if.h revision 1.300 1 1.300 riastrad /* $NetBSD: if.h,v 1.300 2022/08/20 11:09:24 riastradh Exp $ */
2 1.44 thorpej
3 1.44 thorpej /*-
4 1.70 thorpej * Copyright (c) 1999, 2000, 2001 The NetBSD Foundation, Inc.
5 1.44 thorpej * All rights reserved.
6 1.44 thorpej *
7 1.44 thorpej * This code is derived from software contributed to The NetBSD Foundation
8 1.106 agc * by William Studenmund and Jason R. Thorpe.
9 1.44 thorpej *
10 1.44 thorpej * Redistribution and use in source and binary forms, with or without
11 1.44 thorpej * modification, are permitted provided that the following conditions
12 1.44 thorpej * are met:
13 1.44 thorpej * 1. Redistributions of source code must retain the above copyright
14 1.44 thorpej * notice, this list of conditions and the following disclaimer.
15 1.44 thorpej * 2. Redistributions in binary form must reproduce the above copyright
16 1.44 thorpej * notice, this list of conditions and the following disclaimer in the
17 1.44 thorpej * documentation and/or other materials provided with the distribution.
18 1.44 thorpej *
19 1.44 thorpej * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 1.44 thorpej * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 1.44 thorpej * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 1.44 thorpej * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 1.44 thorpej * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 1.44 thorpej * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 1.44 thorpej * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 1.44 thorpej * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 1.44 thorpej * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 1.44 thorpej * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 1.44 thorpej * POSSIBILITY OF SUCH DAMAGE.
30 1.44 thorpej */
31 1.10 cgd
32 1.1 cgd /*
33 1.9 mycroft * Copyright (c) 1982, 1986, 1989, 1993
34 1.9 mycroft * The Regents of the University of California. All rights reserved.
35 1.1 cgd *
36 1.1 cgd * Redistribution and use in source and binary forms, with or without
37 1.1 cgd * modification, are permitted provided that the following conditions
38 1.1 cgd * are met:
39 1.1 cgd * 1. Redistributions of source code must retain the above copyright
40 1.1 cgd * notice, this list of conditions and the following disclaimer.
41 1.1 cgd * 2. Redistributions in binary form must reproduce the above copyright
42 1.1 cgd * notice, this list of conditions and the following disclaimer in the
43 1.1 cgd * documentation and/or other materials provided with the distribution.
44 1.92 agc * 3. Neither the name of the University nor the names of its contributors
45 1.1 cgd * may be used to endorse or promote products derived from this software
46 1.1 cgd * without specific prior written permission.
47 1.1 cgd *
48 1.1 cgd * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
49 1.1 cgd * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
50 1.1 cgd * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
51 1.1 cgd * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
52 1.1 cgd * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
53 1.1 cgd * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
54 1.1 cgd * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
55 1.1 cgd * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
56 1.1 cgd * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
57 1.1 cgd * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
58 1.1 cgd * SUCH DAMAGE.
59 1.1 cgd *
60 1.30 fvdl * @(#)if.h 8.3 (Berkeley) 2/9/95
61 1.1 cgd */
62 1.1 cgd
63 1.28 chuck #ifndef _NET_IF_H_
64 1.28 chuck #define _NET_IF_H_
65 1.28 chuck
66 1.152 dyoung #if !defined(_KERNEL) && !defined(_STANDALONE)
67 1.152 dyoung #include <stdbool.h>
68 1.152 dyoung #endif
69 1.152 dyoung
70 1.87 bjh21 #include <sys/featuretest.h>
71 1.88 bjh21
72 1.88 bjh21 /*
73 1.88 bjh21 * Length of interface external name, including terminating '\0'.
74 1.88 bjh21 * Note: this is the same size as a generic device's external name.
75 1.88 bjh21 */
76 1.88 bjh21 #define IF_NAMESIZE 16
77 1.88 bjh21
78 1.274 ozaki /*
79 1.274 ozaki * Length of interface description, including terminating '\0'.
80 1.274 ozaki */
81 1.274 ozaki #define IFDESCRSIZE 64
82 1.274 ozaki
83 1.87 bjh21 #if defined(_NETBSD_SOURCE)
84 1.38 kleink
85 1.81 soren #include <sys/socket.h>
86 1.17 mycroft #include <sys/queue.h>
87 1.170 ozaki #include <sys/mutex.h>
88 1.294 yamaguch #include <sys/hook.h>
89 1.166 ozaki
90 1.60 thorpej #include <net/dlt.h>
91 1.67 thorpej #include <net/pfil.h>
92 1.167 ozaki #ifdef _KERNEL
93 1.166 ozaki #include <net/pktqueue.h>
94 1.204 ozaki #include <sys/pslist.h>
95 1.204 ozaki #include <sys/pserialize.h>
96 1.204 ozaki #include <sys/psref.h>
97 1.269 pgoyette #include <sys/module_hook.h>
98 1.167 ozaki #endif
99 1.17 mycroft
100 1.1 cgd /*
101 1.58 thorpej * Always include ALTQ glue here -- we use the ALTQ interface queue
102 1.58 thorpej * structure even when ALTQ is not configured into the kernel so that
103 1.58 thorpej * the size of struct ifnet does not changed based on the option. The
104 1.58 thorpej * ALTQ queue structure is API-compatible with the legacy ifqueue.
105 1.58 thorpej */
106 1.58 thorpej #include <altq/if_altq.h>
107 1.58 thorpej
108 1.58 thorpej /*
109 1.1 cgd * Structures defining a network interface, providing a packet
110 1.1 cgd * transport mechanism (ala level 0 of the PUP protocols).
111 1.1 cgd *
112 1.1 cgd * Each interface accepts output datagrams of a specified maximum
113 1.1 cgd * length, and provides higher level routines with input datagrams
114 1.1 cgd * received from its medium.
115 1.1 cgd *
116 1.9 mycroft * Output occurs when the routine if_output is called, with four parameters:
117 1.9 mycroft * (*ifp->if_output)(ifp, m, dst, rt)
118 1.1 cgd * Here m is the mbuf chain to be sent and dst is the destination address.
119 1.1 cgd * The output routine encapsulates the supplied datagram if necessary,
120 1.1 cgd * and then transmits it on its medium.
121 1.1 cgd *
122 1.1 cgd * On input, each interface unwraps the data received by it, and either
123 1.1 cgd * places it on the input queue of a internetwork datagram routine
124 1.1 cgd * and posts the associated software interrupt, or passes the datagram to a raw
125 1.1 cgd * packet input routine.
126 1.1 cgd *
127 1.1 cgd * Routines exist for locating interfaces by their addresses
128 1.1 cgd * or for locating a interface on a certain network, as well as more general
129 1.1 cgd * routing and gateway routines maintaining information used to locate
130 1.1 cgd * interfaces. These routines live in the files if.c and route.c
131 1.1 cgd */
132 1.1 cgd #include <sys/time.h>
133 1.1 cgd
134 1.69 mrg #if defined(_KERNEL_OPT)
135 1.42 bouyer #include "opt_compat_netbsd.h"
136 1.192 ozaki #include "opt_gateway.h"
137 1.42 bouyer #endif
138 1.42 bouyer
139 1.9 mycroft struct mbuf;
140 1.9 mycroft struct proc;
141 1.9 mycroft struct rtentry;
142 1.9 mycroft struct socket;
143 1.9 mycroft struct ether_header;
144 1.120 dyoung struct ifaddr;
145 1.51 thorpej struct ifnet;
146 1.65 itojun struct rt_addrinfo;
147 1.51 thorpej
148 1.88 bjh21 #define IFNAMSIZ IF_NAMESIZE
149 1.53 thorpej
150 1.53 thorpej /*
151 1.51 thorpej * Structure describing a `cloning' interface.
152 1.51 thorpej */
153 1.51 thorpej struct if_clone {
154 1.51 thorpej LIST_ENTRY(if_clone) ifc_list; /* on list of cloners */
155 1.51 thorpej const char *ifc_name; /* name of device, e.g. `gif' */
156 1.51 thorpej size_t ifc_namelen; /* length of name */
157 1.51 thorpej
158 1.51 thorpej int (*ifc_create)(struct if_clone *, int);
159 1.98 peter int (*ifc_destroy)(struct ifnet *);
160 1.51 thorpej };
161 1.51 thorpej
162 1.51 thorpej #define IF_CLONE_INITIALIZER(name, create, destroy) \
163 1.119 christos { { NULL, NULL }, name, sizeof(name) - 1, create, destroy }
164 1.9 mycroft
165 1.1 cgd /*
166 1.53 thorpej * Structure used to query names of interface cloners.
167 1.53 thorpej */
168 1.53 thorpej struct if_clonereq {
169 1.53 thorpej int ifcr_total; /* total cloners (out) */
170 1.53 thorpej int ifcr_count; /* room for this many in user buffer */
171 1.53 thorpej char *ifcr_buffer; /* buffer for cloner names */
172 1.53 thorpej };
173 1.53 thorpej
174 1.53 thorpej /*
175 1.12 cgd * Structure defining statistics and other data kept regarding a network
176 1.12 cgd * interface.
177 1.278 thorpej *
178 1.278 thorpej * Only used for exporting data from the interface.
179 1.12 cgd */
180 1.46 thorpej struct if_data {
181 1.12 cgd /* generic interface information */
182 1.12 cgd u_char ifi_type; /* ethernet, tokenring, etc. */
183 1.12 cgd u_char ifi_addrlen; /* media address length */
184 1.12 cgd u_char ifi_hdrlen; /* media header length */
185 1.46 thorpej int ifi_link_state; /* current link state */
186 1.145 dyoung uint64_t ifi_mtu; /* maximum transmission unit */
187 1.145 dyoung uint64_t ifi_metric; /* routing metric (external only) */
188 1.145 dyoung uint64_t ifi_baudrate; /* linespeed */
189 1.42 bouyer /* volatile statistics */
190 1.145 dyoung uint64_t ifi_ipackets; /* packets received on interface */
191 1.145 dyoung uint64_t ifi_ierrors; /* input errors on interface */
192 1.145 dyoung uint64_t ifi_opackets; /* packets sent on interface */
193 1.145 dyoung uint64_t ifi_oerrors; /* output errors on interface */
194 1.145 dyoung uint64_t ifi_collisions; /* collisions on csma interfaces */
195 1.145 dyoung uint64_t ifi_ibytes; /* total number of octets received */
196 1.145 dyoung uint64_t ifi_obytes; /* total number of octets sent */
197 1.145 dyoung uint64_t ifi_imcasts; /* packets received via multicast */
198 1.145 dyoung uint64_t ifi_omcasts; /* packets sent via multicast */
199 1.145 dyoung uint64_t ifi_iqdrops; /* dropped on input, this interface */
200 1.145 dyoung uint64_t ifi_noproto; /* destined for unsupported protocol */
201 1.142 christos struct timespec ifi_lastchange;/* last operational state change */
202 1.42 bouyer };
203 1.42 bouyer
204 1.46 thorpej /*
205 1.46 thorpej * Values for if_link_state.
206 1.46 thorpej */
207 1.46 thorpej #define LINK_STATE_UNKNOWN 0 /* link invalid/unknown */
208 1.46 thorpej #define LINK_STATE_DOWN 1 /* link is down */
209 1.46 thorpej #define LINK_STATE_UP 2 /* link is up */
210 1.46 thorpej
211 1.12 cgd /*
212 1.285 roy * Status bit descriptions for the various interface types.
213 1.285 roy */
214 1.285 roy struct if_status_description {
215 1.285 roy unsigned char ifs_type;
216 1.285 roy unsigned char ifs_state;
217 1.285 roy const char *ifs_string;
218 1.285 roy };
219 1.285 roy
220 1.285 roy #define LINK_STATE_DESC_MATCH(_ifs, _t, _s) \
221 1.285 roy (((_ifs)->ifs_type == (_t) || (_ifs)->ifs_type == 0) && \
222 1.285 roy (_ifs)->ifs_state == (_s))
223 1.285 roy
224 1.285 roy #define LINK_STATE_DESCRIPTIONS { \
225 1.285 roy { IFT_ETHER, LINK_STATE_DOWN, "no carrier" }, \
226 1.285 roy { IFT_IEEE80211, LINK_STATE_DOWN, "no network" }, \
227 1.285 roy { IFT_PPP, LINK_STATE_DOWN, "no carrier" }, \
228 1.285 roy { IFT_CARP, LINK_STATE_DOWN, "backup" }, \
229 1.285 roy { IFT_CARP, LINK_STATE_UP, "master" }, \
230 1.285 roy { 0, LINK_STATE_UP, "active" }, \
231 1.285 roy { 0, LINK_STATE_UNKNOWN, "unknown" }, \
232 1.285 roy { 0, LINK_STATE_DOWN, "down" }, \
233 1.285 roy { 0, 0, NULL } \
234 1.285 roy }
235 1.285 roy
236 1.285 roy /*
237 1.1 cgd * Structure defining a queue for a network interface.
238 1.55 thorpej */
239 1.55 thorpej struct ifqueue {
240 1.169 ozaki struct mbuf *ifq_head;
241 1.169 ozaki struct mbuf *ifq_tail;
242 1.169 ozaki int ifq_len;
243 1.169 ozaki int ifq_maxlen;
244 1.169 ozaki int ifq_drops;
245 1.169 ozaki kmutex_t *ifq_lock;
246 1.55 thorpej };
247 1.55 thorpej
248 1.153 dyoung #ifdef _KERNEL
249 1.153 dyoung #include <sys/percpu.h>
250 1.178 ozaki #include <sys/callout.h>
251 1.191 ozaki #include <sys/rwlock.h>
252 1.281 thorpej #include <sys/workqueue.h>
253 1.153 dyoung
254 1.153 dyoung #endif /* _KERNEL */
255 1.153 dyoung
256 1.55 thorpej /*
257 1.55 thorpej * Structure defining a queue for a network interface.
258 1.1 cgd *
259 1.1 cgd * (Would like to call this struct ``if'', but C isn't PL/1.)
260 1.1 cgd */
261 1.19 cgd TAILQ_HEAD(ifnet_head, ifnet); /* the actual queue head */
262 1.23 thorpej
263 1.172 ozaki struct bridge_softc;
264 1.172 ozaki struct bridge_iflist;
265 1.179 ozaki struct callout;
266 1.191 ozaki struct krwlock;
267 1.195 ozaki struct if_percpuq;
268 1.230 ozaki struct if_deferred_start;
269 1.235 ozaki struct in6_multi;
270 1.172 ozaki
271 1.212 ozaki typedef unsigned short if_index_t;
272 1.212 ozaki
273 1.255 ozaki /*
274 1.255 ozaki * Interface. Field markings and the corresponding locks:
275 1.255 ozaki *
276 1.255 ozaki * i: IFNET_LOCK (a.k.a., if_ioctl_lock)
277 1.255 ozaki * q: ifq_lock (struct ifaltq)
278 1.255 ozaki * a: if_afdata_lock
279 1.255 ozaki * 6: in6_multilock (global lock)
280 1.255 ozaki * :: unlocked, stable
281 1.273 skrll * ?: unknown, maybe unsafe
282 1.255 ozaki *
283 1.255 ozaki * Lock order: IFNET_LOCK => in6_multilock => if_afdata_lock => ifq_lock
284 1.255 ozaki * Note that currently if_afdata_lock and ifq_lock aren't held
285 1.255 ozaki * at the same time, but define the order anyway.
286 1.255 ozaki *
287 1.255 ozaki * Lock order of IFNET_LOCK with other locks:
288 1.255 ozaki * softnet_lock => solock => IFNET_LOCK => ND6_LOCK, in_multilock
289 1.255 ozaki */
290 1.149 rmind typedef struct ifnet {
291 1.255 ozaki void *if_softc; /* :: lower-level data for this if */
292 1.204 ozaki /* DEPRECATED. Keep it to avoid breaking kvm(3) users */
293 1.255 ozaki TAILQ_ENTRY(ifnet)
294 1.255 ozaki if_list; /* i: all struct ifnets are chained */
295 1.255 ozaki TAILQ_HEAD(, ifaddr)
296 1.255 ozaki if_addrlist; /* i: linked list of addresses per if */
297 1.255 ozaki char if_xname[IFNAMSIZ];
298 1.255 ozaki /* :: external name (name + unit) */
299 1.255 ozaki int if_pcount; /* i: number of promiscuous listeners */
300 1.255 ozaki struct bpf_if *if_bpf; /* :: packet filter structure */
301 1.255 ozaki if_index_t if_index; /* :: numeric abbreviation for this if */
302 1.255 ozaki short if_timer; /* ?: time 'til if_slowtimo called */
303 1.255 ozaki unsigned short if_flags; /* i: up/down, broadcast, etc. */
304 1.255 ozaki short if_extflags; /* :: if_output MP-safe, etc. */
305 1.278 thorpej u_char if_type; /* :: ethernet, tokenring, etc. */
306 1.278 thorpej u_char if_addrlen; /* :: media address length */
307 1.278 thorpej u_char if_hdrlen; /* :: media header length */
308 1.278 thorpej /* XXX audit :? fields here. */
309 1.278 thorpej int if_link_state; /* :? current link state */
310 1.278 thorpej uint64_t if_mtu; /* :? maximum transmission unit */
311 1.278 thorpej uint64_t if_metric; /* :? routing metric (external only) */
312 1.278 thorpej uint64_t if_baudrate; /* :? linespeed */
313 1.278 thorpej struct timespec if_lastchange; /* :? last operational state change */
314 1.280 thorpej #ifdef _KERNEL
315 1.278 thorpej percpu_t *if_stats; /* :: statistics */
316 1.280 thorpej #else
317 1.280 thorpej void *if_stats; /* opaque to user-space */
318 1.280 thorpej #endif /* _KERNEL */
319 1.44 thorpej /*
320 1.44 thorpej * Procedure handles. If you add more of these, don't forget the
321 1.44 thorpej * corresponding NULL stub in if.c.
322 1.44 thorpej */
323 1.255 ozaki int (*if_output) /* :: output routine (enqueue) */
324 1.255 ozaki (struct ifnet *, struct mbuf *, const struct sockaddr *,
325 1.255 ozaki const struct rtentry *);
326 1.255 ozaki void (*_if_input) /* :: input routine (from h/w driver) */
327 1.255 ozaki (struct ifnet *, struct mbuf *);
328 1.255 ozaki void (*if_start) /* :: initiate output routine */
329 1.255 ozaki (struct ifnet *);
330 1.255 ozaki int (*if_transmit) /* :: output routine, must be MP-safe */
331 1.255 ozaki (struct ifnet *, struct mbuf *);
332 1.255 ozaki int (*if_ioctl) /* :: ioctl routine */
333 1.255 ozaki (struct ifnet *, u_long, void *);
334 1.255 ozaki int (*if_init) /* :: init routine */
335 1.255 ozaki (struct ifnet *);
336 1.255 ozaki void (*if_stop) /* :: stop routine */
337 1.255 ozaki (struct ifnet *, int);
338 1.255 ozaki void (*if_slowtimo) /* :: timer routine */
339 1.255 ozaki (struct ifnet *);
340 1.177 ozaki #define if_watchdog if_slowtimo
341 1.255 ozaki void (*if_drain) /* :: routine to release resources */
342 1.255 ozaki (struct ifnet *);
343 1.298 yamaguch void (*if_bpf_mtap) /* :: bpf routine */
344 1.298 yamaguch (struct bpf_if *, struct mbuf *, u_int);
345 1.255 ozaki struct ifaltq if_snd; /* q: output queue (includes altq) */
346 1.255 ozaki struct ifaddr *if_dl; /* i: identity of this interface. */
347 1.255 ozaki const struct sockaddr_dl
348 1.255 ozaki *if_sadl; /* i: pointer to sockaddr_dl of if_dl */
349 1.255 ozaki /*
350 1.141 dyoung * May be NULL. If not NULL, it is the address assigned
351 1.141 dyoung * to the interface by the manufacturer, so it very likely
352 1.141 dyoung * to be unique. It MUST NOT be deleted. It is highly
353 1.141 dyoung * suitable for deriving the EUI64 for the interface.
354 1.141 dyoung */
355 1.255 ozaki struct ifaddr *if_hwdl; /* i: h/w identity */
356 1.255 ozaki const uint8_t *if_broadcastaddr;
357 1.255 ozaki /* :: linklevel broadcast bytestring */
358 1.255 ozaki struct bridge_softc
359 1.255 ozaki *if_bridge; /* i: bridge glue */
360 1.255 ozaki struct bridge_iflist
361 1.255 ozaki *if_bridgeif; /* i: shortcut to interface list entry */
362 1.255 ozaki int if_dlt; /* :: data link type (<net/dlt.h>) */
363 1.255 ozaki pfil_head_t * if_pfil; /* :: filtering point */
364 1.255 ozaki uint64_t if_capabilities;
365 1.255 ozaki /* i: interface capabilities */
366 1.255 ozaki uint64_t if_capenable; /* i: capabilities enabled */
367 1.116 liamjfoy union {
368 1.123 christos void * carp_s; /* carp structure (used by !carp ifs) */
369 1.116 liamjfoy struct ifnet *carp_d;/* ptr to carpdev (used by carp ifs) */
370 1.255 ozaki } if_carp_ptr; /* ?: */
371 1.116 liamjfoy #define if_carp if_carp_ptr.carp_s
372 1.116 liamjfoy #define if_carpdev if_carp_ptr.carp_d
373 1.70 thorpej /*
374 1.70 thorpej * These are pre-computed based on an interfaces enabled
375 1.70 thorpej * capabilities, for speed elsewhere.
376 1.70 thorpej */
377 1.255 ozaki int if_csum_flags_tx;
378 1.255 ozaki /* i: M_CSUM_* flags for Tx */
379 1.255 ozaki int if_csum_flags_rx;
380 1.255 ozaki /* i: M_CSUM_* flags for Rx */
381 1.255 ozaki
382 1.255 ozaki void *if_afdata[AF_MAX];
383 1.255 ozaki /* a: */
384 1.255 ozaki struct mowner *if_mowner; /* ?: who owns mbufs for this interface */
385 1.104 yamt
386 1.293 yamaguch void *if_lagg; /* :: lagg or agr structure */
387 1.275 rmind void *if_npf_private;/* ?: associated NPF context */
388 1.139 yamt
389 1.139 yamt /*
390 1.139 yamt * pf specific data, used only when #if NPF > 0.
391 1.139 yamt */
392 1.255 ozaki void *if_pf_kif; /* ?: pf interface abstraction */
393 1.255 ozaki void *if_pf_groups; /* ?: pf interface groups */
394 1.143 dyoung /*
395 1.143 dyoung * During an ifnet's lifetime, it has only one if_index, but
396 1.143 dyoung * and if_index is not sufficient to identify an ifnet
397 1.143 dyoung * because during the lifetime of the system, many ifnets may occupy a
398 1.143 dyoung * given if_index. Let us tell different ifnets at the same
399 1.143 dyoung * if_index apart by their if_index_gen, a unique number that each ifnet
400 1.143 dyoung * is assigned when it if_attach()s. Now, the kernel can use the
401 1.143 dyoung * pair (if_index, if_index_gen) as a weak reference to an ifnet.
402 1.143 dyoung */
403 1.255 ozaki uint64_t if_index_gen; /* :: generation number for the ifnet
404 1.143 dyoung * at if_index: if two ifnets' index
405 1.143 dyoung * and generation number are both the
406 1.143 dyoung * same, they are the same ifnet.
407 1.143 dyoung */
408 1.255 ozaki struct sysctllog
409 1.255 ozaki *if_sysctl_log; /* :: */
410 1.255 ozaki int (*if_initaddr) /* :: */
411 1.255 ozaki (struct ifnet *, struct ifaddr *, bool);
412 1.255 ozaki int (*if_setflags) /* :: */
413 1.276 msaitoh (struct ifnet *, const u_short);
414 1.255 ozaki kmutex_t *if_ioctl_lock; /* :: */
415 1.274 ozaki char *if_description; /* i: interface description */
416 1.178 ozaki #ifdef _KERNEL /* XXX kvm(3) */
417 1.300 riastrad struct if_slowtimo_data *if_slowtimo_data; /* :: */
418 1.255 ozaki struct krwlock *if_afdata_lock;/* :: */
419 1.255 ozaki struct if_percpuq
420 1.255 ozaki *if_percpuq; /* :: we should remove it in the future */
421 1.281 thorpej struct work if_link_work; /* q: linkage on link state work queue */
422 1.255 ozaki uint16_t if_link_queue; /* q: masked link state change queue */
423 1.281 thorpej /* q: is link state work scheduled? */
424 1.281 thorpej bool if_link_scheduled;
425 1.255 ozaki struct pslist_entry
426 1.255 ozaki if_pslist_entry;/* i: */
427 1.255 ozaki struct psref_target
428 1.255 ozaki if_psref; /* :: */
429 1.255 ozaki struct pslist_head
430 1.255 ozaki if_addr_pslist; /* i: */
431 1.255 ozaki struct if_deferred_start
432 1.255 ozaki *if_deferred_start;
433 1.255 ozaki /* :: */
434 1.235 ozaki /* XXX should be protocol independent */
435 1.255 ozaki LIST_HEAD(, in6_multi)
436 1.255 ozaki if_multiaddrs; /* 6: */
437 1.294 yamaguch khook_list_t *if_linkstate_hooks; /* :: */
438 1.195 ozaki #endif
439 1.149 rmind } ifnet_t;
440 1.278 thorpej
441 1.278 thorpej #include <net/if_stats.h>
442 1.299 skrll
443 1.261 maxv #define if_name(ifp) ((ifp)->if_xname)
444 1.1 cgd
445 1.70 thorpej #define IFF_UP 0x0001 /* interface is up */
446 1.70 thorpej #define IFF_BROADCAST 0x0002 /* broadcast address valid */
447 1.70 thorpej #define IFF_DEBUG 0x0004 /* turn on debugging */
448 1.70 thorpej #define IFF_LOOPBACK 0x0008 /* is a loopback net */
449 1.70 thorpej #define IFF_POINTOPOINT 0x0010 /* interface is point-to-point link */
450 1.267 msaitoh /* 0x0020 was IFF_NOTRAILERS */
451 1.70 thorpej #define IFF_RUNNING 0x0040 /* resources allocated */
452 1.70 thorpej #define IFF_NOARP 0x0080 /* no address resolution protocol */
453 1.70 thorpej #define IFF_PROMISC 0x0100 /* receive all packets */
454 1.70 thorpej #define IFF_ALLMULTI 0x0200 /* receive all multicast packets */
455 1.70 thorpej #define IFF_OACTIVE 0x0400 /* transmission in progress */
456 1.70 thorpej #define IFF_SIMPLEX 0x0800 /* can't hear own transmissions */
457 1.5 cgd #define IFF_LINK0 0x1000 /* per link layer defined bit */
458 1.6 cgd #define IFF_LINK1 0x2000 /* per link layer defined bit */
459 1.6 cgd #define IFF_LINK2 0x4000 /* per link layer defined bit */
460 1.9 mycroft #define IFF_MULTICAST 0x8000 /* supports multicast */
461 1.4 hpeyerl
462 1.242 ozaki #define IFEF_MPSAFE __BIT(0) /* handlers can run in parallel (see below) */
463 1.242 ozaki
464 1.242 ozaki /*
465 1.256 ozaki * The guidelines for converting an interface to IFEF_MPSAFE are as follows
466 1.256 ozaki *
467 1.256 ozaki * Enabling IFEF_MPSAFE on an interface suppresses taking KERNEL_LOCK when
468 1.256 ozaki * calling the following handlers:
469 1.256 ozaki * - if_start
470 1.256 ozaki * - Note that if_transmit is always called without KERNEL_LOCK
471 1.256 ozaki * - if_output
472 1.256 ozaki * - if_ioctl
473 1.256 ozaki * - if_init
474 1.256 ozaki * - if_stop
475 1.256 ozaki *
476 1.256 ozaki * This means that an interface with IFEF_MPSAFE must make the above handlers
477 1.256 ozaki * MP-safe or take KERNEL_LOCK by itself inside handlers that aren't MP-safe
478 1.256 ozaki * yet.
479 1.256 ozaki *
480 1.256 ozaki * There are some additional restrictions to access member variables of struct
481 1.256 ozaki * ifnet:
482 1.256 ozaki * - if_flags
483 1.256 ozaki * - Must be updated with holding IFNET_LOCK
484 1.256 ozaki * - You cannot use the flag in Tx/Rx paths anymore because there is no
485 1.256 ozaki * synchronization on the flag except for IFNET_LOCK
486 1.257 ozaki * - Note that IFNET_LOCK can't be taken in softint because it's known
487 1.257 ozaki * that it causes a deadlock
488 1.257 ozaki * - Some synchronization mechanisms such as pserialize_perform are called
489 1.257 ozaki * with IFNET_LOCK and also require context switches on every CPUs
490 1.257 ozaki * that mean softints finish so trying to take IFNET_LOCK in softint
491 1.257 ozaki * might block on IFNET_LOCK and prevent such synchronization mechanisms
492 1.257 ozaki * from being completed
493 1.257 ozaki * - Currently the deadlock occurs only if NET_MPSAFE is enabled, however,
494 1.257 ozaki * we should deal with the restriction because NET_MPSAFE will be enabled
495 1.257 ozaki * by default in the future
496 1.256 ozaki * - if_watchdog and if_timer
497 1.256 ozaki * - The watchdog framework works only for non-IFEF_MPSAFE interfaces
498 1.256 ozaki * that rely on KERNEL_LOCK
499 1.256 ozaki * - Interfaces with IFEF_MPSAFE have to provide its own watchdog mechanism
500 1.256 ozaki * if needed
501 1.256 ozaki * - Keep if_watchdog NULL when calling if_attach
502 1.242 ozaki */
503 1.208 knakahar
504 1.210 knakahar #ifdef _KERNEL
505 1.260 christos static __inline bool
506 1.242 ozaki if_is_mpsafe(struct ifnet *ifp)
507 1.209 knakahar {
508 1.209 knakahar
509 1.242 ozaki return ((ifp->if_extflags & IFEF_MPSAFE) != 0);
510 1.209 knakahar }
511 1.209 knakahar
512 1.260 christos static __inline int
513 1.209 knakahar if_output_lock(struct ifnet *cifp, struct ifnet *ifp, struct mbuf *m,
514 1.209 knakahar const struct sockaddr *dst, const struct rtentry *rt)
515 1.209 knakahar {
516 1.209 knakahar
517 1.242 ozaki if (if_is_mpsafe(cifp)) {
518 1.209 knakahar return (*cifp->if_output)(ifp, m, dst, rt);
519 1.209 knakahar } else {
520 1.209 knakahar int ret;
521 1.209 knakahar
522 1.209 knakahar KERNEL_LOCK(1, NULL);
523 1.209 knakahar ret = (*cifp->if_output)(ifp, m, dst, rt);
524 1.209 knakahar KERNEL_UNLOCK_ONE(NULL);
525 1.209 knakahar return ret;
526 1.209 knakahar }
527 1.209 knakahar }
528 1.211 knakahar
529 1.260 christos static __inline void
530 1.211 knakahar if_start_lock(struct ifnet *ifp)
531 1.211 knakahar {
532 1.211 knakahar
533 1.242 ozaki if (if_is_mpsafe(ifp)) {
534 1.211 knakahar (*ifp->if_start)(ifp);
535 1.211 knakahar } else {
536 1.211 knakahar KERNEL_LOCK(1, NULL);
537 1.211 knakahar (*ifp->if_start)(ifp);
538 1.211 knakahar KERNEL_UNLOCK_ONE(NULL);
539 1.211 knakahar }
540 1.211 knakahar }
541 1.216 knakahar
542 1.244 ozaki #define KERNEL_LOCK_IF_IFP_MPSAFE(ifp) \
543 1.244 ozaki do { if (if_is_mpsafe(ifp)) { KERNEL_LOCK(1, NULL); } } while (0)
544 1.244 ozaki #define KERNEL_UNLOCK_IF_IFP_MPSAFE(ifp) \
545 1.244 ozaki do { if (if_is_mpsafe(ifp)) { KERNEL_UNLOCK_ONE(NULL); } } while (0)
546 1.244 ozaki
547 1.244 ozaki #define KERNEL_LOCK_UNLESS_IFP_MPSAFE(ifp) \
548 1.244 ozaki do { if (!if_is_mpsafe(ifp)) { KERNEL_LOCK(1, NULL); } } while (0)
549 1.244 ozaki #define KERNEL_UNLOCK_UNLESS_IFP_MPSAFE(ifp) \
550 1.244 ozaki do { if (!if_is_mpsafe(ifp)) { KERNEL_UNLOCK_ONE(NULL); } } while (0)
551 1.244 ozaki
552 1.243 ozaki #ifdef _KERNEL_OPT
553 1.243 ozaki #include "opt_net_mpsafe.h"
554 1.243 ozaki #endif
555 1.243 ozaki
556 1.243 ozaki /* XXX explore a better place to define */
557 1.243 ozaki #ifdef NET_MPSAFE
558 1.243 ozaki
559 1.243 ozaki #define KERNEL_LOCK_UNLESS_NET_MPSAFE() do { } while (0)
560 1.243 ozaki #define KERNEL_UNLOCK_UNLESS_NET_MPSAFE() do { } while (0)
561 1.243 ozaki
562 1.243 ozaki #define SOFTNET_LOCK_UNLESS_NET_MPSAFE() do { } while (0)
563 1.243 ozaki #define SOFTNET_UNLOCK_UNLESS_NET_MPSAFE() do { } while (0)
564 1.243 ozaki
565 1.263 knakahar #define SOFTNET_LOCK_IF_NET_MPSAFE() \
566 1.263 knakahar do { mutex_enter(softnet_lock); } while (0)
567 1.263 knakahar #define SOFTNET_UNLOCK_IF_NET_MPSAFE() \
568 1.263 knakahar do { mutex_exit(softnet_lock); } while (0)
569 1.263 knakahar
570 1.243 ozaki #else /* NET_MPSAFE */
571 1.243 ozaki
572 1.243 ozaki #define KERNEL_LOCK_UNLESS_NET_MPSAFE() \
573 1.243 ozaki do { KERNEL_LOCK(1, NULL); } while (0)
574 1.243 ozaki #define KERNEL_UNLOCK_UNLESS_NET_MPSAFE() \
575 1.243 ozaki do { KERNEL_UNLOCK_ONE(NULL); } while (0)
576 1.243 ozaki
577 1.243 ozaki #define SOFTNET_LOCK_UNLESS_NET_MPSAFE() \
578 1.243 ozaki do { mutex_enter(softnet_lock); } while (0)
579 1.243 ozaki #define SOFTNET_UNLOCK_UNLESS_NET_MPSAFE() \
580 1.243 ozaki do { mutex_exit(softnet_lock); } while (0)
581 1.243 ozaki
582 1.263 knakahar #define SOFTNET_LOCK_IF_NET_MPSAFE() do { } while (0)
583 1.263 knakahar #define SOFTNET_UNLOCK_IF_NET_MPSAFE() do { } while (0)
584 1.263 knakahar
585 1.243 ozaki #endif /* NET_MPSAFE */
586 1.243 ozaki
587 1.243 ozaki #define SOFTNET_KERNEL_LOCK_UNLESS_NET_MPSAFE() \
588 1.243 ozaki do { \
589 1.243 ozaki SOFTNET_LOCK_UNLESS_NET_MPSAFE(); \
590 1.243 ozaki KERNEL_LOCK_UNLESS_NET_MPSAFE(); \
591 1.243 ozaki } while (0)
592 1.243 ozaki
593 1.243 ozaki #define SOFTNET_KERNEL_UNLOCK_UNLESS_NET_MPSAFE() \
594 1.243 ozaki do { \
595 1.243 ozaki KERNEL_UNLOCK_UNLESS_NET_MPSAFE(); \
596 1.243 ozaki SOFTNET_UNLOCK_UNLESS_NET_MPSAFE(); \
597 1.243 ozaki } while (0)
598 1.243 ozaki
599 1.210 knakahar #endif /* _KERNEL */
600 1.209 knakahar
601 1.105 thorpej #define IFFBITS \
602 1.268 msaitoh "\020\1UP\2BROADCAST\3DEBUG\4LOOPBACK\5POINTOPOINT" \
603 1.105 thorpej "\7RUNNING\10NOARP\11PROMISC\12ALLMULTI\13OACTIVE\14SIMPLEX" \
604 1.105 thorpej "\15LINK0\16LINK1\17LINK2\20MULTICAST"
605 1.105 thorpej
606 1.1 cgd /* flags set internally only: */
607 1.9 mycroft #define IFF_CANTCHANGE \
608 1.9 mycroft (IFF_BROADCAST|IFF_POINTOPOINT|IFF_RUNNING|IFF_OACTIVE|\
609 1.52 thorpej IFF_SIMPLEX|IFF_MULTICAST|IFF_ALLMULTI|IFF_PROMISC)
610 1.1 cgd
611 1.1 cgd /*
612 1.46 thorpej * Some convenience macros used for setting ifi_baudrate.
613 1.46 thorpej */
614 1.186 msaitoh #define IF_Kbps(x) ((x) * 1000ULL) /* kilobits/sec. */
615 1.186 msaitoh #define IF_Mbps(x) (IF_Kbps((x) * 1000ULL)) /* megabits/sec. */
616 1.186 msaitoh #define IF_Gbps(x) (IF_Mbps((x) * 1000ULL)) /* gigabits/sec. */
617 1.46 thorpej
618 1.70 thorpej /* Capabilities that interfaces can advertise. */
619 1.161 pooka /* 0x01 .. 0x40 were previously used */
620 1.108 yamt #define IFCAP_TSOv4 0x00080 /* can do TCPv4 segmentation offload */
621 1.108 yamt #define IFCAP_CSUM_IPv4_Rx 0x00100 /* can do IPv4 header checksums (Rx) */
622 1.108 yamt #define IFCAP_CSUM_IPv4_Tx 0x00200 /* can do IPv4 header checksums (Tx) */
623 1.108 yamt #define IFCAP_CSUM_TCPv4_Rx 0x00400 /* can do IPv4/TCP checksums (Rx) */
624 1.108 yamt #define IFCAP_CSUM_TCPv4_Tx 0x00800 /* can do IPv4/TCP checksums (Tx) */
625 1.108 yamt #define IFCAP_CSUM_UDPv4_Rx 0x01000 /* can do IPv4/UDP checksums (Rx) */
626 1.108 yamt #define IFCAP_CSUM_UDPv4_Tx 0x02000 /* can do IPv4/UDP checksums (Tx) */
627 1.108 yamt #define IFCAP_CSUM_TCPv6_Rx 0x04000 /* can do IPv6/TCP checksums (Rx) */
628 1.108 yamt #define IFCAP_CSUM_TCPv6_Tx 0x08000 /* can do IPv6/TCP checksums (Tx) */
629 1.108 yamt #define IFCAP_CSUM_UDPv6_Rx 0x10000 /* can do IPv6/UDP checksums (Rx) */
630 1.108 yamt #define IFCAP_CSUM_UDPv6_Tx 0x20000 /* can do IPv6/UDP checksums (Tx) */
631 1.121 yamt #define IFCAP_TSOv6 0x40000 /* can do TCPv6 segmentation offload */
632 1.162 christos #define IFCAP_LRO 0x80000 /* can do Large Receive Offload */
633 1.162 christos #define IFCAP_MASK 0xfff80 /* currently valid capabilities */
634 1.108 yamt
635 1.108 yamt #define IFCAPBITS \
636 1.108 yamt "\020" \
637 1.108 yamt "\10TSO4" \
638 1.108 yamt "\11IP4CSUM_Rx" \
639 1.108 yamt "\12IP4CSUM_Tx" \
640 1.108 yamt "\13TCP4CSUM_Rx" \
641 1.108 yamt "\14TCP4CSUM_Tx" \
642 1.108 yamt "\15UDP4CSUM_Rx" \
643 1.108 yamt "\16UDP4CSUM_Tx" \
644 1.108 yamt "\17TCP6CSUM_Rx" \
645 1.108 yamt "\20TCP6CSUM_Tx" \
646 1.108 yamt "\21UDP6CSUM_Rx" \
647 1.121 yamt "\22UDP6CSUM_Tx" \
648 1.162 christos "\23TSO6" \
649 1.162 christos "\24LRO" \
650 1.105 thorpej
651 1.191 ozaki #define IF_AFDATA_LOCK_INIT(ifp) \
652 1.191 ozaki do {(ifp)->if_afdata_lock = rw_obj_alloc();} while (0)
653 1.191 ozaki
654 1.194 ozaki #define IF_AFDATA_LOCK_DESTROY(ifp) rw_obj_free((ifp)->if_afdata_lock)
655 1.194 ozaki
656 1.191 ozaki #define IF_AFDATA_WLOCK(ifp) rw_enter((ifp)->if_afdata_lock, RW_WRITER)
657 1.191 ozaki #define IF_AFDATA_RLOCK(ifp) rw_enter((ifp)->if_afdata_lock, RW_READER)
658 1.191 ozaki #define IF_AFDATA_WUNLOCK(ifp) rw_exit((ifp)->if_afdata_lock)
659 1.191 ozaki #define IF_AFDATA_RUNLOCK(ifp) rw_exit((ifp)->if_afdata_lock)
660 1.191 ozaki #define IF_AFDATA_LOCK(ifp) IF_AFDATA_WLOCK(ifp)
661 1.191 ozaki #define IF_AFDATA_UNLOCK(ifp) IF_AFDATA_WUNLOCK(ifp)
662 1.191 ozaki #define IF_AFDATA_TRYLOCK(ifp) rw_tryenter((ifp)->if_afdata_lock, RW_WRITER)
663 1.191 ozaki
664 1.191 ozaki #define IF_AFDATA_LOCK_ASSERT(ifp) \
665 1.191 ozaki KASSERT(rw_lock_held((ifp)->if_afdata_lock))
666 1.191 ozaki #define IF_AFDATA_RLOCK_ASSERT(ifp) \
667 1.191 ozaki KASSERT(rw_read_held((ifp)->if_afdata_lock))
668 1.191 ozaki #define IF_AFDATA_WLOCK_ASSERT(ifp) \
669 1.191 ozaki KASSERT(rw_write_held((ifp)->if_afdata_lock))
670 1.191 ozaki
671 1.46 thorpej /*
672 1.1 cgd * Output queues (ifp->if_snd) and internetwork datagram level (pup level 1)
673 1.1 cgd * input routines have queues of messages stored on ifqueue structures
674 1.1 cgd * (defined above). Entries are added to and deleted from these structures
675 1.79 pooka * by these macros, which should be called with ipl raised to splnet().
676 1.1 cgd */
677 1.1 cgd #define IF_QFULL(ifq) ((ifq)->ifq_len >= (ifq)->ifq_maxlen)
678 1.1 cgd #define IF_DROP(ifq) ((ifq)->ifq_drops++)
679 1.112 christos #define IF_ENQUEUE(ifq, m) do { \
680 1.1 cgd (m)->m_nextpkt = 0; \
681 1.1 cgd if ((ifq)->ifq_tail == 0) \
682 1.1 cgd (ifq)->ifq_head = m; \
683 1.1 cgd else \
684 1.1 cgd (ifq)->ifq_tail->m_nextpkt = m; \
685 1.1 cgd (ifq)->ifq_tail = m; \
686 1.1 cgd (ifq)->ifq_len++; \
687 1.112 christos } while (/*CONSTCOND*/0)
688 1.112 christos #define IF_PREPEND(ifq, m) do { \
689 1.1 cgd (m)->m_nextpkt = (ifq)->ifq_head; \
690 1.1 cgd if ((ifq)->ifq_tail == 0) \
691 1.1 cgd (ifq)->ifq_tail = (m); \
692 1.1 cgd (ifq)->ifq_head = (m); \
693 1.1 cgd (ifq)->ifq_len++; \
694 1.112 christos } while (/*CONSTCOND*/0)
695 1.112 christos #define IF_DEQUEUE(ifq, m) do { \
696 1.1 cgd (m) = (ifq)->ifq_head; \
697 1.1 cgd if (m) { \
698 1.1 cgd if (((ifq)->ifq_head = (m)->m_nextpkt) == 0) \
699 1.1 cgd (ifq)->ifq_tail = 0; \
700 1.1 cgd (m)->m_nextpkt = 0; \
701 1.1 cgd (ifq)->ifq_len--; \
702 1.1 cgd } \
703 1.299 skrll } while (/*CONSTCOND*/0)
704 1.55 thorpej #define IF_POLL(ifq, m) ((m) = (ifq)->ifq_head)
705 1.55 thorpej #define IF_PURGE(ifq) \
706 1.55 thorpej do { \
707 1.55 thorpej struct mbuf *__m0; \
708 1.57 thorpej \
709 1.57 thorpej for (;;) { \
710 1.57 thorpej IF_DEQUEUE((ifq), __m0); \
711 1.57 thorpej if (__m0 == NULL) \
712 1.57 thorpej break; \
713 1.57 thorpej else \
714 1.57 thorpej m_freem(__m0); \
715 1.57 thorpej } \
716 1.83 perry } while (/*CONSTCOND*/ 0)
717 1.55 thorpej #define IF_IS_EMPTY(ifq) ((ifq)->ifq_len == 0)
718 1.1 cgd
719 1.91 ragge #ifndef IFQ_MAXLEN
720 1.102 jonathan #define IFQ_MAXLEN 256
721 1.91 ragge #endif
722 1.1 cgd #define IFNET_SLOWHZ 1 /* granularity is 1 second */
723 1.1 cgd
724 1.1 cgd /*
725 1.35 aidan * Structure defining statistics and other data kept regarding an address
726 1.35 aidan * on a network interface.
727 1.35 aidan */
728 1.35 aidan struct ifaddr_data {
729 1.35 aidan int64_t ifad_inbytes;
730 1.35 aidan int64_t ifad_outbytes;
731 1.35 aidan };
732 1.35 aidan
733 1.35 aidan /*
734 1.1 cgd * The ifaddr structure contains information about one address
735 1.1 cgd * of an interface. They are maintained by the different address families,
736 1.1 cgd * are allocated and attached when an address is set, and are linked
737 1.1 cgd * together so all addresses for an interface can be located.
738 1.1 cgd */
739 1.1 cgd struct ifaddr {
740 1.1 cgd struct sockaddr *ifa_addr; /* address of interface */
741 1.1 cgd struct sockaddr *ifa_dstaddr; /* other end of p-to-p link */
742 1.1 cgd #define ifa_broadaddr ifa_dstaddr /* broadcast address interface */
743 1.1 cgd struct sockaddr *ifa_netmask; /* used to determine subnet */
744 1.1 cgd struct ifnet *ifa_ifp; /* back-pointer to interface */
745 1.17 mycroft TAILQ_ENTRY(ifaddr) ifa_list; /* list of addresses for interface */
746 1.35 aidan struct ifaddr_data ifa_data; /* statistics on the address */
747 1.20 christos void (*ifa_rtrequest) /* check or clean routes (+ or -)'d */
748 1.140 dyoung (int, struct rtentry *, const struct rt_addrinfo *);
749 1.41 wrstuden u_int ifa_flags; /* mostly rt_flags for cloning */
750 1.41 wrstuden int ifa_refcnt; /* count of references */
751 1.9 mycroft int ifa_metric; /* cost of going out this interface */
752 1.120 dyoung struct ifaddr *(*ifa_getifa)(struct ifaddr *,
753 1.120 dyoung const struct sockaddr *);
754 1.120 dyoung uint32_t *ifa_seqno;
755 1.120 dyoung int16_t ifa_preference; /* preference level for this address */
756 1.223 ozaki #ifdef _KERNEL
757 1.223 ozaki struct pslist_entry ifa_pslist_entry;
758 1.224 ozaki struct psref_target ifa_psref;
759 1.223 ozaki #endif
760 1.1 cgd };
761 1.136 dyoung #define IFA_ROUTE RTF_UP /* (0x01) route installed */
762 1.231 ozaki #define IFA_DESTROYING 0x2
763 1.37 itojun
764 1.37 itojun /*
765 1.150 matt * Message format for use in obtaining information about interfaces from
766 1.150 matt * sysctl and the routing socket. We need to force 64-bit alignment if we
767 1.292 andvar * aren't using compatibility definitions.
768 1.9 mycroft */
769 1.150 matt #if !defined(_KERNEL) || !defined(COMPAT_RTSOCK)
770 1.150 matt #define __align64 __aligned(sizeof(uint64_t))
771 1.150 matt #else
772 1.150 matt #define __align64
773 1.150 matt #endif
774 1.9 mycroft struct if_msghdr {
775 1.150 matt u_short ifm_msglen __align64;
776 1.150 matt /* to skip over non-understood messages */
777 1.71 wiz u_char ifm_version; /* future binary compatibility */
778 1.9 mycroft u_char ifm_type; /* message type */
779 1.9 mycroft int ifm_addrs; /* like rtm_addrs */
780 1.9 mycroft int ifm_flags; /* value of if_flags */
781 1.9 mycroft u_short ifm_index; /* index for associated ifp */
782 1.150 matt struct if_data ifm_data __align64;
783 1.150 matt /* statistics and other data about if */
784 1.9 mycroft };
785 1.42 bouyer
786 1.9 mycroft /*
787 1.9 mycroft * Message format for use in obtaining information about interface addresses
788 1.9 mycroft * from sysctl and the routing socket.
789 1.9 mycroft */
790 1.9 mycroft struct ifa_msghdr {
791 1.150 matt u_short ifam_msglen __align64;
792 1.150 matt /* to skip over non-understood messages */
793 1.71 wiz u_char ifam_version; /* future binary compatibility */
794 1.9 mycroft u_char ifam_type; /* message type */
795 1.226 roy u_short ifam_index; /* index for associated ifp */
796 1.226 roy int ifam_flags; /* value of ifa_flags */
797 1.9 mycroft int ifam_addrs; /* like rtm_addrs */
798 1.226 roy pid_t ifam_pid; /* identify sender */
799 1.226 roy int ifam_addrflags; /* family specific address flags */
800 1.150 matt int ifam_metric; /* value of ifa_metric */
801 1.9 mycroft };
802 1.46 thorpej
803 1.46 thorpej /*
804 1.46 thorpej * Message format announcing the arrival or departure of a network interface.
805 1.46 thorpej */
806 1.46 thorpej struct if_announcemsghdr {
807 1.150 matt u_short ifan_msglen __align64;
808 1.150 matt /* to skip over non-understood messages */
809 1.46 thorpej u_char ifan_version; /* future binary compatibility */
810 1.46 thorpej u_char ifan_type; /* message type */
811 1.46 thorpej u_short ifan_index; /* index for associated ifp */
812 1.46 thorpej char ifan_name[IFNAMSIZ]; /* if name, e.g. "en0" */
813 1.46 thorpej u_short ifan_what; /* what type of announcement */
814 1.46 thorpej };
815 1.46 thorpej
816 1.46 thorpej #define IFAN_ARRIVAL 0 /* interface arrival */
817 1.46 thorpej #define IFAN_DEPARTURE 1 /* interface departure */
818 1.9 mycroft
819 1.150 matt #undef __align64
820 1.150 matt
821 1.1 cgd /*
822 1.1 cgd * Interface request structure used for socket
823 1.1 cgd * ioctl's. All interface ioctl's must have parameter
824 1.1 cgd * definitions which begin with ifr_name. The
825 1.1 cgd * remainder may be interface specific.
826 1.1 cgd */
827 1.1 cgd struct ifreq {
828 1.1 cgd char ifr_name[IFNAMSIZ]; /* if name, e.g. "en0" */
829 1.1 cgd union {
830 1.1 cgd struct sockaddr ifru_addr;
831 1.1 cgd struct sockaddr ifru_dstaddr;
832 1.1 cgd struct sockaddr ifru_broadaddr;
833 1.124 christos struct sockaddr_storage ifru_space;
834 1.1 cgd short ifru_flags;
835 1.189 roy int ifru_addrflags;
836 1.1 cgd int ifru_metric;
837 1.24 cgd int ifru_mtu;
838 1.61 thorpej int ifru_dlt;
839 1.39 matt u_int ifru_value;
840 1.123 christos void * ifru_data;
841 1.111 dyoung struct {
842 1.111 dyoung uint32_t b_buflen;
843 1.111 dyoung void *b_buf;
844 1.111 dyoung } ifru_b;
845 1.1 cgd } ifr_ifru;
846 1.1 cgd #define ifr_addr ifr_ifru.ifru_addr /* address */
847 1.1 cgd #define ifr_dstaddr ifr_ifru.ifru_dstaddr /* other end of p-to-p link */
848 1.1 cgd #define ifr_broadaddr ifr_ifru.ifru_broadaddr /* broadcast address */
849 1.127 gdt #define ifr_space ifr_ifru.ifru_space /* sockaddr_storage */
850 1.1 cgd #define ifr_flags ifr_ifru.ifru_flags /* flags */
851 1.189 roy #define ifr_addrflags ifr_ifru.ifru_addrflags /* addr flags */
852 1.1 cgd #define ifr_metric ifr_ifru.ifru_metric /* metric */
853 1.24 cgd #define ifr_mtu ifr_ifru.ifru_mtu /* mtu */
854 1.61 thorpej #define ifr_dlt ifr_ifru.ifru_dlt /* data link type (DLT_*) */
855 1.39 matt #define ifr_value ifr_ifru.ifru_value /* generic value */
856 1.27 thorpej #define ifr_media ifr_ifru.ifru_metric /* media options (overload) */
857 1.111 dyoung #define ifr_data ifr_ifru.ifru_data /* for use by interface
858 1.111 dyoung * XXX deprecated
859 1.111 dyoung */
860 1.111 dyoung #define ifr_buf ifr_ifru.ifru_b.b_buf /* new interface ioctls */
861 1.111 dyoung #define ifr_buflen ifr_ifru.ifru_b.b_buflen
862 1.159 christos #define ifr_index ifr_ifru.ifru_value /* interface index, BSD */
863 1.159 christos #define ifr_ifindex ifr_index /* interface index, linux */
864 1.70 thorpej };
865 1.70 thorpej
866 1.126 dyoung #ifdef _KERNEL
867 1.125 dyoung #define ifreq_setdstaddr ifreq_setaddr
868 1.125 dyoung #define ifreq_setbroadaddr ifreq_setaddr
869 1.125 dyoung #define ifreq_getdstaddr ifreq_getaddr
870 1.125 dyoung #define ifreq_getbroadaddr ifreq_getaddr
871 1.125 dyoung
872 1.260 christos static __inline const struct sockaddr *
873 1.160 christos /*ARGSUSED*/
874 1.125 dyoung ifreq_getaddr(u_long cmd, const struct ifreq *ifr)
875 1.125 dyoung {
876 1.125 dyoung return &ifr->ifr_addr;
877 1.125 dyoung }
878 1.126 dyoung #endif /* _KERNEL */
879 1.125 dyoung
880 1.70 thorpej struct ifcapreq {
881 1.70 thorpej char ifcr_name[IFNAMSIZ]; /* if name, e.g. "en0" */
882 1.70 thorpej uint64_t ifcr_capabilities; /* supported capabiliites */
883 1.70 thorpej uint64_t ifcr_capenable; /* capabilities enabled */
884 1.50 itojun };
885 1.1 cgd
886 1.1 cgd struct ifaliasreq {
887 1.1 cgd char ifra_name[IFNAMSIZ]; /* if name, e.g. "en0" */
888 1.1 cgd struct sockaddr ifra_addr;
889 1.21 pk struct sockaddr ifra_dstaddr;
890 1.21 pk #define ifra_broadaddr ifra_dstaddr
891 1.1 cgd struct sockaddr ifra_mask;
892 1.76 matt };
893 1.76 matt
894 1.76 matt struct ifdatareq {
895 1.76 matt char ifdr_name[IFNAMSIZ]; /* if name, e.g. "en0" */
896 1.76 matt struct if_data ifdr_data;
897 1.27 thorpej };
898 1.27 thorpej
899 1.27 thorpej struct ifmediareq {
900 1.270 msaitoh char ifm_name[IFNAMSIZ]; /* if name, e.g. "en0" */
901 1.270 msaitoh int ifm_current; /* IFMWD: current media options */
902 1.270 msaitoh int ifm_mask; /* IFMWD: don't care mask */
903 1.270 msaitoh int ifm_status; /* media status */
904 1.270 msaitoh int ifm_active; /* IFMWD: active options */
905 1.270 msaitoh int ifm_count; /* # entries in ifm_ulist
906 1.270 msaitoh array */
907 1.270 msaitoh int *ifm_ulist; /* array of ifmedia word */
908 1.1 cgd };
909 1.31 kml
910 1.101 perry
911 1.31 kml struct ifdrv {
912 1.31 kml char ifd_name[IFNAMSIZ]; /* if name, e.g. "en0" */
913 1.31 kml unsigned long ifd_cmd;
914 1.31 kml size_t ifd_len;
915 1.31 kml void *ifd_data;
916 1.101 perry };
917 1.148 pooka #define IFLINKSTR_QUERYLEN 0x01
918 1.148 pooka #define IFLINKSTR_UNSET 0x02
919 1.1 cgd
920 1.1 cgd /*
921 1.1 cgd * Structure used in SIOCGIFCONF request.
922 1.1 cgd * Used to retrieve interface configuration
923 1.1 cgd * for machine (useful for programs which
924 1.1 cgd * must know all networks accessible).
925 1.1 cgd */
926 1.1 cgd struct ifconf {
927 1.1 cgd int ifc_len; /* size of associated buffer */
928 1.1 cgd union {
929 1.123 christos void * ifcu_buf;
930 1.1 cgd struct ifreq *ifcu_req;
931 1.1 cgd } ifc_ifcu;
932 1.1 cgd #define ifc_buf ifc_ifcu.ifcu_buf /* buffer address */
933 1.1 cgd #define ifc_req ifc_ifcu.ifcu_req /* array of structures returned */
934 1.1 cgd };
935 1.1 cgd
936 1.37 itojun /*
937 1.37 itojun * Structure for SIOC[AGD]LIFADDR
938 1.37 itojun */
939 1.37 itojun struct if_laddrreq {
940 1.37 itojun char iflr_name[IFNAMSIZ];
941 1.37 itojun unsigned int flags;
942 1.37 itojun #define IFLR_PREFIX 0x8000 /* in: prefix given out: kernel fills id */
943 1.136 dyoung #define IFLR_ACTIVE 0x4000 /* in/out: link-layer address activation */
944 1.141 dyoung #define IFLR_FACTORY 0x2000 /* in/out: factory link-layer address */
945 1.37 itojun unsigned int prefixlen; /* in/out */
946 1.37 itojun struct sockaddr_storage addr; /* in/out */
947 1.37 itojun struct sockaddr_storage dstaddr; /* out */
948 1.37 itojun };
949 1.37 itojun
950 1.120 dyoung /*
951 1.120 dyoung * Structure for SIOC[SG]IFADDRPREF
952 1.120 dyoung */
953 1.120 dyoung struct if_addrprefreq {
954 1.120 dyoung char ifap_name[IFNAMSIZ];
955 1.120 dyoung int16_t ifap_preference; /* in/out */
956 1.120 dyoung struct sockaddr_storage ifap_addr; /* in/out */
957 1.120 dyoung };
958 1.120 dyoung
959 1.9 mycroft #include <net/if_arp.h>
960 1.9 mycroft
961 1.87 bjh21 #endif /* _NETBSD_SOURCE */
962 1.38 kleink
963 1.15 jtc #ifdef _KERNEL
964 1.55 thorpej #ifdef ALTQ
965 1.201 knakahar #define IFQ_ENQUEUE(ifq, m, err) \
966 1.55 thorpej do { \
967 1.222 knakahar mutex_enter((ifq)->ifq_lock); \
968 1.272 msaitoh if (ALTQ_IS_ENABLED(ifq)) \
969 1.200 knakahar ALTQ_ENQUEUE((ifq), (m), (err)); \
970 1.200 knakahar else { \
971 1.272 msaitoh if (IF_QFULL(ifq)) { \
972 1.272 msaitoh m_freem(m); \
973 1.55 thorpej (err) = ENOBUFS; \
974 1.55 thorpej } else { \
975 1.55 thorpej IF_ENQUEUE((ifq), (m)); \
976 1.55 thorpej (err) = 0; \
977 1.55 thorpej } \
978 1.55 thorpej } \
979 1.55 thorpej if ((err)) \
980 1.55 thorpej (ifq)->ifq_drops++; \
981 1.222 knakahar mutex_exit((ifq)->ifq_lock); \
982 1.83 perry } while (/*CONSTCOND*/ 0)
983 1.55 thorpej
984 1.55 thorpej #define IFQ_DEQUEUE(ifq, m) \
985 1.55 thorpej do { \
986 1.222 knakahar mutex_enter((ifq)->ifq_lock); \
987 1.272 msaitoh if (TBR_IS_ENABLED(ifq)) \
988 1.55 thorpej (m) = tbr_dequeue((ifq), ALTDQ_REMOVE); \
989 1.272 msaitoh else if (ALTQ_IS_ENABLED(ifq)) \
990 1.55 thorpej ALTQ_DEQUEUE((ifq), (m)); \
991 1.56 thorpej else \
992 1.62 thorpej IF_DEQUEUE((ifq), (m)); \
993 1.222 knakahar mutex_exit((ifq)->ifq_lock); \
994 1.83 perry } while (/*CONSTCOND*/ 0)
995 1.56 thorpej
996 1.56 thorpej #define IFQ_POLL(ifq, m) \
997 1.56 thorpej do { \
998 1.222 knakahar mutex_enter((ifq)->ifq_lock); \
999 1.272 msaitoh if (TBR_IS_ENABLED(ifq)) \
1000 1.56 thorpej (m) = tbr_dequeue((ifq), ALTDQ_POLL); \
1001 1.272 msaitoh else if (ALTQ_IS_ENABLED(ifq)) \
1002 1.56 thorpej ALTQ_POLL((ifq), (m)); \
1003 1.55 thorpej else \
1004 1.55 thorpej IF_POLL((ifq), (m)); \
1005 1.222 knakahar mutex_exit((ifq)->ifq_lock); \
1006 1.83 perry } while (/*CONSTCOND*/ 0)
1007 1.55 thorpej
1008 1.55 thorpej #define IFQ_PURGE(ifq) \
1009 1.55 thorpej do { \
1010 1.222 knakahar mutex_enter((ifq)->ifq_lock); \
1011 1.272 msaitoh if (ALTQ_IS_ENABLED(ifq)) \
1012 1.272 msaitoh ALTQ_PURGE(ifq); \
1013 1.55 thorpej else \
1014 1.272 msaitoh IF_PURGE(ifq); \
1015 1.222 knakahar mutex_exit((ifq)->ifq_lock); \
1016 1.83 perry } while (/*CONSTCOND*/ 0)
1017 1.55 thorpej
1018 1.55 thorpej #define IFQ_SET_READY(ifq) \
1019 1.55 thorpej do { \
1020 1.55 thorpej (ifq)->altq_flags |= ALTQF_READY; \
1021 1.83 perry } while (/*CONSTCOND*/ 0)
1022 1.55 thorpej
1023 1.201 knakahar #define IFQ_CLASSIFY(ifq, m, af) \
1024 1.55 thorpej do { \
1025 1.271 msaitoh KASSERT(((m)->m_flags & M_PKTHDR) != 0); \
1026 1.222 knakahar mutex_enter((ifq)->ifq_lock); \
1027 1.272 msaitoh if (ALTQ_IS_ENABLED(ifq)) { \
1028 1.272 msaitoh if (ALTQ_NEEDS_CLASSIFY(ifq)) \
1029 1.272 msaitoh (m)->m_pkthdr.pattr_class = (*(ifq)->altq_classify) \
1030 1.55 thorpej ((ifq)->altq_clfier, (m), (af)); \
1031 1.271 msaitoh (m)->m_pkthdr.pattr_af = (af); \
1032 1.271 msaitoh (m)->m_pkthdr.pattr_hdr = mtod((m), void *); \
1033 1.55 thorpej } \
1034 1.222 knakahar mutex_exit((ifq)->ifq_lock); \
1035 1.83 perry } while (/*CONSTCOND*/ 0)
1036 1.55 thorpej #else /* ! ALTQ */
1037 1.201 knakahar #define IFQ_ENQUEUE(ifq, m, err) \
1038 1.55 thorpej do { \
1039 1.222 knakahar mutex_enter((ifq)->ifq_lock); \
1040 1.272 msaitoh if (IF_QFULL(ifq)) { \
1041 1.272 msaitoh m_freem(m); \
1042 1.55 thorpej (err) = ENOBUFS; \
1043 1.55 thorpej } else { \
1044 1.55 thorpej IF_ENQUEUE((ifq), (m)); \
1045 1.55 thorpej (err) = 0; \
1046 1.55 thorpej } \
1047 1.272 msaitoh if (err) \
1048 1.55 thorpej (ifq)->ifq_drops++; \
1049 1.222 knakahar mutex_exit((ifq)->ifq_lock); \
1050 1.83 perry } while (/*CONSTCOND*/ 0)
1051 1.55 thorpej
1052 1.169 ozaki #define IFQ_DEQUEUE(ifq, m) \
1053 1.169 ozaki do { \
1054 1.222 knakahar mutex_enter((ifq)->ifq_lock); \
1055 1.169 ozaki IF_DEQUEUE((ifq), (m)); \
1056 1.222 knakahar mutex_exit((ifq)->ifq_lock); \
1057 1.169 ozaki } while (/*CONSTCOND*/ 0)
1058 1.55 thorpej
1059 1.169 ozaki #define IFQ_POLL(ifq, m) \
1060 1.169 ozaki do { \
1061 1.222 knakahar mutex_enter((ifq)->ifq_lock); \
1062 1.169 ozaki IF_POLL((ifq), (m)); \
1063 1.222 knakahar mutex_exit((ifq)->ifq_lock); \
1064 1.169 ozaki } while (/*CONSTCOND*/ 0)
1065 1.55 thorpej
1066 1.169 ozaki #define IFQ_PURGE(ifq) \
1067 1.169 ozaki do { \
1068 1.222 knakahar mutex_enter((ifq)->ifq_lock); \
1069 1.272 msaitoh IF_PURGE(ifq); \
1070 1.222 knakahar mutex_exit((ifq)->ifq_lock); \
1071 1.169 ozaki } while (/*CONSTCOND*/ 0)
1072 1.55 thorpej
1073 1.55 thorpej #define IFQ_SET_READY(ifq) /* nothing */
1074 1.55 thorpej
1075 1.201 knakahar #define IFQ_CLASSIFY(ifq, m, af) /* nothing */
1076 1.55 thorpej
1077 1.55 thorpej #endif /* ALTQ */
1078 1.55 thorpej
1079 1.227 ozaki #define IFQ_LOCK_INIT(ifq) (ifq)->ifq_lock = \
1080 1.227 ozaki mutex_obj_alloc(MUTEX_DEFAULT, IPL_NET)
1081 1.241 msaitoh #define IFQ_LOCK_DESTROY(ifq) mutex_obj_free((ifq)->ifq_lock)
1082 1.227 ozaki #define IFQ_LOCK(ifq) mutex_enter((ifq)->ifq_lock)
1083 1.227 ozaki #define IFQ_UNLOCK(ifq) mutex_exit((ifq)->ifq_lock)
1084 1.227 ozaki
1085 1.272 msaitoh #define IFQ_IS_EMPTY(ifq) IF_IS_EMPTY(ifq)
1086 1.55 thorpej #define IFQ_INC_LEN(ifq) ((ifq)->ifq_len++)
1087 1.55 thorpej #define IFQ_DEC_LEN(ifq) (--(ifq)->ifq_len)
1088 1.55 thorpej #define IFQ_INC_DROPS(ifq) ((ifq)->ifq_drops++)
1089 1.55 thorpej #define IFQ_SET_MAXLEN(ifq, len) ((ifq)->ifq_maxlen = (len))
1090 1.84 thorpej
1091 1.284 ozaki #define IFQ_ENQUEUE_ISR(ifq, m, isr) \
1092 1.284 ozaki do { \
1093 1.284 ozaki IFQ_LOCK(inq); \
1094 1.284 ozaki if (IF_QFULL(inq)) { \
1095 1.284 ozaki IF_DROP(inq); \
1096 1.284 ozaki IFQ_UNLOCK(inq); \
1097 1.284 ozaki m_freem(m); \
1098 1.284 ozaki } else { \
1099 1.284 ozaki IF_ENQUEUE(inq, m); \
1100 1.284 ozaki IFQ_UNLOCK(inq); \
1101 1.284 ozaki schednetisr(isr); \
1102 1.284 ozaki } \
1103 1.284 ozaki } while (/*CONSTCOND*/ 0)
1104 1.284 ozaki
1105 1.84 thorpej #include <sys/mallocvar.h>
1106 1.84 thorpej MALLOC_DECLARE(M_IFADDR);
1107 1.84 thorpej MALLOC_DECLARE(M_IFMADDR);
1108 1.100 matt
1109 1.125 dyoung int ifreq_setaddr(u_long, struct ifreq *, const struct sockaddr *);
1110 1.125 dyoung
1111 1.138 christos struct ifnet *if_alloc(u_char);
1112 1.151 dyoung void if_free(struct ifnet *);
1113 1.138 christos void if_initname(struct ifnet *, const char *, int);
1114 1.133 dyoung struct ifaddr *if_dl_create(const struct ifnet *, const struct sockaddr_dl **);
1115 1.137 dyoung void if_activate_sadl(struct ifnet *, struct ifaddr *,
1116 1.137 dyoung const struct sockaddr_dl *);
1117 1.141 dyoung void if_set_sadl(struct ifnet *, const void *, u_char, bool);
1118 1.114 thorpej void if_alloc_sadl(struct ifnet *);
1119 1.266 knakahar void if_free_sadl(struct ifnet *, int);
1120 1.291 riastrad void if_initialize(struct ifnet *);
1121 1.184 ozaki void if_register(struct ifnet *);
1122 1.291 riastrad void if_attach(struct ifnet *); /* Deprecated. Use if_initialize and if_register */
1123 1.114 thorpej void if_attachdomain(void);
1124 1.114 thorpej void if_deactivate(struct ifnet *);
1125 1.232 ozaki bool if_is_deactivated(const struct ifnet *);
1126 1.278 thorpej void if_export_if_data(struct ifnet *, struct if_data *, bool);
1127 1.129 dyoung void if_purgeaddrs(struct ifnet *, int, void (*)(struct ifaddr *));
1128 1.114 thorpej void if_detach(struct ifnet *);
1129 1.114 thorpej void if_down(struct ifnet *);
1130 1.247 ozaki void if_down_locked(struct ifnet *);
1131 1.110 dyoung void if_link_state_change(struct ifnet *, int);
1132 1.288 roy void if_domain_link_state_change(struct ifnet *, int);
1133 1.114 thorpej void if_up(struct ifnet *);
1134 1.114 thorpej void ifinit(void);
1135 1.139 yamt void ifinit1(void);
1136 1.264 ozaki void ifinit_post(void);
1137 1.168 rtr int ifaddrpref_ioctl(struct socket *, u_long, void *, struct ifnet *);
1138 1.163 pooka extern int (*ifioctl)(struct socket *, u_long, void *, struct lwp *);
1139 1.134 dyoung int ifioctl_common(struct ifnet *, u_long, void *);
1140 1.114 thorpej int ifpromisc(struct ifnet *, int);
1141 1.246 ozaki int ifpromisc_locked(struct ifnet *, int);
1142 1.207 ozaki int if_addr_init(ifnet_t *, struct ifaddr *, bool);
1143 1.207 ozaki int if_do_dad(struct ifnet *);
1144 1.207 ozaki int if_mcast_op(ifnet_t *, const unsigned long, const struct sockaddr *);
1145 1.276 msaitoh int if_flags_set(struct ifnet *, const u_short);
1146 1.207 ozaki int if_clone_list(int, char *, int *);
1147 1.207 ozaki
1148 1.296 riastrad int if_ioctl(struct ifnet *, u_long, void *);
1149 1.296 riastrad int if_init(struct ifnet *);
1150 1.296 riastrad void if_stop(struct ifnet *, int);
1151 1.296 riastrad
1152 1.114 thorpej struct ifnet *ifunit(const char *);
1153 1.205 ozaki struct ifnet *if_get(const char *, struct psref *);
1154 1.205 ozaki ifnet_t *if_byindex(u_int);
1155 1.254 ozaki ifnet_t *_if_byindex(u_int);
1156 1.205 ozaki ifnet_t *if_get_byindex(u_int, struct psref *);
1157 1.240 roy ifnet_t *if_get_bylla(const void *, unsigned char, struct psref *);
1158 1.205 ozaki void if_put(const struct ifnet *, struct psref *);
1159 1.234 ozaki void if_acquire(struct ifnet *, struct psref *);
1160 1.236 ozaki #define if_release if_put
1161 1.207 ozaki
1162 1.248 knakahar int if_tunnel_check_nesting(struct ifnet *, struct mbuf *, int);
1163 1.277 knakahar percpu_t *if_tunnel_alloc_ro_percpu(void);
1164 1.277 knakahar void if_tunnel_free_ro_percpu(percpu_t *);
1165 1.277 knakahar void if_tunnel_ro_percpu_rtcache_free(percpu_t *);
1166 1.277 knakahar
1167 1.277 knakahar struct tunnel_ro {
1168 1.277 knakahar struct route *tr_ro;
1169 1.277 knakahar kmutex_t *tr_lock;
1170 1.277 knakahar };
1171 1.277 knakahar
1172 1.277 knakahar static inline void
1173 1.277 knakahar if_tunnel_get_ro(percpu_t *ro_percpu, struct route **ro, kmutex_t **lock)
1174 1.277 knakahar {
1175 1.277 knakahar struct tunnel_ro *tro;
1176 1.277 knakahar
1177 1.277 knakahar tro = percpu_getref(ro_percpu);
1178 1.277 knakahar *ro = tro->tr_ro;
1179 1.277 knakahar *lock = tro->tr_lock;
1180 1.277 knakahar mutex_enter(*lock);
1181 1.277 knakahar }
1182 1.277 knakahar
1183 1.277 knakahar static inline void
1184 1.277 knakahar if_tunnel_put_ro(percpu_t *ro_percpu, kmutex_t *lock)
1185 1.277 knakahar {
1186 1.277 knakahar
1187 1.277 knakahar mutex_exit(lock);
1188 1.277 knakahar percpu_putref(ro_percpu);
1189 1.277 knakahar }
1190 1.248 knakahar
1191 1.260 christos static __inline if_index_t
1192 1.213 ozaki if_get_index(const struct ifnet *ifp)
1193 1.213 ozaki {
1194 1.213 ozaki
1195 1.213 ozaki return ifp != NULL ? ifp->if_index : 0;
1196 1.213 ozaki }
1197 1.213 ozaki
1198 1.207 ozaki bool if_held(struct ifnet *);
1199 1.114 thorpej
1200 1.195 ozaki void if_input(struct ifnet *, struct mbuf *);
1201 1.195 ozaki
1202 1.195 ozaki struct if_percpuq *
1203 1.195 ozaki if_percpuq_create(struct ifnet *);
1204 1.195 ozaki void if_percpuq_destroy(struct if_percpuq *);
1205 1.195 ozaki void
1206 1.195 ozaki if_percpuq_enqueue(struct if_percpuq *, struct mbuf *);
1207 1.195 ozaki
1208 1.230 ozaki void if_deferred_start_init(struct ifnet *, void (*)(struct ifnet *));
1209 1.230 ozaki void if_schedule_deferred_start(struct ifnet *);
1210 1.230 ozaki
1211 1.130 dyoung void ifa_insert(struct ifnet *, struct ifaddr *);
1212 1.130 dyoung void ifa_remove(struct ifnet *, struct ifaddr *);
1213 1.130 dyoung
1214 1.224 ozaki void ifa_psref_init(struct ifaddr *);
1215 1.224 ozaki void ifa_acquire(struct ifaddr *, struct psref *);
1216 1.224 ozaki void ifa_release(struct ifaddr *, struct psref *);
1217 1.224 ozaki bool ifa_held(struct ifaddr *);
1218 1.231 ozaki bool ifa_is_destroying(struct ifaddr *);
1219 1.224 ozaki
1220 1.175 rmind void ifaref(struct ifaddr *);
1221 1.175 rmind void ifafree(struct ifaddr *);
1222 1.175 rmind
1223 1.114 thorpej struct ifaddr *ifa_ifwithaddr(const struct sockaddr *);
1224 1.224 ozaki struct ifaddr *ifa_ifwithaddr_psref(const struct sockaddr *, struct psref *);
1225 1.114 thorpej struct ifaddr *ifa_ifwithaf(int);
1226 1.114 thorpej struct ifaddr *ifa_ifwithdstaddr(const struct sockaddr *);
1227 1.224 ozaki struct ifaddr *ifa_ifwithdstaddr_psref(const struct sockaddr *,
1228 1.224 ozaki struct psref *);
1229 1.114 thorpej struct ifaddr *ifa_ifwithnet(const struct sockaddr *);
1230 1.224 ozaki struct ifaddr *ifa_ifwithnet_psref(const struct sockaddr *, struct psref *);
1231 1.114 thorpej struct ifaddr *ifa_ifwithladdr(const struct sockaddr *);
1232 1.224 ozaki struct ifaddr *ifa_ifwithladdr_psref(const struct sockaddr *, struct psref *);
1233 1.114 thorpej struct ifaddr *ifaof_ifpforaddr(const struct sockaddr *, struct ifnet *);
1234 1.224 ozaki struct ifaddr *ifaof_ifpforaddr_psref(const struct sockaddr *, struct ifnet *,
1235 1.224 ozaki struct psref *);
1236 1.140 dyoung void link_rtrequest(int, struct rtentry *, const struct rt_addrinfo *);
1237 1.188 roy void p2p_rtrequest(int, struct rtentry *, const struct rt_addrinfo *);
1238 1.51 thorpej
1239 1.114 thorpej void if_clone_attach(struct if_clone *);
1240 1.114 thorpej void if_clone_detach(struct if_clone *);
1241 1.51 thorpej
1242 1.215 knakahar int if_transmit_lock(struct ifnet *, struct mbuf *);
1243 1.203 knakahar
1244 1.201 knakahar int ifq_enqueue(struct ifnet *, struct mbuf *);
1245 1.201 knakahar int ifq_enqueue2(struct ifnet *, struct ifqueue *, struct mbuf *);
1246 1.107 christos
1247 1.123 christos int loioctl(struct ifnet *, u_long, void *);
1248 1.114 thorpej void loopattach(int);
1249 1.225 kre void loopinit(void);
1250 1.114 thorpej int looutput(struct ifnet *,
1251 1.202 ozaki struct mbuf *, const struct sockaddr *, const struct rtentry *);
1252 1.44 thorpej
1253 1.294 yamaguch void * if_linkstate_change_establish(struct ifnet *,
1254 1.294 yamaguch void (*)(void *), void *);
1255 1.294 yamaguch void if_linkstate_change_disestablish(struct ifnet *,
1256 1.294 yamaguch void *, kmutex_t *);
1257 1.294 yamaguch
1258 1.44 thorpej /*
1259 1.44 thorpej * These are exported because they're an easy way to tell if
1260 1.44 thorpej * an interface is going away without having to burn a flag.
1261 1.44 thorpej */
1262 1.114 thorpej int if_nulloutput(struct ifnet *, struct mbuf *,
1263 1.202 ozaki const struct sockaddr *, const struct rtentry *);
1264 1.114 thorpej void if_nullinput(struct ifnet *, struct mbuf *);
1265 1.114 thorpej void if_nullstart(struct ifnet *);
1266 1.203 knakahar int if_nulltransmit(struct ifnet *, struct mbuf *);
1267 1.123 christos int if_nullioctl(struct ifnet *, u_long, void *);
1268 1.114 thorpej int if_nullinit(struct ifnet *);
1269 1.114 thorpej void if_nullstop(struct ifnet *, int);
1270 1.177 ozaki void if_nullslowtimo(struct ifnet *);
1271 1.177 ozaki #define if_nullwatchdog if_nullslowtimo
1272 1.114 thorpej void if_nulldrain(struct ifnet *);
1273 1.37 itojun #else
1274 1.37 itojun struct if_nameindex {
1275 1.37 itojun unsigned int if_index; /* 1, 2, ... */
1276 1.37 itojun char *if_name; /* null terminated name: "le0", ... */
1277 1.37 itojun };
1278 1.37 itojun
1279 1.38 kleink #include <sys/cdefs.h>
1280 1.37 itojun __BEGIN_DECLS
1281 1.114 thorpej unsigned int if_nametoindex(const char *);
1282 1.114 thorpej char * if_indextoname(unsigned int, char *);
1283 1.114 thorpej struct if_nameindex * if_nameindex(void);
1284 1.114 thorpej void if_freenameindex(struct if_nameindex *);
1285 1.37 itojun __END_DECLS
1286 1.93 jonathan #endif /* _KERNEL */ /* XXX really ALTQ? */
1287 1.93 jonathan
1288 1.93 jonathan #ifdef _KERNEL
1289 1.149 rmind
1290 1.164 rmind #define IFADDR_FIRST(__ifp) TAILQ_FIRST(&(__ifp)->if_addrlist)
1291 1.164 rmind #define IFADDR_NEXT(__ifa) TAILQ_NEXT((__ifa), ifa_list)
1292 1.164 rmind #define IFADDR_FOREACH(__ifa, __ifp) TAILQ_FOREACH(__ifa, \
1293 1.164 rmind &(__ifp)->if_addrlist, ifa_list)
1294 1.174 ozaki #define IFADDR_FOREACH_SAFE(__ifa, __ifp, __nifa) \
1295 1.174 ozaki TAILQ_FOREACH_SAFE(__ifa, \
1296 1.174 ozaki &(__ifp)->if_addrlist, ifa_list, __nifa)
1297 1.164 rmind #define IFADDR_EMPTY(__ifp) TAILQ_EMPTY(&(__ifp)->if_addrlist)
1298 1.164 rmind
1299 1.220 ozaki #define IFADDR_ENTRY_INIT(__ifa) \
1300 1.220 ozaki PSLIST_ENTRY_INIT((__ifa), ifa_pslist_entry)
1301 1.220 ozaki #define IFADDR_ENTRY_DESTROY(__ifa) \
1302 1.220 ozaki PSLIST_ENTRY_DESTROY((__ifa), ifa_pslist_entry)
1303 1.220 ozaki #define IFADDR_READER_EMPTY(__ifp) \
1304 1.220 ozaki (PSLIST_READER_FIRST(&(__ifp)->if_addr_pslist, struct ifaddr, \
1305 1.220 ozaki ifa_pslist_entry) == NULL)
1306 1.220 ozaki #define IFADDR_READER_FIRST(__ifp) \
1307 1.220 ozaki PSLIST_READER_FIRST(&(__ifp)->if_addr_pslist, struct ifaddr, \
1308 1.220 ozaki ifa_pslist_entry)
1309 1.220 ozaki #define IFADDR_READER_NEXT(__ifa) \
1310 1.220 ozaki PSLIST_READER_NEXT((__ifa), struct ifaddr, ifa_pslist_entry)
1311 1.220 ozaki #define IFADDR_READER_FOREACH(__ifa, __ifp) \
1312 1.220 ozaki PSLIST_READER_FOREACH((__ifa), &(__ifp)->if_addr_pslist, struct ifaddr,\
1313 1.220 ozaki ifa_pslist_entry)
1314 1.220 ozaki #define IFADDR_WRITER_INSERT_HEAD(__ifp, __ifa) \
1315 1.220 ozaki PSLIST_WRITER_INSERT_HEAD(&(__ifp)->if_addr_pslist, (__ifa), \
1316 1.220 ozaki ifa_pslist_entry)
1317 1.220 ozaki #define IFADDR_WRITER_REMOVE(__ifa) \
1318 1.220 ozaki PSLIST_WRITER_REMOVE((__ifa), ifa_pslist_entry)
1319 1.220 ozaki #define IFADDR_WRITER_FOREACH(__ifa, __ifp) \
1320 1.220 ozaki PSLIST_WRITER_FOREACH((__ifa), &(__ifp)->if_addr_pslist, struct ifaddr,\
1321 1.220 ozaki ifa_pslist_entry)
1322 1.220 ozaki #define IFADDR_WRITER_NEXT(__ifp) \
1323 1.220 ozaki PSLIST_WRITER_NEXT((__ifp), struct ifaddr, ifa_pslist_entry)
1324 1.220 ozaki #define IFADDR_WRITER_INSERT_AFTER(__ifp, __new) \
1325 1.220 ozaki PSLIST_WRITER_INSERT_AFTER((__ifp), (__new), ifa_pslist_entry)
1326 1.220 ozaki #define IFADDR_WRITER_EMPTY(__ifp) \
1327 1.220 ozaki (PSLIST_WRITER_FIRST(&(__ifp)->if_addr_pslist, struct ifaddr, \
1328 1.220 ozaki ifa_pslist_entry) == NULL)
1329 1.220 ozaki #define IFADDR_WRITER_INSERT_TAIL(__ifp, __new) \
1330 1.220 ozaki do { \
1331 1.272 msaitoh if (IFADDR_WRITER_EMPTY(__ifp)) { \
1332 1.220 ozaki IFADDR_WRITER_INSERT_HEAD((__ifp), (__new)); \
1333 1.220 ozaki } else { \
1334 1.220 ozaki struct ifaddr *__ifa; \
1335 1.220 ozaki IFADDR_WRITER_FOREACH(__ifa, (__ifp)) { \
1336 1.220 ozaki if (IFADDR_WRITER_NEXT(__ifa) == NULL) {\
1337 1.220 ozaki IFADDR_WRITER_INSERT_AFTER(__ifa,\
1338 1.220 ozaki (__new)); \
1339 1.220 ozaki break; \
1340 1.220 ozaki } \
1341 1.220 ozaki } \
1342 1.220 ozaki } \
1343 1.220 ozaki } while (0)
1344 1.220 ozaki
1345 1.252 ozaki #define IFNET_GLOBAL_LOCK() mutex_enter(&ifnet_mtx)
1346 1.252 ozaki #define IFNET_GLOBAL_UNLOCK() mutex_exit(&ifnet_mtx)
1347 1.252 ozaki #define IFNET_GLOBAL_LOCKED() mutex_owned(&ifnet_mtx)
1348 1.204 ozaki
1349 1.204 ozaki #define IFNET_READER_EMPTY() \
1350 1.204 ozaki (PSLIST_READER_FIRST(&ifnet_pslist, struct ifnet, if_pslist_entry) == NULL)
1351 1.204 ozaki #define IFNET_READER_FIRST() \
1352 1.204 ozaki PSLIST_READER_FIRST(&ifnet_pslist, struct ifnet, if_pslist_entry)
1353 1.204 ozaki #define IFNET_READER_NEXT(__ifp) \
1354 1.204 ozaki PSLIST_READER_NEXT((__ifp), struct ifnet, if_pslist_entry)
1355 1.204 ozaki #define IFNET_READER_FOREACH(__ifp) \
1356 1.204 ozaki PSLIST_READER_FOREACH((__ifp), &ifnet_pslist, struct ifnet, \
1357 1.204 ozaki if_pslist_entry)
1358 1.204 ozaki #define IFNET_WRITER_INSERT_HEAD(__ifp) \
1359 1.204 ozaki PSLIST_WRITER_INSERT_HEAD(&ifnet_pslist, (__ifp), if_pslist_entry)
1360 1.204 ozaki #define IFNET_WRITER_REMOVE(__ifp) \
1361 1.204 ozaki PSLIST_WRITER_REMOVE((__ifp), if_pslist_entry)
1362 1.204 ozaki #define IFNET_WRITER_FOREACH(__ifp) \
1363 1.204 ozaki PSLIST_WRITER_FOREACH((__ifp), &ifnet_pslist, struct ifnet, \
1364 1.204 ozaki if_pslist_entry)
1365 1.204 ozaki #define IFNET_WRITER_NEXT(__ifp) \
1366 1.204 ozaki PSLIST_WRITER_NEXT((__ifp), struct ifnet, if_pslist_entry)
1367 1.204 ozaki #define IFNET_WRITER_INSERT_AFTER(__ifp, __new) \
1368 1.204 ozaki PSLIST_WRITER_INSERT_AFTER((__ifp), (__new), if_pslist_entry)
1369 1.204 ozaki #define IFNET_WRITER_EMPTY() \
1370 1.204 ozaki (PSLIST_WRITER_FIRST(&ifnet_pslist, struct ifnet, if_pslist_entry) == NULL)
1371 1.204 ozaki #define IFNET_WRITER_INSERT_TAIL(__new) \
1372 1.204 ozaki do { \
1373 1.204 ozaki if (IFNET_WRITER_EMPTY()) { \
1374 1.272 msaitoh IFNET_WRITER_INSERT_HEAD(__new); \
1375 1.204 ozaki } else { \
1376 1.204 ozaki struct ifnet *__ifp; \
1377 1.204 ozaki IFNET_WRITER_FOREACH(__ifp) { \
1378 1.204 ozaki if (IFNET_WRITER_NEXT(__ifp) == NULL) { \
1379 1.204 ozaki IFNET_WRITER_INSERT_AFTER(__ifp,\
1380 1.204 ozaki (__new)); \
1381 1.204 ozaki break; \
1382 1.204 ozaki } \
1383 1.204 ozaki } \
1384 1.204 ozaki } \
1385 1.204 ozaki } while (0)
1386 1.204 ozaki
1387 1.253 ozaki #define IFNET_LOCK(ifp) mutex_enter((ifp)->if_ioctl_lock)
1388 1.253 ozaki #define IFNET_UNLOCK(ifp) mutex_exit((ifp)->if_ioctl_lock)
1389 1.253 ozaki #define IFNET_LOCKED(ifp) mutex_owned((ifp)->if_ioctl_lock)
1390 1.253 ozaki
1391 1.262 ozaki #define IFNET_ASSERT_UNLOCKED(ifp) \
1392 1.262 ozaki KDASSERT(mutex_ownable((ifp)->if_ioctl_lock))
1393 1.262 ozaki
1394 1.204 ozaki extern struct pslist_head ifnet_pslist;
1395 1.204 ozaki extern kmutex_t ifnet_mtx;
1396 1.204 ozaki
1397 1.165 rmind extern struct ifnet *lo0ifp;
1398 1.165 rmind
1399 1.93 jonathan /*
1400 1.93 jonathan * ifq sysctl support
1401 1.93 jonathan */
1402 1.114 thorpej int sysctl_ifq(int *name, u_int namelen, void *oldp,
1403 1.93 jonathan size_t *oldlenp, void *newp, size_t newlen,
1404 1.114 thorpej struct ifqueue *ifq);
1405 1.93 jonathan /* symbolic names for terminal (per-protocol) CTL_IFQ_ nodes */
1406 1.265 msaitoh #define IFQCTL_LEN 1
1407 1.265 msaitoh #define IFQCTL_MAXLEN 2
1408 1.265 msaitoh #define IFQCTL_PEAK 3
1409 1.265 msaitoh #define IFQCTL_DROPS 4
1410 1.93 jonathan
1411 1.299 skrll /*
1412 1.269 pgoyette * Hook for if_vlan - needed by if_agr
1413 1.269 pgoyette */
1414 1.297 yamaguch MODULE_HOOK(if_vlan_vlan_input_hook,
1415 1.297 yamaguch struct mbuf *, (struct ifnet *, struct mbuf *));
1416 1.269 pgoyette
1417 1.15 jtc #endif /* _KERNEL */
1418 1.93 jonathan
1419 1.28 chuck #endif /* !_NET_IF_H_ */
1420