blob: 11c8bc87fdcbbedb9ef50b92c9e9188c7131f08b [file] [log] [blame]
Jiri Benca9de8ce2007-05-05 11:43:04 -07001/*
2 * IEEE 802.11 defines
3 *
4 * Copyright (c) 2001-2002, SSH Communications Security Corp and Jouni Malinen
5 * <jkmaline@cc.hut.fi>
6 * Copyright (c) 2002-2003, Jouni Malinen <jkmaline@cc.hut.fi>
7 * Copyright (c) 2005, Devicescape Software, Inc.
8 * Copyright (c) 2006, Michael Wu <flamingice@sourmilk.net>
9 *
10 * This program is free software; you can redistribute it and/or modify
11 * it under the terms of the GNU General Public License version 2 as
12 * published by the Free Software Foundation.
13 */
14
John W. Linville9387b7c2008-09-30 20:59:05 -040015#ifndef LINUX_IEEE80211_H
16#define LINUX_IEEE80211_H
Jiri Benca9de8ce2007-05-05 11:43:04 -070017
18#include <linux/types.h>
Johannes Bergf97df022007-09-18 17:29:20 -040019#include <asm/byteorder.h>
Jiri Benca9de8ce2007-05-05 11:43:04 -070020
Johannes Berg3f46b292009-03-14 19:10:51 +010021/*
22 * DS bit usage
23 *
24 * TA = transmitter address
25 * RA = receiver address
26 * DA = destination address
27 * SA = source address
28 *
29 * ToDS FromDS A1(RA) A2(TA) A3 A4 Use
30 * -----------------------------------------------------------------
31 * 0 0 DA SA BSSID - IBSS/DLS
32 * 0 1 DA BSSID SA - AP -> STA
33 * 1 0 BSSID SA DA - AP <- STA
34 * 1 1 RA TA DA SA unspecified (WDS)
35 */
36
Jiri Benca9de8ce2007-05-05 11:43:04 -070037#define FCS_LEN 4
38
39#define IEEE80211_FCTL_VERS 0x0003
40#define IEEE80211_FCTL_FTYPE 0x000c
41#define IEEE80211_FCTL_STYPE 0x00f0
42#define IEEE80211_FCTL_TODS 0x0100
43#define IEEE80211_FCTL_FROMDS 0x0200
44#define IEEE80211_FCTL_MOREFRAGS 0x0400
45#define IEEE80211_FCTL_RETRY 0x0800
46#define IEEE80211_FCTL_PM 0x1000
47#define IEEE80211_FCTL_MOREDATA 0x2000
48#define IEEE80211_FCTL_PROTECTED 0x4000
49#define IEEE80211_FCTL_ORDER 0x8000
Vladimir Kondratievb1881482012-07-02 09:32:35 +030050#define IEEE80211_FCTL_CTL_EXT 0x0f00
Jiri Benca9de8ce2007-05-05 11:43:04 -070051
52#define IEEE80211_SCTL_FRAG 0x000F
53#define IEEE80211_SCTL_SEQ 0xFFF0
54
55#define IEEE80211_FTYPE_MGMT 0x0000
56#define IEEE80211_FTYPE_CTL 0x0004
57#define IEEE80211_FTYPE_DATA 0x0008
Vladimir Kondratievb1881482012-07-02 09:32:35 +030058#define IEEE80211_FTYPE_EXT 0x000c
Jiri Benca9de8ce2007-05-05 11:43:04 -070059
60/* management */
61#define IEEE80211_STYPE_ASSOC_REQ 0x0000
62#define IEEE80211_STYPE_ASSOC_RESP 0x0010
63#define IEEE80211_STYPE_REASSOC_REQ 0x0020
64#define IEEE80211_STYPE_REASSOC_RESP 0x0030
65#define IEEE80211_STYPE_PROBE_REQ 0x0040
66#define IEEE80211_STYPE_PROBE_RESP 0x0050
67#define IEEE80211_STYPE_BEACON 0x0080
68#define IEEE80211_STYPE_ATIM 0x0090
69#define IEEE80211_STYPE_DISASSOC 0x00A0
70#define IEEE80211_STYPE_AUTH 0x00B0
71#define IEEE80211_STYPE_DEAUTH 0x00C0
72#define IEEE80211_STYPE_ACTION 0x00D0
73
74/* control */
Vladimir Kondratievb1881482012-07-02 09:32:35 +030075#define IEEE80211_STYPE_CTL_EXT 0x0060
Ron Rindjunsky6b4e3242007-11-14 19:57:38 +020076#define IEEE80211_STYPE_BACK_REQ 0x0080
77#define IEEE80211_STYPE_BACK 0x0090
Jiri Benca9de8ce2007-05-05 11:43:04 -070078#define IEEE80211_STYPE_PSPOLL 0x00A0
79#define IEEE80211_STYPE_RTS 0x00B0
80#define IEEE80211_STYPE_CTS 0x00C0
81#define IEEE80211_STYPE_ACK 0x00D0
82#define IEEE80211_STYPE_CFEND 0x00E0
83#define IEEE80211_STYPE_CFENDACK 0x00F0
84
85/* data */
86#define IEEE80211_STYPE_DATA 0x0000
87#define IEEE80211_STYPE_DATA_CFACK 0x0010
88#define IEEE80211_STYPE_DATA_CFPOLL 0x0020
89#define IEEE80211_STYPE_DATA_CFACKPOLL 0x0030
90#define IEEE80211_STYPE_NULLFUNC 0x0040
91#define IEEE80211_STYPE_CFACK 0x0050
92#define IEEE80211_STYPE_CFPOLL 0x0060
93#define IEEE80211_STYPE_CFACKPOLL 0x0070
94#define IEEE80211_STYPE_QOS_DATA 0x0080
95#define IEEE80211_STYPE_QOS_DATA_CFACK 0x0090
96#define IEEE80211_STYPE_QOS_DATA_CFPOLL 0x00A0
97#define IEEE80211_STYPE_QOS_DATA_CFACKPOLL 0x00B0
98#define IEEE80211_STYPE_QOS_NULLFUNC 0x00C0
99#define IEEE80211_STYPE_QOS_CFACK 0x00D0
100#define IEEE80211_STYPE_QOS_CFPOLL 0x00E0
101#define IEEE80211_STYPE_QOS_CFACKPOLL 0x00F0
102
Vladimir Kondratievb1881482012-07-02 09:32:35 +0300103/* extension, added by 802.11ad */
104#define IEEE80211_STYPE_DMG_BEACON 0x0000
105
106/* control extension - for IEEE80211_FTYPE_CTL | IEEE80211_STYPE_CTL_EXT */
107#define IEEE80211_CTL_EXT_POLL 0x2000
108#define IEEE80211_CTL_EXT_SPR 0x3000
109#define IEEE80211_CTL_EXT_GRANT 0x4000
110#define IEEE80211_CTL_EXT_DMG_CTS 0x5000
111#define IEEE80211_CTL_EXT_DMG_DTS 0x6000
112#define IEEE80211_CTL_EXT_SSW 0x8000
113#define IEEE80211_CTL_EXT_SSW_FBACK 0x9000
114#define IEEE80211_CTL_EXT_SSW_ACK 0xa000
Jiri Benca9de8ce2007-05-05 11:43:04 -0700115
116/* miscellaneous IEEE 802.11 constants */
Michael Wuc2378992007-10-30 16:50:05 -0400117#define IEEE80211_MAX_FRAG_THRESHOLD 2352
118#define IEEE80211_MAX_RTS_THRESHOLD 2353
Jiri Benca9de8ce2007-05-05 11:43:04 -0700119#define IEEE80211_MAX_AID 2007
120#define IEEE80211_MAX_TIM_LEN 251
Jiri Benca9de8ce2007-05-05 11:43:04 -0700121/* Maximum size for the MA-UNITDATA primitive, 802.11 standard section
122 6.2.1.1.2.
123
Michael Wuc2378992007-10-30 16:50:05 -0400124 802.11e clarifies the figure in section 7.1.2. The frame body is
125 up to 2304 octets long (maximum MSDU size) plus any crypt overhead. */
126#define IEEE80211_MAX_DATA_LEN 2304
127/* 30 byte 4 addr hdr, 2 byte QoS, 2304 byte MSDU, 12 byte crypt, 4 byte FCS */
128#define IEEE80211_MAX_FRAME_LEN 2352
Jiri Benca9de8ce2007-05-05 11:43:04 -0700129
130#define IEEE80211_MAX_SSID_LEN 32
Johannes Berg1239cd52008-10-28 11:12:57 +0100131
Luis Carlos Cobo37c57982008-02-23 15:17:04 +0100132#define IEEE80211_MAX_MESH_ID_LEN 32
Johannes Berg1239cd52008-10-28 11:12:57 +0100133
Johannes Berg5a306f52012-11-14 23:22:21 +0100134#define IEEE80211_NUM_TIDS 16
135
Harvey Harrisonfd7c8a42008-06-11 14:21:56 -0700136#define IEEE80211_QOS_CTL_LEN 2
Johannes Berg04b7dcf2011-06-22 10:06:59 +0200137/* 1d tag mask */
138#define IEEE80211_QOS_CTL_TAG1D_MASK 0x0007
139/* TID mask */
140#define IEEE80211_QOS_CTL_TID_MASK 0x000f
141/* EOSP */
142#define IEEE80211_QOS_CTL_EOSP 0x0010
143/* ACK policy */
144#define IEEE80211_QOS_CTL_ACK_POLICY_NORMAL 0x0000
145#define IEEE80211_QOS_CTL_ACK_POLICY_NOACK 0x0020
146#define IEEE80211_QOS_CTL_ACK_POLICY_NO_EXPL 0x0040
147#define IEEE80211_QOS_CTL_ACK_POLICY_BLOCKACK 0x0060
Thomas Pedersen6cc00d52011-11-03 21:11:11 -0700148#define IEEE80211_QOS_CTL_ACK_POLICY_MASK 0x0060
Johannes Berg04b7dcf2011-06-22 10:06:59 +0200149/* A-MSDU 802.11n */
150#define IEEE80211_QOS_CTL_A_MSDU_PRESENT 0x0080
Javier Cardona2154c812011-09-07 17:49:53 -0700151/* Mesh Control 802.11s */
152#define IEEE80211_QOS_CTL_MESH_CONTROL_PRESENT 0x0100
Jiri Benca9de8ce2007-05-05 11:43:04 -0700153
Kalle Valoab133152010-01-12 10:42:31 +0200154/* U-APSD queue for WMM IEs sent by AP */
155#define IEEE80211_WMM_IE_AP_QOSINFO_UAPSD (1<<7)
Bing Zhao44316cb2010-12-09 18:24:41 -0800156#define IEEE80211_WMM_IE_AP_QOSINFO_PARAM_SET_CNT_MASK 0x0f
Kalle Valoab133152010-01-12 10:42:31 +0200157
158/* U-APSD queues for WMM IEs sent by STA */
159#define IEEE80211_WMM_IE_STA_QOSINFO_AC_VO (1<<0)
160#define IEEE80211_WMM_IE_STA_QOSINFO_AC_VI (1<<1)
161#define IEEE80211_WMM_IE_STA_QOSINFO_AC_BK (1<<2)
162#define IEEE80211_WMM_IE_STA_QOSINFO_AC_BE (1<<3)
163#define IEEE80211_WMM_IE_STA_QOSINFO_AC_MASK 0x0f
164
165/* U-APSD max SP length for WMM IEs sent by STA */
166#define IEEE80211_WMM_IE_STA_QOSINFO_SP_ALL 0x00
167#define IEEE80211_WMM_IE_STA_QOSINFO_SP_2 0x01
168#define IEEE80211_WMM_IE_STA_QOSINFO_SP_4 0x02
169#define IEEE80211_WMM_IE_STA_QOSINFO_SP_6 0x03
170#define IEEE80211_WMM_IE_STA_QOSINFO_SP_MASK 0x03
171#define IEEE80211_WMM_IE_STA_QOSINFO_SP_SHIFT 5
172
Andriy Tkachukd0dd2de2010-01-20 13:55:06 +0200173#define IEEE80211_HT_CTL_LEN 4
174
Jiri Benca9de8ce2007-05-05 11:43:04 -0700175struct ieee80211_hdr {
176 __le16 frame_control;
177 __le16 duration_id;
178 u8 addr1[6];
179 u8 addr2[6];
180 u8 addr3[6];
181 __le16 seq_ctrl;
182 u8 addr4[6];
Johannes Berg598a5932012-12-28 12:00:40 +0100183} __packed;
Jiri Benca9de8ce2007-05-05 11:43:04 -0700184
Kalle Valo7044cc52010-01-05 20:16:19 +0200185struct ieee80211_hdr_3addr {
186 __le16 frame_control;
187 __le16 duration_id;
188 u8 addr1[6];
189 u8 addr2[6];
190 u8 addr3[6];
191 __le16 seq_ctrl;
Johannes Berg598a5932012-12-28 12:00:40 +0100192} __packed;
Kalle Valo7044cc52010-01-05 20:16:19 +0200193
Kalle Valo558a6662010-01-12 10:43:00 +0200194struct ieee80211_qos_hdr {
195 __le16 frame_control;
196 __le16 duration_id;
197 u8 addr1[6];
198 u8 addr2[6];
199 u8 addr3[6];
200 __le16 seq_ctrl;
201 __le16 qos_ctrl;
Johannes Berg598a5932012-12-28 12:00:40 +0100202} __packed;
Kalle Valo558a6662010-01-12 10:43:00 +0200203
Harvey Harrisonfd7c8a42008-06-11 14:21:56 -0700204/**
205 * ieee80211_has_tods - check if IEEE80211_FCTL_TODS is set
206 * @fc: frame control bytes in little-endian byteorder
207 */
208static inline int ieee80211_has_tods(__le16 fc)
209{
210 return (fc & cpu_to_le16(IEEE80211_FCTL_TODS)) != 0;
211}
212
213/**
214 * ieee80211_has_fromds - check if IEEE80211_FCTL_FROMDS is set
215 * @fc: frame control bytes in little-endian byteorder
216 */
217static inline int ieee80211_has_fromds(__le16 fc)
218{
219 return (fc & cpu_to_le16(IEEE80211_FCTL_FROMDS)) != 0;
220}
221
222/**
223 * ieee80211_has_a4 - check if IEEE80211_FCTL_TODS and IEEE80211_FCTL_FROMDS are set
224 * @fc: frame control bytes in little-endian byteorder
225 */
226static inline int ieee80211_has_a4(__le16 fc)
227{
228 __le16 tmp = cpu_to_le16(IEEE80211_FCTL_TODS | IEEE80211_FCTL_FROMDS);
229 return (fc & tmp) == tmp;
230}
231
232/**
233 * ieee80211_has_morefrags - check if IEEE80211_FCTL_MOREFRAGS is set
234 * @fc: frame control bytes in little-endian byteorder
235 */
236static inline int ieee80211_has_morefrags(__le16 fc)
237{
238 return (fc & cpu_to_le16(IEEE80211_FCTL_MOREFRAGS)) != 0;
239}
240
241/**
242 * ieee80211_has_retry - check if IEEE80211_FCTL_RETRY is set
243 * @fc: frame control bytes in little-endian byteorder
244 */
245static inline int ieee80211_has_retry(__le16 fc)
246{
247 return (fc & cpu_to_le16(IEEE80211_FCTL_RETRY)) != 0;
248}
249
250/**
251 * ieee80211_has_pm - check if IEEE80211_FCTL_PM is set
252 * @fc: frame control bytes in little-endian byteorder
253 */
254static inline int ieee80211_has_pm(__le16 fc)
255{
256 return (fc & cpu_to_le16(IEEE80211_FCTL_PM)) != 0;
257}
258
259/**
260 * ieee80211_has_moredata - check if IEEE80211_FCTL_MOREDATA is set
261 * @fc: frame control bytes in little-endian byteorder
262 */
263static inline int ieee80211_has_moredata(__le16 fc)
264{
265 return (fc & cpu_to_le16(IEEE80211_FCTL_MOREDATA)) != 0;
266}
267
268/**
269 * ieee80211_has_protected - check if IEEE80211_FCTL_PROTECTED is set
270 * @fc: frame control bytes in little-endian byteorder
271 */
272static inline int ieee80211_has_protected(__le16 fc)
273{
274 return (fc & cpu_to_le16(IEEE80211_FCTL_PROTECTED)) != 0;
275}
276
277/**
278 * ieee80211_has_order - check if IEEE80211_FCTL_ORDER is set
279 * @fc: frame control bytes in little-endian byteorder
280 */
281static inline int ieee80211_has_order(__le16 fc)
282{
283 return (fc & cpu_to_le16(IEEE80211_FCTL_ORDER)) != 0;
284}
285
286/**
287 * ieee80211_is_mgmt - check if type is IEEE80211_FTYPE_MGMT
288 * @fc: frame control bytes in little-endian byteorder
289 */
290static inline int ieee80211_is_mgmt(__le16 fc)
291{
292 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE)) ==
293 cpu_to_le16(IEEE80211_FTYPE_MGMT);
294}
295
296/**
297 * ieee80211_is_ctl - check if type is IEEE80211_FTYPE_CTL
298 * @fc: frame control bytes in little-endian byteorder
299 */
300static inline int ieee80211_is_ctl(__le16 fc)
301{
302 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE)) ==
303 cpu_to_le16(IEEE80211_FTYPE_CTL);
304}
305
306/**
307 * ieee80211_is_data - check if type is IEEE80211_FTYPE_DATA
308 * @fc: frame control bytes in little-endian byteorder
309 */
310static inline int ieee80211_is_data(__le16 fc)
311{
312 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE)) ==
313 cpu_to_le16(IEEE80211_FTYPE_DATA);
314}
315
316/**
317 * ieee80211_is_data_qos - check if type is IEEE80211_FTYPE_DATA and IEEE80211_STYPE_QOS_DATA is set
318 * @fc: frame control bytes in little-endian byteorder
319 */
320static inline int ieee80211_is_data_qos(__le16 fc)
321{
322 /*
323 * mask with QOS_DATA rather than IEEE80211_FCTL_STYPE as we just need
324 * to check the one bit
325 */
326 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_STYPE_QOS_DATA)) ==
327 cpu_to_le16(IEEE80211_FTYPE_DATA | IEEE80211_STYPE_QOS_DATA);
328}
329
330/**
331 * ieee80211_is_data_present - check if type is IEEE80211_FTYPE_DATA and has data
332 * @fc: frame control bytes in little-endian byteorder
333 */
334static inline int ieee80211_is_data_present(__le16 fc)
335{
336 /*
337 * mask with 0x40 and test that that bit is clear to only return true
338 * for the data-containing substypes.
339 */
340 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | 0x40)) ==
341 cpu_to_le16(IEEE80211_FTYPE_DATA);
342}
343
344/**
345 * ieee80211_is_assoc_req - check if IEEE80211_FTYPE_MGMT && IEEE80211_STYPE_ASSOC_REQ
346 * @fc: frame control bytes in little-endian byteorder
347 */
348static inline int ieee80211_is_assoc_req(__le16 fc)
349{
350 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
351 cpu_to_le16(IEEE80211_FTYPE_MGMT | IEEE80211_STYPE_ASSOC_REQ);
352}
353
354/**
355 * ieee80211_is_assoc_resp - check if IEEE80211_FTYPE_MGMT && IEEE80211_STYPE_ASSOC_RESP
356 * @fc: frame control bytes in little-endian byteorder
357 */
358static inline int ieee80211_is_assoc_resp(__le16 fc)
359{
360 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
361 cpu_to_le16(IEEE80211_FTYPE_MGMT | IEEE80211_STYPE_ASSOC_RESP);
362}
363
364/**
365 * ieee80211_is_reassoc_req - check if IEEE80211_FTYPE_MGMT && IEEE80211_STYPE_REASSOC_REQ
366 * @fc: frame control bytes in little-endian byteorder
367 */
368static inline int ieee80211_is_reassoc_req(__le16 fc)
369{
370 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
371 cpu_to_le16(IEEE80211_FTYPE_MGMT | IEEE80211_STYPE_REASSOC_REQ);
372}
373
374/**
375 * ieee80211_is_reassoc_resp - check if IEEE80211_FTYPE_MGMT && IEEE80211_STYPE_REASSOC_RESP
376 * @fc: frame control bytes in little-endian byteorder
377 */
378static inline int ieee80211_is_reassoc_resp(__le16 fc)
379{
380 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
381 cpu_to_le16(IEEE80211_FTYPE_MGMT | IEEE80211_STYPE_REASSOC_RESP);
382}
383
384/**
385 * ieee80211_is_probe_req - check if IEEE80211_FTYPE_MGMT && IEEE80211_STYPE_PROBE_REQ
386 * @fc: frame control bytes in little-endian byteorder
387 */
388static inline int ieee80211_is_probe_req(__le16 fc)
389{
390 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
391 cpu_to_le16(IEEE80211_FTYPE_MGMT | IEEE80211_STYPE_PROBE_REQ);
392}
393
394/**
395 * ieee80211_is_probe_resp - check if IEEE80211_FTYPE_MGMT && IEEE80211_STYPE_PROBE_RESP
396 * @fc: frame control bytes in little-endian byteorder
397 */
398static inline int ieee80211_is_probe_resp(__le16 fc)
399{
400 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
401 cpu_to_le16(IEEE80211_FTYPE_MGMT | IEEE80211_STYPE_PROBE_RESP);
402}
403
404/**
405 * ieee80211_is_beacon - check if IEEE80211_FTYPE_MGMT && IEEE80211_STYPE_BEACON
406 * @fc: frame control bytes in little-endian byteorder
407 */
408static inline int ieee80211_is_beacon(__le16 fc)
409{
410 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
411 cpu_to_le16(IEEE80211_FTYPE_MGMT | IEEE80211_STYPE_BEACON);
412}
413
414/**
415 * ieee80211_is_atim - check if IEEE80211_FTYPE_MGMT && IEEE80211_STYPE_ATIM
416 * @fc: frame control bytes in little-endian byteorder
417 */
418static inline int ieee80211_is_atim(__le16 fc)
419{
420 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
421 cpu_to_le16(IEEE80211_FTYPE_MGMT | IEEE80211_STYPE_ATIM);
422}
423
424/**
425 * ieee80211_is_disassoc - check if IEEE80211_FTYPE_MGMT && IEEE80211_STYPE_DISASSOC
426 * @fc: frame control bytes in little-endian byteorder
427 */
428static inline int ieee80211_is_disassoc(__le16 fc)
429{
430 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
431 cpu_to_le16(IEEE80211_FTYPE_MGMT | IEEE80211_STYPE_DISASSOC);
432}
433
434/**
435 * ieee80211_is_auth - check if IEEE80211_FTYPE_MGMT && IEEE80211_STYPE_AUTH
436 * @fc: frame control bytes in little-endian byteorder
437 */
438static inline int ieee80211_is_auth(__le16 fc)
439{
440 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
441 cpu_to_le16(IEEE80211_FTYPE_MGMT | IEEE80211_STYPE_AUTH);
442}
443
444/**
445 * ieee80211_is_deauth - check if IEEE80211_FTYPE_MGMT && IEEE80211_STYPE_DEAUTH
446 * @fc: frame control bytes in little-endian byteorder
447 */
448static inline int ieee80211_is_deauth(__le16 fc)
449{
450 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
451 cpu_to_le16(IEEE80211_FTYPE_MGMT | IEEE80211_STYPE_DEAUTH);
452}
453
454/**
455 * ieee80211_is_action - check if IEEE80211_FTYPE_MGMT && IEEE80211_STYPE_ACTION
456 * @fc: frame control bytes in little-endian byteorder
457 */
458static inline int ieee80211_is_action(__le16 fc)
459{
460 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
461 cpu_to_le16(IEEE80211_FTYPE_MGMT | IEEE80211_STYPE_ACTION);
462}
463
464/**
465 * ieee80211_is_back_req - check if IEEE80211_FTYPE_CTL && IEEE80211_STYPE_BACK_REQ
466 * @fc: frame control bytes in little-endian byteorder
467 */
468static inline int ieee80211_is_back_req(__le16 fc)
469{
470 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
471 cpu_to_le16(IEEE80211_FTYPE_CTL | IEEE80211_STYPE_BACK_REQ);
472}
473
474/**
475 * ieee80211_is_back - check if IEEE80211_FTYPE_CTL && IEEE80211_STYPE_BACK
476 * @fc: frame control bytes in little-endian byteorder
477 */
478static inline int ieee80211_is_back(__le16 fc)
479{
480 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
481 cpu_to_le16(IEEE80211_FTYPE_CTL | IEEE80211_STYPE_BACK);
482}
483
484/**
485 * ieee80211_is_pspoll - check if IEEE80211_FTYPE_CTL && IEEE80211_STYPE_PSPOLL
486 * @fc: frame control bytes in little-endian byteorder
487 */
488static inline int ieee80211_is_pspoll(__le16 fc)
489{
490 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
491 cpu_to_le16(IEEE80211_FTYPE_CTL | IEEE80211_STYPE_PSPOLL);
492}
493
494/**
495 * ieee80211_is_rts - check if IEEE80211_FTYPE_CTL && IEEE80211_STYPE_RTS
496 * @fc: frame control bytes in little-endian byteorder
497 */
498static inline int ieee80211_is_rts(__le16 fc)
499{
500 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
501 cpu_to_le16(IEEE80211_FTYPE_CTL | IEEE80211_STYPE_RTS);
502}
503
504/**
505 * ieee80211_is_cts - check if IEEE80211_FTYPE_CTL && IEEE80211_STYPE_CTS
506 * @fc: frame control bytes in little-endian byteorder
507 */
508static inline int ieee80211_is_cts(__le16 fc)
509{
510 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
511 cpu_to_le16(IEEE80211_FTYPE_CTL | IEEE80211_STYPE_CTS);
512}
513
514/**
515 * ieee80211_is_ack - check if IEEE80211_FTYPE_CTL && IEEE80211_STYPE_ACK
516 * @fc: frame control bytes in little-endian byteorder
517 */
518static inline int ieee80211_is_ack(__le16 fc)
519{
520 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
521 cpu_to_le16(IEEE80211_FTYPE_CTL | IEEE80211_STYPE_ACK);
522}
523
524/**
525 * ieee80211_is_cfend - check if IEEE80211_FTYPE_CTL && IEEE80211_STYPE_CFEND
526 * @fc: frame control bytes in little-endian byteorder
527 */
528static inline int ieee80211_is_cfend(__le16 fc)
529{
530 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
531 cpu_to_le16(IEEE80211_FTYPE_CTL | IEEE80211_STYPE_CFEND);
532}
533
534/**
535 * ieee80211_is_cfendack - check if IEEE80211_FTYPE_CTL && IEEE80211_STYPE_CFENDACK
536 * @fc: frame control bytes in little-endian byteorder
537 */
538static inline int ieee80211_is_cfendack(__le16 fc)
539{
540 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
541 cpu_to_le16(IEEE80211_FTYPE_CTL | IEEE80211_STYPE_CFENDACK);
542}
543
544/**
Johannes Berg22403de2009-10-30 12:55:03 +0100545 * ieee80211_is_nullfunc - check if frame is a regular (non-QoS) nullfunc frame
Harvey Harrisonfd7c8a42008-06-11 14:21:56 -0700546 * @fc: frame control bytes in little-endian byteorder
547 */
548static inline int ieee80211_is_nullfunc(__le16 fc)
549{
550 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
551 cpu_to_le16(IEEE80211_FTYPE_DATA | IEEE80211_STYPE_NULLFUNC);
552}
Jiri Benca9de8ce2007-05-05 11:43:04 -0700553
Johannes Berg22403de2009-10-30 12:55:03 +0100554/**
555 * ieee80211_is_qos_nullfunc - check if frame is a QoS nullfunc frame
556 * @fc: frame control bytes in little-endian byteorder
557 */
558static inline int ieee80211_is_qos_nullfunc(__le16 fc)
559{
560 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
561 cpu_to_le16(IEEE80211_FTYPE_DATA | IEEE80211_STYPE_QOS_NULLFUNC);
562}
563
Helmut Schaa8cb25e12011-12-08 13:11:54 +0100564/**
565 * ieee80211_is_first_frag - check if IEEE80211_SCTL_FRAG is not set
566 * @seq_ctrl: frame sequence control bytes in little-endian byteorder
567 */
568static inline int ieee80211_is_first_frag(__le16 seq_ctrl)
569{
570 return (seq_ctrl & cpu_to_le16(IEEE80211_SCTL_FRAG)) == 0;
571}
572
Luis Carlos Cobo37c57982008-02-23 15:17:04 +0100573struct ieee80211s_hdr {
574 u8 flags;
575 u8 ttl;
Luis Carlos Cobo51cedda2008-04-23 12:15:29 -0700576 __le32 seqnum;
Luis Carlos Cobo37c57982008-02-23 15:17:04 +0100577 u8 eaddr1[6];
578 u8 eaddr2[6];
Johannes Berg598a5932012-12-28 12:00:40 +0100579} __packed;
Luis Carlos Cobo37c57982008-02-23 15:17:04 +0100580
YanBo79617de2008-09-22 13:30:32 +0800581/* Mesh flags */
582#define MESH_FLAGS_AE_A4 0x1
583#define MESH_FLAGS_AE_A5_A6 0x2
Zhu Yie31a16d2009-05-21 21:47:03 +0800584#define MESH_FLAGS_AE 0x3
YanBo79617de2008-09-22 13:30:32 +0800585#define MESH_FLAGS_PS_DEEP 0x4
586
Assaf Kraussf2df3852008-06-15 18:23:29 +0300587/**
Chun-Yeow Yeoha69cc442012-06-14 02:06:07 +0800588 * enum ieee80211_preq_flags - mesh PREQ element flags
589 *
590 * @IEEE80211_PREQ_PROACTIVE_PREP_FLAG: proactive PREP subfield
591 */
592enum ieee80211_preq_flags {
593 IEEE80211_PREQ_PROACTIVE_PREP_FLAG = 1<<2,
594};
595
596/**
597 * enum ieee80211_preq_target_flags - mesh PREQ element per target flags
598 *
599 * @IEEE80211_PREQ_TO_FLAG: target only subfield
600 * @IEEE80211_PREQ_USN_FLAG: unknown target HWMP sequence number subfield
601 */
602enum ieee80211_preq_target_flags {
603 IEEE80211_PREQ_TO_FLAG = 1<<0,
604 IEEE80211_PREQ_USN_FLAG = 1<<2,
605};
606
607/**
Assaf Kraussf2df3852008-06-15 18:23:29 +0300608 * struct ieee80211_quiet_ie
609 *
610 * This structure refers to "Quiet information element"
611 */
612struct ieee80211_quiet_ie {
613 u8 count;
614 u8 period;
615 __le16 duration;
616 __le16 offset;
Johannes Berg598a5932012-12-28 12:00:40 +0100617} __packed;
Assaf Kraussf2df3852008-06-15 18:23:29 +0300618
619/**
620 * struct ieee80211_msrment_ie
621 *
622 * This structure refers to "Measurement Request/Report information element"
623 */
624struct ieee80211_msrment_ie {
625 u8 token;
626 u8 mode;
627 u8 type;
628 u8 request[0];
Johannes Berg598a5932012-12-28 12:00:40 +0100629} __packed;
Assaf Kraussf2df3852008-06-15 18:23:29 +0300630
631/**
632 * struct ieee80211_channel_sw_ie
633 *
634 * This structure refers to "Channel Switch Announcement information element"
635 */
636struct ieee80211_channel_sw_ie {
637 u8 mode;
638 u8 new_ch_num;
639 u8 count;
Johannes Berg598a5932012-12-28 12:00:40 +0100640} __packed;
Luis Carlos Cobo37c57982008-02-23 15:17:04 +0100641
Emmanuel Grumbach98f7dfd2008-07-18 13:52:59 +0800642/**
643 * struct ieee80211_tim
644 *
645 * This structure refers to "Traffic Indication Map information element"
646 */
647struct ieee80211_tim_ie {
648 u8 dtim_count;
649 u8 dtim_period;
650 u8 bitmap_ctrl;
651 /* variable size: 1 - 251 bytes */
Johannes Berge7ec86f2009-04-18 17:33:24 +0200652 u8 virtual_map[1];
Johannes Berg598a5932012-12-28 12:00:40 +0100653} __packed;
Emmanuel Grumbach98f7dfd2008-07-18 13:52:59 +0800654
Rui Paulo90a5e162009-11-11 00:01:31 +0000655/**
Rui Paulo136cfa22009-11-18 18:40:00 +0000656 * struct ieee80211_meshconf_ie
657 *
658 * This structure refers to "Mesh Configuration information element"
659 */
660struct ieee80211_meshconf_ie {
661 u8 meshconf_psel;
662 u8 meshconf_pmetric;
663 u8 meshconf_congest;
664 u8 meshconf_synch;
665 u8 meshconf_auth;
666 u8 meshconf_form;
667 u8 meshconf_cap;
Johannes Berg598a5932012-12-28 12:00:40 +0100668} __packed;
Rui Paulo136cfa22009-11-18 18:40:00 +0000669
670/**
Marco Porsch65821632012-11-21 18:40:30 -0800671 * enum mesh_config_capab_flags - Mesh Configuration IE capability field flags
672 *
673 * @IEEE80211_MESHCONF_CAPAB_ACCEPT_PLINKS: STA is willing to establish
674 * additional mesh peerings with other mesh STAs
675 * @IEEE80211_MESHCONF_CAPAB_FORWARDING: the STA forwards MSDUs
676 * @IEEE80211_MESHCONF_CAPAB_TBTT_ADJUSTING: TBTT adjustment procedure
677 * is ongoing
678 */
679enum mesh_config_capab_flags {
680 IEEE80211_MESHCONF_CAPAB_ACCEPT_PLINKS = 0x01,
681 IEEE80211_MESHCONF_CAPAB_FORWARDING = 0x08,
682 IEEE80211_MESHCONF_CAPAB_TBTT_ADJUSTING = 0x20,
683};
684
685/**
Rui Paulo90a5e162009-11-11 00:01:31 +0000686 * struct ieee80211_rann_ie
687 *
688 * This structure refers to "Root Announcement information element"
689 */
690struct ieee80211_rann_ie {
691 u8 rann_flags;
692 u8 rann_hopcount;
693 u8 rann_ttl;
694 u8 rann_addr[6];
Chun-Yeow Yeoh292c41a2012-03-19 21:38:46 +0800695 __le32 rann_seq;
696 __le32 rann_interval;
697 __le32 rann_metric;
Johannes Berg598a5932012-12-28 12:00:40 +0100698} __packed;
Rui Paulo90a5e162009-11-11 00:01:31 +0000699
Javier Cardona5ee68e52011-08-09 16:45:08 -0700700enum ieee80211_rann_flags {
701 RANN_FLAG_IS_GATE = 1 << 0,
702};
703
Johannes Bergec61cd62012-12-28 12:12:10 +0100704enum ieee80211_ht_chanwidth_values {
705 IEEE80211_HT_CHANWIDTH_20MHZ = 0,
706 IEEE80211_HT_CHANWIDTH_ANY = 1,
707};
708
Jouni Malinen9dfd6ba2009-05-06 20:34:10 +0300709#define WLAN_SA_QUERY_TR_ID_LEN 2
Jouni Malinenfea14732009-01-08 13:32:06 +0200710
Jiri Benca9de8ce2007-05-05 11:43:04 -0700711struct ieee80211_mgmt {
712 __le16 frame_control;
713 __le16 duration;
714 u8 da[6];
715 u8 sa[6];
716 u8 bssid[6];
717 __le16 seq_ctrl;
718 union {
719 struct {
720 __le16 auth_alg;
721 __le16 auth_transaction;
722 __le16 status_code;
723 /* possibly followed by Challenge text */
724 u8 variable[0];
Johannes Berg598a5932012-12-28 12:00:40 +0100725 } __packed auth;
Jiri Benca9de8ce2007-05-05 11:43:04 -0700726 struct {
727 __le16 reason_code;
Johannes Berg598a5932012-12-28 12:00:40 +0100728 } __packed deauth;
Jiri Benca9de8ce2007-05-05 11:43:04 -0700729 struct {
730 __le16 capab_info;
731 __le16 listen_interval;
732 /* followed by SSID and Supported rates */
733 u8 variable[0];
Johannes Berg598a5932012-12-28 12:00:40 +0100734 } __packed assoc_req;
Jiri Benca9de8ce2007-05-05 11:43:04 -0700735 struct {
736 __le16 capab_info;
737 __le16 status_code;
738 __le16 aid;
739 /* followed by Supported rates */
740 u8 variable[0];
Johannes Berg598a5932012-12-28 12:00:40 +0100741 } __packed assoc_resp, reassoc_resp;
Jiri Benca9de8ce2007-05-05 11:43:04 -0700742 struct {
743 __le16 capab_info;
744 __le16 listen_interval;
745 u8 current_ap[6];
746 /* followed by SSID and Supported rates */
747 u8 variable[0];
Johannes Berg598a5932012-12-28 12:00:40 +0100748 } __packed reassoc_req;
Jiri Benca9de8ce2007-05-05 11:43:04 -0700749 struct {
750 __le16 reason_code;
Johannes Berg598a5932012-12-28 12:00:40 +0100751 } __packed disassoc;
Jiri Benca9de8ce2007-05-05 11:43:04 -0700752 struct {
753 __le64 timestamp;
754 __le16 beacon_int;
755 __le16 capab_info;
756 /* followed by some of SSID, Supported rates,
757 * FH Params, DS Params, CF Params, IBSS Params, TIM */
758 u8 variable[0];
Johannes Berg598a5932012-12-28 12:00:40 +0100759 } __packed beacon;
Jiri Benca9de8ce2007-05-05 11:43:04 -0700760 struct {
761 /* only variable items: SSID, Supported rates */
762 u8 variable[0];
Johannes Berg598a5932012-12-28 12:00:40 +0100763 } __packed probe_req;
Jiri Benca9de8ce2007-05-05 11:43:04 -0700764 struct {
765 __le64 timestamp;
766 __le16 beacon_int;
767 __le16 capab_info;
768 /* followed by some of SSID, Supported rates,
769 * FH Params, DS Params, CF Params, IBSS Params */
770 u8 variable[0];
Johannes Berg598a5932012-12-28 12:00:40 +0100771 } __packed probe_resp;
Jiri Benca9de8ce2007-05-05 11:43:04 -0700772 struct {
773 u8 category;
774 union {
775 struct {
776 u8 action_code;
777 u8 dialog_token;
778 u8 status_code;
779 u8 variable[0];
Johannes Berg598a5932012-12-28 12:00:40 +0100780 } __packed wme_action;
Jiri Benca9de8ce2007-05-05 11:43:04 -0700781 struct{
782 u8 action_code;
783 u8 element_id;
784 u8 length;
Assaf Kraussf2df3852008-06-15 18:23:29 +0300785 struct ieee80211_channel_sw_ie sw_elem;
Johannes Berg598a5932012-12-28 12:00:40 +0100786 } __packed chan_switch;
Ron Rindjunsky6b4e3242007-11-14 19:57:38 +0200787 struct{
788 u8 action_code;
789 u8 dialog_token;
Assaf Kraussf2df3852008-06-15 18:23:29 +0300790 u8 element_id;
791 u8 length;
792 struct ieee80211_msrment_ie msr_elem;
Johannes Berg598a5932012-12-28 12:00:40 +0100793 } __packed measurement;
Assaf Kraussf2df3852008-06-15 18:23:29 +0300794 struct{
795 u8 action_code;
796 u8 dialog_token;
Ron Rindjunsky6b4e3242007-11-14 19:57:38 +0200797 __le16 capab;
798 __le16 timeout;
799 __le16 start_seq_num;
Johannes Berg598a5932012-12-28 12:00:40 +0100800 } __packed addba_req;
Ron Rindjunsky6b4e3242007-11-14 19:57:38 +0200801 struct{
802 u8 action_code;
803 u8 dialog_token;
804 __le16 status;
805 __le16 capab;
806 __le16 timeout;
Johannes Berg598a5932012-12-28 12:00:40 +0100807 } __packed addba_resp;
Ron Rindjunsky6b4e3242007-11-14 19:57:38 +0200808 struct{
809 u8 action_code;
810 __le16 params;
811 __le16 reason_code;
Johannes Berg598a5932012-12-28 12:00:40 +0100812 } __packed delba;
Thomas Pedersen6709a6d2011-08-11 19:35:11 -0700813 struct {
814 u8 action_code;
815 u8 variable[0];
Johannes Berg598a5932012-12-28 12:00:40 +0100816 } __packed self_prot;
Luis Carlos Cobo37c57982008-02-23 15:17:04 +0100817 struct{
818 u8 action_code;
819 u8 variable[0];
Johannes Berg598a5932012-12-28 12:00:40 +0100820 } __packed mesh_action;
Jouni Malinenfea14732009-01-08 13:32:06 +0200821 struct {
822 u8 action;
823 u8 trans_id[WLAN_SA_QUERY_TR_ID_LEN];
Johannes Berg598a5932012-12-28 12:00:40 +0100824 } __packed sa_query;
Johannes Berg0f782312009-12-01 13:37:02 +0100825 struct {
826 u8 action;
827 u8 smps_control;
Johannes Berg598a5932012-12-28 12:00:40 +0100828 } __packed ht_smps;
Arik Nemtsovdfe018b2011-09-28 14:12:52 +0300829 struct {
830 u8 action_code;
Johannes Bergec61cd62012-12-28 12:12:10 +0100831 u8 chanwidth;
832 } __packed ht_notify_cw;
833 struct {
834 u8 action_code;
Arik Nemtsovdfe018b2011-09-28 14:12:52 +0300835 u8 dialog_token;
836 __le16 capability;
837 u8 variable[0];
838 } __packed tdls_discover_resp;
Jiri Benca9de8ce2007-05-05 11:43:04 -0700839 } u;
Johannes Berg598a5932012-12-28 12:00:40 +0100840 } __packed action;
Jiri Benca9de8ce2007-05-05 11:43:04 -0700841 } u;
Johannes Berg598a5932012-12-28 12:00:40 +0100842} __packed;
Jiri Benca9de8ce2007-05-05 11:43:04 -0700843
Christian Lamparterc74d0842011-10-15 00:14:49 +0200844/* Supported Rates value encodings in 802.11n-2009 7.3.2.2 */
845#define BSS_MEMBERSHIP_SELECTOR_HT_PHY 127
846
Johannes Berg44d414d2008-09-08 17:44:28 +0200847/* mgmt header + 1 byte category code */
848#define IEEE80211_MIN_ACTION_SIZE offsetof(struct ieee80211_mgmt, u.action.u)
849
Jiri Benca9de8ce2007-05-05 11:43:04 -0700850
Jouni Malinen765cb462009-01-08 13:32:01 +0200851/* Management MIC information element (IEEE 802.11w) */
852struct ieee80211_mmie {
853 u8 element_id;
854 u8 length;
855 __le16 key_id;
856 u8 sequence_number[6];
857 u8 mic[8];
Johannes Berg598a5932012-12-28 12:00:40 +0100858} __packed;
Jouni Malinen765cb462009-01-08 13:32:01 +0200859
Eliad Peller0c28ec52011-09-15 11:53:01 +0300860struct ieee80211_vendor_ie {
861 u8 element_id;
862 u8 len;
863 u8 oui[3];
864 u8 oui_type;
865} __packed;
866
Jiri Benca9de8ce2007-05-05 11:43:04 -0700867/* Control frames */
868struct ieee80211_rts {
869 __le16 frame_control;
870 __le16 duration;
871 u8 ra[6];
872 u8 ta[6];
Johannes Berg598a5932012-12-28 12:00:40 +0100873} __packed;
Jiri Benca9de8ce2007-05-05 11:43:04 -0700874
875struct ieee80211_cts {
876 __le16 frame_control;
877 __le16 duration;
878 u8 ra[6];
Johannes Berg598a5932012-12-28 12:00:40 +0100879} __packed;
Jiri Benca9de8ce2007-05-05 11:43:04 -0700880
Jouni Malinenfc6971d2008-10-30 19:59:05 +0200881struct ieee80211_pspoll {
882 __le16 frame_control;
883 __le16 aid;
884 u8 bssid[6];
885 u8 ta[6];
Johannes Berg598a5932012-12-28 12:00:40 +0100886} __packed;
Jouni Malinenfc6971d2008-10-30 19:59:05 +0200887
Arik Nemtsovdfe018b2011-09-28 14:12:52 +0300888/* TDLS */
889
890/* Link-id information element */
891struct ieee80211_tdls_lnkie {
892 u8 ie_type; /* Link Identifier IE */
893 u8 ie_len;
894 u8 bssid[6];
895 u8 init_sta[6];
896 u8 resp_sta[6];
897} __packed;
898
899struct ieee80211_tdls_data {
900 u8 da[6];
901 u8 sa[6];
902 __be16 ether_type;
903 u8 payload_type;
904 u8 category;
905 u8 action_code;
906 union {
907 struct {
908 u8 dialog_token;
909 __le16 capability;
910 u8 variable[0];
911 } __packed setup_req;
912 struct {
913 __le16 status_code;
914 u8 dialog_token;
915 __le16 capability;
916 u8 variable[0];
917 } __packed setup_resp;
918 struct {
919 __le16 status_code;
920 u8 dialog_token;
921 u8 variable[0];
922 } __packed setup_cfm;
923 struct {
924 __le16 reason_code;
925 u8 variable[0];
926 } __packed teardown;
927 struct {
928 u8 dialog_token;
929 u8 variable[0];
930 } __packed discover_req;
931 } u;
932} __packed;
933
Arend van Sprielba350fb2012-11-05 15:29:09 +0100934/*
935 * Peer-to-Peer IE attribute related definitions.
936 */
937/**
938 * enum ieee80211_p2p_attr_id - identifies type of peer-to-peer attribute.
939 */
940enum ieee80211_p2p_attr_id {
941 IEEE80211_P2P_ATTR_STATUS = 0,
942 IEEE80211_P2P_ATTR_MINOR_REASON,
943 IEEE80211_P2P_ATTR_CAPABILITY,
944 IEEE80211_P2P_ATTR_DEVICE_ID,
945 IEEE80211_P2P_ATTR_GO_INTENT,
946 IEEE80211_P2P_ATTR_GO_CONFIG_TIMEOUT,
947 IEEE80211_P2P_ATTR_LISTEN_CHANNEL,
948 IEEE80211_P2P_ATTR_GROUP_BSSID,
949 IEEE80211_P2P_ATTR_EXT_LISTEN_TIMING,
950 IEEE80211_P2P_ATTR_INTENDED_IFACE_ADDR,
951 IEEE80211_P2P_ATTR_MANAGABILITY,
952 IEEE80211_P2P_ATTR_CHANNEL_LIST,
953 IEEE80211_P2P_ATTR_ABSENCE_NOTICE,
954 IEEE80211_P2P_ATTR_DEVICE_INFO,
955 IEEE80211_P2P_ATTR_GROUP_INFO,
956 IEEE80211_P2P_ATTR_GROUP_ID,
957 IEEE80211_P2P_ATTR_INTERFACE,
958 IEEE80211_P2P_ATTR_OPER_CHANNEL,
959 IEEE80211_P2P_ATTR_INVITE_FLAGS,
960 /* 19 - 220: Reserved */
961 IEEE80211_P2P_ATTR_VENDOR_SPECIFIC = 221,
962
963 IEEE80211_P2P_ATTR_MAX
964};
965
Ron Rindjunsky6b4e3242007-11-14 19:57:38 +0200966/**
967 * struct ieee80211_bar - HT Block Ack Request
968 *
969 * This structure refers to "HT BlockAckReq" as
970 * described in 802.11n draft section 7.2.1.7.1
971 */
972struct ieee80211_bar {
973 __le16 frame_control;
974 __le16 duration;
975 __u8 ra[6];
976 __u8 ta[6];
Ron Rindjunskya8b47ea2008-01-21 12:39:11 +0200977 __le16 control;
978 __le16 start_seq_num;
Johannes Berg598a5932012-12-28 12:00:40 +0100979} __packed;
Ron Rindjunsky6b4e3242007-11-14 19:57:38 +0200980
Ron Rindjunsky429a3802008-07-01 14:16:03 +0300981/* 802.11 BAR control masks */
Helmut Schaac1407b62011-08-11 16:17:41 +0200982#define IEEE80211_BAR_CTRL_ACK_POLICY_NORMAL 0x0000
983#define IEEE80211_BAR_CTRL_MULTI_TID 0x0002
984#define IEEE80211_BAR_CTRL_CBMTID_COMPRESSED_BA 0x0004
985#define IEEE80211_BAR_CTRL_TID_INFO_MASK 0xf000
986#define IEEE80211_BAR_CTRL_TID_INFO_SHIFT 12
Johannes Bergd9fe60d2008-10-09 12:13:49 +0200987
988#define IEEE80211_HT_MCS_MASK_LEN 10
989
990/**
991 * struct ieee80211_mcs_info - MCS information
992 * @rx_mask: RX mask
Luis R. Rodriguez9da3e062009-12-07 15:57:50 -0500993 * @rx_highest: highest supported RX rate. If set represents
994 * the highest supported RX data rate in units of 1 Mbps.
995 * If this field is 0 this value should not be used to
996 * consider the highest RX data rate supported.
Johannes Bergd9fe60d2008-10-09 12:13:49 +0200997 * @tx_params: TX parameters
998 */
999struct ieee80211_mcs_info {
1000 u8 rx_mask[IEEE80211_HT_MCS_MASK_LEN];
1001 __le16 rx_highest;
1002 u8 tx_params;
1003 u8 reserved[3];
Johannes Berg598a5932012-12-28 12:00:40 +01001004} __packed;
Johannes Bergd9fe60d2008-10-09 12:13:49 +02001005
1006/* 802.11n HT capability MSC set */
1007#define IEEE80211_HT_MCS_RX_HIGHEST_MASK 0x3ff
1008#define IEEE80211_HT_MCS_TX_DEFINED 0x01
1009#define IEEE80211_HT_MCS_TX_RX_DIFF 0x02
1010/* value 0 == 1 stream etc */
1011#define IEEE80211_HT_MCS_TX_MAX_STREAMS_MASK 0x0C
1012#define IEEE80211_HT_MCS_TX_MAX_STREAMS_SHIFT 2
1013#define IEEE80211_HT_MCS_TX_MAX_STREAMS 4
1014#define IEEE80211_HT_MCS_TX_UNEQUAL_MODULATION 0x10
1015
1016/*
1017 * 802.11n D5.0 20.3.5 / 20.6 says:
1018 * - indices 0 to 7 and 32 are single spatial stream
1019 * - 8 to 31 are multiple spatial streams using equal modulation
1020 * [8..15 for two streams, 16..23 for three and 24..31 for four]
1021 * - remainder are multiple spatial streams using unequal modulation
1022 */
1023#define IEEE80211_HT_MCS_UNEQUAL_MODULATION_START 33
1024#define IEEE80211_HT_MCS_UNEQUAL_MODULATION_START_BYTE \
1025 (IEEE80211_HT_MCS_UNEQUAL_MODULATION_START / 8)
1026
Ron Rindjunsky6b4e3242007-11-14 19:57:38 +02001027/**
1028 * struct ieee80211_ht_cap - HT capabilities
1029 *
Johannes Bergd9fe60d2008-10-09 12:13:49 +02001030 * This structure is the "HT capabilities element" as
1031 * described in 802.11n D5.0 7.3.2.57
Ron Rindjunsky6b4e3242007-11-14 19:57:38 +02001032 */
1033struct ieee80211_ht_cap {
1034 __le16 cap_info;
1035 u8 ampdu_params_info;
Johannes Bergd9fe60d2008-10-09 12:13:49 +02001036
1037 /* 16 bytes MCS information */
1038 struct ieee80211_mcs_info mcs;
1039
Ron Rindjunsky6b4e3242007-11-14 19:57:38 +02001040 __le16 extended_ht_cap_info;
1041 __le32 tx_BF_cap_info;
1042 u8 antenna_selection_info;
Johannes Berg598a5932012-12-28 12:00:40 +01001043} __packed;
Ron Rindjunsky6b4e3242007-11-14 19:57:38 +02001044
Johannes Bergd9fe60d2008-10-09 12:13:49 +02001045/* 802.11n HT capabilities masks (for cap_info) */
1046#define IEEE80211_HT_CAP_LDPC_CODING 0x0001
1047#define IEEE80211_HT_CAP_SUP_WIDTH_20_40 0x0002
1048#define IEEE80211_HT_CAP_SM_PS 0x000C
Johannes Berg0f782312009-12-01 13:37:02 +01001049#define IEEE80211_HT_CAP_SM_PS_SHIFT 2
Johannes Bergd9fe60d2008-10-09 12:13:49 +02001050#define IEEE80211_HT_CAP_GRN_FLD 0x0010
1051#define IEEE80211_HT_CAP_SGI_20 0x0020
1052#define IEEE80211_HT_CAP_SGI_40 0x0040
1053#define IEEE80211_HT_CAP_TX_STBC 0x0080
1054#define IEEE80211_HT_CAP_RX_STBC 0x0300
Felix Fietkauf79d9ba2010-04-19 19:57:35 +02001055#define IEEE80211_HT_CAP_RX_STBC_SHIFT 8
Johannes Bergd9fe60d2008-10-09 12:13:49 +02001056#define IEEE80211_HT_CAP_DELAY_BA 0x0400
1057#define IEEE80211_HT_CAP_MAX_AMSDU 0x0800
1058#define IEEE80211_HT_CAP_DSSSCCK40 0x1000
Johannes Berg9a418af2009-12-17 13:55:48 +01001059#define IEEE80211_HT_CAP_RESERVED 0x2000
Johannes Bergd9fe60d2008-10-09 12:13:49 +02001060#define IEEE80211_HT_CAP_40MHZ_INTOLERANT 0x4000
1061#define IEEE80211_HT_CAP_LSIG_TXOP_PROT 0x8000
1062
Bing Zhao4dd365f2011-03-30 18:01:15 -07001063/* 802.11n HT extended capabilities masks (for extended_ht_cap_info) */
1064#define IEEE80211_HT_EXT_CAP_PCO 0x0001
1065#define IEEE80211_HT_EXT_CAP_PCO_TIME 0x0006
1066#define IEEE80211_HT_EXT_CAP_PCO_TIME_SHIFT 1
1067#define IEEE80211_HT_EXT_CAP_MCS_FB 0x0300
1068#define IEEE80211_HT_EXT_CAP_MCS_FB_SHIFT 8
1069#define IEEE80211_HT_EXT_CAP_HTC_SUP 0x0400
1070#define IEEE80211_HT_EXT_CAP_RD_RESPONDER 0x0800
1071
Johannes Bergd9fe60d2008-10-09 12:13:49 +02001072/* 802.11n HT capability AMPDU settings (for ampdu_params_info) */
1073#define IEEE80211_HT_AMPDU_PARM_FACTOR 0x03
1074#define IEEE80211_HT_AMPDU_PARM_DENSITY 0x1C
Johannes Berg0f782312009-12-01 13:37:02 +01001075#define IEEE80211_HT_AMPDU_PARM_DENSITY_SHIFT 2
Johannes Bergd9fe60d2008-10-09 12:13:49 +02001076
Sujithd1eba242009-07-23 15:31:31 +05301077/*
1078 * Maximum length of AMPDU that the STA can receive.
1079 * Length = 2 ^ (13 + max_ampdu_length_exp) - 1 (octets)
1080 */
1081enum ieee80211_max_ampdu_length_exp {
1082 IEEE80211_HT_MAX_AMPDU_8K = 0,
1083 IEEE80211_HT_MAX_AMPDU_16K = 1,
1084 IEEE80211_HT_MAX_AMPDU_32K = 2,
1085 IEEE80211_HT_MAX_AMPDU_64K = 3
1086};
1087
1088#define IEEE80211_HT_MAX_AMPDU_FACTOR 13
1089
1090/* Minimum MPDU start spacing */
1091enum ieee80211_min_mpdu_spacing {
1092 IEEE80211_HT_MPDU_DENSITY_NONE = 0, /* No restriction */
1093 IEEE80211_HT_MPDU_DENSITY_0_25 = 1, /* 1/4 usec */
1094 IEEE80211_HT_MPDU_DENSITY_0_5 = 2, /* 1/2 usec */
1095 IEEE80211_HT_MPDU_DENSITY_1 = 3, /* 1 usec */
1096 IEEE80211_HT_MPDU_DENSITY_2 = 4, /* 2 usec */
1097 IEEE80211_HT_MPDU_DENSITY_4 = 5, /* 4 usec */
1098 IEEE80211_HT_MPDU_DENSITY_8 = 6, /* 8 usec */
1099 IEEE80211_HT_MPDU_DENSITY_16 = 7 /* 16 usec */
1100};
1101
Ron Rindjunsky6b4e3242007-11-14 19:57:38 +02001102/**
Johannes Berg074d46d2012-03-15 19:45:16 +01001103 * struct ieee80211_ht_operation - HT operation IE
Ron Rindjunsky6b4e3242007-11-14 19:57:38 +02001104 *
Johannes Berg074d46d2012-03-15 19:45:16 +01001105 * This structure is the "HT operation element" as
1106 * described in 802.11n-2009 7.3.2.57
Ron Rindjunsky6b4e3242007-11-14 19:57:38 +02001107 */
Johannes Berg074d46d2012-03-15 19:45:16 +01001108struct ieee80211_ht_operation {
1109 u8 primary_chan;
Ron Rindjunsky6b4e3242007-11-14 19:57:38 +02001110 u8 ht_param;
1111 __le16 operation_mode;
1112 __le16 stbc_param;
1113 u8 basic_set[16];
Johannes Berg598a5932012-12-28 12:00:40 +01001114} __packed;
Ron Rindjunsky6b4e3242007-11-14 19:57:38 +02001115
Johannes Bergd9fe60d2008-10-09 12:13:49 +02001116/* for ht_param */
1117#define IEEE80211_HT_PARAM_CHA_SEC_OFFSET 0x03
1118#define IEEE80211_HT_PARAM_CHA_SEC_NONE 0x00
1119#define IEEE80211_HT_PARAM_CHA_SEC_ABOVE 0x01
1120#define IEEE80211_HT_PARAM_CHA_SEC_BELOW 0x03
1121#define IEEE80211_HT_PARAM_CHAN_WIDTH_ANY 0x04
1122#define IEEE80211_HT_PARAM_RIFS_MODE 0x08
Johannes Bergd9fe60d2008-10-09 12:13:49 +02001123
1124/* for operation_mode */
1125#define IEEE80211_HT_OP_MODE_PROTECTION 0x0003
1126#define IEEE80211_HT_OP_MODE_PROTECTION_NONE 0
1127#define IEEE80211_HT_OP_MODE_PROTECTION_NONMEMBER 1
1128#define IEEE80211_HT_OP_MODE_PROTECTION_20MHZ 2
1129#define IEEE80211_HT_OP_MODE_PROTECTION_NONHT_MIXED 3
1130#define IEEE80211_HT_OP_MODE_NON_GF_STA_PRSNT 0x0004
1131#define IEEE80211_HT_OP_MODE_NON_HT_STA_PRSNT 0x0010
1132
1133/* for stbc_param */
1134#define IEEE80211_HT_STBC_PARAM_DUAL_BEACON 0x0040
1135#define IEEE80211_HT_STBC_PARAM_DUAL_CTS_PROT 0x0080
1136#define IEEE80211_HT_STBC_PARAM_STBC_BEACON 0x0100
1137#define IEEE80211_HT_STBC_PARAM_LSIG_TXOP_FULLPROT 0x0200
1138#define IEEE80211_HT_STBC_PARAM_PCO_ACTIVE 0x0400
1139#define IEEE80211_HT_STBC_PARAM_PCO_PHASE 0x0800
1140
Jiri Benca9de8ce2007-05-05 11:43:04 -07001141
Johannes Berg44d414d2008-09-08 17:44:28 +02001142/* block-ack parameters */
1143#define IEEE80211_ADDBA_PARAM_POLICY_MASK 0x0002
1144#define IEEE80211_ADDBA_PARAM_TID_MASK 0x003C
Amitkumar Karwar8d661f12011-01-11 16:14:24 -08001145#define IEEE80211_ADDBA_PARAM_BUF_SIZE_MASK 0xFFC0
Johannes Berg44d414d2008-09-08 17:44:28 +02001146#define IEEE80211_DELBA_PARAM_TID_MASK 0xF000
1147#define IEEE80211_DELBA_PARAM_INITIATOR_MASK 0x0800
1148
1149/*
1150 * A-PMDU buffer sizes
1151 * According to IEEE802.11n spec size varies from 8K to 64K (in powers of 2)
1152 */
1153#define IEEE80211_MIN_AMPDU_BUF 0x8
1154#define IEEE80211_MAX_AMPDU_BUF 0x40
1155
1156
Johannes Berg0f782312009-12-01 13:37:02 +01001157/* Spatial Multiplexing Power Save Modes (for capability) */
Tomas Winkler00c5ae22008-09-03 11:26:42 +08001158#define WLAN_HT_CAP_SM_PS_STATIC 0
1159#define WLAN_HT_CAP_SM_PS_DYNAMIC 1
1160#define WLAN_HT_CAP_SM_PS_INVALID 2
1161#define WLAN_HT_CAP_SM_PS_DISABLED 3
Tomas Winklere53cfe02008-01-30 22:05:13 -08001162
Johannes Berg0f782312009-12-01 13:37:02 +01001163/* for SM power control field lower two bits */
1164#define WLAN_HT_SMPS_CONTROL_DISABLED 0
1165#define WLAN_HT_SMPS_CONTROL_STATIC 1
1166#define WLAN_HT_SMPS_CONTROL_DYNAMIC 3
1167
Mahesh Palivelace0e1692012-06-22 07:27:46 +00001168/**
1169 * struct ieee80211_vht_mcs_info - VHT MCS information
1170 * @rx_mcs_map: RX MCS map 2 bits for each stream, total 8 streams
1171 * @rx_highest: Indicates highest long GI VHT PPDU data rate
1172 * STA can receive. Rate expressed in units of 1 Mbps.
1173 * If this field is 0 this value should not be used to
1174 * consider the highest RX data rate supported.
Johannes Berg7173a1f2012-11-12 11:44:18 +01001175 * The top 3 bits of this field are reserved.
Mahesh Palivelace0e1692012-06-22 07:27:46 +00001176 * @tx_mcs_map: TX MCS map 2 bits for each stream, total 8 streams
1177 * @tx_highest: Indicates highest long GI VHT PPDU data rate
1178 * STA can transmit. Rate expressed in units of 1 Mbps.
1179 * If this field is 0 this value should not be used to
1180 * consider the highest TX data rate supported.
Johannes Berg7173a1f2012-11-12 11:44:18 +01001181 * The top 3 bits of this field are reserved.
Mahesh Palivelace0e1692012-06-22 07:27:46 +00001182 */
1183struct ieee80211_vht_mcs_info {
1184 __le16 rx_mcs_map;
1185 __le16 rx_highest;
1186 __le16 tx_mcs_map;
1187 __le16 tx_highest;
1188} __packed;
1189
Mahesh Palivelad4950282012-10-10 11:25:40 +00001190/**
Johannes Berg7173a1f2012-11-12 11:44:18 +01001191 * enum ieee80211_vht_mcs_support - VHT MCS support definitions
1192 * @IEEE80211_VHT_MCS_SUPPORT_0_7: MCSes 0-7 are supported for the
1193 * number of streams
1194 * @IEEE80211_VHT_MCS_SUPPORT_0_8: MCSes 0-8 are supported
1195 * @IEEE80211_VHT_MCS_SUPPORT_0_9: MCSes 0-9 are supported
1196 * @IEEE80211_VHT_MCS_NOT_SUPPORTED: This number of streams isn't supported
1197 *
1198 * These definitions are used in each 2-bit subfield of the @rx_mcs_map
1199 * and @tx_mcs_map fields of &struct ieee80211_vht_mcs_info, which are
1200 * both split into 8 subfields by number of streams. These values indicate
1201 * which MCSes are supported for the number of streams the value appears
1202 * for.
1203 */
1204enum ieee80211_vht_mcs_support {
1205 IEEE80211_VHT_MCS_SUPPORT_0_7 = 0,
1206 IEEE80211_VHT_MCS_SUPPORT_0_8 = 1,
1207 IEEE80211_VHT_MCS_SUPPORT_0_9 = 2,
1208 IEEE80211_VHT_MCS_NOT_SUPPORTED = 3,
1209};
1210
1211/**
Mahesh Palivelad4950282012-10-10 11:25:40 +00001212 * struct ieee80211_vht_cap - VHT capabilities
1213 *
1214 * This structure is the "VHT capabilities element" as
1215 * described in 802.11ac D3.0 8.4.2.160
1216 * @vht_cap_info: VHT capability info
1217 * @supp_mcs: VHT MCS supported rates
1218 */
1219struct ieee80211_vht_cap {
1220 __le32 vht_cap_info;
1221 struct ieee80211_vht_mcs_info supp_mcs;
1222} __packed;
1223
1224/**
Johannes Bergf2d9d272012-11-22 14:11:39 +01001225 * enum ieee80211_vht_chanwidth - VHT channel width
1226 * @IEEE80211_VHT_CHANWIDTH_USE_HT: use the HT operation IE to
1227 * determine the channel width (20 or 40 MHz)
1228 * @IEEE80211_VHT_CHANWIDTH_80MHZ: 80 MHz bandwidth
1229 * @IEEE80211_VHT_CHANWIDTH_160MHZ: 160 MHz bandwidth
1230 * @IEEE80211_VHT_CHANWIDTH_80P80MHZ: 80+80 MHz bandwidth
1231 */
1232enum ieee80211_vht_chanwidth {
1233 IEEE80211_VHT_CHANWIDTH_USE_HT = 0,
1234 IEEE80211_VHT_CHANWIDTH_80MHZ = 1,
1235 IEEE80211_VHT_CHANWIDTH_160MHZ = 2,
1236 IEEE80211_VHT_CHANWIDTH_80P80MHZ = 3,
1237};
1238
1239/**
Mahesh Palivelad4950282012-10-10 11:25:40 +00001240 * struct ieee80211_vht_operation - VHT operation IE
1241 *
1242 * This structure is the "VHT operation element" as
1243 * described in 802.11ac D3.0 8.4.2.161
1244 * @chan_width: Operating channel width
1245 * @center_freq_seg1_idx: center freq segment 1 index
1246 * @center_freq_seg2_idx: center freq segment 2 index
1247 * @basic_mcs_set: VHT Basic MCS rate set
1248 */
1249struct ieee80211_vht_operation {
1250 u8 chan_width;
1251 u8 center_freq_seg1_idx;
1252 u8 center_freq_seg2_idx;
1253 __le16 basic_mcs_set;
1254} __packed;
1255
1256
Mahesh Palivelace0e1692012-06-22 07:27:46 +00001257#define IEEE80211_VHT_MCS_ZERO_TO_SEVEN_SUPPORT 0
1258#define IEEE80211_VHT_MCS_ZERO_TO_EIGHT_SUPPORT 1
1259#define IEEE80211_VHT_MCS_ZERO_TO_NINE_SUPPORT 2
1260#define IEEE80211_VHT_MCS_NOT_SUPPORTED 3
1261
1262/* 802.11ac VHT Capabilities */
Johannes Berg01331042012-12-05 16:45:31 +01001263#define IEEE80211_VHT_CAP_MAX_MPDU_LENGTH_3895 0x00000000
1264#define IEEE80211_VHT_CAP_MAX_MPDU_LENGTH_7991 0x00000001
1265#define IEEE80211_VHT_CAP_MAX_MPDU_LENGTH_11454 0x00000002
1266#define IEEE80211_VHT_CAP_SUPP_CHAN_WIDTH_160MHZ 0x00000004
1267#define IEEE80211_VHT_CAP_SUPP_CHAN_WIDTH_160_80PLUS80MHZ 0x00000008
1268#define IEEE80211_VHT_CAP_RXLDPC 0x00000010
1269#define IEEE80211_VHT_CAP_SHORT_GI_80 0x00000020
1270#define IEEE80211_VHT_CAP_SHORT_GI_160 0x00000040
1271#define IEEE80211_VHT_CAP_TXSTBC 0x00000080
1272#define IEEE80211_VHT_CAP_RXSTBC_1 0x00000100
1273#define IEEE80211_VHT_CAP_RXSTBC_2 0x00000200
1274#define IEEE80211_VHT_CAP_RXSTBC_3 0x00000300
1275#define IEEE80211_VHT_CAP_RXSTBC_4 0x00000400
1276#define IEEE80211_VHT_CAP_SU_BEAMFORMER_CAPABLE 0x00000800
1277#define IEEE80211_VHT_CAP_SU_BEAMFORMEE_CAPABLE 0x00001000
1278#define IEEE80211_VHT_CAP_BEAMFORMER_ANTENNAS_MAX 0x00006000
1279#define IEEE80211_VHT_CAP_SOUNDING_DIMENTION_MAX 0x00030000
1280#define IEEE80211_VHT_CAP_MU_BEAMFORMER_CAPABLE 0x00080000
1281#define IEEE80211_VHT_CAP_MU_BEAMFORMEE_CAPABLE 0x00100000
1282#define IEEE80211_VHT_CAP_VHT_TXOP_PS 0x00200000
1283#define IEEE80211_VHT_CAP_HTC_VHT 0x00400000
1284#define IEEE80211_VHT_CAP_MAX_A_MPDU_LENGTH_EXPONENT_SHIFT 23
1285#define IEEE80211_VHT_CAP_MAX_A_MPDU_LENGTH_EXPONENT_MASK \
1286 (7 << IEEE80211_VHT_CAP_MAX_A_MPDU_LENGTH_EXPONENT_SHIFT)
1287#define IEEE80211_VHT_CAP_VHT_LINK_ADAPTATION_VHT_UNSOL_MFB 0x08000000
1288#define IEEE80211_VHT_CAP_VHT_LINK_ADAPTATION_VHT_MRQ_MFB 0x0c000000
1289#define IEEE80211_VHT_CAP_RX_ANTENNA_PATTERN 0x10000000
1290#define IEEE80211_VHT_CAP_TX_ANTENNA_PATTERN 0x20000000
Mahesh Palivelace0e1692012-06-22 07:27:46 +00001291
Jiri Benca9de8ce2007-05-05 11:43:04 -07001292/* Authentication algorithms */
1293#define WLAN_AUTH_OPEN 0
1294#define WLAN_AUTH_SHARED_KEY 1
Jouni Malinen636a5d32009-03-19 13:39:22 +02001295#define WLAN_AUTH_FT 2
Steve deRosiercfdfa4d2010-10-09 17:23:28 -07001296#define WLAN_AUTH_SAE 3
Senthil Balasubramanianbb608e92008-12-04 20:38:13 +05301297#define WLAN_AUTH_LEAP 128
Jiri Benca9de8ce2007-05-05 11:43:04 -07001298
1299#define WLAN_AUTH_CHALLENGE_LEN 128
1300
1301#define WLAN_CAPABILITY_ESS (1<<0)
1302#define WLAN_CAPABILITY_IBSS (1<<1)
Javier Cardona0a35d362011-05-04 10:24:56 -07001303
Eliad Peller333ba732011-05-29 15:53:20 +03001304/*
1305 * A mesh STA sets the ESS and IBSS capability bits to zero.
1306 * however, this holds true for p2p probe responses (in the p2p_find
1307 * phase) as well.
1308 */
1309#define WLAN_CAPABILITY_IS_STA_BSS(cap) \
Javier Cardona0a35d362011-05-04 10:24:56 -07001310 (!((cap) & (WLAN_CAPABILITY_ESS | WLAN_CAPABILITY_IBSS)))
1311
Jiri Benca9de8ce2007-05-05 11:43:04 -07001312#define WLAN_CAPABILITY_CF_POLLABLE (1<<2)
1313#define WLAN_CAPABILITY_CF_POLL_REQUEST (1<<3)
1314#define WLAN_CAPABILITY_PRIVACY (1<<4)
1315#define WLAN_CAPABILITY_SHORT_PREAMBLE (1<<5)
1316#define WLAN_CAPABILITY_PBCC (1<<6)
1317#define WLAN_CAPABILITY_CHANNEL_AGILITY (1<<7)
Assaf Kraussb6623482008-06-16 16:09:49 +03001318
Jiri Benca9de8ce2007-05-05 11:43:04 -07001319/* 802.11h */
1320#define WLAN_CAPABILITY_SPECTRUM_MGMT (1<<8)
1321#define WLAN_CAPABILITY_QOS (1<<9)
1322#define WLAN_CAPABILITY_SHORT_SLOT_TIME (1<<10)
Vladimir Kondratiev0f6dfce2012-12-18 09:55:33 +02001323#define WLAN_CAPABILITY_APSD (1<<11)
1324#define WLAN_CAPABILITY_RADIO_MEASURE (1<<12)
Jiri Benca9de8ce2007-05-05 11:43:04 -07001325#define WLAN_CAPABILITY_DSSS_OFDM (1<<13)
Vladimir Kondratiev0f6dfce2012-12-18 09:55:33 +02001326#define WLAN_CAPABILITY_DEL_BACK (1<<14)
1327#define WLAN_CAPABILITY_IMM_BACK (1<<15)
Vladimir Kondratievb1881482012-07-02 09:32:35 +03001328
1329/* DMG (60gHz) 802.11ad */
1330/* type - bits 0..1 */
Vladimir Kondratiev0f6dfce2012-12-18 09:55:33 +02001331#define WLAN_CAPABILITY_DMG_TYPE_MASK (3<<0)
Vladimir Kondratievb1881482012-07-02 09:32:35 +03001332#define WLAN_CAPABILITY_DMG_TYPE_IBSS (1<<0) /* Tx by: STA */
1333#define WLAN_CAPABILITY_DMG_TYPE_PBSS (2<<0) /* Tx by: PCP */
1334#define WLAN_CAPABILITY_DMG_TYPE_AP (3<<0) /* Tx by: AP */
1335
1336#define WLAN_CAPABILITY_DMG_CBAP_ONLY (1<<2)
Vladimir Kondratiev0f6dfce2012-12-18 09:55:33 +02001337#define WLAN_CAPABILITY_DMG_CBAP_SOURCE (1<<3)
Vladimir Kondratievb1881482012-07-02 09:32:35 +03001338#define WLAN_CAPABILITY_DMG_PRIVACY (1<<4)
1339#define WLAN_CAPABILITY_DMG_ECPAC (1<<5)
1340
1341#define WLAN_CAPABILITY_DMG_SPECTRUM_MGMT (1<<8)
1342#define WLAN_CAPABILITY_DMG_RADIO_MEASURE (1<<12)
1343
Assaf Kraussb6623482008-06-16 16:09:49 +03001344/* measurement */
1345#define IEEE80211_SPCT_MSR_RPRT_MODE_LATE (1<<0)
1346#define IEEE80211_SPCT_MSR_RPRT_MODE_INCAPABLE (1<<1)
1347#define IEEE80211_SPCT_MSR_RPRT_MODE_REFUSED (1<<2)
1348
1349#define IEEE80211_SPCT_MSR_RPRT_TYPE_BASIC 0
1350#define IEEE80211_SPCT_MSR_RPRT_TYPE_CCA 1
1351#define IEEE80211_SPCT_MSR_RPRT_TYPE_RPI 2
1352
Daniel Drake56282212007-07-10 19:32:10 +02001353/* 802.11g ERP information element */
1354#define WLAN_ERP_NON_ERP_PRESENT (1<<0)
1355#define WLAN_ERP_USE_PROTECTION (1<<1)
1356#define WLAN_ERP_BARKER_PREAMBLE (1<<2)
1357
1358/* WLAN_ERP_BARKER_PREAMBLE values */
1359enum {
1360 WLAN_ERP_PREAMBLE_SHORT = 0,
1361 WLAN_ERP_PREAMBLE_LONG = 1,
1362};
1363
Vladimir Kondratievb1881482012-07-02 09:32:35 +03001364/* Band ID, 802.11ad #8.4.1.45 */
1365enum {
1366 IEEE80211_BANDID_TV_WS = 0, /* TV white spaces */
1367 IEEE80211_BANDID_SUB1 = 1, /* Sub-1 GHz (excluding TV white spaces) */
1368 IEEE80211_BANDID_2G = 2, /* 2.4 GHz */
1369 IEEE80211_BANDID_3G = 3, /* 3.6 GHz */
1370 IEEE80211_BANDID_5G = 4, /* 4.9 and 5 GHz */
1371 IEEE80211_BANDID_60G = 5, /* 60 GHz */
1372};
1373
Jiri Benca9de8ce2007-05-05 11:43:04 -07001374/* Status codes */
1375enum ieee80211_statuscode {
1376 WLAN_STATUS_SUCCESS = 0,
1377 WLAN_STATUS_UNSPECIFIED_FAILURE = 1,
1378 WLAN_STATUS_CAPS_UNSUPPORTED = 10,
1379 WLAN_STATUS_REASSOC_NO_ASSOC = 11,
1380 WLAN_STATUS_ASSOC_DENIED_UNSPEC = 12,
1381 WLAN_STATUS_NOT_SUPPORTED_AUTH_ALG = 13,
1382 WLAN_STATUS_UNKNOWN_AUTH_TRANSACTION = 14,
1383 WLAN_STATUS_CHALLENGE_FAIL = 15,
1384 WLAN_STATUS_AUTH_TIMEOUT = 16,
1385 WLAN_STATUS_AP_UNABLE_TO_HANDLE_NEW_STA = 17,
1386 WLAN_STATUS_ASSOC_DENIED_RATES = 18,
1387 /* 802.11b */
1388 WLAN_STATUS_ASSOC_DENIED_NOSHORTPREAMBLE = 19,
1389 WLAN_STATUS_ASSOC_DENIED_NOPBCC = 20,
1390 WLAN_STATUS_ASSOC_DENIED_NOAGILITY = 21,
1391 /* 802.11h */
1392 WLAN_STATUS_ASSOC_DENIED_NOSPECTRUM = 22,
1393 WLAN_STATUS_ASSOC_REJECTED_BAD_POWER = 23,
1394 WLAN_STATUS_ASSOC_REJECTED_BAD_SUPP_CHAN = 24,
1395 /* 802.11g */
1396 WLAN_STATUS_ASSOC_DENIED_NOSHORTTIME = 25,
1397 WLAN_STATUS_ASSOC_DENIED_NODSSSOFDM = 26,
Jouni Malinen63a5ab82009-01-08 13:32:09 +02001398 /* 802.11w */
1399 WLAN_STATUS_ASSOC_REJECTED_TEMPORARILY = 30,
1400 WLAN_STATUS_ROBUST_MGMT_FRAME_POLICY_VIOLATION = 31,
Jiri Benca9de8ce2007-05-05 11:43:04 -07001401 /* 802.11i */
1402 WLAN_STATUS_INVALID_IE = 40,
1403 WLAN_STATUS_INVALID_GROUP_CIPHER = 41,
1404 WLAN_STATUS_INVALID_PAIRWISE_CIPHER = 42,
1405 WLAN_STATUS_INVALID_AKMP = 43,
1406 WLAN_STATUS_UNSUPP_RSN_VERSION = 44,
1407 WLAN_STATUS_INVALID_RSN_IE_CAP = 45,
1408 WLAN_STATUS_CIPHER_SUITE_REJECTED = 46,
Ron Rindjunsky6b4e3242007-11-14 19:57:38 +02001409 /* 802.11e */
1410 WLAN_STATUS_UNSPECIFIED_QOS = 32,
1411 WLAN_STATUS_ASSOC_DENIED_NOBANDWIDTH = 33,
1412 WLAN_STATUS_ASSOC_DENIED_LOWACK = 34,
1413 WLAN_STATUS_ASSOC_DENIED_UNSUPP_QOS = 35,
1414 WLAN_STATUS_REQUEST_DECLINED = 37,
1415 WLAN_STATUS_INVALID_QOS_PARAM = 38,
1416 WLAN_STATUS_CHANGE_TSPEC = 39,
1417 WLAN_STATUS_WAIT_TS_DELAY = 47,
1418 WLAN_STATUS_NO_DIRECT_LINK = 48,
1419 WLAN_STATUS_STA_NOT_PRESENT = 49,
1420 WLAN_STATUS_STA_NOT_QSTA = 50,
Steve deRosiercfdfa4d2010-10-09 17:23:28 -07001421 /* 802.11s */
1422 WLAN_STATUS_ANTI_CLOG_REQUIRED = 76,
1423 WLAN_STATUS_FCG_NOT_SUPP = 78,
1424 WLAN_STATUS_STA_NO_TBTT = 78,
Vladimir Kondratievb1881482012-07-02 09:32:35 +03001425 /* 802.11ad */
1426 WLAN_STATUS_REJECTED_WITH_SUGGESTED_CHANGES = 39,
1427 WLAN_STATUS_REJECTED_FOR_DELAY_PERIOD = 47,
1428 WLAN_STATUS_REJECT_WITH_SCHEDULE = 83,
1429 WLAN_STATUS_PENDING_ADMITTING_FST_SESSION = 86,
1430 WLAN_STATUS_PERFORMING_FST_NOW = 87,
1431 WLAN_STATUS_PENDING_GAP_IN_BA_WINDOW = 88,
1432 WLAN_STATUS_REJECT_U_PID_SETTING = 89,
1433 WLAN_STATUS_REJECT_DSE_BAND = 96,
1434 WLAN_STATUS_DENIED_WITH_SUGGESTED_BAND_AND_CHANNEL = 99,
1435 WLAN_STATUS_DENIED_DUE_TO_SPECTRUM_MANAGEMENT = 103,
Jiri Benca9de8ce2007-05-05 11:43:04 -07001436};
1437
1438
1439/* Reason codes */
1440enum ieee80211_reasoncode {
1441 WLAN_REASON_UNSPECIFIED = 1,
1442 WLAN_REASON_PREV_AUTH_NOT_VALID = 2,
1443 WLAN_REASON_DEAUTH_LEAVING = 3,
1444 WLAN_REASON_DISASSOC_DUE_TO_INACTIVITY = 4,
1445 WLAN_REASON_DISASSOC_AP_BUSY = 5,
1446 WLAN_REASON_CLASS2_FRAME_FROM_NONAUTH_STA = 6,
1447 WLAN_REASON_CLASS3_FRAME_FROM_NONASSOC_STA = 7,
1448 WLAN_REASON_DISASSOC_STA_HAS_LEFT = 8,
1449 WLAN_REASON_STA_REQ_ASSOC_WITHOUT_AUTH = 9,
1450 /* 802.11h */
1451 WLAN_REASON_DISASSOC_BAD_POWER = 10,
1452 WLAN_REASON_DISASSOC_BAD_SUPP_CHAN = 11,
1453 /* 802.11i */
1454 WLAN_REASON_INVALID_IE = 13,
1455 WLAN_REASON_MIC_FAILURE = 14,
1456 WLAN_REASON_4WAY_HANDSHAKE_TIMEOUT = 15,
1457 WLAN_REASON_GROUP_KEY_HANDSHAKE_TIMEOUT = 16,
1458 WLAN_REASON_IE_DIFFERENT = 17,
1459 WLAN_REASON_INVALID_GROUP_CIPHER = 18,
1460 WLAN_REASON_INVALID_PAIRWISE_CIPHER = 19,
1461 WLAN_REASON_INVALID_AKMP = 20,
1462 WLAN_REASON_UNSUPP_RSN_VERSION = 21,
1463 WLAN_REASON_INVALID_RSN_IE_CAP = 22,
1464 WLAN_REASON_IEEE8021X_FAILED = 23,
1465 WLAN_REASON_CIPHER_SUITE_REJECTED = 24,
Ron Rindjunsky6b4e3242007-11-14 19:57:38 +02001466 /* 802.11e */
1467 WLAN_REASON_DISASSOC_UNSPECIFIED_QOS = 32,
1468 WLAN_REASON_DISASSOC_QAP_NO_BANDWIDTH = 33,
1469 WLAN_REASON_DISASSOC_LOW_ACK = 34,
1470 WLAN_REASON_DISASSOC_QAP_EXCEED_TXOP = 35,
1471 WLAN_REASON_QSTA_LEAVE_QBSS = 36,
1472 WLAN_REASON_QSTA_NOT_USE = 37,
1473 WLAN_REASON_QSTA_REQUIRE_SETUP = 38,
1474 WLAN_REASON_QSTA_TIMEOUT = 39,
1475 WLAN_REASON_QSTA_CIPHER_NOT_SUPP = 45,
Steve deRosiercfdfa4d2010-10-09 17:23:28 -07001476 /* 802.11s */
1477 WLAN_REASON_MESH_PEER_CANCELED = 52,
1478 WLAN_REASON_MESH_MAX_PEERS = 53,
1479 WLAN_REASON_MESH_CONFIG = 54,
1480 WLAN_REASON_MESH_CLOSE = 55,
1481 WLAN_REASON_MESH_MAX_RETRIES = 56,
1482 WLAN_REASON_MESH_CONFIRM_TIMEOUT = 57,
1483 WLAN_REASON_MESH_INVALID_GTK = 58,
1484 WLAN_REASON_MESH_INCONSISTENT_PARAM = 59,
1485 WLAN_REASON_MESH_INVALID_SECURITY = 60,
1486 WLAN_REASON_MESH_PATH_ERROR = 61,
1487 WLAN_REASON_MESH_PATH_NOFORWARD = 62,
1488 WLAN_REASON_MESH_PATH_DEST_UNREACHABLE = 63,
1489 WLAN_REASON_MAC_EXISTS_IN_MBSS = 64,
1490 WLAN_REASON_MESH_CHAN_REGULATORY = 65,
1491 WLAN_REASON_MESH_CHAN = 66,
Jiri Benca9de8ce2007-05-05 11:43:04 -07001492};
1493
1494
1495/* Information Element IDs */
1496enum ieee80211_eid {
1497 WLAN_EID_SSID = 0,
1498 WLAN_EID_SUPP_RATES = 1,
1499 WLAN_EID_FH_PARAMS = 2,
1500 WLAN_EID_DS_PARAMS = 3,
1501 WLAN_EID_CF_PARAMS = 4,
1502 WLAN_EID_TIM = 5,
1503 WLAN_EID_IBSS_PARAMS = 6,
1504 WLAN_EID_CHALLENGE = 16,
Johannes Berg8e664fb2009-12-23 13:15:38 +01001505
Jiri Benca9de8ce2007-05-05 11:43:04 -07001506 WLAN_EID_COUNTRY = 7,
1507 WLAN_EID_HP_PARAMS = 8,
1508 WLAN_EID_HP_TABLE = 9,
1509 WLAN_EID_REQUEST = 10,
Johannes Berg8e664fb2009-12-23 13:15:38 +01001510
Ron Rindjunsky6b4e3242007-11-14 19:57:38 +02001511 WLAN_EID_QBSS_LOAD = 11,
1512 WLAN_EID_EDCA_PARAM_SET = 12,
1513 WLAN_EID_TSPEC = 13,
1514 WLAN_EID_TCLAS = 14,
1515 WLAN_EID_SCHEDULE = 15,
1516 WLAN_EID_TS_DELAY = 43,
1517 WLAN_EID_TCLAS_PROCESSING = 44,
1518 WLAN_EID_QOS_CAPA = 46,
Arik Nemtsovdfe018b2011-09-28 14:12:52 +03001519 /* 802.11z */
1520 WLAN_EID_LINK_ID = 101,
Steve deRosiercfdfa4d2010-10-09 17:23:28 -07001521 /* 802.11s */
1522 WLAN_EID_MESH_CONFIG = 113,
1523 WLAN_EID_MESH_ID = 114,
1524 WLAN_EID_LINK_METRIC_REPORT = 115,
1525 WLAN_EID_CONGESTION_NOTIFICATION = 116,
Steve deRosiercfdfa4d2010-10-09 17:23:28 -07001526 WLAN_EID_PEER_MGMT = 117,
1527 WLAN_EID_CHAN_SWITCH_PARAM = 118,
1528 WLAN_EID_MESH_AWAKE_WINDOW = 119,
1529 WLAN_EID_BEACON_TIMING = 120,
1530 WLAN_EID_MCCAOP_SETUP_REQ = 121,
1531 WLAN_EID_MCCAOP_SETUP_RESP = 122,
1532 WLAN_EID_MCCAOP_ADVERT = 123,
1533 WLAN_EID_MCCAOP_TEARDOWN = 124,
1534 WLAN_EID_GANN = 125,
1535 WLAN_EID_RANN = 126,
1536 WLAN_EID_PREQ = 130,
1537 WLAN_EID_PREP = 131,
1538 WLAN_EID_PERR = 132,
1539 WLAN_EID_PXU = 137,
1540 WLAN_EID_PXUC = 138,
1541 WLAN_EID_AUTH_MESH_PEER_EXCH = 139,
1542 WLAN_EID_MIC = 140,
Johannes Berg8e664fb2009-12-23 13:15:38 +01001543
Jiri Benca9de8ce2007-05-05 11:43:04 -07001544 WLAN_EID_PWR_CONSTRAINT = 32,
1545 WLAN_EID_PWR_CAPABILITY = 33,
1546 WLAN_EID_TPC_REQUEST = 34,
1547 WLAN_EID_TPC_REPORT = 35,
1548 WLAN_EID_SUPPORTED_CHANNELS = 36,
1549 WLAN_EID_CHANNEL_SWITCH = 37,
1550 WLAN_EID_MEASURE_REQUEST = 38,
1551 WLAN_EID_MEASURE_REPORT = 39,
1552 WLAN_EID_QUIET = 40,
1553 WLAN_EID_IBSS_DFS = 41,
Johannes Berg8e664fb2009-12-23 13:15:38 +01001554
Jiri Benca9de8ce2007-05-05 11:43:04 -07001555 WLAN_EID_ERP_INFO = 42,
1556 WLAN_EID_EXT_SUPP_RATES = 50,
Johannes Berg8e664fb2009-12-23 13:15:38 +01001557
Ron Rindjunsky6b4e3242007-11-14 19:57:38 +02001558 WLAN_EID_HT_CAPABILITY = 45,
Johannes Berg074d46d2012-03-15 19:45:16 +01001559 WLAN_EID_HT_OPERATION = 61,
Johannes Berg8e664fb2009-12-23 13:15:38 +01001560
Jiri Benca9de8ce2007-05-05 11:43:04 -07001561 WLAN_EID_RSN = 48,
Johannes Berg8e664fb2009-12-23 13:15:38 +01001562 WLAN_EID_MMIE = 76,
Jiri Benca9de8ce2007-05-05 11:43:04 -07001563 WLAN_EID_VENDOR_SPECIFIC = 221,
Johannes Berg8e664fb2009-12-23 13:15:38 +01001564 WLAN_EID_QOS_PARAMETER = 222,
1565
1566 WLAN_EID_AP_CHAN_REPORT = 51,
1567 WLAN_EID_NEIGHBOR_REPORT = 52,
1568 WLAN_EID_RCPI = 53,
1569 WLAN_EID_BSS_AVG_ACCESS_DELAY = 63,
1570 WLAN_EID_ANTENNA_INFO = 64,
1571 WLAN_EID_RSNI = 65,
1572 WLAN_EID_MEASUREMENT_PILOT_TX_INFO = 66,
1573 WLAN_EID_BSS_AVAILABLE_CAPACITY = 67,
1574 WLAN_EID_BSS_AC_ACCESS_DELAY = 68,
1575 WLAN_EID_RRM_ENABLED_CAPABILITIES = 70,
1576 WLAN_EID_MULTIPLE_BSSID = 71,
Amitkumar Karwarb7e89412010-12-07 13:43:03 -08001577 WLAN_EID_BSS_COEX_2040 = 72,
1578 WLAN_EID_OVERLAP_BSS_SCAN_PARAM = 74,
1579 WLAN_EID_EXT_CAPABILITY = 127,
Johannes Berg8e664fb2009-12-23 13:15:38 +01001580
1581 WLAN_EID_MOBILITY_DOMAIN = 54,
1582 WLAN_EID_FAST_BSS_TRANSITION = 55,
1583 WLAN_EID_TIMEOUT_INTERVAL = 56,
1584 WLAN_EID_RIC_DATA = 57,
1585 WLAN_EID_RIC_DESCRIPTOR = 75,
1586
1587 WLAN_EID_DSE_REGISTERED_LOCATION = 58,
1588 WLAN_EID_SUPPORTED_REGULATORY_CLASSES = 59,
1589 WLAN_EID_EXT_CHANSWITCH_ANN = 60,
Mahesh Palivelace0e1692012-06-22 07:27:46 +00001590
1591 WLAN_EID_VHT_CAPABILITY = 191,
1592 WLAN_EID_VHT_OPERATION = 192,
Vladimir Kondratievb1881482012-07-02 09:32:35 +03001593
1594 /* 802.11ad */
1595 WLAN_EID_NON_TX_BSSID_CAP = 83,
1596 WLAN_EID_WAKEUP_SCHEDULE = 143,
1597 WLAN_EID_EXT_SCHEDULE = 144,
1598 WLAN_EID_STA_AVAILABILITY = 145,
1599 WLAN_EID_DMG_TSPEC = 146,
1600 WLAN_EID_DMG_AT = 147,
1601 WLAN_EID_DMG_CAP = 148,
1602 WLAN_EID_DMG_OPERATION = 151,
1603 WLAN_EID_DMG_BSS_PARAM_CHANGE = 152,
1604 WLAN_EID_DMG_BEAM_REFINEMENT = 153,
1605 WLAN_EID_CHANNEL_MEASURE_FEEDBACK = 154,
1606 WLAN_EID_AWAKE_WINDOW = 157,
1607 WLAN_EID_MULTI_BAND = 158,
1608 WLAN_EID_ADDBA_EXT = 159,
1609 WLAN_EID_NEXT_PCP_LIST = 160,
1610 WLAN_EID_PCP_HANDOVER = 161,
1611 WLAN_EID_DMG_LINK_MARGIN = 162,
1612 WLAN_EID_SWITCHING_STREAM = 163,
1613 WLAN_EID_SESSION_TRANSITION = 164,
1614 WLAN_EID_DYN_TONE_PAIRING_REPORT = 165,
1615 WLAN_EID_CLUSTER_REPORT = 166,
1616 WLAN_EID_RELAY_CAP = 167,
1617 WLAN_EID_RELAY_XFER_PARAM_SET = 168,
1618 WLAN_EID_BEAM_LINK_MAINT = 169,
1619 WLAN_EID_MULTIPLE_MAC_ADDR = 170,
1620 WLAN_EID_U_PID = 171,
1621 WLAN_EID_DMG_LINK_ADAPT_ACK = 172,
1622 WLAN_EID_QUIET_PERIOD_REQ = 175,
1623 WLAN_EID_QUIET_PERIOD_RESP = 177,
1624 WLAN_EID_EPAC_POLICY = 182,
1625 WLAN_EID_CLISTER_TIME_OFF = 183,
1626 WLAN_EID_ANTENNA_SECTOR_ID_PATTERN = 190,
Jiri Benca9de8ce2007-05-05 11:43:04 -07001627};
1628
Ron Rindjunsky6b4e3242007-11-14 19:57:38 +02001629/* Action category code */
1630enum ieee80211_category {
1631 WLAN_CATEGORY_SPECTRUM_MGMT = 0,
1632 WLAN_CATEGORY_QOS = 1,
1633 WLAN_CATEGORY_DLS = 2,
1634 WLAN_CATEGORY_BACK = 3,
Jouni Malinenfb733332009-01-08 13:32:00 +02001635 WLAN_CATEGORY_PUBLIC = 4,
Jouni Malinen528769c2009-05-11 10:20:35 +03001636 WLAN_CATEGORY_HT = 7,
Jouni Malinenfea14732009-01-08 13:32:06 +02001637 WLAN_CATEGORY_SA_QUERY = 8,
Jouni Malinen528769c2009-05-11 10:20:35 +03001638 WLAN_CATEGORY_PROTECTED_DUAL_OF_ACTION = 9,
Arik Nemtsovdfe018b2011-09-28 14:12:52 +03001639 WLAN_CATEGORY_TDLS = 12,
Steve deRosiercfdfa4d2010-10-09 17:23:28 -07001640 WLAN_CATEGORY_MESH_ACTION = 13,
1641 WLAN_CATEGORY_MULTIHOP_ACTION = 14,
1642 WLAN_CATEGORY_SELF_PROTECTED = 15,
Vladimir Kondratievb1881482012-07-02 09:32:35 +03001643 WLAN_CATEGORY_DMG = 16,
Ron Rindjunsky6b4e3242007-11-14 19:57:38 +02001644 WLAN_CATEGORY_WMM = 17,
Vladimir Kondratievb1881482012-07-02 09:32:35 +03001645 WLAN_CATEGORY_FST = 18,
1646 WLAN_CATEGORY_UNPROT_DMG = 20,
Jouni Malinen528769c2009-05-11 10:20:35 +03001647 WLAN_CATEGORY_VENDOR_SPECIFIC_PROTECTED = 126,
1648 WLAN_CATEGORY_VENDOR_SPECIFIC = 127,
Ron Rindjunsky6b4e3242007-11-14 19:57:38 +02001649};
1650
Assaf Kraussf2df3852008-06-15 18:23:29 +03001651/* SPECTRUM_MGMT action code */
1652enum ieee80211_spectrum_mgmt_actioncode {
1653 WLAN_ACTION_SPCT_MSR_REQ = 0,
1654 WLAN_ACTION_SPCT_MSR_RPRT = 1,
1655 WLAN_ACTION_SPCT_TPC_REQ = 2,
1656 WLAN_ACTION_SPCT_TPC_RPRT = 3,
1657 WLAN_ACTION_SPCT_CHL_SWITCH = 4,
1658};
1659
Johannes Berg0f782312009-12-01 13:37:02 +01001660/* HT action codes */
1661enum ieee80211_ht_actioncode {
1662 WLAN_HT_ACTION_NOTIFY_CHANWIDTH = 0,
1663 WLAN_HT_ACTION_SMPS = 1,
1664 WLAN_HT_ACTION_PSMP = 2,
1665 WLAN_HT_ACTION_PCO_PHASE = 3,
1666 WLAN_HT_ACTION_CSI = 4,
1667 WLAN_HT_ACTION_NONCOMPRESSED_BF = 5,
1668 WLAN_HT_ACTION_COMPRESSED_BF = 6,
1669 WLAN_HT_ACTION_ASEL_IDX_FEEDBACK = 7,
1670};
1671
Thomas Pedersen6709a6d2011-08-11 19:35:11 -07001672/* Self Protected Action codes */
1673enum ieee80211_self_protected_actioncode {
1674 WLAN_SP_RESERVED = 0,
1675 WLAN_SP_MESH_PEERING_OPEN = 1,
1676 WLAN_SP_MESH_PEERING_CONFIRM = 2,
1677 WLAN_SP_MESH_PEERING_CLOSE = 3,
1678 WLAN_SP_MGK_INFORM = 4,
1679 WLAN_SP_MGK_ACK = 5,
1680};
1681
Thomas Pedersen36c704f2011-08-11 19:35:14 -07001682/* Mesh action codes */
1683enum ieee80211_mesh_actioncode {
1684 WLAN_MESH_ACTION_LINK_METRIC_REPORT,
1685 WLAN_MESH_ACTION_HWMP_PATH_SELECTION,
1686 WLAN_MESH_ACTION_GATE_ANNOUNCEMENT,
1687 WLAN_MESH_ACTION_CONGESTION_CONTROL_NOTIFICATION,
1688 WLAN_MESH_ACTION_MCCA_SETUP_REQUEST,
1689 WLAN_MESH_ACTION_MCCA_SETUP_REPLY,
1690 WLAN_MESH_ACTION_MCCA_ADVERTISEMENT_REQUEST,
1691 WLAN_MESH_ACTION_MCCA_ADVERTISEMENT,
1692 WLAN_MESH_ACTION_MCCA_TEARDOWN,
1693 WLAN_MESH_ACTION_TBTT_ADJUSTMENT_REQUEST,
1694 WLAN_MESH_ACTION_TBTT_ADJUSTMENT_RESPONSE,
1695};
1696
Zhu Yie31a16d2009-05-21 21:47:03 +08001697/* Security key length */
1698enum ieee80211_key_len {
1699 WLAN_KEY_LEN_WEP40 = 5,
1700 WLAN_KEY_LEN_WEP104 = 13,
1701 WLAN_KEY_LEN_CCMP = 16,
1702 WLAN_KEY_LEN_TKIP = 32,
Johannes Berg8fc0fee2009-05-24 16:57:19 +02001703 WLAN_KEY_LEN_AES_CMAC = 16,
Zhu Yie31a16d2009-05-21 21:47:03 +08001704};
1705
Arik Nemtsovdfe018b2011-09-28 14:12:52 +03001706/* Public action codes */
1707enum ieee80211_pub_actioncode {
1708 WLAN_PUB_ACTION_TDLS_DISCOVER_RES = 14,
1709};
1710
1711/* TDLS action codes */
1712enum ieee80211_tdls_actioncode {
1713 WLAN_TDLS_SETUP_REQUEST = 0,
1714 WLAN_TDLS_SETUP_RESPONSE = 1,
1715 WLAN_TDLS_SETUP_CONFIRM = 2,
1716 WLAN_TDLS_TEARDOWN = 3,
1717 WLAN_TDLS_PEER_TRAFFIC_INDICATION = 4,
1718 WLAN_TDLS_CHANNEL_SWITCH_REQUEST = 5,
1719 WLAN_TDLS_CHANNEL_SWITCH_RESPONSE = 6,
1720 WLAN_TDLS_PEER_PSM_REQUEST = 7,
1721 WLAN_TDLS_PEER_PSM_RESPONSE = 8,
1722 WLAN_TDLS_PEER_TRAFFIC_RESPONSE = 9,
1723 WLAN_TDLS_DISCOVERY_REQUEST = 10,
1724};
1725
1726/*
1727 * TDLS capabililites to be enabled in the 5th byte of the
1728 * @WLAN_EID_EXT_CAPABILITY information element
1729 */
1730#define WLAN_EXT_CAPA5_TDLS_ENABLED BIT(5)
1731#define WLAN_EXT_CAPA5_TDLS_PROHIBITED BIT(6)
1732
1733/* TDLS specific payload type in the LLC/SNAP header */
1734#define WLAN_TDLS_SNAP_RFTYPE 0x2
1735
Javier Cardonac80d5452010-12-16 17:37:49 -08001736/**
Javier Cardonadbf498f2012-03-31 11:31:32 -07001737 * enum - mesh synchronization method identifier
1738 *
1739 * @IEEE80211_SYNC_METHOD_NEIGHBOR_OFFSET: the default synchronization method
1740 * @IEEE80211_SYNC_METHOD_VENDOR: a vendor specific synchronization method
Chun-Yeow Yeoha4f606e2012-06-11 11:59:36 +08001741 * that will be specified in a vendor specific information element
Javier Cardonadbf498f2012-03-31 11:31:32 -07001742 */
1743enum {
1744 IEEE80211_SYNC_METHOD_NEIGHBOR_OFFSET = 1,
1745 IEEE80211_SYNC_METHOD_VENDOR = 255,
1746};
1747
1748/**
Javier Cardonac80d5452010-12-16 17:37:49 -08001749 * enum - mesh path selection protocol identifier
1750 *
1751 * @IEEE80211_PATH_PROTOCOL_HWMP: the default path selection protocol
1752 * @IEEE80211_PATH_PROTOCOL_VENDOR: a vendor specific protocol that will
Chun-Yeow Yeoha4f606e2012-06-11 11:59:36 +08001753 * be specified in a vendor specific information element
Javier Cardonac80d5452010-12-16 17:37:49 -08001754 */
1755enum {
Javier Cardonadcca1cf2012-04-12 14:32:20 -07001756 IEEE80211_PATH_PROTOCOL_HWMP = 1,
Javier Cardonac80d5452010-12-16 17:37:49 -08001757 IEEE80211_PATH_PROTOCOL_VENDOR = 255,
1758};
1759
1760/**
1761 * enum - mesh path selection metric identifier
1762 *
1763 * @IEEE80211_PATH_METRIC_AIRTIME: the default path selection metric
1764 * @IEEE80211_PATH_METRIC_VENDOR: a vendor specific metric that will be
Chun-Yeow Yeoha4f606e2012-06-11 11:59:36 +08001765 * specified in a vendor specific information element
Javier Cardonac80d5452010-12-16 17:37:49 -08001766 */
1767enum {
Javier Cardonadcca1cf2012-04-12 14:32:20 -07001768 IEEE80211_PATH_METRIC_AIRTIME = 1,
Javier Cardonac80d5452010-12-16 17:37:49 -08001769 IEEE80211_PATH_METRIC_VENDOR = 255,
1770};
1771
Chun-Yeow Yeoha69cc442012-06-14 02:06:07 +08001772/**
1773 * enum ieee80211_root_mode_identifier - root mesh STA mode identifier
1774 *
1775 * These attribute are used by dot11MeshHWMPRootMode to set root mesh STA mode
1776 *
1777 * @IEEE80211_ROOTMODE_NO_ROOT: the mesh STA is not a root mesh STA (default)
1778 * @IEEE80211_ROOTMODE_ROOT: the mesh STA is a root mesh STA if greater than
1779 * this value
1780 * @IEEE80211_PROACTIVE_PREQ_NO_PREP: the mesh STA is a root mesh STA supports
1781 * the proactive PREQ with proactive PREP subfield set to 0
1782 * @IEEE80211_PROACTIVE_PREQ_WITH_PREP: the mesh STA is a root mesh STA
1783 * supports the proactive PREQ with proactive PREP subfield set to 1
1784 * @IEEE80211_PROACTIVE_RANN: the mesh STA is a root mesh STA supports
1785 * the proactive RANN
1786 */
1787enum ieee80211_root_mode_identifier {
1788 IEEE80211_ROOTMODE_NO_ROOT = 0,
1789 IEEE80211_ROOTMODE_ROOT = 1,
1790 IEEE80211_PROACTIVE_PREQ_NO_PREP = 2,
1791 IEEE80211_PROACTIVE_PREQ_WITH_PREP = 3,
1792 IEEE80211_PROACTIVE_RANN = 4,
1793};
Javier Cardonac80d5452010-12-16 17:37:49 -08001794
Luis R. Rodriguez3f2355c2008-11-12 14:22:02 -08001795/*
1796 * IEEE 802.11-2007 7.3.2.9 Country information element
1797 *
1798 * Minimum length is 8 octets, ie len must be evenly
1799 * divisible by 2
1800 */
1801
1802/* Although the spec says 8 I'm seeing 6 in practice */
1803#define IEEE80211_COUNTRY_IE_MIN_LEN 6
1804
Bing Zhao80751e22011-03-07 11:14:23 -08001805/* The Country String field of the element shall be 3 octets in length */
1806#define IEEE80211_COUNTRY_STRING_LEN 3
1807
Luis R. Rodriguez3f2355c2008-11-12 14:22:02 -08001808/*
1809 * For regulatory extension stuff see IEEE 802.11-2007
1810 * Annex I (page 1141) and Annex J (page 1147). Also
1811 * review 7.3.2.9.
1812 *
1813 * When dot11RegulatoryClassesRequired is true and the
1814 * first_channel/reg_extension_id is >= 201 then the IE
1815 * compromises of the 'ext' struct represented below:
1816 *
1817 * - Regulatory extension ID - when generating IE this just needs
1818 * to be monotonically increasing for each triplet passed in
1819 * the IE
1820 * - Regulatory class - index into set of rules
1821 * - Coverage class - index into air propagation time (Table 7-27),
1822 * in microseconds, you can compute the air propagation time from
1823 * the index by multiplying by 3, so index 10 yields a propagation
1824 * of 10 us. Valid values are 0-31, values 32-255 are not defined
1825 * yet. A value of 0 inicates air propagation of <= 1 us.
1826 *
1827 * See also Table I.2 for Emission limit sets and table
1828 * I.3 for Behavior limit sets. Table J.1 indicates how to map
1829 * a reg_class to an emission limit set and behavior limit set.
1830 */
1831#define IEEE80211_COUNTRY_EXTENSION_ID 201
1832
1833/*
1834 * Channels numbers in the IE must be monotonically increasing
1835 * if dot11RegulatoryClassesRequired is not true.
1836 *
1837 * If dot11RegulatoryClassesRequired is true consecutive
1838 * subband triplets following a regulatory triplet shall
1839 * have monotonically increasing first_channel number fields.
1840 *
1841 * Channel numbers shall not overlap.
1842 *
1843 * Note that max_power is signed.
1844 */
1845struct ieee80211_country_ie_triplet {
1846 union {
1847 struct {
1848 u8 first_channel;
1849 u8 num_channels;
1850 s8 max_power;
Johannes Berg598a5932012-12-28 12:00:40 +01001851 } __packed chans;
Luis R. Rodriguez3f2355c2008-11-12 14:22:02 -08001852 struct {
1853 u8 reg_extension_id;
1854 u8 reg_class;
1855 u8 coverage_class;
Johannes Berg598a5932012-12-28 12:00:40 +01001856 } __packed ext;
Luis R. Rodriguez3f2355c2008-11-12 14:22:02 -08001857 };
Johannes Berg598a5932012-12-28 12:00:40 +01001858} __packed;
Luis R. Rodriguez3f2355c2008-11-12 14:22:02 -08001859
Jouni Malinenf797eb72009-01-19 18:48:46 +02001860enum ieee80211_timeout_interval_type {
1861 WLAN_TIMEOUT_REASSOC_DEADLINE = 1 /* 802.11r */,
1862 WLAN_TIMEOUT_KEY_LIFETIME = 2 /* 802.11r */,
1863 WLAN_TIMEOUT_ASSOC_COMEBACK = 3 /* 802.11w */,
1864};
1865
Ron Rindjunsky6b4e3242007-11-14 19:57:38 +02001866/* BACK action code */
1867enum ieee80211_back_actioncode {
1868 WLAN_ACTION_ADDBA_REQ = 0,
1869 WLAN_ACTION_ADDBA_RESP = 1,
1870 WLAN_ACTION_DELBA = 2,
1871};
1872
Ron Rindjunsky07db2182007-12-25 17:00:33 +02001873/* BACK (block-ack) parties */
1874enum ieee80211_back_parties {
1875 WLAN_BACK_RECIPIENT = 0,
1876 WLAN_BACK_INITIATOR = 1,
Ron Rindjunsky07db2182007-12-25 17:00:33 +02001877};
1878
Jouni Malinenfea14732009-01-08 13:32:06 +02001879/* SA Query action */
1880enum ieee80211_sa_query_action {
1881 WLAN_ACTION_SA_QUERY_REQUEST = 0,
1882 WLAN_ACTION_SA_QUERY_RESPONSE = 1,
1883};
1884
1885
Jiri Benca9de8ce2007-05-05 11:43:04 -07001886/* cipher suite selectors */
1887#define WLAN_CIPHER_SUITE_USE_GROUP 0x000FAC00
1888#define WLAN_CIPHER_SUITE_WEP40 0x000FAC01
1889#define WLAN_CIPHER_SUITE_TKIP 0x000FAC02
1890/* reserved: 0x000FAC03 */
1891#define WLAN_CIPHER_SUITE_CCMP 0x000FAC04
1892#define WLAN_CIPHER_SUITE_WEP104 0x000FAC05
Jouni Malinen3cfcf6ac2009-01-08 13:32:02 +02001893#define WLAN_CIPHER_SUITE_AES_CMAC 0x000FAC06
Vladimir Kondratievb1881482012-07-02 09:32:35 +03001894#define WLAN_CIPHER_SUITE_GCMP 0x000FAC08
Jiri Benca9de8ce2007-05-05 11:43:04 -07001895
Jouni Malinenc2e889a2011-11-02 23:34:56 +02001896#define WLAN_CIPHER_SUITE_SMS4 0x00147201
1897
Johannes Berg6a669e62009-07-01 21:26:53 +02001898/* AKM suite selectors */
1899#define WLAN_AKM_SUITE_8021X 0x000FAC01
1900#define WLAN_AKM_SUITE_PSK 0x000FAC02
Bing Zhaod437c862013-01-23 20:33:58 -08001901#define WLAN_AKM_SUITE_8021X_SHA256 0x000FAC05
1902#define WLAN_AKM_SUITE_PSK_SHA256 0x000FAC06
1903#define WLAN_AKM_SUITE_TDLS 0x000FAC07
1904#define WLAN_AKM_SUITE_SAE 0x000FAC08
Steve deRosiercfdfa4d2010-10-09 17:23:28 -07001905#define WLAN_AKM_SUITE_FT_OVER_SAE 0x000FAC09
Johannes Berg6a669e62009-07-01 21:26:53 +02001906
Jiri Benca9de8ce2007-05-05 11:43:04 -07001907#define WLAN_MAX_KEY_LEN 32
1908
Samuel Ortiz67fbb162009-11-24 23:59:15 +01001909#define WLAN_PMKID_LEN 16
1910
Eliad Peller0c28ec52011-09-15 11:53:01 +03001911#define WLAN_OUI_WFA 0x506f9a
1912#define WLAN_OUI_TYPE_WFA_P2P 9
Avinash Patil535588e2012-06-11 18:14:16 -07001913#define WLAN_OUI_MICROSOFT 0x0050f2
1914#define WLAN_OUI_TYPE_MICROSOFT_WPA 1
Avinash Patilc2ebea22012-06-20 17:59:01 -07001915#define WLAN_OUI_TYPE_MICROSOFT_WMM 2
1916#define WLAN_OUI_TYPE_MICROSOFT_WPS 4
Eliad Peller0c28ec52011-09-15 11:53:01 +03001917
Kalle Valo856799d2011-07-17 12:13:56 +03001918/*
1919 * WMM/802.11e Tspec Element
1920 */
1921#define IEEE80211_WMM_IE_TSPEC_TID_MASK 0x0F
1922#define IEEE80211_WMM_IE_TSPEC_TID_SHIFT 1
1923
1924enum ieee80211_tspec_status_code {
1925 IEEE80211_TSPEC_STATUS_ADMISS_ACCEPTED = 0,
1926 IEEE80211_TSPEC_STATUS_ADDTS_INVAL_PARAMS = 0x1,
1927};
1928
1929struct ieee80211_tspec_ie {
1930 u8 element_id;
1931 u8 len;
1932 u8 oui[3];
1933 u8 oui_type;
1934 u8 oui_subtype;
1935 u8 version;
1936 __le16 tsinfo;
1937 u8 tsinfo_resvd;
1938 __le16 nominal_msdu;
1939 __le16 max_msdu;
1940 __le32 min_service_int;
1941 __le32 max_service_int;
1942 __le32 inactivity_int;
1943 __le32 suspension_int;
1944 __le32 service_start_time;
1945 __le32 min_data_rate;
1946 __le32 mean_data_rate;
1947 __le32 peak_data_rate;
1948 __le32 max_burst_size;
1949 __le32 delay_bound;
1950 __le32 min_phy_rate;
1951 __le16 sba;
1952 __le16 medium_time;
1953} __packed;
1954
Johannes Bergf97df022007-09-18 17:29:20 -04001955/**
Harvey Harrisonfd7c8a42008-06-11 14:21:56 -07001956 * ieee80211_get_qos_ctl - get pointer to qos control bytes
1957 * @hdr: the frame
1958 *
1959 * The qos ctrl bytes come after the frame_control, duration, seq_num
1960 * and 3 or 4 addresses of length ETH_ALEN.
1961 * 3 addr: 2 + 2 + 2 + 3*6 = 24
1962 * 4 addr: 2 + 2 + 2 + 4*6 = 30
1963 */
1964static inline u8 *ieee80211_get_qos_ctl(struct ieee80211_hdr *hdr)
1965{
1966 if (ieee80211_has_a4(hdr->frame_control))
1967 return (u8 *)hdr + 30;
1968 else
1969 return (u8 *)hdr + 24;
1970}
1971
1972/**
Johannes Bergf97df022007-09-18 17:29:20 -04001973 * ieee80211_get_SA - get pointer to SA
Harvey Harrisonfd7c8a42008-06-11 14:21:56 -07001974 * @hdr: the frame
Johannes Bergf97df022007-09-18 17:29:20 -04001975 *
1976 * Given an 802.11 frame, this function returns the offset
1977 * to the source address (SA). It does not verify that the
1978 * header is long enough to contain the address, and the
1979 * header must be long enough to contain the frame control
1980 * field.
Johannes Bergf97df022007-09-18 17:29:20 -04001981 */
1982static inline u8 *ieee80211_get_SA(struct ieee80211_hdr *hdr)
1983{
Harvey Harrisonfd7c8a42008-06-11 14:21:56 -07001984 if (ieee80211_has_a4(hdr->frame_control))
Harvey Harrison5a433b32008-04-21 10:41:10 -07001985 return hdr->addr4;
Harvey Harrisonfd7c8a42008-06-11 14:21:56 -07001986 if (ieee80211_has_fromds(hdr->frame_control))
1987 return hdr->addr3;
1988 return hdr->addr2;
Johannes Bergf97df022007-09-18 17:29:20 -04001989}
1990
1991/**
1992 * ieee80211_get_DA - get pointer to DA
Harvey Harrisonfd7c8a42008-06-11 14:21:56 -07001993 * @hdr: the frame
Johannes Bergf97df022007-09-18 17:29:20 -04001994 *
1995 * Given an 802.11 frame, this function returns the offset
1996 * to the destination address (DA). It does not verify that
1997 * the header is long enough to contain the address, and the
1998 * header must be long enough to contain the frame control
1999 * field.
Johannes Bergf97df022007-09-18 17:29:20 -04002000 */
2001static inline u8 *ieee80211_get_DA(struct ieee80211_hdr *hdr)
2002{
Harvey Harrisonfd7c8a42008-06-11 14:21:56 -07002003 if (ieee80211_has_tods(hdr->frame_control))
Johannes Bergf97df022007-09-18 17:29:20 -04002004 return hdr->addr3;
Harvey Harrison5a433b32008-04-21 10:41:10 -07002005 else
2006 return hdr->addr1;
Johannes Bergf97df022007-09-18 17:29:20 -04002007}
2008
David Kilroy9ee677c2008-12-23 14:03:38 +00002009/**
Jouni Malinenfb733332009-01-08 13:32:00 +02002010 * ieee80211_is_robust_mgmt_frame - check if frame is a robust management frame
2011 * @hdr: the frame (buffer must include at least the first octet of payload)
2012 */
2013static inline bool ieee80211_is_robust_mgmt_frame(struct ieee80211_hdr *hdr)
2014{
2015 if (ieee80211_is_disassoc(hdr->frame_control) ||
2016 ieee80211_is_deauth(hdr->frame_control))
2017 return true;
2018
2019 if (ieee80211_is_action(hdr->frame_control)) {
2020 u8 *category;
2021
2022 /*
2023 * Action frames, excluding Public Action frames, are Robust
2024 * Management Frames. However, if we are looking at a Protected
2025 * frame, skip the check since the data may be encrypted and
2026 * the frame has already been found to be a Robust Management
2027 * Frame (by the other end).
2028 */
2029 if (ieee80211_has_protected(hdr->frame_control))
2030 return true;
2031 category = ((u8 *) hdr) + 24;
Jouni Malinen528769c2009-05-11 10:20:35 +03002032 return *category != WLAN_CATEGORY_PUBLIC &&
2033 *category != WLAN_CATEGORY_HT &&
Thomas Pedersen8f9cb772011-05-03 16:57:14 -07002034 *category != WLAN_CATEGORY_SELF_PROTECTED &&
Jouni Malinen528769c2009-05-11 10:20:35 +03002035 *category != WLAN_CATEGORY_VENDOR_SPECIFIC;
Jouni Malinenfb733332009-01-08 13:32:00 +02002036 }
2037
2038 return false;
2039}
2040
2041/**
Johannes Berg3df6eae2011-12-06 10:39:40 +01002042 * ieee80211_is_public_action - check if frame is a public action frame
2043 * @hdr: the frame
2044 * @len: length of the frame
2045 */
2046static inline bool ieee80211_is_public_action(struct ieee80211_hdr *hdr,
2047 size_t len)
2048{
2049 struct ieee80211_mgmt *mgmt = (void *)hdr;
2050
2051 if (len < IEEE80211_MIN_ACTION_SIZE)
2052 return false;
2053 if (!ieee80211_is_action(hdr->frame_control))
2054 return false;
2055 return mgmt->u.action.category == WLAN_CATEGORY_PUBLIC;
2056}
2057
2058/**
David Kilroy9ee677c2008-12-23 14:03:38 +00002059 * ieee80211_dsss_chan_to_freq - get channel center frequency
2060 * @channel: the DSSS channel
2061 *
2062 * Convert IEEE802.11 DSSS channel to the center frequency (MHz).
2063 * Ref IEEE 802.11-2007 section 15.6
2064 */
2065static inline int ieee80211_dsss_chan_to_freq(int channel)
2066{
2067 if ((channel > 0) && (channel < 14))
2068 return 2407 + (channel * 5);
2069 else if (channel == 14)
2070 return 2484;
2071 else
2072 return -1;
2073}
2074
2075/**
2076 * ieee80211_freq_to_dsss_chan - get channel
2077 * @freq: the frequency
2078 *
2079 * Convert frequency (MHz) to IEEE802.11 DSSS channel
2080 * Ref IEEE 802.11-2007 section 15.6
2081 *
2082 * This routine selects the channel with the closest center frequency.
2083 */
2084static inline int ieee80211_freq_to_dsss_chan(int freq)
2085{
2086 if ((freq >= 2410) && (freq < 2475))
2087 return (freq - 2405) / 5;
2088 else if ((freq >= 2482) && (freq < 2487))
2089 return 14;
2090 else
2091 return -1;
2092}
2093
Johannes Berg10f644a2009-04-16 13:17:25 +02002094/**
2095 * ieee80211_tu_to_usec - convert time units (TU) to microseconds
2096 * @tu: the TUs
2097 */
2098static inline unsigned long ieee80211_tu_to_usec(unsigned long tu)
2099{
2100 return 1024 * tu;
2101}
2102
Johannes Berge7ec86f2009-04-18 17:33:24 +02002103/**
2104 * ieee80211_check_tim - check if AID bit is set in TIM
2105 * @tim: the TIM IE
2106 * @tim_len: length of the TIM IE
2107 * @aid: the AID to look for
2108 */
2109static inline bool ieee80211_check_tim(struct ieee80211_tim_ie *tim,
2110 u8 tim_len, u16 aid)
2111{
2112 u8 mask;
2113 u8 index, indexn1, indexn2;
2114
2115 if (unlikely(!tim || tim_len < sizeof(*tim)))
2116 return false;
2117
2118 aid &= 0x3fff;
2119 index = aid / 8;
2120 mask = 1 << (aid & 7);
2121
2122 indexn1 = tim->bitmap_ctrl & 0xfe;
2123 indexn2 = tim_len + indexn1 - 4;
2124
2125 if (index < indexn1 || index > indexn2)
2126 return false;
2127
2128 index -= indexn1;
2129
2130 return !!(tim->virtual_map[index] & mask);
2131}
2132
John W. Linville9387b7c2008-09-30 20:59:05 -04002133#endif /* LINUX_IEEE80211_H */