xref: /freebsd/sys/net80211/ieee80211_ioctl.c (revision e17f5b1d)
1 /*-
2  * SPDX-License-Identifier: BSD-2-Clause-FreeBSD
3  *
4  * Copyright (c) 2001 Atsushi Onoe
5  * Copyright (c) 2002-2009 Sam Leffler, Errno Consulting
6  * All rights reserved.
7  *
8  * Redistribution and use in source and binary forms, with or without
9  * modification, are permitted provided that the following conditions
10  * are met:
11  * 1. Redistributions of source code must retain the above copyright
12  *    notice, this list of conditions and the following disclaimer.
13  * 2. Redistributions in binary form must reproduce the above copyright
14  *    notice, this list of conditions and the following disclaimer in the
15  *    documentation and/or other materials provided with the distribution.
16  *
17  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
18  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
19  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
20  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
21  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
22  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
23  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
24  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
25  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
26  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
27  */
28 
29 #include <sys/cdefs.h>
30 __FBSDID("$FreeBSD$");
31 
32 /*
33  * IEEE 802.11 ioctl support (FreeBSD-specific)
34  */
35 
36 #include "opt_inet.h"
37 #include "opt_wlan.h"
38 
39 #include <sys/endian.h>
40 #include <sys/param.h>
41 #include <sys/kernel.h>
42 #include <sys/malloc.h>
43 #include <sys/priv.h>
44 #include <sys/socket.h>
45 #include <sys/sockio.h>
46 #include <sys/systm.h>
47 
48 #include <net/if.h>
49 #include <net/if_var.h>
50 #include <net/if_dl.h>
51 #include <net/if_media.h>
52 #include <net/ethernet.h>
53 
54 #ifdef INET
55 #include <netinet/in.h>
56 #include <netinet/if_ether.h>
57 #endif
58 
59 #include <net80211/ieee80211_var.h>
60 #include <net80211/ieee80211_ioctl.h>
61 #include <net80211/ieee80211_regdomain.h>
62 #include <net80211/ieee80211_input.h>
63 
64 #define	IS_UP_AUTO(_vap) \
65 	(IFNET_IS_UP_RUNNING((_vap)->iv_ifp) && \
66 	 (_vap)->iv_roaming == IEEE80211_ROAMING_AUTO)
67 
68 static const uint8_t zerobssid[IEEE80211_ADDR_LEN];
69 static struct ieee80211_channel *findchannel(struct ieee80211com *,
70 		int ieee, int mode);
71 static int ieee80211_scanreq(struct ieee80211vap *,
72 		struct ieee80211_scan_req *);
73 
74 static int
75 ieee80211_ioctl_getkey(struct ieee80211vap *vap, struct ieee80211req *ireq)
76 {
77 	struct ieee80211com *ic = vap->iv_ic;
78 	struct ieee80211_node *ni;
79 	struct ieee80211req_key ik;
80 	struct ieee80211_key *wk;
81 	const struct ieee80211_cipher *cip;
82 	u_int kid;
83 	int error;
84 
85 	if (ireq->i_len != sizeof(ik))
86 		return EINVAL;
87 	error = copyin(ireq->i_data, &ik, sizeof(ik));
88 	if (error)
89 		return error;
90 	kid = ik.ik_keyix;
91 	if (kid == IEEE80211_KEYIX_NONE) {
92 		ni = ieee80211_find_vap_node(&ic->ic_sta, vap, ik.ik_macaddr);
93 		if (ni == NULL)
94 			return ENOENT;
95 		wk = &ni->ni_ucastkey;
96 	} else {
97 		if (kid >= IEEE80211_WEP_NKID)
98 			return EINVAL;
99 		wk = &vap->iv_nw_keys[kid];
100 		IEEE80211_ADDR_COPY(&ik.ik_macaddr, vap->iv_bss->ni_macaddr);
101 		ni = NULL;
102 	}
103 	cip = wk->wk_cipher;
104 	ik.ik_type = cip->ic_cipher;
105 	ik.ik_keylen = wk->wk_keylen;
106 	ik.ik_flags = wk->wk_flags & (IEEE80211_KEY_XMIT | IEEE80211_KEY_RECV);
107 	if (wk->wk_keyix == vap->iv_def_txkey)
108 		ik.ik_flags |= IEEE80211_KEY_DEFAULT;
109 	/* XXX TODO: move priv check to ieee80211_freebsd.c */
110 	if (priv_check(curthread, PRIV_NET80211_VAP_GETKEY) == 0) {
111 		/* NB: only root can read key data */
112 		ik.ik_keyrsc = wk->wk_keyrsc[IEEE80211_NONQOS_TID];
113 		ik.ik_keytsc = wk->wk_keytsc;
114 		memcpy(ik.ik_keydata, wk->wk_key, wk->wk_keylen);
115 		if (cip->ic_cipher == IEEE80211_CIPHER_TKIP) {
116 			memcpy(ik.ik_keydata+wk->wk_keylen,
117 				wk->wk_key + IEEE80211_KEYBUF_SIZE,
118 				IEEE80211_MICBUF_SIZE);
119 			ik.ik_keylen += IEEE80211_MICBUF_SIZE;
120 		}
121 	} else {
122 		ik.ik_keyrsc = 0;
123 		ik.ik_keytsc = 0;
124 		memset(ik.ik_keydata, 0, sizeof(ik.ik_keydata));
125 	}
126 	if (ni != NULL)
127 		ieee80211_free_node(ni);
128 	return copyout(&ik, ireq->i_data, sizeof(ik));
129 }
130 
131 static int
132 ieee80211_ioctl_getchanlist(struct ieee80211vap *vap, struct ieee80211req *ireq)
133 {
134 	struct ieee80211com *ic = vap->iv_ic;
135 
136 	if (sizeof(ic->ic_chan_active) < ireq->i_len)
137 		ireq->i_len = sizeof(ic->ic_chan_active);
138 	return copyout(&ic->ic_chan_active, ireq->i_data, ireq->i_len);
139 }
140 
141 static int
142 ieee80211_ioctl_getchaninfo(struct ieee80211vap *vap, struct ieee80211req *ireq)
143 {
144 	struct ieee80211com *ic = vap->iv_ic;
145 	uint32_t space;
146 
147 	space = __offsetof(struct ieee80211req_chaninfo,
148 			ic_chans[ic->ic_nchans]);
149 	if (space > ireq->i_len)
150 		space = ireq->i_len;
151 	/* XXX assumes compatible layout */
152 	return copyout(&ic->ic_nchans, ireq->i_data, space);
153 }
154 
155 static int
156 ieee80211_ioctl_getwpaie(struct ieee80211vap *vap,
157 	struct ieee80211req *ireq, int req)
158 {
159 	struct ieee80211_node *ni;
160 	struct ieee80211req_wpaie2 *wpaie;
161 	int error;
162 
163 	if (ireq->i_len < IEEE80211_ADDR_LEN)
164 		return EINVAL;
165 	wpaie = IEEE80211_MALLOC(sizeof(*wpaie), M_TEMP,
166 	    IEEE80211_M_NOWAIT | IEEE80211_M_ZERO);
167 	if (wpaie == NULL)
168 		return ENOMEM;
169 	error = copyin(ireq->i_data, wpaie->wpa_macaddr, IEEE80211_ADDR_LEN);
170 	if (error != 0)
171 		goto bad;
172 	ni = ieee80211_find_vap_node(&vap->iv_ic->ic_sta, vap, wpaie->wpa_macaddr);
173 	if (ni == NULL) {
174 		error = ENOENT;
175 		goto bad;
176 	}
177 	if (ni->ni_ies.wpa_ie != NULL) {
178 		int ielen = ni->ni_ies.wpa_ie[1] + 2;
179 		if (ielen > sizeof(wpaie->wpa_ie))
180 			ielen = sizeof(wpaie->wpa_ie);
181 		memcpy(wpaie->wpa_ie, ni->ni_ies.wpa_ie, ielen);
182 	}
183 	if (req == IEEE80211_IOC_WPAIE2) {
184 		if (ni->ni_ies.rsn_ie != NULL) {
185 			int ielen = ni->ni_ies.rsn_ie[1] + 2;
186 			if (ielen > sizeof(wpaie->rsn_ie))
187 				ielen = sizeof(wpaie->rsn_ie);
188 			memcpy(wpaie->rsn_ie, ni->ni_ies.rsn_ie, ielen);
189 		}
190 		if (ireq->i_len > sizeof(struct ieee80211req_wpaie2))
191 			ireq->i_len = sizeof(struct ieee80211req_wpaie2);
192 	} else {
193 		/* compatibility op, may overwrite wpa ie */
194 		/* XXX check ic_flags? */
195 		if (ni->ni_ies.rsn_ie != NULL) {
196 			int ielen = ni->ni_ies.rsn_ie[1] + 2;
197 			if (ielen > sizeof(wpaie->wpa_ie))
198 				ielen = sizeof(wpaie->wpa_ie);
199 			memcpy(wpaie->wpa_ie, ni->ni_ies.rsn_ie, ielen);
200 		}
201 		if (ireq->i_len > sizeof(struct ieee80211req_wpaie))
202 			ireq->i_len = sizeof(struct ieee80211req_wpaie);
203 	}
204 	ieee80211_free_node(ni);
205 	error = copyout(wpaie, ireq->i_data, ireq->i_len);
206 bad:
207 	IEEE80211_FREE(wpaie, M_TEMP);
208 	return error;
209 }
210 
211 static int
212 ieee80211_ioctl_getstastats(struct ieee80211vap *vap, struct ieee80211req *ireq)
213 {
214 	struct ieee80211_node *ni;
215 	uint8_t macaddr[IEEE80211_ADDR_LEN];
216 	const size_t off = __offsetof(struct ieee80211req_sta_stats, is_stats);
217 	int error;
218 
219 	if (ireq->i_len < off)
220 		return EINVAL;
221 	error = copyin(ireq->i_data, macaddr, IEEE80211_ADDR_LEN);
222 	if (error != 0)
223 		return error;
224 	ni = ieee80211_find_vap_node(&vap->iv_ic->ic_sta, vap, macaddr);
225 	if (ni == NULL)
226 		return ENOENT;
227 	if (ireq->i_len > sizeof(struct ieee80211req_sta_stats))
228 		ireq->i_len = sizeof(struct ieee80211req_sta_stats);
229 	/* NB: copy out only the statistics */
230 	error = copyout(&ni->ni_stats, (uint8_t *) ireq->i_data + off,
231 			ireq->i_len - off);
232 	ieee80211_free_node(ni);
233 	return error;
234 }
235 
236 struct scanreq {
237 	struct ieee80211req_scan_result *sr;
238 	size_t space;
239 };
240 
241 static size_t
242 scan_space(const struct ieee80211_scan_entry *se, int *ielen)
243 {
244 	size_t len;
245 
246 	*ielen = se->se_ies.len;
247 	/*
248 	 * NB: ie's can be no more than 255 bytes and the max 802.11
249 	 * packet is <3Kbytes so we are sure this doesn't overflow
250 	 * 16-bits; if this is a concern we can drop the ie's.
251 	 */
252 	len = sizeof(struct ieee80211req_scan_result) + se->se_ssid[1] +
253 	    se->se_meshid[1] + *ielen;
254 	return roundup(len, sizeof(uint32_t));
255 }
256 
257 static void
258 get_scan_space(void *arg, const struct ieee80211_scan_entry *se)
259 {
260 	struct scanreq *req = arg;
261 	int ielen;
262 
263 	req->space += scan_space(se, &ielen);
264 }
265 
266 static void
267 get_scan_result(void *arg, const struct ieee80211_scan_entry *se)
268 {
269 	struct scanreq *req = arg;
270 	struct ieee80211req_scan_result *sr;
271 	int ielen, len, nr, nxr;
272 	uint8_t *cp;
273 
274 	len = scan_space(se, &ielen);
275 	if (len > req->space)
276 		return;
277 
278 	sr = req->sr;
279 	KASSERT(len <= 65535 && ielen <= 65535,
280 	    ("len %u ssid %u ie %u", len, se->se_ssid[1], ielen));
281 	sr->isr_len = len;
282 	sr->isr_ie_off = sizeof(struct ieee80211req_scan_result);
283 	sr->isr_ie_len = ielen;
284 	sr->isr_freq = se->se_chan->ic_freq;
285 	sr->isr_flags = se->se_chan->ic_flags;
286 	sr->isr_rssi = se->se_rssi;
287 	sr->isr_noise = se->se_noise;
288 	sr->isr_intval = se->se_intval;
289 	sr->isr_capinfo = se->se_capinfo;
290 	sr->isr_erp = se->se_erp;
291 	IEEE80211_ADDR_COPY(sr->isr_bssid, se->se_bssid);
292 	nr = min(se->se_rates[1], IEEE80211_RATE_MAXSIZE);
293 	memcpy(sr->isr_rates, se->se_rates+2, nr);
294 	nxr = min(se->se_xrates[1], IEEE80211_RATE_MAXSIZE - nr);
295 	memcpy(sr->isr_rates+nr, se->se_xrates+2, nxr);
296 	sr->isr_nrates = nr + nxr;
297 
298 	/* copy SSID */
299 	sr->isr_ssid_len = se->se_ssid[1];
300 	cp = ((uint8_t *)sr) + sr->isr_ie_off;
301 	memcpy(cp, se->se_ssid+2, sr->isr_ssid_len);
302 
303 	/* copy mesh id */
304 	cp += sr->isr_ssid_len;
305 	sr->isr_meshid_len = se->se_meshid[1];
306 	memcpy(cp, se->se_meshid+2, sr->isr_meshid_len);
307 	cp += sr->isr_meshid_len;
308 
309 	if (ielen)
310 		memcpy(cp, se->se_ies.data, ielen);
311 
312 	req->space -= len;
313 	req->sr = (struct ieee80211req_scan_result *)(((uint8_t *)sr) + len);
314 }
315 
316 static int
317 ieee80211_ioctl_getscanresults(struct ieee80211vap *vap,
318 	struct ieee80211req *ireq)
319 {
320 	struct scanreq req;
321 	int error;
322 
323 	if (ireq->i_len < sizeof(struct scanreq))
324 		return EFAULT;
325 
326 	error = 0;
327 	req.space = 0;
328 	ieee80211_scan_iterate(vap, get_scan_space, &req);
329 	if (req.space > ireq->i_len)
330 		req.space = ireq->i_len;
331 	if (req.space > 0) {
332 		uint32_t space;
333 		void *p;
334 
335 		space = req.space;
336 		/* XXX M_WAITOK after driver lock released */
337 		p = IEEE80211_MALLOC(space, M_TEMP,
338 		    IEEE80211_M_NOWAIT | IEEE80211_M_ZERO);
339 		if (p == NULL)
340 			return ENOMEM;
341 		req.sr = p;
342 		ieee80211_scan_iterate(vap, get_scan_result, &req);
343 		ireq->i_len = space - req.space;
344 		error = copyout(p, ireq->i_data, ireq->i_len);
345 		IEEE80211_FREE(p, M_TEMP);
346 	} else
347 		ireq->i_len = 0;
348 
349 	return error;
350 }
351 
352 struct stainforeq {
353 	struct ieee80211req_sta_info *si;
354 	size_t	space;
355 };
356 
357 static size_t
358 sta_space(const struct ieee80211_node *ni, size_t *ielen)
359 {
360 	*ielen = ni->ni_ies.len;
361 	return roundup(sizeof(struct ieee80211req_sta_info) + *ielen,
362 		      sizeof(uint32_t));
363 }
364 
365 static void
366 get_sta_space(void *arg, struct ieee80211_node *ni)
367 {
368 	struct stainforeq *req = arg;
369 	size_t ielen;
370 
371 	if (ni->ni_vap->iv_opmode == IEEE80211_M_HOSTAP &&
372 	    ni->ni_associd == 0)	/* only associated stations */
373 		return;
374 	req->space += sta_space(ni, &ielen);
375 }
376 
377 static void
378 get_sta_info(void *arg, struct ieee80211_node *ni)
379 {
380 	struct stainforeq *req = arg;
381 	struct ieee80211vap *vap = ni->ni_vap;
382 	struct ieee80211req_sta_info *si;
383 	size_t ielen, len;
384 	uint8_t *cp;
385 
386 	if (vap->iv_opmode == IEEE80211_M_HOSTAP &&
387 	    ni->ni_associd == 0)	/* only associated stations */
388 		return;
389 	if (ni->ni_chan == IEEE80211_CHAN_ANYC)	/* XXX bogus entry */
390 		return;
391 	len = sta_space(ni, &ielen);
392 	if (len > req->space)
393 		return;
394 	si = req->si;
395 	si->isi_len = len;
396 	si->isi_ie_off = sizeof(struct ieee80211req_sta_info);
397 	si->isi_ie_len = ielen;
398 	si->isi_freq = ni->ni_chan->ic_freq;
399 	si->isi_flags = ni->ni_chan->ic_flags;
400 	si->isi_state = ni->ni_flags;
401 	si->isi_authmode = ni->ni_authmode;
402 	vap->iv_ic->ic_node_getsignal(ni, &si->isi_rssi, &si->isi_noise);
403 	vap->iv_ic->ic_node_getmimoinfo(ni, &si->isi_mimo);
404 	si->isi_capinfo = ni->ni_capinfo;
405 	si->isi_erp = ni->ni_erp;
406 	IEEE80211_ADDR_COPY(si->isi_macaddr, ni->ni_macaddr);
407 	si->isi_nrates = ni->ni_rates.rs_nrates;
408 	if (si->isi_nrates > 15)
409 		si->isi_nrates = 15;
410 	memcpy(si->isi_rates, ni->ni_rates.rs_rates, si->isi_nrates);
411 	si->isi_txrate = ni->ni_txrate;
412 	if (si->isi_txrate & IEEE80211_RATE_MCS) {
413 		const struct ieee80211_mcs_rates *mcs =
414 		    &ieee80211_htrates[ni->ni_txrate &~ IEEE80211_RATE_MCS];
415 		if (IEEE80211_IS_CHAN_HT40(ni->ni_chan)) {
416 			if (ni->ni_flags & IEEE80211_NODE_SGI40)
417 				si->isi_txmbps = mcs->ht40_rate_800ns;
418 			else
419 				si->isi_txmbps = mcs->ht40_rate_400ns;
420 		} else {
421 			if (ni->ni_flags & IEEE80211_NODE_SGI20)
422 				si->isi_txmbps = mcs->ht20_rate_800ns;
423 			else
424 				si->isi_txmbps = mcs->ht20_rate_400ns;
425 		}
426 	} else
427 		si->isi_txmbps = si->isi_txrate;
428 	si->isi_associd = ni->ni_associd;
429 	si->isi_txpower = ni->ni_txpower;
430 	si->isi_vlan = ni->ni_vlan;
431 	if (ni->ni_flags & IEEE80211_NODE_QOS) {
432 		memcpy(si->isi_txseqs, ni->ni_txseqs, sizeof(ni->ni_txseqs));
433 		memcpy(si->isi_rxseqs, ni->ni_rxseqs, sizeof(ni->ni_rxseqs));
434 	} else {
435 		si->isi_txseqs[0] = ni->ni_txseqs[IEEE80211_NONQOS_TID];
436 		si->isi_rxseqs[0] = ni->ni_rxseqs[IEEE80211_NONQOS_TID];
437 	}
438 	/* NB: leave all cases in case we relax ni_associd == 0 check */
439 	if (ieee80211_node_is_authorized(ni))
440 		si->isi_inact = vap->iv_inact_run;
441 	else if (ni->ni_associd != 0 ||
442 	    (vap->iv_opmode == IEEE80211_M_WDS &&
443 	     (vap->iv_flags_ext & IEEE80211_FEXT_WDSLEGACY)))
444 		si->isi_inact = vap->iv_inact_auth;
445 	else
446 		si->isi_inact = vap->iv_inact_init;
447 	si->isi_inact = (si->isi_inact - ni->ni_inact) * IEEE80211_INACT_WAIT;
448 	si->isi_localid = ni->ni_mllid;
449 	si->isi_peerid = ni->ni_mlpid;
450 	si->isi_peerstate = ni->ni_mlstate;
451 
452 	if (ielen) {
453 		cp = ((uint8_t *)si) + si->isi_ie_off;
454 		memcpy(cp, ni->ni_ies.data, ielen);
455 	}
456 
457 	req->si = (struct ieee80211req_sta_info *)(((uint8_t *)si) + len);
458 	req->space -= len;
459 }
460 
461 static int
462 getstainfo_common(struct ieee80211vap *vap, struct ieee80211req *ireq,
463 	struct ieee80211_node *ni, size_t off)
464 {
465 	struct ieee80211com *ic = vap->iv_ic;
466 	struct stainforeq req;
467 	size_t space;
468 	void *p;
469 	int error;
470 
471 	error = 0;
472 	req.space = 0;
473 	if (ni == NULL) {
474 		ieee80211_iterate_nodes_vap(&ic->ic_sta, vap, get_sta_space,
475 		    &req);
476 	} else
477 		get_sta_space(&req, ni);
478 	if (req.space > ireq->i_len)
479 		req.space = ireq->i_len;
480 	if (req.space > 0) {
481 		space = req.space;
482 		/* XXX M_WAITOK after driver lock released */
483 		p = IEEE80211_MALLOC(space, M_TEMP,
484 		    IEEE80211_M_NOWAIT | IEEE80211_M_ZERO);
485 		if (p == NULL) {
486 			error = ENOMEM;
487 			goto bad;
488 		}
489 		req.si = p;
490 		if (ni == NULL) {
491 			ieee80211_iterate_nodes_vap(&ic->ic_sta, vap,
492 			    get_sta_info, &req);
493 		} else
494 			get_sta_info(&req, ni);
495 		ireq->i_len = space - req.space;
496 		error = copyout(p, (uint8_t *) ireq->i_data+off, ireq->i_len);
497 		IEEE80211_FREE(p, M_TEMP);
498 	} else
499 		ireq->i_len = 0;
500 bad:
501 	if (ni != NULL)
502 		ieee80211_free_node(ni);
503 	return error;
504 }
505 
506 static int
507 ieee80211_ioctl_getstainfo(struct ieee80211vap *vap, struct ieee80211req *ireq)
508 {
509 	uint8_t macaddr[IEEE80211_ADDR_LEN];
510 	const size_t off = __offsetof(struct ieee80211req_sta_req, info);
511 	struct ieee80211_node *ni;
512 	int error;
513 
514 	if (ireq->i_len < sizeof(struct ieee80211req_sta_req))
515 		return EFAULT;
516 	error = copyin(ireq->i_data, macaddr, IEEE80211_ADDR_LEN);
517 	if (error != 0)
518 		return error;
519 	if (IEEE80211_ADDR_EQ(macaddr, vap->iv_ifp->if_broadcastaddr)) {
520 		ni = NULL;
521 	} else {
522 		ni = ieee80211_find_vap_node(&vap->iv_ic->ic_sta, vap, macaddr);
523 		if (ni == NULL)
524 			return ENOENT;
525 	}
526 	return getstainfo_common(vap, ireq, ni, off);
527 }
528 
529 static int
530 ieee80211_ioctl_getstatxpow(struct ieee80211vap *vap, struct ieee80211req *ireq)
531 {
532 	struct ieee80211_node *ni;
533 	struct ieee80211req_sta_txpow txpow;
534 	int error;
535 
536 	if (ireq->i_len != sizeof(txpow))
537 		return EINVAL;
538 	error = copyin(ireq->i_data, &txpow, sizeof(txpow));
539 	if (error != 0)
540 		return error;
541 	ni = ieee80211_find_vap_node(&vap->iv_ic->ic_sta, vap, txpow.it_macaddr);
542 	if (ni == NULL)
543 		return ENOENT;
544 	txpow.it_txpow = ni->ni_txpower;
545 	error = copyout(&txpow, ireq->i_data, sizeof(txpow));
546 	ieee80211_free_node(ni);
547 	return error;
548 }
549 
550 static int
551 ieee80211_ioctl_getwmeparam(struct ieee80211vap *vap, struct ieee80211req *ireq)
552 {
553 	struct ieee80211com *ic = vap->iv_ic;
554 	struct ieee80211_wme_state *wme = &ic->ic_wme;
555 	struct wmeParams *wmep;
556 	int ac;
557 
558 	if ((ic->ic_caps & IEEE80211_C_WME) == 0)
559 		return EINVAL;
560 
561 	ac = (ireq->i_len & IEEE80211_WMEPARAM_VAL);
562 	if (ac >= WME_NUM_AC)
563 		ac = WME_AC_BE;
564 	if (ireq->i_len & IEEE80211_WMEPARAM_BSS)
565 		wmep = &wme->wme_wmeBssChanParams.cap_wmeParams[ac];
566 	else
567 		wmep = &wme->wme_wmeChanParams.cap_wmeParams[ac];
568 	switch (ireq->i_type) {
569 	case IEEE80211_IOC_WME_CWMIN:		/* WME: CWmin */
570 		ireq->i_val = wmep->wmep_logcwmin;
571 		break;
572 	case IEEE80211_IOC_WME_CWMAX:		/* WME: CWmax */
573 		ireq->i_val = wmep->wmep_logcwmax;
574 		break;
575 	case IEEE80211_IOC_WME_AIFS:		/* WME: AIFS */
576 		ireq->i_val = wmep->wmep_aifsn;
577 		break;
578 	case IEEE80211_IOC_WME_TXOPLIMIT:	/* WME: txops limit */
579 		ireq->i_val = wmep->wmep_txopLimit;
580 		break;
581 	case IEEE80211_IOC_WME_ACM:		/* WME: ACM (bss only) */
582 		wmep = &wme->wme_wmeBssChanParams.cap_wmeParams[ac];
583 		ireq->i_val = wmep->wmep_acm;
584 		break;
585 	case IEEE80211_IOC_WME_ACKPOLICY:	/* WME: ACK policy (!bss only)*/
586 		wmep = &wme->wme_wmeChanParams.cap_wmeParams[ac];
587 		ireq->i_val = !wmep->wmep_noackPolicy;
588 		break;
589 	}
590 	return 0;
591 }
592 
593 static int
594 ieee80211_ioctl_getmaccmd(struct ieee80211vap *vap, struct ieee80211req *ireq)
595 {
596 	const struct ieee80211_aclator *acl = vap->iv_acl;
597 
598 	return (acl == NULL ? EINVAL : acl->iac_getioctl(vap, ireq));
599 }
600 
601 static int
602 ieee80211_ioctl_getcurchan(struct ieee80211vap *vap, struct ieee80211req *ireq)
603 {
604 	struct ieee80211com *ic = vap->iv_ic;
605 	struct ieee80211_channel *c;
606 
607 	if (ireq->i_len != sizeof(struct ieee80211_channel))
608 		return EINVAL;
609 	/*
610 	 * vap's may have different operating channels when HT is
611 	 * in use.  When in RUN state report the vap-specific channel.
612 	 * Otherwise return curchan.
613 	 */
614 	if (vap->iv_state == IEEE80211_S_RUN || vap->iv_state == IEEE80211_S_SLEEP)
615 		c = vap->iv_bss->ni_chan;
616 	else
617 		c = ic->ic_curchan;
618 	return copyout(c, ireq->i_data, sizeof(*c));
619 }
620 
621 static int
622 getappie(const struct ieee80211_appie *aie, struct ieee80211req *ireq)
623 {
624 	if (aie == NULL)
625 		return EINVAL;
626 	/* NB: truncate, caller can check length */
627 	if (ireq->i_len > aie->ie_len)
628 		ireq->i_len = aie->ie_len;
629 	return copyout(aie->ie_data, ireq->i_data, ireq->i_len);
630 }
631 
632 static int
633 ieee80211_ioctl_getappie(struct ieee80211vap *vap, struct ieee80211req *ireq)
634 {
635 	uint8_t fc0;
636 
637 	fc0 = ireq->i_val & 0xff;
638 	if ((fc0 & IEEE80211_FC0_TYPE_MASK) != IEEE80211_FC0_TYPE_MGT)
639 		return EINVAL;
640 	/* NB: could check iv_opmode and reject but hardly worth the effort */
641 	switch (fc0 & IEEE80211_FC0_SUBTYPE_MASK) {
642 	case IEEE80211_FC0_SUBTYPE_BEACON:
643 		return getappie(vap->iv_appie_beacon, ireq);
644 	case IEEE80211_FC0_SUBTYPE_PROBE_RESP:
645 		return getappie(vap->iv_appie_proberesp, ireq);
646 	case IEEE80211_FC0_SUBTYPE_ASSOC_RESP:
647 		return getappie(vap->iv_appie_assocresp, ireq);
648 	case IEEE80211_FC0_SUBTYPE_PROBE_REQ:
649 		return getappie(vap->iv_appie_probereq, ireq);
650 	case IEEE80211_FC0_SUBTYPE_ASSOC_REQ:
651 		return getappie(vap->iv_appie_assocreq, ireq);
652 	case IEEE80211_FC0_SUBTYPE_BEACON|IEEE80211_FC0_SUBTYPE_PROBE_RESP:
653 		return getappie(vap->iv_appie_wpa, ireq);
654 	}
655 	return EINVAL;
656 }
657 
658 static int
659 ieee80211_ioctl_getregdomain(struct ieee80211vap *vap,
660 	const struct ieee80211req *ireq)
661 {
662 	struct ieee80211com *ic = vap->iv_ic;
663 
664 	if (ireq->i_len != sizeof(ic->ic_regdomain))
665 		return EINVAL;
666 	return copyout(&ic->ic_regdomain, ireq->i_data,
667 	    sizeof(ic->ic_regdomain));
668 }
669 
670 static int
671 ieee80211_ioctl_getroam(struct ieee80211vap *vap,
672 	const struct ieee80211req *ireq)
673 {
674 	size_t len = ireq->i_len;
675 	/* NB: accept short requests for backwards compat */
676 	if (len > sizeof(vap->iv_roamparms))
677 		len = sizeof(vap->iv_roamparms);
678 	return copyout(vap->iv_roamparms, ireq->i_data, len);
679 }
680 
681 static int
682 ieee80211_ioctl_gettxparams(struct ieee80211vap *vap,
683 	const struct ieee80211req *ireq)
684 {
685 	size_t len = ireq->i_len;
686 	/* NB: accept short requests for backwards compat */
687 	if (len > sizeof(vap->iv_txparms))
688 		len = sizeof(vap->iv_txparms);
689 	return copyout(vap->iv_txparms, ireq->i_data, len);
690 }
691 
692 static int
693 ieee80211_ioctl_getdevcaps(struct ieee80211com *ic,
694 	const struct ieee80211req *ireq)
695 {
696 	struct ieee80211_devcaps_req *dc;
697 	struct ieee80211req_chaninfo *ci;
698 	int maxchans, error;
699 
700 	maxchans = 1 + ((ireq->i_len - sizeof(struct ieee80211_devcaps_req)) /
701 	    sizeof(struct ieee80211_channel));
702 	/* NB: require 1 so we know ic_nchans is accessible */
703 	if (maxchans < 1)
704 		return EINVAL;
705 	/* constrain max request size, 2K channels is ~24Kbytes */
706 	if (maxchans > 2048)
707 		maxchans = 2048;
708 	dc = (struct ieee80211_devcaps_req *)
709 	    IEEE80211_MALLOC(IEEE80211_DEVCAPS_SIZE(maxchans), M_TEMP,
710 	    IEEE80211_M_NOWAIT | IEEE80211_M_ZERO);
711 	if (dc == NULL)
712 		return ENOMEM;
713 	dc->dc_drivercaps = ic->ic_caps;
714 	dc->dc_cryptocaps = ic->ic_cryptocaps;
715 	dc->dc_htcaps = ic->ic_htcaps;
716 	dc->dc_vhtcaps = ic->ic_vhtcaps;
717 	ci = &dc->dc_chaninfo;
718 	ic->ic_getradiocaps(ic, maxchans, &ci->ic_nchans, ci->ic_chans);
719 	KASSERT(ci->ic_nchans <= maxchans,
720 	    ("nchans %d maxchans %d", ci->ic_nchans, maxchans));
721 	ieee80211_sort_channels(ci->ic_chans, ci->ic_nchans);
722 	error = copyout(dc, ireq->i_data, IEEE80211_DEVCAPS_SPACE(dc));
723 	IEEE80211_FREE(dc, M_TEMP);
724 	return error;
725 }
726 
727 static int
728 ieee80211_ioctl_getstavlan(struct ieee80211vap *vap, struct ieee80211req *ireq)
729 {
730 	struct ieee80211_node *ni;
731 	struct ieee80211req_sta_vlan vlan;
732 	int error;
733 
734 	if (ireq->i_len != sizeof(vlan))
735 		return EINVAL;
736 	error = copyin(ireq->i_data, &vlan, sizeof(vlan));
737 	if (error != 0)
738 		return error;
739 	if (!IEEE80211_ADDR_EQ(vlan.sv_macaddr, zerobssid)) {
740 		ni = ieee80211_find_vap_node(&vap->iv_ic->ic_sta, vap,
741 		    vlan.sv_macaddr);
742 		if (ni == NULL)
743 			return ENOENT;
744 	} else
745 		ni = ieee80211_ref_node(vap->iv_bss);
746 	vlan.sv_vlan = ni->ni_vlan;
747 	error = copyout(&vlan, ireq->i_data, sizeof(vlan));
748 	ieee80211_free_node(ni);
749 	return error;
750 }
751 
752 /*
753  * Dummy ioctl get handler so the linker set is defined.
754  */
755 static int
756 dummy_ioctl_get(struct ieee80211vap *vap, struct ieee80211req *ireq)
757 {
758 	return ENOSYS;
759 }
760 IEEE80211_IOCTL_GET(dummy, dummy_ioctl_get);
761 
762 static int
763 ieee80211_ioctl_getdefault(struct ieee80211vap *vap, struct ieee80211req *ireq)
764 {
765 	ieee80211_ioctl_getfunc * const *get;
766 	int error;
767 
768 	SET_FOREACH(get, ieee80211_ioctl_getset) {
769 		error = (*get)(vap, ireq);
770 		if (error != ENOSYS)
771 			return error;
772 	}
773 	return EINVAL;
774 }
775 
776 static int
777 ieee80211_ioctl_get80211(struct ieee80211vap *vap, u_long cmd,
778     struct ieee80211req *ireq)
779 {
780 #define	MS(_v, _f)	(((_v) & _f) >> _f##_S)
781 	struct ieee80211com *ic = vap->iv_ic;
782 	u_int kid, len;
783 	uint8_t tmpkey[IEEE80211_KEYBUF_SIZE];
784 	char tmpssid[IEEE80211_NWID_LEN];
785 	int error = 0;
786 
787 	switch (ireq->i_type) {
788 	case IEEE80211_IOC_SSID:
789 		switch (vap->iv_state) {
790 		case IEEE80211_S_INIT:
791 		case IEEE80211_S_SCAN:
792 			ireq->i_len = vap->iv_des_ssid[0].len;
793 			memcpy(tmpssid, vap->iv_des_ssid[0].ssid, ireq->i_len);
794 			break;
795 		default:
796 			ireq->i_len = vap->iv_bss->ni_esslen;
797 			memcpy(tmpssid, vap->iv_bss->ni_essid, ireq->i_len);
798 			break;
799 		}
800 		error = copyout(tmpssid, ireq->i_data, ireq->i_len);
801 		break;
802 	case IEEE80211_IOC_NUMSSIDS:
803 		ireq->i_val = 1;
804 		break;
805 	case IEEE80211_IOC_WEP:
806 		if ((vap->iv_flags & IEEE80211_F_PRIVACY) == 0)
807 			ireq->i_val = IEEE80211_WEP_OFF;
808 		else if (vap->iv_flags & IEEE80211_F_DROPUNENC)
809 			ireq->i_val = IEEE80211_WEP_ON;
810 		else
811 			ireq->i_val = IEEE80211_WEP_MIXED;
812 		break;
813 	case IEEE80211_IOC_WEPKEY:
814 		kid = (u_int) ireq->i_val;
815 		if (kid >= IEEE80211_WEP_NKID)
816 			return EINVAL;
817 		len = (u_int) vap->iv_nw_keys[kid].wk_keylen;
818 		/* NB: only root can read WEP keys */
819 		/* XXX TODO: move priv check to ieee80211_freebsd.c */
820 		if (priv_check(curthread, PRIV_NET80211_VAP_GETKEY) == 0) {
821 			bcopy(vap->iv_nw_keys[kid].wk_key, tmpkey, len);
822 		} else {
823 			bzero(tmpkey, len);
824 		}
825 		ireq->i_len = len;
826 		error = copyout(tmpkey, ireq->i_data, len);
827 		break;
828 	case IEEE80211_IOC_NUMWEPKEYS:
829 		ireq->i_val = IEEE80211_WEP_NKID;
830 		break;
831 	case IEEE80211_IOC_WEPTXKEY:
832 		ireq->i_val = vap->iv_def_txkey;
833 		break;
834 	case IEEE80211_IOC_AUTHMODE:
835 		if (vap->iv_flags & IEEE80211_F_WPA)
836 			ireq->i_val = IEEE80211_AUTH_WPA;
837 		else
838 			ireq->i_val = vap->iv_bss->ni_authmode;
839 		break;
840 	case IEEE80211_IOC_CHANNEL:
841 		ireq->i_val = ieee80211_chan2ieee(ic, ic->ic_curchan);
842 		break;
843 	case IEEE80211_IOC_POWERSAVE:
844 		if (vap->iv_flags & IEEE80211_F_PMGTON)
845 			ireq->i_val = IEEE80211_POWERSAVE_ON;
846 		else
847 			ireq->i_val = IEEE80211_POWERSAVE_OFF;
848 		break;
849 	case IEEE80211_IOC_POWERSAVESLEEP:
850 		ireq->i_val = ic->ic_lintval;
851 		break;
852 	case IEEE80211_IOC_RTSTHRESHOLD:
853 		ireq->i_val = vap->iv_rtsthreshold;
854 		break;
855 	case IEEE80211_IOC_PROTMODE:
856 		ireq->i_val = vap->iv_protmode;
857 		break;
858 	case IEEE80211_IOC_TXPOWER:
859 		/*
860 		 * Tx power limit is the min of max regulatory
861 		 * power, any user-set limit, and the max the
862 		 * radio can do.
863 		 *
864 		 * TODO: methodize this
865 		 */
866 		ireq->i_val = 2*ic->ic_curchan->ic_maxregpower;
867 		if (ireq->i_val > ic->ic_txpowlimit)
868 			ireq->i_val = ic->ic_txpowlimit;
869 		if (ireq->i_val > ic->ic_curchan->ic_maxpower)
870 			ireq->i_val = ic->ic_curchan->ic_maxpower;
871 		break;
872 	case IEEE80211_IOC_WPA:
873 		switch (vap->iv_flags & IEEE80211_F_WPA) {
874 		case IEEE80211_F_WPA1:
875 			ireq->i_val = 1;
876 			break;
877 		case IEEE80211_F_WPA2:
878 			ireq->i_val = 2;
879 			break;
880 		case IEEE80211_F_WPA1 | IEEE80211_F_WPA2:
881 			ireq->i_val = 3;
882 			break;
883 		default:
884 			ireq->i_val = 0;
885 			break;
886 		}
887 		break;
888 	case IEEE80211_IOC_CHANLIST:
889 		error = ieee80211_ioctl_getchanlist(vap, ireq);
890 		break;
891 	case IEEE80211_IOC_ROAMING:
892 		ireq->i_val = vap->iv_roaming;
893 		break;
894 	case IEEE80211_IOC_PRIVACY:
895 		ireq->i_val = (vap->iv_flags & IEEE80211_F_PRIVACY) != 0;
896 		break;
897 	case IEEE80211_IOC_DROPUNENCRYPTED:
898 		ireq->i_val = (vap->iv_flags & IEEE80211_F_DROPUNENC) != 0;
899 		break;
900 	case IEEE80211_IOC_COUNTERMEASURES:
901 		ireq->i_val = (vap->iv_flags & IEEE80211_F_COUNTERM) != 0;
902 		break;
903 	case IEEE80211_IOC_WME:
904 		ireq->i_val = (vap->iv_flags & IEEE80211_F_WME) != 0;
905 		break;
906 	case IEEE80211_IOC_HIDESSID:
907 		ireq->i_val = (vap->iv_flags & IEEE80211_F_HIDESSID) != 0;
908 		break;
909 	case IEEE80211_IOC_APBRIDGE:
910 		ireq->i_val = (vap->iv_flags & IEEE80211_F_NOBRIDGE) == 0;
911 		break;
912 	case IEEE80211_IOC_WPAKEY:
913 		error = ieee80211_ioctl_getkey(vap, ireq);
914 		break;
915 	case IEEE80211_IOC_CHANINFO:
916 		error = ieee80211_ioctl_getchaninfo(vap, ireq);
917 		break;
918 	case IEEE80211_IOC_BSSID:
919 		if (ireq->i_len != IEEE80211_ADDR_LEN)
920 			return EINVAL;
921 		if (vap->iv_state == IEEE80211_S_RUN || vap->iv_state == IEEE80211_S_SLEEP) {
922 			error = copyout(vap->iv_opmode == IEEE80211_M_WDS ?
923 			    vap->iv_bss->ni_macaddr : vap->iv_bss->ni_bssid,
924 			    ireq->i_data, ireq->i_len);
925 		} else
926 			error = copyout(vap->iv_des_bssid, ireq->i_data,
927 			    ireq->i_len);
928 		break;
929 	case IEEE80211_IOC_WPAIE:
930 	case IEEE80211_IOC_WPAIE2:
931 		error = ieee80211_ioctl_getwpaie(vap, ireq, ireq->i_type);
932 		break;
933 	case IEEE80211_IOC_SCAN_RESULTS:
934 		error = ieee80211_ioctl_getscanresults(vap, ireq);
935 		break;
936 	case IEEE80211_IOC_STA_STATS:
937 		error = ieee80211_ioctl_getstastats(vap, ireq);
938 		break;
939 	case IEEE80211_IOC_TXPOWMAX:
940 		ireq->i_val = vap->iv_bss->ni_txpower;
941 		break;
942 	case IEEE80211_IOC_STA_TXPOW:
943 		error = ieee80211_ioctl_getstatxpow(vap, ireq);
944 		break;
945 	case IEEE80211_IOC_STA_INFO:
946 		error = ieee80211_ioctl_getstainfo(vap, ireq);
947 		break;
948 	case IEEE80211_IOC_WME_CWMIN:		/* WME: CWmin */
949 	case IEEE80211_IOC_WME_CWMAX:		/* WME: CWmax */
950 	case IEEE80211_IOC_WME_AIFS:		/* WME: AIFS */
951 	case IEEE80211_IOC_WME_TXOPLIMIT:	/* WME: txops limit */
952 	case IEEE80211_IOC_WME_ACM:		/* WME: ACM (bss only) */
953 	case IEEE80211_IOC_WME_ACKPOLICY:	/* WME: ACK policy (!bss only) */
954 		error = ieee80211_ioctl_getwmeparam(vap, ireq);
955 		break;
956 	case IEEE80211_IOC_DTIM_PERIOD:
957 		ireq->i_val = vap->iv_dtim_period;
958 		break;
959 	case IEEE80211_IOC_BEACON_INTERVAL:
960 		/* NB: get from ic_bss for station mode */
961 		ireq->i_val = vap->iv_bss->ni_intval;
962 		break;
963 	case IEEE80211_IOC_PUREG:
964 		ireq->i_val = (vap->iv_flags & IEEE80211_F_PUREG) != 0;
965 		break;
966 	case IEEE80211_IOC_QUIET:
967 		ireq->i_val = vap->iv_quiet;
968 		break;
969 	case IEEE80211_IOC_QUIET_COUNT:
970 		ireq->i_val = vap->iv_quiet_count;
971 		break;
972 	case IEEE80211_IOC_QUIET_PERIOD:
973 		ireq->i_val = vap->iv_quiet_period;
974 		break;
975 	case IEEE80211_IOC_QUIET_DUR:
976 		ireq->i_val = vap->iv_quiet_duration;
977 		break;
978 	case IEEE80211_IOC_QUIET_OFFSET:
979 		ireq->i_val = vap->iv_quiet_offset;
980 		break;
981 	case IEEE80211_IOC_BGSCAN:
982 		ireq->i_val = (vap->iv_flags & IEEE80211_F_BGSCAN) != 0;
983 		break;
984 	case IEEE80211_IOC_BGSCAN_IDLE:
985 		ireq->i_val = vap->iv_bgscanidle*hz/1000;	/* ms */
986 		break;
987 	case IEEE80211_IOC_BGSCAN_INTERVAL:
988 		ireq->i_val = vap->iv_bgscanintvl/hz;		/* seconds */
989 		break;
990 	case IEEE80211_IOC_SCANVALID:
991 		ireq->i_val = vap->iv_scanvalid/hz;		/* seconds */
992 		break;
993 	case IEEE80211_IOC_FRAGTHRESHOLD:
994 		ireq->i_val = vap->iv_fragthreshold;
995 		break;
996 	case IEEE80211_IOC_MACCMD:
997 		error = ieee80211_ioctl_getmaccmd(vap, ireq);
998 		break;
999 	case IEEE80211_IOC_BURST:
1000 		ireq->i_val = (vap->iv_flags & IEEE80211_F_BURST) != 0;
1001 		break;
1002 	case IEEE80211_IOC_BMISSTHRESHOLD:
1003 		ireq->i_val = vap->iv_bmissthreshold;
1004 		break;
1005 	case IEEE80211_IOC_CURCHAN:
1006 		error = ieee80211_ioctl_getcurchan(vap, ireq);
1007 		break;
1008 	case IEEE80211_IOC_SHORTGI:
1009 		ireq->i_val = 0;
1010 		if (vap->iv_flags_ht & IEEE80211_FHT_SHORTGI20)
1011 			ireq->i_val |= IEEE80211_HTCAP_SHORTGI20;
1012 		if (vap->iv_flags_ht & IEEE80211_FHT_SHORTGI40)
1013 			ireq->i_val |= IEEE80211_HTCAP_SHORTGI40;
1014 		break;
1015 	case IEEE80211_IOC_AMPDU:
1016 		ireq->i_val = 0;
1017 		if (vap->iv_flags_ht & IEEE80211_FHT_AMPDU_TX)
1018 			ireq->i_val |= 1;
1019 		if (vap->iv_flags_ht & IEEE80211_FHT_AMPDU_RX)
1020 			ireq->i_val |= 2;
1021 		break;
1022 	case IEEE80211_IOC_AMPDU_LIMIT:
1023 		/* XXX TODO: make this a per-node thing; and leave this as global */
1024 		if (vap->iv_opmode == IEEE80211_M_HOSTAP)
1025 			ireq->i_val = vap->iv_ampdu_rxmax;
1026 		else if (vap->iv_state == IEEE80211_S_RUN || vap->iv_state == IEEE80211_S_SLEEP)
1027 			/*
1028 			 * XXX TODO: this isn't completely correct, as we've
1029 			 * negotiated the higher of the two.
1030 			 */
1031 			ireq->i_val = MS(vap->iv_bss->ni_htparam,
1032 			    IEEE80211_HTCAP_MAXRXAMPDU);
1033 		else
1034 			ireq->i_val = vap->iv_ampdu_limit;
1035 		break;
1036 	case IEEE80211_IOC_AMPDU_DENSITY:
1037 		/* XXX TODO: make this a per-node thing; and leave this as global */
1038 		if (vap->iv_opmode == IEEE80211_M_STA &&
1039 		    (vap->iv_state == IEEE80211_S_RUN || vap->iv_state == IEEE80211_S_SLEEP))
1040 			/*
1041 			 * XXX TODO: this isn't completely correct, as we've
1042 			 * negotiated the higher of the two.
1043 			 */
1044 			ireq->i_val = MS(vap->iv_bss->ni_htparam,
1045 			    IEEE80211_HTCAP_MPDUDENSITY);
1046 		else
1047 			ireq->i_val = vap->iv_ampdu_density;
1048 		break;
1049 	case IEEE80211_IOC_AMSDU:
1050 		ireq->i_val = 0;
1051 		if (vap->iv_flags_ht & IEEE80211_FHT_AMSDU_TX)
1052 			ireq->i_val |= 1;
1053 		if (vap->iv_flags_ht & IEEE80211_FHT_AMSDU_RX)
1054 			ireq->i_val |= 2;
1055 		break;
1056 	case IEEE80211_IOC_AMSDU_LIMIT:
1057 		ireq->i_val = vap->iv_amsdu_limit;	/* XXX truncation? */
1058 		break;
1059 	case IEEE80211_IOC_PUREN:
1060 		ireq->i_val = (vap->iv_flags_ht & IEEE80211_FHT_PUREN) != 0;
1061 		break;
1062 	case IEEE80211_IOC_DOTH:
1063 		ireq->i_val = (vap->iv_flags & IEEE80211_F_DOTH) != 0;
1064 		break;
1065 	case IEEE80211_IOC_REGDOMAIN:
1066 		error = ieee80211_ioctl_getregdomain(vap, ireq);
1067 		break;
1068 	case IEEE80211_IOC_ROAM:
1069 		error = ieee80211_ioctl_getroam(vap, ireq);
1070 		break;
1071 	case IEEE80211_IOC_TXPARAMS:
1072 		error = ieee80211_ioctl_gettxparams(vap, ireq);
1073 		break;
1074 	case IEEE80211_IOC_HTCOMPAT:
1075 		ireq->i_val = (vap->iv_flags_ht & IEEE80211_FHT_HTCOMPAT) != 0;
1076 		break;
1077 	case IEEE80211_IOC_DWDS:
1078 		ireq->i_val = (vap->iv_flags & IEEE80211_F_DWDS) != 0;
1079 		break;
1080 	case IEEE80211_IOC_INACTIVITY:
1081 		ireq->i_val = (vap->iv_flags_ext & IEEE80211_FEXT_INACT) != 0;
1082 		break;
1083 	case IEEE80211_IOC_APPIE:
1084 		error = ieee80211_ioctl_getappie(vap, ireq);
1085 		break;
1086 	case IEEE80211_IOC_WPS:
1087 		ireq->i_val = (vap->iv_flags_ext & IEEE80211_FEXT_WPS) != 0;
1088 		break;
1089 	case IEEE80211_IOC_TSN:
1090 		ireq->i_val = (vap->iv_flags_ext & IEEE80211_FEXT_TSN) != 0;
1091 		break;
1092 	case IEEE80211_IOC_DFS:
1093 		ireq->i_val = (vap->iv_flags_ext & IEEE80211_FEXT_DFS) != 0;
1094 		break;
1095 	case IEEE80211_IOC_DOTD:
1096 		ireq->i_val = (vap->iv_flags_ext & IEEE80211_FEXT_DOTD) != 0;
1097 		break;
1098 	case IEEE80211_IOC_DEVCAPS:
1099 		error = ieee80211_ioctl_getdevcaps(ic, ireq);
1100 		break;
1101 	case IEEE80211_IOC_HTPROTMODE:
1102 		ireq->i_val = vap->iv_htprotmode;
1103 		break;
1104 	case IEEE80211_IOC_HTCONF:
1105 		if (vap->iv_flags_ht & IEEE80211_FHT_HT) {
1106 			ireq->i_val = 1;
1107 			if (vap->iv_flags_ht & IEEE80211_FHT_USEHT40)
1108 				ireq->i_val |= 2;
1109 		} else
1110 			ireq->i_val = 0;
1111 		break;
1112 	case IEEE80211_IOC_STA_VLAN:
1113 		error = ieee80211_ioctl_getstavlan(vap, ireq);
1114 		break;
1115 	case IEEE80211_IOC_SMPS:
1116 		if (vap->iv_opmode == IEEE80211_M_STA &&
1117 		    (vap->iv_state == IEEE80211_S_RUN || vap->iv_state == IEEE80211_S_SLEEP)) {
1118 			if (vap->iv_bss->ni_flags & IEEE80211_NODE_MIMO_RTS)
1119 				ireq->i_val = IEEE80211_HTCAP_SMPS_DYNAMIC;
1120 			else if (vap->iv_bss->ni_flags & IEEE80211_NODE_MIMO_PS)
1121 				ireq->i_val = IEEE80211_HTCAP_SMPS_ENA;
1122 			else
1123 				ireq->i_val = IEEE80211_HTCAP_SMPS_OFF;
1124 		} else
1125 			ireq->i_val = vap->iv_htcaps & IEEE80211_HTCAP_SMPS;
1126 		break;
1127 	case IEEE80211_IOC_RIFS:
1128 		if (vap->iv_opmode == IEEE80211_M_STA &&
1129 		    (vap->iv_state == IEEE80211_S_RUN || vap->iv_state == IEEE80211_S_SLEEP))
1130 			ireq->i_val =
1131 			    (vap->iv_bss->ni_flags & IEEE80211_NODE_RIFS) != 0;
1132 		else
1133 			ireq->i_val =
1134 			    (vap->iv_flags_ht & IEEE80211_FHT_RIFS) != 0;
1135 		break;
1136 	case IEEE80211_IOC_STBC:
1137 		ireq->i_val = 0;
1138 		if (vap->iv_flags_ht & IEEE80211_FHT_STBC_TX)
1139 			ireq->i_val |= 1;
1140 		if (vap->iv_flags_ht & IEEE80211_FHT_STBC_RX)
1141 			ireq->i_val |= 2;
1142 		break;
1143 	case IEEE80211_IOC_LDPC:
1144 		ireq->i_val = 0;
1145 		if (vap->iv_flags_ht & IEEE80211_FHT_LDPC_TX)
1146 			ireq->i_val |= 1;
1147 		if (vap->iv_flags_ht & IEEE80211_FHT_LDPC_RX)
1148 			ireq->i_val |= 2;
1149 		break;
1150 	case IEEE80211_IOC_UAPSD:
1151 		ireq->i_val = 0;
1152 		if (vap->iv_flags_ext & IEEE80211_FEXT_UAPSD)
1153 			ireq->i_val = 1;
1154 		break;
1155 
1156 	/* VHT */
1157 	case IEEE80211_IOC_VHTCONF:
1158 		ireq->i_val = 0;
1159 		if (vap->iv_flags_vht & IEEE80211_FVHT_VHT)
1160 			ireq->i_val |= 1;
1161 		if (vap->iv_flags_vht & IEEE80211_FVHT_USEVHT40)
1162 			ireq->i_val |= 2;
1163 		if (vap->iv_flags_vht & IEEE80211_FVHT_USEVHT80)
1164 			ireq->i_val |= 4;
1165 		if (vap->iv_flags_vht & IEEE80211_FVHT_USEVHT80P80)
1166 			ireq->i_val |= 8;
1167 		if (vap->iv_flags_vht & IEEE80211_FVHT_USEVHT160)
1168 			ireq->i_val |= 16;
1169 		break;
1170 
1171 	default:
1172 		error = ieee80211_ioctl_getdefault(vap, ireq);
1173 		break;
1174 	}
1175 	return error;
1176 #undef MS
1177 }
1178 
1179 static int
1180 ieee80211_ioctl_setkey(struct ieee80211vap *vap, struct ieee80211req *ireq)
1181 {
1182 	struct ieee80211req_key ik;
1183 	struct ieee80211_node *ni;
1184 	struct ieee80211_key *wk;
1185 	uint16_t kid;
1186 	int error, i;
1187 
1188 	if (ireq->i_len != sizeof(ik))
1189 		return EINVAL;
1190 	error = copyin(ireq->i_data, &ik, sizeof(ik));
1191 	if (error)
1192 		return error;
1193 	/* NB: cipher support is verified by ieee80211_crypt_newkey */
1194 	/* NB: this also checks ik->ik_keylen > sizeof(wk->wk_key) */
1195 	if (ik.ik_keylen > sizeof(ik.ik_keydata))
1196 		return E2BIG;
1197 	kid = ik.ik_keyix;
1198 	if (kid == IEEE80211_KEYIX_NONE) {
1199 		/* XXX unicast keys currently must be tx/rx */
1200 		if (ik.ik_flags != (IEEE80211_KEY_XMIT | IEEE80211_KEY_RECV))
1201 			return EINVAL;
1202 		if (vap->iv_opmode == IEEE80211_M_STA) {
1203 			ni = ieee80211_ref_node(vap->iv_bss);
1204 			if (!IEEE80211_ADDR_EQ(ik.ik_macaddr, ni->ni_bssid)) {
1205 				ieee80211_free_node(ni);
1206 				return EADDRNOTAVAIL;
1207 			}
1208 		} else {
1209 			ni = ieee80211_find_vap_node(&vap->iv_ic->ic_sta, vap,
1210 				ik.ik_macaddr);
1211 			if (ni == NULL)
1212 				return ENOENT;
1213 		}
1214 		wk = &ni->ni_ucastkey;
1215 	} else {
1216 		if (kid >= IEEE80211_WEP_NKID)
1217 			return EINVAL;
1218 		wk = &vap->iv_nw_keys[kid];
1219 		/*
1220 		 * Global slots start off w/o any assigned key index.
1221 		 * Force one here for consistency with IEEE80211_IOC_WEPKEY.
1222 		 */
1223 		if (wk->wk_keyix == IEEE80211_KEYIX_NONE)
1224 			wk->wk_keyix = kid;
1225 		ni = NULL;
1226 	}
1227 	error = 0;
1228 	ieee80211_key_update_begin(vap);
1229 	if (ieee80211_crypto_newkey(vap, ik.ik_type, ik.ik_flags, wk)) {
1230 		wk->wk_keylen = ik.ik_keylen;
1231 		/* NB: MIC presence is implied by cipher type */
1232 		if (wk->wk_keylen > IEEE80211_KEYBUF_SIZE)
1233 			wk->wk_keylen = IEEE80211_KEYBUF_SIZE;
1234 		for (i = 0; i < IEEE80211_TID_SIZE; i++)
1235 			wk->wk_keyrsc[i] = ik.ik_keyrsc;
1236 		wk->wk_keytsc = 0;			/* new key, reset */
1237 		memset(wk->wk_key, 0, sizeof(wk->wk_key));
1238 		memcpy(wk->wk_key, ik.ik_keydata, ik.ik_keylen);
1239 		IEEE80211_ADDR_COPY(wk->wk_macaddr,
1240 		    ni != NULL ?  ni->ni_macaddr : ik.ik_macaddr);
1241 		if (!ieee80211_crypto_setkey(vap, wk))
1242 			error = EIO;
1243 		else if ((ik.ik_flags & IEEE80211_KEY_DEFAULT))
1244 			/*
1245 			 * Inform the driver that this is the default
1246 			 * transmit key.  Now, ideally we'd just set
1247 			 * a flag in the key update that would
1248 			 * say "yes, we're the default key", but
1249 			 * that currently isn't the way the ioctl ->
1250 			 * key interface works.
1251 			 */
1252 			ieee80211_crypto_set_deftxkey(vap, kid);
1253 	} else
1254 		error = ENXIO;
1255 	ieee80211_key_update_end(vap);
1256 	if (ni != NULL)
1257 		ieee80211_free_node(ni);
1258 	return error;
1259 }
1260 
1261 static int
1262 ieee80211_ioctl_delkey(struct ieee80211vap *vap, struct ieee80211req *ireq)
1263 {
1264 	struct ieee80211req_del_key dk;
1265 	int kid, error;
1266 
1267 	if (ireq->i_len != sizeof(dk))
1268 		return EINVAL;
1269 	error = copyin(ireq->i_data, &dk, sizeof(dk));
1270 	if (error)
1271 		return error;
1272 	kid = dk.idk_keyix;
1273 	/* XXX uint8_t -> uint16_t */
1274 	if (dk.idk_keyix == (uint8_t) IEEE80211_KEYIX_NONE) {
1275 		struct ieee80211_node *ni;
1276 
1277 		if (vap->iv_opmode == IEEE80211_M_STA) {
1278 			ni = ieee80211_ref_node(vap->iv_bss);
1279 			if (!IEEE80211_ADDR_EQ(dk.idk_macaddr, ni->ni_bssid)) {
1280 				ieee80211_free_node(ni);
1281 				return EADDRNOTAVAIL;
1282 			}
1283 		} else {
1284 			ni = ieee80211_find_vap_node(&vap->iv_ic->ic_sta, vap,
1285 				dk.idk_macaddr);
1286 			if (ni == NULL)
1287 				return ENOENT;
1288 		}
1289 		/* XXX error return */
1290 		ieee80211_node_delucastkey(ni);
1291 		ieee80211_free_node(ni);
1292 	} else {
1293 		if (kid >= IEEE80211_WEP_NKID)
1294 			return EINVAL;
1295 		/* XXX error return */
1296 		ieee80211_crypto_delkey(vap, &vap->iv_nw_keys[kid]);
1297 	}
1298 	return 0;
1299 }
1300 
1301 struct mlmeop {
1302 	struct ieee80211vap *vap;
1303 	int	op;
1304 	int	reason;
1305 };
1306 
1307 static void
1308 mlmedebug(struct ieee80211vap *vap, const uint8_t mac[IEEE80211_ADDR_LEN],
1309 	int op, int reason)
1310 {
1311 #ifdef IEEE80211_DEBUG
1312 	static const struct {
1313 		int mask;
1314 		const char *opstr;
1315 	} ops[] = {
1316 		{ 0, "op#0" },
1317 		{ IEEE80211_MSG_IOCTL | IEEE80211_MSG_STATE |
1318 		  IEEE80211_MSG_ASSOC, "assoc" },
1319 		{ IEEE80211_MSG_IOCTL | IEEE80211_MSG_STATE |
1320 		  IEEE80211_MSG_ASSOC, "disassoc" },
1321 		{ IEEE80211_MSG_IOCTL | IEEE80211_MSG_STATE |
1322 		  IEEE80211_MSG_AUTH, "deauth" },
1323 		{ IEEE80211_MSG_IOCTL | IEEE80211_MSG_STATE |
1324 		  IEEE80211_MSG_AUTH, "authorize" },
1325 		{ IEEE80211_MSG_IOCTL | IEEE80211_MSG_STATE |
1326 		  IEEE80211_MSG_AUTH, "unauthorize" },
1327 	};
1328 
1329 	if (op == IEEE80211_MLME_AUTH) {
1330 		IEEE80211_NOTE_MAC(vap, IEEE80211_MSG_IOCTL |
1331 		    IEEE80211_MSG_STATE | IEEE80211_MSG_AUTH, mac,
1332 		    "station authenticate %s via MLME (reason: %d (%s))",
1333 		    reason == IEEE80211_STATUS_SUCCESS ? "ACCEPT" : "REJECT",
1334 		    reason, ieee80211_reason_to_string(reason));
1335 	} else if (!(IEEE80211_MLME_ASSOC <= op && op <= IEEE80211_MLME_AUTH)) {
1336 		IEEE80211_NOTE_MAC(vap, IEEE80211_MSG_ANY, mac,
1337 		    "unknown MLME request %d (reason: %d (%s))", op, reason,
1338 		    ieee80211_reason_to_string(reason));
1339 	} else if (reason == IEEE80211_STATUS_SUCCESS) {
1340 		IEEE80211_NOTE_MAC(vap, ops[op].mask, mac,
1341 		    "station %s via MLME", ops[op].opstr);
1342 	} else {
1343 		IEEE80211_NOTE_MAC(vap, ops[op].mask, mac,
1344 		    "station %s via MLME (reason: %d (%s))", ops[op].opstr,
1345 		    reason, ieee80211_reason_to_string(reason));
1346 	}
1347 #endif /* IEEE80211_DEBUG */
1348 }
1349 
1350 static void
1351 domlme(void *arg, struct ieee80211_node *ni)
1352 {
1353 	struct mlmeop *mop = arg;
1354 	struct ieee80211vap *vap = ni->ni_vap;
1355 
1356 	if (vap != mop->vap)
1357 		return;
1358 	/*
1359 	 * NB: if ni_associd is zero then the node is already cleaned
1360 	 * up and we don't need to do this (we're safely holding a
1361 	 * reference but should otherwise not modify it's state).
1362 	 */
1363 	if (ni->ni_associd == 0)
1364 		return;
1365 	mlmedebug(vap, ni->ni_macaddr, mop->op, mop->reason);
1366 	if (mop->op == IEEE80211_MLME_DEAUTH) {
1367 		IEEE80211_SEND_MGMT(ni, IEEE80211_FC0_SUBTYPE_DEAUTH,
1368 		    mop->reason);
1369 	} else {
1370 		IEEE80211_SEND_MGMT(ni, IEEE80211_FC0_SUBTYPE_DISASSOC,
1371 		    mop->reason);
1372 	}
1373 	ieee80211_node_leave(ni);
1374 }
1375 
1376 static int
1377 setmlme_dropsta(struct ieee80211vap *vap,
1378 	const uint8_t mac[IEEE80211_ADDR_LEN], struct mlmeop *mlmeop)
1379 {
1380 	struct ieee80211_node_table *nt = &vap->iv_ic->ic_sta;
1381 	struct ieee80211_node *ni;
1382 	int error = 0;
1383 
1384 	/* NB: the broadcast address means do 'em all */
1385 	if (!IEEE80211_ADDR_EQ(mac, vap->iv_ifp->if_broadcastaddr)) {
1386 		IEEE80211_NODE_LOCK(nt);
1387 		ni = ieee80211_find_node_locked(nt, mac);
1388 		IEEE80211_NODE_UNLOCK(nt);
1389 		/*
1390 		 * Don't do the node update inside the node
1391 		 * table lock.  This unfortunately causes LORs
1392 		 * with drivers and their TX paths.
1393 		 */
1394 		if (ni != NULL) {
1395 			domlme(mlmeop, ni);
1396 			ieee80211_free_node(ni);
1397 		} else
1398 			error = ENOENT;
1399 	} else {
1400 		ieee80211_iterate_nodes(nt, domlme, mlmeop);
1401 	}
1402 	return error;
1403 }
1404 
1405 static int
1406 setmlme_common(struct ieee80211vap *vap, int op,
1407 	const uint8_t mac[IEEE80211_ADDR_LEN], int reason)
1408 {
1409 	struct ieee80211com *ic = vap->iv_ic;
1410 	struct ieee80211_node_table *nt = &ic->ic_sta;
1411 	struct ieee80211_node *ni;
1412 	struct mlmeop mlmeop;
1413 	int error;
1414 
1415 	error = 0;
1416 	switch (op) {
1417 	case IEEE80211_MLME_DISASSOC:
1418 	case IEEE80211_MLME_DEAUTH:
1419 		switch (vap->iv_opmode) {
1420 		case IEEE80211_M_STA:
1421 			mlmedebug(vap, vap->iv_bss->ni_macaddr, op, reason);
1422 			/* XXX not quite right */
1423 			ieee80211_new_state(vap, IEEE80211_S_INIT, reason);
1424 			break;
1425 		case IEEE80211_M_HOSTAP:
1426 			mlmeop.vap = vap;
1427 			mlmeop.op = op;
1428 			mlmeop.reason = reason;
1429 			error = setmlme_dropsta(vap, mac, &mlmeop);
1430 			break;
1431 		case IEEE80211_M_WDS:
1432 			/* XXX user app should send raw frame? */
1433 			if (op != IEEE80211_MLME_DEAUTH) {
1434 				error = EINVAL;
1435 				break;
1436 			}
1437 #if 0
1438 			/* XXX accept any address, simplifies user code */
1439 			if (!IEEE80211_ADDR_EQ(mac, vap->iv_bss->ni_macaddr)) {
1440 				error = EINVAL;
1441 				break;
1442 			}
1443 #endif
1444 			mlmedebug(vap, vap->iv_bss->ni_macaddr, op, reason);
1445 			ni = ieee80211_ref_node(vap->iv_bss);
1446 			IEEE80211_SEND_MGMT(ni,
1447 			    IEEE80211_FC0_SUBTYPE_DEAUTH, reason);
1448 			ieee80211_free_node(ni);
1449 			break;
1450 		case IEEE80211_M_MBSS:
1451 			IEEE80211_NODE_LOCK(nt);
1452 			ni = ieee80211_find_node_locked(nt, mac);
1453 			/*
1454 			 * Don't do the node update inside the node
1455 			 * table lock.  This unfortunately causes LORs
1456 			 * with drivers and their TX paths.
1457 			 */
1458 			IEEE80211_NODE_UNLOCK(nt);
1459 			if (ni != NULL) {
1460 				ieee80211_node_leave(ni);
1461 				ieee80211_free_node(ni);
1462 			} else {
1463 				error = ENOENT;
1464 			}
1465 			break;
1466 		default:
1467 			error = EINVAL;
1468 			break;
1469 		}
1470 		break;
1471 	case IEEE80211_MLME_AUTHORIZE:
1472 	case IEEE80211_MLME_UNAUTHORIZE:
1473 		if (vap->iv_opmode != IEEE80211_M_HOSTAP &&
1474 		    vap->iv_opmode != IEEE80211_M_WDS) {
1475 			error = EINVAL;
1476 			break;
1477 		}
1478 		IEEE80211_NODE_LOCK(nt);
1479 		ni = ieee80211_find_vap_node_locked(nt, vap, mac);
1480 		/*
1481 		 * Don't do the node update inside the node
1482 		 * table lock.  This unfortunately causes LORs
1483 		 * with drivers and their TX paths.
1484 		 */
1485 		IEEE80211_NODE_UNLOCK(nt);
1486 		if (ni != NULL) {
1487 			mlmedebug(vap, mac, op, reason);
1488 			if (op == IEEE80211_MLME_AUTHORIZE)
1489 				ieee80211_node_authorize(ni);
1490 			else
1491 				ieee80211_node_unauthorize(ni);
1492 			ieee80211_free_node(ni);
1493 		} else
1494 			error = ENOENT;
1495 		break;
1496 	case IEEE80211_MLME_AUTH:
1497 		if (vap->iv_opmode != IEEE80211_M_HOSTAP) {
1498 			error = EINVAL;
1499 			break;
1500 		}
1501 		IEEE80211_NODE_LOCK(nt);
1502 		ni = ieee80211_find_vap_node_locked(nt, vap, mac);
1503 		/*
1504 		 * Don't do the node update inside the node
1505 		 * table lock.  This unfortunately causes LORs
1506 		 * with drivers and their TX paths.
1507 		 */
1508 		IEEE80211_NODE_UNLOCK(nt);
1509 		if (ni != NULL) {
1510 			mlmedebug(vap, mac, op, reason);
1511 			if (reason == IEEE80211_STATUS_SUCCESS) {
1512 				IEEE80211_SEND_MGMT(ni,
1513 				    IEEE80211_FC0_SUBTYPE_AUTH, 2);
1514 				/*
1515 				 * For shared key auth, just continue the
1516 				 * exchange.  Otherwise when 802.1x is not in
1517 				 * use mark the port authorized at this point
1518 				 * so traffic can flow.
1519 				 */
1520 				if (ni->ni_authmode != IEEE80211_AUTH_8021X &&
1521 				    ni->ni_challenge == NULL)
1522 				      ieee80211_node_authorize(ni);
1523 			} else {
1524 				vap->iv_stats.is_rx_acl++;
1525 				ieee80211_send_error(ni, ni->ni_macaddr,
1526 				    IEEE80211_FC0_SUBTYPE_AUTH, 2|(reason<<16));
1527 				ieee80211_node_leave(ni);
1528 			}
1529 			ieee80211_free_node(ni);
1530 		} else
1531 			error = ENOENT;
1532 		break;
1533 	default:
1534 		error = EINVAL;
1535 		break;
1536 	}
1537 	return error;
1538 }
1539 
1540 struct scanlookup {
1541 	const uint8_t *mac;
1542 	int esslen;
1543 	const uint8_t *essid;
1544 	const struct ieee80211_scan_entry *se;
1545 };
1546 
1547 /*
1548  * Match mac address and any ssid.
1549  */
1550 static void
1551 mlmelookup(void *arg, const struct ieee80211_scan_entry *se)
1552 {
1553 	struct scanlookup *look = arg;
1554 
1555 	if (!IEEE80211_ADDR_EQ(look->mac, se->se_macaddr))
1556 		return;
1557 	if (look->esslen != 0) {
1558 		if (se->se_ssid[1] != look->esslen)
1559 			return;
1560 		if (memcmp(look->essid, se->se_ssid+2, look->esslen))
1561 			return;
1562 	}
1563 	look->se = se;
1564 }
1565 
1566 static int
1567 setmlme_assoc_sta(struct ieee80211vap *vap,
1568 	const uint8_t mac[IEEE80211_ADDR_LEN], int ssid_len,
1569 	const uint8_t ssid[IEEE80211_NWID_LEN])
1570 {
1571 	struct scanlookup lookup;
1572 
1573 	KASSERT(vap->iv_opmode == IEEE80211_M_STA,
1574 	    ("expected opmode STA not %s",
1575 	    ieee80211_opmode_name[vap->iv_opmode]));
1576 
1577 	/* NB: this is racey if roaming is !manual */
1578 	lookup.se = NULL;
1579 	lookup.mac = mac;
1580 	lookup.esslen = ssid_len;
1581 	lookup.essid = ssid;
1582 	ieee80211_scan_iterate(vap, mlmelookup, &lookup);
1583 	if (lookup.se == NULL)
1584 		return ENOENT;
1585 	mlmedebug(vap, mac, IEEE80211_MLME_ASSOC, 0);
1586 	if (!ieee80211_sta_join(vap, lookup.se->se_chan, lookup.se))
1587 		return EIO;		/* XXX unique but could be better */
1588 	return 0;
1589 }
1590 
1591 static int
1592 setmlme_assoc_adhoc(struct ieee80211vap *vap,
1593 	const uint8_t mac[IEEE80211_ADDR_LEN], int ssid_len,
1594 	const uint8_t ssid[IEEE80211_NWID_LEN])
1595 {
1596 	struct ieee80211_scan_req *sr;
1597 	int error;
1598 
1599 	KASSERT(vap->iv_opmode == IEEE80211_M_IBSS ||
1600 	    vap->iv_opmode == IEEE80211_M_AHDEMO,
1601 	    ("expected opmode IBSS or AHDEMO not %s",
1602 	    ieee80211_opmode_name[vap->iv_opmode]));
1603 
1604 	if (ssid_len == 0)
1605 		return EINVAL;
1606 
1607 	sr = IEEE80211_MALLOC(sizeof(*sr), M_TEMP,
1608 	     IEEE80211_M_NOWAIT | IEEE80211_M_ZERO);
1609 	if (sr == NULL)
1610 		return ENOMEM;
1611 
1612 	/* NB: IEEE80211_IOC_SSID call missing for ap_scan=2. */
1613 	memset(vap->iv_des_ssid[0].ssid, 0, IEEE80211_NWID_LEN);
1614 	vap->iv_des_ssid[0].len = ssid_len;
1615 	memcpy(vap->iv_des_ssid[0].ssid, ssid, ssid_len);
1616 	vap->iv_des_nssid = 1;
1617 
1618 	sr->sr_flags = IEEE80211_IOC_SCAN_ACTIVE | IEEE80211_IOC_SCAN_ONCE;
1619 	sr->sr_duration = IEEE80211_IOC_SCAN_FOREVER;
1620 	memcpy(sr->sr_ssid[0].ssid, ssid, ssid_len);
1621 	sr->sr_ssid[0].len = ssid_len;
1622 	sr->sr_nssid = 1;
1623 
1624 	error = ieee80211_scanreq(vap, sr);
1625 
1626 	IEEE80211_FREE(sr, M_TEMP);
1627 	return error;
1628 }
1629 
1630 static int
1631 ieee80211_ioctl_setmlme(struct ieee80211vap *vap, struct ieee80211req *ireq)
1632 {
1633 	struct ieee80211req_mlme mlme;
1634 	int error;
1635 
1636 	if (ireq->i_len != sizeof(mlme))
1637 		return EINVAL;
1638 	error = copyin(ireq->i_data, &mlme, sizeof(mlme));
1639 	if (error)
1640 		return error;
1641 	if  (vap->iv_opmode == IEEE80211_M_STA &&
1642 	    mlme.im_op == IEEE80211_MLME_ASSOC)
1643 		return setmlme_assoc_sta(vap, mlme.im_macaddr,
1644 		    vap->iv_des_ssid[0].len, vap->iv_des_ssid[0].ssid);
1645 	else if ((vap->iv_opmode == IEEE80211_M_IBSS ||
1646 	    vap->iv_opmode == IEEE80211_M_AHDEMO) &&
1647 	    mlme.im_op == IEEE80211_MLME_ASSOC)
1648 		return setmlme_assoc_adhoc(vap, mlme.im_macaddr,
1649 		    mlme.im_ssid_len, mlme.im_ssid);
1650 	else
1651 		return setmlme_common(vap, mlme.im_op,
1652 		    mlme.im_macaddr, mlme.im_reason);
1653 }
1654 
1655 static int
1656 ieee80211_ioctl_macmac(struct ieee80211vap *vap, struct ieee80211req *ireq)
1657 {
1658 	uint8_t mac[IEEE80211_ADDR_LEN];
1659 	const struct ieee80211_aclator *acl = vap->iv_acl;
1660 	int error;
1661 
1662 	if (ireq->i_len != sizeof(mac))
1663 		return EINVAL;
1664 	error = copyin(ireq->i_data, mac, ireq->i_len);
1665 	if (error)
1666 		return error;
1667 	if (acl == NULL) {
1668 		acl = ieee80211_aclator_get("mac");
1669 		if (acl == NULL || !acl->iac_attach(vap))
1670 			return EINVAL;
1671 		vap->iv_acl = acl;
1672 	}
1673 	if (ireq->i_type == IEEE80211_IOC_ADDMAC)
1674 		acl->iac_add(vap, mac);
1675 	else
1676 		acl->iac_remove(vap, mac);
1677 	return 0;
1678 }
1679 
1680 static int
1681 ieee80211_ioctl_setmaccmd(struct ieee80211vap *vap, struct ieee80211req *ireq)
1682 {
1683 	const struct ieee80211_aclator *acl = vap->iv_acl;
1684 
1685 	switch (ireq->i_val) {
1686 	case IEEE80211_MACCMD_POLICY_OPEN:
1687 	case IEEE80211_MACCMD_POLICY_ALLOW:
1688 	case IEEE80211_MACCMD_POLICY_DENY:
1689 	case IEEE80211_MACCMD_POLICY_RADIUS:
1690 		if (acl == NULL) {
1691 			acl = ieee80211_aclator_get("mac");
1692 			if (acl == NULL || !acl->iac_attach(vap))
1693 				return EINVAL;
1694 			vap->iv_acl = acl;
1695 		}
1696 		acl->iac_setpolicy(vap, ireq->i_val);
1697 		break;
1698 	case IEEE80211_MACCMD_FLUSH:
1699 		if (acl != NULL)
1700 			acl->iac_flush(vap);
1701 		/* NB: silently ignore when not in use */
1702 		break;
1703 	case IEEE80211_MACCMD_DETACH:
1704 		if (acl != NULL) {
1705 			vap->iv_acl = NULL;
1706 			acl->iac_detach(vap);
1707 		}
1708 		break;
1709 	default:
1710 		if (acl == NULL)
1711 			return EINVAL;
1712 		else
1713 			return acl->iac_setioctl(vap, ireq);
1714 	}
1715 	return 0;
1716 }
1717 
1718 static int
1719 ieee80211_ioctl_setchanlist(struct ieee80211vap *vap, struct ieee80211req *ireq)
1720 {
1721 	struct ieee80211com *ic = vap->iv_ic;
1722 	uint8_t *chanlist, *list;
1723 	int i, nchan, maxchan, error;
1724 
1725 	if (ireq->i_len > sizeof(ic->ic_chan_active))
1726 		ireq->i_len = sizeof(ic->ic_chan_active);
1727 	list = IEEE80211_MALLOC(ireq->i_len + IEEE80211_CHAN_BYTES, M_TEMP,
1728 	    IEEE80211_M_NOWAIT | IEEE80211_M_ZERO);
1729 	if (list == NULL)
1730 		return ENOMEM;
1731 	error = copyin(ireq->i_data, list, ireq->i_len);
1732 	if (error) {
1733 		IEEE80211_FREE(list, M_TEMP);
1734 		return error;
1735 	}
1736 	nchan = 0;
1737 	chanlist = list + ireq->i_len;		/* NB: zero'd already */
1738 	maxchan = ireq->i_len * NBBY;
1739 	for (i = 0; i < ic->ic_nchans; i++) {
1740 		const struct ieee80211_channel *c = &ic->ic_channels[i];
1741 		/*
1742 		 * Calculate the intersection of the user list and the
1743 		 * available channels so users can do things like specify
1744 		 * 1-255 to get all available channels.
1745 		 */
1746 		if (c->ic_ieee < maxchan && isset(list, c->ic_ieee)) {
1747 			setbit(chanlist, c->ic_ieee);
1748 			nchan++;
1749 		}
1750 	}
1751 	if (nchan == 0) {
1752 		IEEE80211_FREE(list, M_TEMP);
1753 		return EINVAL;
1754 	}
1755 	if (ic->ic_bsschan != IEEE80211_CHAN_ANYC &&	/* XXX */
1756 	    isclr(chanlist, ic->ic_bsschan->ic_ieee))
1757 		ic->ic_bsschan = IEEE80211_CHAN_ANYC;
1758 	memcpy(ic->ic_chan_active, chanlist, IEEE80211_CHAN_BYTES);
1759 	ieee80211_scan_flush(vap);
1760 	IEEE80211_FREE(list, M_TEMP);
1761 	return ENETRESET;
1762 }
1763 
1764 static int
1765 ieee80211_ioctl_setstastats(struct ieee80211vap *vap, struct ieee80211req *ireq)
1766 {
1767 	struct ieee80211_node *ni;
1768 	uint8_t macaddr[IEEE80211_ADDR_LEN];
1769 	int error;
1770 
1771 	/*
1772 	 * NB: we could copyin ieee80211req_sta_stats so apps
1773 	 *     could make selective changes but that's overkill;
1774 	 *     just clear all stats for now.
1775 	 */
1776 	if (ireq->i_len < IEEE80211_ADDR_LEN)
1777 		return EINVAL;
1778 	error = copyin(ireq->i_data, macaddr, IEEE80211_ADDR_LEN);
1779 	if (error != 0)
1780 		return error;
1781 	ni = ieee80211_find_vap_node(&vap->iv_ic->ic_sta, vap, macaddr);
1782 	if (ni == NULL)
1783 		return ENOENT;
1784 	/* XXX require ni_vap == vap? */
1785 	memset(&ni->ni_stats, 0, sizeof(ni->ni_stats));
1786 	ieee80211_free_node(ni);
1787 	return 0;
1788 }
1789 
1790 static int
1791 ieee80211_ioctl_setstatxpow(struct ieee80211vap *vap, struct ieee80211req *ireq)
1792 {
1793 	struct ieee80211_node *ni;
1794 	struct ieee80211req_sta_txpow txpow;
1795 	int error;
1796 
1797 	if (ireq->i_len != sizeof(txpow))
1798 		return EINVAL;
1799 	error = copyin(ireq->i_data, &txpow, sizeof(txpow));
1800 	if (error != 0)
1801 		return error;
1802 	ni = ieee80211_find_vap_node(&vap->iv_ic->ic_sta, vap, txpow.it_macaddr);
1803 	if (ni == NULL)
1804 		return ENOENT;
1805 	ni->ni_txpower = txpow.it_txpow;
1806 	ieee80211_free_node(ni);
1807 	return error;
1808 }
1809 
1810 static int
1811 ieee80211_ioctl_setwmeparam(struct ieee80211vap *vap, struct ieee80211req *ireq)
1812 {
1813 	struct ieee80211com *ic = vap->iv_ic;
1814 	struct ieee80211_wme_state *wme = &ic->ic_wme;
1815 	struct wmeParams *wmep, *chanp;
1816 	int isbss, ac, aggrmode;
1817 
1818 	if ((ic->ic_caps & IEEE80211_C_WME) == 0)
1819 		return EOPNOTSUPP;
1820 
1821 	isbss = (ireq->i_len & IEEE80211_WMEPARAM_BSS);
1822 	ac = (ireq->i_len & IEEE80211_WMEPARAM_VAL);
1823 	aggrmode = (wme->wme_flags & WME_F_AGGRMODE);
1824 	if (ac >= WME_NUM_AC)
1825 		ac = WME_AC_BE;
1826 	if (isbss) {
1827 		chanp = &wme->wme_bssChanParams.cap_wmeParams[ac];
1828 		wmep = &wme->wme_wmeBssChanParams.cap_wmeParams[ac];
1829 	} else {
1830 		chanp = &wme->wme_chanParams.cap_wmeParams[ac];
1831 		wmep = &wme->wme_wmeChanParams.cap_wmeParams[ac];
1832 	}
1833 	switch (ireq->i_type) {
1834 	case IEEE80211_IOC_WME_CWMIN:		/* WME: CWmin */
1835 		wmep->wmep_logcwmin = ireq->i_val;
1836 		if (!isbss || !aggrmode)
1837 			chanp->wmep_logcwmin = ireq->i_val;
1838 		break;
1839 	case IEEE80211_IOC_WME_CWMAX:		/* WME: CWmax */
1840 		wmep->wmep_logcwmax = ireq->i_val;
1841 		if (!isbss || !aggrmode)
1842 			chanp->wmep_logcwmax = ireq->i_val;
1843 		break;
1844 	case IEEE80211_IOC_WME_AIFS:		/* WME: AIFS */
1845 		wmep->wmep_aifsn = ireq->i_val;
1846 		if (!isbss || !aggrmode)
1847 			chanp->wmep_aifsn = ireq->i_val;
1848 		break;
1849 	case IEEE80211_IOC_WME_TXOPLIMIT:	/* WME: txops limit */
1850 		wmep->wmep_txopLimit = ireq->i_val;
1851 		if (!isbss || !aggrmode)
1852 			chanp->wmep_txopLimit = ireq->i_val;
1853 		break;
1854 	case IEEE80211_IOC_WME_ACM:		/* WME: ACM (bss only) */
1855 		wmep->wmep_acm = ireq->i_val;
1856 		if (!aggrmode)
1857 			chanp->wmep_acm = ireq->i_val;
1858 		break;
1859 	case IEEE80211_IOC_WME_ACKPOLICY:	/* WME: ACK policy (!bss only)*/
1860 		wmep->wmep_noackPolicy = chanp->wmep_noackPolicy =
1861 			(ireq->i_val) == 0;
1862 		break;
1863 	}
1864 	ieee80211_wme_updateparams(vap);
1865 	return 0;
1866 }
1867 
1868 static int
1869 find11gchannel(struct ieee80211com *ic, int start, int freq)
1870 {
1871 	const struct ieee80211_channel *c;
1872 	int i;
1873 
1874 	for (i = start+1; i < ic->ic_nchans; i++) {
1875 		c = &ic->ic_channels[i];
1876 		if (c->ic_freq == freq && IEEE80211_IS_CHAN_ANYG(c))
1877 			return 1;
1878 	}
1879 	/* NB: should not be needed but in case things are mis-sorted */
1880 	for (i = 0; i < start; i++) {
1881 		c = &ic->ic_channels[i];
1882 		if (c->ic_freq == freq && IEEE80211_IS_CHAN_ANYG(c))
1883 			return 1;
1884 	}
1885 	return 0;
1886 }
1887 
1888 static struct ieee80211_channel *
1889 findchannel(struct ieee80211com *ic, int ieee, int mode)
1890 {
1891 	static const u_int chanflags[IEEE80211_MODE_MAX] = {
1892 	    [IEEE80211_MODE_AUTO]	= 0,
1893 	    [IEEE80211_MODE_11A]	= IEEE80211_CHAN_A,
1894 	    [IEEE80211_MODE_11B]	= IEEE80211_CHAN_B,
1895 	    [IEEE80211_MODE_11G]	= IEEE80211_CHAN_G,
1896 	    [IEEE80211_MODE_FH]		= IEEE80211_CHAN_FHSS,
1897 	    [IEEE80211_MODE_TURBO_A]	= IEEE80211_CHAN_108A,
1898 	    [IEEE80211_MODE_TURBO_G]	= IEEE80211_CHAN_108G,
1899 	    [IEEE80211_MODE_STURBO_A]	= IEEE80211_CHAN_STURBO,
1900 	    [IEEE80211_MODE_HALF]	= IEEE80211_CHAN_HALF,
1901 	    [IEEE80211_MODE_QUARTER]	= IEEE80211_CHAN_QUARTER,
1902 	    /* NB: handled specially below */
1903 	    [IEEE80211_MODE_11NA]	= IEEE80211_CHAN_A,
1904 	    [IEEE80211_MODE_11NG]	= IEEE80211_CHAN_G,
1905 	    [IEEE80211_MODE_VHT_5GHZ]	= IEEE80211_CHAN_A,
1906 	    [IEEE80211_MODE_VHT_2GHZ]	= IEEE80211_CHAN_G,
1907 	};
1908 	u_int modeflags;
1909 	int i;
1910 
1911 	modeflags = chanflags[mode];
1912 	for (i = 0; i < ic->ic_nchans; i++) {
1913 		struct ieee80211_channel *c = &ic->ic_channels[i];
1914 
1915 		if (c->ic_ieee != ieee)
1916 			continue;
1917 		if (mode == IEEE80211_MODE_AUTO) {
1918 			/* ignore turbo channels for autoselect */
1919 			if (IEEE80211_IS_CHAN_TURBO(c))
1920 				continue;
1921 			/*
1922 			 * XXX special-case 11b/g channels so we
1923 			 *     always select the g channel if both
1924 			 *     are present.
1925 			 * XXX prefer HT to non-HT?
1926 			 */
1927 			if (!IEEE80211_IS_CHAN_B(c) ||
1928 			    !find11gchannel(ic, i, c->ic_freq))
1929 				return c;
1930 		} else {
1931 			/* must check VHT specifically */
1932 			if ((mode == IEEE80211_MODE_VHT_5GHZ ||
1933 			    mode == IEEE80211_MODE_VHT_2GHZ) &&
1934 			    !IEEE80211_IS_CHAN_VHT(c))
1935 				continue;
1936 
1937 			/*
1938 			 * Must check HT specially - only match on HT,
1939 			 * not HT+VHT channels
1940 			 */
1941 			if ((mode == IEEE80211_MODE_11NA ||
1942 			    mode == IEEE80211_MODE_11NG) &&
1943 			    !IEEE80211_IS_CHAN_HT(c))
1944 				continue;
1945 
1946 			if ((mode == IEEE80211_MODE_11NA ||
1947 			    mode == IEEE80211_MODE_11NG) &&
1948 			    IEEE80211_IS_CHAN_VHT(c))
1949 				continue;
1950 
1951 			/* Check that the modeflags above match */
1952 			if ((c->ic_flags & modeflags) == modeflags)
1953 				return c;
1954 		}
1955 	}
1956 	return NULL;
1957 }
1958 
1959 /*
1960  * Check the specified against any desired mode (aka netband).
1961  * This is only used (presently) when operating in hostap mode
1962  * to enforce consistency.
1963  */
1964 static int
1965 check_mode_consistency(const struct ieee80211_channel *c, int mode)
1966 {
1967 	KASSERT(c != IEEE80211_CHAN_ANYC, ("oops, no channel"));
1968 
1969 	switch (mode) {
1970 	case IEEE80211_MODE_11B:
1971 		return (IEEE80211_IS_CHAN_B(c));
1972 	case IEEE80211_MODE_11G:
1973 		return (IEEE80211_IS_CHAN_ANYG(c) && !IEEE80211_IS_CHAN_HT(c));
1974 	case IEEE80211_MODE_11A:
1975 		return (IEEE80211_IS_CHAN_A(c) && !IEEE80211_IS_CHAN_HT(c));
1976 	case IEEE80211_MODE_STURBO_A:
1977 		return (IEEE80211_IS_CHAN_STURBO(c));
1978 	case IEEE80211_MODE_11NA:
1979 		return (IEEE80211_IS_CHAN_HTA(c));
1980 	case IEEE80211_MODE_11NG:
1981 		return (IEEE80211_IS_CHAN_HTG(c));
1982 	}
1983 	return 1;
1984 
1985 }
1986 
1987 /*
1988  * Common code to set the current channel.  If the device
1989  * is up and running this may result in an immediate channel
1990  * change or a kick of the state machine.
1991  */
1992 static int
1993 setcurchan(struct ieee80211vap *vap, struct ieee80211_channel *c)
1994 {
1995 	struct ieee80211com *ic = vap->iv_ic;
1996 	int error;
1997 
1998 	if (c != IEEE80211_CHAN_ANYC) {
1999 		if (IEEE80211_IS_CHAN_RADAR(c))
2000 			return EBUSY;	/* XXX better code? */
2001 		if (vap->iv_opmode == IEEE80211_M_HOSTAP) {
2002 			if (IEEE80211_IS_CHAN_NOHOSTAP(c))
2003 				return EINVAL;
2004 			if (!check_mode_consistency(c, vap->iv_des_mode))
2005 				return EINVAL;
2006 		} else if (vap->iv_opmode == IEEE80211_M_IBSS) {
2007 			if (IEEE80211_IS_CHAN_NOADHOC(c))
2008 				return EINVAL;
2009 		}
2010 		if ((vap->iv_state == IEEE80211_S_RUN || vap->iv_state == IEEE80211_S_SLEEP) &&
2011 		    vap->iv_bss->ni_chan == c)
2012 			return 0;	/* NB: nothing to do */
2013 	}
2014 	vap->iv_des_chan = c;
2015 
2016 	error = 0;
2017 	if (vap->iv_opmode == IEEE80211_M_MONITOR &&
2018 	    vap->iv_des_chan != IEEE80211_CHAN_ANYC) {
2019 		/*
2020 		 * Monitor mode can switch directly.
2021 		 */
2022 		if (IFNET_IS_UP_RUNNING(vap->iv_ifp)) {
2023 			/* XXX need state machine for other vap's to follow */
2024 			ieee80211_setcurchan(ic, vap->iv_des_chan);
2025 			vap->iv_bss->ni_chan = ic->ic_curchan;
2026 		} else {
2027 			ic->ic_curchan = vap->iv_des_chan;
2028 			ic->ic_rt = ieee80211_get_ratetable(ic->ic_curchan);
2029 		}
2030 	} else {
2031 		/*
2032 		 * Need to go through the state machine in case we
2033 		 * need to reassociate or the like.  The state machine
2034 		 * will pickup the desired channel and avoid scanning.
2035 		 */
2036 		if (IS_UP_AUTO(vap))
2037 			ieee80211_new_state(vap, IEEE80211_S_SCAN, 0);
2038 		else if (vap->iv_des_chan != IEEE80211_CHAN_ANYC) {
2039 			/*
2040 			 * When not up+running and a real channel has
2041 			 * been specified fix the current channel so
2042 			 * there is immediate feedback; e.g. via ifconfig.
2043 			 */
2044 			ic->ic_curchan = vap->iv_des_chan;
2045 			ic->ic_rt = ieee80211_get_ratetable(ic->ic_curchan);
2046 		}
2047 	}
2048 	return error;
2049 }
2050 
2051 /*
2052  * Old api for setting the current channel; this is
2053  * deprecated because channel numbers are ambiguous.
2054  */
2055 static int
2056 ieee80211_ioctl_setchannel(struct ieee80211vap *vap,
2057 	const struct ieee80211req *ireq)
2058 {
2059 	struct ieee80211com *ic = vap->iv_ic;
2060 	struct ieee80211_channel *c;
2061 
2062 	/* XXX 0xffff overflows 16-bit signed */
2063 	if (ireq->i_val == 0 ||
2064 	    ireq->i_val == (int16_t) IEEE80211_CHAN_ANY) {
2065 		c = IEEE80211_CHAN_ANYC;
2066 	} else {
2067 		struct ieee80211_channel *c2;
2068 
2069 		c = findchannel(ic, ireq->i_val, vap->iv_des_mode);
2070 		if (c == NULL) {
2071 			c = findchannel(ic, ireq->i_val,
2072 				IEEE80211_MODE_AUTO);
2073 			if (c == NULL)
2074 				return EINVAL;
2075 		}
2076 
2077 		/*
2078 		 * Fine tune channel selection based on desired mode:
2079 		 *   if 11b is requested, find the 11b version of any
2080 		 *      11g channel returned,
2081 		 *   if static turbo, find the turbo version of any
2082 		 *	11a channel return,
2083 		 *   if 11na is requested, find the ht version of any
2084 		 *      11a channel returned,
2085 		 *   if 11ng is requested, find the ht version of any
2086 		 *      11g channel returned,
2087 		 *   if 11ac is requested, find the 11ac version
2088 		 *      of any 11a/11na channel returned,
2089 		 *   (TBD) 11acg (2GHz VHT)
2090 		 *   otherwise we should be ok with what we've got.
2091 		 */
2092 		switch (vap->iv_des_mode) {
2093 		case IEEE80211_MODE_11B:
2094 			if (IEEE80211_IS_CHAN_ANYG(c)) {
2095 				c2 = findchannel(ic, ireq->i_val,
2096 					IEEE80211_MODE_11B);
2097 				/* NB: should not happen, =>'s 11g w/o 11b */
2098 				if (c2 != NULL)
2099 					c = c2;
2100 			}
2101 			break;
2102 		case IEEE80211_MODE_TURBO_A:
2103 			if (IEEE80211_IS_CHAN_A(c)) {
2104 				c2 = findchannel(ic, ireq->i_val,
2105 					IEEE80211_MODE_TURBO_A);
2106 				if (c2 != NULL)
2107 					c = c2;
2108 			}
2109 			break;
2110 		case IEEE80211_MODE_11NA:
2111 			if (IEEE80211_IS_CHAN_A(c)) {
2112 				c2 = findchannel(ic, ireq->i_val,
2113 					IEEE80211_MODE_11NA);
2114 				if (c2 != NULL)
2115 					c = c2;
2116 			}
2117 			break;
2118 		case IEEE80211_MODE_11NG:
2119 			if (IEEE80211_IS_CHAN_ANYG(c)) {
2120 				c2 = findchannel(ic, ireq->i_val,
2121 					IEEE80211_MODE_11NG);
2122 				if (c2 != NULL)
2123 					c = c2;
2124 			}
2125 			break;
2126 		case IEEE80211_MODE_VHT_2GHZ:
2127 			printf("%s: TBD\n", __func__);
2128 			break;
2129 		case IEEE80211_MODE_VHT_5GHZ:
2130 			if (IEEE80211_IS_CHAN_A(c)) {
2131 				c2 = findchannel(ic, ireq->i_val,
2132 					IEEE80211_MODE_VHT_5GHZ);
2133 				if (c2 != NULL)
2134 					c = c2;
2135 			}
2136 			break;
2137 		default:		/* NB: no static turboG */
2138 			break;
2139 		}
2140 	}
2141 	return setcurchan(vap, c);
2142 }
2143 
2144 /*
2145  * New/current api for setting the current channel; a complete
2146  * channel description is provide so there is no ambiguity in
2147  * identifying the channel.
2148  */
2149 static int
2150 ieee80211_ioctl_setcurchan(struct ieee80211vap *vap,
2151 	const struct ieee80211req *ireq)
2152 {
2153 	struct ieee80211com *ic = vap->iv_ic;
2154 	struct ieee80211_channel chan, *c;
2155 	int error;
2156 
2157 	if (ireq->i_len != sizeof(chan))
2158 		return EINVAL;
2159 	error = copyin(ireq->i_data, &chan, sizeof(chan));
2160 	if (error != 0)
2161 		return error;
2162 
2163 	/* XXX 0xffff overflows 16-bit signed */
2164 	if (chan.ic_freq == 0 || chan.ic_freq == IEEE80211_CHAN_ANY) {
2165 		c = IEEE80211_CHAN_ANYC;
2166 	} else {
2167 		c = ieee80211_find_channel(ic, chan.ic_freq, chan.ic_flags);
2168 		if (c == NULL)
2169 			return EINVAL;
2170 	}
2171 	return setcurchan(vap, c);
2172 }
2173 
2174 static int
2175 ieee80211_ioctl_setregdomain(struct ieee80211vap *vap,
2176 	const struct ieee80211req *ireq)
2177 {
2178 	struct ieee80211_regdomain_req *reg;
2179 	int nchans, error;
2180 
2181 	nchans = 1 + ((ireq->i_len - sizeof(struct ieee80211_regdomain_req)) /
2182 	    sizeof(struct ieee80211_channel));
2183 	if (!(1 <= nchans && nchans <= IEEE80211_CHAN_MAX)) {
2184 		IEEE80211_DPRINTF(vap, IEEE80211_MSG_IOCTL,
2185 		    "%s: bad # chans, i_len %d nchans %d\n", __func__,
2186 		    ireq->i_len, nchans);
2187 		return EINVAL;
2188 	}
2189 	reg = (struct ieee80211_regdomain_req *)
2190 	    IEEE80211_MALLOC(IEEE80211_REGDOMAIN_SIZE(nchans), M_TEMP,
2191 	      IEEE80211_M_NOWAIT | IEEE80211_M_ZERO);
2192 	if (reg == NULL) {
2193 		IEEE80211_DPRINTF(vap, IEEE80211_MSG_IOCTL,
2194 		    "%s: no memory, nchans %d\n", __func__, nchans);
2195 		return ENOMEM;
2196 	}
2197 	error = copyin(ireq->i_data, reg, IEEE80211_REGDOMAIN_SIZE(nchans));
2198 	if (error == 0) {
2199 		/* NB: validate inline channel count against storage size */
2200 		if (reg->chaninfo.ic_nchans != nchans) {
2201 			IEEE80211_DPRINTF(vap, IEEE80211_MSG_IOCTL,
2202 			    "%s: chan cnt mismatch, %d != %d\n", __func__,
2203 				reg->chaninfo.ic_nchans, nchans);
2204 			error = EINVAL;
2205 		} else
2206 			error = ieee80211_setregdomain(vap, reg);
2207 	}
2208 	IEEE80211_FREE(reg, M_TEMP);
2209 
2210 	return (error == 0 ? ENETRESET : error);
2211 }
2212 
2213 static int
2214 checkrate(const struct ieee80211_rateset *rs, int rate)
2215 {
2216 	int i;
2217 
2218 	if (rate == IEEE80211_FIXED_RATE_NONE)
2219 		return 1;
2220 	for (i = 0; i < rs->rs_nrates; i++)
2221 		if ((rs->rs_rates[i] & IEEE80211_RATE_VAL) == rate)
2222 			return 1;
2223 	return 0;
2224 }
2225 
2226 static int
2227 checkmcs(const struct ieee80211_htrateset *rs, int mcs)
2228 {
2229 	int rate_val = IEEE80211_RV(mcs);
2230 	int i;
2231 
2232 	if (mcs == IEEE80211_FIXED_RATE_NONE)
2233 		return 1;
2234 	if ((mcs & IEEE80211_RATE_MCS) == 0)	/* MCS always have 0x80 set */
2235 		return 0;
2236 	for (i = 0; i < rs->rs_nrates; i++)
2237 		if (IEEE80211_RV(rs->rs_rates[i]) == rate_val)
2238 			return 1;
2239 	return 0;
2240 }
2241 
2242 static int
2243 ieee80211_ioctl_setroam(struct ieee80211vap *vap,
2244         const struct ieee80211req *ireq)
2245 {
2246 	struct ieee80211com *ic = vap->iv_ic;
2247 	struct ieee80211_roamparams_req *parms;
2248 	struct ieee80211_roamparam *src, *dst;
2249 	const struct ieee80211_htrateset *rs_ht;
2250 	const struct ieee80211_rateset *rs;
2251 	int changed, error, mode, is11n, nmodes;
2252 
2253 	if (ireq->i_len != sizeof(vap->iv_roamparms))
2254 		return EINVAL;
2255 
2256 	parms = IEEE80211_MALLOC(sizeof(*parms), M_TEMP,
2257 	    IEEE80211_M_NOWAIT | IEEE80211_M_ZERO);
2258 	if (parms == NULL)
2259 		return ENOMEM;
2260 
2261 	error = copyin(ireq->i_data, parms, ireq->i_len);
2262 	if (error != 0)
2263 		goto fail;
2264 
2265 	changed = 0;
2266 	nmodes = IEEE80211_MODE_MAX;
2267 
2268 	/* validate parameters and check if anything changed */
2269 	for (mode = IEEE80211_MODE_11A; mode < nmodes; mode++) {
2270 		if (isclr(ic->ic_modecaps, mode))
2271 			continue;
2272 		src = &parms->params[mode];
2273 		dst = &vap->iv_roamparms[mode];
2274 		rs = &ic->ic_sup_rates[mode];	/* NB: 11n maps to legacy */
2275 		rs_ht = &ic->ic_sup_htrates;
2276 		is11n = (mode == IEEE80211_MODE_11NA ||
2277 			 mode == IEEE80211_MODE_11NG);
2278 		/* XXX TODO: 11ac */
2279 		if (src->rate != dst->rate) {
2280 			if (!checkrate(rs, src->rate) &&
2281 			    (!is11n || !checkmcs(rs_ht, src->rate))) {
2282 				error = EINVAL;
2283 				goto fail;
2284 			}
2285 			changed++;
2286 		}
2287 		if (src->rssi != dst->rssi)
2288 			changed++;
2289 	}
2290 	if (changed) {
2291 		/*
2292 		 * Copy new parameters in place and notify the
2293 		 * driver so it can push state to the device.
2294 		 */
2295 		/* XXX locking? */
2296 		for (mode = IEEE80211_MODE_11A; mode < nmodes; mode++) {
2297 			if (isset(ic->ic_modecaps, mode))
2298 				vap->iv_roamparms[mode] = parms->params[mode];
2299 		}
2300 
2301 		if (vap->iv_roaming == IEEE80211_ROAMING_DEVICE)
2302 			error = ERESTART;
2303 	}
2304 
2305 fail:	IEEE80211_FREE(parms, M_TEMP);
2306 	return error;
2307 }
2308 
2309 static int
2310 ieee80211_ioctl_settxparams(struct ieee80211vap *vap,
2311 	const struct ieee80211req *ireq)
2312 {
2313 	struct ieee80211com *ic = vap->iv_ic;
2314 	struct ieee80211_txparams_req parms;	/* XXX stack use? */
2315 	struct ieee80211_txparam *src, *dst;
2316 	const struct ieee80211_htrateset *rs_ht;
2317 	const struct ieee80211_rateset *rs;
2318 	int error, mode, changed, is11n, nmodes;
2319 
2320 	/* NB: accept short requests for backwards compat */
2321 	if (ireq->i_len > sizeof(parms))
2322 		return EINVAL;
2323 	error = copyin(ireq->i_data, &parms, ireq->i_len);
2324 	if (error != 0)
2325 		return error;
2326 	nmodes = ireq->i_len / sizeof(struct ieee80211_txparam);
2327 	changed = 0;
2328 	/* validate parameters and check if anything changed */
2329 	for (mode = IEEE80211_MODE_11A; mode < nmodes; mode++) {
2330 		if (isclr(ic->ic_modecaps, mode))
2331 			continue;
2332 		src = &parms.params[mode];
2333 		dst = &vap->iv_txparms[mode];
2334 		rs = &ic->ic_sup_rates[mode];	/* NB: 11n maps to legacy */
2335 		rs_ht = &ic->ic_sup_htrates;
2336 		is11n = (mode == IEEE80211_MODE_11NA ||
2337 			 mode == IEEE80211_MODE_11NG);
2338 		if (src->ucastrate != dst->ucastrate) {
2339 			if (!checkrate(rs, src->ucastrate) &&
2340 			    (!is11n || !checkmcs(rs_ht, src->ucastrate)))
2341 				return EINVAL;
2342 			changed++;
2343 		}
2344 		if (src->mcastrate != dst->mcastrate) {
2345 			if (!checkrate(rs, src->mcastrate) &&
2346 			    (!is11n || !checkmcs(rs_ht, src->mcastrate)))
2347 				return EINVAL;
2348 			changed++;
2349 		}
2350 		if (src->mgmtrate != dst->mgmtrate) {
2351 			if (!checkrate(rs, src->mgmtrate) &&
2352 			    (!is11n || !checkmcs(rs_ht, src->mgmtrate)))
2353 				return EINVAL;
2354 			changed++;
2355 		}
2356 		if (src->maxretry != dst->maxretry)	/* NB: no bounds */
2357 			changed++;
2358 	}
2359 	if (changed) {
2360 		/*
2361 		 * Copy new parameters in place and notify the
2362 		 * driver so it can push state to the device.
2363 		 */
2364 		for (mode = IEEE80211_MODE_11A; mode < nmodes; mode++) {
2365 			if (isset(ic->ic_modecaps, mode))
2366 				vap->iv_txparms[mode] = parms.params[mode];
2367 		}
2368 		/* XXX could be more intelligent,
2369 		   e.g. don't reset if setting not being used */
2370 		return ENETRESET;
2371 	}
2372 	return 0;
2373 }
2374 
2375 /*
2376  * Application Information Element support.
2377  */
2378 static int
2379 setappie(struct ieee80211_appie **aie, const struct ieee80211req *ireq)
2380 {
2381 	struct ieee80211_appie *app = *aie;
2382 	struct ieee80211_appie *napp;
2383 	int error;
2384 
2385 	if (ireq->i_len == 0) {		/* delete any existing ie */
2386 		if (app != NULL) {
2387 			*aie = NULL;	/* XXX racey */
2388 			IEEE80211_FREE(app, M_80211_NODE_IE);
2389 		}
2390 		return 0;
2391 	}
2392 	if (!(2 <= ireq->i_len && ireq->i_len <= IEEE80211_MAX_APPIE))
2393 		return EINVAL;
2394 	/*
2395 	 * Allocate a new appie structure and copy in the user data.
2396 	 * When done swap in the new structure.  Note that we do not
2397 	 * guard against users holding a ref to the old structure;
2398 	 * this must be handled outside this code.
2399 	 *
2400 	 * XXX bad bad bad
2401 	 */
2402 	napp = (struct ieee80211_appie *) IEEE80211_MALLOC(
2403 	    sizeof(struct ieee80211_appie) + ireq->i_len, M_80211_NODE_IE,
2404 	    IEEE80211_M_NOWAIT);
2405 	if (napp == NULL)
2406 		return ENOMEM;
2407 	/* XXX holding ic lock */
2408 	error = copyin(ireq->i_data, napp->ie_data, ireq->i_len);
2409 	if (error) {
2410 		IEEE80211_FREE(napp, M_80211_NODE_IE);
2411 		return error;
2412 	}
2413 	napp->ie_len = ireq->i_len;
2414 	*aie = napp;
2415 	if (app != NULL)
2416 		IEEE80211_FREE(app, M_80211_NODE_IE);
2417 	return 0;
2418 }
2419 
2420 static void
2421 setwparsnie(struct ieee80211vap *vap, uint8_t *ie, int space)
2422 {
2423 	/* validate data is present as best we can */
2424 	if (space == 0 || 2+ie[1] > space)
2425 		return;
2426 	if (ie[0] == IEEE80211_ELEMID_VENDOR)
2427 		vap->iv_wpa_ie = ie;
2428 	else if (ie[0] == IEEE80211_ELEMID_RSN)
2429 		vap->iv_rsn_ie = ie;
2430 }
2431 
2432 static int
2433 ieee80211_ioctl_setappie_locked(struct ieee80211vap *vap,
2434 	const struct ieee80211req *ireq, int fc0)
2435 {
2436 	int error;
2437 
2438 	IEEE80211_LOCK_ASSERT(vap->iv_ic);
2439 
2440 	switch (fc0 & IEEE80211_FC0_SUBTYPE_MASK) {
2441 	case IEEE80211_FC0_SUBTYPE_BEACON:
2442 		if (vap->iv_opmode != IEEE80211_M_HOSTAP &&
2443 		    vap->iv_opmode != IEEE80211_M_IBSS) {
2444 			error = EINVAL;
2445 			break;
2446 		}
2447 		error = setappie(&vap->iv_appie_beacon, ireq);
2448 		if (error == 0)
2449 			ieee80211_beacon_notify(vap, IEEE80211_BEACON_APPIE);
2450 		break;
2451 	case IEEE80211_FC0_SUBTYPE_PROBE_RESP:
2452 		error = setappie(&vap->iv_appie_proberesp, ireq);
2453 		break;
2454 	case IEEE80211_FC0_SUBTYPE_ASSOC_RESP:
2455 		if (vap->iv_opmode == IEEE80211_M_HOSTAP)
2456 			error = setappie(&vap->iv_appie_assocresp, ireq);
2457 		else
2458 			error = EINVAL;
2459 		break;
2460 	case IEEE80211_FC0_SUBTYPE_PROBE_REQ:
2461 		error = setappie(&vap->iv_appie_probereq, ireq);
2462 		break;
2463 	case IEEE80211_FC0_SUBTYPE_ASSOC_REQ:
2464 		if (vap->iv_opmode == IEEE80211_M_STA)
2465 			error = setappie(&vap->iv_appie_assocreq, ireq);
2466 		else
2467 			error = EINVAL;
2468 		break;
2469 	case (IEEE80211_APPIE_WPA & IEEE80211_FC0_SUBTYPE_MASK):
2470 		error = setappie(&vap->iv_appie_wpa, ireq);
2471 		if (error == 0) {
2472 			/*
2473 			 * Must split single blob of data into separate
2474 			 * WPA and RSN ie's because they go in different
2475 			 * locations in the mgt frames.
2476 			 * XXX use IEEE80211_IOC_WPA2 so user code does split
2477 			 */
2478 			vap->iv_wpa_ie = NULL;
2479 			vap->iv_rsn_ie = NULL;
2480 			if (vap->iv_appie_wpa != NULL) {
2481 				struct ieee80211_appie *appie =
2482 				    vap->iv_appie_wpa;
2483 				uint8_t *data = appie->ie_data;
2484 
2485 				/* XXX ie length validate is painful, cheat */
2486 				setwparsnie(vap, data, appie->ie_len);
2487 				setwparsnie(vap, data + 2 + data[1],
2488 				    appie->ie_len - (2 + data[1]));
2489 			}
2490 			if (vap->iv_opmode == IEEE80211_M_HOSTAP ||
2491 			    vap->iv_opmode == IEEE80211_M_IBSS) {
2492 				/*
2493 				 * Must rebuild beacon frame as the update
2494 				 * mechanism doesn't handle WPA/RSN ie's.
2495 				 * Could extend it but it doesn't normally
2496 				 * change; this is just to deal with hostapd
2497 				 * plumbing the ie after the interface is up.
2498 				 */
2499 				error = ENETRESET;
2500 			}
2501 		}
2502 		break;
2503 	default:
2504 		error = EINVAL;
2505 		break;
2506 	}
2507 	return error;
2508 }
2509 
2510 static int
2511 ieee80211_ioctl_setappie(struct ieee80211vap *vap,
2512 	const struct ieee80211req *ireq)
2513 {
2514 	struct ieee80211com *ic = vap->iv_ic;
2515 	int error;
2516 	uint8_t fc0;
2517 
2518 	fc0 = ireq->i_val & 0xff;
2519 	if ((fc0 & IEEE80211_FC0_TYPE_MASK) != IEEE80211_FC0_TYPE_MGT)
2520 		return EINVAL;
2521 	/* NB: could check iv_opmode and reject but hardly worth the effort */
2522 	IEEE80211_LOCK(ic);
2523 	error = ieee80211_ioctl_setappie_locked(vap, ireq, fc0);
2524 	IEEE80211_UNLOCK(ic);
2525 	return error;
2526 }
2527 
2528 static int
2529 ieee80211_ioctl_chanswitch(struct ieee80211vap *vap, struct ieee80211req *ireq)
2530 {
2531 	struct ieee80211com *ic = vap->iv_ic;
2532 	struct ieee80211_chanswitch_req csr;
2533 	struct ieee80211_channel *c;
2534 	int error;
2535 
2536 	if (ireq->i_len != sizeof(csr))
2537 		return EINVAL;
2538 	error = copyin(ireq->i_data, &csr, sizeof(csr));
2539 	if (error != 0)
2540 		return error;
2541 	/* XXX adhoc mode not supported */
2542 	if (vap->iv_opmode != IEEE80211_M_HOSTAP ||
2543 	    (vap->iv_flags & IEEE80211_F_DOTH) == 0)
2544 		return EOPNOTSUPP;
2545 	c = ieee80211_find_channel(ic,
2546 	    csr.csa_chan.ic_freq, csr.csa_chan.ic_flags);
2547 	if (c == NULL)
2548 		return ENOENT;
2549 	IEEE80211_LOCK(ic);
2550 	if ((ic->ic_flags & IEEE80211_F_CSAPENDING) == 0)
2551 		ieee80211_csa_startswitch(ic, c, csr.csa_mode, csr.csa_count);
2552 	else if (csr.csa_count == 0)
2553 		ieee80211_csa_cancelswitch(ic);
2554 	else
2555 		error = EBUSY;
2556 	IEEE80211_UNLOCK(ic);
2557 	return error;
2558 }
2559 
2560 static int
2561 ieee80211_scanreq(struct ieee80211vap *vap, struct ieee80211_scan_req *sr)
2562 {
2563 #define	IEEE80211_IOC_SCAN_FLAGS \
2564 	(IEEE80211_IOC_SCAN_NOPICK | IEEE80211_IOC_SCAN_ACTIVE | \
2565 	 IEEE80211_IOC_SCAN_PICK1ST | IEEE80211_IOC_SCAN_BGSCAN | \
2566 	 IEEE80211_IOC_SCAN_ONCE | IEEE80211_IOC_SCAN_NOBCAST | \
2567 	 IEEE80211_IOC_SCAN_NOJOIN | IEEE80211_IOC_SCAN_FLUSH | \
2568 	 IEEE80211_IOC_SCAN_CHECK)
2569 	struct ieee80211com *ic = vap->iv_ic;
2570 	int error, i;
2571 
2572 	/* convert duration */
2573 	if (sr->sr_duration == IEEE80211_IOC_SCAN_FOREVER)
2574 		sr->sr_duration = IEEE80211_SCAN_FOREVER;
2575 	else {
2576 		if (sr->sr_duration < IEEE80211_IOC_SCAN_DURATION_MIN ||
2577 		    sr->sr_duration > IEEE80211_IOC_SCAN_DURATION_MAX)
2578 			return EINVAL;
2579 		sr->sr_duration = msecs_to_ticks(sr->sr_duration);
2580 	}
2581 	/* convert min/max channel dwell */
2582 	if (sr->sr_mindwell != 0)
2583 		sr->sr_mindwell = msecs_to_ticks(sr->sr_mindwell);
2584 	if (sr->sr_maxdwell != 0)
2585 		sr->sr_maxdwell = msecs_to_ticks(sr->sr_maxdwell);
2586 	/* NB: silently reduce ssid count to what is supported */
2587 	if (sr->sr_nssid > IEEE80211_SCAN_MAX_SSID)
2588 		sr->sr_nssid = IEEE80211_SCAN_MAX_SSID;
2589 	for (i = 0; i < sr->sr_nssid; i++)
2590 		if (sr->sr_ssid[i].len > IEEE80211_NWID_LEN)
2591 			return EINVAL;
2592 	/* cleanse flags just in case, could reject if invalid flags */
2593 	sr->sr_flags &= IEEE80211_IOC_SCAN_FLAGS;
2594 	/*
2595 	 * Add an implicit NOPICK if the vap is not marked UP.  This
2596 	 * allows applications to scan without joining a bss (or picking
2597 	 * a channel and setting up a bss) and without forcing manual
2598 	 * roaming mode--you just need to mark the parent device UP.
2599 	 */
2600 	if ((vap->iv_ifp->if_flags & IFF_UP) == 0)
2601 		sr->sr_flags |= IEEE80211_IOC_SCAN_NOPICK;
2602 
2603 	IEEE80211_DPRINTF(vap, IEEE80211_MSG_SCAN,
2604 	    "%s: flags 0x%x%s duration 0x%x mindwell %u maxdwell %u nssid %d\n",
2605 	    __func__, sr->sr_flags,
2606 	    (vap->iv_ifp->if_flags & IFF_UP) == 0 ? " (!IFF_UP)" : "",
2607 	    sr->sr_duration, sr->sr_mindwell, sr->sr_maxdwell, sr->sr_nssid);
2608 	/*
2609 	 * If we are in INIT state then the driver has never had a chance
2610 	 * to setup hardware state to do a scan; we must use the state
2611 	 * machine to get us up to the SCAN state but once we reach SCAN
2612 	 * state we then want to use the supplied params.  Stash the
2613 	 * parameters in the vap and mark IEEE80211_FEXT_SCANREQ; the
2614 	 * state machines will recognize this and use the stashed params
2615 	 * to issue the scan request.
2616 	 *
2617 	 * Otherwise just invoke the scan machinery directly.
2618 	 */
2619 	IEEE80211_LOCK(ic);
2620 	if (ic->ic_nrunning == 0) {
2621 		IEEE80211_UNLOCK(ic);
2622 		return ENXIO;
2623 	}
2624 
2625 	if (vap->iv_state == IEEE80211_S_INIT) {
2626 		/* NB: clobbers previous settings */
2627 		vap->iv_scanreq_flags = sr->sr_flags;
2628 		vap->iv_scanreq_duration = sr->sr_duration;
2629 		vap->iv_scanreq_nssid = sr->sr_nssid;
2630 		for (i = 0; i < sr->sr_nssid; i++) {
2631 			vap->iv_scanreq_ssid[i].len = sr->sr_ssid[i].len;
2632 			memcpy(vap->iv_scanreq_ssid[i].ssid,
2633 			    sr->sr_ssid[i].ssid, sr->sr_ssid[i].len);
2634 		}
2635 		vap->iv_flags_ext |= IEEE80211_FEXT_SCANREQ;
2636 		IEEE80211_UNLOCK(ic);
2637 		ieee80211_new_state(vap, IEEE80211_S_SCAN, 0);
2638 	} else {
2639 		vap->iv_flags_ext &= ~IEEE80211_FEXT_SCANREQ;
2640 		IEEE80211_UNLOCK(ic);
2641 		if (sr->sr_flags & IEEE80211_IOC_SCAN_CHECK) {
2642 			error = ieee80211_check_scan(vap, sr->sr_flags,
2643 			    sr->sr_duration, sr->sr_mindwell, sr->sr_maxdwell,
2644 			    sr->sr_nssid,
2645 			    /* NB: cheat, we assume structures are compatible */
2646 			    (const struct ieee80211_scan_ssid *) &sr->sr_ssid[0]);
2647 		} else {
2648 			error = ieee80211_start_scan(vap, sr->sr_flags,
2649 			    sr->sr_duration, sr->sr_mindwell, sr->sr_maxdwell,
2650 			    sr->sr_nssid,
2651 			    /* NB: cheat, we assume structures are compatible */
2652 			    (const struct ieee80211_scan_ssid *) &sr->sr_ssid[0]);
2653 		}
2654 		if (error == 0)
2655 			return EINPROGRESS;
2656 	}
2657 	return 0;
2658 #undef IEEE80211_IOC_SCAN_FLAGS
2659 }
2660 
2661 static int
2662 ieee80211_ioctl_scanreq(struct ieee80211vap *vap, struct ieee80211req *ireq)
2663 {
2664 	struct ieee80211_scan_req *sr;
2665 	int error;
2666 
2667 	if (ireq->i_len != sizeof(*sr))
2668 		return EINVAL;
2669 	sr = IEEE80211_MALLOC(sizeof(*sr), M_TEMP,
2670 	     IEEE80211_M_NOWAIT | IEEE80211_M_ZERO);
2671 	if (sr == NULL)
2672 		return ENOMEM;
2673 	error = copyin(ireq->i_data, sr, sizeof(*sr));
2674 	if (error != 0)
2675 		goto bad;
2676 	error = ieee80211_scanreq(vap, sr);
2677 bad:
2678 	IEEE80211_FREE(sr, M_TEMP);
2679 	return error;
2680 }
2681 
2682 static int
2683 ieee80211_ioctl_setstavlan(struct ieee80211vap *vap, struct ieee80211req *ireq)
2684 {
2685 	struct ieee80211_node *ni;
2686 	struct ieee80211req_sta_vlan vlan;
2687 	int error;
2688 
2689 	if (ireq->i_len != sizeof(vlan))
2690 		return EINVAL;
2691 	error = copyin(ireq->i_data, &vlan, sizeof(vlan));
2692 	if (error != 0)
2693 		return error;
2694 	if (!IEEE80211_ADDR_EQ(vlan.sv_macaddr, zerobssid)) {
2695 		ni = ieee80211_find_vap_node(&vap->iv_ic->ic_sta, vap,
2696 		    vlan.sv_macaddr);
2697 		if (ni == NULL)
2698 			return ENOENT;
2699 	} else
2700 		ni = ieee80211_ref_node(vap->iv_bss);
2701 	ni->ni_vlan = vlan.sv_vlan;
2702 	ieee80211_free_node(ni);
2703 	return error;
2704 }
2705 
2706 static int
2707 isvap11g(const struct ieee80211vap *vap)
2708 {
2709 	const struct ieee80211_node *bss = vap->iv_bss;
2710 	return bss->ni_chan != IEEE80211_CHAN_ANYC &&
2711 	    IEEE80211_IS_CHAN_ANYG(bss->ni_chan);
2712 }
2713 
2714 static int
2715 isvapht(const struct ieee80211vap *vap)
2716 {
2717 	const struct ieee80211_node *bss = vap->iv_bss;
2718 	return bss->ni_chan != IEEE80211_CHAN_ANYC &&
2719 	    IEEE80211_IS_CHAN_HT(bss->ni_chan);
2720 }
2721 
2722 /*
2723  * Dummy ioctl set handler so the linker set is defined.
2724  */
2725 static int
2726 dummy_ioctl_set(struct ieee80211vap *vap, struct ieee80211req *ireq)
2727 {
2728 	return ENOSYS;
2729 }
2730 IEEE80211_IOCTL_SET(dummy, dummy_ioctl_set);
2731 
2732 static int
2733 ieee80211_ioctl_setdefault(struct ieee80211vap *vap, struct ieee80211req *ireq)
2734 {
2735 	ieee80211_ioctl_setfunc * const *set;
2736 	int error;
2737 
2738 	SET_FOREACH(set, ieee80211_ioctl_setset) {
2739 		error = (*set)(vap, ireq);
2740 		if (error != ENOSYS)
2741 			return error;
2742 	}
2743 	return EINVAL;
2744 }
2745 
2746 static int
2747 ieee80211_ioctl_set80211(struct ieee80211vap *vap, u_long cmd, struct ieee80211req *ireq)
2748 {
2749 	struct ieee80211com *ic = vap->iv_ic;
2750 	int error;
2751 	const struct ieee80211_authenticator *auth;
2752 	uint8_t tmpkey[IEEE80211_KEYBUF_SIZE];
2753 	char tmpssid[IEEE80211_NWID_LEN];
2754 	uint8_t tmpbssid[IEEE80211_ADDR_LEN];
2755 	struct ieee80211_key *k;
2756 	u_int kid;
2757 	uint32_t flags;
2758 
2759 	error = 0;
2760 	switch (ireq->i_type) {
2761 	case IEEE80211_IOC_SSID:
2762 		if (ireq->i_val != 0 ||
2763 		    ireq->i_len > IEEE80211_NWID_LEN)
2764 			return EINVAL;
2765 		error = copyin(ireq->i_data, tmpssid, ireq->i_len);
2766 		if (error)
2767 			break;
2768 		memset(vap->iv_des_ssid[0].ssid, 0, IEEE80211_NWID_LEN);
2769 		vap->iv_des_ssid[0].len = ireq->i_len;
2770 		memcpy(vap->iv_des_ssid[0].ssid, tmpssid, ireq->i_len);
2771 		vap->iv_des_nssid = (ireq->i_len > 0);
2772 		error = ENETRESET;
2773 		break;
2774 	case IEEE80211_IOC_WEP:
2775 		switch (ireq->i_val) {
2776 		case IEEE80211_WEP_OFF:
2777 			vap->iv_flags &= ~IEEE80211_F_PRIVACY;
2778 			vap->iv_flags &= ~IEEE80211_F_DROPUNENC;
2779 			break;
2780 		case IEEE80211_WEP_ON:
2781 			vap->iv_flags |= IEEE80211_F_PRIVACY;
2782 			vap->iv_flags |= IEEE80211_F_DROPUNENC;
2783 			break;
2784 		case IEEE80211_WEP_MIXED:
2785 			vap->iv_flags |= IEEE80211_F_PRIVACY;
2786 			vap->iv_flags &= ~IEEE80211_F_DROPUNENC;
2787 			break;
2788 		}
2789 		error = ENETRESET;
2790 		break;
2791 	case IEEE80211_IOC_WEPKEY:
2792 		kid = (u_int) ireq->i_val;
2793 		if (kid >= IEEE80211_WEP_NKID)
2794 			return EINVAL;
2795 		k = &vap->iv_nw_keys[kid];
2796 		if (ireq->i_len == 0) {
2797 			/* zero-len =>'s delete any existing key */
2798 			(void) ieee80211_crypto_delkey(vap, k);
2799 			break;
2800 		}
2801 		if (ireq->i_len > sizeof(tmpkey))
2802 			return EINVAL;
2803 		memset(tmpkey, 0, sizeof(tmpkey));
2804 		error = copyin(ireq->i_data, tmpkey, ireq->i_len);
2805 		if (error)
2806 			break;
2807 		ieee80211_key_update_begin(vap);
2808 		k->wk_keyix = kid;	/* NB: force fixed key id */
2809 		if (ieee80211_crypto_newkey(vap, IEEE80211_CIPHER_WEP,
2810 		    IEEE80211_KEY_XMIT | IEEE80211_KEY_RECV, k)) {
2811 			k->wk_keylen = ireq->i_len;
2812 			memcpy(k->wk_key, tmpkey, sizeof(tmpkey));
2813 			IEEE80211_ADDR_COPY(k->wk_macaddr, vap->iv_myaddr);
2814 			if  (!ieee80211_crypto_setkey(vap, k))
2815 				error = EINVAL;
2816 		} else
2817 			error = EINVAL;
2818 		ieee80211_key_update_end(vap);
2819 		break;
2820 	case IEEE80211_IOC_WEPTXKEY:
2821 		kid = (u_int) ireq->i_val;
2822 		if (kid >= IEEE80211_WEP_NKID &&
2823 		    (uint16_t) kid != IEEE80211_KEYIX_NONE)
2824 			return EINVAL;
2825 		/*
2826 		 * Firmware devices may need to be told about an explicit
2827 		 * key index here, versus just inferring it from the
2828 		 * key set / change.  Since we may also need to pause
2829 		 * things like transmit before the key is updated,
2830 		 * give the driver a chance to flush things by tying
2831 		 * into key update begin/end.
2832 		 */
2833 		ieee80211_key_update_begin(vap);
2834 		ieee80211_crypto_set_deftxkey(vap, kid);
2835 		ieee80211_key_update_end(vap);
2836 		break;
2837 	case IEEE80211_IOC_AUTHMODE:
2838 		switch (ireq->i_val) {
2839 		case IEEE80211_AUTH_WPA:
2840 		case IEEE80211_AUTH_8021X:	/* 802.1x */
2841 		case IEEE80211_AUTH_OPEN:	/* open */
2842 		case IEEE80211_AUTH_SHARED:	/* shared-key */
2843 		case IEEE80211_AUTH_AUTO:	/* auto */
2844 			auth = ieee80211_authenticator_get(ireq->i_val);
2845 			if (auth == NULL)
2846 				return EINVAL;
2847 			break;
2848 		default:
2849 			return EINVAL;
2850 		}
2851 		switch (ireq->i_val) {
2852 		case IEEE80211_AUTH_WPA:	/* WPA w/ 802.1x */
2853 			vap->iv_flags |= IEEE80211_F_PRIVACY;
2854 			ireq->i_val = IEEE80211_AUTH_8021X;
2855 			break;
2856 		case IEEE80211_AUTH_OPEN:	/* open */
2857 			vap->iv_flags &= ~(IEEE80211_F_WPA|IEEE80211_F_PRIVACY);
2858 			break;
2859 		case IEEE80211_AUTH_SHARED:	/* shared-key */
2860 		case IEEE80211_AUTH_8021X:	/* 802.1x */
2861 			vap->iv_flags &= ~IEEE80211_F_WPA;
2862 			/* both require a key so mark the PRIVACY capability */
2863 			vap->iv_flags |= IEEE80211_F_PRIVACY;
2864 			break;
2865 		case IEEE80211_AUTH_AUTO:	/* auto */
2866 			vap->iv_flags &= ~IEEE80211_F_WPA;
2867 			/* XXX PRIVACY handling? */
2868 			/* XXX what's the right way to do this? */
2869 			break;
2870 		}
2871 		/* NB: authenticator attach/detach happens on state change */
2872 		vap->iv_bss->ni_authmode = ireq->i_val;
2873 		/* XXX mixed/mode/usage? */
2874 		vap->iv_auth = auth;
2875 		error = ENETRESET;
2876 		break;
2877 	case IEEE80211_IOC_CHANNEL:
2878 		error = ieee80211_ioctl_setchannel(vap, ireq);
2879 		break;
2880 	case IEEE80211_IOC_POWERSAVE:
2881 		switch (ireq->i_val) {
2882 		case IEEE80211_POWERSAVE_OFF:
2883 			if (vap->iv_flags & IEEE80211_F_PMGTON) {
2884 				ieee80211_syncflag(vap, -IEEE80211_F_PMGTON);
2885 				error = ERESTART;
2886 			}
2887 			break;
2888 		case IEEE80211_POWERSAVE_ON:
2889 			if ((vap->iv_caps & IEEE80211_C_PMGT) == 0)
2890 				error = EOPNOTSUPP;
2891 			else if ((vap->iv_flags & IEEE80211_F_PMGTON) == 0) {
2892 				ieee80211_syncflag(vap, IEEE80211_F_PMGTON);
2893 				error = ERESTART;
2894 			}
2895 			break;
2896 		default:
2897 			error = EINVAL;
2898 			break;
2899 		}
2900 		break;
2901 	case IEEE80211_IOC_POWERSAVESLEEP:
2902 		if (ireq->i_val < 0)
2903 			return EINVAL;
2904 		ic->ic_lintval = ireq->i_val;
2905 		error = ERESTART;
2906 		break;
2907 	case IEEE80211_IOC_RTSTHRESHOLD:
2908 		if (!(IEEE80211_RTS_MIN <= ireq->i_val &&
2909 		      ireq->i_val <= IEEE80211_RTS_MAX))
2910 			return EINVAL;
2911 		vap->iv_rtsthreshold = ireq->i_val;
2912 		error = ERESTART;
2913 		break;
2914 	case IEEE80211_IOC_PROTMODE:
2915 		if (ireq->i_val > IEEE80211_PROT_RTSCTS)
2916 			return EINVAL;
2917 		vap->iv_protmode = (enum ieee80211_protmode)ireq->i_val;
2918 		/* NB: if not operating in 11g this can wait */
2919 		if (ic->ic_bsschan != IEEE80211_CHAN_ANYC &&
2920 		    IEEE80211_IS_CHAN_ANYG(ic->ic_bsschan))
2921 			error = ERESTART;
2922 		/* driver callback for protection mode update */
2923 		ieee80211_vap_update_erp_protmode(vap);
2924 		break;
2925 	case IEEE80211_IOC_TXPOWER:
2926 		if ((ic->ic_caps & IEEE80211_C_TXPMGT) == 0)
2927 			return EOPNOTSUPP;
2928 		if (!(IEEE80211_TXPOWER_MIN <= ireq->i_val &&
2929 		      ireq->i_val <= IEEE80211_TXPOWER_MAX))
2930 			return EINVAL;
2931 		ic->ic_txpowlimit = ireq->i_val;
2932 		error = ERESTART;
2933 		break;
2934 	case IEEE80211_IOC_ROAMING:
2935 		if (!(IEEE80211_ROAMING_DEVICE <= ireq->i_val &&
2936 		    ireq->i_val <= IEEE80211_ROAMING_MANUAL))
2937 			return EINVAL;
2938 		vap->iv_roaming = (enum ieee80211_roamingmode)ireq->i_val;
2939 		/* XXXX reset? */
2940 		break;
2941 	case IEEE80211_IOC_PRIVACY:
2942 		if (ireq->i_val) {
2943 			/* XXX check for key state? */
2944 			vap->iv_flags |= IEEE80211_F_PRIVACY;
2945 		} else
2946 			vap->iv_flags &= ~IEEE80211_F_PRIVACY;
2947 		/* XXX ERESTART? */
2948 		break;
2949 	case IEEE80211_IOC_DROPUNENCRYPTED:
2950 		if (ireq->i_val)
2951 			vap->iv_flags |= IEEE80211_F_DROPUNENC;
2952 		else
2953 			vap->iv_flags &= ~IEEE80211_F_DROPUNENC;
2954 		/* XXX ERESTART? */
2955 		break;
2956 	case IEEE80211_IOC_WPAKEY:
2957 		error = ieee80211_ioctl_setkey(vap, ireq);
2958 		break;
2959 	case IEEE80211_IOC_DELKEY:
2960 		error = ieee80211_ioctl_delkey(vap, ireq);
2961 		break;
2962 	case IEEE80211_IOC_MLME:
2963 		error = ieee80211_ioctl_setmlme(vap, ireq);
2964 		break;
2965 	case IEEE80211_IOC_COUNTERMEASURES:
2966 		if (ireq->i_val) {
2967 			if ((vap->iv_flags & IEEE80211_F_WPA) == 0)
2968 				return EOPNOTSUPP;
2969 			vap->iv_flags |= IEEE80211_F_COUNTERM;
2970 		} else
2971 			vap->iv_flags &= ~IEEE80211_F_COUNTERM;
2972 		/* XXX ERESTART? */
2973 		break;
2974 	case IEEE80211_IOC_WPA:
2975 		if (ireq->i_val > 3)
2976 			return EINVAL;
2977 		/* XXX verify ciphers available */
2978 		flags = vap->iv_flags & ~IEEE80211_F_WPA;
2979 		switch (ireq->i_val) {
2980 		case 0:
2981 			/* wpa_supplicant calls this to clear the WPA config */
2982 			break;
2983 		case 1:
2984 			if (!(vap->iv_caps & IEEE80211_C_WPA1))
2985 				return EOPNOTSUPP;
2986 			flags |= IEEE80211_F_WPA1;
2987 			break;
2988 		case 2:
2989 			if (!(vap->iv_caps & IEEE80211_C_WPA2))
2990 				return EOPNOTSUPP;
2991 			flags |= IEEE80211_F_WPA2;
2992 			break;
2993 		case 3:
2994 			if ((vap->iv_caps & IEEE80211_C_WPA) != IEEE80211_C_WPA)
2995 				return EOPNOTSUPP;
2996 			flags |= IEEE80211_F_WPA1 | IEEE80211_F_WPA2;
2997 			break;
2998 		default:	/*  Can't set any -> error */
2999 			return EOPNOTSUPP;
3000 		}
3001 		vap->iv_flags = flags;
3002 		error = ERESTART;	/* NB: can change beacon frame */
3003 		break;
3004 	case IEEE80211_IOC_WME:
3005 		if (ireq->i_val) {
3006 			if ((vap->iv_caps & IEEE80211_C_WME) == 0)
3007 				return EOPNOTSUPP;
3008 			ieee80211_syncflag(vap, IEEE80211_F_WME);
3009 		} else
3010 			ieee80211_syncflag(vap, -IEEE80211_F_WME);
3011 		error = ERESTART;	/* NB: can change beacon frame */
3012 		break;
3013 	case IEEE80211_IOC_HIDESSID:
3014 		if (ireq->i_val)
3015 			vap->iv_flags |= IEEE80211_F_HIDESSID;
3016 		else
3017 			vap->iv_flags &= ~IEEE80211_F_HIDESSID;
3018 		error = ERESTART;		/* XXX ENETRESET? */
3019 		break;
3020 	case IEEE80211_IOC_APBRIDGE:
3021 		if (ireq->i_val == 0)
3022 			vap->iv_flags |= IEEE80211_F_NOBRIDGE;
3023 		else
3024 			vap->iv_flags &= ~IEEE80211_F_NOBRIDGE;
3025 		break;
3026 	case IEEE80211_IOC_BSSID:
3027 		if (ireq->i_len != sizeof(tmpbssid))
3028 			return EINVAL;
3029 		error = copyin(ireq->i_data, tmpbssid, ireq->i_len);
3030 		if (error)
3031 			break;
3032 		IEEE80211_ADDR_COPY(vap->iv_des_bssid, tmpbssid);
3033 		if (IEEE80211_ADDR_EQ(vap->iv_des_bssid, zerobssid))
3034 			vap->iv_flags &= ~IEEE80211_F_DESBSSID;
3035 		else
3036 			vap->iv_flags |= IEEE80211_F_DESBSSID;
3037 		error = ENETRESET;
3038 		break;
3039 	case IEEE80211_IOC_CHANLIST:
3040 		error = ieee80211_ioctl_setchanlist(vap, ireq);
3041 		break;
3042 #define	OLD_IEEE80211_IOC_SCAN_REQ	23
3043 #ifdef OLD_IEEE80211_IOC_SCAN_REQ
3044 	case OLD_IEEE80211_IOC_SCAN_REQ:
3045 		IEEE80211_DPRINTF(vap, IEEE80211_MSG_SCAN,
3046 			"%s: active scan request\n", __func__);
3047 		/*
3048 		 * If we are in INIT state then the driver has never
3049 		 * had a chance to setup hardware state to do a scan;
3050 		 * use the state machine to get us up the SCAN state.
3051 		 * Otherwise just invoke the scan machinery to start
3052 		 * a one-time scan.
3053 		 */
3054 		if (vap->iv_state == IEEE80211_S_INIT)
3055 			ieee80211_new_state(vap, IEEE80211_S_SCAN, 0);
3056 		else
3057 			(void) ieee80211_start_scan(vap,
3058 				IEEE80211_SCAN_ACTIVE |
3059 				IEEE80211_SCAN_NOPICK |
3060 				IEEE80211_SCAN_ONCE,
3061 				IEEE80211_SCAN_FOREVER, 0, 0,
3062 				/* XXX use ioctl params */
3063 				vap->iv_des_nssid, vap->iv_des_ssid);
3064 		break;
3065 #endif /* OLD_IEEE80211_IOC_SCAN_REQ */
3066 	case IEEE80211_IOC_SCAN_REQ:
3067 		error = ieee80211_ioctl_scanreq(vap, ireq);
3068 		break;
3069 	case IEEE80211_IOC_SCAN_CANCEL:
3070 		IEEE80211_DPRINTF(vap, IEEE80211_MSG_SCAN,
3071 		    "%s: cancel scan\n", __func__);
3072 		ieee80211_cancel_scan(vap);
3073 		break;
3074 	case IEEE80211_IOC_HTCONF:
3075 		if (ireq->i_val & 1)
3076 			ieee80211_syncflag_ht(vap, IEEE80211_FHT_HT);
3077 		else
3078 			ieee80211_syncflag_ht(vap, -IEEE80211_FHT_HT);
3079 		if (ireq->i_val & 2)
3080 			ieee80211_syncflag_ht(vap, IEEE80211_FHT_USEHT40);
3081 		else
3082 			ieee80211_syncflag_ht(vap, -IEEE80211_FHT_USEHT40);
3083 		error = ENETRESET;
3084 		break;
3085 	case IEEE80211_IOC_ADDMAC:
3086 	case IEEE80211_IOC_DELMAC:
3087 		error = ieee80211_ioctl_macmac(vap, ireq);
3088 		break;
3089 	case IEEE80211_IOC_MACCMD:
3090 		error = ieee80211_ioctl_setmaccmd(vap, ireq);
3091 		break;
3092 	case IEEE80211_IOC_STA_STATS:
3093 		error = ieee80211_ioctl_setstastats(vap, ireq);
3094 		break;
3095 	case IEEE80211_IOC_STA_TXPOW:
3096 		error = ieee80211_ioctl_setstatxpow(vap, ireq);
3097 		break;
3098 	case IEEE80211_IOC_WME_CWMIN:		/* WME: CWmin */
3099 	case IEEE80211_IOC_WME_CWMAX:		/* WME: CWmax */
3100 	case IEEE80211_IOC_WME_AIFS:		/* WME: AIFS */
3101 	case IEEE80211_IOC_WME_TXOPLIMIT:	/* WME: txops limit */
3102 	case IEEE80211_IOC_WME_ACM:		/* WME: ACM (bss only) */
3103 	case IEEE80211_IOC_WME_ACKPOLICY:	/* WME: ACK policy (!bss only) */
3104 		error = ieee80211_ioctl_setwmeparam(vap, ireq);
3105 		break;
3106 	case IEEE80211_IOC_DTIM_PERIOD:
3107 		if (vap->iv_opmode != IEEE80211_M_HOSTAP &&
3108 		    vap->iv_opmode != IEEE80211_M_MBSS &&
3109 		    vap->iv_opmode != IEEE80211_M_IBSS)
3110 			return EINVAL;
3111 		if (IEEE80211_DTIM_MIN <= ireq->i_val &&
3112 		    ireq->i_val <= IEEE80211_DTIM_MAX) {
3113 			vap->iv_dtim_period = ireq->i_val;
3114 			error = ENETRESET;		/* requires restart */
3115 		} else
3116 			error = EINVAL;
3117 		break;
3118 	case IEEE80211_IOC_BEACON_INTERVAL:
3119 		if (vap->iv_opmode != IEEE80211_M_HOSTAP &&
3120 		    vap->iv_opmode != IEEE80211_M_MBSS &&
3121 		    vap->iv_opmode != IEEE80211_M_IBSS)
3122 			return EINVAL;
3123 		if (IEEE80211_BINTVAL_MIN <= ireq->i_val &&
3124 		    ireq->i_val <= IEEE80211_BINTVAL_MAX) {
3125 			ic->ic_bintval = ireq->i_val;
3126 			error = ENETRESET;		/* requires restart */
3127 		} else
3128 			error = EINVAL;
3129 		break;
3130 	case IEEE80211_IOC_PUREG:
3131 		if (ireq->i_val)
3132 			vap->iv_flags |= IEEE80211_F_PUREG;
3133 		else
3134 			vap->iv_flags &= ~IEEE80211_F_PUREG;
3135 		/* NB: reset only if we're operating on an 11g channel */
3136 		if (isvap11g(vap))
3137 			error = ENETRESET;
3138 		break;
3139 	case IEEE80211_IOC_QUIET:
3140 		vap->iv_quiet= ireq->i_val;
3141 		break;
3142 	case IEEE80211_IOC_QUIET_COUNT:
3143 		vap->iv_quiet_count=ireq->i_val;
3144 		break;
3145 	case IEEE80211_IOC_QUIET_PERIOD:
3146 		vap->iv_quiet_period=ireq->i_val;
3147 		break;
3148 	case IEEE80211_IOC_QUIET_OFFSET:
3149 		vap->iv_quiet_offset=ireq->i_val;
3150 		break;
3151 	case IEEE80211_IOC_QUIET_DUR:
3152 		if(ireq->i_val < vap->iv_bss->ni_intval)
3153 			vap->iv_quiet_duration = ireq->i_val;
3154 		else
3155 			error = EINVAL;
3156 		break;
3157 	case IEEE80211_IOC_BGSCAN:
3158 		if (ireq->i_val) {
3159 			if ((vap->iv_caps & IEEE80211_C_BGSCAN) == 0)
3160 				return EOPNOTSUPP;
3161 			vap->iv_flags |= IEEE80211_F_BGSCAN;
3162 		} else
3163 			vap->iv_flags &= ~IEEE80211_F_BGSCAN;
3164 		break;
3165 	case IEEE80211_IOC_BGSCAN_IDLE:
3166 		if (ireq->i_val >= IEEE80211_BGSCAN_IDLE_MIN)
3167 			vap->iv_bgscanidle = ireq->i_val*hz/1000;
3168 		else
3169 			error = EINVAL;
3170 		break;
3171 	case IEEE80211_IOC_BGSCAN_INTERVAL:
3172 		if (ireq->i_val >= IEEE80211_BGSCAN_INTVAL_MIN)
3173 			vap->iv_bgscanintvl = ireq->i_val*hz;
3174 		else
3175 			error = EINVAL;
3176 		break;
3177 	case IEEE80211_IOC_SCANVALID:
3178 		if (ireq->i_val >= IEEE80211_SCAN_VALID_MIN)
3179 			vap->iv_scanvalid = ireq->i_val*hz;
3180 		else
3181 			error = EINVAL;
3182 		break;
3183 	case IEEE80211_IOC_FRAGTHRESHOLD:
3184 		if ((vap->iv_caps & IEEE80211_C_TXFRAG) == 0 &&
3185 		    ireq->i_val != IEEE80211_FRAG_MAX)
3186 			return EOPNOTSUPP;
3187 		if (!(IEEE80211_FRAG_MIN <= ireq->i_val &&
3188 		      ireq->i_val <= IEEE80211_FRAG_MAX))
3189 			return EINVAL;
3190 		vap->iv_fragthreshold = ireq->i_val;
3191 		error = ERESTART;
3192 		break;
3193 	case IEEE80211_IOC_BURST:
3194 		if (ireq->i_val) {
3195 			if ((vap->iv_caps & IEEE80211_C_BURST) == 0)
3196 				return EOPNOTSUPP;
3197 			ieee80211_syncflag(vap, IEEE80211_F_BURST);
3198 		} else
3199 			ieee80211_syncflag(vap, -IEEE80211_F_BURST);
3200 		error = ERESTART;
3201 		break;
3202 	case IEEE80211_IOC_BMISSTHRESHOLD:
3203 		if (!(IEEE80211_HWBMISS_MIN <= ireq->i_val &&
3204 		      ireq->i_val <= IEEE80211_HWBMISS_MAX))
3205 			return EINVAL;
3206 		vap->iv_bmissthreshold = ireq->i_val;
3207 		error = ERESTART;
3208 		break;
3209 	case IEEE80211_IOC_CURCHAN:
3210 		error = ieee80211_ioctl_setcurchan(vap, ireq);
3211 		break;
3212 	case IEEE80211_IOC_SHORTGI:
3213 		if (ireq->i_val) {
3214 #define	IEEE80211_HTCAP_SHORTGI \
3215 	(IEEE80211_HTCAP_SHORTGI20 | IEEE80211_HTCAP_SHORTGI40)
3216 			if (((ireq->i_val ^ vap->iv_htcaps) & IEEE80211_HTCAP_SHORTGI) != 0)
3217 				return EINVAL;
3218 			if (ireq->i_val & IEEE80211_HTCAP_SHORTGI20)
3219 				vap->iv_flags_ht |= IEEE80211_FHT_SHORTGI20;
3220 			if (ireq->i_val & IEEE80211_HTCAP_SHORTGI40)
3221 				vap->iv_flags_ht |= IEEE80211_FHT_SHORTGI40;
3222 #undef IEEE80211_HTCAP_SHORTGI
3223 		} else
3224 			vap->iv_flags_ht &=
3225 			    ~(IEEE80211_FHT_SHORTGI20 | IEEE80211_FHT_SHORTGI40);
3226 		error = ERESTART;
3227 		break;
3228 	case IEEE80211_IOC_AMPDU:
3229 		if (ireq->i_val && (vap->iv_htcaps & IEEE80211_HTC_AMPDU) == 0)
3230 			return EINVAL;
3231 		if (ireq->i_val & 1)
3232 			vap->iv_flags_ht |= IEEE80211_FHT_AMPDU_TX;
3233 		else
3234 			vap->iv_flags_ht &= ~IEEE80211_FHT_AMPDU_TX;
3235 		if (ireq->i_val & 2)
3236 			vap->iv_flags_ht |= IEEE80211_FHT_AMPDU_RX;
3237 		else
3238 			vap->iv_flags_ht &= ~IEEE80211_FHT_AMPDU_RX;
3239 		/* NB: reset only if we're operating on an 11n channel */
3240 		if (isvapht(vap))
3241 			error = ERESTART;
3242 		break;
3243 	case IEEE80211_IOC_AMPDU_LIMIT:
3244 		/* XXX TODO: figure out ampdu_limit versus ampdu_rxmax */
3245 		if (!(IEEE80211_HTCAP_MAXRXAMPDU_8K <= ireq->i_val &&
3246 		      ireq->i_val <= IEEE80211_HTCAP_MAXRXAMPDU_64K))
3247 			return EINVAL;
3248 		if (vap->iv_opmode == IEEE80211_M_HOSTAP)
3249 			vap->iv_ampdu_rxmax = ireq->i_val;
3250 		else
3251 			vap->iv_ampdu_limit = ireq->i_val;
3252 		error = ERESTART;
3253 		break;
3254 	case IEEE80211_IOC_AMPDU_DENSITY:
3255 		if (!(IEEE80211_HTCAP_MPDUDENSITY_NA <= ireq->i_val &&
3256 		      ireq->i_val <= IEEE80211_HTCAP_MPDUDENSITY_16))
3257 			return EINVAL;
3258 		vap->iv_ampdu_density = ireq->i_val;
3259 		error = ERESTART;
3260 		break;
3261 	case IEEE80211_IOC_AMSDU:
3262 		if (ireq->i_val && (vap->iv_htcaps & IEEE80211_HTC_AMSDU) == 0)
3263 			return EINVAL;
3264 		if (ireq->i_val & 1)
3265 			vap->iv_flags_ht |= IEEE80211_FHT_AMSDU_TX;
3266 		else
3267 			vap->iv_flags_ht &= ~IEEE80211_FHT_AMSDU_TX;
3268 		if (ireq->i_val & 2)
3269 			vap->iv_flags_ht |= IEEE80211_FHT_AMSDU_RX;
3270 		else
3271 			vap->iv_flags_ht &= ~IEEE80211_FHT_AMSDU_RX;
3272 		/* NB: reset only if we're operating on an 11n channel */
3273 		if (isvapht(vap))
3274 			error = ERESTART;
3275 		break;
3276 	case IEEE80211_IOC_AMSDU_LIMIT:
3277 		/* XXX validate */
3278 		vap->iv_amsdu_limit = ireq->i_val;	/* XXX truncation? */
3279 		break;
3280 	case IEEE80211_IOC_PUREN:
3281 		if (ireq->i_val) {
3282 			if ((vap->iv_flags_ht & IEEE80211_FHT_HT) == 0)
3283 				return EINVAL;
3284 			vap->iv_flags_ht |= IEEE80211_FHT_PUREN;
3285 		} else
3286 			vap->iv_flags_ht &= ~IEEE80211_FHT_PUREN;
3287 		/* NB: reset only if we're operating on an 11n channel */
3288 		if (isvapht(vap))
3289 			error = ERESTART;
3290 		break;
3291 	case IEEE80211_IOC_DOTH:
3292 		if (ireq->i_val) {
3293 #if 0
3294 			/* XXX no capability */
3295 			if ((vap->iv_caps & IEEE80211_C_DOTH) == 0)
3296 				return EOPNOTSUPP;
3297 #endif
3298 			vap->iv_flags |= IEEE80211_F_DOTH;
3299 		} else
3300 			vap->iv_flags &= ~IEEE80211_F_DOTH;
3301 		error = ENETRESET;
3302 		break;
3303 	case IEEE80211_IOC_REGDOMAIN:
3304 		error = ieee80211_ioctl_setregdomain(vap, ireq);
3305 		break;
3306 	case IEEE80211_IOC_ROAM:
3307 		error = ieee80211_ioctl_setroam(vap, ireq);
3308 		break;
3309 	case IEEE80211_IOC_TXPARAMS:
3310 		error = ieee80211_ioctl_settxparams(vap, ireq);
3311 		break;
3312 	case IEEE80211_IOC_HTCOMPAT:
3313 		if (ireq->i_val) {
3314 			if ((vap->iv_flags_ht & IEEE80211_FHT_HT) == 0)
3315 				return EOPNOTSUPP;
3316 			vap->iv_flags_ht |= IEEE80211_FHT_HTCOMPAT;
3317 		} else
3318 			vap->iv_flags_ht &= ~IEEE80211_FHT_HTCOMPAT;
3319 		/* NB: reset only if we're operating on an 11n channel */
3320 		if (isvapht(vap))
3321 			error = ERESTART;
3322 		break;
3323 	case IEEE80211_IOC_DWDS:
3324 		if (ireq->i_val) {
3325 			/* NB: DWDS only makes sense for WDS-capable devices */
3326 			if ((ic->ic_caps & IEEE80211_C_WDS) == 0)
3327 				return EOPNOTSUPP;
3328 			/* NB: DWDS is used only with ap+sta vaps */
3329 			if (vap->iv_opmode != IEEE80211_M_HOSTAP &&
3330 			    vap->iv_opmode != IEEE80211_M_STA)
3331 				return EINVAL;
3332 			vap->iv_flags |= IEEE80211_F_DWDS;
3333 			if (vap->iv_opmode == IEEE80211_M_STA)
3334 				vap->iv_flags_ext |= IEEE80211_FEXT_4ADDR;
3335 		} else {
3336 			vap->iv_flags &= ~IEEE80211_F_DWDS;
3337 			if (vap->iv_opmode == IEEE80211_M_STA)
3338 				vap->iv_flags_ext &= ~IEEE80211_FEXT_4ADDR;
3339 		}
3340 		break;
3341 	case IEEE80211_IOC_INACTIVITY:
3342 		if (ireq->i_val)
3343 			vap->iv_flags_ext |= IEEE80211_FEXT_INACT;
3344 		else
3345 			vap->iv_flags_ext &= ~IEEE80211_FEXT_INACT;
3346 		break;
3347 	case IEEE80211_IOC_APPIE:
3348 		error = ieee80211_ioctl_setappie(vap, ireq);
3349 		break;
3350 	case IEEE80211_IOC_WPS:
3351 		if (ireq->i_val) {
3352 			if ((vap->iv_caps & IEEE80211_C_WPA) == 0)
3353 				return EOPNOTSUPP;
3354 			vap->iv_flags_ext |= IEEE80211_FEXT_WPS;
3355 		} else
3356 			vap->iv_flags_ext &= ~IEEE80211_FEXT_WPS;
3357 		break;
3358 	case IEEE80211_IOC_TSN:
3359 		if (ireq->i_val) {
3360 			if ((vap->iv_caps & IEEE80211_C_WPA) == 0)
3361 				return EOPNOTSUPP;
3362 			vap->iv_flags_ext |= IEEE80211_FEXT_TSN;
3363 		} else
3364 			vap->iv_flags_ext &= ~IEEE80211_FEXT_TSN;
3365 		break;
3366 	case IEEE80211_IOC_CHANSWITCH:
3367 		error = ieee80211_ioctl_chanswitch(vap, ireq);
3368 		break;
3369 	case IEEE80211_IOC_DFS:
3370 		if (ireq->i_val) {
3371 			if ((vap->iv_caps & IEEE80211_C_DFS) == 0)
3372 				return EOPNOTSUPP;
3373 			/* NB: DFS requires 11h support */
3374 			if ((vap->iv_flags & IEEE80211_F_DOTH) == 0)
3375 				return EINVAL;
3376 			vap->iv_flags_ext |= IEEE80211_FEXT_DFS;
3377 		} else
3378 			vap->iv_flags_ext &= ~IEEE80211_FEXT_DFS;
3379 		break;
3380 	case IEEE80211_IOC_DOTD:
3381 		if (ireq->i_val)
3382 			vap->iv_flags_ext |= IEEE80211_FEXT_DOTD;
3383 		else
3384 			vap->iv_flags_ext &= ~IEEE80211_FEXT_DOTD;
3385 		if (vap->iv_opmode == IEEE80211_M_STA)
3386 			error = ENETRESET;
3387 		break;
3388 	case IEEE80211_IOC_HTPROTMODE:
3389 		if (ireq->i_val > IEEE80211_PROT_RTSCTS)
3390 			return EINVAL;
3391 		vap->iv_htprotmode = ireq->i_val ?
3392 		    IEEE80211_PROT_RTSCTS : IEEE80211_PROT_NONE;
3393 		/* NB: if not operating in 11n this can wait */
3394 		if (isvapht(vap))
3395 			error = ERESTART;
3396 		/* Notify driver layer of HT protmode changes */
3397 		ieee80211_vap_update_ht_protmode(vap);
3398 		break;
3399 	case IEEE80211_IOC_STA_VLAN:
3400 		error = ieee80211_ioctl_setstavlan(vap, ireq);
3401 		break;
3402 	case IEEE80211_IOC_SMPS:
3403 		if ((ireq->i_val &~ IEEE80211_HTCAP_SMPS) != 0 ||
3404 		    ireq->i_val == 0x0008)	/* value of 2 is reserved */
3405 			return EINVAL;
3406 		if (ireq->i_val != IEEE80211_HTCAP_SMPS_OFF &&
3407 		    (vap->iv_htcaps & IEEE80211_HTC_SMPS) == 0)
3408 			return EOPNOTSUPP;
3409 		vap->iv_htcaps = (vap->iv_htcaps &~ IEEE80211_HTCAP_SMPS) |
3410 			ireq->i_val;
3411 		/* NB: if not operating in 11n this can wait */
3412 		if (isvapht(vap))
3413 			error = ERESTART;
3414 		break;
3415 	case IEEE80211_IOC_RIFS:
3416 		if (ireq->i_val != 0) {
3417 			if ((vap->iv_htcaps & IEEE80211_HTC_RIFS) == 0)
3418 				return EOPNOTSUPP;
3419 			vap->iv_flags_ht |= IEEE80211_FHT_RIFS;
3420 		} else
3421 			vap->iv_flags_ht &= ~IEEE80211_FHT_RIFS;
3422 		/* NB: if not operating in 11n this can wait */
3423 		if (isvapht(vap))
3424 			error = ERESTART;
3425 		break;
3426 	case IEEE80211_IOC_STBC:
3427 		/* Check if we can do STBC TX/RX before changing the setting */
3428 		if ((ireq->i_val & 1) &&
3429 		    ((vap->iv_htcaps & IEEE80211_HTCAP_TXSTBC) == 0))
3430 			return EOPNOTSUPP;
3431 		if ((ireq->i_val & 2) &&
3432 		    ((vap->iv_htcaps & IEEE80211_HTCAP_RXSTBC) == 0))
3433 			return EOPNOTSUPP;
3434 
3435 		/* TX */
3436 		if (ireq->i_val & 1)
3437 			vap->iv_flags_ht |= IEEE80211_FHT_STBC_TX;
3438 		else
3439 			vap->iv_flags_ht &= ~IEEE80211_FHT_STBC_TX;
3440 
3441 		/* RX */
3442 		if (ireq->i_val & 2)
3443 			vap->iv_flags_ht |= IEEE80211_FHT_STBC_RX;
3444 		else
3445 			vap->iv_flags_ht &= ~IEEE80211_FHT_STBC_RX;
3446 
3447 		/* NB: reset only if we're operating on an 11n channel */
3448 		if (isvapht(vap))
3449 			error = ERESTART;
3450 		break;
3451 	case IEEE80211_IOC_LDPC:
3452 		/* Check if we can do LDPC TX/RX before changing the setting */
3453 		if ((ireq->i_val & 1) &&
3454 		    (vap->iv_htcaps & IEEE80211_HTC_TXLDPC) == 0)
3455 			return EOPNOTSUPP;
3456 		if ((ireq->i_val & 2) &&
3457 		    (vap->iv_htcaps & IEEE80211_HTCAP_LDPC) == 0)
3458 			return EOPNOTSUPP;
3459 
3460 		/* TX */
3461 		if (ireq->i_val & 1)
3462 			vap->iv_flags_ht |= IEEE80211_FHT_LDPC_TX;
3463 		else
3464 			vap->iv_flags_ht &= ~IEEE80211_FHT_LDPC_TX;
3465 
3466 		/* RX */
3467 		if (ireq->i_val & 2)
3468 			vap->iv_flags_ht |= IEEE80211_FHT_LDPC_RX;
3469 		else
3470 			vap->iv_flags_ht &= ~IEEE80211_FHT_LDPC_RX;
3471 
3472 		/* NB: reset only if we're operating on an 11n channel */
3473 		if (isvapht(vap))
3474 			error = ERESTART;
3475 		break;
3476 	case IEEE80211_IOC_UAPSD:
3477 		if ((vap->iv_caps & IEEE80211_C_UAPSD) == 0)
3478 			return EOPNOTSUPP;
3479 		if (ireq->i_val == 0)
3480 			vap->iv_flags_ext &= ~IEEE80211_FEXT_UAPSD;
3481 		else if (ireq->i_val == 1)
3482 			vap->iv_flags_ext |= IEEE80211_FEXT_UAPSD;
3483 		else
3484 			return EINVAL;
3485 		break;
3486 
3487 	/* VHT */
3488 	case IEEE80211_IOC_VHTCONF:
3489 		if (ireq->i_val & 1)
3490 			ieee80211_syncflag_vht(vap, IEEE80211_FVHT_VHT);
3491 		else
3492 			ieee80211_syncflag_vht(vap, -IEEE80211_FVHT_VHT);
3493 
3494 		if (ireq->i_val & 2)
3495 			ieee80211_syncflag_vht(vap, IEEE80211_FVHT_USEVHT40);
3496 		else
3497 			ieee80211_syncflag_vht(vap, -IEEE80211_FVHT_USEVHT40);
3498 
3499 		if (ireq->i_val & 4)
3500 			ieee80211_syncflag_vht(vap, IEEE80211_FVHT_USEVHT80);
3501 		else
3502 			ieee80211_syncflag_vht(vap, -IEEE80211_FVHT_USEVHT80);
3503 
3504 		if (ireq->i_val & 8)
3505 			ieee80211_syncflag_vht(vap, IEEE80211_FVHT_USEVHT80P80);
3506 		else
3507 			ieee80211_syncflag_vht(vap, -IEEE80211_FVHT_USEVHT80P80);
3508 
3509 		if (ireq->i_val & 16)
3510 			ieee80211_syncflag_vht(vap, IEEE80211_FVHT_USEVHT160);
3511 		else
3512 			ieee80211_syncflag_vht(vap, -IEEE80211_FVHT_USEVHT160);
3513 
3514 		error = ENETRESET;
3515 		break;
3516 
3517 	default:
3518 		error = ieee80211_ioctl_setdefault(vap, ireq);
3519 		break;
3520 	}
3521 	/*
3522 	 * The convention is that ENETRESET means an operation
3523 	 * requires a complete re-initialization of the device (e.g.
3524 	 * changing something that affects the association state).
3525 	 * ERESTART means the request may be handled with only a
3526 	 * reload of the hardware state.  We hand ERESTART requests
3527 	 * to the iv_reset callback so the driver can decide.  If
3528 	 * a device does not fillin iv_reset then it defaults to one
3529 	 * that returns ENETRESET.  Otherwise a driver may return
3530 	 * ENETRESET (in which case a full reset will be done) or
3531 	 * 0 to mean there's no need to do anything (e.g. when the
3532 	 * change has no effect on the driver/device).
3533 	 */
3534 	if (error == ERESTART)
3535 		error = IFNET_IS_UP_RUNNING(vap->iv_ifp) ?
3536 		    vap->iv_reset(vap, ireq->i_type) : 0;
3537 	if (error == ENETRESET) {
3538 		/* XXX need to re-think AUTO handling */
3539 		if (IS_UP_AUTO(vap))
3540 			ieee80211_init(vap);
3541 		error = 0;
3542 	}
3543 	return error;
3544 }
3545 
3546 int
3547 ieee80211_ioctl(struct ifnet *ifp, u_long cmd, caddr_t data)
3548 {
3549 	struct ieee80211vap *vap = ifp->if_softc;
3550 	struct ieee80211com *ic = vap->iv_ic;
3551 	int error = 0, wait = 0, ic_used;
3552 	struct ifreq *ifr;
3553 	struct ifaddr *ifa;			/* XXX */
3554 
3555 	ic_used = (cmd != SIOCSIFMTU && cmd != SIOCG80211STATS);
3556 	if (ic_used && (error = ieee80211_com_vincref(vap)) != 0)
3557 		return (error);
3558 
3559 	switch (cmd) {
3560 	case SIOCSIFFLAGS:
3561 		IEEE80211_LOCK(ic);
3562 		if ((ifp->if_flags ^ vap->iv_ifflags) & IFF_PROMISC) {
3563 			/*
3564 			 * Enable promiscuous mode when:
3565 			 * 1. Interface is not a member of bridge, or
3566 			 * 2. Requested by user, or
3567 			 * 3. In monitor (or adhoc-demo) mode.
3568 			 */
3569 			if (ifp->if_bridge == NULL ||
3570 			    (ifp->if_flags & IFF_PPROMISC) != 0 ||
3571 			    vap->iv_opmode == IEEE80211_M_MONITOR ||
3572 			    (vap->iv_opmode == IEEE80211_M_AHDEMO &&
3573 			    (vap->iv_caps & IEEE80211_C_TDMA) == 0)) {
3574 				ieee80211_promisc(vap,
3575 				    ifp->if_flags & IFF_PROMISC);
3576 				vap->iv_ifflags ^= IFF_PROMISC;
3577 			}
3578 		}
3579 		if ((ifp->if_flags ^ vap->iv_ifflags) & IFF_ALLMULTI) {
3580 			ieee80211_allmulti(vap, ifp->if_flags & IFF_ALLMULTI);
3581 			vap->iv_ifflags ^= IFF_ALLMULTI;
3582 		}
3583 		if (ifp->if_flags & IFF_UP) {
3584 			/*
3585 			 * Bring ourself up unless we're already operational.
3586 			 * If we're the first vap and the parent is not up
3587 			 * then it will automatically be brought up as a
3588 			 * side-effect of bringing ourself up.
3589 			 */
3590 			if (vap->iv_state == IEEE80211_S_INIT) {
3591 				if (ic->ic_nrunning == 0)
3592 					wait = 1;
3593 				ieee80211_start_locked(vap);
3594 			}
3595 		} else if (ifp->if_drv_flags & IFF_DRV_RUNNING) {
3596 			/*
3597 			 * Stop ourself.  If we are the last vap to be
3598 			 * marked down the parent will also be taken down.
3599 			 */
3600 			if (ic->ic_nrunning == 1)
3601 				wait = 1;
3602 			ieee80211_stop_locked(vap);
3603 		}
3604 		IEEE80211_UNLOCK(ic);
3605 		/* Wait for parent ioctl handler if it was queued */
3606 		if (wait) {
3607 			struct epoch_tracker et;
3608 
3609 			ieee80211_waitfor_parent(ic);
3610 
3611 			/*
3612 			 * Check if the MAC address was changed
3613 			 * via SIOCSIFLLADDR ioctl.
3614 			 *
3615 			 * NB: device may be detached during initialization;
3616 			 * use if_ioctl for existence check.
3617 			 */
3618 			NET_EPOCH_ENTER(et);
3619 			if (ifp->if_ioctl == ieee80211_ioctl &&
3620 			    (ifp->if_flags & IFF_UP) == 0 &&
3621 			    !IEEE80211_ADDR_EQ(vap->iv_myaddr, IF_LLADDR(ifp)))
3622 				IEEE80211_ADDR_COPY(vap->iv_myaddr,
3623 				    IF_LLADDR(ifp));
3624 			NET_EPOCH_EXIT(et);
3625 		}
3626 		break;
3627 	case SIOCADDMULTI:
3628 	case SIOCDELMULTI:
3629 		ieee80211_runtask(ic, &ic->ic_mcast_task);
3630 		break;
3631 	case SIOCSIFMEDIA:
3632 	case SIOCGIFMEDIA:
3633 		ifr = (struct ifreq *)data;
3634 		error = ifmedia_ioctl(ifp, ifr, &vap->iv_media, cmd);
3635 		break;
3636 	case SIOCG80211:
3637 		error = ieee80211_ioctl_get80211(vap, cmd,
3638 				(struct ieee80211req *) data);
3639 		break;
3640 	case SIOCS80211:
3641 		/* XXX TODO: move priv check to ieee80211_freebsd.c */
3642 		error = priv_check(curthread, PRIV_NET80211_VAP_MANAGE);
3643 		if (error == 0)
3644 			error = ieee80211_ioctl_set80211(vap, cmd,
3645 					(struct ieee80211req *) data);
3646 		break;
3647 	case SIOCG80211STATS:
3648 		ifr = (struct ifreq *)data;
3649 		copyout(&vap->iv_stats, ifr_data_get_ptr(ifr),
3650 		    sizeof (vap->iv_stats));
3651 		break;
3652 	case SIOCSIFMTU:
3653 		ifr = (struct ifreq *)data;
3654 		if (!(IEEE80211_MTU_MIN <= ifr->ifr_mtu &&
3655 		    ifr->ifr_mtu <= IEEE80211_MTU_MAX))
3656 			error = EINVAL;
3657 		else
3658 			ifp->if_mtu = ifr->ifr_mtu;
3659 		break;
3660 	case SIOCSIFADDR:
3661 		/*
3662 		 * XXX Handle this directly so we can suppress if_init calls.
3663 		 * XXX This should be done in ether_ioctl but for the moment
3664 		 * XXX there are too many other parts of the system that
3665 		 * XXX set IFF_UP and so suppress if_init being called when
3666 		 * XXX it should be.
3667 		 */
3668 		ifa = (struct ifaddr *) data;
3669 		switch (ifa->ifa_addr->sa_family) {
3670 #ifdef INET
3671 		case AF_INET:
3672 			if ((ifp->if_flags & IFF_UP) == 0) {
3673 				ifp->if_flags |= IFF_UP;
3674 				ifp->if_init(ifp->if_softc);
3675 			}
3676 			arp_ifinit(ifp, ifa);
3677 			break;
3678 #endif
3679 		default:
3680 			if ((ifp->if_flags & IFF_UP) == 0) {
3681 				ifp->if_flags |= IFF_UP;
3682 				ifp->if_init(ifp->if_softc);
3683 			}
3684 			break;
3685 		}
3686 		break;
3687 	case SIOCSIFLLADDR:
3688 		/* XXX TODO: move priv check to ieee80211_freebsd.c */
3689 		error = priv_check(curthread, PRIV_NET80211_VAP_SETMAC);
3690 		if (error == 0)
3691 			break;
3692 		/* Fallthrough */
3693 	default:
3694 		/*
3695 		 * Pass unknown ioctls first to the driver, and if it
3696 		 * returns ENOTTY, then to the generic Ethernet handler.
3697 		 */
3698 		if (ic->ic_ioctl != NULL &&
3699 		    (error = ic->ic_ioctl(ic, cmd, data)) != ENOTTY)
3700 			break;
3701 		error = ether_ioctl(ifp, cmd, data);
3702 		break;
3703 	}
3704 
3705 	if (ic_used)
3706 		ieee80211_com_vdecref(vap);
3707 
3708 	return (error);
3709 }
3710