xref: /csrg-svn/sys/netinet/if_ether.c (revision 24803)
123172Smckusick /*
223172Smckusick  * Copyright (c) 1982 Regents of the University of California.
323172Smckusick  * All rights reserved.  The Berkeley software License Agreement
423172Smckusick  * specifies the terms and conditions for redistribution.
523172Smckusick  *
6*24803Skarels  *	@(#)if_ether.c	6.13 (Berkeley) 09/16/85
723172Smckusick  */
811570Ssam 
911570Ssam /*
1011570Ssam  * Ethernet address resolution protocol.
1111570Ssam  */
1211570Ssam 
1317057Sbloom #include "param.h"
1417057Sbloom #include "systm.h"
1517057Sbloom #include "mbuf.h"
1617057Sbloom #include "socket.h"
1717057Sbloom #include "time.h"
1817057Sbloom #include "kernel.h"
1917057Sbloom #include "errno.h"
2017057Sbloom #include "ioctl.h"
2111570Ssam 
2211570Ssam #include "../net/if.h"
2317057Sbloom #include "in.h"
2417057Sbloom #include "in_systm.h"
2517057Sbloom #include "ip.h"
2617057Sbloom #include "if_ether.h"
2711570Ssam 
28*24803Skarels #define	ARPTAB_BSIZ	9		/* bucket size */
2911570Ssam #define	ARPTAB_NB	19		/* number of buckets */
3011570Ssam #define	ARPTAB_SIZE	(ARPTAB_BSIZ * ARPTAB_NB)
3111570Ssam struct	arptab arptab[ARPTAB_SIZE];
3216221Skarels int	arptab_size = ARPTAB_SIZE;	/* for arp command */
3311570Ssam 
3411570Ssam #define	ARPTAB_HASH(a) \
3511570Ssam 	((short)((((a) >> 16) ^ (a)) & 0x7fff) % ARPTAB_NB)
3611570Ssam 
3711570Ssam #define	ARPTAB_LOOK(at,addr) { \
3811570Ssam 	register n; \
3911570Ssam 	at = &arptab[ARPTAB_HASH(addr) * ARPTAB_BSIZ]; \
4011570Ssam 	for (n = 0 ; n < ARPTAB_BSIZ ; n++,at++) \
4111570Ssam 		if (at->at_iaddr.s_addr == addr) \
4211570Ssam 			break; \
4311570Ssam 	if (n >= ARPTAB_BSIZ) \
4411570Ssam 		at = 0; }
4511570Ssam 
4611570Ssam int	arpt_age;		/* aging timer */
4711570Ssam 
4811570Ssam /* timer values */
4911570Ssam #define	ARPT_AGE	(60*1)	/* aging timer, 1 min. */
5011570Ssam #define	ARPT_KILLC	20	/* kill completed entry in 20 mins. */
5111570Ssam #define	ARPT_KILLI	3	/* kill incomplete entry in 3 minutes */
5211570Ssam 
5318640Skarels u_char	etherbroadcastaddr[6] = { 0xff, 0xff, 0xff, 0xff, 0xff, 0xff };
5411570Ssam extern struct ifnet loif;
5511570Ssam 
5614867Ssam /*
5711570Ssam  * Timeout routine.  Age arp_tab entries once a minute.
5811570Ssam  */
5911570Ssam arptimer()
6011570Ssam {
6111570Ssam 	register struct arptab *at;
6211570Ssam 	register i;
6311570Ssam 
6412763Ssam 	timeout(arptimer, (caddr_t)0, hz);
6511570Ssam 	if (++arpt_age > ARPT_AGE) {
6611570Ssam 		arpt_age = 0;
6711570Ssam 		at = &arptab[0];
6811570Ssam 		for (i = 0; i < ARPTAB_SIZE; i++, at++) {
6916221Skarels 			if (at->at_flags == 0 || (at->at_flags & ATF_PERM))
7011570Ssam 				continue;
7111570Ssam 			if (++at->at_timer < ((at->at_flags&ATF_COM) ?
7211570Ssam 			    ARPT_KILLC : ARPT_KILLI))
7311570Ssam 				continue;
7411570Ssam 			/* timer has expired, clear entry */
7511570Ssam 			arptfree(at);
7611570Ssam 		}
7711570Ssam 	}
7811570Ssam }
7911570Ssam 
8011570Ssam /*
8111570Ssam  * Broadcast an ARP packet, asking who has addr on interface ac.
8211570Ssam  */
8311570Ssam arpwhohas(ac, addr)
8411570Ssam 	register struct arpcom *ac;
8511570Ssam 	struct in_addr *addr;
8611570Ssam {
8711570Ssam 	register struct mbuf *m;
8811570Ssam 	register struct ether_header *eh;
8911570Ssam 	register struct ether_arp *ea;
9011570Ssam 	struct sockaddr sa;
9111570Ssam 
9211570Ssam 	if ((m = m_get(M_DONTWAIT, MT_DATA)) == NULL)
9316221Skarels 		return (1);
9415718Skarels 	m->m_len = sizeof *ea;
9511570Ssam 	m->m_off = MMAXOFF - m->m_len;
9611570Ssam 	ea = mtod(m, struct ether_arp *);
9711570Ssam 	eh = (struct ether_header *)sa.sa_data;
9812763Ssam 	bzero((caddr_t)ea, sizeof (*ea));
9918640Skarels 	bcopy((caddr_t)etherbroadcastaddr, (caddr_t)eh->ether_dhost,
10018640Skarels 	    sizeof(eh->ether_dhost));
10118378Skarels 	eh->ether_type = ETHERTYPE_ARP;		/* if_output will swap */
10211570Ssam 	ea->arp_hrd = htons(ARPHRD_ETHER);
10318378Skarels 	ea->arp_pro = htons(ETHERTYPE_IP);
10418640Skarels 	ea->arp_hln = sizeof(ea->arp_sha);	/* hardware address length */
10518640Skarels 	ea->arp_pln = sizeof(ea->arp_spa);	/* protocol address length */
10611570Ssam 	ea->arp_op = htons(ARPOP_REQUEST);
10718640Skarels 	bcopy((caddr_t)ac->ac_enaddr, (caddr_t)ea->arp_sha,
10818640Skarels 	   sizeof(ea->arp_sha));
10918640Skarels 	bcopy((caddr_t)&ac->ac_ipaddr, (caddr_t)ea->arp_spa,
11018640Skarels 	   sizeof(ea->arp_spa));
11118640Skarels 	bcopy((caddr_t)addr, (caddr_t)ea->arp_tpa, sizeof(ea->arp_tpa));
11211570Ssam 	sa.sa_family = AF_UNSPEC;
11316221Skarels 	return ((*ac->ac_if.if_output)(&ac->ac_if, m, &sa));
11411570Ssam }
11511570Ssam 
11611570Ssam /*
11711570Ssam  * Resolve an IP address into an ethernet address.  If success,
11811570Ssam  * desten is filled in and 1 is returned.  If there is no entry
11911570Ssam  * in arptab, set one up and broadcast a request
12011570Ssam  * for the IP address;  return 0.  Hold onto this mbuf and
12111570Ssam  * resend it once the address is finally resolved.
12211570Ssam  *
12311570Ssam  * We do some (conservative) locking here at splimp, since
12411570Ssam  * arptab is also altered from input interrupt service (ecintr/ilintr
12518378Skarels  * calls arpinput when ETHERTYPE_ARP packets come in).
12611570Ssam  */
12711570Ssam arpresolve(ac, m, destip, desten)
12811570Ssam 	register struct arpcom *ac;
12911570Ssam 	struct mbuf *m;
13011570Ssam 	register struct in_addr *destip;
13118640Skarels 	register u_char *desten;
13211570Ssam {
13311570Ssam 	register struct arptab *at;
13414867Ssam 	register struct ifnet *ifp;
13511570Ssam 	struct sockaddr_in sin;
13611570Ssam 	int s, lna;
13711570Ssam 
13818378Skarels 	if (in_broadcast(*destip)) {	/* broadcast address */
13918640Skarels 		bcopy((caddr_t)etherbroadcastaddr, (caddr_t)desten,
14018640Skarels 		    sizeof(etherbroadcastaddr));
14111570Ssam 		return (1);
14211570Ssam 	}
14318378Skarels 	lna = in_lnaof(*destip);
14414867Ssam 	ifp = &ac->ac_if;
14514867Ssam 	/* if for us, then use software loopback driver */
14618378Skarels 	if (destip->s_addr == ac->ac_ipaddr.s_addr &&
14716221Skarels 	    (loif.if_flags & IFF_UP)) {
14811570Ssam 		sin.sin_family = AF_INET;
14911570Ssam 		sin.sin_addr = *destip;
15016685Ssam 		(void) looutput(&loif, m, (struct sockaddr *)&sin);
15116685Ssam 		/*
15216685Ssam 		 * We really don't want to indicate failure,
15316685Ssam 		 * but the packet has already been sent and freed.
15416685Ssam 		 */
15516685Ssam 		return (0);
15611570Ssam 	}
15711570Ssam 	s = splimp();
15811570Ssam 	ARPTAB_LOOK(at, destip->s_addr);
15911570Ssam 	if (at == 0) {			/* not found */
16024383Swalsh 		if (ifp->if_flags & IFF_NOARP) {
16118640Skarels 			bcopy((caddr_t)ac->ac_enaddr, (caddr_t)desten, 3);
16218640Skarels 			desten[3] = (lna >> 16) & 0x7f;
16318640Skarels 			desten[4] = (lna >> 8) & 0xff;
16418640Skarels 			desten[5] = lna & 0xff;
16516221Skarels 			splx(s);
16616221Skarels 			return (1);
16716221Skarels 		} else {
16816221Skarels 			at = arptnew(destip);
16916221Skarels 			at->at_hold = m;
17016221Skarels 			arpwhohas(ac, destip);
17116221Skarels 			splx(s);
17216221Skarels 			return (0);
17316221Skarels 		}
17411570Ssam 	}
17511570Ssam 	at->at_timer = 0;		/* restart the timer */
17611570Ssam 	if (at->at_flags & ATF_COM) {	/* entry IS complete */
17718640Skarels 		bcopy((caddr_t)at->at_enaddr, (caddr_t)desten,
17818640Skarels 		    sizeof(at->at_enaddr));
17911570Ssam 		splx(s);
18011570Ssam 		return (1);
18111570Ssam 	}
18211570Ssam 	/*
18311570Ssam 	 * There is an arptab entry, but no ethernet address
18411570Ssam 	 * response yet.  Replace the held mbuf with this
18511570Ssam 	 * latest one.
18611570Ssam 	 */
18711570Ssam 	if (at->at_hold)
18811570Ssam 		m_freem(at->at_hold);
18911570Ssam 	at->at_hold = m;
19011570Ssam 	arpwhohas(ac, destip);		/* ask again */
19111570Ssam 	splx(s);
19211570Ssam 	return (0);
19311570Ssam }
19411570Ssam 
19511570Ssam /*
19618378Skarels  * Called from 10 Mb/s Ethernet interrupt handlers
19718378Skarels  * when ether packet type ETHERTYPE_ARP
19816221Skarels  * is received.  Algorithm is that given in RFC 826.
19911570Ssam  * In addition, a sanity check is performed on the sender
20011570Ssam  * protocol address, to catch impersonators.
20111570Ssam  */
20211570Ssam arpinput(ac, m)
20311570Ssam 	register struct arpcom *ac;
20411570Ssam 	struct mbuf *m;
20511570Ssam {
20611570Ssam 	register struct ether_arp *ea;
20711570Ssam 	struct ether_header *eh;
208*24803Skarels 	register struct arptab *at;  /* same as "merge" flag */
20911570Ssam 	struct sockaddr_in sin;
21011570Ssam 	struct sockaddr sa;
21111570Ssam 	struct in_addr isaddr,itaddr,myaddr;
21211570Ssam 
213*24803Skarels 	IF_ADJ(m);
214*24803Skarels 	at = 0;
21511570Ssam 	if (m->m_len < sizeof *ea)
21611570Ssam 		goto out;
21716221Skarels 	if (ac->ac_if.if_flags & IFF_NOARP)
21816221Skarels 		goto out;
21918378Skarels 	myaddr = ac->ac_ipaddr;
22011570Ssam 	ea = mtod(m, struct ether_arp *);
22118378Skarels 	if (ntohs(ea->arp_pro) != ETHERTYPE_IP)
22211570Ssam 		goto out;
22318640Skarels 	isaddr.s_addr = ((struct in_addr *)ea->arp_spa)->s_addr;
22418640Skarels 	itaddr.s_addr = ((struct in_addr *)ea->arp_tpa)->s_addr;
22518640Skarels 	if (!bcmp((caddr_t)ea->arp_sha, (caddr_t)ac->ac_enaddr,
22618640Skarels 	  sizeof (ea->arp_sha)))
22711570Ssam 		goto out;	/* it's from me, ignore it. */
22811570Ssam 	if (isaddr.s_addr == myaddr.s_addr) {
22911570Ssam 		printf("duplicate IP address!! sent from ethernet address: ");
23018640Skarels 		printf("%x %x %x %x %x %x\n", ea->arp_sha[0], ea->arp_sha[1],
23118640Skarels 			ea->arp_sha[2], ea->arp_sha[3],
23218640Skarels 			ea->arp_sha[4], ea->arp_sha[5]);
23316221Skarels 		itaddr = myaddr;
23418640Skarels 		if (ntohs(ea->arp_op) == ARPOP_REQUEST) {
23518640Skarels 			bcopy((caddr_t)ac->ac_enaddr, (caddr_t)ea->arp_sha,
23618640Skarels 			    sizeof(ea->arp_sha));
23711570Ssam 			goto reply;
23818640Skarels 		}
23911570Ssam 		goto out;
24011570Ssam 	}
24111570Ssam 	ARPTAB_LOOK(at, isaddr.s_addr);
24218759Skarels 	if (at && (at->at_flags & ATF_COM) == 0) {
24318640Skarels 		bcopy((caddr_t)ea->arp_sha, (caddr_t)at->at_enaddr,
24418640Skarels 		    sizeof(ea->arp_sha));
24511570Ssam 		at->at_flags |= ATF_COM;
24611570Ssam 		if (at->at_hold) {
24711570Ssam 			sin.sin_family = AF_INET;
24811570Ssam 			sin.sin_addr = isaddr;
24911570Ssam 			(*ac->ac_if.if_output)(&ac->ac_if,
25018759Skarels 			    at->at_hold, (struct sockaddr *)&sin);
25118759Skarels 			at->at_hold = 0;
25211570Ssam 		}
25318759Skarels 	}
25418759Skarels 	if (at == 0 && itaddr.s_addr == myaddr.s_addr) {
25516221Skarels 		/* ensure we have a table entry */
25611570Ssam 		at = arptnew(&isaddr);
25718640Skarels 		bcopy((caddr_t)ea->arp_sha, (caddr_t)at->at_enaddr,
25818640Skarels 		    sizeof(ea->arp_sha));
25911570Ssam 		at->at_flags |= ATF_COM;
26011570Ssam 	}
26111570Ssam 	if (ntohs(ea->arp_op) != ARPOP_REQUEST)
26211570Ssam 		goto out;
26316221Skarels 	ARPTAB_LOOK(at, itaddr.s_addr);
26416221Skarels 	if (at == NULL) {
26516221Skarels 		if (itaddr.s_addr != myaddr.s_addr)
26616221Skarels 			goto out;	/* if I am not the target */
26716221Skarels 		at = arptnew(&myaddr);
26818640Skarels 		bcopy((caddr_t)ac->ac_enaddr, (caddr_t)at->at_enaddr,
26918640Skarels 		   sizeof(at->at_enaddr));
27016221Skarels 		at->at_flags |= ATF_COM;
27116221Skarels 	}
27216221Skarels 	if (itaddr.s_addr != myaddr.s_addr && (at->at_flags & ATF_PUBL) == 0)
27316221Skarels 		goto out;
27416221Skarels 
27511570Ssam reply:
27618640Skarels 	bcopy((caddr_t)ea->arp_sha, (caddr_t)ea->arp_tha,
27718640Skarels 	    sizeof(ea->arp_sha));
27818640Skarels 	bcopy((caddr_t)ea->arp_spa, (caddr_t)ea->arp_tpa,
27918640Skarels 	    sizeof(ea->arp_spa));
28018759Skarels 	if (at)		/* done above if at == 0 */
28118759Skarels 		bcopy((caddr_t)at->at_enaddr, (caddr_t)ea->arp_sha,
28218759Skarels 		    sizeof(ea->arp_sha));
28318640Skarels 	bcopy((caddr_t)&itaddr, (caddr_t)ea->arp_spa,
28418640Skarels 	    sizeof(ea->arp_spa));
28511570Ssam 	ea->arp_op = htons(ARPOP_REPLY);
28611570Ssam 	eh = (struct ether_header *)sa.sa_data;
28718640Skarels 	bcopy((caddr_t)ea->arp_tha, (caddr_t)eh->ether_dhost,
28818640Skarels 	    sizeof(eh->ether_dhost));
28918378Skarels 	eh->ether_type = ETHERTYPE_ARP;
29011570Ssam 	sa.sa_family = AF_UNSPEC;
29111570Ssam 	(*ac->ac_if.if_output)(&ac->ac_if, m, &sa);
29211570Ssam 	return;
29311570Ssam out:
29411570Ssam 	m_freem(m);
29511570Ssam 	return;
29611570Ssam }
29711570Ssam 
29811570Ssam /*
29911570Ssam  * Free an arptab entry.
30011570Ssam  */
30111570Ssam arptfree(at)
30211570Ssam 	register struct arptab *at;
30311570Ssam {
30411570Ssam 	int s = splimp();
30511570Ssam 
30611570Ssam 	if (at->at_hold)
30711570Ssam 		m_freem(at->at_hold);
30811570Ssam 	at->at_hold = 0;
30911570Ssam 	at->at_timer = at->at_flags = 0;
31011570Ssam 	at->at_iaddr.s_addr = 0;
31111570Ssam 	splx(s);
31211570Ssam }
31311570Ssam 
31411570Ssam /*
31511570Ssam  * Enter a new address in arptab, pushing out the oldest entry
31611570Ssam  * from the bucket if there is no room.
31716221Skarels  * This always succeeds since no bucket can be completely filled
31816221Skarels  * with permanent entries (except from arpioctl when testing whether
31918640Skarels  * another permanent entry will fit).
32011570Ssam  */
32111570Ssam struct arptab *
32211570Ssam arptnew(addr)
32311570Ssam 	struct in_addr *addr;
32411570Ssam {
32511570Ssam 	register n;
326*24803Skarels 	int oldest = -1;
32716221Skarels 	register struct arptab *at, *ato = NULL;
32816221Skarels 	static int first = 1;
32911570Ssam 
33016221Skarels 	if (first) {
33116221Skarels 		first = 0;
33216221Skarels 		timeout(arptimer, (caddr_t)0, hz);
33316221Skarels 	}
33416221Skarels 	at = &arptab[ARPTAB_HASH(addr->s_addr) * ARPTAB_BSIZ];
33518640Skarels 	for (n = 0; n < ARPTAB_BSIZ; n++,at++) {
33611570Ssam 		if (at->at_flags == 0)
33711570Ssam 			goto out;	 /* found an empty entry */
33816221Skarels 		if (at->at_flags & ATF_PERM)
33916221Skarels 			continue;
34011570Ssam 		if (at->at_timer > oldest) {
34111570Ssam 			oldest = at->at_timer;
34211570Ssam 			ato = at;
34311570Ssam 		}
34411570Ssam 	}
34516221Skarels 	if (ato == NULL)
34618640Skarels 		return (NULL);
34711570Ssam 	at = ato;
34811570Ssam 	arptfree(at);
34911570Ssam out:
35011570Ssam 	at->at_iaddr = *addr;
35111570Ssam 	at->at_flags = ATF_INUSE;
35211570Ssam 	return (at);
35311570Ssam }
35416221Skarels 
35516221Skarels arpioctl(cmd, data)
35616221Skarels 	int cmd;
35716221Skarels 	caddr_t data;
35816221Skarels {
35916221Skarels 	register struct arpreq *ar = (struct arpreq *)data;
36016221Skarels 	register struct arptab *at;
36116221Skarels 	register struct sockaddr_in *sin;
36216221Skarels 	int s;
36316221Skarels 
36416221Skarels 	if (ar->arp_pa.sa_family != AF_INET ||
36516221Skarels 	    ar->arp_ha.sa_family != AF_UNSPEC)
36616221Skarels 		return (EAFNOSUPPORT);
36716221Skarels 	sin = (struct sockaddr_in *)&ar->arp_pa;
36816221Skarels 	s = splimp();
36916221Skarels 	ARPTAB_LOOK(at, sin->sin_addr.s_addr);
37016221Skarels 	if (at == NULL) {		/* not found */
37116221Skarels 		if (cmd != SIOCSARP) {
37216221Skarels 			splx(s);
37316221Skarels 			return (ENXIO);
37416221Skarels 		}
37518378Skarels 		if (ifa_ifwithnet(&ar->arp_pa) == NULL) {
37616221Skarels 			splx(s);
37716221Skarels 			return (ENETUNREACH);
37816221Skarels 		}
37916221Skarels 	}
38016221Skarels 	switch (cmd) {
38116221Skarels 
38216221Skarels 	case SIOCSARP:		/* set entry */
38316221Skarels 		if (at == NULL) {
38416221Skarels 			at = arptnew(&sin->sin_addr);
38516221Skarels 			if (ar->arp_flags & ATF_PERM) {
38616221Skarels 			/* never make all entries in a bucket permanent */
38716221Skarels 				register struct arptab *tat;
38816221Skarels 
38916221Skarels 				/* try to re-allocate */
39016221Skarels 				tat = arptnew(&sin->sin_addr);
39116221Skarels 				if (tat == NULL) {
39216221Skarels 					arptfree(at);
39316221Skarels 					splx(s);
39416221Skarels 					return (EADDRNOTAVAIL);
39516221Skarels 				}
39616221Skarels 				arptfree(tat);
39716221Skarels 			}
39816221Skarels 		}
39918640Skarels 		bcopy((caddr_t)ar->arp_ha.sa_data, (caddr_t)at->at_enaddr,
40018640Skarels 		    sizeof(at->at_enaddr));
40116221Skarels 		at->at_flags = ATF_COM | ATF_INUSE |
40216221Skarels 			(ar->arp_flags & (ATF_PERM|ATF_PUBL));
40316221Skarels 		at->at_timer = 0;
40416221Skarels 		break;
40516221Skarels 
40616221Skarels 	case SIOCDARP:		/* delete entry */
40716221Skarels 		arptfree(at);
40816221Skarels 		break;
40916221Skarels 
41016221Skarels 	case SIOCGARP:		/* get entry */
41118640Skarels 		bcopy((caddr_t)at->at_enaddr, (caddr_t)ar->arp_ha.sa_data,
41218640Skarels 		    sizeof(at->at_enaddr));
41316221Skarels 		ar->arp_flags = at->at_flags;
41416221Skarels 		break;
41516221Skarels 	}
41616221Skarels 	splx(s);
41716221Skarels 	return (0);
41816221Skarels }
419