1*16221Skarels /* if_ether.c 6.4 84/03/22 */ 211570Ssam 311570Ssam /* 411570Ssam * Ethernet address resolution protocol. 511570Ssam */ 611570Ssam 711570Ssam #include "../h/param.h" 811570Ssam #include "../h/systm.h" 911570Ssam #include "../h/mbuf.h" 1011570Ssam #include "../h/socket.h" 1111570Ssam #include "../h/time.h" 1211570Ssam #include "../h/kernel.h" 1312763Ssam #include "../h/errno.h" 14*16221Skarels #include "../h/ioctl.h" 1511570Ssam 1611570Ssam #include "../net/if.h" 1711570Ssam #include "../netinet/in.h" 18*16221Skarels #include "../netinet/in_systm.h" 19*16221Skarels #include "../netinet/ip.h" 2011570Ssam #include "../netinet/if_ether.h" 2111570Ssam 2211570Ssam #define ARPTAB_BSIZ 5 /* bucket size */ 2311570Ssam #define ARPTAB_NB 19 /* number of buckets */ 2411570Ssam #define ARPTAB_SIZE (ARPTAB_BSIZ * ARPTAB_NB) 2511570Ssam struct arptab arptab[ARPTAB_SIZE]; 26*16221Skarels int arptab_size = ARPTAB_SIZE; /* for arp command */ 2711570Ssam 2811570Ssam #define ARPTAB_HASH(a) \ 2911570Ssam ((short)((((a) >> 16) ^ (a)) & 0x7fff) % ARPTAB_NB) 3011570Ssam 3111570Ssam #define ARPTAB_LOOK(at,addr) { \ 3211570Ssam register n; \ 3311570Ssam at = &arptab[ARPTAB_HASH(addr) * ARPTAB_BSIZ]; \ 3411570Ssam for (n = 0 ; n < ARPTAB_BSIZ ; n++,at++) \ 3511570Ssam if (at->at_iaddr.s_addr == addr) \ 3611570Ssam break; \ 3711570Ssam if (n >= ARPTAB_BSIZ) \ 3811570Ssam at = 0; } 3911570Ssam 4011570Ssam int arpt_age; /* aging timer */ 4111570Ssam 4211570Ssam /* timer values */ 4311570Ssam #define ARPT_AGE (60*1) /* aging timer, 1 min. */ 4411570Ssam #define ARPT_KILLC 20 /* kill completed entry in 20 mins. */ 4511570Ssam #define ARPT_KILLI 3 /* kill incomplete entry in 3 minutes */ 4611570Ssam 47*16221Skarels struct ether_addr etherbroadcastaddr = {{ 0xff, 0xff, 0xff, 0xff, 0xff, 0xff }}; 4811570Ssam extern struct ifnet loif; 4911570Ssam 5014867Ssam /* 5114867Ssam * Local addresses in the range oldmap to infinity are 5214867Ssam * mapped according to the old mapping scheme. That is, 5314867Ssam * mapping of Internet to Ethernet addresses is performed 5414867Ssam * by taking the high three bytes of the network interface's 5514867Ssam * address and the low three bytes of the local address part. 5614867Ssam * This only allows boards from the same manufacturer to 5714867Ssam * communicate unless the on-board address is overridden 5814867Ssam * (not possible in many manufacture's hardware). 5914867Ssam * 6014867Ssam * NB: setting oldmap to zero completely disables ARP 6114867Ssam * (i.e. identical to setting IFF_NOARP with an ioctl). 6214867Ssam */ 6314867Ssam int oldmap = 1024; 6411570Ssam 6511570Ssam /* 6611570Ssam * Timeout routine. Age arp_tab entries once a minute. 6711570Ssam */ 6811570Ssam arptimer() 6911570Ssam { 7011570Ssam register struct arptab *at; 7111570Ssam register i; 7211570Ssam 7312763Ssam timeout(arptimer, (caddr_t)0, hz); 7411570Ssam if (++arpt_age > ARPT_AGE) { 7511570Ssam arpt_age = 0; 7611570Ssam at = &arptab[0]; 7711570Ssam for (i = 0; i < ARPTAB_SIZE; i++, at++) { 78*16221Skarels if (at->at_flags == 0 || (at->at_flags & ATF_PERM)) 7911570Ssam continue; 8011570Ssam if (++at->at_timer < ((at->at_flags&ATF_COM) ? 8111570Ssam ARPT_KILLC : ARPT_KILLI)) 8211570Ssam continue; 8311570Ssam /* timer has expired, clear entry */ 8411570Ssam arptfree(at); 8511570Ssam } 8611570Ssam } 8711570Ssam } 8811570Ssam 8911570Ssam /* 9011570Ssam * Broadcast an ARP packet, asking who has addr on interface ac. 9111570Ssam */ 9211570Ssam arpwhohas(ac, addr) 9311570Ssam register struct arpcom *ac; 9411570Ssam struct in_addr *addr; 9511570Ssam { 9611570Ssam register struct mbuf *m; 9711570Ssam register struct ether_header *eh; 9811570Ssam register struct ether_arp *ea; 9911570Ssam struct sockaddr sa; 10011570Ssam 10111570Ssam if ((m = m_get(M_DONTWAIT, MT_DATA)) == NULL) 102*16221Skarels return (1); 10315718Skarels m->m_len = sizeof *ea; 10411570Ssam m->m_off = MMAXOFF - m->m_len; 10511570Ssam ea = mtod(m, struct ether_arp *); 10611570Ssam eh = (struct ether_header *)sa.sa_data; 10712763Ssam bzero((caddr_t)ea, sizeof (*ea)); 108*16221Skarels eh->ether_dhost = etherbroadcastaddr; 10911570Ssam eh->ether_type = ETHERPUP_ARPTYPE; /* if_output will swap */ 11011570Ssam ea->arp_hrd = htons(ARPHRD_ETHER); 11111570Ssam ea->arp_pro = htons(ETHERPUP_IPTYPE); 112*16221Skarels ea->arp_hln = sizeof arp_sha(ea); /* hardware address length */ 113*16221Skarels ea->arp_pln = sizeof arp_spa(ea); /* protocol address length */ 11411570Ssam ea->arp_op = htons(ARPOP_REQUEST); 115*16221Skarels arp_sha(ea) = ac->ac_enaddr; 116*16221Skarels arp_spa(ea) = ((struct sockaddr_in *)&ac->ac_if.if_addr)->sin_addr; 117*16221Skarels arp_tpa(ea) = *addr; 11811570Ssam sa.sa_family = AF_UNSPEC; 119*16221Skarels return ((*ac->ac_if.if_output)(&ac->ac_if, m, &sa)); 12011570Ssam } 12111570Ssam 12211570Ssam /* 12311570Ssam * Resolve an IP address into an ethernet address. If success, 12411570Ssam * desten is filled in and 1 is returned. If there is no entry 12511570Ssam * in arptab, set one up and broadcast a request 12611570Ssam * for the IP address; return 0. Hold onto this mbuf and 12711570Ssam * resend it once the address is finally resolved. 12811570Ssam * 12911570Ssam * We do some (conservative) locking here at splimp, since 13011570Ssam * arptab is also altered from input interrupt service (ecintr/ilintr 13111570Ssam * calls arpinput when ETHERPUP_ARPTYPE packets come in). 13211570Ssam */ 13311570Ssam arpresolve(ac, m, destip, desten) 13411570Ssam register struct arpcom *ac; 13511570Ssam struct mbuf *m; 13611570Ssam register struct in_addr *destip; 137*16221Skarels register struct ether_addr *desten; 13811570Ssam { 13911570Ssam register struct arptab *at; 14014867Ssam register struct ifnet *ifp; 141*16221Skarels register int i; 14211570Ssam struct sockaddr_in sin; 14311570Ssam int s, lna; 14411570Ssam 14511570Ssam lna = in_lnaof(*destip); 14611570Ssam if (lna == INADDR_ANY) { /* broadcast address */ 147*16221Skarels *desten = etherbroadcastaddr; 14811570Ssam return (1); 14911570Ssam } 15014867Ssam ifp = &ac->ac_if; 15114867Ssam /* if for us, then use software loopback driver */ 15214867Ssam if (destip->s_addr == 153*16221Skarels ((struct sockaddr_in *)&ifp->if_addr)-> sin_addr.s_addr && 154*16221Skarels (loif.if_flags & IFF_UP)) { 15511570Ssam sin.sin_family = AF_INET; 15611570Ssam sin.sin_addr = *destip; 15712763Ssam return (looutput(&loif, m, (struct sockaddr *)&sin)); 15811570Ssam } 15911570Ssam s = splimp(); 16011570Ssam ARPTAB_LOOK(at, destip->s_addr); 16111570Ssam if (at == 0) { /* not found */ 162*16221Skarels if ((ifp->if_flags & IFF_NOARP) || lna >= oldmap) { 163*16221Skarels *desten = ac->ac_enaddr; 164*16221Skarels desten->ether_addr_octet[3] = (lna >> 16) & 0x7f; 165*16221Skarels desten->ether_addr_octet[4] = (lna >> 8) & 0xff; 166*16221Skarels desten->ether_addr_octet[5] = lna & 0xff; 167*16221Skarels splx(s); 168*16221Skarels return (1); 169*16221Skarels } else { 170*16221Skarels at = arptnew(destip); 171*16221Skarels at->at_hold = m; 172*16221Skarels arpwhohas(ac, destip); 173*16221Skarels splx(s); 174*16221Skarels return (0); 175*16221Skarels } 17611570Ssam } 17711570Ssam at->at_timer = 0; /* restart the timer */ 17811570Ssam if (at->at_flags & ATF_COM) { /* entry IS complete */ 179*16221Skarels *desten = at->at_enaddr; 18011570Ssam splx(s); 18111570Ssam return (1); 18211570Ssam } 18311570Ssam /* 18411570Ssam * There is an arptab entry, but no ethernet address 18511570Ssam * response yet. Replace the held mbuf with this 18611570Ssam * latest one. 18711570Ssam */ 18811570Ssam if (at->at_hold) 18911570Ssam m_freem(at->at_hold); 19011570Ssam at->at_hold = m; 19111570Ssam arpwhohas(ac, destip); /* ask again */ 19211570Ssam splx(s); 19311570Ssam return (0); 19411570Ssam } 19511570Ssam 19611570Ssam /* 19711570Ssam * Called from ecintr/ilintr when ether packet type ETHERPUP_ARP 198*16221Skarels * 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; 20811570Ssam register struct arptab *at = 0; /* same as "merge" flag */ 20911570Ssam struct sockaddr_in sin; 21011570Ssam struct sockaddr sa; 21111570Ssam struct mbuf *mhold; 21211570Ssam struct in_addr isaddr,itaddr,myaddr; 21311570Ssam 21411570Ssam if (m->m_len < sizeof *ea) 21511570Ssam goto out; 216*16221Skarels if (ac->ac_if.if_flags & IFF_NOARP) 217*16221Skarels goto out; 21811570Ssam myaddr = ((struct sockaddr_in *)&ac->ac_if.if_addr)->sin_addr; 21911570Ssam ea = mtod(m, struct ether_arp *); 22011570Ssam if (ntohs(ea->arp_pro) != ETHERPUP_IPTYPE) 22111570Ssam goto out; 222*16221Skarels isaddr = arp_spa(ea); 223*16221Skarels itaddr = arp_tpa(ea); 224*16221Skarels if (!bcmp((caddr_t)&arp_sha(ea), (caddr_t)&ac->ac_enaddr, 22512763Ssam sizeof (ac->ac_enaddr))) 22611570Ssam goto out; /* it's from me, ignore it. */ 22711570Ssam if (isaddr.s_addr == myaddr.s_addr) { 22811570Ssam printf("duplicate IP address!! sent from ethernet address: "); 229*16221Skarels printf("%x %x %x %x %x %x\n", ea->arp_xsha[0], ea->arp_xsha[1], 230*16221Skarels ea->arp_xsha[2], ea->arp_xsha[3], 231*16221Skarels ea->arp_xsha[4], ea->arp_xsha[5]); 232*16221Skarels itaddr = myaddr; 23311570Ssam if (ntohs(ea->arp_op) == ARPOP_REQUEST) 23411570Ssam goto reply; 23511570Ssam goto out; 23611570Ssam } 23711570Ssam ARPTAB_LOOK(at, isaddr.s_addr); 238*16221Skarels if (at) { /* XXX ? - can overwrite ATF_PERM */ 239*16221Skarels at->at_enaddr = arp_sha(ea); 24011570Ssam at->at_flags |= ATF_COM; 24111570Ssam if (at->at_hold) { 24211570Ssam mhold = at->at_hold; 24311570Ssam at->at_hold = 0; 24411570Ssam sin.sin_family = AF_INET; 24511570Ssam sin.sin_addr = isaddr; 24611570Ssam (*ac->ac_if.if_output)(&ac->ac_if, 24711570Ssam mhold, (struct sockaddr *)&sin); 24811570Ssam } 249*16221Skarels } else if (itaddr.s_addr == myaddr.s_addr) { 250*16221Skarels /* ensure we have a table entry */ 25111570Ssam at = arptnew(&isaddr); 252*16221Skarels at->at_enaddr = arp_sha(ea); 25311570Ssam at->at_flags |= ATF_COM; 25411570Ssam } 25511570Ssam if (ntohs(ea->arp_op) != ARPOP_REQUEST) 25611570Ssam goto out; 257*16221Skarels ARPTAB_LOOK(at, itaddr.s_addr); 258*16221Skarels if (at == NULL) { 259*16221Skarels if (itaddr.s_addr != myaddr.s_addr) 260*16221Skarels goto out; /* if I am not the target */ 261*16221Skarels at = arptnew(&myaddr); 262*16221Skarels at->at_enaddr = ac->ac_enaddr; 263*16221Skarels at->at_flags |= ATF_COM; 264*16221Skarels } 265*16221Skarels if (itaddr.s_addr != myaddr.s_addr && (at->at_flags & ATF_PUBL) == 0) 266*16221Skarels goto out; 267*16221Skarels 26811570Ssam reply: 269*16221Skarels arp_tha(ea) = arp_sha(ea); 270*16221Skarels arp_tpa(ea) = arp_spa(ea); 271*16221Skarels arp_sha(ea) = at->at_enaddr; 272*16221Skarels arp_spa(ea) = itaddr; 27311570Ssam ea->arp_op = htons(ARPOP_REPLY); 27411570Ssam eh = (struct ether_header *)sa.sa_data; 275*16221Skarels eh->ether_dhost = arp_tha(ea); 27611570Ssam eh->ether_type = ETHERPUP_ARPTYPE; 27711570Ssam sa.sa_family = AF_UNSPEC; 27811570Ssam (*ac->ac_if.if_output)(&ac->ac_if, m, &sa); 27911570Ssam return; 28011570Ssam out: 28111570Ssam m_freem(m); 28211570Ssam return; 28311570Ssam } 28411570Ssam 28511570Ssam /* 28611570Ssam * Free an arptab entry. 28711570Ssam */ 28811570Ssam arptfree(at) 28911570Ssam register struct arptab *at; 29011570Ssam { 29111570Ssam int s = splimp(); 29211570Ssam 29311570Ssam if (at->at_hold) 29411570Ssam m_freem(at->at_hold); 29511570Ssam at->at_hold = 0; 29611570Ssam at->at_timer = at->at_flags = 0; 29711570Ssam at->at_iaddr.s_addr = 0; 29811570Ssam splx(s); 29911570Ssam } 30011570Ssam 30111570Ssam /* 30211570Ssam * Enter a new address in arptab, pushing out the oldest entry 30311570Ssam * from the bucket if there is no room. 304*16221Skarels * This always succeeds since no bucket can be completely filled 305*16221Skarels * with permanent entries (except from arpioctl when testing whether 306*16221Skarels * another permanent entry). 30711570Ssam */ 30811570Ssam struct arptab * 30911570Ssam arptnew(addr) 31011570Ssam struct in_addr *addr; 31111570Ssam { 31211570Ssam register n; 31311570Ssam int oldest = 0; 314*16221Skarels register struct arptab *at, *ato = NULL; 315*16221Skarels static int first = 1; 31611570Ssam 317*16221Skarels if (first) { 318*16221Skarels first = 0; 319*16221Skarels timeout(arptimer, (caddr_t)0, hz); 320*16221Skarels } 321*16221Skarels at = &arptab[ARPTAB_HASH(addr->s_addr) * ARPTAB_BSIZ]; 32211570Ssam for (n = 0 ; n < ARPTAB_BSIZ ; n++,at++) { 32311570Ssam if (at->at_flags == 0) 32411570Ssam goto out; /* found an empty entry */ 325*16221Skarels if (at->at_flags & ATF_PERM) 326*16221Skarels continue; 32711570Ssam if (at->at_timer > oldest) { 32811570Ssam oldest = at->at_timer; 32911570Ssam ato = at; 33011570Ssam } 33111570Ssam } 332*16221Skarels if (ato == NULL) 333*16221Skarels return(NULL); 33411570Ssam at = ato; 33511570Ssam arptfree(at); 33611570Ssam out: 33711570Ssam at->at_iaddr = *addr; 33811570Ssam at->at_flags = ATF_INUSE; 33911570Ssam return (at); 34011570Ssam } 341*16221Skarels 342*16221Skarels arpioctl(cmd, data) 343*16221Skarels int cmd; 344*16221Skarels caddr_t data; 345*16221Skarels { 346*16221Skarels register struct arpreq *ar = (struct arpreq *)data; 347*16221Skarels register struct arptab *at; 348*16221Skarels register struct sockaddr_in *sin; 349*16221Skarels int s; 350*16221Skarels 351*16221Skarels if (ar->arp_pa.sa_family != AF_INET || 352*16221Skarels ar->arp_ha.sa_family != AF_UNSPEC) 353*16221Skarels return (EAFNOSUPPORT); 354*16221Skarels sin = (struct sockaddr_in *)&ar->arp_pa; 355*16221Skarels s = splimp(); 356*16221Skarels ARPTAB_LOOK(at, sin->sin_addr.s_addr); 357*16221Skarels if (at == NULL) { /* not found */ 358*16221Skarels if (cmd != SIOCSARP) { 359*16221Skarels splx(s); 360*16221Skarels return (ENXIO); 361*16221Skarels } 362*16221Skarels if (if_ifwithnet(&ar->arp_pa) == NULL) { 363*16221Skarels splx(s); 364*16221Skarels return (ENETUNREACH); 365*16221Skarels } 366*16221Skarels } 367*16221Skarels switch (cmd) { 368*16221Skarels 369*16221Skarels case SIOCSARP: /* set entry */ 370*16221Skarels if (at == NULL) { 371*16221Skarels at = arptnew(&sin->sin_addr); 372*16221Skarels if (ar->arp_flags & ATF_PERM) { 373*16221Skarels /* never make all entries in a bucket permanent */ 374*16221Skarels register struct arptab *tat; 375*16221Skarels 376*16221Skarels /* try to re-allocate */ 377*16221Skarels tat = arptnew(&sin->sin_addr); 378*16221Skarels if (tat == NULL) { 379*16221Skarels arptfree(at); 380*16221Skarels splx(s); 381*16221Skarels return (EADDRNOTAVAIL); 382*16221Skarels } 383*16221Skarels arptfree(tat); 384*16221Skarels } 385*16221Skarels } 386*16221Skarels at->at_enaddr = *(struct ether_addr *)ar->arp_ha.sa_data; 387*16221Skarels at->at_flags = ATF_COM | ATF_INUSE | 388*16221Skarels (ar->arp_flags & (ATF_PERM|ATF_PUBL)); 389*16221Skarels at->at_timer = 0; 390*16221Skarels break; 391*16221Skarels 392*16221Skarels case SIOCDARP: /* delete entry */ 393*16221Skarels arptfree(at); 394*16221Skarels break; 395*16221Skarels 396*16221Skarels case SIOCGARP: /* get entry */ 397*16221Skarels *(struct ether_addr *)ar->arp_ha.sa_data = at->at_enaddr; 398*16221Skarels ar->arp_flags = at->at_flags; 399*16221Skarels break; 400*16221Skarels } 401*16221Skarels splx(s); 402*16221Skarels return (0); 403*16221Skarels } 404