xref: /netbsd-src/sys/net80211/ieee80211.c (revision 154bfe8e089c1a0a4e9ed8414f08d3da90949162)
1 /*	$NetBSD: ieee80211.c,v 1.59 2020/03/15 23:04:51 thorpej Exp $	*/
2 /*-
3  * Copyright (c) 2001 Atsushi Onoe
4  * Copyright (c) 2002-2005 Sam Leffler, Errno Consulting
5  * All rights reserved.
6  *
7  * Redistribution and use in source and binary forms, with or without
8  * modification, are permitted provided that the following conditions
9  * are met:
10  * 1. Redistributions of source code must retain the above copyright
11  *    notice, this list of conditions and the following disclaimer.
12  * 2. Redistributions in binary form must reproduce the above copyright
13  *    notice, this list of conditions and the following disclaimer in the
14  *    documentation and/or other materials provided with the distribution.
15  * 3. The name of the author may not be used to endorse or promote products
16  *    derived from this software without specific prior written permission.
17  *
18  * Alternatively, this software may be distributed under the terms of the
19  * GNU General Public License ("GPL") version 2 as published by the Free
20  * Software Foundation.
21  *
22  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
23  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
24  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
25  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
26  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
27  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
28  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
29  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
30  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
31  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
32  */
33 
34 #include <sys/cdefs.h>
35 #ifdef __FreeBSD__
36 __FBSDID("$FreeBSD: src/sys/net80211/ieee80211.c,v 1.22 2005/08/10 16:22:29 sam Exp $");
37 #endif
38 #ifdef __NetBSD__
39 __KERNEL_RCSID(0, "$NetBSD: ieee80211.c,v 1.59 2020/03/15 23:04:51 thorpej Exp $");
40 #endif
41 
42 /*
43  * IEEE 802.11 generic handler
44  */
45 
46 #ifdef _KERNEL_OPT
47 #include "opt_inet.h"
48 #endif
49 
50 #include <sys/param.h>
51 #include <sys/systm.h>
52 #include <sys/kernel.h>
53 
54 #include <sys/socket.h>
55 #include <sys/sockio.h>
56 #include <sys/endian.h>
57 #include <sys/errno.h>
58 #include <sys/proc.h>
59 #include <sys/sysctl.h>
60 
61 #include <net/if.h>
62 #include <net/if_media.h>
63 #include <net/if_arp.h>
64 #include <net/if_ether.h>
65 #include <net/if_llc.h>
66 
67 #include <net80211/ieee80211_netbsd.h>
68 #include <net80211/ieee80211_var.h>
69 #include <net80211/ieee80211_sysctl.h>
70 
71 #include <net/bpf.h>
72 
73 #ifdef INET
74 #include <netinet/in.h>
75 #include <net/if_ether.h>
76 #endif
77 
78 const struct ieee80211_channel ieee80211_channel_anyc = {
79 	0, 0
80 };
81 
82 struct ieee80211com_head ieee80211com_head =
83     LIST_HEAD_INITIALIZER(ieee80211com_head);
84 
85 const char *ieee80211_phymode_name[] = {
86 	"auto",		/* IEEE80211_MODE_AUTO */
87 	"11a",		/* IEEE80211_MODE_11A */
88 	"11b",		/* IEEE80211_MODE_11B */
89 	"11g",		/* IEEE80211_MODE_11G */
90 	"FH",		/* IEEE80211_MODE_FH */
91 	"turboA",	/* IEEE80211_MODE_TURBO_A */
92 	"turboG",	/* IEEE80211_MODE_TURBO_G */
93 };
94 
95 /* list of all instances */
96 SLIST_HEAD(ieee80211_list, ieee80211com);
97 static struct ieee80211_list ieee80211_list =
98 	SLIST_HEAD_INITIALIZER(ieee80211_list);
99 static u_int8_t ieee80211_vapmap[32];		/* enough for 256 */
100 
101 static void
102 ieee80211_add_vap(struct ieee80211com *ic)
103 {
104 #define	N(a)	(sizeof(a)/sizeof(a[0]))
105 	int i;
106 	int s;
107 	u_int8_t b;
108 
109 	s = splnet();
110 	ic->ic_vap = 0;
111 	for (i = 0; i < N(ieee80211_vapmap) && ieee80211_vapmap[i] == 0xff; i++)
112 		ic->ic_vap += NBBY;
113 	if (i == N(ieee80211_vapmap))
114 		panic("vap table full");
115 	for (b = ieee80211_vapmap[i]; b & 1; b >>= 1)
116 		ic->ic_vap++;
117 	setbit(ieee80211_vapmap, ic->ic_vap);
118 	SLIST_INSERT_HEAD(&ieee80211_list, ic, ic_next);
119 	splx(s);
120 #undef N
121 }
122 
123 static void
124 ieee80211_remove_vap(struct ieee80211com *ic)
125 {
126 	int s;
127 
128 	s = splnet();
129 	SLIST_REMOVE(&ieee80211_list, ic, ieee80211com, ic_next);
130 	IASSERT(ic->ic_vap < sizeof(ieee80211_vapmap)*NBBY,
131 		("invalid vap id %d", ic->ic_vap));
132 	IASSERT(isset(ieee80211_vapmap, ic->ic_vap),
133 		("vap id %d not allocated", ic->ic_vap));
134 	clrbit(ieee80211_vapmap, ic->ic_vap);
135 	splx(s);
136 }
137 
138 /*
139  * Default reset method for use with the ioctl support.  This
140  * method is invoked after any state change in the 802.11
141  * layer that should be propagated to the hardware but not
142  * require re-initialization of the 802.11 state machine (e.g
143  * rescanning for an ap).  We always return ENETRESET which
144  * should cause the driver to re-initialize the device. Drivers
145  * can override this method to implement more optimized support.
146  */
147 static int
148 ieee80211_default_reset(struct ifnet *ifp)
149 {
150 	return ENETRESET;
151 }
152 
153 void
154 ieee80211_ifattach(struct ieee80211com *ic)
155 {
156 	struct ifnet *ifp = ic->ic_ifp;
157 	struct ieee80211_channel *c;
158 	int i;
159 
160 #ifdef __NetBSD__
161 	ieee80211_init();
162 #endif /* __NetBSD__ */
163 
164 	ether_ifattach(ifp, ic->ic_myaddr);
165 	bpf_attach2(ifp, DLT_IEEE802_11,
166 	    sizeof(struct ieee80211_frame_addr4), &ic->ic_rawbpf);
167 
168 	ieee80211_crypto_attach(ic);
169 
170 	/*
171 	 * Fill in 802.11 available channel set, mark
172 	 * all available channels as active, and pick
173 	 * a default channel if not already specified.
174 	 */
175 	memset(ic->ic_chan_avail, 0, sizeof(ic->ic_chan_avail));
176 	ic->ic_modecaps |= 1<<IEEE80211_MODE_AUTO;
177 	for (i = 0; i <= IEEE80211_CHAN_MAX; i++) {
178 		c = &ic->ic_channels[i];
179 		if (c->ic_flags) {
180 			/*
181 			 * Verify driver passed us valid data.
182 			 */
183 			if (i != ieee80211_chan2ieee(ic, c)) {
184 				if_printf(ifp, "bad channel ignored; "
185 					"freq %u flags %x number %u\n",
186 					c->ic_freq, c->ic_flags, i);
187 				c->ic_flags = 0;	/* NB: remove */
188 				continue;
189 			}
190 			setbit(ic->ic_chan_avail, i);
191 			/*
192 			 * Identify mode capabilities.
193 			 */
194 			if (IEEE80211_IS_CHAN_A(c))
195 				ic->ic_modecaps |= 1<<IEEE80211_MODE_11A;
196 			if (IEEE80211_IS_CHAN_B(c))
197 				ic->ic_modecaps |= 1<<IEEE80211_MODE_11B;
198 			if (IEEE80211_IS_CHAN_PUREG(c))
199 				ic->ic_modecaps |= 1<<IEEE80211_MODE_11G;
200 			if (IEEE80211_IS_CHAN_FHSS(c))
201 				ic->ic_modecaps |= 1<<IEEE80211_MODE_FH;
202 			if (IEEE80211_IS_CHAN_T(c))
203 				ic->ic_modecaps |= 1<<IEEE80211_MODE_TURBO_A;
204 			if (IEEE80211_IS_CHAN_108G(c))
205 				ic->ic_modecaps |= 1<<IEEE80211_MODE_TURBO_G;
206 			if (ic->ic_curchan == NULL) {
207 				/* arbitrarily pick the first channel */
208 				ic->ic_curchan = &ic->ic_channels[i];
209 			}
210 		}
211 	}
212 	/* validate ic->ic_curmode */
213 	if ((ic->ic_modecaps & (1<<ic->ic_curmode)) == 0)
214 		ic->ic_curmode = IEEE80211_MODE_AUTO;
215 	ic->ic_des_chan = IEEE80211_CHAN_ANYC;	/* any channel is ok */
216 #if 0
217 	/*
218 	 * Enable WME by default if we're capable.
219 	 */
220 	if (ic->ic_caps & IEEE80211_C_WME)
221 		ic->ic_flags |= IEEE80211_F_WME;
222 #endif
223 	(void) ieee80211_setmode(ic, ic->ic_curmode);
224 
225 	if (ic->ic_bintval == 0)
226 		ic->ic_bintval = IEEE80211_BINTVAL_DEFAULT;
227 	ic->ic_bmisstimeout = 7*ic->ic_bintval;	/* default 7 beacons */
228 	ic->ic_dtim_period = IEEE80211_DTIM_DEFAULT;
229 	IEEE80211_BEACON_LOCK_INIT(ic, "beacon");
230 
231 	if (ic->ic_lintval == 0)
232 		ic->ic_lintval = ic->ic_bintval;
233 	ic->ic_txpowlimit = IEEE80211_TXPOWER_MAX;
234 
235 	LIST_INSERT_HEAD(&ieee80211com_head, ic, ic_list);
236 	ieee80211_node_attach(ic);
237 	ieee80211_proto_attach(ic);
238 
239 	ieee80211_add_vap(ic);
240 
241 	ieee80211_sysctl_attach(ic);		/* NB: requires ic_vap */
242 
243 	/*
244 	 * Install a default reset method for the ioctl support.
245 	 * The driver is expected to fill this in before calling us.
246 	 */
247 	if (ic->ic_reset == NULL)
248 		ic->ic_reset = ieee80211_default_reset;
249 }
250 
251 void
252 ieee80211_ifdetach(struct ieee80211com *ic)
253 {
254 	struct ifnet *ifp = ic->ic_ifp;
255 
256 	ieee80211_remove_vap(ic);
257 
258 	ieee80211_sysctl_detach(ic);
259 	ieee80211_proto_detach(ic);
260 	ieee80211_crypto_detach(ic);
261 	ieee80211_node_detach(ic);
262 	LIST_REMOVE(ic, ic_list);
263 	ifmedia_fini(&ic->ic_media);
264 
265 	IEEE80211_BEACON_LOCK_DESTROY(ic);
266 
267 	bpf_detach(ifp);
268 	ether_ifdetach(ifp);
269 }
270 
271 /*
272  * Convert MHz frequency to IEEE channel number.
273  */
274 u_int
275 ieee80211_mhz2ieee(u_int freq, u_int flags)
276 {
277 	if (flags & IEEE80211_CHAN_2GHZ) {	/* 2GHz band */
278 		if (freq == 2484)
279 			return 14;
280 		if (freq < 2484)
281 			return (freq - 2407) / 5;
282 		else
283 			return 15 + ((freq - 2512) / 20);
284 	} else if (flags & IEEE80211_CHAN_5GHZ) {	/* 5 GHz band */
285 		return (freq - 5000) / 5;
286 	} else {				/* either, guess */
287 		if (freq == 2484)
288 			return 14;
289 		if (freq < 2484)
290 			return (freq - 2407) / 5;
291 		if (freq < 5000)
292 			return 15 + ((freq - 2512) / 20);
293 		return (freq - 5000) / 5;
294 	}
295 }
296 
297 /*
298  * Convert channel to IEEE channel number.
299  */
300 u_int
301 ieee80211_chan2ieee(struct ieee80211com *ic, struct ieee80211_channel *c)
302 {
303 	if (ic->ic_channels <= c && c <= &ic->ic_channels[IEEE80211_CHAN_MAX])
304 		return c - ic->ic_channels;
305 	else if (c == IEEE80211_CHAN_ANYC)
306 		return IEEE80211_CHAN_ANY;
307 	else if (c != NULL) {
308 		if_printf(ic->ic_ifp, "invalid channel freq %u flags %x\n",
309 			c->ic_freq, c->ic_flags);
310 		return 0;		/* XXX */
311 	} else {
312 		if_printf(ic->ic_ifp, "invalid channel (NULL)\n");
313 		return 0;		/* XXX */
314 	}
315 }
316 
317 /*
318  * Convert IEEE channel number to MHz frequency.
319  */
320 u_int
321 ieee80211_ieee2mhz(u_int chan, u_int flags)
322 {
323 	if (flags & IEEE80211_CHAN_2GHZ) {	/* 2GHz band */
324 		if (chan == 14)
325 			return 2484;
326 		if (chan < 14)
327 			return 2407 + chan*5;
328 		else
329 			return 2512 + ((chan-15)*20);
330 	} else if (flags & IEEE80211_CHAN_5GHZ) {/* 5 GHz band */
331 		return 5000 + (chan*5);
332 	} else {				/* either, guess */
333 		if (chan == 14)
334 			return 2484;
335 		if (chan < 14)			/* 0-13 */
336 			return 2407 + chan*5;
337 		if (chan < 27)			/* 15-26 */
338 			return 2512 + ((chan-15)*20);
339 		return 5000 + (chan*5);
340 	}
341 }
342 
343 /*
344  * Setup the media data structures according to the channel and
345  * rate tables.  This must be called by the driver after
346  * ieee80211_attach and before most anything else.
347  */
348 void
349 ieee80211_media_init_with_lock(struct ieee80211com *ic,
350 	ifm_change_cb_t media_change, ifm_stat_cb_t media_stat,
351 	ieee80211_media_lock_t *lock)
352 {
353 #define	ADD(_ic, _s, _o) \
354 	ifmedia_add(&(_ic)->ic_media, \
355 		IFM_MAKEWORD(IFM_IEEE80211, (_s), (_o), 0), 0, NULL)
356 	struct ifnet *ifp = ic->ic_ifp;
357 	struct ifmediareq imr;
358 	int i, j, mode, rate, maxrate, mword, mopt, r;
359 	const struct ieee80211_rateset *rs;
360 	struct ieee80211_rateset allrates;
361 
362 	/*
363 	 * Do late attach work that must wait for any subclass
364 	 * (i.e. driver) work such as overriding methods.
365 	 */
366 	ieee80211_node_lateattach(ic);
367 
368 #ifdef IEEE80211_NO_HOSTAP
369 	ic->ic_caps &= ~IEEE80211_C_HOSTAP;
370 #endif /* IEEE80211_NO_HOSTAP */
371 
372 	/*
373 	 * Fill in media characteristics.
374 	 */
375 	ifmedia_init_with_lock(&ic->ic_media, 0,
376 	    media_change, media_stat, lock);
377 	maxrate = 0;
378 	memset(&allrates, 0, sizeof(allrates));
379 	for (mode = IEEE80211_MODE_AUTO; mode < IEEE80211_MODE_MAX; mode++) {
380 		static const u_int mopts[] = {
381 			IFM_AUTO,
382 			IFM_IEEE80211_11A,
383 			IFM_IEEE80211_11B,
384 			IFM_IEEE80211_11G,
385 			IFM_IEEE80211_FH,
386 			IFM_IEEE80211_11A | IFM_IEEE80211_TURBO,
387 			IFM_IEEE80211_11G | IFM_IEEE80211_TURBO,
388 		};
389 		if ((ic->ic_modecaps & (1<<mode)) == 0)
390 			continue;
391 		mopt = mopts[mode];
392 		ADD(ic, IFM_AUTO, mopt);	/* e.g. 11a auto */
393 		if (ic->ic_caps & IEEE80211_C_IBSS)
394 			ADD(ic, IFM_AUTO, mopt | IFM_IEEE80211_ADHOC);
395 		if (ic->ic_caps & IEEE80211_C_HOSTAP)
396 			ADD(ic, IFM_AUTO, mopt | IFM_IEEE80211_HOSTAP);
397 		if (ic->ic_caps & IEEE80211_C_AHDEMO)
398 			ADD(ic, IFM_AUTO, mopt | IFM_IEEE80211_ADHOC | IFM_FLAG0);
399 		if (ic->ic_caps & IEEE80211_C_MONITOR)
400 			ADD(ic, IFM_AUTO, mopt | IFM_IEEE80211_MONITOR);
401 		if (mode == IEEE80211_MODE_AUTO)
402 			continue;
403 		rs = &ic->ic_sup_rates[mode];
404 		for (i = 0; i < rs->rs_nrates; i++) {
405 			rate = rs->rs_rates[i];
406 			mword = ieee80211_rate2media(ic, rate, mode);
407 			if (mword == 0)
408 				continue;
409 			ADD(ic, mword, mopt);
410 			if (ic->ic_caps & IEEE80211_C_IBSS)
411 				ADD(ic, mword, mopt | IFM_IEEE80211_ADHOC);
412 			if (ic->ic_caps & IEEE80211_C_HOSTAP)
413 				ADD(ic, mword, mopt | IFM_IEEE80211_HOSTAP);
414 			if (ic->ic_caps & IEEE80211_C_AHDEMO)
415 				ADD(ic, mword, mopt | IFM_IEEE80211_ADHOC | IFM_FLAG0);
416 			if (ic->ic_caps & IEEE80211_C_MONITOR)
417 				ADD(ic, mword, mopt | IFM_IEEE80211_MONITOR);
418 			/*
419 			 * Add rate to the collection of all rates.
420 			 */
421 			r = rate & IEEE80211_RATE_VAL;
422 			for (j = 0; j < allrates.rs_nrates; j++)
423 				if (allrates.rs_rates[j] == r)
424 					break;
425 			if (j == allrates.rs_nrates) {
426 				/* unique, add to the set */
427 				allrates.rs_rates[j] = r;
428 				allrates.rs_nrates++;
429 			}
430 			rate = (rate & IEEE80211_RATE_VAL) / 2;
431 			if (rate > maxrate)
432 				maxrate = rate;
433 		}
434 	}
435 	for (i = 0; i < allrates.rs_nrates; i++) {
436 		mword = ieee80211_rate2media(ic, allrates.rs_rates[i],
437 				IEEE80211_MODE_AUTO);
438 		if (mword == 0)
439 			continue;
440 		mword = IFM_SUBTYPE(mword);	/* remove media options */
441 		ADD(ic, mword, 0);
442 		if (ic->ic_caps & IEEE80211_C_IBSS)
443 			ADD(ic, mword, IFM_IEEE80211_ADHOC);
444 		if (ic->ic_caps & IEEE80211_C_HOSTAP)
445 			ADD(ic, mword, IFM_IEEE80211_HOSTAP);
446 		if (ic->ic_caps & IEEE80211_C_AHDEMO)
447 			ADD(ic, mword, IFM_IEEE80211_ADHOC | IFM_FLAG0);
448 		if (ic->ic_caps & IEEE80211_C_MONITOR)
449 			ADD(ic, mword, IFM_IEEE80211_MONITOR);
450 	}
451 	ieee80211_media_status(ifp, &imr);
452 	ifmedia_set(&ic->ic_media, imr.ifm_active);
453 
454 	if (maxrate)
455 		ifp->if_baudrate = IF_Mbps(maxrate);
456 #undef ADD
457 }
458 
459 void
460 ieee80211_media_init(struct ieee80211com *ic,
461 	ifm_change_cb_t media_change, ifm_stat_cb_t media_stat)
462 {
463 
464 	ieee80211_media_init_with_lock(ic, media_change, media_stat, NULL);
465 }
466 
467 void
468 ieee80211_announce(struct ieee80211com *ic)
469 {
470 	struct ifnet *ifp = ic->ic_ifp;
471 	int i, mode, rate, mword;
472 	struct ieee80211_rateset *rs;
473 
474 	for (mode = IEEE80211_MODE_11A; mode < IEEE80211_MODE_MAX; mode++) {
475 		if ((ic->ic_modecaps & (1<<mode)) == 0)
476 			continue;
477 		aprint_debug("%s: %s rates: ", ifp->if_xname,
478 		    ieee80211_phymode_name[mode]);
479 		rs = &ic->ic_sup_rates[mode];
480 		for (i = 0; i < rs->rs_nrates; i++) {
481 			rate = rs->rs_rates[i];
482 			mword = ieee80211_rate2media(ic, rate, mode);
483 			if (mword == 0)
484 				continue;
485 			aprint_debug("%s%d%sMbps", (i != 0 ? " " : ""),
486 			    (rate & IEEE80211_RATE_VAL) / 2,
487 			    ((rate & 0x1) != 0 ? ".5" : ""));
488 		}
489 		aprint_debug("\n");
490 	}
491 }
492 
493 static int
494 findrate(struct ieee80211com *ic, enum ieee80211_phymode mode, int rate)
495 {
496 #define	IEEERATE(_ic,_m,_i) \
497 	((_ic)->ic_sup_rates[_m].rs_rates[_i] & IEEE80211_RATE_VAL)
498 	int i, nrates = ic->ic_sup_rates[mode].rs_nrates;
499 	for (i = 0; i < nrates; i++)
500 		if (IEEERATE(ic, mode, i) == rate)
501 			return i;
502 	return -1;
503 #undef IEEERATE
504 }
505 
506 /*
507  * Find an instance by its mac address.
508  */
509 struct ieee80211com *
510 ieee80211_find_vap(const u_int8_t mac[IEEE80211_ADDR_LEN])
511 {
512 	int s;
513 	struct ieee80211com *ic;
514 
515 	s = splnet();
516 	SLIST_FOREACH(ic, &ieee80211_list, ic_next)
517 		if (IEEE80211_ADDR_EQ(mac, ic->ic_myaddr))
518 			break;
519 	splx(s);
520 	return ic;
521 }
522 
523 static struct ieee80211com *
524 ieee80211_find_instance(struct ifnet *ifp)
525 {
526 	int s;
527 	struct ieee80211com *ic;
528 
529 	s = splnet();
530 	/* XXX not right for multiple instances but works for now */
531 	SLIST_FOREACH(ic, &ieee80211_list, ic_next)
532 		if (ic->ic_ifp == ifp)
533 			break;
534 	splx(s);
535 	return ic;
536 }
537 
538 /*
539  * Handle a media change request.
540  */
541 int
542 ieee80211_media_change(struct ifnet *ifp)
543 {
544 	struct ieee80211com *ic;
545 	struct ifmedia_entry *ime;
546 	enum ieee80211_opmode newopmode;
547 	enum ieee80211_phymode newphymode;
548 	int i, j, newrate, error = 0;
549 
550 	ic = ieee80211_find_instance(ifp);
551 	if (!ic) {
552 		if_printf(ifp, "%s: no 802.11 instance!\n", __func__);
553 		return EINVAL;
554 	}
555 	ime = ic->ic_media.ifm_cur;
556 	/*
557 	 * First, identify the phy mode.
558 	 */
559 	switch (IFM_MODE(ime->ifm_media)) {
560 	case IFM_IEEE80211_11A:
561 		newphymode = IEEE80211_MODE_11A;
562 		break;
563 	case IFM_IEEE80211_11B:
564 		newphymode = IEEE80211_MODE_11B;
565 		break;
566 	case IFM_IEEE80211_11G:
567 		newphymode = IEEE80211_MODE_11G;
568 		break;
569 	case IFM_IEEE80211_FH:
570 		newphymode = IEEE80211_MODE_FH;
571 		break;
572 	case IFM_AUTO:
573 		newphymode = IEEE80211_MODE_AUTO;
574 		break;
575 	default:
576 		return EINVAL;
577 	}
578 	/*
579 	 * Turbo mode is an ``option''.
580 	 * XXX does not apply to AUTO
581 	 */
582 	if (ime->ifm_media & IFM_IEEE80211_TURBO) {
583 		if (newphymode == IEEE80211_MODE_11A)
584 			newphymode = IEEE80211_MODE_TURBO_A;
585 		else if (newphymode == IEEE80211_MODE_11G)
586 			newphymode = IEEE80211_MODE_TURBO_G;
587 		else
588 			return EINVAL;
589 	}
590 	/*
591 	 * Validate requested mode is available.
592 	 */
593 	if ((ic->ic_modecaps & (1<<newphymode)) == 0)
594 		return EINVAL;
595 
596 	/*
597 	 * Next, the fixed/variable rate.
598 	 */
599 	i = -1;
600 	if (IFM_SUBTYPE(ime->ifm_media) != IFM_AUTO) {
601 		/*
602 		 * Convert media subtype to rate.
603 		 */
604 		newrate = ieee80211_media2rate(ime->ifm_media);
605 		if (newrate == 0)
606 			return EINVAL;
607 		/*
608 		 * Check the rate table for the specified/current phy.
609 		 */
610 		if (newphymode == IEEE80211_MODE_AUTO) {
611 			/*
612 			 * In autoselect mode search for the rate.
613 			 */
614 			for (j = IEEE80211_MODE_11A;
615 			     j < IEEE80211_MODE_MAX; j++) {
616 				if ((ic->ic_modecaps & (1<<j)) == 0)
617 					continue;
618 				i = findrate(ic, j, newrate);
619 				if (i != -1) {
620 					/* lock mode too */
621 					newphymode = j;
622 					break;
623 				}
624 			}
625 		} else {
626 			i = findrate(ic, newphymode, newrate);
627 		}
628 		if (i == -1)			/* mode/rate mismatch */
629 			return EINVAL;
630 	}
631 	/* NB: defer rate setting to later */
632 
633 	/*
634 	 * Deduce new operating mode but don't install it just yet.
635 	 */
636 	if ((ime->ifm_media & (IFM_IEEE80211_ADHOC|IFM_FLAG0)) ==
637 	    (IFM_IEEE80211_ADHOC|IFM_FLAG0))
638 		newopmode = IEEE80211_M_AHDEMO;
639 	else if (ime->ifm_media & IFM_IEEE80211_HOSTAP)
640 		newopmode = IEEE80211_M_HOSTAP;
641 	else if (ime->ifm_media & IFM_IEEE80211_ADHOC)
642 		newopmode = IEEE80211_M_IBSS;
643 	else if (ime->ifm_media & IFM_IEEE80211_MONITOR)
644 		newopmode = IEEE80211_M_MONITOR;
645 	else
646 		newopmode = IEEE80211_M_STA;
647 
648 #ifndef IEEE80211_NO_HOSTAP
649 	/*
650 	 * Autoselect doesn't make sense when operating as an AP.
651 	 * If no phy mode has been selected, pick one and lock it
652 	 * down so rate tables can be used in forming beacon frames
653 	 * and the like.
654 	 */
655 	if (newopmode == IEEE80211_M_HOSTAP &&
656 	    newphymode == IEEE80211_MODE_AUTO) {
657 		for (j = IEEE80211_MODE_11A; j < IEEE80211_MODE_MAX; j++)
658 			if (ic->ic_modecaps & (1<<j)) {
659 				newphymode = j;
660 				break;
661 			}
662 	}
663 #endif /* !IEEE80211_NO_HOSTAP */
664 
665 	/*
666 	 * Handle phy mode change.
667 	 */
668 	if (ic->ic_curmode != newphymode) {		/* change phy mode */
669 		error = ieee80211_setmode(ic, newphymode);
670 		if (error != 0)
671 			return error;
672 		error = ENETRESET;
673 	}
674 
675 	/*
676 	 * Committed to changes, install the rate setting.
677 	 */
678 	if (ic->ic_fixed_rate != i) {
679 		ic->ic_fixed_rate = i;			/* set fixed tx rate */
680 		error = ENETRESET;
681 	}
682 
683 	/*
684 	 * Handle operating mode change.
685 	 */
686 	if (ic->ic_opmode != newopmode) {
687 		ic->ic_opmode = newopmode;
688 		switch (newopmode) {
689 		case IEEE80211_M_AHDEMO:
690 		case IEEE80211_M_HOSTAP:
691 		case IEEE80211_M_STA:
692 		case IEEE80211_M_MONITOR:
693 			ic->ic_flags &= ~IEEE80211_F_IBSSON;
694 			break;
695 		case IEEE80211_M_IBSS:
696 			ic->ic_flags |= IEEE80211_F_IBSSON;
697 			break;
698 		}
699 		/*
700 		 * Yech, slot time may change depending on the
701 		 * operating mode so reset it to be sure everything
702 		 * is setup appropriately.
703 		 */
704 		ieee80211_reset_erp(ic);
705 		ieee80211_wme_initparams(ic);	/* after opmode change */
706 		error = ENETRESET;
707 	}
708 #ifdef notdef
709 	if (error == 0)
710 		ifp->if_baudrate = ifmedia_baudrate(ime->ifm_media);
711 #endif
712 	return error;
713 }
714 
715 void
716 ieee80211_media_status(struct ifnet *ifp, struct ifmediareq *imr)
717 {
718 	struct ieee80211com *ic;
719 	struct ieee80211_rateset *rs;
720 
721 	ic = ieee80211_find_instance(ifp);
722 	if (!ic) {
723 		if_printf(ifp, "%s: no 802.11 instance!\n", __func__);
724 		return;
725 	}
726 	imr->ifm_status = IFM_AVALID;
727 	imr->ifm_active = IFM_IEEE80211;
728 	if (ic->ic_state == IEEE80211_S_RUN)
729 		imr->ifm_status |= IFM_ACTIVE;
730 	/*
731 	 * Calculate a current rate if possible.
732 	 */
733 	if (ic->ic_fixed_rate != IEEE80211_FIXED_RATE_NONE) {
734 		/*
735 		 * A fixed rate is set, report that.
736 		 */
737 		rs = &ic->ic_sup_rates[ic->ic_curmode];
738 		imr->ifm_active |= ieee80211_rate2media(ic,
739 			rs->rs_rates[ic->ic_fixed_rate], ic->ic_curmode);
740 	} else if (ic->ic_opmode == IEEE80211_M_STA) {
741 		/*
742 		 * In station mode report the current transmit rate.
743 		 */
744 		rs = &ic->ic_bss->ni_rates;
745 		imr->ifm_active |= ieee80211_rate2media(ic,
746 			rs->rs_rates[ic->ic_bss->ni_txrate], ic->ic_curmode);
747 	} else
748 		imr->ifm_active |= IFM_AUTO;
749 	switch (ic->ic_opmode) {
750 	case IEEE80211_M_STA:
751 		break;
752 	case IEEE80211_M_IBSS:
753 		imr->ifm_active |= IFM_IEEE80211_ADHOC;
754 		break;
755 	case IEEE80211_M_AHDEMO:
756 		/* should not come here */
757 		break;
758 	case IEEE80211_M_HOSTAP:
759 		imr->ifm_active |= IFM_IEEE80211_HOSTAP;
760 		break;
761 	case IEEE80211_M_MONITOR:
762 		imr->ifm_active |= IFM_IEEE80211_MONITOR;
763 		break;
764 	}
765 	switch (ic->ic_curmode) {
766 	case IEEE80211_MODE_11A:
767 		imr->ifm_active |= IFM_IEEE80211_11A;
768 		break;
769 	case IEEE80211_MODE_11B:
770 		imr->ifm_active |= IFM_IEEE80211_11B;
771 		break;
772 	case IEEE80211_MODE_11G:
773 		imr->ifm_active |= IFM_IEEE80211_11G;
774 		break;
775 	case IEEE80211_MODE_FH:
776 		imr->ifm_active |= IFM_IEEE80211_FH;
777 		break;
778 	case IEEE80211_MODE_TURBO_A:
779 		imr->ifm_active |= IFM_IEEE80211_11A
780 				|  IFM_IEEE80211_TURBO;
781 		break;
782 	case IEEE80211_MODE_TURBO_G:
783 		imr->ifm_active |= IFM_IEEE80211_11G
784 				|  IFM_IEEE80211_TURBO;
785 		break;
786 	}
787 }
788 
789 void
790 ieee80211_watchdog(struct ieee80211com *ic)
791 {
792 	struct ieee80211_node_table *nt;
793 	int need_inact_timer = 0;
794 
795 	if (ic->ic_state != IEEE80211_S_INIT) {
796 		if (ic->ic_mgt_timer && --ic->ic_mgt_timer == 0)
797 			ieee80211_new_state(ic, IEEE80211_S_SCAN, 0);
798 		nt = &ic->ic_scan;
799 		if (nt->nt_inact_timer) {
800 			if (--nt->nt_inact_timer == 0)
801 				nt->nt_timeout(nt);
802 			need_inact_timer += nt->nt_inact_timer;
803 		}
804 		nt = &ic->ic_sta;
805 		if (nt->nt_inact_timer) {
806 			if (--nt->nt_inact_timer == 0)
807 				nt->nt_timeout(nt);
808 			need_inact_timer += nt->nt_inact_timer;
809 		}
810 	}
811 	if (ic->ic_mgt_timer != 0 || need_inact_timer)
812 		ic->ic_ifp->if_timer = 1;
813 }
814 
815 const struct ieee80211_rateset ieee80211_std_rateset_11a =
816 	{ 8, { 12, 18, 24, 36, 48, 72, 96, 108 } };
817 
818 const struct ieee80211_rateset ieee80211_std_rateset_11b =
819 	{ 4, { 2, 4, 11, 22 } };
820 
821 const struct ieee80211_rateset ieee80211_std_rateset_11g =
822 	{ 12, { 2, 4, 11, 22, 12, 18, 24, 36, 48, 72, 96, 108 } };
823 
824 /*
825  * Set the current phy mode and recalculate the active channel
826  * set based on the available channels for this mode.  Also
827  * select a new default/current channel if the current one is
828  * inappropriate for this mode.
829  */
830 int
831 ieee80211_setmode(struct ieee80211com *ic, enum ieee80211_phymode mode)
832 {
833 #define	N(a)	(sizeof(a) / sizeof(a[0]))
834 	static const u_int chanflags[] = {
835 		0,			/* IEEE80211_MODE_AUTO */
836 		IEEE80211_CHAN_A,	/* IEEE80211_MODE_11A */
837 		IEEE80211_CHAN_B,	/* IEEE80211_MODE_11B */
838 		IEEE80211_CHAN_PUREG,	/* IEEE80211_MODE_11G */
839 		IEEE80211_CHAN_FHSS,	/* IEEE80211_MODE_FH */
840 		IEEE80211_CHAN_T,	/* IEEE80211_MODE_TURBO_A */
841 		IEEE80211_CHAN_108G,	/* IEEE80211_MODE_TURBO_G */
842 	};
843 	struct ieee80211_channel *c;
844 	u_int modeflags;
845 	int i;
846 
847 	/* validate new mode */
848 	if ((ic->ic_modecaps & (1<<mode)) == 0) {
849 		IEEE80211_DPRINTF(ic, IEEE80211_MSG_ANY,
850 			"%s: mode %u not supported (caps 0x%x)\n",
851 			__func__, mode, ic->ic_modecaps);
852 		return EINVAL;
853 	}
854 
855 	/*
856 	 * Verify at least one channel is present in the available
857 	 * channel list before committing to the new mode.
858 	 */
859 	IASSERT(mode < N(chanflags), ("Unexpected mode %u", mode));
860 	modeflags = chanflags[mode];
861 	for (i = 0; i <= IEEE80211_CHAN_MAX; i++) {
862 		c = &ic->ic_channels[i];
863 		if (c->ic_flags == 0)
864 			continue;
865 		if (mode == IEEE80211_MODE_AUTO) {
866 			/* ignore turbo channels for autoselect */
867 			if ((c->ic_flags & IEEE80211_CHAN_TURBO) == 0)
868 				break;
869 		} else {
870 			if ((c->ic_flags & modeflags) == modeflags)
871 				break;
872 		}
873 	}
874 	if (i > IEEE80211_CHAN_MAX) {
875 		IEEE80211_DPRINTF(ic, IEEE80211_MSG_ANY,
876 			"%s: no channels found for mode %u\n", __func__, mode);
877 		return EINVAL;
878 	}
879 
880 	/*
881 	 * Calculate the active channel set.
882 	 */
883 	memset(ic->ic_chan_active, 0, sizeof(ic->ic_chan_active));
884 	for (i = 0; i <= IEEE80211_CHAN_MAX; i++) {
885 		c = &ic->ic_channels[i];
886 		if (c->ic_flags == 0)
887 			continue;
888 		if (mode == IEEE80211_MODE_AUTO) {
889 			/* take anything but pure turbo channels */
890 			if ((c->ic_flags & IEEE80211_CHAN_TURBO) == 0)
891 				setbit(ic->ic_chan_active, i);
892 		} else {
893 			if ((c->ic_flags & modeflags) == modeflags)
894 				setbit(ic->ic_chan_active, i);
895 		}
896 	}
897 	/*
898 	 * If no current/default channel is setup or the current
899 	 * channel is wrong for the mode then pick the first
900 	 * available channel from the active list.  This is likely
901 	 * not the right one.
902 	 */
903 	if (ic->ic_ibss_chan == NULL ||
904 	    isclr(ic->ic_chan_active, ieee80211_chan2ieee(ic, ic->ic_ibss_chan))) {
905 		for (i = 0; i <= IEEE80211_CHAN_MAX; i++)
906 			if (isset(ic->ic_chan_active, i)) {
907 				ic->ic_ibss_chan = &ic->ic_channels[i];
908 				break;
909 			}
910 		IASSERT(ic->ic_ibss_chan != NULL &&
911 		    isset(ic->ic_chan_active,
912 			ieee80211_chan2ieee(ic, ic->ic_ibss_chan)),
913 		    ("Bad IBSS channel %u",
914 		     ieee80211_chan2ieee(ic, ic->ic_ibss_chan)));
915 	}
916 	/*
917 	 * If the desired channel is set but no longer valid then reset it.
918 	 */
919 	if (ic->ic_des_chan != IEEE80211_CHAN_ANYC &&
920 	    isclr(ic->ic_chan_active, ieee80211_chan2ieee(ic, ic->ic_des_chan)))
921 		ic->ic_des_chan = IEEE80211_CHAN_ANYC;
922 
923 	/*
924 	 * Do mode-specific rate setup.
925 	 */
926 	if (mode == IEEE80211_MODE_11G) {
927 		/*
928 		 * Use a mixed 11b/11g rate set.
929 		 */
930 		ieee80211_set11gbasicrates(&ic->ic_sup_rates[mode],
931 			IEEE80211_MODE_11G);
932 	} else if (mode == IEEE80211_MODE_11B) {
933 		/*
934 		 * Force pure 11b rate set.
935 		 */
936 		ieee80211_set11gbasicrates(&ic->ic_sup_rates[mode],
937 			IEEE80211_MODE_11B);
938 	}
939 	/*
940 	 * Setup an initial rate set according to the
941 	 * current/default channel selected above.  This
942 	 * will be changed when scanning but must exist
943 	 * now so driver have a consistent state of ic_ibss_chan.
944 	 */
945 	if (ic->ic_bss)		/* NB: can be called before lateattach */
946 		ic->ic_bss->ni_rates = ic->ic_sup_rates[mode];
947 
948 	ic->ic_curmode = mode;
949 	ieee80211_reset_erp(ic);	/* reset ERP state */
950 	ieee80211_wme_initparams(ic);	/* reset WME stat */
951 
952 	return 0;
953 #undef N
954 }
955 
956 /*
957  * Return the phy mode for with the specified channel so the
958  * caller can select a rate set.  This is problematic for channels
959  * where multiple operating modes are possible (e.g. 11g+11b).
960  * In those cases we defer to the current operating mode when set.
961  */
962 enum ieee80211_phymode
963 ieee80211_chan2mode(struct ieee80211com *ic, struct ieee80211_channel *chan)
964 {
965 	if (IEEE80211_IS_CHAN_T(chan)) {
966 		return IEEE80211_MODE_TURBO_A;
967 	} else if (IEEE80211_IS_CHAN_5GHZ(chan)) {
968 		return IEEE80211_MODE_11A;
969 	} else if (IEEE80211_IS_CHAN_FHSS(chan))
970 		return IEEE80211_MODE_FH;
971 	else if (chan->ic_flags & (IEEE80211_CHAN_OFDM|IEEE80211_CHAN_DYN)) {
972 		/*
973 		 * This assumes all 11g channels are also usable
974 		 * for 11b, which is currently true.
975 		 */
976 		if (ic->ic_curmode == IEEE80211_MODE_TURBO_G)
977 			return IEEE80211_MODE_TURBO_G;
978 		if (ic->ic_curmode == IEEE80211_MODE_11B)
979 			return IEEE80211_MODE_11B;
980 		return IEEE80211_MODE_11G;
981 	} else
982 		return IEEE80211_MODE_11B;
983 }
984 
985 /*
986  * convert IEEE80211 rate value to ifmedia subtype.
987  * ieee80211 rate is in unit of 0.5Mbps.
988  */
989 int
990 ieee80211_rate2media(struct ieee80211com *ic, int rate, enum ieee80211_phymode mode)
991 {
992 #define	N(a)	(sizeof(a) / sizeof(a[0]))
993 	static const struct {
994 		u_int	m;	/* rate + mode */
995 		u_int	r;	/* if_media rate */
996 	} rates[] = {
997 		{   2 | IFM_IEEE80211_FH, IFM_IEEE80211_FH1 },
998 		{   4 | IFM_IEEE80211_FH, IFM_IEEE80211_FH2 },
999 		{   2 | IFM_IEEE80211_11B, IFM_IEEE80211_DS1 },
1000 		{   4 | IFM_IEEE80211_11B, IFM_IEEE80211_DS2 },
1001 		{  11 | IFM_IEEE80211_11B, IFM_IEEE80211_DS5 },
1002 		{  22 | IFM_IEEE80211_11B, IFM_IEEE80211_DS11 },
1003 		{  44 | IFM_IEEE80211_11B, IFM_IEEE80211_DS22 },
1004 		{  12 | IFM_IEEE80211_11A, IFM_IEEE80211_OFDM6 },
1005 		{  18 | IFM_IEEE80211_11A, IFM_IEEE80211_OFDM9 },
1006 		{  24 | IFM_IEEE80211_11A, IFM_IEEE80211_OFDM12 },
1007 		{  36 | IFM_IEEE80211_11A, IFM_IEEE80211_OFDM18 },
1008 		{  48 | IFM_IEEE80211_11A, IFM_IEEE80211_OFDM24 },
1009 		{  72 | IFM_IEEE80211_11A, IFM_IEEE80211_OFDM36 },
1010 		{  96 | IFM_IEEE80211_11A, IFM_IEEE80211_OFDM48 },
1011 		{ 108 | IFM_IEEE80211_11A, IFM_IEEE80211_OFDM54 },
1012 		{   2 | IFM_IEEE80211_11G, IFM_IEEE80211_DS1 },
1013 		{   4 | IFM_IEEE80211_11G, IFM_IEEE80211_DS2 },
1014 		{  11 | IFM_IEEE80211_11G, IFM_IEEE80211_DS5 },
1015 		{  22 | IFM_IEEE80211_11G, IFM_IEEE80211_DS11 },
1016 		{  12 | IFM_IEEE80211_11G, IFM_IEEE80211_OFDM6 },
1017 		{  18 | IFM_IEEE80211_11G, IFM_IEEE80211_OFDM9 },
1018 		{  24 | IFM_IEEE80211_11G, IFM_IEEE80211_OFDM12 },
1019 		{  36 | IFM_IEEE80211_11G, IFM_IEEE80211_OFDM18 },
1020 		{  48 | IFM_IEEE80211_11G, IFM_IEEE80211_OFDM24 },
1021 		{  72 | IFM_IEEE80211_11G, IFM_IEEE80211_OFDM36 },
1022 		{  96 | IFM_IEEE80211_11G, IFM_IEEE80211_OFDM48 },
1023 		{ 108 | IFM_IEEE80211_11G, IFM_IEEE80211_OFDM54 },
1024 		/* NB: OFDM72 doesn't realy exist so we don't handle it */
1025 	};
1026 	u_int mask, i;
1027 
1028 	mask = rate & IEEE80211_RATE_VAL;
1029 	switch (mode) {
1030 	case IEEE80211_MODE_11A:
1031 	case IEEE80211_MODE_TURBO_A:
1032 		mask |= IFM_IEEE80211_11A;
1033 		break;
1034 	case IEEE80211_MODE_11B:
1035 		mask |= IFM_IEEE80211_11B;
1036 		break;
1037 	case IEEE80211_MODE_FH:
1038 		mask |= IFM_IEEE80211_FH;
1039 		break;
1040 	case IEEE80211_MODE_AUTO:
1041 		/* NB: ic may be NULL for some drivers */
1042 		if (ic && ic->ic_phytype == IEEE80211_T_FH) {
1043 			mask |= IFM_IEEE80211_FH;
1044 			break;
1045 		}
1046 		/* NB: hack, 11g matches both 11b+11a rates */
1047 		/* fall thru... */
1048 	case IEEE80211_MODE_11G:
1049 	case IEEE80211_MODE_TURBO_G:
1050 		mask |= IFM_IEEE80211_11G;
1051 		break;
1052 	}
1053 	for (i = 0; i < N(rates); i++)
1054 		if (rates[i].m == mask)
1055 			return rates[i].r;
1056 	return IFM_AUTO;
1057 #undef N
1058 }
1059 
1060 int
1061 ieee80211_media2rate(int mword)
1062 {
1063 #define	N(a)	(sizeof(a) / sizeof(a[0]))
1064 	static const int ieeerates[] = {
1065 		-1,		/* IFM_AUTO */
1066 		0,		/* IFM_MANUAL */
1067 		0,		/* IFM_NONE */
1068 		2,		/* IFM_IEEE80211_FH1 */
1069 		4,		/* IFM_IEEE80211_FH2 */
1070 		4,		/* IFM_IEEE80211_DS2 */
1071 		11,		/* IFM_IEEE80211_DS5 */
1072 		22,		/* IFM_IEEE80211_DS11 */
1073 		2,		/* IFM_IEEE80211_DS1 */
1074 		44,		/* IFM_IEEE80211_DS22 */
1075 		12,		/* IFM_IEEE80211_OFDM6 */
1076 		18,		/* IFM_IEEE80211_OFDM9 */
1077 		24,		/* IFM_IEEE80211_OFDM12 */
1078 		36,		/* IFM_IEEE80211_OFDM18 */
1079 		48,		/* IFM_IEEE80211_OFDM24 */
1080 		72,		/* IFM_IEEE80211_OFDM36 */
1081 		96,		/* IFM_IEEE80211_OFDM48 */
1082 		108,		/* IFM_IEEE80211_OFDM54 */
1083 		144,		/* IFM_IEEE80211_OFDM72 */
1084 	};
1085 	return IFM_SUBTYPE(mword) < N(ieeerates) ?
1086 		ieeerates[IFM_SUBTYPE(mword)] : 0;
1087 #undef N
1088 }
1089