if_ethersubr.c revision 1.194.6.2 1 /* $NetBSD: if_ethersubr.c,v 1.194.6.2 2014/05/18 17:46:12 rmind Exp $ */
2
3 /*
4 * Copyright (C) 1995, 1996, 1997, and 1998 WIDE Project.
5 * All rights reserved.
6 *
7 * Redistribution and use in source and binary forms, with or without
8 * modification, are permitted provided that the following conditions
9 * are met:
10 * 1. Redistributions of source code must retain the above copyright
11 * notice, this list of conditions and the following disclaimer.
12 * 2. Redistributions in binary form must reproduce the above copyright
13 * notice, this list of conditions and the following disclaimer in the
14 * documentation and/or other materials provided with the distribution.
15 * 3. Neither the name of the project nor the names of its contributors
16 * may be used to endorse or promote products derived from this software
17 * without specific prior written permission.
18 *
19 * THIS SOFTWARE IS PROVIDED BY THE PROJECT AND CONTRIBUTORS ``AS IS'' AND
20 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
21 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
22 * ARE DISCLAIMED. IN NO EVENT SHALL THE PROJECT OR CONTRIBUTORS BE LIABLE
23 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
24 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
25 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
26 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
27 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
28 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
29 * SUCH DAMAGE.
30 */
31
32 /*
33 * Copyright (c) 1982, 1989, 1993
34 * The Regents of the University of California. All rights reserved.
35 *
36 * Redistribution and use in source and binary forms, with or without
37 * modification, are permitted provided that the following conditions
38 * are met:
39 * 1. Redistributions of source code must retain the above copyright
40 * notice, this list of conditions and the following disclaimer.
41 * 2. Redistributions in binary form must reproduce the above copyright
42 * notice, this list of conditions and the following disclaimer in the
43 * documentation and/or other materials provided with the distribution.
44 * 3. Neither the name of the University nor the names of its contributors
45 * may be used to endorse or promote products derived from this software
46 * without specific prior written permission.
47 *
48 * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
49 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
50 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
51 * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
52 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
53 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
54 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
55 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
56 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
57 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
58 * SUCH DAMAGE.
59 *
60 * @(#)if_ethersubr.c 8.2 (Berkeley) 4/4/96
61 */
62
63 #include <sys/cdefs.h>
64 __KERNEL_RCSID(0, "$NetBSD: if_ethersubr.c,v 1.194.6.2 2014/05/18 17:46:12 rmind Exp $");
65
66 #include "opt_inet.h"
67 #include "opt_atalk.h"
68 #include "opt_ipx.h"
69 #include "opt_mbuftrace.h"
70 #include "opt_mpls.h"
71 #include "opt_gateway.h"
72 #include "opt_pppoe.h"
73 #include "vlan.h"
74 #include "pppoe.h"
75 #include "bridge.h"
76 #include "arp.h"
77 #include "agr.h"
78
79 #include <sys/param.h>
80 #include <sys/systm.h>
81 #include <sys/kernel.h>
82 #include <sys/callout.h>
83 #include <sys/malloc.h>
84 #include <sys/mbuf.h>
85 #include <sys/protosw.h>
86 #include <sys/socket.h>
87 #include <sys/ioctl.h>
88 #include <sys/errno.h>
89 #include <sys/syslog.h>
90 #include <sys/kauth.h>
91 #include <sys/cpu.h>
92 #include <sys/intr.h>
93 #include <sys/device.h>
94
95 #include <net/if.h>
96 #include <net/netisr.h>
97 #include <net/route.h>
98 #include <net/if_llc.h>
99 #include <net/if_dl.h>
100 #include <net/if_types.h>
101
102 #include <net/if_media.h>
103 #include <dev/mii/mii.h>
104 #include <dev/mii/miivar.h>
105
106 #if NARP == 0
107 /*
108 * XXX there should really be a way to issue this warning from within config(8)
109 */
110 #error You have included NETATALK or a pseudo-device in your configuration that depends on the presence of ethernet interfaces, but have no such interfaces configured. Check if you really need pseudo-device bridge, pppoe, vlan or options NETATALK.
111 #endif
112
113 #include <net/bpf.h>
114
115 #include <net/if_ether.h>
116 #include <net/if_vlanvar.h>
117
118 #if NPPPOE > 0
119 #include <net/if_pppoe.h>
120 #endif
121
122 #if NAGR > 0
123 #include <net/agr/ieee8023_slowprotocols.h> /* XXX */
124 #include <net/agr/ieee8023ad.h>
125 #include <net/agr/if_agrvar.h>
126 #endif
127
128 #if NBRIDGE > 0
129 #include <net/if_bridgevar.h>
130 #endif
131
132 #include <netinet/in.h>
133 #ifdef INET
134 #include <netinet/in_var.h>
135 #endif
136 #include <netinet/if_inarp.h>
137
138 #ifdef INET6
139 #ifndef INET
140 #include <netinet/in.h>
141 #endif
142 #include <netinet6/in6_var.h>
143 #include <netinet6/nd6.h>
144 #endif
145
146
147 #include "carp.h"
148 #if NCARP > 0
149 #include <netinet/ip_carp.h>
150 #endif
151
152 #ifdef IPX
153 #include <netipx/ipx.h>
154 #include <netipx/ipx_if.h>
155 #endif
156
157 #ifdef NETATALK
158 #include <netatalk/at.h>
159 #include <netatalk/at_var.h>
160 #include <netatalk/at_extern.h>
161
162 #define llc_snap_org_code llc_un.type_snap.org_code
163 #define llc_snap_ether_type llc_un.type_snap.ether_type
164
165 extern u_char at_org_code[3];
166 extern u_char aarp_org_code[3];
167 #endif /* NETATALK */
168
169 #ifdef MPLS
170 #include <netmpls/mpls.h>
171 #include <netmpls/mpls_var.h>
172 #endif
173
174 static struct timeval bigpktppslim_last;
175 static int bigpktppslim = 2; /* XXX */
176 static int bigpktpps_count;
177
178
179 const uint8_t etherbroadcastaddr[ETHER_ADDR_LEN] =
180 { 0xff, 0xff, 0xff, 0xff, 0xff, 0xff };
181 const uint8_t ethermulticastaddr_slowprotocols[ETHER_ADDR_LEN] =
182 { 0x01, 0x80, 0xc2, 0x00, 0x00, 0x02 };
183 #define senderr(e) { error = (e); goto bad;}
184
185 static int ether_output(struct ifnet *, struct mbuf *,
186 const struct sockaddr *, struct rtentry *);
187
188 /*
189 * Ethernet output routine.
190 * Encapsulate a packet of type family for the local net.
191 * Assumes that ifp is actually pointer to ethercom structure.
192 */
193 static int
194 ether_output(struct ifnet * const ifp0, struct mbuf * const m0,
195 const struct sockaddr * const dst,
196 struct rtentry *rt0)
197 {
198 uint16_t etype = 0;
199 int error = 0, hdrcmplt = 0;
200 uint8_t esrc[6], edst[6];
201 struct mbuf *m = m0;
202 struct rtentry *rt;
203 struct mbuf *mcopy = NULL;
204 struct ether_header *eh;
205 struct ifnet *ifp = ifp0;
206 ALTQ_DECL(struct altq_pktattr pktattr;)
207 #ifdef INET
208 struct arphdr *ah;
209 #endif /* INET */
210 #ifdef NETATALK
211 struct at_ifaddr *aa;
212 #endif /* NETATALK */
213
214 KASSERT(KERNEL_LOCKED_P());
215
216 #ifdef MBUFTRACE
217 m_claimm(m, ifp->if_mowner);
218 #endif
219
220 #if NCARP > 0
221 if (ifp->if_type == IFT_CARP) {
222 struct ifaddr *ifa;
223
224 /* loop back if this is going to the carp interface */
225 if (dst != NULL && ifp0->if_link_state == LINK_STATE_UP &&
226 (ifa = ifa_ifwithaddr(dst)) != NULL &&
227 ifa->ifa_ifp == ifp0)
228 return looutput(ifp0, m, dst, rt0);
229
230 ifp = ifp->if_carpdev;
231 /* ac = (struct arpcom *)ifp; */
232
233 if ((ifp0->if_flags & (IFF_UP|IFF_RUNNING)) !=
234 (IFF_UP|IFF_RUNNING))
235 senderr(ENETDOWN);
236 }
237 #endif /* NCARP > 0 */
238
239 if ((ifp->if_flags & (IFF_UP|IFF_RUNNING)) != (IFF_UP|IFF_RUNNING))
240 senderr(ENETDOWN);
241 if ((rt = rt0) != NULL) {
242 if ((rt->rt_flags & RTF_UP) == 0) {
243 if ((rt0 = rt = rtalloc1(dst, 1)) != NULL) {
244 rt->rt_refcnt--;
245 if (rt->rt_ifp != ifp)
246 return (*rt->rt_ifp->if_output)
247 (ifp, m0, dst, rt);
248 } else
249 senderr(EHOSTUNREACH);
250 }
251 if ((rt->rt_flags & RTF_GATEWAY) && dst->sa_family != AF_NS) {
252 if (rt->rt_gwroute == NULL)
253 goto lookup;
254 if (((rt = rt->rt_gwroute)->rt_flags & RTF_UP) == 0) {
255 rtfree(rt); rt = rt0;
256 lookup: rt->rt_gwroute = rtalloc1(rt->rt_gateway, 1);
257 if ((rt = rt->rt_gwroute) == NULL)
258 senderr(EHOSTUNREACH);
259 /* the "G" test below also prevents rt == rt0 */
260 if ((rt->rt_flags & RTF_GATEWAY) ||
261 (rt->rt_ifp != ifp)) {
262 rt->rt_refcnt--;
263 rt0->rt_gwroute = NULL;
264 senderr(EHOSTUNREACH);
265 }
266 }
267 }
268 if (rt->rt_flags & RTF_REJECT)
269 if (rt->rt_rmx.rmx_expire == 0 ||
270 (u_long) time_second < rt->rt_rmx.rmx_expire)
271 senderr(rt == rt0 ? EHOSTDOWN : EHOSTUNREACH);
272 }
273
274 switch (dst->sa_family) {
275
276 #ifdef INET
277 case AF_INET:
278 if (m->m_flags & M_BCAST)
279 (void)memcpy(edst, etherbroadcastaddr, sizeof(edst));
280 else if (m->m_flags & M_MCAST)
281 ETHER_MAP_IP_MULTICAST(&satocsin(dst)->sin_addr, edst);
282 else if (!arpresolve(ifp, rt, m, dst, edst))
283 return (0); /* if not yet resolved */
284 /* If broadcasting on a simplex interface, loopback a copy */
285 if ((m->m_flags & M_BCAST) && (ifp->if_flags & IFF_SIMPLEX))
286 mcopy = m_copy(m, 0, (int)M_COPYALL);
287 etype = htons(ETHERTYPE_IP);
288 break;
289
290 case AF_ARP:
291 ah = mtod(m, struct arphdr *);
292 if (m->m_flags & M_BCAST)
293 (void)memcpy(edst, etherbroadcastaddr, sizeof(edst));
294 else {
295 void *tha = ar_tha(ah);
296
297 if (tha == NULL) {
298 /* fake with ARPHDR_IEEE1394 */
299 return 0;
300 }
301 memcpy(edst, tha, sizeof(edst));
302 }
303
304 ah->ar_hrd = htons(ARPHRD_ETHER);
305
306 switch (ntohs(ah->ar_op)) {
307 case ARPOP_REVREQUEST:
308 case ARPOP_REVREPLY:
309 etype = htons(ETHERTYPE_REVARP);
310 break;
311
312 case ARPOP_REQUEST:
313 case ARPOP_REPLY:
314 default:
315 etype = htons(ETHERTYPE_ARP);
316 }
317
318 break;
319 #endif
320 #ifdef INET6
321 case AF_INET6:
322 if (!nd6_storelladdr(ifp, rt, m, dst, edst, sizeof(edst))){
323 /* something bad happened */
324 return (0);
325 }
326 etype = htons(ETHERTYPE_IPV6);
327 break;
328 #endif
329 #ifdef NETATALK
330 case AF_APPLETALK:
331 if (!aarpresolve(ifp, m, (const struct sockaddr_at *)dst, edst)) {
332 #ifdef NETATALKDEBUG
333 printf("aarpresolv failed\n");
334 #endif /* NETATALKDEBUG */
335 return (0);
336 }
337 /*
338 * ifaddr is the first thing in at_ifaddr
339 */
340 aa = (struct at_ifaddr *) at_ifawithnet(
341 (const struct sockaddr_at *)dst, ifp);
342 if (aa == NULL)
343 goto bad;
344
345 /*
346 * In the phase 2 case, we need to prepend an mbuf for the
347 * llc header. Since we must preserve the value of m,
348 * which is passed to us by value, we m_copy() the first
349 * mbuf, and use it for our llc header.
350 */
351 if (aa->aa_flags & AFA_PHASE2) {
352 struct llc llc;
353
354 M_PREPEND(m, sizeof(struct llc), M_DONTWAIT);
355 llc.llc_dsap = llc.llc_ssap = LLC_SNAP_LSAP;
356 llc.llc_control = LLC_UI;
357 memcpy(llc.llc_snap_org_code, at_org_code,
358 sizeof(llc.llc_snap_org_code));
359 llc.llc_snap_ether_type = htons(ETHERTYPE_ATALK);
360 memcpy(mtod(m, void *), &llc, sizeof(struct llc));
361 } else {
362 etype = htons(ETHERTYPE_ATALK);
363 }
364 break;
365 #endif /* NETATALK */
366 #ifdef IPX
367 case AF_IPX:
368 etype = htons(ETHERTYPE_IPX);
369 memcpy(edst,
370 &(((const struct sockaddr_ipx *)dst)->sipx_addr.x_host),
371 sizeof(edst));
372 /* If broadcasting on a simplex interface, loopback a copy */
373 if ((m->m_flags & M_BCAST) && (ifp->if_flags & IFF_SIMPLEX))
374 mcopy = m_copy(m, 0, (int)M_COPYALL);
375 break;
376 #endif
377 case pseudo_AF_HDRCMPLT:
378 hdrcmplt = 1;
379 memcpy(esrc,
380 ((const struct ether_header *)dst->sa_data)->ether_shost,
381 sizeof(esrc));
382 /* FALLTHROUGH */
383
384 case AF_UNSPEC:
385 memcpy(edst,
386 ((const struct ether_header *)dst->sa_data)->ether_dhost,
387 sizeof(edst));
388 /* AF_UNSPEC doesn't swap the byte order of the ether_type. */
389 etype = ((const struct ether_header *)dst->sa_data)->ether_type;
390 break;
391
392 default:
393 printf("%s: can't handle af%d\n", ifp->if_xname,
394 dst->sa_family);
395 senderr(EAFNOSUPPORT);
396 }
397
398 #ifdef MPLS
399 if (rt0 != NULL && rt_gettag(rt0) != NULL &&
400 rt_gettag(rt0)->sa_family == AF_MPLS &&
401 (m->m_flags & (M_MCAST | M_BCAST)) == 0) {
402 union mpls_shim msh;
403 msh.s_addr = MPLS_GETSADDR(rt0);
404 if (msh.shim.label != MPLS_LABEL_IMPLNULL)
405 etype = htons(ETHERTYPE_MPLS);
406 }
407 #endif
408
409 if (mcopy)
410 (void)looutput(ifp, mcopy, dst, rt);
411
412 /* If no ether type is set, this must be a 802.2 formatted packet.
413 */
414 if (etype == 0)
415 etype = htons(m->m_pkthdr.len);
416 /*
417 * Add local net header. If no space in first mbuf,
418 * allocate another.
419 */
420 M_PREPEND(m, sizeof (struct ether_header), M_DONTWAIT);
421 if (m == 0)
422 senderr(ENOBUFS);
423 eh = mtod(m, struct ether_header *);
424 /* Note: etype is already in network byte order. */
425 (void)memcpy(&eh->ether_type, &etype, sizeof(eh->ether_type));
426 memcpy(eh->ether_dhost, edst, sizeof(edst));
427 if (hdrcmplt)
428 memcpy(eh->ether_shost, esrc, sizeof(eh->ether_shost));
429 else
430 memcpy(eh->ether_shost, CLLADDR(ifp->if_sadl),
431 sizeof(eh->ether_shost));
432
433 #if NCARP > 0
434 if (ifp0 != ifp && ifp0->if_type == IFT_CARP) {
435 memcpy(eh->ether_shost, CLLADDR(ifp0->if_sadl),
436 sizeof(eh->ether_shost));
437 }
438 #endif /* NCARP > 0 */
439
440 if ((error = pfil_run_hooks(ifp->if_pfil, &m, ifp, PFIL_OUT)) != 0)
441 return (error);
442 if (m == NULL)
443 return (0);
444
445 #if NBRIDGE > 0
446 /*
447 * Bridges require special output handling.
448 */
449 if (ifp->if_bridge)
450 return (bridge_output(ifp, m, NULL, NULL));
451 #endif
452
453 #if NCARP > 0
454 if (ifp != ifp0)
455 ifp0->if_obytes += m->m_pkthdr.len + ETHER_HDR_LEN;
456 #endif /* NCARP > 0 */
457
458 #ifdef ALTQ
459 /*
460 * If ALTQ is enabled on the parent interface, do
461 * classification; the queueing discipline might not
462 * require classification, but might require the
463 * address family/header pointer in the pktattr.
464 */
465 if (ALTQ_IS_ENABLED(&ifp->if_snd))
466 altq_etherclassify(&ifp->if_snd, m, &pktattr);
467 #endif
468 return ifq_enqueue(ifp, m ALTQ_COMMA ALTQ_DECL(&pktattr));
469
470 bad:
471 if (m)
472 m_freem(m);
473 return (error);
474 }
475
476 #ifdef ALTQ
477 /*
478 * This routine is a slight hack to allow a packet to be classified
479 * if the Ethernet headers are present. It will go away when ALTQ's
480 * classification engine understands link headers.
481 */
482 void
483 altq_etherclassify(struct ifaltq *ifq, struct mbuf *m,
484 struct altq_pktattr *pktattr)
485 {
486 struct ether_header *eh;
487 uint16_t ether_type;
488 int hlen, af, hdrsize;
489 void *hdr;
490
491 hlen = ETHER_HDR_LEN;
492 eh = mtod(m, struct ether_header *);
493
494 ether_type = htons(eh->ether_type);
495
496 if (ether_type < ETHERMTU) {
497 /* LLC/SNAP */
498 struct llc *llc = (struct llc *)(eh + 1);
499 hlen += 8;
500
501 if (m->m_len < hlen ||
502 llc->llc_dsap != LLC_SNAP_LSAP ||
503 llc->llc_ssap != LLC_SNAP_LSAP ||
504 llc->llc_control != LLC_UI) {
505 /* Not SNAP. */
506 goto bad;
507 }
508
509 ether_type = htons(llc->llc_un.type_snap.ether_type);
510 }
511
512 switch (ether_type) {
513 case ETHERTYPE_IP:
514 af = AF_INET;
515 hdrsize = 20; /* sizeof(struct ip) */
516 break;
517
518 case ETHERTYPE_IPV6:
519 af = AF_INET6;
520 hdrsize = 40; /* sizeof(struct ip6_hdr) */
521 break;
522
523 default:
524 af = AF_UNSPEC;
525 hdrsize = 0;
526 break;
527 }
528
529 while (m->m_len <= hlen) {
530 hlen -= m->m_len;
531 m = m->m_next;
532 }
533 if (m->m_len < (hlen + hdrsize)) {
534 /*
535 * protocol header not in a single mbuf.
536 * We can't cope with this situation right
537 * now (but it shouldn't ever happen, really, anyhow).
538 */
539 #ifdef DEBUG
540 printf("altq_etherclassify: headers span multiple mbufs: "
541 "%d < %d\n", m->m_len, (hlen + hdrsize));
542 #endif
543 goto bad;
544 }
545
546 m->m_data += hlen;
547 m->m_len -= hlen;
548
549 hdr = mtod(m, void *);
550
551 if (ALTQ_NEEDS_CLASSIFY(ifq))
552 pktattr->pattr_class =
553 (*ifq->altq_classify)(ifq->altq_clfier, m, af);
554 pktattr->pattr_af = af;
555 pktattr->pattr_hdr = hdr;
556
557 m->m_data -= hlen;
558 m->m_len += hlen;
559
560 return;
561
562 bad:
563 pktattr->pattr_class = NULL;
564 pktattr->pattr_hdr = NULL;
565 pktattr->pattr_af = AF_UNSPEC;
566 }
567 #endif /* ALTQ */
568
569 /*
570 * Process a received Ethernet packet;
571 * the packet is in the mbuf chain m with
572 * the ether header.
573 */
574 void
575 ether_input(struct ifnet *ifp, struct mbuf *m)
576 {
577 struct ethercom *ec = (struct ethercom *) ifp;
578 struct ifqueue *inq;
579 uint16_t etype;
580 struct ether_header *eh;
581 size_t ehlen;
582 int isr = 0;
583 #if defined (LLC) || defined(NETATALK)
584 struct llc *l;
585 #endif
586
587 if ((ifp->if_flags & IFF_UP) == 0) {
588 m_freem(m);
589 return;
590 }
591
592 #ifdef MBUFTRACE
593 m_claimm(m, &ec->ec_rx_mowner);
594 #endif
595 eh = mtod(m, struct ether_header *);
596 etype = ntohs(eh->ether_type);
597 ehlen = sizeof(*eh);
598
599 /*
600 * Determine if the packet is within its size limits.
601 */
602 if (etype != ETHERTYPE_MPLS && m->m_pkthdr.len >
603 ETHER_MAX_FRAME(ifp, etype, m->m_flags & M_HASFCS)) {
604 if (ppsratecheck(&bigpktppslim_last, &bigpktpps_count,
605 bigpktppslim)) {
606 printf("%s: discarding oversize frame (len=%d)\n",
607 ifp->if_xname, m->m_pkthdr.len);
608 }
609 m_freem(m);
610 return;
611 }
612
613 if (ETHER_IS_MULTICAST(eh->ether_dhost)) {
614 /*
615 * If this is not a simplex interface, drop the packet
616 * if it came from us.
617 */
618 if ((ifp->if_flags & IFF_SIMPLEX) == 0 &&
619 memcmp(CLLADDR(ifp->if_sadl), eh->ether_shost,
620 ETHER_ADDR_LEN) == 0) {
621 m_freem(m);
622 return;
623 }
624
625 if (memcmp(etherbroadcastaddr,
626 eh->ether_dhost, ETHER_ADDR_LEN) == 0)
627 m->m_flags |= M_BCAST;
628 else
629 m->m_flags |= M_MCAST;
630 ifp->if_imcasts++;
631 }
632
633 /* If the CRC is still on the packet, trim it off. */
634 if (m->m_flags & M_HASFCS) {
635 m_adj(m, -ETHER_CRC_LEN);
636 m->m_flags &= ~M_HASFCS;
637 }
638
639 ifp->if_ibytes += m->m_pkthdr.len;
640
641 #if NBRIDGE > 0
642 /*
643 * Tap the packet off here for a bridge. bridge_input()
644 * will return NULL if it has consumed the packet, otherwise
645 * it gets processed as normal. Note that bridge_input()
646 * will always return the original packet if we need to
647 * process it locally.
648 */
649 if (ifp->if_bridge) {
650 /* clear M_PROMISC, in case the packets comes from a vlan */
651 m->m_flags &= ~M_PROMISC;
652 m = bridge_input(ifp, m);
653 if (m == NULL)
654 return;
655
656 /*
657 * Bridge has determined that the packet is for us.
658 * Update our interface pointer -- we may have had
659 * to "bridge" the packet locally.
660 */
661 ifp = m->m_pkthdr.rcvif;
662 } else
663 #endif /* NBRIDGE > 0 */
664 {
665
666 #if NCARP > 0
667 if (__predict_false(ifp->if_carp && ifp->if_type != IFT_CARP)) {
668 /*
669 * clear M_PROMISC, in case the packets comes from a
670 * vlan
671 */
672 m->m_flags &= ~M_PROMISC;
673 if (carp_input(m, (uint8_t *)&eh->ether_shost,
674 (uint8_t *)&eh->ether_dhost, eh->ether_type) == 0)
675 return;
676 }
677 #endif /* NCARP > 0 */
678 if ((m->m_flags & (M_BCAST|M_MCAST|M_PROMISC)) == 0 &&
679 (ifp->if_flags & IFF_PROMISC) != 0 &&
680 memcmp(CLLADDR(ifp->if_sadl), eh->ether_dhost,
681 ETHER_ADDR_LEN) != 0) {
682 m->m_flags |= M_PROMISC;
683 }
684 }
685
686 if ((m->m_flags & M_PROMISC) == 0) {
687 if (pfil_run_hooks(ifp->if_pfil, &m, ifp, PFIL_IN) != 0)
688 return;
689 if (m == NULL)
690 return;
691
692 eh = mtod(m, struct ether_header *);
693 etype = ntohs(eh->ether_type);
694 ehlen = sizeof(*eh);
695 }
696
697 #if NAGR > 0
698 if (ifp->if_agrprivate &&
699 __predict_true(etype != ETHERTYPE_SLOWPROTOCOLS)) {
700 m->m_flags &= ~M_PROMISC;
701 agr_input(ifp, m);
702 return;
703 }
704 #endif /* NAGR > 0 */
705
706 /*
707 * If VLANs are configured on the interface, check to
708 * see if the device performed the decapsulation and
709 * provided us with the tag.
710 */
711 if (ec->ec_nvlans && m_tag_find(m, PACKET_TAG_VLAN, NULL) != NULL) {
712 #if NVLAN > 0
713 /*
714 * vlan_input() will either recursively call ether_input()
715 * or drop the packet.
716 */
717 vlan_input(ifp, m);
718 #else
719 m_freem(m);
720 #endif
721 return;
722 }
723
724 /*
725 * Handle protocols that expect to have the Ethernet header
726 * (and possibly FCS) intact.
727 */
728 switch (etype) {
729 case ETHERTYPE_VLAN: {
730 struct ether_vlan_header *evl = (void *)eh;
731 /*
732 * If there is a tag of 0, then the VLAN header was probably
733 * just being used to store the priority. Extract the ether
734 * type, and if IP or IPV6, let them deal with it.
735 */
736 if (m->m_len <= sizeof(*evl)
737 && EVL_VLANOFTAG(evl->evl_tag) == 0) {
738 etype = ntohs(evl->evl_proto);
739 ehlen = sizeof(*evl);
740 if ((m->m_flags & M_PROMISC) == 0
741 && (etype == ETHERTYPE_IP
742 || etype == ETHERTYPE_IPV6))
743 break;
744 }
745 #if NVLAN > 0
746 /*
747 * vlan_input() will either recursively call ether_input()
748 * or drop the packet.
749 */
750 if (((struct ethercom *)ifp)->ec_nvlans != 0)
751 vlan_input(ifp, m);
752 else
753 #endif /* NVLAN > 0 */
754 m_freem(m);
755 return;
756 }
757 #if NPPPOE > 0
758 case ETHERTYPE_PPPOEDISC:
759 case ETHERTYPE_PPPOE:
760 if (m->m_flags & M_PROMISC) {
761 m_freem(m);
762 return;
763 }
764 #ifndef PPPOE_SERVER
765 if (m->m_flags & (M_MCAST | M_BCAST)) {
766 m_freem(m);
767 return;
768 }
769 #endif
770
771 if (etype == ETHERTYPE_PPPOEDISC)
772 inq = &ppoediscinq;
773 else
774 inq = &ppoeinq;
775 if (IF_QFULL(inq)) {
776 IF_DROP(inq);
777 m_freem(m);
778 } else
779 IF_ENQUEUE(inq, m);
780 softint_schedule(pppoe_softintr);
781 return;
782 #endif /* NPPPOE > 0 */
783 case ETHERTYPE_SLOWPROTOCOLS: {
784 uint8_t subtype;
785
786 #if defined(DIAGNOSTIC)
787 if (m->m_pkthdr.len < sizeof(*eh) + sizeof(subtype)) {
788 panic("ether_input: too short slow protocol packet");
789 }
790 #endif
791 m_copydata(m, sizeof(*eh), sizeof(subtype), &subtype);
792 switch (subtype) {
793 #if NAGR > 0
794 case SLOWPROTOCOLS_SUBTYPE_LACP:
795 if (ifp->if_agrprivate) {
796 ieee8023ad_lacp_input(ifp, m);
797 return;
798 }
799 break;
800
801 case SLOWPROTOCOLS_SUBTYPE_MARKER:
802 if (ifp->if_agrprivate) {
803 ieee8023ad_marker_input(ifp, m);
804 return;
805 }
806 break;
807 #endif /* NAGR > 0 */
808 default:
809 if (subtype == 0 || subtype > 10) {
810 /* illegal value */
811 m_freem(m);
812 return;
813 }
814 /* unknown subtype */
815 break;
816 }
817 /* FALLTHROUGH */
818 }
819 default:
820 if (m->m_flags & M_PROMISC) {
821 m_freem(m);
822 return;
823 }
824 }
825
826 /* If the CRC is still on the packet, trim it off. */
827 if (m->m_flags & M_HASFCS) {
828 m_adj(m, -ETHER_CRC_LEN);
829 m->m_flags &= ~M_HASFCS;
830 }
831
832 if (etype > ETHERMTU + sizeof (struct ether_header)) {
833 /* Strip off the Ethernet header. */
834 m_adj(m, ehlen);
835
836 switch (etype) {
837 #ifdef INET
838 case ETHERTYPE_IP:
839 #ifdef GATEWAY
840 if (ipflow_fastforward(m))
841 return;
842 #endif
843 isr = NETISR_IP;
844 inq = &ipintrq;
845 break;
846
847 case ETHERTYPE_ARP:
848 isr = NETISR_ARP;
849 inq = &arpintrq;
850 break;
851
852 case ETHERTYPE_REVARP:
853 revarpinput(m); /* XXX queue? */
854 return;
855 #endif
856 #ifdef INET6
857 case ETHERTYPE_IPV6:
858 if (__predict_false(!in6_present)) {
859 m_freem(m);
860 return;
861 }
862 #ifdef GATEWAY
863 if (ip6flow_fastforward(&m))
864 return;
865 #endif
866 isr = NETISR_IPV6;
867 inq = &ip6intrq;
868 break;
869 #endif
870 #ifdef IPX
871 case ETHERTYPE_IPX:
872 isr = NETISR_IPX;
873 inq = &ipxintrq;
874 break;
875 #endif
876 #ifdef NETATALK
877 case ETHERTYPE_ATALK:
878 isr = NETISR_ATALK;
879 inq = &atintrq1;
880 break;
881 case ETHERTYPE_AARP:
882 /* probably this should be done with a NETISR as well */
883 aarpinput(ifp, m); /* XXX */
884 return;
885 #endif /* NETATALK */
886 #ifdef MPLS
887 case ETHERTYPE_MPLS:
888 isr = NETISR_MPLS;
889 inq = &mplsintrq;
890 break;
891 #endif
892 default:
893 m_freem(m);
894 return;
895 }
896 } else {
897 #if defined (LLC) || defined (NETATALK)
898 l = (struct llc *)(eh+1);
899 switch (l->llc_dsap) {
900 #ifdef NETATALK
901 case LLC_SNAP_LSAP:
902 switch (l->llc_control) {
903 case LLC_UI:
904 if (l->llc_ssap != LLC_SNAP_LSAP) {
905 goto dropanyway;
906 }
907
908 if (memcmp(&(l->llc_snap_org_code)[0],
909 at_org_code, sizeof(at_org_code)) == 0 &&
910 ntohs(l->llc_snap_ether_type) ==
911 ETHERTYPE_ATALK) {
912 inq = &atintrq2;
913 m_adj(m, sizeof(struct ether_header)
914 + sizeof(struct llc));
915 isr = NETISR_ATALK;
916 break;
917 }
918
919 if (memcmp(&(l->llc_snap_org_code)[0],
920 aarp_org_code,
921 sizeof(aarp_org_code)) == 0 &&
922 ntohs(l->llc_snap_ether_type) ==
923 ETHERTYPE_AARP) {
924 m_adj( m, sizeof(struct ether_header)
925 + sizeof(struct llc));
926 aarpinput(ifp, m); /* XXX */
927 return;
928 }
929
930 default:
931 goto dropanyway;
932 }
933 break;
934 dropanyway:
935 #endif
936 default:
937 m_freem(m);
938 return;
939 }
940 #else /* ISO || LLC || NETATALK*/
941 m_freem(m);
942 return;
943 #endif /* ISO || LLC || NETATALK*/
944 }
945
946 if (IF_QFULL(inq)) {
947 IF_DROP(inq);
948 m_freem(m);
949 } else {
950 IF_ENQUEUE(inq, m);
951 schednetisr(isr);
952 }
953 }
954
955 /*
956 * Convert Ethernet address to printable (loggable) representation.
957 */
958 char *
959 ether_sprintf(const u_char *ap)
960 {
961 static char etherbuf[3 * ETHER_ADDR_LEN];
962 return ether_snprintf(etherbuf, sizeof(etherbuf), ap);
963 }
964
965 char *
966 ether_snprintf(char *buf, size_t len, const u_char *ap)
967 {
968 char *cp = buf;
969 size_t i;
970
971 for (i = 0; i < len / 3; i++) {
972 *cp++ = hexdigits[*ap >> 4];
973 *cp++ = hexdigits[*ap++ & 0xf];
974 *cp++ = ':';
975 }
976 *--cp = '\0';
977 return buf;
978 }
979
980 /*
981 * Perform common duties while attaching to interface list
982 */
983 void
984 ether_ifattach(struct ifnet *ifp, const uint8_t *lla)
985 {
986 struct ethercom *ec = (struct ethercom *)ifp;
987
988 ifp->if_type = IFT_ETHER;
989 ifp->if_hdrlen = ETHER_HDR_LEN;
990 ifp->if_dlt = DLT_EN10MB;
991 ifp->if_mtu = ETHERMTU;
992 ifp->if_output = ether_output;
993 ifp->if_input = ether_input;
994 if (ifp->if_baudrate == 0)
995 ifp->if_baudrate = IF_Mbps(10); /* just a default */
996
997 if_set_sadl(ifp, lla, ETHER_ADDR_LEN, !ETHER_IS_LOCAL(lla));
998
999 LIST_INIT(&ec->ec_multiaddrs);
1000 ifp->if_broadcastaddr = etherbroadcastaddr;
1001 bpf_attach(ifp, DLT_EN10MB, sizeof(struct ether_header));
1002 #ifdef MBUFTRACE
1003 strlcpy(ec->ec_tx_mowner.mo_name, ifp->if_xname,
1004 sizeof(ec->ec_tx_mowner.mo_name));
1005 strlcpy(ec->ec_tx_mowner.mo_descr, "tx",
1006 sizeof(ec->ec_tx_mowner.mo_descr));
1007 strlcpy(ec->ec_rx_mowner.mo_name, ifp->if_xname,
1008 sizeof(ec->ec_rx_mowner.mo_name));
1009 strlcpy(ec->ec_rx_mowner.mo_descr, "rx",
1010 sizeof(ec->ec_rx_mowner.mo_descr));
1011 MOWNER_ATTACH(&ec->ec_tx_mowner);
1012 MOWNER_ATTACH(&ec->ec_rx_mowner);
1013 ifp->if_mowner = &ec->ec_tx_mowner;
1014 #endif
1015 }
1016
1017 void
1018 ether_ifdetach(struct ifnet *ifp)
1019 {
1020 struct ethercom *ec = (void *) ifp;
1021 struct ether_multi *enm;
1022 int s;
1023
1024 /*
1025 * Prevent further calls to ioctl (for example turning off
1026 * promiscuous mode from the bridge code), which eventually can
1027 * call if_init() which can cause panics because the interface
1028 * is in the process of being detached. Return device not configured
1029 * instead.
1030 */
1031 ifp->if_ioctl = (int (*)(struct ifnet *, u_long, void *))enxio;
1032
1033 #if NBRIDGE > 0
1034 if (ifp->if_bridge)
1035 bridge_ifdetach(ifp);
1036 #endif
1037
1038 bpf_detach(ifp);
1039
1040 #if NVLAN > 0
1041 if (ec->ec_nvlans)
1042 vlan_ifdetach(ifp);
1043 #endif
1044
1045 s = splnet();
1046 while ((enm = LIST_FIRST(&ec->ec_multiaddrs)) != NULL) {
1047 LIST_REMOVE(enm, enm_list);
1048 free(enm, M_IFMADDR);
1049 ec->ec_multicnt--;
1050 }
1051 splx(s);
1052
1053 #if 0 /* done in if_detach() */
1054 if_free_sadl(ifp);
1055 #endif
1056
1057 ifp->if_mowner = NULL;
1058 MOWNER_DETACH(&ec->ec_rx_mowner);
1059 MOWNER_DETACH(&ec->ec_tx_mowner);
1060 }
1061
1062 #if 0
1063 /*
1064 * This is for reference. We have a table-driven version
1065 * of the little-endian crc32 generator, which is faster
1066 * than the double-loop.
1067 */
1068 uint32_t
1069 ether_crc32_le(const uint8_t *buf, size_t len)
1070 {
1071 uint32_t c, crc, carry;
1072 size_t i, j;
1073
1074 crc = 0xffffffffU; /* initial value */
1075
1076 for (i = 0; i < len; i++) {
1077 c = buf[i];
1078 for (j = 0; j < 8; j++) {
1079 carry = ((crc & 0x01) ? 1 : 0) ^ (c & 0x01);
1080 crc >>= 1;
1081 c >>= 1;
1082 if (carry)
1083 crc = (crc ^ ETHER_CRC_POLY_LE);
1084 }
1085 }
1086
1087 return (crc);
1088 }
1089 #else
1090 uint32_t
1091 ether_crc32_le(const uint8_t *buf, size_t len)
1092 {
1093 static const uint32_t crctab[] = {
1094 0x00000000, 0x1db71064, 0x3b6e20c8, 0x26d930ac,
1095 0x76dc4190, 0x6b6b51f4, 0x4db26158, 0x5005713c,
1096 0xedb88320, 0xf00f9344, 0xd6d6a3e8, 0xcb61b38c,
1097 0x9b64c2b0, 0x86d3d2d4, 0xa00ae278, 0xbdbdf21c
1098 };
1099 uint32_t crc;
1100 size_t i;
1101
1102 crc = 0xffffffffU; /* initial value */
1103
1104 for (i = 0; i < len; i++) {
1105 crc ^= buf[i];
1106 crc = (crc >> 4) ^ crctab[crc & 0xf];
1107 crc = (crc >> 4) ^ crctab[crc & 0xf];
1108 }
1109
1110 return (crc);
1111 }
1112 #endif
1113
1114 uint32_t
1115 ether_crc32_be(const uint8_t *buf, size_t len)
1116 {
1117 uint32_t c, crc, carry;
1118 size_t i, j;
1119
1120 crc = 0xffffffffU; /* initial value */
1121
1122 for (i = 0; i < len; i++) {
1123 c = buf[i];
1124 for (j = 0; j < 8; j++) {
1125 carry = ((crc & 0x80000000U) ? 1 : 0) ^ (c & 0x01);
1126 crc <<= 1;
1127 c >>= 1;
1128 if (carry)
1129 crc = (crc ^ ETHER_CRC_POLY_BE) | carry;
1130 }
1131 }
1132
1133 return (crc);
1134 }
1135
1136 #ifdef INET
1137 const uint8_t ether_ipmulticast_min[ETHER_ADDR_LEN] =
1138 { 0x01, 0x00, 0x5e, 0x00, 0x00, 0x00 };
1139 const uint8_t ether_ipmulticast_max[ETHER_ADDR_LEN] =
1140 { 0x01, 0x00, 0x5e, 0x7f, 0xff, 0xff };
1141 #endif
1142 #ifdef INET6
1143 const uint8_t ether_ip6multicast_min[ETHER_ADDR_LEN] =
1144 { 0x33, 0x33, 0x00, 0x00, 0x00, 0x00 };
1145 const uint8_t ether_ip6multicast_max[ETHER_ADDR_LEN] =
1146 { 0x33, 0x33, 0xff, 0xff, 0xff, 0xff };
1147 #endif
1148
1149 /*
1150 * ether_aton implementation, not using a static buffer.
1151 */
1152 int
1153 ether_aton_r(u_char *dest, size_t len, const char *str)
1154 {
1155 const u_char *cp = (const void *)str;
1156 u_char *ep;
1157
1158 #define atox(c) (((c) <= '9') ? ((c) - '0') : ((toupper(c) - 'A') + 10))
1159
1160 if (len < ETHER_ADDR_LEN)
1161 return ENOSPC;
1162
1163 ep = dest + ETHER_ADDR_LEN;
1164
1165 while (*cp) {
1166 if (!isxdigit(*cp))
1167 return EINVAL;
1168 *dest = atox(*cp);
1169 cp++;
1170 if (isxdigit(*cp)) {
1171 *dest = (*dest << 4) | atox(*cp);
1172 dest++;
1173 cp++;
1174 } else
1175 dest++;
1176 if (dest == ep)
1177 return *cp == '\0' ? 0 : ENAMETOOLONG;
1178 switch (*cp) {
1179 case ':':
1180 case '-':
1181 case '.':
1182 cp++;
1183 break;
1184 }
1185 }
1186 return ENOBUFS;
1187 }
1188
1189 /*
1190 * Convert a sockaddr into an Ethernet address or range of Ethernet
1191 * addresses.
1192 */
1193 int
1194 ether_multiaddr(const struct sockaddr *sa, uint8_t addrlo[ETHER_ADDR_LEN],
1195 uint8_t addrhi[ETHER_ADDR_LEN])
1196 {
1197 #ifdef INET
1198 const struct sockaddr_in *sin;
1199 #endif /* INET */
1200 #ifdef INET6
1201 const struct sockaddr_in6 *sin6;
1202 #endif /* INET6 */
1203
1204 switch (sa->sa_family) {
1205
1206 case AF_UNSPEC:
1207 memcpy(addrlo, sa->sa_data, ETHER_ADDR_LEN);
1208 memcpy(addrhi, addrlo, ETHER_ADDR_LEN);
1209 break;
1210
1211 #ifdef INET
1212 case AF_INET:
1213 sin = satocsin(sa);
1214 if (sin->sin_addr.s_addr == INADDR_ANY) {
1215 /*
1216 * An IP address of INADDR_ANY means listen to
1217 * or stop listening to all of the Ethernet
1218 * multicast addresses used for IP.
1219 * (This is for the sake of IP multicast routers.)
1220 */
1221 memcpy(addrlo, ether_ipmulticast_min, ETHER_ADDR_LEN);
1222 memcpy(addrhi, ether_ipmulticast_max, ETHER_ADDR_LEN);
1223 }
1224 else {
1225 ETHER_MAP_IP_MULTICAST(&sin->sin_addr, addrlo);
1226 memcpy(addrhi, addrlo, ETHER_ADDR_LEN);
1227 }
1228 break;
1229 #endif
1230 #ifdef INET6
1231 case AF_INET6:
1232 sin6 = satocsin6(sa);
1233 if (IN6_IS_ADDR_UNSPECIFIED(&sin6->sin6_addr)) {
1234 /*
1235 * An IP6 address of 0 means listen to or stop
1236 * listening to all of the Ethernet multicast
1237 * address used for IP6.
1238 * (This is used for multicast routers.)
1239 */
1240 memcpy(addrlo, ether_ip6multicast_min, ETHER_ADDR_LEN);
1241 memcpy(addrhi, ether_ip6multicast_max, ETHER_ADDR_LEN);
1242 } else {
1243 ETHER_MAP_IPV6_MULTICAST(&sin6->sin6_addr, addrlo);
1244 memcpy(addrhi, addrlo, ETHER_ADDR_LEN);
1245 }
1246 break;
1247 #endif
1248
1249 default:
1250 return EAFNOSUPPORT;
1251 }
1252 return 0;
1253 }
1254
1255 /*
1256 * Add an Ethernet multicast address or range of addresses to the list for a
1257 * given interface.
1258 */
1259 int
1260 ether_addmulti(const struct sockaddr *sa, struct ethercom *ec)
1261 {
1262 struct ether_multi *enm;
1263 u_char addrlo[ETHER_ADDR_LEN];
1264 u_char addrhi[ETHER_ADDR_LEN];
1265 int s = splnet(), error;
1266
1267 error = ether_multiaddr(sa, addrlo, addrhi);
1268 if (error != 0) {
1269 splx(s);
1270 return error;
1271 }
1272
1273 /*
1274 * Verify that we have valid Ethernet multicast addresses.
1275 */
1276 if (!ETHER_IS_MULTICAST(addrlo) || !ETHER_IS_MULTICAST(addrhi)) {
1277 splx(s);
1278 return EINVAL;
1279 }
1280 /*
1281 * See if the address range is already in the list.
1282 */
1283 ETHER_LOOKUP_MULTI(addrlo, addrhi, ec, enm);
1284 if (enm != NULL) {
1285 /*
1286 * Found it; just increment the reference count.
1287 */
1288 ++enm->enm_refcount;
1289 splx(s);
1290 return 0;
1291 }
1292 /*
1293 * New address or range; malloc a new multicast record
1294 * and link it into the interface's multicast list.
1295 */
1296 enm = (struct ether_multi *)malloc(sizeof(*enm), M_IFMADDR, M_NOWAIT);
1297 if (enm == NULL) {
1298 splx(s);
1299 return ENOBUFS;
1300 }
1301 memcpy(enm->enm_addrlo, addrlo, 6);
1302 memcpy(enm->enm_addrhi, addrhi, 6);
1303 enm->enm_refcount = 1;
1304 LIST_INSERT_HEAD(&ec->ec_multiaddrs, enm, enm_list);
1305 ec->ec_multicnt++;
1306 splx(s);
1307 /*
1308 * Return ENETRESET to inform the driver that the list has changed
1309 * and its reception filter should be adjusted accordingly.
1310 */
1311 return ENETRESET;
1312 }
1313
1314 /*
1315 * Delete a multicast address record.
1316 */
1317 int
1318 ether_delmulti(const struct sockaddr *sa, struct ethercom *ec)
1319 {
1320 struct ether_multi *enm;
1321 u_char addrlo[ETHER_ADDR_LEN];
1322 u_char addrhi[ETHER_ADDR_LEN];
1323 int s = splnet(), error;
1324
1325 error = ether_multiaddr(sa, addrlo, addrhi);
1326 if (error != 0) {
1327 splx(s);
1328 return (error);
1329 }
1330
1331 /*
1332 * Look ur the address in our list.
1333 */
1334 ETHER_LOOKUP_MULTI(addrlo, addrhi, ec, enm);
1335 if (enm == NULL) {
1336 splx(s);
1337 return (ENXIO);
1338 }
1339 if (--enm->enm_refcount != 0) {
1340 /*
1341 * Still some claims to this record.
1342 */
1343 splx(s);
1344 return (0);
1345 }
1346 /*
1347 * No remaining claims to this record; unlink and free it.
1348 */
1349 LIST_REMOVE(enm, enm_list);
1350 free(enm, M_IFMADDR);
1351 ec->ec_multicnt--;
1352 splx(s);
1353 /*
1354 * Return ENETRESET to inform the driver that the list has changed
1355 * and its reception filter should be adjusted accordingly.
1356 */
1357 return (ENETRESET);
1358 }
1359
1360 void
1361 ether_set_ifflags_cb(struct ethercom *ec, ether_cb_t cb)
1362 {
1363 ec->ec_ifflags_cb = cb;
1364 }
1365
1366 /*
1367 * Common ioctls for Ethernet interfaces. Note, we must be
1368 * called at splnet().
1369 */
1370 int
1371 ether_ioctl(struct ifnet *ifp, u_long cmd, void *data)
1372 {
1373 struct ethercom *ec = (void *) ifp;
1374 struct eccapreq *eccr;
1375 struct ifreq *ifr = (struct ifreq *)data;
1376 struct if_laddrreq *iflr = data;
1377 const struct sockaddr_dl *sdl;
1378 static const uint8_t zero[ETHER_ADDR_LEN];
1379 int error;
1380
1381 switch (cmd) {
1382 case SIOCINITIFADDR:
1383 {
1384 struct ifaddr *ifa = (struct ifaddr *)data;
1385 if (ifa->ifa_addr->sa_family != AF_LINK
1386 && (ifp->if_flags & (IFF_UP|IFF_RUNNING)) !=
1387 (IFF_UP|IFF_RUNNING)) {
1388 ifp->if_flags |= IFF_UP;
1389 if ((error = (*ifp->if_init)(ifp)) != 0)
1390 return error;
1391 }
1392 #ifdef INET
1393 if (ifa->ifa_addr->sa_family == AF_INET)
1394 arp_ifinit(ifp, ifa);
1395 #endif /* INET */
1396 return 0;
1397 }
1398
1399 case SIOCSIFMTU:
1400 {
1401 int maxmtu;
1402
1403 if (ec->ec_capabilities & ETHERCAP_JUMBO_MTU)
1404 maxmtu = ETHERMTU_JUMBO;
1405 else
1406 maxmtu = ETHERMTU;
1407
1408 if (ifr->ifr_mtu < ETHERMIN || ifr->ifr_mtu > maxmtu)
1409 return EINVAL;
1410 else if ((error = ifioctl_common(ifp, cmd, data)) != ENETRESET)
1411 return error;
1412 else if (ifp->if_flags & IFF_UP) {
1413 /* Make sure the device notices the MTU change. */
1414 return (*ifp->if_init)(ifp);
1415 } else
1416 return 0;
1417 }
1418
1419 case SIOCSIFFLAGS:
1420 if ((error = ifioctl_common(ifp, cmd, data)) != 0)
1421 return error;
1422 switch (ifp->if_flags & (IFF_UP|IFF_RUNNING)) {
1423 case IFF_RUNNING:
1424 /*
1425 * If interface is marked down and it is running,
1426 * then stop and disable it.
1427 */
1428 (*ifp->if_stop)(ifp, 1);
1429 break;
1430 case IFF_UP:
1431 /*
1432 * If interface is marked up and it is stopped, then
1433 * start it.
1434 */
1435 return (*ifp->if_init)(ifp);
1436 case IFF_UP|IFF_RUNNING:
1437 error = 0;
1438 if (ec->ec_ifflags_cb == NULL ||
1439 (error = (*ec->ec_ifflags_cb)(ec)) == ENETRESET) {
1440 /*
1441 * Reset the interface to pick up
1442 * changes in any other flags that
1443 * affect the hardware state.
1444 */
1445 return (*ifp->if_init)(ifp);
1446 } else
1447 return error;
1448 case 0:
1449 break;
1450 }
1451 return 0;
1452 case SIOCGETHERCAP:
1453 eccr = (struct eccapreq *)data;
1454 eccr->eccr_capabilities = ec->ec_capabilities;
1455 eccr->eccr_capenable = ec->ec_capenable;
1456 return 0;
1457 case SIOCADDMULTI:
1458 return ether_addmulti(ifreq_getaddr(cmd, ifr), ec);
1459 case SIOCDELMULTI:
1460 return ether_delmulti(ifreq_getaddr(cmd, ifr), ec);
1461 case SIOCSIFMEDIA:
1462 case SIOCGIFMEDIA:
1463 if (ec->ec_mii == NULL)
1464 return ENOTTY;
1465 return ifmedia_ioctl(ifp, ifr, &ec->ec_mii->mii_media, cmd);
1466 case SIOCALIFADDR:
1467 sdl = satocsdl(sstocsa(&iflr->addr));
1468 if (sdl->sdl_family != AF_LINK)
1469 ;
1470 else if (ETHER_IS_MULTICAST(CLLADDR(sdl)))
1471 return EINVAL;
1472 else if (memcmp(zero, CLLADDR(sdl), sizeof(zero)) == 0)
1473 return EINVAL;
1474 /*FALLTHROUGH*/
1475 default:
1476 return ifioctl_common(ifp, cmd, data);
1477 }
1478 return 0;
1479 }
1480