ifq.h revision 127828
1/*
2 * Copyright (c) 1982, 1986, 1989, 1993
3 *	The Regents of the University of California.  All rights reserved.
4 *
5 * Redistribution and use in source and binary forms, with or without
6 * modification, are permitted provided that the following conditions
7 * are met:
8 * 1. Redistributions of source code must retain the above copyright
9 *    notice, this list of conditions and the following disclaimer.
10 * 2. Redistributions in binary form must reproduce the above copyright
11 *    notice, this list of conditions and the following disclaimer in the
12 *    documentation and/or other materials provided with the distribution.
13 * 3. All advertising materials mentioning features or use of this software
14 *    must display the following acknowledgement:
15 *	This product includes software developed by the University of
16 *	California, Berkeley and its contributors.
17 * 4. Neither the name of the University nor the names of its contributors
18 *    may be used to endorse or promote products derived from this software
19 *    without specific prior written permission.
20 *
21 * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
22 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
23 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
24 * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
25 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
26 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
27 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
28 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
29 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
30 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
31 * SUCH DAMAGE.
32 *
33 *	From: @(#)if.h	8.1 (Berkeley) 6/10/93
34 * $FreeBSD: head/sys/net/if_var.h 127828 2004-04-04 06:14:55Z luigi $
35 */
36
37#ifndef	_NET_IF_VAR_H_
38#define	_NET_IF_VAR_H_
39
40/*
41 * Structures defining a network interface, providing a packet
42 * transport mechanism (ala level 0 of the PUP protocols).
43 *
44 * Each interface accepts output datagrams of a specified maximum
45 * length, and provides higher level routines with input datagrams
46 * received from its medium.
47 *
48 * Output occurs when the routine if_output is called, with three parameters:
49 *	(*ifp->if_output)(ifp, m, dst, rt)
50 * Here m is the mbuf chain to be sent and dst is the destination address.
51 * The output routine encapsulates the supplied datagram if necessary,
52 * and then transmits it on its medium.
53 *
54 * On input, each interface unwraps the data received by it, and either
55 * places it on the input queue of an internetwork datagram routine
56 * and posts the associated software interrupt, or passes the datagram to a raw
57 * packet input routine.
58 *
59 * Routines exist for locating interfaces by their addresses
60 * or for locating an interface on a certain network, as well as more general
61 * routing and gateway routines maintaining information used to locate
62 * interfaces.  These routines live in the files if.c and route.c
63 */
64
65#ifdef __STDC__
66/*
67 * Forward structure declarations for function prototypes [sic].
68 */
69struct	mbuf;
70struct	thread;
71struct	rtentry;
72struct	rt_addrinfo;
73struct	socket;
74struct	ether_header;
75#endif
76
77#include <sys/queue.h>		/* get TAILQ macros */
78
79#ifdef _KERNEL
80#include <sys/mbuf.h>
81#include <sys/eventhandler.h>
82#endif /* _KERNEL */
83#include <sys/lock.h>		/* XXX */
84#include <sys/mutex.h>		/* XXX */
85#include <sys/event.h>		/* XXX */
86
87#define	IF_DUNIT_NONE	-1
88
89TAILQ_HEAD(ifnethead, ifnet);	/* we use TAILQs so that the order of */
90TAILQ_HEAD(ifaddrhead, ifaddr);	/* instantiation is preserved in the list */
91TAILQ_HEAD(ifprefixhead, ifprefix);
92TAILQ_HEAD(ifmultihead, ifmultiaddr);
93
94/*
95 * Structure defining a queue for a network interface.
96 */
97struct	ifqueue {
98	struct	mbuf *ifq_head;
99	struct	mbuf *ifq_tail;
100	int	ifq_len;
101	int	ifq_maxlen;
102	int	ifq_drops;
103	struct	mtx ifq_mtx;
104};
105
106/*
107 * Structure defining a network interface.
108 *
109 * (Would like to call this struct ``if'', but C isn't PL/1.)
110 */
111
112/*
113 * NB: For FreeBSD, it is assumed that each NIC driver's softc starts with
114 * one of these structures, typically held within an arpcom structure.
115 *
116 *	struct <foo>_softc {
117 *		struct arpcom {
118 *			struct  ifnet ac_if;
119 *			...
120 *		} <arpcom> ;
121 *		...
122 *	};
123 *
124 * The assumption is used in a number of places, including many
125 * files in sys/net, device drivers, and sys/dev/mii.c:miibus_attach().
126 *
127 * Unfortunately devices' softc are opaque, so we depend on this layout
128 * to locate the struct ifnet from the softc in the generic code.
129 *
130 */
131struct ifnet {
132	void	*if_softc;		/* pointer to driver state */
133	TAILQ_ENTRY(ifnet) if_link; 	/* all struct ifnets are chained */
134	char	if_xname[IFNAMSIZ];	/* external name (name + unit) */
135	const char *if_dname;		/* driver name */
136	int	if_dunit;		/* unit or IF_DUNIT_NONE */
137	struct	ifaddrhead if_addrhead;	/* linked list of addresses per if */
138	struct	klist if_klist;		/* events attached to this if */
139	int	if_pcount;		/* number of promiscuous listeners */
140	struct	bpf_if *if_bpf;		/* packet filter structure */
141	u_short	if_index;		/* numeric abbreviation for this if  */
142	short	if_timer;		/* time 'til if_watchdog called */
143	u_short	if_nvlans;		/* number of active vlans */
144	int	if_flags;		/* up/down, broadcast, etc. */
145	int	if_capabilities;	/* interface capabilities */
146	int	if_capenable;		/* enabled features */
147	int	if_ipending;		/* interrupts pending */
148	void	*if_linkmib;		/* link-type-specific MIB data */
149	size_t	if_linkmiblen;		/* length of above data */
150	struct	if_data if_data;
151	struct	ifmultihead if_multiaddrs; /* multicast addresses configured */
152	int	if_amcount;		/* number of all-multicast requests */
153/* procedure handles */
154	int	(*if_output)		/* output routine (enqueue) */
155		(struct ifnet *, struct mbuf *, struct sockaddr *,
156		     struct rtentry *);
157	void	(*if_input)		/* input routine (from h/w driver) */
158		(struct ifnet *, struct mbuf *);
159	void	(*if_start)		/* initiate output routine */
160		(struct ifnet *);
161	int	(*if_ioctl)		/* ioctl routine */
162		(struct ifnet *, u_long, caddr_t);
163	void	(*if_watchdog)		/* timer routine */
164		(struct ifnet *);
165	void	(*if_init)		/* Init routine */
166		(void *);
167	int	(*if_resolvemulti)	/* validate/resolve multicast */
168		(struct ifnet *, struct sockaddr **, struct sockaddr *);
169	struct	ifqueue if_snd;		/* output queue */
170	const u_int8_t *if_broadcastaddr; /* linklevel broadcast bytestring */
171
172	struct	lltable *lltables;	/* list of L3-L2 resolution tables */
173
174	struct	label *if_label;	/* interface MAC label */
175
176	/* these are only used by IPv6 */
177	struct	ifprefixhead if_prefixhead; /* list of prefixes per if */
178	void	*if_afdata[AF_MAX];
179	int	if_afdata_initialized;
180	struct	mtx if_afdata_mtx;
181};
182
183typedef void if_init_f_t(void *);
184
185#define	if_mtu		if_data.ifi_mtu
186#define	if_type		if_data.ifi_type
187#define if_physical	if_data.ifi_physical
188#define	if_addrlen	if_data.ifi_addrlen
189#define	if_hdrlen	if_data.ifi_hdrlen
190#define	if_metric	if_data.ifi_metric
191#define	if_baudrate	if_data.ifi_baudrate
192#define	if_hwassist	if_data.ifi_hwassist
193#define	if_ipackets	if_data.ifi_ipackets
194#define	if_ierrors	if_data.ifi_ierrors
195#define	if_opackets	if_data.ifi_opackets
196#define	if_oerrors	if_data.ifi_oerrors
197#define	if_collisions	if_data.ifi_collisions
198#define	if_ibytes	if_data.ifi_ibytes
199#define	if_obytes	if_data.ifi_obytes
200#define	if_imcasts	if_data.ifi_imcasts
201#define	if_omcasts	if_data.ifi_omcasts
202#define	if_iqdrops	if_data.ifi_iqdrops
203#define	if_noproto	if_data.ifi_noproto
204#define	if_lastchange	if_data.ifi_lastchange
205#define if_recvquota	if_data.ifi_recvquota
206#define	if_xmitquota	if_data.ifi_xmitquota
207#define if_rawoutput(if, m, sa) if_output(if, m, sa, (struct rtentry *)0)
208
209/* for compatibility with other BSDs */
210#define	if_addrlist	if_addrhead
211#define	if_list		if_link
212
213/*
214 * Bit values in if_ipending
215 */
216#define	IFI_RECV	1	/* I want to receive */
217#define	IFI_XMIT	2	/* I want to transmit */
218
219/*
220 * Output queues (ifp->if_snd) and slow device input queues (*ifp->if_slowq)
221 * are queues of messages stored on ifqueue structures
222 * (defined above).  Entries are added to and deleted from these structures
223 * by these macros, which should be called with ipl raised to splimp().
224 */
225#define IF_LOCK(ifq)		mtx_lock(&(ifq)->ifq_mtx)
226#define IF_UNLOCK(ifq)		mtx_unlock(&(ifq)->ifq_mtx)
227#define	_IF_QFULL(ifq)		((ifq)->ifq_len >= (ifq)->ifq_maxlen)
228#define	_IF_DROP(ifq)		((ifq)->ifq_drops++)
229#define	_IF_QLEN(ifq)		((ifq)->ifq_len)
230
231#define	_IF_ENQUEUE(ifq, m) do { 				\
232	(m)->m_nextpkt = NULL;					\
233	if ((ifq)->ifq_tail == NULL) 				\
234		(ifq)->ifq_head = m; 				\
235	else 							\
236		(ifq)->ifq_tail->m_nextpkt = m; 		\
237	(ifq)->ifq_tail = m; 					\
238	(ifq)->ifq_len++; 					\
239} while (0)
240
241#define IF_ENQUEUE(ifq, m) do {					\
242	IF_LOCK(ifq); 						\
243	_IF_ENQUEUE(ifq, m); 					\
244	IF_UNLOCK(ifq); 					\
245} while (0)
246
247#define	_IF_PREPEND(ifq, m) do {				\
248	(m)->m_nextpkt = (ifq)->ifq_head; 			\
249	if ((ifq)->ifq_tail == NULL) 				\
250		(ifq)->ifq_tail = (m); 				\
251	(ifq)->ifq_head = (m); 					\
252	(ifq)->ifq_len++; 					\
253} while (0)
254
255#define IF_PREPEND(ifq, m) do {		 			\
256	IF_LOCK(ifq); 						\
257	_IF_PREPEND(ifq, m); 					\
258	IF_UNLOCK(ifq); 					\
259} while (0)
260
261#define	_IF_DEQUEUE(ifq, m) do { 				\
262	(m) = (ifq)->ifq_head; 					\
263	if (m) { 						\
264		if (((ifq)->ifq_head = (m)->m_nextpkt) == 0) 	\
265			(ifq)->ifq_tail = NULL; 		\
266		(m)->m_nextpkt = NULL; 				\
267		(ifq)->ifq_len--; 				\
268	} 							\
269} while (0)
270
271#define IF_DEQUEUE(ifq, m) do { 				\
272	IF_LOCK(ifq); 						\
273	_IF_DEQUEUE(ifq, m); 					\
274	IF_UNLOCK(ifq); 					\
275} while (0)
276
277#define IF_DRAIN(ifq) do { 					\
278	struct mbuf *m; 					\
279	IF_LOCK(ifq); 						\
280	for (;;) { 						\
281		_IF_DEQUEUE(ifq, m); 				\
282		if (m == NULL) 					\
283			break; 					\
284		m_freem(m); 					\
285	} 							\
286	IF_UNLOCK(ifq); 					\
287} while (0)
288
289#ifdef _KERNEL
290/* interface address change event */
291typedef void (*ifaddr_event_handler_t)(void *, struct ifnet *);
292EVENTHANDLER_DECLARE(ifaddr_event, ifaddr_event_handler_t);
293/* new interface arrival event */
294typedef void (*ifnet_arrival_event_handler_t)(void *, struct ifnet *);
295EVENTHANDLER_DECLARE(ifnet_arrival_event, ifnet_arrival_event_handler_t);
296/* interface departure event */
297typedef void (*ifnet_departure_event_handler_t)(void *, struct ifnet *);
298EVENTHANDLER_DECLARE(ifnet_departure_event, ifnet_departure_event_handler_t);
299/* interface clone event */
300typedef void (*if_clone_event_handler_t)(void *, struct if_clone *);
301EVENTHANDLER_DECLARE(if_clone_event, if_clone_event_handler_t);
302
303#define	IF_AFDATA_LOCK_INIT(ifp)	\
304    mtx_init(&(ifp)->if_afdata_mtx, "if_afdata", NULL, MTX_DEF)
305#define	IF_AFDATA_LOCK(ifp)	mtx_lock(&(ifp)->if_afdata_mtx)
306#define	IF_AFDATA_TRYLOCK(ifp)	mtx_trylock(&(ifp)->if_afdata_mtx)
307#define	IF_AFDATA_UNLOCK(ifp)	mtx_unlock(&(ifp)->if_afdata_mtx)
308#define	IF_AFDATA_DESTROY(ifp)	mtx_destroy(&(ifp)->if_afdata_mtx)
309
310#define	IF_HANDOFF(ifq, m, ifp)			if_handoff(ifq, m, ifp, 0)
311#define	IF_HANDOFF_ADJ(ifq, m, ifp, adj)	if_handoff(ifq, m, ifp, adj)
312
313static __inline int
314if_handoff(struct ifqueue *ifq, struct mbuf *m, struct ifnet *ifp, int adjust)
315{
316	int active = 0;
317
318	IF_LOCK(ifq);
319	if (_IF_QFULL(ifq)) {
320		_IF_DROP(ifq);
321		IF_UNLOCK(ifq);
322		m_freem(m);
323		return (0);
324	}
325	if (ifp != NULL) {
326		ifp->if_obytes += m->m_pkthdr.len + adjust;
327		if (m->m_flags & M_MCAST)
328			ifp->if_omcasts++;
329		active = ifp->if_flags & IFF_OACTIVE;
330	}
331	_IF_ENQUEUE(ifq, m);
332	IF_UNLOCK(ifq);
333	if (ifp != NULL && !active)
334		(*ifp->if_start)(ifp);
335	return (1);
336}
337
338/*
339 * 72 was chosen below because it is the size of a TCP/IP
340 * header (40) + the minimum mss (32).
341 */
342#define	IF_MINMTU	72
343#define	IF_MAXMTU	65535
344
345#endif /* _KERNEL */
346
347/*
348 * The ifaddr structure contains information about one address
349 * of an interface.  They are maintained by the different address families,
350 * are allocated and attached when an address is set, and are linked
351 * together so all addresses for an interface can be located.
352 */
353struct ifaddr {
354	struct	sockaddr *ifa_addr;	/* address of interface */
355	struct	sockaddr *ifa_dstaddr;	/* other end of p-to-p link */
356#define	ifa_broadaddr	ifa_dstaddr	/* broadcast address interface */
357	struct	sockaddr *ifa_netmask;	/* used to determine subnet */
358	struct	if_data if_data;	/* not all members are meaningful */
359	struct	ifnet *ifa_ifp;		/* back-pointer to interface */
360	TAILQ_ENTRY(ifaddr) ifa_link;	/* queue macro glue */
361	void	(*ifa_rtrequest)	/* check or clean routes (+ or -)'d */
362		(int, struct rtentry *, struct rt_addrinfo *);
363	u_short	ifa_flags;		/* mostly rt_flags for cloning */
364	u_int	ifa_refcnt;		/* references to this structure */
365	int	ifa_metric;		/* cost of going out this interface */
366#ifdef notdef
367	struct	rtentry *ifa_rt;	/* XXXX for ROUTETOIF ????? */
368#endif
369	int (*ifa_claim_addr)		/* check if an addr goes to this if */
370		(struct ifaddr *, struct sockaddr *);
371	struct mtx ifa_mtx;
372};
373#define	IFA_ROUTE	RTF_UP		/* route installed */
374
375/* for compatibility with other BSDs */
376#define	ifa_list	ifa_link
377
378#define	IFA_LOCK_INIT(ifa)	\
379    mtx_init(&(ifa)->ifa_mtx, "ifaddr", NULL, MTX_DEF)
380#define	IFA_LOCK(ifa)		mtx_lock(&(ifa)->ifa_mtx)
381#define	IFA_UNLOCK(ifa)		mtx_unlock(&(ifa)->ifa_mtx)
382#define	IFA_DESTROY(ifa)	mtx_destroy(&(ifa)->ifa_mtx)
383
384/*
385 * The prefix structure contains information about one prefix
386 * of an interface.  They are maintained by the different address families,
387 * are allocated and attached when a prefix or an address is set,
388 * and are linked together so all prefixes for an interface can be located.
389 */
390struct ifprefix {
391	struct	sockaddr *ifpr_prefix;	/* prefix of interface */
392	struct	ifnet *ifpr_ifp;	/* back-pointer to interface */
393	TAILQ_ENTRY(ifprefix) ifpr_list; /* queue macro glue */
394	u_char	ifpr_plen;		/* prefix length in bits */
395	u_char	ifpr_type;		/* protocol dependent prefix type */
396};
397
398/*
399 * Multicast address structure.  This is analogous to the ifaddr
400 * structure except that it keeps track of multicast addresses.
401 * Also, the reference count here is a count of requests for this
402 * address, not a count of pointers to this structure.
403 */
404struct ifmultiaddr {
405	TAILQ_ENTRY(ifmultiaddr) ifma_link; /* queue macro glue */
406	struct	sockaddr *ifma_addr; 	/* address this membership is for */
407	struct	sockaddr *ifma_lladdr;	/* link-layer translation, if any */
408	struct	ifnet *ifma_ifp;	/* back-pointer to interface */
409	u_int	ifma_refcount;		/* reference count */
410	void	*ifma_protospec;	/* protocol-specific state, if any */
411};
412
413#ifdef _KERNEL
414#define	IFAFREE(ifa)					\
415	do {						\
416		IFA_LOCK(ifa);				\
417		KASSERT((ifa)->ifa_refcnt > 0,		\
418		    ("ifa %p !(ifa_refcnt > 0)", ifa));	\
419		if (--(ifa)->ifa_refcnt == 0) {		\
420			IFA_DESTROY(ifa);		\
421			free(ifa, M_IFADDR);		\
422		} else 					\
423			IFA_UNLOCK(ifa);		\
424	} while (0)
425
426#define IFAREF(ifa)					\
427	do {						\
428		IFA_LOCK(ifa);				\
429		++(ifa)->ifa_refcnt;			\
430		IFA_UNLOCK(ifa);			\
431	} while (0)
432
433extern	struct mtx ifnet_lock;
434#define	IFNET_LOCK_INIT() \
435    mtx_init(&ifnet_lock, "ifnet", NULL, MTX_DEF | MTX_RECURSE)
436#define	IFNET_WLOCK()		mtx_lock(&ifnet_lock)
437#define	IFNET_WUNLOCK()		mtx_unlock(&ifnet_lock)
438#define	IFNET_RLOCK()		IFNET_WLOCK()
439#define	IFNET_RUNLOCK()		IFNET_WUNLOCK()
440
441struct ifindex_entry {
442	struct	ifnet *ife_ifnet;
443	struct	ifaddr *ife_ifnet_addr;
444	dev_t	ife_dev;
445};
446
447#define ifnet_byindex(idx)	ifindex_table[(idx)].ife_ifnet
448#define ifaddr_byindex(idx)	ifindex_table[(idx)].ife_ifnet_addr
449#define ifdev_byindex(idx)	ifindex_table[(idx)].ife_dev
450
451extern	struct ifnethead ifnet;
452extern	struct ifindex_entry *ifindex_table;
453extern	int ifqmaxlen;
454extern	struct ifnet *loif;	/* first loopback interface */
455extern	int if_index;
456
457int	if_addmulti(struct ifnet *, struct sockaddr *, struct ifmultiaddr **);
458int	if_allmulti(struct ifnet *, int);
459void	if_attach(struct ifnet *);
460int	if_delmulti(struct ifnet *, struct sockaddr *);
461void	if_detach(struct ifnet *);
462void	if_down(struct ifnet *);
463void	if_initname(struct ifnet *, const char *, int);
464int	if_printf(struct ifnet *, const char *, ...) __printflike(2, 3);
465void	if_route(struct ifnet *, int flag, int fam);
466int	if_setlladdr(struct ifnet *, const u_char *, int);
467void	if_unroute(struct ifnet *, int flag, int fam);
468void	if_up(struct ifnet *);
469/*void	ifinit(void);*/ /* declared in systm.h for main() */
470int	ifioctl(struct socket *, u_long, caddr_t, struct thread *);
471int	ifpromisc(struct ifnet *, int);
472struct	ifnet *ifunit(const char *);
473
474struct	ifaddr *ifa_ifwithaddr(struct sockaddr *);
475struct	ifaddr *ifa_ifwithdstaddr(struct sockaddr *);
476struct	ifaddr *ifa_ifwithnet(struct sockaddr *);
477struct	ifaddr *ifa_ifwithroute(int, struct sockaddr *, struct sockaddr *);
478struct	ifaddr *ifaof_ifpforaddr(struct sockaddr *, struct ifnet *);
479
480struct	ifmultiaddr *ifmaof_ifpforaddr(struct sockaddr *, struct ifnet *);
481int	if_simloop(struct ifnet *ifp, struct mbuf *m, int af, int hlen);
482
483void	if_clone_attach(struct if_clone *);
484void	if_clone_detach(struct if_clone *);
485
486int	if_clone_create(char *, int);
487int	if_clone_destroy(const char *);
488
489#define IF_LLADDR(ifp)							\
490    LLADDR((struct sockaddr_dl *) ifaddr_byindex((ifp)->if_index)->ifa_addr)
491
492#ifdef DEVICE_POLLING
493enum poll_cmd {	POLL_ONLY, POLL_AND_CHECK_STATUS, POLL_DEREGISTER };
494
495typedef	void poll_handler_t(struct ifnet *ifp, enum poll_cmd cmd, int count);
496int    ether_poll_register(poll_handler_t *h, struct ifnet *ifp);
497int    ether_poll_deregister(struct ifnet *ifp);
498#endif /* DEVICE_POLLING */
499
500#endif /* _KERNEL */
501
502#endif /* !_NET_IF_VAR_H_ */
503