941   1.85      elad 
   1942   1.85      elad 	sysctl_createv(clog, 0, NULL, &rnode,
   1943   1.67    atatat 		       CTLFLAG_PERMANENT,
   1944  1.133      matt 		       CTLTYPE_NODE, DOMAINNAME,
   1945   1.71    atatat 		       SYSCTL_DESCR("PF_ROUTE information"),
   1946   1.65    atatat 		       NULL, 0, NULL, 0,
   1947  1.133      matt 		       CTL_NET, PF_XROUTE, CTL_EOL);
   1948  1.133      matt 
   1949   1.67    atatat 	sysctl_createv(clog, 0, NULL, NULL,
   1950   1.67    atatat 		       CTLFLAG_PERMANENT,
   1951   1.71    atatat 		       CTLTYPE_NODE, "rtable",
   1952   1.71    atatat 		       SYSCTL_DESCR("Routing table information"),
   1953   1.65    atatat 		       sysctl_rtable, 0, NULL, 0,
   1954  1.133      matt 		       CTL_NET, PF_XROUTE, 0 /* any protocol */, CTL_EOL);
   1955  1.133      matt 
   1956   1.85      elad 	sysctl_createv(clog, 0, &rnode, NULL,
   1957   1.85      elad 		       CTLFLAG_PERMANENT,
   1958   1.85      elad 		       CTLTYPE_STRUCT, "stats",
   1959   1.85      elad 		       SYSCTL_DESCR("Routing statistics"),
   1960   1.85      elad 		       NULL, 0, &rtstat, sizeof(rtstat),
   1961   1.85      elad 		       CTL_CREATE, CTL_EOL);
   1962   1.65    atatat }
   1963