ieee80211_netbsd.h revision 1.21.2.6 1 1.21.2.6 phil /* $NetBSD: ieee80211_netbsd.h,v 1.21.2.6 2018/07/28 00:49:43 phil Exp $ */
2 1.21.2.2 phil
3 1.2 dyoung /*-
4 1.21.2.1 phil * SPDX-License-Identifier: BSD-2-Clause-FreeBSD
5 1.21.2.1 phil *
6 1.21.2.1 phil * Copyright (c) 2003-2008 Sam Leffler, Errno Consulting
7 1.2 dyoung * All rights reserved.
8 1.2 dyoung *
9 1.2 dyoung * Redistribution and use in source and binary forms, with or without
10 1.2 dyoung * modification, are permitted provided that the following conditions
11 1.2 dyoung * are met:
12 1.2 dyoung * 1. Redistributions of source code must retain the above copyright
13 1.2 dyoung * notice, this list of conditions and the following disclaimer.
14 1.2 dyoung * 2. Redistributions in binary form must reproduce the above copyright
15 1.2 dyoung * notice, this list of conditions and the following disclaimer in the
16 1.2 dyoung * documentation and/or other materials provided with the distribution.
17 1.2 dyoung *
18 1.2 dyoung * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
19 1.2 dyoung * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
20 1.2 dyoung * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
21 1.2 dyoung * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
22 1.2 dyoung * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
23 1.2 dyoung * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
24 1.2 dyoung * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
25 1.2 dyoung * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
26 1.2 dyoung * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
27 1.2 dyoung * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
28 1.2 dyoung *
29 1.21.2.3 phil * $FreeBSD: ieee80211_freebsd.h$
30 1.2 dyoung */
31 1.21.2.3 phil #ifndef _NET80211_IEEE80211_NETBSD_H_
32 1.21.2.3 phil #define _NET80211_IEEE80211_NETBSD_H_
33 1.2 dyoung
34 1.13 dyoung #ifdef _KERNEL
35 1.21.2.1 phil #include <sys/param.h>
36 1.21.2.1 phil #include <sys/systm.h>
37 1.21.2.3 phil #include <sys/atomic.h>
38 1.21.2.3 phil #include <sys/cprng.h>
39 1.21.2.1 phil #include <sys/lock.h>
40 1.21.2.3 phil #include <sys/mbuf.h>
41 1.21.2.3 phil #include <sys/malloc.h>
42 1.21.2.3 phil #include <sys/mallocvar.h>
43 1.21.2.1 phil #include <sys/mutex.h>
44 1.21.2.1 phil #include <sys/rwlock.h>
45 1.21.2.1 phil #include <sys/sysctl.h>
46 1.21.2.3 phil #include <sys/workqueue.h>
47 1.21.2.3 phil
48 1.21.2.3 phil // #include <net80211/_ieee80211.h>
49 1.21.2.3 phil
50 1.21.2.3 phil #include <net/if.h>
51 1.21.2.3 phil
52 1.21.2.3 phil /*
53 1.21.2.3 phil * Defines to make the FreeBSD code work on NetBSD
54 1.21.2.3 phil */
55 1.21.2.3 phil
56 1.21.2.3 phil #define PI_NET IPL_NET
57 1.21.2.3 phil #define EDOOFUS EINVAL
58 1.21.2.3 phil #define IFF_PPROMISC IFF_PROMISC
59 1.21.2.3 phil
60 1.21.2.3 phil #define __offsetof(type, field) __builtin_offsetof(type, field)
61 1.21.2.3 phil #define arc4random cprng_fast32
62 1.21.2.3 phil #define atomic_subtract_int(var,val) atomic_add_int(var,-(val))
63 1.21.2.4 phil #define caddr_t void *
64 1.21.2.3 phil #define callout_drain(x) callout_halt(x, NULL)
65 1.21.2.3 phil #define m_catpkt(x,y) m_cat(x,y)
66 1.21.2.3 phil #define mtx_lock(mtx) mutex_enter(mtx)
67 1.21.2.3 phil #define mtx_unlock(mtx) mutex_exit(mtx)
68 1.21.2.3 phil #define mtx_owned(mtx) mutex_owned(mtx)
69 1.21.2.3 phil #define mtx_destroy(mtx) mutex_destroy(mtx)
70 1.21.2.3 phil #define mtx_sleep(a1, a2, a3, a4, a5) /* NNN not sure what it should be. */
71 1.21.2.3 phil #define nitems(x) (sizeof((x)) / sizeof((x)[0]))
72 1.21.2.3 phil #define ovbcopy(dst,src,size) memmove(dst,src,size)
73 1.21.2.3 phil #define ticks hardclock_ticks
74 1.21.2.3 phil
75 1.21.2.3 phil /*
76 1.21.2.3 phil * task stuff needs major work NNN!
77 1.21.2.3 phil */
78 1.21.2.3 phil
79 1.21.2.3 phil typedef void task_fn_t(void *context, int pending);
80 1.21.2.3 phil
81 1.21.2.3 phil struct task {
82 1.21.2.3 phil /* some kind of queue entry? */
83 1.21.2.6 phil struct work t_work;
84 1.21.2.6 phil task_fn_t *t_func;
85 1.21.2.6 phil void *t_arg;
86 1.21.2.6 phil kmutex_t t_mutex;
87 1.21.2.6 phil int t_onqueue;
88 1.21.2.3 phil };
89 1.21.2.6 phil
90 1.21.2.6 phil static __inline int dummy(void);
91 1.21.2.6 phil static __inline int dummy(void) { return 0; }
92 1.21.2.6 phil
93 1.21.2.6 phil struct timeout_task { int needsWork; };
94 1.21.2.6 phil
95 1.21.2.6 phil void ieee80211_runwork(struct work *, void *);
96 1.21.2.6 phil void taskqueue_enqueue(struct workqueue *, struct task *);
97 1.21.2.6 phil void taskqueue_drain(struct workqueue *, struct task *);
98 1.21.2.6 phil
99 1.21.2.3 phil #define TASK_INIT(var, pri, func, arg) do { \
100 1.21.2.3 phil (var)->t_func = func; \
101 1.21.2.6 phil (var)->t_arg = arg; \
102 1.21.2.6 phil (var)->t_work.wk_dummy = var; \
103 1.21.2.6 phil mutex_init(&(var)->t_mutex, MUTEX_DEFAULT, IPL_SOFTNET);\
104 1.21.2.6 phil (var)->t_onqueue = 0;\
105 1.21.2.3 phil } while(0)
106 1.21.2.3 phil
107 1.21.2.3 phil #define taskqueue workqueue
108 1.21.2.6 phil #define taskqueue_free(queue) workqueue_destroy(queue)
109 1.21.2.6 phil
110 1.21.2.3 phil #define taskqueue_block(queue) /* */
111 1.21.2.3 phil #define taskqueue_unblock(queue) /* */
112 1.21.2.3 phil #define taskqueue_drain_timeout(queue, x) /* */
113 1.21.2.3 phil #define taskqueue_enqueue_timeout(queue, x, y) { int __unused zzz = 0; }
114 1.21.2.3 phil #define taskqueue_cancel_timeout(queue, x, y) dummy()
115 1.21.2.3 phil #define TIMEOUT_TASK_INIT(queue, a2, a3, a4, a5) /* */
116 1.21.2.3 phil
117 1.21.2.3 phil /* Other stuff that needs to be fixed NNN */
118 1.21.2.3 phil #define priv_check(x,y) 1
119 1.21.2.3 phil
120 1.21.2.3 phil /* Coult it be this simple? */
121 1.21.2.3 phil #define if_addr_rlock(ifp) IFNET_LOCK(ifp)
122 1.21.2.3 phil #define if_addr_runlock(x) IFNET_UNLOCK(ifp)
123 1.21.2.3 phil
124 1.21.2.3 phil /* VNET defines to remove them ... NNN may need a lot of work! */
125 1.21.2.3 phil
126 1.21.2.3 phil #define CURVNET_SET(x) /* */
127 1.21.2.3 phil #define CURVNET_RESTORE() /* */
128 1.21.2.3 phil #define CURVNET_SET_QUIET(x) /* */
129 1.21.2.3 phil
130 1.21.2.3 phil /* counters */
131 1.21.2.3 phil typedef uint64_t counter_u64_t;
132 1.21.2.3 phil #define counter_u64_free(x) /* */
133 1.21.2.3 phil #define counter_u64_fetch(x) x
134 1.21.2.3 phil #define counter_u64_alloc(x) 0
135 1.21.2.3 phil
136 1.21.2.3 phil typedef enum {
137 1.21.2.3 phil IFCOUNTER_IPACKETS = 0,
138 1.21.2.3 phil IFCOUNTER_IERRORS,
139 1.21.2.3 phil IFCOUNTER_OPACKETS,
140 1.21.2.3 phil IFCOUNTER_OERRORS,
141 1.21.2.3 phil IFCOUNTER_COLLISIONS,
142 1.21.2.3 phil IFCOUNTER_IBYTES,
143 1.21.2.3 phil IFCOUNTER_OBYTES,
144 1.21.2.3 phil IFCOUNTER_IMCASTS,
145 1.21.2.3 phil IFCOUNTER_OMCASTS,
146 1.21.2.3 phil IFCOUNTER_IQDROPS,
147 1.21.2.3 phil IFCOUNTER_OQDROPS,
148 1.21.2.3 phil IFCOUNTER_NOPROTO,
149 1.21.2.3 phil IFCOUNTERS /* Array size. */
150 1.21.2.3 phil } ift_counter;
151 1.21.2.3 phil void if_inc_counter(struct ifnet *, ift_counter, int64_t);
152 1.21.2.3 phil
153 1.21.2.3 phil #define if_get_counter_default(ipf,cnt) \
154 1.21.2.3 phil (cnt == IFCOUNTER_OERRORS ? ipf->if_oerrors : \
155 1.21.2.3 phil (cnt == IFCOUNTER_IERRORS ? ipf->if_ierrors : 0 ))
156 1.21.2.3 phil
157 1.21.2.3 phil #define IF_LLADDR(ifp) IFADDR_FIRST(ifp)
158 1.21.2.3 phil
159 1.21.2.6 phil /* Scanners ... needed because no module support; */
160 1.21.2.6 phil extern const struct ieee80211_scanner sta_default;
161 1.21.2.6 phil extern const struct ieee80211_scanner ap_default;
162 1.21.2.6 phil extern const struct ieee80211_scanner adhoc_default;
163 1.21.2.6 phil extern const struct ieee80211_scanner mesh_default;
164 1.21.2.6 phil
165 1.21.2.3 phil /*
166 1.21.2.6 phil * Sysctl support??? NNN
167 1.21.2.3 phil */
168 1.21.2.3 phil
169 1.21.2.3 phil #define SYSCTL_INT(a1, a2, a3, a4, a5, a6, a7) /* notyet */
170 1.21.2.3 phil #define SYSCTL_PROC(a1, a2, a3, a4, a5, a6, a7, a8, a9) /* notyet */
171 1.21.2.3 phil #undef SYSCTL_NODE
172 1.21.2.3 phil #define SYSCTL_NODE(a1, a2, a3, a4, a5, a6) int a2 __unused
173 1.21.2.3 phil
174 1.21.2.3 phil /* another unknown macro ... at least notyet */
175 1.21.2.3 phil #define SYSINIT(a1, a2, a3, a4, a5) /* notyet */
176 1.21.2.3 phil #define TEXT_SET(set, sym) /* notyet ... linker magic, supported? */
177 1.21.2.3 phil
178 1.21.2.3 phil /*
179 1.21.2.3 phil * FreeBSD code uses KASSERT but different from NetBSD so ...
180 1.21.2.3 phil */
181 1.21.2.3 phil #define FBSDKASSERT(_cond, _complaint) \
182 1.21.2.3 phil do { \
183 1.21.2.3 phil if (!(_cond)) \
184 1.21.2.3 phil panic _complaint; \
185 1.21.2.3 phil } while (/*CONSTCOND*/0)
186 1.21.2.1 phil
187 1.21.2.1 phil /*
188 1.21.2.1 phil * Common state locking definitions.
189 1.21.2.1 phil */
190 1.21.2.1 phil typedef struct {
191 1.21.2.1 phil char name[16]; /* e.g. "ath0_com_lock" */
192 1.21.2.3 phil kmutex_t mtx;
193 1.21.2.1 phil } ieee80211_com_lock_t;
194 1.21.2.1 phil #define IEEE80211_LOCK_INIT(_ic, _name) do { \
195 1.21.2.1 phil ieee80211_com_lock_t *cl = &(_ic)->ic_comlock; \
196 1.21.2.1 phil snprintf(cl->name, sizeof(cl->name), "%s_com_lock", _name); \
197 1.21.2.6 phil mutex_init(&cl->mtx, MUTEX_DEFAULT, IPL_SOFTNET); \
198 1.21.2.1 phil } while (0)
199 1.21.2.1 phil #define IEEE80211_LOCK_OBJ(_ic) (&(_ic)->ic_comlock.mtx)
200 1.21.2.3 phil #define IEEE80211_LOCK_DESTROY(_ic) mutex_destroy(IEEE80211_LOCK_OBJ(_ic))
201 1.21.2.3 phil #define IEEE80211_LOCK(_ic) mutex_enter(IEEE80211_LOCK_OBJ(_ic))
202 1.21.2.3 phil #define IEEE80211_UNLOCK(_ic) mutex_exit(IEEE80211_LOCK_OBJ(_ic))
203 1.21.2.3 phil #define IEEE80211_LOCK_ASSERT(_ic) \
204 1.21.2.3 phil FBSDKASSERT(mutex_owned(IEEE80211_LOCK_OBJ(_ic)), ("Lock is not owned"))
205 1.21.2.3 phil #define IEEE80211_UNLOCK_ASSERT(_ic) \
206 1.21.2.3 phil FBSDKASSERT(!mutex_owned(IEEE80211_LOCK_OBJ(_ic)), ("Lock is owned"))
207 1.21.2.1 phil
208 1.21.2.1 phil /*
209 1.21.2.1 phil * Transmit lock.
210 1.21.2.1 phil *
211 1.21.2.1 phil * This is a (mostly) temporary lock designed to serialise all of the
212 1.21.2.1 phil * transmission operations throughout the stack.
213 1.21.2.1 phil */
214 1.21.2.1 phil typedef struct {
215 1.21.2.1 phil char name[16]; /* e.g. "ath0_tx_lock" */
216 1.21.2.3 phil kmutex_t mtx;
217 1.21.2.1 phil } ieee80211_tx_lock_t;
218 1.21.2.1 phil #define IEEE80211_TX_LOCK_INIT(_ic, _name) do { \
219 1.21.2.1 phil ieee80211_tx_lock_t *cl = &(_ic)->ic_txlock; \
220 1.21.2.1 phil snprintf(cl->name, sizeof(cl->name), "%s_tx_lock", _name); \
221 1.21.2.6 phil mutex_init(&cl->mtx, MUTEX_DEFAULT, IPL_SOFTNET); \
222 1.21.2.1 phil } while (0)
223 1.21.2.1 phil #define IEEE80211_TX_LOCK_OBJ(_ic) (&(_ic)->ic_txlock.mtx)
224 1.21.2.3 phil #define IEEE80211_TX_LOCK_DESTROY(_ic) mutex_destroy(IEEE80211_TX_LOCK_OBJ(_ic))
225 1.21.2.3 phil #define IEEE80211_TX_LOCK(_ic) mutex_enter(IEEE80211_TX_LOCK_OBJ(_ic))
226 1.21.2.3 phil #define IEEE80211_TX_UNLOCK(_ic) mutex_exit(IEEE80211_TX_LOCK_OBJ(_ic))
227 1.21.2.1 phil #define IEEE80211_TX_LOCK_ASSERT(_ic) \
228 1.21.2.3 phil FBSDKASSERT(mutex_owned(IEEE80211_TX_LOCK_OBJ(_ic)), ("lock not owned"))
229 1.21.2.1 phil #define IEEE80211_TX_UNLOCK_ASSERT(_ic) \
230 1.21.2.3 phil FBSDKASSERT(!mutex_owned(IEEE80211_TX_LOCK_OBJ(_ic)), ("lock is owned"))
231 1.21.2.1 phil
232 1.21.2.1 phil /*
233 1.21.2.1 phil * Stageq / ni_tx_superg lock
234 1.21.2.1 phil */
235 1.21.2.1 phil typedef struct {
236 1.21.2.1 phil char name[16]; /* e.g. "ath0_ff_lock" */
237 1.21.2.3 phil kmutex_t mtx;
238 1.21.2.1 phil } ieee80211_ff_lock_t;
239 1.21.2.1 phil #define IEEE80211_FF_LOCK_INIT(_ic, _name) do { \
240 1.21.2.1 phil ieee80211_ff_lock_t *fl = &(_ic)->ic_fflock; \
241 1.21.2.1 phil snprintf(fl->name, sizeof(fl->name), "%s_ff_lock", _name); \
242 1.21.2.6 phil mutex_init(&fl->mtx, MUTEX_DEFAULT, IPL_SOFTNET); \
243 1.21.2.1 phil } while (0)
244 1.21.2.1 phil #define IEEE80211_FF_LOCK_OBJ(_ic) (&(_ic)->ic_fflock.mtx)
245 1.21.2.3 phil #define IEEE80211_FF_LOCK_DESTROY(_ic) mutex_destroy(IEEE80211_FF_LOCK_OBJ(_ic))
246 1.21.2.3 phil #define IEEE80211_FF_LOCK(_ic) mutex_enter(IEEE80211_FF_LOCK_OBJ(_ic))
247 1.21.2.3 phil #define IEEE80211_FF_UNLOCK(_ic) mutex_exit(IEEE80211_FF_LOCK_OBJ(_ic))
248 1.21.2.1 phil #define IEEE80211_FF_LOCK_ASSERT(_ic) \
249 1.21.2.3 phil FBSDKASSERT(mutex_owned(IEEE80211_FF_LOCK_OBJ(_ic)), ("lock not owned"))
250 1.2 dyoung
251 1.2 dyoung /*
252 1.2 dyoung * Node locking definitions.
253 1.2 dyoung */
254 1.21.2.1 phil typedef struct {
255 1.21.2.1 phil char name[16]; /* e.g. "ath0_node_lock" */
256 1.21.2.3 phil kmutex_t mtx;
257 1.21.2.1 phil } ieee80211_node_lock_t;
258 1.21.2.1 phil #define IEEE80211_NODE_LOCK_INIT(_nt, _name) do { \
259 1.21.2.1 phil ieee80211_node_lock_t *nl = &(_nt)->nt_nodelock; \
260 1.21.2.1 phil snprintf(nl->name, sizeof(nl->name), "%s_node_lock", _name); \
261 1.21.2.6 phil mutex_init(&nl->mtx, MUTEX_DEFAULT, IPL_SOFTNET); \
262 1.2 dyoung } while (0)
263 1.21.2.1 phil #define IEEE80211_NODE_LOCK_OBJ(_nt) (&(_nt)->nt_nodelock.mtx)
264 1.21.2.1 phil #define IEEE80211_NODE_LOCK_DESTROY(_nt) \
265 1.21.2.3 phil mutex_destroy(IEEE80211_NODE_LOCK_OBJ(_nt))
266 1.21.2.1 phil #define IEEE80211_NODE_LOCK(_nt) \
267 1.21.2.3 phil mutex_enter(IEEE80211_NODE_LOCK_OBJ(_nt))
268 1.21.2.1 phil #define IEEE80211_NODE_IS_LOCKED(_nt) \
269 1.21.2.1 phil mtx_owned(IEEE80211_NODE_LOCK_OBJ(_nt))
270 1.21.2.1 phil #define IEEE80211_NODE_UNLOCK(_nt) \
271 1.21.2.3 phil mutex_exit(IEEE80211_NODE_LOCK_OBJ(_nt))
272 1.21.2.1 phil #define IEEE80211_NODE_LOCK_ASSERT(_nt) \
273 1.21.2.3 phil FBSDKASSERT(mutex_owned(IEEE80211_NODE_LOCK_OBJ(_nt)), ("lock not owned"))
274 1.21.2.1 phil
275 1.21.2.1 phil /*
276 1.21.2.1 phil * Power-save queue definitions.
277 1.21.2.1 phil */
278 1.21.2.3 phil typedef kmutex_t ieee80211_psq_lock_t;
279 1.21.2.1 phil #define IEEE80211_PSQ_INIT(_psq, _name) \
280 1.21.2.6 phil mutex_init(&(_psq)->psq_lock, MUTEX_DEFAULT, IPL_SOFTNET)
281 1.21.2.3 phil #define IEEE80211_PSQ_DESTROY(_psq) mutex_destroy(&(_psq)->psq_lock)
282 1.21.2.3 phil #define IEEE80211_PSQ_LOCK(_psq) mutex_enter(&(_psq)->psq_lock)
283 1.21.2.3 phil #define IEEE80211_PSQ_UNLOCK(_psq) mutex_exit(&(_psq)->psq_lock)
284 1.21.2.1 phil
285 1.21.2.1 phil #ifndef IF_PREPEND_LIST
286 1.21.2.1 phil #define _IF_PREPEND_LIST(ifq, mhead, mtail, mcount) do { \
287 1.21.2.1 phil (mtail)->m_nextpkt = (ifq)->ifq_head; \
288 1.21.2.1 phil if ((ifq)->ifq_tail == NULL) \
289 1.21.2.1 phil (ifq)->ifq_tail = (mtail); \
290 1.21.2.1 phil (ifq)->ifq_head = (mhead); \
291 1.21.2.1 phil (ifq)->ifq_len += (mcount); \
292 1.21.2.1 phil } while (0)
293 1.21.2.1 phil #define IF_PREPEND_LIST(ifq, mhead, mtail, mcount) do { \
294 1.21.2.1 phil IF_LOCK(ifq); \
295 1.21.2.1 phil _IF_PREPEND_LIST(ifq, mhead, mtail, mcount); \
296 1.21.2.1 phil IF_UNLOCK(ifq); \
297 1.21.2.1 phil } while (0)
298 1.21.2.1 phil #endif /* IF_PREPEND_LIST */
299 1.21.2.1 phil
300 1.21.2.1 phil /*
301 1.21.2.1 phil * Age queue definitions.
302 1.21.2.1 phil */
303 1.21.2.3 phil typedef kmutex_t ieee80211_ageq_lock_t;
304 1.21.2.1 phil #define IEEE80211_AGEQ_INIT(_aq, _name) \
305 1.21.2.6 phil mutex_init(&(_aq)->aq_lock, MUTEX_DEFAULT, IPL_SOFTNET)
306 1.21.2.3 phil #define IEEE80211_AGEQ_DESTROY(_aq) mutex_destroy(&(_aq)->aq_lock)
307 1.21.2.3 phil #define IEEE80211_AGEQ_LOCK(_aq) mutex_enter(&(_aq)->aq_lock)
308 1.21.2.3 phil #define IEEE80211_AGEQ_UNLOCK(_aq) mutex_exit(&(_aq)->aq_lock)
309 1.2 dyoung
310 1.2 dyoung /*
311 1.2 dyoung * 802.1x MAC ACL database locking definitions.
312 1.2 dyoung */
313 1.21.2.3 phil typedef kmutex_t acl_lock_t;
314 1.21.2.1 phil #define ACL_LOCK_INIT(_as, _name) \
315 1.21.2.6 phil mutex_init(&(_as)->as_lock, MUTEX_DEFAULT, IPL_SOFTNET)
316 1.21.2.3 phil #define ACL_LOCK_DESTROY(_as) mutex_destroy(&(_as)->as_lock)
317 1.21.2.3 phil #define ACL_LOCK(_as) mutex_enter(&(_as)->as_lock)
318 1.21.2.3 phil #define ACL_UNLOCK(_as) mutex_exit(&(_as)->as_lock)
319 1.21.2.1 phil #define ACL_LOCK_ASSERT(_as) \
320 1.21.2.3 phil FBSDKASSERT(mutex_owned((&(_as)->as_lock)), ("lock not owned"))
321 1.21.2.1 phil
322 1.21.2.1 phil /*
323 1.21.2.1 phil * Scan table definitions.
324 1.21.2.1 phil */
325 1.21.2.3 phil typedef kmutex_t ieee80211_scan_table_lock_t;
326 1.21.2.1 phil #define IEEE80211_SCAN_TABLE_LOCK_INIT(_st, _name) \
327 1.21.2.6 phil mutex_init(&(_st)->st_lock, MUTEX_DEFAULT, IPL_SOFTNET)
328 1.21.2.3 phil #define IEEE80211_SCAN_TABLE_LOCK_DESTROY(_st) mutex_destroy(&(_st)->st_lock)
329 1.21.2.3 phil #define IEEE80211_SCAN_TABLE_LOCK(_st) mutex_enter(&(_st)->st_lock)
330 1.21.2.3 phil #define IEEE80211_SCAN_TABLE_UNLOCK(_st) mutex_exit(&(_st)->st_lock)
331 1.21.2.1 phil
332 1.21.2.3 phil typedef kmutex_t ieee80211_scan_iter_lock_t;
333 1.21.2.1 phil #define IEEE80211_SCAN_ITER_LOCK_INIT(_st, _name) \
334 1.21.2.6 phil mutex_init(&(_st)->st_scanlock, MUTEX_DEFAULT, IPL_SOFTNET)
335 1.21.2.3 phil #define IEEE80211_SCAN_ITER_LOCK_DESTROY(_st) mutex_destroy(&(_st)->st_scanlock)
336 1.21.2.3 phil #define IEEE80211_SCAN_ITER_LOCK(_st) mutex_enter(&(_st)->st_scanlock)
337 1.21.2.3 phil #define IEEE80211_SCAN_ITER_UNLOCK(_st) mutex_exit(&(_st)->st_scanlock)
338 1.21.2.1 phil
339 1.21.2.1 phil /*
340 1.21.2.1 phil * Mesh node/routing definitions.
341 1.21.2.1 phil */
342 1.21.2.3 phil typedef kmutex_t ieee80211_rte_lock_t;
343 1.21.2.1 phil #define MESH_RT_ENTRY_LOCK_INIT(_rt, _name) \
344 1.21.2.6 phil mutex_init(&(rt)->rt_lock, MUTEX_DEFAULT, IPL_SOFTNET)
345 1.21.2.1 phil #define MESH_RT_ENTRY_LOCK_DESTROY(_rt) \
346 1.21.2.3 phil mutex_destroy(&(_rt)->rt_lock)
347 1.21.2.3 phil #define MESH_RT_ENTRY_LOCK(rt) mutex_enter(&(rt)->rt_lock)
348 1.21.2.3 phil #define MESH_RT_ENTRY_LOCK_ASSERT(rt) \
349 1.21.2.3 phil FBSDKASSERT(mutex_owned(&(rt)->rt_lock), ("mutex not owned"))
350 1.21.2.3 phil #define MESH_RT_ENTRY_UNLOCK(rt) mutex_exit(&(rt)->rt_lock)
351 1.21.2.3 phil
352 1.21.2.3 phil typedef kmutex_t ieee80211_rt_lock_t;
353 1.21.2.3 phil #define MESH_RT_LOCK(ms) mutex_enter(&(ms)->ms_rt_lock)
354 1.21.2.3 phil #define MESH_RT_LOCK_ASSERT(ms) \
355 1.21.2.3 phil FBSDKASSERT(mutex_owned(&(ms)->ms_rt_lock), ("lock not owned"))
356 1.21.2.3 phil #define MESH_RT_UNLOCK(ms) mutex_exit(&(ms)->ms_rt_lock)
357 1.21.2.1 phil #define MESH_RT_LOCK_INIT(ms, name) \
358 1.21.2.6 phil mutex_init(&(ms)->ms_rt_lock, MUTEX_DEFAULT, IPL_SOFTNET)
359 1.21.2.1 phil #define MESH_RT_LOCK_DESTROY(ms) \
360 1.21.2.3 phil mutex_destroy(&(ms)->ms_rt_lock)
361 1.21.2.1 phil
362 1.21.2.1 phil /*
363 1.21.2.1 phil * Node reference counting definitions.
364 1.21.2.1 phil *
365 1.21.2.1 phil * ieee80211_node_initref initialize the reference count to 1
366 1.21.2.1 phil * ieee80211_node_incref add a reference
367 1.21.2.1 phil * ieee80211_node_decref remove a reference
368 1.21.2.1 phil * ieee80211_node_dectestref remove a reference and return 1 if this
369 1.21.2.1 phil * is the last reference, otherwise 0
370 1.21.2.1 phil * ieee80211_node_refcnt reference count for printing (only)
371 1.21.2.1 phil */
372 1.21.2.1 phil
373 1.21.2.1 phil #define ieee80211_node_initref(_ni) \
374 1.21.2.1 phil do { ((_ni)->ni_refcnt = 1); } while (0)
375 1.21.2.1 phil #define ieee80211_node_incref(_ni) \
376 1.21.2.1 phil atomic_add_int(&(_ni)->ni_refcnt, 1)
377 1.21.2.1 phil #define ieee80211_node_decref(_ni) \
378 1.21.2.1 phil atomic_subtract_int(&(_ni)->ni_refcnt, 1)
379 1.21.2.1 phil struct ieee80211_node;
380 1.21.2.1 phil int ieee80211_node_dectestref(struct ieee80211_node *ni);
381 1.21.2.1 phil #define ieee80211_node_refcnt(_ni) (_ni)->ni_refcnt
382 1.2 dyoung
383 1.12 degroote struct ifqueue;
384 1.21.2.1 phil struct ieee80211vap;
385 1.12 degroote void ieee80211_drain_ifq(struct ifqueue *);
386 1.21.2.1 phil void ieee80211_flush_ifq(struct ifqueue *, struct ieee80211vap *);
387 1.21.2.1 phil
388 1.21.2.1 phil void ieee80211_vap_destroy(struct ieee80211vap *);
389 1.21.2.1 phil
390 1.21.2.1 phil #define IFNET_IS_UP_RUNNING(_ifp) \
391 1.21.2.1 phil (((_ifp)->if_flags & IFF_UP) && \
392 1.21.2.3 phil ((_ifp)->if_flags & IFF_RUNNING))
393 1.21.2.1 phil
394 1.21.2.1 phil /* XXX TODO: cap these at 1, as hz may not be 1000 */
395 1.21.2.1 phil #define msecs_to_ticks(ms) (((ms)*hz)/1000)
396 1.21.2.1 phil #define ticks_to_msecs(t) (1000*(t) / hz)
397 1.21.2.1 phil #define ticks_to_secs(t) ((t) / hz)
398 1.21.2.1 phil
399 1.21.2.1 phil #define ieee80211_time_after(a,b) ((long)(b) - (long)(a) < 0)
400 1.21.2.1 phil #define ieee80211_time_before(a,b) ieee80211_time_after(b,a)
401 1.21.2.1 phil #define ieee80211_time_after_eq(a,b) ((long)(a) - (long)(b) >= 0)
402 1.21.2.1 phil #define ieee80211_time_before_eq(a,b) ieee80211_time_after_eq(b,a)
403 1.21.2.1 phil
404 1.21.2.1 phil struct mbuf *ieee80211_getmgtframe(uint8_t **frm, int headroom, int pktlen);
405 1.21.2.1 phil
406 1.21.2.1 phil /* tx path usage */
407 1.21.2.3 phil #define M_ENCAP M_LINK0 /* 802.11 encap done */
408 1.21.2.3 phil #define M_EAPOL M_LINK3 /* PAE/EAPOL frame */
409 1.21.2.3 phil #define M_PWR_SAV M_LINK4 /* bypass PS handling */
410 1.21.2.3 phil #define M_MORE_DATA M_LINK5 /* more data frames to follow */
411 1.21.2.3 phil #define M_FF M_LINK6 /* fast frame / A-MSDU */
412 1.21.2.3 phil #define M_TXCB M_LINK7 /* do tx complete callback */
413 1.21.2.3 phil #define M_AMPDU_MPDU M_LINK8 /* ok for A-MPDU aggregation */
414 1.21.2.3 phil #define M_FRAG M_LINK9 /* frame fragmentation */
415 1.21.2.3 phil #define M_FIRSTFRAG M_LINK10 /* first frame fragment */
416 1.21.2.3 phil #define M_LASTFRAG M_LINK11 /* last frame fragment */
417 1.21.2.1 phil
418 1.21.2.1 phil #define M_80211_TX \
419 1.21.2.1 phil (M_ENCAP|M_EAPOL|M_PWR_SAV|M_MORE_DATA|M_FF|M_TXCB| \
420 1.21.2.1 phil M_AMPDU_MPDU|M_FRAG|M_FIRSTFRAG|M_LASTFRAG)
421 1.21.2.1 phil
422 1.21.2.1 phil /* rx path usage */
423 1.21.2.3 phil #define M_AMPDU M_LINK1 /* A-MPDU subframe */
424 1.21.2.3 phil #define M_WEP M_LINK2 /* WEP done by hardware */
425 1.21.2.1 phil #if 0
426 1.21.2.3 phil #define M_AMPDU_MPDU M_LINK8 /* A-MPDU re-order done */
427 1.21.2.1 phil #endif
428 1.21.2.1 phil #define M_80211_RX (M_AMPDU|M_WEP|M_AMPDU_MPDU)
429 1.12 degroote
430 1.21.2.1 phil #define IEEE80211_MBUF_TX_FLAG_BITS \
431 1.21.2.1 phil M_FLAG_BITS \
432 1.21.2.1 phil "\15M_ENCAP\17M_EAPOL\20M_PWR_SAV\21M_MORE_DATA\22M_FF\23M_TXCB" \
433 1.21.2.1 phil "\24M_AMPDU_MPDU\25M_FRAG\26M_FIRSTFRAG\27M_LASTFRAG"
434 1.21.2.1 phil
435 1.21.2.1 phil #define IEEE80211_MBUF_RX_FLAG_BITS \
436 1.21.2.1 phil M_FLAG_BITS \
437 1.21.2.1 phil "\15M_AMPDU\16M_WEP\24M_AMPDU_MPDU"
438 1.2 dyoung
439 1.21.2.1 phil /*
440 1.21.2.1 phil * Store WME access control bits in the vlan tag.
441 1.21.2.1 phil * This is safe since it's done after the packet is classified
442 1.21.2.1 phil * (where we use any previous tag) and because it's passed
443 1.21.2.1 phil * directly in to the driver and there's no chance someone
444 1.21.2.1 phil * else will clobber them on us.
445 1.21.2.1 phil */
446 1.2 dyoung #define M_WME_SETAC(m, ac) \
447 1.21.2.1 phil ((m)->m_pkthdr.ether_vtag = (ac))
448 1.21.2.1 phil #define M_WME_GETAC(m) ((m)->m_pkthdr.ether_vtag)
449 1.2 dyoung
450 1.2 dyoung /*
451 1.2 dyoung * Mbufs on the power save queue are tagged with an age and
452 1.2 dyoung * timed out. We reuse the hardware checksum field in the
453 1.2 dyoung * mbuf packet header to store this data.
454 1.2 dyoung */
455 1.2 dyoung #define M_AGE_SET(m,v) (m->m_pkthdr.csum_data = v)
456 1.2 dyoung #define M_AGE_GET(m) (m->m_pkthdr.csum_data)
457 1.2 dyoung #define M_AGE_SUB(m,adj) (m->m_pkthdr.csum_data -= adj)
458 1.2 dyoung
459 1.21.2.1 phil /*
460 1.21.2.3 phil * Store the sequence number. XXX? correct to use segsz?
461 1.21.2.1 phil */
462 1.21.2.1 phil #define M_SEQNO_SET(m, seqno) \
463 1.21.2.3 phil ((m)->m_pkthdr.segsz = (seqno))
464 1.21.2.3 phil #define M_SEQNO_GET(m) ((m)->m_pkthdr.segsz)
465 1.21.2.1 phil
466 1.21.2.1 phil #define MTAG_ABI_NET80211 1132948340 /* net80211 ABI */
467 1.21.2.1 phil
468 1.21.2.1 phil struct ieee80211_cb {
469 1.21.2.1 phil void (*func)(struct ieee80211_node *, void *, int status);
470 1.21.2.1 phil void *arg;
471 1.21.2.1 phil };
472 1.21.2.1 phil #define NET80211_TAG_CALLBACK 0 /* xmit complete callback */
473 1.21.2.1 phil int ieee80211_add_callback(struct mbuf *m,
474 1.21.2.1 phil void (*func)(struct ieee80211_node *, void *, int), void *arg);
475 1.21.2.1 phil void ieee80211_process_callback(struct ieee80211_node *, struct mbuf *, int);
476 1.21.2.1 phil
477 1.21.2.1 phil #define NET80211_TAG_XMIT_PARAMS 1
478 1.21.2.1 phil /* See below; this is after the bpf_params definition */
479 1.21.2.1 phil
480 1.21.2.1 phil #define NET80211_TAG_RECV_PARAMS 2
481 1.21.2.1 phil
482 1.21.2.1 phil #define NET80211_TAG_TOA_PARAMS 3
483 1.21.2.1 phil
484 1.2 dyoung struct ieee80211com;
485 1.21.2.1 phil int ieee80211_parent_xmitpkt(struct ieee80211com *, struct mbuf *);
486 1.21.2.1 phil int ieee80211_vap_xmitpkt(struct ieee80211vap *, struct mbuf *);
487 1.21.2.1 phil
488 1.21.2.1 phil void get_random_bytes(void *, size_t);
489 1.21.2.1 phil
490 1.21.2.1 phil void ieee80211_sysctl_attach(struct ieee80211com *);
491 1.21.2.1 phil void ieee80211_sysctl_detach(struct ieee80211com *);
492 1.21.2.1 phil void ieee80211_sysctl_vattach(struct ieee80211vap *);
493 1.21.2.1 phil void ieee80211_sysctl_vdetach(struct ieee80211vap *);
494 1.21.2.1 phil
495 1.21.2.3 phil #if notyet
496 1.21.2.1 phil SYSCTL_DECL(_net_wlan);
497 1.21.2.1 phil int ieee80211_sysctl_msecs_ticks(SYSCTL_HANDLER_ARGS);
498 1.21.2.3 phil #endif
499 1.21.2.1 phil
500 1.21.2.1 phil
501 1.21.2.3 phil #ifdef notyet
502 1.21.2.3 phil
503 1.21.2.1 phil /*
504 1.21.2.1 phil * A "policy module" is an adjunct module to net80211 that provides
505 1.21.2.1 phil * functionality that typically includes policy decisions. This
506 1.21.2.1 phil * modularity enables extensibility and vendor-supplied functionality.
507 1.21.2.1 phil */
508 1.21.2.1 phil #define _IEEE80211_POLICY_MODULE(policy, name, version) \
509 1.21.2.1 phil typedef void (*policy##_setup)(int); \
510 1.21.2.1 phil SET_DECLARE(policy##_set, policy##_setup); \
511 1.21.2.1 phil static int \
512 1.21.2.1 phil wlan_##name##_modevent(module_t mod, int type, void *unused) \
513 1.21.2.1 phil { \
514 1.21.2.1 phil policy##_setup * const *iter, f; \
515 1.21.2.1 phil switch (type) { \
516 1.21.2.1 phil case MOD_LOAD: \
517 1.21.2.1 phil SET_FOREACH(iter, policy##_set) { \
518 1.21.2.1 phil f = (void*) *iter; \
519 1.21.2.1 phil f(type); \
520 1.21.2.1 phil } \
521 1.21.2.1 phil return 0; \
522 1.21.2.1 phil case MOD_UNLOAD: \
523 1.21.2.1 phil case MOD_QUIESCE: \
524 1.21.2.1 phil if (nrefs) { \
525 1.21.2.1 phil printf("wlan_" #name ": still in use " \
526 1.21.2.1 phil "(%u dynamic refs)\n", nrefs); \
527 1.21.2.1 phil return EBUSY; \
528 1.21.2.1 phil } \
529 1.21.2.1 phil if (type == MOD_UNLOAD) { \
530 1.21.2.1 phil SET_FOREACH(iter, policy##_set) { \
531 1.21.2.1 phil f = (void*) *iter; \
532 1.21.2.1 phil f(type); \
533 1.21.2.1 phil } \
534 1.21.2.1 phil } \
535 1.21.2.1 phil return 0; \
536 1.21.2.1 phil } \
537 1.21.2.1 phil return EINVAL; \
538 1.21.2.1 phil } \
539 1.21.2.1 phil static moduledata_t name##_mod = { \
540 1.21.2.1 phil "wlan_" #name, \
541 1.21.2.1 phil wlan_##name##_modevent, \
542 1.21.2.1 phil 0 \
543 1.21.2.1 phil }; \
544 1.21.2.1 phil DECLARE_MODULE(wlan_##name, name##_mod, SI_SUB_DRIVERS, SI_ORDER_FIRST);\
545 1.21.2.1 phil MODULE_VERSION(wlan_##name, version); \
546 1.21.2.1 phil MODULE_DEPEND(wlan_##name, wlan, 1, 1, 1)
547 1.21.2.1 phil
548 1.21.2.1 phil /*
549 1.21.2.1 phil * Crypto modules implement cipher support.
550 1.21.2.1 phil */
551 1.21.2.1 phil #define IEEE80211_CRYPTO_MODULE(name, version) \
552 1.21.2.1 phil _IEEE80211_POLICY_MODULE(crypto, name, version); \
553 1.21.2.1 phil static void \
554 1.21.2.1 phil name##_modevent(int type) \
555 1.21.2.1 phil { \
556 1.21.2.1 phil if (type == MOD_LOAD) \
557 1.21.2.1 phil ieee80211_crypto_register(&name); \
558 1.21.2.1 phil else \
559 1.21.2.1 phil ieee80211_crypto_unregister(&name); \
560 1.21.2.1 phil } \
561 1.21.2.1 phil TEXT_SET(crypto##_set, name##_modevent)
562 1.21.2.1 phil
563 1.21.2.1 phil /*
564 1.21.2.1 phil * Scanner modules provide scanning policy.
565 1.21.2.1 phil */
566 1.21.2.1 phil #define IEEE80211_SCANNER_MODULE(name, version) \
567 1.21.2.1 phil _IEEE80211_POLICY_MODULE(scanner, name, version)
568 1.21.2.1 phil
569 1.21.2.1 phil #define IEEE80211_SCANNER_ALG(name, alg, v) \
570 1.21.2.1 phil static void \
571 1.21.2.1 phil name##_modevent(int type) \
572 1.21.2.1 phil { \
573 1.21.2.1 phil if (type == MOD_LOAD) \
574 1.21.2.1 phil ieee80211_scanner_register(alg, &v); \
575 1.21.2.1 phil else \
576 1.21.2.1 phil ieee80211_scanner_unregister(alg, &v); \
577 1.21.2.1 phil } \
578 1.21.2.1 phil TEXT_SET(scanner_set, name##_modevent); \
579 1.21.2.1 phil
580 1.21.2.1 phil /*
581 1.21.2.1 phil * ACL modules implement acl policy.
582 1.21.2.1 phil */
583 1.21.2.1 phil #define IEEE80211_ACL_MODULE(name, alg, version) \
584 1.21.2.1 phil _IEEE80211_POLICY_MODULE(acl, name, version); \
585 1.21.2.1 phil static void \
586 1.21.2.1 phil alg##_modevent(int type) \
587 1.21.2.1 phil { \
588 1.21.2.1 phil if (type == MOD_LOAD) \
589 1.21.2.1 phil ieee80211_aclator_register(&alg); \
590 1.21.2.1 phil else \
591 1.21.2.1 phil ieee80211_aclator_unregister(&alg); \
592 1.21.2.1 phil } \
593 1.21.2.1 phil TEXT_SET(acl_set, alg##_modevent); \
594 1.21.2.1 phil
595 1.21.2.1 phil /*
596 1.21.2.1 phil * Authenticator modules handle 802.1x/WPA authentication.
597 1.21.2.1 phil */
598 1.21.2.1 phil #define IEEE80211_AUTH_MODULE(name, version) \
599 1.21.2.1 phil _IEEE80211_POLICY_MODULE(auth, name, version)
600 1.21.2.1 phil
601 1.21.2.1 phil #define IEEE80211_AUTH_ALG(name, alg, v) \
602 1.21.2.1 phil static void \
603 1.21.2.1 phil name##_modevent(int type) \
604 1.21.2.1 phil { \
605 1.21.2.1 phil if (type == MOD_LOAD) \
606 1.21.2.1 phil ieee80211_authenticator_register(alg, &v); \
607 1.21.2.1 phil else \
608 1.21.2.1 phil ieee80211_authenticator_unregister(alg); \
609 1.21.2.1 phil } \
610 1.21.2.1 phil TEXT_SET(auth_set, name##_modevent)
611 1.21.2.1 phil
612 1.21.2.1 phil /*
613 1.21.2.1 phil * Rate control modules provide tx rate control support.
614 1.21.2.1 phil */
615 1.21.2.1 phil #define IEEE80211_RATECTL_MODULE(alg, version) \
616 1.21.2.1 phil _IEEE80211_POLICY_MODULE(ratectl, alg, version); \
617 1.21.2.1 phil
618 1.21.2.1 phil #define IEEE80211_RATECTL_ALG(name, alg, v) \
619 1.21.2.1 phil static void \
620 1.21.2.1 phil alg##_modevent(int type) \
621 1.21.2.1 phil { \
622 1.21.2.1 phil if (type == MOD_LOAD) \
623 1.21.2.1 phil ieee80211_ratectl_register(alg, &v); \
624 1.21.2.1 phil else \
625 1.21.2.1 phil ieee80211_ratectl_unregister(alg); \
626 1.21.2.1 phil } \
627 1.21.2.1 phil TEXT_SET(ratectl##_set, alg##_modevent)
628 1.21.2.1 phil
629 1.21.2.3 phil #else
630 1.21.2.3 phil /* NNN This looks like module load/unload support ... notyet supported */
631 1.21.2.3 phil #define _IEEE80211_POLICY_MODULE(policy, name, version) /* unsupported */
632 1.21.2.3 phil #define IEEE80211_CRYPTO_MODULE(name, version) /* unsupported */
633 1.21.2.3 phil #define IEEE80211_SCANNER_MODULE(name, version) /* unsupported */
634 1.21.2.3 phil #define IEEE80211_SCANNER_ALG(name, alg, v) /* unsupported */
635 1.21.2.3 phil #define IEEE80211_ACL_MODULE(name, alg, version) const void *const temp = &alg
636 1.21.2.3 phil #define IEEE80211_AUTH_MODULE(name, version) /* unsupported */
637 1.21.2.3 phil #define IEEE80211_AUTH_ALG(name, alg, v) /* unsupported */
638 1.21.2.3 phil #define IEEE80211_RATECTL_MODULE(alg, version) /* unsupported */
639 1.21.2.3 phil #define IEEE80211_RATECTL_ALG(name, alg, v) /* unsupported */
640 1.21.2.3 phil #endif
641 1.21.2.3 phil
642 1.21.2.3 phil /*
643 1.21.2.3 phil * IOCTL support
644 1.21.2.3 phil */
645 1.21.2.3 phil
646 1.21.2.1 phil struct ieee80211req;
647 1.21.2.3 phil
648 1.21.2.3 phil typedef int ieee80211_ioctl_getfunc(struct ieee80211vap *, struct ieee80211req *);
649 1.21.2.3 phil #if notyet
650 1.21.2.1 phil SET_DECLARE(ieee80211_ioctl_getset, ieee80211_ioctl_getfunc);
651 1.21.2.3 phil #endif
652 1.21.2.1 phil #define IEEE80211_IOCTL_GET(_name, _get) TEXT_SET(ieee80211_ioctl_getset, _get)
653 1.21.2.1 phil
654 1.21.2.3 phil typedef int ieee80211_ioctl_setfunc(struct ieee80211vap *, struct ieee80211req *);
655 1.21.2.3 phil #if notyet
656 1.21.2.1 phil SET_DECLARE(ieee80211_ioctl_setset, ieee80211_ioctl_setfunc);
657 1.21.2.3 phil #endif
658 1.21.2.1 phil #define IEEE80211_IOCTL_SET(_name, _set) TEXT_SET(ieee80211_ioctl_setset, _set)
659 1.21.2.3 phil
660 1.13 dyoung #endif /* _KERNEL */
661 1.2 dyoung
662 1.2 dyoung /* XXX this stuff belongs elsewhere */
663 1.2 dyoung /*
664 1.2 dyoung * Message formats for messages from the net80211 layer to user
665 1.2 dyoung * applications via the routing socket. These messages are appended
666 1.2 dyoung * to an if_announcemsghdr structure.
667 1.2 dyoung */
668 1.2 dyoung struct ieee80211_join_event {
669 1.2 dyoung uint8_t iev_addr[6];
670 1.2 dyoung };
671 1.2 dyoung
672 1.2 dyoung struct ieee80211_leave_event {
673 1.2 dyoung uint8_t iev_addr[6];
674 1.2 dyoung };
675 1.2 dyoung
676 1.2 dyoung struct ieee80211_replay_event {
677 1.2 dyoung uint8_t iev_src[6]; /* src MAC */
678 1.2 dyoung uint8_t iev_dst[6]; /* dst MAC */
679 1.2 dyoung uint8_t iev_cipher; /* cipher type */
680 1.2 dyoung uint8_t iev_keyix; /* key id/index */
681 1.2 dyoung uint64_t iev_keyrsc; /* RSC from key */
682 1.2 dyoung uint64_t iev_rsc; /* RSC from frame */
683 1.2 dyoung };
684 1.2 dyoung
685 1.2 dyoung struct ieee80211_michael_event {
686 1.2 dyoung uint8_t iev_src[6]; /* src MAC */
687 1.2 dyoung uint8_t iev_dst[6]; /* dst MAC */
688 1.2 dyoung uint8_t iev_cipher; /* cipher type */
689 1.2 dyoung uint8_t iev_keyix; /* key id/index */
690 1.2 dyoung };
691 1.2 dyoung
692 1.21.2.1 phil struct ieee80211_wds_event {
693 1.21.2.1 phil uint8_t iev_addr[6];
694 1.21.2.1 phil };
695 1.21.2.1 phil
696 1.21.2.1 phil struct ieee80211_csa_event {
697 1.21.2.1 phil uint32_t iev_flags; /* channel flags */
698 1.21.2.1 phil uint16_t iev_freq; /* setting in Mhz */
699 1.21.2.1 phil uint8_t iev_ieee; /* IEEE channel number */
700 1.21.2.1 phil uint8_t iev_mode; /* CSA mode */
701 1.21.2.1 phil uint8_t iev_count; /* CSA count */
702 1.21.2.1 phil };
703 1.21.2.1 phil
704 1.21.2.1 phil struct ieee80211_cac_event {
705 1.21.2.1 phil uint32_t iev_flags; /* channel flags */
706 1.21.2.1 phil uint16_t iev_freq; /* setting in Mhz */
707 1.21.2.1 phil uint8_t iev_ieee; /* IEEE channel number */
708 1.21.2.1 phil /* XXX timestamp? */
709 1.21.2.1 phil uint8_t iev_type; /* IEEE80211_NOTIFY_CAC_* */
710 1.21.2.1 phil };
711 1.21.2.1 phil
712 1.21.2.1 phil struct ieee80211_radar_event {
713 1.21.2.1 phil uint32_t iev_flags; /* channel flags */
714 1.21.2.1 phil uint16_t iev_freq; /* setting in Mhz */
715 1.21.2.1 phil uint8_t iev_ieee; /* IEEE channel number */
716 1.21.2.1 phil /* XXX timestamp? */
717 1.21.2.1 phil };
718 1.21.2.1 phil
719 1.21.2.1 phil struct ieee80211_auth_event {
720 1.21.2.1 phil uint8_t iev_addr[6];
721 1.21.2.1 phil };
722 1.21.2.1 phil
723 1.21.2.1 phil struct ieee80211_deauth_event {
724 1.21.2.1 phil uint8_t iev_addr[6];
725 1.21.2.1 phil };
726 1.21.2.1 phil
727 1.21.2.1 phil struct ieee80211_country_event {
728 1.21.2.1 phil uint8_t iev_addr[6];
729 1.21.2.1 phil uint8_t iev_cc[2]; /* ISO country code */
730 1.21.2.1 phil };
731 1.21.2.1 phil
732 1.21.2.1 phil struct ieee80211_radio_event {
733 1.21.2.1 phil uint8_t iev_state; /* 1 on, 0 off */
734 1.21.2.1 phil };
735 1.21.2.1 phil
736 1.2 dyoung #define RTM_IEEE80211_ASSOC 100 /* station associate (bss mode) */
737 1.2 dyoung #define RTM_IEEE80211_REASSOC 101 /* station re-associate (bss mode) */
738 1.2 dyoung #define RTM_IEEE80211_DISASSOC 102 /* station disassociate (bss mode) */
739 1.2 dyoung #define RTM_IEEE80211_JOIN 103 /* station join (ap mode) */
740 1.2 dyoung #define RTM_IEEE80211_LEAVE 104 /* station leave (ap mode) */
741 1.2 dyoung #define RTM_IEEE80211_SCAN 105 /* scan complete, results available */
742 1.2 dyoung #define RTM_IEEE80211_REPLAY 106 /* sequence counter replay detected */
743 1.2 dyoung #define RTM_IEEE80211_MICHAEL 107 /* Michael MIC failure detected */
744 1.2 dyoung #define RTM_IEEE80211_REJOIN 108 /* station re-associate (ap mode) */
745 1.21.2.1 phil #define RTM_IEEE80211_WDS 109 /* WDS discovery (ap mode) */
746 1.21.2.1 phil #define RTM_IEEE80211_CSA 110 /* Channel Switch Announcement event */
747 1.21.2.1 phil #define RTM_IEEE80211_RADAR 111 /* radar event */
748 1.21.2.1 phil #define RTM_IEEE80211_CAC 112 /* Channel Availability Check event */
749 1.21.2.1 phil #define RTM_IEEE80211_DEAUTH 113 /* station deauthenticate */
750 1.21.2.1 phil #define RTM_IEEE80211_AUTH 114 /* station authenticate (ap mode) */
751 1.21.2.1 phil #define RTM_IEEE80211_COUNTRY 115 /* discovered country code (sta mode) */
752 1.21.2.1 phil #define RTM_IEEE80211_RADIO 116 /* RF kill switch state change */
753 1.21.2.1 phil
754 1.21.2.1 phil /*
755 1.21.2.1 phil * Structure prepended to raw packets sent through the bpf
756 1.21.2.1 phil * interface when set to DLT_IEEE802_11_RADIO. This allows
757 1.21.2.1 phil * user applications to specify pretty much everything in
758 1.21.2.1 phil * an Atheros tx descriptor. XXX need to generalize.
759 1.21.2.1 phil *
760 1.21.2.1 phil * XXX cannot be more than 14 bytes as it is copied to a sockaddr's
761 1.21.2.1 phil * XXX sa_data area.
762 1.21.2.1 phil */
763 1.21.2.1 phil struct ieee80211_bpf_params {
764 1.21.2.1 phil uint8_t ibp_vers; /* version */
765 1.21.2.1 phil #define IEEE80211_BPF_VERSION 0
766 1.21.2.1 phil uint8_t ibp_len; /* header length in bytes */
767 1.21.2.1 phil uint8_t ibp_flags;
768 1.21.2.1 phil #define IEEE80211_BPF_SHORTPRE 0x01 /* tx with short preamble */
769 1.21.2.1 phil #define IEEE80211_BPF_NOACK 0x02 /* tx with no ack */
770 1.21.2.1 phil #define IEEE80211_BPF_CRYPTO 0x04 /* tx with h/w encryption */
771 1.21.2.1 phil #define IEEE80211_BPF_FCS 0x10 /* frame incldues FCS */
772 1.21.2.1 phil #define IEEE80211_BPF_DATAPAD 0x20 /* frame includes data padding */
773 1.21.2.1 phil #define IEEE80211_BPF_RTS 0x40 /* tx with RTS/CTS */
774 1.21.2.1 phil #define IEEE80211_BPF_CTS 0x80 /* tx with CTS only */
775 1.21.2.1 phil uint8_t ibp_pri; /* WME/WMM AC+tx antenna */
776 1.21.2.1 phil uint8_t ibp_try0; /* series 1 try count */
777 1.21.2.1 phil uint8_t ibp_rate0; /* series 1 IEEE tx rate */
778 1.21.2.1 phil uint8_t ibp_power; /* tx power (device units) */
779 1.21.2.1 phil uint8_t ibp_ctsrate; /* IEEE tx rate for CTS */
780 1.21.2.1 phil uint8_t ibp_try1; /* series 2 try count */
781 1.21.2.1 phil uint8_t ibp_rate1; /* series 2 IEEE tx rate */
782 1.21.2.1 phil uint8_t ibp_try2; /* series 3 try count */
783 1.21.2.1 phil uint8_t ibp_rate2; /* series 3 IEEE tx rate */
784 1.21.2.1 phil uint8_t ibp_try3; /* series 4 try count */
785 1.21.2.1 phil uint8_t ibp_rate3; /* series 4 IEEE tx rate */
786 1.21.2.1 phil };
787 1.2 dyoung
788 1.13 dyoung #ifdef _KERNEL
789 1.21.2.1 phil struct ieee80211_tx_params {
790 1.21.2.1 phil struct ieee80211_bpf_params params;
791 1.21.2.1 phil };
792 1.21.2.1 phil int ieee80211_add_xmit_params(struct mbuf *m,
793 1.21.2.1 phil const struct ieee80211_bpf_params *);
794 1.21.2.1 phil int ieee80211_get_xmit_params(struct mbuf *m,
795 1.21.2.1 phil struct ieee80211_bpf_params *);
796 1.21.2.1 phil
797 1.21.2.1 phil struct ieee80211_rx_params;
798 1.21.2.1 phil struct ieee80211_rx_stats;
799 1.21.2.1 phil
800 1.21.2.1 phil int ieee80211_add_rx_params(struct mbuf *m,
801 1.21.2.1 phil const struct ieee80211_rx_stats *rxs);
802 1.21.2.1 phil int ieee80211_get_rx_params(struct mbuf *m,
803 1.21.2.1 phil struct ieee80211_rx_stats *rxs);
804 1.21.2.1 phil const struct ieee80211_rx_stats * ieee80211_get_rx_params_ptr(struct mbuf *m);
805 1.2 dyoung
806 1.21.2.1 phil struct ieee80211_toa_params {
807 1.21.2.1 phil int request_id;
808 1.21.2.1 phil };
809 1.21.2.1 phil int ieee80211_add_toa_params(struct mbuf *m,
810 1.21.2.1 phil const struct ieee80211_toa_params *p);
811 1.21.2.1 phil int ieee80211_get_toa_params(struct mbuf *m,
812 1.21.2.1 phil struct ieee80211_toa_params *p);
813 1.21.2.1 phil
814 1.21.2.1 phil #define IEEE80211_F_SURVEY_TIME 0x00000001
815 1.21.2.1 phil #define IEEE80211_F_SURVEY_TIME_BUSY 0x00000002
816 1.21.2.1 phil #define IEEE80211_F_SURVEY_NOISE_DBM 0x00000004
817 1.21.2.1 phil #define IEEE80211_F_SURVEY_TSC 0x00000008
818 1.21.2.1 phil struct ieee80211_channel_survey {
819 1.21.2.1 phil uint32_t s_flags;
820 1.21.2.1 phil uint32_t s_time;
821 1.21.2.1 phil uint32_t s_time_busy;
822 1.21.2.1 phil int32_t s_noise;
823 1.21.2.1 phil uint64_t s_tsc;
824 1.21.2.1 phil };
825 1.6 skrll
826 1.21.2.1 phil #endif /* _KERNEL */
827 1.2 dyoung
828 1.21.2.1 phil /*
829 1.21.2.1 phil * Malloc API. Other BSD operating systems have slightly
830 1.21.2.1 phil * different malloc/free namings (eg DragonflyBSD.)
831 1.21.2.1 phil */
832 1.21.2.1 phil #define IEEE80211_MALLOC malloc
833 1.21.2.1 phil #define IEEE80211_FREE free
834 1.19 pooka
835 1.21.2.1 phil /* XXX TODO: get rid of WAITOK, fix all the users of it? */
836 1.21.2.1 phil #define IEEE80211_M_NOWAIT M_NOWAIT
837 1.21.2.1 phil #define IEEE80211_M_WAITOK M_WAITOK
838 1.21.2.1 phil #define IEEE80211_M_ZERO M_ZERO
839 1.7 skrll
840 1.21.2.1 phil /* XXX TODO: the type fields */
841 1.20 maxv
842 1.21.2.3 phil /*
843 1.21.2.5 phil * Startup function for NetBSD
844 1.21.2.5 phil */
845 1.21.2.5 phil
846 1.21.2.5 phil int ieee80211_init0(void);
847 1.21.2.5 phil
848 1.21.2.5 phil
849 1.21.2.5 phil /*
850 1.21.2.3 phil * Functions FreeBSD uses that NetBSD doesn't have ...
851 1.21.2.3 phil */
852 1.21.2.3 phil
853 1.21.2.3 phil int if_printf(struct ifnet *ifp, const char *fmt, ...) __printflike(2, 3);
854 1.21.2.3 phil void m_align(struct mbuf *m, int len);
855 1.21.2.3 phil int m_append(struct mbuf *m0, int len, const void *cpv);
856 1.21.2.3 phil struct mbuf * m_unshare(struct mbuf *m0, int how);
857 1.21.2.3 phil
858 1.21.2.3 phil static __inline void m_clrprotoflags(struct mbuf *m)
859 1.21.2.3 phil {
860 1.21.2.3 phil m->m_flags &= ~(M_LINK0|M_LINK1|M_LINK2|M_LINK3|M_LINK4|M_LINK5
861 1.21.2.3 phil |M_LINK6|M_LINK7|M_LINK8|M_LINK9|M_LINK10|M_LINK11);
862 1.21.2.3 phil }
863 1.21.2.3 phil
864 1.21.2.3 phil /*-
865 1.21.2.3 phil * Macro for type conversion: convert mbuf pointer to data pointer of correct
866 1.21.2.3 phil * type:
867 1.21.2.3 phil *
868 1.21.2.3 phil * mtod(m, t) -- Convert mbuf pointer to data pointer of correct type.
869 1.21.2.3 phil * mtodo(m, o) -- Same as above but with offset 'o' into data.
870 1.21.2.3 phil */
871 1.21.2.3 phil #define mtod(m, t) ((t)((m)->m_data))
872 1.21.2.3 phil #define mtodo(m, o) ((void *)(((m)->m_data) + (o)))
873 1.21.2.3 phil
874 1.21.2.3 phil /* Berkeley Packet Filter shim */
875 1.21.2.3 phil
876 1.21.2.3 phil #define BPF_MTAP(_ifp,_m) do { \
877 1.21.2.3 phil bpf_mtap((_ifp), (_m), BPF_D_INOUT); \
878 1.21.2.3 phil } while (0)
879 1.21.2.3 phil
880 1.21.2.3 phil /* Missing define in net/if_ether.h */
881 1.21.2.3 phil
882 1.21.2.3 phil #define ETHER_IS_BROADCAST(addr) \
883 1.21.2.3 phil (((addr)[0] & (addr)[1] & (addr)[2] & \
884 1.21.2.3 phil (addr)[3] & (addr)[4] & (addr)[5]) == 0xff)
885 1.21.2.3 phil
886 1.21.2.3 phil #endif /* _NET80211_IEEE80211_NETBSD_H_ */
887