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1 /*-
2  * Copyright (c) 2001 Atsushi Onoe
3  * Copyright (c) 2002-2009 Sam Leffler, Errno Consulting
4  * All rights reserved.
5  *
6  * Redistribution and use in source and binary forms, with or without
7  * modification, are permitted provided that the following conditions
8  * are met:
9  * 1. Redistributions of source code must retain the above copyright
10  *    notice, this list of conditions and the following disclaimer.
11  * 2. Redistributions in binary form must reproduce the above copyright
12  *    notice, this list of conditions and the following disclaimer in the
13  *    documentation and/or other materials provided with the distribution.
14  *
15  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
16  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
17  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
18  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
19  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
20  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
21  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
22  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
23  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
24  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
25  */
26
27 #include <sys/cdefs.h>
28 __FBSDID("$FreeBSD$");
29
30 /*
31  * IEEE 802.11 ioctl support (FreeBSD-specific)
32  */
33
34 #include "opt_inet.h"
35 #include "opt_ipx.h"
36 #include "opt_wlan.h"
37
38 #include <sys/endian.h>
39 #include <sys/param.h>
40 #include <sys/kernel.h>
41 #include <sys/priv.h>
42 #include <sys/socket.h>
43 #include <sys/sockio.h>
44 #include <sys/systm.h>
45  
46 #include <net/if.h>
47 #include <net/if_dl.h>
48 #include <net/if_media.h>
49 #include <net/ethernet.h>
50
51 #ifdef INET
52 #include <netinet/in.h>
53 #include <netinet/if_ether.h>
54 #endif
55
56 #ifdef IPX
57 #include <netipx/ipx.h>
58 #include <netipx/ipx_if.h>
59 #endif
60
61 #include <net80211/ieee80211_var.h>
62 #include <net80211/ieee80211_ioctl.h>
63 #include <net80211/ieee80211_regdomain.h>
64 #include <net80211/ieee80211_input.h>
65
66 #define IS_UP_AUTO(_vap) \
67         (IFNET_IS_UP_RUNNING((_vap)->iv_ifp) && \
68          (_vap)->iv_roaming == IEEE80211_ROAMING_AUTO)
69
70 static const uint8_t zerobssid[IEEE80211_ADDR_LEN];
71 static struct ieee80211_channel *findchannel(struct ieee80211com *,
72                 int ieee, int mode);
73 static int ieee80211_scanreq(struct ieee80211vap *,
74                 struct ieee80211_scan_req *);
75
76 static __noinline int
77 ieee80211_ioctl_getkey(struct ieee80211vap *vap, struct ieee80211req *ireq)
78 {
79         struct ieee80211com *ic = vap->iv_ic;
80         struct ieee80211_node *ni;
81         struct ieee80211req_key ik;
82         struct ieee80211_key *wk;
83         const struct ieee80211_cipher *cip;
84         u_int kid;
85         int error;
86
87         if (ireq->i_len != sizeof(ik))
88                 return EINVAL;
89         error = copyin(ireq->i_data, &ik, sizeof(ik));
90         if (error)
91                 return error;
92         kid = ik.ik_keyix;
93         if (kid == IEEE80211_KEYIX_NONE) {
94                 ni = ieee80211_find_vap_node(&ic->ic_sta, vap, ik.ik_macaddr);
95                 if (ni == NULL)
96                         return ENOENT;
97                 wk = &ni->ni_ucastkey;
98         } else {
99                 if (kid >= IEEE80211_WEP_NKID)
100                         return EINVAL;
101                 wk = &vap->iv_nw_keys[kid];
102                 IEEE80211_ADDR_COPY(&ik.ik_macaddr, vap->iv_bss->ni_macaddr);
103                 ni = NULL;
104         }
105         cip = wk->wk_cipher;
106         ik.ik_type = cip->ic_cipher;
107         ik.ik_keylen = wk->wk_keylen;
108         ik.ik_flags = wk->wk_flags & (IEEE80211_KEY_XMIT | IEEE80211_KEY_RECV);
109         if (wk->wk_keyix == vap->iv_def_txkey)
110                 ik.ik_flags |= IEEE80211_KEY_DEFAULT;
111         if (priv_check(curthread, PRIV_NET80211_GETKEY) == 0) {
112                 /* NB: only root can read key data */
113                 ik.ik_keyrsc = wk->wk_keyrsc[IEEE80211_NONQOS_TID];
114                 ik.ik_keytsc = wk->wk_keytsc;
115                 memcpy(ik.ik_keydata, wk->wk_key, wk->wk_keylen);
116                 if (cip->ic_cipher == IEEE80211_CIPHER_TKIP) {
117                         memcpy(ik.ik_keydata+wk->wk_keylen,
118                                 wk->wk_key + IEEE80211_KEYBUF_SIZE,
119                                 IEEE80211_MICBUF_SIZE);
120                         ik.ik_keylen += IEEE80211_MICBUF_SIZE;
121                 }
122         } else {
123                 ik.ik_keyrsc = 0;
124                 ik.ik_keytsc = 0;
125                 memset(ik.ik_keydata, 0, sizeof(ik.ik_keydata));
126         }
127         if (ni != NULL)
128                 ieee80211_free_node(ni);
129         return copyout(&ik, ireq->i_data, sizeof(ik));
130 }
131
132 static __noinline int
133 ieee80211_ioctl_getchanlist(struct ieee80211vap *vap, struct ieee80211req *ireq)
134 {
135         struct ieee80211com *ic = vap->iv_ic;
136
137         if (sizeof(ic->ic_chan_active) < ireq->i_len)
138                 ireq->i_len = sizeof(ic->ic_chan_active);
139         return copyout(&ic->ic_chan_active, ireq->i_data, ireq->i_len);
140 }
141
142 static __noinline int
143 ieee80211_ioctl_getchaninfo(struct ieee80211vap *vap, struct ieee80211req *ireq)
144 {
145         struct ieee80211com *ic = vap->iv_ic;
146         uint32_t space;
147
148         space = __offsetof(struct ieee80211req_chaninfo,
149                         ic_chans[ic->ic_nchans]);
150         if (space > ireq->i_len)
151                 space = ireq->i_len;
152         /* XXX assumes compatible layout */
153         return copyout(&ic->ic_nchans, ireq->i_data, space);
154 }
155
156 static __noinline int
157 ieee80211_ioctl_getwpaie(struct ieee80211vap *vap,
158         struct ieee80211req *ireq, int req)
159 {
160         struct ieee80211_node *ni;
161         struct ieee80211req_wpaie2 wpaie;
162         int error;
163
164         if (ireq->i_len < IEEE80211_ADDR_LEN)
165                 return EINVAL;
166         error = copyin(ireq->i_data, wpaie.wpa_macaddr, IEEE80211_ADDR_LEN);
167         if (error != 0)
168                 return error;
169         ni = ieee80211_find_vap_node(&vap->iv_ic->ic_sta, vap, wpaie.wpa_macaddr);
170         if (ni == NULL)
171                 return ENOENT;
172         memset(wpaie.wpa_ie, 0, sizeof(wpaie.wpa_ie));
173         if (ni->ni_ies.wpa_ie != NULL) {
174                 int ielen = ni->ni_ies.wpa_ie[1] + 2;
175                 if (ielen > sizeof(wpaie.wpa_ie))
176                         ielen = sizeof(wpaie.wpa_ie);
177                 memcpy(wpaie.wpa_ie, ni->ni_ies.wpa_ie, ielen);
178         }
179         if (req == IEEE80211_IOC_WPAIE2) {
180                 memset(wpaie.rsn_ie, 0, sizeof(wpaie.rsn_ie));
181                 if (ni->ni_ies.rsn_ie != NULL) {
182                         int ielen = ni->ni_ies.rsn_ie[1] + 2;
183                         if (ielen > sizeof(wpaie.rsn_ie))
184                                 ielen = sizeof(wpaie.rsn_ie);
185                         memcpy(wpaie.rsn_ie, ni->ni_ies.rsn_ie, ielen);
186                 }
187                 if (ireq->i_len > sizeof(struct ieee80211req_wpaie2))
188                         ireq->i_len = sizeof(struct ieee80211req_wpaie2);
189         } else {
190                 /* compatibility op, may overwrite wpa ie */
191                 /* XXX check ic_flags? */
192                 if (ni->ni_ies.rsn_ie != NULL) {
193                         int ielen = ni->ni_ies.rsn_ie[1] + 2;
194                         if (ielen > sizeof(wpaie.wpa_ie))
195                                 ielen = sizeof(wpaie.wpa_ie);
196                         memcpy(wpaie.wpa_ie, ni->ni_ies.rsn_ie, ielen);
197                 }
198                 if (ireq->i_len > sizeof(struct ieee80211req_wpaie))
199                         ireq->i_len = sizeof(struct ieee80211req_wpaie);
200         }
201         ieee80211_free_node(ni);
202         return copyout(&wpaie, ireq->i_data, ireq->i_len);
203 }
204
205 static __noinline int
206 ieee80211_ioctl_getstastats(struct ieee80211vap *vap, struct ieee80211req *ireq)
207 {
208         struct ieee80211_node *ni;
209         uint8_t macaddr[IEEE80211_ADDR_LEN];
210         const size_t off = __offsetof(struct ieee80211req_sta_stats, is_stats);
211         int error;
212
213         if (ireq->i_len < off)
214                 return EINVAL;
215         error = copyin(ireq->i_data, macaddr, IEEE80211_ADDR_LEN);
216         if (error != 0)
217                 return error;
218         ni = ieee80211_find_vap_node(&vap->iv_ic->ic_sta, vap, macaddr);
219         if (ni == NULL)
220                 return ENOENT;
221         if (ireq->i_len > sizeof(struct ieee80211req_sta_stats))
222                 ireq->i_len = sizeof(struct ieee80211req_sta_stats);
223         /* NB: copy out only the statistics */
224         error = copyout(&ni->ni_stats, (uint8_t *) ireq->i_data + off,
225                         ireq->i_len - off);
226         ieee80211_free_node(ni);
227         return error;
228 }
229
230 struct scanreq {
231         struct ieee80211req_scan_result *sr;
232         size_t space;
233 };
234
235 static size_t
236 scan_space(const struct ieee80211_scan_entry *se, int *ielen)
237 {
238         size_t len;
239
240         *ielen = se->se_ies.len;
241         /*
242          * NB: ie's can be no more than 255 bytes and the max 802.11
243          * packet is <3Kbytes so we are sure this doesn't overflow
244          * 16-bits; if this is a concern we can drop the ie's.
245          */
246         len = sizeof(struct ieee80211req_scan_result) + se->se_ssid[1] +
247             se->se_meshid[1] + *ielen;
248         return roundup(len, sizeof(uint32_t));
249 }
250
251 static void
252 get_scan_space(void *arg, const struct ieee80211_scan_entry *se)
253 {
254         struct scanreq *req = arg;
255         int ielen;
256
257         req->space += scan_space(se, &ielen);
258 }
259
260 static __noinline void
261 get_scan_result(void *arg, const struct ieee80211_scan_entry *se)
262 {
263         struct scanreq *req = arg;
264         struct ieee80211req_scan_result *sr;
265         int ielen, len, nr, nxr;
266         uint8_t *cp;
267
268         len = scan_space(se, &ielen);
269         if (len > req->space)
270                 return;
271
272         sr = req->sr;
273         KASSERT(len <= 65535 && ielen <= 65535,
274             ("len %u ssid %u ie %u", len, se->se_ssid[1], ielen));
275         sr->isr_len = len;
276         sr->isr_ie_off = sizeof(struct ieee80211req_scan_result);
277         sr->isr_ie_len = ielen;
278         sr->isr_freq = se->se_chan->ic_freq;
279         sr->isr_flags = se->se_chan->ic_flags;
280         sr->isr_rssi = se->se_rssi;
281         sr->isr_noise = se->se_noise;
282         sr->isr_intval = se->se_intval;
283         sr->isr_capinfo = se->se_capinfo;
284         sr->isr_erp = se->se_erp;
285         IEEE80211_ADDR_COPY(sr->isr_bssid, se->se_bssid);
286         nr = min(se->se_rates[1], IEEE80211_RATE_MAXSIZE);
287         memcpy(sr->isr_rates, se->se_rates+2, nr);
288         nxr = min(se->se_xrates[1], IEEE80211_RATE_MAXSIZE - nr);
289         memcpy(sr->isr_rates+nr, se->se_xrates+2, nxr);
290         sr->isr_nrates = nr + nxr;
291
292         /* copy SSID */
293         sr->isr_ssid_len = se->se_ssid[1];
294         cp = ((uint8_t *)sr) + sr->isr_ie_off;
295         memcpy(cp, se->se_ssid+2, sr->isr_ssid_len);
296
297         /* copy mesh id */
298         cp += sr->isr_ssid_len;
299         sr->isr_meshid_len = se->se_meshid[1];
300         memcpy(cp, se->se_meshid+2, sr->isr_meshid_len);
301         cp += sr->isr_meshid_len;
302
303         if (ielen)
304                 memcpy(cp, se->se_ies.data, ielen);
305
306         req->space -= len;
307         req->sr = (struct ieee80211req_scan_result *)(((uint8_t *)sr) + len);
308 }
309
310 static __noinline int
311 ieee80211_ioctl_getscanresults(struct ieee80211vap *vap,
312         struct ieee80211req *ireq)
313 {
314         struct scanreq req;
315         int error;
316
317         if (ireq->i_len < sizeof(struct scanreq))
318                 return EFAULT;
319
320         error = 0;
321         req.space = 0;
322         ieee80211_scan_iterate(vap, get_scan_space, &req);
323         if (req.space > ireq->i_len)
324                 req.space = ireq->i_len;
325         if (req.space > 0) {
326                 uint32_t space;
327                 void *p;
328
329                 space = req.space;
330                 /* XXX M_WAITOK after driver lock released */
331                 p = malloc(space, M_TEMP, M_NOWAIT | M_ZERO);
332                 if (p == NULL)
333                         return ENOMEM;
334                 req.sr = p;
335                 ieee80211_scan_iterate(vap, get_scan_result, &req);
336                 ireq->i_len = space - req.space;
337                 error = copyout(p, ireq->i_data, ireq->i_len);
338                 free(p, M_TEMP);
339         } else
340                 ireq->i_len = 0;
341
342         return error;
343 }
344
345 struct stainforeq {
346         struct ieee80211vap *vap;
347         struct ieee80211req_sta_info *si;
348         size_t  space;
349 };
350
351 static size_t
352 sta_space(const struct ieee80211_node *ni, size_t *ielen)
353 {
354         *ielen = ni->ni_ies.len;
355         return roundup(sizeof(struct ieee80211req_sta_info) + *ielen,
356                       sizeof(uint32_t));
357 }
358
359 static void
360 get_sta_space(void *arg, struct ieee80211_node *ni)
361 {
362         struct stainforeq *req = arg;
363         size_t ielen;
364
365         if (req->vap != ni->ni_vap)
366                 return;
367         if (ni->ni_vap->iv_opmode == IEEE80211_M_HOSTAP &&
368             ni->ni_associd == 0)        /* only associated stations */
369                 return;
370         req->space += sta_space(ni, &ielen);
371 }
372
373 static __noinline void
374 get_sta_info(void *arg, struct ieee80211_node *ni)
375 {
376         struct stainforeq *req = arg;
377         struct ieee80211vap *vap = ni->ni_vap;
378         struct ieee80211req_sta_info *si;
379         size_t ielen, len;
380         uint8_t *cp;
381
382         if (req->vap != ni->ni_vap)
383                 return;
384         if (vap->iv_opmode == IEEE80211_M_HOSTAP &&
385             ni->ni_associd == 0)        /* only associated stations */
386                 return;
387         if (ni->ni_chan == IEEE80211_CHAN_ANYC) /* XXX bogus entry */
388                 return;
389         len = sta_space(ni, &ielen);
390         if (len > req->space)
391                 return;
392         si = req->si;
393         si->isi_len = len;
394         si->isi_ie_off = sizeof(struct ieee80211req_sta_info);
395         si->isi_ie_len = ielen;
396         si->isi_freq = ni->ni_chan->ic_freq;
397         si->isi_flags = ni->ni_chan->ic_flags;
398         si->isi_state = ni->ni_flags;
399         si->isi_authmode = ni->ni_authmode;
400         vap->iv_ic->ic_node_getsignal(ni, &si->isi_rssi, &si->isi_noise);
401         vap->iv_ic->ic_node_getmimoinfo(ni, &si->isi_mimo);
402         si->isi_capinfo = ni->ni_capinfo;
403         si->isi_erp = ni->ni_erp;
404         IEEE80211_ADDR_COPY(si->isi_macaddr, ni->ni_macaddr);
405         si->isi_nrates = ni->ni_rates.rs_nrates;
406         if (si->isi_nrates > 15)
407                 si->isi_nrates = 15;
408         memcpy(si->isi_rates, ni->ni_rates.rs_rates, si->isi_nrates);
409         si->isi_txrate = ni->ni_txrate;
410         if (si->isi_txrate & IEEE80211_RATE_MCS) {
411                 const struct ieee80211_mcs_rates *mcs =
412                     &ieee80211_htrates[ni->ni_txrate &~ IEEE80211_RATE_MCS];
413                 if (IEEE80211_IS_CHAN_HT40(ni->ni_chan)) {
414                         if (ni->ni_flags & IEEE80211_NODE_SGI40)
415                                 si->isi_txmbps = mcs->ht40_rate_800ns;
416                         else
417                                 si->isi_txmbps = mcs->ht40_rate_400ns;
418                 } else {
419                         if (ni->ni_flags & IEEE80211_NODE_SGI20)
420                                 si->isi_txmbps = mcs->ht20_rate_800ns;
421                         else
422                                 si->isi_txmbps = mcs->ht20_rate_400ns;
423                 }
424         } else
425                 si->isi_txmbps = si->isi_txrate;
426         si->isi_associd = ni->ni_associd;
427         si->isi_txpower = ni->ni_txpower;
428         si->isi_vlan = ni->ni_vlan;
429         if (ni->ni_flags & IEEE80211_NODE_QOS) {
430                 memcpy(si->isi_txseqs, ni->ni_txseqs, sizeof(ni->ni_txseqs));
431                 memcpy(si->isi_rxseqs, ni->ni_rxseqs, sizeof(ni->ni_rxseqs));
432         } else {
433                 si->isi_txseqs[0] = ni->ni_txseqs[IEEE80211_NONQOS_TID];
434                 si->isi_rxseqs[0] = ni->ni_rxseqs[IEEE80211_NONQOS_TID];
435         }
436         /* NB: leave all cases in case we relax ni_associd == 0 check */
437         if (ieee80211_node_is_authorized(ni))
438                 si->isi_inact = vap->iv_inact_run;
439         else if (ni->ni_associd != 0 ||
440             (vap->iv_opmode == IEEE80211_M_WDS &&
441              (vap->iv_flags_ext & IEEE80211_FEXT_WDSLEGACY)))
442                 si->isi_inact = vap->iv_inact_auth;
443         else
444                 si->isi_inact = vap->iv_inact_init;
445         si->isi_inact = (si->isi_inact - ni->ni_inact) * IEEE80211_INACT_WAIT;
446         si->isi_localid = ni->ni_mllid;
447         si->isi_peerid = ni->ni_mlpid;
448         si->isi_peerstate = ni->ni_mlstate;
449
450         if (ielen) {
451                 cp = ((uint8_t *)si) + si->isi_ie_off;
452                 memcpy(cp, ni->ni_ies.data, ielen);
453         }
454
455         req->si = (struct ieee80211req_sta_info *)(((uint8_t *)si) + len);
456         req->space -= len;
457 }
458
459 static __noinline int
460 getstainfo_common(struct ieee80211vap *vap, struct ieee80211req *ireq,
461         struct ieee80211_node *ni, size_t off)
462 {
463         struct ieee80211com *ic = vap->iv_ic;
464         struct stainforeq req;
465         size_t space;
466         void *p;
467         int error;
468
469         error = 0;
470         req.space = 0;
471         req.vap = vap;
472         if (ni == NULL)
473                 ieee80211_iterate_nodes(&ic->ic_sta, get_sta_space, &req);
474         else
475                 get_sta_space(&req, ni);
476         if (req.space > ireq->i_len)
477                 req.space = ireq->i_len;
478         if (req.space > 0) {
479                 space = req.space;
480                 /* XXX M_WAITOK after driver lock released */
481                 p = malloc(space, M_TEMP, M_NOWAIT | M_ZERO);
482                 if (p == NULL) {
483                         error = ENOMEM;
484                         goto bad;
485                 }
486                 req.si = p;
487                 if (ni == NULL)
488                         ieee80211_iterate_nodes(&ic->ic_sta, get_sta_info, &req);
489                 else
490                         get_sta_info(&req, ni);
491                 ireq->i_len = space - req.space;
492                 error = copyout(p, (uint8_t *) ireq->i_data+off, ireq->i_len);
493                 free(p, M_TEMP);
494         } else
495                 ireq->i_len = 0;
496 bad:
497         if (ni != NULL)
498                 ieee80211_free_node(ni);
499         return error;
500 }
501
502 static __noinline int
503 ieee80211_ioctl_getstainfo(struct ieee80211vap *vap, struct ieee80211req *ireq)
504 {
505         uint8_t macaddr[IEEE80211_ADDR_LEN];
506         const size_t off = __offsetof(struct ieee80211req_sta_req, info);
507         struct ieee80211_node *ni;
508         int error;
509
510         if (ireq->i_len < sizeof(struct ieee80211req_sta_req))
511                 return EFAULT;
512         error = copyin(ireq->i_data, macaddr, IEEE80211_ADDR_LEN);
513         if (error != 0)
514                 return error;
515         if (IEEE80211_ADDR_EQ(macaddr, vap->iv_ifp->if_broadcastaddr)) {
516                 ni = NULL;
517         } else {
518                 ni = ieee80211_find_vap_node(&vap->iv_ic->ic_sta, vap, macaddr);
519                 if (ni == NULL)
520                         return ENOENT;
521         }
522         return getstainfo_common(vap, ireq, ni, off);
523 }
524
525 static __noinline int
526 ieee80211_ioctl_getstatxpow(struct ieee80211vap *vap, struct ieee80211req *ireq)
527 {
528         struct ieee80211_node *ni;
529         struct ieee80211req_sta_txpow txpow;
530         int error;
531
532         if (ireq->i_len != sizeof(txpow))
533                 return EINVAL;
534         error = copyin(ireq->i_data, &txpow, sizeof(txpow));
535         if (error != 0)
536                 return error;
537         ni = ieee80211_find_vap_node(&vap->iv_ic->ic_sta, vap, txpow.it_macaddr);
538         if (ni == NULL)
539                 return ENOENT;
540         txpow.it_txpow = ni->ni_txpower;
541         error = copyout(&txpow, ireq->i_data, sizeof(txpow));
542         ieee80211_free_node(ni);
543         return error;
544 }
545
546 static __noinline int
547 ieee80211_ioctl_getwmeparam(struct ieee80211vap *vap, struct ieee80211req *ireq)
548 {
549         struct ieee80211com *ic = vap->iv_ic;
550         struct ieee80211_wme_state *wme = &ic->ic_wme;
551         struct wmeParams *wmep;
552         int ac;
553
554         if ((ic->ic_caps & IEEE80211_C_WME) == 0)
555                 return EINVAL;
556
557         ac = (ireq->i_len & IEEE80211_WMEPARAM_VAL);
558         if (ac >= WME_NUM_AC)
559                 ac = WME_AC_BE;
560         if (ireq->i_len & IEEE80211_WMEPARAM_BSS)
561                 wmep = &wme->wme_wmeBssChanParams.cap_wmeParams[ac];
562         else
563                 wmep = &wme->wme_wmeChanParams.cap_wmeParams[ac];
564         switch (ireq->i_type) {
565         case IEEE80211_IOC_WME_CWMIN:           /* WME: CWmin */
566                 ireq->i_val = wmep->wmep_logcwmin;
567                 break;
568         case IEEE80211_IOC_WME_CWMAX:           /* WME: CWmax */
569                 ireq->i_val = wmep->wmep_logcwmax;
570                 break;
571         case IEEE80211_IOC_WME_AIFS:            /* WME: AIFS */
572                 ireq->i_val = wmep->wmep_aifsn;
573                 break;
574         case IEEE80211_IOC_WME_TXOPLIMIT:       /* WME: txops limit */
575                 ireq->i_val = wmep->wmep_txopLimit;
576                 break;
577         case IEEE80211_IOC_WME_ACM:             /* WME: ACM (bss only) */
578                 wmep = &wme->wme_wmeBssChanParams.cap_wmeParams[ac];
579                 ireq->i_val = wmep->wmep_acm;
580                 break;
581         case IEEE80211_IOC_WME_ACKPOLICY:       /* WME: ACK policy (!bss only)*/
582                 wmep = &wme->wme_wmeChanParams.cap_wmeParams[ac];
583                 ireq->i_val = !wmep->wmep_noackPolicy;
584                 break;
585         }
586         return 0;
587 }
588
589 static __noinline int
590 ieee80211_ioctl_getmaccmd(struct ieee80211vap *vap, struct ieee80211req *ireq)
591 {
592         const struct ieee80211_aclator *acl = vap->iv_acl;
593
594         return (acl == NULL ? EINVAL : acl->iac_getioctl(vap, ireq));
595 }
596
597 static __noinline int
598 ieee80211_ioctl_getcurchan(struct ieee80211vap *vap, struct ieee80211req *ireq)
599 {
600         struct ieee80211com *ic = vap->iv_ic;
601         struct ieee80211_channel *c;
602
603         if (ireq->i_len != sizeof(struct ieee80211_channel))
604                 return EINVAL;
605         /*
606          * vap's may have different operating channels when HT is
607          * in use.  When in RUN state report the vap-specific channel.
608          * Otherwise return curchan.
609          */
610         if (vap->iv_state == IEEE80211_S_RUN)
611                 c = vap->iv_bss->ni_chan;
612         else
613                 c = ic->ic_curchan;
614         return copyout(c, ireq->i_data, sizeof(*c));
615 }
616
617 static int
618 getappie(const struct ieee80211_appie *aie, struct ieee80211req *ireq)
619 {
620         if (aie == NULL)
621                 return EINVAL;
622         /* NB: truncate, caller can check length */
623         if (ireq->i_len > aie->ie_len)
624                 ireq->i_len = aie->ie_len;
625         return copyout(aie->ie_data, ireq->i_data, ireq->i_len);
626 }
627
628 static int
629 ieee80211_ioctl_getappie(struct ieee80211vap *vap, struct ieee80211req *ireq)
630 {
631         uint8_t fc0;
632
633         fc0 = ireq->i_val & 0xff;
634         if ((fc0 & IEEE80211_FC0_TYPE_MASK) != IEEE80211_FC0_TYPE_MGT)
635                 return EINVAL;
636         /* NB: could check iv_opmode and reject but hardly worth the effort */
637         switch (fc0 & IEEE80211_FC0_SUBTYPE_MASK) {
638         case IEEE80211_FC0_SUBTYPE_BEACON:
639                 return getappie(vap->iv_appie_beacon, ireq);
640         case IEEE80211_FC0_SUBTYPE_PROBE_RESP:
641                 return getappie(vap->iv_appie_proberesp, ireq);
642         case IEEE80211_FC0_SUBTYPE_ASSOC_RESP:
643                 return getappie(vap->iv_appie_assocresp, ireq);
644         case IEEE80211_FC0_SUBTYPE_PROBE_REQ:
645                 return getappie(vap->iv_appie_probereq, ireq);
646         case IEEE80211_FC0_SUBTYPE_ASSOC_REQ:
647                 return getappie(vap->iv_appie_assocreq, ireq);
648         case IEEE80211_FC0_SUBTYPE_BEACON|IEEE80211_FC0_SUBTYPE_PROBE_RESP:
649                 return getappie(vap->iv_appie_wpa, ireq);
650         }
651         return EINVAL;
652 }
653
654 static __noinline int
655 ieee80211_ioctl_getregdomain(struct ieee80211vap *vap,
656         const struct ieee80211req *ireq)
657 {
658         struct ieee80211com *ic = vap->iv_ic;
659
660         if (ireq->i_len != sizeof(ic->ic_regdomain))
661                 return EINVAL;
662         return copyout(&ic->ic_regdomain, ireq->i_data,
663             sizeof(ic->ic_regdomain));
664 }
665
666 static __noinline int
667 ieee80211_ioctl_getroam(struct ieee80211vap *vap,
668         const struct ieee80211req *ireq)
669 {
670         size_t len = ireq->i_len;
671         /* NB: accept short requests for backwards compat */
672         if (len > sizeof(vap->iv_roamparms))
673                 len = sizeof(vap->iv_roamparms);
674         return copyout(vap->iv_roamparms, ireq->i_data, len);
675 }
676
677 static __noinline int
678 ieee80211_ioctl_gettxparams(struct ieee80211vap *vap,
679         const struct ieee80211req *ireq)
680 {
681         size_t len = ireq->i_len;
682         /* NB: accept short requests for backwards compat */
683         if (len > sizeof(vap->iv_txparms))
684                 len = sizeof(vap->iv_txparms);
685         return copyout(vap->iv_txparms, ireq->i_data, len);
686 }
687
688 static __noinline int
689 ieee80211_ioctl_getdevcaps(struct ieee80211com *ic,
690         const struct ieee80211req *ireq)
691 {
692         struct ieee80211_devcaps_req *dc;
693         struct ieee80211req_chaninfo *ci;
694         int maxchans, error;
695
696         maxchans = 1 + ((ireq->i_len - sizeof(struct ieee80211_devcaps_req)) /
697             sizeof(struct ieee80211_channel));
698         /* NB: require 1 so we know ic_nchans is accessible */
699         if (maxchans < 1)
700                 return EINVAL;
701         /* constrain max request size, 2K channels is ~24Kbytes */
702         if (maxchans > 2048)
703                 maxchans = 2048;
704         dc = (struct ieee80211_devcaps_req *)
705             malloc(IEEE80211_DEVCAPS_SIZE(maxchans), M_TEMP, M_NOWAIT | M_ZERO);
706         if (dc == NULL)
707                 return ENOMEM;
708         dc->dc_drivercaps = ic->ic_caps;
709         dc->dc_cryptocaps = ic->ic_cryptocaps;
710         dc->dc_htcaps = ic->ic_htcaps;
711         ci = &dc->dc_chaninfo;
712         ic->ic_getradiocaps(ic, maxchans, &ci->ic_nchans, ci->ic_chans);
713         KASSERT(ci->ic_nchans <= maxchans,
714             ("nchans %d maxchans %d", ci->ic_nchans, maxchans));
715         ieee80211_sort_channels(ci->ic_chans, ci->ic_nchans);
716         error = copyout(dc, ireq->i_data, IEEE80211_DEVCAPS_SPACE(dc));
717         free(dc, M_TEMP);
718         return error;
719 }
720
721 static __noinline int
722 ieee80211_ioctl_getstavlan(struct ieee80211vap *vap, struct ieee80211req *ireq)
723 {
724         struct ieee80211_node *ni;
725         struct ieee80211req_sta_vlan vlan;
726         int error;
727
728         if (ireq->i_len != sizeof(vlan))
729                 return EINVAL;
730         error = copyin(ireq->i_data, &vlan, sizeof(vlan));
731         if (error != 0)
732                 return error;
733         if (!IEEE80211_ADDR_EQ(vlan.sv_macaddr, zerobssid)) {
734                 ni = ieee80211_find_vap_node(&vap->iv_ic->ic_sta, vap,
735                     vlan.sv_macaddr);
736                 if (ni == NULL)
737                         return ENOENT;
738         } else
739                 ni = ieee80211_ref_node(vap->iv_bss);
740         vlan.sv_vlan = ni->ni_vlan;
741         error = copyout(&vlan, ireq->i_data, sizeof(vlan));
742         ieee80211_free_node(ni);
743         return error;
744 }
745
746 /*
747  * Dummy ioctl get handler so the linker set is defined.
748  */
749 static int
750 dummy_ioctl_get(struct ieee80211vap *vap, struct ieee80211req *ireq)
751 {
752         return ENOSYS;
753 }
754 IEEE80211_IOCTL_GET(dummy, dummy_ioctl_get);
755
756 static int
757 ieee80211_ioctl_getdefault(struct ieee80211vap *vap, struct ieee80211req *ireq)
758 {
759         ieee80211_ioctl_getfunc * const *get;
760         int error;
761
762         SET_FOREACH(get, ieee80211_ioctl_getset) {
763                 error = (*get)(vap, ireq);
764                 if (error != ENOSYS)
765                         return error;
766         }
767         return EINVAL;
768 }
769
770 /*
771  * When building the kernel with -O2 on the i386 architecture, gcc
772  * seems to want to inline this function into ieee80211_ioctl()
773  * (which is the only routine that calls it). When this happens,
774  * ieee80211_ioctl() ends up consuming an additional 2K of stack
775  * space. (Exactly why it needs so much is unclear.) The problem
776  * is that it's possible for ieee80211_ioctl() to invoke other
777  * routines (including driver init functions) which could then find
778  * themselves perilously close to exhausting the stack.
779  *
780  * To avoid this, we deliberately prevent gcc from inlining this
781  * routine. Another way to avoid this is to use less agressive
782  * optimization when compiling this file (i.e. -O instead of -O2)
783  * but special-casing the compilation of this one module in the
784  * build system would be awkward.
785  */
786 static __noinline int
787 ieee80211_ioctl_get80211(struct ieee80211vap *vap, u_long cmd,
788     struct ieee80211req *ireq)
789 {
790 #define MS(_v, _f)      (((_v) & _f) >> _f##_S)
791         struct ieee80211com *ic = vap->iv_ic;
792         u_int kid, len;
793         uint8_t tmpkey[IEEE80211_KEYBUF_SIZE];
794         char tmpssid[IEEE80211_NWID_LEN];
795         int error = 0;
796
797         switch (ireq->i_type) {
798         case IEEE80211_IOC_SSID:
799                 switch (vap->iv_state) {
800                 case IEEE80211_S_INIT:
801                 case IEEE80211_S_SCAN:
802                         ireq->i_len = vap->iv_des_ssid[0].len;
803                         memcpy(tmpssid, vap->iv_des_ssid[0].ssid, ireq->i_len);
804                         break;
805                 default:
806                         ireq->i_len = vap->iv_bss->ni_esslen;
807                         memcpy(tmpssid, vap->iv_bss->ni_essid, ireq->i_len);
808                         break;
809                 }
810                 error = copyout(tmpssid, ireq->i_data, ireq->i_len);
811                 break;
812         case IEEE80211_IOC_NUMSSIDS:
813                 ireq->i_val = 1;
814                 break;
815         case IEEE80211_IOC_WEP:
816                 if ((vap->iv_flags & IEEE80211_F_PRIVACY) == 0)
817                         ireq->i_val = IEEE80211_WEP_OFF;
818                 else if (vap->iv_flags & IEEE80211_F_DROPUNENC)
819                         ireq->i_val = IEEE80211_WEP_ON;
820                 else
821                         ireq->i_val = IEEE80211_WEP_MIXED;
822                 break;
823         case IEEE80211_IOC_WEPKEY:
824                 kid = (u_int) ireq->i_val;
825                 if (kid >= IEEE80211_WEP_NKID)
826                         return EINVAL;
827                 len = (u_int) vap->iv_nw_keys[kid].wk_keylen;
828                 /* NB: only root can read WEP keys */
829                 if (priv_check(curthread, PRIV_NET80211_GETKEY) == 0) {
830                         bcopy(vap->iv_nw_keys[kid].wk_key, tmpkey, len);
831                 } else {
832                         bzero(tmpkey, len);
833                 }
834                 ireq->i_len = len;
835                 error = copyout(tmpkey, ireq->i_data, len);
836                 break;
837         case IEEE80211_IOC_NUMWEPKEYS:
838                 ireq->i_val = IEEE80211_WEP_NKID;
839                 break;
840         case IEEE80211_IOC_WEPTXKEY:
841                 ireq->i_val = vap->iv_def_txkey;
842                 break;
843         case IEEE80211_IOC_AUTHMODE:
844                 if (vap->iv_flags & IEEE80211_F_WPA)
845                         ireq->i_val = IEEE80211_AUTH_WPA;
846                 else
847                         ireq->i_val = vap->iv_bss->ni_authmode;
848                 break;
849         case IEEE80211_IOC_CHANNEL:
850                 ireq->i_val = ieee80211_chan2ieee(ic, ic->ic_curchan);
851                 break;
852         case IEEE80211_IOC_POWERSAVE:
853                 if (vap->iv_flags & IEEE80211_F_PMGTON)
854                         ireq->i_val = IEEE80211_POWERSAVE_ON;
855                 else
856                         ireq->i_val = IEEE80211_POWERSAVE_OFF;
857                 break;
858         case IEEE80211_IOC_POWERSAVESLEEP:
859                 ireq->i_val = ic->ic_lintval;
860                 break;
861         case IEEE80211_IOC_RTSTHRESHOLD:
862                 ireq->i_val = vap->iv_rtsthreshold;
863                 break;
864         case IEEE80211_IOC_PROTMODE:
865                 ireq->i_val = ic->ic_protmode;
866                 break;
867         case IEEE80211_IOC_TXPOWER:
868                 /*
869                  * Tx power limit is the min of max regulatory
870                  * power, any user-set limit, and the max the
871                  * radio can do.
872                  */
873                 ireq->i_val = 2*ic->ic_curchan->ic_maxregpower;
874                 if (ireq->i_val > ic->ic_txpowlimit)
875                         ireq->i_val = ic->ic_txpowlimit;
876                 if (ireq->i_val > ic->ic_curchan->ic_maxpower)
877                         ireq->i_val = ic->ic_curchan->ic_maxpower;
878                 break;
879         case IEEE80211_IOC_WPA:
880                 switch (vap->iv_flags & IEEE80211_F_WPA) {
881                 case IEEE80211_F_WPA1:
882                         ireq->i_val = 1;
883                         break;
884                 case IEEE80211_F_WPA2:
885                         ireq->i_val = 2;
886                         break;
887                 case IEEE80211_F_WPA1 | IEEE80211_F_WPA2:
888                         ireq->i_val = 3;
889                         break;
890                 default:
891                         ireq->i_val = 0;
892                         break;
893                 }
894                 break;
895         case IEEE80211_IOC_CHANLIST:
896                 error = ieee80211_ioctl_getchanlist(vap, ireq);
897                 break;
898         case IEEE80211_IOC_ROAMING:
899                 ireq->i_val = vap->iv_roaming;
900                 break;
901         case IEEE80211_IOC_PRIVACY:
902                 ireq->i_val = (vap->iv_flags & IEEE80211_F_PRIVACY) != 0;
903                 break;
904         case IEEE80211_IOC_DROPUNENCRYPTED:
905                 ireq->i_val = (vap->iv_flags & IEEE80211_F_DROPUNENC) != 0;
906                 break;
907         case IEEE80211_IOC_COUNTERMEASURES:
908                 ireq->i_val = (vap->iv_flags & IEEE80211_F_COUNTERM) != 0;
909                 break;
910         case IEEE80211_IOC_WME:
911                 ireq->i_val = (vap->iv_flags & IEEE80211_F_WME) != 0;
912                 break;
913         case IEEE80211_IOC_HIDESSID:
914                 ireq->i_val = (vap->iv_flags & IEEE80211_F_HIDESSID) != 0;
915                 break;
916         case IEEE80211_IOC_APBRIDGE:
917                 ireq->i_val = (vap->iv_flags & IEEE80211_F_NOBRIDGE) == 0;
918                 break;
919         case IEEE80211_IOC_WPAKEY:
920                 error = ieee80211_ioctl_getkey(vap, ireq);
921                 break;
922         case IEEE80211_IOC_CHANINFO:
923                 error = ieee80211_ioctl_getchaninfo(vap, ireq);
924                 break;
925         case IEEE80211_IOC_BSSID:
926                 if (ireq->i_len != IEEE80211_ADDR_LEN)
927                         return EINVAL;
928                 if (vap->iv_state == IEEE80211_S_RUN) {
929                         error = copyout(vap->iv_opmode == IEEE80211_M_WDS ?
930                             vap->iv_bss->ni_macaddr : vap->iv_bss->ni_bssid,
931                             ireq->i_data, ireq->i_len);
932                 } else
933                         error = copyout(vap->iv_des_bssid, ireq->i_data,
934                             ireq->i_len);
935                 break;
936         case IEEE80211_IOC_WPAIE:
937                 error = ieee80211_ioctl_getwpaie(vap, ireq, ireq->i_type);
938                 break;
939         case IEEE80211_IOC_WPAIE2:
940                 error = ieee80211_ioctl_getwpaie(vap, ireq, ireq->i_type);
941                 break;
942         case IEEE80211_IOC_SCAN_RESULTS:
943                 error = ieee80211_ioctl_getscanresults(vap, ireq);
944                 break;
945         case IEEE80211_IOC_STA_STATS:
946                 error = ieee80211_ioctl_getstastats(vap, ireq);
947                 break;
948         case IEEE80211_IOC_TXPOWMAX:
949                 ireq->i_val = vap->iv_bss->ni_txpower;
950                 break;
951         case IEEE80211_IOC_STA_TXPOW:
952                 error = ieee80211_ioctl_getstatxpow(vap, ireq);
953                 break;
954         case IEEE80211_IOC_STA_INFO:
955                 error = ieee80211_ioctl_getstainfo(vap, ireq);
956                 break;
957         case IEEE80211_IOC_WME_CWMIN:           /* WME: CWmin */
958         case IEEE80211_IOC_WME_CWMAX:           /* WME: CWmax */
959         case IEEE80211_IOC_WME_AIFS:            /* WME: AIFS */
960         case IEEE80211_IOC_WME_TXOPLIMIT:       /* WME: txops limit */
961         case IEEE80211_IOC_WME_ACM:             /* WME: ACM (bss only) */
962         case IEEE80211_IOC_WME_ACKPOLICY:       /* WME: ACK policy (bss only) */
963                 error = ieee80211_ioctl_getwmeparam(vap, ireq);
964                 break;
965         case IEEE80211_IOC_DTIM_PERIOD:
966                 ireq->i_val = vap->iv_dtim_period;
967                 break;
968         case IEEE80211_IOC_BEACON_INTERVAL:
969                 /* NB: get from ic_bss for station mode */
970                 ireq->i_val = vap->iv_bss->ni_intval;
971                 break;
972         case IEEE80211_IOC_PUREG:
973                 ireq->i_val = (vap->iv_flags & IEEE80211_F_PUREG) != 0;
974                 break;
975         case IEEE80211_IOC_QUIET:
976                 ireq->i_val = vap->iv_quiet;
977                 break;
978         case IEEE80211_IOC_QUIET_COUNT:
979                 ireq->i_val = vap->iv_quiet_count;
980                 break;
981         case IEEE80211_IOC_QUIET_PERIOD:
982                 ireq->i_val = vap->iv_quiet_period;
983                 break;
984         case IEEE80211_IOC_QUIET_DUR:
985                 ireq->i_val = vap->iv_quiet_duration;
986                 break;
987         case IEEE80211_IOC_QUIET_OFFSET:
988                 ireq->i_val = vap->iv_quiet_offset;
989                 break;
990         case IEEE80211_IOC_BGSCAN:
991                 ireq->i_val = (vap->iv_flags & IEEE80211_F_BGSCAN) != 0;
992                 break;
993         case IEEE80211_IOC_BGSCAN_IDLE:
994                 ireq->i_val = vap->iv_bgscanidle*hz/1000;       /* ms */
995                 break;
996         case IEEE80211_IOC_BGSCAN_INTERVAL:
997                 ireq->i_val = vap->iv_bgscanintvl/hz;           /* seconds */
998                 break;
999         case IEEE80211_IOC_SCANVALID:
1000                 ireq->i_val = vap->iv_scanvalid/hz;             /* seconds */
1001                 break;
1002         case IEEE80211_IOC_FRAGTHRESHOLD:
1003                 ireq->i_val = vap->iv_fragthreshold;
1004                 break;
1005         case IEEE80211_IOC_MACCMD:
1006                 error = ieee80211_ioctl_getmaccmd(vap, ireq);
1007                 break;
1008         case IEEE80211_IOC_BURST:
1009                 ireq->i_val = (vap->iv_flags & IEEE80211_F_BURST) != 0;
1010                 break;
1011         case IEEE80211_IOC_BMISSTHRESHOLD:
1012                 ireq->i_val = vap->iv_bmissthreshold;
1013                 break;
1014         case IEEE80211_IOC_CURCHAN:
1015                 error = ieee80211_ioctl_getcurchan(vap, ireq);
1016                 break;
1017         case IEEE80211_IOC_SHORTGI:
1018                 ireq->i_val = 0;
1019                 if (vap->iv_flags_ht & IEEE80211_FHT_SHORTGI20)
1020                         ireq->i_val |= IEEE80211_HTCAP_SHORTGI20;
1021                 if (vap->iv_flags_ht & IEEE80211_FHT_SHORTGI40)
1022                         ireq->i_val |= IEEE80211_HTCAP_SHORTGI40;
1023                 break;
1024         case IEEE80211_IOC_AMPDU:
1025                 ireq->i_val = 0;
1026                 if (vap->iv_flags_ht & IEEE80211_FHT_AMPDU_TX)
1027                         ireq->i_val |= 1;
1028                 if (vap->iv_flags_ht & IEEE80211_FHT_AMPDU_RX)
1029                         ireq->i_val |= 2;
1030                 break;
1031         case IEEE80211_IOC_AMPDU_LIMIT:
1032                 if (vap->iv_opmode == IEEE80211_M_HOSTAP)
1033                         ireq->i_val = vap->iv_ampdu_rxmax;
1034                 else if (vap->iv_state == IEEE80211_S_RUN)
1035                         ireq->i_val = MS(vap->iv_bss->ni_htparam,
1036                             IEEE80211_HTCAP_MAXRXAMPDU);
1037                 else
1038                         ireq->i_val = vap->iv_ampdu_limit;
1039                 break;
1040         case IEEE80211_IOC_AMPDU_DENSITY:
1041                 if (vap->iv_opmode == IEEE80211_M_STA &&
1042                     vap->iv_state == IEEE80211_S_RUN)
1043                         ireq->i_val = MS(vap->iv_bss->ni_htparam,
1044                             IEEE80211_HTCAP_MPDUDENSITY);
1045                 else
1046                         ireq->i_val = vap->iv_ampdu_density;
1047                 break;
1048         case IEEE80211_IOC_AMSDU:
1049                 ireq->i_val = 0;
1050                 if (vap->iv_flags_ht & IEEE80211_FHT_AMSDU_TX)
1051                         ireq->i_val |= 1;
1052                 if (vap->iv_flags_ht & IEEE80211_FHT_AMSDU_RX)
1053                         ireq->i_val |= 2;
1054                 break;
1055         case IEEE80211_IOC_AMSDU_LIMIT:
1056                 ireq->i_val = vap->iv_amsdu_limit;      /* XXX truncation? */
1057                 break;
1058         case IEEE80211_IOC_PUREN:
1059                 ireq->i_val = (vap->iv_flags_ht & IEEE80211_FHT_PUREN) != 0;
1060                 break;
1061         case IEEE80211_IOC_DOTH:
1062                 ireq->i_val = (vap->iv_flags & IEEE80211_F_DOTH) != 0;
1063                 break;
1064         case IEEE80211_IOC_REGDOMAIN:
1065                 error = ieee80211_ioctl_getregdomain(vap, ireq);
1066                 break;
1067         case IEEE80211_IOC_ROAM:
1068                 error = ieee80211_ioctl_getroam(vap, ireq);
1069                 break;
1070         case IEEE80211_IOC_TXPARAMS:
1071                 error = ieee80211_ioctl_gettxparams(vap, ireq);
1072                 break;
1073         case IEEE80211_IOC_HTCOMPAT:
1074                 ireq->i_val = (vap->iv_flags_ht & IEEE80211_FHT_HTCOMPAT) != 0;
1075                 break;
1076         case IEEE80211_IOC_DWDS:
1077                 ireq->i_val = (vap->iv_flags & IEEE80211_F_DWDS) != 0;
1078                 break;
1079         case IEEE80211_IOC_INACTIVITY:
1080                 ireq->i_val = (vap->iv_flags_ext & IEEE80211_FEXT_INACT) != 0;
1081                 break;
1082         case IEEE80211_IOC_APPIE:
1083                 error = ieee80211_ioctl_getappie(vap, ireq);
1084                 break;
1085         case IEEE80211_IOC_WPS:
1086                 ireq->i_val = (vap->iv_flags_ext & IEEE80211_FEXT_WPS) != 0;
1087                 break;
1088         case IEEE80211_IOC_TSN:
1089                 ireq->i_val = (vap->iv_flags_ext & IEEE80211_FEXT_TSN) != 0;
1090                 break;
1091         case IEEE80211_IOC_DFS:
1092                 ireq->i_val = (vap->iv_flags_ext & IEEE80211_FEXT_DFS) != 0;
1093                 break;
1094         case IEEE80211_IOC_DOTD:
1095                 ireq->i_val = (vap->iv_flags_ext & IEEE80211_FEXT_DOTD) != 0;
1096                 break;
1097         case IEEE80211_IOC_DEVCAPS:
1098                 error = ieee80211_ioctl_getdevcaps(ic, ireq);
1099                 break;
1100         case IEEE80211_IOC_HTPROTMODE:
1101                 ireq->i_val = ic->ic_htprotmode;
1102                 break;
1103         case IEEE80211_IOC_HTCONF:
1104                 if (vap->iv_flags_ht & IEEE80211_FHT_HT) {
1105                         ireq->i_val = 1;
1106                         if (vap->iv_flags_ht & IEEE80211_FHT_USEHT40)
1107                                 ireq->i_val |= 2;
1108                 } else
1109                         ireq->i_val = 0;
1110                 break;
1111         case IEEE80211_IOC_STA_VLAN:
1112                 error = ieee80211_ioctl_getstavlan(vap, ireq);
1113                 break;
1114         case IEEE80211_IOC_SMPS:
1115                 if (vap->iv_opmode == IEEE80211_M_STA &&
1116                     vap->iv_state == IEEE80211_S_RUN) {
1117                         if (vap->iv_bss->ni_flags & IEEE80211_NODE_MIMO_RTS)
1118                                 ireq->i_val = IEEE80211_HTCAP_SMPS_DYNAMIC;
1119                         else if (vap->iv_bss->ni_flags & IEEE80211_NODE_MIMO_PS)
1120                                 ireq->i_val = IEEE80211_HTCAP_SMPS_ENA;
1121                         else
1122                                 ireq->i_val = IEEE80211_HTCAP_SMPS_OFF;
1123                 } else
1124                         ireq->i_val = vap->iv_htcaps & IEEE80211_HTCAP_SMPS;
1125                 break;
1126         case IEEE80211_IOC_RIFS:
1127                 if (vap->iv_opmode == IEEE80211_M_STA &&
1128                     vap->iv_state == IEEE80211_S_RUN)
1129                         ireq->i_val =
1130                             (vap->iv_bss->ni_flags & IEEE80211_NODE_RIFS) != 0;
1131                 else
1132                         ireq->i_val =
1133                             (vap->iv_flags_ht & IEEE80211_FHT_RIFS) != 0;
1134                 break;
1135         default:
1136                 error = ieee80211_ioctl_getdefault(vap, ireq);
1137                 break;
1138         }
1139         return error;
1140 #undef MS
1141 }
1142
1143 static __noinline int
1144 ieee80211_ioctl_setkey(struct ieee80211vap *vap, struct ieee80211req *ireq)
1145 {
1146         struct ieee80211req_key ik;
1147         struct ieee80211_node *ni;
1148         struct ieee80211_key *wk;
1149         uint16_t kid;
1150         int error, i;
1151
1152         if (ireq->i_len != sizeof(ik))
1153                 return EINVAL;
1154         error = copyin(ireq->i_data, &ik, sizeof(ik));
1155         if (error)
1156                 return error;
1157         /* NB: cipher support is verified by ieee80211_crypt_newkey */
1158         /* NB: this also checks ik->ik_keylen > sizeof(wk->wk_key) */
1159         if (ik.ik_keylen > sizeof(ik.ik_keydata))
1160                 return E2BIG;
1161         kid = ik.ik_keyix;
1162         if (kid == IEEE80211_KEYIX_NONE) {
1163                 /* XXX unicast keys currently must be tx/rx */
1164                 if (ik.ik_flags != (IEEE80211_KEY_XMIT | IEEE80211_KEY_RECV))
1165                         return EINVAL;
1166                 if (vap->iv_opmode == IEEE80211_M_STA) {
1167                         ni = ieee80211_ref_node(vap->iv_bss);
1168                         if (!IEEE80211_ADDR_EQ(ik.ik_macaddr, ni->ni_bssid)) {
1169                                 ieee80211_free_node(ni);
1170                                 return EADDRNOTAVAIL;
1171                         }
1172                 } else {
1173                         ni = ieee80211_find_vap_node(&vap->iv_ic->ic_sta, vap,
1174                                 ik.ik_macaddr);
1175                         if (ni == NULL)
1176                                 return ENOENT;
1177                 }
1178                 wk = &ni->ni_ucastkey;
1179         } else {
1180                 if (kid >= IEEE80211_WEP_NKID)
1181                         return EINVAL;
1182                 wk = &vap->iv_nw_keys[kid];
1183                 /*
1184                  * Global slots start off w/o any assigned key index.
1185                  * Force one here for consistency with IEEE80211_IOC_WEPKEY.
1186                  */
1187                 if (wk->wk_keyix == IEEE80211_KEYIX_NONE)
1188                         wk->wk_keyix = kid;
1189                 ni = NULL;
1190         }
1191         error = 0;
1192         ieee80211_key_update_begin(vap);
1193         if (ieee80211_crypto_newkey(vap, ik.ik_type, ik.ik_flags, wk)) {
1194                 wk->wk_keylen = ik.ik_keylen;
1195                 /* NB: MIC presence is implied by cipher type */
1196                 if (wk->wk_keylen > IEEE80211_KEYBUF_SIZE)
1197                         wk->wk_keylen = IEEE80211_KEYBUF_SIZE;
1198                 for (i = 0; i < IEEE80211_TID_SIZE; i++)
1199                         wk->wk_keyrsc[i] = ik.ik_keyrsc;
1200                 wk->wk_keytsc = 0;                      /* new key, reset */
1201                 memset(wk->wk_key, 0, sizeof(wk->wk_key));
1202                 memcpy(wk->wk_key, ik.ik_keydata, ik.ik_keylen);
1203                 IEEE80211_ADDR_COPY(wk->wk_macaddr,
1204                     ni != NULL ?  ni->ni_macaddr : ik.ik_macaddr);
1205                 if (!ieee80211_crypto_setkey(vap, wk))
1206                         error = EIO;
1207                 else if ((ik.ik_flags & IEEE80211_KEY_DEFAULT))
1208                         vap->iv_def_txkey = kid;
1209         } else
1210                 error = ENXIO;
1211         ieee80211_key_update_end(vap);
1212         if (ni != NULL)
1213                 ieee80211_free_node(ni);
1214         return error;
1215 }
1216
1217 static __noinline int
1218 ieee80211_ioctl_delkey(struct ieee80211vap *vap, struct ieee80211req *ireq)
1219 {
1220         struct ieee80211req_del_key dk;
1221         int kid, error;
1222
1223         if (ireq->i_len != sizeof(dk))
1224                 return EINVAL;
1225         error = copyin(ireq->i_data, &dk, sizeof(dk));
1226         if (error)
1227                 return error;
1228         kid = dk.idk_keyix;
1229         /* XXX uint8_t -> uint16_t */
1230         if (dk.idk_keyix == (uint8_t) IEEE80211_KEYIX_NONE) {
1231                 struct ieee80211_node *ni;
1232
1233                 if (vap->iv_opmode == IEEE80211_M_STA) {
1234                         ni = ieee80211_ref_node(vap->iv_bss);
1235                         if (!IEEE80211_ADDR_EQ(dk.idk_macaddr, ni->ni_bssid)) {
1236                                 ieee80211_free_node(ni);
1237                                 return EADDRNOTAVAIL;
1238                         }
1239                 } else {
1240                         ni = ieee80211_find_vap_node(&vap->iv_ic->ic_sta, vap,
1241                                 dk.idk_macaddr);
1242                         if (ni == NULL)
1243                                 return ENOENT;
1244                 }
1245                 /* XXX error return */
1246                 ieee80211_node_delucastkey(ni);
1247                 ieee80211_free_node(ni);
1248         } else {
1249                 if (kid >= IEEE80211_WEP_NKID)
1250                         return EINVAL;
1251                 /* XXX error return */
1252                 ieee80211_crypto_delkey(vap, &vap->iv_nw_keys[kid]);
1253         }
1254         return 0;
1255 }
1256
1257 struct mlmeop {
1258         struct ieee80211vap *vap;
1259         int     op;
1260         int     reason;
1261 };
1262
1263 static void
1264 mlmedebug(struct ieee80211vap *vap, const uint8_t mac[IEEE80211_ADDR_LEN],
1265         int op, int reason)
1266 {
1267 #ifdef IEEE80211_DEBUG
1268         static const struct {
1269                 int mask;
1270                 const char *opstr;
1271         } ops[] = {
1272                 { 0, "op#0" },
1273                 { IEEE80211_MSG_IOCTL | IEEE80211_MSG_STATE |
1274                   IEEE80211_MSG_ASSOC, "assoc" },
1275                 { IEEE80211_MSG_IOCTL | IEEE80211_MSG_STATE |
1276                   IEEE80211_MSG_ASSOC, "disassoc" },
1277                 { IEEE80211_MSG_IOCTL | IEEE80211_MSG_STATE |
1278                   IEEE80211_MSG_AUTH, "deauth" },
1279                 { IEEE80211_MSG_IOCTL | IEEE80211_MSG_STATE |
1280                   IEEE80211_MSG_AUTH, "authorize" },
1281                 { IEEE80211_MSG_IOCTL | IEEE80211_MSG_STATE |
1282                   IEEE80211_MSG_AUTH, "unauthorize" },
1283         };
1284
1285         if (op == IEEE80211_MLME_AUTH) {
1286                 IEEE80211_NOTE_MAC(vap, IEEE80211_MSG_IOCTL |
1287                     IEEE80211_MSG_STATE | IEEE80211_MSG_AUTH, mac,
1288                     "station authenticate %s via MLME (reason %d)",
1289                     reason == IEEE80211_STATUS_SUCCESS ? "ACCEPT" : "REJECT",
1290                     reason);
1291         } else if (!(IEEE80211_MLME_ASSOC <= op && op <= IEEE80211_MLME_AUTH)) {
1292                 IEEE80211_NOTE_MAC(vap, IEEE80211_MSG_ANY, mac,
1293                     "unknown MLME request %d (reason %d)", op, reason);
1294         } else if (reason == IEEE80211_STATUS_SUCCESS) {
1295                 IEEE80211_NOTE_MAC(vap, ops[op].mask, mac,
1296                     "station %s via MLME", ops[op].opstr);
1297         } else {
1298                 IEEE80211_NOTE_MAC(vap, ops[op].mask, mac,
1299                     "station %s via MLME (reason %d)", ops[op].opstr, reason);
1300         }
1301 #endif /* IEEE80211_DEBUG */
1302 }
1303
1304 static void
1305 domlme(void *arg, struct ieee80211_node *ni)
1306 {
1307         struct mlmeop *mop = arg;
1308         struct ieee80211vap *vap = ni->ni_vap;
1309
1310         if (vap != mop->vap)
1311                 return;
1312         /*
1313          * NB: if ni_associd is zero then the node is already cleaned
1314          * up and we don't need to do this (we're safely holding a
1315          * reference but should otherwise not modify it's state).
1316          */ 
1317         if (ni->ni_associd == 0)
1318                 return;
1319         mlmedebug(vap, ni->ni_macaddr, mop->op, mop->reason);
1320         if (mop->op == IEEE80211_MLME_DEAUTH) {
1321                 IEEE80211_SEND_MGMT(ni, IEEE80211_FC0_SUBTYPE_DEAUTH,
1322                     mop->reason);
1323         } else {
1324                 IEEE80211_SEND_MGMT(ni, IEEE80211_FC0_SUBTYPE_DISASSOC,
1325                     mop->reason);
1326         }
1327         ieee80211_node_leave(ni);
1328 }
1329
1330 static int
1331 setmlme_dropsta(struct ieee80211vap *vap,
1332         const uint8_t mac[IEEE80211_ADDR_LEN], struct mlmeop *mlmeop)
1333 {
1334         struct ieee80211com *ic = vap->iv_ic;
1335         struct ieee80211_node_table *nt = &ic->ic_sta;
1336         struct ieee80211_node *ni;
1337         int error = 0;
1338
1339         /* NB: the broadcast address means do 'em all */
1340         if (!IEEE80211_ADDR_EQ(mac, ic->ic_ifp->if_broadcastaddr)) {
1341                 IEEE80211_NODE_LOCK(nt);
1342                 ni = ieee80211_find_node_locked(nt, mac);
1343                 if (ni != NULL) {
1344                         domlme(mlmeop, ni);
1345                         ieee80211_free_node(ni);
1346                 } else
1347                         error = ENOENT;
1348                 IEEE80211_NODE_UNLOCK(nt);
1349         } else {
1350                 ieee80211_iterate_nodes(nt, domlme, mlmeop);
1351         }
1352         return error;
1353 }
1354
1355 static __noinline int
1356 setmlme_common(struct ieee80211vap *vap, int op,
1357         const uint8_t mac[IEEE80211_ADDR_LEN], int reason)
1358 {
1359         struct ieee80211com *ic = vap->iv_ic;
1360         struct ieee80211_node_table *nt = &ic->ic_sta;
1361         struct ieee80211_node *ni;
1362         struct mlmeop mlmeop;
1363         int error;
1364
1365         error = 0;
1366         switch (op) {
1367         case IEEE80211_MLME_DISASSOC:
1368         case IEEE80211_MLME_DEAUTH:
1369                 switch (vap->iv_opmode) {
1370                 case IEEE80211_M_STA:
1371                         mlmedebug(vap, vap->iv_bss->ni_macaddr, op, reason);
1372                         /* XXX not quite right */
1373                         ieee80211_new_state(vap, IEEE80211_S_INIT, reason);
1374                         break;
1375                 case IEEE80211_M_HOSTAP:
1376                         mlmeop.vap = vap;
1377                         mlmeop.op = op;
1378                         mlmeop.reason = reason;
1379                         error = setmlme_dropsta(vap, mac, &mlmeop);
1380                         break;
1381                 case IEEE80211_M_WDS:
1382                         /* XXX user app should send raw frame? */
1383                         if (op != IEEE80211_MLME_DEAUTH) {
1384                                 error = EINVAL;
1385                                 break;
1386                         }
1387 #if 0
1388                         /* XXX accept any address, simplifies user code */
1389                         if (!IEEE80211_ADDR_EQ(mac, vap->iv_bss->ni_macaddr)) {
1390                                 error = EINVAL;
1391                                 break;
1392                         }
1393 #endif
1394                         mlmedebug(vap, vap->iv_bss->ni_macaddr, op, reason);
1395                         ni = ieee80211_ref_node(vap->iv_bss);
1396                         IEEE80211_SEND_MGMT(ni,
1397                             IEEE80211_FC0_SUBTYPE_DEAUTH, reason);
1398                         ieee80211_free_node(ni);
1399                         break;
1400                 case IEEE80211_M_MBSS:
1401                         IEEE80211_NODE_LOCK(nt);
1402                         ni = ieee80211_find_node_locked(nt, mac);
1403                         if (ni != NULL) {
1404                                 ieee80211_node_leave(ni);
1405                                 ieee80211_free_node(ni);
1406                         } else {
1407                                 error = ENOENT;
1408                         }
1409                         IEEE80211_NODE_UNLOCK(nt);
1410                         break;
1411                 default:
1412                         error = EINVAL;
1413                         break;
1414                 }
1415                 break;
1416         case IEEE80211_MLME_AUTHORIZE:
1417         case IEEE80211_MLME_UNAUTHORIZE:
1418                 if (vap->iv_opmode != IEEE80211_M_HOSTAP &&
1419                     vap->iv_opmode != IEEE80211_M_WDS) {
1420                         error = EINVAL;
1421                         break;
1422                 }
1423                 IEEE80211_NODE_LOCK(nt);
1424                 ni = ieee80211_find_vap_node_locked(nt, vap, mac);
1425                 if (ni != NULL) {
1426                         mlmedebug(vap, mac, op, reason);
1427                         if (op == IEEE80211_MLME_AUTHORIZE)
1428                                 ieee80211_node_authorize(ni);
1429                         else
1430                                 ieee80211_node_unauthorize(ni);
1431                         ieee80211_free_node(ni);
1432                 } else
1433                         error = ENOENT;
1434                 IEEE80211_NODE_UNLOCK(nt);
1435                 break;
1436         case IEEE80211_MLME_AUTH:
1437                 if (vap->iv_opmode != IEEE80211_M_HOSTAP) {
1438                         error = EINVAL;
1439                         break;
1440                 }
1441                 IEEE80211_NODE_LOCK(nt);
1442                 ni = ieee80211_find_vap_node_locked(nt, vap, mac);
1443                 if (ni != NULL) {
1444                         mlmedebug(vap, mac, op, reason);
1445                         if (reason == IEEE80211_STATUS_SUCCESS) {
1446                                 IEEE80211_SEND_MGMT(ni,
1447                                     IEEE80211_FC0_SUBTYPE_AUTH, 2);
1448                                 /*
1449                                  * For shared key auth, just continue the
1450                                  * exchange.  Otherwise when 802.1x is not in
1451                                  * use mark the port authorized at this point
1452                                  * so traffic can flow.
1453                                  */
1454                                 if (ni->ni_authmode != IEEE80211_AUTH_8021X &&
1455                                     ni->ni_challenge == NULL)
1456                                       ieee80211_node_authorize(ni);
1457                         } else {
1458                                 vap->iv_stats.is_rx_acl++;
1459                                 ieee80211_send_error(ni, ni->ni_macaddr,
1460                                     IEEE80211_FC0_SUBTYPE_AUTH, 2|(reason<<16));
1461                                 ieee80211_node_leave(ni);
1462                         }
1463                         ieee80211_free_node(ni);
1464                 } else
1465                         error = ENOENT;
1466                 IEEE80211_NODE_UNLOCK(nt);
1467                 break;
1468         default:
1469                 error = EINVAL;
1470                 break;
1471         }
1472         return error;
1473 }
1474
1475 struct scanlookup {
1476         const uint8_t *mac;
1477         int esslen;
1478         const uint8_t *essid;
1479         const struct ieee80211_scan_entry *se;
1480 };
1481
1482 /*
1483  * Match mac address and any ssid.
1484  */
1485 static void
1486 mlmelookup(void *arg, const struct ieee80211_scan_entry *se)
1487 {
1488         struct scanlookup *look = arg;
1489
1490         if (!IEEE80211_ADDR_EQ(look->mac, se->se_macaddr))
1491                 return;
1492         if (look->esslen != 0) {
1493                 if (se->se_ssid[1] != look->esslen)
1494                         return;
1495                 if (memcmp(look->essid, se->se_ssid+2, look->esslen))
1496                         return;
1497         }
1498         look->se = se;
1499 }
1500
1501 static __noinline int
1502 setmlme_assoc_sta(struct ieee80211vap *vap,
1503         const uint8_t mac[IEEE80211_ADDR_LEN], int ssid_len,
1504         const uint8_t ssid[IEEE80211_NWID_LEN])
1505 {
1506         struct scanlookup lookup;
1507
1508         KASSERT(vap->iv_opmode == IEEE80211_M_STA,
1509             ("expected opmode STA not %s",
1510             ieee80211_opmode_name[vap->iv_opmode]));
1511
1512         /* NB: this is racey if roaming is !manual */
1513         lookup.se = NULL;
1514         lookup.mac = mac;
1515         lookup.esslen = ssid_len;
1516         lookup.essid = ssid;
1517         ieee80211_scan_iterate(vap, mlmelookup, &lookup);
1518         if (lookup.se == NULL)
1519                 return ENOENT;
1520         mlmedebug(vap, mac, IEEE80211_MLME_ASSOC, 0);
1521         if (!ieee80211_sta_join(vap, lookup.se->se_chan, lookup.se))
1522                 return EIO;             /* XXX unique but could be better */
1523         return 0;
1524 }
1525
1526 static __noinline int
1527 setmlme_assoc_adhoc(struct ieee80211vap *vap,
1528         const uint8_t mac[IEEE80211_ADDR_LEN], int ssid_len,
1529         const uint8_t ssid[IEEE80211_NWID_LEN])
1530 {
1531         struct ieee80211_scan_req sr;
1532
1533         KASSERT(vap->iv_opmode == IEEE80211_M_IBSS ||
1534             vap->iv_opmode == IEEE80211_M_AHDEMO,
1535             ("expected opmode IBSS or AHDEMO not %s",
1536             ieee80211_opmode_name[vap->iv_opmode]));
1537
1538         if (ssid_len == 0)
1539                 return EINVAL;
1540
1541         /* NB: IEEE80211_IOC_SSID call missing for ap_scan=2. */
1542         memset(vap->iv_des_ssid[0].ssid, 0, IEEE80211_NWID_LEN);
1543         vap->iv_des_ssid[0].len = ssid_len;
1544         memcpy(vap->iv_des_ssid[0].ssid, ssid, ssid_len);
1545         vap->iv_des_nssid = 1;
1546
1547         memset(&sr, 0, sizeof(sr));
1548         sr.sr_flags = IEEE80211_IOC_SCAN_ACTIVE | IEEE80211_IOC_SCAN_ONCE;
1549         sr.sr_duration = IEEE80211_IOC_SCAN_FOREVER;
1550         memcpy(sr.sr_ssid[0].ssid, ssid, ssid_len);
1551         sr.sr_ssid[0].len = ssid_len;
1552         sr.sr_nssid = 1;
1553
1554         return ieee80211_scanreq(vap, &sr);
1555 }
1556
1557 static __noinline int
1558 ieee80211_ioctl_setmlme(struct ieee80211vap *vap, struct ieee80211req *ireq)
1559 {
1560         struct ieee80211req_mlme mlme;
1561         int error;
1562
1563         if (ireq->i_len != sizeof(mlme))
1564                 return EINVAL;
1565         error = copyin(ireq->i_data, &mlme, sizeof(mlme));
1566         if (error)
1567                 return error;
1568         if  (vap->iv_opmode == IEEE80211_M_STA &&
1569             mlme.im_op == IEEE80211_MLME_ASSOC)
1570                 return setmlme_assoc_sta(vap, mlme.im_macaddr,
1571                     vap->iv_des_ssid[0].len, vap->iv_des_ssid[0].ssid);
1572         else if (mlme.im_op == IEEE80211_MLME_ASSOC)
1573                 return setmlme_assoc_adhoc(vap, mlme.im_macaddr,
1574                     mlme.im_ssid_len, mlme.im_ssid);
1575         else
1576                 return setmlme_common(vap, mlme.im_op,
1577                     mlme.im_macaddr, mlme.im_reason);
1578 }
1579
1580 static __noinline int
1581 ieee80211_ioctl_macmac(struct ieee80211vap *vap, struct ieee80211req *ireq)
1582 {
1583         uint8_t mac[IEEE80211_ADDR_LEN];
1584         const struct ieee80211_aclator *acl = vap->iv_acl;
1585         int error;
1586
1587         if (ireq->i_len != sizeof(mac))
1588                 return EINVAL;
1589         error = copyin(ireq->i_data, mac, ireq->i_len);
1590         if (error)
1591                 return error;
1592         if (acl == NULL) {
1593                 acl = ieee80211_aclator_get("mac");
1594                 if (acl == NULL || !acl->iac_attach(vap))
1595                         return EINVAL;
1596                 vap->iv_acl = acl;
1597         }
1598         if (ireq->i_type == IEEE80211_IOC_ADDMAC)
1599                 acl->iac_add(vap, mac);
1600         else
1601                 acl->iac_remove(vap, mac);
1602         return 0;
1603 }
1604
1605 static __noinline int
1606 ieee80211_ioctl_setmaccmd(struct ieee80211vap *vap, struct ieee80211req *ireq)
1607 {
1608         const struct ieee80211_aclator *acl = vap->iv_acl;
1609
1610         switch (ireq->i_val) {
1611         case IEEE80211_MACCMD_POLICY_OPEN:
1612         case IEEE80211_MACCMD_POLICY_ALLOW:
1613         case IEEE80211_MACCMD_POLICY_DENY:
1614         case IEEE80211_MACCMD_POLICY_RADIUS:
1615                 if (acl == NULL) {
1616                         acl = ieee80211_aclator_get("mac");
1617                         if (acl == NULL || !acl->iac_attach(vap))
1618                                 return EINVAL;
1619                         vap->iv_acl = acl;
1620                 }
1621                 acl->iac_setpolicy(vap, ireq->i_val);
1622                 break;
1623         case IEEE80211_MACCMD_FLUSH:
1624                 if (acl != NULL)
1625                         acl->iac_flush(vap);
1626                 /* NB: silently ignore when not in use */
1627                 break;
1628         case IEEE80211_MACCMD_DETACH:
1629                 if (acl != NULL) {
1630                         vap->iv_acl = NULL;
1631                         acl->iac_detach(vap);
1632                 }
1633                 break;
1634         default:
1635                 if (acl == NULL)
1636                         return EINVAL;
1637                 else
1638                         return acl->iac_setioctl(vap, ireq);
1639         }
1640         return 0;
1641 }
1642
1643 static __noinline int
1644 ieee80211_ioctl_setchanlist(struct ieee80211vap *vap, struct ieee80211req *ireq)
1645 {
1646         struct ieee80211com *ic = vap->iv_ic;
1647         uint8_t *chanlist, *list;
1648         int i, nchan, maxchan, error;
1649
1650         if (ireq->i_len > sizeof(ic->ic_chan_active))
1651                 ireq->i_len = sizeof(ic->ic_chan_active);
1652         list = malloc(ireq->i_len + IEEE80211_CHAN_BYTES, M_TEMP,
1653             M_NOWAIT | M_ZERO);
1654         if (list == NULL)
1655                 return ENOMEM;
1656         error = copyin(ireq->i_data, list, ireq->i_len);
1657         if (error) {
1658                 free(list, M_TEMP);
1659                 return error;
1660         }
1661         nchan = 0;
1662         chanlist = list + ireq->i_len;          /* NB: zero'd already */
1663         maxchan = ireq->i_len * NBBY;
1664         for (i = 0; i < ic->ic_nchans; i++) {
1665                 const struct ieee80211_channel *c = &ic->ic_channels[i];
1666                 /*
1667                  * Calculate the intersection of the user list and the
1668                  * available channels so users can do things like specify
1669                  * 1-255 to get all available channels.
1670                  */
1671                 if (c->ic_ieee < maxchan && isset(list, c->ic_ieee)) {
1672                         setbit(chanlist, c->ic_ieee);
1673                         nchan++;
1674                 }
1675         }
1676         if (nchan == 0) {
1677                 free(list, M_TEMP);
1678                 return EINVAL;
1679         }
1680         if (ic->ic_bsschan != IEEE80211_CHAN_ANYC &&    /* XXX */
1681             isclr(chanlist, ic->ic_bsschan->ic_ieee))
1682                 ic->ic_bsschan = IEEE80211_CHAN_ANYC;
1683         memcpy(ic->ic_chan_active, chanlist, IEEE80211_CHAN_BYTES);
1684         ieee80211_scan_flush(vap);
1685         free(list, M_TEMP);
1686         return ENETRESET;
1687 }
1688
1689 static __noinline int
1690 ieee80211_ioctl_setstastats(struct ieee80211vap *vap, struct ieee80211req *ireq)
1691 {
1692         struct ieee80211_node *ni;
1693         uint8_t macaddr[IEEE80211_ADDR_LEN];
1694         int error;
1695
1696         /*
1697          * NB: we could copyin ieee80211req_sta_stats so apps
1698          *     could make selective changes but that's overkill;
1699          *     just clear all stats for now.
1700          */
1701         if (ireq->i_len < IEEE80211_ADDR_LEN)
1702                 return EINVAL;
1703         error = copyin(ireq->i_data, macaddr, IEEE80211_ADDR_LEN);
1704         if (error != 0)
1705                 return error;
1706         ni = ieee80211_find_vap_node(&vap->iv_ic->ic_sta, vap, macaddr);
1707         if (ni == NULL)
1708                 return ENOENT;
1709         /* XXX require ni_vap == vap? */
1710         memset(&ni->ni_stats, 0, sizeof(ni->ni_stats));
1711         ieee80211_free_node(ni);
1712         return 0;
1713 }
1714
1715 static __noinline int
1716 ieee80211_ioctl_setstatxpow(struct ieee80211vap *vap, struct ieee80211req *ireq)
1717 {
1718         struct ieee80211_node *ni;
1719         struct ieee80211req_sta_txpow txpow;
1720         int error;
1721
1722         if (ireq->i_len != sizeof(txpow))
1723                 return EINVAL;
1724         error = copyin(ireq->i_data, &txpow, sizeof(txpow));
1725         if (error != 0)
1726                 return error;
1727         ni = ieee80211_find_vap_node(&vap->iv_ic->ic_sta, vap, txpow.it_macaddr);
1728         if (ni == NULL)
1729                 return ENOENT;
1730         ni->ni_txpower = txpow.it_txpow;
1731         ieee80211_free_node(ni);
1732         return error;
1733 }
1734
1735 static __noinline int
1736 ieee80211_ioctl_setwmeparam(struct ieee80211vap *vap, struct ieee80211req *ireq)
1737 {
1738         struct ieee80211com *ic = vap->iv_ic;
1739         struct ieee80211_wme_state *wme = &ic->ic_wme;
1740         struct wmeParams *wmep, *chanp;
1741         int isbss, ac;
1742
1743         if ((ic->ic_caps & IEEE80211_C_WME) == 0)
1744                 return EOPNOTSUPP;
1745
1746         isbss = (ireq->i_len & IEEE80211_WMEPARAM_BSS);
1747         ac = (ireq->i_len & IEEE80211_WMEPARAM_VAL);
1748         if (ac >= WME_NUM_AC)
1749                 ac = WME_AC_BE;
1750         if (isbss) {
1751                 chanp = &wme->wme_bssChanParams.cap_wmeParams[ac];
1752                 wmep = &wme->wme_wmeBssChanParams.cap_wmeParams[ac];
1753         } else {
1754                 chanp = &wme->wme_chanParams.cap_wmeParams[ac];
1755                 wmep = &wme->wme_wmeChanParams.cap_wmeParams[ac];
1756         }
1757         switch (ireq->i_type) {
1758         case IEEE80211_IOC_WME_CWMIN:           /* WME: CWmin */
1759                 if (isbss) {
1760                         wmep->wmep_logcwmin = ireq->i_val;
1761                         if ((wme->wme_flags & WME_F_AGGRMODE) == 0)
1762                                 chanp->wmep_logcwmin = ireq->i_val;
1763                 } else {
1764                         wmep->wmep_logcwmin = chanp->wmep_logcwmin =
1765                                 ireq->i_val;
1766                 }
1767                 break;
1768         case IEEE80211_IOC_WME_CWMAX:           /* WME: CWmax */
1769                 if (isbss) {
1770                         wmep->wmep_logcwmax = ireq->i_val;
1771                         if ((wme->wme_flags & WME_F_AGGRMODE) == 0)
1772                                 chanp->wmep_logcwmax = ireq->i_val;
1773                 } else {
1774                         wmep->wmep_logcwmax = chanp->wmep_logcwmax =
1775                                 ireq->i_val;
1776                 }
1777                 break;
1778         case IEEE80211_IOC_WME_AIFS:            /* WME: AIFS */
1779                 if (isbss) {
1780                         wmep->wmep_aifsn = ireq->i_val;
1781                         if ((wme->wme_flags & WME_F_AGGRMODE) == 0)
1782                                 chanp->wmep_aifsn = ireq->i_val;
1783                 } else {
1784                         wmep->wmep_aifsn = chanp->wmep_aifsn = ireq->i_val;
1785                 }
1786                 break;
1787         case IEEE80211_IOC_WME_TXOPLIMIT:       /* WME: txops limit */
1788                 if (isbss) {
1789                         wmep->wmep_txopLimit = ireq->i_val;
1790                         if ((wme->wme_flags & WME_F_AGGRMODE) == 0)
1791                                 chanp->wmep_txopLimit = ireq->i_val;
1792                 } else {
1793                         wmep->wmep_txopLimit = chanp->wmep_txopLimit =
1794                                 ireq->i_val;
1795                 }
1796                 break;
1797         case IEEE80211_IOC_WME_ACM:             /* WME: ACM (bss only) */
1798                 wmep->wmep_acm = ireq->i_val;
1799                 if ((wme->wme_flags & WME_F_AGGRMODE) == 0)
1800                         chanp->wmep_acm = ireq->i_val;
1801                 break;
1802         case IEEE80211_IOC_WME_ACKPOLICY:       /* WME: ACK policy (!bss only)*/
1803                 wmep->wmep_noackPolicy = chanp->wmep_noackPolicy =
1804                         (ireq->i_val) == 0;
1805                 break;
1806         }
1807         ieee80211_wme_updateparams(vap);
1808         return 0;
1809 }
1810
1811 static int
1812 find11gchannel(struct ieee80211com *ic, int start, int freq)
1813 {
1814         const struct ieee80211_channel *c;
1815         int i;
1816
1817         for (i = start+1; i < ic->ic_nchans; i++) {
1818                 c = &ic->ic_channels[i];
1819                 if (c->ic_freq == freq && IEEE80211_IS_CHAN_ANYG(c))
1820                         return 1;
1821         }
1822         /* NB: should not be needed but in case things are mis-sorted */
1823         for (i = 0; i < start; i++) {
1824                 c = &ic->ic_channels[i];
1825                 if (c->ic_freq == freq && IEEE80211_IS_CHAN_ANYG(c))
1826                         return 1;
1827         }
1828         return 0;
1829 }
1830
1831 static struct ieee80211_channel *
1832 findchannel(struct ieee80211com *ic, int ieee, int mode)
1833 {
1834         static const u_int chanflags[IEEE80211_MODE_MAX] = {
1835             [IEEE80211_MODE_AUTO]       = 0,
1836             [IEEE80211_MODE_11A]        = IEEE80211_CHAN_A,
1837             [IEEE80211_MODE_11B]        = IEEE80211_CHAN_B,
1838             [IEEE80211_MODE_11G]        = IEEE80211_CHAN_G,
1839             [IEEE80211_MODE_FH]         = IEEE80211_CHAN_FHSS,
1840             [IEEE80211_MODE_TURBO_A]    = IEEE80211_CHAN_108A,
1841             [IEEE80211_MODE_TURBO_G]    = IEEE80211_CHAN_108G,
1842             [IEEE80211_MODE_STURBO_A]   = IEEE80211_CHAN_STURBO,
1843             [IEEE80211_MODE_HALF]       = IEEE80211_CHAN_HALF,
1844             [IEEE80211_MODE_QUARTER]    = IEEE80211_CHAN_QUARTER,
1845             /* NB: handled specially below */
1846             [IEEE80211_MODE_11NA]       = IEEE80211_CHAN_A,
1847             [IEEE80211_MODE_11NG]       = IEEE80211_CHAN_G,
1848         };
1849         u_int modeflags;
1850         int i;
1851
1852         modeflags = chanflags[mode];
1853         for (i = 0; i < ic->ic_nchans; i++) {
1854                 struct ieee80211_channel *c = &ic->ic_channels[i];
1855
1856                 if (c->ic_ieee != ieee)
1857                         continue;
1858                 if (mode == IEEE80211_MODE_AUTO) {
1859                         /* ignore turbo channels for autoselect */
1860                         if (IEEE80211_IS_CHAN_TURBO(c))
1861                                 continue;
1862                         /*
1863                          * XXX special-case 11b/g channels so we
1864                          *     always select the g channel if both
1865                          *     are present.
1866                          * XXX prefer HT to non-HT?
1867                          */
1868                         if (!IEEE80211_IS_CHAN_B(c) ||
1869                             !find11gchannel(ic, i, c->ic_freq))
1870                                 return c;
1871                 } else {
1872                         /* must check HT specially */
1873                         if ((mode == IEEE80211_MODE_11NA ||
1874                             mode == IEEE80211_MODE_11NG) &&
1875                             !IEEE80211_IS_CHAN_HT(c))
1876                                 continue;
1877                         if ((c->ic_flags & modeflags) == modeflags)
1878                                 return c;
1879                 }
1880         }
1881         return NULL;
1882 }
1883
1884 /*
1885  * Check the specified against any desired mode (aka netband).
1886  * This is only used (presently) when operating in hostap mode
1887  * to enforce consistency.
1888  */
1889 static int
1890 check_mode_consistency(const struct ieee80211_channel *c, int mode)
1891 {
1892         KASSERT(c != IEEE80211_CHAN_ANYC, ("oops, no channel"));
1893
1894         switch (mode) {
1895         case IEEE80211_MODE_11B:
1896                 return (IEEE80211_IS_CHAN_B(c));
1897         case IEEE80211_MODE_11G:
1898                 return (IEEE80211_IS_CHAN_ANYG(c) && !IEEE80211_IS_CHAN_HT(c));
1899         case IEEE80211_MODE_11A:
1900                 return (IEEE80211_IS_CHAN_A(c) && !IEEE80211_IS_CHAN_HT(c));
1901         case IEEE80211_MODE_STURBO_A:
1902                 return (IEEE80211_IS_CHAN_STURBO(c));
1903         case IEEE80211_MODE_11NA:
1904                 return (IEEE80211_IS_CHAN_HTA(c));
1905         case IEEE80211_MODE_11NG:
1906                 return (IEEE80211_IS_CHAN_HTG(c));
1907         }
1908         return 1;
1909
1910 }
1911
1912 /*
1913  * Common code to set the current channel.  If the device
1914  * is up and running this may result in an immediate channel
1915  * change or a kick of the state machine.
1916  */
1917 static int
1918 setcurchan(struct ieee80211vap *vap, struct ieee80211_channel *c)
1919 {
1920         struct ieee80211com *ic = vap->iv_ic;
1921         int error;
1922
1923         if (c != IEEE80211_CHAN_ANYC) {
1924                 if (IEEE80211_IS_CHAN_RADAR(c))
1925                         return EBUSY;   /* XXX better code? */
1926                 if (vap->iv_opmode == IEEE80211_M_HOSTAP) {
1927                         if (IEEE80211_IS_CHAN_NOHOSTAP(c))
1928                                 return EINVAL;
1929                         if (!check_mode_consistency(c, vap->iv_des_mode))
1930                                 return EINVAL;
1931                 } else if (vap->iv_opmode == IEEE80211_M_IBSS) {
1932                         if (IEEE80211_IS_CHAN_NOADHOC(c))
1933                                 return EINVAL;
1934                 }
1935                 if (vap->iv_state == IEEE80211_S_RUN &&
1936                     vap->iv_bss->ni_chan == c)
1937                         return 0;       /* NB: nothing to do */
1938         }
1939         vap->iv_des_chan = c;
1940
1941         error = 0;
1942         if (vap->iv_opmode == IEEE80211_M_MONITOR &&
1943             vap->iv_des_chan != IEEE80211_CHAN_ANYC) {
1944                 /*
1945                  * Monitor mode can switch directly.
1946                  */
1947                 if (IFNET_IS_UP_RUNNING(vap->iv_ifp)) {
1948                         /* XXX need state machine for other vap's to follow */
1949                         ieee80211_setcurchan(ic, vap->iv_des_chan);
1950                         vap->iv_bss->ni_chan = ic->ic_curchan;
1951                 } else
1952                         ic->ic_curchan = vap->iv_des_chan;
1953                         ic->ic_rt = ieee80211_get_ratetable(ic->ic_curchan);
1954         } else {
1955                 /*
1956                  * Need to go through the state machine in case we
1957                  * need to reassociate or the like.  The state machine
1958                  * will pickup the desired channel and avoid scanning.
1959                  */
1960                 if (IS_UP_AUTO(vap))
1961                         ieee80211_new_state(vap, IEEE80211_S_SCAN, 0);
1962                 else if (vap->iv_des_chan != IEEE80211_CHAN_ANYC) {
1963                         /*
1964                          * When not up+running and a real channel has
1965                          * been specified fix the current channel so
1966                          * there is immediate feedback; e.g. via ifconfig.
1967                          */
1968                         ic->ic_curchan = vap->iv_des_chan;
1969                         ic->ic_rt = ieee80211_get_ratetable(ic->ic_curchan);
1970                 }
1971         }
1972         return error;
1973 }
1974
1975 /*
1976  * Old api for setting the current channel; this is
1977  * deprecated because channel numbers are ambiguous.
1978  */
1979 static __noinline int
1980 ieee80211_ioctl_setchannel(struct ieee80211vap *vap,
1981         const struct ieee80211req *ireq)
1982 {
1983         struct ieee80211com *ic = vap->iv_ic;
1984         struct ieee80211_channel *c;
1985
1986         /* XXX 0xffff overflows 16-bit signed */
1987         if (ireq->i_val == 0 ||
1988             ireq->i_val == (int16_t) IEEE80211_CHAN_ANY) {
1989                 c = IEEE80211_CHAN_ANYC;
1990         } else {
1991                 struct ieee80211_channel *c2;
1992
1993                 c = findchannel(ic, ireq->i_val, vap->iv_des_mode);
1994                 if (c == NULL) {
1995                         c = findchannel(ic, ireq->i_val,
1996                                 IEEE80211_MODE_AUTO);
1997                         if (c == NULL)
1998                                 return EINVAL;
1999                 }
2000                 /*
2001                  * Fine tune channel selection based on desired mode:
2002                  *   if 11b is requested, find the 11b version of any
2003                  *      11g channel returned,
2004                  *   if static turbo, find the turbo version of any
2005                  *      11a channel return,
2006                  *   if 11na is requested, find the ht version of any
2007                  *      11a channel returned,
2008                  *   if 11ng is requested, find the ht version of any
2009                  *      11g channel returned,
2010                  *   otherwise we should be ok with what we've got.
2011                  */
2012                 switch (vap->iv_des_mode) {
2013                 case IEEE80211_MODE_11B:
2014                         if (IEEE80211_IS_CHAN_ANYG(c)) {
2015                                 c2 = findchannel(ic, ireq->i_val,
2016                                         IEEE80211_MODE_11B);
2017                                 /* NB: should not happen, =>'s 11g w/o 11b */
2018                                 if (c2 != NULL)
2019                                         c = c2;
2020                         }
2021                         break;
2022                 case IEEE80211_MODE_TURBO_A:
2023                         if (IEEE80211_IS_CHAN_A(c)) {
2024                                 c2 = findchannel(ic, ireq->i_val,
2025                                         IEEE80211_MODE_TURBO_A);
2026                                 if (c2 != NULL)
2027                                         c = c2;
2028                         }
2029                         break;
2030                 case IEEE80211_MODE_11NA:
2031                         if (IEEE80211_IS_CHAN_A(c)) {
2032                                 c2 = findchannel(ic, ireq->i_val,
2033                                         IEEE80211_MODE_11NA);
2034                                 if (c2 != NULL)
2035                                         c = c2;
2036                         }
2037                         break;
2038                 case IEEE80211_MODE_11NG:
2039                         if (IEEE80211_IS_CHAN_ANYG(c)) {
2040                                 c2 = findchannel(ic, ireq->i_val,
2041                                         IEEE80211_MODE_11NG);
2042                                 if (c2 != NULL)
2043                                         c = c2;
2044                         }
2045                         break;
2046                 default:                /* NB: no static turboG */
2047                         break;
2048                 }
2049         }
2050         return setcurchan(vap, c);
2051 }
2052
2053 /*
2054  * New/current api for setting the current channel; a complete
2055  * channel description is provide so there is no ambiguity in
2056  * identifying the channel.
2057  */
2058 static __noinline int
2059 ieee80211_ioctl_setcurchan(struct ieee80211vap *vap,
2060         const struct ieee80211req *ireq)
2061 {
2062         struct ieee80211com *ic = vap->iv_ic;
2063         struct ieee80211_channel chan, *c;
2064         int error;
2065
2066         if (ireq->i_len != sizeof(chan))
2067                 return EINVAL;
2068         error = copyin(ireq->i_data, &chan, sizeof(chan));
2069         if (error != 0)
2070                 return error;
2071         /* XXX 0xffff overflows 16-bit signed */
2072         if (chan.ic_freq == 0 || chan.ic_freq == IEEE80211_CHAN_ANY) {
2073                 c = IEEE80211_CHAN_ANYC;
2074         } else {
2075                 c = ieee80211_find_channel(ic, chan.ic_freq, chan.ic_flags);
2076                 if (c == NULL)
2077                         return EINVAL;
2078         }
2079         return setcurchan(vap, c);
2080 }
2081
2082 static __noinline int
2083 ieee80211_ioctl_setregdomain(struct ieee80211vap *vap,
2084         const struct ieee80211req *ireq)
2085 {
2086         struct ieee80211_regdomain_req *reg;
2087         int nchans, error;
2088
2089         nchans = 1 + ((ireq->i_len - sizeof(struct ieee80211_regdomain_req)) /
2090             sizeof(struct ieee80211_channel));
2091         if (!(1 <= nchans && nchans <= IEEE80211_CHAN_MAX)) {
2092                 IEEE80211_DPRINTF(vap, IEEE80211_MSG_IOCTL,
2093                     "%s: bad # chans, i_len %d nchans %d\n", __func__,
2094                     ireq->i_len, nchans);
2095                 return EINVAL;
2096         }
2097         reg = (struct ieee80211_regdomain_req *)
2098             malloc(IEEE80211_REGDOMAIN_SIZE(nchans), M_TEMP, M_NOWAIT);
2099         if (reg == NULL) {
2100                 IEEE80211_DPRINTF(vap, IEEE80211_MSG_IOCTL,
2101                     "%s: no memory, nchans %d\n", __func__, nchans);
2102                 return ENOMEM;
2103         }
2104         error = copyin(ireq->i_data, reg, IEEE80211_REGDOMAIN_SIZE(nchans));
2105         if (error == 0) {
2106                 /* NB: validate inline channel count against storage size */
2107                 if (reg->chaninfo.ic_nchans != nchans) {
2108                         IEEE80211_DPRINTF(vap, IEEE80211_MSG_IOCTL,
2109                             "%s: chan cnt mismatch, %d != %d\n", __func__,
2110                                 reg->chaninfo.ic_nchans, nchans);
2111                         error = EINVAL;
2112                 } else
2113                         error = ieee80211_setregdomain(vap, reg);
2114         }
2115         free(reg, M_TEMP);
2116
2117         return (error == 0 ? ENETRESET : error);
2118 }
2119
2120 static int
2121 ieee80211_ioctl_setroam(struct ieee80211vap *vap,
2122         const struct ieee80211req *ireq)
2123 {
2124         if (ireq->i_len != sizeof(vap->iv_roamparms))
2125                 return EINVAL;
2126         /* XXX validate params */
2127         /* XXX? ENETRESET to push to device? */
2128         return copyin(ireq->i_data, vap->iv_roamparms,
2129             sizeof(vap->iv_roamparms));
2130 }
2131
2132 static int
2133 checkrate(const struct ieee80211_rateset *rs, int rate)
2134 {
2135         int i;
2136
2137         if (rate == IEEE80211_FIXED_RATE_NONE)
2138                 return 1;
2139         for (i = 0; i < rs->rs_nrates; i++)
2140                 if ((rs->rs_rates[i] & IEEE80211_RATE_VAL) == rate)
2141                         return 1;
2142         return 0;
2143 }
2144
2145 static int
2146 checkmcs(int mcs)
2147 {
2148         if (mcs == IEEE80211_FIXED_RATE_NONE)
2149                 return 1;
2150         if ((mcs & IEEE80211_RATE_MCS) == 0)    /* MCS always have 0x80 set */
2151                 return 0;
2152         return (mcs & 0x7f) <= 15;      /* XXX could search ht rate set */
2153 }
2154
2155 static __noinline int
2156 ieee80211_ioctl_settxparams(struct ieee80211vap *vap,
2157         const struct ieee80211req *ireq)
2158 {
2159         struct ieee80211com *ic = vap->iv_ic;
2160         struct ieee80211_txparams_req parms;    /* XXX stack use? */
2161         struct ieee80211_txparam *src, *dst;
2162         const struct ieee80211_rateset *rs;
2163         int error, mode, changed, is11n, nmodes;
2164
2165         /* NB: accept short requests for backwards compat */
2166         if (ireq->i_len > sizeof(parms))
2167                 return EINVAL;
2168         error = copyin(ireq->i_data, &parms, ireq->i_len);
2169         if (error != 0)
2170                 return error;
2171         nmodes = ireq->i_len / sizeof(struct ieee80211_txparam);
2172         changed = 0;
2173         /* validate parameters and check if anything changed */
2174         for (mode = IEEE80211_MODE_11A; mode < nmodes; mode++) {
2175                 if (isclr(ic->ic_modecaps, mode))
2176                         continue;
2177                 src = &parms.params[mode];
2178                 dst = &vap->iv_txparms[mode];
2179                 rs = &ic->ic_sup_rates[mode];   /* NB: 11n maps to legacy */
2180                 is11n = (mode == IEEE80211_MODE_11NA ||
2181                          mode == IEEE80211_MODE_11NG);
2182                 if (src->ucastrate != dst->ucastrate) {
2183                         if (!checkrate(rs, src->ucastrate) &&
2184                             (!is11n || !checkmcs(src->ucastrate)))
2185                                 return EINVAL;
2186                         changed++;
2187                 }
2188                 if (src->mcastrate != dst->mcastrate) {
2189                         if (!checkrate(rs, src->mcastrate) &&
2190                             (!is11n || !checkmcs(src->mcastrate)))
2191                                 return EINVAL;
2192                         changed++;
2193                 }
2194                 if (src->mgmtrate != dst->mgmtrate) {
2195                         if (!checkrate(rs, src->mgmtrate) &&
2196                             (!is11n || !checkmcs(src->mgmtrate)))
2197                                 return EINVAL;
2198                         changed++;
2199                 }
2200                 if (src->maxretry != dst->maxretry)     /* NB: no bounds */
2201                         changed++;
2202         }
2203         if (changed) {
2204                 /*
2205                  * Copy new parameters in place and notify the
2206                  * driver so it can push state to the device.
2207                  */
2208                 for (mode = IEEE80211_MODE_11A; mode < nmodes; mode++) {
2209                         if (isset(ic->ic_modecaps, mode))
2210                                 vap->iv_txparms[mode] = parms.params[mode];
2211                 }
2212                 /* XXX could be more intelligent,
2213                    e.g. don't reset if setting not being used */
2214                 return ENETRESET;
2215         }
2216         return 0;
2217 }
2218
2219 /*
2220  * Application Information Element support.
2221  */
2222 static int
2223 setappie(struct ieee80211_appie **aie, const struct ieee80211req *ireq)
2224 {
2225         struct ieee80211_appie *app = *aie;
2226         struct ieee80211_appie *napp;
2227         int error;
2228
2229         if (ireq->i_len == 0) {         /* delete any existing ie */
2230                 if (app != NULL) {
2231                         *aie = NULL;    /* XXX racey */
2232                         free(app, M_80211_NODE_IE);
2233                 }
2234                 return 0;
2235         }
2236         if (!(2 <= ireq->i_len && ireq->i_len <= IEEE80211_MAX_APPIE))
2237                 return EINVAL;
2238         /*
2239          * Allocate a new appie structure and copy in the user data.
2240          * When done swap in the new structure.  Note that we do not
2241          * guard against users holding a ref to the old structure;
2242          * this must be handled outside this code.
2243          *
2244          * XXX bad bad bad
2245          */
2246         napp = (struct ieee80211_appie *) malloc(
2247             sizeof(struct ieee80211_appie) + ireq->i_len, M_80211_NODE_IE, M_NOWAIT);
2248         if (napp == NULL)
2249                 return ENOMEM;
2250         /* XXX holding ic lock */
2251         error = copyin(ireq->i_data, napp->ie_data, ireq->i_len);
2252         if (error) {
2253                 free(napp, M_80211_NODE_IE);
2254                 return error;
2255         }
2256         napp->ie_len = ireq->i_len;
2257         *aie = napp;
2258         if (app != NULL)
2259                 free(app, M_80211_NODE_IE);
2260         return 0;
2261 }
2262
2263 static void
2264 setwparsnie(struct ieee80211vap *vap, uint8_t *ie, int space)
2265 {
2266         /* validate data is present as best we can */
2267         if (space == 0 || 2+ie[1] > space)
2268                 return;
2269         if (ie[0] == IEEE80211_ELEMID_VENDOR)
2270                 vap->iv_wpa_ie = ie;
2271         else if (ie[0] == IEEE80211_ELEMID_RSN)
2272                 vap->iv_rsn_ie = ie;
2273 }
2274
2275 static __noinline int
2276 ieee80211_ioctl_setappie_locked(struct ieee80211vap *vap,
2277         const struct ieee80211req *ireq, int fc0)
2278 {
2279         int error;
2280
2281         IEEE80211_LOCK_ASSERT(vap->iv_ic);
2282
2283         switch (fc0 & IEEE80211_FC0_SUBTYPE_MASK) {
2284         case IEEE80211_FC0_SUBTYPE_BEACON:
2285                 if (vap->iv_opmode != IEEE80211_M_HOSTAP &&
2286                     vap->iv_opmode != IEEE80211_M_IBSS) {
2287                         error = EINVAL;
2288                         break;
2289                 }
2290                 error = setappie(&vap->iv_appie_beacon, ireq);
2291                 if (error == 0)
2292                         ieee80211_beacon_notify(vap, IEEE80211_BEACON_APPIE);
2293                 break;
2294         case IEEE80211_FC0_SUBTYPE_PROBE_RESP:
2295                 error = setappie(&vap->iv_appie_proberesp, ireq);
2296                 break;
2297         case IEEE80211_FC0_SUBTYPE_ASSOC_RESP:
2298                 if (vap->iv_opmode == IEEE80211_M_HOSTAP)
2299                         error = setappie(&vap->iv_appie_assocresp, ireq);
2300                 else
2301                         error = EINVAL;
2302                 break;
2303         case IEEE80211_FC0_SUBTYPE_PROBE_REQ:
2304                 error = setappie(&vap->iv_appie_probereq, ireq);
2305                 break;
2306         case IEEE80211_FC0_SUBTYPE_ASSOC_REQ:
2307                 if (vap->iv_opmode == IEEE80211_M_STA)
2308                         error = setappie(&vap->iv_appie_assocreq, ireq);
2309                 else
2310                         error = EINVAL;
2311                 break;
2312         case (IEEE80211_APPIE_WPA & IEEE80211_FC0_SUBTYPE_MASK):
2313                 error = setappie(&vap->iv_appie_wpa, ireq);
2314                 if (error == 0) {
2315                         /*
2316                          * Must split single blob of data into separate
2317                          * WPA and RSN ie's because they go in different
2318                          * locations in the mgt frames.
2319                          * XXX use IEEE80211_IOC_WPA2 so user code does split
2320                          */
2321                         vap->iv_wpa_ie = NULL;
2322                         vap->iv_rsn_ie = NULL;
2323                         if (vap->iv_appie_wpa != NULL) {
2324                                 struct ieee80211_appie *appie =
2325                                     vap->iv_appie_wpa;
2326                                 uint8_t *data = appie->ie_data;
2327
2328                                 /* XXX ie length validate is painful, cheat */
2329                                 setwparsnie(vap, data, appie->ie_len);
2330                                 setwparsnie(vap, data + 2 + data[1],
2331                                     appie->ie_len - (2 + data[1]));
2332                         }
2333                         if (vap->iv_opmode == IEEE80211_M_HOSTAP ||
2334                             vap->iv_opmode == IEEE80211_M_IBSS) {
2335                                 /*
2336                                  * Must rebuild beacon frame as the update
2337                                  * mechanism doesn't handle WPA/RSN ie's.
2338                                  * Could extend it but it doesn't normally
2339                                  * change; this is just to deal with hostapd
2340                                  * plumbing the ie after the interface is up.
2341                                  */
2342                                 error = ENETRESET;
2343                         }
2344                 }
2345                 break;
2346         default:
2347                 error = EINVAL;
2348                 break;
2349         }
2350         return error;
2351 }
2352
2353 static __noinline int
2354 ieee80211_ioctl_setappie(struct ieee80211vap *vap,
2355         const struct ieee80211req *ireq)
2356 {
2357         struct ieee80211com *ic = vap->iv_ic;
2358         int error;
2359         uint8_t fc0;
2360
2361         fc0 = ireq->i_val & 0xff;
2362         if ((fc0 & IEEE80211_FC0_TYPE_MASK) != IEEE80211_FC0_TYPE_MGT)
2363                 return EINVAL;
2364         /* NB: could check iv_opmode and reject but hardly worth the effort */
2365         IEEE80211_LOCK(ic);
2366         error = ieee80211_ioctl_setappie_locked(vap, ireq, fc0);
2367         IEEE80211_UNLOCK(ic);
2368         return error;
2369 }
2370
2371 static __noinline int
2372 ieee80211_ioctl_chanswitch(struct ieee80211vap *vap, struct ieee80211req *ireq)
2373 {
2374         struct ieee80211com *ic = vap->iv_ic;
2375         struct ieee80211_chanswitch_req csr;
2376         struct ieee80211_channel *c;
2377         int error;
2378
2379         if (ireq->i_len != sizeof(csr))
2380                 return EINVAL;
2381         error = copyin(ireq->i_data, &csr, sizeof(csr));
2382         if (error != 0)
2383                 return error;
2384         /* XXX adhoc mode not supported */
2385         if (vap->iv_opmode != IEEE80211_M_HOSTAP ||
2386             (vap->iv_flags & IEEE80211_F_DOTH) == 0)
2387                 return EOPNOTSUPP;
2388         c = ieee80211_find_channel(ic,
2389             csr.csa_chan.ic_freq, csr.csa_chan.ic_flags);
2390         if (c == NULL)
2391                 return ENOENT;
2392         IEEE80211_LOCK(ic);
2393         if ((ic->ic_flags & IEEE80211_F_CSAPENDING) == 0)
2394                 ieee80211_csa_startswitch(ic, c, csr.csa_mode, csr.csa_count);
2395         else if (csr.csa_count == 0)
2396                 ieee80211_csa_cancelswitch(ic);
2397         else
2398                 error = EBUSY;
2399         IEEE80211_UNLOCK(ic);
2400         return error;
2401 }
2402
2403 static int
2404 ieee80211_scanreq(struct ieee80211vap *vap, struct ieee80211_scan_req *sr)
2405 {
2406 #define IEEE80211_IOC_SCAN_FLAGS \
2407         (IEEE80211_IOC_SCAN_NOPICK | IEEE80211_IOC_SCAN_ACTIVE | \
2408          IEEE80211_IOC_SCAN_PICK1ST | IEEE80211_IOC_SCAN_BGSCAN | \
2409          IEEE80211_IOC_SCAN_ONCE | IEEE80211_IOC_SCAN_NOBCAST | \
2410          IEEE80211_IOC_SCAN_NOJOIN | IEEE80211_IOC_SCAN_FLUSH | \
2411          IEEE80211_IOC_SCAN_CHECK)
2412         struct ieee80211com *ic = vap->iv_ic;
2413         int error, i;
2414
2415         /* convert duration */
2416         if (sr->sr_duration == IEEE80211_IOC_SCAN_FOREVER)
2417                 sr->sr_duration = IEEE80211_SCAN_FOREVER;
2418         else {
2419                 if (sr->sr_duration < IEEE80211_IOC_SCAN_DURATION_MIN ||
2420                     sr->sr_duration > IEEE80211_IOC_SCAN_DURATION_MAX)
2421                         return EINVAL;
2422                 sr->sr_duration = msecs_to_ticks(sr->sr_duration);
2423                 if (sr->sr_duration < 1)
2424                         sr->sr_duration = 1;
2425         }
2426         /* convert min/max channel dwell */
2427         if (sr->sr_mindwell != 0) {
2428                 sr->sr_mindwell = msecs_to_ticks(sr->sr_mindwell);
2429                 if (sr->sr_mindwell < 1)
2430                         sr->sr_mindwell = 1;
2431         }
2432         if (sr->sr_maxdwell != 0) {
2433                 sr->sr_maxdwell = msecs_to_ticks(sr->sr_maxdwell);
2434                 if (sr->sr_maxdwell < 1)
2435                         sr->sr_maxdwell = 1;
2436         }
2437         /* NB: silently reduce ssid count to what is supported */
2438         if (sr->sr_nssid > IEEE80211_SCAN_MAX_SSID)
2439                 sr->sr_nssid = IEEE80211_SCAN_MAX_SSID;
2440         for (i = 0; i < sr->sr_nssid; i++)
2441                 if (sr->sr_ssid[i].len > IEEE80211_NWID_LEN)
2442                         return EINVAL;
2443         /* cleanse flags just in case, could reject if invalid flags */
2444         sr->sr_flags &= IEEE80211_IOC_SCAN_FLAGS;
2445         /*
2446          * Add an implicit NOPICK if the vap is not marked UP.  This
2447          * allows applications to scan without joining a bss (or picking
2448          * a channel and setting up a bss) and without forcing manual
2449          * roaming mode--you just need to mark the parent device UP.
2450          */
2451         if ((vap->iv_ifp->if_flags & IFF_UP) == 0)
2452                 sr->sr_flags |= IEEE80211_IOC_SCAN_NOPICK;
2453
2454         IEEE80211_DPRINTF(vap, IEEE80211_MSG_SCAN,
2455             "%s: flags 0x%x%s duration 0x%x mindwell %u maxdwell %u nssid %d\n",
2456             __func__, sr->sr_flags,
2457             (vap->iv_ifp->if_flags & IFF_UP) == 0 ? " (!IFF_UP)" : "",
2458             sr->sr_duration, sr->sr_mindwell, sr->sr_maxdwell, sr->sr_nssid);
2459         /*
2460          * If we are in INIT state then the driver has never had a chance
2461          * to setup hardware state to do a scan; we must use the state
2462          * machine to get us up to the SCAN state but once we reach SCAN
2463          * state we then want to use the supplied params.  Stash the
2464          * parameters in the vap and mark IEEE80211_FEXT_SCANREQ; the
2465          * state machines will recognize this and use the stashed params
2466          * to issue the scan request.
2467          *
2468          * Otherwise just invoke the scan machinery directly.
2469          */
2470         IEEE80211_LOCK(ic);
2471         if (vap->iv_state == IEEE80211_S_INIT) {
2472                 /* NB: clobbers previous settings */
2473                 vap->iv_scanreq_flags = sr->sr_flags;
2474                 vap->iv_scanreq_duration = sr->sr_duration;
2475                 vap->iv_scanreq_nssid = sr->sr_nssid;
2476                 for (i = 0; i < sr->sr_nssid; i++) {
2477                         vap->iv_scanreq_ssid[i].len = sr->sr_ssid[i].len;
2478                         memcpy(vap->iv_scanreq_ssid[i].ssid,
2479                             sr->sr_ssid[i].ssid, sr->sr_ssid[i].len);
2480                 }
2481                 vap->iv_flags_ext |= IEEE80211_FEXT_SCANREQ;
2482                 IEEE80211_UNLOCK(ic);
2483                 ieee80211_new_state(vap, IEEE80211_S_SCAN, 0);
2484         } else {
2485                 vap->iv_flags_ext &= ~IEEE80211_FEXT_SCANREQ;
2486                 IEEE80211_UNLOCK(ic);
2487                 if (sr->sr_flags & IEEE80211_IOC_SCAN_CHECK) {
2488                         error = ieee80211_check_scan(vap, sr->sr_flags,
2489                             sr->sr_duration, sr->sr_mindwell, sr->sr_maxdwell,
2490                             sr->sr_nssid,
2491                             /* NB: cheat, we assume structures are compatible */
2492                             (const struct ieee80211_scan_ssid *) &sr->sr_ssid[0]);
2493                 } else {
2494                         error = ieee80211_start_scan(vap, sr->sr_flags,
2495                             sr->sr_duration, sr->sr_mindwell, sr->sr_maxdwell,
2496                             sr->sr_nssid,
2497                             /* NB: cheat, we assume structures are compatible */
2498                             (const struct ieee80211_scan_ssid *) &sr->sr_ssid[0]);
2499                 }
2500                 if (error == 0)
2501                         return EINPROGRESS;
2502         }
2503         return 0;
2504 #undef IEEE80211_IOC_SCAN_FLAGS
2505 }
2506
2507 static __noinline int
2508 ieee80211_ioctl_scanreq(struct ieee80211vap *vap, struct ieee80211req *ireq)
2509 {
2510         struct ieee80211com *ic = vap->iv_ic;
2511         struct ieee80211_scan_req sr;           /* XXX off stack? */
2512         int error;
2513
2514         /* NB: parent must be running */
2515         if ((ic->ic_ifp->if_drv_flags & IFF_DRV_RUNNING) == 0)
2516                 return ENXIO;
2517
2518         if (ireq->i_len != sizeof(sr))
2519                 return EINVAL;
2520         error = copyin(ireq->i_data, &sr, sizeof(sr));
2521         if (error != 0)
2522                 return error;
2523         return ieee80211_scanreq(vap, &sr);
2524 }
2525
2526 static __noinline int
2527 ieee80211_ioctl_setstavlan(struct ieee80211vap *vap, struct ieee80211req *ireq)
2528 {
2529         struct ieee80211_node *ni;
2530         struct ieee80211req_sta_vlan vlan;
2531         int error;
2532
2533         if (ireq->i_len != sizeof(vlan))
2534                 return EINVAL;
2535         error = copyin(ireq->i_data, &vlan, sizeof(vlan));
2536         if (error != 0)
2537                 return error;
2538         if (!IEEE80211_ADDR_EQ(vlan.sv_macaddr, zerobssid)) {
2539                 ni = ieee80211_find_vap_node(&vap->iv_ic->ic_sta, vap,
2540                     vlan.sv_macaddr);
2541                 if (ni == NULL)
2542                         return ENOENT;
2543         } else
2544                 ni = ieee80211_ref_node(vap->iv_bss);
2545         ni->ni_vlan = vlan.sv_vlan;
2546         ieee80211_free_node(ni);
2547         return error;
2548 }
2549
2550 static int
2551 isvap11g(const struct ieee80211vap *vap)
2552 {
2553         const struct ieee80211_node *bss = vap->iv_bss;
2554         return bss->ni_chan != IEEE80211_CHAN_ANYC &&
2555             IEEE80211_IS_CHAN_ANYG(bss->ni_chan);
2556 }
2557
2558 static int
2559 isvapht(const struct ieee80211vap *vap)
2560 {
2561         const struct ieee80211_node *bss = vap->iv_bss;
2562         return bss->ni_chan != IEEE80211_CHAN_ANYC &&
2563             IEEE80211_IS_CHAN_HT(bss->ni_chan);
2564 }
2565
2566 /*
2567  * Dummy ioctl set handler so the linker set is defined.
2568  */
2569 static int
2570 dummy_ioctl_set(struct ieee80211vap *vap, struct ieee80211req *ireq)
2571 {
2572         return ENOSYS;
2573 }
2574 IEEE80211_IOCTL_SET(dummy, dummy_ioctl_set);
2575
2576 static int
2577 ieee80211_ioctl_setdefault(struct ieee80211vap *vap, struct ieee80211req *ireq)
2578 {
2579         ieee80211_ioctl_setfunc * const *set;
2580         int error;
2581
2582         SET_FOREACH(set, ieee80211_ioctl_setset) {
2583                 error = (*set)(vap, ireq);
2584                 if (error != ENOSYS)
2585                         return error;
2586         }
2587         return EINVAL;
2588 }
2589
2590 static __noinline int
2591 ieee80211_ioctl_set80211(struct ieee80211vap *vap, u_long cmd, struct ieee80211req *ireq)
2592 {
2593         struct ieee80211com *ic = vap->iv_ic;
2594         int error;
2595         const struct ieee80211_authenticator *auth;
2596         uint8_t tmpkey[IEEE80211_KEYBUF_SIZE];
2597         char tmpssid[IEEE80211_NWID_LEN];
2598         uint8_t tmpbssid[IEEE80211_ADDR_LEN];
2599         struct ieee80211_key *k;
2600         u_int kid;
2601         uint32_t flags;
2602
2603         error = 0;
2604         switch (ireq->i_type) {
2605         case IEEE80211_IOC_SSID:
2606                 if (ireq->i_val != 0 ||
2607                     ireq->i_len > IEEE80211_NWID_LEN)
2608                         return EINVAL;
2609                 error = copyin(ireq->i_data, tmpssid, ireq->i_len);
2610                 if (error)
2611                         break;
2612                 memset(vap->iv_des_ssid[0].ssid, 0, IEEE80211_NWID_LEN);
2613                 vap->iv_des_ssid[0].len = ireq->i_len;
2614                 memcpy(vap->iv_des_ssid[0].ssid, tmpssid, ireq->i_len);
2615                 vap->iv_des_nssid = (ireq->i_len > 0);
2616                 error = ENETRESET;
2617                 break;
2618         case IEEE80211_IOC_WEP:
2619                 switch (ireq->i_val) {
2620                 case IEEE80211_WEP_OFF:
2621                         vap->iv_flags &= ~IEEE80211_F_PRIVACY;
2622                         vap->iv_flags &= ~IEEE80211_F_DROPUNENC;
2623                         break;
2624                 case IEEE80211_WEP_ON:
2625                         vap->iv_flags |= IEEE80211_F_PRIVACY;
2626                         vap->iv_flags |= IEEE80211_F_DROPUNENC;
2627                         break;
2628                 case IEEE80211_WEP_MIXED:
2629                         vap->iv_flags |= IEEE80211_F_PRIVACY;
2630                         vap->iv_flags &= ~IEEE80211_F_DROPUNENC;
2631                         break;
2632                 }
2633                 error = ENETRESET;
2634                 break;
2635         case IEEE80211_IOC_WEPKEY:
2636                 kid = (u_int) ireq->i_val;
2637                 if (kid >= IEEE80211_WEP_NKID)
2638                         return EINVAL;
2639                 k = &vap->iv_nw_keys[kid];
2640                 if (ireq->i_len == 0) {
2641                         /* zero-len =>'s delete any existing key */
2642                         (void) ieee80211_crypto_delkey(vap, k);
2643                         break;
2644                 }
2645                 if (ireq->i_len > sizeof(tmpkey))
2646                         return EINVAL;
2647                 memset(tmpkey, 0, sizeof(tmpkey));
2648                 error = copyin(ireq->i_data, tmpkey, ireq->i_len);
2649                 if (error)
2650                         break;
2651                 ieee80211_key_update_begin(vap);
2652                 k->wk_keyix = kid;      /* NB: force fixed key id */
2653                 if (ieee80211_crypto_newkey(vap, IEEE80211_CIPHER_WEP,
2654                     IEEE80211_KEY_XMIT | IEEE80211_KEY_RECV, k)) {
2655                         k->wk_keylen = ireq->i_len;
2656                         memcpy(k->wk_key, tmpkey, sizeof(tmpkey));
2657                         IEEE80211_ADDR_COPY(k->wk_macaddr, vap->iv_myaddr);
2658                         if  (!ieee80211_crypto_setkey(vap, k))
2659                                 error = EINVAL;
2660                 } else
2661                         error = EINVAL;
2662                 ieee80211_key_update_end(vap);
2663                 break;
2664         case IEEE80211_IOC_WEPTXKEY:
2665                 kid = (u_int) ireq->i_val;
2666                 if (kid >= IEEE80211_WEP_NKID &&
2667                     (uint16_t) kid != IEEE80211_KEYIX_NONE)
2668                         return EINVAL;
2669                 vap->iv_def_txkey = kid;
2670                 break;
2671         case IEEE80211_IOC_AUTHMODE:
2672                 switch (ireq->i_val) {
2673                 case IEEE80211_AUTH_WPA:
2674                 case IEEE80211_AUTH_8021X:      /* 802.1x */
2675                 case IEEE80211_AUTH_OPEN:       /* open */
2676                 case IEEE80211_AUTH_SHARED:     /* shared-key */
2677                 case IEEE80211_AUTH_AUTO:       /* auto */
2678                         auth = ieee80211_authenticator_get(ireq->i_val);
2679                         if (auth == NULL)
2680                                 return EINVAL;
2681                         break;
2682                 default:
2683                         return EINVAL;
2684                 }
2685                 switch (ireq->i_val) {
2686                 case IEEE80211_AUTH_WPA:        /* WPA w/ 802.1x */
2687                         vap->iv_flags |= IEEE80211_F_PRIVACY;
2688                         ireq->i_val = IEEE80211_AUTH_8021X;
2689                         break;
2690                 case IEEE80211_AUTH_OPEN:       /* open */
2691                         vap->iv_flags &= ~(IEEE80211_F_WPA|IEEE80211_F_PRIVACY);
2692                         break;
2693                 case IEEE80211_AUTH_SHARED:     /* shared-key */
2694                 case IEEE80211_AUTH_8021X:      /* 802.1x */
2695                         vap->iv_flags &= ~IEEE80211_F_WPA;
2696                         /* both require a key so mark the PRIVACY capability */
2697                         vap->iv_flags |= IEEE80211_F_PRIVACY;
2698                         break;
2699                 case IEEE80211_AUTH_AUTO:       /* auto */
2700                         vap->iv_flags &= ~IEEE80211_F_WPA;
2701                         /* XXX PRIVACY handling? */
2702                         /* XXX what's the right way to do this? */
2703                         break;
2704                 }
2705                 /* NB: authenticator attach/detach happens on state change */
2706                 vap->iv_bss->ni_authmode = ireq->i_val;
2707                 /* XXX mixed/mode/usage? */
2708                 vap->iv_auth = auth;
2709                 error = ENETRESET;
2710                 break;
2711         case IEEE80211_IOC_CHANNEL:
2712                 error = ieee80211_ioctl_setchannel(vap, ireq);
2713                 break;
2714         case IEEE80211_IOC_POWERSAVE:
2715                 switch (ireq->i_val) {
2716                 case IEEE80211_POWERSAVE_OFF:
2717                         if (vap->iv_flags & IEEE80211_F_PMGTON) {
2718                                 ieee80211_syncflag(vap, -IEEE80211_F_PMGTON);
2719                                 error = ERESTART;
2720                         }
2721                         break;
2722                 case IEEE80211_POWERSAVE_ON:
2723                         if ((vap->iv_caps & IEEE80211_C_PMGT) == 0)
2724                                 error = EOPNOTSUPP;
2725                         else if ((vap->iv_flags & IEEE80211_F_PMGTON) == 0) {
2726                                 ieee80211_syncflag(vap, IEEE80211_F_PMGTON);
2727                                 error = ERESTART;
2728                         }
2729                         break;
2730                 default:
2731                         error = EINVAL;
2732                         break;
2733                 }
2734                 break;
2735         case IEEE80211_IOC_POWERSAVESLEEP:
2736                 if (ireq->i_val < 0)
2737                         return EINVAL;
2738                 ic->ic_lintval = ireq->i_val;
2739                 error = ERESTART;
2740                 break;
2741         case IEEE80211_IOC_RTSTHRESHOLD:
2742                 if (!(IEEE80211_RTS_MIN <= ireq->i_val &&
2743                       ireq->i_val <= IEEE80211_RTS_MAX))
2744                         return EINVAL;
2745                 vap->iv_rtsthreshold = ireq->i_val;
2746                 error = ERESTART;
2747                 break;
2748         case IEEE80211_IOC_PROTMODE:
2749                 if (ireq->i_val > IEEE80211_PROT_RTSCTS)
2750                         return EINVAL;
2751                 ic->ic_protmode = (enum ieee80211_protmode)ireq->i_val;
2752                 /* NB: if not operating in 11g this can wait */
2753                 if (ic->ic_bsschan != IEEE80211_CHAN_ANYC &&
2754                     IEEE80211_IS_CHAN_ANYG(ic->ic_bsschan))
2755                         error = ERESTART;
2756                 break;
2757         case IEEE80211_IOC_TXPOWER:
2758                 if ((ic->ic_caps & IEEE80211_C_TXPMGT) == 0)
2759                         return EOPNOTSUPP;
2760                 if (!(IEEE80211_TXPOWER_MIN <= ireq->i_val &&
2761                       ireq->i_val <= IEEE80211_TXPOWER_MAX))
2762                         return EINVAL;
2763                 ic->ic_txpowlimit = ireq->i_val;
2764                 error = ERESTART;
2765                 break;
2766         case IEEE80211_IOC_ROAMING:
2767                 if (!(IEEE80211_ROAMING_DEVICE <= ireq->i_val &&
2768                     ireq->i_val <= IEEE80211_ROAMING_MANUAL))
2769                         return EINVAL;
2770                 vap->iv_roaming = (enum ieee80211_roamingmode)ireq->i_val;
2771                 /* XXXX reset? */
2772                 break;
2773         case IEEE80211_IOC_PRIVACY:
2774                 if (ireq->i_val) {
2775                         /* XXX check for key state? */
2776                         vap->iv_flags |= IEEE80211_F_PRIVACY;
2777                 } else
2778                         vap->iv_flags &= ~IEEE80211_F_PRIVACY;
2779                 /* XXX ERESTART? */
2780                 break;
2781         case IEEE80211_IOC_DROPUNENCRYPTED:
2782                 if (ireq->i_val)
2783                         vap->iv_flags |= IEEE80211_F_DROPUNENC;
2784                 else
2785                         vap->iv_flags &= ~IEEE80211_F_DROPUNENC;
2786                 /* XXX ERESTART? */
2787                 break;
2788         case IEEE80211_IOC_WPAKEY:
2789                 error = ieee80211_ioctl_setkey(vap, ireq);
2790                 break;
2791         case IEEE80211_IOC_DELKEY:
2792                 error = ieee80211_ioctl_delkey(vap, ireq);
2793                 break;
2794         case IEEE80211_IOC_MLME:
2795                 error = ieee80211_ioctl_setmlme(vap, ireq);
2796                 break;
2797         case IEEE80211_IOC_COUNTERMEASURES:
2798                 if (ireq->i_val) {
2799                         if ((vap->iv_flags & IEEE80211_F_WPA) == 0)
2800                                 return EOPNOTSUPP;
2801                         vap->iv_flags |= IEEE80211_F_COUNTERM;
2802                 } else
2803                         vap->iv_flags &= ~IEEE80211_F_COUNTERM;
2804                 /* XXX ERESTART? */
2805                 break;
2806         case IEEE80211_IOC_WPA:
2807                 if (ireq->i_val > 3)
2808                         return EINVAL;
2809                 /* XXX verify ciphers available */
2810                 flags = vap->iv_flags & ~IEEE80211_F_WPA;
2811                 switch (ireq->i_val) {
2812                 case 1:
2813                         if (!(vap->iv_caps & IEEE80211_C_WPA1))
2814                                 return EOPNOTSUPP;
2815                         flags |= IEEE80211_F_WPA1;
2816                         break;
2817                 case 2:
2818                         if (!(vap->iv_caps & IEEE80211_C_WPA2))
2819                                 return EOPNOTSUPP;
2820                         flags |= IEEE80211_F_WPA2;
2821                         break;
2822                 case 3:
2823                         if ((vap->iv_caps & IEEE80211_C_WPA) != IEEE80211_C_WPA)
2824                                 return EOPNOTSUPP;
2825                         flags |= IEEE80211_F_WPA1 | IEEE80211_F_WPA2;
2826                         break;
2827                 default:        /*  Can't set any -> error */
2828                         return EOPNOTSUPP;
2829                 }
2830                 vap->iv_flags = flags;
2831                 error = ERESTART;       /* NB: can change beacon frame */
2832                 break;
2833         case IEEE80211_IOC_WME:
2834                 if (ireq->i_val) {
2835                         if ((vap->iv_caps & IEEE80211_C_WME) == 0)
2836                                 return EOPNOTSUPP;
2837                         ieee80211_syncflag(vap, IEEE80211_F_WME);
2838                 } else
2839                         ieee80211_syncflag(vap, -IEEE80211_F_WME);
2840                 error = ERESTART;       /* NB: can change beacon frame */
2841                 break;
2842         case IEEE80211_IOC_HIDESSID:
2843                 if (ireq->i_val)
2844                         vap->iv_flags |= IEEE80211_F_HIDESSID;
2845                 else
2846                         vap->iv_flags &= ~IEEE80211_F_HIDESSID;
2847                 error = ERESTART;               /* XXX ENETRESET? */
2848                 break;
2849         case IEEE80211_IOC_APBRIDGE:
2850                 if (ireq->i_val == 0)
2851                         vap->iv_flags |= IEEE80211_F_NOBRIDGE;
2852                 else
2853                         vap->iv_flags &= ~IEEE80211_F_NOBRIDGE;
2854                 break;
2855         case IEEE80211_IOC_BSSID:
2856                 if (ireq->i_len != sizeof(tmpbssid))
2857                         return EINVAL;
2858                 error = copyin(ireq->i_data, tmpbssid, ireq->i_len);
2859                 if (error)
2860                         break;
2861                 IEEE80211_ADDR_COPY(vap->iv_des_bssid, tmpbssid);
2862                 if (IEEE80211_ADDR_EQ(vap->iv_des_bssid, zerobssid))
2863                         vap->iv_flags &= ~IEEE80211_F_DESBSSID;
2864                 else
2865                         vap->iv_flags |= IEEE80211_F_DESBSSID;
2866                 error = ENETRESET;
2867                 break;
2868         case IEEE80211_IOC_CHANLIST:
2869                 error = ieee80211_ioctl_setchanlist(vap, ireq);
2870                 break;
2871 #define OLD_IEEE80211_IOC_SCAN_REQ      23
2872 #ifdef OLD_IEEE80211_IOC_SCAN_REQ
2873         case OLD_IEEE80211_IOC_SCAN_REQ:
2874                 IEEE80211_DPRINTF(vap, IEEE80211_MSG_SCAN,
2875                         "%s: active scan request\n", __func__);
2876                 /*
2877                  * If we are in INIT state then the driver has never
2878                  * had a chance to setup hardware state to do a scan;
2879                  * use the state machine to get us up the SCAN state.
2880                  * Otherwise just invoke the scan machinery to start
2881                  * a one-time scan.
2882                  */
2883                 if (vap->iv_state == IEEE80211_S_INIT)
2884                         ieee80211_new_state(vap, IEEE80211_S_SCAN, 0);
2885                 else
2886                         (void) ieee80211_start_scan(vap,
2887                                 IEEE80211_SCAN_ACTIVE |
2888                                 IEEE80211_SCAN_NOPICK |
2889                                 IEEE80211_SCAN_ONCE,
2890                                 IEEE80211_SCAN_FOREVER, 0, 0,
2891                                 /* XXX use ioctl params */
2892                                 vap->iv_des_nssid, vap->iv_des_ssid);
2893                 break;
2894 #endif /* OLD_IEEE80211_IOC_SCAN_REQ */
2895         case IEEE80211_IOC_SCAN_REQ:
2896                 error = ieee80211_ioctl_scanreq(vap, ireq);
2897                 break;
2898         case IEEE80211_IOC_SCAN_CANCEL:
2899                 IEEE80211_DPRINTF(vap, IEEE80211_MSG_SCAN,
2900                     "%s: cancel scan\n", __func__);
2901                 ieee80211_cancel_scan(vap);
2902                 break;
2903         case IEEE80211_IOC_HTCONF:
2904                 if (ireq->i_val & 1)
2905                         ieee80211_syncflag_ht(vap, IEEE80211_FHT_HT);
2906                 else
2907                         ieee80211_syncflag_ht(vap, -IEEE80211_FHT_HT);
2908                 if (ireq->i_val & 2)
2909                         ieee80211_syncflag_ht(vap, IEEE80211_FHT_USEHT40);
2910                 else
2911                         ieee80211_syncflag_ht(vap, -IEEE80211_FHT_USEHT40);
2912                 error = ENETRESET;
2913                 break;
2914         case IEEE80211_IOC_ADDMAC:
2915         case IEEE80211_IOC_DELMAC:
2916                 error = ieee80211_ioctl_macmac(vap, ireq);
2917                 break;
2918         case IEEE80211_IOC_MACCMD:
2919                 error = ieee80211_ioctl_setmaccmd(vap, ireq);
2920                 break;
2921         case IEEE80211_IOC_STA_STATS:
2922                 error = ieee80211_ioctl_setstastats(vap, ireq);
2923                 break;
2924         case IEEE80211_IOC_STA_TXPOW:
2925                 error = ieee80211_ioctl_setstatxpow(vap, ireq);
2926                 break;
2927         case IEEE80211_IOC_WME_CWMIN:           /* WME: CWmin */
2928         case IEEE80211_IOC_WME_CWMAX:           /* WME: CWmax */
2929         case IEEE80211_IOC_WME_AIFS:            /* WME: AIFS */
2930         case IEEE80211_IOC_WME_TXOPLIMIT:       /* WME: txops limit */
2931         case IEEE80211_IOC_WME_ACM:             /* WME: ACM (bss only) */
2932         case IEEE80211_IOC_WME_ACKPOLICY:       /* WME: ACK policy (bss only) */
2933                 error = ieee80211_ioctl_setwmeparam(vap, ireq);
2934                 break;
2935         case IEEE80211_IOC_DTIM_PERIOD:
2936                 if (vap->iv_opmode != IEEE80211_M_HOSTAP &&
2937                     vap->iv_opmode != IEEE80211_M_MBSS &&
2938                     vap->iv_opmode != IEEE80211_M_IBSS)
2939                         return EINVAL;
2940                 if (IEEE80211_DTIM_MIN <= ireq->i_val &&
2941                     ireq->i_val <= IEEE80211_DTIM_MAX) {
2942                         vap->iv_dtim_period = ireq->i_val;
2943                         error = ENETRESET;              /* requires restart */
2944                 } else
2945                         error = EINVAL;
2946                 break;
2947         case IEEE80211_IOC_BEACON_INTERVAL:
2948                 if (vap->iv_opmode != IEEE80211_M_HOSTAP &&
2949                     vap->iv_opmode != IEEE80211_M_MBSS &&
2950                     vap->iv_opmode != IEEE80211_M_IBSS)
2951                         return EINVAL;
2952                 if (IEEE80211_BINTVAL_MIN <= ireq->i_val &&
2953                     ireq->i_val <= IEEE80211_BINTVAL_MAX) {
2954                         ic->ic_bintval = ireq->i_val;
2955                         error = ENETRESET;              /* requires restart */
2956                 } else
2957                         error = EINVAL;
2958                 break;
2959         case IEEE80211_IOC_PUREG:
2960                 if (ireq->i_val)
2961                         vap->iv_flags |= IEEE80211_F_PUREG;
2962                 else
2963                         vap->iv_flags &= ~IEEE80211_F_PUREG;
2964                 /* NB: reset only if we're operating on an 11g channel */
2965                 if (isvap11g(vap))
2966                         error = ENETRESET;
2967                 break;
2968         case IEEE80211_IOC_QUIET:
2969                 vap->iv_quiet= ireq->i_val;
2970                 break;
2971         case IEEE80211_IOC_QUIET_COUNT:
2972                 vap->iv_quiet_count=ireq->i_val;
2973                 break;
2974         case IEEE80211_IOC_QUIET_PERIOD:
2975                 vap->iv_quiet_period=ireq->i_val;
2976                 break;
2977         case IEEE80211_IOC_QUIET_OFFSET:
2978                 vap->iv_quiet_offset=ireq->i_val;
2979                 break;
2980         case IEEE80211_IOC_QUIET_DUR:
2981                 if(ireq->i_val < vap->iv_bss->ni_intval)
2982                         vap->iv_quiet_duration = ireq->i_val;
2983                 else
2984                         error = EINVAL;
2985                 break;
2986         case IEEE80211_IOC_BGSCAN:
2987                 if (ireq->i_val) {
2988                         if ((vap->iv_caps & IEEE80211_C_BGSCAN) == 0)
2989                                 return EOPNOTSUPP;
2990                         vap->iv_flags |= IEEE80211_F_BGSCAN;
2991                 } else
2992                         vap->iv_flags &= ~IEEE80211_F_BGSCAN;
2993                 break;
2994         case IEEE80211_IOC_BGSCAN_IDLE:
2995                 if (ireq->i_val >= IEEE80211_BGSCAN_IDLE_MIN)
2996                         vap->iv_bgscanidle = ireq->i_val*hz/1000;
2997                 else
2998                         error = EINVAL;
2999                 break;
3000         case IEEE80211_IOC_BGSCAN_INTERVAL:
3001                 if (ireq->i_val >= IEEE80211_BGSCAN_INTVAL_MIN)
3002                         vap->iv_bgscanintvl = ireq->i_val*hz;
3003                 else
3004                         error = EINVAL;
3005                 break;
3006         case IEEE80211_IOC_SCANVALID:
3007                 if (ireq->i_val >= IEEE80211_SCAN_VALID_MIN)
3008                         vap->iv_scanvalid = ireq->i_val*hz;
3009                 else
3010                         error = EINVAL;
3011                 break;
3012         case IEEE80211_IOC_FRAGTHRESHOLD:
3013                 if ((vap->iv_caps & IEEE80211_C_TXFRAG) == 0 &&
3014                     ireq->i_val != IEEE80211_FRAG_MAX)
3015                         return EOPNOTSUPP;
3016                 if (!(IEEE80211_FRAG_MIN <= ireq->i_val &&
3017                       ireq->i_val <= IEEE80211_FRAG_MAX))
3018                         return EINVAL;
3019                 vap->iv_fragthreshold = ireq->i_val;
3020                 error = ERESTART;
3021                 break;
3022         case IEEE80211_IOC_BURST:
3023                 if (ireq->i_val) {
3024                         if ((vap->iv_caps & IEEE80211_C_BURST) == 0)
3025                                 return EOPNOTSUPP;
3026                         ieee80211_syncflag(vap, IEEE80211_F_BURST);
3027                 } else
3028                         ieee80211_syncflag(vap, -IEEE80211_F_BURST);
3029                 error = ERESTART;
3030                 break;
3031         case IEEE80211_IOC_BMISSTHRESHOLD:
3032                 if (!(IEEE80211_HWBMISS_MIN <= ireq->i_val &&
3033                       ireq->i_val <= IEEE80211_HWBMISS_MAX))
3034                         return EINVAL;
3035                 vap->iv_bmissthreshold = ireq->i_val;
3036                 error = ERESTART;
3037                 break;
3038         case IEEE80211_IOC_CURCHAN:
3039                 error = ieee80211_ioctl_setcurchan(vap, ireq);
3040                 break;
3041         case IEEE80211_IOC_SHORTGI:
3042                 if (ireq->i_val) {
3043 #define IEEE80211_HTCAP_SHORTGI \
3044         (IEEE80211_HTCAP_SHORTGI20 | IEEE80211_HTCAP_SHORTGI40)
3045                         if (((ireq->i_val ^ vap->iv_htcaps) & IEEE80211_HTCAP_SHORTGI) != 0)
3046                                 return EINVAL;
3047                         if (ireq->i_val & IEEE80211_HTCAP_SHORTGI20)
3048                                 vap->iv_flags_ht |= IEEE80211_FHT_SHORTGI20;
3049                         if (ireq->i_val & IEEE80211_HTCAP_SHORTGI40)
3050                                 vap->iv_flags_ht |= IEEE80211_FHT_SHORTGI40;
3051 #undef IEEE80211_HTCAP_SHORTGI
3052                 } else
3053                         vap->iv_flags_ht &=
3054                             ~(IEEE80211_FHT_SHORTGI20 | IEEE80211_FHT_SHORTGI40);
3055                 error = ERESTART;
3056                 break;
3057         case IEEE80211_IOC_AMPDU:
3058                 if (ireq->i_val && (vap->iv_htcaps & IEEE80211_HTC_AMPDU) == 0)
3059                         return EINVAL;
3060                 if (ireq->i_val & 1)
3061                         vap->iv_flags_ht |= IEEE80211_FHT_AMPDU_TX;
3062                 else
3063                         vap->iv_flags_ht &= ~IEEE80211_FHT_AMPDU_TX;
3064                 if (ireq->i_val & 2)
3065                         vap->iv_flags_ht |= IEEE80211_FHT_AMPDU_RX;
3066                 else
3067                         vap->iv_flags_ht &= ~IEEE80211_FHT_AMPDU_RX;
3068                 /* NB: reset only if we're operating on an 11n channel */
3069                 if (isvapht(vap))
3070                         error = ERESTART;
3071                 break;
3072         case IEEE80211_IOC_AMPDU_LIMIT:
3073                 if (!(IEEE80211_HTCAP_MAXRXAMPDU_8K <= ireq->i_val &&
3074                       ireq->i_val <= IEEE80211_HTCAP_MAXRXAMPDU_64K))
3075                         return EINVAL;
3076                 if (vap->iv_opmode == IEEE80211_M_HOSTAP)
3077                         vap->iv_ampdu_rxmax = ireq->i_val;
3078                 else
3079                         vap->iv_ampdu_limit = ireq->i_val;
3080                 error = ERESTART;
3081                 break;
3082         case IEEE80211_IOC_AMPDU_DENSITY:
3083                 if (!(IEEE80211_HTCAP_MPDUDENSITY_NA <= ireq->i_val &&
3084                       ireq->i_val <= IEEE80211_HTCAP_MPDUDENSITY_16))
3085                         return EINVAL;
3086                 vap->iv_ampdu_density = ireq->i_val;
3087                 error = ERESTART;
3088                 break;
3089         case IEEE80211_IOC_AMSDU:
3090                 if (ireq->i_val && (vap->iv_htcaps & IEEE80211_HTC_AMSDU) == 0)
3091                         return EINVAL;
3092                 if (ireq->i_val & 1)
3093                         vap->iv_flags_ht |= IEEE80211_FHT_AMSDU_TX;
3094                 else
3095                         vap->iv_flags_ht &= ~IEEE80211_FHT_AMSDU_TX;
3096                 if (ireq->i_val & 2)
3097                         vap->iv_flags_ht |= IEEE80211_FHT_AMSDU_RX;
3098                 else
3099                         vap->iv_flags_ht &= ~IEEE80211_FHT_AMSDU_RX;
3100                 /* NB: reset only if we're operating on an 11n channel */
3101                 if (isvapht(vap))
3102                         error = ERESTART;
3103                 break;
3104         case IEEE80211_IOC_AMSDU_LIMIT:
3105                 /* XXX validate */
3106                 vap->iv_amsdu_limit = ireq->i_val;      /* XXX truncation? */
3107                 break;
3108         case IEEE80211_IOC_PUREN:
3109                 if (ireq->i_val) {
3110                         if ((vap->iv_flags_ht & IEEE80211_FHT_HT) == 0)
3111                                 return EINVAL;
3112                         vap->iv_flags_ht |= IEEE80211_FHT_PUREN;
3113                 } else
3114                         vap->iv_flags_ht &= ~IEEE80211_FHT_PUREN;
3115                 /* NB: reset only if we're operating on an 11n channel */
3116                 if (isvapht(vap))
3117                         error = ERESTART;
3118                 break;
3119         case IEEE80211_IOC_DOTH:
3120                 if (ireq->i_val) {
3121 #if 0
3122                         /* XXX no capability */
3123                         if ((vap->iv_caps & IEEE80211_C_DOTH) == 0)
3124                                 return EOPNOTSUPP;
3125 #endif
3126                         vap->iv_flags |= IEEE80211_F_DOTH;
3127                 } else
3128                         vap->iv_flags &= ~IEEE80211_F_DOTH;
3129                 error = ENETRESET;
3130                 break;
3131         case IEEE80211_IOC_REGDOMAIN:
3132                 error = ieee80211_ioctl_setregdomain(vap, ireq);
3133                 break;
3134         case IEEE80211_IOC_ROAM:
3135                 error = ieee80211_ioctl_setroam(vap, ireq);
3136                 break;
3137         case IEEE80211_IOC_TXPARAMS:
3138                 error = ieee80211_ioctl_settxparams(vap, ireq);
3139                 break;
3140         case IEEE80211_IOC_HTCOMPAT:
3141                 if (ireq->i_val) {
3142                         if ((vap->iv_flags_ht & IEEE80211_FHT_HT) == 0)
3143                                 return EOPNOTSUPP;
3144                         vap->iv_flags_ht |= IEEE80211_FHT_HTCOMPAT;
3145                 } else
3146                         vap->iv_flags_ht &= ~IEEE80211_FHT_HTCOMPAT;
3147                 /* NB: reset only if we're operating on an 11n channel */
3148                 if (isvapht(vap))
3149                         error = ERESTART;
3150                 break;
3151         case IEEE80211_IOC_DWDS:
3152                 if (ireq->i_val) {
3153                         /* NB: DWDS only makes sense for WDS-capable devices */
3154                         if ((ic->ic_caps & IEEE80211_C_WDS) == 0)
3155                                 return EOPNOTSUPP;
3156                         /* NB: DWDS is used only with ap+sta vaps */
3157                         if (vap->iv_opmode != IEEE80211_M_HOSTAP &&
3158                             vap->iv_opmode != IEEE80211_M_STA)
3159                                 return EINVAL;
3160                         vap->iv_flags |= IEEE80211_F_DWDS;
3161                         if (vap->iv_opmode == IEEE80211_M_STA)
3162                                 vap->iv_flags_ext |= IEEE80211_FEXT_4ADDR;
3163                 } else {
3164                         vap->iv_flags &= ~IEEE80211_F_DWDS;
3165                         if (vap->iv_opmode == IEEE80211_M_STA)
3166                                 vap->iv_flags_ext &= ~IEEE80211_FEXT_4ADDR;
3167                 }
3168                 break;
3169         case IEEE80211_IOC_INACTIVITY:
3170                 if (ireq->i_val)
3171                         vap->iv_flags_ext |= IEEE80211_FEXT_INACT;
3172                 else
3173                         vap->iv_flags_ext &= ~IEEE80211_FEXT_INACT;
3174                 break;
3175         case IEEE80211_IOC_APPIE:
3176                 error = ieee80211_ioctl_setappie(vap, ireq);
3177                 break;
3178         case IEEE80211_IOC_WPS:
3179                 if (ireq->i_val) {
3180                         if ((vap->iv_caps & IEEE80211_C_WPA) == 0)
3181                                 return EOPNOTSUPP;
3182                         vap->iv_flags_ext |= IEEE80211_FEXT_WPS;
3183                 } else
3184                         vap->iv_flags_ext &= ~IEEE80211_FEXT_WPS;
3185                 break;
3186         case IEEE80211_IOC_TSN:
3187                 if (ireq->i_val) {
3188                         if ((vap->iv_caps & IEEE80211_C_WPA) == 0)
3189                                 return EOPNOTSUPP;
3190                         vap->iv_flags_ext |= IEEE80211_FEXT_TSN;
3191                 } else
3192                         vap->iv_flags_ext &= ~IEEE80211_FEXT_TSN;
3193                 break;
3194         case IEEE80211_IOC_CHANSWITCH:
3195                 error = ieee80211_ioctl_chanswitch(vap, ireq);
3196                 break;
3197         case IEEE80211_IOC_DFS:
3198                 if (ireq->i_val) {
3199                         if ((vap->iv_caps & IEEE80211_C_DFS) == 0)
3200                                 return EOPNOTSUPP;
3201                         /* NB: DFS requires 11h support */
3202                         if ((vap->iv_flags & IEEE80211_F_DOTH) == 0)
3203                                 return EINVAL;
3204                         vap->iv_flags_ext |= IEEE80211_FEXT_DFS;
3205                 } else
3206                         vap->iv_flags_ext &= ~IEEE80211_FEXT_DFS;
3207                 break;
3208         case IEEE80211_IOC_DOTD:
3209                 if (ireq->i_val)
3210                         vap->iv_flags_ext |= IEEE80211_FEXT_DOTD;
3211                 else
3212                         vap->iv_flags_ext &= ~IEEE80211_FEXT_DOTD;
3213                 if (vap->iv_opmode == IEEE80211_M_STA)
3214                         error = ENETRESET;
3215                 break;
3216         case IEEE80211_IOC_HTPROTMODE:
3217                 if (ireq->i_val > IEEE80211_PROT_RTSCTS)
3218                         return EINVAL;
3219                 ic->ic_htprotmode = ireq->i_val ?
3220                     IEEE80211_PROT_RTSCTS : IEEE80211_PROT_NONE;
3221                 /* NB: if not operating in 11n this can wait */
3222                 if (isvapht(vap))
3223                         error = ERESTART;
3224                 break;
3225         case IEEE80211_IOC_STA_VLAN:
3226                 error = ieee80211_ioctl_setstavlan(vap, ireq);
3227                 break;
3228         case IEEE80211_IOC_SMPS:
3229                 if ((ireq->i_val &~ IEEE80211_HTCAP_SMPS) != 0 ||
3230                     ireq->i_val == 0x0008)      /* value of 2 is reserved */
3231                         return EINVAL;
3232                 if (ireq->i_val != IEEE80211_HTCAP_SMPS_OFF &&
3233                     (vap->iv_htcaps & IEEE80211_HTC_SMPS) == 0)
3234                         return EOPNOTSUPP;
3235                 vap->iv_htcaps = (vap->iv_htcaps &~ IEEE80211_HTCAP_SMPS) |
3236                         ireq->i_val;
3237                 /* NB: if not operating in 11n this can wait */
3238                 if (isvapht(vap))
3239                         error = ERESTART;
3240                 break;
3241         case IEEE80211_IOC_RIFS:
3242                 if (ireq->i_val != 0) {
3243                         if ((vap->iv_htcaps & IEEE80211_HTC_RIFS) == 0)
3244                                 return EOPNOTSUPP;
3245                         vap->iv_flags_ht |= IEEE80211_FHT_RIFS;
3246                 } else
3247                         vap->iv_flags_ht &= ~IEEE80211_FHT_RIFS;
3248                 /* NB: if not operating in 11n this can wait */
3249                 if (isvapht(vap))
3250                         error = ERESTART;
3251                 break;
3252         default:
3253                 error = ieee80211_ioctl_setdefault(vap, ireq);
3254                 break;
3255         }
3256         /*
3257          * The convention is that ENETRESET means an operation
3258          * requires a complete re-initialization of the device (e.g.
3259          * changing something that affects the association state).
3260          * ERESTART means the request may be handled with only a
3261          * reload of the hardware state.  We hand ERESTART requests
3262          * to the iv_reset callback so the driver can decide.  If
3263          * a device does not fillin iv_reset then it defaults to one
3264          * that returns ENETRESET.  Otherwise a driver may return
3265          * ENETRESET (in which case a full reset will be done) or
3266          * 0 to mean there's no need to do anything (e.g. when the
3267          * change has no effect on the driver/device).
3268          */
3269         if (error == ERESTART)
3270                 error = IFNET_IS_UP_RUNNING(vap->iv_ifp) ?
3271                     vap->iv_reset(vap, ireq->i_type) : 0;
3272         if (error == ENETRESET) {
3273                 /* XXX need to re-think AUTO handling */
3274                 if (IS_UP_AUTO(vap))
3275                         ieee80211_init(vap);
3276                 error = 0;
3277         }
3278         return error;
3279 }
3280
3281 /*
3282  * Rebuild the parent's multicast address list after an add/del
3283  * of a multicast address for a vap.  We have no way to tell
3284  * what happened above to optimize the work so we purge the entire
3285  * list and rebuild from scratch.  This is way expensive.
3286  * Note also the half-baked workaround for if_addmulti calling
3287  * back to the parent device; there's no way to insert mcast
3288  * entries quietly and/or cheaply.
3289  */
3290 static void
3291 ieee80211_ioctl_updatemulti(struct ieee80211com *ic)
3292 {
3293         struct ifnet *parent = ic->ic_ifp;
3294         struct ieee80211vap *vap;
3295         void *ioctl;
3296
3297         IEEE80211_LOCK(ic);
3298         if_delallmulti(parent);
3299         ioctl = parent->if_ioctl;       /* XXX WAR if_allmulti */
3300         parent->if_ioctl = NULL;
3301         TAILQ_FOREACH(vap, &ic->ic_vaps, iv_next) {
3302                 struct ifnet *ifp = vap->iv_ifp;
3303                 struct ifmultiaddr *ifma;
3304
3305                 TAILQ_FOREACH(ifma, &ifp->if_multiaddrs, ifma_link) {
3306                         if (ifma->ifma_addr->sa_family != AF_LINK)
3307                                 continue;
3308                         (void) if_addmulti(parent, ifma->ifma_addr, NULL);
3309                 }
3310         }
3311         parent->if_ioctl = ioctl;
3312         ieee80211_runtask(ic, &ic->ic_mcast_task);
3313         IEEE80211_UNLOCK(ic);
3314 }
3315
3316 int
3317 ieee80211_ioctl(struct ifnet *ifp, u_long cmd, caddr_t data)
3318 {
3319         struct ieee80211vap *vap = ifp->if_softc;
3320         struct ieee80211com *ic = vap->iv_ic;
3321         int error = 0;
3322         struct ifreq *ifr;
3323         struct ifaddr *ifa;                     /* XXX */
3324
3325         switch (cmd) {
3326         case SIOCSIFFLAGS:
3327                 IEEE80211_LOCK(ic);
3328                 ieee80211_syncifflag_locked(ic, IFF_PROMISC);
3329                 ieee80211_syncifflag_locked(ic, IFF_ALLMULTI);
3330                 if (ifp->if_flags & IFF_UP) {
3331                         /*
3332                          * Bring ourself up unless we're already operational.
3333                          * If we're the first vap and the parent is not up
3334                          * then it will automatically be brought up as a
3335                          * side-effect of bringing ourself up.
3336                          */
3337                         if (vap->iv_state == IEEE80211_S_INIT)
3338                                 ieee80211_start_locked(vap);
3339                 } else if (ifp->if_drv_flags & IFF_DRV_RUNNING) {
3340                         /*
3341                          * Stop ourself.  If we are the last vap to be
3342                          * marked down the parent will also be taken down.
3343                          */
3344                         ieee80211_stop_locked(vap);
3345                 }
3346                 IEEE80211_UNLOCK(ic);
3347                 /* Wait for parent ioctl handler if it was queued */
3348                 ieee80211_waitfor_parent(ic);
3349                 break;
3350         case SIOCADDMULTI:
3351         case SIOCDELMULTI:
3352                 ieee80211_ioctl_updatemulti(ic);
3353                 break;
3354         case SIOCSIFMEDIA:
3355         case SIOCGIFMEDIA:
3356                 ifr = (struct ifreq *)data;
3357                 error = ifmedia_ioctl(ifp, ifr, &vap->iv_media, cmd);
3358                 break;
3359         case SIOCG80211:
3360                 error = ieee80211_ioctl_get80211(vap, cmd,
3361                                 (struct ieee80211req *) data);
3362                 break;
3363         case SIOCS80211:
3364                 error = priv_check(curthread, PRIV_NET80211_MANAGE);
3365                 if (error == 0)
3366                         error = ieee80211_ioctl_set80211(vap, cmd,
3367                                         (struct ieee80211req *) data);
3368                 break;
3369         case SIOCG80211STATS:
3370                 ifr = (struct ifreq *)data;
3371                 copyout(&vap->iv_stats, ifr->ifr_data, sizeof (vap->iv_stats));
3372                 break;
3373         case SIOCSIFMTU:
3374                 ifr = (struct ifreq *)data;
3375                 if (!(IEEE80211_MTU_MIN <= ifr->ifr_mtu &&
3376                     ifr->ifr_mtu <= IEEE80211_MTU_MAX))
3377                         error = EINVAL;
3378                 else
3379                         ifp->if_mtu = ifr->ifr_mtu;
3380                 break;
3381         case SIOCSIFADDR:
3382                 /*
3383                  * XXX Handle this directly so we can supress if_init calls.
3384                  * XXX This should be done in ether_ioctl but for the moment
3385                  * XXX there are too many other parts of the system that
3386                  * XXX set IFF_UP and so supress if_init being called when
3387                  * XXX it should be.
3388                  */
3389                 ifa = (struct ifaddr *) data;
3390                 switch (ifa->ifa_addr->sa_family) {
3391 #ifdef INET
3392                 case AF_INET:
3393                         if ((ifp->if_flags & IFF_UP) == 0) {
3394                                 ifp->if_flags |= IFF_UP;
3395                                 ifp->if_init(ifp->if_softc);
3396                         }
3397                         arp_ifinit(ifp, ifa);
3398                         break;
3399 #endif
3400 #ifdef IPX
3401                 /*
3402                  * XXX - This code is probably wrong,
3403                  *       but has been copied many times.
3404                  */
3405                 case AF_IPX: {
3406                         struct ipx_addr *ina = &(IA_SIPX(ifa)->sipx_addr);
3407
3408                         if (ipx_nullhost(*ina))
3409                                 ina->x_host = *(union ipx_host *)
3410                                     IF_LLADDR(ifp);
3411                         else
3412                                 bcopy((caddr_t) ina->x_host.c_host,
3413                                       (caddr_t) IF_LLADDR(ifp),
3414                                       ETHER_ADDR_LEN);
3415                         /* fall thru... */
3416                 }
3417 #endif
3418                 default:
3419                         if ((ifp->if_flags & IFF_UP) == 0) {
3420                                 ifp->if_flags |= IFF_UP;
3421                                 ifp->if_init(ifp->if_softc);
3422                         }
3423                         break;
3424                 }
3425                 break;
3426         /* Pass NDIS ioctls up to the driver */
3427         case SIOCGDRVSPEC:
3428         case SIOCSDRVSPEC:
3429         case SIOCGPRIVATE_0: {
3430                 struct ifnet *parent = vap->iv_ic->ic_ifp;
3431                 error = parent->if_ioctl(parent, cmd, data);
3432                 break;
3433         }
3434         default:
3435                 error = ether_ioctl(ifp, cmd, data);
3436                 break;
3437         }
3438         return error;
3439 }