if.c revision 1.519 1 1.519 skrll /* $NetBSD: if.c,v 1.519 2022/08/21 07:17:19 skrll Exp $ */
2 1.53 thorpej
3 1.53 thorpej /*-
4 1.219 ad * Copyright (c) 1999, 2000, 2001, 2008 The NetBSD Foundation, Inc.
5 1.53 thorpej * All rights reserved.
6 1.53 thorpej *
7 1.53 thorpej * This code is derived from software contributed to The NetBSD Foundation
8 1.150 peter * by William Studenmund and Jason R. Thorpe.
9 1.53 thorpej *
10 1.53 thorpej * Redistribution and use in source and binary forms, with or without
11 1.53 thorpej * modification, are permitted provided that the following conditions
12 1.53 thorpej * are met:
13 1.53 thorpej * 1. Redistributions of source code must retain the above copyright
14 1.53 thorpej * notice, this list of conditions and the following disclaimer.
15 1.53 thorpej * 2. Redistributions in binary form must reproduce the above copyright
16 1.53 thorpej * notice, this list of conditions and the following disclaimer in the
17 1.53 thorpej * documentation and/or other materials provided with the distribution.
18 1.53 thorpej *
19 1.53 thorpej * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 1.53 thorpej * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 1.53 thorpej * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 1.53 thorpej * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 1.53 thorpej * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 1.53 thorpej * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 1.53 thorpej * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 1.53 thorpej * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 1.53 thorpej * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 1.53 thorpej * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 1.53 thorpej * POSSIBILITY OF SUCH DAMAGE.
30 1.53 thorpej */
31 1.49 itojun
32 1.49 itojun /*
33 1.49 itojun * Copyright (C) 1995, 1996, 1997, and 1998 WIDE Project.
34 1.49 itojun * All rights reserved.
35 1.154 perry *
36 1.49 itojun * Redistribution and use in source and binary forms, with or without
37 1.49 itojun * modification, are permitted provided that the following conditions
38 1.49 itojun * are met:
39 1.49 itojun * 1. Redistributions of source code must retain the above copyright
40 1.49 itojun * notice, this list of conditions and the following disclaimer.
41 1.49 itojun * 2. Redistributions in binary form must reproduce the above copyright
42 1.49 itojun * notice, this list of conditions and the following disclaimer in the
43 1.49 itojun * documentation and/or other materials provided with the distribution.
44 1.49 itojun * 3. Neither the name of the project nor the names of its contributors
45 1.49 itojun * may be used to endorse or promote products derived from this software
46 1.49 itojun * without specific prior written permission.
47 1.154 perry *
48 1.49 itojun * THIS SOFTWARE IS PROVIDED BY THE PROJECT AND CONTRIBUTORS ``AS IS'' AND
49 1.49 itojun * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
50 1.49 itojun * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
51 1.49 itojun * ARE DISCLAIMED. IN NO EVENT SHALL THE PROJECT OR CONTRIBUTORS BE LIABLE
52 1.49 itojun * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
53 1.49 itojun * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
54 1.49 itojun * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
55 1.49 itojun * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
56 1.49 itojun * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
57 1.49 itojun * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
58 1.49 itojun * SUCH DAMAGE.
59 1.49 itojun */
60 1.16 cgd
61 1.1 cgd /*
62 1.15 mycroft * Copyright (c) 1980, 1986, 1993
63 1.15 mycroft * The Regents of the University of California. All rights reserved.
64 1.1 cgd *
65 1.1 cgd * Redistribution and use in source and binary forms, with or without
66 1.1 cgd * modification, are permitted provided that the following conditions
67 1.1 cgd * are met:
68 1.1 cgd * 1. Redistributions of source code must retain the above copyright
69 1.1 cgd * notice, this list of conditions and the following disclaimer.
70 1.1 cgd * 2. Redistributions in binary form must reproduce the above copyright
71 1.1 cgd * notice, this list of conditions and the following disclaimer in the
72 1.1 cgd * documentation and/or other materials provided with the distribution.
73 1.126 agc * 3. Neither the name of the University nor the names of its contributors
74 1.1 cgd * may be used to endorse or promote products derived from this software
75 1.1 cgd * without specific prior written permission.
76 1.1 cgd *
77 1.1 cgd * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
78 1.1 cgd * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
79 1.1 cgd * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
80 1.1 cgd * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
81 1.1 cgd * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
82 1.1 cgd * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
83 1.1 cgd * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
84 1.1 cgd * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
85 1.1 cgd * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
86 1.1 cgd * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
87 1.1 cgd * SUCH DAMAGE.
88 1.1 cgd *
89 1.44 fvdl * @(#)if.c 8.5 (Berkeley) 1/9/95
90 1.1 cgd */
91 1.99 lukem
92 1.99 lukem #include <sys/cdefs.h>
93 1.519 skrll __KERNEL_RCSID(0, "$NetBSD: if.c,v 1.519 2022/08/21 07:17:19 skrll Exp $");
94 1.50 thorpej
95 1.308 ozaki #if defined(_KERNEL_OPT)
96 1.50 thorpej #include "opt_inet.h"
97 1.352 knakahar #include "opt_ipsec.h"
98 1.51 bouyer #include "opt_atalk.h"
99 1.288 ozaki #include "opt_wlan.h"
100 1.308 ozaki #include "opt_net_mpsafe.h"
101 1.417 ozaki #include "opt_mrouting.h"
102 1.308 ozaki #endif
103 1.1 cgd
104 1.8 mycroft #include <sys/param.h>
105 1.8 mycroft #include <sys/mbuf.h>
106 1.8 mycroft #include <sys/systm.h>
107 1.59 thorpej #include <sys/callout.h>
108 1.15 mycroft #include <sys/proc.h>
109 1.8 mycroft #include <sys/socket.h>
110 1.8 mycroft #include <sys/socketvar.h>
111 1.56 thorpej #include <sys/domain.h>
112 1.8 mycroft #include <sys/protosw.h>
113 1.8 mycroft #include <sys/kernel.h>
114 1.8 mycroft #include <sys/ioctl.h>
115 1.133 jonathan #include <sys/sysctl.h>
116 1.159 dyoung #include <sys/syslog.h>
117 1.165 elad #include <sys/kauth.h>
118 1.254 dyoung #include <sys/kmem.h>
119 1.276 rmind #include <sys/xcall.h>
120 1.323 ozaki #include <sys/cpu.h>
121 1.323 ozaki #include <sys/intr.h>
122 1.447 pgoyette #include <sys/module_hook.h>
123 1.444 pgoyette #include <sys/compat_stub.h>
124 1.465 maxv #include <sys/msan.h>
125 1.492 yamaguch #include <sys/hook.h>
126 1.1 cgd
127 1.8 mycroft #include <net/if.h>
128 1.8 mycroft #include <net/if_dl.h>
129 1.66 onoe #include <net/if_ether.h>
130 1.124 dyoung #include <net/if_media.h>
131 1.132 dyoung #include <net80211/ieee80211.h>
132 1.132 dyoung #include <net80211/ieee80211_ioctl.h>
133 1.8 mycroft #include <net/if_types.h>
134 1.53 thorpej #include <net/route.h>
135 1.95 itojun #include <net/netisr.h>
136 1.262 christos #include <sys/module.h>
137 1.51 bouyer #ifdef NETATALK
138 1.51 bouyer #include <netatalk/at_extern.h>
139 1.51 bouyer #include <netatalk/at.h>
140 1.51 bouyer #endif
141 1.143 itojun #include <net/pfil.h>
142 1.278 he #include <netinet/in.h>
143 1.276 rmind #include <netinet/in_var.h>
144 1.352 knakahar #include <netinet/ip_encap.h>
145 1.368 ozaki #include <net/bpf.h>
146 1.1 cgd
147 1.49 itojun #ifdef INET6
148 1.72 thorpej #include <netinet6/in6_var.h>
149 1.108 itojun #include <netinet6/nd6.h>
150 1.49 itojun #endif
151 1.117 thorpej
152 1.288 ozaki #include "ether.h"
153 1.288 ozaki
154 1.442 rin #include "bridge.h"
155 1.442 rin #if NBRIDGE > 0
156 1.442 rin #include <net/if_bridgevar.h>
157 1.442 rin #endif
158 1.442 rin
159 1.166 liamjfoy #include "carp.h"
160 1.166 liamjfoy #if NCARP > 0
161 1.166 liamjfoy #include <netinet/ip_carp.h>
162 1.166 liamjfoy #endif
163 1.166 liamjfoy
164 1.186 christos #include <compat/sys/sockio.h>
165 1.161 christos
166 1.117 thorpej MALLOC_DEFINE(M_IFADDR, "ifaddr", "interface address");
167 1.117 thorpej MALLOC_DEFINE(M_IFMADDR, "ether_multi", "link-level multicast address");
168 1.49 itojun
169 1.274 rmind /*
170 1.480 roy * XXX reusing (ifp)->if_snd->ifq_lock rather than having another spin mutex
171 1.480 roy * for each ifnet. It doesn't matter because:
172 1.480 roy * - if IFEF_MPSAFE is enabled, if_snd isn't used and lock contentions on
173 1.480 roy * ifq_lock don't happen
174 1.480 roy * - if IFEF_MPSAFE is disabled, there is no lock contention on ifq_lock
175 1.480 roy * because if_snd, if_link_state_change and if_link_state_change_process
176 1.480 roy * are all called with KERNEL_LOCK
177 1.480 roy */
178 1.480 roy #define IF_LINK_STATE_CHANGE_LOCK(ifp) \
179 1.480 roy mutex_enter((ifp)->if_snd.ifq_lock)
180 1.480 roy #define IF_LINK_STATE_CHANGE_UNLOCK(ifp) \
181 1.480 roy mutex_exit((ifp)->if_snd.ifq_lock)
182 1.480 roy
183 1.480 roy /*
184 1.274 rmind * Global list of interfaces.
185 1.274 rmind */
186 1.334 ozaki /* DEPRECATED. Remove it once kvm(3) users disappeared */
187 1.274 rmind struct ifnet_head ifnet_list;
188 1.334 ozaki
189 1.334 ozaki struct pslist_head ifnet_pslist;
190 1.274 rmind static ifnet_t ** ifindex2ifnet = NULL;
191 1.274 rmind static u_int if_index = 1;
192 1.274 rmind static size_t if_indexlim = 0;
193 1.274 rmind static uint64_t index_gen;
194 1.334 ozaki /* Mutex to protect the above objects. */
195 1.334 ozaki kmutex_t ifnet_mtx __cacheline_aligned;
196 1.385 ozaki static struct psref_class *ifnet_psref_class __read_mostly;
197 1.334 ozaki static pserialize_t ifnet_psz;
198 1.471 thorpej static struct workqueue *ifnet_link_state_wq __read_mostly;
199 1.334 ozaki
200 1.513 riastrad static struct workqueue *if_slowtimo_wq __read_mostly;
201 1.513 riastrad
202 1.292 christos static kmutex_t if_clone_mtx;
203 1.274 rmind
204 1.274 rmind struct ifnet *lo0ifp;
205 1.1 cgd int ifqmaxlen = IFQ_MAXLEN;
206 1.104 matt
207 1.357 ozaki struct psref_class *ifa_psref_class __read_mostly;
208 1.357 ozaki
209 1.362 ozaki static int if_delroute_matcher(struct rtentry *, void *);
210 1.53 thorpej
211 1.379 knakahar static bool if_is_unit(const char *);
212 1.163 thorpej static struct if_clone *if_clone_lookup(const char *, int *);
213 1.63 thorpej
214 1.163 thorpej static LIST_HEAD(, if_clone) if_cloners = LIST_HEAD_INITIALIZER(if_cloners);
215 1.163 thorpej static int if_cloners_count;
216 1.63 thorpej
217 1.265 rmind /* Packet filtering hook for interfaces. */
218 1.369 christos pfil_head_t * if_pfil __read_mostly;
219 1.143 itojun
220 1.239 elad static kauth_listener_t if_listener;
221 1.239 elad
222 1.273 pooka static int doifioctl(struct socket *, u_long, void *, struct lwp *);
223 1.163 thorpej static void if_detach_queues(struct ifnet *, struct ifqueue *);
224 1.234 dyoung static void sysctl_sndq_setup(struct sysctllog **, const char *,
225 1.234 dyoung struct ifaltq *);
226 1.513 riastrad static void if_slowtimo_intr(void *);
227 1.513 riastrad static void if_slowtimo_work(struct work *, void *);
228 1.514 riastrad static int sysctl_if_watchdog(SYSCTLFN_PROTO);
229 1.514 riastrad static void sysctl_watchdog_setup(struct ifnet *);
230 1.302 ozaki static void if_attachdomain1(struct ifnet *);
231 1.302 ozaki static int ifconf(u_long, void *);
232 1.345 knakahar static int if_transmit(struct ifnet *, struct mbuf *);
233 1.302 ozaki static int if_clone_create(const char *);
234 1.302 ozaki static int if_clone_destroy(const char *);
235 1.471 thorpej static void if_link_state_change_work(struct work *, void *);
236 1.403 ozaki static void if_up_locked(struct ifnet *);
237 1.403 ozaki static void _if_down(struct ifnet *);
238 1.403 ozaki static void if_down_deactivated(struct ifnet *);
239 1.95 itojun
240 1.323 ozaki struct if_percpuq {
241 1.323 ozaki struct ifnet *ipq_ifp;
242 1.323 ozaki void *ipq_si;
243 1.323 ozaki struct percpu *ipq_ifqs; /* struct ifqueue */
244 1.323 ozaki };
245 1.323 ozaki
246 1.323 ozaki static struct mbuf *if_percpuq_dequeue(struct if_percpuq *);
247 1.323 ozaki
248 1.327 knakahar static void if_percpuq_drops(void *, void *, struct cpu_info *);
249 1.327 knakahar static int sysctl_percpuq_drops_handler(SYSCTLFN_PROTO);
250 1.327 knakahar static void sysctl_percpuq_setup(struct sysctllog **, const char *,
251 1.327 knakahar struct if_percpuq *);
252 1.327 knakahar
253 1.364 ozaki struct if_deferred_start {
254 1.364 ozaki struct ifnet *ids_ifp;
255 1.364 ozaki void (*ids_if_start)(struct ifnet *);
256 1.364 ozaki void *ids_si;
257 1.364 ozaki };
258 1.364 ozaki
259 1.364 ozaki static void if_deferred_start_softint(void *);
260 1.364 ozaki static void if_deferred_start_common(struct ifnet *);
261 1.364 ozaki static void if_deferred_start_destroy(struct ifnet *);
262 1.364 ozaki
263 1.513 riastrad struct if_slowtimo_data {
264 1.513 riastrad kmutex_t isd_lock;
265 1.513 riastrad struct callout isd_ch;
266 1.513 riastrad struct work isd_work;
267 1.513 riastrad struct ifnet *isd_ifp;
268 1.513 riastrad bool isd_queued;
269 1.513 riastrad bool isd_dying;
270 1.514 riastrad bool isd_trigger;
271 1.513 riastrad };
272 1.513 riastrad
273 1.240 cegger #if defined(INET) || defined(INET6)
274 1.276 rmind static void sysctl_net_pktq_setup(struct sysctllog **, int);
275 1.240 cegger #endif
276 1.237 pooka
277 1.447 pgoyette /*
278 1.447 pgoyette * Hook for if_vlan - needed by if_agr
279 1.447 pgoyette */
280 1.447 pgoyette struct if_vlan_vlan_input_hook_t if_vlan_vlan_input_hook;
281 1.447 pgoyette
282 1.370 ozaki static void if_sysctl_setup(struct sysctllog **);
283 1.370 ozaki
284 1.239 elad static int
285 1.239 elad if_listener_cb(kauth_cred_t cred, kauth_action_t action, void *cookie,
286 1.239 elad void *arg0, void *arg1, void *arg2, void *arg3)
287 1.239 elad {
288 1.239 elad int result;
289 1.239 elad enum kauth_network_req req;
290 1.239 elad
291 1.239 elad result = KAUTH_RESULT_DEFER;
292 1.473 joerg req = (enum kauth_network_req)(uintptr_t)arg1;
293 1.239 elad
294 1.239 elad if (action != KAUTH_NETWORK_INTERFACE)
295 1.239 elad return result;
296 1.239 elad
297 1.239 elad if ((req == KAUTH_REQ_NETWORK_INTERFACE_GET) ||
298 1.239 elad (req == KAUTH_REQ_NETWORK_INTERFACE_SET))
299 1.239 elad result = KAUTH_RESULT_ALLOW;
300 1.239 elad
301 1.239 elad return result;
302 1.239 elad }
303 1.239 elad
304 1.1 cgd /*
305 1.1 cgd * Network interface utility routines.
306 1.1 cgd *
307 1.1 cgd * Routines with ifa_ifwith* names take sockaddr *'s as
308 1.1 cgd * parameters.
309 1.1 cgd */
310 1.4 andrew void
311 1.163 thorpej ifinit(void)
312 1.1 cgd {
313 1.370 ozaki
314 1.392 ozaki #if (defined(INET) || defined(INET6))
315 1.352 knakahar encapinit();
316 1.352 knakahar #endif
317 1.352 knakahar
318 1.239 elad if_listener = kauth_listen_scope(KAUTH_SCOPE_NETWORK,
319 1.239 elad if_listener_cb, NULL);
320 1.273 pooka
321 1.273 pooka /* interfaces are available, inform socket code */
322 1.273 pooka ifioctl = doifioctl;
323 1.227 yamt }
324 1.227 yamt
325 1.227 yamt /*
326 1.227 yamt * XXX Initialization before configure().
327 1.227 yamt * XXX hack to get pfil_add_hook working in autoconf.
328 1.227 yamt */
329 1.227 yamt void
330 1.227 yamt ifinit1(void)
331 1.227 yamt {
332 1.471 thorpej int error __diagused;
333 1.424 msaitoh
334 1.424 msaitoh #ifdef NET_MPSAFE
335 1.424 msaitoh printf("NET_MPSAFE enabled\n");
336 1.424 msaitoh #endif
337 1.424 msaitoh
338 1.292 christos mutex_init(&if_clone_mtx, MUTEX_DEFAULT, IPL_NONE);
339 1.357 ozaki
340 1.274 rmind TAILQ_INIT(&ifnet_list);
341 1.334 ozaki mutex_init(&ifnet_mtx, MUTEX_DEFAULT, IPL_NONE);
342 1.334 ozaki ifnet_psz = pserialize_create();
343 1.334 ozaki ifnet_psref_class = psref_class_create("ifnet", IPL_SOFTNET);
344 1.357 ozaki ifa_psref_class = psref_class_create("ifa", IPL_SOFTNET);
345 1.471 thorpej error = workqueue_create(&ifnet_link_state_wq, "iflnkst",
346 1.472 thorpej if_link_state_change_work, NULL, PRI_SOFTNET, IPL_NET,
347 1.471 thorpej WQ_MPSAFE);
348 1.471 thorpej KASSERT(error == 0);
349 1.334 ozaki PSLIST_INIT(&ifnet_pslist);
350 1.357 ozaki
351 1.513 riastrad error = workqueue_create(&if_slowtimo_wq, "ifwdog",
352 1.513 riastrad if_slowtimo_work, NULL, PRI_SOFTNET, IPL_SOFTCLOCK, WQ_MPSAFE);
353 1.513 riastrad KASSERTMSG(error == 0, "error=%d", error);
354 1.513 riastrad
355 1.274 rmind if_indexlim = 8;
356 1.274 rmind
357 1.265 rmind if_pfil = pfil_head_create(PFIL_TYPE_IFNET, NULL);
358 1.265 rmind KASSERT(if_pfil != NULL);
359 1.286 ozaki
360 1.468 thorpej #if NETHER > 0 || defined(NETATALK) || defined(WLAN)
361 1.286 ozaki etherinit();
362 1.288 ozaki #endif
363 1.1 cgd }
364 1.1 cgd
365 1.429 ozaki /* XXX must be after domaininit() */
366 1.429 ozaki void
367 1.429 ozaki ifinit_post(void)
368 1.429 ozaki {
369 1.429 ozaki
370 1.429 ozaki if_sysctl_setup(NULL);
371 1.429 ozaki }
372 1.429 ozaki
373 1.274 rmind ifnet_t *
374 1.226 christos if_alloc(u_char type)
375 1.226 christos {
376 1.274 rmind return kmem_zalloc(sizeof(ifnet_t), KM_SLEEP);
377 1.226 christos }
378 1.226 christos
379 1.226 christos void
380 1.274 rmind if_free(ifnet_t *ifp)
381 1.251 dyoung {
382 1.274 rmind kmem_free(ifp, sizeof(ifnet_t));
383 1.251 dyoung }
384 1.251 dyoung
385 1.251 dyoung void
386 1.226 christos if_initname(struct ifnet *ifp, const char *name, int unit)
387 1.226 christos {
388 1.226 christos (void)snprintf(ifp->if_xname, sizeof(ifp->if_xname),
389 1.226 christos "%s%d", name, unit);
390 1.226 christos }
391 1.226 christos
392 1.53 thorpej /*
393 1.53 thorpej * Null routines used while an interface is going away. These routines
394 1.53 thorpej * just return an error.
395 1.53 thorpej */
396 1.53 thorpej
397 1.53 thorpej int
398 1.177 christos if_nulloutput(struct ifnet *ifp, struct mbuf *m,
399 1.331 ozaki const struct sockaddr *so, const struct rtentry *rt)
400 1.53 thorpej {
401 1.53 thorpej
402 1.185 dyoung return ENXIO;
403 1.53 thorpej }
404 1.53 thorpej
405 1.53 thorpej void
406 1.177 christos if_nullinput(struct ifnet *ifp, struct mbuf *m)
407 1.53 thorpej {
408 1.53 thorpej
409 1.53 thorpej /* Nothing. */
410 1.53 thorpej }
411 1.53 thorpej
412 1.53 thorpej void
413 1.177 christos if_nullstart(struct ifnet *ifp)
414 1.53 thorpej {
415 1.53 thorpej
416 1.53 thorpej /* Nothing. */
417 1.53 thorpej }
418 1.53 thorpej
419 1.53 thorpej int
420 1.332 knakahar if_nulltransmit(struct ifnet *ifp, struct mbuf *m)
421 1.332 knakahar {
422 1.332 knakahar
423 1.383 knakahar m_freem(m);
424 1.332 knakahar return ENXIO;
425 1.332 knakahar }
426 1.332 knakahar
427 1.332 knakahar int
428 1.183 christos if_nullioctl(struct ifnet *ifp, u_long cmd, void *data)
429 1.53 thorpej {
430 1.53 thorpej
431 1.185 dyoung return ENXIO;
432 1.53 thorpej }
433 1.53 thorpej
434 1.53 thorpej int
435 1.177 christos if_nullinit(struct ifnet *ifp)
436 1.53 thorpej {
437 1.53 thorpej
438 1.185 dyoung return ENXIO;
439 1.53 thorpej }
440 1.53 thorpej
441 1.53 thorpej void
442 1.177 christos if_nullstop(struct ifnet *ifp, int disable)
443 1.75 thorpej {
444 1.75 thorpej
445 1.75 thorpej /* Nothing. */
446 1.75 thorpej }
447 1.75 thorpej
448 1.75 thorpej void
449 1.295 ozaki if_nullslowtimo(struct ifnet *ifp)
450 1.53 thorpej {
451 1.53 thorpej
452 1.53 thorpej /* Nothing. */
453 1.53 thorpej }
454 1.53 thorpej
455 1.53 thorpej void
456 1.177 christos if_nulldrain(struct ifnet *ifp)
457 1.53 thorpej {
458 1.53 thorpej
459 1.53 thorpej /* Nothing. */
460 1.53 thorpej }
461 1.53 thorpej
462 1.210 dyoung void
463 1.231 dyoung if_set_sadl(struct ifnet *ifp, const void *lla, u_char addrlen, bool factory)
464 1.210 dyoung {
465 1.210 dyoung struct ifaddr *ifa;
466 1.210 dyoung struct sockaddr_dl *sdl;
467 1.210 dyoung
468 1.210 dyoung ifp->if_addrlen = addrlen;
469 1.210 dyoung if_alloc_sadl(ifp);
470 1.210 dyoung ifa = ifp->if_dl;
471 1.210 dyoung sdl = satosdl(ifa->ifa_addr);
472 1.210 dyoung
473 1.210 dyoung (void)sockaddr_dl_setaddr(sdl, sdl->sdl_len, lla, ifp->if_addrlen);
474 1.231 dyoung if (factory) {
475 1.426 ozaki KASSERT(ifp->if_hwdl == NULL);
476 1.231 dyoung ifp->if_hwdl = ifp->if_dl;
477 1.291 rmind ifaref(ifp->if_hwdl);
478 1.231 dyoung }
479 1.223 dyoung /* TBD routing socket */
480 1.210 dyoung }
481 1.210 dyoung
482 1.211 dyoung struct ifaddr *
483 1.211 dyoung if_dl_create(const struct ifnet *ifp, const struct sockaddr_dl **sdlp)
484 1.211 dyoung {
485 1.211 dyoung unsigned socksize, ifasize;
486 1.211 dyoung int addrlen, namelen;
487 1.211 dyoung struct sockaddr_dl *mask, *sdl;
488 1.211 dyoung struct ifaddr *ifa;
489 1.211 dyoung
490 1.211 dyoung namelen = strlen(ifp->if_xname);
491 1.211 dyoung addrlen = ifp->if_addrlen;
492 1.211 dyoung socksize = roundup(sockaddr_dl_measure(namelen, addrlen), sizeof(long));
493 1.211 dyoung ifasize = sizeof(*ifa) + 2 * socksize;
494 1.455 msaitoh ifa = malloc(ifasize, M_IFADDR, M_WAITOK | M_ZERO);
495 1.211 dyoung
496 1.211 dyoung sdl = (struct sockaddr_dl *)(ifa + 1);
497 1.211 dyoung mask = (struct sockaddr_dl *)(socksize + (char *)sdl);
498 1.211 dyoung
499 1.211 dyoung sockaddr_dl_init(sdl, socksize, ifp->if_index, ifp->if_type,
500 1.211 dyoung ifp->if_xname, namelen, NULL, addrlen);
501 1.398 christos mask->sdl_family = AF_LINK;
502 1.211 dyoung mask->sdl_len = sockaddr_dl_measure(namelen, 0);
503 1.211 dyoung memset(&mask->sdl_data[0], 0xff, namelen);
504 1.211 dyoung ifa->ifa_rtrequest = link_rtrequest;
505 1.211 dyoung ifa->ifa_addr = (struct sockaddr *)sdl;
506 1.211 dyoung ifa->ifa_netmask = (struct sockaddr *)mask;
507 1.357 ozaki ifa_psref_init(ifa);
508 1.211 dyoung
509 1.211 dyoung *sdlp = sdl;
510 1.211 dyoung
511 1.211 dyoung return ifa;
512 1.211 dyoung }
513 1.211 dyoung
514 1.223 dyoung static void
515 1.223 dyoung if_sadl_setrefs(struct ifnet *ifp, struct ifaddr *ifa)
516 1.223 dyoung {
517 1.223 dyoung const struct sockaddr_dl *sdl;
518 1.316 ozaki
519 1.223 dyoung ifp->if_dl = ifa;
520 1.291 rmind ifaref(ifa);
521 1.223 dyoung sdl = satosdl(ifa->ifa_addr);
522 1.223 dyoung ifp->if_sadl = sdl;
523 1.223 dyoung }
524 1.223 dyoung
525 1.1 cgd /*
526 1.81 thorpej * Allocate the link level name for the specified interface. This
527 1.81 thorpej * is an attachment helper. It must be called after ifp->if_addrlen
528 1.81 thorpej * is initialized, which may not be the case when if_attach() is
529 1.81 thorpej * called.
530 1.81 thorpej */
531 1.81 thorpej void
532 1.81 thorpej if_alloc_sadl(struct ifnet *ifp)
533 1.81 thorpej {
534 1.81 thorpej struct ifaddr *ifa;
535 1.211 dyoung const struct sockaddr_dl *sdl;
536 1.84 thorpej
537 1.84 thorpej /*
538 1.84 thorpej * If the interface already has a link name, release it
539 1.84 thorpej * now. This is useful for interfaces that can change
540 1.84 thorpej * link types, and thus switch link names often.
541 1.84 thorpej */
542 1.84 thorpej if (ifp->if_sadl != NULL)
543 1.426 ozaki if_free_sadl(ifp, 0);
544 1.81 thorpej
545 1.211 dyoung ifa = if_dl_create(ifp, &sdl);
546 1.195 dyoung
547 1.207 dyoung ifa_insert(ifp, ifa);
548 1.223 dyoung if_sadl_setrefs(ifp, ifa);
549 1.223 dyoung }
550 1.223 dyoung
551 1.223 dyoung static void
552 1.223 dyoung if_deactivate_sadl(struct ifnet *ifp)
553 1.223 dyoung {
554 1.223 dyoung struct ifaddr *ifa;
555 1.223 dyoung
556 1.223 dyoung KASSERT(ifp->if_dl != NULL);
557 1.223 dyoung
558 1.223 dyoung ifa = ifp->if_dl;
559 1.223 dyoung
560 1.223 dyoung ifp->if_sadl = NULL;
561 1.223 dyoung
562 1.223 dyoung ifp->if_dl = NULL;
563 1.291 rmind ifafree(ifa);
564 1.223 dyoung }
565 1.223 dyoung
566 1.378 ozaki static void
567 1.378 ozaki if_replace_sadl(struct ifnet *ifp, struct ifaddr *ifa)
568 1.378 ozaki {
569 1.378 ozaki struct ifaddr *old;
570 1.378 ozaki
571 1.378 ozaki KASSERT(ifp->if_dl != NULL);
572 1.378 ozaki
573 1.378 ozaki old = ifp->if_dl;
574 1.378 ozaki
575 1.378 ozaki ifaref(ifa);
576 1.378 ozaki /* XXX Update if_dl and if_sadl atomically */
577 1.378 ozaki ifp->if_dl = ifa;
578 1.378 ozaki ifp->if_sadl = satosdl(ifa->ifa_addr);
579 1.378 ozaki
580 1.378 ozaki ifafree(old);
581 1.378 ozaki }
582 1.378 ozaki
583 1.224 dyoung void
584 1.357 ozaki if_activate_sadl(struct ifnet *ifp, struct ifaddr *ifa0,
585 1.223 dyoung const struct sockaddr_dl *sdl)
586 1.223 dyoung {
587 1.357 ozaki struct ifaddr *ifa;
588 1.519 skrll const int bound = curlwp_bind();
589 1.223 dyoung
590 1.378 ozaki KASSERT(ifa_held(ifa0));
591 1.378 ozaki
592 1.519 skrll const int s = splsoftnet();
593 1.223 dyoung
594 1.378 ozaki if_replace_sadl(ifp, ifa0);
595 1.357 ozaki
596 1.519 skrll int ss = pserialize_read_enter();
597 1.357 ozaki IFADDR_READER_FOREACH(ifa, ifp) {
598 1.357 ozaki struct psref psref;
599 1.357 ozaki ifa_acquire(ifa, &psref);
600 1.357 ozaki pserialize_read_exit(ss);
601 1.357 ozaki
602 1.231 dyoung rtinit(ifa, RTM_LLINFO_UPD, 0);
603 1.354 ozaki
604 1.357 ozaki ss = pserialize_read_enter();
605 1.357 ozaki ifa_release(ifa, &psref);
606 1.357 ozaki }
607 1.357 ozaki pserialize_read_exit(ss);
608 1.357 ozaki
609 1.223 dyoung splx(s);
610 1.357 ozaki curlwp_bindx(bound);
611 1.81 thorpej }
612 1.81 thorpej
613 1.81 thorpej /*
614 1.81 thorpej * Free the link level name for the specified interface. This is
615 1.300 ozaki * a detach helper. This is called from if_detach().
616 1.81 thorpej */
617 1.437 knakahar void
618 1.426 ozaki if_free_sadl(struct ifnet *ifp, int factory)
619 1.81 thorpej {
620 1.81 thorpej struct ifaddr *ifa;
621 1.81 thorpej int s;
622 1.81 thorpej
623 1.426 ozaki if (factory && ifp->if_hwdl != NULL) {
624 1.426 ozaki ifa = ifp->if_hwdl;
625 1.426 ozaki ifp->if_hwdl = NULL;
626 1.426 ozaki ifafree(ifa);
627 1.426 ozaki }
628 1.426 ozaki
629 1.316 ozaki ifa = ifp->if_dl;
630 1.81 thorpej if (ifa == NULL) {
631 1.81 thorpej KASSERT(ifp->if_sadl == NULL);
632 1.81 thorpej return;
633 1.81 thorpej }
634 1.81 thorpej
635 1.81 thorpej KASSERT(ifp->if_sadl != NULL);
636 1.81 thorpej
637 1.373 ozaki s = splsoftnet();
638 1.430 christos KASSERT(ifa->ifa_addr->sa_family == AF_LINK);
639 1.207 dyoung ifa_remove(ifp, ifa);
640 1.223 dyoung if_deactivate_sadl(ifp);
641 1.81 thorpej splx(s);
642 1.81 thorpej }
643 1.81 thorpej
644 1.274 rmind static void
645 1.274 rmind if_getindex(ifnet_t *ifp)
646 1.1 cgd {
647 1.274 rmind bool hitlimit = false;
648 1.492 yamaguch char xnamebuf[HOOKNAMSIZ];
649 1.231 dyoung
650 1.234 dyoung ifp->if_index_gen = index_gen++;
651 1.492 yamaguch snprintf(xnamebuf, sizeof(xnamebuf),
652 1.492 yamaguch "%s-lshk", ifp->if_xname);
653 1.492 yamaguch ifp->if_linkstate_hooks = simplehook_create(IPL_NET,
654 1.492 yamaguch xnamebuf);
655 1.234 dyoung
656 1.102 atatat ifp->if_index = if_index;
657 1.274 rmind if (ifindex2ifnet == NULL) {
658 1.102 atatat if_index++;
659 1.274 rmind goto skip;
660 1.274 rmind }
661 1.274 rmind while (if_byindex(ifp->if_index)) {
662 1.274 rmind /*
663 1.274 rmind * If we hit USHRT_MAX, we skip back to 0 since
664 1.274 rmind * there are a number of places where the value
665 1.274 rmind * of if_index or if_index itself is compared
666 1.274 rmind * to or stored in an unsigned short. By
667 1.274 rmind * jumping back, we won't botch those assignments
668 1.274 rmind * or comparisons.
669 1.274 rmind */
670 1.274 rmind if (++if_index == 0) {
671 1.274 rmind if_index = 1;
672 1.274 rmind } else if (if_index == USHRT_MAX) {
673 1.102 atatat /*
674 1.274 rmind * However, if we have to jump back to
675 1.274 rmind * zero *twice* without finding an empty
676 1.274 rmind * slot in ifindex2ifnet[], then there
677 1.274 rmind * there are too many (>65535) interfaces.
678 1.102 atatat */
679 1.274 rmind if (hitlimit) {
680 1.274 rmind panic("too many interfaces");
681 1.102 atatat }
682 1.274 rmind hitlimit = true;
683 1.274 rmind if_index = 1;
684 1.102 atatat }
685 1.274 rmind ifp->if_index = if_index;
686 1.274 rmind }
687 1.274 rmind skip:
688 1.49 itojun /*
689 1.316 ozaki * ifindex2ifnet is indexed by if_index. Since if_index will
690 1.316 ozaki * grow dynamically, it should grow too.
691 1.49 itojun */
692 1.316 ozaki if (ifindex2ifnet == NULL || ifp->if_index >= if_indexlim) {
693 1.131 itojun size_t m, n, oldlim;
694 1.183 christos void *q;
695 1.154 perry
696 1.131 itojun oldlim = if_indexlim;
697 1.53 thorpej while (ifp->if_index >= if_indexlim)
698 1.49 itojun if_indexlim <<= 1;
699 1.49 itojun
700 1.49 itojun /* grow ifindex2ifnet */
701 1.131 itojun m = oldlim * sizeof(struct ifnet *);
702 1.49 itojun n = if_indexlim * sizeof(struct ifnet *);
703 1.455 msaitoh q = malloc(n, M_IFADDR, M_WAITOK | M_ZERO);
704 1.185 dyoung if (ifindex2ifnet != NULL) {
705 1.230 dyoung memcpy(q, ifindex2ifnet, m);
706 1.230 dyoung free(ifindex2ifnet, M_IFADDR);
707 1.49 itojun }
708 1.49 itojun ifindex2ifnet = (struct ifnet **)q;
709 1.1 cgd }
710 1.274 rmind ifindex2ifnet[ifp->if_index] = ifp;
711 1.274 rmind }
712 1.274 rmind
713 1.274 rmind /*
714 1.307 ozaki * Initialize an interface and assign an index for it.
715 1.307 ozaki *
716 1.307 ozaki * It must be called prior to a device specific attach routine
717 1.307 ozaki * (e.g., ether_ifattach and ieee80211_ifattach) or if_alloc_sadl,
718 1.307 ozaki * and be followed by if_register:
719 1.307 ozaki *
720 1.307 ozaki * if_initialize(ifp);
721 1.307 ozaki * ether_ifattach(ifp, enaddr);
722 1.307 ozaki * if_register(ifp);
723 1.274 rmind */
724 1.486 riastrad void
725 1.307 ozaki if_initialize(ifnet_t *ifp)
726 1.274 rmind {
727 1.396 msaitoh
728 1.274 rmind KASSERT(if_indexlim > 0);
729 1.274 rmind TAILQ_INIT(&ifp->if_addrlist);
730 1.49 itojun
731 1.1 cgd /*
732 1.81 thorpej * Link level name is allocated later by a separate call to
733 1.81 thorpej * if_alloc_sadl().
734 1.1 cgd */
735 1.81 thorpej
736 1.40 thorpej if (ifp->if_snd.ifq_maxlen == 0)
737 1.94 itojun ifp->if_snd.ifq_maxlen = ifqmaxlen;
738 1.234 dyoung
739 1.42 is ifp->if_broadcastaddr = 0; /* reliably crash if used uninitialized */
740 1.57 thorpej
741 1.57 thorpej ifp->if_link_state = LINK_STATE_UNKNOWN;
742 1.325 roy ifp->if_link_queue = -1; /* all bits set, see link_state_change() */
743 1.480 roy ifp->if_link_scheduled = false;
744 1.57 thorpej
745 1.89 thorpej ifp->if_capenable = 0;
746 1.97 thorpej ifp->if_csum_flags_tx = 0;
747 1.97 thorpej ifp->if_csum_flags_rx = 0;
748 1.89 thorpej
749 1.86 thorpej #ifdef ALTQ
750 1.86 thorpej ifp->if_snd.altq_type = 0;
751 1.86 thorpej ifp->if_snd.altq_disc = NULL;
752 1.86 thorpej ifp->if_snd.altq_flags &= ALTQF_CANTCHANGE;
753 1.86 thorpej ifp->if_snd.altq_tbr = NULL;
754 1.86 thorpej ifp->if_snd.altq_ifp = ifp;
755 1.86 thorpej #endif
756 1.86 thorpej
757 1.358 ozaki IFQ_LOCK_INIT(&ifp->if_snd);
758 1.285 ozaki
759 1.265 rmind ifp->if_pfil = pfil_head_create(PFIL_TYPE_IFNET, ifp);
760 1.369 christos pfil_run_ifhooks(if_pfil, PFIL_IFNET_ATTACH, ifp);
761 1.87 thorpej
762 1.318 ozaki IF_AFDATA_LOCK_INIT(ifp);
763 1.318 ozaki
764 1.334 ozaki PSLIST_ENTRY_INIT(ifp, if_pslist_entry);
765 1.354 ozaki PSLIST_INIT(&ifp->if_addr_pslist);
766 1.334 ozaki psref_target_init(&ifp->if_psref, ifnet_psref_class);
767 1.336 ozaki ifp->if_ioctl_lock = mutex_obj_alloc(MUTEX_DEFAULT, IPL_NONE);
768 1.381 ozaki LIST_INIT(&ifp->if_multiaddrs);
769 1.486 riastrad if_stats_init(ifp);
770 1.334 ozaki
771 1.412 ozaki IFNET_GLOBAL_LOCK();
772 1.307 ozaki if_getindex(ifp);
773 1.412 ozaki IFNET_GLOBAL_UNLOCK();
774 1.307 ozaki }
775 1.307 ozaki
776 1.307 ozaki /*
777 1.307 ozaki * Register an interface to the list of "active" interfaces.
778 1.307 ozaki */
779 1.307 ozaki void
780 1.307 ozaki if_register(ifnet_t *ifp)
781 1.307 ozaki {
782 1.336 ozaki /*
783 1.487 blymn * If the driver has not supplied its own if_ioctl or if_stop,
784 1.487 blymn * then supply the default.
785 1.336 ozaki */
786 1.336 ozaki if (ifp->if_ioctl == NULL)
787 1.336 ozaki ifp->if_ioctl = ifioctl_common;
788 1.487 blymn if (ifp->if_stop == NULL)
789 1.487 blymn ifp->if_stop = if_nullstop;
790 1.307 ozaki
791 1.307 ozaki sysctl_sndq_setup(&ifp->if_sysctl_log, ifp->if_xname, &ifp->if_snd);
792 1.307 ozaki
793 1.152 matt if (!STAILQ_EMPTY(&domains))
794 1.147 tron if_attachdomain1(ifp);
795 1.147 tron
796 1.107 itojun /* Announce the interface. */
797 1.107 itojun rt_ifannouncemsg(ifp, IFAN_ARRIVAL);
798 1.296 ozaki
799 1.296 ozaki if (ifp->if_slowtimo != NULL) {
800 1.513 riastrad struct if_slowtimo_data *isd;
801 1.513 riastrad
802 1.513 riastrad isd = kmem_zalloc(sizeof(*isd), KM_SLEEP);
803 1.513 riastrad mutex_init(&isd->isd_lock, MUTEX_DEFAULT, IPL_SOFTCLOCK);
804 1.513 riastrad callout_init(&isd->isd_ch, CALLOUT_MPSAFE);
805 1.513 riastrad callout_setfunc(&isd->isd_ch, if_slowtimo_intr, ifp);
806 1.513 riastrad isd->isd_ifp = ifp;
807 1.513 riastrad
808 1.513 riastrad ifp->if_slowtimo_data = isd;
809 1.513 riastrad
810 1.513 riastrad if_slowtimo_intr(ifp);
811 1.514 riastrad
812 1.514 riastrad sysctl_watchdog_setup(ifp);
813 1.296 ozaki }
814 1.307 ozaki
815 1.332 knakahar if (ifp->if_transmit == NULL || ifp->if_transmit == if_nulltransmit)
816 1.332 knakahar ifp->if_transmit = if_transmit;
817 1.332 knakahar
818 1.412 ozaki IFNET_GLOBAL_LOCK();
819 1.307 ozaki TAILQ_INSERT_TAIL(&ifnet_list, ifp, if_list);
820 1.334 ozaki IFNET_WRITER_INSERT_TAIL(ifp);
821 1.412 ozaki IFNET_GLOBAL_UNLOCK();
822 1.307 ozaki }
823 1.307 ozaki
824 1.307 ozaki /*
825 1.323 ozaki * The if_percpuq framework
826 1.323 ozaki *
827 1.323 ozaki * It allows network device drivers to execute the network stack
828 1.323 ozaki * in softint (so called softint-based if_input). It utilizes
829 1.323 ozaki * softint and percpu ifqueue. It doesn't distribute any packets
830 1.323 ozaki * between CPUs, unlike pktqueue(9).
831 1.323 ozaki *
832 1.323 ozaki * Currently we support two options for device drivers to apply the framework:
833 1.323 ozaki * - Use it implicitly with less changes
834 1.323 ozaki * - If you use if_attach in driver's _attach function and if_input in
835 1.323 ozaki * driver's Rx interrupt handler, a packet is queued and a softint handles
836 1.323 ozaki * the packet implicitly
837 1.323 ozaki * - Use it explicitly in each driver (recommended)
838 1.323 ozaki * - You can use if_percpuq_* directly in your driver
839 1.323 ozaki * - In this case, you need to allocate struct if_percpuq in driver's softc
840 1.323 ozaki * - See wm(4) as a reference implementation
841 1.323 ozaki */
842 1.323 ozaki
843 1.323 ozaki static void
844 1.323 ozaki if_percpuq_softint(void *arg)
845 1.323 ozaki {
846 1.323 ozaki struct if_percpuq *ipq = arg;
847 1.323 ozaki struct ifnet *ifp = ipq->ipq_ifp;
848 1.323 ozaki struct mbuf *m;
849 1.323 ozaki
850 1.368 ozaki while ((m = if_percpuq_dequeue(ipq)) != NULL) {
851 1.469 thorpej if_statinc(ifp, if_ipackets);
852 1.428 msaitoh bpf_mtap(ifp, m, BPF_D_IN);
853 1.368 ozaki
854 1.323 ozaki ifp->_if_input(ifp, m);
855 1.368 ozaki }
856 1.323 ozaki }
857 1.323 ozaki
858 1.323 ozaki static void
859 1.323 ozaki if_percpuq_init_ifq(void *p, void *arg __unused, struct cpu_info *ci __unused)
860 1.323 ozaki {
861 1.323 ozaki struct ifqueue *const ifq = p;
862 1.323 ozaki
863 1.323 ozaki memset(ifq, 0, sizeof(*ifq));
864 1.323 ozaki ifq->ifq_maxlen = IFQ_MAXLEN;
865 1.323 ozaki }
866 1.323 ozaki
867 1.323 ozaki struct if_percpuq *
868 1.323 ozaki if_percpuq_create(struct ifnet *ifp)
869 1.323 ozaki {
870 1.323 ozaki struct if_percpuq *ipq;
871 1.422 ozaki u_int flags = SOFTINT_NET;
872 1.422 ozaki
873 1.422 ozaki flags |= if_is_mpsafe(ifp) ? SOFTINT_MPSAFE : 0;
874 1.323 ozaki
875 1.323 ozaki ipq = kmem_zalloc(sizeof(*ipq), KM_SLEEP);
876 1.323 ozaki ipq->ipq_ifp = ifp;
877 1.422 ozaki ipq->ipq_si = softint_establish(flags, if_percpuq_softint, ipq);
878 1.323 ozaki ipq->ipq_ifqs = percpu_alloc(sizeof(struct ifqueue));
879 1.323 ozaki percpu_foreach(ipq->ipq_ifqs, &if_percpuq_init_ifq, NULL);
880 1.323 ozaki
881 1.327 knakahar sysctl_percpuq_setup(&ifp->if_sysctl_log, ifp->if_xname, ipq);
882 1.327 knakahar
883 1.323 ozaki return ipq;
884 1.323 ozaki }
885 1.323 ozaki
886 1.323 ozaki static struct mbuf *
887 1.323 ozaki if_percpuq_dequeue(struct if_percpuq *ipq)
888 1.323 ozaki {
889 1.323 ozaki struct mbuf *m;
890 1.323 ozaki struct ifqueue *ifq;
891 1.323 ozaki
892 1.519 skrll const int s = splnet();
893 1.323 ozaki ifq = percpu_getref(ipq->ipq_ifqs);
894 1.323 ozaki IF_DEQUEUE(ifq, m);
895 1.323 ozaki percpu_putref(ipq->ipq_ifqs);
896 1.323 ozaki splx(s);
897 1.323 ozaki
898 1.323 ozaki return m;
899 1.323 ozaki }
900 1.323 ozaki
901 1.323 ozaki static void
902 1.323 ozaki if_percpuq_purge_ifq(void *p, void *arg __unused, struct cpu_info *ci __unused)
903 1.323 ozaki {
904 1.323 ozaki struct ifqueue *const ifq = p;
905 1.323 ozaki
906 1.323 ozaki IF_PURGE(ifq);
907 1.323 ozaki }
908 1.323 ozaki
909 1.323 ozaki void
910 1.323 ozaki if_percpuq_destroy(struct if_percpuq *ipq)
911 1.323 ozaki {
912 1.323 ozaki
913 1.323 ozaki /* if_detach may already destroy it */
914 1.323 ozaki if (ipq == NULL)
915 1.323 ozaki return;
916 1.323 ozaki
917 1.323 ozaki softint_disestablish(ipq->ipq_si);
918 1.323 ozaki percpu_foreach(ipq->ipq_ifqs, &if_percpuq_purge_ifq, NULL);
919 1.323 ozaki percpu_free(ipq->ipq_ifqs, sizeof(struct ifqueue));
920 1.363 ozaki kmem_free(ipq, sizeof(*ipq));
921 1.323 ozaki }
922 1.323 ozaki
923 1.323 ozaki void
924 1.323 ozaki if_percpuq_enqueue(struct if_percpuq *ipq, struct mbuf *m)
925 1.323 ozaki {
926 1.323 ozaki struct ifqueue *ifq;
927 1.323 ozaki
928 1.323 ozaki KASSERT(ipq != NULL);
929 1.323 ozaki
930 1.519 skrll const int s = splnet();
931 1.323 ozaki ifq = percpu_getref(ipq->ipq_ifqs);
932 1.323 ozaki if (IF_QFULL(ifq)) {
933 1.323 ozaki IF_DROP(ifq);
934 1.326 ozaki percpu_putref(ipq->ipq_ifqs);
935 1.323 ozaki m_freem(m);
936 1.323 ozaki goto out;
937 1.323 ozaki }
938 1.323 ozaki IF_ENQUEUE(ifq, m);
939 1.323 ozaki percpu_putref(ipq->ipq_ifqs);
940 1.323 ozaki
941 1.323 ozaki softint_schedule(ipq->ipq_si);
942 1.323 ozaki out:
943 1.323 ozaki splx(s);
944 1.323 ozaki }
945 1.323 ozaki
946 1.327 knakahar static void
947 1.327 knakahar if_percpuq_drops(void *p, void *arg, struct cpu_info *ci __unused)
948 1.327 knakahar {
949 1.327 knakahar struct ifqueue *const ifq = p;
950 1.327 knakahar int *sum = arg;
951 1.327 knakahar
952 1.327 knakahar *sum += ifq->ifq_drops;
953 1.327 knakahar }
954 1.327 knakahar
955 1.327 knakahar static int
956 1.327 knakahar sysctl_percpuq_drops_handler(SYSCTLFN_ARGS)
957 1.327 knakahar {
958 1.327 knakahar struct sysctlnode node;
959 1.327 knakahar struct if_percpuq *ipq;
960 1.327 knakahar int sum = 0;
961 1.327 knakahar int error;
962 1.327 knakahar
963 1.327 knakahar node = *rnode;
964 1.327 knakahar ipq = node.sysctl_data;
965 1.327 knakahar
966 1.327 knakahar percpu_foreach(ipq->ipq_ifqs, if_percpuq_drops, &sum);
967 1.327 knakahar
968 1.327 knakahar node.sysctl_data = ∑
969 1.327 knakahar error = sysctl_lookup(SYSCTLFN_CALL(&node));
970 1.327 knakahar if (error != 0 || newp == NULL)
971 1.327 knakahar return error;
972 1.327 knakahar
973 1.327 knakahar return 0;
974 1.327 knakahar }
975 1.327 knakahar
976 1.327 knakahar static void
977 1.327 knakahar sysctl_percpuq_setup(struct sysctllog **clog, const char* ifname,
978 1.327 knakahar struct if_percpuq *ipq)
979 1.327 knakahar {
980 1.327 knakahar const struct sysctlnode *cnode, *rnode;
981 1.327 knakahar
982 1.327 knakahar if (sysctl_createv(clog, 0, NULL, &rnode,
983 1.327 knakahar CTLFLAG_PERMANENT,
984 1.327 knakahar CTLTYPE_NODE, "interfaces",
985 1.327 knakahar SYSCTL_DESCR("Per-interface controls"),
986 1.327 knakahar NULL, 0, NULL, 0,
987 1.327 knakahar CTL_NET, CTL_CREATE, CTL_EOL) != 0)
988 1.327 knakahar goto bad;
989 1.327 knakahar
990 1.327 knakahar if (sysctl_createv(clog, 0, &rnode, &rnode,
991 1.327 knakahar CTLFLAG_PERMANENT,
992 1.327 knakahar CTLTYPE_NODE, ifname,
993 1.327 knakahar SYSCTL_DESCR("Interface controls"),
994 1.327 knakahar NULL, 0, NULL, 0,
995 1.327 knakahar CTL_CREATE, CTL_EOL) != 0)
996 1.327 knakahar goto bad;
997 1.327 knakahar
998 1.327 knakahar if (sysctl_createv(clog, 0, &rnode, &rnode,
999 1.327 knakahar CTLFLAG_PERMANENT,
1000 1.327 knakahar CTLTYPE_NODE, "rcvq",
1001 1.327 knakahar SYSCTL_DESCR("Interface input queue controls"),
1002 1.327 knakahar NULL, 0, NULL, 0,
1003 1.327 knakahar CTL_CREATE, CTL_EOL) != 0)
1004 1.327 knakahar goto bad;
1005 1.327 knakahar
1006 1.327 knakahar #ifdef NOTYET
1007 1.327 knakahar /* XXX Should show each per-CPU queue length? */
1008 1.327 knakahar if (sysctl_createv(clog, 0, &rnode, &rnode,
1009 1.327 knakahar CTLFLAG_PERMANENT,
1010 1.327 knakahar CTLTYPE_INT, "len",
1011 1.327 knakahar SYSCTL_DESCR("Current input queue length"),
1012 1.327 knakahar sysctl_percpuq_len, 0, NULL, 0,
1013 1.327 knakahar CTL_CREATE, CTL_EOL) != 0)
1014 1.327 knakahar goto bad;
1015 1.327 knakahar
1016 1.327 knakahar if (sysctl_createv(clog, 0, &rnode, &cnode,
1017 1.455 msaitoh CTLFLAG_PERMANENT | CTLFLAG_READWRITE,
1018 1.327 knakahar CTLTYPE_INT, "maxlen",
1019 1.327 knakahar SYSCTL_DESCR("Maximum allowed input queue length"),
1020 1.327 knakahar sysctl_percpuq_maxlen_handler, 0, (void *)ipq, 0,
1021 1.327 knakahar CTL_CREATE, CTL_EOL) != 0)
1022 1.327 knakahar goto bad;
1023 1.327 knakahar #endif
1024 1.327 knakahar
1025 1.327 knakahar if (sysctl_createv(clog, 0, &rnode, &cnode,
1026 1.327 knakahar CTLFLAG_PERMANENT,
1027 1.327 knakahar CTLTYPE_INT, "drops",
1028 1.327 knakahar SYSCTL_DESCR("Total packets dropped due to full input queue"),
1029 1.327 knakahar sysctl_percpuq_drops_handler, 0, (void *)ipq, 0,
1030 1.327 knakahar CTL_CREATE, CTL_EOL) != 0)
1031 1.327 knakahar goto bad;
1032 1.327 knakahar
1033 1.327 knakahar return;
1034 1.327 knakahar bad:
1035 1.327 knakahar printf("%s: could not attach sysctl nodes\n", ifname);
1036 1.327 knakahar return;
1037 1.327 knakahar }
1038 1.327 knakahar
1039 1.364 ozaki /*
1040 1.364 ozaki * The deferred if_start framework
1041 1.364 ozaki *
1042 1.364 ozaki * The common APIs to defer if_start to softint when if_start is requested
1043 1.364 ozaki * from a device driver running in hardware interrupt context.
1044 1.364 ozaki */
1045 1.364 ozaki /*
1046 1.364 ozaki * Call ifp->if_start (or equivalent) in a dedicated softint for
1047 1.364 ozaki * deferred if_start.
1048 1.364 ozaki */
1049 1.364 ozaki static void
1050 1.364 ozaki if_deferred_start_softint(void *arg)
1051 1.364 ozaki {
1052 1.364 ozaki struct if_deferred_start *ids = arg;
1053 1.364 ozaki struct ifnet *ifp = ids->ids_ifp;
1054 1.364 ozaki
1055 1.364 ozaki ids->ids_if_start(ifp);
1056 1.364 ozaki }
1057 1.364 ozaki
1058 1.364 ozaki /*
1059 1.364 ozaki * The default callback function for deferred if_start.
1060 1.364 ozaki */
1061 1.364 ozaki static void
1062 1.364 ozaki if_deferred_start_common(struct ifnet *ifp)
1063 1.364 ozaki {
1064 1.519 skrll const int s = splnet();
1065 1.364 ozaki if_start_lock(ifp);
1066 1.382 ozaki splx(s);
1067 1.364 ozaki }
1068 1.364 ozaki
1069 1.364 ozaki static inline bool
1070 1.364 ozaki if_snd_is_used(struct ifnet *ifp)
1071 1.364 ozaki {
1072 1.364 ozaki
1073 1.457 knakahar return ALTQ_IS_ENABLED(&ifp->if_snd) ||
1074 1.457 knakahar ifp->if_transmit == if_transmit ||
1075 1.457 knakahar ifp->if_transmit == NULL || ifp->if_transmit == if_nulltransmit;
1076 1.364 ozaki }
1077 1.364 ozaki
1078 1.364 ozaki /*
1079 1.364 ozaki * Schedule deferred if_start.
1080 1.364 ozaki */
1081 1.364 ozaki void
1082 1.364 ozaki if_schedule_deferred_start(struct ifnet *ifp)
1083 1.364 ozaki {
1084 1.364 ozaki
1085 1.364 ozaki KASSERT(ifp->if_deferred_start != NULL);
1086 1.364 ozaki
1087 1.364 ozaki if (if_snd_is_used(ifp) && IFQ_IS_EMPTY(&ifp->if_snd))
1088 1.364 ozaki return;
1089 1.364 ozaki
1090 1.364 ozaki softint_schedule(ifp->if_deferred_start->ids_si);
1091 1.364 ozaki }
1092 1.364 ozaki
1093 1.364 ozaki /*
1094 1.364 ozaki * Create an instance of deferred if_start. A driver should call the function
1095 1.364 ozaki * only if the driver needs deferred if_start. Drivers can setup their own
1096 1.364 ozaki * deferred if_start function via 2nd argument.
1097 1.364 ozaki */
1098 1.364 ozaki void
1099 1.364 ozaki if_deferred_start_init(struct ifnet *ifp, void (*func)(struct ifnet *))
1100 1.364 ozaki {
1101 1.364 ozaki struct if_deferred_start *ids;
1102 1.423 ozaki u_int flags = SOFTINT_NET;
1103 1.423 ozaki
1104 1.423 ozaki flags |= if_is_mpsafe(ifp) ? SOFTINT_MPSAFE : 0;
1105 1.364 ozaki
1106 1.364 ozaki ids = kmem_zalloc(sizeof(*ids), KM_SLEEP);
1107 1.364 ozaki ids->ids_ifp = ifp;
1108 1.423 ozaki ids->ids_si = softint_establish(flags, if_deferred_start_softint, ids);
1109 1.364 ozaki if (func != NULL)
1110 1.364 ozaki ids->ids_if_start = func;
1111 1.364 ozaki else
1112 1.364 ozaki ids->ids_if_start = if_deferred_start_common;
1113 1.364 ozaki
1114 1.364 ozaki ifp->if_deferred_start = ids;
1115 1.364 ozaki }
1116 1.364 ozaki
1117 1.364 ozaki static void
1118 1.364 ozaki if_deferred_start_destroy(struct ifnet *ifp)
1119 1.364 ozaki {
1120 1.364 ozaki
1121 1.364 ozaki if (ifp->if_deferred_start == NULL)
1122 1.364 ozaki return;
1123 1.364 ozaki
1124 1.364 ozaki softint_disestablish(ifp->if_deferred_start->ids_si);
1125 1.364 ozaki kmem_free(ifp->if_deferred_start, sizeof(*ifp->if_deferred_start));
1126 1.364 ozaki ifp->if_deferred_start = NULL;
1127 1.364 ozaki }
1128 1.327 knakahar
1129 1.323 ozaki /*
1130 1.323 ozaki * The common interface input routine that is called by device drivers,
1131 1.323 ozaki * which should be used only when the driver's rx handler already runs
1132 1.323 ozaki * in softint.
1133 1.323 ozaki */
1134 1.323 ozaki void
1135 1.323 ozaki if_input(struct ifnet *ifp, struct mbuf *m)
1136 1.323 ozaki {
1137 1.323 ozaki
1138 1.323 ozaki KASSERT(ifp->if_percpuq == NULL);
1139 1.323 ozaki KASSERT(!cpu_intr_p());
1140 1.323 ozaki
1141 1.469 thorpej if_statinc(ifp, if_ipackets);
1142 1.428 msaitoh bpf_mtap(ifp, m, BPF_D_IN);
1143 1.368 ozaki
1144 1.323 ozaki ifp->_if_input(ifp, m);
1145 1.323 ozaki }
1146 1.323 ozaki
1147 1.323 ozaki /*
1148 1.323 ozaki * DEPRECATED. Use if_initialize and if_register instead.
1149 1.307 ozaki * See the above comment of if_initialize.
1150 1.323 ozaki *
1151 1.323 ozaki * Note that it implicitly enables if_percpuq to make drivers easy to
1152 1.333 skrll * migrate softint-based if_input without much changes. If you don't
1153 1.323 ozaki * want to enable it, use if_initialize instead.
1154 1.307 ozaki */
1155 1.486 riastrad void
1156 1.307 ozaki if_attach(ifnet_t *ifp)
1157 1.307 ozaki {
1158 1.323 ozaki
1159 1.486 riastrad if_initialize(ifp);
1160 1.323 ozaki ifp->if_percpuq = if_percpuq_create(ifp);
1161 1.307 ozaki if_register(ifp);
1162 1.107 itojun }
1163 1.107 itojun
1164 1.107 itojun void
1165 1.163 thorpej if_attachdomain(void)
1166 1.107 itojun {
1167 1.107 itojun struct ifnet *ifp;
1168 1.519 skrll const int bound = curlwp_bind();
1169 1.107 itojun
1170 1.519 skrll int s = pserialize_read_enter();
1171 1.334 ozaki IFNET_READER_FOREACH(ifp) {
1172 1.334 ozaki struct psref psref;
1173 1.334 ozaki psref_acquire(&psref, &ifp->if_psref, ifnet_psref_class);
1174 1.334 ozaki pserialize_read_exit(s);
1175 1.107 itojun if_attachdomain1(ifp);
1176 1.334 ozaki s = pserialize_read_enter();
1177 1.334 ozaki psref_release(&psref, &ifp->if_psref, ifnet_psref_class);
1178 1.334 ozaki }
1179 1.334 ozaki pserialize_read_exit(s);
1180 1.339 ozaki curlwp_bindx(bound);
1181 1.107 itojun }
1182 1.107 itojun
1183 1.302 ozaki static void
1184 1.163 thorpej if_attachdomain1(struct ifnet *ifp)
1185 1.107 itojun {
1186 1.107 itojun struct domain *dp;
1187 1.109 itojun int s;
1188 1.109 itojun
1189 1.373 ozaki s = splsoftnet();
1190 1.107 itojun
1191 1.106 itojun /* address family dependent data region */
1192 1.106 itojun memset(ifp->if_afdata, 0, sizeof(ifp->if_afdata));
1193 1.152 matt DOMAIN_FOREACH(dp) {
1194 1.185 dyoung if (dp->dom_ifattach != NULL)
1195 1.106 itojun ifp->if_afdata[dp->dom_family] =
1196 1.106 itojun (*dp->dom_ifattach)(ifp);
1197 1.106 itojun }
1198 1.109 itojun
1199 1.109 itojun splx(s);
1200 1.1 cgd }
1201 1.53 thorpej
1202 1.53 thorpej /*
1203 1.53 thorpej * Deactivate an interface. This points all of the procedure
1204 1.53 thorpej * handles at error stubs. May be called from interrupt context.
1205 1.53 thorpej */
1206 1.53 thorpej void
1207 1.163 thorpej if_deactivate(struct ifnet *ifp)
1208 1.53 thorpej {
1209 1.53 thorpej int s;
1210 1.53 thorpej
1211 1.373 ozaki s = splsoftnet();
1212 1.53 thorpej
1213 1.53 thorpej ifp->if_output = if_nulloutput;
1214 1.323 ozaki ifp->_if_input = if_nullinput;
1215 1.53 thorpej ifp->if_start = if_nullstart;
1216 1.332 knakahar ifp->if_transmit = if_nulltransmit;
1217 1.53 thorpej ifp->if_ioctl = if_nullioctl;
1218 1.75 thorpej ifp->if_init = if_nullinit;
1219 1.75 thorpej ifp->if_stop = if_nullstop;
1220 1.516 riastrad if (ifp->if_slowtimo)
1221 1.516 riastrad ifp->if_slowtimo = if_nullslowtimo;
1222 1.53 thorpej ifp->if_drain = if_nulldrain;
1223 1.53 thorpej
1224 1.53 thorpej /* No more packets may be enqueued. */
1225 1.53 thorpej ifp->if_snd.ifq_maxlen = 0;
1226 1.53 thorpej
1227 1.53 thorpej splx(s);
1228 1.53 thorpej }
1229 1.53 thorpej
1230 1.348 ozaki bool
1231 1.367 ozaki if_is_deactivated(const struct ifnet *ifp)
1232 1.348 ozaki {
1233 1.348 ozaki
1234 1.348 ozaki return ifp->if_output == if_nulloutput;
1235 1.348 ozaki }
1236 1.348 ozaki
1237 1.206 dyoung void
1238 1.218 dyoung if_purgeaddrs(struct ifnet *ifp, int family, void (*purgeaddr)(struct ifaddr *))
1239 1.206 dyoung {
1240 1.289 ozaki struct ifaddr *ifa, *nifa;
1241 1.357 ozaki int s;
1242 1.206 dyoung
1243 1.357 ozaki s = pserialize_read_enter();
1244 1.354 ozaki for (ifa = IFADDR_READER_FIRST(ifp); ifa; ifa = nifa) {
1245 1.354 ozaki nifa = IFADDR_READER_NEXT(ifa);
1246 1.206 dyoung if (ifa->ifa_addr->sa_family != family)
1247 1.206 dyoung continue;
1248 1.357 ozaki pserialize_read_exit(s);
1249 1.357 ozaki
1250 1.206 dyoung (*purgeaddr)(ifa);
1251 1.357 ozaki
1252 1.357 ozaki s = pserialize_read_enter();
1253 1.206 dyoung }
1254 1.357 ozaki pserialize_read_exit(s);
1255 1.206 dyoung }
1256 1.206 dyoung
1257 1.349 ozaki #ifdef IFAREF_DEBUG
1258 1.349 ozaki static struct ifaddr **ifa_list;
1259 1.349 ozaki static int ifa_list_size;
1260 1.349 ozaki
1261 1.349 ozaki /* Depends on only one if_attach runs at once */
1262 1.349 ozaki static void
1263 1.349 ozaki if_build_ifa_list(struct ifnet *ifp)
1264 1.349 ozaki {
1265 1.349 ozaki struct ifaddr *ifa;
1266 1.349 ozaki int i;
1267 1.349 ozaki
1268 1.349 ozaki KASSERT(ifa_list == NULL);
1269 1.349 ozaki KASSERT(ifa_list_size == 0);
1270 1.349 ozaki
1271 1.354 ozaki IFADDR_READER_FOREACH(ifa, ifp)
1272 1.349 ozaki ifa_list_size++;
1273 1.349 ozaki
1274 1.349 ozaki ifa_list = kmem_alloc(sizeof(*ifa) * ifa_list_size, KM_SLEEP);
1275 1.349 ozaki i = 0;
1276 1.354 ozaki IFADDR_READER_FOREACH(ifa, ifp) {
1277 1.349 ozaki ifa_list[i++] = ifa;
1278 1.349 ozaki ifaref(ifa);
1279 1.349 ozaki }
1280 1.349 ozaki }
1281 1.349 ozaki
1282 1.349 ozaki static void
1283 1.349 ozaki if_check_and_free_ifa_list(struct ifnet *ifp)
1284 1.349 ozaki {
1285 1.349 ozaki int i;
1286 1.349 ozaki struct ifaddr *ifa;
1287 1.349 ozaki
1288 1.349 ozaki if (ifa_list == NULL)
1289 1.349 ozaki return;
1290 1.349 ozaki
1291 1.349 ozaki for (i = 0; i < ifa_list_size; i++) {
1292 1.349 ozaki char buf[64];
1293 1.349 ozaki
1294 1.349 ozaki ifa = ifa_list[i];
1295 1.349 ozaki sockaddr_format(ifa->ifa_addr, buf, sizeof(buf));
1296 1.349 ozaki if (ifa->ifa_refcnt > 1) {
1297 1.349 ozaki log(LOG_WARNING,
1298 1.349 ozaki "ifa(%s) still referenced (refcnt=%d)\n",
1299 1.349 ozaki buf, ifa->ifa_refcnt - 1);
1300 1.349 ozaki } else
1301 1.349 ozaki log(LOG_DEBUG,
1302 1.349 ozaki "ifa(%s) not referenced (refcnt=%d)\n",
1303 1.349 ozaki buf, ifa->ifa_refcnt - 1);
1304 1.349 ozaki ifafree(ifa);
1305 1.349 ozaki }
1306 1.349 ozaki
1307 1.349 ozaki kmem_free(ifa_list, sizeof(*ifa) * ifa_list_size);
1308 1.349 ozaki ifa_list = NULL;
1309 1.349 ozaki ifa_list_size = 0;
1310 1.349 ozaki }
1311 1.349 ozaki #endif
1312 1.349 ozaki
1313 1.53 thorpej /*
1314 1.53 thorpej * Detach an interface from the list of "active" interfaces,
1315 1.53 thorpej * freeing any resources as we go along.
1316 1.53 thorpej *
1317 1.53 thorpej * NOTE: This routine must be called with a valid thread context,
1318 1.53 thorpej * as it may block.
1319 1.53 thorpej */
1320 1.53 thorpej void
1321 1.163 thorpej if_detach(struct ifnet *ifp)
1322 1.53 thorpej {
1323 1.56 thorpej struct socket so;
1324 1.178 dyoung struct ifaddr *ifa;
1325 1.53 thorpej #ifdef IFAREF_DEBUG
1326 1.53 thorpej struct ifaddr *last_ifa = NULL;
1327 1.53 thorpej #endif
1328 1.56 thorpej struct domain *dp;
1329 1.141 matt const struct protosw *pr;
1330 1.519 skrll int i, family, purged;
1331 1.53 thorpej
1332 1.349 ozaki #ifdef IFAREF_DEBUG
1333 1.349 ozaki if_build_ifa_list(ifp);
1334 1.349 ozaki #endif
1335 1.56 thorpej /*
1336 1.56 thorpej * XXX It's kind of lame that we have to have the
1337 1.56 thorpej * XXX socket structure...
1338 1.56 thorpej */
1339 1.56 thorpej memset(&so, 0, sizeof(so));
1340 1.53 thorpej
1341 1.519 skrll const int s = splnet();
1342 1.53 thorpej
1343 1.334 ozaki sysctl_teardown(&ifp->if_sysctl_log);
1344 1.480 roy
1345 1.413 ozaki IFNET_LOCK(ifp);
1346 1.480 roy
1347 1.480 roy /*
1348 1.480 roy * Unset all queued link states and pretend a
1349 1.480 roy * link state change is scheduled.
1350 1.488 andvar * This stops any more link state changes occurring for this
1351 1.480 roy * interface while it's being detached so it's safe
1352 1.480 roy * to drain the workqueue.
1353 1.480 roy */
1354 1.480 roy IF_LINK_STATE_CHANGE_LOCK(ifp);
1355 1.480 roy ifp->if_link_queue = -1; /* all bits set, see link_state_change() */
1356 1.480 roy ifp->if_link_scheduled = true;
1357 1.480 roy IF_LINK_STATE_CHANGE_UNLOCK(ifp);
1358 1.480 roy workqueue_wait(ifnet_link_state_wq, &ifp->if_link_work);
1359 1.480 roy
1360 1.350 ozaki if_deactivate(ifp);
1361 1.413 ozaki IFNET_UNLOCK(ifp);
1362 1.334 ozaki
1363 1.436 christos /*
1364 1.436 christos * Unlink from the list and wait for all readers to leave
1365 1.436 christos * from pserialize read sections. Note that we can't do
1366 1.436 christos * psref_target_destroy here. See below.
1367 1.436 christos */
1368 1.436 christos IFNET_GLOBAL_LOCK();
1369 1.436 christos ifindex2ifnet[ifp->if_index] = NULL;
1370 1.436 christos TAILQ_REMOVE(&ifnet_list, ifp, if_list);
1371 1.436 christos IFNET_WRITER_REMOVE(ifp);
1372 1.436 christos pserialize_perform(ifnet_psz);
1373 1.436 christos IFNET_GLOBAL_UNLOCK();
1374 1.436 christos
1375 1.513 riastrad if (ifp->if_slowtimo != NULL) {
1376 1.513 riastrad struct if_slowtimo_data *isd = ifp->if_slowtimo_data;
1377 1.513 riastrad
1378 1.513 riastrad mutex_enter(&isd->isd_lock);
1379 1.513 riastrad isd->isd_dying = true;
1380 1.513 riastrad mutex_exit(&isd->isd_lock);
1381 1.513 riastrad callout_halt(&isd->isd_ch, NULL);
1382 1.513 riastrad workqueue_wait(if_slowtimo_wq, &isd->isd_work);
1383 1.513 riastrad callout_destroy(&isd->isd_ch);
1384 1.513 riastrad mutex_destroy(&isd->isd_lock);
1385 1.513 riastrad kmem_free(isd, sizeof(*isd));
1386 1.513 riastrad
1387 1.513 riastrad ifp->if_slowtimo_data = NULL; /* paraonia */
1388 1.513 riastrad ifp->if_slowtimo = NULL; /* paranoia */
1389 1.296 ozaki }
1390 1.364 ozaki if_deferred_start_destroy(ifp);
1391 1.296 ozaki
1392 1.53 thorpej /*
1393 1.53 thorpej * Do an if_down() to give protocols a chance to do something.
1394 1.53 thorpej */
1395 1.403 ozaki if_down_deactivated(ifp);
1396 1.86 thorpej
1397 1.86 thorpej #ifdef ALTQ
1398 1.86 thorpej if (ALTQ_IS_ENABLED(&ifp->if_snd))
1399 1.86 thorpej altq_disable(&ifp->if_snd);
1400 1.86 thorpej if (ALTQ_IS_ATTACHED(&ifp->if_snd))
1401 1.86 thorpej altq_detach(&ifp->if_snd);
1402 1.87 thorpej #endif
1403 1.87 thorpej
1404 1.166 liamjfoy #if NCARP > 0
1405 1.166 liamjfoy /* Remove the interface from any carp group it is a part of. */
1406 1.185 dyoung if (ifp->if_carp != NULL && ifp->if_type != IFT_CARP)
1407 1.166 liamjfoy carp_ifdetach(ifp);
1408 1.166 liamjfoy #endif
1409 1.166 liamjfoy
1410 1.53 thorpej /*
1411 1.53 thorpej * Rip all the addresses off the interface. This should make
1412 1.53 thorpej * all of the routes go away.
1413 1.178 dyoung *
1414 1.178 dyoung * pr_usrreq calls can remove an arbitrary number of ifaddrs
1415 1.178 dyoung * from the list, including our "cursor", ifa. For safety,
1416 1.178 dyoung * and to honor the TAILQ abstraction, I just restart the
1417 1.178 dyoung * loop after each removal. Note that the loop will exit
1418 1.178 dyoung * when all of the remaining ifaddrs belong to the AF_LINK
1419 1.178 dyoung * family. I am counting on the historical fact that at
1420 1.178 dyoung * least one pr_usrreq in each address domain removes at
1421 1.178 dyoung * least one ifaddr.
1422 1.53 thorpej */
1423 1.178 dyoung again:
1424 1.357 ozaki /*
1425 1.357 ozaki * At this point, no other one tries to remove ifa in the list,
1426 1.407 ozaki * so we don't need to take a lock or psref. Avoid using
1427 1.407 ozaki * IFADDR_READER_FOREACH to pass over an inspection of contract
1428 1.407 ozaki * violations of pserialize.
1429 1.357 ozaki */
1430 1.407 ozaki IFADDR_WRITER_FOREACH(ifa, ifp) {
1431 1.56 thorpej family = ifa->ifa_addr->sa_family;
1432 1.53 thorpej #ifdef IFAREF_DEBUG
1433 1.53 thorpej printf("if_detach: ifaddr %p, family %d, refcnt %d\n",
1434 1.56 thorpej ifa, family, ifa->ifa_refcnt);
1435 1.53 thorpej if (last_ifa != NULL && ifa == last_ifa)
1436 1.56 thorpej panic("if_detach: loop detected");
1437 1.53 thorpej last_ifa = ifa;
1438 1.53 thorpej #endif
1439 1.178 dyoung if (family == AF_LINK)
1440 1.118 itojun continue;
1441 1.118 itojun dp = pffinddomain(family);
1442 1.384 ozaki KASSERTMSG(dp != NULL, "no domain for AF %d", family);
1443 1.160 gdt /*
1444 1.160 gdt * XXX These PURGEIF calls are redundant with the
1445 1.160 gdt * purge-all-families calls below, but are left in for
1446 1.160 gdt * now both to make a smaller change, and to avoid
1447 1.160 gdt * unplanned interactions with clearing of
1448 1.160 gdt * ifp->if_addrlist.
1449 1.160 gdt */
1450 1.118 itojun purged = 0;
1451 1.322 riastrad for (pr = dp->dom_protosw;
1452 1.322 riastrad pr < dp->dom_protoswNPROTOSW; pr++) {
1453 1.118 itojun so.so_proto = pr;
1454 1.275 rmind if (pr->pr_usrreqs) {
1455 1.290 rtr (void) (*pr->pr_usrreqs->pr_purgeif)(&so, ifp);
1456 1.118 itojun purged = 1;
1457 1.53 thorpej }
1458 1.118 itojun }
1459 1.118 itojun if (purged == 0) {
1460 1.118 itojun /*
1461 1.118 itojun * XXX What's really the best thing to do
1462 1.135 keihan * XXX here? --thorpej (at) NetBSD.org
1463 1.118 itojun */
1464 1.118 itojun printf("if_detach: WARNING: AF %d not purged\n",
1465 1.118 itojun family);
1466 1.207 dyoung ifa_remove(ifp, ifa);
1467 1.53 thorpej }
1468 1.178 dyoung goto again;
1469 1.53 thorpej }
1470 1.118 itojun
1471 1.426 ozaki if_free_sadl(ifp, 1);
1472 1.53 thorpej
1473 1.427 ozaki restart:
1474 1.427 ozaki IFADDR_WRITER_FOREACH(ifa, ifp) {
1475 1.427 ozaki family = ifa->ifa_addr->sa_family;
1476 1.427 ozaki KASSERT(family == AF_LINK);
1477 1.427 ozaki ifa_remove(ifp, ifa);
1478 1.427 ozaki goto restart;
1479 1.427 ozaki }
1480 1.427 ozaki
1481 1.362 ozaki /* Delete stray routes from the routing table. */
1482 1.362 ozaki for (i = 0; i <= AF_MAX; i++)
1483 1.362 ozaki rt_delete_matched_entries(i, if_delroute_matcher, ifp);
1484 1.106 itojun
1485 1.152 matt DOMAIN_FOREACH(dp) {
1486 1.185 dyoung if (dp->dom_ifdetach != NULL && ifp->if_afdata[dp->dom_family])
1487 1.260 christos {
1488 1.260 christos void *p = ifp->if_afdata[dp->dom_family];
1489 1.260 christos if (p) {
1490 1.260 christos ifp->if_afdata[dp->dom_family] = NULL;
1491 1.260 christos (*dp->dom_ifdetach)(ifp, p);
1492 1.260 christos }
1493 1.260 christos }
1494 1.160 gdt
1495 1.160 gdt /*
1496 1.160 gdt * One would expect multicast memberships (INET and
1497 1.160 gdt * INET6) on UDP sockets to be purged by the PURGEIF
1498 1.160 gdt * calls above, but if all addresses were removed from
1499 1.160 gdt * the interface prior to destruction, the calls will
1500 1.160 gdt * not be made (e.g. ppp, for which pppd(8) generally
1501 1.160 gdt * removes addresses before destroying the interface).
1502 1.160 gdt * Because there is no invariant that multicast
1503 1.160 gdt * memberships only exist for interfaces with IPv4
1504 1.160 gdt * addresses, we must call PURGEIF regardless of
1505 1.160 gdt * addresses. (Protocols which might store ifnet
1506 1.160 gdt * pointers are marked with PR_PURGEIF.)
1507 1.160 gdt */
1508 1.185 dyoung for (pr = dp->dom_protosw; pr < dp->dom_protoswNPROTOSW; pr++) {
1509 1.160 gdt so.so_proto = pr;
1510 1.275 rmind if (pr->pr_usrreqs && pr->pr_flags & PR_PURGEIF)
1511 1.290 rtr (void)(*pr->pr_usrreqs->pr_purgeif)(&so, ifp);
1512 1.160 gdt }
1513 1.53 thorpej }
1514 1.57 thorpej
1515 1.436 christos /*
1516 1.436 christos * Must be done after the above pr_purgeif because if_psref may be
1517 1.436 christos * still used in pr_purgeif.
1518 1.436 christos */
1519 1.414 ozaki psref_target_destroy(&ifp->if_psref, ifnet_psref_class);
1520 1.414 ozaki PSLIST_ENTRY_DESTROY(ifp, if_pslist_entry);
1521 1.414 ozaki
1522 1.369 christos pfil_run_ifhooks(if_pfil, PFIL_IFNET_DETACH, ifp);
1523 1.265 rmind (void)pfil_head_destroy(ifp->if_pfil);
1524 1.184 dyoung
1525 1.57 thorpej /* Announce that the interface is gone. */
1526 1.57 thorpej rt_ifannouncemsg(ifp, IFAN_DEPARTURE);
1527 1.93 itojun
1528 1.320 ozaki IF_AFDATA_LOCK_DESTROY(ifp);
1529 1.320 ozaki
1530 1.95 itojun /*
1531 1.168 matt * remove packets that came from ifp, from software interrupt queues.
1532 1.95 itojun */
1533 1.168 matt DOMAIN_FOREACH(dp) {
1534 1.168 matt for (i = 0; i < __arraycount(dp->dom_ifqueues); i++) {
1535 1.260 christos struct ifqueue *iq = dp->dom_ifqueues[i];
1536 1.260 christos if (iq == NULL)
1537 1.168 matt break;
1538 1.260 christos dp->dom_ifqueues[i] = NULL;
1539 1.260 christos if_detach_queues(ifp, iq);
1540 1.168 matt }
1541 1.168 matt }
1542 1.95 itojun
1543 1.276 rmind /*
1544 1.276 rmind * IP queues have to be processed separately: net-queue barrier
1545 1.276 rmind * ensures that the packets are dequeued while a cross-call will
1546 1.276 rmind * ensure that the interrupts have completed. FIXME: not quite..
1547 1.276 rmind */
1548 1.278 he #ifdef INET
1549 1.276 rmind pktq_barrier(ip_pktq);
1550 1.278 he #endif
1551 1.281 rmind #ifdef INET6
1552 1.293 pooka if (in6_present)
1553 1.293 pooka pktq_barrier(ip6_pktq);
1554 1.281 rmind #endif
1555 1.463 uwe xc_barrier(0);
1556 1.276 rmind
1557 1.323 ozaki if (ifp->if_percpuq != NULL) {
1558 1.323 ozaki if_percpuq_destroy(ifp->if_percpuq);
1559 1.323 ozaki ifp->if_percpuq = NULL;
1560 1.323 ozaki }
1561 1.323 ozaki
1562 1.414 ozaki mutex_obj_free(ifp->if_ioctl_lock);
1563 1.414 ozaki ifp->if_ioctl_lock = NULL;
1564 1.419 ozaki mutex_obj_free(ifp->if_snd.ifq_lock);
1565 1.469 thorpej if_stats_fini(ifp);
1566 1.492 yamaguch KASSERT(!simplehook_has_hooks(ifp->if_linkstate_hooks));
1567 1.492 yamaguch simplehook_destroy(ifp->if_linkstate_hooks);
1568 1.414 ozaki
1569 1.53 thorpej splx(s);
1570 1.349 ozaki
1571 1.349 ozaki #ifdef IFAREF_DEBUG
1572 1.349 ozaki if_check_and_free_ifa_list(ifp);
1573 1.349 ozaki #endif
1574 1.95 itojun }
1575 1.95 itojun
1576 1.95 itojun static void
1577 1.163 thorpej if_detach_queues(struct ifnet *ifp, struct ifqueue *q)
1578 1.95 itojun {
1579 1.95 itojun struct mbuf *m, *prev, *next;
1580 1.95 itojun
1581 1.95 itojun prev = NULL;
1582 1.185 dyoung for (m = q->ifq_head; m != NULL; m = next) {
1583 1.274 rmind KASSERT((m->m_flags & M_PKTHDR) != 0);
1584 1.274 rmind
1585 1.95 itojun next = m->m_nextpkt;
1586 1.338 ozaki if (m->m_pkthdr.rcvif_index != ifp->if_index) {
1587 1.96 itojun prev = m;
1588 1.95 itojun continue;
1589 1.96 itojun }
1590 1.95 itojun
1591 1.185 dyoung if (prev != NULL)
1592 1.95 itojun prev->m_nextpkt = m->m_nextpkt;
1593 1.95 itojun else
1594 1.95 itojun q->ifq_head = m->m_nextpkt;
1595 1.95 itojun if (q->ifq_tail == m)
1596 1.95 itojun q->ifq_tail = prev;
1597 1.95 itojun q->ifq_len--;
1598 1.95 itojun
1599 1.95 itojun m->m_nextpkt = NULL;
1600 1.95 itojun m_freem(m);
1601 1.95 itojun IF_DROP(q);
1602 1.95 itojun }
1603 1.53 thorpej }
1604 1.53 thorpej
1605 1.53 thorpej /*
1606 1.53 thorpej * Callback for a radix tree walk to delete all references to an
1607 1.53 thorpej * ifnet.
1608 1.53 thorpej */
1609 1.163 thorpej static int
1610 1.362 ozaki if_delroute_matcher(struct rtentry *rt, void *v)
1611 1.53 thorpej {
1612 1.55 itojun struct ifnet *ifp = (struct ifnet *)v;
1613 1.53 thorpej
1614 1.362 ozaki if (rt->rt_ifp == ifp)
1615 1.362 ozaki return 1;
1616 1.362 ozaki else
1617 1.185 dyoung return 0;
1618 1.53 thorpej }
1619 1.53 thorpej
1620 1.1 cgd /*
1621 1.63 thorpej * Create a clone network interface.
1622 1.63 thorpej */
1623 1.302 ozaki static int
1624 1.163 thorpej if_clone_create(const char *name)
1625 1.63 thorpej {
1626 1.63 thorpej struct if_clone *ifc;
1627 1.63 thorpej int unit;
1628 1.336 ozaki struct ifnet *ifp;
1629 1.336 ozaki struct psref psref;
1630 1.63 thorpej
1631 1.372 ozaki KASSERT(mutex_owned(&if_clone_mtx));
1632 1.372 ozaki
1633 1.63 thorpej ifc = if_clone_lookup(name, &unit);
1634 1.63 thorpej if (ifc == NULL)
1635 1.185 dyoung return EINVAL;
1636 1.63 thorpej
1637 1.336 ozaki ifp = if_get(name, &psref);
1638 1.336 ozaki if (ifp != NULL) {
1639 1.336 ozaki if_put(ifp, &psref);
1640 1.185 dyoung return EEXIST;
1641 1.336 ozaki }
1642 1.63 thorpej
1643 1.185 dyoung return (*ifc->ifc_create)(ifc, unit);
1644 1.63 thorpej }
1645 1.63 thorpej
1646 1.63 thorpej /*
1647 1.63 thorpej * Destroy a clone network interface.
1648 1.63 thorpej */
1649 1.302 ozaki static int
1650 1.163 thorpej if_clone_destroy(const char *name)
1651 1.63 thorpej {
1652 1.63 thorpej struct if_clone *ifc;
1653 1.63 thorpej struct ifnet *ifp;
1654 1.336 ozaki struct psref psref;
1655 1.458 ozaki int error;
1656 1.497 riastrad int (*if_ioctlfn)(struct ifnet *, u_long, void *);
1657 1.63 thorpej
1658 1.372 ozaki KASSERT(mutex_owned(&if_clone_mtx));
1659 1.372 ozaki
1660 1.63 thorpej ifc = if_clone_lookup(name, NULL);
1661 1.63 thorpej if (ifc == NULL)
1662 1.185 dyoung return EINVAL;
1663 1.63 thorpej
1664 1.336 ozaki if (ifc->ifc_destroy == NULL)
1665 1.336 ozaki return EOPNOTSUPP;
1666 1.336 ozaki
1667 1.336 ozaki ifp = if_get(name, &psref);
1668 1.63 thorpej if (ifp == NULL)
1669 1.185 dyoung return ENXIO;
1670 1.63 thorpej
1671 1.336 ozaki /* We have to disable ioctls here */
1672 1.413 ozaki IFNET_LOCK(ifp);
1673 1.497 riastrad if_ioctlfn = ifp->if_ioctl;
1674 1.336 ozaki ifp->if_ioctl = if_nullioctl;
1675 1.413 ozaki IFNET_UNLOCK(ifp);
1676 1.336 ozaki
1677 1.336 ozaki /*
1678 1.336 ozaki * We cannot call ifc_destroy with holding ifp.
1679 1.336 ozaki * Releasing ifp here is safe thanks to if_clone_mtx.
1680 1.336 ozaki */
1681 1.336 ozaki if_put(ifp, &psref);
1682 1.63 thorpej
1683 1.458 ozaki error = (*ifc->ifc_destroy)(ifp);
1684 1.458 ozaki
1685 1.458 ozaki if (error != 0) {
1686 1.458 ozaki /* We have to restore if_ioctl on error */
1687 1.458 ozaki IFNET_LOCK(ifp);
1688 1.497 riastrad ifp->if_ioctl = if_ioctlfn;
1689 1.458 ozaki IFNET_UNLOCK(ifp);
1690 1.458 ozaki }
1691 1.458 ozaki
1692 1.458 ozaki return error;
1693 1.63 thorpej }
1694 1.63 thorpej
1695 1.379 knakahar static bool
1696 1.379 knakahar if_is_unit(const char *name)
1697 1.379 knakahar {
1698 1.379 knakahar
1699 1.455 msaitoh while (*name != '\0') {
1700 1.379 knakahar if (*name < '0' || *name > '9')
1701 1.379 knakahar return false;
1702 1.379 knakahar name++;
1703 1.379 knakahar }
1704 1.379 knakahar
1705 1.379 knakahar return true;
1706 1.379 knakahar }
1707 1.379 knakahar
1708 1.63 thorpej /*
1709 1.63 thorpej * Look up a network interface cloner.
1710 1.63 thorpej */
1711 1.163 thorpej static struct if_clone *
1712 1.163 thorpej if_clone_lookup(const char *name, int *unitp)
1713 1.63 thorpej {
1714 1.63 thorpej struct if_clone *ifc;
1715 1.63 thorpej const char *cp;
1716 1.262 christos char *dp, ifname[IFNAMSIZ + 3];
1717 1.128 itojun int unit;
1718 1.63 thorpej
1719 1.372 ozaki KASSERT(mutex_owned(&if_clone_mtx));
1720 1.372 ozaki
1721 1.262 christos strcpy(ifname, "if_");
1722 1.128 itojun /* separate interface name from unit */
1723 1.379 knakahar /* TODO: search unit number from backward */
1724 1.262 christos for (dp = ifname + 3, cp = name; cp - name < IFNAMSIZ &&
1725 1.379 knakahar *cp && !if_is_unit(cp);)
1726 1.262 christos *dp++ = *cp++;
1727 1.128 itojun
1728 1.128 itojun if (cp == name || cp - name == IFNAMSIZ || !*cp)
1729 1.185 dyoung return NULL; /* No name or unit number */
1730 1.262 christos *dp++ = '\0';
1731 1.128 itojun
1732 1.262 christos again:
1733 1.128 itojun LIST_FOREACH(ifc, &if_cloners, ifc_list) {
1734 1.262 christos if (strcmp(ifname + 3, ifc->ifc_name) == 0)
1735 1.128 itojun break;
1736 1.63 thorpej }
1737 1.63 thorpej
1738 1.262 christos if (ifc == NULL) {
1739 1.375 christos int error;
1740 1.375 christos if (*ifname == '\0')
1741 1.375 christos return NULL;
1742 1.375 christos mutex_exit(&if_clone_mtx);
1743 1.375 christos error = module_autoload(ifname, MODULE_CLASS_DRIVER);
1744 1.375 christos mutex_enter(&if_clone_mtx);
1745 1.375 christos if (error)
1746 1.262 christos return NULL;
1747 1.262 christos *ifname = '\0';
1748 1.262 christos goto again;
1749 1.262 christos }
1750 1.63 thorpej
1751 1.128 itojun unit = 0;
1752 1.129 itojun while (cp - name < IFNAMSIZ && *cp) {
1753 1.245 christos if (*cp < '0' || *cp > '9' || unit >= INT_MAX / 10) {
1754 1.63 thorpej /* Bogus unit number. */
1755 1.185 dyoung return NULL;
1756 1.63 thorpej }
1757 1.128 itojun unit = (unit * 10) + (*cp++ - '0');
1758 1.63 thorpej }
1759 1.63 thorpej
1760 1.63 thorpej if (unitp != NULL)
1761 1.128 itojun *unitp = unit;
1762 1.185 dyoung return ifc;
1763 1.63 thorpej }
1764 1.63 thorpej
1765 1.63 thorpej /*
1766 1.63 thorpej * Register a network interface cloner.
1767 1.63 thorpej */
1768 1.63 thorpej void
1769 1.163 thorpej if_clone_attach(struct if_clone *ifc)
1770 1.63 thorpej {
1771 1.63 thorpej
1772 1.372 ozaki mutex_enter(&if_clone_mtx);
1773 1.63 thorpej LIST_INSERT_HEAD(&if_cloners, ifc, ifc_list);
1774 1.67 thorpej if_cloners_count++;
1775 1.372 ozaki mutex_exit(&if_clone_mtx);
1776 1.63 thorpej }
1777 1.63 thorpej
1778 1.63 thorpej /*
1779 1.63 thorpej * Unregister a network interface cloner.
1780 1.63 thorpej */
1781 1.63 thorpej void
1782 1.163 thorpej if_clone_detach(struct if_clone *ifc)
1783 1.63 thorpej {
1784 1.63 thorpej
1785 1.377 christos mutex_enter(&if_clone_mtx);
1786 1.63 thorpej LIST_REMOVE(ifc, ifc_list);
1787 1.67 thorpej if_cloners_count--;
1788 1.377 christos mutex_exit(&if_clone_mtx);
1789 1.67 thorpej }
1790 1.67 thorpej
1791 1.67 thorpej /*
1792 1.67 thorpej * Provide list of interface cloners to userspace.
1793 1.67 thorpej */
1794 1.315 martin int
1795 1.315 martin if_clone_list(int buf_count, char *buffer, int *total)
1796 1.67 thorpej {
1797 1.67 thorpej char outbuf[IFNAMSIZ], *dst;
1798 1.67 thorpej struct if_clone *ifc;
1799 1.67 thorpej int count, error = 0;
1800 1.67 thorpej
1801 1.372 ozaki mutex_enter(&if_clone_mtx);
1802 1.315 martin *total = if_cloners_count;
1803 1.315 martin if ((dst = buffer) == NULL) {
1804 1.67 thorpej /* Just asking how many there are. */
1805 1.372 ozaki goto out;
1806 1.67 thorpej }
1807 1.67 thorpej
1808 1.372 ozaki if (buf_count < 0) {
1809 1.372 ozaki error = EINVAL;
1810 1.372 ozaki goto out;
1811 1.372 ozaki }
1812 1.67 thorpej
1813 1.315 martin count = (if_cloners_count < buf_count) ?
1814 1.315 martin if_cloners_count : buf_count;
1815 1.67 thorpej
1816 1.67 thorpej for (ifc = LIST_FIRST(&if_cloners); ifc != NULL && count != 0;
1817 1.67 thorpej ifc = LIST_NEXT(ifc, ifc_list), count--, dst += IFNAMSIZ) {
1818 1.175 christos (void)strncpy(outbuf, ifc->ifc_name, sizeof(outbuf));
1819 1.372 ozaki if (outbuf[sizeof(outbuf) - 1] != '\0') {
1820 1.372 ozaki error = ENAMETOOLONG;
1821 1.372 ozaki goto out;
1822 1.372 ozaki }
1823 1.172 christos error = copyout(outbuf, dst, sizeof(outbuf));
1824 1.185 dyoung if (error != 0)
1825 1.67 thorpej break;
1826 1.67 thorpej }
1827 1.67 thorpej
1828 1.372 ozaki out:
1829 1.372 ozaki mutex_exit(&if_clone_mtx);
1830 1.185 dyoung return error;
1831 1.63 thorpej }
1832 1.63 thorpej
1833 1.207 dyoung void
1834 1.357 ozaki ifa_psref_init(struct ifaddr *ifa)
1835 1.357 ozaki {
1836 1.357 ozaki
1837 1.357 ozaki psref_target_init(&ifa->ifa_psref, ifa_psref_class);
1838 1.357 ozaki }
1839 1.357 ozaki
1840 1.357 ozaki void
1841 1.291 rmind ifaref(struct ifaddr *ifa)
1842 1.291 rmind {
1843 1.438 ozaki
1844 1.439 ozaki atomic_inc_uint(&ifa->ifa_refcnt);
1845 1.291 rmind }
1846 1.291 rmind
1847 1.291 rmind void
1848 1.291 rmind ifafree(struct ifaddr *ifa)
1849 1.291 rmind {
1850 1.291 rmind KASSERT(ifa != NULL);
1851 1.462 ozaki KASSERTMSG(ifa->ifa_refcnt > 0, "ifa_refcnt=%d", ifa->ifa_refcnt);
1852 1.291 rmind
1853 1.502 riastrad #ifndef __HAVE_ATOMIC_AS_MEMBAR
1854 1.503 riastrad membar_release();
1855 1.502 riastrad #endif
1856 1.502 riastrad if (atomic_dec_uint_nv(&ifa->ifa_refcnt) != 0)
1857 1.502 riastrad return;
1858 1.502 riastrad #ifndef __HAVE_ATOMIC_AS_MEMBAR
1859 1.503 riastrad membar_acquire();
1860 1.502 riastrad #endif
1861 1.502 riastrad free(ifa, M_IFADDR);
1862 1.291 rmind }
1863 1.291 rmind
1864 1.366 ozaki bool
1865 1.366 ozaki ifa_is_destroying(struct ifaddr *ifa)
1866 1.366 ozaki {
1867 1.366 ozaki
1868 1.366 ozaki return ISSET(ifa->ifa_flags, IFA_DESTROYING);
1869 1.366 ozaki }
1870 1.366 ozaki
1871 1.291 rmind void
1872 1.207 dyoung ifa_insert(struct ifnet *ifp, struct ifaddr *ifa)
1873 1.207 dyoung {
1874 1.357 ozaki
1875 1.207 dyoung ifa->ifa_ifp = ifp;
1876 1.357 ozaki
1877 1.416 ozaki /*
1878 1.418 ozaki * Check MP-safety for IFEF_MPSAFE drivers.
1879 1.416 ozaki * Check !IFF_RUNNING for initialization routines that normally don't
1880 1.416 ozaki * take IFNET_LOCK but it's safe because there is no competitor.
1881 1.416 ozaki * XXX there are false positive cases because IFF_RUNNING can be off on
1882 1.416 ozaki * if_stop.
1883 1.416 ozaki */
1884 1.418 ozaki KASSERT(!if_is_mpsafe(ifp) || !ISSET(ifp->if_flags, IFF_RUNNING) ||
1885 1.416 ozaki IFNET_LOCKED(ifp));
1886 1.416 ozaki
1887 1.208 dyoung TAILQ_INSERT_TAIL(&ifp->if_addrlist, ifa, ifa_list);
1888 1.354 ozaki IFADDR_ENTRY_INIT(ifa);
1889 1.354 ozaki IFADDR_WRITER_INSERT_TAIL(ifp, ifa);
1890 1.357 ozaki
1891 1.291 rmind ifaref(ifa);
1892 1.207 dyoung }
1893 1.207 dyoung
1894 1.207 dyoung void
1895 1.207 dyoung ifa_remove(struct ifnet *ifp, struct ifaddr *ifa)
1896 1.207 dyoung {
1897 1.357 ozaki
1898 1.207 dyoung KASSERT(ifa->ifa_ifp == ifp);
1899 1.416 ozaki /*
1900 1.418 ozaki * Check MP-safety for IFEF_MPSAFE drivers.
1901 1.512 rillig * if_is_deactivated indicates ifa_remove is called from if_detach
1902 1.508 skrll * where it is safe even if IFNET_LOCK isn't held.
1903 1.416 ozaki */
1904 1.418 ozaki KASSERT(!if_is_mpsafe(ifp) || if_is_deactivated(ifp) || IFNET_LOCKED(ifp));
1905 1.357 ozaki
1906 1.207 dyoung TAILQ_REMOVE(&ifp->if_addrlist, ifa, ifa_list);
1907 1.354 ozaki IFADDR_WRITER_REMOVE(ifa);
1908 1.359 ozaki #ifdef NET_MPSAFE
1909 1.416 ozaki IFNET_GLOBAL_LOCK();
1910 1.357 ozaki pserialize_perform(ifnet_psz);
1911 1.416 ozaki IFNET_GLOBAL_UNLOCK();
1912 1.357 ozaki #endif
1913 1.357 ozaki
1914 1.359 ozaki #ifdef NET_MPSAFE
1915 1.357 ozaki psref_target_destroy(&ifa->ifa_psref, ifa_psref_class);
1916 1.357 ozaki #endif
1917 1.360 ozaki IFADDR_ENTRY_DESTROY(ifa);
1918 1.291 rmind ifafree(ifa);
1919 1.207 dyoung }
1920 1.207 dyoung
1921 1.357 ozaki void
1922 1.357 ozaki ifa_acquire(struct ifaddr *ifa, struct psref *psref)
1923 1.357 ozaki {
1924 1.357 ozaki
1925 1.453 ozaki PSREF_DEBUG_FILL_RETURN_ADDRESS(psref);
1926 1.357 ozaki psref_acquire(psref, &ifa->ifa_psref, ifa_psref_class);
1927 1.357 ozaki }
1928 1.357 ozaki
1929 1.357 ozaki void
1930 1.357 ozaki ifa_release(struct ifaddr *ifa, struct psref *psref)
1931 1.357 ozaki {
1932 1.357 ozaki
1933 1.357 ozaki if (ifa == NULL)
1934 1.357 ozaki return;
1935 1.357 ozaki
1936 1.357 ozaki psref_release(psref, &ifa->ifa_psref, ifa_psref_class);
1937 1.357 ozaki }
1938 1.357 ozaki
1939 1.357 ozaki bool
1940 1.357 ozaki ifa_held(struct ifaddr *ifa)
1941 1.357 ozaki {
1942 1.357 ozaki
1943 1.357 ozaki return psref_held(&ifa->ifa_psref, ifa_psref_class);
1944 1.357 ozaki }
1945 1.357 ozaki
1946 1.194 dyoung static inline int
1947 1.194 dyoung equal(const struct sockaddr *sa1, const struct sockaddr *sa2)
1948 1.194 dyoung {
1949 1.194 dyoung return sockaddr_cmp(sa1, sa2) == 0;
1950 1.194 dyoung }
1951 1.194 dyoung
1952 1.63 thorpej /*
1953 1.1 cgd * Locate an interface based on a complete address.
1954 1.1 cgd */
1955 1.1 cgd /*ARGSUSED*/
1956 1.1 cgd struct ifaddr *
1957 1.163 thorpej ifa_ifwithaddr(const struct sockaddr *addr)
1958 1.1 cgd {
1959 1.61 augustss struct ifnet *ifp;
1960 1.61 augustss struct ifaddr *ifa;
1961 1.1 cgd
1962 1.334 ozaki IFNET_READER_FOREACH(ifp) {
1963 1.348 ozaki if (if_is_deactivated(ifp))
1964 1.1 cgd continue;
1965 1.354 ozaki IFADDR_READER_FOREACH(ifa, ifp) {
1966 1.53 thorpej if (ifa->ifa_addr->sa_family != addr->sa_family)
1967 1.53 thorpej continue;
1968 1.53 thorpej if (equal(addr, ifa->ifa_addr))
1969 1.185 dyoung return ifa;
1970 1.53 thorpej if ((ifp->if_flags & IFF_BROADCAST) &&
1971 1.53 thorpej ifa->ifa_broadaddr &&
1972 1.53 thorpej /* IP6 doesn't have broadcast */
1973 1.53 thorpej ifa->ifa_broadaddr->sa_len != 0 &&
1974 1.53 thorpej equal(ifa->ifa_broadaddr, addr))
1975 1.185 dyoung return ifa;
1976 1.53 thorpej }
1977 1.1 cgd }
1978 1.357 ozaki return NULL;
1979 1.357 ozaki }
1980 1.357 ozaki
1981 1.357 ozaki struct ifaddr *
1982 1.357 ozaki ifa_ifwithaddr_psref(const struct sockaddr *addr, struct psref *psref)
1983 1.357 ozaki {
1984 1.357 ozaki struct ifaddr *ifa;
1985 1.357 ozaki int s = pserialize_read_enter();
1986 1.357 ozaki
1987 1.357 ozaki ifa = ifa_ifwithaddr(addr);
1988 1.357 ozaki if (ifa != NULL)
1989 1.357 ozaki ifa_acquire(ifa, psref);
1990 1.334 ozaki pserialize_read_exit(s);
1991 1.357 ozaki
1992 1.357 ozaki return ifa;
1993 1.1 cgd }
1994 1.49 itojun
1995 1.1 cgd /*
1996 1.1 cgd * Locate the point to point interface with a given destination address.
1997 1.1 cgd */
1998 1.1 cgd /*ARGSUSED*/
1999 1.1 cgd struct ifaddr *
2000 1.163 thorpej ifa_ifwithdstaddr(const struct sockaddr *addr)
2001 1.1 cgd {
2002 1.61 augustss struct ifnet *ifp;
2003 1.61 augustss struct ifaddr *ifa;
2004 1.1 cgd
2005 1.334 ozaki IFNET_READER_FOREACH(ifp) {
2006 1.348 ozaki if (if_is_deactivated(ifp))
2007 1.53 thorpej continue;
2008 1.185 dyoung if ((ifp->if_flags & IFF_POINTOPOINT) == 0)
2009 1.185 dyoung continue;
2010 1.354 ozaki IFADDR_READER_FOREACH(ifa, ifp) {
2011 1.185 dyoung if (ifa->ifa_addr->sa_family != addr->sa_family ||
2012 1.185 dyoung ifa->ifa_dstaddr == NULL)
2013 1.185 dyoung continue;
2014 1.185 dyoung if (equal(addr, ifa->ifa_dstaddr))
2015 1.185 dyoung return ifa;
2016 1.53 thorpej }
2017 1.1 cgd }
2018 1.357 ozaki
2019 1.357 ozaki return NULL;
2020 1.357 ozaki }
2021 1.357 ozaki
2022 1.357 ozaki struct ifaddr *
2023 1.357 ozaki ifa_ifwithdstaddr_psref(const struct sockaddr *addr, struct psref *psref)
2024 1.357 ozaki {
2025 1.357 ozaki struct ifaddr *ifa;
2026 1.357 ozaki int s;
2027 1.357 ozaki
2028 1.357 ozaki s = pserialize_read_enter();
2029 1.357 ozaki ifa = ifa_ifwithdstaddr(addr);
2030 1.357 ozaki if (ifa != NULL)
2031 1.357 ozaki ifa_acquire(ifa, psref);
2032 1.334 ozaki pserialize_read_exit(s);
2033 1.357 ozaki
2034 1.357 ozaki return ifa;
2035 1.1 cgd }
2036 1.1 cgd
2037 1.1 cgd /*
2038 1.1 cgd * Find an interface on a specific network. If many, choice
2039 1.15 mycroft * is most specific found.
2040 1.1 cgd */
2041 1.1 cgd struct ifaddr *
2042 1.163 thorpej ifa_ifwithnet(const struct sockaddr *addr)
2043 1.1 cgd {
2044 1.61 augustss struct ifnet *ifp;
2045 1.357 ozaki struct ifaddr *ifa, *ifa_maybe = NULL;
2046 1.140 matt const struct sockaddr_dl *sdl;
2047 1.1 cgd u_int af = addr->sa_family;
2048 1.171 pooka const char *addr_data = addr->sa_data, *cplim;
2049 1.1 cgd
2050 1.1 cgd if (af == AF_LINK) {
2051 1.195 dyoung sdl = satocsdl(addr);
2052 1.137 itojun if (sdl->sdl_index && sdl->sdl_index < if_indexlim &&
2053 1.137 itojun ifindex2ifnet[sdl->sdl_index] &&
2054 1.348 ozaki !if_is_deactivated(ifindex2ifnet[sdl->sdl_index])) {
2055 1.316 ozaki return ifindex2ifnet[sdl->sdl_index]->if_dl;
2056 1.316 ozaki }
2057 1.1 cgd }
2058 1.51 bouyer #ifdef NETATALK
2059 1.51 bouyer if (af == AF_APPLETALK) {
2060 1.140 matt const struct sockaddr_at *sat, *sat2;
2061 1.158 christos sat = (const struct sockaddr_at *)addr;
2062 1.334 ozaki IFNET_READER_FOREACH(ifp) {
2063 1.348 ozaki if (if_is_deactivated(ifp))
2064 1.53 thorpej continue;
2065 1.158 christos ifa = at_ifawithnet((const struct sockaddr_at *)addr, ifp);
2066 1.62 bouyer if (ifa == NULL)
2067 1.62 bouyer continue;
2068 1.62 bouyer sat2 = (struct sockaddr_at *)ifa->ifa_addr;
2069 1.62 bouyer if (sat2->sat_addr.s_net == sat->sat_addr.s_net)
2070 1.185 dyoung return ifa; /* exact match */
2071 1.62 bouyer if (ifa_maybe == NULL) {
2072 1.112 wiz /* else keep the if with the right range */
2073 1.62 bouyer ifa_maybe = ifa;
2074 1.62 bouyer }
2075 1.51 bouyer }
2076 1.185 dyoung return ifa_maybe;
2077 1.51 bouyer }
2078 1.51 bouyer #endif
2079 1.334 ozaki IFNET_READER_FOREACH(ifp) {
2080 1.348 ozaki if (if_is_deactivated(ifp))
2081 1.53 thorpej continue;
2082 1.354 ozaki IFADDR_READER_FOREACH(ifa, ifp) {
2083 1.171 pooka const char *cp, *cp2, *cp3;
2084 1.15 mycroft
2085 1.15 mycroft if (ifa->ifa_addr->sa_family != af ||
2086 1.185 dyoung ifa->ifa_netmask == NULL)
2087 1.53 thorpej next: continue;
2088 1.15 mycroft cp = addr_data;
2089 1.15 mycroft cp2 = ifa->ifa_addr->sa_data;
2090 1.15 mycroft cp3 = ifa->ifa_netmask->sa_data;
2091 1.171 pooka cplim = (const char *)ifa->ifa_netmask +
2092 1.53 thorpej ifa->ifa_netmask->sa_len;
2093 1.53 thorpej while (cp3 < cplim) {
2094 1.53 thorpej if ((*cp++ ^ *cp2++) & *cp3++) {
2095 1.53 thorpej /* want to continue for() loop */
2096 1.32 mrg goto next;
2097 1.53 thorpej }
2098 1.53 thorpej }
2099 1.185 dyoung if (ifa_maybe == NULL ||
2100 1.329 ozaki rt_refines(ifa->ifa_netmask,
2101 1.329 ozaki ifa_maybe->ifa_netmask))
2102 1.15 mycroft ifa_maybe = ifa;
2103 1.15 mycroft }
2104 1.53 thorpej }
2105 1.357 ozaki return ifa_maybe;
2106 1.357 ozaki }
2107 1.357 ozaki
2108 1.357 ozaki struct ifaddr *
2109 1.357 ozaki ifa_ifwithnet_psref(const struct sockaddr *addr, struct psref *psref)
2110 1.357 ozaki {
2111 1.357 ozaki struct ifaddr *ifa;
2112 1.357 ozaki int s;
2113 1.357 ozaki
2114 1.357 ozaki s = pserialize_read_enter();
2115 1.357 ozaki ifa = ifa_ifwithnet(addr);
2116 1.357 ozaki if (ifa != NULL)
2117 1.357 ozaki ifa_acquire(ifa, psref);
2118 1.334 ozaki pserialize_read_exit(s);
2119 1.357 ozaki
2120 1.357 ozaki return ifa;
2121 1.26 mrg }
2122 1.53 thorpej
2123 1.26 mrg /*
2124 1.504 andvar * Find the interface of the address.
2125 1.26 mrg */
2126 1.26 mrg struct ifaddr *
2127 1.163 thorpej ifa_ifwithladdr(const struct sockaddr *addr)
2128 1.26 mrg {
2129 1.26 mrg struct ifaddr *ia;
2130 1.26 mrg
2131 1.53 thorpej if ((ia = ifa_ifwithaddr(addr)) || (ia = ifa_ifwithdstaddr(addr)) ||
2132 1.53 thorpej (ia = ifa_ifwithnet(addr)))
2133 1.185 dyoung return ia;
2134 1.185 dyoung return NULL;
2135 1.1 cgd }
2136 1.1 cgd
2137 1.357 ozaki struct ifaddr *
2138 1.357 ozaki ifa_ifwithladdr_psref(const struct sockaddr *addr, struct psref *psref)
2139 1.357 ozaki {
2140 1.357 ozaki struct ifaddr *ifa;
2141 1.357 ozaki int s;
2142 1.357 ozaki
2143 1.357 ozaki s = pserialize_read_enter();
2144 1.357 ozaki ifa = ifa_ifwithladdr(addr);
2145 1.357 ozaki if (ifa != NULL)
2146 1.357 ozaki ifa_acquire(ifa, psref);
2147 1.357 ozaki pserialize_read_exit(s);
2148 1.357 ozaki
2149 1.357 ozaki return ifa;
2150 1.357 ozaki }
2151 1.357 ozaki
2152 1.1 cgd /*
2153 1.1 cgd * Find an interface using a specific address family
2154 1.1 cgd */
2155 1.1 cgd struct ifaddr *
2156 1.163 thorpej ifa_ifwithaf(int af)
2157 1.1 cgd {
2158 1.61 augustss struct ifnet *ifp;
2159 1.334 ozaki struct ifaddr *ifa = NULL;
2160 1.334 ozaki int s;
2161 1.1 cgd
2162 1.334 ozaki s = pserialize_read_enter();
2163 1.334 ozaki IFNET_READER_FOREACH(ifp) {
2164 1.348 ozaki if (if_is_deactivated(ifp))
2165 1.53 thorpej continue;
2166 1.354 ozaki IFADDR_READER_FOREACH(ifa, ifp) {
2167 1.21 mycroft if (ifa->ifa_addr->sa_family == af)
2168 1.334 ozaki goto out;
2169 1.53 thorpej }
2170 1.53 thorpej }
2171 1.334 ozaki out:
2172 1.334 ozaki pserialize_read_exit(s);
2173 1.334 ozaki return ifa;
2174 1.1 cgd }
2175 1.1 cgd
2176 1.1 cgd /*
2177 1.1 cgd * Find an interface address specific to an interface best matching
2178 1.1 cgd * a given address.
2179 1.1 cgd */
2180 1.1 cgd struct ifaddr *
2181 1.163 thorpej ifaof_ifpforaddr(const struct sockaddr *addr, struct ifnet *ifp)
2182 1.1 cgd {
2183 1.61 augustss struct ifaddr *ifa;
2184 1.140 matt const char *cp, *cp2, *cp3;
2185 1.140 matt const char *cplim;
2186 1.1 cgd struct ifaddr *ifa_maybe = 0;
2187 1.1 cgd u_int af = addr->sa_family;
2188 1.1 cgd
2189 1.348 ozaki if (if_is_deactivated(ifp))
2190 1.185 dyoung return NULL;
2191 1.53 thorpej
2192 1.1 cgd if (af >= AF_MAX)
2193 1.185 dyoung return NULL;
2194 1.53 thorpej
2195 1.354 ozaki IFADDR_READER_FOREACH(ifa, ifp) {
2196 1.1 cgd if (ifa->ifa_addr->sa_family != af)
2197 1.1 cgd continue;
2198 1.1 cgd ifa_maybe = ifa;
2199 1.185 dyoung if (ifa->ifa_netmask == NULL) {
2200 1.1 cgd if (equal(addr, ifa->ifa_addr) ||
2201 1.53 thorpej (ifa->ifa_dstaddr &&
2202 1.53 thorpej equal(addr, ifa->ifa_dstaddr)))
2203 1.185 dyoung return ifa;
2204 1.1 cgd continue;
2205 1.1 cgd }
2206 1.1 cgd cp = addr->sa_data;
2207 1.1 cgd cp2 = ifa->ifa_addr->sa_data;
2208 1.1 cgd cp3 = ifa->ifa_netmask->sa_data;
2209 1.1 cgd cplim = ifa->ifa_netmask->sa_len + (char *)ifa->ifa_netmask;
2210 1.53 thorpej for (; cp3 < cplim; cp3++) {
2211 1.1 cgd if ((*cp++ ^ *cp2++) & *cp3)
2212 1.1 cgd break;
2213 1.53 thorpej }
2214 1.1 cgd if (cp3 == cplim)
2215 1.185 dyoung return ifa;
2216 1.1 cgd }
2217 1.185 dyoung return ifa_maybe;
2218 1.1 cgd }
2219 1.9 mycroft
2220 1.357 ozaki struct ifaddr *
2221 1.357 ozaki ifaof_ifpforaddr_psref(const struct sockaddr *addr, struct ifnet *ifp,
2222 1.357 ozaki struct psref *psref)
2223 1.357 ozaki {
2224 1.357 ozaki struct ifaddr *ifa;
2225 1.357 ozaki int s;
2226 1.357 ozaki
2227 1.357 ozaki s = pserialize_read_enter();
2228 1.357 ozaki ifa = ifaof_ifpforaddr(addr, ifp);
2229 1.357 ozaki if (ifa != NULL)
2230 1.357 ozaki ifa_acquire(ifa, psref);
2231 1.357 ozaki pserialize_read_exit(s);
2232 1.357 ozaki
2233 1.357 ozaki return ifa;
2234 1.357 ozaki }
2235 1.357 ozaki
2236 1.1 cgd /*
2237 1.1 cgd * Default action when installing a route with a Link Level gateway.
2238 1.1 cgd * Lookup an appropriate real ifa to point to.
2239 1.1 cgd * This should be moved to /sys/net/link.c eventually.
2240 1.1 cgd */
2241 1.15 mycroft void
2242 1.228 dyoung link_rtrequest(int cmd, struct rtentry *rt, const struct rt_addrinfo *info)
2243 1.1 cgd {
2244 1.61 augustss struct ifaddr *ifa;
2245 1.194 dyoung const struct sockaddr *dst;
2246 1.15 mycroft struct ifnet *ifp;
2247 1.357 ozaki struct psref psref;
2248 1.1 cgd
2249 1.464 ozaki if (cmd != RTM_ADD || ISSET(info->rti_flags, RTF_DONTCHANGEIFA))
2250 1.1 cgd return;
2251 1.464 ozaki ifp = rt->rt_ifa->ifa_ifp;
2252 1.464 ozaki dst = rt_getkey(rt);
2253 1.357 ozaki if ((ifa = ifaof_ifpforaddr_psref(dst, ifp, &psref)) != NULL) {
2254 1.176 dyoung rt_replace_ifa(rt, ifa);
2255 1.1 cgd if (ifa->ifa_rtrequest && ifa->ifa_rtrequest != link_rtrequest)
2256 1.82 itojun ifa->ifa_rtrequest(cmd, rt, info);
2257 1.357 ozaki ifa_release(ifa, &psref);
2258 1.1 cgd }
2259 1.1 cgd }
2260 1.1 cgd
2261 1.1 cgd /*
2262 1.325 roy * bitmask macros to manage a densely packed link_state change queue.
2263 1.325 roy * Because we need to store LINK_STATE_UNKNOWN(0), LINK_STATE_DOWN(1) and
2264 1.325 roy * LINK_STATE_UP(2) we need 2 bits for each state change.
2265 1.325 roy * As a state change to store is 0, treat all bits set as an unset item.
2266 1.325 roy */
2267 1.325 roy #define LQ_ITEM_BITS 2
2268 1.325 roy #define LQ_ITEM_MASK ((1 << LQ_ITEM_BITS) - 1)
2269 1.325 roy #define LQ_MASK(i) (LQ_ITEM_MASK << (i) * LQ_ITEM_BITS)
2270 1.325 roy #define LINK_STATE_UNSET LQ_ITEM_MASK
2271 1.325 roy #define LQ_ITEM(q, i) (((q) & LQ_MASK((i))) >> (i) * LQ_ITEM_BITS)
2272 1.325 roy #define LQ_STORE(q, i, v) \
2273 1.325 roy do { \
2274 1.325 roy (q) &= ~LQ_MASK((i)); \
2275 1.325 roy (q) |= (v) << (i) * LQ_ITEM_BITS; \
2276 1.325 roy } while (0 /* CONSTCOND */)
2277 1.325 roy #define LQ_MAX(q) ((sizeof((q)) * NBBY) / LQ_ITEM_BITS)
2278 1.325 roy #define LQ_POP(q, v) \
2279 1.325 roy do { \
2280 1.325 roy (v) = LQ_ITEM((q), 0); \
2281 1.325 roy (q) >>= LQ_ITEM_BITS; \
2282 1.325 roy (q) |= LINK_STATE_UNSET << (LQ_MAX((q)) - 1) * LQ_ITEM_BITS; \
2283 1.325 roy } while (0 /* CONSTCOND */)
2284 1.325 roy #define LQ_PUSH(q, v) \
2285 1.325 roy do { \
2286 1.325 roy (q) >>= LQ_ITEM_BITS; \
2287 1.325 roy (q) |= (v) << (LQ_MAX((q)) - 1) * LQ_ITEM_BITS; \
2288 1.325 roy } while (0 /* CONSTCOND */)
2289 1.325 roy #define LQ_FIND_UNSET(q, i) \
2290 1.325 roy for ((i) = 0; i < LQ_MAX((q)); (i)++) { \
2291 1.325 roy if (LQ_ITEM((q), (i)) == LINK_STATE_UNSET) \
2292 1.325 roy break; \
2293 1.325 roy }
2294 1.406 ozaki
2295 1.406 ozaki /*
2296 1.325 roy * Handle a change in the interface link state and
2297 1.325 roy * queue notifications.
2298 1.159 dyoung */
2299 1.159 dyoung void
2300 1.159 dyoung if_link_state_change(struct ifnet *ifp, int link_state)
2301 1.159 dyoung {
2302 1.406 ozaki int idx;
2303 1.263 roy
2304 1.325 roy /* Ensure change is to a valid state */
2305 1.325 roy switch (link_state) {
2306 1.325 roy case LINK_STATE_UNKNOWN: /* FALLTHROUGH */
2307 1.325 roy case LINK_STATE_DOWN: /* FALLTHROUGH */
2308 1.325 roy case LINK_STATE_UP:
2309 1.325 roy break;
2310 1.325 roy default:
2311 1.325 roy #ifdef DEBUG
2312 1.325 roy printf("%s: invalid link state %d\n",
2313 1.325 roy ifp->if_xname, link_state);
2314 1.325 roy #endif
2315 1.185 dyoung return;
2316 1.264 roy }
2317 1.263 roy
2318 1.406 ozaki IF_LINK_STATE_CHANGE_LOCK(ifp);
2319 1.325 roy
2320 1.325 roy /* Find the last unset event in the queue. */
2321 1.325 roy LQ_FIND_UNSET(ifp->if_link_queue, idx);
2322 1.325 roy
2323 1.480 roy if (idx == 0) {
2324 1.480 roy /*
2325 1.480 roy * There is no queue of link state changes.
2326 1.480 roy * As we have the lock we can safely compare against the
2327 1.480 roy * current link state and return if the same.
2328 1.480 roy * Otherwise, if scheduled is true then the interface is being
2329 1.480 roy * detached and the queue is being drained so we need
2330 1.480 roy * to avoid queuing more work.
2331 1.480 roy */
2332 1.480 roy if (ifp->if_link_state == link_state || ifp->if_link_scheduled)
2333 1.480 roy goto out;
2334 1.480 roy } else {
2335 1.480 roy /* Ensure link_state doesn't match the last queued state. */
2336 1.480 roy if (LQ_ITEM(ifp->if_link_queue, idx - 1) == (uint8_t)link_state)
2337 1.480 roy goto out;
2338 1.480 roy }
2339 1.325 roy
2340 1.325 roy /* Handle queue overflow. */
2341 1.325 roy if (idx == LQ_MAX(ifp->if_link_queue)) {
2342 1.325 roy uint8_t lost;
2343 1.325 roy
2344 1.325 roy /*
2345 1.325 roy * The DOWN state must be protected from being pushed off
2346 1.325 roy * the queue to ensure that userland will always be
2347 1.325 roy * in a sane state.
2348 1.325 roy * Because DOWN is protected, there is no need to protect
2349 1.325 roy * UNKNOWN.
2350 1.325 roy * It should be invalid to change from any other state to
2351 1.325 roy * UNKNOWN anyway ...
2352 1.325 roy */
2353 1.325 roy lost = LQ_ITEM(ifp->if_link_queue, 0);
2354 1.325 roy LQ_PUSH(ifp->if_link_queue, (uint8_t)link_state);
2355 1.325 roy if (lost == LINK_STATE_DOWN) {
2356 1.325 roy lost = LQ_ITEM(ifp->if_link_queue, 0);
2357 1.325 roy LQ_STORE(ifp->if_link_queue, 0, LINK_STATE_DOWN);
2358 1.325 roy }
2359 1.325 roy printf("%s: lost link state change %s\n",
2360 1.325 roy ifp->if_xname,
2361 1.325 roy lost == LINK_STATE_UP ? "UP" :
2362 1.325 roy lost == LINK_STATE_DOWN ? "DOWN" :
2363 1.325 roy "UNKNOWN");
2364 1.325 roy } else
2365 1.325 roy LQ_STORE(ifp->if_link_queue, idx, (uint8_t)link_state);
2366 1.325 roy
2367 1.480 roy if (ifp->if_link_scheduled)
2368 1.480 roy goto out;
2369 1.480 roy
2370 1.480 roy ifp->if_link_scheduled = true;
2371 1.480 roy workqueue_enqueue(ifnet_link_state_wq, &ifp->if_link_work, NULL);
2372 1.324 ozaki
2373 1.325 roy out:
2374 1.406 ozaki IF_LINK_STATE_CHANGE_UNLOCK(ifp);
2375 1.324 ozaki }
2376 1.324 ozaki
2377 1.325 roy /*
2378 1.325 roy * Handle interface link state change notifications.
2379 1.325 roy */
2380 1.471 thorpej static void
2381 1.471 thorpej if_link_state_change_process(struct ifnet *ifp, int link_state)
2382 1.324 ozaki {
2383 1.324 ozaki struct domain *dp;
2384 1.519 skrll const int s = splnet();
2385 1.406 ozaki bool notify;
2386 1.393 ozaki
2387 1.393 ozaki KASSERT(!cpu_intr_p());
2388 1.324 ozaki
2389 1.406 ozaki IF_LINK_STATE_CHANGE_LOCK(ifp);
2390 1.406 ozaki
2391 1.325 roy /* Ensure the change is still valid. */
2392 1.393 ozaki if (ifp->if_link_state == link_state) {
2393 1.406 ozaki IF_LINK_STATE_CHANGE_UNLOCK(ifp);
2394 1.434 ozaki splx(s);
2395 1.325 roy return;
2396 1.393 ozaki }
2397 1.324 ozaki
2398 1.263 roy #ifdef DEBUG
2399 1.263 roy log(LOG_DEBUG, "%s: link state %s (was %s)\n", ifp->if_xname,
2400 1.263 roy link_state == LINK_STATE_UP ? "UP" :
2401 1.263 roy link_state == LINK_STATE_DOWN ? "DOWN" :
2402 1.263 roy "UNKNOWN",
2403 1.325 roy ifp->if_link_state == LINK_STATE_UP ? "UP" :
2404 1.325 roy ifp->if_link_state == LINK_STATE_DOWN ? "DOWN" :
2405 1.263 roy "UNKNOWN");
2406 1.263 roy #endif
2407 1.263 roy
2408 1.263 roy /*
2409 1.263 roy * When going from UNKNOWN to UP, we need to mark existing
2410 1.314 roy * addresses as tentative and restart DAD as we may have
2411 1.263 roy * erroneously not found a duplicate.
2412 1.263 roy *
2413 1.263 roy * This needs to happen before rt_ifmsg to avoid a race where
2414 1.263 roy * listeners would have an address and expect it to work right
2415 1.263 roy * away.
2416 1.263 roy */
2417 1.406 ozaki notify = (link_state == LINK_STATE_UP &&
2418 1.406 ozaki ifp->if_link_state == LINK_STATE_UNKNOWN);
2419 1.406 ozaki ifp->if_link_state = link_state;
2420 1.406 ozaki /* The following routines may sleep so release the spin mutex */
2421 1.406 ozaki IF_LINK_STATE_CHANGE_UNLOCK(ifp);
2422 1.406 ozaki
2423 1.406 ozaki KERNEL_LOCK_UNLESS_NET_MPSAFE();
2424 1.406 ozaki if (notify) {
2425 1.312 roy DOMAIN_FOREACH(dp) {
2426 1.312 roy if (dp->dom_if_link_state_change != NULL)
2427 1.312 roy dp->dom_if_link_state_change(ifp,
2428 1.312 roy LINK_STATE_DOWN);
2429 1.312 roy }
2430 1.312 roy }
2431 1.263 roy
2432 1.159 dyoung /* Notify that the link state has changed. */
2433 1.185 dyoung rt_ifmsg(ifp);
2434 1.263 roy
2435 1.492 yamaguch simplehook_dohooks(ifp->if_linkstate_hooks);
2436 1.492 yamaguch
2437 1.312 roy DOMAIN_FOREACH(dp) {
2438 1.312 roy if (dp->dom_if_link_state_change != NULL)
2439 1.312 roy dp->dom_if_link_state_change(ifp, link_state);
2440 1.270 pooka }
2441 1.406 ozaki KERNEL_UNLOCK_UNLESS_NET_MPSAFE();
2442 1.393 ozaki splx(s);
2443 1.325 roy }
2444 1.325 roy
2445 1.325 roy /*
2446 1.325 roy * Process the interface link state change queue.
2447 1.325 roy */
2448 1.325 roy static void
2449 1.471 thorpej if_link_state_change_work(struct work *work, void *arg)
2450 1.325 roy {
2451 1.471 thorpej struct ifnet *ifp = container_of(work, struct ifnet, if_link_work);
2452 1.325 roy uint8_t state;
2453 1.325 roy
2454 1.471 thorpej KERNEL_LOCK_UNLESS_NET_MPSAFE();
2455 1.519 skrll const int s = splnet();
2456 1.325 roy
2457 1.509 skrll /*
2458 1.509 skrll * Pop a link state change from the queue and process it.
2459 1.480 roy * If there is nothing to process then if_detach() has been called.
2460 1.480 roy * We keep if_link_scheduled = true so the queue can safely drain
2461 1.510 skrll * without more work being queued.
2462 1.510 skrll */
2463 1.406 ozaki IF_LINK_STATE_CHANGE_LOCK(ifp);
2464 1.325 roy LQ_POP(ifp->if_link_queue, state);
2465 1.406 ozaki IF_LINK_STATE_CHANGE_UNLOCK(ifp);
2466 1.480 roy if (state == LINK_STATE_UNSET)
2467 1.480 roy goto out;
2468 1.406 ozaki
2469 1.471 thorpej if_link_state_change_process(ifp, state);
2470 1.325 roy
2471 1.325 roy /* If there is a link state change to come, schedule it. */
2472 1.406 ozaki IF_LINK_STATE_CHANGE_LOCK(ifp);
2473 1.480 roy if (LQ_ITEM(ifp->if_link_queue, 0) != LINK_STATE_UNSET) {
2474 1.480 roy ifp->if_link_scheduled = true;
2475 1.480 roy workqueue_enqueue(ifnet_link_state_wq, &ifp->if_link_work, NULL);
2476 1.480 roy } else
2477 1.480 roy ifp->if_link_scheduled = false;
2478 1.406 ozaki IF_LINK_STATE_CHANGE_UNLOCK(ifp);
2479 1.471 thorpej
2480 1.480 roy out:
2481 1.264 roy splx(s);
2482 1.471 thorpej KERNEL_UNLOCK_UNLESS_NET_MPSAFE();
2483 1.159 dyoung }
2484 1.159 dyoung
2485 1.492 yamaguch void *
2486 1.492 yamaguch if_linkstate_change_establish(struct ifnet *ifp, void (*fn)(void *), void *arg)
2487 1.492 yamaguch {
2488 1.492 yamaguch khook_t *hk;
2489 1.492 yamaguch
2490 1.492 yamaguch hk = simplehook_establish(ifp->if_linkstate_hooks, fn, arg);
2491 1.492 yamaguch
2492 1.492 yamaguch return (void *)hk;
2493 1.492 yamaguch }
2494 1.492 yamaguch
2495 1.492 yamaguch void
2496 1.492 yamaguch if_linkstate_change_disestablish(struct ifnet *ifp, void *vhook, kmutex_t *lock)
2497 1.492 yamaguch {
2498 1.492 yamaguch
2499 1.492 yamaguch simplehook_disestablish(ifp->if_linkstate_hooks, vhook, lock);
2500 1.492 yamaguch }
2501 1.492 yamaguch
2502 1.159 dyoung /*
2503 1.483 roy * Used to mark addresses on an interface as DETATCHED or TENTATIVE
2504 1.483 roy * and thus start Duplicate Address Detection without changing the
2505 1.483 roy * real link state.
2506 1.483 roy */
2507 1.483 roy void
2508 1.483 roy if_domain_link_state_change(struct ifnet *ifp, int link_state)
2509 1.483 roy {
2510 1.483 roy struct domain *dp;
2511 1.483 roy
2512 1.519 skrll const int s = splnet();
2513 1.483 roy KERNEL_LOCK_UNLESS_NET_MPSAFE();
2514 1.483 roy
2515 1.483 roy DOMAIN_FOREACH(dp) {
2516 1.483 roy if (dp->dom_if_link_state_change != NULL)
2517 1.483 roy dp->dom_if_link_state_change(ifp, link_state);
2518 1.483 roy }
2519 1.483 roy
2520 1.483 roy splx(s);
2521 1.483 roy KERNEL_UNLOCK_UNLESS_NET_MPSAFE();
2522 1.483 roy }
2523 1.483 roy
2524 1.483 roy /*
2525 1.310 roy * Default action when installing a local route on a point-to-point
2526 1.310 roy * interface.
2527 1.310 roy */
2528 1.310 roy void
2529 1.310 roy p2p_rtrequest(int req, struct rtentry *rt,
2530 1.310 roy __unused const struct rt_addrinfo *info)
2531 1.310 roy {
2532 1.310 roy struct ifnet *ifp = rt->rt_ifp;
2533 1.310 roy struct ifaddr *ifa, *lo0ifa;
2534 1.357 ozaki int s = pserialize_read_enter();
2535 1.310 roy
2536 1.310 roy switch (req) {
2537 1.310 roy case RTM_ADD:
2538 1.310 roy if ((rt->rt_flags & RTF_LOCAL) == 0)
2539 1.310 roy break;
2540 1.310 roy
2541 1.351 ozaki rt->rt_ifp = lo0ifp;
2542 1.351 ozaki
2543 1.440 ozaki if (ISSET(info->rti_flags, RTF_DONTCHANGEIFA))
2544 1.440 ozaki break;
2545 1.440 ozaki
2546 1.354 ozaki IFADDR_READER_FOREACH(ifa, ifp) {
2547 1.310 roy if (equal(rt_getkey(rt), ifa->ifa_addr))
2548 1.310 roy break;
2549 1.310 roy }
2550 1.310 roy if (ifa == NULL)
2551 1.310 roy break;
2552 1.310 roy
2553 1.310 roy /*
2554 1.310 roy * Ensure lo0 has an address of the same family.
2555 1.310 roy */
2556 1.354 ozaki IFADDR_READER_FOREACH(lo0ifa, lo0ifp) {
2557 1.310 roy if (lo0ifa->ifa_addr->sa_family ==
2558 1.310 roy ifa->ifa_addr->sa_family)
2559 1.310 roy break;
2560 1.310 roy }
2561 1.310 roy if (lo0ifa == NULL)
2562 1.310 roy break;
2563 1.310 roy
2564 1.310 roy /*
2565 1.310 roy * Make sure to set rt->rt_ifa to the interface
2566 1.310 roy * address we are using, otherwise we will have trouble
2567 1.310 roy * with source address selection.
2568 1.310 roy */
2569 1.310 roy if (ifa != rt->rt_ifa)
2570 1.310 roy rt_replace_ifa(rt, ifa);
2571 1.310 roy break;
2572 1.310 roy case RTM_DELETE:
2573 1.310 roy default:
2574 1.310 roy break;
2575 1.310 roy }
2576 1.357 ozaki pserialize_read_exit(s);
2577 1.310 roy }
2578 1.310 roy
2579 1.403 ozaki static void
2580 1.403 ozaki _if_down(struct ifnet *ifp)
2581 1.1 cgd {
2582 1.61 augustss struct ifaddr *ifa;
2583 1.312 roy struct domain *dp;
2584 1.357 ozaki struct psref psref;
2585 1.1 cgd
2586 1.1 cgd ifp->if_flags &= ~IFF_UP;
2587 1.232 christos nanotime(&ifp->if_lastchange);
2588 1.357 ozaki
2589 1.519 skrll const int bound = curlwp_bind();
2590 1.519 skrll int s = pserialize_read_enter();
2591 1.357 ozaki IFADDR_READER_FOREACH(ifa, ifp) {
2592 1.357 ozaki ifa_acquire(ifa, &psref);
2593 1.357 ozaki pserialize_read_exit(s);
2594 1.357 ozaki
2595 1.1 cgd pfctlinput(PRC_IFDOWN, ifa->ifa_addr);
2596 1.357 ozaki
2597 1.357 ozaki s = pserialize_read_enter();
2598 1.357 ozaki ifa_release(ifa, &psref);
2599 1.357 ozaki }
2600 1.357 ozaki pserialize_read_exit(s);
2601 1.357 ozaki curlwp_bindx(bound);
2602 1.357 ozaki
2603 1.78 thorpej IFQ_PURGE(&ifp->if_snd);
2604 1.166 liamjfoy #if NCARP > 0
2605 1.166 liamjfoy if (ifp->if_carp)
2606 1.166 liamjfoy carp_carpdev_state(ifp);
2607 1.166 liamjfoy #endif
2608 1.15 mycroft rt_ifmsg(ifp);
2609 1.312 roy DOMAIN_FOREACH(dp) {
2610 1.312 roy if (dp->dom_if_down)
2611 1.312 roy dp->dom_if_down(ifp);
2612 1.312 roy }
2613 1.15 mycroft }
2614 1.15 mycroft
2615 1.403 ozaki static void
2616 1.403 ozaki if_down_deactivated(struct ifnet *ifp)
2617 1.403 ozaki {
2618 1.403 ozaki
2619 1.403 ozaki KASSERT(if_is_deactivated(ifp));
2620 1.403 ozaki _if_down(ifp);
2621 1.403 ozaki }
2622 1.403 ozaki
2623 1.403 ozaki void
2624 1.403 ozaki if_down_locked(struct ifnet *ifp)
2625 1.403 ozaki {
2626 1.403 ozaki
2627 1.413 ozaki KASSERT(IFNET_LOCKED(ifp));
2628 1.403 ozaki _if_down(ifp);
2629 1.403 ozaki }
2630 1.403 ozaki
2631 1.15 mycroft /*
2632 1.403 ozaki * Mark an interface down and notify protocols of
2633 1.15 mycroft * the transition.
2634 1.23 mycroft * NOTE: must be called at splsoftnet or equivalent.
2635 1.15 mycroft */
2636 1.15 mycroft void
2637 1.403 ozaki if_down(struct ifnet *ifp)
2638 1.403 ozaki {
2639 1.403 ozaki
2640 1.413 ozaki IFNET_LOCK(ifp);
2641 1.403 ozaki if_down_locked(ifp);
2642 1.413 ozaki IFNET_UNLOCK(ifp);
2643 1.403 ozaki }
2644 1.403 ozaki
2645 1.403 ozaki /*
2646 1.403 ozaki * Must be called with holding if_ioctl_lock.
2647 1.403 ozaki */
2648 1.403 ozaki static void
2649 1.403 ozaki if_up_locked(struct ifnet *ifp)
2650 1.15 mycroft {
2651 1.24 christos #ifdef notyet
2652 1.61 augustss struct ifaddr *ifa;
2653 1.24 christos #endif
2654 1.312 roy struct domain *dp;
2655 1.15 mycroft
2656 1.413 ozaki KASSERT(IFNET_LOCKED(ifp));
2657 1.403 ozaki
2658 1.403 ozaki KASSERT(!if_is_deactivated(ifp));
2659 1.15 mycroft ifp->if_flags |= IFF_UP;
2660 1.232 christos nanotime(&ifp->if_lastchange);
2661 1.15 mycroft #ifdef notyet
2662 1.15 mycroft /* this has no effect on IP, and will kill all ISO connections XXX */
2663 1.354 ozaki IFADDR_READER_FOREACH(ifa, ifp)
2664 1.15 mycroft pfctlinput(PRC_IFUP, ifa->ifa_addr);
2665 1.15 mycroft #endif
2666 1.166 liamjfoy #if NCARP > 0
2667 1.166 liamjfoy if (ifp->if_carp)
2668 1.166 liamjfoy carp_carpdev_state(ifp);
2669 1.166 liamjfoy #endif
2670 1.15 mycroft rt_ifmsg(ifp);
2671 1.312 roy DOMAIN_FOREACH(dp) {
2672 1.313 roy if (dp->dom_if_up)
2673 1.313 roy dp->dom_if_up(ifp);
2674 1.312 roy }
2675 1.1 cgd }
2676 1.1 cgd
2677 1.1 cgd /*
2678 1.296 ozaki * Handle interface slowtimo timer routine. Called
2679 1.296 ozaki * from softclock, we decrement timer (if set) and
2680 1.1 cgd * call the appropriate interface routine on expiration.
2681 1.1 cgd */
2682 1.515 riastrad static bool
2683 1.515 riastrad if_slowtimo_countdown(struct ifnet *ifp)
2684 1.515 riastrad {
2685 1.515 riastrad bool fire = false;
2686 1.519 skrll const int s = splnet();
2687 1.517 riastrad KERNEL_LOCK(1, NULL);
2688 1.515 riastrad if (ifp->if_timer != 0 && --ifp->if_timer == 0)
2689 1.515 riastrad fire = true;
2690 1.515 riastrad KERNEL_UNLOCK_ONE(NULL);
2691 1.517 riastrad splx(s);
2692 1.515 riastrad
2693 1.515 riastrad return fire;
2694 1.515 riastrad }
2695 1.515 riastrad
2696 1.294 ozaki static void
2697 1.513 riastrad if_slowtimo_intr(void *arg)
2698 1.1 cgd {
2699 1.296 ozaki struct ifnet *ifp = arg;
2700 1.513 riastrad struct if_slowtimo_data *isd = ifp->if_slowtimo_data;
2701 1.1 cgd
2702 1.513 riastrad mutex_enter(&isd->isd_lock);
2703 1.513 riastrad if (!isd->isd_dying) {
2704 1.515 riastrad if (isd->isd_trigger || if_slowtimo_countdown(ifp)) {
2705 1.514 riastrad if (!isd->isd_queued) {
2706 1.514 riastrad isd->isd_queued = true;
2707 1.514 riastrad workqueue_enqueue(if_slowtimo_wq,
2708 1.514 riastrad &isd->isd_work, NULL);
2709 1.514 riastrad }
2710 1.513 riastrad } else {
2711 1.513 riastrad callout_schedule(&isd->isd_ch, hz / IFNET_SLOWHZ);
2712 1.513 riastrad }
2713 1.513 riastrad }
2714 1.513 riastrad mutex_exit(&isd->isd_lock);
2715 1.513 riastrad }
2716 1.296 ozaki
2717 1.513 riastrad static void
2718 1.513 riastrad if_slowtimo_work(struct work *work, void *arg)
2719 1.513 riastrad {
2720 1.513 riastrad struct if_slowtimo_data *isd =
2721 1.513 riastrad container_of(work, struct if_slowtimo_data, isd_work);
2722 1.513 riastrad struct ifnet *ifp = isd->isd_ifp;
2723 1.519 skrll const int s = splnet();
2724 1.513 riastrad KERNEL_LOCK(1, NULL);
2725 1.513 riastrad (*ifp->if_slowtimo)(ifp);
2726 1.513 riastrad KERNEL_UNLOCK_ONE(NULL);
2727 1.517 riastrad splx(s);
2728 1.305 martin
2729 1.513 riastrad mutex_enter(&isd->isd_lock);
2730 1.514 riastrad if (isd->isd_trigger) {
2731 1.514 riastrad isd->isd_trigger = false;
2732 1.514 riastrad printf("%s: watchdog triggered\n", ifp->if_xname);
2733 1.514 riastrad }
2734 1.513 riastrad isd->isd_queued = false;
2735 1.513 riastrad if (!isd->isd_dying)
2736 1.513 riastrad callout_schedule(&isd->isd_ch, hz / IFNET_SLOWHZ);
2737 1.513 riastrad mutex_exit(&isd->isd_lock);
2738 1.65 thorpej }
2739 1.65 thorpej
2740 1.514 riastrad static int
2741 1.514 riastrad sysctl_if_watchdog(SYSCTLFN_ARGS)
2742 1.514 riastrad {
2743 1.514 riastrad struct sysctlnode node = *rnode;
2744 1.514 riastrad struct ifnet *ifp = node.sysctl_data;
2745 1.514 riastrad struct if_slowtimo_data *isd = ifp->if_slowtimo_data;
2746 1.514 riastrad int arg = 0;
2747 1.514 riastrad int error;
2748 1.514 riastrad
2749 1.514 riastrad node.sysctl_data = &arg;
2750 1.514 riastrad error = sysctl_lookup(SYSCTLFN_CALL(&node));
2751 1.514 riastrad if (error || newp == NULL)
2752 1.514 riastrad return error;
2753 1.514 riastrad if (arg) {
2754 1.514 riastrad mutex_enter(&isd->isd_lock);
2755 1.514 riastrad KASSERT(!isd->isd_dying);
2756 1.514 riastrad isd->isd_trigger = true;
2757 1.514 riastrad callout_schedule(&isd->isd_ch, 0);
2758 1.514 riastrad mutex_exit(&isd->isd_lock);
2759 1.514 riastrad }
2760 1.514 riastrad
2761 1.514 riastrad return 0;
2762 1.514 riastrad }
2763 1.514 riastrad
2764 1.514 riastrad static void
2765 1.514 riastrad sysctl_watchdog_setup(struct ifnet *ifp)
2766 1.514 riastrad {
2767 1.514 riastrad struct sysctllog **clog = &ifp->if_sysctl_log;
2768 1.514 riastrad const struct sysctlnode *rnode;
2769 1.514 riastrad
2770 1.514 riastrad if (sysctl_createv(clog, 0, NULL, &rnode,
2771 1.514 riastrad CTLFLAG_PERMANENT, CTLTYPE_NODE, "interfaces",
2772 1.514 riastrad SYSCTL_DESCR("Per-interface controls"),
2773 1.514 riastrad NULL, 0, NULL, 0,
2774 1.514 riastrad CTL_NET, CTL_CREATE, CTL_EOL) != 0)
2775 1.514 riastrad goto bad;
2776 1.514 riastrad if (sysctl_createv(clog, 0, &rnode, &rnode,
2777 1.514 riastrad CTLFLAG_PERMANENT, CTLTYPE_NODE, ifp->if_xname,
2778 1.514 riastrad SYSCTL_DESCR("Interface controls"),
2779 1.514 riastrad NULL, 0, NULL, 0,
2780 1.514 riastrad CTL_CREATE, CTL_EOL) != 0)
2781 1.514 riastrad goto bad;
2782 1.514 riastrad if (sysctl_createv(clog, 0, &rnode, &rnode,
2783 1.514 riastrad CTLFLAG_PERMANENT, CTLTYPE_NODE, "watchdog",
2784 1.514 riastrad SYSCTL_DESCR("Interface watchdog controls"),
2785 1.514 riastrad NULL, 0, NULL, 0,
2786 1.514 riastrad CTL_CREATE, CTL_EOL) != 0)
2787 1.514 riastrad goto bad;
2788 1.514 riastrad if (sysctl_createv(clog, 0, &rnode, NULL,
2789 1.514 riastrad CTLFLAG_PERMANENT|CTLFLAG_READWRITE, CTLTYPE_INT, "trigger",
2790 1.514 riastrad SYSCTL_DESCR("Trigger watchdog timeout"),
2791 1.514 riastrad sysctl_if_watchdog, 0, (int *)ifp, 0,
2792 1.514 riastrad CTL_CREATE, CTL_EOL) != 0)
2793 1.514 riastrad goto bad;
2794 1.514 riastrad
2795 1.514 riastrad return;
2796 1.514 riastrad
2797 1.514 riastrad bad:
2798 1.514 riastrad printf("%s: could not attach sysctl watchdog nodes\n", ifp->if_xname);
2799 1.514 riastrad }
2800 1.514 riastrad
2801 1.65 thorpej /*
2802 1.403 ozaki * Mark an interface up and notify protocols of
2803 1.403 ozaki * the transition.
2804 1.403 ozaki * NOTE: must be called at splsoftnet or equivalent.
2805 1.403 ozaki */
2806 1.403 ozaki void
2807 1.403 ozaki if_up(struct ifnet *ifp)
2808 1.403 ozaki {
2809 1.403 ozaki
2810 1.413 ozaki IFNET_LOCK(ifp);
2811 1.403 ozaki if_up_locked(ifp);
2812 1.413 ozaki IFNET_UNLOCK(ifp);
2813 1.403 ozaki }
2814 1.403 ozaki
2815 1.403 ozaki /*
2816 1.65 thorpej * Set/clear promiscuous mode on interface ifp based on the truth value
2817 1.65 thorpej * of pswitch. The calls are reference counted so that only the first
2818 1.65 thorpej * "on" request actually has an effect, as does the final "off" request.
2819 1.65 thorpej * Results are undefined if the "off" and "on" requests are not matched.
2820 1.65 thorpej */
2821 1.65 thorpej int
2822 1.402 ozaki ifpromisc_locked(struct ifnet *ifp, int pswitch)
2823 1.65 thorpej {
2824 1.401 ozaki int pcount, ret = 0;
2825 1.460 msaitoh u_short nflags;
2826 1.65 thorpej
2827 1.413 ozaki KASSERT(IFNET_LOCKED(ifp));
2828 1.401 ozaki
2829 1.65 thorpej pcount = ifp->if_pcount;
2830 1.65 thorpej if (pswitch) {
2831 1.65 thorpej /*
2832 1.71 thorpej * Allow the device to be "placed" into promiscuous
2833 1.71 thorpej * mode even if it is not configured up. It will
2834 1.242 mbalmer * consult IFF_PROMISC when it is brought up.
2835 1.65 thorpej */
2836 1.68 pk if (ifp->if_pcount++ != 0)
2837 1.401 ozaki goto out;
2838 1.252 dyoung nflags = ifp->if_flags | IFF_PROMISC;
2839 1.65 thorpej } else {
2840 1.65 thorpej if (--ifp->if_pcount > 0)
2841 1.401 ozaki goto out;
2842 1.252 dyoung nflags = ifp->if_flags & ~IFF_PROMISC;
2843 1.65 thorpej }
2844 1.252 dyoung ret = if_flags_set(ifp, nflags);
2845 1.65 thorpej /* Restore interface state if not successful. */
2846 1.65 thorpej if (ret != 0) {
2847 1.65 thorpej ifp->if_pcount = pcount;
2848 1.65 thorpej }
2849 1.401 ozaki out:
2850 1.402 ozaki return ret;
2851 1.402 ozaki }
2852 1.402 ozaki
2853 1.402 ozaki int
2854 1.402 ozaki ifpromisc(struct ifnet *ifp, int pswitch)
2855 1.402 ozaki {
2856 1.402 ozaki int e;
2857 1.402 ozaki
2858 1.413 ozaki IFNET_LOCK(ifp);
2859 1.402 ozaki e = ifpromisc_locked(ifp, pswitch);
2860 1.413 ozaki IFNET_UNLOCK(ifp);
2861 1.402 ozaki
2862 1.402 ozaki return e;
2863 1.1 cgd }
2864 1.1 cgd
2865 1.1 cgd /*
2866 1.497 riastrad * if_ioctl(ifp, cmd, data)
2867 1.497 riastrad *
2868 1.497 riastrad * Apply an ioctl command to the interface. Returns 0 on success,
2869 1.497 riastrad * nonzero errno(3) number on failure.
2870 1.497 riastrad *
2871 1.499 riastrad * For SIOCADDMULTI/SIOCDELMULTI, caller need not hold locks -- it
2872 1.499 riastrad * is the driver's responsibility to take any internal locks.
2873 1.499 riastrad * (Kernel logic should generally invoke these only through
2874 1.499 riastrad * if_mcast_op.)
2875 1.499 riastrad *
2876 1.499 riastrad * For all other ioctls, caller must hold ifp->if_ioctl_lock,
2877 1.499 riastrad * a.k.a. IFNET_LOCK. May sleep.
2878 1.497 riastrad */
2879 1.497 riastrad int
2880 1.497 riastrad if_ioctl(struct ifnet *ifp, u_long cmd, void *data)
2881 1.497 riastrad {
2882 1.497 riastrad
2883 1.499 riastrad switch (cmd) {
2884 1.499 riastrad case SIOCADDMULTI:
2885 1.499 riastrad case SIOCDELMULTI:
2886 1.499 riastrad break;
2887 1.499 riastrad default:
2888 1.499 riastrad KASSERTMSG(IFNET_LOCKED(ifp), "%s", ifp->if_xname);
2889 1.499 riastrad }
2890 1.497 riastrad
2891 1.497 riastrad return (*ifp->if_ioctl)(ifp, cmd, data);
2892 1.497 riastrad }
2893 1.497 riastrad
2894 1.497 riastrad /*
2895 1.497 riastrad * if_init(ifp)
2896 1.497 riastrad *
2897 1.497 riastrad * Prepare the hardware underlying ifp to process packets
2898 1.497 riastrad * according to its current configuration. Returns 0 on success,
2899 1.497 riastrad * nonzero errno(3) number on failure.
2900 1.497 riastrad *
2901 1.497 riastrad * May sleep. Caller must hold ifp->if_ioctl_lock, a.k.a
2902 1.497 riastrad * IFNET_LOCK.
2903 1.497 riastrad */
2904 1.497 riastrad int
2905 1.497 riastrad if_init(struct ifnet *ifp)
2906 1.497 riastrad {
2907 1.497 riastrad
2908 1.499 riastrad KASSERTMSG(IFNET_LOCKED(ifp), "%s", ifp->if_xname);
2909 1.497 riastrad
2910 1.497 riastrad return (*ifp->if_init)(ifp);
2911 1.497 riastrad }
2912 1.497 riastrad
2913 1.497 riastrad /*
2914 1.497 riastrad * if_stop(ifp, disable)
2915 1.497 riastrad *
2916 1.497 riastrad * Stop the hardware underlying ifp from processing packets.
2917 1.497 riastrad *
2918 1.497 riastrad * If disable is true, ... XXX(?)
2919 1.497 riastrad *
2920 1.497 riastrad * May sleep. Caller must hold ifp->if_ioctl_lock, a.k.a
2921 1.497 riastrad * IFNET_LOCK.
2922 1.497 riastrad */
2923 1.497 riastrad void
2924 1.497 riastrad if_stop(struct ifnet *ifp, int disable)
2925 1.497 riastrad {
2926 1.497 riastrad
2927 1.499 riastrad KASSERTMSG(IFNET_LOCKED(ifp), "%s", ifp->if_xname);
2928 1.497 riastrad
2929 1.497 riastrad (*ifp->if_stop)(ifp, disable);
2930 1.497 riastrad }
2931 1.497 riastrad
2932 1.497 riastrad /*
2933 1.1 cgd * Map interface name to
2934 1.1 cgd * interface structure pointer.
2935 1.1 cgd */
2936 1.1 cgd struct ifnet *
2937 1.163 thorpej ifunit(const char *name)
2938 1.1 cgd {
2939 1.61 augustss struct ifnet *ifp;
2940 1.105 matt const char *cp = name;
2941 1.105 matt u_int unit = 0;
2942 1.105 matt u_int i;
2943 1.334 ozaki int s;
2944 1.105 matt
2945 1.105 matt /*
2946 1.105 matt * If the entire name is a number, treat it as an ifindex.
2947 1.105 matt */
2948 1.105 matt for (i = 0; i < IFNAMSIZ && *cp >= '0' && *cp <= '9'; i++, cp++) {
2949 1.105 matt unit = unit * 10 + (*cp - '0');
2950 1.105 matt }
2951 1.105 matt
2952 1.105 matt /*
2953 1.105 matt * If the number took all of the name, then it's a valid ifindex.
2954 1.105 matt */
2955 1.387 ozaki if (i == IFNAMSIZ || (cp != name && *cp == '\0'))
2956 1.387 ozaki return if_byindex(unit);
2957 1.34 thorpej
2958 1.334 ozaki ifp = NULL;
2959 1.334 ozaki s = pserialize_read_enter();
2960 1.334 ozaki IFNET_READER_FOREACH(ifp) {
2961 1.348 ozaki if (if_is_deactivated(ifp))
2962 1.53 thorpej continue;
2963 1.53 thorpej if (strcmp(ifp->if_xname, name) == 0)
2964 1.334 ozaki goto out;
2965 1.53 thorpej }
2966 1.334 ozaki out:
2967 1.334 ozaki pserialize_read_exit(s);
2968 1.334 ozaki return ifp;
2969 1.1 cgd }
2970 1.49 itojun
2971 1.335 ozaki /*
2972 1.335 ozaki * Get a reference of an ifnet object by an interface name.
2973 1.335 ozaki * The returned reference is protected by psref(9). The caller
2974 1.335 ozaki * must release a returned reference by if_put after use.
2975 1.335 ozaki */
2976 1.335 ozaki struct ifnet *
2977 1.335 ozaki if_get(const char *name, struct psref *psref)
2978 1.335 ozaki {
2979 1.335 ozaki struct ifnet *ifp;
2980 1.335 ozaki const char *cp = name;
2981 1.335 ozaki u_int unit = 0;
2982 1.335 ozaki u_int i;
2983 1.335 ozaki int s;
2984 1.335 ozaki
2985 1.335 ozaki /*
2986 1.335 ozaki * If the entire name is a number, treat it as an ifindex.
2987 1.335 ozaki */
2988 1.335 ozaki for (i = 0; i < IFNAMSIZ && *cp >= '0' && *cp <= '9'; i++, cp++) {
2989 1.335 ozaki unit = unit * 10 + (*cp - '0');
2990 1.335 ozaki }
2991 1.335 ozaki
2992 1.335 ozaki /*
2993 1.335 ozaki * If the number took all of the name, then it's a valid ifindex.
2994 1.335 ozaki */
2995 1.387 ozaki if (i == IFNAMSIZ || (cp != name && *cp == '\0'))
2996 1.387 ozaki return if_get_byindex(unit, psref);
2997 1.335 ozaki
2998 1.335 ozaki ifp = NULL;
2999 1.335 ozaki s = pserialize_read_enter();
3000 1.335 ozaki IFNET_READER_FOREACH(ifp) {
3001 1.348 ozaki if (if_is_deactivated(ifp))
3002 1.335 ozaki continue;
3003 1.335 ozaki if (strcmp(ifp->if_xname, name) == 0) {
3004 1.453 ozaki PSREF_DEBUG_FILL_RETURN_ADDRESS(psref);
3005 1.335 ozaki psref_acquire(psref, &ifp->if_psref,
3006 1.335 ozaki ifnet_psref_class);
3007 1.335 ozaki goto out;
3008 1.335 ozaki }
3009 1.335 ozaki }
3010 1.335 ozaki out:
3011 1.335 ozaki pserialize_read_exit(s);
3012 1.335 ozaki return ifp;
3013 1.335 ozaki }
3014 1.335 ozaki
3015 1.335 ozaki /*
3016 1.395 roy * Release a reference of an ifnet object given by if_get, if_get_byindex
3017 1.395 roy * or if_get_bylla.
3018 1.335 ozaki */
3019 1.335 ozaki void
3020 1.335 ozaki if_put(const struct ifnet *ifp, struct psref *psref)
3021 1.335 ozaki {
3022 1.335 ozaki
3023 1.344 ozaki if (ifp == NULL)
3024 1.344 ozaki return;
3025 1.344 ozaki
3026 1.335 ozaki psref_release(psref, &ifp->if_psref, ifnet_psref_class);
3027 1.335 ozaki }
3028 1.335 ozaki
3029 1.415 ozaki /*
3030 1.415 ozaki * Return ifp having idx. Return NULL if not found. Normally if_byindex
3031 1.415 ozaki * should be used.
3032 1.415 ozaki */
3033 1.415 ozaki ifnet_t *
3034 1.415 ozaki _if_byindex(u_int idx)
3035 1.415 ozaki {
3036 1.415 ozaki
3037 1.415 ozaki return (__predict_true(idx < if_indexlim)) ? ifindex2ifnet[idx] : NULL;
3038 1.415 ozaki }
3039 1.415 ozaki
3040 1.415 ozaki /*
3041 1.415 ozaki * Return ifp having idx. Return NULL if not found or the found ifp is
3042 1.415 ozaki * already deactivated.
3043 1.415 ozaki */
3044 1.250 rmind ifnet_t *
3045 1.250 rmind if_byindex(u_int idx)
3046 1.250 rmind {
3047 1.357 ozaki ifnet_t *ifp;
3048 1.357 ozaki
3049 1.415 ozaki ifp = _if_byindex(idx);
3050 1.357 ozaki if (ifp != NULL && if_is_deactivated(ifp))
3051 1.357 ozaki ifp = NULL;
3052 1.357 ozaki return ifp;
3053 1.250 rmind }
3054 1.250 rmind
3055 1.335 ozaki /*
3056 1.335 ozaki * Get a reference of an ifnet object by an interface index.
3057 1.335 ozaki * The returned reference is protected by psref(9). The caller
3058 1.335 ozaki * must release a returned reference by if_put after use.
3059 1.335 ozaki */
3060 1.335 ozaki ifnet_t *
3061 1.335 ozaki if_get_byindex(u_int idx, struct psref *psref)
3062 1.335 ozaki {
3063 1.335 ozaki ifnet_t *ifp;
3064 1.335 ozaki int s;
3065 1.335 ozaki
3066 1.335 ozaki s = pserialize_read_enter();
3067 1.387 ozaki ifp = if_byindex(idx);
3068 1.453 ozaki if (__predict_true(ifp != NULL)) {
3069 1.453 ozaki PSREF_DEBUG_FILL_RETURN_ADDRESS(psref);
3070 1.335 ozaki psref_acquire(psref, &ifp->if_psref, ifnet_psref_class);
3071 1.453 ozaki }
3072 1.335 ozaki pserialize_read_exit(s);
3073 1.335 ozaki
3074 1.335 ozaki return ifp;
3075 1.335 ozaki }
3076 1.335 ozaki
3077 1.395 roy ifnet_t *
3078 1.395 roy if_get_bylla(const void *lla, unsigned char lla_len, struct psref *psref)
3079 1.395 roy {
3080 1.395 roy ifnet_t *ifp;
3081 1.395 roy int s;
3082 1.395 roy
3083 1.395 roy s = pserialize_read_enter();
3084 1.395 roy IFNET_READER_FOREACH(ifp) {
3085 1.395 roy if (if_is_deactivated(ifp))
3086 1.395 roy continue;
3087 1.395 roy if (ifp->if_addrlen != lla_len)
3088 1.395 roy continue;
3089 1.395 roy if (memcmp(lla, CLLADDR(ifp->if_sadl), lla_len) == 0) {
3090 1.395 roy psref_acquire(psref, &ifp->if_psref,
3091 1.395 roy ifnet_psref_class);
3092 1.395 roy break;
3093 1.395 roy }
3094 1.395 roy }
3095 1.395 roy pserialize_read_exit(s);
3096 1.395 roy
3097 1.395 roy return ifp;
3098 1.395 roy }
3099 1.395 roy
3100 1.338 ozaki /*
3101 1.380 ozaki * Note that it's safe only if the passed ifp is guaranteed to not be freed,
3102 1.380 ozaki * for example using pserialize or the ifp is already held or some other
3103 1.380 ozaki * object is held which guarantes the ifp to not be freed indirectly.
3104 1.338 ozaki */
3105 1.338 ozaki void
3106 1.380 ozaki if_acquire(struct ifnet *ifp, struct psref *psref)
3107 1.338 ozaki {
3108 1.338 ozaki
3109 1.338 ozaki KASSERT(ifp->if_index != 0);
3110 1.338 ozaki psref_acquire(psref, &ifp->if_psref, ifnet_psref_class);
3111 1.338 ozaki }
3112 1.338 ozaki
3113 1.338 ozaki bool
3114 1.338 ozaki if_held(struct ifnet *ifp)
3115 1.338 ozaki {
3116 1.338 ozaki
3117 1.338 ozaki return psref_held(&ifp->if_psref, ifnet_psref_class);
3118 1.338 ozaki }
3119 1.338 ozaki
3120 1.404 knakahar /*
3121 1.404 knakahar * Some tunnel interfaces can nest, e.g. IPv4 over IPv4 gif(4) tunnel over IPv4.
3122 1.404 knakahar * Check the tunnel nesting count.
3123 1.404 knakahar * Return > 0, if tunnel nesting count is more than limit.
3124 1.404 knakahar * Return 0, if tunnel nesting count is equal or less than limit.
3125 1.404 knakahar */
3126 1.404 knakahar int
3127 1.404 knakahar if_tunnel_check_nesting(struct ifnet *ifp, struct mbuf *m, int limit)
3128 1.404 knakahar {
3129 1.404 knakahar struct m_tag *mtag;
3130 1.404 knakahar int *count;
3131 1.404 knakahar
3132 1.441 maxv mtag = m_tag_find(m, PACKET_TAG_TUNNEL_INFO);
3133 1.404 knakahar if (mtag != NULL) {
3134 1.404 knakahar count = (int *)(mtag + 1);
3135 1.404 knakahar if (++(*count) > limit) {
3136 1.404 knakahar log(LOG_NOTICE,
3137 1.404 knakahar "%s: recursively called too many times(%d)\n",
3138 1.404 knakahar ifp->if_xname, *count);
3139 1.404 knakahar return EIO;
3140 1.404 knakahar }
3141 1.404 knakahar } else {
3142 1.404 knakahar mtag = m_tag_get(PACKET_TAG_TUNNEL_INFO, sizeof(*count),
3143 1.404 knakahar M_NOWAIT);
3144 1.404 knakahar if (mtag != NULL) {
3145 1.404 knakahar m_tag_prepend(m, mtag);
3146 1.404 knakahar count = (int *)(mtag + 1);
3147 1.404 knakahar *count = 0;
3148 1.404 knakahar } else {
3149 1.404 knakahar log(LOG_DEBUG,
3150 1.404 knakahar "%s: m_tag_get() failed, recursion calls are not prevented.\n",
3151 1.404 knakahar ifp->if_xname);
3152 1.404 knakahar }
3153 1.404 knakahar }
3154 1.404 knakahar
3155 1.404 knakahar return 0;
3156 1.404 knakahar }
3157 1.338 ozaki
3158 1.461 knakahar static void
3159 1.461 knakahar if_tunnel_ro_init_pc(void *p, void *arg __unused, struct cpu_info *ci __unused)
3160 1.461 knakahar {
3161 1.461 knakahar struct tunnel_ro *tro = p;
3162 1.461 knakahar
3163 1.461 knakahar tro->tr_ro = kmem_zalloc(sizeof(*tro->tr_ro), KM_SLEEP);
3164 1.461 knakahar tro->tr_lock = mutex_obj_alloc(MUTEX_DEFAULT, IPL_NONE);
3165 1.461 knakahar }
3166 1.461 knakahar
3167 1.461 knakahar static void
3168 1.461 knakahar if_tunnel_ro_fini_pc(void *p, void *arg __unused, struct cpu_info *ci __unused)
3169 1.461 knakahar {
3170 1.461 knakahar struct tunnel_ro *tro = p;
3171 1.461 knakahar
3172 1.461 knakahar rtcache_free(tro->tr_ro);
3173 1.461 knakahar kmem_free(tro->tr_ro, sizeof(*tro->tr_ro));
3174 1.461 knakahar
3175 1.461 knakahar mutex_obj_free(tro->tr_lock);
3176 1.461 knakahar }
3177 1.461 knakahar
3178 1.470 riastrad percpu_t *
3179 1.470 riastrad if_tunnel_alloc_ro_percpu(void)
3180 1.470 riastrad {
3181 1.470 riastrad
3182 1.470 riastrad return percpu_create(sizeof(struct tunnel_ro),
3183 1.470 riastrad if_tunnel_ro_init_pc, if_tunnel_ro_fini_pc, NULL);
3184 1.470 riastrad }
3185 1.470 riastrad
3186 1.461 knakahar void
3187 1.461 knakahar if_tunnel_free_ro_percpu(percpu_t *ro_percpu)
3188 1.461 knakahar {
3189 1.461 knakahar
3190 1.461 knakahar percpu_free(ro_percpu, sizeof(struct tunnel_ro));
3191 1.461 knakahar }
3192 1.461 knakahar
3193 1.461 knakahar
3194 1.461 knakahar static void
3195 1.461 knakahar if_tunnel_rtcache_free_pc(void *p, void *arg __unused, struct cpu_info *ci __unused)
3196 1.461 knakahar {
3197 1.461 knakahar struct tunnel_ro *tro = p;
3198 1.461 knakahar
3199 1.461 knakahar mutex_enter(tro->tr_lock);
3200 1.461 knakahar rtcache_free(tro->tr_ro);
3201 1.461 knakahar mutex_exit(tro->tr_lock);
3202 1.461 knakahar }
3203 1.461 knakahar
3204 1.461 knakahar void if_tunnel_ro_percpu_rtcache_free(percpu_t *ro_percpu)
3205 1.461 knakahar {
3206 1.461 knakahar
3207 1.461 knakahar percpu_foreach(ro_percpu, if_tunnel_rtcache_free_pc, NULL);
3208 1.461 knakahar }
3209 1.461 knakahar
3210 1.469 thorpej void
3211 1.469 thorpej if_export_if_data(ifnet_t * const ifp, struct if_data *ifi, bool zero_stats)
3212 1.469 thorpej {
3213 1.469 thorpej
3214 1.511 skrll /* Collect the volatile stats first; this zeros *ifi. */
3215 1.469 thorpej if_stats_to_if_data(ifp, ifi, zero_stats);
3216 1.469 thorpej
3217 1.469 thorpej ifi->ifi_type = ifp->if_type;
3218 1.469 thorpej ifi->ifi_addrlen = ifp->if_addrlen;
3219 1.469 thorpej ifi->ifi_hdrlen = ifp->if_hdrlen;
3220 1.469 thorpej ifi->ifi_link_state = ifp->if_link_state;
3221 1.469 thorpej ifi->ifi_mtu = ifp->if_mtu;
3222 1.469 thorpej ifi->ifi_metric = ifp->if_metric;
3223 1.469 thorpej ifi->ifi_baudrate = ifp->if_baudrate;
3224 1.469 thorpej ifi->ifi_lastchange = ifp->if_lastchange;
3225 1.469 thorpej }
3226 1.461 knakahar
3227 1.211 dyoung /* common */
3228 1.215 dyoung int
3229 1.215 dyoung ifioctl_common(struct ifnet *ifp, u_long cmd, void *data)
3230 1.211 dyoung {
3231 1.224 dyoung int s;
3232 1.215 dyoung struct ifreq *ifr;
3233 1.215 dyoung struct ifcapreq *ifcr;
3234 1.215 dyoung struct ifdatareq *ifdr;
3235 1.459 roy unsigned short flags;
3236 1.466 christos char *descr;
3237 1.466 christos int error;
3238 1.211 dyoung
3239 1.211 dyoung switch (cmd) {
3240 1.211 dyoung case SIOCSIFCAP:
3241 1.215 dyoung ifcr = data;
3242 1.211 dyoung if ((ifcr->ifcr_capenable & ~ifp->if_capabilities) != 0)
3243 1.211 dyoung return EINVAL;
3244 1.211 dyoung
3245 1.213 dyoung if (ifcr->ifcr_capenable == ifp->if_capenable)
3246 1.213 dyoung return 0;
3247 1.211 dyoung
3248 1.213 dyoung ifp->if_capenable = ifcr->ifcr_capenable;
3249 1.211 dyoung
3250 1.213 dyoung /* Pre-compute the checksum flags mask. */
3251 1.213 dyoung ifp->if_csum_flags_tx = 0;
3252 1.213 dyoung ifp->if_csum_flags_rx = 0;
3253 1.442 rin if (ifp->if_capenable & IFCAP_CSUM_IPv4_Tx)
3254 1.213 dyoung ifp->if_csum_flags_tx |= M_CSUM_IPv4;
3255 1.442 rin if (ifp->if_capenable & IFCAP_CSUM_IPv4_Rx)
3256 1.213 dyoung ifp->if_csum_flags_rx |= M_CSUM_IPv4;
3257 1.211 dyoung
3258 1.442 rin if (ifp->if_capenable & IFCAP_CSUM_TCPv4_Tx)
3259 1.213 dyoung ifp->if_csum_flags_tx |= M_CSUM_TCPv4;
3260 1.442 rin if (ifp->if_capenable & IFCAP_CSUM_TCPv4_Rx)
3261 1.213 dyoung ifp->if_csum_flags_rx |= M_CSUM_TCPv4;
3262 1.211 dyoung
3263 1.442 rin if (ifp->if_capenable & IFCAP_CSUM_UDPv4_Tx)
3264 1.213 dyoung ifp->if_csum_flags_tx |= M_CSUM_UDPv4;
3265 1.442 rin if (ifp->if_capenable & IFCAP_CSUM_UDPv4_Rx)
3266 1.213 dyoung ifp->if_csum_flags_rx |= M_CSUM_UDPv4;
3267 1.211 dyoung
3268 1.442 rin if (ifp->if_capenable & IFCAP_CSUM_TCPv6_Tx)
3269 1.213 dyoung ifp->if_csum_flags_tx |= M_CSUM_TCPv6;
3270 1.442 rin if (ifp->if_capenable & IFCAP_CSUM_TCPv6_Rx)
3271 1.213 dyoung ifp->if_csum_flags_rx |= M_CSUM_TCPv6;
3272 1.211 dyoung
3273 1.442 rin if (ifp->if_capenable & IFCAP_CSUM_UDPv6_Tx)
3274 1.213 dyoung ifp->if_csum_flags_tx |= M_CSUM_UDPv6;
3275 1.442 rin if (ifp->if_capenable & IFCAP_CSUM_UDPv6_Rx)
3276 1.213 dyoung ifp->if_csum_flags_rx |= M_CSUM_UDPv6;
3277 1.442 rin
3278 1.442 rin if (ifp->if_capenable & IFCAP_TSOv4)
3279 1.442 rin ifp->if_csum_flags_tx |= M_CSUM_TSOv4;
3280 1.442 rin if (ifp->if_capenable & IFCAP_TSOv6)
3281 1.442 rin ifp->if_csum_flags_tx |= M_CSUM_TSOv6;
3282 1.442 rin
3283 1.442 rin #if NBRIDGE > 0
3284 1.442 rin if (ifp->if_bridge != NULL)
3285 1.442 rin bridge_calc_csum_flags(ifp->if_bridge);
3286 1.442 rin #endif
3287 1.442 rin
3288 1.215 dyoung if (ifp->if_flags & IFF_UP)
3289 1.215 dyoung return ENETRESET;
3290 1.215 dyoung return 0;
3291 1.211 dyoung case SIOCSIFFLAGS:
3292 1.215 dyoung ifr = data;
3293 1.399 ozaki /*
3294 1.399 ozaki * If if_is_mpsafe(ifp), KERNEL_LOCK isn't held here, but if_up
3295 1.399 ozaki * and if_down aren't MP-safe yet, so we must hold the lock.
3296 1.399 ozaki */
3297 1.399 ozaki KERNEL_LOCK_IF_IFP_MPSAFE(ifp);
3298 1.211 dyoung if (ifp->if_flags & IFF_UP && (ifr->ifr_flags & IFF_UP) == 0) {
3299 1.373 ozaki s = splsoftnet();
3300 1.403 ozaki if_down_locked(ifp);
3301 1.211 dyoung splx(s);
3302 1.211 dyoung }
3303 1.211 dyoung if (ifr->ifr_flags & IFF_UP && (ifp->if_flags & IFF_UP) == 0) {
3304 1.373 ozaki s = splsoftnet();
3305 1.403 ozaki if_up_locked(ifp);
3306 1.211 dyoung splx(s);
3307 1.211 dyoung }
3308 1.399 ozaki KERNEL_UNLOCK_IF_IFP_MPSAFE(ifp);
3309 1.459 roy flags = (ifp->if_flags & IFF_CANTCHANGE) |
3310 1.459 roy (ifr->ifr_flags &~ IFF_CANTCHANGE);
3311 1.459 roy if (ifp->if_flags != flags) {
3312 1.459 roy ifp->if_flags = flags;
3313 1.459 roy /* Notify that the flags have changed. */
3314 1.459 roy rt_ifmsg(ifp);
3315 1.459 roy }
3316 1.211 dyoung break;
3317 1.211 dyoung case SIOCGIFFLAGS:
3318 1.215 dyoung ifr = data;
3319 1.211 dyoung ifr->ifr_flags = ifp->if_flags;
3320 1.211 dyoung break;
3321 1.211 dyoung
3322 1.211 dyoung case SIOCGIFMETRIC:
3323 1.215 dyoung ifr = data;
3324 1.211 dyoung ifr->ifr_metric = ifp->if_metric;
3325 1.211 dyoung break;
3326 1.211 dyoung
3327 1.211 dyoung case SIOCGIFMTU:
3328 1.215 dyoung ifr = data;
3329 1.211 dyoung ifr->ifr_mtu = ifp->if_mtu;
3330 1.211 dyoung break;
3331 1.211 dyoung
3332 1.211 dyoung case SIOCGIFDLT:
3333 1.215 dyoung ifr = data;
3334 1.211 dyoung ifr->ifr_dlt = ifp->if_dlt;
3335 1.211 dyoung break;
3336 1.211 dyoung
3337 1.211 dyoung case SIOCGIFCAP:
3338 1.215 dyoung ifcr = data;
3339 1.211 dyoung ifcr->ifcr_capabilities = ifp->if_capabilities;
3340 1.211 dyoung ifcr->ifcr_capenable = ifp->if_capenable;
3341 1.211 dyoung break;
3342 1.211 dyoung
3343 1.211 dyoung case SIOCSIFMETRIC:
3344 1.215 dyoung ifr = data;
3345 1.211 dyoung ifp->if_metric = ifr->ifr_metric;
3346 1.211 dyoung break;
3347 1.211 dyoung
3348 1.211 dyoung case SIOCGIFDATA:
3349 1.215 dyoung ifdr = data;
3350 1.469 thorpej if_export_if_data(ifp, &ifdr->ifdr_data, false);
3351 1.211 dyoung break;
3352 1.211 dyoung
3353 1.266 christos case SIOCGIFINDEX:
3354 1.266 christos ifr = data;
3355 1.266 christos ifr->ifr_index = ifp->if_index;
3356 1.266 christos break;
3357 1.266 christos
3358 1.211 dyoung case SIOCZIFDATA:
3359 1.215 dyoung ifdr = data;
3360 1.469 thorpej if_export_if_data(ifp, &ifdr->ifdr_data, true);
3361 1.261 msaitoh getnanotime(&ifp->if_lastchange);
3362 1.211 dyoung break;
3363 1.215 dyoung case SIOCSIFMTU:
3364 1.215 dyoung ifr = data;
3365 1.215 dyoung if (ifp->if_mtu == ifr->ifr_mtu)
3366 1.215 dyoung break;
3367 1.215 dyoung ifp->if_mtu = ifr->ifr_mtu;
3368 1.215 dyoung return ENETRESET;
3369 1.456 ozaki case SIOCSIFDESCR:
3370 1.489 christos error = kauth_authorize_network(kauth_cred_get(),
3371 1.466 christos KAUTH_NETWORK_INTERFACE,
3372 1.466 christos KAUTH_REQ_NETWORK_INTERFACE_SETPRIV, ifp, KAUTH_ARG(cmd),
3373 1.466 christos NULL);
3374 1.466 christos if (error)
3375 1.466 christos return error;
3376 1.456 ozaki
3377 1.466 christos ifr = data;
3378 1.456 ozaki
3379 1.466 christos if (ifr->ifr_buflen > IFDESCRSIZE)
3380 1.466 christos return ENAMETOOLONG;
3381 1.456 ozaki
3382 1.466 christos if (ifr->ifr_buf == NULL || ifr->ifr_buflen == 0) {
3383 1.466 christos /* unset description */
3384 1.466 christos descr = NULL;
3385 1.466 christos } else {
3386 1.466 christos descr = kmem_zalloc(IFDESCRSIZE, KM_SLEEP);
3387 1.466 christos /*
3388 1.466 christos * copy (IFDESCRSIZE - 1) bytes to ensure
3389 1.466 christos * terminating nul
3390 1.466 christos */
3391 1.466 christos error = copyin(ifr->ifr_buf, descr, IFDESCRSIZE - 1);
3392 1.466 christos if (error) {
3393 1.466 christos kmem_free(descr, IFDESCRSIZE);
3394 1.466 christos return error;
3395 1.456 ozaki }
3396 1.466 christos }
3397 1.456 ozaki
3398 1.466 christos if (ifp->if_description != NULL)
3399 1.466 christos kmem_free(ifp->if_description, IFDESCRSIZE);
3400 1.456 ozaki
3401 1.466 christos ifp->if_description = descr;
3402 1.456 ozaki break;
3403 1.456 ozaki
3404 1.456 ozaki case SIOCGIFDESCR:
3405 1.466 christos ifr = data;
3406 1.466 christos descr = ifp->if_description;
3407 1.456 ozaki
3408 1.466 christos if (descr == NULL)
3409 1.466 christos return ENOMSG;
3410 1.456 ozaki
3411 1.466 christos if (ifr->ifr_buflen < IFDESCRSIZE)
3412 1.466 christos return EINVAL;
3413 1.456 ozaki
3414 1.466 christos error = copyout(descr, ifr->ifr_buf, IFDESCRSIZE);
3415 1.466 christos if (error)
3416 1.466 christos return error;
3417 1.456 ozaki break;
3418 1.456 ozaki
3419 1.211 dyoung default:
3420 1.223 dyoung return ENOTTY;
3421 1.211 dyoung }
3422 1.211 dyoung return 0;
3423 1.211 dyoung }
3424 1.211 dyoung
3425 1.235 dyoung int
3426 1.284 rtr ifaddrpref_ioctl(struct socket *so, u_long cmd, void *data, struct ifnet *ifp)
3427 1.235 dyoung {
3428 1.235 dyoung struct if_addrprefreq *ifap = (struct if_addrprefreq *)data;
3429 1.235 dyoung struct ifaddr *ifa;
3430 1.235 dyoung const struct sockaddr *any, *sa;
3431 1.235 dyoung union {
3432 1.235 dyoung struct sockaddr sa;
3433 1.235 dyoung struct sockaddr_storage ss;
3434 1.236 jakllsch } u, v;
3435 1.357 ozaki int s, error = 0;
3436 1.235 dyoung
3437 1.235 dyoung switch (cmd) {
3438 1.235 dyoung case SIOCSIFADDRPREF:
3439 1.489 christos error = kauth_authorize_network(kauth_cred_get(),
3440 1.466 christos KAUTH_NETWORK_INTERFACE,
3441 1.466 christos KAUTH_REQ_NETWORK_INTERFACE_SETPRIV, ifp, KAUTH_ARG(cmd),
3442 1.466 christos NULL);
3443 1.466 christos if (error)
3444 1.466 christos return error;
3445 1.466 christos break;
3446 1.235 dyoung case SIOCGIFADDRPREF:
3447 1.235 dyoung break;
3448 1.235 dyoung default:
3449 1.235 dyoung return EOPNOTSUPP;
3450 1.235 dyoung }
3451 1.235 dyoung
3452 1.235 dyoung /* sanity checks */
3453 1.235 dyoung if (data == NULL || ifp == NULL) {
3454 1.235 dyoung panic("invalid argument to %s", __func__);
3455 1.235 dyoung /*NOTREACHED*/
3456 1.235 dyoung }
3457 1.235 dyoung
3458 1.235 dyoung /* address must be specified on ADD and DELETE */
3459 1.235 dyoung sa = sstocsa(&ifap->ifap_addr);
3460 1.235 dyoung if (sa->sa_family != sofamily(so))
3461 1.235 dyoung return EINVAL;
3462 1.235 dyoung if ((any = sockaddr_any(sa)) == NULL || sa->sa_len != any->sa_len)
3463 1.235 dyoung return EINVAL;
3464 1.235 dyoung
3465 1.236 jakllsch sockaddr_externalize(&v.sa, sizeof(v.ss), sa);
3466 1.236 jakllsch
3467 1.357 ozaki s = pserialize_read_enter();
3468 1.354 ozaki IFADDR_READER_FOREACH(ifa, ifp) {
3469 1.235 dyoung if (ifa->ifa_addr->sa_family != sa->sa_family)
3470 1.235 dyoung continue;
3471 1.235 dyoung sockaddr_externalize(&u.sa, sizeof(u.ss), ifa->ifa_addr);
3472 1.236 jakllsch if (sockaddr_cmp(&u.sa, &v.sa) == 0)
3473 1.235 dyoung break;
3474 1.235 dyoung }
3475 1.357 ozaki if (ifa == NULL) {
3476 1.357 ozaki error = EADDRNOTAVAIL;
3477 1.357 ozaki goto out;
3478 1.357 ozaki }
3479 1.235 dyoung
3480 1.235 dyoung switch (cmd) {
3481 1.235 dyoung case SIOCSIFADDRPREF:
3482 1.235 dyoung ifa->ifa_preference = ifap->ifap_preference;
3483 1.357 ozaki goto out;
3484 1.235 dyoung case SIOCGIFADDRPREF:
3485 1.235 dyoung /* fill in the if_laddrreq structure */
3486 1.235 dyoung (void)sockaddr_copy(sstosa(&ifap->ifap_addr),
3487 1.235 dyoung sizeof(ifap->ifap_addr), ifa->ifa_addr);
3488 1.235 dyoung ifap->ifap_preference = ifa->ifa_preference;
3489 1.357 ozaki goto out;
3490 1.235 dyoung default:
3491 1.357 ozaki error = EOPNOTSUPP;
3492 1.235 dyoung }
3493 1.357 ozaki out:
3494 1.357 ozaki pserialize_read_exit(s);
3495 1.357 ozaki return error;
3496 1.235 dyoung }
3497 1.235 dyoung
3498 1.1 cgd /*
3499 1.1 cgd * Interface ioctls.
3500 1.1 cgd */
3501 1.273 pooka static int
3502 1.273 pooka doifioctl(struct socket *so, u_long cmd, void *data, struct lwp *l)
3503 1.1 cgd {
3504 1.61 augustss struct ifnet *ifp;
3505 1.61 augustss struct ifreq *ifr;
3506 1.454 msaitoh int error = 0;
3507 1.191 christos u_long ocmd = cmd;
3508 1.460 msaitoh u_short oif_flags;
3509 1.186 christos struct ifreq ifrb;
3510 1.187 xtraeme struct oifreq *oifr = NULL;
3511 1.292 christos int r;
3512 1.336 ozaki struct psref psref;
3513 1.454 msaitoh bool do_if43_post = false;
3514 1.454 msaitoh bool do_ifm80_post = false;
3515 1.1 cgd
3516 1.1 cgd switch (cmd) {
3517 1.1 cgd case SIOCGIFCONF:
3518 1.185 dyoung return ifconf(cmd, data);
3519 1.231 dyoung case SIOCINITIFADDR:
3520 1.231 dyoung return EPERM;
3521 1.420 christos default:
3522 1.446 pgoyette MODULE_HOOK_CALL(uipc_syscalls_40_hook, (cmd, data), enosys(),
3523 1.444 pgoyette error);
3524 1.420 christos if (error != ENOSYS)
3525 1.420 christos return error;
3526 1.446 pgoyette MODULE_HOOK_CALL(uipc_syscalls_50_hook, (l, cmd, data),
3527 1.444 pgoyette enosys(), error);
3528 1.420 christos if (error != ENOSYS)
3529 1.420 christos return error;
3530 1.444 pgoyette error = 0;
3531 1.420 christos break;
3532 1.1 cgd }
3533 1.191 christos
3534 1.420 christos ifr = data;
3535 1.451 pgoyette /* Pre-conversion */
3536 1.454 msaitoh MODULE_HOOK_CALL(if_cvtcmd_43_hook, (&cmd, ocmd), enosys(), error);
3537 1.454 msaitoh if (cmd != ocmd) {
3538 1.454 msaitoh oifr = data;
3539 1.454 msaitoh data = ifr = &ifrb;
3540 1.454 msaitoh IFREQO2N_43(oifr, ifr);
3541 1.454 msaitoh do_if43_post = true;
3542 1.420 christos }
3543 1.454 msaitoh MODULE_HOOK_CALL(ifmedia_80_pre_hook, (ifr, &cmd, &do_ifm80_post),
3544 1.454 msaitoh enosys(), error);
3545 1.63 thorpej
3546 1.63 thorpej switch (cmd) {
3547 1.63 thorpej case SIOCIFCREATE:
3548 1.519 skrll case SIOCIFDESTROY: {
3549 1.519 skrll const int bound = curlwp_bind();
3550 1.185 dyoung if (l != NULL) {
3551 1.336 ozaki ifp = if_get(ifr->ifr_name, &psref);
3552 1.490 christos error = kauth_authorize_network(l->l_cred,
3553 1.174 elad KAUTH_NETWORK_INTERFACE,
3554 1.174 elad KAUTH_REQ_NETWORK_INTERFACE_SETPRIV, ifp,
3555 1.466 christos KAUTH_ARG(cmd), NULL);
3556 1.336 ozaki if (ifp != NULL)
3557 1.336 ozaki if_put(ifp, &psref);
3558 1.336 ozaki if (error != 0) {
3559 1.339 ozaki curlwp_bindx(bound);
3560 1.151 yamt return error;
3561 1.336 ozaki }
3562 1.151 yamt }
3563 1.399 ozaki KERNEL_LOCK_UNLESS_NET_MPSAFE();
3564 1.292 christos mutex_enter(&if_clone_mtx);
3565 1.292 christos r = (cmd == SIOCIFCREATE) ?
3566 1.64 thorpej if_clone_create(ifr->ifr_name) :
3567 1.185 dyoung if_clone_destroy(ifr->ifr_name);
3568 1.292 christos mutex_exit(&if_clone_mtx);
3569 1.399 ozaki KERNEL_UNLOCK_UNLESS_NET_MPSAFE();
3570 1.339 ozaki curlwp_bindx(bound);
3571 1.292 christos return r;
3572 1.519 skrll }
3573 1.518 skrll case SIOCIFGCLONERS: {
3574 1.518 skrll struct if_clonereq *req = (struct if_clonereq *)data;
3575 1.518 skrll return if_clone_list(req->ifcr_count, req->ifcr_buffer,
3576 1.518 skrll &req->ifcr_total);
3577 1.518 skrll }
3578 1.63 thorpej }
3579 1.63 thorpej
3580 1.506 riastrad if ((cmd & IOC_IN) == 0 || IOCPARM_LEN(cmd) < sizeof(ifr->ifr_name))
3581 1.506 riastrad return EINVAL;
3582 1.506 riastrad
3583 1.519 skrll const int bound = curlwp_bind();
3584 1.336 ozaki ifp = if_get(ifr->ifr_name, &psref);
3585 1.336 ozaki if (ifp == NULL) {
3586 1.339 ozaki curlwp_bindx(bound);
3587 1.185 dyoung return ENXIO;
3588 1.336 ozaki }
3589 1.151 yamt
3590 1.151 yamt switch (cmd) {
3591 1.233 christos case SIOCALIFADDR:
3592 1.233 christos case SIOCDLIFADDR:
3593 1.233 christos case SIOCSIFADDRPREF:
3594 1.151 yamt case SIOCSIFFLAGS:
3595 1.151 yamt case SIOCSIFCAP:
3596 1.151 yamt case SIOCSIFMETRIC:
3597 1.151 yamt case SIOCZIFDATA:
3598 1.151 yamt case SIOCSIFMTU:
3599 1.151 yamt case SIOCSIFPHYADDR:
3600 1.151 yamt case SIOCDIFPHYADDR:
3601 1.151 yamt #ifdef INET6
3602 1.151 yamt case SIOCSIFPHYADDR_IN6:
3603 1.151 yamt #endif
3604 1.151 yamt case SIOCSLIFPHYADDR:
3605 1.151 yamt case SIOCADDMULTI:
3606 1.151 yamt case SIOCDELMULTI:
3607 1.443 msaitoh case SIOCSETHERCAP:
3608 1.151 yamt case SIOCSIFMEDIA:
3609 1.154 perry case SIOCSDRVSPEC:
3610 1.196 skd case SIOCG80211:
3611 1.196 skd case SIOCS80211:
3612 1.151 yamt case SIOCS80211NWID:
3613 1.151 yamt case SIOCS80211NWKEY:
3614 1.151 yamt case SIOCS80211POWER:
3615 1.151 yamt case SIOCS80211BSSID:
3616 1.151 yamt case SIOCS80211CHANNEL:
3617 1.249 pooka case SIOCSLINKSTR:
3618 1.185 dyoung if (l != NULL) {
3619 1.490 christos error = kauth_authorize_network(l->l_cred,
3620 1.174 elad KAUTH_NETWORK_INTERFACE,
3621 1.174 elad KAUTH_REQ_NETWORK_INTERFACE_SETPRIV, ifp,
3622 1.466 christos KAUTH_ARG(cmd), NULL);
3623 1.185 dyoung if (error != 0)
3624 1.336 ozaki goto out;
3625 1.151 yamt }
3626 1.151 yamt }
3627 1.151 yamt
3628 1.49 itojun oif_flags = ifp->if_flags;
3629 1.1 cgd
3630 1.399 ozaki KERNEL_LOCK_UNLESS_IFP_MPSAFE(ifp);
3631 1.413 ozaki IFNET_LOCK(ifp);
3632 1.336 ozaki
3633 1.498 riastrad error = if_ioctl(ifp, cmd, data);
3634 1.231 dyoung if (error != ENOTTY)
3635 1.231 dyoung ;
3636 1.231 dyoung else if (so->so_proto == NULL)
3637 1.252 dyoung error = EOPNOTSUPP;
3638 1.231 dyoung else {
3639 1.399 ozaki KERNEL_LOCK_IF_IFP_MPSAFE(ifp);
3640 1.446 pgoyette MODULE_HOOK_CALL(if_ifioctl_43_hook,
3641 1.444 pgoyette (so, ocmd, cmd, data, l), enosys(), error);
3642 1.444 pgoyette if (error == ENOSYS)
3643 1.361 pgoyette error = (*so->so_proto->pr_usrreqs->pr_ioctl)(so,
3644 1.361 pgoyette cmd, data, ifp);
3645 1.399 ozaki KERNEL_UNLOCK_IF_IFP_MPSAFE(ifp);
3646 1.49 itojun }
3647 1.1 cgd
3648 1.49 itojun if (((oif_flags ^ ifp->if_flags) & IFF_UP) != 0) {
3649 1.312 roy if ((ifp->if_flags & IFF_UP) != 0) {
3650 1.373 ozaki int s = splsoftnet();
3651 1.403 ozaki if_up_locked(ifp);
3652 1.49 itojun splx(s);
3653 1.49 itojun }
3654 1.1 cgd }
3655 1.450 msaitoh
3656 1.451 pgoyette /* Post-conversion */
3657 1.454 msaitoh if (do_ifm80_post && (error == 0))
3658 1.454 msaitoh MODULE_HOOK_CALL(ifmedia_80_post_hook, (ifr, cmd),
3659 1.454 msaitoh enosys(), error);
3660 1.454 msaitoh if (do_if43_post)
3661 1.450 msaitoh IFREQN2O_43(oifr, ifr);
3662 1.49 itojun
3663 1.413 ozaki IFNET_UNLOCK(ifp);
3664 1.399 ozaki KERNEL_UNLOCK_UNLESS_IFP_MPSAFE(ifp);
3665 1.336 ozaki out:
3666 1.336 ozaki if_put(ifp, &psref);
3667 1.339 ozaki curlwp_bindx(bound);
3668 1.185 dyoung return error;
3669 1.1 cgd }
3670 1.1 cgd
3671 1.1 cgd /*
3672 1.1 cgd * Return interface configuration
3673 1.1 cgd * of system. List may be used
3674 1.1 cgd * in later ioctl's (above) to get
3675 1.1 cgd * other information.
3676 1.200 gdt *
3677 1.200 gdt * Each record is a struct ifreq. Before the addition of
3678 1.200 gdt * sockaddr_storage, the API rule was that sockaddr flavors that did
3679 1.200 gdt * not fit would extend beyond the struct ifreq, with the next struct
3680 1.200 gdt * ifreq starting sa_len beyond the struct sockaddr. Because the
3681 1.200 gdt * union in struct ifreq includes struct sockaddr_storage, every kind
3682 1.200 gdt * of sockaddr must fit. Thus, there are no longer any overlength
3683 1.200 gdt * records.
3684 1.200 gdt *
3685 1.200 gdt * Records are added to the user buffer if they fit, and ifc_len is
3686 1.200 gdt * adjusted to the length that was written. Thus, the user is only
3687 1.200 gdt * assured of getting the complete list if ifc_len on return is at
3688 1.200 gdt * least sizeof(struct ifreq) less than it was on entry.
3689 1.200 gdt *
3690 1.200 gdt * If the user buffer pointer is NULL, this routine copies no data and
3691 1.200 gdt * returns the amount of space that would be needed.
3692 1.200 gdt *
3693 1.200 gdt * Invariants:
3694 1.200 gdt * ifrp points to the next part of the user's buffer to be used. If
3695 1.200 gdt * ifrp != NULL, space holds the number of bytes remaining that we may
3696 1.200 gdt * write at ifrp. Otherwise, space holds the number of bytes that
3697 1.200 gdt * would have been written had there been adequate space.
3698 1.1 cgd */
3699 1.1 cgd /*ARGSUSED*/
3700 1.302 ozaki static int
3701 1.183 christos ifconf(u_long cmd, void *data)
3702 1.1 cgd {
3703 1.61 augustss struct ifconf *ifc = (struct ifconf *)data;
3704 1.61 augustss struct ifnet *ifp;
3705 1.61 augustss struct ifaddr *ifa;
3706 1.304 ozaki struct ifreq ifr, *ifrp = NULL;
3707 1.304 ozaki int space = 0, error = 0;
3708 1.200 gdt const int sz = (int)sizeof(struct ifreq);
3709 1.304 ozaki const bool docopy = ifc->ifc_req != NULL;
3710 1.334 ozaki int s;
3711 1.334 ozaki struct psref psref;
3712 1.1 cgd
3713 1.304 ozaki if (docopy) {
3714 1.479 msaitoh if (ifc->ifc_len < 0)
3715 1.479 msaitoh return EINVAL;
3716 1.479 msaitoh
3717 1.190 enami space = ifc->ifc_len;
3718 1.304 ozaki ifrp = ifc->ifc_req;
3719 1.304 ozaki }
3720 1.479 msaitoh memset(&ifr, 0, sizeof(ifr));
3721 1.304 ozaki
3722 1.519 skrll const int bound = curlwp_bind();
3723 1.334 ozaki s = pserialize_read_enter();
3724 1.334 ozaki IFNET_READER_FOREACH(ifp) {
3725 1.334 ozaki psref_acquire(&psref, &ifp->if_psref, ifnet_psref_class);
3726 1.334 ozaki pserialize_read_exit(s);
3727 1.334 ozaki
3728 1.175 christos (void)strncpy(ifr.ifr_name, ifp->if_xname,
3729 1.173 christos sizeof(ifr.ifr_name));
3730 1.334 ozaki if (ifr.ifr_name[sizeof(ifr.ifr_name) - 1] != '\0') {
3731 1.334 ozaki error = ENAMETOOLONG;
3732 1.334 ozaki goto release_exit;
3733 1.334 ozaki }
3734 1.354 ozaki if (IFADDR_READER_EMPTY(ifp)) {
3735 1.200 gdt /* Interface with no addresses - send zero sockaddr. */
3736 1.127 christos memset(&ifr.ifr_addr, 0, sizeof(ifr.ifr_addr));
3737 1.304 ozaki if (!docopy) {
3738 1.218 dyoung space += sz;
3739 1.400 ozaki goto next;
3740 1.218 dyoung }
3741 1.218 dyoung if (space >= sz) {
3742 1.218 dyoung error = copyout(&ifr, ifrp, sz);
3743 1.218 dyoung if (error != 0)
3744 1.334 ozaki goto release_exit;
3745 1.218 dyoung ifrp++;
3746 1.218 dyoung space -= sz;
3747 1.70 mellon }
3748 1.127 christos }
3749 1.127 christos
3750 1.400 ozaki s = pserialize_read_enter();
3751 1.354 ozaki IFADDR_READER_FOREACH(ifa, ifp) {
3752 1.61 augustss struct sockaddr *sa = ifa->ifa_addr;
3753 1.200 gdt /* all sockaddrs must fit in sockaddr_storage */
3754 1.200 gdt KASSERT(sa->sa_len <= sizeof(ifr.ifr_ifru));
3755 1.200 gdt
3756 1.304 ozaki if (!docopy) {
3757 1.218 dyoung space += sz;
3758 1.218 dyoung continue;
3759 1.218 dyoung }
3760 1.218 dyoung memcpy(&ifr.ifr_space, sa, sa->sa_len);
3761 1.400 ozaki pserialize_read_exit(s);
3762 1.400 ozaki
3763 1.218 dyoung if (space >= sz) {
3764 1.218 dyoung error = copyout(&ifr, ifrp, sz);
3765 1.218 dyoung if (error != 0)
3766 1.334 ozaki goto release_exit;
3767 1.218 dyoung ifrp++; space -= sz;
3768 1.1 cgd }
3769 1.400 ozaki s = pserialize_read_enter();
3770 1.1 cgd }
3771 1.400 ozaki pserialize_read_exit(s);
3772 1.334 ozaki
3773 1.400 ozaki next:
3774 1.334 ozaki s = pserialize_read_enter();
3775 1.334 ozaki psref_release(&psref, &ifp->if_psref, ifnet_psref_class);
3776 1.1 cgd }
3777 1.334 ozaki pserialize_read_exit(s);
3778 1.339 ozaki curlwp_bindx(bound);
3779 1.334 ozaki
3780 1.304 ozaki if (docopy) {
3781 1.200 gdt KASSERT(0 <= space && space <= ifc->ifc_len);
3782 1.127 christos ifc->ifc_len -= space;
3783 1.218 dyoung } else {
3784 1.200 gdt KASSERT(space >= 0);
3785 1.200 gdt ifc->ifc_len = space;
3786 1.200 gdt }
3787 1.190 enami return (0);
3788 1.334 ozaki
3789 1.334 ozaki release_exit:
3790 1.334 ozaki psref_release(&psref, &ifp->if_psref, ifnet_psref_class);
3791 1.339 ozaki curlwp_bindx(bound);
3792 1.334 ozaki return error;
3793 1.1 cgd }
3794 1.133 jonathan
3795 1.198 dyoung int
3796 1.247 christos ifreq_setaddr(u_long cmd, struct ifreq *ifr, const struct sockaddr *sa)
3797 1.198 dyoung {
3798 1.420 christos uint8_t len = sizeof(ifr->ifr_ifru.ifru_space);
3799 1.247 christos struct ifreq ifrb;
3800 1.247 christos struct oifreq *oifr = NULL;
3801 1.247 christos u_long ocmd = cmd;
3802 1.444 pgoyette int hook;
3803 1.420 christos
3804 1.446 pgoyette MODULE_HOOK_CALL(if_cvtcmd_43_hook, (&cmd, ocmd), enosys(), hook);
3805 1.444 pgoyette if (hook != ENOSYS) {
3806 1.444 pgoyette if (cmd != ocmd) {
3807 1.444 pgoyette oifr = (struct oifreq *)(void *)ifr;
3808 1.444 pgoyette ifr = &ifrb;
3809 1.450 msaitoh IFREQO2N_43(oifr, ifr);
3810 1.444 pgoyette len = sizeof(oifr->ifr_addr);
3811 1.444 pgoyette }
3812 1.420 christos }
3813 1.444 pgoyette
3814 1.198 dyoung if (len < sa->sa_len)
3815 1.198 dyoung return EFBIG;
3816 1.247 christos
3817 1.241 joerg memset(&ifr->ifr_addr, 0, len);
3818 1.202 dyoung sockaddr_copy(&ifr->ifr_addr, len, sa);
3819 1.247 christos
3820 1.247 christos if (cmd != ocmd)
3821 1.450 msaitoh IFREQN2O_43(oifr, ifr);
3822 1.198 dyoung return 0;
3823 1.198 dyoung }
3824 1.198 dyoung
3825 1.155 christos /*
3826 1.332 knakahar * wrapper function for the drivers which doesn't have if_transmit().
3827 1.155 christos */
3828 1.345 knakahar static int
3829 1.332 knakahar if_transmit(struct ifnet *ifp, struct mbuf *m)
3830 1.155 christos {
3831 1.519 skrll int error;
3832 1.389 ozaki size_t pktlen = m->m_pkthdr.len;
3833 1.389 ozaki bool mcast = (m->m_flags & M_MCAST) != 0;
3834 1.332 knakahar
3835 1.519 skrll const int s = splnet();
3836 1.155 christos
3837 1.330 knakahar IFQ_ENQUEUE(&ifp->if_snd, m, error);
3838 1.332 knakahar if (error != 0) {
3839 1.332 knakahar /* mbuf is already freed */
3840 1.185 dyoung goto out;
3841 1.332 knakahar }
3842 1.332 knakahar
3843 1.469 thorpej net_stat_ref_t nsr = IF_STAT_GETREF(ifp);
3844 1.469 thorpej if_statadd_ref(nsr, if_obytes, pktlen);
3845 1.389 ozaki if (mcast)
3846 1.469 thorpej if_statinc_ref(nsr, if_omcasts);
3847 1.469 thorpej IF_STAT_PUTREF(ifp);
3848 1.332 knakahar
3849 1.155 christos if ((ifp->if_flags & IFF_OACTIVE) == 0)
3850 1.343 knakahar if_start_lock(ifp);
3851 1.185 dyoung out:
3852 1.155 christos splx(s);
3853 1.332 knakahar
3854 1.155 christos return error;
3855 1.155 christos }
3856 1.155 christos
3857 1.345 knakahar int
3858 1.345 knakahar if_transmit_lock(struct ifnet *ifp, struct mbuf *m)
3859 1.345 knakahar {
3860 1.345 knakahar int error;
3861 1.345 knakahar
3862 1.465 maxv kmsan_check_mbuf(m);
3863 1.465 maxv
3864 1.345 knakahar #ifdef ALTQ
3865 1.345 knakahar KERNEL_LOCK(1, NULL);
3866 1.345 knakahar if (ALTQ_IS_ENABLED(&ifp->if_snd)) {
3867 1.345 knakahar error = if_transmit(ifp, m);
3868 1.345 knakahar KERNEL_UNLOCK_ONE(NULL);
3869 1.345 knakahar } else {
3870 1.345 knakahar KERNEL_UNLOCK_ONE(NULL);
3871 1.345 knakahar error = (*ifp->if_transmit)(ifp, m);
3872 1.507 skrll /* mbuf is already freed */
3873 1.345 knakahar }
3874 1.345 knakahar #else /* !ALTQ */
3875 1.345 knakahar error = (*ifp->if_transmit)(ifp, m);
3876 1.507 skrll /* mbuf is already freed */
3877 1.345 knakahar #endif /* !ALTQ */
3878 1.345 knakahar
3879 1.345 knakahar return error;
3880 1.345 knakahar }
3881 1.345 knakahar
3882 1.155 christos /*
3883 1.332 knakahar * Queue message on interface, and start output if interface
3884 1.332 knakahar * not yet active.
3885 1.332 knakahar */
3886 1.332 knakahar int
3887 1.332 knakahar ifq_enqueue(struct ifnet *ifp, struct mbuf *m)
3888 1.332 knakahar {
3889 1.332 knakahar
3890 1.345 knakahar return if_transmit_lock(ifp, m);
3891 1.332 knakahar }
3892 1.332 knakahar
3893 1.332 knakahar /*
3894 1.155 christos * Queue message on interface, possibly using a second fast queue
3895 1.155 christos */
3896 1.155 christos int
3897 1.330 knakahar ifq_enqueue2(struct ifnet *ifp, struct ifqueue *ifq, struct mbuf *m)
3898 1.155 christos {
3899 1.155 christos int error = 0;
3900 1.155 christos
3901 1.155 christos if (ifq != NULL
3902 1.155 christos #ifdef ALTQ
3903 1.155 christos && ALTQ_IS_ENABLED(&ifp->if_snd) == 0
3904 1.155 christos #endif
3905 1.155 christos ) {
3906 1.155 christos if (IF_QFULL(ifq)) {
3907 1.155 christos IF_DROP(&ifp->if_snd);
3908 1.155 christos m_freem(m);
3909 1.155 christos if (error == 0)
3910 1.155 christos error = ENOBUFS;
3911 1.185 dyoung } else
3912 1.155 christos IF_ENQUEUE(ifq, m);
3913 1.155 christos } else
3914 1.330 knakahar IFQ_ENQUEUE(&ifp->if_snd, m, error);
3915 1.155 christos if (error != 0) {
3916 1.469 thorpej if_statinc(ifp, if_oerrors);
3917 1.155 christos return error;
3918 1.155 christos }
3919 1.155 christos return 0;
3920 1.155 christos }
3921 1.155 christos
3922 1.252 dyoung int
3923 1.252 dyoung if_addr_init(ifnet_t *ifp, struct ifaddr *ifa, const bool src)
3924 1.252 dyoung {
3925 1.252 dyoung int rc;
3926 1.252 dyoung
3927 1.413 ozaki KASSERT(IFNET_LOCKED(ifp));
3928 1.252 dyoung if (ifp->if_initaddr != NULL)
3929 1.252 dyoung rc = (*ifp->if_initaddr)(ifp, ifa, src);
3930 1.252 dyoung else if (src ||
3931 1.498 riastrad (rc = if_ioctl(ifp, SIOCSIFDSTADDR, ifa)) == ENOTTY)
3932 1.498 riastrad rc = if_ioctl(ifp, SIOCINITIFADDR, ifa);
3933 1.252 dyoung
3934 1.252 dyoung return rc;
3935 1.252 dyoung }
3936 1.252 dyoung
3937 1.252 dyoung int
3938 1.309 roy if_do_dad(struct ifnet *ifp)
3939 1.309 roy {
3940 1.309 roy if ((ifp->if_flags & IFF_LOOPBACK) != 0)
3941 1.309 roy return 0;
3942 1.309 roy
3943 1.309 roy switch (ifp->if_type) {
3944 1.309 roy case IFT_FAITH:
3945 1.309 roy /*
3946 1.309 roy * These interfaces do not have the IFF_LOOPBACK flag,
3947 1.309 roy * but loop packets back. We do not have to do DAD on such
3948 1.309 roy * interfaces. We should even omit it, because loop-backed
3949 1.309 roy * responses would confuse the DAD procedure.
3950 1.309 roy */
3951 1.309 roy return 0;
3952 1.309 roy default:
3953 1.309 roy /*
3954 1.309 roy * Our DAD routine requires the interface up and running.
3955 1.309 roy * However, some interfaces can be up before the RUNNING
3956 1.505 andvar * status. Additionally, users may try to assign addresses
3957 1.309 roy * before the interface becomes up (or running).
3958 1.309 roy * We simply skip DAD in such a case as a work around.
3959 1.309 roy * XXX: we should rather mark "tentative" on such addresses,
3960 1.309 roy * and do DAD after the interface becomes ready.
3961 1.309 roy */
3962 1.455 msaitoh if ((ifp->if_flags & (IFF_UP | IFF_RUNNING)) !=
3963 1.455 msaitoh (IFF_UP | IFF_RUNNING))
3964 1.309 roy return 0;
3965 1.309 roy
3966 1.309 roy return 1;
3967 1.309 roy }
3968 1.309 roy }
3969 1.309 roy
3970 1.500 riastrad /*
3971 1.500 riastrad * if_flags_set(ifp, flags)
3972 1.500 riastrad *
3973 1.500 riastrad * Ask ifp to change ifp->if_flags to flags, as if with the
3974 1.500 riastrad * SIOCSIFFLAGS ioctl command.
3975 1.500 riastrad *
3976 1.500 riastrad * May sleep. Caller must hold ifp->if_ioctl_lock, a.k.a
3977 1.500 riastrad * IFNET_LOCK.
3978 1.500 riastrad */
3979 1.309 roy int
3980 1.460 msaitoh if_flags_set(ifnet_t *ifp, const u_short flags)
3981 1.252 dyoung {
3982 1.252 dyoung int rc;
3983 1.252 dyoung
3984 1.413 ozaki KASSERT(IFNET_LOCKED(ifp));
3985 1.401 ozaki
3986 1.252 dyoung if (ifp->if_setflags != NULL)
3987 1.252 dyoung rc = (*ifp->if_setflags)(ifp, flags);
3988 1.252 dyoung else {
3989 1.460 msaitoh u_short cantflags, chgdflags;
3990 1.256 dyoung struct ifreq ifr;
3991 1.256 dyoung
3992 1.259 dyoung chgdflags = ifp->if_flags ^ flags;
3993 1.259 dyoung cantflags = chgdflags & IFF_CANTCHANGE;
3994 1.256 dyoung
3995 1.256 dyoung if (cantflags != 0)
3996 1.256 dyoung ifp->if_flags ^= cantflags;
3997 1.256 dyoung
3998 1.509 skrll /*
3999 1.509 skrll * Traditionally, we do not call if_ioctl after
4000 1.259 dyoung * setting/clearing only IFF_PROMISC if the interface
4001 1.259 dyoung * isn't IFF_UP. Uphold that tradition.
4002 1.259 dyoung */
4003 1.391 ozaki if (chgdflags == IFF_PROMISC && (ifp->if_flags & IFF_UP) == 0)
4004 1.391 ozaki return 0;
4005 1.259 dyoung
4006 1.259 dyoung memset(&ifr, 0, sizeof(ifr));
4007 1.259 dyoung
4008 1.256 dyoung ifr.ifr_flags = flags & ~IFF_CANTCHANGE;
4009 1.498 riastrad rc = if_ioctl(ifp, SIOCSIFFLAGS, &ifr);
4010 1.256 dyoung
4011 1.256 dyoung if (rc != 0 && cantflags != 0)
4012 1.256 dyoung ifp->if_flags ^= cantflags;
4013 1.252 dyoung }
4014 1.252 dyoung
4015 1.252 dyoung return rc;
4016 1.252 dyoung }
4017 1.252 dyoung
4018 1.501 riastrad /*
4019 1.501 riastrad * if_mcast_op(ifp, cmd, sa)
4020 1.501 riastrad *
4021 1.501 riastrad * Apply a multicast command, SIOCADDMULTI/SIOCDELMULTI, to the
4022 1.501 riastrad * interface. Returns 0 on success, nonzero errno(3) number on
4023 1.501 riastrad * failure.
4024 1.501 riastrad *
4025 1.501 riastrad * May sleep.
4026 1.501 riastrad *
4027 1.501 riastrad * Use this, not if_ioctl, for the multicast commands.
4028 1.501 riastrad */
4029 1.252 dyoung int
4030 1.252 dyoung if_mcast_op(ifnet_t *ifp, const unsigned long cmd, const struct sockaddr *sa)
4031 1.252 dyoung {
4032 1.252 dyoung int rc;
4033 1.252 dyoung struct ifreq ifr;
4034 1.252 dyoung
4035 1.501 riastrad switch (cmd) {
4036 1.501 riastrad case SIOCADDMULTI:
4037 1.501 riastrad case SIOCDELMULTI:
4038 1.501 riastrad break;
4039 1.501 riastrad default:
4040 1.501 riastrad panic("invalid ifnet multicast command: 0x%lx", cmd);
4041 1.501 riastrad }
4042 1.501 riastrad
4043 1.475 jdolecek ifreq_setaddr(cmd, &ifr, sa);
4044 1.498 riastrad rc = if_ioctl(ifp, cmd, &ifr);
4045 1.252 dyoung
4046 1.252 dyoung return rc;
4047 1.252 dyoung }
4048 1.155 christos
4049 1.234 dyoung static void
4050 1.234 dyoung sysctl_sndq_setup(struct sysctllog **clog, const char *ifname,
4051 1.234 dyoung struct ifaltq *ifq)
4052 1.234 dyoung {
4053 1.234 dyoung const struct sysctlnode *cnode, *rnode;
4054 1.234 dyoung
4055 1.234 dyoung if (sysctl_createv(clog, 0, NULL, &rnode,
4056 1.234 dyoung CTLFLAG_PERMANENT,
4057 1.234 dyoung CTLTYPE_NODE, "interfaces",
4058 1.234 dyoung SYSCTL_DESCR("Per-interface controls"),
4059 1.234 dyoung NULL, 0, NULL, 0,
4060 1.272 pooka CTL_NET, CTL_CREATE, CTL_EOL) != 0)
4061 1.234 dyoung goto bad;
4062 1.234 dyoung
4063 1.234 dyoung if (sysctl_createv(clog, 0, &rnode, &rnode,
4064 1.234 dyoung CTLFLAG_PERMANENT,
4065 1.234 dyoung CTLTYPE_NODE, ifname,
4066 1.234 dyoung SYSCTL_DESCR("Interface controls"),
4067 1.234 dyoung NULL, 0, NULL, 0,
4068 1.234 dyoung CTL_CREATE, CTL_EOL) != 0)
4069 1.234 dyoung goto bad;
4070 1.234 dyoung
4071 1.234 dyoung if (sysctl_createv(clog, 0, &rnode, &rnode,
4072 1.234 dyoung CTLFLAG_PERMANENT,
4073 1.234 dyoung CTLTYPE_NODE, "sndq",
4074 1.234 dyoung SYSCTL_DESCR("Interface output queue controls"),
4075 1.234 dyoung NULL, 0, NULL, 0,
4076 1.234 dyoung CTL_CREATE, CTL_EOL) != 0)
4077 1.234 dyoung goto bad;
4078 1.234 dyoung
4079 1.234 dyoung if (sysctl_createv(clog, 0, &rnode, &cnode,
4080 1.234 dyoung CTLFLAG_PERMANENT,
4081 1.234 dyoung CTLTYPE_INT, "len",
4082 1.234 dyoung SYSCTL_DESCR("Current output queue length"),
4083 1.234 dyoung NULL, 0, &ifq->ifq_len, 0,
4084 1.234 dyoung CTL_CREATE, CTL_EOL) != 0)
4085 1.234 dyoung goto bad;
4086 1.234 dyoung
4087 1.234 dyoung if (sysctl_createv(clog, 0, &rnode, &cnode,
4088 1.455 msaitoh CTLFLAG_PERMANENT | CTLFLAG_READWRITE,
4089 1.234 dyoung CTLTYPE_INT, "maxlen",
4090 1.234 dyoung SYSCTL_DESCR("Maximum allowed output queue length"),
4091 1.234 dyoung NULL, 0, &ifq->ifq_maxlen, 0,
4092 1.234 dyoung CTL_CREATE, CTL_EOL) != 0)
4093 1.234 dyoung goto bad;
4094 1.234 dyoung
4095 1.234 dyoung if (sysctl_createv(clog, 0, &rnode, &cnode,
4096 1.234 dyoung CTLFLAG_PERMANENT,
4097 1.234 dyoung CTLTYPE_INT, "drops",
4098 1.234 dyoung SYSCTL_DESCR("Packets dropped due to full output queue"),
4099 1.234 dyoung NULL, 0, &ifq->ifq_drops, 0,
4100 1.234 dyoung CTL_CREATE, CTL_EOL) != 0)
4101 1.234 dyoung goto bad;
4102 1.234 dyoung
4103 1.234 dyoung return;
4104 1.234 dyoung bad:
4105 1.234 dyoung printf("%s: could not attach sysctl nodes\n", ifname);
4106 1.234 dyoung return;
4107 1.234 dyoung }
4108 1.234 dyoung
4109 1.138 drochner #if defined(INET) || defined(INET6)
4110 1.276 rmind
4111 1.276 rmind #define SYSCTL_NET_PKTQ(q, cn, c) \
4112 1.276 rmind static int \
4113 1.276 rmind sysctl_net_##q##_##cn(SYSCTLFN_ARGS) \
4114 1.276 rmind { \
4115 1.276 rmind return sysctl_pktq_count(SYSCTLFN_CALL(rnode), q, c); \
4116 1.276 rmind }
4117 1.276 rmind
4118 1.276 rmind #if defined(INET)
4119 1.279 rmind static int
4120 1.279 rmind sysctl_net_ip_pktq_maxlen(SYSCTLFN_ARGS)
4121 1.279 rmind {
4122 1.279 rmind return sysctl_pktq_maxlen(SYSCTLFN_CALL(rnode), ip_pktq);
4123 1.279 rmind }
4124 1.276 rmind SYSCTL_NET_PKTQ(ip_pktq, items, PKTQ_NITEMS)
4125 1.276 rmind SYSCTL_NET_PKTQ(ip_pktq, drops, PKTQ_DROPS)
4126 1.276 rmind #endif
4127 1.279 rmind
4128 1.276 rmind #if defined(INET6)
4129 1.279 rmind static int
4130 1.279 rmind sysctl_net_ip6_pktq_maxlen(SYSCTLFN_ARGS)
4131 1.279 rmind {
4132 1.279 rmind return sysctl_pktq_maxlen(SYSCTLFN_CALL(rnode), ip6_pktq);
4133 1.279 rmind }
4134 1.276 rmind SYSCTL_NET_PKTQ(ip6_pktq, items, PKTQ_NITEMS)
4135 1.276 rmind SYSCTL_NET_PKTQ(ip6_pktq, drops, PKTQ_DROPS)
4136 1.276 rmind #endif
4137 1.276 rmind
4138 1.136 atatat static void
4139 1.276 rmind sysctl_net_pktq_setup(struct sysctllog **clog, int pf)
4140 1.136 atatat {
4141 1.276 rmind sysctlfn len_func = NULL, maxlen_func = NULL, drops_func = NULL;
4142 1.276 rmind const char *pfname = NULL, *ipname = NULL;
4143 1.276 rmind int ipn = 0, qid = 0;
4144 1.276 rmind
4145 1.276 rmind switch (pf) {
4146 1.276 rmind #if defined(INET)
4147 1.276 rmind case PF_INET:
4148 1.276 rmind len_func = sysctl_net_ip_pktq_items;
4149 1.276 rmind maxlen_func = sysctl_net_ip_pktq_maxlen;
4150 1.276 rmind drops_func = sysctl_net_ip_pktq_drops;
4151 1.276 rmind pfname = "inet", ipn = IPPROTO_IP;
4152 1.276 rmind ipname = "ip", qid = IPCTL_IFQ;
4153 1.276 rmind break;
4154 1.276 rmind #endif
4155 1.276 rmind #if defined(INET6)
4156 1.276 rmind case PF_INET6:
4157 1.276 rmind len_func = sysctl_net_ip6_pktq_items;
4158 1.276 rmind maxlen_func = sysctl_net_ip6_pktq_maxlen;
4159 1.276 rmind drops_func = sysctl_net_ip6_pktq_drops;
4160 1.276 rmind pfname = "inet6", ipn = IPPROTO_IPV6;
4161 1.276 rmind ipname = "ip6", qid = IPV6CTL_IFQ;
4162 1.276 rmind break;
4163 1.276 rmind #endif
4164 1.276 rmind default:
4165 1.276 rmind KASSERT(false);
4166 1.276 rmind }
4167 1.136 atatat
4168 1.139 atatat sysctl_createv(clog, 0, NULL, NULL,
4169 1.139 atatat CTLFLAG_PERMANENT,
4170 1.136 atatat CTLTYPE_NODE, pfname, NULL,
4171 1.136 atatat NULL, 0, NULL, 0,
4172 1.136 atatat CTL_NET, pf, CTL_EOL);
4173 1.139 atatat sysctl_createv(clog, 0, NULL, NULL,
4174 1.139 atatat CTLFLAG_PERMANENT,
4175 1.136 atatat CTLTYPE_NODE, ipname, NULL,
4176 1.136 atatat NULL, 0, NULL, 0,
4177 1.136 atatat CTL_NET, pf, ipn, CTL_EOL);
4178 1.139 atatat sysctl_createv(clog, 0, NULL, NULL,
4179 1.139 atatat CTLFLAG_PERMANENT,
4180 1.142 atatat CTLTYPE_NODE, "ifq",
4181 1.142 atatat SYSCTL_DESCR("Protocol input queue controls"),
4182 1.139 atatat NULL, 0, NULL, 0,
4183 1.139 atatat CTL_NET, pf, ipn, qid, CTL_EOL);
4184 1.136 atatat
4185 1.139 atatat sysctl_createv(clog, 0, NULL, NULL,
4186 1.139 atatat CTLFLAG_PERMANENT,
4187 1.432 msaitoh CTLTYPE_QUAD, "len",
4188 1.142 atatat SYSCTL_DESCR("Current input queue length"),
4189 1.276 rmind len_func, 0, NULL, 0,
4190 1.136 atatat CTL_NET, pf, ipn, qid, IFQCTL_LEN, CTL_EOL);
4191 1.139 atatat sysctl_createv(clog, 0, NULL, NULL,
4192 1.455 msaitoh CTLFLAG_PERMANENT | CTLFLAG_READWRITE,
4193 1.142 atatat CTLTYPE_INT, "maxlen",
4194 1.142 atatat SYSCTL_DESCR("Maximum allowed input queue length"),
4195 1.276 rmind maxlen_func, 0, NULL, 0,
4196 1.136 atatat CTL_NET, pf, ipn, qid, IFQCTL_MAXLEN, CTL_EOL);
4197 1.139 atatat sysctl_createv(clog, 0, NULL, NULL,
4198 1.139 atatat CTLFLAG_PERMANENT,
4199 1.431 msaitoh CTLTYPE_QUAD, "drops",
4200 1.142 atatat SYSCTL_DESCR("Packets dropped due to full input queue"),
4201 1.276 rmind drops_func, 0, NULL, 0,
4202 1.136 atatat CTL_NET, pf, ipn, qid, IFQCTL_DROPS, CTL_EOL);
4203 1.136 atatat }
4204 1.138 drochner #endif /* INET || INET6 */
4205 1.280 joerg
4206 1.280 joerg static int
4207 1.280 joerg if_sdl_sysctl(SYSCTLFN_ARGS)
4208 1.280 joerg {
4209 1.280 joerg struct ifnet *ifp;
4210 1.280 joerg const struct sockaddr_dl *sdl;
4211 1.340 ozaki struct psref psref;
4212 1.340 ozaki int error = 0;
4213 1.280 joerg
4214 1.280 joerg if (namelen != 1)
4215 1.280 joerg return EINVAL;
4216 1.280 joerg
4217 1.519 skrll const int bound = curlwp_bind();
4218 1.340 ozaki ifp = if_get_byindex(name[0], &psref);
4219 1.340 ozaki if (ifp == NULL) {
4220 1.340 ozaki error = ENODEV;
4221 1.341 riastrad goto out0;
4222 1.340 ozaki }
4223 1.280 joerg
4224 1.280 joerg sdl = ifp->if_sadl;
4225 1.280 joerg if (sdl == NULL) {
4226 1.280 joerg *oldlenp = 0;
4227 1.341 riastrad goto out1;
4228 1.280 joerg }
4229 1.280 joerg
4230 1.280 joerg if (oldp == NULL) {
4231 1.280 joerg *oldlenp = sdl->sdl_alen;
4232 1.341 riastrad goto out1;
4233 1.280 joerg }
4234 1.280 joerg
4235 1.280 joerg if (*oldlenp >= sdl->sdl_alen)
4236 1.280 joerg *oldlenp = sdl->sdl_alen;
4237 1.340 ozaki error = sysctl_copyout(l, &sdl->sdl_data[sdl->sdl_nlen], oldp, *oldlenp);
4238 1.341 riastrad out1:
4239 1.340 ozaki if_put(ifp, &psref);
4240 1.341 riastrad out0:
4241 1.340 ozaki curlwp_bindx(bound);
4242 1.340 ozaki return error;
4243 1.280 joerg }
4244 1.280 joerg
4245 1.370 ozaki static void
4246 1.370 ozaki if_sysctl_setup(struct sysctllog **clog)
4247 1.280 joerg {
4248 1.280 joerg const struct sysctlnode *rnode = NULL;
4249 1.280 joerg
4250 1.280 joerg sysctl_createv(clog, 0, NULL, &rnode,
4251 1.280 joerg CTLFLAG_PERMANENT,
4252 1.280 joerg CTLTYPE_NODE, "sdl",
4253 1.280 joerg SYSCTL_DESCR("Get active link-layer address"),
4254 1.280 joerg if_sdl_sysctl, 0, NULL, 0,
4255 1.280 joerg CTL_NET, CTL_CREATE, CTL_EOL);
4256 1.370 ozaki
4257 1.370 ozaki #if defined(INET)
4258 1.370 ozaki sysctl_net_pktq_setup(NULL, PF_INET);
4259 1.370 ozaki #endif
4260 1.370 ozaki #ifdef INET6
4261 1.370 ozaki if (in6_present)
4262 1.370 ozaki sysctl_net_pktq_setup(NULL, PF_INET6);
4263 1.370 ozaki #endif
4264 1.280 joerg }
4265