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at_control.c revision 1.11.10.1
      1  1.11.10.1      elad /*	$NetBSD: at_control.c,v 1.11.10.1 2006/03/08 01:15:19 elad Exp $	 */
      2        1.1  christos 
      3        1.1  christos /*
      4        1.1  christos  * Copyright (c) 1990,1994 Regents of The University of Michigan.
      5        1.1  christos  * All Rights Reserved.
      6        1.1  christos  *
      7        1.1  christos  * Permission to use, copy, modify, and distribute this software and
      8        1.1  christos  * its documentation for any purpose and without fee is hereby granted,
      9        1.1  christos  * provided that the above copyright notice appears in all copies and
     10        1.1  christos  * that both that copyright notice and this permission notice appear
     11        1.1  christos  * in supporting documentation, and that the name of The University
     12        1.1  christos  * of Michigan not be used in advertising or publicity pertaining to
     13        1.1  christos  * distribution of the software without specific, written prior
     14        1.1  christos  * permission. This software is supplied as is without expressed or
     15        1.1  christos  * implied warranties of any kind.
     16        1.1  christos  *
     17        1.1  christos  * This product includes software developed by the University of
     18        1.1  christos  * California, Berkeley and its contributors.
     19        1.1  christos  *
     20        1.1  christos  *	Research Systems Unix Group
     21        1.1  christos  *	The University of Michigan
     22        1.1  christos  *	c/o Wesley Craig
     23        1.1  christos  *	535 W. William Street
     24        1.1  christos  *	Ann Arbor, Michigan
     25        1.1  christos  *	+1-313-764-2278
     26        1.1  christos  *	netatalk (at) umich.edu
     27        1.1  christos  */
     28        1.6     lukem 
     29        1.6     lukem #include <sys/cdefs.h>
     30  1.11.10.1      elad __KERNEL_RCSID(0, "$NetBSD: at_control.c,v 1.11.10.1 2006/03/08 01:15:19 elad Exp $");
     31        1.1  christos 
     32        1.1  christos #include <sys/param.h>
     33        1.1  christos #include <sys/systm.h>
     34        1.1  christos #include <sys/proc.h>
     35        1.1  christos #include <sys/errno.h>
     36        1.1  christos #include <sys/ioctl.h>
     37        1.1  christos #include <sys/mbuf.h>
     38        1.1  christos #include <sys/kernel.h>
     39        1.1  christos #include <sys/socket.h>
     40        1.1  christos #include <sys/socketvar.h>
     41  1.11.10.1      elad #include <sys/kauth.h>
     42        1.1  christos #include <net/if.h>
     43        1.1  christos #include <net/route.h>
     44        1.1  christos #include <net/if_ether.h>
     45        1.1  christos #include <netinet/in.h>
     46        1.1  christos #undef s_net
     47        1.1  christos 
     48        1.1  christos #include <netatalk/at.h>
     49        1.1  christos #include <netatalk/at_var.h>
     50        1.1  christos #include <netatalk/aarp.h>
     51        1.1  christos #include <netatalk/phase2.h>
     52        1.1  christos #include <netatalk/at_extern.h>
     53        1.1  christos 
     54        1.1  christos static int aa_dorangeroute __P((struct ifaddr * ifa,
     55        1.1  christos     u_int first, u_int last, int cmd));
     56        1.1  christos static int aa_addsingleroute __P((struct ifaddr * ifa,
     57        1.1  christos     struct at_addr * addr, struct at_addr * mask));
     58        1.1  christos static int aa_delsingleroute __P((struct ifaddr * ifa,
     59        1.1  christos     struct at_addr * addr, struct at_addr * mask));
     60        1.1  christos static int aa_dosingleroute __P((struct ifaddr * ifa, struct at_addr * addr,
     61        1.1  christos     struct at_addr * mask, int cmd, int flags));
     62        1.1  christos static int at_scrub __P((struct ifnet * ifp, struct at_ifaddr * aa));
     63        1.1  christos static int at_ifinit __P((struct ifnet * ifp, struct at_ifaddr * aa,
     64        1.1  christos     struct sockaddr_at * sat));
     65        1.1  christos #if 0
     66        1.1  christos static void aa_clean __P((void));
     67        1.1  christos #endif
     68        1.1  christos 
     69        1.1  christos #define sateqaddr(a,b)	((a)->sat_len == (b)->sat_len && \
     70        1.1  christos 			 (a)->sat_family == (b)->sat_family && \
     71        1.1  christos 			 (a)->sat_addr.s_net == (b)->sat_addr.s_net && \
     72        1.1  christos 			 (a)->sat_addr.s_node == (b)->sat_addr.s_node )
     73        1.1  christos 
     74        1.1  christos int
     75        1.1  christos at_control(cmd, data, ifp, p)
     76        1.1  christos 	u_long          cmd;
     77        1.1  christos 	caddr_t         data;
     78        1.1  christos 	struct ifnet   *ifp;
     79        1.1  christos 	struct proc    *p;
     80        1.1  christos {
     81        1.1  christos 	struct ifreq   *ifr = (struct ifreq *) data;
     82        1.1  christos 	struct sockaddr_at *sat;
     83        1.1  christos 	struct netrange *nr;
     84        1.1  christos 	struct at_aliasreq *ifra = (struct at_aliasreq *) data;
     85        1.1  christos 	struct at_ifaddr *aa0;
     86        1.1  christos 	struct at_ifaddr *aa = 0;
     87        1.1  christos 
     88        1.1  christos 	/*
     89        1.1  christos          * If we have an ifp, then find the matching at_ifaddr if it exists
     90        1.1  christos          */
     91        1.1  christos 	if (ifp)
     92        1.1  christos 		for (aa = at_ifaddr.tqh_first; aa; aa = aa->aa_list.tqe_next)
     93        1.1  christos 			if (aa->aa_ifp == ifp)
     94        1.1  christos 				break;
     95        1.1  christos 
     96        1.1  christos 	/*
     97        1.1  christos          * In this first switch table we are basically getting ready for
     98        1.1  christos          * the second one, by getting the atalk-specific things set up
     99        1.1  christos          * so that they start to look more similar to other protocols etc.
    100        1.1  christos          */
    101        1.1  christos 
    102        1.1  christos 	switch (cmd) {
    103        1.1  christos 	case SIOCAIFADDR:
    104        1.1  christos 	case SIOCDIFADDR:
    105        1.1  christos 		/*
    106        1.1  christos 		 * If we have an appletalk sockaddr, scan forward of where
    107        1.1  christos 		 * we are now on the at_ifaddr list to find one with a matching
    108        1.1  christos 		 * address on this interface.
    109        1.1  christos 		 * This may leave aa pointing to the first address on the
    110        1.1  christos 		 * NEXT interface!
    111        1.1  christos 		 */
    112        1.1  christos 		if (ifra->ifra_addr.sat_family == AF_APPLETALK) {
    113        1.1  christos 			for (; aa; aa = aa->aa_list.tqe_next)
    114        1.1  christos 				if (aa->aa_ifp == ifp &&
    115        1.1  christos 				    sateqaddr(&aa->aa_addr, &ifra->ifra_addr))
    116        1.1  christos 					break;
    117        1.1  christos 		}
    118        1.1  christos 		/*
    119        1.1  christos 		 * If we a retrying to delete an addres but didn't find such,
    120        1.1  christos 		 * then return with an error
    121        1.1  christos 		 */
    122        1.1  christos 		if (cmd == SIOCDIFADDR && aa == 0)
    123        1.1  christos 			return (EADDRNOTAVAIL);
    124        1.1  christos 		/* FALLTHROUGH */
    125        1.1  christos 
    126        1.1  christos 	case SIOCSIFADDR:
    127        1.1  christos 		/*
    128        1.1  christos 		 * If we are not superuser, then we don't get to do these
    129        1.1  christos 		 * ops.
    130        1.1  christos 		 */
    131  1.11.10.1      elad 		if (generic_authorize(p->p_cred, KAUTH_GENERIC_ISSUSER,
    132  1.11.10.1      elad 				      &p->p_acflag))
    133        1.1  christos 			return (EPERM);
    134        1.1  christos 
    135        1.1  christos 		sat = satosat(&ifr->ifr_addr);
    136        1.1  christos 		nr = (struct netrange *) sat->sat_zero;
    137        1.1  christos 		if (nr->nr_phase == 1) {
    138        1.1  christos 			/*
    139        1.1  christos 		         * Look for a phase 1 address on this interface.
    140        1.1  christos 		         * This may leave aa pointing to the first address on
    141        1.1  christos 			 * the NEXT interface!
    142        1.1  christos 		         */
    143        1.1  christos 			for (; aa; aa = aa->aa_list.tqe_next) {
    144        1.1  christos 				if (aa->aa_ifp == ifp &&
    145        1.1  christos 				    (aa->aa_flags & AFA_PHASE2) == 0)
    146        1.1  christos 					break;
    147        1.1  christos 			}
    148        1.1  christos 		} else {	/* default to phase 2 */
    149        1.1  christos 			/*
    150        1.1  christos 		         * Look for a phase 2 address on this interface.
    151        1.1  christos 		         * This may leave aa pointing to the first address on
    152        1.1  christos 			 * the NEXT interface!
    153        1.1  christos 		         */
    154        1.1  christos 			for (; aa; aa = aa->aa_list.tqe_next) {
    155        1.1  christos 				if (aa->aa_ifp == ifp &&
    156        1.1  christos 				    (aa->aa_flags & AFA_PHASE2))
    157        1.1  christos 					break;
    158        1.1  christos 			}
    159        1.1  christos 		}
    160        1.1  christos 
    161        1.1  christos 		if (ifp == 0)
    162        1.1  christos 			panic("at_control");
    163        1.1  christos 
    164        1.1  christos 		/*
    165        1.1  christos 		 * If we failed to find an existing at_ifaddr entry, then we
    166        1.1  christos 		 * allocate a fresh one.
    167        1.1  christos 		 * XXX change this to use malloc
    168        1.1  christos 		 */
    169        1.1  christos 		if (aa == (struct at_ifaddr *) 0) {
    170        1.1  christos 			aa = (struct at_ifaddr *)
    171       1.10     perry 			    malloc(sizeof(struct at_ifaddr), M_IFADDR,
    172        1.9      matt 			    M_WAITOK|M_ZERO);
    173        1.1  christos 
    174        1.1  christos 			if (aa == NULL)
    175        1.1  christos 				return (ENOBUFS);
    176        1.1  christos 
    177        1.4   thorpej 			callout_init(&aa->aa_probe_ch);
    178        1.1  christos 
    179        1.1  christos 			if ((aa0 = at_ifaddr.tqh_first) != NULL) {
    180        1.1  christos 				/*
    181        1.1  christos 				 * Don't let the loopback be first, since the
    182        1.1  christos 				 * first address is the machine's default
    183        1.1  christos 				 * address for binding.
    184        1.1  christos 				 * If it is, stick ourself in front, otherwise
    185        1.1  christos 				 * go to the back of the list.
    186        1.1  christos 				 */
    187        1.1  christos 				if (aa0->aa_ifp->if_flags & IFF_LOOPBACK) {
    188        1.1  christos 					TAILQ_INSERT_HEAD(&at_ifaddr, aa,
    189        1.1  christos 					    aa_list);
    190        1.1  christos 				} else {
    191        1.1  christos 					TAILQ_INSERT_TAIL(&at_ifaddr, aa,
    192        1.1  christos 					    aa_list);
    193        1.1  christos 				}
    194        1.1  christos 			} else {
    195        1.1  christos 				TAILQ_INSERT_TAIL(&at_ifaddr, aa, aa_list);
    196        1.1  christos 			}
    197        1.2   thorpej 			IFAREF(&aa->aa_ifa);
    198        1.1  christos 
    199        1.1  christos 			/*
    200        1.1  christos 		         * Find the end of the interface's addresses
    201        1.1  christos 		         * and link our new one on the end
    202        1.1  christos 		         */
    203        1.1  christos 			TAILQ_INSERT_TAIL(&ifp->if_addrlist,
    204        1.1  christos 			    (struct ifaddr *) aa, ifa_list);
    205        1.2   thorpej 			IFAREF(&aa->aa_ifa);
    206        1.1  christos 
    207        1.1  christos 			/*
    208        1.1  christos 		         * As the at_ifaddr contains the actual sockaddrs,
    209        1.1  christos 		         * and the ifaddr itself, link them al together
    210        1.1  christos 			 * correctly.
    211        1.1  christos 		         */
    212        1.1  christos 			aa->aa_ifa.ifa_addr =
    213        1.1  christos 			    (struct sockaddr *) &aa->aa_addr;
    214        1.1  christos 			aa->aa_ifa.ifa_dstaddr =
    215        1.1  christos 			    (struct sockaddr *) &aa->aa_addr;
    216        1.1  christos 			aa->aa_ifa.ifa_netmask =
    217        1.1  christos 			    (struct sockaddr *) &aa->aa_netmask;
    218        1.1  christos 
    219        1.1  christos 			/*
    220        1.1  christos 		         * Set/clear the phase 2 bit.
    221        1.1  christos 		         */
    222        1.1  christos 			if (nr->nr_phase == 1)
    223        1.1  christos 				aa->aa_flags &= ~AFA_PHASE2;
    224        1.1  christos 			else
    225        1.1  christos 				aa->aa_flags |= AFA_PHASE2;
    226        1.1  christos 
    227        1.1  christos 			/*
    228        1.1  christos 		         * and link it all together
    229        1.1  christos 		         */
    230        1.1  christos 			aa->aa_ifp = ifp;
    231        1.1  christos 		} else {
    232        1.1  christos 			/*
    233        1.1  christos 		         * If we DID find one then we clobber any routes
    234        1.1  christos 			 * dependent on it..
    235        1.1  christos 		         */
    236        1.1  christos 			at_scrub(ifp, aa);
    237        1.1  christos 		}
    238        1.1  christos 		break;
    239        1.1  christos 
    240        1.1  christos 	case SIOCGIFADDR:
    241        1.1  christos 		sat = satosat(&ifr->ifr_addr);
    242        1.1  christos 		nr = (struct netrange *) sat->sat_zero;
    243        1.1  christos 		if (nr->nr_phase == 1) {
    244        1.1  christos 			/*
    245        1.1  christos 		         * If the request is specifying phase 1, then
    246        1.1  christos 		         * only look at a phase one address
    247        1.1  christos 		         */
    248        1.1  christos 			for (; aa; aa = aa->aa_list.tqe_next) {
    249        1.1  christos 				if (aa->aa_ifp == ifp &&
    250        1.1  christos 				    (aa->aa_flags & AFA_PHASE2) == 0)
    251        1.1  christos 					break;
    252        1.1  christos 			}
    253        1.8        is 		} else if (nr->nr_phase == 2) {
    254        1.1  christos 			/*
    255        1.8        is 		         * If the request is specifying phase 2, then
    256        1.8        is 		         * only look at a phase two address
    257        1.1  christos 		         */
    258        1.1  christos 			for (; aa; aa = aa->aa_list.tqe_next) {
    259        1.1  christos 				if (aa->aa_ifp == ifp &&
    260        1.1  christos 				    (aa->aa_flags & AFA_PHASE2))
    261        1.8        is 					break;
    262        1.8        is 			}
    263        1.8        is 		} else {
    264        1.8        is 			/*
    265        1.8        is 		         * default to everything
    266        1.8        is 		         */
    267        1.8        is 			for (; aa; aa = aa->aa_list.tqe_next) {
    268        1.8        is 				if (aa->aa_ifp == ifp)
    269        1.1  christos 					break;
    270        1.1  christos 			}
    271        1.1  christos 		}
    272        1.1  christos 
    273        1.1  christos 		if (aa == (struct at_ifaddr *) 0)
    274        1.1  christos 			return (EADDRNOTAVAIL);
    275        1.1  christos 		break;
    276        1.1  christos 	}
    277        1.1  christos 
    278        1.1  christos 	/*
    279        1.1  christos          * By the time this switch is run we should be able to assume that
    280        1.1  christos          * the "aa" pointer is valid when needed.
    281        1.1  christos          */
    282        1.1  christos 	switch (cmd) {
    283        1.1  christos 	case SIOCGIFADDR:
    284        1.1  christos 
    285        1.1  christos 		/*
    286        1.1  christos 		 * copy the contents of the sockaddr blindly.
    287        1.1  christos 		 */
    288        1.1  christos 		sat = (struct sockaddr_at *) & ifr->ifr_addr;
    289        1.1  christos 		*sat = aa->aa_addr;
    290        1.1  christos 
    291        1.1  christos 		/*
    292        1.1  christos 		 * and do some cleanups
    293        1.1  christos 		 */
    294        1.1  christos 		((struct netrange *) &sat->sat_zero)->nr_phase =
    295        1.1  christos 		    (aa->aa_flags & AFA_PHASE2) ? 2 : 1;
    296        1.1  christos 		((struct netrange *) &sat->sat_zero)->nr_firstnet =
    297        1.1  christos 		    aa->aa_firstnet;
    298        1.1  christos 		((struct netrange *) &sat->sat_zero)->nr_lastnet =
    299        1.1  christos 		    aa->aa_lastnet;
    300        1.1  christos 		break;
    301        1.1  christos 
    302        1.1  christos 	case SIOCSIFADDR:
    303       1.10     perry 		return (at_ifinit(ifp, aa,
    304        1.1  christos 		    (struct sockaddr_at *) &ifr->ifr_addr));
    305        1.1  christos 
    306        1.1  christos 	case SIOCAIFADDR:
    307        1.1  christos 		if (sateqaddr(&ifra->ifra_addr, &aa->aa_addr))
    308        1.1  christos 			return 0;
    309        1.1  christos 		return (at_ifinit(ifp, aa,
    310        1.1  christos 		    (struct sockaddr_at *) &ifr->ifr_addr));
    311        1.1  christos 
    312        1.1  christos 	case SIOCDIFADDR:
    313        1.2   thorpej 		at_purgeaddr((struct ifaddr *) aa, ifp);
    314        1.1  christos 		break;
    315        1.1  christos 
    316        1.1  christos 	default:
    317        1.1  christos 		if (ifp == 0 || ifp->if_ioctl == 0)
    318        1.1  christos 			return (EOPNOTSUPP);
    319        1.1  christos 		return ((*ifp->if_ioctl) (ifp, cmd, data));
    320        1.1  christos 	}
    321        1.1  christos 	return (0);
    322        1.2   thorpej }
    323        1.2   thorpej 
    324        1.2   thorpej void
    325        1.2   thorpej at_purgeaddr(ifa, ifp)
    326        1.2   thorpej 	struct ifaddr *ifa;
    327        1.2   thorpej 	struct ifnet *ifp;
    328        1.2   thorpej {
    329        1.2   thorpej 	struct at_ifaddr *aa = (void *) ifa;
    330        1.2   thorpej 
    331        1.2   thorpej 	/*
    332        1.2   thorpej 	 * scrub all routes.. didn't we just DO this? XXX yes, del it
    333        1.2   thorpej 	 * XXX above XXX not necessarily true anymore
    334        1.2   thorpej 	 */
    335        1.2   thorpej 	at_scrub(ifp, aa);
    336        1.2   thorpej 
    337        1.2   thorpej 	/*
    338        1.2   thorpej 	 * remove the ifaddr from the interface
    339        1.2   thorpej 	 */
    340        1.2   thorpej 	TAILQ_REMOVE(&ifp->if_addrlist, (struct ifaddr *) aa, ifa_list);
    341        1.2   thorpej 	IFAFREE(&aa->aa_ifa);
    342        1.2   thorpej 	TAILQ_REMOVE(&at_ifaddr, aa, aa_list);
    343        1.2   thorpej 	IFAFREE(&aa->aa_ifa);
    344        1.3   thorpej }
    345        1.3   thorpej 
    346        1.3   thorpej void
    347        1.3   thorpej at_purgeif(ifp)
    348        1.3   thorpej 	struct ifnet *ifp;
    349        1.3   thorpej {
    350        1.3   thorpej 	struct ifaddr *ifa, *nifa;
    351        1.3   thorpej 
    352        1.3   thorpej 	for (ifa = TAILQ_FIRST(&ifp->if_addrlist); ifa != NULL; ifa = nifa) {
    353        1.3   thorpej 		nifa = TAILQ_NEXT(ifa, ifa_list);
    354        1.3   thorpej 		if (ifa->ifa_addr->sa_family != AF_APPLETALK)
    355        1.3   thorpej 			continue;
    356        1.3   thorpej 		at_purgeaddr(ifa, ifp);
    357        1.3   thorpej 	}
    358        1.1  christos }
    359        1.1  christos 
    360        1.1  christos /*
    361        1.1  christos  * Given an interface and an at_ifaddr (supposedly on that interface) remove
    362        1.1  christos  * any routes that depend on this. Why ifp is needed I'm not sure, as
    363        1.1  christos  * aa->at_ifaddr.ifa_ifp should be the same.
    364        1.1  christos  */
    365        1.1  christos static int
    366        1.1  christos at_scrub(ifp, aa)
    367        1.1  christos 	struct ifnet   *ifp;
    368        1.1  christos 	struct at_ifaddr *aa;
    369        1.1  christos {
    370        1.1  christos 	int error = 0;
    371        1.1  christos 
    372        1.1  christos 	if (aa->aa_flags & AFA_ROUTE) {
    373        1.1  christos 		if (ifp->if_flags & IFF_LOOPBACK)
    374        1.1  christos 			error = aa_delsingleroute(&aa->aa_ifa,
    375        1.1  christos 			    &aa->aa_addr.sat_addr, &aa->aa_netmask.sat_addr);
    376        1.1  christos 		else if (ifp->if_flags & IFF_POINTOPOINT)
    377        1.1  christos 			error = rtinit(&aa->aa_ifa, RTM_DELETE, RTF_HOST);
    378        1.1  christos 		else if (ifp->if_flags & IFF_BROADCAST)
    379        1.1  christos 			error = aa_dorangeroute(&aa->aa_ifa,
    380        1.1  christos 			    ntohs(aa->aa_firstnet), ntohs(aa->aa_lastnet),
    381        1.1  christos 			    RTM_DELETE);
    382        1.1  christos 
    383        1.1  christos 		aa->aa_ifa.ifa_flags &= ~IFA_ROUTE;
    384        1.1  christos 		aa->aa_flags &= ~AFA_ROUTE;
    385        1.1  christos 	}
    386        1.1  christos 	return error;
    387        1.1  christos }
    388        1.1  christos 
    389        1.1  christos /*
    390        1.1  christos  * given an at_ifaddr,a sockaddr_at and an ifp,
    391        1.1  christos  * bang them all together at high speed and see what happens
    392        1.1  christos  */
    393        1.1  christos static int
    394        1.1  christos at_ifinit(ifp, aa, sat)
    395        1.1  christos 	struct ifnet   *ifp;
    396        1.1  christos 	struct at_ifaddr *aa;
    397        1.1  christos 	struct sockaddr_at *sat;
    398        1.1  christos {
    399        1.1  christos 	struct netrange nr, onr;
    400        1.1  christos 	struct sockaddr_at oldaddr;
    401        1.5   thorpej 	int             s = splnet(), error = 0, i, j;
    402        1.1  christos 	int             netinc, nodeinc, nnets;
    403        1.1  christos 	u_short         net;
    404        1.1  christos 
    405        1.1  christos 	/*
    406        1.1  christos 	 * save the old addresses in the at_ifaddr just in case we need them.
    407        1.1  christos 	 */
    408        1.1  christos 	oldaddr = aa->aa_addr;
    409        1.1  christos 	onr.nr_firstnet = aa->aa_firstnet;
    410        1.1  christos 	onr.nr_lastnet = aa->aa_lastnet;
    411        1.1  christos 
    412        1.1  christos 	/*
    413        1.1  christos          * take the address supplied as an argument, and add it to the
    414        1.1  christos          * at_ifnet (also given). Remember ing to update
    415        1.1  christos          * those parts of the at_ifaddr that need special processing
    416        1.1  christos          */
    417        1.1  christos 	bzero(AA_SAT(aa), sizeof(struct sockaddr_at));
    418        1.1  christos 	bcopy(sat->sat_zero, &nr, sizeof(struct netrange));
    419        1.1  christos 	bcopy(sat->sat_zero, AA_SAT(aa)->sat_zero, sizeof(struct netrange));
    420        1.1  christos 	nnets = ntohs(nr.nr_lastnet) - ntohs(nr.nr_firstnet) + 1;
    421        1.1  christos 	aa->aa_firstnet = nr.nr_firstnet;
    422        1.1  christos 	aa->aa_lastnet = nr.nr_lastnet;
    423        1.1  christos 
    424        1.1  christos #ifdef NETATALKDEBUG
    425        1.1  christos 	printf("at_ifinit: %s: %u.%u range %u-%u phase %d\n",
    426        1.1  christos 	    ifp->if_xname,
    427        1.1  christos 	    ntohs(sat->sat_addr.s_net), sat->sat_addr.s_node,
    428        1.1  christos 	    ntohs(aa->aa_firstnet), ntohs(aa->aa_lastnet),
    429        1.1  christos 	    (aa->aa_flags & AFA_PHASE2) ? 2 : 1);
    430        1.1  christos #endif
    431        1.1  christos 
    432        1.1  christos 	/*
    433        1.1  christos          * We could eliminate the need for a second phase 1 probe (post
    434        1.1  christos          * autoconf) if we check whether we're resetting the node. Note
    435        1.1  christos          * that phase 1 probes use only nodes, not net.node pairs.  Under
    436        1.1  christos          * phase 2, both the net and node must be the same.
    437        1.1  christos          */
    438        1.1  christos 	AA_SAT(aa)->sat_len = sat->sat_len;
    439        1.1  christos 	AA_SAT(aa)->sat_family = AF_APPLETALK;
    440        1.1  christos 	if (ifp->if_flags & IFF_LOOPBACK) {
    441        1.1  christos 		AA_SAT(aa)->sat_addr.s_net = sat->sat_addr.s_net;
    442        1.1  christos 		AA_SAT(aa)->sat_addr.s_node = sat->sat_addr.s_node;
    443        1.1  christos #if 0
    444        1.1  christos 	} else if (fp->if_flags & IFF_POINTOPOINT) {
    445        1.1  christos 		/* unimplemented */
    446        1.1  christos 		/*
    447        1.1  christos 		 * we'd have to copy the dstaddr field over from the sat
    448        1.1  christos 		 * but it's not clear that it would contain the right info..
    449        1.1  christos 		 */
    450        1.1  christos #endif
    451        1.1  christos 	} else {
    452        1.1  christos 		/*
    453        1.1  christos 		 * We are a normal (probably ethernet) interface.
    454        1.1  christos 		 * apply the new address to the interface structures etc.
    455        1.1  christos 		 * We will probe this address on the net first, before
    456        1.1  christos 		 * applying it to ensure that it is free.. If it is not, then
    457        1.1  christos 		 * we will try a number of other randomly generated addresses
    458        1.1  christos 		 * in this net and then increment the net.  etc.etc. until
    459        1.1  christos 		 * we find an unused address.
    460        1.1  christos 		 */
    461        1.1  christos 		aa->aa_flags |= AFA_PROBING;	/* if not loopback we Must
    462        1.1  christos 						 * probe? */
    463        1.1  christos 		if (aa->aa_flags & AFA_PHASE2) {
    464        1.1  christos 			if (sat->sat_addr.s_net == ATADDR_ANYNET) {
    465        1.1  christos 				/*
    466        1.1  christos 				 * If we are phase 2, and the net was not
    467        1.1  christos 				 * specified * then we select a random net
    468        1.1  christos 				 * within the supplied netrange.
    469        1.1  christos 				 * XXX use /dev/random?
    470        1.1  christos 				 */
    471        1.1  christos 				if (nnets != 1) {
    472        1.1  christos 					net = ntohs(nr.nr_firstnet) +
    473        1.1  christos 					    time.tv_sec % (nnets - 1);
    474        1.1  christos 				} else {
    475        1.1  christos 					net = ntohs(nr.nr_firstnet);
    476        1.1  christos 				}
    477        1.1  christos 			} else {
    478        1.1  christos 				/*
    479        1.1  christos 				 * if a net was supplied, then check that it
    480        1.1  christos 				 * is within the netrange. If it is not then
    481        1.1  christos 				 * replace the old values and return an error
    482        1.1  christos 				 */
    483        1.1  christos 				if (ntohs(sat->sat_addr.s_net) <
    484        1.1  christos 				    ntohs(nr.nr_firstnet) ||
    485        1.1  christos 				    ntohs(sat->sat_addr.s_net) >
    486        1.1  christos 				    ntohs(nr.nr_lastnet)) {
    487        1.1  christos 					aa->aa_addr = oldaddr;
    488        1.1  christos 					aa->aa_firstnet = onr.nr_firstnet;
    489        1.1  christos 					aa->aa_lastnet = onr.nr_lastnet;
    490        1.1  christos 					splx(s);
    491        1.1  christos 					return (EINVAL);
    492        1.1  christos 				}
    493        1.1  christos 				/*
    494        1.1  christos 				 * otherwise just use the new net number..
    495        1.1  christos 				 */
    496        1.1  christos 				net = ntohs(sat->sat_addr.s_net);
    497        1.1  christos 			}
    498        1.1  christos 		} else {
    499        1.1  christos 			/*
    500        1.1  christos 		         * we must be phase one, so just use whatever we were
    501        1.1  christos 			 * given. I guess it really isn't going to be used...
    502        1.1  christos 			 * RIGHT?
    503        1.1  christos 		         */
    504        1.1  christos 			net = ntohs(sat->sat_addr.s_net);
    505        1.1  christos 		}
    506        1.1  christos 
    507        1.1  christos 		/*
    508        1.1  christos 		 * set the node part of the address into the ifaddr. If it's
    509        1.1  christos 		 * not specified, be random about it... XXX use /dev/random?
    510        1.1  christos 		 */
    511        1.1  christos 		if (sat->sat_addr.s_node == ATADDR_ANYNODE) {
    512        1.1  christos 			AA_SAT(aa)->sat_addr.s_node = time.tv_sec;
    513        1.1  christos 		} else {
    514        1.1  christos 			AA_SAT(aa)->sat_addr.s_node = sat->sat_addr.s_node;
    515        1.1  christos 		}
    516        1.1  christos 
    517        1.1  christos 		/*
    518        1.1  christos 		 * step through the nets in the range starting at the
    519        1.1  christos 		 * (possibly random) start point.
    520        1.1  christos 		 */
    521        1.1  christos 		for (i = nnets, netinc = 1; i > 0; net = ntohs(nr.nr_firstnet) +
    522        1.1  christos 		     ((net - ntohs(nr.nr_firstnet) + netinc) % nnets), i--) {
    523        1.1  christos 			AA_SAT(aa)->sat_addr.s_net = htons(net);
    524        1.1  christos 
    525        1.1  christos 			/*
    526        1.1  christos 		         * using a rather strange stepping method,
    527        1.1  christos 		         * stagger through the possible node addresses
    528        1.1  christos 		         * Once again, starting at the (possibly random)
    529        1.1  christos 		         * initial node address.
    530        1.1  christos 		         */
    531        1.1  christos 			for (j = 0, nodeinc = time.tv_sec | 1; j < 256;
    532        1.1  christos 			     j++, AA_SAT(aa)->sat_addr.s_node += nodeinc) {
    533        1.1  christos 				if (AA_SAT(aa)->sat_addr.s_node > 253 ||
    534        1.1  christos 				    AA_SAT(aa)->sat_addr.s_node < 1) {
    535        1.1  christos 					continue;
    536        1.1  christos 				}
    537        1.1  christos 				aa->aa_probcnt = 10;
    538        1.1  christos 
    539        1.1  christos 				/*
    540        1.1  christos 				 * start off the probes as an asynchronous
    541        1.1  christos 				 * activity. though why wait 200mSec?
    542        1.1  christos 				 */
    543        1.4   thorpej 				callout_reset(&aa->aa_probe_ch, hz / 5,
    544        1.4   thorpej 				    aarpprobe, ifp);
    545        1.1  christos 				if (tsleep(aa, PPAUSE | PCATCH, "at_ifinit",
    546        1.1  christos 				    0)) {
    547        1.1  christos 					/*
    548        1.1  christos 				         * theoretically we shouldn't time out
    549        1.1  christos 					 * here so if we returned with an error.
    550        1.1  christos 				         */
    551        1.1  christos 					printf("at_ifinit: timeout?!\n");
    552        1.1  christos 					aa->aa_addr = oldaddr;
    553        1.1  christos 					aa->aa_firstnet = onr.nr_firstnet;
    554        1.1  christos 					aa->aa_lastnet = onr.nr_lastnet;
    555        1.1  christos 					splx(s);
    556        1.1  christos 					return (EINTR);
    557        1.1  christos 				}
    558        1.1  christos 				/*
    559        1.1  christos 				 * The async activity should have woken us
    560        1.1  christos 				 * up. We need to see if it was successful in
    561        1.1  christos 				 * finding a free spot, or if we need to
    562        1.1  christos 				 * iterate to the next address to try.
    563        1.1  christos 				 */
    564        1.1  christos 				if ((aa->aa_flags & AFA_PROBING) == 0)
    565        1.1  christos 					break;
    566        1.1  christos 			}
    567        1.1  christos 
    568        1.1  christos 			/*
    569        1.1  christos 		         * of course we need to break out through two loops...
    570        1.1  christos 		         */
    571        1.1  christos 			if ((aa->aa_flags & AFA_PROBING) == 0)
    572        1.1  christos 				break;
    573        1.1  christos 
    574        1.1  christos 			/* reset node for next network */
    575        1.1  christos 			AA_SAT(aa)->sat_addr.s_node = time.tv_sec;
    576        1.1  christos 		}
    577        1.1  christos 
    578        1.1  christos 		/*
    579        1.1  christos 		 * if we are still trying to probe, then we have finished all
    580        1.1  christos 		 * the possible addresses, so we need to give up
    581        1.1  christos 		 */
    582        1.1  christos 		if (aa->aa_flags & AFA_PROBING) {
    583        1.1  christos 			aa->aa_addr = oldaddr;
    584        1.1  christos 			aa->aa_firstnet = onr.nr_firstnet;
    585        1.1  christos 			aa->aa_lastnet = onr.nr_lastnet;
    586        1.1  christos 			splx(s);
    587        1.1  christos 			return (EADDRINUSE);
    588        1.1  christos 		}
    589        1.1  christos 	}
    590        1.1  christos 
    591        1.1  christos 	/*
    592        1.1  christos 	 * Now that we have selected an address, we need to tell the
    593        1.1  christos 	 * interface about it, just in case it needs to adjust something.
    594        1.1  christos 	 */
    595        1.1  christos 	if (ifp->if_ioctl &&
    596        1.1  christos 	    (error = (*ifp->if_ioctl) (ifp, SIOCSIFADDR, (caddr_t) aa))) {
    597        1.1  christos 		/*
    598        1.1  christos 		 * of course this could mean that it objects violently
    599        1.1  christos 		 * so if it does, we back out again..
    600        1.1  christos 		 */
    601        1.1  christos 		aa->aa_addr = oldaddr;
    602        1.1  christos 		aa->aa_firstnet = onr.nr_firstnet;
    603        1.1  christos 		aa->aa_lastnet = onr.nr_lastnet;
    604        1.1  christos 		splx(s);
    605        1.1  christos 		return (error);
    606        1.1  christos 	}
    607        1.1  christos 	/*
    608        1.1  christos 	 * set up the netmask part of the at_ifaddr and point the appropriate
    609        1.1  christos 	 * pointer in the ifaddr to it. probably pointless, but what the
    610        1.1  christos 	 * heck.. XXX
    611        1.1  christos 	 */
    612        1.1  christos 	bzero(&aa->aa_netmask, sizeof(aa->aa_netmask));
    613        1.1  christos 	aa->aa_netmask.sat_len = sizeof(struct sockaddr_at);
    614        1.1  christos 	aa->aa_netmask.sat_family = AF_APPLETALK;
    615        1.1  christos 	aa->aa_netmask.sat_addr.s_net = 0xffff;
    616        1.1  christos 	aa->aa_netmask.sat_addr.s_node = 0;
    617        1.1  christos #if 0
    618        1.1  christos 	aa->aa_ifa.ifa_netmask = (struct sockaddr *) &(aa->aa_netmask);/* XXX */
    619        1.1  christos #endif
    620        1.1  christos 
    621        1.1  christos 	/*
    622        1.1  christos          * Initialize broadcast (or remote p2p) address
    623        1.1  christos          */
    624        1.1  christos 	bzero(&aa->aa_broadaddr, sizeof(aa->aa_broadaddr));
    625        1.1  christos 	aa->aa_broadaddr.sat_len = sizeof(struct sockaddr_at);
    626        1.1  christos 	aa->aa_broadaddr.sat_family = AF_APPLETALK;
    627        1.1  christos 
    628        1.1  christos 	aa->aa_ifa.ifa_metric = ifp->if_metric;
    629        1.1  christos 	if (ifp->if_flags & IFF_BROADCAST) {
    630        1.1  christos 		aa->aa_broadaddr.sat_addr.s_net = htons(0);
    631        1.1  christos 		aa->aa_broadaddr.sat_addr.s_node = 0xff;
    632        1.1  christos 		aa->aa_ifa.ifa_broadaddr =
    633        1.1  christos 		    (struct sockaddr *) &aa->aa_broadaddr;
    634        1.1  christos 		/* add the range of routes needed */
    635        1.1  christos 		error = aa_dorangeroute(&aa->aa_ifa,
    636        1.1  christos 		    ntohs(aa->aa_firstnet), ntohs(aa->aa_lastnet), RTM_ADD);
    637        1.1  christos 	} else if (ifp->if_flags & IFF_POINTOPOINT) {
    638        1.1  christos 		struct at_addr  rtaddr, rtmask;
    639        1.1  christos 
    640        1.1  christos 		bzero(&rtaddr, sizeof(rtaddr));
    641        1.1  christos 		bzero(&rtmask, sizeof(rtmask));
    642        1.1  christos 		/* fill in the far end if we know it here XXX */
    643        1.1  christos 		aa->aa_ifa.ifa_dstaddr = (struct sockaddr *) & aa->aa_dstaddr;
    644        1.1  christos 		error = aa_addsingleroute(&aa->aa_ifa, &rtaddr, &rtmask);
    645        1.1  christos 	} else if (ifp->if_flags & IFF_LOOPBACK) {
    646        1.1  christos 		struct at_addr  rtaddr, rtmask;
    647        1.1  christos 
    648        1.1  christos 		bzero(&rtaddr, sizeof(rtaddr));
    649        1.1  christos 		bzero(&rtmask, sizeof(rtmask));
    650        1.1  christos 		rtaddr.s_net = AA_SAT(aa)->sat_addr.s_net;
    651        1.1  christos 		rtaddr.s_node = AA_SAT(aa)->sat_addr.s_node;
    652        1.1  christos 		rtmask.s_net = 0xffff;
    653        1.1  christos 		rtmask.s_node = 0x0;
    654        1.1  christos 		error = aa_addsingleroute(&aa->aa_ifa, &rtaddr, &rtmask);
    655        1.1  christos 	}
    656        1.1  christos 	/*
    657        1.1  christos          * of course if we can't add these routes we back out, but it's getting
    658        1.1  christos          * risky by now XXX
    659        1.1  christos          */
    660        1.1  christos 	if (error) {
    661        1.1  christos 		at_scrub(ifp, aa);
    662        1.1  christos 		aa->aa_addr = oldaddr;
    663        1.1  christos 		aa->aa_firstnet = onr.nr_firstnet;
    664        1.1  christos 		aa->aa_lastnet = onr.nr_lastnet;
    665        1.1  christos 		splx(s);
    666        1.1  christos 		return (error);
    667        1.1  christos 	}
    668        1.1  christos 	/*
    669        1.1  christos          * note that the address has a route associated with it....
    670        1.1  christos          */
    671        1.1  christos 	aa->aa_ifa.ifa_flags |= IFA_ROUTE;
    672        1.1  christos 	aa->aa_flags |= AFA_ROUTE;
    673        1.1  christos 	splx(s);
    674        1.1  christos 	return (0);
    675        1.1  christos }
    676        1.1  christos 
    677        1.1  christos /*
    678        1.1  christos  * check whether a given address is a broadcast address for us..
    679        1.1  christos  */
    680        1.1  christos int
    681        1.1  christos at_broadcast(sat)
    682        1.1  christos 	struct sockaddr_at *sat;
    683        1.1  christos {
    684        1.1  christos 	struct at_ifaddr *aa;
    685        1.1  christos 
    686        1.1  christos 	/*
    687        1.1  christos          * If the node is not right, it can't be a broadcast
    688        1.1  christos          */
    689        1.1  christos 	if (sat->sat_addr.s_node != ATADDR_BCAST)
    690        1.1  christos 		return 0;
    691        1.1  christos 
    692        1.1  christos 	/*
    693        1.1  christos          * If the node was right then if the net is right, it's a broadcast
    694        1.1  christos          */
    695        1.1  christos 	if (sat->sat_addr.s_net == ATADDR_ANYNET)
    696        1.1  christos 		return 1;
    697        1.1  christos 
    698        1.1  christos 	/*
    699        1.1  christos          * failing that, if the net is one we have, it's a broadcast as well.
    700        1.1  christos          */
    701        1.1  christos 	for (aa = at_ifaddr.tqh_first; aa; aa = aa->aa_list.tqe_next) {
    702        1.1  christos 		if ((aa->aa_ifp->if_flags & IFF_BROADCAST)
    703        1.1  christos 		    && (ntohs(sat->sat_addr.s_net) >= ntohs(aa->aa_firstnet)
    704        1.1  christos 		  && ntohs(sat->sat_addr.s_net) <= ntohs(aa->aa_lastnet)))
    705        1.1  christos 			return 1;
    706        1.1  christos 	}
    707        1.1  christos 	return 0;
    708        1.1  christos }
    709        1.1  christos 
    710        1.1  christos 
    711        1.1  christos /*
    712        1.1  christos  * aa_dorangeroute()
    713        1.1  christos  *
    714        1.1  christos  * Add a route for a range of networks from bot to top - 1.
    715        1.1  christos  * Algorithm:
    716        1.1  christos  *
    717        1.1  christos  * Split the range into two subranges such that the middle
    718        1.1  christos  * of the two ranges is the point where the highest bit of difference
    719        1.1  christos  * between the two addresses, makes it's transition
    720        1.1  christos  * Each of the upper and lower ranges might not exist, or might be
    721        1.1  christos  * representable by 1 or more netmasks. In addition, if both
    722        1.1  christos  * ranges can be represented by the same netmask, then teh can be merged
    723        1.1  christos  * by using the next higher netmask..
    724        1.1  christos  */
    725        1.1  christos 
    726        1.1  christos static int
    727        1.1  christos aa_dorangeroute(ifa, bot, top, cmd)
    728        1.1  christos 	struct ifaddr *ifa;
    729        1.1  christos 	u_int bot;
    730        1.1  christos 	u_int top;
    731        1.1  christos 	int cmd;
    732        1.1  christos {
    733        1.1  christos 	u_int           mask1;
    734        1.1  christos 	struct at_addr  addr;
    735        1.1  christos 	struct at_addr  mask;
    736        1.1  christos 	int             error;
    737        1.1  christos 
    738        1.1  christos 	/*
    739        1.1  christos 	 * slight sanity check
    740        1.1  christos 	 */
    741        1.1  christos 	if (bot > top)
    742        1.1  christos 		return (EINVAL);
    743        1.1  christos 
    744        1.1  christos 	addr.s_node = 0;
    745        1.1  christos 	mask.s_node = 0;
    746        1.1  christos 	/*
    747        1.1  christos 	 * just start out with the lowest boundary
    748        1.1  christos 	 * and keep extending the mask till it's too big.
    749        1.1  christos 	 */
    750        1.1  christos 
    751        1.1  christos 	while (bot <= top) {
    752        1.1  christos 		mask1 = 1;
    753        1.1  christos 		while (((bot & ~mask1) >= bot)
    754        1.1  christos 		       && ((bot | mask1) <= top)) {
    755        1.1  christos 			mask1 <<= 1;
    756        1.1  christos 			mask1 |= 1;
    757        1.1  christos 		}
    758        1.1  christos 		mask1 >>= 1;
    759        1.1  christos 		mask.s_net = htons(~mask1);
    760        1.1  christos 		addr.s_net = htons(bot);
    761        1.1  christos 		if (cmd == RTM_ADD) {
    762        1.1  christos 			error = aa_addsingleroute(ifa, &addr, &mask);
    763        1.1  christos 			if (error) {
    764        1.1  christos 				/* XXX clean up? */
    765        1.1  christos 				return (error);
    766        1.1  christos 			}
    767        1.1  christos 		} else {
    768        1.1  christos 			error = aa_delsingleroute(ifa, &addr, &mask);
    769        1.1  christos 		}
    770        1.1  christos 		bot = (bot | mask1) + 1;
    771        1.1  christos 	}
    772        1.1  christos 	return 0;
    773        1.1  christos }
    774        1.1  christos 
    775        1.1  christos static int
    776        1.1  christos aa_addsingleroute(ifa, addr, mask)
    777        1.1  christos 	struct ifaddr *ifa;
    778        1.1  christos 	struct at_addr *addr;
    779        1.1  christos 	struct at_addr *mask;
    780        1.1  christos {
    781        1.1  christos 	int error;
    782        1.1  christos 
    783        1.1  christos #ifdef NETATALKDEBUG
    784        1.1  christos 	printf("aa_addsingleroute: %x.%x mask %x.%x ...",
    785        1.1  christos 	       ntohs(addr->s_net), addr->s_node,
    786        1.1  christos 	       ntohs(mask->s_net), mask->s_node);
    787        1.1  christos #endif
    788        1.1  christos 
    789        1.1  christos 	error = aa_dosingleroute(ifa, addr, mask, RTM_ADD, RTF_UP);
    790        1.1  christos #ifdef NETATALKDEBUG
    791        1.1  christos 	if (error)
    792        1.1  christos 		printf("aa_addsingleroute: error %d\n", error);
    793        1.1  christos #endif
    794        1.1  christos 	return (error);
    795        1.1  christos }
    796        1.1  christos 
    797        1.1  christos static int
    798        1.1  christos aa_delsingleroute(ifa, addr, mask)
    799        1.1  christos 	struct ifaddr *ifa;
    800        1.1  christos 	struct at_addr *addr;
    801        1.1  christos 	struct at_addr *mask;
    802        1.1  christos {
    803        1.1  christos 	int error;
    804        1.1  christos 
    805        1.1  christos #ifdef NETATALKDEBUG
    806        1.1  christos 	printf("aa_delsingleroute: %x.%x mask %x.%x ...",
    807        1.1  christos 	       ntohs(addr->s_net), addr->s_node,
    808        1.1  christos 	       ntohs(mask->s_net), mask->s_node);
    809        1.1  christos #endif
    810        1.1  christos 
    811        1.1  christos 	error = aa_dosingleroute(ifa, addr, mask, RTM_DELETE, 0);
    812        1.1  christos #ifdef NETATALKDEBUG
    813        1.1  christos 	if (error)
    814        1.1  christos 		printf("aa_delsingleroute: error %d\n", error);
    815        1.1  christos #endif
    816        1.1  christos 	return (error);
    817        1.1  christos }
    818        1.1  christos 
    819        1.1  christos static int
    820        1.1  christos aa_dosingleroute(ifa, at_addr, at_mask, cmd, flags)
    821        1.1  christos 	struct ifaddr *ifa;
    822        1.1  christos 	struct at_addr *at_addr;
    823        1.1  christos 	struct at_addr *at_mask;
    824        1.1  christos 	int cmd;
    825        1.1  christos 	int flags;
    826        1.1  christos {
    827        1.1  christos 	struct sockaddr_at addr, mask, *gate;
    828        1.1  christos 
    829        1.1  christos 	bzero(&addr, sizeof(addr));
    830        1.1  christos 	bzero(&mask, sizeof(mask));
    831        1.1  christos 	addr.sat_family = AF_APPLETALK;
    832        1.1  christos 	addr.sat_len = sizeof(struct sockaddr_at);
    833        1.1  christos 	addr.sat_addr.s_net = at_addr->s_net;
    834        1.1  christos 	addr.sat_addr.s_node = at_addr->s_node;
    835        1.1  christos 	mask.sat_family = AF_APPLETALK;
    836        1.1  christos 	mask.sat_len = sizeof(struct sockaddr_at);
    837        1.1  christos 	mask.sat_addr.s_net = at_mask->s_net;
    838        1.1  christos 	mask.sat_addr.s_node = at_mask->s_node;
    839        1.1  christos 
    840        1.1  christos 	if (at_mask->s_node) {
    841        1.1  christos 		gate = satosat(ifa->ifa_dstaddr);
    842        1.1  christos 		flags |= RTF_HOST;
    843        1.1  christos 	} else {
    844        1.1  christos 		gate = satosat(ifa->ifa_addr);
    845        1.1  christos 	}
    846        1.1  christos 
    847        1.1  christos #ifdef NETATALKDEBUG
    848        1.1  christos 	printf("on %s %x.%x\n", (flags & RTF_HOST) ? "host" : "net",
    849        1.1  christos 	       ntohs(gate->sat_addr.s_net), gate->sat_addr.s_node);
    850        1.1  christos #endif
    851        1.1  christos 	return (rtrequest(cmd, (struct sockaddr *) &addr,
    852        1.1  christos 	    (struct sockaddr *) gate, (struct sockaddr *) &mask, flags, NULL));
    853        1.1  christos }
    854        1.1  christos 
    855        1.1  christos #if 0
    856        1.1  christos static void
    857        1.1  christos aa_clean()
    858        1.1  christos {
    859        1.1  christos 	struct at_ifaddr *aa;
    860        1.1  christos 	struct ifaddr  *ifa;
    861        1.1  christos 	struct ifnet   *ifp;
    862        1.1  christos 
    863        1.1  christos 	while (aa = at_ifaddr) {
    864        1.1  christos 		ifp = aa->aa_ifp;
    865        1.1  christos 		at_scrub(ifp, aa);
    866        1.1  christos 		at_ifaddr = aa->aa_next;
    867        1.1  christos 		if ((ifa = ifp->if_addrlist) == (struct ifaddr *) aa) {
    868        1.1  christos 			ifp->if_addrlist = ifa->ifa_next;
    869        1.1  christos 		} else {
    870        1.1  christos 			while (ifa->ifa_next &&
    871        1.1  christos 			       (ifa->ifa_next != (struct ifaddr *) aa)) {
    872        1.1  christos 				ifa = ifa->ifa_next;
    873        1.1  christos 			}
    874        1.1  christos 			if (ifa->ifa_next) {
    875       1.10     perry 				ifa->ifa_next =
    876        1.1  christos 				    ((struct ifaddr *) aa)->ifa_next;
    877        1.1  christos 			} else {
    878        1.1  christos 				panic("at_entry");
    879        1.1  christos 			}
    880        1.1  christos 		}
    881        1.1  christos 	}
    882        1.1  christos }
    883        1.1  christos #endif
    884