ieee80211_ioctl.h revision 1.24.2.7 1 /* $NetBSD: ieee80211_ioctl.h,v 1.24.2.7 2020/04/13 08:05:16 martin Exp $ */
2
3 /*-
4 * SPDX-License-Identifier: BSD-2-Clause-FreeBSD
5 *
6 * Copyright (c) 2001 Atsushi Onoe
7 * Copyright (c) 2002-2009 Sam Leffler, Errno Consulting
8 * All rights reserved.
9 *
10 * Redistribution and use in source and binary forms, with or without
11 * modification, are permitted provided that the following conditions
12 * are met:
13 * 1. Redistributions of source code must retain the above copyright
14 * notice, this list of conditions and the following disclaimer.
15 * 2. Redistributions in binary form must reproduce the above copyright
16 * notice, this list of conditions and the following disclaimer in the
17 * documentation and/or other materials provided with the distribution.
18 *
19 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
20 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
21 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
22 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
23 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
24 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
25 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
26 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
27 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
28 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
29 *
30 * $FreeBSD$
31 */
32 #ifndef _NET80211_IEEE80211_IOCTL_H_
33 #define _NET80211_IEEE80211_IOCTL_H_
34
35 /*
36 * IEEE 802.11 ioctls.
37 */
38 #include <sys/ioccom.h>
39 #include <net/if.h>
40 #include <net80211/_ieee80211.h>
41 #include <net80211/ieee80211.h>
42 #include <net80211/ieee80211_crypto.h>
43
44 /*
45 * Per/node (station) statistics.
46 */
47 struct ieee80211_nodestats {
48 uint32_t ns_rx_data; /* rx data frames */
49 uint32_t ns_rx_mgmt; /* rx management frames */
50 uint32_t ns_rx_ctrl; /* rx control frames */
51 uint32_t ns_rx_ucast; /* rx unicast frames */
52 uint32_t ns_rx_mcast; /* rx multi/broadcast frames */
53 uint64_t ns_rx_bytes; /* rx data count (bytes) */
54 uint64_t ns_rx_beacons; /* rx beacon frames */
55 uint32_t ns_rx_proberesp; /* rx probe response frames */
56
57 uint32_t ns_rx_dup; /* rx discard 'cuz dup */
58 uint32_t ns_rx_noprivacy; /* rx w/ wep but privacy off */
59 uint32_t ns_rx_wepfail; /* rx wep processing failed */
60 uint32_t ns_rx_demicfail; /* rx demic failed */
61 uint32_t ns_rx_decap; /* rx decapsulation failed */
62 uint32_t ns_rx_defrag; /* rx defragmentation failed */
63 uint32_t ns_rx_disassoc; /* rx disassociation */
64 uint32_t ns_rx_deauth; /* rx deauthentication */
65 uint32_t ns_rx_action; /* rx action */
66 uint32_t ns_rx_decryptcrc; /* rx decrypt failed on crc */
67 uint32_t ns_rx_unauth; /* rx on unauthorized port */
68 uint32_t ns_rx_unencrypted; /* rx unecrypted w/ privacy */
69 uint32_t ns_rx_drop; /* rx discard other reason */
70
71 uint32_t ns_tx_data; /* tx data frames */
72 uint32_t ns_tx_mgmt; /* tx management frames */
73 uint32_t ns_tx_ctrl; /* tx control frames */
74 uint32_t ns_tx_ucast; /* tx unicast frames */
75 uint32_t ns_tx_mcast; /* tx multi/broadcast frames */
76 uint64_t ns_tx_bytes; /* tx data count (bytes) */
77 uint32_t ns_tx_probereq; /* tx probe request frames */
78
79 uint32_t ns_tx_novlantag; /* tx discard 'cuz no tag */
80 uint32_t ns_tx_vlanmismatch; /* tx discard 'cuz bad tag */
81
82 uint32_t ns_ps_discard; /* ps discard 'cuz of age */
83
84 /* MIB-related state */
85 uint32_t ns_tx_assoc; /* [re]associations */
86 uint32_t ns_tx_assoc_fail; /* [re]association failures */
87 uint32_t ns_tx_auth; /* [re]authentications */
88 uint32_t ns_tx_auth_fail; /* [re]authentication failures*/
89 uint32_t ns_tx_deauth; /* deauthentications */
90 uint32_t ns_tx_deauth_code; /* last deauth reason */
91 uint32_t ns_tx_disassoc; /* disassociations */
92 uint32_t ns_tx_disassoc_code; /* last disassociation reason */
93
94 /* Hardware A-MSDU decode */
95 uint32_t ns_rx_amsdu_more; /* RX decap A-MSDU, more coming from A-MSDU */
96 uint32_t ns_rx_amsdu_more_end; /* RX decap A-MSDU (or any other frame), no more coming */
97 uint32_t ns_spare[6];
98 };
99
100 struct ieee80211_ostats {
101 u_int32_t is_rx_badversion; /* rx frame with bad version */
102 u_int32_t is_rx_tooshort; /* rx frame too short */
103 u_int32_t is_rx_wrongbss; /* rx from wrong bssid */
104 u_int32_t is_rx_dup; /* rx discard 'cuz dup */
105 u_int32_t is_rx_wrongdir; /* rx w/ wrong direction */
106 u_int32_t is_rx_mcastecho; /* rx discard 'cuz mcast echo */
107 u_int32_t is_rx_notassoc; /* rx discard 'cuz sta !assoc */
108 u_int32_t is_rx_nowep; /* rx w/ wep but wep !config */
109 u_int32_t is_rx_wepfail; /* rx wep processing failed */
110 u_int32_t is_rx_decap; /* rx decapsulation failed */
111 u_int32_t is_rx_mgtdiscard; /* rx discard mgt frames */
112 u_int32_t is_rx_ctl; /* rx discard ctrl frames */
113 u_int32_t is_rx_rstoobig; /* rx rate set truncated */
114 u_int32_t is_rx_elem_missing; /* rx required element missing*/
115 u_int32_t is_rx_elem_toobig; /* rx element too big */
116 u_int32_t is_rx_elem_toosmall; /* rx element too small */
117 u_int32_t is_rx_elem_unknown; /* rx element unknown */
118 u_int32_t is_rx_badchan; /* rx frame w/ invalid chan */
119 u_int32_t is_rx_chanmismatch; /* rx frame chan mismatch */
120 u_int32_t is_rx_nodealloc; /* rx frame dropped */
121 u_int32_t is_rx_ssidmismatch; /* rx frame ssid mismatch */
122 u_int32_t is_rx_auth_unsupported; /* rx w/ unsupported auth alg */
123 u_int32_t is_rx_auth_fail; /* rx sta auth failure */
124 u_int32_t is_rx_assoc_bss; /* rx assoc from wrong bssid */
125 u_int32_t is_rx_assoc_notauth; /* rx assoc w/o auth */
126 u_int32_t is_rx_assoc_capmismatch;/* rx assoc w/ cap mismatch */
127 u_int32_t is_rx_assoc_norate; /* rx assoc w/ no rate match */
128 u_int32_t is_rx_deauth; /* rx deauthentication */
129 u_int32_t is_rx_disassoc; /* rx disassociation */
130 u_int32_t is_rx_badsubtype; /* rx frame w/ unknown subtype*/
131 u_int32_t is_rx_nombuf; /* rx failed for lack of mbuf */
132 u_int32_t is_rx_decryptcrc; /* rx decrypt failed on crc */
133 u_int32_t is_rx_ahdemo_mgt; /* rx discard ahdemo mgt frame*/
134 u_int32_t is_rx_bad_auth; /* rx bad auth request */
135 u_int32_t is_tx_nombuf; /* tx failed for lack of mbuf */
136 u_int32_t is_tx_nonode; /* tx failed for no node */
137 u_int32_t is_tx_unknownmgt; /* tx of unknown mgt frame */
138 u_int32_t is_scan_active; /* active scans started */
139 u_int32_t is_scan_passive; /* passive scans started */
140 u_int32_t is_node_timeout; /* nodes timed out inactivity */
141 u_int32_t is_crypto_nomem; /* no memory for crypto ctx */
142 };
143
144 /*
145 * Summary statistics.
146 */
147 struct ieee80211_stats {
148 uint32_t is_rx_badversion; /* rx frame with bad version */
149 uint32_t is_rx_tooshort; /* rx frame too short */
150 uint32_t is_rx_wrongbss; /* rx from wrong bssid */
151 uint32_t is_rx_dup; /* rx discard 'cuz dup */
152 uint32_t is_rx_wrongdir; /* rx w/ wrong direction */
153 uint32_t is_rx_mcastecho; /* rx discard 'cuz mcast echo */
154 uint32_t is_rx_notassoc; /* rx discard 'cuz sta !assoc */
155 uint32_t is_rx_noprivacy; /* rx w/ wep but privacy off */
156 uint32_t is_rx_unencrypted; /* rx w/o wep and privacy on */
157 uint32_t is_rx_wepfail; /* rx wep processing failed */
158 uint32_t is_rx_decap; /* rx decapsulation failed */
159 uint32_t is_rx_mgtdiscard; /* rx discard mgt frames */
160 uint32_t is_rx_ctl; /* rx ctrl frames */
161 uint32_t is_rx_beacon; /* rx beacon frames */
162 uint32_t is_rx_rstoobig; /* rx rate set truncated */
163 uint32_t is_rx_elem_missing; /* rx required element missing*/
164 uint32_t is_rx_elem_toobig; /* rx element too big */
165 uint32_t is_rx_elem_toosmall; /* rx element too small */
166 uint32_t is_rx_elem_unknown; /* rx element unknown */
167 uint32_t is_rx_badchan; /* rx frame w/ invalid chan */
168 uint32_t is_rx_chanmismatch; /* rx frame chan mismatch */
169 uint32_t is_rx_nodealloc; /* rx frame dropped */
170 uint32_t is_rx_ssidmismatch; /* rx frame ssid mismatch */
171 uint32_t is_rx_auth_unsupported; /* rx w/ unsupported auth alg */
172 uint32_t is_rx_auth_fail; /* rx sta auth failure */
173 uint32_t is_rx_auth_countermeasures;/* rx auth discard 'cuz CM */
174 uint32_t is_rx_assoc_bss; /* rx assoc from wrong bssid */
175 uint32_t is_rx_assoc_notauth; /* rx assoc w/o auth */
176 uint32_t is_rx_assoc_capmismatch;/* rx assoc w/ cap mismatch */
177 uint32_t is_rx_assoc_norate; /* rx assoc w/ no rate match */
178 uint32_t is_rx_assoc_badwpaie; /* rx assoc w/ bad WPA IE */
179 uint32_t is_rx_deauth; /* rx deauthentication */
180 uint32_t is_rx_disassoc; /* rx disassociation */
181 uint32_t is_rx_badsubtype; /* rx frame w/ unknown subtype*/
182 uint32_t is_rx_nobuf; /* rx failed for lack of buf */
183 uint32_t is_rx_decryptcrc; /* rx decrypt failed on crc */
184 uint32_t is_rx_ahdemo_mgt; /* rx discard ahdemo mgt frame*/
185 uint32_t is_rx_bad_auth; /* rx bad auth request */
186 uint32_t is_rx_unauth; /* rx on unauthorized port */
187 uint32_t is_rx_badkeyid; /* rx w/ incorrect keyid */
188 uint32_t is_rx_ccmpreplay; /* rx seq# violation (CCMP) */
189 uint32_t is_rx_ccmpformat; /* rx format bad (CCMP) */
190 uint32_t is_rx_ccmpmic; /* rx MIC check failed (CCMP) */
191 uint32_t is_rx_tkipreplay; /* rx seq# violation (TKIP) */
192 uint32_t is_rx_tkipformat; /* rx format bad (TKIP) */
193 uint32_t is_rx_tkipmic; /* rx MIC check failed (TKIP) */
194 uint32_t is_rx_tkipicv; /* rx ICV check failed (TKIP) */
195 uint32_t is_rx_badcipher; /* rx failed 'cuz key type */
196 uint32_t is_rx_nocipherctx; /* rx failed 'cuz key !setup */
197 uint32_t is_rx_acl; /* rx discard 'cuz acl policy */
198 uint32_t is_tx_nobuf; /* tx failed for lack of buf */
199 uint32_t is_tx_nonode; /* tx failed for no node */
200 uint32_t is_tx_unknownmgt; /* tx of unknown mgt frame */
201 uint32_t is_tx_badcipher; /* tx failed 'cuz key type */
202 uint32_t is_tx_nodefkey; /* tx failed 'cuz no defkey */
203 uint32_t is_tx_noheadroom; /* tx failed 'cuz no space */
204 uint32_t is_tx_fragframes; /* tx frames fragmented */
205 uint32_t is_tx_frags; /* tx fragments created */
206 uint32_t is_scan_active; /* active scans started */
207 uint32_t is_scan_passive; /* passive scans started */
208 uint32_t is_node_timeout; /* nodes timed out inactivity */
209 uint32_t is_crypto_nomem; /* no memory for crypto ctx */
210 uint32_t is_crypto_tkip; /* tkip crypto done in s/w */
211 uint32_t is_crypto_tkipenmic; /* tkip en-MIC done in s/w */
212 uint32_t is_crypto_tkipdemic; /* tkip de-MIC done in s/w */
213 uint32_t is_crypto_tkipcm; /* tkip counter measures */
214 uint32_t is_crypto_ccmp; /* ccmp crypto done in s/w */
215 uint32_t is_crypto_wep; /* wep crypto done in s/w */
216 uint32_t is_crypto_setkey_cipher;/* cipher rejected key */
217 uint32_t is_crypto_setkey_nokey; /* no key index for setkey */
218 uint32_t is_crypto_delkey; /* driver key delete failed */
219 uint32_t is_crypto_badcipher; /* unknown cipher */
220 uint32_t is_crypto_nocipher; /* cipher not available */
221 uint32_t is_crypto_attachfail; /* cipher attach failed */
222 uint32_t is_crypto_swfallback; /* cipher fallback to s/w */
223 uint32_t is_crypto_keyfail; /* driver key alloc failed */
224 uint32_t is_crypto_enmicfail; /* en-MIC failed */
225 uint32_t is_ibss_capmismatch; /* merge failed-cap mismatch */
226 uint32_t is_ibss_norate; /* merge failed-rate mismatch */
227 uint32_t is_ps_unassoc; /* ps-poll for unassoc. sta */
228 uint32_t is_ps_badaid; /* ps-poll w/ incorrect aid */
229 uint32_t is_ps_qempty; /* ps-poll w/ nothing to send */
230 uint32_t is_ff_badhdr; /* fast frame rx'd w/ bad hdr */
231 uint32_t is_ff_tooshort; /* fast frame rx decap error */
232 uint32_t is_ff_split; /* fast frame rx split error */
233 uint32_t is_ff_decap; /* fast frames decap'd */
234 uint32_t is_ff_encap; /* fast frames encap'd for tx */
235 uint32_t is_rx_badbintval; /* rx frame w/ bogus bintval */
236 uint32_t is_rx_demicfail; /* rx demic failed */
237 uint32_t is_rx_defrag; /* rx defragmentation failed */
238 uint32_t is_rx_mgmt; /* rx management frames */
239 uint32_t is_rx_action; /* rx action mgt frames */
240 uint32_t is_amsdu_tooshort; /* A-MSDU rx decap error */
241 uint32_t is_amsdu_split; /* A-MSDU rx split error */
242 uint32_t is_amsdu_decap; /* A-MSDU decap'd */
243 uint32_t is_amsdu_encap; /* A-MSDU encap'd for tx */
244 uint32_t is_ampdu_bar_bad; /* A-MPDU BAR out of window */
245 uint32_t is_ampdu_bar_oow; /* A-MPDU BAR before ADDBA */
246 uint32_t is_ampdu_bar_move; /* A-MPDU BAR moved window */
247 uint32_t is_ampdu_bar_rx; /* A-MPDU BAR frames handled */
248 uint32_t is_ampdu_rx_flush; /* A-MPDU frames flushed */
249 uint32_t is_ampdu_rx_oor; /* A-MPDU frames out-of-order */
250 uint32_t is_ampdu_rx_copy; /* A-MPDU frames copied down */
251 uint32_t is_ampdu_rx_drop; /* A-MPDU frames dropped */
252 uint32_t is_tx_badstate; /* tx discard state != RUN */
253 uint32_t is_tx_notassoc; /* tx failed, sta not assoc */
254 uint32_t is_tx_classify; /* tx classification failed */
255 uint32_t is_dwds_mcast; /* discard mcast over dwds */
256 uint32_t is_dwds_qdrop; /* dwds pending frame q full */
257 uint32_t is_ht_assoc_nohtcap; /* non-HT sta rejected */
258 uint32_t is_ht_assoc_downgrade; /* HT sta forced to legacy */
259 uint32_t is_ht_assoc_norate; /* HT assoc w/ rate mismatch */
260 uint32_t is_ampdu_rx_age; /* A-MPDU sent up 'cuz of age */
261 uint32_t is_ampdu_rx_move; /* A-MPDU MSDU moved window */
262 uint32_t is_addba_reject; /* ADDBA reject 'cuz disabled */
263 uint32_t is_addba_norequest; /* ADDBA response w/o ADDBA */
264 uint32_t is_addba_badtoken; /* ADDBA response w/ wrong
265 dialogtoken */
266 uint32_t is_addba_badpolicy; /* ADDBA resp w/ wrong policy */
267 uint32_t is_ampdu_stop; /* A-MPDU stream stopped */
268 uint32_t is_ampdu_stop_failed; /* A-MPDU stream not running */
269 uint32_t is_ampdu_rx_reorder; /* A-MPDU held for rx reorder */
270 uint32_t is_scan_bg; /* background scans started */
271 uint8_t is_rx_deauth_code; /* last rx'd deauth reason */
272 uint8_t is_rx_disassoc_code; /* last rx'd disassoc reason */
273 uint8_t is_rx_authfail_code; /* last rx'd auth fail reason */
274 uint32_t is_beacon_miss; /* beacon miss notification */
275 uint32_t is_rx_badstate; /* rx discard state != RUN */
276 uint32_t is_ff_flush; /* ff's flush'd from stageq */
277 uint32_t is_tx_ctl; /* tx ctrl frames */
278 uint32_t is_ampdu_rexmt; /* A-MPDU frames rexmt ok */
279 uint32_t is_ampdu_rexmt_fail; /* A-MPDU frames rexmt fail */
280
281 uint32_t is_mesh_wrongmesh; /* dropped 'cuz not mesh sta*/
282 uint32_t is_mesh_nolink; /* dropped 'cuz link not estab*/
283 uint32_t is_mesh_fwd_ttl; /* mesh not fwd'd 'cuz ttl 0 */
284 uint32_t is_mesh_fwd_nobuf; /* mesh not fwd'd 'cuz no mbuf*/
285 uint32_t is_mesh_fwd_tooshort; /* mesh not fwd'd 'cuz no hdr */
286 uint32_t is_mesh_fwd_disabled; /* mesh not fwd'd 'cuz disabled */
287 uint32_t is_mesh_fwd_nopath; /* mesh not fwd'd 'cuz path unknown */
288
289 uint32_t is_hwmp_wrongseq; /* wrong hwmp seq no. */
290 uint32_t is_hwmp_rootreqs; /* root PREQs sent */
291 uint32_t is_hwmp_rootrann; /* root RANNs sent */
292
293 uint32_t is_mesh_badae; /* dropped 'cuz invalid AE */
294 uint32_t is_mesh_rtaddfailed; /* route add failed */
295 uint32_t is_mesh_notproxy; /* dropped 'cuz not proxying */
296 uint32_t is_rx_badalign; /* dropped 'cuz misaligned */
297 uint32_t is_hwmp_proxy; /* PREP for proxy route */
298 uint32_t is_beacon_bad; /* Number of bad beacons */
299 uint32_t is_ampdu_bar_tx; /* A-MPDU BAR frames TXed */
300 uint32_t is_ampdu_bar_tx_retry; /* A-MPDU BAR frames TX rtry */
301 uint32_t is_ampdu_bar_tx_fail; /* A-MPDU BAR frames TX fail */
302
303 uint32_t is_ff_encapfail; /* failed FF encap */
304 uint32_t is_amsdu_encapfail; /* failed A-MSDU encap */
305
306 uint32_t is_spare[5];
307 };
308
309 /*
310 * Max size of optional information elements. We artificially
311 * constrain this; it's limited only by the max frame size (and
312 * the max parameter size of the wireless extensions).
313 */
314 #define IEEE80211_MAX_OPT_IE 256
315
316 /*
317 * WPA/RSN get/set key request. Specify the key/cipher
318 * type and whether the key is to be used for sending and/or
319 * receiving. The key index should be set only when working
320 * with global keys (use IEEE80211_KEYIX_NONE for ``no index'').
321 * Otherwise a unicast/pairwise key is specified by the bssid
322 * (on a station) or mac address (on an ap). They key length
323 * must include any MIC key data; otherwise it should be no
324 * more than IEEE80211_KEYBUF_SIZE.
325 */
326 struct ieee80211req_key {
327 uint8_t ik_type; /* key/cipher type */
328 uint8_t ik_pad;
329 uint16_t ik_keyix; /* key index */
330 uint8_t ik_keylen; /* key length in bytes */
331 uint8_t ik_flags;
332 /* NB: IEEE80211_KEY_XMIT and IEEE80211_KEY_RECV defined elsewhere */
333 #define IEEE80211_KEY_DEFAULT 0x80 /* default xmit key */
334 uint8_t ik_macaddr[IEEE80211_ADDR_LEN];
335 uint64_t ik_keyrsc; /* key receive sequence counter */
336 uint64_t ik_keytsc; /* key transmit sequence counter */
337 uint8_t ik_keydata[IEEE80211_KEYBUF_SIZE+IEEE80211_MICBUF_SIZE];
338 };
339
340 /*
341 * Delete a key either by index or address. Set the index
342 * to IEEE80211_KEYIX_NONE when deleting a unicast key.
343 */
344 struct ieee80211req_del_key {
345 uint8_t idk_keyix; /* key index */
346 uint8_t idk_macaddr[IEEE80211_ADDR_LEN];
347 };
348
349 /*
350 * MLME state manipulation request. IEEE80211_MLME_ASSOC
351 * only makes sense when operating as a station. The other
352 * requests can be used when operating as a station or an
353 * ap (to effect a station).
354 */
355 struct ieee80211req_mlme {
356 uint8_t im_op; /* operation to perform */
357 #define IEEE80211_MLME_ASSOC 1 /* associate station */
358 #define IEEE80211_MLME_DISASSOC 2 /* disassociate station */
359 #define IEEE80211_MLME_DEAUTH 3 /* deauthenticate station */
360 #define IEEE80211_MLME_AUTHORIZE 4 /* authorize station */
361 #define IEEE80211_MLME_UNAUTHORIZE 5 /* unauthorize station */
362 #define IEEE80211_MLME_AUTH 6 /* authenticate station */
363 uint8_t im_ssid_len; /* length of optional ssid */
364 uint16_t im_reason; /* 802.11 reason code */
365 uint8_t im_macaddr[IEEE80211_ADDR_LEN];
366 uint8_t im_ssid[IEEE80211_NWID_LEN];
367 };
368
369 /*
370 * MAC ACL operations.
371 */
372 enum {
373 IEEE80211_MACCMD_POLICY_OPEN = 0, /* set policy: no ACL's */
374 IEEE80211_MACCMD_POLICY_ALLOW = 1, /* set policy: allow traffic */
375 IEEE80211_MACCMD_POLICY_DENY = 2, /* set policy: deny traffic */
376 IEEE80211_MACCMD_FLUSH = 3, /* flush ACL database */
377 IEEE80211_MACCMD_DETACH = 4, /* detach ACL policy */
378 IEEE80211_MACCMD_POLICY = 5, /* get ACL policy */
379 IEEE80211_MACCMD_LIST = 6, /* get ACL database */
380 IEEE80211_MACCMD_POLICY_RADIUS = 7, /* set policy: RADIUS managed */
381 };
382
383 struct ieee80211req_maclist {
384 uint8_t ml_macaddr[IEEE80211_ADDR_LEN];
385 } __packed;
386
387 /*
388 * Mesh Routing Table Operations.
389 */
390 enum {
391 IEEE80211_MESH_RTCMD_LIST = 0, /* list HWMP routing table */
392 IEEE80211_MESH_RTCMD_FLUSH = 1, /* flush HWMP routing table */
393 IEEE80211_MESH_RTCMD_ADD = 2, /* add entry to the table */
394 IEEE80211_MESH_RTCMD_DELETE = 3, /* delete an entry from the table */
395 };
396
397 struct ieee80211req_mesh_route {
398 uint8_t imr_flags;
399 #define IEEE80211_MESHRT_FLAGS_DISCOVER 0x01
400 #define IEEE80211_MESHRT_FLAGS_VALID 0x02
401 #define IEEE80211_MESHRT_FLAGS_PROXY 0x04
402 #define IEEE80211_MESHRT_FLAGS_GATE 0x08
403 uint8_t imr_dest[IEEE80211_ADDR_LEN];
404 uint8_t imr_nexthop[IEEE80211_ADDR_LEN];
405 uint16_t imr_nhops;
406 uint8_t imr_pad;
407 uint32_t imr_metric;
408 uint32_t imr_lifetime;
409 uint32_t imr_lastmseq;
410 };
411
412 /*
413 * HWMP root modes
414 */
415 enum {
416 IEEE80211_HWMP_ROOTMODE_DISABLED = 0, /* disabled */
417 IEEE80211_HWMP_ROOTMODE_NORMAL = 1, /* normal PREPs */
418 IEEE80211_HWMP_ROOTMODE_PROACTIVE = 2, /* proactive PREPS */
419 IEEE80211_HWMP_ROOTMODE_RANN = 3, /* use RANN elemid */
420 };
421
422
423 /*
424 * Set the active channel list by IEEE channel #: each channel
425 * to be marked active is set in a bit vector. Note this list is
426 * intersected with the available channel list in calculating
427 * the set of channels actually used in scanning.
428 */
429 struct ieee80211req_chanlist {
430 uint8_t ic_channels[32]; /* NB: can be variable length */
431 };
432
433 /*
434 * Get the active channel list info.
435 */
436 struct ieee80211req_chaninfo {
437 u_int ic_nchans;
438 struct ieee80211_channel ic_chans[1]; /* NB: variable length */
439 };
440 #define IEEE80211_CHANINFO_SIZE(_nchan) \
441 (sizeof(struct ieee80211req_chaninfo) + \
442 (((_nchan)-1) * sizeof(struct ieee80211_channel)))
443 #define IEEE80211_CHANINFO_SPACE(_ci) \
444 IEEE80211_CHANINFO_SIZE((_ci)->ic_nchans)
445
446 /*
447 * Retrieve the WPA/RSN information element for an associated station.
448 */
449 struct ieee80211req_wpaie { /* old version w/ only one ie */
450 uint8_t wpa_macaddr[IEEE80211_ADDR_LEN];
451 uint8_t wpa_ie[IEEE80211_MAX_OPT_IE];
452 };
453 struct ieee80211req_wpaie2 {
454 uint8_t wpa_macaddr[IEEE80211_ADDR_LEN];
455 uint8_t wpa_ie[IEEE80211_MAX_OPT_IE];
456 uint8_t rsn_ie[IEEE80211_MAX_OPT_IE];
457 };
458
459 /*
460 * Retrieve per-node statistics.
461 */
462 struct ieee80211req_sta_stats {
463 union {
464 /* NB: explicitly force 64-bit alignment */
465 uint8_t macaddr[IEEE80211_ADDR_LEN];
466 uint64_t pad;
467 } is_u;
468 struct ieee80211_nodestats is_stats;
469 };
470
471 /*
472 * Station information block; the mac address is used
473 * to retrieve other data like stats, unicast key, etc.
474 */
475 struct ieee80211req_sta_info {
476 uint16_t isi_len; /* total length (mult of 4) */
477 uint16_t isi_ie_off; /* offset to IE data */
478 uint16_t isi_ie_len; /* IE length */
479 uint16_t isi_freq; /* MHz */
480 uint32_t isi_flags; /* channel flags */
481 uint32_t isi_state; /* state flags */
482 uint8_t isi_authmode; /* authentication algorithm */
483 int8_t isi_rssi; /* receive signal strength */
484 int8_t isi_noise; /* noise floor */
485 uint8_t isi_capinfo; /* capabilities */
486 uint8_t isi_erp; /* ERP element */
487 uint8_t isi_macaddr[IEEE80211_ADDR_LEN];
488 uint8_t isi_nrates;
489 /* negotiated rates */
490 uint8_t isi_rates[IEEE80211_RATE_MAXSIZE];
491 uint8_t isi_txrate; /* legacy/IEEE rate or MCS */
492 uint16_t isi_associd; /* assoc response */
493 uint16_t isi_txpower; /* current tx power */
494 uint16_t isi_vlan; /* vlan tag */
495 /* NB: [IEEE80211_NONQOS_TID] holds seq#'s for non-QoS stations */
496 uint16_t isi_txseqs[IEEE80211_TID_SIZE];/* tx seq #/TID */
497 uint16_t isi_rxseqs[IEEE80211_TID_SIZE];/* rx seq#/TID */
498 uint16_t isi_inact; /* inactivity timer */
499 uint16_t isi_txmbps; /* current tx rate in .5 Mb/s */
500 uint16_t isi_pad;
501 uint32_t isi_jointime; /* time of assoc/join */
502 struct ieee80211_mimo_info isi_mimo; /* MIMO info for 11n sta's */
503 /* 11s info */
504 uint16_t isi_peerid;
505 uint16_t isi_localid;
506 uint8_t isi_peerstate;
507 /* XXX frag state? */
508 /* variable length IE data */
509 };
510
511 /*
512 * Retrieve per-station information; to retrieve all
513 * specify a mac address of ff:ff:ff:ff:ff:ff.
514 */
515 struct ieee80211req_sta_req {
516 union {
517 /* NB: explicitly force 64-bit alignment */
518 uint8_t macaddr[IEEE80211_ADDR_LEN];
519 uint64_t pad;
520 } is_u;
521 struct ieee80211req_sta_info info[1]; /* variable length */
522 };
523
524 /*
525 * Get/set per-station tx power cap.
526 */
527 struct ieee80211req_sta_txpow {
528 uint8_t it_macaddr[IEEE80211_ADDR_LEN];
529 uint8_t it_txpow;
530 };
531
532 /*
533 * WME parameters manipulated with IEEE80211_IOC_WME_CWMIN
534 * through IEEE80211_IOC_WME_ACKPOLICY are set and return
535 * using i_val and i_len. i_val holds the value itself.
536 * i_len specifies the AC and, as appropriate, then high bit
537 * specifies whether the operation is to be applied to the
538 * BSS or ourself.
539 */
540 #define IEEE80211_WMEPARAM_SELF 0x0000 /* parameter applies to self */
541 #define IEEE80211_WMEPARAM_BSS 0x8000 /* parameter applies to BSS */
542 #define IEEE80211_WMEPARAM_VAL 0x7fff /* parameter value */
543
544 /*
545 * Application Information Elements can be appended to a variety
546 * of frames with the IEE80211_IOC_APPIE request. This request
547 * piggybacks on a normal ieee80211req; the frame type is passed
548 * in i_val as the 802.11 FC0 bytes and the length of the IE data
549 * is passed in i_len. The data is referenced in i_data. If i_len
550 * is zero then any previously configured IE data is removed. At
551 * most IEEE80211_MAX_APPIE data be appened. Note that multiple
552 * IE's can be supplied; the data is treated opaquely.
553 */
554 #define IEEE80211_MAX_APPIE 1024 /* max app IE data */
555 /*
556 * Hack: the WPA authenticator uses this mechanism to specify WPA
557 * ie's that are used instead of the ones normally constructed using
558 * the cipher state setup with separate ioctls. This avoids issues
559 * like the authenticator ordering ie data differently than the
560 * net80211 layer and needing to keep separate state for WPA and RSN.
561 */
562 #define IEEE80211_APPIE_WPA \
563 (IEEE80211_FC0_TYPE_MGT | IEEE80211_FC0_SUBTYPE_BEACON | \
564 IEEE80211_FC0_SUBTYPE_PROBE_RESP)
565
566 /*
567 * Station mode roaming parameters. These are maintained
568 * per band/mode and control the roaming algorithm.
569 */
570 struct ieee80211_roamparams_req {
571 struct ieee80211_roamparam params[IEEE80211_MODE_MAX];
572 };
573
574 /*
575 * Transmit parameters. These can be used to set fixed transmit
576 * rate for each operating mode when operating as client or on a
577 * per-client basis according to the capabilities of the client
578 * (e.g. an 11b client associated to an 11g ap) when operating as
579 * an ap.
580 *
581 * MCS are distinguished from legacy rates by or'ing in 0x80.
582 */
583 struct ieee80211_txparams_req {
584 struct ieee80211_txparam params[IEEE80211_MODE_MAX];
585 };
586
587 /*
588 * Set regulatory domain state with IEEE80211_IOC_REGDOMAIN.
589 * Note this is both the regulatory description and the channel
590 * list. The get request for IEEE80211_IOC_REGDOMAIN returns
591 * only the regdomain info; the channel list is obtained
592 * separately with IEEE80211_IOC_CHANINFO.
593 */
594 struct ieee80211_regdomain_req {
595 struct ieee80211_regdomain rd;
596 struct ieee80211req_chaninfo chaninfo;
597 };
598 #define IEEE80211_REGDOMAIN_SIZE(_nchan) \
599 (sizeof(struct ieee80211_regdomain_req) + \
600 (((_nchan)-1) * sizeof(struct ieee80211_channel)))
601 #define IEEE80211_REGDOMAIN_SPACE(_req) \
602 IEEE80211_REGDOMAIN_SIZE((_req)->chaninfo.ic_nchans)
603
604 /*
605 * Get driver capabilities. Driver, hardware crypto, and
606 * HT/802.11n capabilities, and a table that describes what
607 * the radio can do.
608 */
609 struct ieee80211_devcaps_req {
610 uint32_t dc_drivercaps; /* general driver caps */
611 uint32_t dc_cryptocaps; /* hardware crypto support */
612 uint32_t dc_htcaps; /* HT/802.11n support */
613 uint32_t dc_vhtcaps; /* VHT/802.11ac capabilities */
614 struct ieee80211req_chaninfo dc_chaninfo;
615 };
616 #define IEEE80211_DEVCAPS_SIZE(_nchan) \
617 (sizeof(struct ieee80211_devcaps_req) + \
618 (((_nchan)-1) * sizeof(struct ieee80211_channel)))
619 #define IEEE80211_DEVCAPS_SPACE(_dc) \
620 IEEE80211_DEVCAPS_SIZE((_dc)->dc_chaninfo.ic_nchans)
621
622 struct ieee80211_chanswitch_req {
623 struct ieee80211_channel csa_chan; /* new channel */
624 int csa_mode; /* CSA mode */
625 int csa_count; /* beacon count to switch */
626 };
627
628 /*
629 * Get/set per-station vlan tag.
630 */
631 struct ieee80211req_sta_vlan {
632 uint8_t sv_macaddr[IEEE80211_ADDR_LEN];
633 uint16_t sv_vlan;
634 };
635
636 /*
637 * FreeBSD-style ioctls.
638 */
639 /* the first member must be matched with struct ifreq */
640 struct ieee80211req {
641 char i_name[IFNAMSIZ]; /* if_name, e.g. "wi0" */
642 uint16_t i_type; /* req type */
643 int16_t i_val; /* Index or simple value */
644 uint16_t i_len; /* Index or simple value */
645 void *i_data; /* Extra data */
646 };
647
648 #ifdef __FreeBSD__
649 #define SIOCS80211 _IOW('i', 234, struct ieee80211req)
650 #define SIOCG80211 _IOWR('i', 235, struct ieee80211req)
651 #define SIOCG80211STATS _IOWR('i', 236, struct ifreq)
652
653 #elif __NetBSD__
654 #define SIOCS80211 _IOW('i', 244, struct ieee80211req)
655 #define SIOCG80211 _IOWR('i', 245, struct ieee80211req)
656 #define SIOCG80211STATS _IOWR('i', 246, struct ifreq)
657 #define SIOCG80211ZSTATS _IOWR('i', 247, struct ifreq)
658 #define OSIOCG80211STATS _IOWR('i', 242, struct ifreq)
659 #define OSIOCG80211ZSTATS _IOWR('i', 243, struct ifreq)
660 #endif /* __NetBSD__ */
661
662 #define IEEE80211_IOC_SSID 1
663 #define IEEE80211_IOC_NUMSSIDS 2
664 #define IEEE80211_IOC_WEP 3
665 #define IEEE80211_WEP_NOSUP -1
666 #define IEEE80211_WEP_OFF 0
667 #define IEEE80211_WEP_ON 1
668 #define IEEE80211_WEP_MIXED 2
669 #define IEEE80211_IOC_WEPKEY 4
670 #define IEEE80211_IOC_NUMWEPKEYS 5
671 #define IEEE80211_IOC_WEPTXKEY 6
672 #define IEEE80211_IOC_AUTHMODE 7
673 #define IEEE80211_IOC_STATIONNAME 8
674 #define IEEE80211_IOC_CHANNEL 9
675 #define IEEE80211_IOC_POWERSAVE 10
676 #define IEEE80211_POWERSAVE_NOSUP -1
677 #define IEEE80211_POWERSAVE_OFF 0
678 #define IEEE80211_POWERSAVE_CAM 1
679 #define IEEE80211_POWERSAVE_PSP 2
680 #define IEEE80211_POWERSAVE_PSP_CAM 3
681 #define IEEE80211_POWERSAVE_ON IEEE80211_POWERSAVE_CAM
682 #define IEEE80211_IOC_POWERSAVESLEEP 11
683 #define IEEE80211_IOC_RTSTHRESHOLD 12
684 #define IEEE80211_IOC_PROTMODE 13
685 #define IEEE80211_PROTMODE_OFF 0
686 #define IEEE80211_PROTMODE_CTS 1
687 #define IEEE80211_PROTMODE_RTSCTS 2
688 #define IEEE80211_IOC_TXPOWER 14 /* global tx power limit */
689 #define IEEE80211_IOC_BSSID 15
690 #define IEEE80211_IOC_ROAMING 16 /* roaming mode */
691 #define IEEE80211_IOC_PRIVACY 17 /* privacy invoked */
692 #define IEEE80211_IOC_DROPUNENCRYPTED 18 /* discard unencrypted frames */
693 #define IEEE80211_IOC_WPAKEY 19
694 #define IEEE80211_IOC_DELKEY 20
695 #define IEEE80211_IOC_MLME 21
696 /* 22 was IEEE80211_IOC_OPTIE, replaced by IEEE80211_IOC_APPIE */
697 /* 23 was IEEE80211_IOC_SCAN_REQ */
698 /* 24 was IEEE80211_IOC_SCAN_RESULTS */
699 #define IEEE80211_IOC_COUNTERMEASURES 25 /* WPA/TKIP countermeasures */
700 #define IEEE80211_IOC_WPA 26 /* WPA mode (0,1,2) */
701 #define IEEE80211_IOC_CHANLIST 27 /* channel list */
702 #define IEEE80211_IOC_WME 28 /* WME mode (on, off) */
703 #define IEEE80211_IOC_HIDESSID 29 /* hide SSID mode (on, off) */
704 #define IEEE80211_IOC_APBRIDGE 30 /* AP inter-sta bridging */
705 /* 31-35,37-38 were for WPA authenticator settings */
706 /* 36 was IEEE80211_IOC_DRIVER_CAPS */
707 #define IEEE80211_IOC_WPAIE 39 /* WPA information element */
708 #define IEEE80211_IOC_STA_STATS 40 /* per-station statistics */
709 #define IEEE80211_IOC_MACCMD 41 /* MAC ACL operation */
710 #define IEEE80211_IOC_CHANINFO 42 /* channel info list */
711 #define IEEE80211_IOC_TXPOWMAX 43 /* max tx power for channel */
712 #define IEEE80211_IOC_STA_TXPOW 44 /* per-station tx power limit */
713 /* 45 was IEEE80211_IOC_STA_INFO */
714 #define IEEE80211_IOC_WME_CWMIN 46 /* WME: ECWmin */
715 #define IEEE80211_IOC_WME_CWMAX 47 /* WME: ECWmax */
716 #define IEEE80211_IOC_WME_AIFS 48 /* WME: AIFSN */
717 #define IEEE80211_IOC_WME_TXOPLIMIT 49 /* WME: txops limit */
718 #define IEEE80211_IOC_WME_ACM 50 /* WME: ACM (bss only) */
719 #define IEEE80211_IOC_WME_ACKPOLICY 51 /* WME: ACK policy (!bss only)*/
720 #define IEEE80211_IOC_DTIM_PERIOD 52 /* DTIM period (beacons) */
721 #define IEEE80211_IOC_BEACON_INTERVAL 53 /* beacon interval (ms) */
722 #define IEEE80211_IOC_ADDMAC 54 /* add sta to MAC ACL table */
723 #define IEEE80211_IOC_DELMAC 55 /* del sta from MAC ACL table */
724 #define IEEE80211_IOC_PUREG 56 /* pure 11g (no 11b stations) */
725 #define IEEE80211_IOC_FF 57 /* ATH fast frames (on, off) */
726 #define IEEE80211_IOC_TURBOP 58 /* ATH turbo' (on, off) */
727 #define IEEE80211_IOC_BGSCAN 59 /* bg scanning (on, off) */
728 #define IEEE80211_IOC_BGSCAN_IDLE 60 /* bg scan idle threshold */
729 #define IEEE80211_IOC_BGSCAN_INTERVAL 61 /* bg scan interval */
730 #define IEEE80211_IOC_SCANVALID 65 /* scan cache valid threshold */
731 /* 66-72 were IEEE80211_IOC_ROAM_* and IEEE80211_IOC_MCAST_RATE */
732 #define IEEE80211_IOC_FRAGTHRESHOLD 73 /* tx fragmentation threshold */
733 #define IEEE80211_IOC_BURST 75 /* packet bursting */
734 #define IEEE80211_IOC_SCAN_RESULTS 76 /* get scan results */
735 #define IEEE80211_IOC_BMISSTHRESHOLD 77 /* beacon miss threshold */
736 #define IEEE80211_IOC_STA_INFO 78 /* station/neighbor info */
737 #define IEEE80211_IOC_WPAIE2 79 /* WPA+RSN info elements */
738 #define IEEE80211_IOC_CURCHAN 80 /* current channel */
739 #define IEEE80211_IOC_SHORTGI 81 /* 802.11n half GI */
740 #define IEEE80211_IOC_AMPDU 82 /* 802.11n A-MPDU (on, off) */
741 #define IEEE80211_IOC_AMPDU_LIMIT 83 /* A-MPDU length limit */
742 #define IEEE80211_IOC_AMPDU_DENSITY 84 /* A-MPDU density */
743 #define IEEE80211_IOC_AMSDU 85 /* 802.11n A-MSDU (on, off) */
744 #define IEEE80211_IOC_AMSDU_LIMIT 86 /* A-MSDU length limit */
745 #define IEEE80211_IOC_PUREN 87 /* pure 11n (no legacy sta's) */
746 #define IEEE80211_IOC_DOTH 88 /* 802.11h (on, off) */
747 /* 89-91 were regulatory items */
748 #define IEEE80211_IOC_HTCOMPAT 92 /* support pre-D1.10 HT ie's */
749 #define IEEE80211_IOC_DWDS 93 /* DWDS/4-address handling */
750 #define IEEE80211_IOC_INACTIVITY 94 /* sta inactivity handling */
751 #define IEEE80211_IOC_APPIE 95 /* application IE's */
752 #define IEEE80211_IOC_WPS 96 /* WPS operation */
753 #define IEEE80211_IOC_TSN 97 /* TSN operation */
754 #define IEEE80211_IOC_DEVCAPS 98 /* driver+device capabilities */
755 #define IEEE80211_IOC_CHANSWITCH 99 /* start 11h channel switch */
756 #define IEEE80211_IOC_DFS 100 /* DFS (on, off) */
757 #define IEEE80211_IOC_DOTD 101 /* 802.11d (on, off) */
758 #define IEEE80211_IOC_HTPROTMODE 102 /* HT protection (off, rts) */
759 #define IEEE80211_IOC_SCAN_REQ 103 /* scan w/ specified params */
760 #define IEEE80211_IOC_SCAN_CANCEL 104 /* cancel ongoing scan */
761 #define IEEE80211_IOC_HTCONF 105 /* HT config (off, HT20, HT40)*/
762 #define IEEE80211_IOC_REGDOMAIN 106 /* regulatory domain info */
763 #define IEEE80211_IOC_ROAM 107 /* roaming params en masse */
764 #define IEEE80211_IOC_TXPARAMS 108 /* tx parameters */
765 #define IEEE80211_IOC_STA_VLAN 109 /* per-station vlan tag */
766 #define IEEE80211_IOC_SMPS 110 /* MIMO power save */
767 #define IEEE80211_IOC_RIFS 111 /* RIFS config (on, off) */
768 #define IEEE80211_IOC_GREENFIELD 112 /* Greenfield (on, off) */
769 #define IEEE80211_IOC_STBC 113 /* STBC Tx/RX (on, off) */
770 #define IEEE80211_IOC_LDPC 114 /* LDPC Tx/RX (on, off) */
771
772 /* VHT */
773 #define IEEE80211_IOC_VHTCONF 130 /* VHT config (off, on; widths) */
774
775 #define IEEE80211_IOC_MESH_ID 170 /* mesh identifier */
776 #define IEEE80211_IOC_MESH_AP 171 /* accepting peerings */
777 #define IEEE80211_IOC_MESH_FWRD 172 /* forward frames */
778 #define IEEE80211_IOC_MESH_PROTO 173 /* mesh protocols */
779 #define IEEE80211_IOC_MESH_TTL 174 /* mesh TTL */
780 #define IEEE80211_IOC_MESH_RTCMD 175 /* mesh routing table commands*/
781 #define IEEE80211_IOC_MESH_PR_METRIC 176 /* mesh metric protocol */
782 #define IEEE80211_IOC_MESH_PR_PATH 177 /* mesh path protocol */
783 #define IEEE80211_IOC_MESH_PR_SIG 178 /* mesh sig protocol */
784 #define IEEE80211_IOC_MESH_PR_CC 179 /* mesh congestion protocol */
785 #define IEEE80211_IOC_MESH_PR_AUTH 180 /* mesh auth protocol */
786 #define IEEE80211_IOC_MESH_GATE 181 /* mesh gate XXX: 173? */
787
788 #define IEEE80211_IOC_HWMP_ROOTMODE 190 /* HWMP root mode */
789 #define IEEE80211_IOC_HWMP_MAXHOPS 191 /* number of hops before drop */
790 #define IEEE80211_IOC_HWMP_TTL 192 /* HWMP TTL */
791
792 #define IEEE80211_IOC_TDMA_SLOT 201 /* TDMA: assigned slot */
793 #define IEEE80211_IOC_TDMA_SLOTCNT 202 /* TDMA: slots in bss */
794 #define IEEE80211_IOC_TDMA_SLOTLEN 203 /* TDMA: slot length (usecs) */
795 #define IEEE80211_IOC_TDMA_BINTERVAL 204 /* TDMA: beacon intvl (slots) */
796
797 #define IEEE80211_IOC_QUIET 205 /* Quiet Enable/Disable */
798 #define IEEE80211_IOC_QUIET_PERIOD 206 /* Quiet Period */
799 #define IEEE80211_IOC_QUIET_OFFSET 207 /* Quiet Offset */
800 #define IEEE80211_IOC_QUIET_DUR 208 /* Quiet Duration */
801 #define IEEE80211_IOC_QUIET_COUNT 209 /* Quiet Count */
802 /*
803 * Parameters for controlling a scan requested with
804 * IEEE80211_IOC_SCAN_REQ.
805 *
806 * Active scans cause ProbeRequest frames to be issued for each
807 * specified ssid and, by default, a broadcast ProbeRequest frame.
808 * The set of ssid's is specified in the request.
809 *
810 * By default the scan will cause a BSS to be joined (in station/adhoc
811 * mode) or a channel to be selected for operation (hostap mode).
812 * To disable that specify IEEE80211_IOC_SCAN_NOPICK and if the
813 *
814 * If the station is currently associated to an AP then a scan request
815 * will cause the station to leave the current channel and potentially
816 * miss frames from the AP. Alternatively the station may notify the
817 * AP that it is going into power save mode before it leaves the channel.
818 * This ensures frames for the station are buffered by the AP. This is
819 * termed a ``bg scan'' and is requested with the IEEE80211_IOC_SCAN_BGSCAN
820 * flag. Background scans may take longer than foreground scans and may
821 * be preempted by traffic. If a station is not associated to an AP
822 * then a request for a background scan is automatically done in the
823 * foreground.
824 *
825 * The results of the scan request are cached by the system. This
826 * information is aged out and/or invalidated based on events like not
827 * being able to associated to an AP. To flush the current cache
828 * contents before doing a scan the IEEE80211_IOC_SCAN_FLUSH flag may
829 * be specified.
830 *
831 * By default the scan will be done until a suitable AP is located
832 * or a channel is found for use. A scan can also be constrained
833 * to be done once (IEEE80211_IOC_SCAN_ONCE) or to last for no more
834 * than a specified duration.
835 */
836 struct ieee80211_scan_req {
837 int sr_flags;
838 #define IEEE80211_IOC_SCAN_NOPICK 0x00001 /* scan only, no selection */
839 #define IEEE80211_IOC_SCAN_ACTIVE 0x00002 /* active scan (probe req) */
840 #define IEEE80211_IOC_SCAN_PICK1ST 0x00004 /* ``hey sailor'' mode */
841 #define IEEE80211_IOC_SCAN_BGSCAN 0x00008 /* bg scan, exit ps at end */
842 #define IEEE80211_IOC_SCAN_ONCE 0x00010 /* do one complete pass */
843 #define IEEE80211_IOC_SCAN_NOBCAST 0x00020 /* don't send bcast probe req */
844 #define IEEE80211_IOC_SCAN_NOJOIN 0x00040 /* no auto-sequencing */
845 #define IEEE80211_IOC_SCAN_FLUSH 0x10000 /* flush scan cache first */
846 #define IEEE80211_IOC_SCAN_CHECK 0x20000 /* check scan cache first */
847 u_int sr_duration; /* duration (ms) */
848 #define IEEE80211_IOC_SCAN_DURATION_MIN 1
849 #define IEEE80211_IOC_SCAN_DURATION_MAX 0x7fffffff
850 #define IEEE80211_IOC_SCAN_FOREVER IEEE80211_IOC_SCAN_DURATION_MAX
851 u_int sr_mindwell; /* min channel dwelltime (ms) */
852 u_int sr_maxdwell; /* max channel dwelltime (ms) */
853 int sr_nssid;
854 #define IEEE80211_IOC_SCAN_MAX_SSID 3
855 struct {
856 int len; /* length in bytes */
857 uint8_t ssid[IEEE80211_NWID_LEN]; /* ssid contents */
858 } sr_ssid[IEEE80211_IOC_SCAN_MAX_SSID];
859 };
860
861 /*
862 * Scan result data returned for IEEE80211_IOC_SCAN_RESULTS.
863 * Each result is a fixed size structure followed by a variable
864 * length SSID and one or more variable length information elements.
865 * The size of each variable length item is found in the fixed
866 * size structure and the entire length of the record is specified
867 * in isr_len. Result records are rounded to a multiple of 4 bytes.
868 */
869 struct ieee80211req_scan_result {
870 uint16_t isr_len; /* total length (mult of 4) */
871 uint16_t isr_ie_off; /* offset to SSID+IE data */
872 uint16_t isr_ie_len; /* IE length */
873 uint16_t isr_freq; /* MHz */
874 uint16_t isr_flags; /* channel flags */
875 int8_t isr_noise;
876 int8_t isr_rssi;
877 uint16_t isr_intval; /* beacon interval */
878 uint8_t isr_capinfo; /* capabilities */
879 uint8_t isr_erp; /* ERP element */
880 uint8_t isr_bssid[IEEE80211_ADDR_LEN];
881 uint8_t isr_nrates;
882 uint8_t isr_rates[IEEE80211_RATE_MAXSIZE];
883 uint8_t isr_ssid_len; /* SSID length */
884 uint8_t isr_meshid_len; /* MESH ID length */
885 /* variable length SSID, followed by variable length MESH ID,
886 followed by IE data */
887 };
888
889 /*
890 * Virtual AP cloning parameters. The parent device must
891 * be a vap-capable device. All parameters specified with
892 * the clone request are fixed for the lifetime of the vap.
893 *
894 * There are two flavors of WDS vaps: legacy and dynamic.
895 * Legacy WDS operation implements a static binding between
896 * two stations encapsulating traffic in 4-address frames.
897 * Dynamic WDS vaps are created when a station associates to
898 * an AP and sends a 4-address frame. If the AP vap is
899 * configured to support WDS then this will generate an
900 * event to user programs listening on the routing socket
901 * and a Dynamic WDS vap will be created to handle traffic
902 * to/from that station. In both cases the bssid of the
903 * peer must be specified when creating the vap.
904 *
905 * By default a vap will inherit the mac address/bssid of
906 * the underlying device. To request a unique address the
907 * IEEE80211_CLONE_BSSID flag should be supplied. This is
908 * meaningless for WDS vaps as they share the bssid of an
909 * AP vap that must otherwise exist. Note that some devices
910 * may not be able to support multiple addresses.
911 *
912 * Station mode vap's normally depend on the device to notice
913 * when the AP stops sending beacon frames. If IEEE80211_CLONE_NOBEACONS
914 * is specified the net80211 layer will do this in s/w. This
915 * is mostly useful when setting up a WDS repeater/extender where
916 * an AP vap is combined with a sta vap and the device isn't able
917 * to track beacon frames in hardware.
918 */
919 struct ieee80211_clone_params {
920 char icp_parent[IFNAMSIZ]; /* parent device */
921 uint16_t icp_opmode; /* operating mode */
922 uint16_t icp_flags; /* see below */
923 uint8_t icp_bssid[IEEE80211_ADDR_LEN]; /* for WDS links */
924 uint8_t icp_macaddr[IEEE80211_ADDR_LEN];/* local address */
925 };
926 #define IEEE80211_CLONE_BSSID 0x0001 /* allocate unique mac/bssid */
927 #define IEEE80211_CLONE_NOBEACONS 0x0002 /* don't setup beacon timers */
928 #define IEEE80211_CLONE_WDSLEGACY 0x0004 /* legacy WDS processing */
929 #define IEEE80211_CLONE_MACADDR 0x0008 /* use specified mac addr */
930 #define IEEE80211_CLONE_TDMA 0x0010 /* operate in TDMA mode */
931
932 #if __NetBSD__
933
934 #define OLD_IEEE80211_IOC_SCAN_REQ 23
935 #define OLD_IEEE80211_IOC_SCAN_RESULTS 24
936
937 /*
938 * Scan result data returned for OLD_IEEE80211_IOC_SCAN_RESULTS.
939 */
940 struct old_ieee80211req_scan_result {
941 u_int16_t isr_len; /* length (mult of 4) */
942 u_int16_t isr_freq; /* MHz */
943 u_int16_t isr_flags; /* channel flags */
944 u_int8_t isr_noise;
945 u_int8_t isr_rssi;
946 u_int8_t isr_intval; /* beacon interval */
947 u_int8_t isr_capinfo; /* capabilities */
948 u_int8_t isr_erp; /* ERP element */
949 u_int8_t isr_bssid[IEEE80211_ADDR_LEN];
950 u_int8_t isr_nrates;
951 u_int8_t isr_rates[IEEE80211_RATE_MAXSIZE];
952 u_int8_t isr_ssid_len; /* SSID length */
953 u_int8_t isr_ie_len; /* IE length */
954 u_int8_t isr_pad[5];
955 /* variable length SSID followed by IE data */
956 };
957
958
959 /* nwid is pointed at by ifr.ifr_data */
960 struct ieee80211_nwid {
961 u_int8_t i_len;
962 u_int8_t i_nwid[IEEE80211_NWID_LEN];
963 };
964
965 #define SIOCS80211NWID _IOWR('i', 230, struct ifreq)
966 #define SIOCG80211NWID _IOWR('i', 231, struct ifreq)
967
968 /* the first member must be matched with struct ifreq */
969 struct ieee80211_nwkey {
970 char i_name[IFNAMSIZ]; /* if_name, e.g. "wi0" */
971 int i_wepon; /* wep enabled flag */
972 int i_defkid; /* default encrypt key id */
973 struct {
974 int i_keylen;
975 u_int8_t *i_keydat;
976 } i_key[IEEE80211_WEP_NKID];
977 };
978 #define SIOCS80211NWKEY _IOW('i', 232, struct ieee80211_nwkey)
979 #define SIOCG80211NWKEY _IOWR('i', 233, struct ieee80211_nwkey)
980 /* i_wepon */
981 #define IEEE80211_NWKEY_OPEN 0 /* No privacy */
982 #define IEEE80211_NWKEY_WEP 1 /* WEP enabled */
983 #define IEEE80211_NWKEY_EAP 2 /* EAP enabled */
984 #define IEEE80211_NWKEY_PERSIST 0x100 /* designate persist keyset */
985
986 /* power management parameters */
987 struct ieee80211_power {
988 char i_name[IFNAMSIZ]; /* if_name, e.g. "wi0" */
989 int i_enabled; /* 1 == on, 0 == off */
990 int i_maxsleep; /* max sleep in ms */
991 };
992 #define SIOCS80211POWER _IOW('i', 234, struct ieee80211_power)
993 #define SIOCG80211POWER _IOWR('i', 235, struct ieee80211_power)
994
995 struct ieee80211_auth {
996 char i_name[IFNAMSIZ]; /* if_name, e.g. "wi0" */
997 int i_authtype;
998 };
999
1000 #define SIOCS80211AUTH _IOW('i', 236, struct ieee80211_auth)
1001 #define SIOCG80211AUTH _IOWR('i', 237, struct ieee80211_auth)
1002
1003 struct ieee80211chanreq {
1004 char i_name[IFNAMSIZ]; /* if_name, e.g. "wi0" */
1005 u_int16_t i_channel;
1006 };
1007
1008 #ifndef IEEE80211_CHAN_ANY
1009 #define IEEE80211_CHAN_ANY 0xffff
1010 #endif
1011
1012 #define SIOCS80211CHANNEL _IOW('i', 238, struct ieee80211chanreq)
1013 #define SIOCG80211CHANNEL _IOWR('i', 239, struct ieee80211chanreq)
1014
1015 struct ieee80211_bssid {
1016 char i_name[IFNAMSIZ]; /* if_name, e.g. "wi0" */
1017 u_int8_t i_bssid[IEEE80211_ADDR_LEN];
1018 };
1019
1020 #define SIOCS80211BSSID _IOW('i', 240, struct ieee80211_bssid)
1021 #define SIOCG80211BSSID _IOWR('i', 241, struct ieee80211_bssid)
1022
1023 #endif
1024
1025
1026 #endif /* _NET80211_IEEE80211_IOCTL_H_ */
1027