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ip_mroute.c revision 1.87
      1  1.87      manu /*	$NetBSD: ip_mroute.c,v 1.87 2005/01/15 06:50:47 manu Exp $	*/
      2  1.61    itojun 
      3  1.61    itojun /*
      4  1.61    itojun  * Copyright (c) 1992, 1993
      5  1.61    itojun  *      The Regents of the University of California.  All rights reserved.
      6  1.61    itojun  *
      7  1.61    itojun  * This code is derived from software contributed to Berkeley by
      8  1.61    itojun  * Stephen Deering of Stanford University.
      9  1.61    itojun  *
     10  1.61    itojun  * Redistribution and use in source and binary forms, with or without
     11  1.61    itojun  * modification, are permitted provided that the following conditions
     12  1.61    itojun  * are met:
     13  1.61    itojun  * 1. Redistributions of source code must retain the above copyright
     14  1.61    itojun  *    notice, this list of conditions and the following disclaimer.
     15  1.61    itojun  * 2. Redistributions in binary form must reproduce the above copyright
     16  1.61    itojun  *    notice, this list of conditions and the following disclaimer in the
     17  1.61    itojun  *    documentation and/or other materials provided with the distribution.
     18  1.76       agc  * 3. Neither the name of the University nor the names of its contributors
     19  1.76       agc  *    may be used to endorse or promote products derived from this software
     20  1.76       agc  *    without specific prior written permission.
     21  1.76       agc  *
     22  1.76       agc  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     23  1.76       agc  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     24  1.76       agc  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     25  1.76       agc  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     26  1.76       agc  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     27  1.76       agc  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     28  1.76       agc  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     29  1.76       agc  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     30  1.76       agc  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     31  1.76       agc  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     32  1.76       agc  * SUCH DAMAGE.
     33  1.76       agc  *
     34  1.76       agc  *      @(#)ip_mroute.c 8.2 (Berkeley) 11/15/93
     35  1.76       agc  */
     36  1.76       agc 
     37  1.76       agc /*
     38  1.76       agc  * Copyright (c) 1989 Stephen Deering
     39  1.76       agc  *
     40  1.76       agc  * This code is derived from software contributed to Berkeley by
     41  1.76       agc  * Stephen Deering of Stanford University.
     42  1.76       agc  *
     43  1.76       agc  * Redistribution and use in source and binary forms, with or without
     44  1.76       agc  * modification, are permitted provided that the following conditions
     45  1.76       agc  * are met:
     46  1.76       agc  * 1. Redistributions of source code must retain the above copyright
     47  1.76       agc  *    notice, this list of conditions and the following disclaimer.
     48  1.76       agc  * 2. Redistributions in binary form must reproduce the above copyright
     49  1.76       agc  *    notice, this list of conditions and the following disclaimer in the
     50  1.76       agc  *    documentation and/or other materials provided with the distribution.
     51  1.61    itojun  * 3. All advertising materials mentioning features or use of this software
     52  1.61    itojun  *    must display the following acknowledgement:
     53  1.61    itojun  *      This product includes software developed by the University of
     54  1.61    itojun  *      California, Berkeley and its contributors.
     55  1.61    itojun  * 4. Neither the name of the University nor the names of its contributors
     56  1.61    itojun  *    may be used to endorse or promote products derived from this software
     57  1.61    itojun  *    without specific prior written permission.
     58  1.61    itojun  *
     59  1.61    itojun  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     60  1.61    itojun  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     61  1.61    itojun  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     62  1.61    itojun  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     63  1.61    itojun  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     64  1.61    itojun  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     65  1.61    itojun  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     66  1.61    itojun  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     67  1.61    itojun  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     68  1.61    itojun  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     69  1.61    itojun  * SUCH DAMAGE.
     70  1.61    itojun  *
     71  1.61    itojun  *      @(#)ip_mroute.c 8.2 (Berkeley) 11/15/93
     72  1.61    itojun  */
     73  1.13       cgd 
     74   1.1   hpeyerl /*
     75  1.15   mycroft  * IP multicast forwarding procedures
     76   1.1   hpeyerl  *
     77   1.1   hpeyerl  * Written by David Waitzman, BBN Labs, August 1988.
     78   1.1   hpeyerl  * Modified by Steve Deering, Stanford, February 1989.
     79  1.15   mycroft  * Modified by Mark J. Steiglitz, Stanford, May, 1991
     80  1.15   mycroft  * Modified by Van Jacobson, LBL, January 1993
     81  1.15   mycroft  * Modified by Ajit Thyagarajan, PARC, August 1993
     82  1.15   mycroft  * Modified by Bill Fenner, PARC, April 1994
     83  1.15   mycroft  * Modified by Charles M. Hannum, NetBSD, May 1995.
     84  1.86      manu  * Modified by Ahmed Helmy, SGI, June 1996
     85  1.86      manu  * Modified by George Edmond Eddy (Rusty), ISI, February 1998
     86  1.86      manu  * Modified by Pavlin Radoslavov, USC/ISI, May 1998, August 1999, October 2000
     87  1.86      manu  * Modified by Hitoshi Asaeda, WIDE, August 2000
     88  1.86      manu  * Modified by Pavlin Radoslavov, ICSI, October 2002
     89   1.1   hpeyerl  *
     90  1.15   mycroft  * MROUTING Revision: 1.2
     91  1.86      manu  * and PIM-SMv2 and PIM-DM support, advanced API support,
     92  1.86      manu  * bandwidth metering and signaling
     93   1.1   hpeyerl  */
     94  1.58     lukem 
     95  1.58     lukem #include <sys/cdefs.h>
     96  1.87      manu __KERNEL_RCSID(0, "$NetBSD: ip_mroute.c,v 1.87 2005/01/15 06:50:47 manu Exp $");
     97  1.44   thorpej 
     98  1.82  jonathan #include "opt_inet.h"
     99  1.44   thorpej #include "opt_ipsec.h"
    100  1.86      manu #include "opt_pim.h"
    101  1.86      manu 
    102  1.86      manu #ifdef PIM
    103  1.86      manu #define _PIM_VT 1
    104  1.86      manu #endif
    105   1.1   hpeyerl 
    106   1.1   hpeyerl #include <sys/param.h>
    107  1.15   mycroft #include <sys/systm.h>
    108  1.47   thorpej #include <sys/callout.h>
    109   1.1   hpeyerl #include <sys/mbuf.h>
    110   1.1   hpeyerl #include <sys/socket.h>
    111   1.1   hpeyerl #include <sys/socketvar.h>
    112  1.15   mycroft #include <sys/protosw.h>
    113  1.15   mycroft #include <sys/errno.h>
    114   1.1   hpeyerl #include <sys/time.h>
    115  1.15   mycroft #include <sys/kernel.h>
    116  1.15   mycroft #include <sys/ioctl.h>
    117  1.15   mycroft #include <sys/syslog.h>
    118  1.86      manu 
    119   1.1   hpeyerl #include <net/if.h>
    120   1.1   hpeyerl #include <net/route.h>
    121   1.1   hpeyerl #include <net/raw_cb.h>
    122  1.86      manu 
    123   1.1   hpeyerl #include <netinet/in.h>
    124  1.15   mycroft #include <netinet/in_var.h>
    125   1.1   hpeyerl #include <netinet/in_systm.h>
    126   1.1   hpeyerl #include <netinet/ip.h>
    127  1.15   mycroft #include <netinet/ip_var.h>
    128   1.1   hpeyerl #include <netinet/in_pcb.h>
    129  1.15   mycroft #include <netinet/udp.h>
    130   1.1   hpeyerl #include <netinet/igmp.h>
    131   1.1   hpeyerl #include <netinet/igmp_var.h>
    132   1.1   hpeyerl #include <netinet/ip_mroute.h>
    133  1.86      manu #ifdef PIM
    134  1.86      manu #include <netinet/pim.h>
    135  1.86      manu #include <netinet/pim_var.h>
    136  1.86      manu #endif
    137  1.54    itojun #include <netinet/ip_encap.h>
    138  1.64      fair 
    139  1.64      fair #ifdef IPSEC
    140  1.64      fair #include <netinet6/ipsec.h>
    141  1.64      fair #include <netkey/key.h>
    142  1.64      fair #endif
    143  1.37       hwr 
    144  1.77  jonathan #ifdef FAST_IPSEC
    145  1.77  jonathan #include <netipsec/ipsec.h>
    146  1.77  jonathan #include <netipsec/key.h>
    147  1.77  jonathan #endif
    148  1.77  jonathan 
    149  1.25  christos #include <machine/stdarg.h>
    150  1.25  christos 
    151  1.15   mycroft #define IP_MULTICASTOPTS 0
    152  1.86      manu #define	M_PULLUP(m, len)						 \
    153  1.86      manu 	do {								 \
    154  1.15   mycroft 		if ((m) && ((m)->m_flags & M_EXT || (m)->m_len < (len))) \
    155  1.86      manu 			(m) = m_pullup((m), (len));			 \
    156  1.63     perry 	} while (/*CONSTCOND*/ 0)
    157   1.1   hpeyerl 
    158   1.1   hpeyerl /*
    159   1.1   hpeyerl  * Globals.  All but ip_mrouter and ip_mrtproto could be static,
    160   1.1   hpeyerl  * except for netstat or debugging purposes.
    161   1.1   hpeyerl  */
    162  1.86      manu struct socket  *ip_mrouter  = NULL;
    163  1.15   mycroft int		ip_mrtproto = IGMP_DVMRP;    /* for netstat only */
    164  1.15   mycroft 
    165  1.15   mycroft #define NO_RTE_FOUND 	0x1
    166  1.15   mycroft #define RTE_FOUND	0x2
    167   1.1   hpeyerl 
    168  1.86      manu #define	MFCHASH(a, g)							\
    169  1.86      manu 	((((a).s_addr >> 20) ^ ((a).s_addr >> 10) ^ (a).s_addr ^	\
    170  1.29   mycroft 	  ((g).s_addr >> 20) ^ ((g).s_addr >> 10) ^ (g).s_addr) & mfchash)
    171  1.15   mycroft LIST_HEAD(mfchashhdr, mfc) *mfchashtbl;
    172  1.15   mycroft u_long	mfchash;
    173  1.15   mycroft 
    174  1.15   mycroft u_char		nexpire[MFCTBLSIZ];
    175  1.15   mycroft struct vif	viftable[MAXVIFS];
    176  1.15   mycroft struct mrtstat	mrtstat;
    177  1.15   mycroft u_int		mrtdebug = 0;	  /* debug level 	*/
    178  1.15   mycroft #define		DEBUG_MFC	0x02
    179  1.15   mycroft #define		DEBUG_FORWARD	0x04
    180  1.15   mycroft #define		DEBUG_EXPIRE	0x08
    181  1.15   mycroft #define		DEBUG_XMIT	0x10
    182  1.86      manu #define		DEBUG_PIM	0x20
    183  1.86      manu 
    184  1.86      manu #define		VIFI_INVALID	((vifi_t) -1)
    185  1.86      manu 
    186  1.15   mycroft u_int       	tbfdebug = 0;     /* tbf debug level 	*/
    187  1.15   mycroft #ifdef RSVP_ISI
    188  1.15   mycroft u_int		rsvpdebug = 0;	  /* rsvp debug level   */
    189  1.15   mycroft extern struct socket *ip_rsvpd;
    190  1.15   mycroft extern int rsvp_on;
    191  1.15   mycroft #endif /* RSVP_ISI */
    192  1.15   mycroft 
    193  1.54    itojun /* vif attachment using sys/netinet/ip_encap.c */
    194  1.54    itojun static void vif_input __P((struct mbuf *, ...));
    195  1.54    itojun static int vif_encapcheck __P((const struct mbuf *, int, int, void *));
    196  1.84      matt 
    197  1.84      matt static const struct protosw vif_protosw =
    198  1.54    itojun { SOCK_RAW,	&inetdomain,	IPPROTO_IPV4,	PR_ATOMIC|PR_ADDR,
    199  1.54    itojun   vif_input,	rip_output,	0,		rip_ctloutput,
    200  1.54    itojun   rip_usrreq,
    201  1.54    itojun   0,            0,              0,              0,
    202  1.54    itojun };
    203  1.54    itojun 
    204  1.15   mycroft #define		EXPIRE_TIMEOUT	(hz / 4)	/* 4x / second */
    205  1.15   mycroft #define		UPCALL_EXPIRE	6		/* number of timeouts */
    206  1.15   mycroft 
    207  1.15   mycroft /*
    208  1.15   mycroft  * Define the token bucket filter structures
    209  1.15   mycroft  */
    210  1.15   mycroft 
    211  1.31   mycroft #define		TBF_REPROCESS	(hz / 100)	/* 100x / second */
    212  1.15   mycroft 
    213  1.25  christos static int get_sg_cnt __P((struct sioc_sg_req *));
    214  1.25  christos static int get_vif_cnt __P((struct sioc_vif_req *));
    215  1.25  christos static int ip_mrouter_init __P((struct socket *, struct mbuf *));
    216  1.25  christos static int get_version __P((struct mbuf *));
    217  1.25  christos static int set_assert __P((struct mbuf *));
    218  1.25  christos static int get_assert __P((struct mbuf *));
    219  1.25  christos static int add_vif __P((struct mbuf *));
    220  1.25  christos static int del_vif __P((struct mbuf *));
    221  1.86      manu static void update_mfc_params __P((struct mfc *, struct mfcctl2 *));
    222  1.86      manu static void init_mfc_params __P((struct mfc *, struct mfcctl2 *));
    223  1.25  christos static void expire_mfc __P((struct mfc *));
    224  1.25  christos static int add_mfc __P((struct mbuf *));
    225  1.25  christos #ifdef UPCALL_TIMING
    226  1.25  christos static void collate __P((struct timeval *));
    227  1.25  christos #endif
    228  1.25  christos static int del_mfc __P((struct mbuf *));
    229  1.86      manu static int set_api_config __P((struct mbuf *)); /* chose API capabilities */
    230  1.86      manu static int get_api_support __P((struct mbuf *));
    231  1.86      manu static int get_api_config __P((struct mbuf *));
    232  1.25  christos static int socket_send __P((struct socket *, struct mbuf *,
    233  1.25  christos 			    struct sockaddr_in *));
    234  1.25  christos static void expire_upcalls __P((void *));
    235  1.25  christos #ifdef RSVP_ISI
    236  1.25  christos static int ip_mdq __P((struct mbuf *, struct ifnet *, struct mfc *, vifi_t));
    237  1.25  christos #else
    238  1.25  christos static int ip_mdq __P((struct mbuf *, struct ifnet *, struct mfc *));
    239  1.25  christos #endif
    240  1.25  christos static void phyint_send __P((struct ip *, struct vif *, struct mbuf *));
    241  1.25  christos static void encap_send __P((struct ip *, struct vif *, struct mbuf *));
    242  1.25  christos static void tbf_control __P((struct vif *, struct mbuf *, struct ip *,
    243  1.25  christos 			     u_int32_t));
    244  1.31   mycroft static void tbf_queue __P((struct vif *, struct mbuf *));
    245  1.25  christos static void tbf_process_q __P((struct vif *));
    246  1.25  christos static void tbf_reprocess_q __P((void *));
    247  1.25  christos static int tbf_dq_sel __P((struct vif *, struct ip *));
    248  1.25  christos static void tbf_send_packet __P((struct vif *, struct mbuf *));
    249  1.25  christos static void tbf_update_tokens __P((struct vif *));
    250  1.25  christos static int priority __P((struct vif *, struct ip *));
    251   1.1   hpeyerl 
    252   1.1   hpeyerl /*
    253  1.86      manu  * Bandwidth monitoring
    254  1.86      manu  */
    255  1.86      manu static void free_bw_list __P((struct bw_meter *));
    256  1.86      manu static int add_bw_upcall __P((struct mbuf *));
    257  1.86      manu static int del_bw_upcall __P((struct mbuf *));
    258  1.86      manu static void bw_meter_receive_packet __P((struct bw_meter *, int , struct timeval *));
    259  1.86      manu static void bw_meter_prepare_upcall __P((struct bw_meter *, struct timeval *));
    260  1.86      manu static void bw_upcalls_send __P((void));
    261  1.86      manu static void schedule_bw_meter __P((struct bw_meter *, struct timeval *));
    262  1.86      manu static void unschedule_bw_meter __P((struct bw_meter *));
    263  1.86      manu static void bw_meter_process __P((void));
    264  1.86      manu static void expire_bw_upcalls_send __P((void *));
    265  1.86      manu static void expire_bw_meter_process __P((void *));
    266  1.86      manu 
    267  1.86      manu #ifdef PIM
    268  1.86      manu static int pim_register_send __P((struct ip *, struct vif *,
    269  1.86      manu 		struct mbuf *, struct mfc *));
    270  1.86      manu static int pim_register_send_rp __P((struct ip *, struct vif *,
    271  1.86      manu 		struct mbuf *, struct mfc *));
    272  1.86      manu static int pim_register_send_upcall __P((struct ip *, struct vif *,
    273  1.86      manu 		struct mbuf *, struct mfc *));
    274  1.86      manu static struct mbuf *pim_register_prepare __P((struct ip *, struct mbuf *));
    275  1.86      manu #endif
    276  1.86      manu 
    277  1.86      manu /*
    278  1.12    brezak  * 'Interfaces' associated with decapsulator (so we can tell
    279  1.12    brezak  * packets that went through it from ones that get reflected
    280  1.12    brezak  * by a broken gateway).  These interfaces are never linked into
    281  1.12    brezak  * the system ifnet list & no routes point to them.  I.e., packets
    282  1.12    brezak  * can't be sent this way.  They only exist as a placeholder for
    283  1.12    brezak  * multicast source verification.
    284  1.12    brezak  */
    285  1.17   mycroft #if 0
    286  1.12    brezak struct ifnet multicast_decap_if[MAXVIFS];
    287  1.17   mycroft #endif
    288  1.12    brezak 
    289  1.17   mycroft #define	ENCAP_TTL	64
    290  1.17   mycroft #define	ENCAP_PROTO	IPPROTO_IPIP	/* 4 */
    291  1.12    brezak 
    292  1.12    brezak /* prototype IP hdr for encapsulated packets */
    293  1.12    brezak struct ip multicast_encap_iphdr = {
    294  1.15   mycroft #if BYTE_ORDER == LITTLE_ENDIAN
    295  1.12    brezak 	sizeof(struct ip) >> 2, IPVERSION,
    296  1.12    brezak #else
    297  1.12    brezak 	IPVERSION, sizeof(struct ip) >> 2,
    298  1.12    brezak #endif
    299  1.12    brezak 	0,				/* tos */
    300  1.12    brezak 	sizeof(struct ip),		/* total length */
    301  1.12    brezak 	0,				/* id */
    302  1.12    brezak 	0,				/* frag offset */
    303  1.60    itojun 	ENCAP_TTL, ENCAP_PROTO,
    304  1.12    brezak 	0,				/* checksum */
    305  1.12    brezak };
    306  1.12    brezak 
    307  1.12    brezak /*
    308  1.86      manu  * Bandwidth meter variables and constants
    309  1.86      manu  */
    310  1.86      manu 
    311  1.86      manu /*
    312  1.86      manu  * Pending timeouts are stored in a hash table, the key being the
    313  1.86      manu  * expiration time. Periodically, the entries are analysed and processed.
    314  1.86      manu  */
    315  1.86      manu #define BW_METER_BUCKETS	1024
    316  1.86      manu static struct bw_meter *bw_meter_timers[BW_METER_BUCKETS];
    317  1.86      manu struct callout bw_meter_ch;
    318  1.86      manu #define BW_METER_PERIOD (hz)		/* periodical handling of bw meters */
    319  1.86      manu 
    320  1.86      manu /*
    321  1.86      manu  * Pending upcalls are stored in a vector which is flushed when
    322  1.86      manu  * full, or periodically
    323  1.86      manu  */
    324  1.86      manu static struct bw_upcall	bw_upcalls[BW_UPCALLS_MAX];
    325  1.86      manu static u_int	bw_upcalls_n; /* # of pending upcalls */
    326  1.86      manu struct callout	bw_upcalls_ch;
    327  1.86      manu #define BW_UPCALLS_PERIOD (hz)		/* periodical flush of bw upcalls */
    328  1.86      manu 
    329  1.86      manu #ifdef PIM
    330  1.86      manu struct pimstat pimstat;
    331  1.86      manu 
    332  1.86      manu /*
    333  1.86      manu  * Note: the PIM Register encapsulation adds the following in front of a
    334  1.86      manu  * data packet:
    335  1.86      manu  *
    336  1.86      manu  * struct pim_encap_hdr {
    337  1.86      manu  *    struct ip ip;
    338  1.86      manu  *    struct pim_encap_pimhdr  pim;
    339  1.86      manu  * }
    340  1.86      manu  *
    341  1.86      manu  */
    342  1.86      manu 
    343  1.86      manu struct pim_encap_pimhdr {
    344  1.86      manu 	struct pim pim;
    345  1.86      manu 	uint32_t   flags;
    346  1.86      manu };
    347  1.86      manu 
    348  1.86      manu static struct ip pim_encap_iphdr = {
    349  1.86      manu #if BYTE_ORDER == LITTLE_ENDIAN
    350  1.86      manu 	sizeof(struct ip) >> 2,
    351  1.86      manu 	IPVERSION,
    352  1.86      manu #else
    353  1.86      manu 	IPVERSION,
    354  1.86      manu 	sizeof(struct ip) >> 2,
    355  1.86      manu #endif
    356  1.86      manu 	0,			/* tos */
    357  1.86      manu 	sizeof(struct ip),	/* total length */
    358  1.86      manu 	0,			/* id */
    359  1.86      manu 	0,			/* frag offset */
    360  1.86      manu 	ENCAP_TTL,
    361  1.86      manu 	IPPROTO_PIM,
    362  1.86      manu 	0,			/* checksum */
    363  1.86      manu };
    364  1.86      manu 
    365  1.86      manu static struct pim_encap_pimhdr pim_encap_pimhdr = {
    366  1.86      manu     {
    367  1.86      manu 	PIM_MAKE_VT(PIM_VERSION, PIM_REGISTER), /* PIM vers and message type */
    368  1.86      manu 	0,			/* reserved */
    369  1.86      manu 	0,			/* checksum */
    370  1.86      manu     },
    371  1.86      manu     0				/* flags */
    372  1.86      manu };
    373  1.86      manu 
    374  1.86      manu static struct ifnet multicast_register_if;
    375  1.86      manu static vifi_t reg_vif_num = VIFI_INVALID;
    376  1.86      manu #endif /* PIM */
    377  1.86      manu 
    378  1.86      manu 
    379  1.86      manu /*
    380   1.1   hpeyerl  * Private variables.
    381   1.1   hpeyerl  */
    382  1.15   mycroft static vifi_t	   numvifs = 0;
    383  1.12    brezak 
    384  1.47   thorpej static struct callout expire_upcalls_ch;
    385  1.47   thorpej 
    386  1.12    brezak /*
    387  1.59  sommerfe  * one-back cache used by vif_encapcheck to locate a tunnel's vif
    388  1.12    brezak  * given a datagram's src ip address.
    389  1.12    brezak  */
    390  1.29   mycroft static struct in_addr last_encap_src;
    391  1.12    brezak static struct vif *last_encap_vif;
    392  1.12    brezak 
    393  1.12    brezak /*
    394  1.15   mycroft  * whether or not special PIM assert processing is enabled.
    395  1.15   mycroft  */
    396  1.15   mycroft static int pim_assert;
    397  1.15   mycroft /*
    398  1.15   mycroft  * Rate limit for assert notification messages, in usec
    399  1.12    brezak  */
    400  1.15   mycroft #define ASSERT_MSG_TIME		3000000
    401  1.12    brezak 
    402  1.15   mycroft /*
    403  1.86      manu  * Kernel multicast routing API capabilities and setup.
    404  1.86      manu  * If more API capabilities are added to the kernel, they should be
    405  1.86      manu  * recorded in `mrt_api_support'.
    406  1.86      manu  */
    407  1.86      manu static const u_int32_t mrt_api_support = (MRT_MFC_FLAGS_DISABLE_WRONGVIF |
    408  1.86      manu 					  MRT_MFC_FLAGS_BORDER_VIF |
    409  1.86      manu 					  MRT_MFC_RP |
    410  1.86      manu 					  MRT_MFC_BW_UPCALL);
    411  1.86      manu static u_int32_t mrt_api_config = 0;
    412  1.86      manu 
    413  1.86      manu /*
    414  1.15   mycroft  * Find a route for a given origin IP address and Multicast group address
    415  1.15   mycroft  * Type of service parameter to be added in the future!!!
    416  1.86      manu  * Statistics are updated by the caller if needed
    417  1.86      manu  * (mrtstat.mrts_mfc_lookups and mrtstat.mrts_mfc_misses)
    418  1.15   mycroft  */
    419  1.86      manu static struct mfc *
    420  1.86      manu mfc_find(struct in_addr *o, struct in_addr *g)
    421  1.86      manu {
    422  1.86      manu 	struct mfc *rt;
    423  1.86      manu 
    424  1.86      manu 	LIST_FOREACH(rt, &mfchashtbl[MFCHASH(*o, *g)], mfc_hash) {
    425  1.86      manu 		if (in_hosteq(rt->mfc_origin, *o) &&
    426  1.86      manu 		    in_hosteq(rt->mfc_mcastgrp, *g) &&
    427  1.86      manu 		    (rt->mfc_stall == NULL))
    428  1.86      manu 			break;
    429  1.86      manu 	}
    430  1.15   mycroft 
    431  1.86      manu 	return (rt);
    432  1.86      manu }
    433  1.12    brezak 
    434  1.12    brezak /*
    435  1.15   mycroft  * Macros to compute elapsed time efficiently
    436  1.15   mycroft  * Borrowed from Van Jacobson's scheduling code
    437  1.12    brezak  */
    438  1.86      manu #define TV_DELTA(a, b, delta) do {					\
    439  1.86      manu 	int xxs;							\
    440  1.86      manu 	delta = (a).tv_usec - (b).tv_usec;				\
    441  1.86      manu 	xxs = (a).tv_sec - (b).tv_sec;					\
    442  1.86      manu 	switch (xxs) {							\
    443  1.86      manu 	case 2:								\
    444  1.86      manu 		delta += 1000000;					\
    445  1.86      manu 		/* fall through */					\
    446  1.86      manu 	case 1:								\
    447  1.86      manu 		delta += 1000000;					\
    448  1.86      manu 		/* fall through */					\
    449  1.86      manu 	case 0:								\
    450  1.86      manu 		break;							\
    451  1.86      manu 	default:							\
    452  1.86      manu 		delta += (1000000 * xxs);				\
    453  1.86      manu 		break;							\
    454  1.86      manu 	}								\
    455  1.69    itojun } while (/*CONSTCOND*/ 0)
    456  1.15   mycroft 
    457  1.15   mycroft #ifdef UPCALL_TIMING
    458  1.15   mycroft u_int32_t upcall_data[51];
    459  1.15   mycroft #endif /* UPCALL_TIMING */
    460  1.15   mycroft 
    461  1.12    brezak /*
    462  1.15   mycroft  * Handle MRT setsockopt commands to modify the multicast routing tables.
    463  1.12    brezak  */
    464  1.15   mycroft int
    465  1.28   mycroft ip_mrouter_set(so, optname, m)
    466  1.15   mycroft 	struct socket *so;
    467  1.28   mycroft 	int optname;
    468  1.15   mycroft 	struct mbuf **m;
    469  1.15   mycroft {
    470  1.15   mycroft 	int error;
    471  1.15   mycroft 
    472  1.28   mycroft 	if (optname != MRT_INIT && so != ip_mrouter)
    473  1.28   mycroft 		error = ENOPROTOOPT;
    474  1.15   mycroft 	else
    475  1.28   mycroft 		switch (optname) {
    476  1.15   mycroft 		case MRT_INIT:
    477  1.15   mycroft 			error = ip_mrouter_init(so, *m);
    478  1.15   mycroft 			break;
    479  1.15   mycroft 		case MRT_DONE:
    480  1.15   mycroft 			error = ip_mrouter_done();
    481  1.15   mycroft 			break;
    482  1.15   mycroft 		case MRT_ADD_VIF:
    483  1.15   mycroft 			error = add_vif(*m);
    484  1.15   mycroft 			break;
    485  1.15   mycroft 		case MRT_DEL_VIF:
    486  1.15   mycroft 			error = del_vif(*m);
    487  1.15   mycroft 			break;
    488  1.15   mycroft 		case MRT_ADD_MFC:
    489  1.15   mycroft 			error = add_mfc(*m);
    490  1.15   mycroft 			break;
    491  1.15   mycroft 		case MRT_DEL_MFC:
    492  1.15   mycroft 			error = del_mfc(*m);
    493  1.15   mycroft 			break;
    494  1.15   mycroft 		case MRT_ASSERT:
    495  1.15   mycroft 			error = set_assert(*m);
    496  1.15   mycroft 			break;
    497  1.86      manu 		case MRT_API_CONFIG:
    498  1.86      manu 			error = set_api_config(*m);
    499  1.86      manu 			break;
    500  1.86      manu 		case MRT_ADD_BW_UPCALL:
    501  1.86      manu 			error = add_bw_upcall(*m);
    502  1.86      manu 			break;
    503  1.86      manu 		case MRT_DEL_BW_UPCALL:
    504  1.86      manu 			error = del_bw_upcall(*m);
    505  1.86      manu 			break;
    506  1.15   mycroft 		default:
    507  1.28   mycroft 			error = ENOPROTOOPT;
    508  1.15   mycroft 			break;
    509  1.15   mycroft 		}
    510  1.15   mycroft 
    511  1.15   mycroft 	if (*m)
    512  1.15   mycroft 		m_free(*m);
    513  1.15   mycroft 	return (error);
    514  1.12    brezak }
    515  1.12    brezak 
    516  1.15   mycroft /*
    517  1.15   mycroft  * Handle MRT getsockopt commands
    518  1.15   mycroft  */
    519  1.15   mycroft int
    520  1.28   mycroft ip_mrouter_get(so, optname, m)
    521  1.15   mycroft 	struct socket *so;
    522  1.28   mycroft 	int optname;
    523  1.15   mycroft 	struct mbuf **m;
    524  1.12    brezak {
    525  1.15   mycroft 	int error;
    526  1.12    brezak 
    527  1.15   mycroft 	if (so != ip_mrouter)
    528  1.28   mycroft 		error = ENOPROTOOPT;
    529  1.15   mycroft 	else {
    530  1.28   mycroft 		*m = m_get(M_WAIT, MT_SOOPTS);
    531  1.66      matt 		MCLAIM(*m, so->so_mowner);
    532  1.12    brezak 
    533  1.28   mycroft 		switch (optname) {
    534  1.15   mycroft 		case MRT_VERSION:
    535  1.28   mycroft 			error = get_version(*m);
    536  1.15   mycroft 			break;
    537  1.15   mycroft 		case MRT_ASSERT:
    538  1.28   mycroft 			error = get_assert(*m);
    539  1.15   mycroft 			break;
    540  1.86      manu 		case MRT_API_SUPPORT:
    541  1.86      manu 			error = get_api_support(*m);
    542  1.86      manu 			break;
    543  1.86      manu 		case MRT_API_CONFIG:
    544  1.86      manu 			error = get_api_config(*m);
    545  1.86      manu 			break;
    546  1.15   mycroft 		default:
    547  1.28   mycroft 			error = ENOPROTOOPT;
    548  1.15   mycroft 			break;
    549  1.15   mycroft 		}
    550  1.15   mycroft 
    551  1.15   mycroft 		if (error)
    552  1.28   mycroft 			m_free(*m);
    553  1.12    brezak 	}
    554  1.15   mycroft 
    555  1.15   mycroft 	return (error);
    556  1.12    brezak }
    557  1.12    brezak 
    558   1.1   hpeyerl /*
    559  1.15   mycroft  * Handle ioctl commands to obtain information from the cache
    560   1.1   hpeyerl  */
    561   1.1   hpeyerl int
    562  1.28   mycroft mrt_ioctl(so, cmd, data)
    563  1.28   mycroft 	struct socket *so;
    564  1.15   mycroft 	u_long cmd;
    565  1.15   mycroft 	caddr_t data;
    566   1.1   hpeyerl {
    567  1.15   mycroft 	int error;
    568   1.1   hpeyerl 
    569  1.28   mycroft 	if (so != ip_mrouter)
    570  1.15   mycroft 		error = EINVAL;
    571  1.28   mycroft 	else
    572  1.28   mycroft 		switch (cmd) {
    573  1.28   mycroft 		case SIOCGETVIFCNT:
    574  1.28   mycroft 			error = get_vif_cnt((struct sioc_vif_req *)data);
    575  1.28   mycroft 			break;
    576  1.28   mycroft 		case SIOCGETSGCNT:
    577  1.28   mycroft 			error = get_sg_cnt((struct sioc_sg_req *)data);
    578  1.28   mycroft 			break;
    579  1.28   mycroft 		default:
    580  1.28   mycroft 			error = EINVAL;
    581  1.28   mycroft 			break;
    582  1.28   mycroft 		}
    583   1.1   hpeyerl 
    584  1.15   mycroft 	return (error);
    585  1.15   mycroft }
    586   1.1   hpeyerl 
    587  1.15   mycroft /*
    588  1.15   mycroft  * returns the packet, byte, rpf-failure count for the source group provided
    589  1.15   mycroft  */
    590  1.15   mycroft static int
    591  1.15   mycroft get_sg_cnt(req)
    592  1.48  augustss 	struct sioc_sg_req *req;
    593  1.15   mycroft {
    594  1.86      manu 	int s;
    595  1.48  augustss 	struct mfc *rt;
    596   1.1   hpeyerl 
    597  1.24   mycroft 	s = splsoftnet();
    598  1.86      manu 	rt = mfc_find(&req->src, &req->grp);
    599  1.86      manu 	if (rt == NULL) {
    600  1.86      manu 		splx(s);
    601  1.86      manu 		req->pktcnt = req->bytecnt = req->wrong_if = 0xffffffff;
    602  1.86      manu 		return (EADDRNOTAVAIL);
    603  1.86      manu 	}
    604  1.86      manu 	req->pktcnt = rt->mfc_pkt_cnt;
    605  1.86      manu 	req->bytecnt = rt->mfc_byte_cnt;
    606  1.86      manu 	req->wrong_if = rt->mfc_wrong_if;
    607  1.15   mycroft 	splx(s);
    608   1.1   hpeyerl 
    609  1.15   mycroft 	return (0);
    610  1.15   mycroft }
    611   1.1   hpeyerl 
    612  1.15   mycroft /*
    613  1.15   mycroft  * returns the input and output packet and byte counts on the vif provided
    614  1.15   mycroft  */
    615  1.15   mycroft static int
    616  1.15   mycroft get_vif_cnt(req)
    617  1.48  augustss 	struct sioc_vif_req *req;
    618  1.15   mycroft {
    619  1.48  augustss 	vifi_t vifi = req->vifi;
    620   1.1   hpeyerl 
    621  1.15   mycroft 	if (vifi >= numvifs)
    622  1.15   mycroft 		return (EINVAL);
    623   1.1   hpeyerl 
    624  1.15   mycroft 	req->icount = viftable[vifi].v_pkt_in;
    625  1.15   mycroft 	req->ocount = viftable[vifi].v_pkt_out;
    626  1.15   mycroft 	req->ibytes = viftable[vifi].v_bytes_in;
    627  1.15   mycroft 	req->obytes = viftable[vifi].v_bytes_out;
    628   1.1   hpeyerl 
    629  1.15   mycroft 	return (0);
    630   1.1   hpeyerl }
    631   1.1   hpeyerl 
    632   1.1   hpeyerl /*
    633   1.1   hpeyerl  * Enable multicast routing
    634   1.1   hpeyerl  */
    635   1.1   hpeyerl static int
    636  1.15   mycroft ip_mrouter_init(so, m)
    637  1.15   mycroft 	struct socket *so;
    638  1.15   mycroft 	struct mbuf *m;
    639   1.1   hpeyerl {
    640  1.15   mycroft 	int *v;
    641  1.15   mycroft 
    642  1.15   mycroft 	if (mrtdebug)
    643  1.15   mycroft 		log(LOG_DEBUG,
    644  1.30   mycroft 		    "ip_mrouter_init: so_type = %d, pr_protocol = %d\n",
    645  1.15   mycroft 		    so->so_type, so->so_proto->pr_protocol);
    646  1.15   mycroft 
    647   1.1   hpeyerl 	if (so->so_type != SOCK_RAW ||
    648   1.1   hpeyerl 	    so->so_proto->pr_protocol != IPPROTO_IGMP)
    649   1.1   hpeyerl 		return (EOPNOTSUPP);
    650   1.1   hpeyerl 
    651  1.86      manu 	if (m == NULL || m->m_len < sizeof(int))
    652  1.15   mycroft 		return (EINVAL);
    653  1.15   mycroft 
    654  1.15   mycroft 	v = mtod(m, int *);
    655  1.15   mycroft 	if (*v != 1)
    656  1.15   mycroft 		return (EINVAL);
    657  1.15   mycroft 
    658  1.86      manu 	if (ip_mrouter != NULL)
    659   1.1   hpeyerl 		return (EADDRINUSE);
    660   1.1   hpeyerl 
    661   1.1   hpeyerl 	ip_mrouter = so;
    662   1.1   hpeyerl 
    663  1.51        ad 	mfchashtbl =
    664  1.51        ad 	    hashinit(MFCTBLSIZ, HASH_LIST, M_MRTABLE, M_WAITOK, &mfchash);
    665  1.15   mycroft 	bzero((caddr_t)nexpire, sizeof(nexpire));
    666  1.15   mycroft 
    667  1.15   mycroft 	pim_assert = 0;
    668  1.15   mycroft 
    669  1.47   thorpej 	callout_init(&expire_upcalls_ch);
    670  1.47   thorpej 	callout_reset(&expire_upcalls_ch, EXPIRE_TIMEOUT,
    671  1.86      manu 		      expire_upcalls, NULL);
    672  1.86      manu 
    673  1.86      manu 	callout_init(&bw_upcalls_ch);
    674  1.86      manu 	callout_reset(&bw_upcalls_ch, BW_UPCALLS_PERIOD,
    675  1.86      manu 		      expire_bw_upcalls_send, NULL);
    676  1.86      manu 
    677  1.86      manu 	callout_init(&bw_meter_ch);
    678  1.86      manu 	callout_reset(&bw_meter_ch, BW_METER_PERIOD,
    679  1.86      manu 		      expire_bw_meter_process, NULL);
    680  1.15   mycroft 
    681  1.15   mycroft 	if (mrtdebug)
    682  1.30   mycroft 		log(LOG_DEBUG, "ip_mrouter_init\n");
    683  1.15   mycroft 
    684   1.1   hpeyerl 	return (0);
    685   1.1   hpeyerl }
    686   1.1   hpeyerl 
    687   1.1   hpeyerl /*
    688   1.1   hpeyerl  * Disable multicast routing
    689   1.1   hpeyerl  */
    690   1.1   hpeyerl int
    691   1.1   hpeyerl ip_mrouter_done()
    692   1.1   hpeyerl {
    693  1.15   mycroft 	vifi_t vifi;
    694  1.48  augustss 	struct vif *vifp;
    695  1.15   mycroft 	int i;
    696  1.15   mycroft 	int s;
    697  1.60    itojun 
    698  1.24   mycroft 	s = splsoftnet();
    699   1.1   hpeyerl 
    700  1.17   mycroft 	/* Clear out all the vifs currently in use. */
    701   1.1   hpeyerl 	for (vifi = 0; vifi < numvifs; vifi++) {
    702  1.15   mycroft 		vifp = &viftable[vifi];
    703  1.29   mycroft 		if (!in_nullhost(vifp->v_lcl_addr))
    704  1.17   mycroft 			reset_vif(vifp);
    705   1.1   hpeyerl 	}
    706  1.17   mycroft 
    707   1.1   hpeyerl 	numvifs = 0;
    708  1.15   mycroft 	pim_assert = 0;
    709  1.86      manu 	mrt_api_config = 0;
    710  1.60    itojun 
    711  1.47   thorpej 	callout_stop(&expire_upcalls_ch);
    712  1.86      manu 	callout_stop(&bw_upcalls_ch);
    713  1.86      manu 	callout_stop(&bw_meter_ch);
    714  1.60    itojun 
    715  1.15   mycroft 	/*
    716  1.15   mycroft 	 * Free all multicast forwarding cache entries.
    717  1.15   mycroft 	 */
    718  1.15   mycroft 	for (i = 0; i < MFCTBLSIZ; i++) {
    719  1.48  augustss 		struct mfc *rt, *nrt;
    720   1.1   hpeyerl 
    721  1.57      matt 		for (rt = LIST_FIRST(&mfchashtbl[i]); rt; rt = nrt) {
    722  1.57      matt 			nrt = LIST_NEXT(rt, mfc_hash);
    723  1.60    itojun 
    724  1.15   mycroft 			expire_mfc(rt);
    725  1.15   mycroft 		}
    726  1.15   mycroft 	}
    727  1.40   mycroft 
    728  1.86      manu 	bzero((caddr_t)nexpire, sizeof(nexpire));
    729  1.15   mycroft 	free(mfchashtbl, M_MRTABLE);
    730  1.86      manu 	mfchashtbl = NULL;
    731  1.86      manu 
    732  1.86      manu 	bw_upcalls_n = 0;
    733  1.86      manu 	bzero(bw_meter_timers, sizeof(bw_meter_timers));
    734  1.60    itojun 
    735  1.17   mycroft 	/* Reset de-encapsulation cache. */
    736  1.60    itojun 
    737  1.86      manu 	ip_mrouter = NULL;
    738  1.60    itojun 
    739  1.15   mycroft 	splx(s);
    740  1.60    itojun 
    741  1.15   mycroft 	if (mrtdebug)
    742  1.30   mycroft 		log(LOG_DEBUG, "ip_mrouter_done\n");
    743  1.60    itojun 
    744  1.15   mycroft 	return (0);
    745  1.72    itojun }
    746  1.72    itojun 
    747  1.72    itojun void
    748  1.72    itojun ip_mrouter_detach(ifp)
    749  1.72    itojun 	struct ifnet *ifp;
    750  1.72    itojun {
    751  1.72    itojun 	int vifi, i;
    752  1.72    itojun 	struct vif *vifp;
    753  1.75    itojun 	struct mfc *rt;
    754  1.75    itojun 	struct rtdetq *rte;
    755  1.72    itojun 
    756  1.86      manu 	/* XXX not sure about side effect to userland routing daemon */
    757  1.72    itojun 	for (vifi = 0; vifi < numvifs; vifi++) {
    758  1.72    itojun 		vifp = &viftable[vifi];
    759  1.72    itojun 		if (vifp->v_ifp == ifp)
    760  1.72    itojun 			reset_vif(vifp);
    761  1.72    itojun 	}
    762  1.72    itojun 	for (i = 0; i < MFCTBLSIZ; i++) {
    763  1.75    itojun 		if (nexpire[i] == 0)
    764  1.75    itojun 			continue;
    765  1.75    itojun 		LIST_FOREACH(rt, &mfchashtbl[i], mfc_hash) {
    766  1.75    itojun 			for (rte = rt->mfc_stall; rte; rte = rte->next) {
    767  1.75    itojun 				if (rte->ifp == ifp)
    768  1.75    itojun 					rte->ifp = NULL;
    769  1.72    itojun 			}
    770  1.72    itojun 		}
    771  1.72    itojun 	}
    772  1.15   mycroft }
    773  1.15   mycroft 
    774  1.15   mycroft static int
    775  1.15   mycroft get_version(m)
    776  1.15   mycroft 	struct mbuf *m;
    777  1.15   mycroft {
    778  1.15   mycroft 	int *v = mtod(m, int *);
    779  1.15   mycroft 
    780  1.15   mycroft 	*v = 0x0305;	/* XXX !!!! */
    781  1.15   mycroft 	m->m_len = sizeof(int);
    782  1.15   mycroft 	return (0);
    783  1.15   mycroft }
    784  1.15   mycroft 
    785  1.15   mycroft /*
    786  1.15   mycroft  * Set PIM assert processing global
    787  1.15   mycroft  */
    788  1.15   mycroft static int
    789  1.15   mycroft set_assert(m)
    790  1.15   mycroft 	struct mbuf *m;
    791  1.15   mycroft {
    792  1.15   mycroft 	int *i;
    793  1.15   mycroft 
    794  1.86      manu 	if (m == NULL || m->m_len < sizeof(int))
    795  1.15   mycroft 		return (EINVAL);
    796   1.1   hpeyerl 
    797  1.15   mycroft 	i = mtod(m, int *);
    798  1.15   mycroft 	pim_assert = !!*i;
    799  1.15   mycroft 	return (0);
    800  1.15   mycroft }
    801  1.15   mycroft 
    802  1.15   mycroft /*
    803  1.15   mycroft  * Get PIM assert processing global
    804  1.15   mycroft  */
    805  1.15   mycroft static int
    806  1.15   mycroft get_assert(m)
    807  1.15   mycroft 	struct mbuf *m;
    808  1.15   mycroft {
    809  1.15   mycroft 	int *i = mtod(m, int *);
    810   1.1   hpeyerl 
    811  1.15   mycroft 	*i = pim_assert;
    812  1.15   mycroft 	m->m_len = sizeof(int);
    813   1.1   hpeyerl 	return (0);
    814   1.1   hpeyerl }
    815   1.1   hpeyerl 
    816  1.86      manu /*
    817  1.86      manu  * Configure API capabilities
    818  1.86      manu  */
    819  1.86      manu static int
    820  1.86      manu set_api_config(struct mbuf *m)
    821  1.86      manu {
    822  1.86      manu 	int i;
    823  1.86      manu 	u_int32_t *apival;
    824  1.86      manu 
    825  1.86      manu 	if (m == NULL || m->m_len < sizeof(u_int32_t))
    826  1.86      manu 		return (EINVAL);
    827  1.86      manu 
    828  1.86      manu 	apival = mtod(m, u_int32_t *);
    829  1.86      manu 
    830  1.86      manu 	/*
    831  1.86      manu 	 * We can set the API capabilities only if it is the first operation
    832  1.86      manu 	 * after MRT_INIT. I.e.:
    833  1.86      manu 	 *  - there are no vifs installed
    834  1.86      manu 	 *  - pim_assert is not enabled
    835  1.86      manu 	 *  - the MFC table is empty
    836  1.86      manu 	 */
    837  1.86      manu 	if (numvifs > 0) {
    838  1.86      manu 		*apival = 0;
    839  1.86      manu 		return (EPERM);
    840  1.86      manu 	}
    841  1.86      manu 	if (pim_assert) {
    842  1.86      manu 		*apival = 0;
    843  1.86      manu 		return (EPERM);
    844  1.86      manu 	}
    845  1.86      manu 	for (i = 0; i < MFCTBLSIZ; i++) {
    846  1.86      manu 		if (LIST_FIRST(&mfchashtbl[i]) != NULL) {
    847  1.86      manu 			*apival = 0;
    848  1.86      manu 			return (EPERM);
    849  1.86      manu 		}
    850  1.86      manu 	}
    851  1.86      manu 
    852  1.86      manu 	mrt_api_config = *apival & mrt_api_support;
    853  1.86      manu 	*apival = mrt_api_config;
    854  1.86      manu 
    855  1.86      manu 	return (0);
    856  1.86      manu }
    857  1.86      manu 
    858  1.86      manu /*
    859  1.86      manu  * Get API capabilities
    860  1.86      manu  */
    861  1.86      manu static int
    862  1.86      manu get_api_support(struct mbuf *m)
    863  1.86      manu {
    864  1.86      manu 	u_int32_t *apival;
    865  1.86      manu 
    866  1.86      manu 	if (m == NULL || m->m_len < sizeof(u_int32_t))
    867  1.86      manu 		return (EINVAL);
    868  1.86      manu 
    869  1.86      manu 	apival = mtod(m, u_int32_t *);
    870  1.86      manu 
    871  1.86      manu 	*apival = mrt_api_support;
    872  1.86      manu 
    873  1.86      manu 	return (0);
    874  1.86      manu }
    875  1.86      manu 
    876  1.86      manu /*
    877  1.86      manu  * Get API configured capabilities
    878  1.86      manu  */
    879  1.86      manu static int
    880  1.86      manu get_api_config(struct mbuf *m)
    881  1.86      manu {
    882  1.86      manu 	u_int32_t *apival;
    883  1.86      manu 
    884  1.86      manu 	if (m == NULL || m->m_len < sizeof(u_int32_t))
    885  1.86      manu 		return (EINVAL);
    886  1.86      manu 
    887  1.86      manu 	apival = mtod(m, u_int32_t *);
    888  1.86      manu 
    889  1.86      manu 	*apival = mrt_api_config;
    890  1.86      manu 
    891  1.86      manu 	return (0);
    892  1.86      manu }
    893  1.86      manu 
    894  1.15   mycroft static struct sockaddr_in sin = { sizeof(sin), AF_INET };
    895  1.15   mycroft 
    896   1.1   hpeyerl /*
    897   1.1   hpeyerl  * Add a vif to the vif table
    898   1.1   hpeyerl  */
    899   1.1   hpeyerl static int
    900  1.15   mycroft add_vif(m)
    901  1.15   mycroft 	struct mbuf *m;
    902  1.15   mycroft {
    903  1.48  augustss 	struct vifctl *vifcp;
    904  1.48  augustss 	struct vif *vifp;
    905  1.15   mycroft 	struct ifaddr *ifa;
    906  1.15   mycroft 	struct ifnet *ifp;
    907   1.1   hpeyerl 	struct ifreq ifr;
    908  1.15   mycroft 	int error, s;
    909  1.60    itojun 
    910  1.86      manu 	if (m == NULL || m->m_len < sizeof(struct vifctl))
    911  1.15   mycroft 		return (EINVAL);
    912   1.1   hpeyerl 
    913  1.15   mycroft 	vifcp = mtod(m, struct vifctl *);
    914   1.1   hpeyerl 	if (vifcp->vifc_vifi >= MAXVIFS)
    915   1.1   hpeyerl 		return (EINVAL);
    916  1.86      manu 	if (in_nullhost(vifcp->vifc_lcl_addr))
    917  1.86      manu 		return (EADDRNOTAVAIL);
    918  1.15   mycroft 
    919  1.15   mycroft 	vifp = &viftable[vifcp->vifc_vifi];
    920  1.29   mycroft 	if (!in_nullhost(vifp->v_lcl_addr))
    921   1.1   hpeyerl 		return (EADDRINUSE);
    922  1.60    itojun 
    923  1.15   mycroft 	/* Find the interface with an address in AF_INET family. */
    924  1.86      manu #ifdef PIM
    925  1.86      manu 	if (vifcp->vifc_flags & VIFF_REGISTER) {
    926  1.86      manu 		/*
    927  1.86      manu 		 * XXX: Because VIFF_REGISTER does not really need a valid
    928  1.86      manu 		 * local interface (e.g. it could be 127.0.0.2), we don't
    929  1.86      manu 		 * check its address.
    930  1.86      manu 		 */
    931  1.86      manu 	    ifp = NULL;
    932  1.86      manu 	} else
    933  1.86      manu #endif
    934  1.86      manu 	{
    935  1.86      manu 		sin.sin_addr = vifcp->vifc_lcl_addr;
    936  1.86      manu 		ifa = ifa_ifwithaddr(sintosa(&sin));
    937  1.86      manu 		if (ifa == NULL)
    938  1.86      manu 			return (EADDRNOTAVAIL);
    939  1.86      manu 		ifp = ifa->ifa_ifp;
    940  1.86      manu 	}
    941  1.60    itojun 
    942  1.12    brezak 	if (vifcp->vifc_flags & VIFF_TUNNEL) {
    943  1.17   mycroft 		if (vifcp->vifc_flags & VIFF_SRCRT) {
    944  1.86      manu 			log(LOG_ERR, "source routed tunnels not supported\n");
    945  1.15   mycroft 			return (EOPNOTSUPP);
    946  1.12    brezak 		}
    947  1.17   mycroft 
    948  1.54    itojun 		/* attach this vif to decapsulator dispatch table */
    949  1.54    itojun 		vifp->v_encap_cookie = encap_attach_func(AF_INET, IPPROTO_IPV4,
    950  1.54    itojun 		    vif_encapcheck, &vif_protosw, vifp);
    951  1.54    itojun 		if (!vifp->v_encap_cookie)
    952  1.54    itojun 			return (EINVAL);
    953  1.54    itojun 
    954  1.17   mycroft 		/* Create a fake encapsulation interface. */
    955  1.17   mycroft 		ifp = (struct ifnet *)malloc(sizeof(*ifp), M_MRTABLE, M_WAITOK);
    956  1.17   mycroft 		bzero(ifp, sizeof(*ifp));
    957  1.86      manu 		snprintf(ifp->if_xname, sizeof(ifp->if_xname),
    958  1.86      manu 			 "mdecap%d", vifcp->vifc_vifi);
    959  1.17   mycroft 
    960  1.17   mycroft 		/* Prepare cached route entry. */
    961  1.17   mycroft 		bzero(&vifp->v_route, sizeof(vifp->v_route));
    962  1.86      manu #ifdef PIM
    963  1.86      manu 	} else if (vifcp->vifc_flags & VIFF_REGISTER) {
    964  1.86      manu 		ifp = &multicast_register_if;
    965  1.86      manu 		if (mrtdebug)
    966  1.86      manu 			log(LOG_DEBUG, "Adding a register vif, ifp: %p\n",
    967  1.86      manu 			    (void *)ifp);
    968  1.86      manu 		if (reg_vif_num == VIFI_INVALID) {
    969  1.86      manu 			bzero(ifp, sizeof(*ifp));
    970  1.86      manu 			snprintf(ifp->if_xname, sizeof(ifp->if_xname),
    971  1.86      manu 				 "register_vif");
    972  1.86      manu 			ifp->if_flags = IFF_LOOPBACK;
    973  1.86      manu 			bzero(&vifp->v_route, sizeof(vifp->v_route));
    974  1.86      manu 			reg_vif_num = vifcp->vifc_vifi;
    975  1.86      manu 		}
    976  1.86      manu #endif
    977  1.12    brezak 	} else {
    978  1.15   mycroft 		/* Make sure the interface supports multicast. */
    979  1.12    brezak 		if ((ifp->if_flags & IFF_MULTICAST) == 0)
    980  1.15   mycroft 			return (EOPNOTSUPP);
    981  1.45   thorpej 
    982  1.15   mycroft 		/* Enable promiscuous reception of all IP multicasts. */
    983  1.19   mycroft 		satosin(&ifr.ifr_addr)->sin_len = sizeof(struct sockaddr_in);
    984  1.15   mycroft 		satosin(&ifr.ifr_addr)->sin_family = AF_INET;
    985  1.29   mycroft 		satosin(&ifr.ifr_addr)->sin_addr = zeroin_addr;
    986   1.1   hpeyerl 		error = (*ifp->if_ioctl)(ifp, SIOCADDMULTI, (caddr_t)&ifr);
    987  1.12    brezak 		if (error)
    988  1.15   mycroft 			return (error);
    989   1.1   hpeyerl 	}
    990  1.45   thorpej 
    991  1.24   mycroft 	s = splsoftnet();
    992  1.31   mycroft 
    993  1.15   mycroft 	/* Define parameters for the tbf structure. */
    994  1.86      manu 	vifp->tbf_q = NULL;
    995  1.31   mycroft 	vifp->tbf_t = &vifp->tbf_q;
    996  1.31   mycroft 	microtime(&vifp->tbf_last_pkt_t);
    997  1.31   mycroft 	vifp->tbf_n_tok = 0;
    998  1.31   mycroft 	vifp->tbf_q_len = 0;
    999  1.31   mycroft 	vifp->tbf_max_q_len = MAXQSIZE;
   1000  1.60    itojun 
   1001   1.1   hpeyerl 	vifp->v_flags = vifcp->vifc_flags;
   1002   1.1   hpeyerl 	vifp->v_threshold = vifcp->vifc_threshold;
   1003  1.31   mycroft 	/* scaling up here allows division by 1024 in critical code */
   1004  1.31   mycroft 	vifp->v_rate_limit = vifcp->vifc_rate_limit * 1024 / 1000;
   1005   1.1   hpeyerl 	vifp->v_lcl_addr = vifcp->vifc_lcl_addr;
   1006  1.15   mycroft 	vifp->v_rmt_addr = vifcp->vifc_rmt_addr;
   1007  1.12    brezak 	vifp->v_ifp = ifp;
   1008  1.15   mycroft 	/* Initialize per vif pkt counters. */
   1009  1.15   mycroft 	vifp->v_pkt_in = 0;
   1010  1.15   mycroft 	vifp->v_pkt_out = 0;
   1011  1.15   mycroft 	vifp->v_bytes_in = 0;
   1012  1.15   mycroft 	vifp->v_bytes_out = 0;
   1013  1.47   thorpej 
   1014  1.47   thorpej 	callout_init(&vifp->v_repq_ch);
   1015  1.47   thorpej 
   1016  1.31   mycroft #ifdef RSVP_ISI
   1017  1.31   mycroft 	vifp->v_rsvp_on = 0;
   1018  1.86      manu 	vifp->v_rsvpd = NULL;
   1019  1.31   mycroft #endif /* RSVP_ISI */
   1020  1.31   mycroft 
   1021  1.12    brezak 	splx(s);
   1022  1.60    itojun 
   1023  1.15   mycroft 	/* Adjust numvifs up if the vifi is higher than numvifs. */
   1024   1.1   hpeyerl 	if (numvifs <= vifcp->vifc_vifi)
   1025   1.1   hpeyerl 		numvifs = vifcp->vifc_vifi + 1;
   1026  1.60    itojun 
   1027  1.15   mycroft 	if (mrtdebug)
   1028  1.30   mycroft 		log(LOG_DEBUG, "add_vif #%d, lcladdr %x, %s %x, thresh %x, rate %d\n",
   1029  1.60    itojun 		    vifcp->vifc_vifi,
   1030  1.15   mycroft 		    ntohl(vifcp->vifc_lcl_addr.s_addr),
   1031  1.15   mycroft 		    (vifcp->vifc_flags & VIFF_TUNNEL) ? "rmtaddr" : "mask",
   1032  1.15   mycroft 		    ntohl(vifcp->vifc_rmt_addr.s_addr),
   1033  1.15   mycroft 		    vifcp->vifc_threshold,
   1034  1.60    itojun 		    vifcp->vifc_rate_limit);
   1035  1.60    itojun 
   1036   1.1   hpeyerl 	return (0);
   1037   1.1   hpeyerl }
   1038   1.1   hpeyerl 
   1039  1.17   mycroft void
   1040  1.17   mycroft reset_vif(vifp)
   1041  1.48  augustss 	struct vif *vifp;
   1042  1.17   mycroft {
   1043  1.48  augustss 	struct mbuf *m, *n;
   1044  1.17   mycroft 	struct ifnet *ifp;
   1045  1.17   mycroft 	struct ifreq ifr;
   1046  1.17   mycroft 
   1047  1.47   thorpej 	callout_stop(&vifp->v_repq_ch);
   1048  1.47   thorpej 
   1049  1.54    itojun 	/* detach this vif from decapsulator dispatch table */
   1050  1.54    itojun 	encap_detach(vifp->v_encap_cookie);
   1051  1.54    itojun 	vifp->v_encap_cookie = NULL;
   1052  1.54    itojun 
   1053  1.86      manu 	/*
   1054  1.86      manu 	 * Free packets queued at the interface
   1055  1.86      manu 	 */
   1056  1.86      manu 	for (m = vifp->tbf_q; m != NULL; m = n) {
   1057  1.31   mycroft 		n = m->m_nextpkt;
   1058  1.31   mycroft 		m_freem(m);
   1059  1.31   mycroft 	}
   1060  1.31   mycroft 
   1061  1.17   mycroft 	if (vifp->v_flags & VIFF_TUNNEL) {
   1062  1.17   mycroft 		free(vifp->v_ifp, M_MRTABLE);
   1063  1.17   mycroft 		if (vifp == last_encap_vif) {
   1064  1.86      manu 			last_encap_vif = NULL;
   1065  1.29   mycroft 			last_encap_src = zeroin_addr;
   1066  1.17   mycroft 		}
   1067  1.86      manu 	} else if (vifp->v_flags & VIFF_REGISTER) {
   1068  1.86      manu #ifdef PIM
   1069  1.87      manu 		reg_vif_num = VIFI_INVALID;
   1070  1.86      manu #endif
   1071  1.17   mycroft 	} else {
   1072  1.19   mycroft 		satosin(&ifr.ifr_addr)->sin_len = sizeof(struct sockaddr_in);
   1073  1.17   mycroft 		satosin(&ifr.ifr_addr)->sin_family = AF_INET;
   1074  1.29   mycroft 		satosin(&ifr.ifr_addr)->sin_addr = zeroin_addr;
   1075  1.17   mycroft 		ifp = vifp->v_ifp;
   1076  1.17   mycroft 		(*ifp->if_ioctl)(ifp, SIOCDELMULTI, (caddr_t)&ifr);
   1077  1.17   mycroft 	}
   1078  1.17   mycroft 	bzero((caddr_t)vifp, sizeof(*vifp));
   1079  1.17   mycroft }
   1080  1.17   mycroft 
   1081   1.1   hpeyerl /*
   1082   1.1   hpeyerl  * Delete a vif from the vif table
   1083   1.1   hpeyerl  */
   1084   1.1   hpeyerl static int
   1085  1.15   mycroft del_vif(m)
   1086  1.15   mycroft 	struct mbuf *m;
   1087   1.1   hpeyerl {
   1088  1.15   mycroft 	vifi_t *vifip;
   1089  1.48  augustss 	struct vif *vifp;
   1090  1.48  augustss 	vifi_t vifi;
   1091  1.15   mycroft 	int s;
   1092  1.60    itojun 
   1093  1.86      manu 	if (m == NULL || m->m_len < sizeof(vifi_t))
   1094  1.15   mycroft 		return (EINVAL);
   1095   1.1   hpeyerl 
   1096  1.15   mycroft 	vifip = mtod(m, vifi_t *);
   1097   1.1   hpeyerl 	if (*vifip >= numvifs)
   1098   1.1   hpeyerl 		return (EINVAL);
   1099  1.15   mycroft 
   1100  1.15   mycroft 	vifp = &viftable[*vifip];
   1101  1.29   mycroft 	if (in_nullhost(vifp->v_lcl_addr))
   1102   1.1   hpeyerl 		return (EADDRNOTAVAIL);
   1103  1.60    itojun 
   1104  1.24   mycroft 	s = splsoftnet();
   1105  1.60    itojun 
   1106  1.17   mycroft 	reset_vif(vifp);
   1107  1.60    itojun 
   1108   1.1   hpeyerl 	/* Adjust numvifs down */
   1109  1.15   mycroft 	for (vifi = numvifs; vifi > 0; vifi--)
   1110  1.86      manu 		if (!in_nullhost(viftable[vifi - 1].v_lcl_addr))
   1111   1.1   hpeyerl 			break;
   1112  1.15   mycroft 	numvifs = vifi;
   1113  1.60    itojun 
   1114   1.1   hpeyerl 	splx(s);
   1115  1.60    itojun 
   1116  1.15   mycroft 	if (mrtdebug)
   1117  1.30   mycroft 		log(LOG_DEBUG, "del_vif %d, numvifs %d\n", *vifip, numvifs);
   1118  1.60    itojun 
   1119   1.1   hpeyerl 	return (0);
   1120   1.1   hpeyerl }
   1121   1.1   hpeyerl 
   1122  1.86      manu /*
   1123  1.86      manu  * update an mfc entry without resetting counters and S,G addresses.
   1124  1.86      manu  */
   1125  1.15   mycroft static void
   1126  1.86      manu update_mfc_params(struct mfc *rt, struct mfcctl2 *mfccp)
   1127   1.1   hpeyerl {
   1128  1.86      manu 	int i;
   1129   1.1   hpeyerl 
   1130  1.15   mycroft 	rt->mfc_parent = mfccp->mfcc_parent;
   1131  1.86      manu 	for (i = 0; i < numvifs; i++) {
   1132  1.86      manu 		rt->mfc_ttls[i] = mfccp->mfcc_ttls[i];
   1133  1.86      manu 		rt->mfc_flags[i] = mfccp->mfcc_flags[i] & mrt_api_config &
   1134  1.86      manu 			MRT_MFC_FLAGS_ALL;
   1135  1.86      manu 	}
   1136  1.86      manu 	/* set the RP address */
   1137  1.86      manu 	if (mrt_api_config & MRT_MFC_RP)
   1138  1.86      manu 		rt->mfc_rp = mfccp->mfcc_rp;
   1139  1.86      manu 	else
   1140  1.86      manu 		rt->mfc_rp = zeroin_addr;
   1141  1.86      manu }
   1142  1.86      manu 
   1143  1.86      manu /*
   1144  1.86      manu  * fully initialize an mfc entry from the parameter.
   1145  1.86      manu  */
   1146  1.86      manu static void
   1147  1.86      manu init_mfc_params(struct mfc *rt, struct mfcctl2 *mfccp)
   1148  1.86      manu {
   1149  1.86      manu 	rt->mfc_origin     = mfccp->mfcc_origin;
   1150  1.86      manu 	rt->mfc_mcastgrp   = mfccp->mfcc_mcastgrp;
   1151  1.86      manu 
   1152  1.86      manu 	update_mfc_params(rt, mfccp);
   1153  1.86      manu 
   1154  1.86      manu 	/* initialize pkt counters per src-grp */
   1155  1.86      manu 	rt->mfc_pkt_cnt    = 0;
   1156  1.86      manu 	rt->mfc_byte_cnt   = 0;
   1157  1.86      manu 	rt->mfc_wrong_if   = 0;
   1158  1.86      manu 	timerclear(&rt->mfc_last_assert);
   1159  1.15   mycroft }
   1160   1.1   hpeyerl 
   1161  1.15   mycroft static void
   1162  1.15   mycroft expire_mfc(rt)
   1163  1.15   mycroft 	struct mfc *rt;
   1164  1.15   mycroft {
   1165  1.15   mycroft 	struct rtdetq *rte, *nrte;
   1166   1.1   hpeyerl 
   1167  1.86      manu 	free_bw_list(rt->mfc_bw_meter);
   1168  1.86      manu 
   1169  1.86      manu 	for (rte = rt->mfc_stall; rte != NULL; rte = nrte) {
   1170  1.15   mycroft 		nrte = rte->next;
   1171  1.15   mycroft 		m_freem(rte->m);
   1172  1.15   mycroft 		free(rte, M_MRTABLE);
   1173   1.1   hpeyerl 	}
   1174   1.1   hpeyerl 
   1175  1.15   mycroft 	LIST_REMOVE(rt, mfc_hash);
   1176  1.15   mycroft 	free(rt, M_MRTABLE);
   1177   1.1   hpeyerl }
   1178   1.1   hpeyerl 
   1179   1.1   hpeyerl /*
   1180  1.15   mycroft  * Add an mfc entry
   1181   1.1   hpeyerl  */
   1182   1.1   hpeyerl static int
   1183  1.15   mycroft add_mfc(m)
   1184  1.15   mycroft 	struct mbuf *m;
   1185   1.1   hpeyerl {
   1186  1.86      manu 	struct mfcctl2 mfcctl2;
   1187  1.86      manu 	struct mfcctl2 *mfccp;
   1188  1.25  christos 	struct mfc *rt;
   1189  1.25  christos 	u_int32_t hash = 0;
   1190  1.15   mycroft 	struct rtdetq *rte, *nrte;
   1191  1.48  augustss 	u_short nstl;
   1192  1.15   mycroft 	int s;
   1193  1.86      manu 	int mfcctl_size = sizeof(struct mfcctl);
   1194   1.1   hpeyerl 
   1195  1.86      manu 	if (mrt_api_config & MRT_API_FLAGS_ALL)
   1196  1.86      manu 		mfcctl_size = sizeof(struct mfcctl2);
   1197  1.86      manu 
   1198  1.86      manu 	if (m == NULL || m->m_len < mfcctl_size)
   1199   1.1   hpeyerl 		return (EINVAL);
   1200  1.15   mycroft 
   1201  1.86      manu 	/*
   1202  1.86      manu 	 * select data size depending on API version.
   1203  1.86      manu 	 */
   1204  1.86      manu 	if (mrt_api_config & MRT_API_FLAGS_ALL) {
   1205  1.86      manu 		struct mfcctl2 *mp2 = mtod(m, struct mfcctl2 *);
   1206  1.86      manu 		bcopy(mp2, (caddr_t)&mfcctl2, sizeof(*mp2));
   1207  1.86      manu 	} else {
   1208  1.86      manu 		struct mfcctl *mp = mtod(m, struct mfcctl *);
   1209  1.86      manu 		bcopy(mp, (caddr_t)&mfcctl2, sizeof(*mp));
   1210  1.86      manu 		bzero((caddr_t)&mfcctl2 + sizeof(struct mfcctl),
   1211  1.86      manu 		      sizeof(mfcctl2) - sizeof(struct mfcctl));
   1212  1.86      manu 	}
   1213  1.86      manu 	mfccp = &mfcctl2;
   1214   1.1   hpeyerl 
   1215  1.24   mycroft 	s = splsoftnet();
   1216  1.86      manu 	rt = mfc_find(&mfccp->mfcc_origin, &mfccp->mfcc_mcastgrp);
   1217   1.1   hpeyerl 
   1218  1.15   mycroft 	/* If an entry already exists, just update the fields */
   1219  1.15   mycroft 	if (rt) {
   1220  1.15   mycroft 		if (mrtdebug & DEBUG_MFC)
   1221  1.70    itojun 			log(LOG_DEBUG, "add_mfc update o %x g %x p %x\n",
   1222  1.15   mycroft 			    ntohl(mfccp->mfcc_origin.s_addr),
   1223  1.15   mycroft 			    ntohl(mfccp->mfcc_mcastgrp.s_addr),
   1224  1.15   mycroft 			    mfccp->mfcc_parent);
   1225   1.1   hpeyerl 
   1226  1.86      manu 		update_mfc_params(rt, mfccp);
   1227   1.1   hpeyerl 
   1228  1.15   mycroft 		splx(s);
   1229  1.15   mycroft 		return (0);
   1230  1.15   mycroft 	}
   1231   1.1   hpeyerl 
   1232  1.60    itojun 	/*
   1233  1.15   mycroft 	 * Find the entry for which the upcall was made and update
   1234  1.15   mycroft 	 */
   1235  1.15   mycroft 	nstl = 0;
   1236  1.29   mycroft 	hash = MFCHASH(mfccp->mfcc_origin, mfccp->mfcc_mcastgrp);
   1237  1.57      matt 	LIST_FOREACH(rt, &mfchashtbl[hash], mfc_hash) {
   1238  1.29   mycroft 		if (in_hosteq(rt->mfc_origin, mfccp->mfcc_origin) &&
   1239  1.29   mycroft 		    in_hosteq(rt->mfc_mcastgrp, mfccp->mfcc_mcastgrp) &&
   1240  1.86      manu 		    rt->mfc_stall != NULL) {
   1241  1.15   mycroft 			if (nstl++)
   1242  1.30   mycroft 				log(LOG_ERR, "add_mfc %s o %x g %x p %x dbx %p\n",
   1243  1.15   mycroft 				    "multiple kernel entries",
   1244  1.15   mycroft 				    ntohl(mfccp->mfcc_origin.s_addr),
   1245  1.15   mycroft 				    ntohl(mfccp->mfcc_mcastgrp.s_addr),
   1246  1.15   mycroft 				    mfccp->mfcc_parent, rt->mfc_stall);
   1247  1.15   mycroft 
   1248  1.15   mycroft 			if (mrtdebug & DEBUG_MFC)
   1249  1.70    itojun 				log(LOG_DEBUG, "add_mfc o %x g %x p %x dbg %p\n",
   1250  1.15   mycroft 				    ntohl(mfccp->mfcc_origin.s_addr),
   1251  1.15   mycroft 				    ntohl(mfccp->mfcc_mcastgrp.s_addr),
   1252  1.15   mycroft 				    mfccp->mfcc_parent, rt->mfc_stall);
   1253  1.15   mycroft 
   1254  1.86      manu 			rte = rt->mfc_stall;
   1255  1.86      manu 			init_mfc_params(rt, mfccp);
   1256  1.86      manu 			rt->mfc_stall = NULL;
   1257  1.15   mycroft 
   1258  1.86      manu 			rt->mfc_expire = 0; /* Don't clean this guy up */
   1259  1.86      manu 			nexpire[hash]--;
   1260  1.35   mycroft 
   1261  1.15   mycroft 			/* free packets Qed at the end of this entry */
   1262  1.86      manu 			for (; rte != NULL; rte = nrte) {
   1263  1.15   mycroft 				nrte = rte->next;
   1264  1.75    itojun 				if (rte->ifp) {
   1265  1.15   mycroft #ifdef RSVP_ISI
   1266  1.75    itojun 					ip_mdq(rte->m, rte->ifp, rt, -1);
   1267  1.15   mycroft #else
   1268  1.75    itojun 					ip_mdq(rte->m, rte->ifp, rt);
   1269  1.15   mycroft #endif /* RSVP_ISI */
   1270  1.75    itojun 				}
   1271  1.15   mycroft 				m_freem(rte->m);
   1272  1.15   mycroft #ifdef UPCALL_TIMING
   1273  1.15   mycroft 				collate(&rte->t);
   1274  1.15   mycroft #endif /* UPCALL_TIMING */
   1275  1.15   mycroft 				free(rte, M_MRTABLE);
   1276  1.15   mycroft 			}
   1277  1.15   mycroft 		}
   1278  1.15   mycroft 	}
   1279   1.1   hpeyerl 
   1280  1.86      manu 	/*
   1281  1.86      manu 	 * It is possible that an entry is being inserted without an upcall
   1282  1.86      manu 	 */
   1283  1.15   mycroft 	if (nstl == 0) {
   1284  1.15   mycroft 		/*
   1285  1.15   mycroft 		 * No mfc; make a new one
   1286  1.15   mycroft 		 */
   1287  1.15   mycroft 		if (mrtdebug & DEBUG_MFC)
   1288  1.70    itojun 			log(LOG_DEBUG, "add_mfc no upcall o %x g %x p %x\n",
   1289  1.15   mycroft 			    ntohl(mfccp->mfcc_origin.s_addr),
   1290  1.15   mycroft 			    ntohl(mfccp->mfcc_mcastgrp.s_addr),
   1291  1.15   mycroft 			    mfccp->mfcc_parent);
   1292  1.60    itojun 
   1293  1.86      manu 		LIST_FOREACH(rt, &mfchashtbl[hash], mfc_hash) {
   1294  1.86      manu 			if (in_hosteq(rt->mfc_origin, mfccp->mfcc_origin) &&
   1295  1.86      manu 			    in_hosteq(rt->mfc_mcastgrp, mfccp->mfcc_mcastgrp)) {
   1296  1.86      manu 				init_mfc_params(rt, mfccp);
   1297  1.86      manu 				if (rt->mfc_expire)
   1298  1.86      manu 					nexpire[hash]--;
   1299  1.86      manu 				rt->mfc_expire = 0;
   1300  1.86      manu 				break; /* XXX */
   1301  1.86      manu 			}
   1302   1.1   hpeyerl 		}
   1303  1.86      manu 		if (rt == NULL) {	/* no upcall, so make a new entry */
   1304  1.86      manu 			rt = (struct mfc *)malloc(sizeof(*rt), M_MRTABLE,
   1305  1.86      manu 						  M_NOWAIT);
   1306  1.86      manu 			if (rt == NULL) {
   1307  1.86      manu 				splx(s);
   1308  1.86      manu 				return (ENOBUFS);
   1309  1.86      manu 			}
   1310  1.15   mycroft 
   1311  1.86      manu 			init_mfc_params(rt, mfccp);
   1312  1.86      manu 			rt->mfc_expire	= 0;
   1313  1.86      manu 			rt->mfc_stall	= NULL;
   1314  1.86      manu 			rt->mfc_bw_meter = NULL;
   1315  1.60    itojun 
   1316  1.86      manu 			/* insert new entry at head of hash chain */
   1317  1.86      manu 			LIST_INSERT_HEAD(&mfchashtbl[hash], rt, mfc_hash);
   1318  1.86      manu 		}
   1319  1.15   mycroft 	}
   1320  1.15   mycroft 
   1321   1.1   hpeyerl 	splx(s);
   1322   1.1   hpeyerl 	return (0);
   1323   1.1   hpeyerl }
   1324   1.1   hpeyerl 
   1325  1.15   mycroft #ifdef UPCALL_TIMING
   1326  1.15   mycroft /*
   1327  1.60    itojun  * collect delay statistics on the upcalls
   1328  1.15   mycroft  */
   1329  1.86      manu static void
   1330  1.86      manu collate(t)
   1331  1.67    itojun 	struct timeval *t;
   1332  1.15   mycroft {
   1333  1.67    itojun 	u_int32_t d;
   1334  1.67    itojun 	struct timeval tp;
   1335  1.67    itojun 	u_int32_t delta;
   1336  1.60    itojun 
   1337  1.67    itojun 	microtime(&tp);
   1338  1.60    itojun 
   1339  1.67    itojun 	if (timercmp(t, &tp, <)) {
   1340  1.67    itojun 		TV_DELTA(tp, *t, delta);
   1341  1.60    itojun 
   1342  1.67    itojun 		d = delta >> 10;
   1343  1.67    itojun 		if (d > 50)
   1344  1.67    itojun 			d = 50;
   1345  1.60    itojun 
   1346  1.67    itojun 		++upcall_data[d];
   1347  1.67    itojun 	}
   1348  1.15   mycroft }
   1349  1.15   mycroft #endif /* UPCALL_TIMING */
   1350  1.15   mycroft 
   1351   1.1   hpeyerl /*
   1352  1.15   mycroft  * Delete an mfc entry
   1353   1.1   hpeyerl  */
   1354   1.1   hpeyerl static int
   1355  1.15   mycroft del_mfc(m)
   1356  1.15   mycroft 	struct mbuf *m;
   1357   1.1   hpeyerl {
   1358  1.86      manu 	struct mfcctl2 mfcctl2;
   1359  1.86      manu 	struct mfcctl2 *mfccp;
   1360  1.15   mycroft 	struct mfc *rt;
   1361   1.1   hpeyerl 	int s;
   1362  1.86      manu 	int mfcctl_size = sizeof(struct mfcctl);
   1363  1.86      manu 	struct mfcctl *mp = mtod(m, struct mfcctl *);
   1364   1.1   hpeyerl 
   1365  1.86      manu 	/*
   1366  1.86      manu 	 * XXX: for deleting MFC entries the information in entries
   1367  1.86      manu 	 * of size "struct mfcctl" is sufficient.
   1368  1.86      manu 	 */
   1369  1.86      manu 
   1370  1.86      manu 	if (m == NULL || m->m_len < mfcctl_size)
   1371  1.15   mycroft 		return (EINVAL);
   1372  1.15   mycroft 
   1373  1.86      manu 	bcopy(mp, (caddr_t)&mfcctl2, sizeof(*mp));
   1374  1.86      manu 	bzero((caddr_t)&mfcctl2 + sizeof(struct mfcctl),
   1375  1.86      manu 	      sizeof(mfcctl2) - sizeof(struct mfcctl));
   1376  1.86      manu 
   1377  1.86      manu 	mfccp = &mfcctl2;
   1378  1.15   mycroft 
   1379  1.15   mycroft 	if (mrtdebug & DEBUG_MFC)
   1380  1.30   mycroft 		log(LOG_DEBUG, "del_mfc origin %x mcastgrp %x\n",
   1381  1.29   mycroft 		    ntohl(mfccp->mfcc_origin.s_addr),
   1382  1.29   mycroft 		    ntohl(mfccp->mfcc_mcastgrp.s_addr));
   1383   1.1   hpeyerl 
   1384  1.24   mycroft 	s = splsoftnet();
   1385   1.1   hpeyerl 
   1386  1.86      manu 	rt = mfc_find(&mfccp->mfcc_origin, &mfccp->mfcc_mcastgrp);
   1387  1.86      manu 	if (rt == NULL) {
   1388   1.1   hpeyerl 		splx(s);
   1389  1.15   mycroft 		return (EADDRNOTAVAIL);
   1390   1.1   hpeyerl 	}
   1391   1.1   hpeyerl 
   1392  1.86      manu 	/*
   1393  1.86      manu 	 * free the bw_meter entries
   1394  1.86      manu 	 */
   1395  1.86      manu 	free_bw_list(rt->mfc_bw_meter);
   1396  1.86      manu 	rt->mfc_bw_meter = NULL;
   1397  1.86      manu 
   1398  1.15   mycroft 	LIST_REMOVE(rt, mfc_hash);
   1399  1.15   mycroft 	free(rt, M_MRTABLE);
   1400   1.1   hpeyerl 
   1401   1.1   hpeyerl 	splx(s);
   1402   1.1   hpeyerl 	return (0);
   1403   1.1   hpeyerl }
   1404   1.1   hpeyerl 
   1405   1.1   hpeyerl static int
   1406  1.15   mycroft socket_send(s, mm, src)
   1407  1.67    itojun 	struct socket *s;
   1408  1.67    itojun 	struct mbuf *mm;
   1409  1.67    itojun 	struct sockaddr_in *src;
   1410  1.67    itojun {
   1411  1.67    itojun 	if (s) {
   1412  1.67    itojun 		if (sbappendaddr(&s->so_rcv, sintosa(src), mm,
   1413  1.86      manu 		    (struct mbuf *)NULL) != 0) {
   1414  1.67    itojun 			sorwakeup(s);
   1415  1.67    itojun 			return (0);
   1416  1.67    itojun 		}
   1417  1.67    itojun 	}
   1418  1.67    itojun 	m_freem(mm);
   1419  1.67    itojun 	return (-1);
   1420   1.1   hpeyerl }
   1421   1.1   hpeyerl 
   1422   1.1   hpeyerl /*
   1423   1.1   hpeyerl  * IP multicast forwarding function. This function assumes that the packet
   1424   1.1   hpeyerl  * pointed to by "ip" has arrived on (or is about to be sent to) the interface
   1425   1.1   hpeyerl  * pointed to by "ifp", and the packet is to be relayed to other networks
   1426   1.1   hpeyerl  * that have members of the packet's destination IP multicast group.
   1427   1.1   hpeyerl  *
   1428  1.15   mycroft  * The packet is returned unscathed to the caller, unless it is
   1429  1.15   mycroft  * erroneous, in which case a non-zero return value tells the caller to
   1430   1.1   hpeyerl  * discard it.
   1431   1.1   hpeyerl  */
   1432   1.1   hpeyerl 
   1433  1.15   mycroft #define IP_HDR_LEN  20	/* # bytes of fixed IP header (excluding options) */
   1434  1.15   mycroft #define TUNNEL_LEN  12  /* # bytes of IP option for tunnel encapsulation  */
   1435   1.1   hpeyerl 
   1436   1.1   hpeyerl int
   1437  1.15   mycroft #ifdef RSVP_ISI
   1438  1.15   mycroft ip_mforward(m, ifp, imo)
   1439  1.15   mycroft #else
   1440  1.10   mycroft ip_mforward(m, ifp)
   1441  1.15   mycroft #endif /* RSVP_ISI */
   1442  1.67    itojun 	struct mbuf *m;
   1443  1.67    itojun 	struct ifnet *ifp;
   1444  1.15   mycroft #ifdef RSVP_ISI
   1445  1.67    itojun 	struct ip_moptions *imo;
   1446  1.15   mycroft #endif /* RSVP_ISI */
   1447   1.1   hpeyerl {
   1448  1.67    itojun 	struct ip *ip = mtod(m, struct ip *);
   1449  1.67    itojun 	struct mfc *rt;
   1450  1.67    itojun 	static int srctun = 0;
   1451  1.67    itojun 	struct mbuf *mm;
   1452  1.67    itojun 	int s;
   1453  1.67    itojun 	vifi_t vifi;
   1454  1.15   mycroft 
   1455  1.67    itojun 	if (mrtdebug & DEBUG_FORWARD)
   1456  1.71    itojun 		log(LOG_DEBUG, "ip_mforward: src %x, dst %x, ifp %p\n",
   1457  1.71    itojun 		    ntohl(ip->ip_src.s_addr), ntohl(ip->ip_dst.s_addr), ifp);
   1458   1.1   hpeyerl 
   1459  1.67    itojun 	if (ip->ip_hl < (IP_HDR_LEN + TUNNEL_LEN) >> 2 ||
   1460  1.67    itojun 	    ((u_char *)(ip + 1))[1] != IPOPT_LSRR) {
   1461  1.67    itojun 		/*
   1462  1.67    itojun 		 * Packet arrived via a physical interface or
   1463  1.86      manu 		 * an encapsulated tunnel or a register_vif.
   1464  1.67    itojun 		 */
   1465  1.67    itojun 	} else {
   1466  1.67    itojun 		/*
   1467  1.67    itojun 		 * Packet arrived through a source-route tunnel.
   1468  1.67    itojun 		 * Source-route tunnels are no longer supported.
   1469  1.67    itojun 		 */
   1470  1.67    itojun 		if ((srctun++ % 1000) == 0)
   1471  1.67    itojun 			log(LOG_ERR,
   1472  1.67    itojun 			    "ip_mforward: received source-routed packet from %x\n",
   1473  1.67    itojun 			    ntohl(ip->ip_src.s_addr));
   1474  1.15   mycroft 
   1475  1.67    itojun 		return (1);
   1476  1.67    itojun 	}
   1477  1.15   mycroft 
   1478  1.15   mycroft #ifdef RSVP_ISI
   1479  1.67    itojun 	if (imo && ((vifi = imo->imo_multicast_vif) < numvifs)) {
   1480  1.67    itojun 		if (ip->ip_ttl < 255)
   1481  1.86      manu 			ip->ip_ttl++;	/* compensate for -1 in *_send routines */
   1482  1.67    itojun 		if (rsvpdebug && ip->ip_p == IPPROTO_RSVP) {
   1483  1.86      manu 			struct vif *vifp = viftable + vifi;
   1484  1.67    itojun 			printf("Sending IPPROTO_RSVP from %x to %x on vif %d (%s%s)\n",
   1485  1.67    itojun 			    ntohl(ip->ip_src), ntohl(ip->ip_dst), vifi,
   1486  1.67    itojun 			    (vifp->v_flags & VIFF_TUNNEL) ? "tunnel on " : "",
   1487  1.67    itojun 			    vifp->v_ifp->if_xname);
   1488  1.67    itojun 		}
   1489  1.86      manu 		return (ip_mdq(m, ifp, (struct mfc *)NULL, vifi));
   1490  1.67    itojun 	}
   1491  1.15   mycroft 	if (rsvpdebug && ip->ip_p == IPPROTO_RSVP) {
   1492  1.67    itojun 		printf("Warning: IPPROTO_RSVP from %x to %x without vif option\n",
   1493  1.67    itojun 		    ntohl(ip->ip_src), ntohl(ip->ip_dst));
   1494  1.67    itojun 	}
   1495  1.15   mycroft #endif /* RSVP_ISI */
   1496  1.15   mycroft 
   1497  1.67    itojun 	/*
   1498  1.67    itojun 	 * Don't forward a packet with time-to-live of zero or one,
   1499  1.67    itojun 	 * or a packet destined to a local-only group.
   1500  1.67    itojun 	 */
   1501  1.67    itojun 	if (ip->ip_ttl <= 1 || IN_LOCAL_GROUP(ip->ip_dst.s_addr))
   1502  1.67    itojun 		return (0);
   1503  1.15   mycroft 
   1504  1.67    itojun 	/*
   1505  1.67    itojun 	 * Determine forwarding vifs from the forwarding cache table
   1506  1.67    itojun 	 */
   1507  1.67    itojun 	s = splsoftnet();
   1508  1.86      manu 	++mrtstat.mrts_mfc_lookups;
   1509  1.86      manu 	rt = mfc_find(&ip->ip_src, &ip->ip_dst);
   1510   1.1   hpeyerl 
   1511  1.67    itojun 	/* Entry exists, so forward if necessary */
   1512  1.86      manu 	if (rt != NULL) {
   1513  1.67    itojun 		splx(s);
   1514  1.15   mycroft #ifdef RSVP_ISI
   1515  1.67    itojun 		return (ip_mdq(m, ifp, rt, -1));
   1516  1.15   mycroft #else
   1517  1.67    itojun 		return (ip_mdq(m, ifp, rt));
   1518  1.15   mycroft #endif /* RSVP_ISI */
   1519  1.67    itojun 	} else {
   1520  1.67    itojun 		/*
   1521  1.67    itojun 		 * If we don't have a route for packet's origin,
   1522  1.86      manu 		 * Make a copy of the packet & send message to routing daemon
   1523  1.67    itojun 		 */
   1524  1.15   mycroft 
   1525  1.67    itojun 		struct mbuf *mb0;
   1526  1.67    itojun 		struct rtdetq *rte;
   1527  1.67    itojun 		u_int32_t hash;
   1528  1.67    itojun 		int hlen = ip->ip_hl << 2;
   1529  1.15   mycroft #ifdef UPCALL_TIMING
   1530  1.67    itojun 		struct timeval tp;
   1531  1.15   mycroft 
   1532  1.67    itojun 		microtime(&tp);
   1533  1.15   mycroft #endif /* UPCALL_TIMING */
   1534  1.15   mycroft 
   1535  1.86      manu 		++mrtstat.mrts_mfc_misses;
   1536  1.86      manu 
   1537  1.67    itojun 		mrtstat.mrts_no_route++;
   1538  1.67    itojun 		if (mrtdebug & (DEBUG_FORWARD | DEBUG_MFC))
   1539  1.67    itojun 			log(LOG_DEBUG, "ip_mforward: no rte s %x g %x\n",
   1540  1.67    itojun 			    ntohl(ip->ip_src.s_addr),
   1541  1.67    itojun 			    ntohl(ip->ip_dst.s_addr));
   1542  1.67    itojun 
   1543  1.67    itojun 		/*
   1544  1.67    itojun 		 * Allocate mbufs early so that we don't do extra work if we are
   1545  1.67    itojun 		 * just going to fail anyway.  Make sure to pullup the header so
   1546  1.67    itojun 		 * that other people can't step on it.
   1547  1.67    itojun 		 */
   1548  1.67    itojun 		rte = (struct rtdetq *)malloc(sizeof(*rte), M_MRTABLE,
   1549  1.86      manu 					      M_NOWAIT);
   1550  1.86      manu 		if (rte == NULL) {
   1551  1.67    itojun 			splx(s);
   1552  1.67    itojun 			return (ENOBUFS);
   1553  1.67    itojun 		}
   1554  1.67    itojun 		mb0 = m_copy(m, 0, M_COPYALL);
   1555  1.67    itojun 		M_PULLUP(mb0, hlen);
   1556  1.86      manu 		if (mb0 == NULL) {
   1557  1.67    itojun 			free(rte, M_MRTABLE);
   1558  1.67    itojun 			splx(s);
   1559  1.67    itojun 			return (ENOBUFS);
   1560  1.67    itojun 		}
   1561  1.67    itojun 
   1562  1.86      manu 		/* is there an upcall waiting for this flow? */
   1563  1.67    itojun 		hash = MFCHASH(ip->ip_src, ip->ip_dst);
   1564  1.67    itojun 		LIST_FOREACH(rt, &mfchashtbl[hash], mfc_hash) {
   1565  1.67    itojun 			if (in_hosteq(ip->ip_src, rt->mfc_origin) &&
   1566  1.67    itojun 			    in_hosteq(ip->ip_dst, rt->mfc_mcastgrp) &&
   1567  1.86      manu 			    rt->mfc_stall != NULL)
   1568  1.67    itojun 				break;
   1569  1.67    itojun 		}
   1570  1.67    itojun 
   1571  1.86      manu 		if (rt == NULL) {
   1572  1.67    itojun 			int i;
   1573  1.67    itojun 			struct igmpmsg *im;
   1574  1.67    itojun 
   1575  1.86      manu 			/*
   1576  1.86      manu 			 * Locate the vifi for the incoming interface for
   1577  1.86      manu 			 * this packet.
   1578  1.86      manu 			 * If none found, drop packet.
   1579  1.86      manu 			 */
   1580  1.86      manu 			for (vifi = 0; vifi < numvifs &&
   1581  1.86      manu 				 viftable[vifi].v_ifp != ifp; vifi++)
   1582  1.86      manu 				;
   1583  1.86      manu 			if (vifi >= numvifs) /* vif not found, drop packet */
   1584  1.86      manu 				goto non_fatal;
   1585  1.86      manu 
   1586  1.67    itojun 			/* no upcall, so make a new entry */
   1587  1.67    itojun 			rt = (struct mfc *)malloc(sizeof(*rt), M_MRTABLE,
   1588  1.86      manu 						  M_NOWAIT);
   1589  1.86      manu 			if (rt == NULL)
   1590  1.86      manu 				goto fail;
   1591  1.86      manu 
   1592  1.67    itojun 			/*
   1593  1.67    itojun 			 * Make a copy of the header to send to the user level
   1594  1.67    itojun 			 * process
   1595  1.67    itojun 			 */
   1596  1.67    itojun 			mm = m_copy(m, 0, hlen);
   1597  1.67    itojun 			M_PULLUP(mm, hlen);
   1598  1.86      manu 			if (mm == NULL)
   1599  1.86      manu 				goto fail1;
   1600  1.60    itojun 
   1601  1.67    itojun 			/*
   1602  1.67    itojun 			 * Send message to routing daemon to install
   1603  1.67    itojun 			 * a route into the kernel table
   1604  1.67    itojun 			 */
   1605  1.15   mycroft 
   1606  1.67    itojun 			im = mtod(mm, struct igmpmsg *);
   1607  1.67    itojun 			im->im_msgtype = IGMPMSG_NOCACHE;
   1608  1.67    itojun 			im->im_mbz = 0;
   1609  1.86      manu 			im->im_vif = vifi;
   1610  1.67    itojun 
   1611  1.67    itojun 			mrtstat.mrts_upcalls++;
   1612  1.67    itojun 
   1613  1.86      manu 			sin.sin_addr = ip->ip_src;
   1614  1.67    itojun 			if (socket_send(ip_mrouter, mm, &sin) < 0) {
   1615  1.67    itojun 				log(LOG_WARNING,
   1616  1.67    itojun 				    "ip_mforward: ip_mrouter socket queue full\n");
   1617  1.67    itojun 				++mrtstat.mrts_upq_sockfull;
   1618  1.86      manu 			fail1:
   1619  1.86      manu 				free(rt, M_MRTABLE);
   1620  1.86      manu 			fail:
   1621  1.67    itojun 				free(rte, M_MRTABLE);
   1622  1.67    itojun 				m_freem(mb0);
   1623  1.67    itojun 				splx(s);
   1624  1.67    itojun 				return (ENOBUFS);
   1625  1.67    itojun 			}
   1626  1.15   mycroft 
   1627  1.67    itojun 			/* insert new entry at head of hash chain */
   1628  1.67    itojun 			rt->mfc_origin = ip->ip_src;
   1629  1.67    itojun 			rt->mfc_mcastgrp = ip->ip_dst;
   1630  1.67    itojun 			rt->mfc_pkt_cnt = 0;
   1631  1.67    itojun 			rt->mfc_byte_cnt = 0;
   1632  1.67    itojun 			rt->mfc_wrong_if = 0;
   1633  1.67    itojun 			rt->mfc_expire = UPCALL_EXPIRE;
   1634  1.67    itojun 			nexpire[hash]++;
   1635  1.86      manu 			for (i = 0; i < numvifs; i++) {
   1636  1.67    itojun 				rt->mfc_ttls[i] = 0;
   1637  1.86      manu 				rt->mfc_flags[i] = 0;
   1638  1.86      manu 			}
   1639  1.67    itojun 			rt->mfc_parent = -1;
   1640  1.67    itojun 
   1641  1.86      manu 			/* clear the RP address */
   1642  1.86      manu 			rt->mfc_rp = zeroin_addr;
   1643  1.86      manu 
   1644  1.86      manu 			rt->mfc_bw_meter = NULL;
   1645  1.86      manu 
   1646  1.67    itojun 			/* link into table */
   1647  1.67    itojun 			LIST_INSERT_HEAD(&mfchashtbl[hash], rt, mfc_hash);
   1648  1.67    itojun 			/* Add this entry to the end of the queue */
   1649  1.67    itojun 			rt->mfc_stall = rte;
   1650  1.67    itojun 		} else {
   1651  1.67    itojun 			/* determine if q has overflowed */
   1652  1.67    itojun 			struct rtdetq **p;
   1653  1.67    itojun 			int npkts = 0;
   1654  1.67    itojun 
   1655  1.86      manu 			/*
   1656  1.86      manu 			 * XXX ouch! we need to append to the list, but we
   1657  1.86      manu 			 * only have a pointer to the front, so we have to
   1658  1.86      manu 			 * scan the entire list every time.
   1659  1.86      manu 			 */
   1660  1.86      manu 			for (p = &rt->mfc_stall; *p != NULL; p = &(*p)->next)
   1661  1.67    itojun 				if (++npkts > MAX_UPQ) {
   1662  1.67    itojun 					mrtstat.mrts_upq_ovflw++;
   1663  1.86      manu 				non_fatal:
   1664  1.67    itojun 					free(rte, M_MRTABLE);
   1665  1.67    itojun 					m_freem(mb0);
   1666  1.67    itojun 					splx(s);
   1667  1.67    itojun 					return (0);
   1668  1.67    itojun 				}
   1669  1.15   mycroft 
   1670  1.67    itojun 			/* Add this entry to the end of the queue */
   1671  1.67    itojun 			*p = rte;
   1672  1.67    itojun 		}
   1673  1.15   mycroft 
   1674  1.86      manu 		rte->next = NULL;
   1675  1.67    itojun 		rte->m = mb0;
   1676  1.67    itojun 		rte->ifp = ifp;
   1677  1.15   mycroft #ifdef UPCALL_TIMING
   1678  1.67    itojun 		rte->t = tp;
   1679  1.15   mycroft #endif /* UPCALL_TIMING */
   1680  1.15   mycroft 
   1681  1.67    itojun 		splx(s);
   1682  1.15   mycroft 
   1683  1.67    itojun 		return (0);
   1684  1.67    itojun 	}
   1685   1.1   hpeyerl }
   1686   1.1   hpeyerl 
   1687  1.15   mycroft 
   1688  1.25  christos /*ARGSUSED*/
   1689   1.1   hpeyerl static void
   1690  1.25  christos expire_upcalls(v)
   1691  1.25  christos 	void *v;
   1692   1.1   hpeyerl {
   1693  1.15   mycroft 	int i;
   1694  1.15   mycroft 	int s;
   1695  1.15   mycroft 
   1696  1.24   mycroft 	s = splsoftnet();
   1697  1.15   mycroft 
   1698  1.15   mycroft 	for (i = 0; i < MFCTBLSIZ; i++) {
   1699  1.48  augustss 		struct mfc *rt, *nrt;
   1700  1.15   mycroft 
   1701  1.15   mycroft 		if (nexpire[i] == 0)
   1702  1.15   mycroft 			continue;
   1703  1.15   mycroft 
   1704  1.57      matt 		for (rt = LIST_FIRST(&mfchashtbl[i]); rt; rt = nrt) {
   1705  1.57      matt 			nrt = LIST_NEXT(rt, mfc_hash);
   1706   1.1   hpeyerl 
   1707  1.67    itojun 			if (rt->mfc_expire == 0 || --rt->mfc_expire > 0)
   1708  1.15   mycroft 				continue;
   1709  1.15   mycroft 			nexpire[i]--;
   1710  1.15   mycroft 
   1711  1.86      manu 			/*
   1712  1.86      manu 			 * free the bw_meter entries
   1713  1.86      manu 			 */
   1714  1.86      manu 			while (rt->mfc_bw_meter != NULL) {
   1715  1.86      manu 				struct bw_meter *x = rt->mfc_bw_meter;
   1716  1.86      manu 
   1717  1.86      manu 				rt->mfc_bw_meter = x->bm_mfc_next;
   1718  1.86      manu 				free(x, M_BWMETER);
   1719  1.86      manu 			}
   1720  1.86      manu 
   1721  1.15   mycroft 			++mrtstat.mrts_cache_cleanups;
   1722  1.15   mycroft 			if (mrtdebug & DEBUG_EXPIRE)
   1723  1.15   mycroft 				log(LOG_DEBUG,
   1724  1.30   mycroft 				    "expire_upcalls: expiring (%x %x)\n",
   1725  1.15   mycroft 				    ntohl(rt->mfc_origin.s_addr),
   1726  1.15   mycroft 				    ntohl(rt->mfc_mcastgrp.s_addr));
   1727   1.1   hpeyerl 
   1728  1.15   mycroft 			expire_mfc(rt);
   1729  1.15   mycroft 		}
   1730  1.15   mycroft 	}
   1731   1.1   hpeyerl 
   1732  1.15   mycroft 	splx(s);
   1733  1.47   thorpej 	callout_reset(&expire_upcalls_ch, EXPIRE_TIMEOUT,
   1734  1.47   thorpej 	    expire_upcalls, NULL);
   1735   1.1   hpeyerl }
   1736   1.1   hpeyerl 
   1737  1.15   mycroft /*
   1738  1.15   mycroft  * Packet forwarding routine once entry in the cache is made
   1739  1.15   mycroft  */
   1740  1.15   mycroft static int
   1741  1.15   mycroft #ifdef RSVP_ISI
   1742  1.15   mycroft ip_mdq(m, ifp, rt, xmt_vif)
   1743  1.15   mycroft #else
   1744  1.15   mycroft ip_mdq(m, ifp, rt)
   1745  1.15   mycroft #endif /* RSVP_ISI */
   1746  1.67    itojun 	struct mbuf *m;
   1747  1.67    itojun 	struct ifnet *ifp;
   1748  1.67    itojun 	struct mfc *rt;
   1749  1.15   mycroft #ifdef RSVP_ISI
   1750  1.67    itojun 	vifi_t xmt_vif;
   1751  1.15   mycroft #endif /* RSVP_ISI */
   1752   1.1   hpeyerl {
   1753  1.67    itojun 	struct ip  *ip = mtod(m, struct ip *);
   1754  1.67    itojun 	vifi_t vifi;
   1755  1.67    itojun 	struct vif *vifp;
   1756  1.74    itojun 	int plen = ntohs(ip->ip_len) - (ip->ip_hl << 2);
   1757  1.15   mycroft 
   1758  1.15   mycroft /*
   1759  1.15   mycroft  * Macro to send packet on vif.  Since RSVP packets don't get counted on
   1760  1.15   mycroft  * input, they shouldn't get counted on output, so statistics keeping is
   1761  1.56       wiz  * separate.
   1762  1.15   mycroft  */
   1763  1.86      manu #define MC_SEND(ip, vifp, m) do {					\
   1764  1.86      manu 	if ((vifp)->v_flags & VIFF_TUNNEL)				\
   1765  1.86      manu 		encap_send((ip), (vifp), (m));				\
   1766  1.86      manu 	else								\
   1767  1.86      manu 		phyint_send((ip), (vifp), (m));				\
   1768  1.68    itojun } while (/*CONSTCOND*/ 0)
   1769   1.1   hpeyerl 
   1770  1.15   mycroft #ifdef RSVP_ISI
   1771  1.67    itojun 	/*
   1772  1.67    itojun 	 * If xmt_vif is not -1, send on only the requested vif.
   1773  1.67    itojun 	 *
   1774  1.67    itojun 	 * (since vifi_t is u_short, -1 becomes MAXUSHORT, which > numvifs.
   1775  1.67    itojun 	 */
   1776  1.67    itojun 	if (xmt_vif < numvifs) {
   1777  1.86      manu #ifdef PIM
   1778  1.86      manu 		if (viftable[xmt_vif].v_flags & VIFF_REGISTER)
   1779  1.86      manu 			pim_register_send(ip, viftable + xmt_vif, m, rt);
   1780  1.86      manu 		else
   1781  1.86      manu #endif
   1782  1.67    itojun 		MC_SEND(ip, viftable + xmt_vif, m);
   1783  1.67    itojun 		return (1);
   1784  1.67    itojun 	}
   1785  1.15   mycroft #endif /* RSVP_ISI */
   1786  1.15   mycroft 
   1787  1.67    itojun 	/*
   1788  1.67    itojun 	 * Don't forward if it didn't arrive from the parent vif for its origin.
   1789  1.67    itojun 	 */
   1790  1.67    itojun 	vifi = rt->mfc_parent;
   1791  1.67    itojun 	if ((vifi >= numvifs) || (viftable[vifi].v_ifp != ifp)) {
   1792  1.67    itojun 		/* came in the wrong interface */
   1793  1.67    itojun 		if (mrtdebug & DEBUG_FORWARD)
   1794  1.67    itojun 			log(LOG_DEBUG, "wrong if: ifp %p vifi %d vififp %p\n",
   1795  1.70    itojun 			    ifp, vifi,
   1796  1.70    itojun 			    vifi >= numvifs ? 0 : viftable[vifi].v_ifp);
   1797  1.67    itojun 		++mrtstat.mrts_wrong_if;
   1798  1.67    itojun 		++rt->mfc_wrong_if;
   1799  1.67    itojun 		/*
   1800  1.86      manu 		 * If we are doing PIM assert processing, send a message
   1801  1.86      manu 		 * to the routing daemon.
   1802  1.86      manu 		 *
   1803  1.86      manu 		 * XXX: A PIM-SM router needs the WRONGVIF detection so it
   1804  1.86      manu 		 * can complete the SPT switch, regardless of the type
   1805  1.86      manu 		 * of the iif (broadcast media, GRE tunnel, etc).
   1806  1.67    itojun 		 */
   1807  1.86      manu 		if (pim_assert && (vifi < numvifs) && viftable[vifi].v_ifp) {
   1808  1.67    itojun 			struct timeval now;
   1809  1.67    itojun 			u_int32_t delta;
   1810  1.67    itojun 
   1811  1.86      manu #ifdef PIM
   1812  1.86      manu 			if (ifp == &multicast_register_if)
   1813  1.86      manu 				pimstat.pims_rcv_registers_wrongiif++;
   1814  1.86      manu #endif
   1815  1.86      manu 
   1816  1.86      manu 			/* Get vifi for the incoming packet */
   1817  1.86      manu 			for (vifi = 0;
   1818  1.86      manu 			     vifi < numvifs && viftable[vifi].v_ifp != ifp;
   1819  1.86      manu 			     vifi++)
   1820  1.86      manu 			    ;
   1821  1.86      manu 			if (vifi >= numvifs) {
   1822  1.86      manu 				/* The iif is not found: ignore the packet. */
   1823  1.86      manu 				return (0);
   1824  1.86      manu 			}
   1825  1.86      manu 
   1826  1.86      manu 			if (rt->mfc_flags[vifi] &
   1827  1.86      manu 			    MRT_MFC_FLAGS_DISABLE_WRONGVIF) {
   1828  1.86      manu 				/* WRONGVIF disabled: ignore the packet */
   1829  1.86      manu 				return (0);
   1830  1.86      manu 			}
   1831  1.86      manu 
   1832  1.67    itojun 			microtime(&now);
   1833  1.67    itojun 
   1834  1.67    itojun 			TV_DELTA(rt->mfc_last_assert, now, delta);
   1835  1.67    itojun 
   1836  1.67    itojun 			if (delta > ASSERT_MSG_TIME) {
   1837  1.86      manu 				struct igmpmsg *im;
   1838  1.86      manu 				int hlen = ip->ip_hl << 2;
   1839  1.86      manu 				struct mbuf *mm = m_copy(m, 0, hlen);
   1840  1.86      manu 
   1841  1.67    itojun 				M_PULLUP(mm, hlen);
   1842  1.86      manu 				if (mm == NULL)
   1843  1.67    itojun 					return (ENOBUFS);
   1844  1.67    itojun 
   1845  1.67    itojun 				rt->mfc_last_assert = now;
   1846  1.67    itojun 
   1847  1.67    itojun 				im = mtod(mm, struct igmpmsg *);
   1848  1.67    itojun 				im->im_msgtype	= IGMPMSG_WRONGVIF;
   1849  1.67    itojun 				im->im_mbz	= 0;
   1850  1.67    itojun 				im->im_vif	= vifi;
   1851  1.15   mycroft 
   1852  1.86      manu 				mrtstat.mrts_upcalls++;
   1853  1.86      manu 
   1854  1.67    itojun 				sin.sin_addr = im->im_src;
   1855  1.86      manu 				if (socket_send(ip_mrouter, mm, &sin) < 0) {
   1856  1.86      manu 					log(LOG_WARNING,
   1857  1.86      manu 					    "ip_mforward: ip_mrouter socket queue full\n");
   1858  1.86      manu 					++mrtstat.mrts_upq_sockfull;
   1859  1.86      manu 					return (ENOBUFS);
   1860  1.86      manu 				}
   1861  1.67    itojun 			}
   1862  1.67    itojun 		}
   1863  1.67    itojun 		return (0);
   1864  1.15   mycroft 	}
   1865  1.15   mycroft 
   1866  1.67    itojun 	/* If I sourced this packet, it counts as output, else it was input. */
   1867  1.67    itojun 	if (in_hosteq(ip->ip_src, viftable[vifi].v_lcl_addr)) {
   1868  1.67    itojun 		viftable[vifi].v_pkt_out++;
   1869  1.67    itojun 		viftable[vifi].v_bytes_out += plen;
   1870  1.67    itojun 	} else {
   1871  1.67    itojun 		viftable[vifi].v_pkt_in++;
   1872  1.67    itojun 		viftable[vifi].v_bytes_in += plen;
   1873   1.1   hpeyerl 	}
   1874  1.67    itojun 	rt->mfc_pkt_cnt++;
   1875  1.67    itojun 	rt->mfc_byte_cnt += plen;
   1876  1.67    itojun 
   1877  1.67    itojun 	/*
   1878  1.67    itojun 	 * For each vif, decide if a copy of the packet should be forwarded.
   1879  1.67    itojun 	 * Forward if:
   1880  1.67    itojun 	 *		- the ttl exceeds the vif's threshold
   1881  1.67    itojun 	 *		- there are group members downstream on interface
   1882  1.67    itojun 	 */
   1883  1.67    itojun 	for (vifp = viftable, vifi = 0; vifi < numvifs; vifp++, vifi++)
   1884  1.67    itojun 		if ((rt->mfc_ttls[vifi] > 0) &&
   1885  1.86      manu 			(ip->ip_ttl > rt->mfc_ttls[vifi])) {
   1886  1.67    itojun 			vifp->v_pkt_out++;
   1887  1.67    itojun 			vifp->v_bytes_out += plen;
   1888  1.86      manu #ifdef PIM
   1889  1.86      manu 			if (vifp->v_flags & VIFF_REGISTER)
   1890  1.86      manu 				pim_register_send(ip, vifp, m, rt);
   1891  1.86      manu 			else
   1892  1.86      manu #endif
   1893  1.67    itojun 			MC_SEND(ip, vifp, m);
   1894  1.67    itojun 		}
   1895   1.1   hpeyerl 
   1896  1.86      manu 	/*
   1897  1.86      manu 	 * Perform upcall-related bw measuring.
   1898  1.86      manu 	 */
   1899  1.86      manu 	if (rt->mfc_bw_meter != NULL) {
   1900  1.86      manu 		struct bw_meter *x;
   1901  1.86      manu 		struct timeval now;
   1902  1.86      manu 
   1903  1.86      manu 		microtime(&now);
   1904  1.86      manu 		for (x = rt->mfc_bw_meter; x != NULL; x = x->bm_mfc_next)
   1905  1.86      manu 			bw_meter_receive_packet(x, plen, &now);
   1906  1.86      manu 	}
   1907  1.86      manu 
   1908  1.67    itojun 	return (0);
   1909  1.15   mycroft }
   1910  1.15   mycroft 
   1911  1.15   mycroft #ifdef RSVP_ISI
   1912  1.15   mycroft /*
   1913  1.86      manu  * check if a vif number is legal/ok. This is used by ip_output.
   1914  1.15   mycroft  */
   1915  1.15   mycroft int
   1916  1.15   mycroft legal_vif_num(vif)
   1917  1.67    itojun 	int vif;
   1918  1.15   mycroft {
   1919  1.67    itojun 	if (vif >= 0 && vif < numvifs)
   1920  1.67    itojun 		return (1);
   1921  1.67    itojun 	else
   1922  1.67    itojun 		return (0);
   1923  1.15   mycroft }
   1924  1.15   mycroft #endif /* RSVP_ISI */
   1925  1.15   mycroft 
   1926  1.15   mycroft static void
   1927  1.15   mycroft phyint_send(ip, vifp, m)
   1928  1.15   mycroft 	struct ip *ip;
   1929  1.15   mycroft 	struct vif *vifp;
   1930  1.15   mycroft 	struct mbuf *m;
   1931  1.15   mycroft {
   1932  1.48  augustss 	struct mbuf *mb_copy;
   1933  1.48  augustss 	int hlen = ip->ip_hl << 2;
   1934  1.15   mycroft 
   1935  1.15   mycroft 	/*
   1936  1.15   mycroft 	 * Make a new reference to the packet; make sure that
   1937  1.15   mycroft 	 * the IP header is actually copied, not just referenced,
   1938  1.15   mycroft 	 * so that ip_output() only scribbles on the copy.
   1939  1.15   mycroft 	 */
   1940  1.12    brezak 	mb_copy = m_copy(m, 0, M_COPYALL);
   1941  1.15   mycroft 	M_PULLUP(mb_copy, hlen);
   1942  1.86      manu 	if (mb_copy == NULL)
   1943   1.1   hpeyerl 		return;
   1944   1.1   hpeyerl 
   1945  1.15   mycroft 	if (vifp->v_rate_limit <= 0)
   1946  1.15   mycroft 		tbf_send_packet(vifp, mb_copy);
   1947  1.15   mycroft 	else
   1948  1.62    itojun 		tbf_control(vifp, mb_copy, mtod(mb_copy, struct ip *),
   1949  1.62    itojun 		    ntohs(ip->ip_len));
   1950  1.12    brezak }
   1951  1.12    brezak 
   1952  1.12    brezak static void
   1953  1.12    brezak encap_send(ip, vifp, m)
   1954  1.48  augustss 	struct ip *ip;
   1955  1.48  augustss 	struct vif *vifp;
   1956  1.48  augustss 	struct mbuf *m;
   1957  1.48  augustss {
   1958  1.48  augustss 	struct mbuf *mb_copy;
   1959  1.48  augustss 	struct ip *ip_copy;
   1960  1.62    itojun 	int i, len = ntohs(ip->ip_len) + sizeof(multicast_encap_iphdr);
   1961  1.12    brezak 
   1962  1.86      manu 	/* Take care of delayed checksums */
   1963  1.86      manu 	if (m->m_pkthdr.csum_flags & (M_CSUM_TCPv4|M_CSUM_UDPv4)) {
   1964  1.86      manu 		in_delayed_cksum(m);
   1965  1.86      manu 		m->m_pkthdr.csum_flags &= ~(M_CSUM_TCPv4|M_CSUM_UDPv4);
   1966  1.86      manu 	}
   1967  1.86      manu 
   1968  1.12    brezak 	/*
   1969  1.12    brezak 	 * copy the old packet & pullup it's IP header into the
   1970  1.12    brezak 	 * new mbuf so we can modify it.  Try to fill the new
   1971  1.12    brezak 	 * mbuf since if we don't the ethernet driver will.
   1972  1.12    brezak 	 */
   1973  1.15   mycroft 	MGETHDR(mb_copy, M_DONTWAIT, MT_DATA);
   1974  1.86      manu 	if (mb_copy == NULL)
   1975  1.12    brezak 		return;
   1976  1.15   mycroft 	mb_copy->m_data += max_linkhdr;
   1977  1.15   mycroft 	mb_copy->m_pkthdr.len = len;
   1978  1.12    brezak 	mb_copy->m_len = sizeof(multicast_encap_iphdr);
   1979  1.60    itojun 
   1980  1.86      manu 	if ((mb_copy->m_next = m_copy(m, 0, M_COPYALL)) == NULL) {
   1981  1.12    brezak 		m_freem(mb_copy);
   1982  1.12    brezak 		return;
   1983  1.12    brezak 	}
   1984  1.15   mycroft 	i = MHLEN - max_linkhdr;
   1985  1.12    brezak 	if (i > len)
   1986  1.12    brezak 		i = len;
   1987  1.12    brezak 	mb_copy = m_pullup(mb_copy, i);
   1988  1.86      manu 	if (mb_copy == NULL)
   1989  1.12    brezak 		return;
   1990  1.60    itojun 
   1991  1.12    brezak 	/*
   1992  1.12    brezak 	 * fill in the encapsulating IP header.
   1993  1.12    brezak 	 */
   1994  1.12    brezak 	ip_copy = mtod(mb_copy, struct ip *);
   1995  1.12    brezak 	*ip_copy = multicast_encap_iphdr;
   1996  1.81  jonathan 	ip_copy->ip_id = ip_newid();
   1997  1.62    itojun 	ip_copy->ip_len = htons(len);
   1998  1.12    brezak 	ip_copy->ip_src = vifp->v_lcl_addr;
   1999  1.12    brezak 	ip_copy->ip_dst = vifp->v_rmt_addr;
   2000  1.60    itojun 
   2001  1.12    brezak 	/*
   2002  1.12    brezak 	 * turn the encapsulated IP header back into a valid one.
   2003  1.12    brezak 	 */
   2004  1.12    brezak 	ip = (struct ip *)((caddr_t)ip_copy + sizeof(multicast_encap_iphdr));
   2005  1.12    brezak 	--ip->ip_ttl;
   2006  1.12    brezak 	ip->ip_sum = 0;
   2007  1.12    brezak 	mb_copy->m_data += sizeof(multicast_encap_iphdr);
   2008  1.12    brezak 	ip->ip_sum = in_cksum(mb_copy, ip->ip_hl << 2);
   2009  1.12    brezak 	mb_copy->m_data -= sizeof(multicast_encap_iphdr);
   2010  1.60    itojun 
   2011  1.15   mycroft 	if (vifp->v_rate_limit <= 0)
   2012  1.15   mycroft 		tbf_send_packet(vifp, mb_copy);
   2013  1.15   mycroft 	else
   2014  1.62    itojun 		tbf_control(vifp, mb_copy, ip, ntohs(ip_copy->ip_len));
   2015  1.12    brezak }
   2016  1.12    brezak 
   2017  1.12    brezak /*
   2018  1.54    itojun  * De-encapsulate a packet and feed it back through ip input.
   2019  1.12    brezak  */
   2020  1.54    itojun static void
   2021  1.54    itojun vif_input(struct mbuf *m, ...)
   2022  1.25  christos {
   2023  1.54    itojun 	int off, proto;
   2024  1.54    itojun 	va_list ap;
   2025  1.54    itojun 	struct vif *vifp;
   2026  1.48  augustss 	int s;
   2027  1.48  augustss 	struct ifqueue *ifq;
   2028  1.25  christos 
   2029  1.54    itojun 	va_start(ap, m);
   2030  1.54    itojun 	off = va_arg(ap, int);
   2031  1.54    itojun 	proto = va_arg(ap, int);
   2032  1.54    itojun 	va_end(ap);
   2033  1.22   mycroft 
   2034  1.54    itojun 	vifp = (struct vif *)encap_getarg(m);
   2035  1.54    itojun 	if (!vifp || proto != AF_INET) {
   2036  1.54    itojun 		m_freem(m);
   2037  1.54    itojun 		mrtstat.mrts_bad_tunnel++;
   2038  1.54    itojun 		return;
   2039  1.12    brezak 	}
   2040  1.22   mycroft 
   2041  1.54    itojun 	m_adj(m, off);
   2042  1.15   mycroft 	m->m_pkthdr.rcvif = vifp->v_ifp;
   2043  1.12    brezak 	ifq = &ipintrq;
   2044  1.53   thorpej 	s = splnet();
   2045  1.12    brezak 	if (IF_QFULL(ifq)) {
   2046  1.12    brezak 		IF_DROP(ifq);
   2047  1.12    brezak 		m_freem(m);
   2048  1.12    brezak 	} else {
   2049  1.12    brezak 		IF_ENQUEUE(ifq, m);
   2050  1.12    brezak 		/*
   2051  1.12    brezak 		 * normally we would need a "schednetisr(NETISR_IP)"
   2052  1.12    brezak 		 * here but we were called by ip_input and it is going
   2053  1.12    brezak 		 * to loop back & try to dequeue the packet we just
   2054  1.12    brezak 		 * queued as soon as we return so we avoid the
   2055  1.12    brezak 		 * unnecessary software interrrupt.
   2056  1.12    brezak 		 */
   2057  1.12    brezak 	}
   2058  1.12    brezak 	splx(s);
   2059  1.54    itojun }
   2060  1.54    itojun 
   2061  1.54    itojun /*
   2062  1.54    itojun  * Check if the packet should be grabbed by us.
   2063  1.54    itojun  */
   2064  1.54    itojun static int
   2065  1.54    itojun vif_encapcheck(m, off, proto, arg)
   2066  1.54    itojun 	const struct mbuf *m;
   2067  1.54    itojun 	int off;
   2068  1.54    itojun 	int proto;
   2069  1.54    itojun 	void *arg;
   2070  1.54    itojun {
   2071  1.54    itojun 	struct vif *vifp;
   2072  1.54    itojun 	struct ip ip;
   2073  1.54    itojun 
   2074  1.54    itojun #ifdef DIAGNOSTIC
   2075  1.54    itojun 	if (!arg || proto != IPPROTO_IPV4)
   2076  1.54    itojun 		panic("unexpected arg in vif_encapcheck");
   2077  1.54    itojun #endif
   2078  1.54    itojun 
   2079  1.54    itojun 	/*
   2080  1.54    itojun 	 * do not grab the packet if it's not to a multicast destination or if
   2081  1.54    itojun 	 * we don't have an encapsulating tunnel with the source.
   2082  1.54    itojun 	 * Note:  This code assumes that the remote site IP address
   2083  1.54    itojun 	 * uniquely identifies the tunnel (i.e., that this site has
   2084  1.54    itojun 	 * at most one tunnel with the remote site).
   2085  1.54    itojun 	 */
   2086  1.54    itojun 
   2087  1.54    itojun 	/* LINTED const cast */
   2088  1.54    itojun 	m_copydata((struct mbuf *)m, off, sizeof(ip), (caddr_t)&ip);
   2089  1.54    itojun 	if (!IN_MULTICAST(ip.ip_dst.s_addr))
   2090  1.54    itojun 		return 0;
   2091  1.54    itojun 
   2092  1.54    itojun 	/* LINTED const cast */
   2093  1.54    itojun 	m_copydata((struct mbuf *)m, 0, sizeof(ip), (caddr_t)&ip);
   2094  1.54    itojun 	if (!in_hosteq(ip.ip_src, last_encap_src)) {
   2095  1.54    itojun 		vifp = (struct vif *)arg;
   2096  1.54    itojun 		if (vifp->v_flags & VIFF_TUNNEL &&
   2097  1.54    itojun 		    in_hosteq(vifp->v_rmt_addr, ip.ip_src))
   2098  1.54    itojun 			;
   2099  1.54    itojun 		else
   2100  1.54    itojun 			return 0;
   2101  1.54    itojun 		last_encap_vif = vifp;
   2102  1.54    itojun 		last_encap_src = ip.ip_src;
   2103  1.54    itojun 	} else
   2104  1.54    itojun 		vifp = last_encap_vif;
   2105  1.54    itojun 
   2106  1.54    itojun 	/* 32bit match, since we have checked ip_src only */
   2107  1.54    itojun 	return 32;
   2108   1.1   hpeyerl }
   2109  1.15   mycroft 
   2110  1.15   mycroft /*
   2111  1.15   mycroft  * Token bucket filter module
   2112  1.15   mycroft  */
   2113  1.15   mycroft static void
   2114  1.31   mycroft tbf_control(vifp, m, ip, len)
   2115  1.48  augustss 	struct vif *vifp;
   2116  1.48  augustss 	struct mbuf *m;
   2117  1.48  augustss 	struct ip *ip;
   2118  1.48  augustss 	u_int32_t len;
   2119  1.15   mycroft {
   2120  1.15   mycroft 
   2121  1.31   mycroft 	if (len > MAX_BKT_SIZE) {
   2122  1.31   mycroft 		/* drop if packet is too large */
   2123  1.31   mycroft 		mrtstat.mrts_pkt2large++;
   2124  1.31   mycroft 		m_freem(m);
   2125  1.31   mycroft 		return;
   2126  1.31   mycroft 	}
   2127  1.31   mycroft 
   2128  1.21   mycroft 	tbf_update_tokens(vifp);
   2129  1.15   mycroft 
   2130  1.21   mycroft 	/*
   2131  1.21   mycroft 	 * If there are enough tokens, and the queue is empty, send this packet
   2132  1.21   mycroft 	 * out immediately.  Otherwise, try to insert it on this vif's queue.
   2133  1.21   mycroft 	 */
   2134  1.31   mycroft 	if (vifp->tbf_q_len == 0) {
   2135  1.31   mycroft 		if (len <= vifp->tbf_n_tok) {
   2136  1.31   mycroft 			vifp->tbf_n_tok -= len;
   2137  1.21   mycroft 			tbf_send_packet(vifp, m);
   2138  1.21   mycroft 		} else {
   2139  1.21   mycroft 			/* queue packet and timeout till later */
   2140  1.31   mycroft 			tbf_queue(vifp, m);
   2141  1.47   thorpej 			callout_reset(&vifp->v_repq_ch, TBF_REPROCESS,
   2142  1.47   thorpej 			    tbf_reprocess_q, vifp);
   2143  1.21   mycroft 		}
   2144  1.15   mycroft 	} else {
   2145  1.31   mycroft 		if (vifp->tbf_q_len >= vifp->tbf_max_q_len &&
   2146  1.21   mycroft 		    !tbf_dq_sel(vifp, ip)) {
   2147  1.86      manu 			/* queue full, and couldn't make room */
   2148  1.21   mycroft 			mrtstat.mrts_q_overflow++;
   2149  1.21   mycroft 			m_freem(m);
   2150  1.21   mycroft 		} else {
   2151  1.21   mycroft 			/* queue length low enough, or made room */
   2152  1.31   mycroft 			tbf_queue(vifp, m);
   2153  1.21   mycroft 			tbf_process_q(vifp);
   2154  1.21   mycroft 		}
   2155  1.15   mycroft 	}
   2156  1.15   mycroft }
   2157  1.15   mycroft 
   2158  1.60    itojun /*
   2159  1.15   mycroft  * adds a packet to the queue at the interface
   2160  1.15   mycroft  */
   2161  1.15   mycroft static void
   2162  1.60    itojun tbf_queue(vifp, m)
   2163  1.48  augustss 	struct vif *vifp;
   2164  1.48  augustss 	struct mbuf *m;
   2165  1.15   mycroft {
   2166  1.48  augustss 	int s = splsoftnet();
   2167  1.15   mycroft 
   2168  1.31   mycroft 	/* insert at tail */
   2169  1.31   mycroft 	*vifp->tbf_t = m;
   2170  1.31   mycroft 	vifp->tbf_t = &m->m_nextpkt;
   2171  1.31   mycroft 	vifp->tbf_q_len++;
   2172  1.15   mycroft 
   2173  1.31   mycroft 	splx(s);
   2174  1.15   mycroft }
   2175  1.15   mycroft 
   2176  1.15   mycroft 
   2177  1.60    itojun /*
   2178  1.15   mycroft  * processes the queue at the interface
   2179  1.15   mycroft  */
   2180  1.15   mycroft static void
   2181  1.15   mycroft tbf_process_q(vifp)
   2182  1.48  augustss 	struct vif *vifp;
   2183  1.15   mycroft {
   2184  1.48  augustss 	struct mbuf *m;
   2185  1.48  augustss 	int len;
   2186  1.48  augustss 	int s = splsoftnet();
   2187  1.15   mycroft 
   2188  1.31   mycroft 	/*
   2189  1.31   mycroft 	 * Loop through the queue at the interface and send as many packets
   2190  1.31   mycroft 	 * as possible.
   2191  1.31   mycroft 	 */
   2192  1.86      manu 	for (m = vifp->tbf_q; m != NULL; m = vifp->tbf_q) {
   2193  1.62    itojun 		len = ntohs(mtod(m, struct ip *)->ip_len);
   2194  1.31   mycroft 
   2195  1.31   mycroft 		/* determine if the packet can be sent */
   2196  1.31   mycroft 		if (len <= vifp->tbf_n_tok) {
   2197  1.31   mycroft 			/* if so,
   2198  1.31   mycroft 			 * reduce no of tokens, dequeue the packet,
   2199  1.31   mycroft 			 * send the packet.
   2200  1.31   mycroft 			 */
   2201  1.86      manu 			if ((vifp->tbf_q = m->m_nextpkt) == NULL)
   2202  1.31   mycroft 				vifp->tbf_t = &vifp->tbf_q;
   2203  1.31   mycroft 			--vifp->tbf_q_len;
   2204  1.15   mycroft 
   2205  1.86      manu 			m->m_nextpkt = NULL;
   2206  1.31   mycroft 			vifp->tbf_n_tok -= len;
   2207  1.31   mycroft 			tbf_send_packet(vifp, m);
   2208  1.31   mycroft 		} else
   2209  1.31   mycroft 			break;
   2210  1.31   mycroft 	}
   2211  1.31   mycroft 	splx(s);
   2212  1.15   mycroft }
   2213  1.15   mycroft 
   2214  1.15   mycroft static void
   2215  1.20   mycroft tbf_reprocess_q(arg)
   2216  1.20   mycroft 	void *arg;
   2217  1.15   mycroft {
   2218  1.48  augustss 	struct vif *vifp = arg;
   2219  1.15   mycroft 
   2220  1.86      manu 	if (ip_mrouter == NULL)
   2221  1.20   mycroft 		return;
   2222  1.15   mycroft 
   2223  1.20   mycroft 	tbf_update_tokens(vifp);
   2224  1.20   mycroft 	tbf_process_q(vifp);
   2225  1.15   mycroft 
   2226  1.31   mycroft 	if (vifp->tbf_q_len != 0)
   2227  1.47   thorpej 		callout_reset(&vifp->v_repq_ch, TBF_REPROCESS,
   2228  1.47   thorpej 		    tbf_reprocess_q, vifp);
   2229  1.15   mycroft }
   2230  1.15   mycroft 
   2231  1.15   mycroft /* function that will selectively discard a member of the queue
   2232  1.31   mycroft  * based on the precedence value and the priority
   2233  1.15   mycroft  */
   2234  1.15   mycroft static int
   2235  1.15   mycroft tbf_dq_sel(vifp, ip)
   2236  1.48  augustss 	struct vif *vifp;
   2237  1.48  augustss 	struct ip *ip;
   2238  1.15   mycroft {
   2239  1.48  augustss 	u_int p;
   2240  1.48  augustss 	struct mbuf **mp, *m;
   2241  1.48  augustss 	int s = splsoftnet();
   2242  1.31   mycroft 
   2243  1.31   mycroft 	p = priority(vifp, ip);
   2244  1.31   mycroft 
   2245  1.31   mycroft 	for (mp = &vifp->tbf_q, m = *mp;
   2246  1.86      manu 	    m != NULL;
   2247  1.31   mycroft 	    mp = &m->m_nextpkt, m = *mp) {
   2248  1.31   mycroft 		if (p > priority(vifp, mtod(m, struct ip *))) {
   2249  1.86      manu 			if ((*mp = m->m_nextpkt) == NULL)
   2250  1.31   mycroft 				vifp->tbf_t = mp;
   2251  1.31   mycroft 			--vifp->tbf_q_len;
   2252  1.31   mycroft 
   2253  1.31   mycroft 			m_freem(m);
   2254  1.31   mycroft 			mrtstat.mrts_drop_sel++;
   2255  1.31   mycroft 			splx(s);
   2256  1.31   mycroft 			return (1);
   2257  1.31   mycroft 		}
   2258  1.15   mycroft 	}
   2259  1.31   mycroft 	splx(s);
   2260  1.31   mycroft 	return (0);
   2261  1.15   mycroft }
   2262  1.15   mycroft 
   2263  1.15   mycroft static void
   2264  1.31   mycroft tbf_send_packet(vifp, m)
   2265  1.48  augustss 	struct vif *vifp;
   2266  1.48  augustss 	struct mbuf *m;
   2267  1.15   mycroft {
   2268  1.31   mycroft 	int error;
   2269  1.31   mycroft 	int s = splsoftnet();
   2270  1.31   mycroft 
   2271  1.31   mycroft 	if (vifp->v_flags & VIFF_TUNNEL) {
   2272  1.31   mycroft 		/* If tunnel options */
   2273  1.86      manu 		ip_output(m, (struct mbuf *)NULL, &vifp->v_route,
   2274  1.78    itojun 		    IP_FORWARDING, (struct ip_moptions *)NULL,
   2275  1.78    itojun 		    (struct socket *)NULL);
   2276  1.31   mycroft 	} else {
   2277  1.31   mycroft 		/* if physical interface option, extract the options and then send */
   2278  1.31   mycroft 		struct ip_moptions imo;
   2279  1.15   mycroft 
   2280  1.31   mycroft 		imo.imo_multicast_ifp = vifp->v_ifp;
   2281  1.31   mycroft 		imo.imo_multicast_ttl = mtod(m, struct ip *)->ip_ttl - 1;
   2282  1.31   mycroft 		imo.imo_multicast_loop = 1;
   2283  1.15   mycroft #ifdef RSVP_ISI
   2284  1.31   mycroft 		imo.imo_multicast_vif = -1;
   2285   1.1   hpeyerl #endif
   2286  1.15   mycroft 
   2287  1.86      manu 		error = ip_output(m, (struct mbuf *)NULL, (struct route *)NULL,
   2288  1.78    itojun 		    IP_FORWARDING|IP_MULTICASTOPTS, &imo,
   2289  1.78    itojun 		    (struct socket *)NULL);
   2290  1.31   mycroft 
   2291  1.31   mycroft 		if (mrtdebug & DEBUG_XMIT)
   2292  1.42   nathanw 			log(LOG_DEBUG, "phyint_send on vif %ld err %d\n",
   2293  1.67    itojun 			    (long)(vifp - viftable), error);
   2294  1.31   mycroft 	}
   2295  1.31   mycroft 	splx(s);
   2296  1.15   mycroft }
   2297  1.15   mycroft 
   2298  1.15   mycroft /* determine the current time and then
   2299  1.15   mycroft  * the elapsed time (between the last time and time now)
   2300  1.15   mycroft  * in milliseconds & update the no. of tokens in the bucket
   2301  1.15   mycroft  */
   2302  1.15   mycroft static void
   2303  1.15   mycroft tbf_update_tokens(vifp)
   2304  1.48  augustss 	struct vif *vifp;
   2305  1.15   mycroft {
   2306  1.31   mycroft 	struct timeval tp;
   2307  1.48  augustss 	u_int32_t tm;
   2308  1.48  augustss 	int s = splsoftnet();
   2309  1.15   mycroft 
   2310  1.31   mycroft 	microtime(&tp);
   2311  1.15   mycroft 
   2312  1.31   mycroft 	TV_DELTA(tp, vifp->tbf_last_pkt_t, tm);
   2313  1.15   mycroft 
   2314  1.31   mycroft 	/*
   2315  1.31   mycroft 	 * This formula is actually
   2316  1.31   mycroft 	 * "time in seconds" * "bytes/second".
   2317  1.31   mycroft 	 *
   2318  1.31   mycroft 	 * (tm / 1000000) * (v_rate_limit * 1000 * (1000/1024) / 8)
   2319  1.31   mycroft 	 *
   2320  1.31   mycroft 	 * The (1000/1024) was introduced in add_vif to optimize
   2321  1.31   mycroft 	 * this divide into a shift.
   2322  1.31   mycroft 	 */
   2323  1.31   mycroft 	vifp->tbf_n_tok += tm * vifp->v_rate_limit / 8192;
   2324  1.31   mycroft 	vifp->tbf_last_pkt_t = tp;
   2325  1.15   mycroft 
   2326  1.31   mycroft 	if (vifp->tbf_n_tok > MAX_BKT_SIZE)
   2327  1.31   mycroft 		vifp->tbf_n_tok = MAX_BKT_SIZE;
   2328  1.15   mycroft 
   2329  1.31   mycroft 	splx(s);
   2330  1.15   mycroft }
   2331  1.15   mycroft 
   2332  1.15   mycroft static int
   2333  1.15   mycroft priority(vifp, ip)
   2334  1.67    itojun 	struct vif *vifp;
   2335  1.67    itojun 	struct ip *ip;
   2336  1.15   mycroft {
   2337  1.86      manu 	int prio = 50;	/* the lowest priority -- default case */
   2338  1.15   mycroft 
   2339  1.67    itojun 	/* temporary hack; may add general packet classifier some day */
   2340  1.60    itojun 
   2341  1.67    itojun 	/*
   2342  1.67    itojun 	 * The UDP port space is divided up into four priority ranges:
   2343  1.67    itojun 	 * [0, 16384)     : unclassified - lowest priority
   2344  1.67    itojun 	 * [16384, 32768) : audio - highest priority
   2345  1.67    itojun 	 * [32768, 49152) : whiteboard - medium priority
   2346  1.67    itojun 	 * [49152, 65536) : video - low priority
   2347  1.67    itojun 	 */
   2348  1.67    itojun 	if (ip->ip_p == IPPROTO_UDP) {
   2349  1.67    itojun 		struct udphdr *udp = (struct udphdr *)(((char *)ip) + (ip->ip_hl << 2));
   2350  1.15   mycroft 
   2351  1.67    itojun 		switch (ntohs(udp->uh_dport) & 0xc000) {
   2352  1.67    itojun 		case 0x4000:
   2353  1.67    itojun 			prio = 70;
   2354  1.67    itojun 			break;
   2355  1.67    itojun 		case 0x8000:
   2356  1.67    itojun 			prio = 60;
   2357  1.67    itojun 			break;
   2358  1.67    itojun 		case 0xc000:
   2359  1.67    itojun 			prio = 55;
   2360  1.67    itojun 			break;
   2361  1.67    itojun 		}
   2362  1.15   mycroft 
   2363  1.67    itojun 		if (tbfdebug > 1)
   2364  1.67    itojun 			log(LOG_DEBUG, "port %x prio %d\n",
   2365  1.67    itojun 			    ntohs(udp->uh_dport), prio);
   2366  1.86      manu 	}
   2367  1.15   mycroft 
   2368  1.67    itojun 	return (prio);
   2369  1.15   mycroft }
   2370  1.15   mycroft 
   2371  1.15   mycroft /*
   2372  1.60    itojun  * End of token bucket filter modifications
   2373  1.15   mycroft  */
   2374  1.15   mycroft #ifdef RSVP_ISI
   2375  1.15   mycroft int
   2376  1.15   mycroft ip_rsvp_vif_init(so, m)
   2377  1.67    itojun 	struct socket *so;
   2378  1.67    itojun 	struct mbuf *m;
   2379  1.15   mycroft {
   2380  1.86      manu 	int vifi, s;
   2381  1.15   mycroft 
   2382  1.67    itojun 	if (rsvpdebug)
   2383  1.67    itojun 		printf("ip_rsvp_vif_init: so_type = %d, pr_protocol = %d\n",
   2384  1.67    itojun 		    so->so_type, so->so_proto->pr_protocol);
   2385  1.15   mycroft 
   2386  1.67    itojun 	if (so->so_type != SOCK_RAW ||
   2387  1.67    itojun 	    so->so_proto->pr_protocol != IPPROTO_RSVP)
   2388  1.67    itojun 		return (EOPNOTSUPP);
   2389  1.15   mycroft 
   2390  1.67    itojun 	/* Check mbuf. */
   2391  1.86      manu 	if (m == NULL || m->m_len != sizeof(int)) {
   2392  1.67    itojun 		return (EINVAL);
   2393  1.67    itojun 	}
   2394  1.86      manu 	vifi = *(mtod(m, int *));
   2395  1.15   mycroft 
   2396  1.67    itojun 	if (rsvpdebug)
   2397  1.86      manu 		printf("ip_rsvp_vif_init: vif = %d rsvp_on = %d\n",
   2398  1.86      manu 		       vifi, rsvp_on);
   2399  1.15   mycroft 
   2400  1.67    itojun 	s = splsoftnet();
   2401  1.15   mycroft 
   2402  1.67    itojun 	/* Check vif. */
   2403  1.86      manu 	if (!legal_vif_num(vifi)) {
   2404  1.67    itojun 		splx(s);
   2405  1.67    itojun 		return (EADDRNOTAVAIL);
   2406  1.67    itojun 	}
   2407  1.15   mycroft 
   2408  1.67    itojun 	/* Check if socket is available. */
   2409  1.86      manu 	if (viftable[vifi].v_rsvpd != NULL) {
   2410  1.67    itojun 		splx(s);
   2411  1.67    itojun 		return (EADDRINUSE);
   2412  1.67    itojun 	}
   2413  1.15   mycroft 
   2414  1.86      manu 	viftable[vifi].v_rsvpd = so;
   2415  1.67    itojun 	/*
   2416  1.67    itojun 	 * This may seem silly, but we need to be sure we don't over-increment
   2417  1.67    itojun 	 * the RSVP counter, in case something slips up.
   2418  1.67    itojun 	 */
   2419  1.86      manu 	if (!viftable[vifi].v_rsvp_on) {
   2420  1.86      manu 		viftable[vifi].v_rsvp_on = 1;
   2421  1.67    itojun 		rsvp_on++;
   2422  1.67    itojun 	}
   2423  1.15   mycroft 
   2424  1.67    itojun 	splx(s);
   2425  1.67    itojun 	return (0);
   2426  1.15   mycroft }
   2427  1.15   mycroft 
   2428  1.15   mycroft int
   2429  1.15   mycroft ip_rsvp_vif_done(so, m)
   2430  1.67    itojun 	struct socket *so;
   2431  1.67    itojun 	struct mbuf *m;
   2432  1.15   mycroft {
   2433  1.86      manu 	int vifi, s;
   2434  1.15   mycroft 
   2435  1.67    itojun 	if (rsvpdebug)
   2436  1.67    itojun 		printf("ip_rsvp_vif_done: so_type = %d, pr_protocol = %d\n",
   2437  1.67    itojun 		    so->so_type, so->so_proto->pr_protocol);
   2438  1.15   mycroft 
   2439  1.67    itojun 	if (so->so_type != SOCK_RAW ||
   2440  1.67    itojun 	    so->so_proto->pr_protocol != IPPROTO_RSVP)
   2441  1.67    itojun 		return (EOPNOTSUPP);
   2442  1.15   mycroft 
   2443  1.67    itojun 	/* Check mbuf. */
   2444  1.86      manu 	if (m == NULL || m->m_len != sizeof(int)) {
   2445  1.67    itojun 		return (EINVAL);
   2446  1.67    itojun 	}
   2447  1.86      manu 	vifi = *(mtod(m, int *));
   2448  1.15   mycroft 
   2449  1.67    itojun 	s = splsoftnet();
   2450  1.15   mycroft 
   2451  1.67    itojun 	/* Check vif. */
   2452  1.86      manu 	if (!legal_vif_num(vifi)) {
   2453  1.67    itojun 		splx(s);
   2454  1.67    itojun 		return (EADDRNOTAVAIL);
   2455  1.67    itojun 	}
   2456  1.15   mycroft 
   2457  1.67    itojun 	if (rsvpdebug)
   2458  1.67    itojun 		printf("ip_rsvp_vif_done: v_rsvpd = %x so = %x\n",
   2459  1.86      manu 		    viftable[vifi].v_rsvpd, so);
   2460  1.15   mycroft 
   2461  1.86      manu 	viftable[vifi].v_rsvpd = NULL;
   2462  1.67    itojun 	/*
   2463  1.67    itojun 	 * This may seem silly, but we need to be sure we don't over-decrement
   2464  1.67    itojun 	 * the RSVP counter, in case something slips up.
   2465  1.67    itojun 	 */
   2466  1.86      manu 	if (viftable[vifi].v_rsvp_on) {
   2467  1.86      manu 		viftable[vifi].v_rsvp_on = 0;
   2468  1.67    itojun 		rsvp_on--;
   2469  1.67    itojun 	}
   2470  1.67    itojun 
   2471  1.67    itojun 	splx(s);
   2472  1.67    itojun 	return (0);
   2473  1.15   mycroft }
   2474  1.15   mycroft 
   2475  1.25  christos void
   2476  1.15   mycroft ip_rsvp_force_done(so)
   2477  1.67    itojun 	struct socket *so;
   2478  1.15   mycroft {
   2479  1.86      manu 	int vifi, s;
   2480  1.15   mycroft 
   2481  1.67    itojun 	/* Don't bother if it is not the right type of socket. */
   2482  1.67    itojun 	if (so->so_type != SOCK_RAW ||
   2483  1.67    itojun 	    so->so_proto->pr_protocol != IPPROTO_RSVP)
   2484  1.67    itojun 		return;
   2485  1.15   mycroft 
   2486  1.67    itojun 	s = splsoftnet();
   2487  1.15   mycroft 
   2488  1.67    itojun 	/*
   2489  1.67    itojun 	 * The socket may be attached to more than one vif...this
   2490  1.67    itojun 	 * is perfectly legal.
   2491  1.67    itojun 	 */
   2492  1.67    itojun 	for (vifi = 0; vifi < numvifs; vifi++) {
   2493  1.67    itojun 		if (viftable[vifi].v_rsvpd == so) {
   2494  1.86      manu 			viftable[vifi].v_rsvpd = NULL;
   2495  1.67    itojun 			/*
   2496  1.67    itojun 			 * This may seem silly, but we need to be sure we don't
   2497  1.67    itojun 			 * over-decrement the RSVP counter, in case something
   2498  1.67    itojun 			 * slips up.
   2499  1.67    itojun 			 */
   2500  1.67    itojun 			if (viftable[vifi].v_rsvp_on) {
   2501  1.67    itojun 				viftable[vifi].v_rsvp_on = 0;
   2502  1.67    itojun 				rsvp_on--;
   2503  1.67    itojun 			}
   2504  1.67    itojun 		}
   2505  1.15   mycroft 	}
   2506  1.15   mycroft 
   2507  1.67    itojun 	splx(s);
   2508  1.67    itojun 	return;
   2509  1.15   mycroft }
   2510  1.15   mycroft 
   2511  1.25  christos void
   2512  1.15   mycroft rsvp_input(m, ifp)
   2513  1.67    itojun 	struct mbuf *m;
   2514  1.67    itojun 	struct ifnet *ifp;
   2515  1.15   mycroft {
   2516  1.86      manu 	int vifi, s;
   2517  1.67    itojun 	struct ip *ip = mtod(m, struct ip *);
   2518  1.67    itojun 	static struct sockaddr_in rsvp_src = { sizeof(sin), AF_INET };
   2519  1.15   mycroft 
   2520  1.15   mycroft 	if (rsvpdebug)
   2521  1.70    itojun 		printf("rsvp_input: rsvp_on %d\n", rsvp_on);
   2522  1.15   mycroft 
   2523  1.67    itojun 	/*
   2524  1.67    itojun 	 * Can still get packets with rsvp_on = 0 if there is a local member
   2525  1.67    itojun 	 * of the group to which the RSVP packet is addressed.  But in this
   2526  1.67    itojun 	 * case we want to throw the packet away.
   2527  1.67    itojun 	 */
   2528  1.67    itojun 	if (!rsvp_on) {
   2529  1.67    itojun 		m_freem(m);
   2530  1.67    itojun 		return;
   2531  1.67    itojun 	}
   2532  1.15   mycroft 
   2533  1.67    itojun 	/*
   2534  1.67    itojun 	 * If the old-style non-vif-associated socket is set, then use
   2535  1.67    itojun 	 * it and ignore the new ones.
   2536  1.67    itojun 	 */
   2537  1.86      manu 	if (ip_rsvpd != NULL) {
   2538  1.67    itojun 		if (rsvpdebug)
   2539  1.67    itojun 			printf("rsvp_input: "
   2540  1.67    itojun 			    "Sending packet up old-style socket\n");
   2541  1.67    itojun 		rip_input(m);	/*XXX*/
   2542  1.67    itojun 		return;
   2543  1.67    itojun 	}
   2544  1.15   mycroft 
   2545  1.67    itojun 	s = splsoftnet();
   2546  1.15   mycroft 
   2547  1.15   mycroft 	if (rsvpdebug)
   2548  1.67    itojun 		printf("rsvp_input: check vifs\n");
   2549  1.67    itojun 
   2550  1.67    itojun 	/* Find which vif the packet arrived on. */
   2551  1.67    itojun 	for (vifi = 0; vifi < numvifs; vifi++) {
   2552  1.67    itojun 		if (viftable[vifi].v_ifp == ifp)
   2553  1.67    itojun 			break;
   2554  1.67    itojun 	}
   2555  1.15   mycroft 
   2556  1.67    itojun 	if (vifi == numvifs) {
   2557  1.67    itojun 		/* Can't find vif packet arrived on. Drop packet. */
   2558  1.67    itojun 		if (rsvpdebug)
   2559  1.67    itojun 			printf("rsvp_input: "
   2560  1.67    itojun 			    "Can't find vif for packet...dropping it.\n");
   2561  1.67    itojun 		m_freem(m);
   2562  1.67    itojun 		splx(s);
   2563  1.67    itojun 		return;
   2564  1.67    itojun 	}
   2565  1.15   mycroft 
   2566  1.15   mycroft 	if (rsvpdebug)
   2567  1.67    itojun 		printf("rsvp_input: check socket\n");
   2568  1.15   mycroft 
   2569  1.86      manu 	if (viftable[vifi].v_rsvpd == NULL) {
   2570  1.67    itojun 		/*
   2571  1.67    itojun 		 * drop packet, since there is no specific socket for this
   2572  1.67    itojun 		 * interface
   2573  1.67    itojun 		 */
   2574  1.67    itojun 		if (rsvpdebug)
   2575  1.67    itojun 			printf("rsvp_input: No socket defined for vif %d\n",
   2576  1.67    itojun 			    vifi);
   2577  1.67    itojun 		m_freem(m);
   2578  1.67    itojun 		splx(s);
   2579  1.67    itojun 		return;
   2580  1.67    itojun 	}
   2581  1.15   mycroft 
   2582  1.67    itojun 	rsvp_src.sin_addr = ip->ip_src;
   2583  1.15   mycroft 
   2584  1.67    itojun 	if (rsvpdebug && m)
   2585  1.67    itojun 		printf("rsvp_input: m->m_len = %d, sbspace() = %d\n",
   2586  1.70    itojun 		    m->m_len, sbspace(&viftable[vifi].v_rsvpd->so_rcv));
   2587  1.67    itojun 
   2588  1.67    itojun 	if (socket_send(viftable[vifi].v_rsvpd, m, &rsvp_src) < 0)
   2589  1.67    itojun 		if (rsvpdebug)
   2590  1.67    itojun 			printf("rsvp_input: Failed to append to socket\n");
   2591  1.67    itojun 	else
   2592  1.67    itojun 		if (rsvpdebug)
   2593  1.67    itojun 			printf("rsvp_input: send packet up\n");
   2594  1.60    itojun 
   2595  1.67    itojun 	splx(s);
   2596  1.15   mycroft }
   2597  1.15   mycroft #endif /* RSVP_ISI */
   2598  1.86      manu 
   2599  1.86      manu /*
   2600  1.86      manu  * Code for bandwidth monitors
   2601  1.86      manu  */
   2602  1.86      manu 
   2603  1.86      manu /*
   2604  1.86      manu  * Define common interface for timeval-related methods
   2605  1.86      manu  */
   2606  1.86      manu #define	BW_TIMEVALCMP(tvp, uvp, cmp) timercmp((tvp), (uvp), cmp)
   2607  1.86      manu #define	BW_TIMEVALDECR(vvp, uvp) timersub((vvp), (uvp), (vvp))
   2608  1.86      manu #define	BW_TIMEVALADD(vvp, uvp) timeradd((vvp), (uvp), (vvp))
   2609  1.86      manu 
   2610  1.86      manu static uint32_t
   2611  1.86      manu compute_bw_meter_flags(struct bw_upcall *req)
   2612  1.86      manu {
   2613  1.86      manu     uint32_t flags = 0;
   2614  1.86      manu 
   2615  1.86      manu     if (req->bu_flags & BW_UPCALL_UNIT_PACKETS)
   2616  1.86      manu 	flags |= BW_METER_UNIT_PACKETS;
   2617  1.86      manu     if (req->bu_flags & BW_UPCALL_UNIT_BYTES)
   2618  1.86      manu 	flags |= BW_METER_UNIT_BYTES;
   2619  1.86      manu     if (req->bu_flags & BW_UPCALL_GEQ)
   2620  1.86      manu 	flags |= BW_METER_GEQ;
   2621  1.86      manu     if (req->bu_flags & BW_UPCALL_LEQ)
   2622  1.86      manu 	flags |= BW_METER_LEQ;
   2623  1.86      manu 
   2624  1.86      manu     return flags;
   2625  1.86      manu }
   2626  1.86      manu 
   2627  1.86      manu /*
   2628  1.86      manu  * Add a bw_meter entry
   2629  1.86      manu  */
   2630  1.86      manu static int
   2631  1.86      manu add_bw_upcall(struct mbuf *m)
   2632  1.86      manu {
   2633  1.86      manu     int s;
   2634  1.86      manu     struct mfc *mfc;
   2635  1.86      manu     struct timeval delta = { BW_UPCALL_THRESHOLD_INTERVAL_MIN_SEC,
   2636  1.86      manu 		BW_UPCALL_THRESHOLD_INTERVAL_MIN_USEC };
   2637  1.86      manu     struct timeval now;
   2638  1.86      manu     struct bw_meter *x;
   2639  1.86      manu     uint32_t flags;
   2640  1.86      manu     struct bw_upcall *req;
   2641  1.86      manu 
   2642  1.86      manu     if (m == NULL || m->m_len < sizeof(struct bw_upcall))
   2643  1.86      manu 	return EINVAL;
   2644  1.86      manu 
   2645  1.86      manu     req = mtod(m, struct bw_upcall *);
   2646  1.86      manu 
   2647  1.86      manu     if (!(mrt_api_config & MRT_MFC_BW_UPCALL))
   2648  1.86      manu 	return EOPNOTSUPP;
   2649  1.86      manu 
   2650  1.86      manu     /* Test if the flags are valid */
   2651  1.86      manu     if (!(req->bu_flags & (BW_UPCALL_UNIT_PACKETS | BW_UPCALL_UNIT_BYTES)))
   2652  1.86      manu 	return EINVAL;
   2653  1.86      manu     if (!(req->bu_flags & (BW_UPCALL_GEQ | BW_UPCALL_LEQ)))
   2654  1.86      manu 	return EINVAL;
   2655  1.86      manu     if ((req->bu_flags & (BW_UPCALL_GEQ | BW_UPCALL_LEQ))
   2656  1.86      manu 	    == (BW_UPCALL_GEQ | BW_UPCALL_LEQ))
   2657  1.86      manu 	return EINVAL;
   2658  1.86      manu 
   2659  1.86      manu     /* Test if the threshold time interval is valid */
   2660  1.86      manu     if (BW_TIMEVALCMP(&req->bu_threshold.b_time, &delta, <))
   2661  1.86      manu 	return EINVAL;
   2662  1.86      manu 
   2663  1.86      manu     flags = compute_bw_meter_flags(req);
   2664  1.86      manu 
   2665  1.86      manu     /*
   2666  1.86      manu      * Find if we have already same bw_meter entry
   2667  1.86      manu      */
   2668  1.86      manu     s = splsoftnet();
   2669  1.86      manu     mfc = mfc_find(&req->bu_src, &req->bu_dst);
   2670  1.86      manu     if (mfc == NULL) {
   2671  1.86      manu 	splx(s);
   2672  1.86      manu 	return EADDRNOTAVAIL;
   2673  1.86      manu     }
   2674  1.86      manu     for (x = mfc->mfc_bw_meter; x != NULL; x = x->bm_mfc_next) {
   2675  1.86      manu 	if ((BW_TIMEVALCMP(&x->bm_threshold.b_time,
   2676  1.86      manu 			   &req->bu_threshold.b_time, ==)) &&
   2677  1.86      manu 	    (x->bm_threshold.b_packets == req->bu_threshold.b_packets) &&
   2678  1.86      manu 	    (x->bm_threshold.b_bytes == req->bu_threshold.b_bytes) &&
   2679  1.86      manu 	    (x->bm_flags & BW_METER_USER_FLAGS) == flags)  {
   2680  1.86      manu 	    splx(s);
   2681  1.86      manu 	    return 0;		/* XXX Already installed */
   2682  1.86      manu 	}
   2683  1.86      manu     }
   2684  1.86      manu 
   2685  1.86      manu     /* Allocate the new bw_meter entry */
   2686  1.86      manu     x = (struct bw_meter *)malloc(sizeof(*x), M_BWMETER, M_NOWAIT);
   2687  1.86      manu     if (x == NULL) {
   2688  1.86      manu 	splx(s);
   2689  1.86      manu 	return ENOBUFS;
   2690  1.86      manu     }
   2691  1.86      manu 
   2692  1.86      manu     /* Set the new bw_meter entry */
   2693  1.86      manu     x->bm_threshold.b_time = req->bu_threshold.b_time;
   2694  1.86      manu     microtime(&now);
   2695  1.86      manu     x->bm_start_time = now;
   2696  1.86      manu     x->bm_threshold.b_packets = req->bu_threshold.b_packets;
   2697  1.86      manu     x->bm_threshold.b_bytes = req->bu_threshold.b_bytes;
   2698  1.86      manu     x->bm_measured.b_packets = 0;
   2699  1.86      manu     x->bm_measured.b_bytes = 0;
   2700  1.86      manu     x->bm_flags = flags;
   2701  1.86      manu     x->bm_time_next = NULL;
   2702  1.86      manu     x->bm_time_hash = BW_METER_BUCKETS;
   2703  1.86      manu 
   2704  1.86      manu     /* Add the new bw_meter entry to the front of entries for this MFC */
   2705  1.86      manu     x->bm_mfc = mfc;
   2706  1.86      manu     x->bm_mfc_next = mfc->mfc_bw_meter;
   2707  1.86      manu     mfc->mfc_bw_meter = x;
   2708  1.86      manu     schedule_bw_meter(x, &now);
   2709  1.86      manu     splx(s);
   2710  1.86      manu 
   2711  1.86      manu     return 0;
   2712  1.86      manu }
   2713  1.86      manu 
   2714  1.86      manu static void
   2715  1.86      manu free_bw_list(struct bw_meter *list)
   2716  1.86      manu {
   2717  1.86      manu     while (list != NULL) {
   2718  1.86      manu 	struct bw_meter *x = list;
   2719  1.86      manu 
   2720  1.86      manu 	list = list->bm_mfc_next;
   2721  1.86      manu 	unschedule_bw_meter(x);
   2722  1.86      manu 	free(x, M_BWMETER);
   2723  1.86      manu     }
   2724  1.86      manu }
   2725  1.86      manu 
   2726  1.86      manu /*
   2727  1.86      manu  * Delete one or multiple bw_meter entries
   2728  1.86      manu  */
   2729  1.86      manu static int
   2730  1.86      manu del_bw_upcall(struct mbuf *m)
   2731  1.86      manu {
   2732  1.86      manu     int s;
   2733  1.86      manu     struct mfc *mfc;
   2734  1.86      manu     struct bw_meter *x;
   2735  1.86      manu     struct bw_upcall *req;
   2736  1.86      manu 
   2737  1.86      manu     if (m == NULL || m->m_len < sizeof(struct bw_upcall))
   2738  1.86      manu 	return EINVAL;
   2739  1.86      manu 
   2740  1.86      manu     req = mtod(m, struct bw_upcall *);
   2741  1.86      manu 
   2742  1.86      manu     if (!(mrt_api_config & MRT_MFC_BW_UPCALL))
   2743  1.86      manu 	return EOPNOTSUPP;
   2744  1.86      manu 
   2745  1.86      manu     s = splsoftnet();
   2746  1.86      manu     /* Find the corresponding MFC entry */
   2747  1.86      manu     mfc = mfc_find(&req->bu_src, &req->bu_dst);
   2748  1.86      manu     if (mfc == NULL) {
   2749  1.86      manu 	splx(s);
   2750  1.86      manu 	return EADDRNOTAVAIL;
   2751  1.86      manu     } else if (req->bu_flags & BW_UPCALL_DELETE_ALL) {
   2752  1.86      manu 	/*
   2753  1.86      manu 	 * Delete all bw_meter entries for this mfc
   2754  1.86      manu 	 */
   2755  1.86      manu 	struct bw_meter *list;
   2756  1.86      manu 
   2757  1.86      manu 	list = mfc->mfc_bw_meter;
   2758  1.86      manu 	mfc->mfc_bw_meter = NULL;
   2759  1.86      manu 	free_bw_list(list);
   2760  1.86      manu 	splx(s);
   2761  1.86      manu 	return 0;
   2762  1.86      manu     } else {			/* Delete a single bw_meter entry */
   2763  1.86      manu 	struct bw_meter *prev;
   2764  1.86      manu 	uint32_t flags = 0;
   2765  1.86      manu 
   2766  1.86      manu 	flags = compute_bw_meter_flags(req);
   2767  1.86      manu 
   2768  1.86      manu 	/* Find the bw_meter entry to delete */
   2769  1.86      manu 	for (prev = NULL, x = mfc->mfc_bw_meter; x != NULL;
   2770  1.86      manu 	     prev = x, x = x->bm_mfc_next) {
   2771  1.86      manu 	    if ((BW_TIMEVALCMP(&x->bm_threshold.b_time,
   2772  1.86      manu 			       &req->bu_threshold.b_time, ==)) &&
   2773  1.86      manu 		(x->bm_threshold.b_packets == req->bu_threshold.b_packets) &&
   2774  1.86      manu 		(x->bm_threshold.b_bytes == req->bu_threshold.b_bytes) &&
   2775  1.86      manu 		(x->bm_flags & BW_METER_USER_FLAGS) == flags)
   2776  1.86      manu 		break;
   2777  1.86      manu 	}
   2778  1.86      manu 	if (x != NULL) { /* Delete entry from the list for this MFC */
   2779  1.86      manu 	    if (prev != NULL)
   2780  1.86      manu 		prev->bm_mfc_next = x->bm_mfc_next;	/* remove from middle*/
   2781  1.86      manu 	    else
   2782  1.86      manu 		x->bm_mfc->mfc_bw_meter = x->bm_mfc_next;/* new head of list */
   2783  1.86      manu 
   2784  1.86      manu 	    unschedule_bw_meter(x);
   2785  1.86      manu 	    splx(s);
   2786  1.86      manu 	    /* Free the bw_meter entry */
   2787  1.86      manu 	    free(x, M_BWMETER);
   2788  1.86      manu 	    return 0;
   2789  1.86      manu 	} else {
   2790  1.86      manu 	    splx(s);
   2791  1.86      manu 	    return EINVAL;
   2792  1.86      manu 	}
   2793  1.86      manu     }
   2794  1.86      manu     /* NOTREACHED */
   2795  1.86      manu }
   2796  1.86      manu 
   2797  1.86      manu /*
   2798  1.86      manu  * Perform bandwidth measurement processing that may result in an upcall
   2799  1.86      manu  */
   2800  1.86      manu static void
   2801  1.86      manu bw_meter_receive_packet(struct bw_meter *x, int plen, struct timeval *nowp)
   2802  1.86      manu {
   2803  1.86      manu     struct timeval delta;
   2804  1.86      manu 
   2805  1.86      manu     delta = *nowp;
   2806  1.86      manu     BW_TIMEVALDECR(&delta, &x->bm_start_time);
   2807  1.86      manu 
   2808  1.86      manu     if (x->bm_flags & BW_METER_GEQ) {
   2809  1.86      manu 	/*
   2810  1.86      manu 	 * Processing for ">=" type of bw_meter entry
   2811  1.86      manu 	 */
   2812  1.86      manu 	if (BW_TIMEVALCMP(&delta, &x->bm_threshold.b_time, >)) {
   2813  1.86      manu 	    /* Reset the bw_meter entry */
   2814  1.86      manu 	    x->bm_start_time = *nowp;
   2815  1.86      manu 	    x->bm_measured.b_packets = 0;
   2816  1.86      manu 	    x->bm_measured.b_bytes = 0;
   2817  1.86      manu 	    x->bm_flags &= ~BW_METER_UPCALL_DELIVERED;
   2818  1.86      manu 	}
   2819  1.86      manu 
   2820  1.86      manu 	/* Record that a packet is received */
   2821  1.86      manu 	x->bm_measured.b_packets++;
   2822  1.86      manu 	x->bm_measured.b_bytes += plen;
   2823  1.86      manu 
   2824  1.86      manu 	/*
   2825  1.86      manu 	 * Test if we should deliver an upcall
   2826  1.86      manu 	 */
   2827  1.86      manu 	if (!(x->bm_flags & BW_METER_UPCALL_DELIVERED)) {
   2828  1.86      manu 	    if (((x->bm_flags & BW_METER_UNIT_PACKETS) &&
   2829  1.86      manu 		 (x->bm_measured.b_packets >= x->bm_threshold.b_packets)) ||
   2830  1.86      manu 		((x->bm_flags & BW_METER_UNIT_BYTES) &&
   2831  1.86      manu 		 (x->bm_measured.b_bytes >= x->bm_threshold.b_bytes))) {
   2832  1.86      manu 		/* Prepare an upcall for delivery */
   2833  1.86      manu 		bw_meter_prepare_upcall(x, nowp);
   2834  1.86      manu 		x->bm_flags |= BW_METER_UPCALL_DELIVERED;
   2835  1.86      manu 	    }
   2836  1.86      manu 	}
   2837  1.86      manu     } else if (x->bm_flags & BW_METER_LEQ) {
   2838  1.86      manu 	/*
   2839  1.86      manu 	 * Processing for "<=" type of bw_meter entry
   2840  1.86      manu 	 */
   2841  1.86      manu 	if (BW_TIMEVALCMP(&delta, &x->bm_threshold.b_time, >)) {
   2842  1.86      manu 	    /*
   2843  1.86      manu 	     * We are behind time with the multicast forwarding table
   2844  1.86      manu 	     * scanning for "<=" type of bw_meter entries, so test now
   2845  1.86      manu 	     * if we should deliver an upcall.
   2846  1.86      manu 	     */
   2847  1.86      manu 	    if (((x->bm_flags & BW_METER_UNIT_PACKETS) &&
   2848  1.86      manu 		 (x->bm_measured.b_packets <= x->bm_threshold.b_packets)) ||
   2849  1.86      manu 		((x->bm_flags & BW_METER_UNIT_BYTES) &&
   2850  1.86      manu 		 (x->bm_measured.b_bytes <= x->bm_threshold.b_bytes))) {
   2851  1.86      manu 		/* Prepare an upcall for delivery */
   2852  1.86      manu 		bw_meter_prepare_upcall(x, nowp);
   2853  1.86      manu 	    }
   2854  1.86      manu 	    /* Reschedule the bw_meter entry */
   2855  1.86      manu 	    unschedule_bw_meter(x);
   2856  1.86      manu 	    schedule_bw_meter(x, nowp);
   2857  1.86      manu 	}
   2858  1.86      manu 
   2859  1.86      manu 	/* Record that a packet is received */
   2860  1.86      manu 	x->bm_measured.b_packets++;
   2861  1.86      manu 	x->bm_measured.b_bytes += plen;
   2862  1.86      manu 
   2863  1.86      manu 	/*
   2864  1.86      manu 	 * Test if we should restart the measuring interval
   2865  1.86      manu 	 */
   2866  1.86      manu 	if ((x->bm_flags & BW_METER_UNIT_PACKETS &&
   2867  1.86      manu 	     x->bm_measured.b_packets <= x->bm_threshold.b_packets) ||
   2868  1.86      manu 	    (x->bm_flags & BW_METER_UNIT_BYTES &&
   2869  1.86      manu 	     x->bm_measured.b_bytes <= x->bm_threshold.b_bytes)) {
   2870  1.86      manu 	    /* Don't restart the measuring interval */
   2871  1.86      manu 	} else {
   2872  1.86      manu 	    /* Do restart the measuring interval */
   2873  1.86      manu 	    /*
   2874  1.86      manu 	     * XXX: note that we don't unschedule and schedule, because this
   2875  1.86      manu 	     * might be too much overhead per packet. Instead, when we process
   2876  1.86      manu 	     * all entries for a given timer hash bin, we check whether it is
   2877  1.86      manu 	     * really a timeout. If not, we reschedule at that time.
   2878  1.86      manu 	     */
   2879  1.86      manu 	    x->bm_start_time = *nowp;
   2880  1.86      manu 	    x->bm_measured.b_packets = 0;
   2881  1.86      manu 	    x->bm_measured.b_bytes = 0;
   2882  1.86      manu 	    x->bm_flags &= ~BW_METER_UPCALL_DELIVERED;
   2883  1.86      manu 	}
   2884  1.86      manu     }
   2885  1.86      manu }
   2886  1.86      manu 
   2887  1.86      manu /*
   2888  1.86      manu  * Prepare a bandwidth-related upcall
   2889  1.86      manu  */
   2890  1.86      manu static void
   2891  1.86      manu bw_meter_prepare_upcall(struct bw_meter *x, struct timeval *nowp)
   2892  1.86      manu {
   2893  1.86      manu     struct timeval delta;
   2894  1.86      manu     struct bw_upcall *u;
   2895  1.86      manu 
   2896  1.86      manu     /*
   2897  1.86      manu      * Compute the measured time interval
   2898  1.86      manu      */
   2899  1.86      manu     delta = *nowp;
   2900  1.86      manu     BW_TIMEVALDECR(&delta, &x->bm_start_time);
   2901  1.86      manu 
   2902  1.86      manu     /*
   2903  1.86      manu      * If there are too many pending upcalls, deliver them now
   2904  1.86      manu      */
   2905  1.86      manu     if (bw_upcalls_n >= BW_UPCALLS_MAX)
   2906  1.86      manu 	bw_upcalls_send();
   2907  1.86      manu 
   2908  1.86      manu     /*
   2909  1.86      manu      * Set the bw_upcall entry
   2910  1.86      manu      */
   2911  1.86      manu     u = &bw_upcalls[bw_upcalls_n++];
   2912  1.86      manu     u->bu_src = x->bm_mfc->mfc_origin;
   2913  1.86      manu     u->bu_dst = x->bm_mfc->mfc_mcastgrp;
   2914  1.86      manu     u->bu_threshold.b_time = x->bm_threshold.b_time;
   2915  1.86      manu     u->bu_threshold.b_packets = x->bm_threshold.b_packets;
   2916  1.86      manu     u->bu_threshold.b_bytes = x->bm_threshold.b_bytes;
   2917  1.86      manu     u->bu_measured.b_time = delta;
   2918  1.86      manu     u->bu_measured.b_packets = x->bm_measured.b_packets;
   2919  1.86      manu     u->bu_measured.b_bytes = x->bm_measured.b_bytes;
   2920  1.86      manu     u->bu_flags = 0;
   2921  1.86      manu     if (x->bm_flags & BW_METER_UNIT_PACKETS)
   2922  1.86      manu 	u->bu_flags |= BW_UPCALL_UNIT_PACKETS;
   2923  1.86      manu     if (x->bm_flags & BW_METER_UNIT_BYTES)
   2924  1.86      manu 	u->bu_flags |= BW_UPCALL_UNIT_BYTES;
   2925  1.86      manu     if (x->bm_flags & BW_METER_GEQ)
   2926  1.86      manu 	u->bu_flags |= BW_UPCALL_GEQ;
   2927  1.86      manu     if (x->bm_flags & BW_METER_LEQ)
   2928  1.86      manu 	u->bu_flags |= BW_UPCALL_LEQ;
   2929  1.86      manu }
   2930  1.86      manu 
   2931  1.86      manu /*
   2932  1.86      manu  * Send the pending bandwidth-related upcalls
   2933  1.86      manu  */
   2934  1.86      manu static void
   2935  1.86      manu bw_upcalls_send(void)
   2936  1.86      manu {
   2937  1.86      manu     struct mbuf *m;
   2938  1.86      manu     int len = bw_upcalls_n * sizeof(bw_upcalls[0]);
   2939  1.86      manu     struct sockaddr_in k_igmpsrc = { sizeof k_igmpsrc, AF_INET };
   2940  1.86      manu     static struct igmpmsg igmpmsg = { 0,		/* unused1 */
   2941  1.86      manu 				      0,		/* unused2 */
   2942  1.86      manu 				      IGMPMSG_BW_UPCALL,/* im_msgtype */
   2943  1.86      manu 				      0,		/* im_mbz  */
   2944  1.86      manu 				      0,		/* im_vif  */
   2945  1.86      manu 				      0,		/* unused3 */
   2946  1.86      manu 				      { 0 },		/* im_src  */
   2947  1.86      manu 				      { 0 } };		/* im_dst  */
   2948  1.86      manu 
   2949  1.86      manu     if (bw_upcalls_n == 0)
   2950  1.86      manu 	return;			/* No pending upcalls */
   2951  1.86      manu 
   2952  1.86      manu     bw_upcalls_n = 0;
   2953  1.86      manu 
   2954  1.86      manu     /*
   2955  1.86      manu      * Allocate a new mbuf, initialize it with the header and
   2956  1.86      manu      * the payload for the pending calls.
   2957  1.86      manu      */
   2958  1.86      manu     MGETHDR(m, M_DONTWAIT, MT_HEADER);
   2959  1.86      manu     if (m == NULL) {
   2960  1.86      manu 	log(LOG_WARNING, "bw_upcalls_send: cannot allocate mbuf\n");
   2961  1.86      manu 	return;
   2962  1.86      manu     }
   2963  1.86      manu 
   2964  1.86      manu     m->m_len = m->m_pkthdr.len = 0;
   2965  1.86      manu     m_copyback(m, 0, sizeof(struct igmpmsg), (caddr_t)&igmpmsg);
   2966  1.86      manu     m_copyback(m, sizeof(struct igmpmsg), len, (caddr_t)&bw_upcalls[0]);
   2967  1.86      manu 
   2968  1.86      manu     /*
   2969  1.86      manu      * Send the upcalls
   2970  1.86      manu      * XXX do we need to set the address in k_igmpsrc ?
   2971  1.86      manu      */
   2972  1.86      manu     mrtstat.mrts_upcalls++;
   2973  1.86      manu     if (socket_send(ip_mrouter, m, &k_igmpsrc) < 0) {
   2974  1.86      manu 	log(LOG_WARNING, "bw_upcalls_send: ip_mrouter socket queue full\n");
   2975  1.86      manu 	++mrtstat.mrts_upq_sockfull;
   2976  1.86      manu     }
   2977  1.86      manu }
   2978  1.86      manu 
   2979  1.86      manu /*
   2980  1.86      manu  * Compute the timeout hash value for the bw_meter entries
   2981  1.86      manu  */
   2982  1.86      manu #define	BW_METER_TIMEHASH(bw_meter, hash)				\
   2983  1.86      manu     do {								\
   2984  1.86      manu 	struct timeval next_timeval = (bw_meter)->bm_start_time;	\
   2985  1.86      manu 									\
   2986  1.86      manu 	BW_TIMEVALADD(&next_timeval, &(bw_meter)->bm_threshold.b_time); \
   2987  1.86      manu 	(hash) = next_timeval.tv_sec;					\
   2988  1.86      manu 	if (next_timeval.tv_usec)					\
   2989  1.86      manu 	    (hash)++; /* XXX: make sure we don't timeout early */	\
   2990  1.86      manu 	(hash) %= BW_METER_BUCKETS;					\
   2991  1.86      manu     } while (/*CONSTCOND*/ 0)
   2992  1.86      manu 
   2993  1.86      manu /*
   2994  1.86      manu  * Schedule a timer to process periodically bw_meter entry of type "<="
   2995  1.86      manu  * by linking the entry in the proper hash bucket.
   2996  1.86      manu  */
   2997  1.86      manu static void
   2998  1.86      manu schedule_bw_meter(struct bw_meter *x, struct timeval *nowp)
   2999  1.86      manu {
   3000  1.86      manu     int time_hash;
   3001  1.86      manu 
   3002  1.86      manu     if (!(x->bm_flags & BW_METER_LEQ))
   3003  1.86      manu 	return;		/* XXX: we schedule timers only for "<=" entries */
   3004  1.86      manu 
   3005  1.86      manu     /*
   3006  1.86      manu      * Reset the bw_meter entry
   3007  1.86      manu      */
   3008  1.86      manu     x->bm_start_time = *nowp;
   3009  1.86      manu     x->bm_measured.b_packets = 0;
   3010  1.86      manu     x->bm_measured.b_bytes = 0;
   3011  1.86      manu     x->bm_flags &= ~BW_METER_UPCALL_DELIVERED;
   3012  1.86      manu 
   3013  1.86      manu     /*
   3014  1.86      manu      * Compute the timeout hash value and insert the entry
   3015  1.86      manu      */
   3016  1.86      manu     BW_METER_TIMEHASH(x, time_hash);
   3017  1.86      manu     x->bm_time_next = bw_meter_timers[time_hash];
   3018  1.86      manu     bw_meter_timers[time_hash] = x;
   3019  1.86      manu     x->bm_time_hash = time_hash;
   3020  1.86      manu }
   3021  1.86      manu 
   3022  1.86      manu /*
   3023  1.86      manu  * Unschedule the periodic timer that processes bw_meter entry of type "<="
   3024  1.86      manu  * by removing the entry from the proper hash bucket.
   3025  1.86      manu  */
   3026  1.86      manu static void
   3027  1.86      manu unschedule_bw_meter(struct bw_meter *x)
   3028  1.86      manu {
   3029  1.86      manu     int time_hash;
   3030  1.86      manu     struct bw_meter *prev, *tmp;
   3031  1.86      manu 
   3032  1.86      manu     if (!(x->bm_flags & BW_METER_LEQ))
   3033  1.86      manu 	return;		/* XXX: we schedule timers only for "<=" entries */
   3034  1.86      manu 
   3035  1.86      manu     /*
   3036  1.86      manu      * Compute the timeout hash value and delete the entry
   3037  1.86      manu      */
   3038  1.86      manu     time_hash = x->bm_time_hash;
   3039  1.86      manu     if (time_hash >= BW_METER_BUCKETS)
   3040  1.86      manu 	return;		/* Entry was not scheduled */
   3041  1.86      manu 
   3042  1.86      manu     for (prev = NULL, tmp = bw_meter_timers[time_hash];
   3043  1.86      manu 	     tmp != NULL; prev = tmp, tmp = tmp->bm_time_next)
   3044  1.86      manu 	if (tmp == x)
   3045  1.86      manu 	    break;
   3046  1.86      manu 
   3047  1.86      manu     if (tmp == NULL)
   3048  1.86      manu 	panic("unschedule_bw_meter: bw_meter entry not found");
   3049  1.86      manu 
   3050  1.86      manu     if (prev != NULL)
   3051  1.86      manu 	prev->bm_time_next = x->bm_time_next;
   3052  1.86      manu     else
   3053  1.86      manu 	bw_meter_timers[time_hash] = x->bm_time_next;
   3054  1.86      manu 
   3055  1.86      manu     x->bm_time_next = NULL;
   3056  1.86      manu     x->bm_time_hash = BW_METER_BUCKETS;
   3057  1.86      manu }
   3058  1.86      manu 
   3059  1.86      manu /*
   3060  1.86      manu  * Process all "<=" type of bw_meter that should be processed now,
   3061  1.86      manu  * and for each entry prepare an upcall if necessary. Each processed
   3062  1.86      manu  * entry is rescheduled again for the (periodic) processing.
   3063  1.86      manu  *
   3064  1.86      manu  * This is run periodically (once per second normally). On each round,
   3065  1.86      manu  * all the potentially matching entries are in the hash slot that we are
   3066  1.86      manu  * looking at.
   3067  1.86      manu  */
   3068  1.86      manu static void
   3069  1.86      manu bw_meter_process()
   3070  1.86      manu {
   3071  1.86      manu     int s;
   3072  1.86      manu     static uint32_t last_tv_sec;	/* last time we processed this */
   3073  1.86      manu 
   3074  1.86      manu     uint32_t loops;
   3075  1.86      manu     int i;
   3076  1.86      manu     struct timeval now, process_endtime;
   3077  1.86      manu 
   3078  1.86      manu     microtime(&now);
   3079  1.86      manu     if (last_tv_sec == now.tv_sec)
   3080  1.86      manu 	return;		/* nothing to do */
   3081  1.86      manu 
   3082  1.86      manu     loops = now.tv_sec - last_tv_sec;
   3083  1.86      manu     last_tv_sec = now.tv_sec;
   3084  1.86      manu     if (loops > BW_METER_BUCKETS)
   3085  1.86      manu 	loops = BW_METER_BUCKETS;
   3086  1.86      manu 
   3087  1.86      manu     s = splsoftnet();
   3088  1.86      manu     /*
   3089  1.86      manu      * Process all bins of bw_meter entries from the one after the last
   3090  1.86      manu      * processed to the current one. On entry, i points to the last bucket
   3091  1.86      manu      * visited, so we need to increment i at the beginning of the loop.
   3092  1.86      manu      */
   3093  1.86      manu     for (i = (now.tv_sec - loops) % BW_METER_BUCKETS; loops > 0; loops--) {
   3094  1.86      manu 	struct bw_meter *x, *tmp_list;
   3095  1.86      manu 
   3096  1.86      manu 	if (++i >= BW_METER_BUCKETS)
   3097  1.86      manu 	    i = 0;
   3098  1.86      manu 
   3099  1.86      manu 	/* Disconnect the list of bw_meter entries from the bin */
   3100  1.86      manu 	tmp_list = bw_meter_timers[i];
   3101  1.86      manu 	bw_meter_timers[i] = NULL;
   3102  1.86      manu 
   3103  1.86      manu 	/* Process the list of bw_meter entries */
   3104  1.86      manu 	while (tmp_list != NULL) {
   3105  1.86      manu 	    x = tmp_list;
   3106  1.86      manu 	    tmp_list = tmp_list->bm_time_next;
   3107  1.86      manu 
   3108  1.86      manu 	    /* Test if the time interval is over */
   3109  1.86      manu 	    process_endtime = x->bm_start_time;
   3110  1.86      manu 	    BW_TIMEVALADD(&process_endtime, &x->bm_threshold.b_time);
   3111  1.86      manu 	    if (BW_TIMEVALCMP(&process_endtime, &now, >)) {
   3112  1.86      manu 		/* Not yet: reschedule, but don't reset */
   3113  1.86      manu 		int time_hash;
   3114  1.86      manu 
   3115  1.86      manu 		BW_METER_TIMEHASH(x, time_hash);
   3116  1.86      manu 		if (time_hash == i && process_endtime.tv_sec == now.tv_sec) {
   3117  1.86      manu 		    /*
   3118  1.86      manu 		     * XXX: somehow the bin processing is a bit ahead of time.
   3119  1.86      manu 		     * Put the entry in the next bin.
   3120  1.86      manu 		     */
   3121  1.86      manu 		    if (++time_hash >= BW_METER_BUCKETS)
   3122  1.86      manu 			time_hash = 0;
   3123  1.86      manu 		}
   3124  1.86      manu 		x->bm_time_next = bw_meter_timers[time_hash];
   3125  1.86      manu 		bw_meter_timers[time_hash] = x;
   3126  1.86      manu 		x->bm_time_hash = time_hash;
   3127  1.86      manu 
   3128  1.86      manu 		continue;
   3129  1.86      manu 	    }
   3130  1.86      manu 
   3131  1.86      manu 	    /*
   3132  1.86      manu 	     * Test if we should deliver an upcall
   3133  1.86      manu 	     */
   3134  1.86      manu 	    if (((x->bm_flags & BW_METER_UNIT_PACKETS) &&
   3135  1.86      manu 		 (x->bm_measured.b_packets <= x->bm_threshold.b_packets)) ||
   3136  1.86      manu 		((x->bm_flags & BW_METER_UNIT_BYTES) &&
   3137  1.86      manu 		 (x->bm_measured.b_bytes <= x->bm_threshold.b_bytes))) {
   3138  1.86      manu 		/* Prepare an upcall for delivery */
   3139  1.86      manu 		bw_meter_prepare_upcall(x, &now);
   3140  1.86      manu 	    }
   3141  1.86      manu 
   3142  1.86      manu 	    /*
   3143  1.86      manu 	     * Reschedule for next processing
   3144  1.86      manu 	     */
   3145  1.86      manu 	    schedule_bw_meter(x, &now);
   3146  1.86      manu 	}
   3147  1.86      manu     }
   3148  1.86      manu 
   3149  1.86      manu     /* Send all upcalls that are pending delivery */
   3150  1.86      manu     bw_upcalls_send();
   3151  1.86      manu 
   3152  1.86      manu     splx(s);
   3153  1.86      manu }
   3154  1.86      manu 
   3155  1.86      manu /*
   3156  1.86      manu  * A periodic function for sending all upcalls that are pending delivery
   3157  1.86      manu  */
   3158  1.86      manu static void
   3159  1.86      manu expire_bw_upcalls_send(void *unused)
   3160  1.86      manu {
   3161  1.86      manu     int s;
   3162  1.86      manu 
   3163  1.86      manu     s = splsoftnet();
   3164  1.86      manu     bw_upcalls_send();
   3165  1.86      manu     splx(s);
   3166  1.86      manu 
   3167  1.86      manu     callout_reset(&bw_upcalls_ch, BW_UPCALLS_PERIOD,
   3168  1.86      manu 		  expire_bw_upcalls_send, NULL);
   3169  1.86      manu }
   3170  1.86      manu 
   3171  1.86      manu /*
   3172  1.86      manu  * A periodic function for periodic scanning of the multicast forwarding
   3173  1.86      manu  * table for processing all "<=" bw_meter entries.
   3174  1.86      manu  */
   3175  1.86      manu static void
   3176  1.86      manu expire_bw_meter_process(void *unused)
   3177  1.86      manu {
   3178  1.86      manu     if (mrt_api_config & MRT_MFC_BW_UPCALL)
   3179  1.86      manu 	bw_meter_process();
   3180  1.86      manu 
   3181  1.86      manu     callout_reset(&bw_meter_ch, BW_METER_PERIOD,
   3182  1.86      manu 		  expire_bw_meter_process, NULL);
   3183  1.86      manu }
   3184  1.86      manu 
   3185  1.86      manu /*
   3186  1.86      manu  * End of bandwidth monitoring code
   3187  1.86      manu  */
   3188  1.86      manu 
   3189  1.86      manu #ifdef PIM
   3190  1.86      manu /*
   3191  1.86      manu  * Send the packet up to the user daemon, or eventually do kernel encapsulation
   3192  1.86      manu  */
   3193  1.86      manu static int
   3194  1.86      manu pim_register_send(struct ip *ip, struct vif *vifp,
   3195  1.86      manu 	struct mbuf *m, struct mfc *rt)
   3196  1.86      manu {
   3197  1.86      manu     struct mbuf *mb_copy, *mm;
   3198  1.86      manu 
   3199  1.86      manu     if (mrtdebug & DEBUG_PIM)
   3200  1.86      manu         log(LOG_DEBUG, "pim_register_send: ");
   3201  1.86      manu 
   3202  1.86      manu     mb_copy = pim_register_prepare(ip, m);
   3203  1.86      manu     if (mb_copy == NULL)
   3204  1.86      manu 	return ENOBUFS;
   3205  1.86      manu 
   3206  1.86      manu     /*
   3207  1.86      manu      * Send all the fragments. Note that the mbuf for each fragment
   3208  1.86      manu      * is freed by the sending machinery.
   3209  1.86      manu      */
   3210  1.86      manu     for (mm = mb_copy; mm; mm = mb_copy) {
   3211  1.86      manu 	mb_copy = mm->m_nextpkt;
   3212  1.86      manu 	mm->m_nextpkt = NULL;
   3213  1.86      manu 	mm = m_pullup(mm, sizeof(struct ip));
   3214  1.86      manu 	if (mm != NULL) {
   3215  1.86      manu 	    ip = mtod(mm, struct ip *);
   3216  1.86      manu 	    if ((mrt_api_config & MRT_MFC_RP) &&
   3217  1.86      manu 		!in_nullhost(rt->mfc_rp)) {
   3218  1.86      manu 		pim_register_send_rp(ip, vifp, mm, rt);
   3219  1.86      manu 	    } else {
   3220  1.86      manu 		pim_register_send_upcall(ip, vifp, mm, rt);
   3221  1.86      manu 	    }
   3222  1.86      manu 	}
   3223  1.86      manu     }
   3224  1.86      manu 
   3225  1.86      manu     return 0;
   3226  1.86      manu }
   3227  1.86      manu 
   3228  1.86      manu /*
   3229  1.86      manu  * Return a copy of the data packet that is ready for PIM Register
   3230  1.86      manu  * encapsulation.
   3231  1.86      manu  * XXX: Note that in the returned copy the IP header is a valid one.
   3232  1.86      manu  */
   3233  1.86      manu static struct mbuf *
   3234  1.86      manu pim_register_prepare(struct ip *ip, struct mbuf *m)
   3235  1.86      manu {
   3236  1.86      manu     struct mbuf *mb_copy = NULL;
   3237  1.86      manu     int mtu;
   3238  1.86      manu 
   3239  1.86      manu     /* Take care of delayed checksums */
   3240  1.86      manu     if (m->m_pkthdr.csum_flags & (M_CSUM_TCPv4|M_CSUM_UDPv4)) {
   3241  1.86      manu 	in_delayed_cksum(m);
   3242  1.86      manu 	m->m_pkthdr.csum_flags &= ~(M_CSUM_TCPv4|M_CSUM_UDPv4);
   3243  1.86      manu     }
   3244  1.86      manu 
   3245  1.86      manu     /*
   3246  1.86      manu      * Copy the old packet & pullup its IP header into the
   3247  1.86      manu      * new mbuf so we can modify it.
   3248  1.86      manu      */
   3249  1.86      manu     mb_copy = m_copy(m, 0, M_COPYALL);
   3250  1.86      manu     if (mb_copy == NULL)
   3251  1.86      manu 	return NULL;
   3252  1.86      manu     mb_copy = m_pullup(mb_copy, ip->ip_hl << 2);
   3253  1.86      manu     if (mb_copy == NULL)
   3254  1.86      manu 	return NULL;
   3255  1.86      manu 
   3256  1.86      manu     /* take care of the TTL */
   3257  1.86      manu     ip = mtod(mb_copy, struct ip *);
   3258  1.86      manu     --ip->ip_ttl;
   3259  1.86      manu 
   3260  1.86      manu     /* Compute the MTU after the PIM Register encapsulation */
   3261  1.86      manu     mtu = 0xffff - sizeof(pim_encap_iphdr) - sizeof(pim_encap_pimhdr);
   3262  1.86      manu 
   3263  1.86      manu     if (ntohs(ip->ip_len) <= mtu) {
   3264  1.86      manu 	/* Turn the IP header into a valid one */
   3265  1.86      manu 	ip->ip_sum = 0;
   3266  1.86      manu 	ip->ip_sum = in_cksum(mb_copy, ip->ip_hl << 2);
   3267  1.86      manu     } else {
   3268  1.86      manu 	/* Fragment the packet */
   3269  1.86      manu 	if (ip_fragment(mb_copy, NULL, mtu) != 0) {
   3270  1.86      manu 	    /* XXX: mb_copy was freed by ip_fragment() */
   3271  1.86      manu 	    return NULL;
   3272  1.86      manu 	}
   3273  1.86      manu     }
   3274  1.86      manu     return mb_copy;
   3275  1.86      manu }
   3276  1.86      manu 
   3277  1.86      manu /*
   3278  1.86      manu  * Send an upcall with the data packet to the user-level process.
   3279  1.86      manu  */
   3280  1.86      manu static int
   3281  1.86      manu pim_register_send_upcall(struct ip *ip, struct vif *vifp,
   3282  1.86      manu 	struct mbuf *mb_copy, struct mfc *rt)
   3283  1.86      manu {
   3284  1.86      manu     struct mbuf *mb_first;
   3285  1.86      manu     int len = ntohs(ip->ip_len);
   3286  1.86      manu     struct igmpmsg *im;
   3287  1.86      manu     struct sockaddr_in k_igmpsrc = { sizeof k_igmpsrc, AF_INET };
   3288  1.86      manu 
   3289  1.86      manu     /*
   3290  1.86      manu      * Add a new mbuf with an upcall header
   3291  1.86      manu      */
   3292  1.86      manu     MGETHDR(mb_first, M_DONTWAIT, MT_HEADER);
   3293  1.86      manu     if (mb_first == NULL) {
   3294  1.86      manu 	m_freem(mb_copy);
   3295  1.86      manu 	return ENOBUFS;
   3296  1.86      manu     }
   3297  1.86      manu     mb_first->m_data += max_linkhdr;
   3298  1.86      manu     mb_first->m_pkthdr.len = len + sizeof(struct igmpmsg);
   3299  1.86      manu     mb_first->m_len = sizeof(struct igmpmsg);
   3300  1.86      manu     mb_first->m_next = mb_copy;
   3301  1.86      manu 
   3302  1.86      manu     /* Send message to routing daemon */
   3303  1.86      manu     im = mtod(mb_first, struct igmpmsg *);
   3304  1.86      manu     im->im_msgtype	= IGMPMSG_WHOLEPKT;
   3305  1.86      manu     im->im_mbz		= 0;
   3306  1.86      manu     im->im_vif		= vifp - viftable;
   3307  1.86      manu     im->im_src		= ip->ip_src;
   3308  1.86      manu     im->im_dst		= ip->ip_dst;
   3309  1.86      manu 
   3310  1.86      manu     k_igmpsrc.sin_addr	= ip->ip_src;
   3311  1.86      manu 
   3312  1.86      manu     mrtstat.mrts_upcalls++;
   3313  1.86      manu 
   3314  1.86      manu     if (socket_send(ip_mrouter, mb_first, &k_igmpsrc) < 0) {
   3315  1.86      manu 	if (mrtdebug & DEBUG_PIM)
   3316  1.86      manu 	    log(LOG_WARNING,
   3317  1.86      manu 		"mcast: pim_register_send_upcall: ip_mrouter socket queue full");
   3318  1.86      manu 	++mrtstat.mrts_upq_sockfull;
   3319  1.86      manu 	return ENOBUFS;
   3320  1.86      manu     }
   3321  1.86      manu 
   3322  1.86      manu     /* Keep statistics */
   3323  1.86      manu     pimstat.pims_snd_registers_msgs++;
   3324  1.86      manu     pimstat.pims_snd_registers_bytes += len;
   3325  1.86      manu 
   3326  1.86      manu     return 0;
   3327  1.86      manu }
   3328  1.86      manu 
   3329  1.86      manu /*
   3330  1.86      manu  * Encapsulate the data packet in PIM Register message and send it to the RP.
   3331  1.86      manu  */
   3332  1.86      manu static int
   3333  1.86      manu pim_register_send_rp(struct ip *ip, struct vif *vifp,
   3334  1.86      manu 	struct mbuf *mb_copy, struct mfc *rt)
   3335  1.86      manu {
   3336  1.86      manu     struct mbuf *mb_first;
   3337  1.86      manu     struct ip *ip_outer;
   3338  1.86      manu     struct pim_encap_pimhdr *pimhdr;
   3339  1.86      manu     int len = ntohs(ip->ip_len);
   3340  1.86      manu     vifi_t vifi = rt->mfc_parent;
   3341  1.86      manu 
   3342  1.86      manu     if ((vifi >= numvifs) || in_nullhost(viftable[vifi].v_lcl_addr)) {
   3343  1.86      manu 	m_freem(mb_copy);
   3344  1.86      manu 	return EADDRNOTAVAIL;		/* The iif vif is invalid */
   3345  1.86      manu     }
   3346  1.86      manu 
   3347  1.86      manu     /*
   3348  1.86      manu      * Add a new mbuf with the encapsulating header
   3349  1.86      manu      */
   3350  1.86      manu     MGETHDR(mb_first, M_DONTWAIT, MT_HEADER);
   3351  1.86      manu     if (mb_first == NULL) {
   3352  1.86      manu 	m_freem(mb_copy);
   3353  1.86      manu 	return ENOBUFS;
   3354  1.86      manu     }
   3355  1.86      manu     mb_first->m_data += max_linkhdr;
   3356  1.86      manu     mb_first->m_len = sizeof(pim_encap_iphdr) + sizeof(pim_encap_pimhdr);
   3357  1.86      manu     mb_first->m_next = mb_copy;
   3358  1.86      manu 
   3359  1.86      manu     mb_first->m_pkthdr.len = len + mb_first->m_len;
   3360  1.86      manu 
   3361  1.86      manu     /*
   3362  1.86      manu      * Fill in the encapsulating IP and PIM header
   3363  1.86      manu      */
   3364  1.86      manu     ip_outer = mtod(mb_first, struct ip *);
   3365  1.86      manu     *ip_outer = pim_encap_iphdr;
   3366  1.86      manu     ip_outer->ip_id = ip_newid();
   3367  1.86      manu     ip_outer->ip_len = htons(len + sizeof(pim_encap_iphdr) +
   3368  1.86      manu 			     sizeof(pim_encap_pimhdr));
   3369  1.86      manu     ip_outer->ip_src = viftable[vifi].v_lcl_addr;
   3370  1.86      manu     ip_outer->ip_dst = rt->mfc_rp;
   3371  1.86      manu     /*
   3372  1.86      manu      * Copy the inner header TOS to the outer header, and take care of the
   3373  1.86      manu      * IP_DF bit.
   3374  1.86      manu      */
   3375  1.86      manu     ip_outer->ip_tos = ip->ip_tos;
   3376  1.86      manu     if (ntohs(ip->ip_off) & IP_DF)
   3377  1.86      manu 	ip_outer->ip_off |= IP_DF;
   3378  1.86      manu     pimhdr = (struct pim_encap_pimhdr *)((caddr_t)ip_outer
   3379  1.86      manu 					 + sizeof(pim_encap_iphdr));
   3380  1.86      manu     *pimhdr = pim_encap_pimhdr;
   3381  1.86      manu     /* If the iif crosses a border, set the Border-bit */
   3382  1.86      manu     if (rt->mfc_flags[vifi] & MRT_MFC_FLAGS_BORDER_VIF & mrt_api_config)
   3383  1.86      manu 	pimhdr->flags |= htonl(PIM_BORDER_REGISTER);
   3384  1.86      manu 
   3385  1.86      manu     mb_first->m_data += sizeof(pim_encap_iphdr);
   3386  1.86      manu     pimhdr->pim.pim_cksum = in_cksum(mb_first, sizeof(pim_encap_pimhdr));
   3387  1.86      manu     mb_first->m_data -= sizeof(pim_encap_iphdr);
   3388  1.86      manu 
   3389  1.86      manu     if (vifp->v_rate_limit == 0)
   3390  1.86      manu 	tbf_send_packet(vifp, mb_first);
   3391  1.86      manu     else
   3392  1.86      manu 	tbf_control(vifp, mb_first, ip, ntohs(ip_outer->ip_len));
   3393  1.86      manu 
   3394  1.86      manu     /* Keep statistics */
   3395  1.86      manu     pimstat.pims_snd_registers_msgs++;
   3396  1.86      manu     pimstat.pims_snd_registers_bytes += len;
   3397  1.86      manu 
   3398  1.86      manu     return 0;
   3399  1.86      manu }
   3400  1.86      manu 
   3401  1.86      manu /*
   3402  1.86      manu  * PIM-SMv2 and PIM-DM messages processing.
   3403  1.86      manu  * Receives and verifies the PIM control messages, and passes them
   3404  1.86      manu  * up to the listening socket, using rip_input().
   3405  1.86      manu  * The only message with special processing is the PIM_REGISTER message
   3406  1.86      manu  * (used by PIM-SM): the PIM header is stripped off, and the inner packet
   3407  1.86      manu  * is passed to if_simloop().
   3408  1.86      manu  */
   3409  1.86      manu void
   3410  1.86      manu pim_input(struct mbuf *m, ...)
   3411  1.86      manu {
   3412  1.86      manu     struct ip *ip = mtod(m, struct ip *);
   3413  1.86      manu     struct pim *pim;
   3414  1.86      manu     int minlen;
   3415  1.86      manu     int datalen;
   3416  1.86      manu     int ip_tos;
   3417  1.86      manu     int proto;
   3418  1.86      manu     int iphlen;
   3419  1.86      manu     va_list ap;
   3420  1.86      manu 
   3421  1.86      manu     va_start(ap, m);
   3422  1.86      manu     iphlen = va_arg(ap, int);
   3423  1.86      manu     proto = va_arg(ap, int);
   3424  1.86      manu     va_end(ap);
   3425  1.86      manu 
   3426  1.86      manu     datalen = ntohs(ip->ip_len) - iphlen;
   3427  1.86      manu 
   3428  1.86      manu     /* Keep statistics */
   3429  1.86      manu     pimstat.pims_rcv_total_msgs++;
   3430  1.86      manu     pimstat.pims_rcv_total_bytes += datalen;
   3431  1.86      manu 
   3432  1.86      manu     /*
   3433  1.86      manu      * Validate lengths
   3434  1.86      manu      */
   3435  1.86      manu     if (datalen < PIM_MINLEN) {
   3436  1.86      manu 	pimstat.pims_rcv_tooshort++;
   3437  1.86      manu 	log(LOG_ERR, "pim_input: packet size too small %d from %lx\n",
   3438  1.86      manu 	    datalen, (u_long)ip->ip_src.s_addr);
   3439  1.86      manu 	m_freem(m);
   3440  1.86      manu 	return;
   3441  1.86      manu     }
   3442  1.86      manu 
   3443  1.86      manu     /*
   3444  1.86      manu      * If the packet is at least as big as a REGISTER, go agead
   3445  1.86      manu      * and grab the PIM REGISTER header size, to avoid another
   3446  1.86      manu      * possible m_pullup() later.
   3447  1.86      manu      *
   3448  1.86      manu      * PIM_MINLEN       == pimhdr + u_int32_t == 4 + 4 = 8
   3449  1.86      manu      * PIM_REG_MINLEN   == pimhdr + reghdr + encap_iphdr == 4 + 4 + 20 = 28
   3450  1.86      manu      */
   3451  1.86      manu     minlen = iphlen + (datalen >= PIM_REG_MINLEN ? PIM_REG_MINLEN : PIM_MINLEN);
   3452  1.86      manu     /*
   3453  1.86      manu      * Get the IP and PIM headers in contiguous memory, and
   3454  1.86      manu      * possibly the PIM REGISTER header.
   3455  1.86      manu      */
   3456  1.86      manu     if ((m->m_flags & M_EXT || m->m_len < minlen) &&
   3457  1.86      manu 	(m = m_pullup(m, minlen)) == NULL) {
   3458  1.86      manu 	log(LOG_ERR, "pim_input: m_pullup failure\n");
   3459  1.86      manu 	return;
   3460  1.86      manu     }
   3461  1.86      manu     /* m_pullup() may have given us a new mbuf so reset ip. */
   3462  1.86      manu     ip = mtod(m, struct ip *);
   3463  1.86      manu     ip_tos = ip->ip_tos;
   3464  1.86      manu 
   3465  1.86      manu     /* adjust mbuf to point to the PIM header */
   3466  1.86      manu     m->m_data += iphlen;
   3467  1.86      manu     m->m_len  -= iphlen;
   3468  1.86      manu     pim = mtod(m, struct pim *);
   3469  1.86      manu 
   3470  1.86      manu     /*
   3471  1.86      manu      * Validate checksum. If PIM REGISTER, exclude the data packet.
   3472  1.86      manu      *
   3473  1.86      manu      * XXX: some older PIMv2 implementations don't make this distinction,
   3474  1.86      manu      * so for compatibility reason perform the checksum over part of the
   3475  1.86      manu      * message, and if error, then over the whole message.
   3476  1.86      manu      */
   3477  1.86      manu     if (PIM_VT_T(pim->pim_vt) == PIM_REGISTER && in_cksum(m, PIM_MINLEN) == 0) {
   3478  1.86      manu 	/* do nothing, checksum okay */
   3479  1.86      manu     } else if (in_cksum(m, datalen)) {
   3480  1.86      manu 	pimstat.pims_rcv_badsum++;
   3481  1.86      manu 	if (mrtdebug & DEBUG_PIM)
   3482  1.86      manu 	    log(LOG_DEBUG, "pim_input: invalid checksum");
   3483  1.86      manu 	m_freem(m);
   3484  1.86      manu 	return;
   3485  1.86      manu     }
   3486  1.86      manu 
   3487  1.86      manu     /* PIM version check */
   3488  1.86      manu     if (PIM_VT_V(pim->pim_vt) < PIM_VERSION) {
   3489  1.86      manu 	pimstat.pims_rcv_badversion++;
   3490  1.86      manu 	log(LOG_ERR, "pim_input: incorrect version %d, expecting %d\n",
   3491  1.86      manu 	    PIM_VT_V(pim->pim_vt), PIM_VERSION);
   3492  1.86      manu 	m_freem(m);
   3493  1.86      manu 	return;
   3494  1.86      manu     }
   3495  1.86      manu 
   3496  1.86      manu     /* restore mbuf back to the outer IP */
   3497  1.86      manu     m->m_data -= iphlen;
   3498  1.86      manu     m->m_len  += iphlen;
   3499  1.86      manu 
   3500  1.86      manu     if (PIM_VT_T(pim->pim_vt) == PIM_REGISTER) {
   3501  1.86      manu 	/*
   3502  1.86      manu 	 * Since this is a REGISTER, we'll make a copy of the register
   3503  1.86      manu 	 * headers ip + pim + u_int32 + encap_ip, to be passed up to the
   3504  1.86      manu 	 * routing daemon.
   3505  1.86      manu 	 */
   3506  1.86      manu 	int s;
   3507  1.86      manu 	struct sockaddr_in dst = { sizeof(dst), AF_INET };
   3508  1.86      manu 	struct mbuf *mcp;
   3509  1.86      manu 	struct ip *encap_ip;
   3510  1.86      manu 	u_int32_t *reghdr;
   3511  1.86      manu 	struct ifnet *vifp;
   3512  1.86      manu 
   3513  1.86      manu 	s = splsoftnet();
   3514  1.86      manu 	if ((reg_vif_num >= numvifs) || (reg_vif_num == VIFI_INVALID)) {
   3515  1.86      manu 	    splx(s);
   3516  1.86      manu 	    if (mrtdebug & DEBUG_PIM)
   3517  1.86      manu 		log(LOG_DEBUG,
   3518  1.86      manu 		    "pim_input: register vif not set: %d\n", reg_vif_num);
   3519  1.86      manu 	    m_freem(m);
   3520  1.86      manu 	    return;
   3521  1.86      manu 	}
   3522  1.86      manu 	/* XXX need refcnt? */
   3523  1.86      manu 	vifp = viftable[reg_vif_num].v_ifp;
   3524  1.86      manu 	splx(s);
   3525  1.86      manu 
   3526  1.86      manu 	/*
   3527  1.86      manu 	 * Validate length
   3528  1.86      manu 	 */
   3529  1.86      manu 	if (datalen < PIM_REG_MINLEN) {
   3530  1.86      manu 	    pimstat.pims_rcv_tooshort++;
   3531  1.86      manu 	    pimstat.pims_rcv_badregisters++;
   3532  1.86      manu 	    log(LOG_ERR,
   3533  1.86      manu 		"pim_input: register packet size too small %d from %lx\n",
   3534  1.86      manu 		datalen, (u_long)ip->ip_src.s_addr);
   3535  1.86      manu 	    m_freem(m);
   3536  1.86      manu 	    return;
   3537  1.86      manu 	}
   3538  1.86      manu 
   3539  1.86      manu 	reghdr = (u_int32_t *)(pim + 1);
   3540  1.86      manu 	encap_ip = (struct ip *)(reghdr + 1);
   3541  1.86      manu 
   3542  1.86      manu 	if (mrtdebug & DEBUG_PIM) {
   3543  1.86      manu 	    log(LOG_DEBUG,
   3544  1.86      manu 		"pim_input[register], encap_ip: %lx -> %lx, encap_ip len %d\n",
   3545  1.86      manu 		(u_long)ntohl(encap_ip->ip_src.s_addr),
   3546  1.86      manu 		(u_long)ntohl(encap_ip->ip_dst.s_addr),
   3547  1.86      manu 		ntohs(encap_ip->ip_len));
   3548  1.86      manu 	}
   3549  1.86      manu 
   3550  1.86      manu 	/* verify the version number of the inner packet */
   3551  1.86      manu 	if (encap_ip->ip_v != IPVERSION) {
   3552  1.86      manu 	    pimstat.pims_rcv_badregisters++;
   3553  1.86      manu 	    if (mrtdebug & DEBUG_PIM) {
   3554  1.86      manu 		log(LOG_DEBUG, "pim_input: invalid IP version (%d) "
   3555  1.86      manu 		    "of the inner packet\n", encap_ip->ip_v);
   3556  1.86      manu 	    }
   3557  1.86      manu 	    m_freem(m);
   3558  1.86      manu 	    return;
   3559  1.86      manu 	}
   3560  1.86      manu 
   3561  1.86      manu 	/* verify the inner packet is destined to a mcast group */
   3562  1.86      manu 	if (!IN_MULTICAST(encap_ip->ip_dst.s_addr)) {
   3563  1.86      manu 	    pimstat.pims_rcv_badregisters++;
   3564  1.86      manu 	    if (mrtdebug & DEBUG_PIM)
   3565  1.86      manu 		log(LOG_DEBUG,
   3566  1.86      manu 		    "pim_input: inner packet of register is not "
   3567  1.86      manu 		    "multicast %lx\n",
   3568  1.86      manu 		    (u_long)ntohl(encap_ip->ip_dst.s_addr));
   3569  1.86      manu 	    m_freem(m);
   3570  1.86      manu 	    return;
   3571  1.86      manu 	}
   3572  1.86      manu 
   3573  1.86      manu 	/* If a NULL_REGISTER, pass it to the daemon */
   3574  1.86      manu 	if ((ntohl(*reghdr) & PIM_NULL_REGISTER))
   3575  1.86      manu 	    goto pim_input_to_daemon;
   3576  1.86      manu 
   3577  1.86      manu 	/*
   3578  1.86      manu 	 * Copy the TOS from the outer IP header to the inner IP header.
   3579  1.86      manu 	 */
   3580  1.86      manu 	if (encap_ip->ip_tos != ip_tos) {
   3581  1.86      manu 	    /* Outer TOS -> inner TOS */
   3582  1.86      manu 	    encap_ip->ip_tos = ip_tos;
   3583  1.86      manu 	    /* Recompute the inner header checksum. Sigh... */
   3584  1.86      manu 
   3585  1.86      manu 	    /* adjust mbuf to point to the inner IP header */
   3586  1.86      manu 	    m->m_data += (iphlen + PIM_MINLEN);
   3587  1.86      manu 	    m->m_len  -= (iphlen + PIM_MINLEN);
   3588  1.86      manu 
   3589  1.86      manu 	    encap_ip->ip_sum = 0;
   3590  1.86      manu 	    encap_ip->ip_sum = in_cksum(m, encap_ip->ip_hl << 2);
   3591  1.86      manu 
   3592  1.86      manu 	    /* restore mbuf to point back to the outer IP header */
   3593  1.86      manu 	    m->m_data -= (iphlen + PIM_MINLEN);
   3594  1.86      manu 	    m->m_len  += (iphlen + PIM_MINLEN);
   3595  1.86      manu 	}
   3596  1.86      manu 
   3597  1.86      manu 	/*
   3598  1.86      manu 	 * Decapsulate the inner IP packet and loopback to forward it
   3599  1.86      manu 	 * as a normal multicast packet. Also, make a copy of the
   3600  1.86      manu 	 *     outer_iphdr + pimhdr + reghdr + encap_iphdr
   3601  1.86      manu 	 * to pass to the daemon later, so it can take the appropriate
   3602  1.86      manu 	 * actions (e.g., send back PIM_REGISTER_STOP).
   3603  1.86      manu 	 * XXX: here m->m_data points to the outer IP header.
   3604  1.86      manu 	 */
   3605  1.86      manu 	mcp = m_copy(m, 0, iphlen + PIM_REG_MINLEN);
   3606  1.86      manu 	if (mcp == NULL) {
   3607  1.86      manu 	    log(LOG_ERR,
   3608  1.86      manu 		"pim_input: pim register: could not copy register head\n");
   3609  1.86      manu 	    m_freem(m);
   3610  1.86      manu 	    return;
   3611  1.86      manu 	}
   3612  1.86      manu 
   3613  1.86      manu 	/* Keep statistics */
   3614  1.86      manu 	/* XXX: registers_bytes include only the encap. mcast pkt */
   3615  1.86      manu 	pimstat.pims_rcv_registers_msgs++;
   3616  1.86      manu 	pimstat.pims_rcv_registers_bytes += ntohs(encap_ip->ip_len);
   3617  1.86      manu 
   3618  1.86      manu 	/*
   3619  1.86      manu 	 * forward the inner ip packet; point m_data at the inner ip.
   3620  1.86      manu 	 */
   3621  1.86      manu 	m_adj(m, iphlen + PIM_MINLEN);
   3622  1.86      manu 
   3623  1.86      manu 	if (mrtdebug & DEBUG_PIM) {
   3624  1.86      manu 	    log(LOG_DEBUG,
   3625  1.86      manu 		"pim_input: forwarding decapsulated register: "
   3626  1.86      manu 		"src %lx, dst %lx, vif %d\n",
   3627  1.86      manu 		(u_long)ntohl(encap_ip->ip_src.s_addr),
   3628  1.86      manu 		(u_long)ntohl(encap_ip->ip_dst.s_addr),
   3629  1.86      manu 		reg_vif_num);
   3630  1.86      manu 	}
   3631  1.86      manu 	/* NB: vifp was collected above; can it change on us? */
   3632  1.86      manu 	looutput(vifp, m, (struct sockaddr *)&dst, (struct rtentry *)NULL);
   3633  1.86      manu 
   3634  1.86      manu 	/* prepare the register head to send to the mrouting daemon */
   3635  1.86      manu 	m = mcp;
   3636  1.86      manu     }
   3637  1.86      manu 
   3638  1.86      manu pim_input_to_daemon:
   3639  1.86      manu     /*
   3640  1.86      manu      * Pass the PIM message up to the daemon; if it is a Register message,
   3641  1.86      manu      * pass the 'head' only up to the daemon. This includes the
   3642  1.86      manu      * outer IP header, PIM header, PIM-Register header and the
   3643  1.86      manu      * inner IP header.
   3644  1.86      manu      * XXX: the outer IP header pkt size of a Register is not adjust to
   3645  1.86      manu      * reflect the fact that the inner multicast data is truncated.
   3646  1.86      manu      */
   3647  1.86      manu     rip_input(m, iphlen, proto);
   3648  1.86      manu 
   3649  1.86      manu     return;
   3650  1.86      manu }
   3651  1.86      manu #endif /* PIM */
   3652