if_vlan.c revision 1.24.2.7 1 1.24.2.7 bouyer /* $NetBSD: if_vlan.c,v 1.24.2.7 2001/04/21 17:46:42 bouyer Exp $ */
2 1.24.2.2 bouyer
3 1.24.2.2 bouyer /*-
4 1.24.2.7 bouyer * Copyright (c) 2000, 2001 The NetBSD Foundation, Inc.
5 1.24.2.2 bouyer * All rights reserved.
6 1.24.2.2 bouyer *
7 1.24.2.2 bouyer * This code is derived from software contributed to The NetBSD Foundation
8 1.24.2.2 bouyer * by Andrew Doran, and by Jason R. Thorpe of Zembu Labs, Inc.
9 1.24.2.2 bouyer *
10 1.24.2.2 bouyer * Redistribution and use in source and binary forms, with or without
11 1.24.2.2 bouyer * modification, are permitted provided that the following conditions
12 1.24.2.2 bouyer * are met:
13 1.24.2.2 bouyer * 1. Redistributions of source code must retain the above copyright
14 1.24.2.2 bouyer * notice, this list of conditions and the following disclaimer.
15 1.24.2.2 bouyer * 2. Redistributions in binary form must reproduce the above copyright
16 1.24.2.2 bouyer * notice, this list of conditions and the following disclaimer in the
17 1.24.2.2 bouyer * documentation and/or other materials provided with the distribution.
18 1.24.2.2 bouyer * 3. All advertising materials mentioning features or use of this software
19 1.24.2.2 bouyer * must display the following acknowledgement:
20 1.24.2.2 bouyer * This product includes software developed by the NetBSD
21 1.24.2.2 bouyer * Foundation, Inc. and its contributors.
22 1.24.2.2 bouyer * 4. Neither the name of The NetBSD Foundation nor the names of its
23 1.24.2.2 bouyer * contributors may be used to endorse or promote products derived
24 1.24.2.2 bouyer * from this software without specific prior written permission.
25 1.24.2.2 bouyer *
26 1.24.2.2 bouyer * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
27 1.24.2.2 bouyer * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
28 1.24.2.2 bouyer * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
29 1.24.2.2 bouyer * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
30 1.24.2.2 bouyer * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
31 1.24.2.2 bouyer * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
32 1.24.2.2 bouyer * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
33 1.24.2.2 bouyer * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
34 1.24.2.2 bouyer * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
35 1.24.2.2 bouyer * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
36 1.24.2.2 bouyer * POSSIBILITY OF SUCH DAMAGE.
37 1.24.2.2 bouyer */
38 1.24.2.2 bouyer
39 1.24.2.2 bouyer /*
40 1.24.2.2 bouyer * Copyright 1998 Massachusetts Institute of Technology
41 1.24.2.2 bouyer *
42 1.24.2.2 bouyer * Permission to use, copy, modify, and distribute this software and
43 1.24.2.2 bouyer * its documentation for any purpose and without fee is hereby
44 1.24.2.2 bouyer * granted, provided that both the above copyright notice and this
45 1.24.2.2 bouyer * permission notice appear in all copies, that both the above
46 1.24.2.2 bouyer * copyright notice and this permission notice appear in all
47 1.24.2.2 bouyer * supporting documentation, and that the name of M.I.T. not be used
48 1.24.2.2 bouyer * in advertising or publicity pertaining to distribution of the
49 1.24.2.2 bouyer * software without specific, written prior permission. M.I.T. makes
50 1.24.2.2 bouyer * no representations about the suitability of this software for any
51 1.24.2.2 bouyer * purpose. It is provided "as is" without express or implied
52 1.24.2.2 bouyer * warranty.
53 1.24.2.2 bouyer *
54 1.24.2.2 bouyer * THIS SOFTWARE IS PROVIDED BY M.I.T. ``AS IS''. M.I.T. DISCLAIMS
55 1.24.2.2 bouyer * ALL EXPRESS OR IMPLIED WARRANTIES WITH REGARD TO THIS SOFTWARE,
56 1.24.2.2 bouyer * INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
57 1.24.2.2 bouyer * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE. IN NO EVENT
58 1.24.2.2 bouyer * SHALL M.I.T. BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
59 1.24.2.2 bouyer * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
60 1.24.2.2 bouyer * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF
61 1.24.2.2 bouyer * USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
62 1.24.2.2 bouyer * ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
63 1.24.2.2 bouyer * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
64 1.24.2.2 bouyer * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
65 1.24.2.2 bouyer * SUCH DAMAGE.
66 1.24.2.2 bouyer *
67 1.24.2.2 bouyer * from FreeBSD: if_vlan.c,v 1.16 2000/03/26 15:21:40 charnier Exp
68 1.24.2.2 bouyer * via OpenBSD: if_vlan.c,v 1.4 2000/05/15 19:15:00 chris Exp
69 1.24.2.2 bouyer */
70 1.24.2.2 bouyer
71 1.24.2.2 bouyer /*
72 1.24.2.2 bouyer * if_vlan.c - pseudo-device driver for IEEE 802.1Q virtual LANs. Might be
73 1.24.2.2 bouyer * extended some day to also handle IEEE 802.1P priority tagging. This is
74 1.24.2.2 bouyer * sort of sneaky in the implementation, since we need to pretend to be
75 1.24.2.2 bouyer * enough of an Ethernet implementation to make ARP work. The way we do
76 1.24.2.2 bouyer * this is by telling everyone that we are an Ethernet interface, and then
77 1.24.2.2 bouyer * catch the packets that ether_output() left on our output queue when it
78 1.24.2.2 bouyer * calls if_start(), rewrite them for use by the real outgoing interface,
79 1.24.2.2 bouyer * and ask it to send them.
80 1.24.2.2 bouyer *
81 1.24.2.2 bouyer * TODO:
82 1.24.2.2 bouyer *
83 1.24.2.2 bouyer * - Need some way to notify vlan interfaces when the parent
84 1.24.2.2 bouyer * interface changes MTU.
85 1.24.2.2 bouyer */
86 1.24.2.2 bouyer
87 1.24.2.2 bouyer #include "opt_inet.h"
88 1.24.2.2 bouyer #include "bpfilter.h"
89 1.24.2.2 bouyer
90 1.24.2.2 bouyer #include <sys/param.h>
91 1.24.2.2 bouyer #include <sys/kernel.h>
92 1.24.2.2 bouyer #include <sys/mbuf.h>
93 1.24.2.2 bouyer #include <sys/queue.h>
94 1.24.2.2 bouyer #include <sys/socket.h>
95 1.24.2.2 bouyer #include <sys/sockio.h>
96 1.24.2.2 bouyer #include <sys/systm.h>
97 1.24.2.2 bouyer #include <sys/proc.h>
98 1.24.2.2 bouyer
99 1.24.2.2 bouyer #if NBPFILTER > 0
100 1.24.2.2 bouyer #include <net/bpf.h>
101 1.24.2.2 bouyer #endif
102 1.24.2.2 bouyer #include <net/if.h>
103 1.24.2.2 bouyer #include <net/if_dl.h>
104 1.24.2.2 bouyer #include <net/if_types.h>
105 1.24.2.2 bouyer #include <net/if_ether.h>
106 1.24.2.2 bouyer #include <net/if_vlanvar.h>
107 1.24.2.2 bouyer
108 1.24.2.2 bouyer #ifdef INET
109 1.24.2.2 bouyer #include <netinet/in.h>
110 1.24.2.2 bouyer #include <netinet/if_inarp.h>
111 1.24.2.2 bouyer #endif
112 1.24.2.2 bouyer
113 1.24.2.2 bouyer struct vlan_mc_entry {
114 1.24.2.2 bouyer LIST_ENTRY(vlan_mc_entry) mc_entries;
115 1.24.2.2 bouyer /*
116 1.24.2.2 bouyer * A key to identify this entry. The mc_addr below can't be
117 1.24.2.2 bouyer * used since multiple sockaddr may mapped into the same
118 1.24.2.2 bouyer * ether_multi (e.g., AF_UNSPEC).
119 1.24.2.2 bouyer */
120 1.24.2.2 bouyer union {
121 1.24.2.2 bouyer struct ether_multi *mcu_enm;
122 1.24.2.2 bouyer } mc_u;
123 1.24.2.2 bouyer struct sockaddr_storage mc_addr;
124 1.24.2.2 bouyer };
125 1.24.2.2 bouyer
126 1.24.2.2 bouyer #define mc_enm mc_u.mcu_enm
127 1.24.2.2 bouyer
128 1.24.2.2 bouyer struct ifvlan {
129 1.24.2.2 bouyer union {
130 1.24.2.2 bouyer struct ethercom ifvu_ec;
131 1.24.2.2 bouyer } ifv_u;
132 1.24.2.2 bouyer struct ifnet *ifv_p; /* parent interface of this vlan */
133 1.24.2.2 bouyer struct ifv_linkmib {
134 1.24.2.2 bouyer const struct vlan_multisw *ifvm_msw;
135 1.24.2.2 bouyer int ifvm_encaplen; /* encapsulation length */
136 1.24.2.2 bouyer int ifvm_mtufudge; /* MTU fudged by this much */
137 1.24.2.2 bouyer int ifvm_mintu; /* min transmission unit */
138 1.24.2.2 bouyer u_int16_t ifvm_proto; /* encapsulation ethertype */
139 1.24.2.2 bouyer u_int16_t ifvm_tag; /* tag to apply on packets */
140 1.24.2.2 bouyer } ifv_mib;
141 1.24.2.2 bouyer LIST_HEAD(__vlan_mchead, vlan_mc_entry) ifv_mc_listhead;
142 1.24.2.2 bouyer LIST_ENTRY(ifvlan) ifv_list;
143 1.24.2.3 bouyer int ifv_flags;
144 1.24.2.2 bouyer };
145 1.24.2.2 bouyer
146 1.24.2.3 bouyer #define IFVF_PROMISC 0x01 /* promiscuous mode enabled */
147 1.24.2.3 bouyer
148 1.24.2.2 bouyer #define ifv_ec ifv_u.ifvu_ec
149 1.24.2.2 bouyer
150 1.24.2.2 bouyer #define ifv_if ifv_ec.ec_if
151 1.24.2.2 bouyer
152 1.24.2.2 bouyer #define ifv_msw ifv_mib.ifvm_msw
153 1.24.2.2 bouyer #define ifv_encaplen ifv_mib.ifvm_encaplen
154 1.24.2.2 bouyer #define ifv_mtufudge ifv_mib.ifvm_mtufudge
155 1.24.2.2 bouyer #define ifv_mintu ifv_mib.ifvm_mintu
156 1.24.2.2 bouyer #define ifv_tag ifv_mib.ifvm_tag
157 1.24.2.2 bouyer
158 1.24.2.2 bouyer struct vlan_multisw {
159 1.24.2.2 bouyer int (*vmsw_addmulti)(struct ifvlan *, struct ifreq *);
160 1.24.2.2 bouyer int (*vmsw_delmulti)(struct ifvlan *, struct ifreq *);
161 1.24.2.2 bouyer void (*vmsw_purgemulti)(struct ifvlan *);
162 1.24.2.2 bouyer };
163 1.24.2.2 bouyer
164 1.24.2.2 bouyer static int vlan_ether_addmulti(struct ifvlan *, struct ifreq *);
165 1.24.2.2 bouyer static int vlan_ether_delmulti(struct ifvlan *, struct ifreq *);
166 1.24.2.2 bouyer static void vlan_ether_purgemulti(struct ifvlan *);
167 1.24.2.2 bouyer
168 1.24.2.2 bouyer const struct vlan_multisw vlan_ether_multisw = {
169 1.24.2.2 bouyer vlan_ether_addmulti,
170 1.24.2.2 bouyer vlan_ether_delmulti,
171 1.24.2.2 bouyer vlan_ether_purgemulti,
172 1.24.2.2 bouyer };
173 1.24.2.2 bouyer
174 1.24.2.2 bouyer static int vlan_clone_create(struct if_clone *, int);
175 1.24.2.2 bouyer static void vlan_clone_destroy(struct ifnet *);
176 1.24.2.2 bouyer static int vlan_config(struct ifvlan *, struct ifnet *);
177 1.24.2.2 bouyer static int vlan_ioctl(struct ifnet *, u_long, caddr_t);
178 1.24.2.2 bouyer static void vlan_start(struct ifnet *);
179 1.24.2.2 bouyer static void vlan_unconfig(struct ifnet *);
180 1.24.2.2 bouyer
181 1.24.2.2 bouyer void vlanattach(int);
182 1.24.2.2 bouyer
183 1.24.2.2 bouyer /* XXX This should be a hash table with the tag as the basis of the key. */
184 1.24.2.2 bouyer static LIST_HEAD(, ifvlan) ifv_list;
185 1.24.2.2 bouyer
186 1.24.2.2 bouyer struct if_clone vlan_cloner =
187 1.24.2.2 bouyer IF_CLONE_INITIALIZER("vlan", vlan_clone_create, vlan_clone_destroy);
188 1.24.2.2 bouyer
189 1.24.2.2 bouyer void
190 1.24.2.2 bouyer vlanattach(int n)
191 1.24.2.2 bouyer {
192 1.24.2.2 bouyer
193 1.24.2.2 bouyer LIST_INIT(&ifv_list);
194 1.24.2.2 bouyer if_clone_attach(&vlan_cloner);
195 1.24.2.2 bouyer }
196 1.24.2.2 bouyer
197 1.24.2.6 bouyer static void
198 1.24.2.6 bouyer vlan_reset_linkname(struct ifnet *ifp)
199 1.24.2.6 bouyer {
200 1.24.2.6 bouyer
201 1.24.2.6 bouyer /*
202 1.24.2.6 bouyer * We start out with a "802.1Q VLAN" type and zero-length
203 1.24.2.6 bouyer * addresses. When we attach to a parent interface, we
204 1.24.2.6 bouyer * inherit its type, address length, address, and data link
205 1.24.2.6 bouyer * type.
206 1.24.2.6 bouyer */
207 1.24.2.6 bouyer
208 1.24.2.6 bouyer ifp->if_type = IFT_L2VLAN;
209 1.24.2.6 bouyer ifp->if_addrlen = 0;
210 1.24.2.6 bouyer ifp->if_dlt = DLT_NULL;
211 1.24.2.6 bouyer if_alloc_sadl(ifp);
212 1.24.2.6 bouyer }
213 1.24.2.6 bouyer
214 1.24.2.2 bouyer static int
215 1.24.2.2 bouyer vlan_clone_create(struct if_clone *ifc, int unit)
216 1.24.2.2 bouyer {
217 1.24.2.2 bouyer struct ifvlan *ifv;
218 1.24.2.2 bouyer struct ifnet *ifp;
219 1.24.2.2 bouyer int s;
220 1.24.2.2 bouyer
221 1.24.2.2 bouyer ifv = malloc(sizeof(struct ifvlan), M_DEVBUF, M_WAITOK);
222 1.24.2.2 bouyer memset(ifv, 0, sizeof(struct ifvlan));
223 1.24.2.2 bouyer ifp = &ifv->ifv_if;
224 1.24.2.2 bouyer LIST_INIT(&ifv->ifv_mc_listhead);
225 1.24.2.2 bouyer
226 1.24.2.2 bouyer s = splnet();
227 1.24.2.2 bouyer LIST_INSERT_HEAD(&ifv_list, ifv, ifv_list);
228 1.24.2.2 bouyer splx(s);
229 1.24.2.2 bouyer
230 1.24.2.2 bouyer sprintf(ifp->if_xname, "%s%d", ifc->ifc_name, unit);
231 1.24.2.2 bouyer ifp->if_softc = ifv;
232 1.24.2.2 bouyer ifp->if_flags = IFF_BROADCAST | IFF_SIMPLEX | IFF_MULTICAST;
233 1.24.2.2 bouyer ifp->if_start = vlan_start;
234 1.24.2.2 bouyer ifp->if_ioctl = vlan_ioctl;
235 1.24.2.7 bouyer IFQ_SET_READY(&ifp->if_snd);
236 1.24.2.2 bouyer
237 1.24.2.2 bouyer if_attach(ifp);
238 1.24.2.6 bouyer vlan_reset_linkname(ifp);
239 1.24.2.2 bouyer
240 1.24.2.2 bouyer return (0);
241 1.24.2.2 bouyer }
242 1.24.2.2 bouyer
243 1.24.2.2 bouyer static void
244 1.24.2.2 bouyer vlan_clone_destroy(struct ifnet *ifp)
245 1.24.2.2 bouyer {
246 1.24.2.2 bouyer struct ifvlan *ifv = ifp->if_softc;
247 1.24.2.2 bouyer int s;
248 1.24.2.2 bouyer
249 1.24.2.2 bouyer s = splnet();
250 1.24.2.2 bouyer LIST_REMOVE(ifv, ifv_list);
251 1.24.2.2 bouyer vlan_unconfig(ifp);
252 1.24.2.2 bouyer splx(s);
253 1.24.2.2 bouyer
254 1.24.2.2 bouyer if_detach(ifp);
255 1.24.2.2 bouyer free(ifv, M_DEVBUF);
256 1.24.2.2 bouyer }
257 1.24.2.2 bouyer
258 1.24.2.2 bouyer /*
259 1.24.2.2 bouyer * Configure a VLAN interface. Must be called at splnet().
260 1.24.2.2 bouyer */
261 1.24.2.2 bouyer static int
262 1.24.2.2 bouyer vlan_config(struct ifvlan *ifv, struct ifnet *p)
263 1.24.2.2 bouyer {
264 1.24.2.2 bouyer struct ifnet *ifp = &ifv->ifv_if;
265 1.24.2.2 bouyer int error;
266 1.24.2.2 bouyer
267 1.24.2.2 bouyer if (ifv->ifv_p != NULL)
268 1.24.2.2 bouyer return (EBUSY);
269 1.24.2.2 bouyer
270 1.24.2.2 bouyer switch (p->if_type) {
271 1.24.2.2 bouyer case IFT_ETHER:
272 1.24.2.2 bouyer {
273 1.24.2.2 bouyer struct ethercom *ec = (void *) p;
274 1.24.2.2 bouyer
275 1.24.2.2 bouyer ifv->ifv_msw = &vlan_ether_multisw;
276 1.24.2.2 bouyer ifv->ifv_encaplen = ETHER_VLAN_ENCAP_LEN;
277 1.24.2.2 bouyer ifv->ifv_mintu = ETHERMIN;
278 1.24.2.2 bouyer
279 1.24.2.2 bouyer /*
280 1.24.2.2 bouyer * If the parent supports the VLAN_MTU capability,
281 1.24.2.2 bouyer * i.e. can Tx/Rx larger than ETHER_MAX_LEN frames,
282 1.24.2.2 bouyer * enable it.
283 1.24.2.2 bouyer */
284 1.24.2.2 bouyer if (ec->ec_nvlans++ == 0 &&
285 1.24.2.2 bouyer (ec->ec_capabilities & ETHERCAP_VLAN_MTU) != 0) {
286 1.24.2.2 bouyer /*
287 1.24.2.2 bouyer * Enable Tx/Rx of VLAN-sized frames.
288 1.24.2.2 bouyer */
289 1.24.2.2 bouyer ec->ec_capenable |= ETHERCAP_VLAN_MTU;
290 1.24.2.2 bouyer if (p->if_flags & IFF_UP) {
291 1.24.2.2 bouyer struct ifreq ifr;
292 1.24.2.2 bouyer
293 1.24.2.2 bouyer ifr.ifr_flags = p->if_flags;
294 1.24.2.2 bouyer error = (*p->if_ioctl)(p, SIOCSIFFLAGS,
295 1.24.2.2 bouyer (caddr_t) &ifr);
296 1.24.2.2 bouyer if (error) {
297 1.24.2.2 bouyer if (ec->ec_nvlans-- == 1)
298 1.24.2.2 bouyer ec->ec_capenable &=
299 1.24.2.2 bouyer ~ETHERCAP_VLAN_MTU;
300 1.24.2.2 bouyer return (error);
301 1.24.2.2 bouyer }
302 1.24.2.2 bouyer }
303 1.24.2.2 bouyer ifv->ifv_mtufudge = 0;
304 1.24.2.2 bouyer } else if ((ec->ec_capabilities & ETHERCAP_VLAN_MTU) == 0) {
305 1.24.2.2 bouyer /*
306 1.24.2.2 bouyer * Fudge the MTU by the encapsulation size. This
307 1.24.2.2 bouyer * makes us incompatible with strictly compliant
308 1.24.2.2 bouyer * 802.1Q implementations, but allows us to use
309 1.24.2.2 bouyer * the feature with other NetBSD implementations,
310 1.24.2.2 bouyer * which might still be useful.
311 1.24.2.2 bouyer */
312 1.24.2.2 bouyer ifv->ifv_mtufudge = ifv->ifv_encaplen;
313 1.24.2.2 bouyer }
314 1.24.2.2 bouyer
315 1.24.2.2 bouyer /*
316 1.24.2.2 bouyer * We inherit the parent's Ethernet address.
317 1.24.2.2 bouyer */
318 1.24.2.2 bouyer ether_ifattach(ifp, LLADDR(p->if_sadl));
319 1.24.2.2 bouyer ifp->if_hdrlen = sizeof(struct ether_vlan_header); /* XXX? */
320 1.24.2.2 bouyer break;
321 1.24.2.2 bouyer }
322 1.24.2.2 bouyer
323 1.24.2.2 bouyer default:
324 1.24.2.2 bouyer return (EPROTONOSUPPORT);
325 1.24.2.2 bouyer }
326 1.24.2.2 bouyer
327 1.24.2.2 bouyer ifv->ifv_p = p;
328 1.24.2.2 bouyer ifv->ifv_if.if_mtu = p->if_mtu - ifv->ifv_mtufudge;
329 1.24.2.3 bouyer ifv->ifv_if.if_flags = p->if_flags &
330 1.24.2.3 bouyer (IFF_UP | IFF_BROADCAST | IFF_SIMPLEX | IFF_MULTICAST);
331 1.24.2.2 bouyer
332 1.24.2.2 bouyer /*
333 1.24.2.2 bouyer * Inherit the if_type from the parent. This allows us
334 1.24.2.2 bouyer * to participate in bridges of that type.
335 1.24.2.2 bouyer */
336 1.24.2.2 bouyer ifv->ifv_if.if_type = p->if_type;
337 1.24.2.2 bouyer
338 1.24.2.2 bouyer return (0);
339 1.24.2.2 bouyer }
340 1.24.2.2 bouyer
341 1.24.2.2 bouyer /*
342 1.24.2.2 bouyer * Unconfigure a VLAN interface. Must be called at splnet().
343 1.24.2.2 bouyer */
344 1.24.2.2 bouyer static void
345 1.24.2.2 bouyer vlan_unconfig(struct ifnet *ifp)
346 1.24.2.2 bouyer {
347 1.24.2.2 bouyer struct ifvlan *ifv = ifp->if_softc;
348 1.24.2.2 bouyer
349 1.24.2.2 bouyer if (ifv->ifv_p == NULL)
350 1.24.2.2 bouyer return;
351 1.24.2.2 bouyer
352 1.24.2.2 bouyer /*
353 1.24.2.2 bouyer * Since the interface is being unconfigured, we need to empty the
354 1.24.2.2 bouyer * list of multicast groups that we may have joined while we were
355 1.24.2.2 bouyer * alive and remove them from the parent's list also.
356 1.24.2.2 bouyer */
357 1.24.2.2 bouyer (*ifv->ifv_msw->vmsw_purgemulti)(ifv);
358 1.24.2.2 bouyer
359 1.24.2.2 bouyer /* Disconnect from parent. */
360 1.24.2.2 bouyer switch (ifv->ifv_p->if_type) {
361 1.24.2.2 bouyer case IFT_ETHER:
362 1.24.2.2 bouyer {
363 1.24.2.2 bouyer struct ethercom *ec = (void *) ifv->ifv_p;
364 1.24.2.2 bouyer
365 1.24.2.2 bouyer if (ec->ec_nvlans-- == 1) {
366 1.24.2.2 bouyer /*
367 1.24.2.2 bouyer * Disable Tx/Rx of VLAN-sized frames.
368 1.24.2.2 bouyer */
369 1.24.2.2 bouyer ec->ec_capenable &= ~ETHERCAP_VLAN_MTU;
370 1.24.2.2 bouyer if (ifv->ifv_p->if_flags & IFF_UP) {
371 1.24.2.2 bouyer struct ifreq ifr;
372 1.24.2.2 bouyer
373 1.24.2.2 bouyer ifr.ifr_flags = ifv->ifv_p->if_flags;
374 1.24.2.2 bouyer (void) (*ifv->ifv_p->if_ioctl)(ifv->ifv_p,
375 1.24.2.2 bouyer SIOCSIFFLAGS, (caddr_t) &ifr);
376 1.24.2.2 bouyer }
377 1.24.2.2 bouyer }
378 1.24.2.2 bouyer
379 1.24.2.2 bouyer ether_ifdetach(ifp);
380 1.24.2.6 bouyer vlan_reset_linkname(ifp);
381 1.24.2.2 bouyer break;
382 1.24.2.2 bouyer }
383 1.24.2.2 bouyer
384 1.24.2.2 bouyer #ifdef DIAGNOSTIC
385 1.24.2.2 bouyer default:
386 1.24.2.2 bouyer panic("vlan_unconfig: impossible");
387 1.24.2.2 bouyer #endif
388 1.24.2.2 bouyer }
389 1.24.2.2 bouyer
390 1.24.2.2 bouyer ifv->ifv_p = NULL;
391 1.24.2.2 bouyer ifv->ifv_if.if_mtu = 0;
392 1.24.2.3 bouyer ifv->ifv_flags = 0;
393 1.24.2.2 bouyer
394 1.24.2.2 bouyer if_down(ifp);
395 1.24.2.2 bouyer ifp->if_flags &= ~(IFF_UP|IFF_RUNNING);
396 1.24.2.2 bouyer }
397 1.24.2.2 bouyer
398 1.24.2.2 bouyer /*
399 1.24.2.2 bouyer * Called when a parent interface is detaching; destroy any VLAN
400 1.24.2.2 bouyer * configuration for the parent interface.
401 1.24.2.2 bouyer */
402 1.24.2.2 bouyer void
403 1.24.2.2 bouyer vlan_ifdetach(struct ifnet *p)
404 1.24.2.2 bouyer {
405 1.24.2.2 bouyer struct ifvlan *ifv;
406 1.24.2.2 bouyer int s;
407 1.24.2.2 bouyer
408 1.24.2.2 bouyer s = splnet();
409 1.24.2.2 bouyer
410 1.24.2.2 bouyer for (ifv = LIST_FIRST(&ifv_list); ifv != NULL;
411 1.24.2.2 bouyer ifv = LIST_NEXT(ifv, ifv_list)) {
412 1.24.2.2 bouyer if (ifv->ifv_p == p)
413 1.24.2.2 bouyer vlan_unconfig(&ifv->ifv_if);
414 1.24.2.2 bouyer }
415 1.24.2.2 bouyer
416 1.24.2.2 bouyer splx(s);
417 1.24.2.2 bouyer }
418 1.24.2.2 bouyer
419 1.24.2.2 bouyer static int
420 1.24.2.3 bouyer vlan_set_promisc(struct ifnet *ifp)
421 1.24.2.3 bouyer {
422 1.24.2.3 bouyer struct ifvlan *ifv = ifp->if_softc;
423 1.24.2.3 bouyer int error = 0;
424 1.24.2.3 bouyer
425 1.24.2.3 bouyer if ((ifp->if_flags & IFF_PROMISC) != 0) {
426 1.24.2.3 bouyer if ((ifv->ifv_flags & IFVF_PROMISC) == 0) {
427 1.24.2.3 bouyer error = ifpromisc(ifv->ifv_p, 1);
428 1.24.2.3 bouyer if (error == 0)
429 1.24.2.3 bouyer ifv->ifv_flags |= IFVF_PROMISC;
430 1.24.2.3 bouyer }
431 1.24.2.3 bouyer } else {
432 1.24.2.3 bouyer if ((ifv->ifv_flags & IFVF_PROMISC) != 0) {
433 1.24.2.3 bouyer error = ifpromisc(ifv->ifv_p, 0);
434 1.24.2.3 bouyer if (error == 0)
435 1.24.2.3 bouyer ifv->ifv_flags &= ~IFVF_PROMISC;
436 1.24.2.3 bouyer }
437 1.24.2.3 bouyer }
438 1.24.2.3 bouyer
439 1.24.2.3 bouyer return (error);
440 1.24.2.3 bouyer }
441 1.24.2.3 bouyer
442 1.24.2.3 bouyer static int
443 1.24.2.2 bouyer vlan_ioctl(struct ifnet *ifp, u_long cmd, caddr_t data)
444 1.24.2.2 bouyer {
445 1.24.2.2 bouyer struct proc *p = curproc; /* XXX */
446 1.24.2.2 bouyer struct ifvlan *ifv = ifp->if_softc;
447 1.24.2.2 bouyer struct ifaddr *ifa = (struct ifaddr *) data;
448 1.24.2.2 bouyer struct ifreq *ifr = (struct ifreq *) data;
449 1.24.2.2 bouyer struct ifnet *pr;
450 1.24.2.2 bouyer struct vlanreq vlr;
451 1.24.2.2 bouyer struct sockaddr *sa;
452 1.24.2.2 bouyer int s, error = 0;
453 1.24.2.2 bouyer
454 1.24.2.2 bouyer s = splnet();
455 1.24.2.2 bouyer
456 1.24.2.2 bouyer switch (cmd) {
457 1.24.2.2 bouyer case SIOCSIFADDR:
458 1.24.2.2 bouyer if (ifv->ifv_p != NULL) {
459 1.24.2.2 bouyer ifp->if_flags |= IFF_UP;
460 1.24.2.2 bouyer
461 1.24.2.2 bouyer switch (ifa->ifa_addr->sa_family) {
462 1.24.2.2 bouyer #ifdef INET
463 1.24.2.2 bouyer case AF_INET:
464 1.24.2.2 bouyer arp_ifinit(ifp, ifa);
465 1.24.2.2 bouyer break;
466 1.24.2.2 bouyer #endif
467 1.24.2.2 bouyer default:
468 1.24.2.2 bouyer break;
469 1.24.2.2 bouyer }
470 1.24.2.2 bouyer } else {
471 1.24.2.2 bouyer error = EINVAL;
472 1.24.2.2 bouyer }
473 1.24.2.2 bouyer break;
474 1.24.2.2 bouyer
475 1.24.2.2 bouyer case SIOCGIFADDR:
476 1.24.2.2 bouyer sa = (struct sockaddr *)&ifr->ifr_data;
477 1.24.2.6 bouyer memcpy(sa->sa_data, LLADDR(ifp->if_sadl), ifp->if_addrlen);
478 1.24.2.2 bouyer break;
479 1.24.2.2 bouyer
480 1.24.2.2 bouyer case SIOCSIFMTU:
481 1.24.2.2 bouyer if (ifv->ifv_p != NULL) {
482 1.24.2.2 bouyer if (ifr->ifr_mtu >
483 1.24.2.2 bouyer (ifv->ifv_p->if_mtu - ifv->ifv_mtufudge) ||
484 1.24.2.2 bouyer ifr->ifr_mtu <
485 1.24.2.2 bouyer (ifv->ifv_mintu - ifv->ifv_mtufudge))
486 1.24.2.2 bouyer error = EINVAL;
487 1.24.2.2 bouyer else
488 1.24.2.2 bouyer ifp->if_mtu = ifr->ifr_mtu;
489 1.24.2.2 bouyer } else
490 1.24.2.2 bouyer error = EINVAL;
491 1.24.2.2 bouyer break;
492 1.24.2.2 bouyer
493 1.24.2.2 bouyer case SIOCSETVLAN:
494 1.24.2.2 bouyer if ((error = suser(p->p_ucred, &p->p_acflag)) != 0)
495 1.24.2.2 bouyer break;
496 1.24.2.2 bouyer if ((error = copyin(ifr->ifr_data, &vlr, sizeof(vlr))) != 0)
497 1.24.2.2 bouyer break;
498 1.24.2.2 bouyer if (vlr.vlr_parent[0] == '\0') {
499 1.24.2.2 bouyer vlan_unconfig(ifp);
500 1.24.2.2 bouyer break;
501 1.24.2.2 bouyer }
502 1.24.2.2 bouyer if (vlr.vlr_tag != EVL_VLANOFTAG(vlr.vlr_tag)) {
503 1.24.2.2 bouyer error = EINVAL; /* check for valid tag */
504 1.24.2.2 bouyer break;
505 1.24.2.2 bouyer }
506 1.24.2.2 bouyer if ((pr = ifunit(vlr.vlr_parent)) == 0) {
507 1.24.2.2 bouyer error = ENOENT;
508 1.24.2.2 bouyer break;
509 1.24.2.2 bouyer }
510 1.24.2.2 bouyer if ((error = vlan_config(ifv, pr)) != 0)
511 1.24.2.2 bouyer break;
512 1.24.2.2 bouyer ifv->ifv_tag = vlr.vlr_tag;
513 1.24.2.2 bouyer ifp->if_flags |= IFF_RUNNING;
514 1.24.2.3 bouyer
515 1.24.2.3 bouyer /* Update promiscuous mode, if necessary. */
516 1.24.2.3 bouyer vlan_set_promisc(ifp);
517 1.24.2.2 bouyer break;
518 1.24.2.2 bouyer
519 1.24.2.2 bouyer case SIOCGETVLAN:
520 1.24.2.2 bouyer memset(&vlr, 0, sizeof(vlr));
521 1.24.2.2 bouyer if (ifv->ifv_p != NULL) {
522 1.24.2.2 bouyer snprintf(vlr.vlr_parent, sizeof(vlr.vlr_parent), "%s",
523 1.24.2.2 bouyer ifv->ifv_p->if_xname);
524 1.24.2.2 bouyer vlr.vlr_tag = ifv->ifv_tag;
525 1.24.2.2 bouyer }
526 1.24.2.2 bouyer error = copyout(&vlr, ifr->ifr_data, sizeof(vlr));
527 1.24.2.2 bouyer break;
528 1.24.2.2 bouyer
529 1.24.2.2 bouyer case SIOCSIFFLAGS:
530 1.24.2.2 bouyer /*
531 1.24.2.3 bouyer * For promiscuous mode, we enable promiscuous mode on
532 1.24.2.3 bouyer * the parent if we need promiscuous on the VLAN interface.
533 1.24.2.2 bouyer */
534 1.24.2.3 bouyer if (ifv->ifv_p != NULL)
535 1.24.2.3 bouyer error = vlan_set_promisc(ifp);
536 1.24.2.2 bouyer break;
537 1.24.2.2 bouyer
538 1.24.2.2 bouyer case SIOCADDMULTI:
539 1.24.2.4 bouyer error = (ifv->ifv_p != NULL) ?
540 1.24.2.4 bouyer (*ifv->ifv_msw->vmsw_addmulti)(ifv, ifr) : EINVAL;
541 1.24.2.2 bouyer break;
542 1.24.2.2 bouyer
543 1.24.2.2 bouyer case SIOCDELMULTI:
544 1.24.2.4 bouyer error = (ifv->ifv_p != NULL) ?
545 1.24.2.4 bouyer (*ifv->ifv_msw->vmsw_delmulti)(ifv, ifr) : EINVAL;
546 1.24.2.2 bouyer break;
547 1.24.2.2 bouyer
548 1.24.2.2 bouyer default:
549 1.24.2.2 bouyer error = EINVAL;
550 1.24.2.2 bouyer }
551 1.24.2.2 bouyer
552 1.24.2.2 bouyer splx(s);
553 1.24.2.2 bouyer
554 1.24.2.2 bouyer return (error);
555 1.24.2.2 bouyer }
556 1.24.2.2 bouyer
557 1.24.2.2 bouyer static int
558 1.24.2.2 bouyer vlan_ether_addmulti(struct ifvlan *ifv, struct ifreq *ifr)
559 1.24.2.2 bouyer {
560 1.24.2.2 bouyer struct vlan_mc_entry *mc;
561 1.24.2.2 bouyer u_int8_t addrlo[ETHER_ADDR_LEN], addrhi[ETHER_ADDR_LEN];
562 1.24.2.2 bouyer int error;
563 1.24.2.2 bouyer
564 1.24.2.2 bouyer if (ifr->ifr_addr.sa_len > sizeof(struct sockaddr_storage))
565 1.24.2.2 bouyer return (EINVAL);
566 1.24.2.2 bouyer
567 1.24.2.2 bouyer error = ether_addmulti(ifr, &ifv->ifv_ec);
568 1.24.2.2 bouyer if (error != ENETRESET)
569 1.24.2.2 bouyer return (error);
570 1.24.2.2 bouyer
571 1.24.2.2 bouyer /*
572 1.24.2.2 bouyer * This is new multicast address. We have to tell parent
573 1.24.2.2 bouyer * about it. Also, remember this multicast address so that
574 1.24.2.2 bouyer * we can delete them on unconfigure.
575 1.24.2.2 bouyer */
576 1.24.2.2 bouyer MALLOC(mc, struct vlan_mc_entry *, sizeof(struct vlan_mc_entry),
577 1.24.2.2 bouyer M_DEVBUF, M_NOWAIT);
578 1.24.2.2 bouyer if (mc == NULL) {
579 1.24.2.2 bouyer error = ENOMEM;
580 1.24.2.2 bouyer goto alloc_failed;
581 1.24.2.2 bouyer }
582 1.24.2.2 bouyer
583 1.24.2.2 bouyer /*
584 1.24.2.2 bouyer * As ether_addmulti() returns ENETRESET, following two
585 1.24.2.2 bouyer * statement shouldn't fail.
586 1.24.2.2 bouyer */
587 1.24.2.2 bouyer (void)ether_multiaddr(&ifr->ifr_addr, addrlo, addrhi);
588 1.24.2.2 bouyer ETHER_LOOKUP_MULTI(addrlo, addrhi, &ifv->ifv_ec, mc->mc_enm);
589 1.24.2.2 bouyer memcpy(&mc->mc_addr, &ifr->ifr_addr, ifr->ifr_addr.sa_len);
590 1.24.2.2 bouyer LIST_INSERT_HEAD(&ifv->ifv_mc_listhead, mc, mc_entries);
591 1.24.2.2 bouyer
592 1.24.2.2 bouyer error = (*ifv->ifv_p->if_ioctl)(ifv->ifv_p, SIOCADDMULTI,
593 1.24.2.2 bouyer (caddr_t)ifr);
594 1.24.2.2 bouyer if (error != 0)
595 1.24.2.2 bouyer goto ioctl_failed;
596 1.24.2.2 bouyer return (error);
597 1.24.2.2 bouyer
598 1.24.2.2 bouyer ioctl_failed:
599 1.24.2.2 bouyer LIST_REMOVE(mc, mc_entries);
600 1.24.2.2 bouyer FREE(mc, M_DEVBUF);
601 1.24.2.2 bouyer alloc_failed:
602 1.24.2.2 bouyer (void)ether_delmulti(ifr, &ifv->ifv_ec);
603 1.24.2.2 bouyer return (error);
604 1.24.2.2 bouyer }
605 1.24.2.2 bouyer
606 1.24.2.2 bouyer static int
607 1.24.2.2 bouyer vlan_ether_delmulti(struct ifvlan *ifv, struct ifreq *ifr)
608 1.24.2.2 bouyer {
609 1.24.2.2 bouyer struct ether_multi *enm;
610 1.24.2.2 bouyer struct vlan_mc_entry *mc;
611 1.24.2.2 bouyer u_int8_t addrlo[ETHER_ADDR_LEN], addrhi[ETHER_ADDR_LEN];
612 1.24.2.2 bouyer int error;
613 1.24.2.2 bouyer
614 1.24.2.2 bouyer /*
615 1.24.2.2 bouyer * Find a key to lookup vlan_mc_entry. We have to do this
616 1.24.2.2 bouyer * before calling ether_delmulti for obvious reason.
617 1.24.2.2 bouyer */
618 1.24.2.2 bouyer if ((error = ether_multiaddr(&ifr->ifr_addr, addrlo, addrhi)) != 0)
619 1.24.2.2 bouyer return (error);
620 1.24.2.2 bouyer ETHER_LOOKUP_MULTI(addrlo, addrhi, &ifv->ifv_ec, enm);
621 1.24.2.2 bouyer
622 1.24.2.2 bouyer error = ether_delmulti(ifr, &ifv->ifv_ec);
623 1.24.2.2 bouyer if (error != ENETRESET)
624 1.24.2.2 bouyer return (error);
625 1.24.2.2 bouyer
626 1.24.2.2 bouyer /* We no longer use this multicast address. Tell parent so. */
627 1.24.2.2 bouyer error = (*ifv->ifv_p->if_ioctl)(ifv->ifv_p, SIOCDELMULTI,
628 1.24.2.2 bouyer (caddr_t)ifr);
629 1.24.2.2 bouyer if (error == 0) {
630 1.24.2.2 bouyer /* And forget about this address. */
631 1.24.2.2 bouyer for (mc = LIST_FIRST(&ifv->ifv_mc_listhead); mc != NULL;
632 1.24.2.2 bouyer mc = LIST_NEXT(mc, mc_entries)) {
633 1.24.2.2 bouyer if (mc->mc_enm == enm) {
634 1.24.2.2 bouyer LIST_REMOVE(mc, mc_entries);
635 1.24.2.2 bouyer FREE(mc, M_DEVBUF);
636 1.24.2.2 bouyer break;
637 1.24.2.2 bouyer }
638 1.24.2.2 bouyer }
639 1.24.2.2 bouyer KASSERT(mc != NULL);
640 1.24.2.2 bouyer } else
641 1.24.2.2 bouyer (void)ether_addmulti(ifr, &ifv->ifv_ec);
642 1.24.2.2 bouyer return (error);
643 1.24.2.2 bouyer }
644 1.24.2.2 bouyer
645 1.24.2.2 bouyer /*
646 1.24.2.2 bouyer * Delete any multicast address we have asked to add form parent
647 1.24.2.2 bouyer * interface. Called when the vlan is being unconfigured.
648 1.24.2.2 bouyer */
649 1.24.2.2 bouyer static void
650 1.24.2.2 bouyer vlan_ether_purgemulti(struct ifvlan *ifv)
651 1.24.2.2 bouyer {
652 1.24.2.2 bouyer struct ifnet *ifp = ifv->ifv_p; /* Parent. */
653 1.24.2.2 bouyer struct vlan_mc_entry *mc;
654 1.24.2.2 bouyer union {
655 1.24.2.2 bouyer struct ifreq ifreq;
656 1.24.2.2 bouyer struct {
657 1.24.2.2 bouyer char ifr_name[IFNAMSIZ];
658 1.24.2.3 bouyer struct sockaddr_storage ifr_ss;
659 1.24.2.2 bouyer } ifreq_storage;
660 1.24.2.2 bouyer } ifreq;
661 1.24.2.2 bouyer struct ifreq *ifr = &ifreq.ifreq;
662 1.24.2.2 bouyer
663 1.24.2.2 bouyer memcpy(ifr->ifr_name, ifp->if_xname, IFNAMSIZ);
664 1.24.2.2 bouyer while ((mc = LIST_FIRST(&ifv->ifv_mc_listhead)) != NULL) {
665 1.24.2.2 bouyer memcpy(&ifr->ifr_addr, &mc->mc_addr, mc->mc_addr.ss_len);
666 1.24.2.2 bouyer (void)(*ifp->if_ioctl)(ifp, SIOCDELMULTI, (caddr_t)ifr);
667 1.24.2.2 bouyer LIST_REMOVE(mc, mc_entries);
668 1.24.2.2 bouyer FREE(mc, M_DEVBUF);
669 1.24.2.2 bouyer }
670 1.24.2.2 bouyer }
671 1.24.2.2 bouyer
672 1.24.2.2 bouyer static void
673 1.24.2.2 bouyer vlan_start(struct ifnet *ifp)
674 1.24.2.2 bouyer {
675 1.24.2.2 bouyer struct ifvlan *ifv = ifp->if_softc;
676 1.24.2.2 bouyer struct ifnet *p = ifv->ifv_p;
677 1.24.2.3 bouyer struct ethercom *ec = (void *) ifv->ifv_p;
678 1.24.2.2 bouyer struct mbuf *m;
679 1.24.2.7 bouyer int error;
680 1.24.2.7 bouyer ALTQ_DECL(struct altq_pktattr pktattr;)
681 1.24.2.2 bouyer
682 1.24.2.2 bouyer ifp->if_flags |= IFF_OACTIVE;
683 1.24.2.2 bouyer
684 1.24.2.2 bouyer for (;;) {
685 1.24.2.7 bouyer IFQ_DEQUEUE(&ifp->if_snd, m);
686 1.24.2.2 bouyer if (m == NULL)
687 1.24.2.2 bouyer break;
688 1.24.2.2 bouyer
689 1.24.2.7 bouyer #ifdef ALTQ
690 1.24.2.7 bouyer /*
691 1.24.2.7 bouyer * If ALTQ is enabled on the parent interface, do
692 1.24.2.7 bouyer * classification; the queueing discipline might
693 1.24.2.7 bouyer * not require classification, but might require
694 1.24.2.7 bouyer * the address family/header pointer in the pktattr.
695 1.24.2.7 bouyer */
696 1.24.2.7 bouyer if (ALTQ_IS_ENABLED(&p->if_snd)) {
697 1.24.2.7 bouyer switch (p->if_type) {
698 1.24.2.7 bouyer case IFT_ETHER:
699 1.24.2.7 bouyer altq_etherclassify(&p->if_snd, m, &pktattr);
700 1.24.2.7 bouyer break;
701 1.24.2.7 bouyer #ifdef DIAGNOSTIC
702 1.24.2.7 bouyer default:
703 1.24.2.7 bouyer panic("vlan_start: impossible (altq)");
704 1.24.2.7 bouyer #endif
705 1.24.2.7 bouyer }
706 1.24.2.7 bouyer }
707 1.24.2.7 bouyer #endif /* ALTQ */
708 1.24.2.7 bouyer
709 1.24.2.2 bouyer #if NBPFILTER > 0
710 1.24.2.2 bouyer if (ifp->if_bpf)
711 1.24.2.2 bouyer bpf_mtap(ifp->if_bpf, m);
712 1.24.2.2 bouyer #endif
713 1.24.2.2 bouyer /*
714 1.24.2.3 bouyer * If the parent can insert the tag itself, just mark
715 1.24.2.3 bouyer * the tag in the mbuf header.
716 1.24.2.2 bouyer */
717 1.24.2.3 bouyer if (ec->ec_capabilities & ETHERCAP_VLAN_HWTAGGING) {
718 1.24.2.3 bouyer struct mbuf *n;
719 1.24.2.3 bouyer n = m_aux_add(m, AF_LINK, ETHERTYPE_VLAN);
720 1.24.2.3 bouyer if (n == NULL) {
721 1.24.2.2 bouyer ifp->if_oerrors++;
722 1.24.2.3 bouyer m_freem(m);
723 1.24.2.2 bouyer continue;
724 1.24.2.2 bouyer }
725 1.24.2.3 bouyer *mtod(n, int *) = ifv->ifv_tag;
726 1.24.2.3 bouyer n->m_len = sizeof(int);
727 1.24.2.3 bouyer } else {
728 1.24.2.2 bouyer /*
729 1.24.2.3 bouyer * insert the tag ourselve
730 1.24.2.2 bouyer */
731 1.24.2.3 bouyer M_PREPEND(m, ifv->ifv_encaplen, M_DONTWAIT);
732 1.24.2.3 bouyer if (m == NULL) {
733 1.24.2.3 bouyer printf("%s: unable to prepend encap header",
734 1.24.2.3 bouyer ifv->ifv_p->if_xname);
735 1.24.2.3 bouyer ifp->if_oerrors++;
736 1.24.2.3 bouyer continue;
737 1.24.2.3 bouyer }
738 1.24.2.3 bouyer
739 1.24.2.3 bouyer switch (p->if_type) {
740 1.24.2.3 bouyer case IFT_ETHER:
741 1.24.2.3 bouyer {
742 1.24.2.3 bouyer struct ether_vlan_header *evl;
743 1.24.2.3 bouyer
744 1.24.2.3 bouyer if (m->m_len < sizeof(struct ether_vlan_header))
745 1.24.2.3 bouyer m = m_pullup(m,
746 1.24.2.3 bouyer sizeof(struct ether_vlan_header));
747 1.24.2.3 bouyer if (m == NULL) {
748 1.24.2.3 bouyer printf("%s: unable to pullup encap "
749 1.24.2.3 bouyer "header", ifv->ifv_p->if_xname);
750 1.24.2.3 bouyer ifp->if_oerrors++;
751 1.24.2.3 bouyer continue;
752 1.24.2.3 bouyer }
753 1.24.2.3 bouyer
754 1.24.2.3 bouyer /*
755 1.24.2.3 bouyer * Transform the Ethernet header into an
756 1.24.2.3 bouyer * Ethernet header with 802.1Q encapsulation.
757 1.24.2.3 bouyer */
758 1.24.2.3 bouyer memmove(mtod(m, caddr_t),
759 1.24.2.3 bouyer mtod(m, caddr_t) + ifv->ifv_encaplen,
760 1.24.2.3 bouyer sizeof(struct ether_header));
761 1.24.2.3 bouyer evl = mtod(m, struct ether_vlan_header *);
762 1.24.2.3 bouyer evl->evl_proto = evl->evl_encap_proto;
763 1.24.2.3 bouyer evl->evl_encap_proto = htons(ETHERTYPE_VLAN);
764 1.24.2.3 bouyer evl->evl_tag = htons(ifv->ifv_tag);
765 1.24.2.3 bouyer break;
766 1.24.2.3 bouyer }
767 1.24.2.2 bouyer
768 1.24.2.2 bouyer #ifdef DIAGNOSTIC
769 1.24.2.3 bouyer default:
770 1.24.2.3 bouyer panic("vlan_start: impossible");
771 1.24.2.2 bouyer #endif
772 1.24.2.3 bouyer }
773 1.24.2.2 bouyer }
774 1.24.2.2 bouyer
775 1.24.2.2 bouyer /*
776 1.24.2.2 bouyer * Send it, precisely as the parent's output routine
777 1.24.2.2 bouyer * would have. We are already running at splimp.
778 1.24.2.2 bouyer */
779 1.24.2.7 bouyer IFQ_ENQUEUE(&p->if_snd, m, &pktattr, error);
780 1.24.2.7 bouyer if (error) {
781 1.24.2.7 bouyer /* mbuf is already freed */
782 1.24.2.2 bouyer ifp->if_oerrors++;
783 1.24.2.2 bouyer continue;
784 1.24.2.2 bouyer }
785 1.24.2.7 bouyer
786 1.24.2.3 bouyer ifp->if_opackets++;
787 1.24.2.7 bouyer if ((p->if_flags & IFF_OACTIVE) == 0)
788 1.24.2.2 bouyer (*p->if_start)(p);
789 1.24.2.2 bouyer }
790 1.24.2.2 bouyer
791 1.24.2.2 bouyer ifp->if_flags &= ~IFF_OACTIVE;
792 1.24.2.2 bouyer }
793 1.24.2.2 bouyer
794 1.24.2.2 bouyer /*
795 1.24.2.2 bouyer * Given an Ethernet frame, find a valid vlan interface corresponding to the
796 1.24.2.2 bouyer * given source interface and tag, then run the the real packet through
797 1.24.2.2 bouyer * the parent's input routine.
798 1.24.2.2 bouyer */
799 1.24.2.2 bouyer void
800 1.24.2.2 bouyer vlan_input(struct ifnet *ifp, struct mbuf *m)
801 1.24.2.2 bouyer {
802 1.24.2.2 bouyer struct ifvlan *ifv;
803 1.24.2.2 bouyer u_int tag;
804 1.24.2.3 bouyer struct mbuf *n;
805 1.24.2.2 bouyer
806 1.24.2.3 bouyer n = m_aux_find(m, AF_LINK, ETHERTYPE_VLAN);
807 1.24.2.3 bouyer if (n) {
808 1.24.2.3 bouyer /* m contains a normal ethernet frame, the tag is in m_aux */
809 1.24.2.3 bouyer tag = *mtod(n, int *);
810 1.24.2.3 bouyer m_aux_delete(m, n);
811 1.24.2.3 bouyer for (ifv = LIST_FIRST(&ifv_list); ifv != NULL;
812 1.24.2.3 bouyer ifv = LIST_NEXT(ifv, ifv_list))
813 1.24.2.3 bouyer if (ifp == ifv->ifv_p && tag == ifv->ifv_tag)
814 1.24.2.3 bouyer break;
815 1.24.2.3 bouyer } else {
816 1.24.2.3 bouyer switch (ifp->if_type) {
817 1.24.2.3 bouyer case IFT_ETHER:
818 1.24.2.3 bouyer {
819 1.24.2.3 bouyer struct ether_vlan_header *evl;
820 1.24.2.2 bouyer
821 1.24.2.3 bouyer if (m->m_len < sizeof(struct ether_vlan_header) &&
822 1.24.2.3 bouyer (m = m_pullup(m,
823 1.24.2.3 bouyer sizeof(struct ether_vlan_header))) == NULL) {
824 1.24.2.3 bouyer printf("%s: no memory for VLAN header, "
825 1.24.2.3 bouyer "dropping packet.\n", ifp->if_xname);
826 1.24.2.3 bouyer return;
827 1.24.2.3 bouyer }
828 1.24.2.3 bouyer evl = mtod(m, struct ether_vlan_header *);
829 1.24.2.3 bouyer KASSERT(ntohs(evl->evl_encap_proto) == ETHERTYPE_VLAN);
830 1.24.2.2 bouyer
831 1.24.2.3 bouyer tag = EVL_VLANOFTAG(ntohs(evl->evl_tag));
832 1.24.2.2 bouyer
833 1.24.2.3 bouyer /*
834 1.24.2.3 bouyer * Restore the original ethertype. We'll remove
835 1.24.2.3 bouyer * the encapsulation after we've found the vlan
836 1.24.2.3 bouyer * interface corresponding to the tag.
837 1.24.2.3 bouyer */
838 1.24.2.3 bouyer evl->evl_encap_proto = evl->evl_proto;
839 1.24.2.3 bouyer break;
840 1.24.2.3 bouyer }
841 1.24.2.2 bouyer
842 1.24.2.3 bouyer default:
843 1.24.2.3 bouyer tag = (u_int) -1; /* XXX GCC */
844 1.24.2.2 bouyer #ifdef DIAGNOSTIC
845 1.24.2.3 bouyer panic("vlan_input: impossible");
846 1.24.2.2 bouyer #endif
847 1.24.2.3 bouyer }
848 1.24.2.2 bouyer
849 1.24.2.3 bouyer for (ifv = LIST_FIRST(&ifv_list); ifv != NULL;
850 1.24.2.3 bouyer ifv = LIST_NEXT(ifv, ifv_list))
851 1.24.2.3 bouyer if (ifp == ifv->ifv_p && tag == ifv->ifv_tag)
852 1.24.2.3 bouyer break;
853 1.24.2.3 bouyer
854 1.24.2.3 bouyer
855 1.24.2.3 bouyer /*
856 1.24.2.3 bouyer * Now, remove the encapsulation header. The original
857 1.24.2.3 bouyer * header has already been fixed up above.
858 1.24.2.3 bouyer */
859 1.24.2.3 bouyer if (ifv) {
860 1.24.2.3 bouyer memmove(mtod(m, caddr_t) + ifv->ifv_encaplen,
861 1.24.2.3 bouyer mtod(m, caddr_t), sizeof(struct ether_header));
862 1.24.2.3 bouyer m_adj(m, ifv->ifv_encaplen);
863 1.24.2.3 bouyer }
864 1.24.2.3 bouyer }
865 1.24.2.2 bouyer
866 1.24.2.2 bouyer if (ifv == NULL ||
867 1.24.2.2 bouyer (ifv->ifv_if.if_flags & (IFF_UP|IFF_RUNNING)) !=
868 1.24.2.2 bouyer (IFF_UP|IFF_RUNNING)) {
869 1.24.2.2 bouyer m_free(m);
870 1.24.2.2 bouyer ifp->if_noproto++;
871 1.24.2.2 bouyer return;
872 1.24.2.2 bouyer }
873 1.24.2.2 bouyer m->m_pkthdr.rcvif = &ifv->ifv_if;
874 1.24.2.2 bouyer ifv->ifv_if.if_ipackets++;
875 1.24.2.2 bouyer
876 1.24.2.2 bouyer #if NBPFILTER > 0
877 1.24.2.2 bouyer if (ifv->ifv_if.if_bpf)
878 1.24.2.2 bouyer bpf_mtap(ifv->ifv_if.if_bpf, m);
879 1.24.2.2 bouyer #endif
880 1.24.2.2 bouyer
881 1.24.2.2 bouyer /* Pass it back through the parent's input routine. */
882 1.24.2.2 bouyer (*ifp->if_input)(&ifv->ifv_if, m);
883 1.24.2.2 bouyer }
884