2 * Copyright (c) 2000 Apple Computer, Inc. All rights reserved.
4 * @APPLE_LICENSE_HEADER_START@
6 * The contents of this file constitute Original Code as defined in and
7 * are subject to the Apple Public Source License Version 1.1 (the
8 * "License"). You may not use this file except in compliance with the
9 * License. Please obtain a copy of the License at
10 * http://www.apple.com/publicsource and read it before using this file.
12 * This Original Code and all software distributed under the License are
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14 * EXPRESS OR IMPLIED, AND APPLE HEREBY DISCLAIMS ALL SUCH WARRANTIES,
15 * INCLUDING WITHOUT LIMITATION, ANY WARRANTIES OF MERCHANTABILITY,
16 * FITNESS FOR A PARTICULAR PURPOSE OR NON-INFRINGEMENT. Please see the
17 * License for the specific language governing rights and limitations
20 * @APPLE_LICENSE_HEADER_END@
23 * Copyright (c) 1982, 1989, 1993
24 * The Regents of the University of California. All rights reserved.
26 * Redistribution and use in source and binary forms, with or without
27 * modification, are permitted provided that the following conditions
29 * 1. Redistributions of source code must retain the above copyright
30 * notice, this list of conditions and the following disclaimer.
31 * 2. Redistributions in binary form must reproduce the above copyright
32 * notice, this list of conditions and the following disclaimer in the
33 * documentation and/or other materials provided with the distribution.
34 * 3. All advertising materials mentioning features or use of this software
35 * must display the following acknowledgement:
36 * This product includes software developed by the University of
37 * California, Berkeley and its contributors.
38 * 4. Neither the name of the University nor the names of its contributors
39 * may be used to endorse or promote products derived from this software
40 * without specific prior written permission.
42 * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
43 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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45 * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
46 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
47 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
48 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
49 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
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51 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
58 #include <sys/param.h>
59 #include <sys/systm.h>
60 #include <sys/kernel.h>
61 #include <sys/malloc.h>
63 #include <sys/socket.h>
64 #include <sys/sockio.h>
65 #include <sys/sysctl.h>
68 #include <net/netisr.h>
69 #include <net/route.h>
70 #include <net/if_llc.h>
71 #include <net/if_dl.h>
72 #include <net/if_types.h>
73 #include <netinet/if_ether.h>
74 #include <netinet/in.h> /* For M_LOOP */
78 #include <netinet/in.h>
79 #include <netinet/in_var.h>
81 #include <netinet/in_systm.h>
82 #include <netinet/ip.h>
86 #include <sys/socketvar.h>
87 #include <net/if_vlan_var.h>
91 extern int vlan_demux(struct ifnet
* ifp
, struct mbuf
*,
92 char * frame_header
, struct if_proto
* * proto
);
95 extern struct ifqueue pkintrq
;
98 /* General stuff from if_ethersubr.c - may not need some of it */
100 #include <netat/at_pat.h>
102 extern struct ifqueue atalkintrq
;
107 #include <net/bridge.h>
110 static u_long lo_dlt
= 0;
112 #define IFP2AC(IFP) ((struct arpcom *)IFP)
115 u_int16_t type
; /* Type of protocol stored in data */
116 struct if_proto
*proto
; /* Protocol structure */
117 u_long data
[2]; /* Protocol data */
120 #define ETHER_DESC_BLK_SIZE (10)
121 #define MAX_INTERFACES 50
124 * Statics for demux module
127 struct ether_desc_blk_str
{
130 struct en_desc
*block_ptr
;
134 static struct ether_desc_blk_str ether_desc_blk
[MAX_INTERFACES
];
137 /* from if_ethersubr.c */
138 int ether_resolvemulti
__P((struct ifnet
*, struct sockaddr
**,
142 * Release all descriptor entries owned by this dl_tag (there may be several).
143 * Setting the type to 0 releases the entry. Eventually we should compact-out
144 * the unused entries.
146 __private_extern__
int
147 ether_del_proto(struct if_proto
*proto
, u_long dl_tag
)
149 struct en_desc
* ed
= ether_desc_blk
[proto
->ifp
->family_cookie
].block_ptr
;
153 for (current
= ether_desc_blk
[proto
->ifp
->family_cookie
].n_max_used
;
154 current
> 0; current
--) {
155 if (ed
[current
- 1].proto
== proto
) {
157 ed
[current
- 1].type
= 0;
159 if (current
== ether_desc_blk
[proto
->ifp
->family_cookie
].n_max_used
) {
160 ether_desc_blk
[proto
->ifp
->family_cookie
].n_max_used
--;
171 __private_extern__
int
172 ether_add_proto(struct ddesc_head_str
*desc_head
, struct if_proto
*proto
, u_long dl_tag
)
175 struct dlil_demux_desc
*desc
;
177 struct en_desc
*last
;
186 TAILQ_FOREACH(desc
, desc_head
, next
) {
187 switch (desc
->type
) {
188 /* These types are supported */
189 /* Top three are preferred */
190 case DLIL_DESC_ETYPE2
:
191 if (desc
->variants
.native_type_length
!= 2)
196 if (desc
->variants
.native_type_length
!= 3)
201 if (desc
->variants
.native_type_length
!= 5)
205 case DLIL_DESC_802_2
:
206 case DLIL_DESC_802_2_SNAP
:
210 if (desc
->variants
.bitmask
.proto_id_length
== 0)
212 /* else fall through, bitmask variant not supported */
215 ether_del_proto(proto
, dl_tag
);
219 ed
= ether_desc_blk
[proto
->ifp
->family_cookie
].block_ptr
;
221 /* Find a free entry */
222 for (i
= 0; i
< ether_desc_blk
[proto
->ifp
->family_cookie
].n_count
; i
++) {
223 if (ed
[i
].type
== 0) {
228 if (i
>= ether_desc_blk
[proto
->ifp
->family_cookie
].n_count
) {
229 u_long new_count
= ETHER_DESC_BLK_SIZE
+
230 ether_desc_blk
[proto
->ifp
->family_cookie
].n_count
;
231 tmp
= _MALLOC((new_count
* (sizeof(*ed
))), M_IFADDR
, M_WAITOK
);
234 * Remove any previous descriptors set in the call.
236 ether_del_proto(proto
, dl_tag
);
240 bzero(tmp
, new_count
* sizeof(*ed
));
241 bcopy(ether_desc_blk
[proto
->ifp
->family_cookie
].block_ptr
,
242 tmp
, ether_desc_blk
[proto
->ifp
->family_cookie
].n_count
* sizeof(*ed
));
243 FREE(ether_desc_blk
[proto
->ifp
->family_cookie
].block_ptr
, M_IFADDR
);
244 ether_desc_blk
[proto
->ifp
->family_cookie
].n_count
= new_count
;
245 ether_desc_blk
[proto
->ifp
->family_cookie
].block_ptr
= (struct en_desc
*)tmp
;
246 ed
= ether_desc_blk
[proto
->ifp
->family_cookie
].block_ptr
;
249 /* Bump n_max_used if appropriate */
250 if (i
+ 1 > ether_desc_blk
[proto
->ifp
->family_cookie
].n_max_used
) {
251 ether_desc_blk
[proto
->ifp
->family_cookie
].n_max_used
= i
+ 1;
258 switch (desc
->type
) {
260 /* 2 byte ethernet raw protocol type is at native_type */
261 /* protocol is not in network byte order */
262 ed
[i
].type
= DLIL_DESC_ETYPE2
;
263 ed
[i
].data
[0] = htons(*(u_int16_t
*)desc
->native_type
);
266 case DLIL_DESC_ETYPE2
:
267 /* 2 byte ethernet raw protocol type is at native_type */
268 /* prtocol must be in network byte order */
269 ed
[i
].type
= DLIL_DESC_ETYPE2
;
270 ed
[i
].data
[0] = *(u_int16_t
*)desc
->native_type
;
273 case DLIL_DESC_802_2
:
274 ed
[i
].type
= DLIL_DESC_SAP
;
275 ed
[i
].data
[0] = *(u_int32_t
*)&desc
->variants
.desc_802_2
;
276 ed
[i
].data
[0] &= htonl(0xFFFFFF00);
280 ed
[i
].type
= DLIL_DESC_SAP
;
281 bcopy(desc
->native_type
, &ed
[i
].data
[0], 3);
284 case DLIL_DESC_802_2_SNAP
:
285 ed
[i
].type
= DLIL_DESC_SNAP
;
286 desc
->variants
.desc_802_2_SNAP
.protocol_type
=
287 htons(desc
->variants
.desc_802_2_SNAP
.protocol_type
);
288 bcopy(&desc
->variants
.desc_802_2_SNAP
, &ed
[i
].data
[0], 8);
289 ed
[i
].data
[0] &= htonl(0x000000FF);
290 desc
->variants
.desc_802_2_SNAP
.protocol_type
=
291 ntohs(desc
->variants
.desc_802_2_SNAP
.protocol_type
);
294 case DLIL_DESC_SNAP
: {
295 u_int8_t
* pDest
= ((u_int8_t
*)&ed
[i
].data
[0]) + 3;
296 ed
[i
].type
= DLIL_DESC_SNAP
;
297 bcopy(desc
->native_type
, pDest
, 5);
314 int ether_demux(ifp
, m
, frame_header
, proto
)
318 struct if_proto
**proto
;
321 register struct ether_header
*eh
= (struct ether_header
*)frame_header
;
322 u_short ether_type
= eh
->ether_type
;
323 u_short ether_type_host
;
327 u_long max
= ether_desc_blk
[ifp
->family_cookie
].n_max_used
;
328 struct en_desc
*ed
= ether_desc_blk
[ifp
->family_cookie
].block_ptr
;
329 u_int32_t extProto1
= 0;
330 u_int32_t extProto2
= 0;
332 if (eh
->ether_dhost
[0] & 1) {
333 /* Check for broadcast */
334 if (*(u_int32_t
*)eh
->ether_dhost
== 0xFFFFFFFF &&
335 *(u_int16_t
*)(eh
->ether_dhost
+ sizeof(u_int32_t
)) == 0xFFFF)
336 m
->m_flags
|= M_BCAST
;
338 m
->m_flags
|= M_MCAST
;
341 * When the driver is put into promiscuous mode we may receive unicast
342 * frames that are not intended for our interfaces. They are filtered
343 * here to keep them from traveling further up the stack to code that
344 * is not expecting them or prepared to deal with them. In the near
345 * future, the filtering done here will be moved even further down the
346 * stack into the IONetworkingFamily, preventing even interface
347 * filter NKE's from receiving promiscuous packets. Please use BPF.
349 #define ETHER_CMP(x, y) ( ((u_int16_t *) x)[0] != ((u_int16_t *) y)[0] || \
350 ((u_int16_t *) x)[1] != ((u_int16_t *) y)[1] || \
351 ((u_int16_t *) x)[2] != ((u_int16_t *) y)[2] )
353 if (ETHER_CMP(eh
->ether_dhost
, ((struct arpcom
*) ifp
)->ac_enaddr
)) {
358 ether_type_host
= ntohs(ether_type
);
359 if ((m
->m_pkthdr
.csum_flags
& CSUM_VLAN_TAG_VALID
)
360 || ether_type_host
== ETHERTYPE_VLAN
) {
361 return (vlan_demux(ifp
, m
, frame_header
, proto
));
363 data
= mtod(m
, u_int8_t
*);
366 * Determine the packet's protocol type and stuff the protocol into
367 * longs for quick compares.
369 if (ether_type_host
<= 1500) {
370 extProto1
= *(u_int32_t
*)data
;
373 if ((extProto1
& htonl(0xFFFFFF00)) == htonl(0xAAAA0300)) {
375 type
= DLIL_DESC_SNAP
;
376 extProto2
= *(u_int32_t
*)(data
+ sizeof(u_int32_t
));
377 extProto1
&= htonl(0x000000FF);
379 type
= DLIL_DESC_SAP
;
380 extProto1
&= htonl(0xFFFFFF00);
383 type
= DLIL_DESC_ETYPE2
;
387 * Search through the connected protocols for a match.
391 case DLIL_DESC_ETYPE2
:
392 for (i
= 0; i
< max
; i
++) {
393 if ((ed
[i
].type
== type
) && (ed
[i
].data
[0] == ether_type
)) {
394 *proto
= ed
[i
].proto
;
401 for (i
= 0; i
< max
; i
++) {
402 if ((ed
[i
].type
== type
) && (ed
[i
].data
[0] == extProto1
)) {
403 *proto
= ed
[i
].proto
;
410 for (i
= 0; i
< max
; i
++) {
411 if ((ed
[i
].type
== type
) && (ed
[i
].data
[0] == extProto1
) &&
412 (ed
[i
].data
[1] == extProto2
)) {
413 *proto
= ed
[i
].proto
;
426 * Ethernet output routine.
427 * Encapsulate a packet of type family for the local net.
428 * Use trailer local net encapsulation if enough data in first
429 * packet leaves a multiple of 512 bytes of data in remainder.
430 * Assumes that ifp is actually pointer to arpcom structure.
433 ether_frameout(ifp
, m
, ndest
, edst
, ether_type
)
434 register struct ifnet
*ifp
;
436 struct sockaddr
*ndest
;
440 register struct ether_header
*eh
;
441 int hlen
; /* link layer header length */
442 struct arpcom
*ac
= IFP2AC(ifp
);
445 hlen
= ETHER_HDR_LEN
;
448 * If a simplex interface, and the packet is being sent to our
449 * Ethernet address or a broadcast address, loopback a copy.
450 * XXX To make a simplex device behave exactly like a duplex
451 * device, we should copy in the case of sending to our own
452 * ethernet address (thus letting the original actually appear
453 * on the wire). However, we don't do that here for security
454 * reasons and compatibility with the original behavior.
456 if ((ifp
->if_flags
& IFF_SIMPLEX
) &&
457 ((*m
)->m_flags
& M_LOOP
)) {
459 dlil_find_dltag(APPLE_IF_FAM_LOOPBACK
, 0, PF_INET
, &lo_dlt
);
462 if ((*m
)->m_flags
& M_BCAST
) {
463 struct mbuf
*n
= m_copy(*m
, 0, (int)M_COPYALL
);
465 dlil_output(lo_dlt
, n
, 0, ndest
, 0);
469 if (bcmp(edst
, ac
->ac_enaddr
, ETHER_ADDR_LEN
) == 0) {
470 dlil_output(lo_dlt
, *m
, 0, ndest
, 0);
479 * Add local net header. If no space in first mbuf,
482 M_PREPEND(*m
, sizeof (struct ether_header
), M_DONTWAIT
);
484 return (EJUSTRETURN
);
488 eh
= mtod(*m
, struct ether_header
*);
489 (void)memcpy(&eh
->ether_type
, ether_type
,
490 sizeof(eh
->ether_type
));
491 (void)memcpy(eh
->ether_dhost
, edst
, 6);
492 (void)memcpy(eh
->ether_shost
, ac
->ac_enaddr
,
493 sizeof(eh
->ether_shost
));
500 __private_extern__
int
501 ether_add_if(struct ifnet
*ifp
)
505 ifp
->if_framer
= ether_frameout
;
506 ifp
->if_demux
= ether_demux
;
508 ifp
->if_resolvemulti
= ether_resolvemulti
;
511 for (i
=0; i
< MAX_INTERFACES
; i
++)
512 if (ether_desc_blk
[i
].n_count
== 0)
515 if (i
== MAX_INTERFACES
)
518 ether_desc_blk
[i
].block_ptr
= _MALLOC(ETHER_DESC_BLK_SIZE
* sizeof(struct en_desc
),
520 if (ether_desc_blk
[i
].block_ptr
== 0)
523 ether_desc_blk
[i
].n_count
= ETHER_DESC_BLK_SIZE
;
524 bzero(ether_desc_blk
[i
].block_ptr
, ETHER_DESC_BLK_SIZE
* sizeof(struct en_desc
));
526 ifp
->family_cookie
= i
;
531 __private_extern__
int
532 ether_del_if(struct ifnet
*ifp
)
534 if ((ifp
->family_cookie
< MAX_INTERFACES
) &&
535 (ether_desc_blk
[ifp
->family_cookie
].n_count
))
537 FREE(ether_desc_blk
[ifp
->family_cookie
].block_ptr
, M_IFADDR
);
538 ether_desc_blk
[ifp
->family_cookie
].block_ptr
= NULL
;
539 ether_desc_blk
[ifp
->family_cookie
].n_count
= 0;
540 ether_desc_blk
[ifp
->family_cookie
].n_max_used
= 0;
547 __private_extern__
int
548 ether_init_if(struct ifnet
*ifp
)
550 register struct ifaddr
*ifa
;
551 register struct sockaddr_dl
*sdl
;
553 ifa
= ifnet_addrs
[ifp
->if_index
- 1];
555 printf("ether_ifattach: no lladdr!\n");
558 sdl
= (struct sockaddr_dl
*)ifa
->ifa_addr
;
559 sdl
->sdl_type
= IFT_ETHER
;
560 sdl
->sdl_alen
= ifp
->if_addrlen
;
561 bcopy((IFP2AC(ifp
))->ac_enaddr
, LLADDR(sdl
), ifp
->if_addrlen
);
568 ether_ifmod_ioctl(ifp
, command
, data
)
573 struct rslvmulti_req
*rsreq
= (struct rslvmulti_req
*) data
;
575 struct sockaddr_dl
*sdl
;
576 struct sockaddr_in
*sin
;
582 switch(rsreq
->sa
->sa_family
) {
584 /* AppleTalk uses AF_UNSPEC for multicast registration.
585 * No mapping needed. Just check that it's a valid MC address.
587 e_addr
= &rsreq
->sa
->sa_data
[0];
588 if ((e_addr
[0] & 1) != 1)
589 return EADDRNOTAVAIL
;
596 * No mapping needed. Just check that it's a valid MC address.
598 sdl
= (struct sockaddr_dl
*)rsreq
->sa
;
599 e_addr
= LLADDR(sdl
);
600 if ((e_addr
[0] & 1) != 1)
601 return EADDRNOTAVAIL
;
615 extern int ether_attach_inet(struct ifnet
*ifp
, u_long
*dl_tag
);
616 extern int ether_detach_inet(struct ifnet
*ifp
, u_long dl_tag
);
617 extern int ether_attach_inet6(struct ifnet
*ifp
, u_long
*dl_tag
);
618 extern int ether_detach_inet6(struct ifnet
*ifp
, u_long dl_tag
);
619 int ether_family_init()
622 struct dlil_ifmod_reg_str ifmod_reg
;
623 struct dlil_protomod_reg_str enet_protoreg
;
624 extern int vlan_family_init(void);
626 /* ethernet family is built-in, called from bsd_init */
627 thread_funnel_switch(KERNEL_FUNNEL
, NETWORK_FUNNEL
);
629 bzero(&ifmod_reg
, sizeof(ifmod_reg
));
630 ifmod_reg
.add_if
= ether_add_if
;
631 ifmod_reg
.del_if
= ether_del_if
;
632 ifmod_reg
.init_if
= ether_init_if
;
633 ifmod_reg
.add_proto
= ether_add_proto
;
634 ifmod_reg
.del_proto
= ether_del_proto
;
635 ifmod_reg
.ifmod_ioctl
= ether_ifmod_ioctl
;
636 ifmod_reg
.shutdown
= ether_shutdown
;
638 if (dlil_reg_if_modules(APPLE_IF_FAM_ETHERNET
, &ifmod_reg
)) {
639 printf("WARNING: ether_family_init -- Can't register if family modules\n");
645 /* Register protocol registration functions */
647 bzero(&enet_protoreg
, sizeof(enet_protoreg
));
648 enet_protoreg
.attach_proto
= ether_attach_inet
;
649 enet_protoreg
.detach_proto
= ether_detach_inet
;
651 if (error
= dlil_reg_proto_module(PF_INET
, APPLE_IF_FAM_ETHERNET
, &enet_protoreg
) != 0) {
652 printf("ether_family_init: dlil_reg_proto_module failed for AF_INET error=%d\n", error
);
656 enet_protoreg
.attach_proto
= ether_attach_inet6
;
657 enet_protoreg
.detach_proto
= ether_detach_inet6
;
659 if (error
= dlil_reg_proto_module(PF_INET6
, APPLE_IF_FAM_ETHERNET
, &enet_protoreg
) != 0) {
660 printf("ether_family_init: dlil_reg_proto_module failed for AF_INET6 error=%d\n", error
);
666 thread_funnel_switch(NETWORK_FUNNEL
, KERNEL_FUNNEL
);