1 /* SPDX-License-Identifier: GPL-2.0-only */
5 * Copyright (c) 2001-2002, SSH Communications Security Corp and Jouni Malinen
7 * Copyright (c) 2002-2003, Jouni Malinen <jkmaline@cc.hut.fi>
8 * Copyright (c) 2005, Devicescape Software, Inc.
9 * Copyright (c) 2006, Michael Wu <flamingice@sourmilk.net>
10 * Copyright (c) 2013 - 2014 Intel Mobile Communications GmbH
11 * Copyright (c) 2016 - 2017 Intel Deutschland GmbH
12 * Copyright (c) 2018 - 2023 Intel Corporation
15 #ifndef __LINUX_IEEE80211_H
16 #define __LINUX_IEEE80211_H
21 * TA = transmitter address
22 * RA = receiver address
23 * DA = destination address
26 * ToDS FromDS A1(RA) A2(TA) A3 A4 Use
27 * -----------------------------------------------------------------
28 * 0 0 DA SA BSSID - IBSS/DLS
29 * 0 1 DA BSSID SA - AP -> STA
30 * 1 0 BSSID SA DA - AP <- STA
31 * 1 1 RA TA DA SA unspecified (WDS)
36 #define IEEE80211_FCTL_VERS 0x0003
37 #define IEEE80211_FCTL_FTYPE 0x000c
38 #define IEEE80211_FCTL_STYPE 0x00f0
39 #define IEEE80211_FCTL_TODS 0x0100
40 #define IEEE80211_FCTL_FROMDS 0x0200
41 #define IEEE80211_FCTL_MOREFRAGS 0x0400
42 #define IEEE80211_FCTL_RETRY 0x0800
43 #define IEEE80211_FCTL_PM 0x1000
44 #define IEEE80211_FCTL_MOREDATA 0x2000
45 #define IEEE80211_FCTL_PROTECTED 0x4000
46 #define IEEE80211_FCTL_ORDER 0x8000
47 #define IEEE80211_FCTL_CTL_EXT 0x0f00
49 #define IEEE80211_SCTL_FRAG 0x000F
50 #define IEEE80211_SCTL_SEQ 0xFFF0
52 #define IEEE80211_FTYPE_MGMT 0x0000
53 #define IEEE80211_FTYPE_CTL 0x0004
54 #define IEEE80211_FTYPE_DATA 0x0008
55 #define IEEE80211_FTYPE_EXT 0x000c
58 #define IEEE80211_STYPE_ASSOC_REQ 0x0000
59 #define IEEE80211_STYPE_ASSOC_RESP 0x0010
60 #define IEEE80211_STYPE_REASSOC_REQ 0x0020
61 #define IEEE80211_STYPE_REASSOC_RESP 0x0030
62 #define IEEE80211_STYPE_PROBE_REQ 0x0040
63 #define IEEE80211_STYPE_PROBE_RESP 0x0050
64 #define IEEE80211_STYPE_BEACON 0x0080
65 #define IEEE80211_STYPE_ATIM 0x0090
66 #define IEEE80211_STYPE_DISASSOC 0x00A0
67 #define IEEE80211_STYPE_AUTH 0x00B0
68 #define IEEE80211_STYPE_DEAUTH 0x00C0
69 #define IEEE80211_STYPE_ACTION 0x00D0
72 #define IEEE80211_STYPE_TRIGGER 0x0020
73 #define IEEE80211_STYPE_CTL_EXT 0x0060
74 #define IEEE80211_STYPE_BACK_REQ 0x0080
75 #define IEEE80211_STYPE_BACK 0x0090
76 #define IEEE80211_STYPE_PSPOLL 0x00A0
77 #define IEEE80211_STYPE_RTS 0x00B0
78 #define IEEE80211_STYPE_CTS 0x00C0
79 #define IEEE80211_STYPE_ACK 0x00D0
80 #define IEEE80211_STYPE_CFEND 0x00E0
81 #define IEEE80211_STYPE_CFENDACK 0x00F0
84 #define IEEE80211_STYPE_DATA 0x0000
85 #define IEEE80211_STYPE_DATA_CFACK 0x0010
86 #define IEEE80211_STYPE_DATA_CFPOLL 0x0020
87 #define IEEE80211_STYPE_DATA_CFACKPOLL 0x0030
88 #define IEEE80211_STYPE_NULLFUNC 0x0040
89 #define IEEE80211_STYPE_CFACK 0x0050
90 #define IEEE80211_STYPE_CFPOLL 0x0060
91 #define IEEE80211_STYPE_CFACKPOLL 0x0070
92 #define IEEE80211_STYPE_QOS_DATA 0x0080
93 #define IEEE80211_STYPE_QOS_DATA_CFACK 0x0090
94 #define IEEE80211_STYPE_QOS_DATA_CFPOLL 0x00A0
95 #define IEEE80211_STYPE_QOS_DATA_CFACKPOLL 0x00B0
96 #define IEEE80211_STYPE_QOS_NULLFUNC 0x00C0
97 #define IEEE80211_STYPE_QOS_CFACK 0x00D0
98 #define IEEE80211_STYPE_QOS_CFPOLL 0x00E0
99 #define IEEE80211_STYPE_QOS_CFACKPOLL 0x00F0
101 /* extension, added by 802.11ad */
102 #define IEEE80211_STYPE_DMG_BEACON 0x0000
103 #define IEEE80211_STYPE_S1G_BEACON 0x0010
105 /* bits unique to S1G beacon */
106 #define IEEE80211_S1G_BCN_NEXT_TBTT 0x100
108 /* see 802.11ah-2016 9.9 NDP CMAC frames */
109 #define IEEE80211_S1G_1MHZ_NDP_BITS 25
110 #define IEEE80211_S1G_1MHZ_NDP_BYTES 4
111 #define IEEE80211_S1G_2MHZ_NDP_BITS 37
112 #define IEEE80211_S1G_2MHZ_NDP_BYTES 5
114 #define IEEE80211_NDP_FTYPE_CTS 0
115 #define IEEE80211_NDP_FTYPE_CF_END 0
116 #define IEEE80211_NDP_FTYPE_PS_POLL 1
117 #define IEEE80211_NDP_FTYPE_ACK 2
118 #define IEEE80211_NDP_FTYPE_PS_POLL_ACK 3
119 #define IEEE80211_NDP_FTYPE_BA 4
120 #define IEEE80211_NDP_FTYPE_BF_REPORT_POLL 5
121 #define IEEE80211_NDP_FTYPE_PAGING 6
122 #define IEEE80211_NDP_FTYPE_PREQ 7
124 #define SM64(f, v) ((((u64)v) << f##_S) & f)
126 /* NDP CMAC frame fields */
127 #define IEEE80211_NDP_FTYPE 0x0000000000000007
128 #define IEEE80211_NDP_FTYPE_S 0x0000000000000000
130 /* 1M Probe Request 11ah 9.9.3.1.1 */
131 #define IEEE80211_NDP_1M_PREQ_ANO 0x0000000000000008
132 #define IEEE80211_NDP_1M_PREQ_ANO_S 3
133 #define IEEE80211_NDP_1M_PREQ_CSSID 0x00000000000FFFF0
134 #define IEEE80211_NDP_1M_PREQ_CSSID_S 4
135 #define IEEE80211_NDP_1M_PREQ_RTYPE 0x0000000000100000
136 #define IEEE80211_NDP_1M_PREQ_RTYPE_S 20
137 #define IEEE80211_NDP_1M_PREQ_RSV 0x0000000001E00000
138 #define IEEE80211_NDP_1M_PREQ_RSV 0x0000000001E00000
139 /* 2M Probe Request 11ah 9.9.3.1.2 */
140 #define IEEE80211_NDP_2M_PREQ_ANO 0x0000000000000008
141 #define IEEE80211_NDP_2M_PREQ_ANO_S 3
142 #define IEEE80211_NDP_2M_PREQ_CSSID 0x0000000FFFFFFFF0
143 #define IEEE80211_NDP_2M_PREQ_CSSID_S 4
144 #define IEEE80211_NDP_2M_PREQ_RTYPE 0x0000001000000000
145 #define IEEE80211_NDP_2M_PREQ_RTYPE_S 36
147 #define IEEE80211_ANO_NETTYPE_WILD 15
149 /* bits unique to S1G beacon */
150 #define IEEE80211_S1G_BCN_NEXT_TBTT 0x100
152 /* control extension - for IEEE80211_FTYPE_CTL | IEEE80211_STYPE_CTL_EXT */
153 #define IEEE80211_CTL_EXT_POLL 0x2000
154 #define IEEE80211_CTL_EXT_SPR 0x3000
155 #define IEEE80211_CTL_EXT_GRANT 0x4000
156 #define IEEE80211_CTL_EXT_DMG_CTS 0x5000
157 #define IEEE80211_CTL_EXT_DMG_DTS 0x6000
158 #define IEEE80211_CTL_EXT_SSW 0x8000
159 #define IEEE80211_CTL_EXT_SSW_FBACK 0x9000
160 #define IEEE80211_CTL_EXT_SSW_ACK 0xa000
163 #define IEEE80211_SN_MASK ((IEEE80211_SCTL_SEQ) >> 4)
164 #define IEEE80211_MAX_SN IEEE80211_SN_MASK
165 #define IEEE80211_SN_MODULO (IEEE80211_MAX_SN + 1)
168 /* PV1 Layout 11ah 9.8.3.1 */
169 #define IEEE80211_PV1_FCTL_VERS 0x0003
170 #define IEEE80211_PV1_FCTL_FTYPE 0x001c
171 #define IEEE80211_PV1_FCTL_STYPE 0x00e0
172 #define IEEE80211_PV1_FCTL_TODS 0x0100
173 #define IEEE80211_PV1_FCTL_MOREFRAGS 0x0200
174 #define IEEE80211_PV1_FCTL_PM 0x0400
175 #define IEEE80211_PV1_FCTL_MOREDATA 0x0800
176 #define IEEE80211_PV1_FCTL_PROTECTED 0x1000
177 #define IEEE80211_PV1_FCTL_END_SP 0x2000
178 #define IEEE80211_PV1_FCTL_RELAYED 0x4000
179 #define IEEE80211_PV1_FCTL_ACK_POLICY 0x8000
180 #define IEEE80211_PV1_FCTL_CTL_EXT 0x0f00
182 static inline bool ieee80211_sn_less(u16 sn1, u16 sn2)
184 return ((sn1 - sn2) & IEEE80211_SN_MASK) > (IEEE80211_SN_MODULO >> 1);
187 static inline u16 ieee80211_sn_add(u16 sn1, u16 sn2)
189 return (sn1 + sn2) & IEEE80211_SN_MASK;
192 static inline u16 ieee80211_sn_inc(u16 sn)
194 return ieee80211_sn_add(sn, 1);
197 static inline u16 ieee80211_sn_sub(u16 sn1, u16 sn2)
199 return (sn1 - sn2) & IEEE80211_SN_MASK;
202 #define IEEE80211_SEQ_TO_SN(seq) (((seq) & IEEE80211_SCTL_SEQ) >> 4)
203 #define IEEE80211_SN_TO_SEQ(ssn) (((ssn) << 4) & IEEE80211_SCTL_SEQ)
205 /* miscellaneous IEEE 802.11 constants */
206 #define IEEE80211_MAX_FRAG_THRESHOLD 2352
207 #define IEEE80211_MAX_RTS_THRESHOLD 2353
208 #define IEEE80211_MAX_AID 2007
209 #define IEEE80211_MAX_AID_S1G 8191
210 #define IEEE80211_MAX_TIM_LEN 251
211 #define IEEE80211_MAX_MESH_PEERINGS 63
212 /* Maximum size for the MA-UNITDATA primitive, 802.11 standard section
215 802.11e clarifies the figure in section 7.1.2. The frame body is
216 up to 2304 octets long (maximum MSDU size) plus any crypt overhead. */
217 #define IEEE80211_MAX_DATA_LEN 2304
218 /* 802.11ad extends maximum MSDU size for DMG (freq > 40Ghz) networks
219 * to 7920 bytes, see 8.2.3 General frame format
221 #define IEEE80211_MAX_DATA_LEN_DMG 7920
222 /* 30 byte 4 addr hdr, 2 byte QoS, 2304 byte MSDU, 12 byte crypt, 4 byte FCS */
223 #define IEEE80211_MAX_FRAME_LEN 2352
225 /* Maximal size of an A-MSDU that can be transported in a HT BA session */
226 #define IEEE80211_MAX_MPDU_LEN_HT_BA 4095
228 /* Maximal size of an A-MSDU */
229 #define IEEE80211_MAX_MPDU_LEN_HT_3839 3839
230 #define IEEE80211_MAX_MPDU_LEN_HT_7935 7935
232 #define IEEE80211_MAX_MPDU_LEN_VHT_3895 3895
233 #define IEEE80211_MAX_MPDU_LEN_VHT_7991 7991
234 #define IEEE80211_MAX_MPDU_LEN_VHT_11454 11454
236 #define IEEE80211_MAX_SSID_LEN 32
238 #define IEEE80211_MAX_MESH_ID_LEN 32
240 #define IEEE80211_FIRST_TSPEC_TSID 8
241 #define IEEE80211_NUM_TIDS 16
243 /* number of user priorities 802.11 uses */
244 #define IEEE80211_NUM_UPS 8
246 #define IEEE80211_NUM_ACS 4
248 #define IEEE80211_QOS_CTL_LEN 2
250 #define IEEE80211_QOS_CTL_TAG1D_MASK 0x0007
252 #define IEEE80211_QOS_CTL_TID_MASK 0x000f
254 #define IEEE80211_QOS_CTL_EOSP 0x0010
256 #define IEEE80211_QOS_CTL_ACK_POLICY_NORMAL 0x0000
257 #define IEEE80211_QOS_CTL_ACK_POLICY_NOACK 0x0020
258 #define IEEE80211_QOS_CTL_ACK_POLICY_NO_EXPL 0x0040
259 #define IEEE80211_QOS_CTL_ACK_POLICY_BLOCKACK 0x0060
260 #define IEEE80211_QOS_CTL_ACK_POLICY_MASK 0x0060
262 #define IEEE80211_QOS_CTL_A_MSDU_PRESENT 0x0080
263 /* Mesh Control 802.11s */
264 #define IEEE80211_QOS_CTL_MESH_CONTROL_PRESENT 0x0100
266 /* Mesh Power Save Level */
267 #define IEEE80211_QOS_CTL_MESH_PS_LEVEL 0x0200
268 /* Mesh Receiver Service Period Initiated */
269 #define IEEE80211_QOS_CTL_RSPI 0x0400
271 /* U-APSD queue for WMM IEs sent by AP */
272 #define IEEE80211_WMM_IE_AP_QOSINFO_UAPSD (1<<7)
273 #define IEEE80211_WMM_IE_AP_QOSINFO_PARAM_SET_CNT_MASK 0x0f
275 /* U-APSD queues for WMM IEs sent by STA */
276 #define IEEE80211_WMM_IE_STA_QOSINFO_AC_VO (1<<0)
277 #define IEEE80211_WMM_IE_STA_QOSINFO_AC_VI (1<<1)
278 #define IEEE80211_WMM_IE_STA_QOSINFO_AC_BK (1<<2)
279 #define IEEE80211_WMM_IE_STA_QOSINFO_AC_BE (1<<3)
280 #define IEEE80211_WMM_IE_STA_QOSINFO_AC_MASK 0x0f
282 /* U-APSD max SP length for WMM IEs sent by STA */
283 #define IEEE80211_WMM_IE_STA_QOSINFO_SP_ALL 0x00
284 #define IEEE80211_WMM_IE_STA_QOSINFO_SP_2 0x01
285 #define IEEE80211_WMM_IE_STA_QOSINFO_SP_4 0x02
286 #define IEEE80211_WMM_IE_STA_QOSINFO_SP_6 0x03
287 #define IEEE80211_WMM_IE_STA_QOSINFO_SP_MASK 0x03
288 #define IEEE80211_WMM_IE_STA_QOSINFO_SP_SHIFT 5
290 #define IEEE80211_HT_CTL_LEN 4
292 /* trigger type within common_info of trigger frame */
293 #define IEEE80211_TRIGGER_TYPE_MASK 0xf
294 #define IEEE80211_TRIGGER_TYPE_BASIC 0x0
295 #define IEEE80211_TRIGGER_TYPE_BFRP 0x1
296 #define IEEE80211_TRIGGER_TYPE_MU_BAR 0x2
297 #define IEEE80211_TRIGGER_TYPE_MU_RTS 0x3
298 #define IEEE80211_TRIGGER_TYPE_BSRP 0x4
299 #define IEEE80211_TRIGGER_TYPE_GCR_MU_BAR 0x5
300 #define IEEE80211_TRIGGER_TYPE_BQRP 0x6
301 #define IEEE80211_TRIGGER_TYPE_NFRP 0x7
303 struct ieee80211_hdr {
304 __le16 frame_control;
311 } __packed __aligned(2);
313 struct ieee80211_hdr_3addr {
314 __le16 frame_control;
322 } __packed __aligned(2);
324 struct ieee80211_qos_hdr {
325 __le16 frame_control;
332 } __packed __aligned(2);
334 struct ieee80211_qos_hdr_4addr {
335 __le16 frame_control;
343 } __packed __aligned(2);
345 struct ieee80211_trigger {
346 __le16 frame_control;
352 } __packed __aligned(2);
355 * ieee80211_has_tods - check if IEEE80211_FCTL_TODS is set
356 * @fc: frame control bytes in little-endian byteorder
358 static inline bool ieee80211_has_tods(__le16 fc)
360 return (fc & cpu_to_le16(IEEE80211_FCTL_TODS)) != 0;
364 * ieee80211_has_fromds - check if IEEE80211_FCTL_FROMDS is set
365 * @fc: frame control bytes in little-endian byteorder
367 static inline bool ieee80211_has_fromds(__le16 fc)
369 return (fc & cpu_to_le16(IEEE80211_FCTL_FROMDS)) != 0;
373 * ieee80211_has_a4 - check if IEEE80211_FCTL_TODS and IEEE80211_FCTL_FROMDS are set
374 * @fc: frame control bytes in little-endian byteorder
376 static inline bool ieee80211_has_a4(__le16 fc)
378 __le16 tmp = cpu_to_le16(IEEE80211_FCTL_TODS | IEEE80211_FCTL_FROMDS);
379 return (fc & tmp) == tmp;
383 * ieee80211_has_morefrags - check if IEEE80211_FCTL_MOREFRAGS is set
384 * @fc: frame control bytes in little-endian byteorder
386 static inline bool ieee80211_has_morefrags(__le16 fc)
388 return (fc & cpu_to_le16(IEEE80211_FCTL_MOREFRAGS)) != 0;
392 * ieee80211_has_retry - check if IEEE80211_FCTL_RETRY is set
393 * @fc: frame control bytes in little-endian byteorder
395 static inline bool ieee80211_has_retry(__le16 fc)
397 return (fc & cpu_to_le16(IEEE80211_FCTL_RETRY)) != 0;
401 * ieee80211_has_pm - check if IEEE80211_FCTL_PM is set
402 * @fc: frame control bytes in little-endian byteorder
404 static inline bool ieee80211_has_pm(__le16 fc)
406 return (fc & cpu_to_le16(IEEE80211_FCTL_PM)) != 0;
410 * ieee80211_has_moredata - check if IEEE80211_FCTL_MOREDATA is set
411 * @fc: frame control bytes in little-endian byteorder
413 static inline bool ieee80211_has_moredata(__le16 fc)
415 return (fc & cpu_to_le16(IEEE80211_FCTL_MOREDATA)) != 0;
419 * ieee80211_has_protected - check if IEEE80211_FCTL_PROTECTED is set
420 * @fc: frame control bytes in little-endian byteorder
422 static inline bool ieee80211_has_protected(__le16 fc)
424 return (fc & cpu_to_le16(IEEE80211_FCTL_PROTECTED)) != 0;
428 * ieee80211_has_order - check if IEEE80211_FCTL_ORDER is set
429 * @fc: frame control bytes in little-endian byteorder
431 static inline bool ieee80211_has_order(__le16 fc)
433 return (fc & cpu_to_le16(IEEE80211_FCTL_ORDER)) != 0;
437 * ieee80211_is_mgmt - check if type is IEEE80211_FTYPE_MGMT
438 * @fc: frame control bytes in little-endian byteorder
440 static inline bool ieee80211_is_mgmt(__le16 fc)
442 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE)) ==
443 cpu_to_le16(IEEE80211_FTYPE_MGMT);
447 * ieee80211_is_ctl - check if type is IEEE80211_FTYPE_CTL
448 * @fc: frame control bytes in little-endian byteorder
450 static inline bool ieee80211_is_ctl(__le16 fc)
452 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE)) ==
453 cpu_to_le16(IEEE80211_FTYPE_CTL);
457 * ieee80211_is_data - check if type is IEEE80211_FTYPE_DATA
458 * @fc: frame control bytes in little-endian byteorder
460 static inline bool ieee80211_is_data(__le16 fc)
462 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE)) ==
463 cpu_to_le16(IEEE80211_FTYPE_DATA);
467 * ieee80211_is_ext - check if type is IEEE80211_FTYPE_EXT
468 * @fc: frame control bytes in little-endian byteorder
470 static inline bool ieee80211_is_ext(__le16 fc)
472 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE)) ==
473 cpu_to_le16(IEEE80211_FTYPE_EXT);
478 * ieee80211_is_data_qos - check if type is IEEE80211_FTYPE_DATA and IEEE80211_STYPE_QOS_DATA is set
479 * @fc: frame control bytes in little-endian byteorder
481 static inline bool ieee80211_is_data_qos(__le16 fc)
484 * mask with QOS_DATA rather than IEEE80211_FCTL_STYPE as we just need
485 * to check the one bit
487 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_STYPE_QOS_DATA)) ==
488 cpu_to_le16(IEEE80211_FTYPE_DATA | IEEE80211_STYPE_QOS_DATA);
492 * ieee80211_is_data_present - check if type is IEEE80211_FTYPE_DATA and has data
493 * @fc: frame control bytes in little-endian byteorder
495 static inline bool ieee80211_is_data_present(__le16 fc)
498 * mask with 0x40 and test that that bit is clear to only return true
499 * for the data-containing substypes.
501 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | 0x40)) ==
502 cpu_to_le16(IEEE80211_FTYPE_DATA);
506 * ieee80211_is_assoc_req - check if IEEE80211_FTYPE_MGMT && IEEE80211_STYPE_ASSOC_REQ
507 * @fc: frame control bytes in little-endian byteorder
509 static inline bool ieee80211_is_assoc_req(__le16 fc)
511 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
512 cpu_to_le16(IEEE80211_FTYPE_MGMT | IEEE80211_STYPE_ASSOC_REQ);
516 * ieee80211_is_assoc_resp - check if IEEE80211_FTYPE_MGMT && IEEE80211_STYPE_ASSOC_RESP
517 * @fc: frame control bytes in little-endian byteorder
519 static inline bool ieee80211_is_assoc_resp(__le16 fc)
521 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
522 cpu_to_le16(IEEE80211_FTYPE_MGMT | IEEE80211_STYPE_ASSOC_RESP);
526 * ieee80211_is_reassoc_req - check if IEEE80211_FTYPE_MGMT && IEEE80211_STYPE_REASSOC_REQ
527 * @fc: frame control bytes in little-endian byteorder
529 static inline bool ieee80211_is_reassoc_req(__le16 fc)
531 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
532 cpu_to_le16(IEEE80211_FTYPE_MGMT | IEEE80211_STYPE_REASSOC_REQ);
536 * ieee80211_is_reassoc_resp - check if IEEE80211_FTYPE_MGMT && IEEE80211_STYPE_REASSOC_RESP
537 * @fc: frame control bytes in little-endian byteorder
539 static inline bool ieee80211_is_reassoc_resp(__le16 fc)
541 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
542 cpu_to_le16(IEEE80211_FTYPE_MGMT | IEEE80211_STYPE_REASSOC_RESP);
546 * ieee80211_is_probe_req - check if IEEE80211_FTYPE_MGMT && IEEE80211_STYPE_PROBE_REQ
547 * @fc: frame control bytes in little-endian byteorder
549 static inline bool ieee80211_is_probe_req(__le16 fc)
551 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
552 cpu_to_le16(IEEE80211_FTYPE_MGMT | IEEE80211_STYPE_PROBE_REQ);
556 * ieee80211_is_probe_resp - check if IEEE80211_FTYPE_MGMT && IEEE80211_STYPE_PROBE_RESP
557 * @fc: frame control bytes in little-endian byteorder
559 static inline bool ieee80211_is_probe_resp(__le16 fc)
561 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
562 cpu_to_le16(IEEE80211_FTYPE_MGMT | IEEE80211_STYPE_PROBE_RESP);
566 * ieee80211_is_beacon - check if IEEE80211_FTYPE_MGMT && IEEE80211_STYPE_BEACON
567 * @fc: frame control bytes in little-endian byteorder
569 static inline bool ieee80211_is_beacon(__le16 fc)
571 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
572 cpu_to_le16(IEEE80211_FTYPE_MGMT | IEEE80211_STYPE_BEACON);
576 * ieee80211_is_s1g_beacon - check if IEEE80211_FTYPE_EXT &&
577 * IEEE80211_STYPE_S1G_BEACON
578 * @fc: frame control bytes in little-endian byteorder
580 static inline bool ieee80211_is_s1g_beacon(__le16 fc)
582 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE |
583 IEEE80211_FCTL_STYPE)) ==
584 cpu_to_le16(IEEE80211_FTYPE_EXT | IEEE80211_STYPE_S1G_BEACON);
588 * ieee80211_next_tbtt_present - check if IEEE80211_FTYPE_EXT &&
589 * IEEE80211_STYPE_S1G_BEACON && IEEE80211_S1G_BCN_NEXT_TBTT
590 * @fc: frame control bytes in little-endian byteorder
592 static inline bool ieee80211_next_tbtt_present(__le16 fc)
594 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
595 cpu_to_le16(IEEE80211_FTYPE_EXT | IEEE80211_STYPE_S1G_BEACON) &&
596 fc & cpu_to_le16(IEEE80211_S1G_BCN_NEXT_TBTT);
600 * ieee80211_is_s1g_short_beacon - check if next tbtt present bit is set. Only
601 * true for S1G beacons when they're short.
602 * @fc: frame control bytes in little-endian byteorder
604 static inline bool ieee80211_is_s1g_short_beacon(__le16 fc)
606 return ieee80211_is_s1g_beacon(fc) && ieee80211_next_tbtt_present(fc);
610 * ieee80211_is_atim - check if IEEE80211_FTYPE_MGMT && IEEE80211_STYPE_ATIM
611 * @fc: frame control bytes in little-endian byteorder
613 static inline bool ieee80211_is_atim(__le16 fc)
615 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
616 cpu_to_le16(IEEE80211_FTYPE_MGMT | IEEE80211_STYPE_ATIM);
620 * ieee80211_is_disassoc - check if IEEE80211_FTYPE_MGMT && IEEE80211_STYPE_DISASSOC
621 * @fc: frame control bytes in little-endian byteorder
623 static inline bool ieee80211_is_disassoc(__le16 fc)
625 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
626 cpu_to_le16(IEEE80211_FTYPE_MGMT | IEEE80211_STYPE_DISASSOC);
630 * ieee80211_is_auth - check if IEEE80211_FTYPE_MGMT && IEEE80211_STYPE_AUTH
631 * @fc: frame control bytes in little-endian byteorder
633 static inline bool ieee80211_is_auth(__le16 fc)
635 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
636 cpu_to_le16(IEEE80211_FTYPE_MGMT | IEEE80211_STYPE_AUTH);
640 * ieee80211_is_deauth - check if IEEE80211_FTYPE_MGMT && IEEE80211_STYPE_DEAUTH
641 * @fc: frame control bytes in little-endian byteorder
643 static inline bool ieee80211_is_deauth(__le16 fc)
645 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
646 cpu_to_le16(IEEE80211_FTYPE_MGMT | IEEE80211_STYPE_DEAUTH);
650 * ieee80211_is_action - check if IEEE80211_FTYPE_MGMT && IEEE80211_STYPE_ACTION
651 * @fc: frame control bytes in little-endian byteorder
653 static inline bool ieee80211_is_action(__le16 fc)
655 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
656 cpu_to_le16(IEEE80211_FTYPE_MGMT | IEEE80211_STYPE_ACTION);
660 * ieee80211_is_back_req - check if IEEE80211_FTYPE_CTL && IEEE80211_STYPE_BACK_REQ
661 * @fc: frame control bytes in little-endian byteorder
663 static inline bool ieee80211_is_back_req(__le16 fc)
665 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
666 cpu_to_le16(IEEE80211_FTYPE_CTL | IEEE80211_STYPE_BACK_REQ);
670 * ieee80211_is_back - check if IEEE80211_FTYPE_CTL && IEEE80211_STYPE_BACK
671 * @fc: frame control bytes in little-endian byteorder
673 static inline bool ieee80211_is_back(__le16 fc)
675 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
676 cpu_to_le16(IEEE80211_FTYPE_CTL | IEEE80211_STYPE_BACK);
680 * ieee80211_is_pspoll - check if IEEE80211_FTYPE_CTL && IEEE80211_STYPE_PSPOLL
681 * @fc: frame control bytes in little-endian byteorder
683 static inline bool ieee80211_is_pspoll(__le16 fc)
685 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
686 cpu_to_le16(IEEE80211_FTYPE_CTL | IEEE80211_STYPE_PSPOLL);
690 * ieee80211_is_rts - check if IEEE80211_FTYPE_CTL && IEEE80211_STYPE_RTS
691 * @fc: frame control bytes in little-endian byteorder
693 static inline bool ieee80211_is_rts(__le16 fc)
695 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
696 cpu_to_le16(IEEE80211_FTYPE_CTL | IEEE80211_STYPE_RTS);
700 * ieee80211_is_cts - check if IEEE80211_FTYPE_CTL && IEEE80211_STYPE_CTS
701 * @fc: frame control bytes in little-endian byteorder
703 static inline bool ieee80211_is_cts(__le16 fc)
705 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
706 cpu_to_le16(IEEE80211_FTYPE_CTL | IEEE80211_STYPE_CTS);
710 * ieee80211_is_ack - check if IEEE80211_FTYPE_CTL && IEEE80211_STYPE_ACK
711 * @fc: frame control bytes in little-endian byteorder
713 static inline bool ieee80211_is_ack(__le16 fc)
715 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
716 cpu_to_le16(IEEE80211_FTYPE_CTL | IEEE80211_STYPE_ACK);
720 * ieee80211_is_cfend - check if IEEE80211_FTYPE_CTL && IEEE80211_STYPE_CFEND
721 * @fc: frame control bytes in little-endian byteorder
723 static inline bool ieee80211_is_cfend(__le16 fc)
725 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
726 cpu_to_le16(IEEE80211_FTYPE_CTL | IEEE80211_STYPE_CFEND);
730 * ieee80211_is_cfendack - check if IEEE80211_FTYPE_CTL && IEEE80211_STYPE_CFENDACK
731 * @fc: frame control bytes in little-endian byteorder
733 static inline bool ieee80211_is_cfendack(__le16 fc)
735 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
736 cpu_to_le16(IEEE80211_FTYPE_CTL | IEEE80211_STYPE_CFENDACK);
740 * ieee80211_is_nullfunc - check if frame is a regular (non-QoS) nullfunc frame
741 * @fc: frame control bytes in little-endian byteorder
743 static inline bool ieee80211_is_nullfunc(__le16 fc)
745 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
746 cpu_to_le16(IEEE80211_FTYPE_DATA | IEEE80211_STYPE_NULLFUNC);
750 * ieee80211_is_qos_nullfunc - check if frame is a QoS nullfunc frame
751 * @fc: frame control bytes in little-endian byteorder
753 static inline bool ieee80211_is_qos_nullfunc(__le16 fc)
755 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
756 cpu_to_le16(IEEE80211_FTYPE_DATA | IEEE80211_STYPE_QOS_NULLFUNC);
759 static inline unsigned int ieee80211_hdrlen(__le16 fc)
761 unsigned int hdrlen = 24;
763 if (ieee80211_has_a4(fc))
766 if (ieee80211_is_data_qos(fc)) {
767 hdrlen += IEEE80211_QOS_CTL_LEN;
768 if (ieee80211_has_order(fc))
769 hdrlen += IEEE80211_HT_CTL_LEN;
776 * ieee80211_is_trigger - check if frame is trigger frame
777 * @fc: frame control field in little-endian byteorder
779 static inline bool ieee80211_is_trigger(__le16 fc)
781 return (fc & cpu_to_le16(IEEE80211_FCTL_FTYPE | IEEE80211_FCTL_STYPE)) ==
782 cpu_to_le16(IEEE80211_FTYPE_CTL | IEEE80211_STYPE_TRIGGER);
786 * ieee80211_is_any_nullfunc - check if frame is regular or QoS nullfunc frame
787 * @fc: frame control bytes in little-endian byteorder
789 static inline bool ieee80211_is_any_nullfunc(__le16 fc)
791 return (ieee80211_is_nullfunc(fc) || ieee80211_is_qos_nullfunc(fc));
795 * ieee80211_is_first_frag - check if IEEE80211_SCTL_FRAG is not set
796 * @seq_ctrl: frame sequence control bytes in little-endian byteorder
798 static inline bool ieee80211_is_first_frag(__le16 seq_ctrl)
800 return (seq_ctrl & cpu_to_le16(IEEE80211_SCTL_FRAG)) == 0;
804 * ieee80211_is_frag - check if a frame is a fragment
805 * @hdr: 802.11 header of the frame
807 static inline bool ieee80211_is_frag(struct ieee80211_hdr *hdr)
809 return ieee80211_has_morefrags(hdr->frame_control) ||
810 hdr->seq_ctrl & cpu_to_le16(IEEE80211_SCTL_FRAG);
813 struct ieee80211s_hdr {
819 } __packed __aligned(2);
822 #define MESH_FLAGS_AE_A4 0x1
823 #define MESH_FLAGS_AE_A5_A6 0x2
824 #define MESH_FLAGS_AE 0x3
825 #define MESH_FLAGS_PS_DEEP 0x4
828 * enum ieee80211_preq_flags - mesh PREQ element flags
830 * @IEEE80211_PREQ_PROACTIVE_PREP_FLAG: proactive PREP subfield
832 enum ieee80211_preq_flags {
833 IEEE80211_PREQ_PROACTIVE_PREP_FLAG = 1<<2,
837 * enum ieee80211_preq_target_flags - mesh PREQ element per target flags
839 * @IEEE80211_PREQ_TO_FLAG: target only subfield
840 * @IEEE80211_PREQ_USN_FLAG: unknown target HWMP sequence number subfield
842 enum ieee80211_preq_target_flags {
843 IEEE80211_PREQ_TO_FLAG = 1<<0,
844 IEEE80211_PREQ_USN_FLAG = 1<<2,
848 * struct ieee80211_quiet_ie - Quiet element
849 * @count: Quiet Count
850 * @period: Quiet Period
851 * @duration: Quiet Duration
852 * @offset: Quiet Offset
854 * This structure represents the payload of the "Quiet element" as
855 * described in IEEE Std 802.11-2020 section 9.4.2.22.
857 struct ieee80211_quiet_ie {
865 * struct ieee80211_msrment_ie - Measurement element
866 * @token: Measurement Token
867 * @mode: Measurement Report Mode
868 * @type: Measurement Type
869 * @request: Measurement Request or Measurement Report
871 * This structure represents the payload of both the "Measurement
872 * Request element" and the "Measurement Report element" as described
873 * in IEEE Std 802.11-2020 sections 9.4.2.20 and 9.4.2.21.
875 struct ieee80211_msrment_ie {
883 * struct ieee80211_channel_sw_ie - Channel Switch Announcement element
884 * @mode: Channel Switch Mode
885 * @new_ch_num: New Channel Number
886 * @count: Channel Switch Count
888 * This structure represents the payload of the "Channel Switch
889 * Announcement element" as described in IEEE Std 802.11-2020 section
892 struct ieee80211_channel_sw_ie {
899 * struct ieee80211_ext_chansw_ie - Extended Channel Switch Announcement element
900 * @mode: Channel Switch Mode
901 * @new_operating_class: New Operating Class
902 * @new_ch_num: New Channel Number
903 * @count: Channel Switch Count
905 * This structure represents the "Extended Channel Switch Announcement
906 * element" as described in IEEE Std 802.11-2020 section 9.4.2.52.
908 struct ieee80211_ext_chansw_ie {
910 u8 new_operating_class;
916 * struct ieee80211_sec_chan_offs_ie - secondary channel offset IE
917 * @sec_chan_offs: secondary channel offset, uses IEEE80211_HT_PARAM_CHA_SEC_*
919 * This structure represents the "Secondary Channel Offset element"
921 struct ieee80211_sec_chan_offs_ie {
926 * struct ieee80211_mesh_chansw_params_ie - mesh channel switch parameters IE
927 * @mesh_ttl: Time To Live
929 * @mesh_reason: Reason Code
930 * @mesh_pre_value: Precedence Value
932 * This structure represents the payload of the "Mesh Channel Switch
933 * Parameters element" as described in IEEE Std 802.11-2020 section
936 struct ieee80211_mesh_chansw_params_ie {
940 __le16 mesh_pre_value;
944 * struct ieee80211_wide_bw_chansw_ie - wide bandwidth channel switch IE
945 * @new_channel_width: New Channel Width
946 * @new_center_freq_seg0: New Channel Center Frequency Segment 0
947 * @new_center_freq_seg1: New Channel Center Frequency Segment 1
949 * This structure represents the payload of the "Wide Bandwidth
950 * Channel Switch element" as described in IEEE Std 802.11-2020
953 struct ieee80211_wide_bw_chansw_ie {
954 u8 new_channel_width;
955 u8 new_center_freq_seg0, new_center_freq_seg1;
959 * struct ieee80211_tim_ie - Traffic Indication Map information element
960 * @dtim_count: DTIM Count
961 * @dtim_period: DTIM Period
962 * @bitmap_ctrl: Bitmap Control
963 * @virtual_map: Partial Virtual Bitmap
965 * This structure represents the payload of the "TIM element" as
966 * described in IEEE Std 802.11-2020 section 9.4.2.5.
968 struct ieee80211_tim_ie {
972 /* variable size: 1 - 251 bytes */
977 * struct ieee80211_meshconf_ie - Mesh Configuration element
978 * @meshconf_psel: Active Path Selection Protocol Identifier
979 * @meshconf_pmetric: Active Path Selection Metric Identifier
980 * @meshconf_congest: Congestion Control Mode Identifier
981 * @meshconf_synch: Synchronization Method Identifier
982 * @meshconf_auth: Authentication Protocol Identifier
983 * @meshconf_form: Mesh Formation Info
984 * @meshconf_cap: Mesh Capability (see &enum mesh_config_capab_flags)
986 * This structure represents the payload of the "Mesh Configuration
987 * element" as described in IEEE Std 802.11-2020 section 9.4.2.97.
989 struct ieee80211_meshconf_ie {
1000 * enum mesh_config_capab_flags - Mesh Configuration IE capability field flags
1002 * @IEEE80211_MESHCONF_CAPAB_ACCEPT_PLINKS: STA is willing to establish
1003 * additional mesh peerings with other mesh STAs
1004 * @IEEE80211_MESHCONF_CAPAB_FORWARDING: the STA forwards MSDUs
1005 * @IEEE80211_MESHCONF_CAPAB_TBTT_ADJUSTING: TBTT adjustment procedure
1007 * @IEEE80211_MESHCONF_CAPAB_POWER_SAVE_LEVEL: STA is in deep sleep mode or has
1008 * neighbors in deep sleep mode
1010 * Enumerates the "Mesh Capability" as described in IEEE Std
1011 * 802.11-2020 section 9.4.2.97.7.
1013 enum mesh_config_capab_flags {
1014 IEEE80211_MESHCONF_CAPAB_ACCEPT_PLINKS = 0x01,
1015 IEEE80211_MESHCONF_CAPAB_FORWARDING = 0x08,
1016 IEEE80211_MESHCONF_CAPAB_TBTT_ADJUSTING = 0x20,
1017 IEEE80211_MESHCONF_CAPAB_POWER_SAVE_LEVEL = 0x40,
1020 #define IEEE80211_MESHCONF_FORM_CONNECTED_TO_GATE 0x1
1023 * mesh channel switch parameters element's flag indicator
1026 #define WLAN_EID_CHAN_SWITCH_PARAM_TX_RESTRICT BIT(0)
1027 #define WLAN_EID_CHAN_SWITCH_PARAM_INITIATOR BIT(1)
1028 #define WLAN_EID_CHAN_SWITCH_PARAM_REASON BIT(2)
1031 * struct ieee80211_rann_ie - RANN (root announcement) element
1032 * @rann_flags: Flags
1033 * @rann_hopcount: Hop Count
1034 * @rann_ttl: Element TTL
1035 * @rann_addr: Root Mesh STA Address
1036 * @rann_seq: HWMP Sequence Number
1037 * @rann_interval: Interval
1038 * @rann_metric: Metric
1040 * This structure represents the payload of the "RANN element" as
1041 * described in IEEE Std 802.11-2020 section 9.4.2.111.
1043 struct ieee80211_rann_ie {
1049 __le32 rann_interval;
1053 enum ieee80211_rann_flags {
1054 RANN_FLAG_IS_GATE = 1 << 0,
1057 enum ieee80211_ht_chanwidth_values {
1058 IEEE80211_HT_CHANWIDTH_20MHZ = 0,
1059 IEEE80211_HT_CHANWIDTH_ANY = 1,
1063 * enum ieee80211_vht_opmode_bits - VHT operating mode field bits
1064 * @IEEE80211_OPMODE_NOTIF_CHANWIDTH_MASK: channel width mask
1065 * @IEEE80211_OPMODE_NOTIF_CHANWIDTH_20MHZ: 20 MHz channel width
1066 * @IEEE80211_OPMODE_NOTIF_CHANWIDTH_40MHZ: 40 MHz channel width
1067 * @IEEE80211_OPMODE_NOTIF_CHANWIDTH_80MHZ: 80 MHz channel width
1068 * @IEEE80211_OPMODE_NOTIF_CHANWIDTH_160MHZ: 160 MHz or 80+80 MHz channel width
1069 * @IEEE80211_OPMODE_NOTIF_BW_160_80P80: 160 / 80+80 MHz indicator flag
1070 * @IEEE80211_OPMODE_NOTIF_RX_NSS_MASK: number of spatial streams mask
1071 * (the NSS value is the value of this field + 1)
1072 * @IEEE80211_OPMODE_NOTIF_RX_NSS_SHIFT: number of spatial streams shift
1073 * @IEEE80211_OPMODE_NOTIF_RX_NSS_TYPE_BF: indicates streams in SU-MIMO PPDU
1074 * using a beamforming steering matrix
1076 enum ieee80211_vht_opmode_bits {
1077 IEEE80211_OPMODE_NOTIF_CHANWIDTH_MASK = 0x03,
1078 IEEE80211_OPMODE_NOTIF_CHANWIDTH_20MHZ = 0,
1079 IEEE80211_OPMODE_NOTIF_CHANWIDTH_40MHZ = 1,
1080 IEEE80211_OPMODE_NOTIF_CHANWIDTH_80MHZ = 2,
1081 IEEE80211_OPMODE_NOTIF_CHANWIDTH_160MHZ = 3,
1082 IEEE80211_OPMODE_NOTIF_BW_160_80P80 = 0x04,
1083 IEEE80211_OPMODE_NOTIF_RX_NSS_MASK = 0x70,
1084 IEEE80211_OPMODE_NOTIF_RX_NSS_SHIFT = 4,
1085 IEEE80211_OPMODE_NOTIF_RX_NSS_TYPE_BF = 0x80,
1089 * enum ieee80211_s1g_chanwidth
1090 * These are defined in IEEE802.11-2016ah Table 10-20
1091 * as BSS Channel Width
1093 * @IEEE80211_S1G_CHANWIDTH_1MHZ: 1MHz operating channel
1094 * @IEEE80211_S1G_CHANWIDTH_2MHZ: 2MHz operating channel
1095 * @IEEE80211_S1G_CHANWIDTH_4MHZ: 4MHz operating channel
1096 * @IEEE80211_S1G_CHANWIDTH_8MHZ: 8MHz operating channel
1097 * @IEEE80211_S1G_CHANWIDTH_16MHZ: 16MHz operating channel
1099 enum ieee80211_s1g_chanwidth {
1100 IEEE80211_S1G_CHANWIDTH_1MHZ = 0,
1101 IEEE80211_S1G_CHANWIDTH_2MHZ = 1,
1102 IEEE80211_S1G_CHANWIDTH_4MHZ = 3,
1103 IEEE80211_S1G_CHANWIDTH_8MHZ = 7,
1104 IEEE80211_S1G_CHANWIDTH_16MHZ = 15,
1107 #define WLAN_SA_QUERY_TR_ID_LEN 2
1108 #define WLAN_MEMBERSHIP_LEN 8
1109 #define WLAN_USER_POSITION_LEN 16
1112 * struct ieee80211_tpc_report_ie - TPC Report element
1113 * @tx_power: Transmit Power
1114 * @link_margin: Link Margin
1116 * This structure represents the payload of the "TPC Report element" as
1117 * described in IEEE Std 802.11-2020 section 9.4.2.16.
1119 struct ieee80211_tpc_report_ie {
1124 #define IEEE80211_ADDBA_EXT_FRAG_LEVEL_MASK GENMASK(2, 1)
1125 #define IEEE80211_ADDBA_EXT_FRAG_LEVEL_SHIFT 1
1126 #define IEEE80211_ADDBA_EXT_NO_FRAG BIT(0)
1127 #define IEEE80211_ADDBA_EXT_BUF_SIZE_MASK GENMASK(7, 5)
1128 #define IEEE80211_ADDBA_EXT_BUF_SIZE_SHIFT 10
1130 struct ieee80211_addba_ext_ie {
1135 * struct ieee80211_s1g_bcn_compat_ie - S1G Beacon Compatibility element
1136 * @compat_info: Compatibility Information
1137 * @beacon_int: Beacon Interval
1138 * @tsf_completion: TSF Completion
1140 * This structure represents the payload of the "S1G Beacon
1141 * Compatibility element" as described in IEEE Std 802.11-2020 section
1144 struct ieee80211_s1g_bcn_compat_ie {
1147 __le32 tsf_completion;
1151 * struct ieee80211_s1g_oper_ie - S1G Operation element
1152 * @ch_width: S1G Operation Information Channel Width
1153 * @oper_class: S1G Operation Information Operating Class
1154 * @primary_ch: S1G Operation Information Primary Channel Number
1155 * @oper_ch: S1G Operation Information Channel Center Frequency
1156 * @basic_mcs_nss: Basic S1G-MCS and NSS Set
1158 * This structure represents the payload of the "S1G Operation
1159 * element" as described in IEEE Std 802.11-2020 section 9.4.2.212.
1161 struct ieee80211_s1g_oper_ie {
1166 __le16 basic_mcs_nss;
1170 * struct ieee80211_aid_response_ie - AID Response element
1171 * @aid: AID/Group AID
1172 * @switch_count: AID Switch Count
1173 * @response_int: AID Response Interval
1175 * This structure represents the payload of the "AID Response element"
1176 * as described in IEEE Std 802.11-2020 section 9.4.2.194.
1178 struct ieee80211_aid_response_ie {
1181 __le16 response_int;
1184 struct ieee80211_s1g_cap {
1189 struct ieee80211_ext {
1190 __le16 frame_control;
1198 } __packed s1g_beacon;
1205 } __packed s1g_short_beacon;
1207 } __packed __aligned(2);
1209 #define IEEE80211_TWT_CONTROL_NDP BIT(0)
1210 #define IEEE80211_TWT_CONTROL_RESP_MODE BIT(1)
1211 #define IEEE80211_TWT_CONTROL_NEG_TYPE_BROADCAST BIT(3)
1212 #define IEEE80211_TWT_CONTROL_RX_DISABLED BIT(4)
1213 #define IEEE80211_TWT_CONTROL_WAKE_DUR_UNIT BIT(5)
1215 #define IEEE80211_TWT_REQTYPE_REQUEST BIT(0)
1216 #define IEEE80211_TWT_REQTYPE_SETUP_CMD GENMASK(3, 1)
1217 #define IEEE80211_TWT_REQTYPE_TRIGGER BIT(4)
1218 #define IEEE80211_TWT_REQTYPE_IMPLICIT BIT(5)
1219 #define IEEE80211_TWT_REQTYPE_FLOWTYPE BIT(6)
1220 #define IEEE80211_TWT_REQTYPE_FLOWID GENMASK(9, 7)
1221 #define IEEE80211_TWT_REQTYPE_WAKE_INT_EXP GENMASK(14, 10)
1222 #define IEEE80211_TWT_REQTYPE_PROTECTION BIT(15)
1224 enum ieee80211_twt_setup_cmd {
1225 TWT_SETUP_CMD_REQUEST,
1226 TWT_SETUP_CMD_SUGGEST,
1227 TWT_SETUP_CMD_DEMAND,
1228 TWT_SETUP_CMD_GROUPING,
1229 TWT_SETUP_CMD_ACCEPT,
1230 TWT_SETUP_CMD_ALTERNATE,
1231 TWT_SETUP_CMD_DICTATE,
1232 TWT_SETUP_CMD_REJECT,
1235 struct ieee80211_twt_params {
1243 struct ieee80211_twt_setup {
1251 struct ieee80211_mgmt {
1252 __le16 frame_control;
1261 __le16 auth_transaction;
1263 /* possibly followed by Challenge text */
1265 } __packed __aligned(4) auth;
1268 } __packed __aligned(4) deauth;
1271 __le16 listen_interval;
1272 /* followed by SSID and Supported rates */
1274 } __packed __aligned(4) assoc_req;
1279 /* followed by Supported rates */
1281 } __packed __aligned(4) assoc_resp, reassoc_resp;
1286 } __packed __aligned(4) s1g_assoc_resp, s1g_reassoc_resp;
1289 __le16 listen_interval;
1291 /* followed by SSID and Supported rates */
1293 } __packed __aligned(4) reassoc_req;
1296 } __packed __aligned(4) disassoc;
1301 /* followed by some of SSID, Supported rates,
1302 * FH Params, DS Params, CF Params, IBSS Params, TIM */
1304 } __packed __aligned(4) beacon;
1306 /* only variable items: SSID, Supported rates */
1307 DECLARE_FLEX_ARRAY(u8, variable);
1308 } __packed __aligned(4) probe_req;
1313 /* followed by some of SSID, Supported rates,
1314 * FH Params, DS Params, CF Params, IBSS Params */
1316 } __packed __aligned(4) probe_resp;
1325 } __packed wme_action;
1329 } __packed chan_switch;
1332 struct ieee80211_ext_chansw_ie data;
1334 } __packed ext_chan_switch;
1340 struct ieee80211_msrment_ie msr_elem;
1341 } __packed measurement;
1347 __le16 start_seq_num;
1348 /* followed by BA Extension */
1350 } __packed addba_req;
1357 } __packed addba_resp;
1366 } __packed self_prot;
1370 } __packed mesh_action;
1373 u8 trans_id[WLAN_SA_QUERY_TR_ID_LEN];
1374 } __packed sa_query;
1382 } __packed ht_notify_cw;
1388 } __packed tdls_discover_resp;
1392 } __packed vht_opmode_notif;
1395 u8 membership[WLAN_MEMBERSHIP_LEN];
1396 u8 position[WLAN_USER_POSITION_LEN];
1397 } __packed vht_group_notif;
1403 struct ieee80211_tpc_report_ie tpc;
1404 } __packed tpc_report;
1427 } __packed wnm_timing_msr;
1429 } __packed __aligned(4) action;
1430 DECLARE_FLEX_ARRAY(u8, body); /* Generic frame body */
1432 } __packed __aligned(2);
1434 /* Supported rates membership selectors */
1435 #define BSS_MEMBERSHIP_SELECTOR_HT_PHY 127
1436 #define BSS_MEMBERSHIP_SELECTOR_VHT_PHY 126
1437 #define BSS_MEMBERSHIP_SELECTOR_GLK 125
1438 #define BSS_MEMBERSHIP_SELECTOR_EPS 124
1439 #define BSS_MEMBERSHIP_SELECTOR_SAE_H2E 123
1440 #define BSS_MEMBERSHIP_SELECTOR_HE_PHY 122
1441 #define BSS_MEMBERSHIP_SELECTOR_EHT_PHY 121
1443 /* mgmt header + 1 byte category code */
1444 #define IEEE80211_MIN_ACTION_SIZE offsetof(struct ieee80211_mgmt, u.action.u)
1447 /* Management MIC information element (IEEE 802.11w) */
1448 struct ieee80211_mmie {
1452 u8 sequence_number[6];
1456 /* Management MIC information element (IEEE 802.11w) for GMAC and CMAC-256 */
1457 struct ieee80211_mmie_16 {
1461 u8 sequence_number[6];
1465 struct ieee80211_vendor_ie {
1472 struct ieee80211_wmm_ac_param {
1473 u8 aci_aifsn; /* AIFSN, ACM, ACI */
1474 u8 cw; /* ECWmin, ECWmax (CW = 2^ECW - 1) */
1478 struct ieee80211_wmm_param_ie {
1479 u8 element_id; /* Element ID: 221 (0xdd); */
1480 u8 len; /* Length: 24 */
1481 /* required fields for WMM version 1 */
1482 u8 oui[3]; /* 00:50:f2 */
1483 u8 oui_type; /* 2 */
1484 u8 oui_subtype; /* 1 */
1485 u8 version; /* 1 for WMM version 1.0 */
1486 u8 qos_info; /* AP/STA specific QoS info */
1487 u8 reserved; /* 0 */
1488 /* AC_BE, AC_BK, AC_VI, AC_VO */
1489 struct ieee80211_wmm_ac_param ac[4];
1492 /* Control frames */
1493 struct ieee80211_rts {
1494 __le16 frame_control;
1498 } __packed __aligned(2);
1500 struct ieee80211_cts {
1501 __le16 frame_control;
1504 } __packed __aligned(2);
1506 struct ieee80211_pspoll {
1507 __le16 frame_control;
1511 } __packed __aligned(2);
1515 /* Channel switch timing */
1516 struct ieee80211_ch_switch_timing {
1518 __le16 switch_timeout;
1521 /* Link-id information element */
1522 struct ieee80211_tdls_lnkie {
1523 u8 ie_type; /* Link Identifier IE */
1530 struct ieee80211_tdls_data {
1542 } __packed setup_req;
1548 } __packed setup_resp;
1553 } __packed setup_cfm;
1557 } __packed teardown;
1561 } __packed discover_req;
1566 } __packed chan_switch_req;
1570 } __packed chan_switch_resp;
1575 * Peer-to-Peer IE attribute related definitions.
1578 * enum ieee80211_p2p_attr_id - identifies type of peer-to-peer attribute.
1580 enum ieee80211_p2p_attr_id {
1581 IEEE80211_P2P_ATTR_STATUS = 0,
1582 IEEE80211_P2P_ATTR_MINOR_REASON,
1583 IEEE80211_P2P_ATTR_CAPABILITY,
1584 IEEE80211_P2P_ATTR_DEVICE_ID,
1585 IEEE80211_P2P_ATTR_GO_INTENT,
1586 IEEE80211_P2P_ATTR_GO_CONFIG_TIMEOUT,
1587 IEEE80211_P2P_ATTR_LISTEN_CHANNEL,
1588 IEEE80211_P2P_ATTR_GROUP_BSSID,
1589 IEEE80211_P2P_ATTR_EXT_LISTEN_TIMING,
1590 IEEE80211_P2P_ATTR_INTENDED_IFACE_ADDR,
1591 IEEE80211_P2P_ATTR_MANAGABILITY,
1592 IEEE80211_P2P_ATTR_CHANNEL_LIST,
1593 IEEE80211_P2P_ATTR_ABSENCE_NOTICE,
1594 IEEE80211_P2P_ATTR_DEVICE_INFO,
1595 IEEE80211_P2P_ATTR_GROUP_INFO,
1596 IEEE80211_P2P_ATTR_GROUP_ID,
1597 IEEE80211_P2P_ATTR_INTERFACE,
1598 IEEE80211_P2P_ATTR_OPER_CHANNEL,
1599 IEEE80211_P2P_ATTR_INVITE_FLAGS,
1600 /* 19 - 220: Reserved */
1601 IEEE80211_P2P_ATTR_VENDOR_SPECIFIC = 221,
1603 IEEE80211_P2P_ATTR_MAX
1606 /* Notice of Absence attribute - described in P2P spec 4.1.14 */
1607 /* Typical max value used here */
1608 #define IEEE80211_P2P_NOA_DESC_MAX 4
1610 struct ieee80211_p2p_noa_desc {
1617 struct ieee80211_p2p_noa_attr {
1620 struct ieee80211_p2p_noa_desc desc[IEEE80211_P2P_NOA_DESC_MAX];
1623 #define IEEE80211_P2P_OPPPS_ENABLE_BIT BIT(7)
1624 #define IEEE80211_P2P_OPPPS_CTWINDOW_MASK 0x7F
1627 * struct ieee80211_bar - Block Ack Request frame format
1628 * @frame_control: Frame Control
1629 * @duration: Duration
1632 * @control: BAR Control
1633 * @start_seq_num: Starting Sequence Number (see Figure 9-37)
1635 * This structure represents the "BlockAckReq frame format"
1636 * as described in IEEE Std 802.11-2020 section 9.3.1.7.
1638 struct ieee80211_bar {
1639 __le16 frame_control;
1644 __le16 start_seq_num;
1645 } __packed __aligned(2);
1647 /* 802.11 BA(R) control masks */
1648 #define IEEE80211_BAR_CTRL_ACK_POLICY_NORMAL 0x0000
1649 #define IEEE80211_BAR_CTRL_MULTI_TID 0x0002
1650 #define IEEE80211_BAR_CTRL_CBMTID_COMPRESSED_BA 0x0004
1651 #define IEEE80211_BAR_CTRL_TID_INFO_MASK 0xf000
1652 #define IEEE80211_BAR_CTRL_TID_INFO_SHIFT 12
1655 * struct ieee80211_ba - HT Block Ack
1657 * This structure refers to "HT BlockAck" as
1658 * described in 802.11n draft section 7.2.1.8.1
1660 struct ieee80211_ba {
1661 __le16 frame_control;
1667 __le16 start_seq_num;
1671 #define IEEE80211_HT_MCS_MASK_LEN 10
1674 * struct ieee80211_mcs_info - Supported MCS Set field
1676 * @rx_highest: highest supported RX rate. If set represents
1677 * the highest supported RX data rate in units of 1 Mbps.
1678 * If this field is 0 this value should not be used to
1679 * consider the highest RX data rate supported.
1680 * @tx_params: TX parameters
1681 * @reserved: Reserved bits
1683 * This structure represents the "Supported MCS Set field" as
1684 * described in IEEE Std 802.11-2020 section 9.4.2.55.4.
1686 struct ieee80211_mcs_info {
1687 u8 rx_mask[IEEE80211_HT_MCS_MASK_LEN];
1693 /* 802.11n HT capability MSC set */
1694 #define IEEE80211_HT_MCS_RX_HIGHEST_MASK 0x3ff
1695 #define IEEE80211_HT_MCS_TX_DEFINED 0x01
1696 #define IEEE80211_HT_MCS_TX_RX_DIFF 0x02
1697 /* value 0 == 1 stream etc */
1698 #define IEEE80211_HT_MCS_TX_MAX_STREAMS_MASK 0x0C
1699 #define IEEE80211_HT_MCS_TX_MAX_STREAMS_SHIFT 2
1700 #define IEEE80211_HT_MCS_TX_MAX_STREAMS 4
1701 #define IEEE80211_HT_MCS_TX_UNEQUAL_MODULATION 0x10
1704 * 802.11n D5.0 20.3.5 / 20.6 says:
1705 * - indices 0 to 7 and 32 are single spatial stream
1706 * - 8 to 31 are multiple spatial streams using equal modulation
1707 * [8..15 for two streams, 16..23 for three and 24..31 for four]
1708 * - remainder are multiple spatial streams using unequal modulation
1710 #define IEEE80211_HT_MCS_UNEQUAL_MODULATION_START 33
1711 #define IEEE80211_HT_MCS_UNEQUAL_MODULATION_START_BYTE \
1712 (IEEE80211_HT_MCS_UNEQUAL_MODULATION_START / 8)
1715 * struct ieee80211_ht_cap - HT capabilities element
1716 * @cap_info: HT Capability Information
1717 * @ampdu_params_info: A-MPDU Parameters
1718 * @mcs: Supported MCS Set
1719 * @extended_ht_cap_info: HT Extended Capabilities
1720 * @tx_BF_cap_info: Transmit Beamforming Capabilities
1721 * @antenna_selection_info: ASEL Capability
1723 * This structure represents the payload of the "HT Capabilities
1724 * element" as described in IEEE Std 802.11-2020 section 9.4.2.55.
1726 struct ieee80211_ht_cap {
1728 u8 ampdu_params_info;
1730 /* 16 bytes MCS information */
1731 struct ieee80211_mcs_info mcs;
1733 __le16 extended_ht_cap_info;
1734 __le32 tx_BF_cap_info;
1735 u8 antenna_selection_info;
1738 /* 802.11n HT capabilities masks (for cap_info) */
1739 #define IEEE80211_HT_CAP_LDPC_CODING 0x0001
1740 #define IEEE80211_HT_CAP_SUP_WIDTH_20_40 0x0002
1741 #define IEEE80211_HT_CAP_SM_PS 0x000C
1742 #define IEEE80211_HT_CAP_SM_PS_SHIFT 2
1743 #define IEEE80211_HT_CAP_GRN_FLD 0x0010
1744 #define IEEE80211_HT_CAP_SGI_20 0x0020
1745 #define IEEE80211_HT_CAP_SGI_40 0x0040
1746 #define IEEE80211_HT_CAP_TX_STBC 0x0080
1747 #define IEEE80211_HT_CAP_RX_STBC 0x0300
1748 #define IEEE80211_HT_CAP_RX_STBC_SHIFT 8
1749 #define IEEE80211_HT_CAP_DELAY_BA 0x0400
1750 #define IEEE80211_HT_CAP_MAX_AMSDU 0x0800
1751 #define IEEE80211_HT_CAP_DSSSCCK40 0x1000
1752 #define IEEE80211_HT_CAP_RESERVED 0x2000
1753 #define IEEE80211_HT_CAP_40MHZ_INTOLERANT 0x4000
1754 #define IEEE80211_HT_CAP_LSIG_TXOP_PROT 0x8000
1756 /* 802.11n HT extended capabilities masks (for extended_ht_cap_info) */
1757 #define IEEE80211_HT_EXT_CAP_PCO 0x0001
1758 #define IEEE80211_HT_EXT_CAP_PCO_TIME 0x0006
1759 #define IEEE80211_HT_EXT_CAP_PCO_TIME_SHIFT 1
1760 #define IEEE80211_HT_EXT_CAP_MCS_FB 0x0300
1761 #define IEEE80211_HT_EXT_CAP_MCS_FB_SHIFT 8
1762 #define IEEE80211_HT_EXT_CAP_HTC_SUP 0x0400
1763 #define IEEE80211_HT_EXT_CAP_RD_RESPONDER 0x0800
1765 /* 802.11n HT capability AMPDU settings (for ampdu_params_info) */
1766 #define IEEE80211_HT_AMPDU_PARM_FACTOR 0x03
1767 #define IEEE80211_HT_AMPDU_PARM_DENSITY 0x1C
1768 #define IEEE80211_HT_AMPDU_PARM_DENSITY_SHIFT 2
1771 * Maximum length of AMPDU that the STA can receive in high-throughput (HT).
1772 * Length = 2 ^ (13 + max_ampdu_length_exp) - 1 (octets)
1774 enum ieee80211_max_ampdu_length_exp {
1775 IEEE80211_HT_MAX_AMPDU_8K = 0,
1776 IEEE80211_HT_MAX_AMPDU_16K = 1,
1777 IEEE80211_HT_MAX_AMPDU_32K = 2,
1778 IEEE80211_HT_MAX_AMPDU_64K = 3
1782 * Maximum length of AMPDU that the STA can receive in VHT.
1783 * Length = 2 ^ (13 + max_ampdu_length_exp) - 1 (octets)
1785 enum ieee80211_vht_max_ampdu_length_exp {
1786 IEEE80211_VHT_MAX_AMPDU_8K = 0,
1787 IEEE80211_VHT_MAX_AMPDU_16K = 1,
1788 IEEE80211_VHT_MAX_AMPDU_32K = 2,
1789 IEEE80211_VHT_MAX_AMPDU_64K = 3,
1790 IEEE80211_VHT_MAX_AMPDU_128K = 4,
1791 IEEE80211_VHT_MAX_AMPDU_256K = 5,
1792 IEEE80211_VHT_MAX_AMPDU_512K = 6,
1793 IEEE80211_VHT_MAX_AMPDU_1024K = 7
1796 #define IEEE80211_HT_MAX_AMPDU_FACTOR 13
1798 /* Minimum MPDU start spacing */
1799 enum ieee80211_min_mpdu_spacing {
1800 IEEE80211_HT_MPDU_DENSITY_NONE = 0, /* No restriction */
1801 IEEE80211_HT_MPDU_DENSITY_0_25 = 1, /* 1/4 usec */
1802 IEEE80211_HT_MPDU_DENSITY_0_5 = 2, /* 1/2 usec */
1803 IEEE80211_HT_MPDU_DENSITY_1 = 3, /* 1 usec */
1804 IEEE80211_HT_MPDU_DENSITY_2 = 4, /* 2 usec */
1805 IEEE80211_HT_MPDU_DENSITY_4 = 5, /* 4 usec */
1806 IEEE80211_HT_MPDU_DENSITY_8 = 6, /* 8 usec */
1807 IEEE80211_HT_MPDU_DENSITY_16 = 7 /* 16 usec */
1811 * struct ieee80211_ht_operation - HT operation IE
1812 * @primary_chan: Primary Channel
1813 * @ht_param: HT Operation Information parameters
1814 * @operation_mode: HT Operation Information operation mode
1815 * @stbc_param: HT Operation Information STBC params
1816 * @basic_set: Basic HT-MCS Set
1818 * This structure represents the payload of the "HT Operation
1819 * element" as described in IEEE Std 802.11-2020 section 9.4.2.56.
1821 struct ieee80211_ht_operation {
1824 __le16 operation_mode;
1830 #define IEEE80211_HT_PARAM_CHA_SEC_OFFSET 0x03
1831 #define IEEE80211_HT_PARAM_CHA_SEC_NONE 0x00
1832 #define IEEE80211_HT_PARAM_CHA_SEC_ABOVE 0x01
1833 #define IEEE80211_HT_PARAM_CHA_SEC_BELOW 0x03
1834 #define IEEE80211_HT_PARAM_CHAN_WIDTH_ANY 0x04
1835 #define IEEE80211_HT_PARAM_RIFS_MODE 0x08
1837 /* for operation_mode */
1838 #define IEEE80211_HT_OP_MODE_PROTECTION 0x0003
1839 #define IEEE80211_HT_OP_MODE_PROTECTION_NONE 0
1840 #define IEEE80211_HT_OP_MODE_PROTECTION_NONMEMBER 1
1841 #define IEEE80211_HT_OP_MODE_PROTECTION_20MHZ 2
1842 #define IEEE80211_HT_OP_MODE_PROTECTION_NONHT_MIXED 3
1843 #define IEEE80211_HT_OP_MODE_NON_GF_STA_PRSNT 0x0004
1844 #define IEEE80211_HT_OP_MODE_NON_HT_STA_PRSNT 0x0010
1845 #define IEEE80211_HT_OP_MODE_CCFS2_SHIFT 5
1846 #define IEEE80211_HT_OP_MODE_CCFS2_MASK 0x1fe0
1848 /* for stbc_param */
1849 #define IEEE80211_HT_STBC_PARAM_DUAL_BEACON 0x0040
1850 #define IEEE80211_HT_STBC_PARAM_DUAL_CTS_PROT 0x0080
1851 #define IEEE80211_HT_STBC_PARAM_STBC_BEACON 0x0100
1852 #define IEEE80211_HT_STBC_PARAM_LSIG_TXOP_FULLPROT 0x0200
1853 #define IEEE80211_HT_STBC_PARAM_PCO_ACTIVE 0x0400
1854 #define IEEE80211_HT_STBC_PARAM_PCO_PHASE 0x0800
1857 /* block-ack parameters */
1858 #define IEEE80211_ADDBA_PARAM_AMSDU_MASK 0x0001
1859 #define IEEE80211_ADDBA_PARAM_POLICY_MASK 0x0002
1860 #define IEEE80211_ADDBA_PARAM_TID_MASK 0x003C
1861 #define IEEE80211_ADDBA_PARAM_BUF_SIZE_MASK 0xFFC0
1862 #define IEEE80211_DELBA_PARAM_TID_MASK 0xF000
1863 #define IEEE80211_DELBA_PARAM_INITIATOR_MASK 0x0800
1866 * A-MPDU buffer sizes
1867 * According to HT size varies from 8 to 64 frames
1868 * HE adds the ability to have up to 256 frames.
1869 * EHT adds the ability to have up to 1K frames.
1871 #define IEEE80211_MIN_AMPDU_BUF 0x8
1872 #define IEEE80211_MAX_AMPDU_BUF_HT 0x40
1873 #define IEEE80211_MAX_AMPDU_BUF_HE 0x100
1874 #define IEEE80211_MAX_AMPDU_BUF_EHT 0x400
1877 /* Spatial Multiplexing Power Save Modes (for capability) */
1878 #define WLAN_HT_CAP_SM_PS_STATIC 0
1879 #define WLAN_HT_CAP_SM_PS_DYNAMIC 1
1880 #define WLAN_HT_CAP_SM_PS_INVALID 2
1881 #define WLAN_HT_CAP_SM_PS_DISABLED 3
1883 /* for SM power control field lower two bits */
1884 #define WLAN_HT_SMPS_CONTROL_DISABLED 0
1885 #define WLAN_HT_SMPS_CONTROL_STATIC 1
1886 #define WLAN_HT_SMPS_CONTROL_DYNAMIC 3
1889 * struct ieee80211_vht_mcs_info - VHT MCS information
1890 * @rx_mcs_map: RX MCS map 2 bits for each stream, total 8 streams
1891 * @rx_highest: Indicates highest long GI VHT PPDU data rate
1892 * STA can receive. Rate expressed in units of 1 Mbps.
1893 * If this field is 0 this value should not be used to
1894 * consider the highest RX data rate supported.
1895 * The top 3 bits of this field indicate the Maximum NSTS,total
1896 * (a beamformee capability.)
1897 * @tx_mcs_map: TX MCS map 2 bits for each stream, total 8 streams
1898 * @tx_highest: Indicates highest long GI VHT PPDU data rate
1899 * STA can transmit. Rate expressed in units of 1 Mbps.
1900 * If this field is 0 this value should not be used to
1901 * consider the highest TX data rate supported.
1902 * The top 2 bits of this field are reserved, the
1903 * 3rd bit from the top indiciates VHT Extended NSS BW
1906 struct ieee80211_vht_mcs_info {
1913 /* for rx_highest */
1914 #define IEEE80211_VHT_MAX_NSTS_TOTAL_SHIFT 13
1915 #define IEEE80211_VHT_MAX_NSTS_TOTAL_MASK (7 << IEEE80211_VHT_MAX_NSTS_TOTAL_SHIFT)
1917 /* for tx_highest */
1918 #define IEEE80211_VHT_EXT_NSS_BW_CAPABLE (1 << 13)
1921 * enum ieee80211_vht_mcs_support - VHT MCS support definitions
1922 * @IEEE80211_VHT_MCS_SUPPORT_0_7: MCSes 0-7 are supported for the
1924 * @IEEE80211_VHT_MCS_SUPPORT_0_8: MCSes 0-8 are supported
1925 * @IEEE80211_VHT_MCS_SUPPORT_0_9: MCSes 0-9 are supported
1926 * @IEEE80211_VHT_MCS_NOT_SUPPORTED: This number of streams isn't supported
1928 * These definitions are used in each 2-bit subfield of the @rx_mcs_map
1929 * and @tx_mcs_map fields of &struct ieee80211_vht_mcs_info, which are
1930 * both split into 8 subfields by number of streams. These values indicate
1931 * which MCSes are supported for the number of streams the value appears
1934 enum ieee80211_vht_mcs_support {
1935 IEEE80211_VHT_MCS_SUPPORT_0_7 = 0,
1936 IEEE80211_VHT_MCS_SUPPORT_0_8 = 1,
1937 IEEE80211_VHT_MCS_SUPPORT_0_9 = 2,
1938 IEEE80211_VHT_MCS_NOT_SUPPORTED = 3,
1942 * struct ieee80211_vht_cap - VHT capabilities
1944 * This structure is the "VHT capabilities element" as
1945 * described in 802.11ac D3.0 8.4.2.160
1946 * @vht_cap_info: VHT capability info
1947 * @supp_mcs: VHT MCS supported rates
1949 struct ieee80211_vht_cap {
1950 __le32 vht_cap_info;
1951 struct ieee80211_vht_mcs_info supp_mcs;
1955 * enum ieee80211_vht_chanwidth - VHT channel width
1956 * @IEEE80211_VHT_CHANWIDTH_USE_HT: use the HT operation IE to
1957 * determine the channel width (20 or 40 MHz)
1958 * @IEEE80211_VHT_CHANWIDTH_80MHZ: 80 MHz bandwidth
1959 * @IEEE80211_VHT_CHANWIDTH_160MHZ: 160 MHz bandwidth
1960 * @IEEE80211_VHT_CHANWIDTH_80P80MHZ: 80+80 MHz bandwidth
1962 enum ieee80211_vht_chanwidth {
1963 IEEE80211_VHT_CHANWIDTH_USE_HT = 0,
1964 IEEE80211_VHT_CHANWIDTH_80MHZ = 1,
1965 IEEE80211_VHT_CHANWIDTH_160MHZ = 2,
1966 IEEE80211_VHT_CHANWIDTH_80P80MHZ = 3,
1970 * struct ieee80211_vht_operation - VHT operation IE
1972 * This structure is the "VHT operation element" as
1973 * described in 802.11ac D3.0 8.4.2.161
1974 * @chan_width: Operating channel width
1975 * @center_freq_seg0_idx: center freq segment 0 index
1976 * @center_freq_seg1_idx: center freq segment 1 index
1977 * @basic_mcs_set: VHT Basic MCS rate set
1979 struct ieee80211_vht_operation {
1981 u8 center_freq_seg0_idx;
1982 u8 center_freq_seg1_idx;
1983 __le16 basic_mcs_set;
1987 * struct ieee80211_he_cap_elem - HE capabilities element
1988 * @mac_cap_info: HE MAC Capabilities Information
1989 * @phy_cap_info: HE PHY Capabilities Information
1991 * This structure represents the fixed fields of the payload of the
1992 * "HE capabilities element" as described in IEEE Std 802.11ax-2021
1993 * sections 9.4.2.248.2 and 9.4.2.248.3.
1995 struct ieee80211_he_cap_elem {
1997 u8 phy_cap_info[11];
2000 #define IEEE80211_TX_RX_MCS_NSS_DESC_MAX_LEN 5
2003 * enum ieee80211_he_mcs_support - HE MCS support definitions
2004 * @IEEE80211_HE_MCS_SUPPORT_0_7: MCSes 0-7 are supported for the
2006 * @IEEE80211_HE_MCS_SUPPORT_0_9: MCSes 0-9 are supported
2007 * @IEEE80211_HE_MCS_SUPPORT_0_11: MCSes 0-11 are supported
2008 * @IEEE80211_HE_MCS_NOT_SUPPORTED: This number of streams isn't supported
2010 * These definitions are used in each 2-bit subfield of the rx_mcs_*
2011 * and tx_mcs_* fields of &struct ieee80211_he_mcs_nss_supp, which are
2012 * both split into 8 subfields by number of streams. These values indicate
2013 * which MCSes are supported for the number of streams the value appears
2016 enum ieee80211_he_mcs_support {
2017 IEEE80211_HE_MCS_SUPPORT_0_7 = 0,
2018 IEEE80211_HE_MCS_SUPPORT_0_9 = 1,
2019 IEEE80211_HE_MCS_SUPPORT_0_11 = 2,
2020 IEEE80211_HE_MCS_NOT_SUPPORTED = 3,
2024 * struct ieee80211_he_mcs_nss_supp - HE Tx/Rx HE MCS NSS Support Field
2026 * This structure holds the data required for the Tx/Rx HE MCS NSS Support Field
2027 * described in P802.11ax_D2.0 section 9.4.2.237.4
2029 * @rx_mcs_80: Rx MCS map 2 bits for each stream, total 8 streams, for channel
2030 * widths less than 80MHz.
2031 * @tx_mcs_80: Tx MCS map 2 bits for each stream, total 8 streams, for channel
2032 * widths less than 80MHz.
2033 * @rx_mcs_160: Rx MCS map 2 bits for each stream, total 8 streams, for channel
2035 * @tx_mcs_160: Tx MCS map 2 bits for each stream, total 8 streams, for channel
2037 * @rx_mcs_80p80: Rx MCS map 2 bits for each stream, total 8 streams, for
2038 * channel width 80p80MHz.
2039 * @tx_mcs_80p80: Tx MCS map 2 bits for each stream, total 8 streams, for
2040 * channel width 80p80MHz.
2042 struct ieee80211_he_mcs_nss_supp {
2047 __le16 rx_mcs_80p80;
2048 __le16 tx_mcs_80p80;
2052 * struct ieee80211_he_operation - HE Operation element
2053 * @he_oper_params: HE Operation Parameters + BSS Color Information
2054 * @he_mcs_nss_set: Basic HE-MCS And NSS Set
2055 * @optional: Optional fields VHT Operation Information, Max Co-Hosted
2056 * BSSID Indicator, and 6 GHz Operation Information
2058 * This structure represents the payload of the "HE Operation
2059 * element" as described in IEEE Std 802.11ax-2021 section 9.4.2.249.
2061 struct ieee80211_he_operation {
2062 __le32 he_oper_params;
2063 __le16 he_mcs_nss_set;
2068 * struct ieee80211_he_spr - Spatial Reuse Parameter Set element
2069 * @he_sr_control: SR Control
2070 * @optional: Optional fields Non-SRG OBSS PD Max Offset, SRG OBSS PD
2071 * Min Offset, SRG OBSS PD Max Offset, SRG BSS Color
2072 * Bitmap, and SRG Partial BSSID Bitmap
2074 * This structure represents the payload of the "Spatial Reuse
2075 * Parameter Set element" as described in IEEE Std 802.11ax-2021
2076 * section 9.4.2.252.
2078 struct ieee80211_he_spr {
2084 * struct ieee80211_he_mu_edca_param_ac_rec - MU AC Parameter Record field
2086 * @ecw_min_max: ECWmin/ECWmax
2087 * @mu_edca_timer: MU EDCA Timer
2089 * This structure represents the "MU AC Parameter Record" as described
2090 * in IEEE Std 802.11ax-2021 section 9.4.2.251, Figure 9-788p.
2092 struct ieee80211_he_mu_edca_param_ac_rec {
2099 * struct ieee80211_mu_edca_param_set - MU EDCA Parameter Set element
2100 * @mu_qos_info: QoS Info
2101 * @ac_be: MU AC_BE Parameter Record
2102 * @ac_bk: MU AC_BK Parameter Record
2103 * @ac_vi: MU AC_VI Parameter Record
2104 * @ac_vo: MU AC_VO Parameter Record
2106 * This structure represents the payload of the "MU EDCA Parameter Set
2107 * element" as described in IEEE Std 802.11ax-2021 section 9.4.2.251.
2109 struct ieee80211_mu_edca_param_set {
2111 struct ieee80211_he_mu_edca_param_ac_rec ac_be;
2112 struct ieee80211_he_mu_edca_param_ac_rec ac_bk;
2113 struct ieee80211_he_mu_edca_param_ac_rec ac_vi;
2114 struct ieee80211_he_mu_edca_param_ac_rec ac_vo;
2117 #define IEEE80211_EHT_MCS_NSS_RX 0x0f
2118 #define IEEE80211_EHT_MCS_NSS_TX 0xf0
2121 * struct ieee80211_eht_mcs_nss_supp_20mhz_only - EHT 20MHz only station max
2122 * supported NSS for per MCS.
2124 * For each field below, bits 0 - 3 indicate the maximal number of spatial
2125 * streams for Rx, and bits 4 - 7 indicate the maximal number of spatial streams
2128 * @rx_tx_mcs7_max_nss: indicates the maximum number of spatial streams
2129 * supported for reception and the maximum number of spatial streams
2130 * supported for transmission for MCS 0 - 7.
2131 * @rx_tx_mcs9_max_nss: indicates the maximum number of spatial streams
2132 * supported for reception and the maximum number of spatial streams
2133 * supported for transmission for MCS 8 - 9.
2134 * @rx_tx_mcs11_max_nss: indicates the maximum number of spatial streams
2135 * supported for reception and the maximum number of spatial streams
2136 * supported for transmission for MCS 10 - 11.
2137 * @rx_tx_mcs13_max_nss: indicates the maximum number of spatial streams
2138 * supported for reception and the maximum number of spatial streams
2139 * supported for transmission for MCS 12 - 13.
2140 * @rx_tx_max_nss: array of the previous fields for easier loop access
2142 struct ieee80211_eht_mcs_nss_supp_20mhz_only {
2145 u8 rx_tx_mcs7_max_nss;
2146 u8 rx_tx_mcs9_max_nss;
2147 u8 rx_tx_mcs11_max_nss;
2148 u8 rx_tx_mcs13_max_nss;
2150 u8 rx_tx_max_nss[4];
2155 * struct ieee80211_eht_mcs_nss_supp_bw - EHT max supported NSS per MCS (except
2156 * 20MHz only stations).
2158 * For each field below, bits 0 - 3 indicate the maximal number of spatial
2159 * streams for Rx, and bits 4 - 7 indicate the maximal number of spatial streams
2162 * @rx_tx_mcs9_max_nss: indicates the maximum number of spatial streams
2163 * supported for reception and the maximum number of spatial streams
2164 * supported for transmission for MCS 0 - 9.
2165 * @rx_tx_mcs11_max_nss: indicates the maximum number of spatial streams
2166 * supported for reception and the maximum number of spatial streams
2167 * supported for transmission for MCS 10 - 11.
2168 * @rx_tx_mcs13_max_nss: indicates the maximum number of spatial streams
2169 * supported for reception and the maximum number of spatial streams
2170 * supported for transmission for MCS 12 - 13.
2171 * @rx_tx_max_nss: array of the previous fields for easier loop access
2173 struct ieee80211_eht_mcs_nss_supp_bw {
2176 u8 rx_tx_mcs9_max_nss;
2177 u8 rx_tx_mcs11_max_nss;
2178 u8 rx_tx_mcs13_max_nss;
2180 u8 rx_tx_max_nss[3];
2185 * struct ieee80211_eht_cap_elem_fixed - EHT capabilities fixed data
2187 * This structure is the "EHT Capabilities element" fixed fields as
2188 * described in P802.11be_D2.0 section 9.4.2.313.
2190 * @mac_cap_info: MAC capabilities, see IEEE80211_EHT_MAC_CAP*
2191 * @phy_cap_info: PHY capabilities, see IEEE80211_EHT_PHY_CAP*
2193 struct ieee80211_eht_cap_elem_fixed {
2199 * struct ieee80211_eht_cap_elem - EHT capabilities element
2200 * @fixed: fixed parts, see &ieee80211_eht_cap_elem_fixed
2201 * @optional: optional parts
2203 struct ieee80211_eht_cap_elem {
2204 struct ieee80211_eht_cap_elem_fixed fixed;
2208 * Supported EHT-MCS And NSS Set field: 4, 3, 6 or 9 octets.
2209 * EHT PPE Thresholds field: variable length.
2214 #define IEEE80211_EHT_OPER_INFO_PRESENT 0x01
2215 #define IEEE80211_EHT_OPER_DISABLED_SUBCHANNEL_BITMAP_PRESENT 0x02
2216 #define IEEE80211_EHT_OPER_EHT_DEF_PE_DURATION 0x04
2217 #define IEEE80211_EHT_OPER_GROUP_ADDRESSED_BU_IND_LIMIT 0x08
2218 #define IEEE80211_EHT_OPER_GROUP_ADDRESSED_BU_IND_EXP_MASK 0x30
2221 * struct ieee80211_eht_operation - eht operation element
2223 * This structure is the "EHT Operation Element" fields as
2224 * described in P802.11be_D2.0 section 9.4.2.311
2226 * @params: EHT operation element parameters. See &IEEE80211_EHT_OPER_*
2227 * @basic_mcs_nss: indicates the EHT-MCSs for each number of spatial streams in
2228 * EHT PPDUs that are supported by all EHT STAs in the BSS in transmit and
2230 * @optional: optional parts
2232 struct ieee80211_eht_operation {
2234 struct ieee80211_eht_mcs_nss_supp_20mhz_only basic_mcs_nss;
2239 * struct ieee80211_eht_operation_info - eht operation information
2241 * @control: EHT operation information control.
2242 * @ccfs0: defines a channel center frequency for a 20, 40, 80, 160, or 320 MHz
2244 * @ccfs1: defines a channel center frequency for a 160 or 320 MHz EHT BSS.
2245 * @optional: optional parts
2247 struct ieee80211_eht_operation_info {
2254 /* 802.11ac VHT Capabilities */
2255 #define IEEE80211_VHT_CAP_MAX_MPDU_LENGTH_3895 0x00000000
2256 #define IEEE80211_VHT_CAP_MAX_MPDU_LENGTH_7991 0x00000001
2257 #define IEEE80211_VHT_CAP_MAX_MPDU_LENGTH_11454 0x00000002
2258 #define IEEE80211_VHT_CAP_MAX_MPDU_MASK 0x00000003
2259 #define IEEE80211_VHT_CAP_SUPP_CHAN_WIDTH_160MHZ 0x00000004
2260 #define IEEE80211_VHT_CAP_SUPP_CHAN_WIDTH_160_80PLUS80MHZ 0x00000008
2261 #define IEEE80211_VHT_CAP_SUPP_CHAN_WIDTH_MASK 0x0000000C
2262 #define IEEE80211_VHT_CAP_SUPP_CHAN_WIDTH_SHIFT 2
2263 #define IEEE80211_VHT_CAP_RXLDPC 0x00000010
2264 #define IEEE80211_VHT_CAP_SHORT_GI_80 0x00000020
2265 #define IEEE80211_VHT_CAP_SHORT_GI_160 0x00000040
2266 #define IEEE80211_VHT_CAP_TXSTBC 0x00000080
2267 #define IEEE80211_VHT_CAP_RXSTBC_1 0x00000100
2268 #define IEEE80211_VHT_CAP_RXSTBC_2 0x00000200
2269 #define IEEE80211_VHT_CAP_RXSTBC_3 0x00000300
2270 #define IEEE80211_VHT_CAP_RXSTBC_4 0x00000400
2271 #define IEEE80211_VHT_CAP_RXSTBC_MASK 0x00000700
2272 #define IEEE80211_VHT_CAP_RXSTBC_SHIFT 8
2273 #define IEEE80211_VHT_CAP_SU_BEAMFORMER_CAPABLE 0x00000800
2274 #define IEEE80211_VHT_CAP_SU_BEAMFORMEE_CAPABLE 0x00001000
2275 #define IEEE80211_VHT_CAP_BEAMFORMEE_STS_SHIFT 13
2276 #define IEEE80211_VHT_CAP_BEAMFORMEE_STS_MASK \
2277 (7 << IEEE80211_VHT_CAP_BEAMFORMEE_STS_SHIFT)
2278 #define IEEE80211_VHT_CAP_SOUNDING_DIMENSIONS_SHIFT 16
2279 #define IEEE80211_VHT_CAP_SOUNDING_DIMENSIONS_MASK \
2280 (7 << IEEE80211_VHT_CAP_SOUNDING_DIMENSIONS_SHIFT)
2281 #define IEEE80211_VHT_CAP_MU_BEAMFORMER_CAPABLE 0x00080000
2282 #define IEEE80211_VHT_CAP_MU_BEAMFORMEE_CAPABLE 0x00100000
2283 #define IEEE80211_VHT_CAP_VHT_TXOP_PS 0x00200000
2284 #define IEEE80211_VHT_CAP_HTC_VHT 0x00400000
2285 #define IEEE80211_VHT_CAP_MAX_A_MPDU_LENGTH_EXPONENT_SHIFT 23
2286 #define IEEE80211_VHT_CAP_MAX_A_MPDU_LENGTH_EXPONENT_MASK \
2287 (7 << IEEE80211_VHT_CAP_MAX_A_MPDU_LENGTH_EXPONENT_SHIFT)
2288 #define IEEE80211_VHT_CAP_VHT_LINK_ADAPTATION_VHT_UNSOL_MFB 0x08000000
2289 #define IEEE80211_VHT_CAP_VHT_LINK_ADAPTATION_VHT_MRQ_MFB 0x0c000000
2290 #define IEEE80211_VHT_CAP_RX_ANTENNA_PATTERN 0x10000000
2291 #define IEEE80211_VHT_CAP_TX_ANTENNA_PATTERN 0x20000000
2292 #define IEEE80211_VHT_CAP_EXT_NSS_BW_SHIFT 30
2293 #define IEEE80211_VHT_CAP_EXT_NSS_BW_MASK 0xc0000000
2296 * ieee80211_get_vht_max_nss - return max NSS for a given bandwidth/MCS
2297 * @cap: VHT capabilities of the peer
2298 * @bw: bandwidth to use
2299 * @mcs: MCS index to use
2300 * @ext_nss_bw_capable: indicates whether or not the local transmitter
2301 * (rate scaling algorithm) can deal with the new logic
2302 * (dot11VHTExtendedNSSBWCapable)
2303 * @max_vht_nss: current maximum NSS as advertised by the STA in
2304 * operating mode notification, can be 0 in which case the
2305 * capability data will be used to derive this (from MCS support)
2307 * Due to the VHT Extended NSS Bandwidth Support, the maximum NSS can
2308 * vary for a given BW/MCS. This function parses the data.
2310 * Note: This function is exported by cfg80211.
2312 int ieee80211_get_vht_max_nss(struct ieee80211_vht_cap *cap,
2313 enum ieee80211_vht_chanwidth bw,
2314 int mcs, bool ext_nss_bw_capable,
2315 unsigned int max_vht_nss);
2318 * enum ieee80211_ap_reg_power - regulatory power for a Access Point
2320 * @IEEE80211_REG_UNSET_AP: Access Point has no regulatory power mode
2321 * @IEEE80211_REG_LPI_AP: Indoor Access Point
2322 * @IEEE80211_REG_SP_AP: Standard power Access Point
2323 * @IEEE80211_REG_VLP_AP: Very low power Access Point
2324 * @IEEE80211_REG_AP_POWER_AFTER_LAST: internal
2325 * @IEEE80211_REG_AP_POWER_MAX: maximum value
2327 enum ieee80211_ap_reg_power {
2328 IEEE80211_REG_UNSET_AP,
2329 IEEE80211_REG_LPI_AP,
2330 IEEE80211_REG_SP_AP,
2331 IEEE80211_REG_VLP_AP,
2332 IEEE80211_REG_AP_POWER_AFTER_LAST,
2333 IEEE80211_REG_AP_POWER_MAX =
2334 IEEE80211_REG_AP_POWER_AFTER_LAST - 1,
2338 * enum ieee80211_client_reg_power - regulatory power for a client
2340 * @IEEE80211_REG_UNSET_CLIENT: Client has no regulatory power mode
2341 * @IEEE80211_REG_DEFAULT_CLIENT: Default Client
2342 * @IEEE80211_REG_SUBORDINATE_CLIENT: Subordinate Client
2343 * @IEEE80211_REG_CLIENT_POWER_AFTER_LAST: internal
2344 * @IEEE80211_REG_CLIENT_POWER_MAX: maximum value
2346 enum ieee80211_client_reg_power {
2347 IEEE80211_REG_UNSET_CLIENT,
2348 IEEE80211_REG_DEFAULT_CLIENT,
2349 IEEE80211_REG_SUBORDINATE_CLIENT,
2350 IEEE80211_REG_CLIENT_POWER_AFTER_LAST,
2351 IEEE80211_REG_CLIENT_POWER_MAX =
2352 IEEE80211_REG_CLIENT_POWER_AFTER_LAST - 1,
2355 /* 802.11ax HE MAC capabilities */
2356 #define IEEE80211_HE_MAC_CAP0_HTC_HE 0x01
2357 #define IEEE80211_HE_MAC_CAP0_TWT_REQ 0x02
2358 #define IEEE80211_HE_MAC_CAP0_TWT_RES 0x04
2359 #define IEEE80211_HE_MAC_CAP0_DYNAMIC_FRAG_NOT_SUPP 0x00
2360 #define IEEE80211_HE_MAC_CAP0_DYNAMIC_FRAG_LEVEL_1 0x08
2361 #define IEEE80211_HE_MAC_CAP0_DYNAMIC_FRAG_LEVEL_2 0x10
2362 #define IEEE80211_HE_MAC_CAP0_DYNAMIC_FRAG_LEVEL_3 0x18
2363 #define IEEE80211_HE_MAC_CAP0_DYNAMIC_FRAG_MASK 0x18
2364 #define IEEE80211_HE_MAC_CAP0_MAX_NUM_FRAG_MSDU_1 0x00
2365 #define IEEE80211_HE_MAC_CAP0_MAX_NUM_FRAG_MSDU_2 0x20
2366 #define IEEE80211_HE_MAC_CAP0_MAX_NUM_FRAG_MSDU_4 0x40
2367 #define IEEE80211_HE_MAC_CAP0_MAX_NUM_FRAG_MSDU_8 0x60
2368 #define IEEE80211_HE_MAC_CAP0_MAX_NUM_FRAG_MSDU_16 0x80
2369 #define IEEE80211_HE_MAC_CAP0_MAX_NUM_FRAG_MSDU_32 0xa0
2370 #define IEEE80211_HE_MAC_CAP0_MAX_NUM_FRAG_MSDU_64 0xc0
2371 #define IEEE80211_HE_MAC_CAP0_MAX_NUM_FRAG_MSDU_UNLIMITED 0xe0
2372 #define IEEE80211_HE_MAC_CAP0_MAX_NUM_FRAG_MSDU_MASK 0xe0
2374 #define IEEE80211_HE_MAC_CAP1_MIN_FRAG_SIZE_UNLIMITED 0x00
2375 #define IEEE80211_HE_MAC_CAP1_MIN_FRAG_SIZE_128 0x01
2376 #define IEEE80211_HE_MAC_CAP1_MIN_FRAG_SIZE_256 0x02
2377 #define IEEE80211_HE_MAC_CAP1_MIN_FRAG_SIZE_512 0x03
2378 #define IEEE80211_HE_MAC_CAP1_MIN_FRAG_SIZE_MASK 0x03
2379 #define IEEE80211_HE_MAC_CAP1_TF_MAC_PAD_DUR_0US 0x00
2380 #define IEEE80211_HE_MAC_CAP1_TF_MAC_PAD_DUR_8US 0x04
2381 #define IEEE80211_HE_MAC_CAP1_TF_MAC_PAD_DUR_16US 0x08
2382 #define IEEE80211_HE_MAC_CAP1_TF_MAC_PAD_DUR_MASK 0x0c
2383 #define IEEE80211_HE_MAC_CAP1_MULTI_TID_AGG_RX_QOS_1 0x00
2384 #define IEEE80211_HE_MAC_CAP1_MULTI_TID_AGG_RX_QOS_2 0x10
2385 #define IEEE80211_HE_MAC_CAP1_MULTI_TID_AGG_RX_QOS_3 0x20
2386 #define IEEE80211_HE_MAC_CAP1_MULTI_TID_AGG_RX_QOS_4 0x30
2387 #define IEEE80211_HE_MAC_CAP1_MULTI_TID_AGG_RX_QOS_5 0x40
2388 #define IEEE80211_HE_MAC_CAP1_MULTI_TID_AGG_RX_QOS_6 0x50
2389 #define IEEE80211_HE_MAC_CAP1_MULTI_TID_AGG_RX_QOS_7 0x60
2390 #define IEEE80211_HE_MAC_CAP1_MULTI_TID_AGG_RX_QOS_8 0x70
2391 #define IEEE80211_HE_MAC_CAP1_MULTI_TID_AGG_RX_QOS_MASK 0x70
2393 /* Link adaptation is split between byte HE_MAC_CAP1 and
2394 * HE_MAC_CAP2. It should be set only if IEEE80211_HE_MAC_CAP0_HTC_HE
2395 * in which case the following values apply:
2398 * 2 = Unsolicited feedback.
2401 #define IEEE80211_HE_MAC_CAP1_LINK_ADAPTATION 0x80
2403 #define IEEE80211_HE_MAC_CAP2_LINK_ADAPTATION 0x01
2404 #define IEEE80211_HE_MAC_CAP2_ALL_ACK 0x02
2405 #define IEEE80211_HE_MAC_CAP2_TRS 0x04
2406 #define IEEE80211_HE_MAC_CAP2_BSR 0x08
2407 #define IEEE80211_HE_MAC_CAP2_BCAST_TWT 0x10
2408 #define IEEE80211_HE_MAC_CAP2_32BIT_BA_BITMAP 0x20
2409 #define IEEE80211_HE_MAC_CAP2_MU_CASCADING 0x40
2410 #define IEEE80211_HE_MAC_CAP2_ACK_EN 0x80
2412 #define IEEE80211_HE_MAC_CAP3_OMI_CONTROL 0x02
2413 #define IEEE80211_HE_MAC_CAP3_OFDMA_RA 0x04
2415 /* The maximum length of an A-MDPU is defined by the combination of the Maximum
2416 * A-MDPU Length Exponent field in the HT capabilities, VHT capabilities and the
2417 * same field in the HE capabilities.
2419 #define IEEE80211_HE_MAC_CAP3_MAX_AMPDU_LEN_EXP_EXT_0 0x00
2420 #define IEEE80211_HE_MAC_CAP3_MAX_AMPDU_LEN_EXP_EXT_1 0x08
2421 #define IEEE80211_HE_MAC_CAP3_MAX_AMPDU_LEN_EXP_EXT_2 0x10
2422 #define IEEE80211_HE_MAC_CAP3_MAX_AMPDU_LEN_EXP_EXT_3 0x18
2423 #define IEEE80211_HE_MAC_CAP3_MAX_AMPDU_LEN_EXP_MASK 0x18
2424 #define IEEE80211_HE_MAC_CAP3_AMSDU_FRAG 0x20
2425 #define IEEE80211_HE_MAC_CAP3_FLEX_TWT_SCHED 0x40
2426 #define IEEE80211_HE_MAC_CAP3_RX_CTRL_FRAME_TO_MULTIBSS 0x80
2428 #define IEEE80211_HE_MAC_CAP4_BSRP_BQRP_A_MPDU_AGG 0x01
2429 #define IEEE80211_HE_MAC_CAP4_QTP 0x02
2430 #define IEEE80211_HE_MAC_CAP4_BQR 0x04
2431 #define IEEE80211_HE_MAC_CAP4_PSR_RESP 0x08
2432 #define IEEE80211_HE_MAC_CAP4_NDP_FB_REP 0x10
2433 #define IEEE80211_HE_MAC_CAP4_OPS 0x20
2434 #define IEEE80211_HE_MAC_CAP4_AMSDU_IN_AMPDU 0x40
2435 /* Multi TID agg TX is split between byte #4 and #5
2436 * The value is a combination of B39,B40,B41
2438 #define IEEE80211_HE_MAC_CAP4_MULTI_TID_AGG_TX_QOS_B39 0x80
2440 #define IEEE80211_HE_MAC_CAP5_MULTI_TID_AGG_TX_QOS_B40 0x01
2441 #define IEEE80211_HE_MAC_CAP5_MULTI_TID_AGG_TX_QOS_B41 0x02
2442 #define IEEE80211_HE_MAC_CAP5_SUBCHAN_SELECTIVE_TRANSMISSION 0x04
2443 #define IEEE80211_HE_MAC_CAP5_UL_2x996_TONE_RU 0x08
2444 #define IEEE80211_HE_MAC_CAP5_OM_CTRL_UL_MU_DATA_DIS_RX 0x10
2445 #define IEEE80211_HE_MAC_CAP5_HE_DYNAMIC_SM_PS 0x20
2446 #define IEEE80211_HE_MAC_CAP5_PUNCTURED_SOUNDING 0x40
2447 #define IEEE80211_HE_MAC_CAP5_HT_VHT_TRIG_FRAME_RX 0x80
2449 #define IEEE80211_HE_VHT_MAX_AMPDU_FACTOR 20
2450 #define IEEE80211_HE_HT_MAX_AMPDU_FACTOR 16
2451 #define IEEE80211_HE_6GHZ_MAX_AMPDU_FACTOR 13
2453 /* 802.11ax HE PHY capabilities */
2454 #define IEEE80211_HE_PHY_CAP0_CHANNEL_WIDTH_SET_40MHZ_IN_2G 0x02
2455 #define IEEE80211_HE_PHY_CAP0_CHANNEL_WIDTH_SET_40MHZ_80MHZ_IN_5G 0x04
2456 #define IEEE80211_HE_PHY_CAP0_CHANNEL_WIDTH_SET_160MHZ_IN_5G 0x08
2457 #define IEEE80211_HE_PHY_CAP0_CHANNEL_WIDTH_SET_80PLUS80_MHZ_IN_5G 0x10
2458 #define IEEE80211_HE_PHY_CAP0_CHANNEL_WIDTH_SET_MASK_ALL 0x1e
2460 #define IEEE80211_HE_PHY_CAP0_CHANNEL_WIDTH_SET_RU_MAPPING_IN_2G 0x20
2461 #define IEEE80211_HE_PHY_CAP0_CHANNEL_WIDTH_SET_RU_MAPPING_IN_5G 0x40
2462 #define IEEE80211_HE_PHY_CAP0_CHANNEL_WIDTH_SET_MASK 0xfe
2464 #define IEEE80211_HE_PHY_CAP1_PREAMBLE_PUNC_RX_80MHZ_ONLY_SECOND_20MHZ 0x01
2465 #define IEEE80211_HE_PHY_CAP1_PREAMBLE_PUNC_RX_80MHZ_ONLY_SECOND_40MHZ 0x02
2466 #define IEEE80211_HE_PHY_CAP1_PREAMBLE_PUNC_RX_160MHZ_ONLY_SECOND_20MHZ 0x04
2467 #define IEEE80211_HE_PHY_CAP1_PREAMBLE_PUNC_RX_160MHZ_ONLY_SECOND_40MHZ 0x08
2468 #define IEEE80211_HE_PHY_CAP1_PREAMBLE_PUNC_RX_MASK 0x0f
2469 #define IEEE80211_HE_PHY_CAP1_DEVICE_CLASS_A 0x10
2470 #define IEEE80211_HE_PHY_CAP1_LDPC_CODING_IN_PAYLOAD 0x20
2471 #define IEEE80211_HE_PHY_CAP1_HE_LTF_AND_GI_FOR_HE_PPDUS_0_8US 0x40
2472 /* Midamble RX/TX Max NSTS is split between byte #2 and byte #3 */
2473 #define IEEE80211_HE_PHY_CAP1_MIDAMBLE_RX_TX_MAX_NSTS 0x80
2475 #define IEEE80211_HE_PHY_CAP2_MIDAMBLE_RX_TX_MAX_NSTS 0x01
2476 #define IEEE80211_HE_PHY_CAP2_NDP_4x_LTF_AND_3_2US 0x02
2477 #define IEEE80211_HE_PHY_CAP2_STBC_TX_UNDER_80MHZ 0x04
2478 #define IEEE80211_HE_PHY_CAP2_STBC_RX_UNDER_80MHZ 0x08
2479 #define IEEE80211_HE_PHY_CAP2_DOPPLER_TX 0x10
2480 #define IEEE80211_HE_PHY_CAP2_DOPPLER_RX 0x20
2482 /* Note that the meaning of UL MU below is different between an AP and a non-AP
2483 * sta, where in the AP case it indicates support for Rx and in the non-AP sta
2484 * case it indicates support for Tx.
2486 #define IEEE80211_HE_PHY_CAP2_UL_MU_FULL_MU_MIMO 0x40
2487 #define IEEE80211_HE_PHY_CAP2_UL_MU_PARTIAL_MU_MIMO 0x80
2489 #define IEEE80211_HE_PHY_CAP3_DCM_MAX_CONST_TX_NO_DCM 0x00
2490 #define IEEE80211_HE_PHY_CAP3_DCM_MAX_CONST_TX_BPSK 0x01
2491 #define IEEE80211_HE_PHY_CAP3_DCM_MAX_CONST_TX_QPSK 0x02
2492 #define IEEE80211_HE_PHY_CAP3_DCM_MAX_CONST_TX_16_QAM 0x03
2493 #define IEEE80211_HE_PHY_CAP3_DCM_MAX_CONST_TX_MASK 0x03
2494 #define IEEE80211_HE_PHY_CAP3_DCM_MAX_TX_NSS_1 0x00
2495 #define IEEE80211_HE_PHY_CAP3_DCM_MAX_TX_NSS_2 0x04
2496 #define IEEE80211_HE_PHY_CAP3_DCM_MAX_CONST_RX_NO_DCM 0x00
2497 #define IEEE80211_HE_PHY_CAP3_DCM_MAX_CONST_RX_BPSK 0x08
2498 #define IEEE80211_HE_PHY_CAP3_DCM_MAX_CONST_RX_QPSK 0x10
2499 #define IEEE80211_HE_PHY_CAP3_DCM_MAX_CONST_RX_16_QAM 0x18
2500 #define IEEE80211_HE_PHY_CAP3_DCM_MAX_CONST_RX_MASK 0x18
2501 #define IEEE80211_HE_PHY_CAP3_DCM_MAX_RX_NSS_1 0x00
2502 #define IEEE80211_HE_PHY_CAP3_DCM_MAX_RX_NSS_2 0x20
2503 #define IEEE80211_HE_PHY_CAP3_RX_PARTIAL_BW_SU_IN_20MHZ_MU 0x40
2504 #define IEEE80211_HE_PHY_CAP3_SU_BEAMFORMER 0x80
2506 #define IEEE80211_HE_PHY_CAP4_SU_BEAMFORMEE 0x01
2507 #define IEEE80211_HE_PHY_CAP4_MU_BEAMFORMER 0x02
2509 /* Minimal allowed value of Max STS under 80MHz is 3 */
2510 #define IEEE80211_HE_PHY_CAP4_BEAMFORMEE_MAX_STS_UNDER_80MHZ_4 0x0c
2511 #define IEEE80211_HE_PHY_CAP4_BEAMFORMEE_MAX_STS_UNDER_80MHZ_5 0x10
2512 #define IEEE80211_HE_PHY_CAP4_BEAMFORMEE_MAX_STS_UNDER_80MHZ_6 0x14
2513 #define IEEE80211_HE_PHY_CAP4_BEAMFORMEE_MAX_STS_UNDER_80MHZ_7 0x18
2514 #define IEEE80211_HE_PHY_CAP4_BEAMFORMEE_MAX_STS_UNDER_80MHZ_8 0x1c
2515 #define IEEE80211_HE_PHY_CAP4_BEAMFORMEE_MAX_STS_UNDER_80MHZ_MASK 0x1c
2517 /* Minimal allowed value of Max STS above 80MHz is 3 */
2518 #define IEEE80211_HE_PHY_CAP4_BEAMFORMEE_MAX_STS_ABOVE_80MHZ_4 0x60
2519 #define IEEE80211_HE_PHY_CAP4_BEAMFORMEE_MAX_STS_ABOVE_80MHZ_5 0x80
2520 #define IEEE80211_HE_PHY_CAP4_BEAMFORMEE_MAX_STS_ABOVE_80MHZ_6 0xa0
2521 #define IEEE80211_HE_PHY_CAP4_BEAMFORMEE_MAX_STS_ABOVE_80MHZ_7 0xc0
2522 #define IEEE80211_HE_PHY_CAP4_BEAMFORMEE_MAX_STS_ABOVE_80MHZ_8 0xe0
2523 #define IEEE80211_HE_PHY_CAP4_BEAMFORMEE_MAX_STS_ABOVE_80MHZ_MASK 0xe0
2525 #define IEEE80211_HE_PHY_CAP5_BEAMFORMEE_NUM_SND_DIM_UNDER_80MHZ_1 0x00
2526 #define IEEE80211_HE_PHY_CAP5_BEAMFORMEE_NUM_SND_DIM_UNDER_80MHZ_2 0x01
2527 #define IEEE80211_HE_PHY_CAP5_BEAMFORMEE_NUM_SND_DIM_UNDER_80MHZ_3 0x02
2528 #define IEEE80211_HE_PHY_CAP5_BEAMFORMEE_NUM_SND_DIM_UNDER_80MHZ_4 0x03
2529 #define IEEE80211_HE_PHY_CAP5_BEAMFORMEE_NUM_SND_DIM_UNDER_80MHZ_5 0x04
2530 #define IEEE80211_HE_PHY_CAP5_BEAMFORMEE_NUM_SND_DIM_UNDER_80MHZ_6 0x05
2531 #define IEEE80211_HE_PHY_CAP5_BEAMFORMEE_NUM_SND_DIM_UNDER_80MHZ_7 0x06
2532 #define IEEE80211_HE_PHY_CAP5_BEAMFORMEE_NUM_SND_DIM_UNDER_80MHZ_8 0x07
2533 #define IEEE80211_HE_PHY_CAP5_BEAMFORMEE_NUM_SND_DIM_UNDER_80MHZ_MASK 0x07
2535 #define IEEE80211_HE_PHY_CAP5_BEAMFORMEE_NUM_SND_DIM_ABOVE_80MHZ_1 0x00
2536 #define IEEE80211_HE_PHY_CAP5_BEAMFORMEE_NUM_SND_DIM_ABOVE_80MHZ_2 0x08
2537 #define IEEE80211_HE_PHY_CAP5_BEAMFORMEE_NUM_SND_DIM_ABOVE_80MHZ_3 0x10
2538 #define IEEE80211_HE_PHY_CAP5_BEAMFORMEE_NUM_SND_DIM_ABOVE_80MHZ_4 0x18
2539 #define IEEE80211_HE_PHY_CAP5_BEAMFORMEE_NUM_SND_DIM_ABOVE_80MHZ_5 0x20
2540 #define IEEE80211_HE_PHY_CAP5_BEAMFORMEE_NUM_SND_DIM_ABOVE_80MHZ_6 0x28
2541 #define IEEE80211_HE_PHY_CAP5_BEAMFORMEE_NUM_SND_DIM_ABOVE_80MHZ_7 0x30
2542 #define IEEE80211_HE_PHY_CAP5_BEAMFORMEE_NUM_SND_DIM_ABOVE_80MHZ_8 0x38
2543 #define IEEE80211_HE_PHY_CAP5_BEAMFORMEE_NUM_SND_DIM_ABOVE_80MHZ_MASK 0x38
2545 #define IEEE80211_HE_PHY_CAP5_NG16_SU_FEEDBACK 0x40
2546 #define IEEE80211_HE_PHY_CAP5_NG16_MU_FEEDBACK 0x80
2548 #define IEEE80211_HE_PHY_CAP6_CODEBOOK_SIZE_42_SU 0x01
2549 #define IEEE80211_HE_PHY_CAP6_CODEBOOK_SIZE_75_MU 0x02
2550 #define IEEE80211_HE_PHY_CAP6_TRIG_SU_BEAMFORMING_FB 0x04
2551 #define IEEE80211_HE_PHY_CAP6_TRIG_MU_BEAMFORMING_PARTIAL_BW_FB 0x08
2552 #define IEEE80211_HE_PHY_CAP6_TRIG_CQI_FB 0x10
2553 #define IEEE80211_HE_PHY_CAP6_PARTIAL_BW_EXT_RANGE 0x20
2554 #define IEEE80211_HE_PHY_CAP6_PARTIAL_BANDWIDTH_DL_MUMIMO 0x40
2555 #define IEEE80211_HE_PHY_CAP6_PPE_THRESHOLD_PRESENT 0x80
2557 #define IEEE80211_HE_PHY_CAP7_PSR_BASED_SR 0x01
2558 #define IEEE80211_HE_PHY_CAP7_POWER_BOOST_FACTOR_SUPP 0x02
2559 #define IEEE80211_HE_PHY_CAP7_HE_SU_MU_PPDU_4XLTF_AND_08_US_GI 0x04
2560 #define IEEE80211_HE_PHY_CAP7_MAX_NC_1 0x08
2561 #define IEEE80211_HE_PHY_CAP7_MAX_NC_2 0x10
2562 #define IEEE80211_HE_PHY_CAP7_MAX_NC_3 0x18
2563 #define IEEE80211_HE_PHY_CAP7_MAX_NC_4 0x20
2564 #define IEEE80211_HE_PHY_CAP7_MAX_NC_5 0x28
2565 #define IEEE80211_HE_PHY_CAP7_MAX_NC_6 0x30
2566 #define IEEE80211_HE_PHY_CAP7_MAX_NC_7 0x38
2567 #define IEEE80211_HE_PHY_CAP7_MAX_NC_MASK 0x38
2568 #define IEEE80211_HE_PHY_CAP7_STBC_TX_ABOVE_80MHZ 0x40
2569 #define IEEE80211_HE_PHY_CAP7_STBC_RX_ABOVE_80MHZ 0x80
2571 #define IEEE80211_HE_PHY_CAP8_HE_ER_SU_PPDU_4XLTF_AND_08_US_GI 0x01
2572 #define IEEE80211_HE_PHY_CAP8_20MHZ_IN_40MHZ_HE_PPDU_IN_2G 0x02
2573 #define IEEE80211_HE_PHY_CAP8_20MHZ_IN_160MHZ_HE_PPDU 0x04
2574 #define IEEE80211_HE_PHY_CAP8_80MHZ_IN_160MHZ_HE_PPDU 0x08
2575 #define IEEE80211_HE_PHY_CAP8_HE_ER_SU_1XLTF_AND_08_US_GI 0x10
2576 #define IEEE80211_HE_PHY_CAP8_MIDAMBLE_RX_TX_2X_AND_1XLTF 0x20
2577 #define IEEE80211_HE_PHY_CAP8_DCM_MAX_RU_242 0x00
2578 #define IEEE80211_HE_PHY_CAP8_DCM_MAX_RU_484 0x40
2579 #define IEEE80211_HE_PHY_CAP8_DCM_MAX_RU_996 0x80
2580 #define IEEE80211_HE_PHY_CAP8_DCM_MAX_RU_2x996 0xc0
2581 #define IEEE80211_HE_PHY_CAP8_DCM_MAX_RU_MASK 0xc0
2583 #define IEEE80211_HE_PHY_CAP9_LONGER_THAN_16_SIGB_OFDM_SYM 0x01
2584 #define IEEE80211_HE_PHY_CAP9_NON_TRIGGERED_CQI_FEEDBACK 0x02
2585 #define IEEE80211_HE_PHY_CAP9_TX_1024_QAM_LESS_THAN_242_TONE_RU 0x04
2586 #define IEEE80211_HE_PHY_CAP9_RX_1024_QAM_LESS_THAN_242_TONE_RU 0x08
2587 #define IEEE80211_HE_PHY_CAP9_RX_FULL_BW_SU_USING_MU_WITH_COMP_SIGB 0x10
2588 #define IEEE80211_HE_PHY_CAP9_RX_FULL_BW_SU_USING_MU_WITH_NON_COMP_SIGB 0x20
2589 #define IEEE80211_HE_PHY_CAP9_NOMINAL_PKT_PADDING_0US 0x0
2590 #define IEEE80211_HE_PHY_CAP9_NOMINAL_PKT_PADDING_8US 0x1
2591 #define IEEE80211_HE_PHY_CAP9_NOMINAL_PKT_PADDING_16US 0x2
2592 #define IEEE80211_HE_PHY_CAP9_NOMINAL_PKT_PADDING_RESERVED 0x3
2593 #define IEEE80211_HE_PHY_CAP9_NOMINAL_PKT_PADDING_POS 6
2594 #define IEEE80211_HE_PHY_CAP9_NOMINAL_PKT_PADDING_MASK 0xc0
2596 #define IEEE80211_HE_PHY_CAP10_HE_MU_M1RU_MAX_LTF 0x01
2598 /* 802.11ax HE TX/RX MCS NSS Support */
2599 #define IEEE80211_TX_RX_MCS_NSS_SUPP_HIGHEST_MCS_POS (3)
2600 #define IEEE80211_TX_RX_MCS_NSS_SUPP_TX_BITMAP_POS (6)
2601 #define IEEE80211_TX_RX_MCS_NSS_SUPP_RX_BITMAP_POS (11)
2602 #define IEEE80211_TX_RX_MCS_NSS_SUPP_TX_BITMAP_MASK 0x07c0
2603 #define IEEE80211_TX_RX_MCS_NSS_SUPP_RX_BITMAP_MASK 0xf800
2605 /* TX/RX HE MCS Support field Highest MCS subfield encoding */
2606 enum ieee80211_he_highest_mcs_supported_subfield_enc {
2607 HIGHEST_MCS_SUPPORTED_MCS7 = 0,
2608 HIGHEST_MCS_SUPPORTED_MCS8,
2609 HIGHEST_MCS_SUPPORTED_MCS9,
2610 HIGHEST_MCS_SUPPORTED_MCS10,
2611 HIGHEST_MCS_SUPPORTED_MCS11,
2614 /* Calculate 802.11ax HE capabilities IE Tx/Rx HE MCS NSS Support Field size */
2616 ieee80211_he_mcs_nss_size(const struct ieee80211_he_cap_elem *he_cap)
2620 if (he_cap->phy_cap_info[0] &
2621 IEEE80211_HE_PHY_CAP0_CHANNEL_WIDTH_SET_160MHZ_IN_5G)
2624 if (he_cap->phy_cap_info[0] &
2625 IEEE80211_HE_PHY_CAP0_CHANNEL_WIDTH_SET_80PLUS80_MHZ_IN_5G)
2631 /* 802.11ax HE PPE Thresholds */
2632 #define IEEE80211_PPE_THRES_NSS_SUPPORT_2NSS (1)
2633 #define IEEE80211_PPE_THRES_NSS_POS (0)
2634 #define IEEE80211_PPE_THRES_NSS_MASK (7)
2635 #define IEEE80211_PPE_THRES_RU_INDEX_BITMASK_2x966_AND_966_RU \
2637 #define IEEE80211_PPE_THRES_RU_INDEX_BITMASK_MASK 0x78
2638 #define IEEE80211_PPE_THRES_RU_INDEX_BITMASK_POS (3)
2639 #define IEEE80211_PPE_THRES_INFO_PPET_SIZE (3)
2640 #define IEEE80211_HE_PPE_THRES_INFO_HEADER_SIZE (7)
2643 * Calculate 802.11ax HE capabilities IE PPE field size
2644 * Input: Header byte of ppe_thres (first byte), and HE capa IE's PHY cap u8*
2647 ieee80211_he_ppe_size(u8 ppe_thres_hdr, const u8 *phy_cap_info)
2651 if ((phy_cap_info[6] &
2652 IEEE80211_HE_PHY_CAP6_PPE_THRESHOLD_PRESENT) == 0)
2655 n = hweight8(ppe_thres_hdr &
2656 IEEE80211_PPE_THRES_RU_INDEX_BITMASK_MASK);
2657 n *= (1 + ((ppe_thres_hdr & IEEE80211_PPE_THRES_NSS_MASK) >>
2658 IEEE80211_PPE_THRES_NSS_POS));
2661 * Each pair is 6 bits, and we need to add the 7 "header" bits to the
2664 n = (n * IEEE80211_PPE_THRES_INFO_PPET_SIZE * 2) + 7;
2665 n = DIV_ROUND_UP(n, 8);
2670 static inline bool ieee80211_he_capa_size_ok(const u8 *data, u8 len)
2672 const struct ieee80211_he_cap_elem *he_cap_ie_elem = (const void *)data;
2673 u8 needed = sizeof(*he_cap_ie_elem);
2678 needed += ieee80211_he_mcs_nss_size(he_cap_ie_elem);
2682 if (he_cap_ie_elem->phy_cap_info[6] &
2683 IEEE80211_HE_PHY_CAP6_PPE_THRESHOLD_PRESENT) {
2684 if (len < needed + 1)
2686 needed += ieee80211_he_ppe_size(data[needed],
2687 he_cap_ie_elem->phy_cap_info);
2690 return len >= needed;
2693 /* HE Operation defines */
2694 #define IEEE80211_HE_OPERATION_DFLT_PE_DURATION_MASK 0x00000007
2695 #define IEEE80211_HE_OPERATION_TWT_REQUIRED 0x00000008
2696 #define IEEE80211_HE_OPERATION_RTS_THRESHOLD_MASK 0x00003ff0
2697 #define IEEE80211_HE_OPERATION_RTS_THRESHOLD_OFFSET 4
2698 #define IEEE80211_HE_OPERATION_VHT_OPER_INFO 0x00004000
2699 #define IEEE80211_HE_OPERATION_CO_HOSTED_BSS 0x00008000
2700 #define IEEE80211_HE_OPERATION_ER_SU_DISABLE 0x00010000
2701 #define IEEE80211_HE_OPERATION_6GHZ_OP_INFO 0x00020000
2702 #define IEEE80211_HE_OPERATION_BSS_COLOR_MASK 0x3f000000
2703 #define IEEE80211_HE_OPERATION_BSS_COLOR_OFFSET 24
2704 #define IEEE80211_HE_OPERATION_PARTIAL_BSS_COLOR 0x40000000
2705 #define IEEE80211_HE_OPERATION_BSS_COLOR_DISABLED 0x80000000
2707 #define IEEE80211_6GHZ_CTRL_REG_LPI_AP 0
2708 #define IEEE80211_6GHZ_CTRL_REG_SP_AP 1
2711 * struct ieee80211_he_6ghz_oper - HE 6 GHz operation Information field
2712 * @primary: primary channel
2713 * @control: control flags
2714 * @ccfs0: channel center frequency segment 0
2715 * @ccfs1: channel center frequency segment 1
2716 * @minrate: minimum rate (in 1 Mbps units)
2718 struct ieee80211_he_6ghz_oper {
2720 #define IEEE80211_HE_6GHZ_OPER_CTRL_CHANWIDTH 0x3
2721 #define IEEE80211_HE_6GHZ_OPER_CTRL_CHANWIDTH_20MHZ 0
2722 #define IEEE80211_HE_6GHZ_OPER_CTRL_CHANWIDTH_40MHZ 1
2723 #define IEEE80211_HE_6GHZ_OPER_CTRL_CHANWIDTH_80MHZ 2
2724 #define IEEE80211_HE_6GHZ_OPER_CTRL_CHANWIDTH_160MHZ 3
2725 #define IEEE80211_HE_6GHZ_OPER_CTRL_DUP_BEACON 0x4
2726 #define IEEE80211_HE_6GHZ_OPER_CTRL_REG_INFO 0x38
2734 * In "9.4.2.161 Transmit Power Envelope element" of "IEEE Std 802.11ax-2021",
2735 * it show four types in "Table 9-275a-Maximum Transmit Power Interpretation
2736 * subfield encoding", and two category for each type in "Table E-12-Regulatory
2737 * Info subfield encoding in the United States".
2738 * So it it totally max 8 Transmit Power Envelope element.
2740 #define IEEE80211_TPE_MAX_IE_COUNT 8
2742 * In "Table 9-277—Meaning of Maximum Transmit Power Count subfield"
2743 * of "IEEE Std 802.11ax™‐2021", the max power level is 8.
2745 #define IEEE80211_MAX_NUM_PWR_LEVEL 8
2747 #define IEEE80211_TPE_MAX_POWER_COUNT 8
2749 /* transmit power interpretation type of transmit power envelope element */
2750 enum ieee80211_tx_power_intrpt_type {
2751 IEEE80211_TPE_LOCAL_EIRP,
2752 IEEE80211_TPE_LOCAL_EIRP_PSD,
2753 IEEE80211_TPE_REG_CLIENT_EIRP,
2754 IEEE80211_TPE_REG_CLIENT_EIRP_PSD,
2758 * struct ieee80211_tx_pwr_env - Transmit Power Envelope
2759 * @tx_power_info: Transmit Power Information field
2760 * @tx_power: Maximum Transmit Power field
2762 * This structure represents the payload of the "Transmit Power
2763 * Envelope element" as described in IEEE Std 802.11ax-2021 section
2766 struct ieee80211_tx_pwr_env {
2768 s8 tx_power[IEEE80211_TPE_MAX_POWER_COUNT];
2771 #define IEEE80211_TX_PWR_ENV_INFO_COUNT 0x7
2772 #define IEEE80211_TX_PWR_ENV_INFO_INTERPRET 0x38
2773 #define IEEE80211_TX_PWR_ENV_INFO_CATEGORY 0xC0
2776 * ieee80211_he_oper_size - calculate 802.11ax HE Operations IE size
2777 * @he_oper_ie: byte data of the He Operations IE, stating from the byte
2778 * after the ext ID byte. It is assumed that he_oper_ie has at least
2779 * sizeof(struct ieee80211_he_operation) bytes, the caller must have
2781 * @return the actual size of the IE data (not including header), or 0 on error
2784 ieee80211_he_oper_size(const u8 *he_oper_ie)
2786 const struct ieee80211_he_operation *he_oper = (const void *)he_oper_ie;
2787 u8 oper_len = sizeof(struct ieee80211_he_operation);
2790 /* Make sure the input is not NULL */
2794 /* Calc required length */
2795 he_oper_params = le32_to_cpu(he_oper->he_oper_params);
2796 if (he_oper_params & IEEE80211_HE_OPERATION_VHT_OPER_INFO)
2798 if (he_oper_params & IEEE80211_HE_OPERATION_CO_HOSTED_BSS)
2800 if (he_oper_params & IEEE80211_HE_OPERATION_6GHZ_OP_INFO)
2801 oper_len += sizeof(struct ieee80211_he_6ghz_oper);
2803 /* Add the first byte (extension ID) to the total length */
2810 * ieee80211_he_6ghz_oper - obtain 6 GHz operation field
2811 * @he_oper: HE operation element (must be pre-validated for size)
2814 * Return: a pointer to the 6 GHz operation field, or %NULL
2816 static inline const struct ieee80211_he_6ghz_oper *
2817 ieee80211_he_6ghz_oper(const struct ieee80211_he_operation *he_oper)
2819 const u8 *ret = (const void *)&he_oper->optional;
2825 he_oper_params = le32_to_cpu(he_oper->he_oper_params);
2827 if (!(he_oper_params & IEEE80211_HE_OPERATION_6GHZ_OP_INFO))
2829 if (he_oper_params & IEEE80211_HE_OPERATION_VHT_OPER_INFO)
2831 if (he_oper_params & IEEE80211_HE_OPERATION_CO_HOSTED_BSS)
2834 return (const void *)ret;
2837 /* HE Spatial Reuse defines */
2838 #define IEEE80211_HE_SPR_PSR_DISALLOWED BIT(0)
2839 #define IEEE80211_HE_SPR_NON_SRG_OBSS_PD_SR_DISALLOWED BIT(1)
2840 #define IEEE80211_HE_SPR_NON_SRG_OFFSET_PRESENT BIT(2)
2841 #define IEEE80211_HE_SPR_SRG_INFORMATION_PRESENT BIT(3)
2842 #define IEEE80211_HE_SPR_HESIGA_SR_VAL15_ALLOWED BIT(4)
2845 * ieee80211_he_spr_size - calculate 802.11ax HE Spatial Reuse IE size
2846 * @he_spr_ie: byte data of the He Spatial Reuse IE, stating from the byte
2847 * after the ext ID byte. It is assumed that he_spr_ie has at least
2848 * sizeof(struct ieee80211_he_spr) bytes, the caller must have validated
2850 * @return the actual size of the IE data (not including header), or 0 on error
2853 ieee80211_he_spr_size(const u8 *he_spr_ie)
2855 const struct ieee80211_he_spr *he_spr = (const void *)he_spr_ie;
2856 u8 spr_len = sizeof(struct ieee80211_he_spr);
2859 /* Make sure the input is not NULL */
2863 /* Calc required length */
2864 he_spr_params = he_spr->he_sr_control;
2865 if (he_spr_params & IEEE80211_HE_SPR_NON_SRG_OFFSET_PRESENT)
2867 if (he_spr_params & IEEE80211_HE_SPR_SRG_INFORMATION_PRESENT)
2870 /* Add the first byte (extension ID) to the total length */
2876 /* S1G Capabilities Information field */
2877 #define IEEE80211_S1G_CAPABILITY_LEN 15
2879 #define S1G_CAP0_S1G_LONG BIT(0)
2880 #define S1G_CAP0_SGI_1MHZ BIT(1)
2881 #define S1G_CAP0_SGI_2MHZ BIT(2)
2882 #define S1G_CAP0_SGI_4MHZ BIT(3)
2883 #define S1G_CAP0_SGI_8MHZ BIT(4)
2884 #define S1G_CAP0_SGI_16MHZ BIT(5)
2885 #define S1G_CAP0_SUPP_CH_WIDTH GENMASK(7, 6)
2887 #define S1G_SUPP_CH_WIDTH_2 0
2888 #define S1G_SUPP_CH_WIDTH_4 1
2889 #define S1G_SUPP_CH_WIDTH_8 2
2890 #define S1G_SUPP_CH_WIDTH_16 3
2891 #define S1G_SUPP_CH_WIDTH_MAX(cap) ((1 << FIELD_GET(S1G_CAP0_SUPP_CH_WIDTH, \
2894 #define S1G_CAP1_RX_LDPC BIT(0)
2895 #define S1G_CAP1_TX_STBC BIT(1)
2896 #define S1G_CAP1_RX_STBC BIT(2)
2897 #define S1G_CAP1_SU_BFER BIT(3)
2898 #define S1G_CAP1_SU_BFEE BIT(4)
2899 #define S1G_CAP1_BFEE_STS GENMASK(7, 5)
2901 #define S1G_CAP2_SOUNDING_DIMENSIONS GENMASK(2, 0)
2902 #define S1G_CAP2_MU_BFER BIT(3)
2903 #define S1G_CAP2_MU_BFEE BIT(4)
2904 #define S1G_CAP2_PLUS_HTC_VHT BIT(5)
2905 #define S1G_CAP2_TRAVELING_PILOT GENMASK(7, 6)
2907 #define S1G_CAP3_RD_RESPONDER BIT(0)
2908 #define S1G_CAP3_HT_DELAYED_BA BIT(1)
2909 #define S1G_CAP3_MAX_MPDU_LEN BIT(2)
2910 #define S1G_CAP3_MAX_AMPDU_LEN_EXP GENMASK(4, 3)
2911 #define S1G_CAP3_MIN_MPDU_START GENMASK(7, 5)
2913 #define S1G_CAP4_UPLINK_SYNC BIT(0)
2914 #define S1G_CAP4_DYNAMIC_AID BIT(1)
2915 #define S1G_CAP4_BAT BIT(2)
2916 #define S1G_CAP4_TIME_ADE BIT(3)
2917 #define S1G_CAP4_NON_TIM BIT(4)
2918 #define S1G_CAP4_GROUP_AID BIT(5)
2919 #define S1G_CAP4_STA_TYPE GENMASK(7, 6)
2921 #define S1G_CAP5_CENT_AUTH_CONTROL BIT(0)
2922 #define S1G_CAP5_DIST_AUTH_CONTROL BIT(1)
2923 #define S1G_CAP5_AMSDU BIT(2)
2924 #define S1G_CAP5_AMPDU BIT(3)
2925 #define S1G_CAP5_ASYMMETRIC_BA BIT(4)
2926 #define S1G_CAP5_FLOW_CONTROL BIT(5)
2927 #define S1G_CAP5_SECTORIZED_BEAM GENMASK(7, 6)
2929 #define S1G_CAP6_OBSS_MITIGATION BIT(0)
2930 #define S1G_CAP6_FRAGMENT_BA BIT(1)
2931 #define S1G_CAP6_NDP_PS_POLL BIT(2)
2932 #define S1G_CAP6_RAW_OPERATION BIT(3)
2933 #define S1G_CAP6_PAGE_SLICING BIT(4)
2934 #define S1G_CAP6_TXOP_SHARING_IMP_ACK BIT(5)
2935 #define S1G_CAP6_VHT_LINK_ADAPT GENMASK(7, 6)
2937 #define S1G_CAP7_TACK_AS_PS_POLL BIT(0)
2938 #define S1G_CAP7_DUP_1MHZ BIT(1)
2939 #define S1G_CAP7_MCS_NEGOTIATION BIT(2)
2940 #define S1G_CAP7_1MHZ_CTL_RESPONSE_PREAMBLE BIT(3)
2941 #define S1G_CAP7_NDP_BFING_REPORT_POLL BIT(4)
2942 #define S1G_CAP7_UNSOLICITED_DYN_AID BIT(5)
2943 #define S1G_CAP7_SECTOR_TRAINING_OPERATION BIT(6)
2944 #define S1G_CAP7_TEMP_PS_MODE_SWITCH BIT(7)
2946 #define S1G_CAP8_TWT_GROUPING BIT(0)
2947 #define S1G_CAP8_BDT BIT(1)
2948 #define S1G_CAP8_COLOR GENMASK(4, 2)
2949 #define S1G_CAP8_TWT_REQUEST BIT(5)
2950 #define S1G_CAP8_TWT_RESPOND BIT(6)
2951 #define S1G_CAP8_PV1_FRAME BIT(7)
2953 #define S1G_CAP9_LINK_ADAPT_PER_CONTROL_RESPONSE BIT(0)
2955 #define S1G_OPER_CH_WIDTH_PRIMARY_1MHZ BIT(0)
2956 #define S1G_OPER_CH_WIDTH_OPER GENMASK(4, 1)
2958 /* EHT MAC capabilities as defined in P802.11be_D2.0 section 9.4.2.313.2 */
2959 #define IEEE80211_EHT_MAC_CAP0_EPCS_PRIO_ACCESS 0x01
2960 #define IEEE80211_EHT_MAC_CAP0_OM_CONTROL 0x02
2961 #define IEEE80211_EHT_MAC_CAP0_TRIG_TXOP_SHARING_MODE1 0x04
2962 #define IEEE80211_EHT_MAC_CAP0_TRIG_TXOP_SHARING_MODE2 0x08
2963 #define IEEE80211_EHT_MAC_CAP0_RESTRICTED_TWT 0x10
2964 #define IEEE80211_EHT_MAC_CAP0_SCS_TRAFFIC_DESC 0x20
2965 #define IEEE80211_EHT_MAC_CAP0_MAX_MPDU_LEN_MASK 0xc0
2966 #define IEEE80211_EHT_MAC_CAP0_MAX_MPDU_LEN_3895 0
2967 #define IEEE80211_EHT_MAC_CAP0_MAX_MPDU_LEN_7991 1
2968 #define IEEE80211_EHT_MAC_CAP0_MAX_MPDU_LEN_11454 2
2970 #define IEEE80211_EHT_MAC_CAP1_MAX_AMPDU_LEN_MASK 0x01
2972 /* EHT PHY capabilities as defined in P802.11be_D2.0 section 9.4.2.313.3 */
2973 #define IEEE80211_EHT_PHY_CAP0_320MHZ_IN_6GHZ 0x02
2974 #define IEEE80211_EHT_PHY_CAP0_242_TONE_RU_GT20MHZ 0x04
2975 #define IEEE80211_EHT_PHY_CAP0_NDP_4_EHT_LFT_32_GI 0x08
2976 #define IEEE80211_EHT_PHY_CAP0_PARTIAL_BW_UL_MU_MIMO 0x10
2977 #define IEEE80211_EHT_PHY_CAP0_SU_BEAMFORMER 0x20
2978 #define IEEE80211_EHT_PHY_CAP0_SU_BEAMFORMEE 0x40
2980 /* EHT beamformee number of spatial streams <= 80MHz is split */
2981 #define IEEE80211_EHT_PHY_CAP0_BEAMFORMEE_SS_80MHZ_MASK 0x80
2982 #define IEEE80211_EHT_PHY_CAP1_BEAMFORMEE_SS_80MHZ_MASK 0x03
2984 #define IEEE80211_EHT_PHY_CAP1_BEAMFORMEE_SS_160MHZ_MASK 0x1c
2985 #define IEEE80211_EHT_PHY_CAP1_BEAMFORMEE_SS_320MHZ_MASK 0xe0
2987 #define IEEE80211_EHT_PHY_CAP2_SOUNDING_DIM_80MHZ_MASK 0x07
2988 #define IEEE80211_EHT_PHY_CAP2_SOUNDING_DIM_160MHZ_MASK 0x38
2990 /* EHT number of sounding dimensions for 320MHz is split */
2991 #define IEEE80211_EHT_PHY_CAP2_SOUNDING_DIM_320MHZ_MASK 0xc0
2992 #define IEEE80211_EHT_PHY_CAP3_SOUNDING_DIM_320MHZ_MASK 0x01
2993 #define IEEE80211_EHT_PHY_CAP3_NG_16_SU_FEEDBACK 0x02
2994 #define IEEE80211_EHT_PHY_CAP3_NG_16_MU_FEEDBACK 0x04
2995 #define IEEE80211_EHT_PHY_CAP3_CODEBOOK_4_2_SU_FDBK 0x08
2996 #define IEEE80211_EHT_PHY_CAP3_CODEBOOK_7_5_MU_FDBK 0x10
2997 #define IEEE80211_EHT_PHY_CAP3_TRIG_SU_BF_FDBK 0x20
2998 #define IEEE80211_EHT_PHY_CAP3_TRIG_MU_BF_PART_BW_FDBK 0x40
2999 #define IEEE80211_EHT_PHY_CAP3_TRIG_CQI_FDBK 0x80
3001 #define IEEE80211_EHT_PHY_CAP4_PART_BW_DL_MU_MIMO 0x01
3002 #define IEEE80211_EHT_PHY_CAP4_PSR_SR_SUPP 0x02
3003 #define IEEE80211_EHT_PHY_CAP4_POWER_BOOST_FACT_SUPP 0x04
3004 #define IEEE80211_EHT_PHY_CAP4_EHT_MU_PPDU_4_EHT_LTF_08_GI 0x08
3005 #define IEEE80211_EHT_PHY_CAP4_MAX_NC_MASK 0xf0
3007 #define IEEE80211_EHT_PHY_CAP5_NON_TRIG_CQI_FEEDBACK 0x01
3008 #define IEEE80211_EHT_PHY_CAP5_TX_LESS_242_TONE_RU_SUPP 0x02
3009 #define IEEE80211_EHT_PHY_CAP5_RX_LESS_242_TONE_RU_SUPP 0x04
3010 #define IEEE80211_EHT_PHY_CAP5_PPE_THRESHOLD_PRESENT 0x08
3011 #define IEEE80211_EHT_PHY_CAP5_COMMON_NOMINAL_PKT_PAD_MASK 0x30
3012 #define IEEE80211_EHT_PHY_CAP5_COMMON_NOMINAL_PKT_PAD_0US 0
3013 #define IEEE80211_EHT_PHY_CAP5_COMMON_NOMINAL_PKT_PAD_8US 1
3014 #define IEEE80211_EHT_PHY_CAP5_COMMON_NOMINAL_PKT_PAD_16US 2
3015 #define IEEE80211_EHT_PHY_CAP5_COMMON_NOMINAL_PKT_PAD_20US 3
3017 /* Maximum number of supported EHT LTF is split */
3018 #define IEEE80211_EHT_PHY_CAP5_MAX_NUM_SUPP_EHT_LTF_MASK 0xc0
3019 #define IEEE80211_EHT_PHY_CAP5_SUPP_EXTRA_EHT_LTF 0x40
3020 #define IEEE80211_EHT_PHY_CAP6_MAX_NUM_SUPP_EHT_LTF_MASK 0x07
3022 #define IEEE80211_EHT_PHY_CAP6_MCS15_SUPP_MASK 0x78
3023 #define IEEE80211_EHT_PHY_CAP6_EHT_DUP_6GHZ_SUPP 0x80
3025 #define IEEE80211_EHT_PHY_CAP7_20MHZ_STA_RX_NDP_WIDER_BW 0x01
3026 #define IEEE80211_EHT_PHY_CAP7_NON_OFDMA_UL_MU_MIMO_80MHZ 0x02
3027 #define IEEE80211_EHT_PHY_CAP7_NON_OFDMA_UL_MU_MIMO_160MHZ 0x04
3028 #define IEEE80211_EHT_PHY_CAP7_NON_OFDMA_UL_MU_MIMO_320MHZ 0x08
3029 #define IEEE80211_EHT_PHY_CAP7_MU_BEAMFORMER_80MHZ 0x10
3030 #define IEEE80211_EHT_PHY_CAP7_MU_BEAMFORMER_160MHZ 0x20
3031 #define IEEE80211_EHT_PHY_CAP7_MU_BEAMFORMER_320MHZ 0x40
3032 #define IEEE80211_EHT_PHY_CAP7_TB_SOUNDING_FDBK_RATE_LIMIT 0x80
3034 #define IEEE80211_EHT_PHY_CAP8_RX_1024QAM_WIDER_BW_DL_OFDMA 0x01
3035 #define IEEE80211_EHT_PHY_CAP8_RX_4096QAM_WIDER_BW_DL_OFDMA 0x02
3038 * EHT operation channel width as defined in P802.11be_D2.0 section 9.4.2.311
3040 #define IEEE80211_EHT_OPER_CHAN_WIDTH 0x7
3041 #define IEEE80211_EHT_OPER_CHAN_WIDTH_20MHZ 0
3042 #define IEEE80211_EHT_OPER_CHAN_WIDTH_40MHZ 1
3043 #define IEEE80211_EHT_OPER_CHAN_WIDTH_80MHZ 2
3044 #define IEEE80211_EHT_OPER_CHAN_WIDTH_160MHZ 3
3045 #define IEEE80211_EHT_OPER_CHAN_WIDTH_320MHZ 4
3047 /* Calculate 802.11be EHT capabilities IE Tx/Rx EHT MCS NSS Support Field size */
3049 ieee80211_eht_mcs_nss_size(const struct ieee80211_he_cap_elem *he_cap,
3050 const struct ieee80211_eht_cap_elem_fixed *eht_cap,
3055 /* on 2.4 GHz, if it supports 40 MHz, the result is 3 */
3056 if (he_cap->phy_cap_info[0] &
3057 IEEE80211_HE_PHY_CAP0_CHANNEL_WIDTH_SET_40MHZ_IN_2G)
3060 /* on 2.4 GHz, these three bits are reserved, so should be 0 */
3061 if (he_cap->phy_cap_info[0] &
3062 IEEE80211_HE_PHY_CAP0_CHANNEL_WIDTH_SET_40MHZ_80MHZ_IN_5G)
3065 if (he_cap->phy_cap_info[0] &
3066 IEEE80211_HE_PHY_CAP0_CHANNEL_WIDTH_SET_160MHZ_IN_5G)
3069 if (eht_cap->phy_cap_info[0] & IEEE80211_EHT_PHY_CAP0_320MHZ_IN_6GHZ)
3075 return from_ap ? 3 : 4;
3078 /* 802.11be EHT PPE Thresholds */
3079 #define IEEE80211_EHT_PPE_THRES_NSS_POS 0
3080 #define IEEE80211_EHT_PPE_THRES_NSS_MASK 0xf
3081 #define IEEE80211_EHT_PPE_THRES_RU_INDEX_BITMASK_MASK 0x1f0
3082 #define IEEE80211_EHT_PPE_THRES_INFO_PPET_SIZE 3
3083 #define IEEE80211_EHT_PPE_THRES_INFO_HEADER_SIZE 9
3086 * Calculate 802.11be EHT capabilities IE EHT field size
3089 ieee80211_eht_ppe_size(u16 ppe_thres_hdr, const u8 *phy_cap_info)
3093 if (!(phy_cap_info[5] &
3094 IEEE80211_EHT_PHY_CAP5_PPE_THRESHOLD_PRESENT))
3097 n = hweight16(ppe_thres_hdr &
3098 IEEE80211_EHT_PPE_THRES_RU_INDEX_BITMASK_MASK);
3099 n *= 1 + (ppe_thres_hdr & IEEE80211_EHT_PPE_THRES_NSS_MASK);
3102 * Each pair is 6 bits, and we need to add the 9 "header" bits to the
3105 n = n * IEEE80211_EHT_PPE_THRES_INFO_PPET_SIZE * 2 +
3106 IEEE80211_EHT_PPE_THRES_INFO_HEADER_SIZE;
3107 return DIV_ROUND_UP(n, 8);
3111 ieee80211_eht_capa_size_ok(const u8 *he_capa, const u8 *data, u8 len,
3114 const struct ieee80211_eht_cap_elem_fixed *elem = (const void *)data;
3115 u8 needed = sizeof(struct ieee80211_eht_cap_elem_fixed);
3117 if (len < needed || !he_capa)
3120 needed += ieee80211_eht_mcs_nss_size((const void *)he_capa,
3126 if (elem->phy_cap_info[5] &
3127 IEEE80211_EHT_PHY_CAP5_PPE_THRESHOLD_PRESENT) {
3130 if (len < needed + sizeof(ppe_thres_hdr))
3133 ppe_thres_hdr = (data[needed] >> 8) + data[needed + 1];
3134 needed += ieee80211_eht_ppe_size(ppe_thres_hdr,
3135 elem->phy_cap_info);
3138 return len >= needed;
3142 ieee80211_eht_oper_size_ok(const u8 *data, u8 len)
3144 const struct ieee80211_eht_operation *elem = (const void *)data;
3145 u8 needed = sizeof(*elem);
3150 if (elem->params & IEEE80211_EHT_OPER_INFO_PRESENT) {
3154 IEEE80211_EHT_OPER_DISABLED_SUBCHANNEL_BITMAP_PRESENT)
3158 return len >= needed;
3161 #define LISTEN_INT_USF GENMASK(15, 14)
3162 #define LISTEN_INT_UI GENMASK(13, 0)
3164 #define IEEE80211_MAX_USF FIELD_MAX(LISTEN_INT_USF)
3165 #define IEEE80211_MAX_UI FIELD_MAX(LISTEN_INT_UI)
3167 /* Authentication algorithms */
3168 #define WLAN_AUTH_OPEN 0
3169 #define WLAN_AUTH_SHARED_KEY 1
3170 #define WLAN_AUTH_FT 2
3171 #define WLAN_AUTH_SAE 3
3172 #define WLAN_AUTH_FILS_SK 4
3173 #define WLAN_AUTH_FILS_SK_PFS 5
3174 #define WLAN_AUTH_FILS_PK 6
3175 #define WLAN_AUTH_LEAP 128
3177 #define WLAN_AUTH_CHALLENGE_LEN 128
3179 #define WLAN_CAPABILITY_ESS (1<<0)
3180 #define WLAN_CAPABILITY_IBSS (1<<1)
3183 * A mesh STA sets the ESS and IBSS capability bits to zero.
3184 * however, this holds true for p2p probe responses (in the p2p_find
3187 #define WLAN_CAPABILITY_IS_STA_BSS(cap) \
3188 (!((cap) & (WLAN_CAPABILITY_ESS | WLAN_CAPABILITY_IBSS)))
3190 #define WLAN_CAPABILITY_CF_POLLABLE (1<<2)
3191 #define WLAN_CAPABILITY_CF_POLL_REQUEST (1<<3)
3192 #define WLAN_CAPABILITY_PRIVACY (1<<4)
3193 #define WLAN_CAPABILITY_SHORT_PREAMBLE (1<<5)
3194 #define WLAN_CAPABILITY_PBCC (1<<6)
3195 #define WLAN_CAPABILITY_CHANNEL_AGILITY (1<<7)
3198 #define WLAN_CAPABILITY_SPECTRUM_MGMT (1<<8)
3199 #define WLAN_CAPABILITY_QOS (1<<9)
3200 #define WLAN_CAPABILITY_SHORT_SLOT_TIME (1<<10)
3201 #define WLAN_CAPABILITY_APSD (1<<11)
3202 #define WLAN_CAPABILITY_RADIO_MEASURE (1<<12)
3203 #define WLAN_CAPABILITY_DSSS_OFDM (1<<13)
3204 #define WLAN_CAPABILITY_DEL_BACK (1<<14)
3205 #define WLAN_CAPABILITY_IMM_BACK (1<<15)
3207 /* DMG (60gHz) 802.11ad */
3208 /* type - bits 0..1 */
3209 #define WLAN_CAPABILITY_DMG_TYPE_MASK (3<<0)
3210 #define WLAN_CAPABILITY_DMG_TYPE_IBSS (1<<0) /* Tx by: STA */
3211 #define WLAN_CAPABILITY_DMG_TYPE_PBSS (2<<0) /* Tx by: PCP */
3212 #define WLAN_CAPABILITY_DMG_TYPE_AP (3<<0) /* Tx by: AP */
3214 #define WLAN_CAPABILITY_DMG_CBAP_ONLY (1<<2)
3215 #define WLAN_CAPABILITY_DMG_CBAP_SOURCE (1<<3)
3216 #define WLAN_CAPABILITY_DMG_PRIVACY (1<<4)
3217 #define WLAN_CAPABILITY_DMG_ECPAC (1<<5)
3219 #define WLAN_CAPABILITY_DMG_SPECTRUM_MGMT (1<<8)
3220 #define WLAN_CAPABILITY_DMG_RADIO_MEASURE (1<<12)
3223 #define IEEE80211_SPCT_MSR_RPRT_MODE_LATE (1<<0)
3224 #define IEEE80211_SPCT_MSR_RPRT_MODE_INCAPABLE (1<<1)
3225 #define IEEE80211_SPCT_MSR_RPRT_MODE_REFUSED (1<<2)
3227 #define IEEE80211_SPCT_MSR_RPRT_TYPE_BASIC 0
3228 #define IEEE80211_SPCT_MSR_RPRT_TYPE_CCA 1
3229 #define IEEE80211_SPCT_MSR_RPRT_TYPE_RPI 2
3230 #define IEEE80211_SPCT_MSR_RPRT_TYPE_LCI 8
3231 #define IEEE80211_SPCT_MSR_RPRT_TYPE_CIVIC 11
3233 /* 802.11g ERP information element */
3234 #define WLAN_ERP_NON_ERP_PRESENT (1<<0)
3235 #define WLAN_ERP_USE_PROTECTION (1<<1)
3236 #define WLAN_ERP_BARKER_PREAMBLE (1<<2)
3238 /* WLAN_ERP_BARKER_PREAMBLE values */
3240 WLAN_ERP_PREAMBLE_SHORT = 0,
3241 WLAN_ERP_PREAMBLE_LONG = 1,
3244 /* Band ID, 802.11ad #8.4.1.45 */
3246 IEEE80211_BANDID_TV_WS = 0, /* TV white spaces */
3247 IEEE80211_BANDID_SUB1 = 1, /* Sub-1 GHz (excluding TV white spaces) */
3248 IEEE80211_BANDID_2G = 2, /* 2.4 GHz */
3249 IEEE80211_BANDID_3G = 3, /* 3.6 GHz */
3250 IEEE80211_BANDID_5G = 4, /* 4.9 and 5 GHz */
3251 IEEE80211_BANDID_60G = 5, /* 60 GHz */
3255 enum ieee80211_statuscode {
3256 WLAN_STATUS_SUCCESS = 0,
3257 WLAN_STATUS_UNSPECIFIED_FAILURE = 1,
3258 WLAN_STATUS_CAPS_UNSUPPORTED = 10,
3259 WLAN_STATUS_REASSOC_NO_ASSOC = 11,
3260 WLAN_STATUS_ASSOC_DENIED_UNSPEC = 12,
3261 WLAN_STATUS_NOT_SUPPORTED_AUTH_ALG = 13,
3262 WLAN_STATUS_UNKNOWN_AUTH_TRANSACTION = 14,
3263 WLAN_STATUS_CHALLENGE_FAIL = 15,
3264 WLAN_STATUS_AUTH_TIMEOUT = 16,
3265 WLAN_STATUS_AP_UNABLE_TO_HANDLE_NEW_STA = 17,
3266 WLAN_STATUS_ASSOC_DENIED_RATES = 18,
3268 WLAN_STATUS_ASSOC_DENIED_NOSHORTPREAMBLE = 19,
3269 WLAN_STATUS_ASSOC_DENIED_NOPBCC = 20,
3270 WLAN_STATUS_ASSOC_DENIED_NOAGILITY = 21,
3272 WLAN_STATUS_ASSOC_DENIED_NOSPECTRUM = 22,
3273 WLAN_STATUS_ASSOC_REJECTED_BAD_POWER = 23,
3274 WLAN_STATUS_ASSOC_REJECTED_BAD_SUPP_CHAN = 24,
3276 WLAN_STATUS_ASSOC_DENIED_NOSHORTTIME = 25,
3277 WLAN_STATUS_ASSOC_DENIED_NODSSSOFDM = 26,
3279 WLAN_STATUS_ASSOC_REJECTED_TEMPORARILY = 30,
3280 WLAN_STATUS_ROBUST_MGMT_FRAME_POLICY_VIOLATION = 31,
3282 WLAN_STATUS_INVALID_IE = 40,
3283 WLAN_STATUS_INVALID_GROUP_CIPHER = 41,
3284 WLAN_STATUS_INVALID_PAIRWISE_CIPHER = 42,
3285 WLAN_STATUS_INVALID_AKMP = 43,
3286 WLAN_STATUS_UNSUPP_RSN_VERSION = 44,
3287 WLAN_STATUS_INVALID_RSN_IE_CAP = 45,
3288 WLAN_STATUS_CIPHER_SUITE_REJECTED = 46,
3290 WLAN_STATUS_UNSPECIFIED_QOS = 32,
3291 WLAN_STATUS_ASSOC_DENIED_NOBANDWIDTH = 33,
3292 WLAN_STATUS_ASSOC_DENIED_LOWACK = 34,
3293 WLAN_STATUS_ASSOC_DENIED_UNSUPP_QOS = 35,
3294 WLAN_STATUS_REQUEST_DECLINED = 37,
3295 WLAN_STATUS_INVALID_QOS_PARAM = 38,
3296 WLAN_STATUS_CHANGE_TSPEC = 39,
3297 WLAN_STATUS_WAIT_TS_DELAY = 47,
3298 WLAN_STATUS_NO_DIRECT_LINK = 48,
3299 WLAN_STATUS_STA_NOT_PRESENT = 49,
3300 WLAN_STATUS_STA_NOT_QSTA = 50,
3302 WLAN_STATUS_ANTI_CLOG_REQUIRED = 76,
3303 WLAN_STATUS_FCG_NOT_SUPP = 78,
3304 WLAN_STATUS_STA_NO_TBTT = 78,
3306 WLAN_STATUS_REJECTED_WITH_SUGGESTED_CHANGES = 39,
3307 WLAN_STATUS_REJECTED_FOR_DELAY_PERIOD = 47,
3308 WLAN_STATUS_REJECT_WITH_SCHEDULE = 83,
3309 WLAN_STATUS_PENDING_ADMITTING_FST_SESSION = 86,
3310 WLAN_STATUS_PERFORMING_FST_NOW = 87,
3311 WLAN_STATUS_PENDING_GAP_IN_BA_WINDOW = 88,
3312 WLAN_STATUS_REJECT_U_PID_SETTING = 89,
3313 WLAN_STATUS_REJECT_DSE_BAND = 96,
3314 WLAN_STATUS_DENIED_WITH_SUGGESTED_BAND_AND_CHANNEL = 99,
3315 WLAN_STATUS_DENIED_DUE_TO_SPECTRUM_MANAGEMENT = 103,
3317 WLAN_STATUS_FILS_AUTHENTICATION_FAILURE = 108,
3318 WLAN_STATUS_UNKNOWN_AUTHENTICATION_SERVER = 109,
3319 WLAN_STATUS_SAE_HASH_TO_ELEMENT = 126,
3320 WLAN_STATUS_SAE_PK = 127,
3325 enum ieee80211_reasoncode {
3326 WLAN_REASON_UNSPECIFIED = 1,
3327 WLAN_REASON_PREV_AUTH_NOT_VALID = 2,
3328 WLAN_REASON_DEAUTH_LEAVING = 3,
3329 WLAN_REASON_DISASSOC_DUE_TO_INACTIVITY = 4,
3330 WLAN_REASON_DISASSOC_AP_BUSY = 5,
3331 WLAN_REASON_CLASS2_FRAME_FROM_NONAUTH_STA = 6,
3332 WLAN_REASON_CLASS3_FRAME_FROM_NONASSOC_STA = 7,
3333 WLAN_REASON_DISASSOC_STA_HAS_LEFT = 8,
3334 WLAN_REASON_STA_REQ_ASSOC_WITHOUT_AUTH = 9,
3336 WLAN_REASON_DISASSOC_BAD_POWER = 10,
3337 WLAN_REASON_DISASSOC_BAD_SUPP_CHAN = 11,
3339 WLAN_REASON_INVALID_IE = 13,
3340 WLAN_REASON_MIC_FAILURE = 14,
3341 WLAN_REASON_4WAY_HANDSHAKE_TIMEOUT = 15,
3342 WLAN_REASON_GROUP_KEY_HANDSHAKE_TIMEOUT = 16,
3343 WLAN_REASON_IE_DIFFERENT = 17,
3344 WLAN_REASON_INVALID_GROUP_CIPHER = 18,
3345 WLAN_REASON_INVALID_PAIRWISE_CIPHER = 19,
3346 WLAN_REASON_INVALID_AKMP = 20,
3347 WLAN_REASON_UNSUPP_RSN_VERSION = 21,
3348 WLAN_REASON_INVALID_RSN_IE_CAP = 22,
3349 WLAN_REASON_IEEE8021X_FAILED = 23,
3350 WLAN_REASON_CIPHER_SUITE_REJECTED = 24,
3351 /* TDLS (802.11z) */
3352 WLAN_REASON_TDLS_TEARDOWN_UNREACHABLE = 25,
3353 WLAN_REASON_TDLS_TEARDOWN_UNSPECIFIED = 26,
3355 WLAN_REASON_DISASSOC_UNSPECIFIED_QOS = 32,
3356 WLAN_REASON_DISASSOC_QAP_NO_BANDWIDTH = 33,
3357 WLAN_REASON_DISASSOC_LOW_ACK = 34,
3358 WLAN_REASON_DISASSOC_QAP_EXCEED_TXOP = 35,
3359 WLAN_REASON_QSTA_LEAVE_QBSS = 36,
3360 WLAN_REASON_QSTA_NOT_USE = 37,
3361 WLAN_REASON_QSTA_REQUIRE_SETUP = 38,
3362 WLAN_REASON_QSTA_TIMEOUT = 39,
3363 WLAN_REASON_QSTA_CIPHER_NOT_SUPP = 45,
3365 WLAN_REASON_MESH_PEER_CANCELED = 52,
3366 WLAN_REASON_MESH_MAX_PEERS = 53,
3367 WLAN_REASON_MESH_CONFIG = 54,
3368 WLAN_REASON_MESH_CLOSE = 55,
3369 WLAN_REASON_MESH_MAX_RETRIES = 56,
3370 WLAN_REASON_MESH_CONFIRM_TIMEOUT = 57,
3371 WLAN_REASON_MESH_INVALID_GTK = 58,
3372 WLAN_REASON_MESH_INCONSISTENT_PARAM = 59,
3373 WLAN_REASON_MESH_INVALID_SECURITY = 60,
3374 WLAN_REASON_MESH_PATH_ERROR = 61,
3375 WLAN_REASON_MESH_PATH_NOFORWARD = 62,
3376 WLAN_REASON_MESH_PATH_DEST_UNREACHABLE = 63,
3377 WLAN_REASON_MAC_EXISTS_IN_MBSS = 64,
3378 WLAN_REASON_MESH_CHAN_REGULATORY = 65,
3379 WLAN_REASON_MESH_CHAN = 66,
3383 /* Information Element IDs */
3384 enum ieee80211_eid {
3386 WLAN_EID_SUPP_RATES = 1,
3387 WLAN_EID_FH_PARAMS = 2, /* reserved now */
3388 WLAN_EID_DS_PARAMS = 3,
3389 WLAN_EID_CF_PARAMS = 4,
3391 WLAN_EID_IBSS_PARAMS = 6,
3392 WLAN_EID_COUNTRY = 7,
3394 WLAN_EID_REQUEST = 10,
3395 WLAN_EID_QBSS_LOAD = 11,
3396 WLAN_EID_EDCA_PARAM_SET = 12,
3397 WLAN_EID_TSPEC = 13,
3398 WLAN_EID_TCLAS = 14,
3399 WLAN_EID_SCHEDULE = 15,
3400 WLAN_EID_CHALLENGE = 16,
3401 /* 17-31 reserved for challenge text extension */
3402 WLAN_EID_PWR_CONSTRAINT = 32,
3403 WLAN_EID_PWR_CAPABILITY = 33,
3404 WLAN_EID_TPC_REQUEST = 34,
3405 WLAN_EID_TPC_REPORT = 35,
3406 WLAN_EID_SUPPORTED_CHANNELS = 36,
3407 WLAN_EID_CHANNEL_SWITCH = 37,
3408 WLAN_EID_MEASURE_REQUEST = 38,
3409 WLAN_EID_MEASURE_REPORT = 39,
3410 WLAN_EID_QUIET = 40,
3411 WLAN_EID_IBSS_DFS = 41,
3412 WLAN_EID_ERP_INFO = 42,
3413 WLAN_EID_TS_DELAY = 43,
3414 WLAN_EID_TCLAS_PROCESSING = 44,
3415 WLAN_EID_HT_CAPABILITY = 45,
3416 WLAN_EID_QOS_CAPA = 46,
3417 /* 47 reserved for Broadcom */
3419 WLAN_EID_802_15_COEX = 49,
3420 WLAN_EID_EXT_SUPP_RATES = 50,
3421 WLAN_EID_AP_CHAN_REPORT = 51,
3422 WLAN_EID_NEIGHBOR_REPORT = 52,
3424 WLAN_EID_MOBILITY_DOMAIN = 54,
3425 WLAN_EID_FAST_BSS_TRANSITION = 55,
3426 WLAN_EID_TIMEOUT_INTERVAL = 56,
3427 WLAN_EID_RIC_DATA = 57,
3428 WLAN_EID_DSE_REGISTERED_LOCATION = 58,
3429 WLAN_EID_SUPPORTED_REGULATORY_CLASSES = 59,
3430 WLAN_EID_EXT_CHANSWITCH_ANN = 60,
3431 WLAN_EID_HT_OPERATION = 61,
3432 WLAN_EID_SECONDARY_CHANNEL_OFFSET = 62,
3433 WLAN_EID_BSS_AVG_ACCESS_DELAY = 63,
3434 WLAN_EID_ANTENNA_INFO = 64,
3436 WLAN_EID_MEASUREMENT_PILOT_TX_INFO = 66,
3437 WLAN_EID_BSS_AVAILABLE_CAPACITY = 67,
3438 WLAN_EID_BSS_AC_ACCESS_DELAY = 68,
3439 WLAN_EID_TIME_ADVERTISEMENT = 69,
3440 WLAN_EID_RRM_ENABLED_CAPABILITIES = 70,
3441 WLAN_EID_MULTIPLE_BSSID = 71,
3442 WLAN_EID_BSS_COEX_2040 = 72,
3443 WLAN_EID_BSS_INTOLERANT_CHL_REPORT = 73,
3444 WLAN_EID_OVERLAP_BSS_SCAN_PARAM = 74,
3445 WLAN_EID_RIC_DESCRIPTOR = 75,
3447 WLAN_EID_ASSOC_COMEBACK_TIME = 77,
3448 WLAN_EID_EVENT_REQUEST = 78,
3449 WLAN_EID_EVENT_REPORT = 79,
3450 WLAN_EID_DIAGNOSTIC_REQUEST = 80,
3451 WLAN_EID_DIAGNOSTIC_REPORT = 81,
3452 WLAN_EID_LOCATION_PARAMS = 82,
3453 WLAN_EID_NON_TX_BSSID_CAP = 83,
3454 WLAN_EID_SSID_LIST = 84,
3455 WLAN_EID_MULTI_BSSID_IDX = 85,
3456 WLAN_EID_FMS_DESCRIPTOR = 86,
3457 WLAN_EID_FMS_REQUEST = 87,
3458 WLAN_EID_FMS_RESPONSE = 88,
3459 WLAN_EID_QOS_TRAFFIC_CAPA = 89,
3460 WLAN_EID_BSS_MAX_IDLE_PERIOD = 90,
3461 WLAN_EID_TSF_REQUEST = 91,
3462 WLAN_EID_TSF_RESPOSNE = 92,
3463 WLAN_EID_WNM_SLEEP_MODE = 93,
3464 WLAN_EID_TIM_BCAST_REQ = 94,
3465 WLAN_EID_TIM_BCAST_RESP = 95,
3466 WLAN_EID_COLL_IF_REPORT = 96,
3467 WLAN_EID_CHANNEL_USAGE = 97,
3468 WLAN_EID_TIME_ZONE = 98,
3469 WLAN_EID_DMS_REQUEST = 99,
3470 WLAN_EID_DMS_RESPONSE = 100,
3471 WLAN_EID_LINK_ID = 101,
3472 WLAN_EID_WAKEUP_SCHEDUL = 102,
3474 WLAN_EID_CHAN_SWITCH_TIMING = 104,
3475 WLAN_EID_PTI_CONTROL = 105,
3476 WLAN_EID_PU_BUFFER_STATUS = 106,
3477 WLAN_EID_INTERWORKING = 107,
3478 WLAN_EID_ADVERTISEMENT_PROTOCOL = 108,
3479 WLAN_EID_EXPEDITED_BW_REQ = 109,
3480 WLAN_EID_QOS_MAP_SET = 110,
3481 WLAN_EID_ROAMING_CONSORTIUM = 111,
3482 WLAN_EID_EMERGENCY_ALERT = 112,
3483 WLAN_EID_MESH_CONFIG = 113,
3484 WLAN_EID_MESH_ID = 114,
3485 WLAN_EID_LINK_METRIC_REPORT = 115,
3486 WLAN_EID_CONGESTION_NOTIFICATION = 116,
3487 WLAN_EID_PEER_MGMT = 117,
3488 WLAN_EID_CHAN_SWITCH_PARAM = 118,
3489 WLAN_EID_MESH_AWAKE_WINDOW = 119,
3490 WLAN_EID_BEACON_TIMING = 120,
3491 WLAN_EID_MCCAOP_SETUP_REQ = 121,
3492 WLAN_EID_MCCAOP_SETUP_RESP = 122,
3493 WLAN_EID_MCCAOP_ADVERT = 123,
3494 WLAN_EID_MCCAOP_TEARDOWN = 124,
3495 WLAN_EID_GANN = 125,
3496 WLAN_EID_RANN = 126,
3497 WLAN_EID_EXT_CAPABILITY = 127,
3498 /* 128, 129 reserved for Agere */
3499 WLAN_EID_PREQ = 130,
3500 WLAN_EID_PREP = 131,
3501 WLAN_EID_PERR = 132,
3502 /* 133-136 reserved for Cisco */
3504 WLAN_EID_PXUC = 138,
3505 WLAN_EID_AUTH_MESH_PEER_EXCH = 139,
3507 WLAN_EID_DESTINATION_URI = 141,
3508 WLAN_EID_UAPSD_COEX = 142,
3509 WLAN_EID_WAKEUP_SCHEDULE = 143,
3510 WLAN_EID_EXT_SCHEDULE = 144,
3511 WLAN_EID_STA_AVAILABILITY = 145,
3512 WLAN_EID_DMG_TSPEC = 146,
3513 WLAN_EID_DMG_AT = 147,
3514 WLAN_EID_DMG_CAP = 148,
3515 /* 149 reserved for Cisco */
3516 WLAN_EID_CISCO_VENDOR_SPECIFIC = 150,
3517 WLAN_EID_DMG_OPERATION = 151,
3518 WLAN_EID_DMG_BSS_PARAM_CHANGE = 152,
3519 WLAN_EID_DMG_BEAM_REFINEMENT = 153,
3520 WLAN_EID_CHANNEL_MEASURE_FEEDBACK = 154,
3521 /* 155-156 reserved for Cisco */
3522 WLAN_EID_AWAKE_WINDOW = 157,
3523 WLAN_EID_MULTI_BAND = 158,
3524 WLAN_EID_ADDBA_EXT = 159,
3525 WLAN_EID_NEXT_PCP_LIST = 160,
3526 WLAN_EID_PCP_HANDOVER = 161,
3527 WLAN_EID_DMG_LINK_MARGIN = 162,
3528 WLAN_EID_SWITCHING_STREAM = 163,
3529 WLAN_EID_SESSION_TRANSITION = 164,
3530 WLAN_EID_DYN_TONE_PAIRING_REPORT = 165,
3531 WLAN_EID_CLUSTER_REPORT = 166,
3532 WLAN_EID_RELAY_CAP = 167,
3533 WLAN_EID_RELAY_XFER_PARAM_SET = 168,
3534 WLAN_EID_BEAM_LINK_MAINT = 169,
3535 WLAN_EID_MULTIPLE_MAC_ADDR = 170,
3536 WLAN_EID_U_PID = 171,
3537 WLAN_EID_DMG_LINK_ADAPT_ACK = 172,
3538 /* 173 reserved for Symbol */
3539 WLAN_EID_MCCAOP_ADV_OVERVIEW = 174,
3540 WLAN_EID_QUIET_PERIOD_REQ = 175,
3541 /* 176 reserved for Symbol */
3542 WLAN_EID_QUIET_PERIOD_RESP = 177,
3543 /* 178-179 reserved for Symbol */
3544 /* 180 reserved for ISO/IEC 20011 */
3545 WLAN_EID_EPAC_POLICY = 182,
3546 WLAN_EID_CLISTER_TIME_OFF = 183,
3547 WLAN_EID_INTER_AC_PRIO = 184,
3548 WLAN_EID_SCS_DESCRIPTOR = 185,
3549 WLAN_EID_QLOAD_REPORT = 186,
3550 WLAN_EID_HCCA_TXOP_UPDATE_COUNT = 187,
3551 WLAN_EID_HL_STREAM_ID = 188,
3552 WLAN_EID_GCR_GROUP_ADDR = 189,
3553 WLAN_EID_ANTENNA_SECTOR_ID_PATTERN = 190,
3554 WLAN_EID_VHT_CAPABILITY = 191,
3555 WLAN_EID_VHT_OPERATION = 192,
3556 WLAN_EID_EXTENDED_BSS_LOAD = 193,
3557 WLAN_EID_WIDE_BW_CHANNEL_SWITCH = 194,
3558 WLAN_EID_TX_POWER_ENVELOPE = 195,
3559 WLAN_EID_CHANNEL_SWITCH_WRAPPER = 196,
3561 WLAN_EID_QUIET_CHANNEL = 198,
3562 WLAN_EID_OPMODE_NOTIF = 199,
3564 WLAN_EID_REDUCED_NEIGHBOR_REPORT = 201,
3566 WLAN_EID_AID_REQUEST = 210,
3567 WLAN_EID_AID_RESPONSE = 211,
3568 WLAN_EID_S1G_BCN_COMPAT = 213,
3569 WLAN_EID_S1G_SHORT_BCN_INTERVAL = 214,
3570 WLAN_EID_S1G_TWT = 216,
3571 WLAN_EID_S1G_CAPABILITIES = 217,
3572 WLAN_EID_VENDOR_SPECIFIC = 221,
3573 WLAN_EID_QOS_PARAMETER = 222,
3574 WLAN_EID_S1G_OPERATION = 232,
3575 WLAN_EID_CAG_NUMBER = 237,
3576 WLAN_EID_AP_CSN = 239,
3577 WLAN_EID_FILS_INDICATION = 240,
3578 WLAN_EID_DILS = 241,
3579 WLAN_EID_FRAGMENT = 242,
3580 WLAN_EID_RSNX = 244,
3581 WLAN_EID_EXTENSION = 255
3584 /* Element ID Extensions for Element ID 255 */
3585 enum ieee80211_eid_ext {
3586 WLAN_EID_EXT_ASSOC_DELAY_INFO = 1,
3587 WLAN_EID_EXT_FILS_REQ_PARAMS = 2,
3588 WLAN_EID_EXT_FILS_KEY_CONFIRM = 3,
3589 WLAN_EID_EXT_FILS_SESSION = 4,
3590 WLAN_EID_EXT_FILS_HLP_CONTAINER = 5,
3591 WLAN_EID_EXT_FILS_IP_ADDR_ASSIGN = 6,
3592 WLAN_EID_EXT_KEY_DELIVERY = 7,
3593 WLAN_EID_EXT_FILS_WRAPPED_DATA = 8,
3594 WLAN_EID_EXT_FILS_PUBLIC_KEY = 12,
3595 WLAN_EID_EXT_FILS_NONCE = 13,
3596 WLAN_EID_EXT_FUTURE_CHAN_GUIDANCE = 14,
3597 WLAN_EID_EXT_HE_CAPABILITY = 35,
3598 WLAN_EID_EXT_HE_OPERATION = 36,
3599 WLAN_EID_EXT_UORA = 37,
3600 WLAN_EID_EXT_HE_MU_EDCA = 38,
3601 WLAN_EID_EXT_HE_SPR = 39,
3602 WLAN_EID_EXT_NDP_FEEDBACK_REPORT_PARAMSET = 41,
3603 WLAN_EID_EXT_BSS_COLOR_CHG_ANN = 42,
3604 WLAN_EID_EXT_QUIET_TIME_PERIOD_SETUP = 43,
3605 WLAN_EID_EXT_ESS_REPORT = 45,
3606 WLAN_EID_EXT_OPS = 46,
3607 WLAN_EID_EXT_HE_BSS_LOAD = 47,
3608 WLAN_EID_EXT_MAX_CHANNEL_SWITCH_TIME = 52,
3609 WLAN_EID_EXT_MULTIPLE_BSSID_CONFIGURATION = 55,
3610 WLAN_EID_EXT_NON_INHERITANCE = 56,
3611 WLAN_EID_EXT_KNOWN_BSSID = 57,
3612 WLAN_EID_EXT_SHORT_SSID_LIST = 58,
3613 WLAN_EID_EXT_HE_6GHZ_CAPA = 59,
3614 WLAN_EID_EXT_UL_MU_POWER_CAPA = 60,
3615 WLAN_EID_EXT_EHT_OPERATION = 106,
3616 WLAN_EID_EXT_EHT_MULTI_LINK = 107,
3617 WLAN_EID_EXT_EHT_CAPABILITY = 108,
3620 /* Action category code */
3621 enum ieee80211_category {
3622 WLAN_CATEGORY_SPECTRUM_MGMT = 0,
3623 WLAN_CATEGORY_QOS = 1,
3624 WLAN_CATEGORY_DLS = 2,
3625 WLAN_CATEGORY_BACK = 3,
3626 WLAN_CATEGORY_PUBLIC = 4,
3627 WLAN_CATEGORY_RADIO_MEASUREMENT = 5,
3628 WLAN_CATEGORY_FAST_BBS_TRANSITION = 6,
3629 WLAN_CATEGORY_HT = 7,
3630 WLAN_CATEGORY_SA_QUERY = 8,
3631 WLAN_CATEGORY_PROTECTED_DUAL_OF_ACTION = 9,
3632 WLAN_CATEGORY_WNM = 10,
3633 WLAN_CATEGORY_WNM_UNPROTECTED = 11,
3634 WLAN_CATEGORY_TDLS = 12,
3635 WLAN_CATEGORY_MESH_ACTION = 13,
3636 WLAN_CATEGORY_MULTIHOP_ACTION = 14,
3637 WLAN_CATEGORY_SELF_PROTECTED = 15,
3638 WLAN_CATEGORY_DMG = 16,
3639 WLAN_CATEGORY_WMM = 17,
3640 WLAN_CATEGORY_FST = 18,
3641 WLAN_CATEGORY_UNPROT_DMG = 20,
3642 WLAN_CATEGORY_VHT = 21,
3643 WLAN_CATEGORY_S1G = 22,
3644 WLAN_CATEGORY_VENDOR_SPECIFIC_PROTECTED = 126,
3645 WLAN_CATEGORY_VENDOR_SPECIFIC = 127,
3648 /* SPECTRUM_MGMT action code */
3649 enum ieee80211_spectrum_mgmt_actioncode {
3650 WLAN_ACTION_SPCT_MSR_REQ = 0,
3651 WLAN_ACTION_SPCT_MSR_RPRT = 1,
3652 WLAN_ACTION_SPCT_TPC_REQ = 2,
3653 WLAN_ACTION_SPCT_TPC_RPRT = 3,
3654 WLAN_ACTION_SPCT_CHL_SWITCH = 4,
3657 /* HT action codes */
3658 enum ieee80211_ht_actioncode {
3659 WLAN_HT_ACTION_NOTIFY_CHANWIDTH = 0,
3660 WLAN_HT_ACTION_SMPS = 1,
3661 WLAN_HT_ACTION_PSMP = 2,
3662 WLAN_HT_ACTION_PCO_PHASE = 3,
3663 WLAN_HT_ACTION_CSI = 4,
3664 WLAN_HT_ACTION_NONCOMPRESSED_BF = 5,
3665 WLAN_HT_ACTION_COMPRESSED_BF = 6,
3666 WLAN_HT_ACTION_ASEL_IDX_FEEDBACK = 7,
3669 /* VHT action codes */
3670 enum ieee80211_vht_actioncode {
3671 WLAN_VHT_ACTION_COMPRESSED_BF = 0,
3672 WLAN_VHT_ACTION_GROUPID_MGMT = 1,
3673 WLAN_VHT_ACTION_OPMODE_NOTIF = 2,
3676 /* Self Protected Action codes */
3677 enum ieee80211_self_protected_actioncode {
3678 WLAN_SP_RESERVED = 0,
3679 WLAN_SP_MESH_PEERING_OPEN = 1,
3680 WLAN_SP_MESH_PEERING_CONFIRM = 2,
3681 WLAN_SP_MESH_PEERING_CLOSE = 3,
3682 WLAN_SP_MGK_INFORM = 4,
3683 WLAN_SP_MGK_ACK = 5,
3686 /* Mesh action codes */
3687 enum ieee80211_mesh_actioncode {
3688 WLAN_MESH_ACTION_LINK_METRIC_REPORT,
3689 WLAN_MESH_ACTION_HWMP_PATH_SELECTION,
3690 WLAN_MESH_ACTION_GATE_ANNOUNCEMENT,
3691 WLAN_MESH_ACTION_CONGESTION_CONTROL_NOTIFICATION,
3692 WLAN_MESH_ACTION_MCCA_SETUP_REQUEST,
3693 WLAN_MESH_ACTION_MCCA_SETUP_REPLY,
3694 WLAN_MESH_ACTION_MCCA_ADVERTISEMENT_REQUEST,
3695 WLAN_MESH_ACTION_MCCA_ADVERTISEMENT,
3696 WLAN_MESH_ACTION_MCCA_TEARDOWN,
3697 WLAN_MESH_ACTION_TBTT_ADJUSTMENT_REQUEST,
3698 WLAN_MESH_ACTION_TBTT_ADJUSTMENT_RESPONSE,
3701 /* Unprotected WNM action codes */
3702 enum ieee80211_unprotected_wnm_actioncode {
3703 WLAN_UNPROTECTED_WNM_ACTION_TIM = 0,
3704 WLAN_UNPROTECTED_WNM_ACTION_TIMING_MEASUREMENT_RESPONSE = 1,
3707 /* Security key length */
3708 enum ieee80211_key_len {
3709 WLAN_KEY_LEN_WEP40 = 5,
3710 WLAN_KEY_LEN_WEP104 = 13,
3711 WLAN_KEY_LEN_CCMP = 16,
3712 WLAN_KEY_LEN_CCMP_256 = 32,
3713 WLAN_KEY_LEN_TKIP = 32,
3714 WLAN_KEY_LEN_AES_CMAC = 16,
3715 WLAN_KEY_LEN_SMS4 = 32,
3716 WLAN_KEY_LEN_GCMP = 16,
3717 WLAN_KEY_LEN_GCMP_256 = 32,
3718 WLAN_KEY_LEN_BIP_CMAC_256 = 32,
3719 WLAN_KEY_LEN_BIP_GMAC_128 = 16,
3720 WLAN_KEY_LEN_BIP_GMAC_256 = 32,
3723 enum ieee80211_s1g_actioncode {
3724 WLAN_S1G_AID_SWITCH_REQUEST,
3725 WLAN_S1G_AID_SWITCH_RESPONSE,
3726 WLAN_S1G_SYNC_CONTROL,
3727 WLAN_S1G_STA_INFO_ANNOUNCE,
3728 WLAN_S1G_EDCA_PARAM_SET,
3729 WLAN_S1G_EL_OPERATION,
3731 WLAN_S1G_TWT_TEARDOWN,
3732 WLAN_S1G_SECT_GROUP_ID_LIST,
3733 WLAN_S1G_SECT_ID_FEEDBACK,
3734 WLAN_S1G_TWT_INFORMATION = 11,
3737 #define IEEE80211_WEP_IV_LEN 4
3738 #define IEEE80211_WEP_ICV_LEN 4
3739 #define IEEE80211_CCMP_HDR_LEN 8
3740 #define IEEE80211_CCMP_MIC_LEN 8
3741 #define IEEE80211_CCMP_PN_LEN 6
3742 #define IEEE80211_CCMP_256_HDR_LEN 8
3743 #define IEEE80211_CCMP_256_MIC_LEN 16
3744 #define IEEE80211_CCMP_256_PN_LEN 6
3745 #define IEEE80211_TKIP_IV_LEN 8
3746 #define IEEE80211_TKIP_ICV_LEN 4
3747 #define IEEE80211_CMAC_PN_LEN 6
3748 #define IEEE80211_GMAC_PN_LEN 6
3749 #define IEEE80211_GCMP_HDR_LEN 8
3750 #define IEEE80211_GCMP_MIC_LEN 16
3751 #define IEEE80211_GCMP_PN_LEN 6
3753 #define FILS_NONCE_LEN 16
3754 #define FILS_MAX_KEK_LEN 64
3756 #define FILS_ERP_MAX_USERNAME_LEN 16
3757 #define FILS_ERP_MAX_REALM_LEN 253
3758 #define FILS_ERP_MAX_RRK_LEN 64
3760 #define PMK_MAX_LEN 64
3761 #define SAE_PASSWORD_MAX_LEN 128
3763 /* Public action codes (IEEE Std 802.11-2016, 9.6.8.1, Table 9-307) */
3764 enum ieee80211_pub_actioncode {
3765 WLAN_PUB_ACTION_20_40_BSS_COEX = 0,
3766 WLAN_PUB_ACTION_DSE_ENABLEMENT = 1,
3767 WLAN_PUB_ACTION_DSE_DEENABLEMENT = 2,
3768 WLAN_PUB_ACTION_DSE_REG_LOC_ANN = 3,
3769 WLAN_PUB_ACTION_EXT_CHANSW_ANN = 4,
3770 WLAN_PUB_ACTION_DSE_MSMT_REQ = 5,
3771 WLAN_PUB_ACTION_DSE_MSMT_RESP = 6,
3772 WLAN_PUB_ACTION_MSMT_PILOT = 7,
3773 WLAN_PUB_ACTION_DSE_PC = 8,
3774 WLAN_PUB_ACTION_VENDOR_SPECIFIC = 9,
3775 WLAN_PUB_ACTION_GAS_INITIAL_REQ = 10,
3776 WLAN_PUB_ACTION_GAS_INITIAL_RESP = 11,
3777 WLAN_PUB_ACTION_GAS_COMEBACK_REQ = 12,
3778 WLAN_PUB_ACTION_GAS_COMEBACK_RESP = 13,
3779 WLAN_PUB_ACTION_TDLS_DISCOVER_RES = 14,
3780 WLAN_PUB_ACTION_LOC_TRACK_NOTI = 15,
3781 WLAN_PUB_ACTION_QAB_REQUEST_FRAME = 16,
3782 WLAN_PUB_ACTION_QAB_RESPONSE_FRAME = 17,
3783 WLAN_PUB_ACTION_QMF_POLICY = 18,
3784 WLAN_PUB_ACTION_QMF_POLICY_CHANGE = 19,
3785 WLAN_PUB_ACTION_QLOAD_REQUEST = 20,
3786 WLAN_PUB_ACTION_QLOAD_REPORT = 21,
3787 WLAN_PUB_ACTION_HCCA_TXOP_ADVERT = 22,
3788 WLAN_PUB_ACTION_HCCA_TXOP_RESPONSE = 23,
3789 WLAN_PUB_ACTION_PUBLIC_KEY = 24,
3790 WLAN_PUB_ACTION_CHANNEL_AVAIL_QUERY = 25,
3791 WLAN_PUB_ACTION_CHANNEL_SCHEDULE_MGMT = 26,
3792 WLAN_PUB_ACTION_CONTACT_VERI_SIGNAL = 27,
3793 WLAN_PUB_ACTION_GDD_ENABLEMENT_REQ = 28,
3794 WLAN_PUB_ACTION_GDD_ENABLEMENT_RESP = 29,
3795 WLAN_PUB_ACTION_NETWORK_CHANNEL_CONTROL = 30,
3796 WLAN_PUB_ACTION_WHITE_SPACE_MAP_ANN = 31,
3797 WLAN_PUB_ACTION_FTM_REQUEST = 32,
3798 WLAN_PUB_ACTION_FTM_RESPONSE = 33,
3799 WLAN_PUB_ACTION_FILS_DISCOVERY = 34,
3802 /* TDLS action codes */
3803 enum ieee80211_tdls_actioncode {
3804 WLAN_TDLS_SETUP_REQUEST = 0,
3805 WLAN_TDLS_SETUP_RESPONSE = 1,
3806 WLAN_TDLS_SETUP_CONFIRM = 2,
3807 WLAN_TDLS_TEARDOWN = 3,
3808 WLAN_TDLS_PEER_TRAFFIC_INDICATION = 4,
3809 WLAN_TDLS_CHANNEL_SWITCH_REQUEST = 5,
3810 WLAN_TDLS_CHANNEL_SWITCH_RESPONSE = 6,
3811 WLAN_TDLS_PEER_PSM_REQUEST = 7,
3812 WLAN_TDLS_PEER_PSM_RESPONSE = 8,
3813 WLAN_TDLS_PEER_TRAFFIC_RESPONSE = 9,
3814 WLAN_TDLS_DISCOVERY_REQUEST = 10,
3817 /* Extended Channel Switching capability to be set in the 1st byte of
3818 * the @WLAN_EID_EXT_CAPABILITY information element
3820 #define WLAN_EXT_CAPA1_EXT_CHANNEL_SWITCHING BIT(2)
3822 /* Multiple BSSID capability is set in the 6th bit of 3rd byte of the
3823 * @WLAN_EID_EXT_CAPABILITY information element
3825 #define WLAN_EXT_CAPA3_MULTI_BSSID_SUPPORT BIT(6)
3827 /* Timing Measurement protocol for time sync is set in the 7th bit of 3rd byte
3828 * of the @WLAN_EID_EXT_CAPABILITY information element
3830 #define WLAN_EXT_CAPA3_TIMING_MEASUREMENT_SUPPORT BIT(7)
3832 /* TDLS capabilities in the 4th byte of @WLAN_EID_EXT_CAPABILITY */
3833 #define WLAN_EXT_CAPA4_TDLS_BUFFER_STA BIT(4)
3834 #define WLAN_EXT_CAPA4_TDLS_PEER_PSM BIT(5)
3835 #define WLAN_EXT_CAPA4_TDLS_CHAN_SWITCH BIT(6)
3837 /* Interworking capabilities are set in 7th bit of 4th byte of the
3838 * @WLAN_EID_EXT_CAPABILITY information element
3840 #define WLAN_EXT_CAPA4_INTERWORKING_ENABLED BIT(7)
3843 * TDLS capabililites to be enabled in the 5th byte of the
3844 * @WLAN_EID_EXT_CAPABILITY information element
3846 #define WLAN_EXT_CAPA5_TDLS_ENABLED BIT(5)
3847 #define WLAN_EXT_CAPA5_TDLS_PROHIBITED BIT(6)
3848 #define WLAN_EXT_CAPA5_TDLS_CH_SW_PROHIBITED BIT(7)
3850 #define WLAN_EXT_CAPA8_TDLS_WIDE_BW_ENABLED BIT(5)
3851 #define WLAN_EXT_CAPA8_OPMODE_NOTIF BIT(6)
3853 /* Defines the maximal number of MSDUs in an A-MSDU. */
3854 #define WLAN_EXT_CAPA8_MAX_MSDU_IN_AMSDU_LSB BIT(7)
3855 #define WLAN_EXT_CAPA9_MAX_MSDU_IN_AMSDU_MSB BIT(0)
3858 * Fine Timing Measurement Initiator - bit 71 of @WLAN_EID_EXT_CAPABILITY
3859 * information element
3861 #define WLAN_EXT_CAPA9_FTM_INITIATOR BIT(7)
3863 /* Defines support for TWT Requester and TWT Responder */
3864 #define WLAN_EXT_CAPA10_TWT_REQUESTER_SUPPORT BIT(5)
3865 #define WLAN_EXT_CAPA10_TWT_RESPONDER_SUPPORT BIT(6)
3868 * When set, indicates that the AP is able to tolerate 26-tone RU UL
3869 * OFDMA transmissions using HE TB PPDU from OBSS (not falsely classify the
3870 * 26-tone RU UL OFDMA transmissions as radar pulses).
3872 #define WLAN_EXT_CAPA10_OBSS_NARROW_BW_RU_TOLERANCE_SUPPORT BIT(7)
3874 /* Defines support for enhanced multi-bssid advertisement*/
3875 #define WLAN_EXT_CAPA11_EMA_SUPPORT BIT(3)
3877 /* TDLS specific payload type in the LLC/SNAP header */
3878 #define WLAN_TDLS_SNAP_RFTYPE 0x2
3880 /* BSS Coex IE information field bits */
3881 #define WLAN_BSS_COEX_INFORMATION_REQUEST BIT(0)
3884 * enum ieee80211_mesh_sync_method - mesh synchronization method identifier
3886 * @IEEE80211_SYNC_METHOD_NEIGHBOR_OFFSET: the default synchronization method
3887 * @IEEE80211_SYNC_METHOD_VENDOR: a vendor specific synchronization method
3888 * that will be specified in a vendor specific information element
3890 enum ieee80211_mesh_sync_method {
3891 IEEE80211_SYNC_METHOD_NEIGHBOR_OFFSET = 1,
3892 IEEE80211_SYNC_METHOD_VENDOR = 255,
3896 * enum ieee80211_mesh_path_protocol - mesh path selection protocol identifier
3898 * @IEEE80211_PATH_PROTOCOL_HWMP: the default path selection protocol
3899 * @IEEE80211_PATH_PROTOCOL_VENDOR: a vendor specific protocol that will
3900 * be specified in a vendor specific information element
3902 enum ieee80211_mesh_path_protocol {
3903 IEEE80211_PATH_PROTOCOL_HWMP = 1,
3904 IEEE80211_PATH_PROTOCOL_VENDOR = 255,
3908 * enum ieee80211_mesh_path_metric - mesh path selection metric identifier
3910 * @IEEE80211_PATH_METRIC_AIRTIME: the default path selection metric
3911 * @IEEE80211_PATH_METRIC_VENDOR: a vendor specific metric that will be
3912 * specified in a vendor specific information element
3914 enum ieee80211_mesh_path_metric {
3915 IEEE80211_PATH_METRIC_AIRTIME = 1,
3916 IEEE80211_PATH_METRIC_VENDOR = 255,
3920 * enum ieee80211_root_mode_identifier - root mesh STA mode identifier
3922 * These attribute are used by dot11MeshHWMPRootMode to set root mesh STA mode
3924 * @IEEE80211_ROOTMODE_NO_ROOT: the mesh STA is not a root mesh STA (default)
3925 * @IEEE80211_ROOTMODE_ROOT: the mesh STA is a root mesh STA if greater than
3927 * @IEEE80211_PROACTIVE_PREQ_NO_PREP: the mesh STA is a root mesh STA supports
3928 * the proactive PREQ with proactive PREP subfield set to 0
3929 * @IEEE80211_PROACTIVE_PREQ_WITH_PREP: the mesh STA is a root mesh STA
3930 * supports the proactive PREQ with proactive PREP subfield set to 1
3931 * @IEEE80211_PROACTIVE_RANN: the mesh STA is a root mesh STA supports
3932 * the proactive RANN
3934 enum ieee80211_root_mode_identifier {
3935 IEEE80211_ROOTMODE_NO_ROOT = 0,
3936 IEEE80211_ROOTMODE_ROOT = 1,
3937 IEEE80211_PROACTIVE_PREQ_NO_PREP = 2,
3938 IEEE80211_PROACTIVE_PREQ_WITH_PREP = 3,
3939 IEEE80211_PROACTIVE_RANN = 4,
3943 * IEEE 802.11-2007 7.3.2.9 Country information element
3945 * Minimum length is 8 octets, ie len must be evenly
3949 /* Although the spec says 8 I'm seeing 6 in practice */
3950 #define IEEE80211_COUNTRY_IE_MIN_LEN 6
3952 /* The Country String field of the element shall be 3 octets in length */
3953 #define IEEE80211_COUNTRY_STRING_LEN 3
3956 * For regulatory extension stuff see IEEE 802.11-2007
3957 * Annex I (page 1141) and Annex J (page 1147). Also
3960 * When dot11RegulatoryClassesRequired is true and the
3961 * first_channel/reg_extension_id is >= 201 then the IE
3962 * compromises of the 'ext' struct represented below:
3964 * - Regulatory extension ID - when generating IE this just needs
3965 * to be monotonically increasing for each triplet passed in
3967 * - Regulatory class - index into set of rules
3968 * - Coverage class - index into air propagation time (Table 7-27),
3969 * in microseconds, you can compute the air propagation time from
3970 * the index by multiplying by 3, so index 10 yields a propagation
3971 * of 10 us. Valid values are 0-31, values 32-255 are not defined
3972 * yet. A value of 0 inicates air propagation of <= 1 us.
3974 * See also Table I.2 for Emission limit sets and table
3975 * I.3 for Behavior limit sets. Table J.1 indicates how to map
3976 * a reg_class to an emission limit set and behavior limit set.
3978 #define IEEE80211_COUNTRY_EXTENSION_ID 201
3981 * Channels numbers in the IE must be monotonically increasing
3982 * if dot11RegulatoryClassesRequired is not true.
3984 * If dot11RegulatoryClassesRequired is true consecutive
3985 * subband triplets following a regulatory triplet shall
3986 * have monotonically increasing first_channel number fields.
3988 * Channel numbers shall not overlap.
3990 * Note that max_power is signed.
3992 struct ieee80211_country_ie_triplet {
4000 u8 reg_extension_id;
4007 enum ieee80211_timeout_interval_type {
4008 WLAN_TIMEOUT_REASSOC_DEADLINE = 1 /* 802.11r */,
4009 WLAN_TIMEOUT_KEY_LIFETIME = 2 /* 802.11r */,
4010 WLAN_TIMEOUT_ASSOC_COMEBACK = 3 /* 802.11w */,
4014 * struct ieee80211_timeout_interval_ie - Timeout Interval element
4015 * @type: type, see &enum ieee80211_timeout_interval_type
4016 * @value: timeout interval value
4018 struct ieee80211_timeout_interval_ie {
4024 * enum ieee80211_idle_options - BSS idle options
4025 * @WLAN_IDLE_OPTIONS_PROTECTED_KEEP_ALIVE: the station should send an RSN
4026 * protected frame to the AP to reset the idle timer at the AP for
4029 enum ieee80211_idle_options {
4030 WLAN_IDLE_OPTIONS_PROTECTED_KEEP_ALIVE = BIT(0),
4034 * struct ieee80211_bss_max_idle_period_ie
4036 * This structure refers to "BSS Max idle period element"
4038 * @max_idle_period: indicates the time period during which a station can
4039 * refrain from transmitting frames to its associated AP without being
4040 * disassociated. In units of 1000 TUs.
4041 * @idle_options: indicates the options associated with the BSS idle capability
4042 * as specified in &enum ieee80211_idle_options.
4044 struct ieee80211_bss_max_idle_period_ie {
4045 __le16 max_idle_period;
4049 /* BACK action code */
4050 enum ieee80211_back_actioncode {
4051 WLAN_ACTION_ADDBA_REQ = 0,
4052 WLAN_ACTION_ADDBA_RESP = 1,
4053 WLAN_ACTION_DELBA = 2,
4056 /* BACK (block-ack) parties */
4057 enum ieee80211_back_parties {
4058 WLAN_BACK_RECIPIENT = 0,
4059 WLAN_BACK_INITIATOR = 1,
4062 /* SA Query action */
4063 enum ieee80211_sa_query_action {
4064 WLAN_ACTION_SA_QUERY_REQUEST = 0,
4065 WLAN_ACTION_SA_QUERY_RESPONSE = 1,
4069 * struct ieee80211_bssid_index
4071 * This structure refers to "Multiple BSSID-index element"
4073 * @bssid_index: BSSID index
4074 * @dtim_period: optional, overrides transmitted BSS dtim period
4075 * @dtim_count: optional, overrides transmitted BSS dtim count
4077 struct ieee80211_bssid_index {
4084 * struct ieee80211_multiple_bssid_configuration
4086 * This structure refers to "Multiple BSSID Configuration element"
4088 * @bssid_count: total number of active BSSIDs in the set
4089 * @profile_periodicity: the least number of beacon frames need to be received
4090 * in order to discover all the nontransmitted BSSIDs in the set.
4092 struct ieee80211_multiple_bssid_configuration {
4094 u8 profile_periodicity;
4097 #define SUITE(oui, id) (((oui) << 8) | (id))
4099 /* cipher suite selectors */
4100 #define WLAN_CIPHER_SUITE_USE_GROUP SUITE(0x000FAC, 0)
4101 #define WLAN_CIPHER_SUITE_WEP40 SUITE(0x000FAC, 1)
4102 #define WLAN_CIPHER_SUITE_TKIP SUITE(0x000FAC, 2)
4103 /* reserved: SUITE(0x000FAC, 3) */
4104 #define WLAN_CIPHER_SUITE_CCMP SUITE(0x000FAC, 4)
4105 #define WLAN_CIPHER_SUITE_WEP104 SUITE(0x000FAC, 5)
4106 #define WLAN_CIPHER_SUITE_AES_CMAC SUITE(0x000FAC, 6)
4107 #define WLAN_CIPHER_SUITE_GCMP SUITE(0x000FAC, 8)
4108 #define WLAN_CIPHER_SUITE_GCMP_256 SUITE(0x000FAC, 9)
4109 #define WLAN_CIPHER_SUITE_CCMP_256 SUITE(0x000FAC, 10)
4110 #define WLAN_CIPHER_SUITE_BIP_GMAC_128 SUITE(0x000FAC, 11)
4111 #define WLAN_CIPHER_SUITE_BIP_GMAC_256 SUITE(0x000FAC, 12)
4112 #define WLAN_CIPHER_SUITE_BIP_CMAC_256 SUITE(0x000FAC, 13)
4114 #define WLAN_CIPHER_SUITE_SMS4 SUITE(0x001472, 1)
4116 /* AKM suite selectors */
4117 #define WLAN_AKM_SUITE_8021X SUITE(0x000FAC, 1)
4118 #define WLAN_AKM_SUITE_PSK SUITE(0x000FAC, 2)
4119 #define WLAN_AKM_SUITE_FT_8021X SUITE(0x000FAC, 3)
4120 #define WLAN_AKM_SUITE_FT_PSK SUITE(0x000FAC, 4)
4121 #define WLAN_AKM_SUITE_8021X_SHA256 SUITE(0x000FAC, 5)
4122 #define WLAN_AKM_SUITE_PSK_SHA256 SUITE(0x000FAC, 6)
4123 #define WLAN_AKM_SUITE_TDLS SUITE(0x000FAC, 7)
4124 #define WLAN_AKM_SUITE_SAE SUITE(0x000FAC, 8)
4125 #define WLAN_AKM_SUITE_FT_OVER_SAE SUITE(0x000FAC, 9)
4126 #define WLAN_AKM_SUITE_AP_PEER_KEY SUITE(0x000FAC, 10)
4127 #define WLAN_AKM_SUITE_8021X_SUITE_B SUITE(0x000FAC, 11)
4128 #define WLAN_AKM_SUITE_8021X_SUITE_B_192 SUITE(0x000FAC, 12)
4129 #define WLAN_AKM_SUITE_FT_8021X_SHA384 SUITE(0x000FAC, 13)
4130 #define WLAN_AKM_SUITE_FILS_SHA256 SUITE(0x000FAC, 14)
4131 #define WLAN_AKM_SUITE_FILS_SHA384 SUITE(0x000FAC, 15)
4132 #define WLAN_AKM_SUITE_FT_FILS_SHA256 SUITE(0x000FAC, 16)
4133 #define WLAN_AKM_SUITE_FT_FILS_SHA384 SUITE(0x000FAC, 17)
4134 #define WLAN_AKM_SUITE_OWE SUITE(0x000FAC, 18)
4135 #define WLAN_AKM_SUITE_FT_PSK_SHA384 SUITE(0x000FAC, 19)
4136 #define WLAN_AKM_SUITE_PSK_SHA384 SUITE(0x000FAC, 20)
4138 #define WLAN_AKM_SUITE_WFA_DPP SUITE(WLAN_OUI_WFA, 2)
4140 #define WLAN_MAX_KEY_LEN 32
4142 #define WLAN_PMK_NAME_LEN 16
4143 #define WLAN_PMKID_LEN 16
4144 #define WLAN_PMK_LEN_EAP_LEAP 16
4145 #define WLAN_PMK_LEN 32
4146 #define WLAN_PMK_LEN_SUITE_B_192 48
4148 #define WLAN_OUI_WFA 0x506f9a
4149 #define WLAN_OUI_TYPE_WFA_P2P 9
4150 #define WLAN_OUI_TYPE_WFA_DPP 0x1A
4151 #define WLAN_OUI_MICROSOFT 0x0050f2
4152 #define WLAN_OUI_TYPE_MICROSOFT_WPA 1
4153 #define WLAN_OUI_TYPE_MICROSOFT_WMM 2
4154 #define WLAN_OUI_TYPE_MICROSOFT_WPS 4
4155 #define WLAN_OUI_TYPE_MICROSOFT_TPC 8
4158 * WMM/802.11e Tspec Element
4160 #define IEEE80211_WMM_IE_TSPEC_TID_MASK 0x0F
4161 #define IEEE80211_WMM_IE_TSPEC_TID_SHIFT 1
4163 enum ieee80211_tspec_status_code {
4164 IEEE80211_TSPEC_STATUS_ADMISS_ACCEPTED = 0,
4165 IEEE80211_TSPEC_STATUS_ADDTS_INVAL_PARAMS = 0x1,
4168 struct ieee80211_tspec_ie {
4177 __le16 nominal_msdu;
4179 __le32 min_service_int;
4180 __le32 max_service_int;
4181 __le32 inactivity_int;
4182 __le32 suspension_int;
4183 __le32 service_start_time;
4184 __le32 min_data_rate;
4185 __le32 mean_data_rate;
4186 __le32 peak_data_rate;
4187 __le32 max_burst_size;
4189 __le32 min_phy_rate;
4194 struct ieee80211_he_6ghz_capa {
4195 /* uses IEEE80211_HE_6GHZ_CAP_* below */
4199 /* HE 6 GHz band capabilities */
4200 /* uses enum ieee80211_min_mpdu_spacing values */
4201 #define IEEE80211_HE_6GHZ_CAP_MIN_MPDU_START 0x0007
4202 /* uses enum ieee80211_vht_max_ampdu_length_exp values */
4203 #define IEEE80211_HE_6GHZ_CAP_MAX_AMPDU_LEN_EXP 0x0038
4204 /* uses IEEE80211_VHT_CAP_MAX_MPDU_LENGTH_* values */
4205 #define IEEE80211_HE_6GHZ_CAP_MAX_MPDU_LEN 0x00c0
4206 /* WLAN_HT_CAP_SM_PS_* values */
4207 #define IEEE80211_HE_6GHZ_CAP_SM_PS 0x0600
4208 #define IEEE80211_HE_6GHZ_CAP_RD_RESPONDER 0x0800
4209 #define IEEE80211_HE_6GHZ_CAP_RX_ANTPAT_CONS 0x1000
4210 #define IEEE80211_HE_6GHZ_CAP_TX_ANTPAT_CONS 0x2000
4213 * ieee80211_get_qos_ctl - get pointer to qos control bytes
4216 * The qos ctrl bytes come after the frame_control, duration, seq_num
4217 * and 3 or 4 addresses of length ETH_ALEN. Checks frame_control to choose
4218 * between struct ieee80211_qos_hdr_4addr and struct ieee80211_qos_hdr.
4220 static inline u8 *ieee80211_get_qos_ctl(struct ieee80211_hdr *hdr)
4223 struct ieee80211_qos_hdr addr3;
4224 struct ieee80211_qos_hdr_4addr addr4;
4228 if (ieee80211_has_a4(qos->addr3.frame_control))
4229 return (u8 *)&qos->addr4.qos_ctrl;
4231 return (u8 *)&qos->addr3.qos_ctrl;
4235 * ieee80211_get_tid - get qos TID
4238 static inline u8 ieee80211_get_tid(struct ieee80211_hdr *hdr)
4240 u8 *qc = ieee80211_get_qos_ctl(hdr);
4242 return qc[0] & IEEE80211_QOS_CTL_TID_MASK;
4246 * ieee80211_get_SA - get pointer to SA
4249 * Given an 802.11 frame, this function returns the offset
4250 * to the source address (SA). It does not verify that the
4251 * header is long enough to contain the address, and the
4252 * header must be long enough to contain the frame control
4255 static inline u8 *ieee80211_get_SA(struct ieee80211_hdr *hdr)
4257 if (ieee80211_has_a4(hdr->frame_control))
4259 if (ieee80211_has_fromds(hdr->frame_control))
4265 * ieee80211_is_bufferable_mmpdu - check if frame is bufferable MMPDU
4266 * @skb: the skb to check, starting with the 802.11 header
4268 static inline bool ieee80211_is_bufferable_mmpdu(struct ieee80211_hdr *hdr, size_t len)
4270 struct ieee80211_mgmt *mgmt = (void *)hdr;
4271 __le16 fc = mgmt->frame_control;
4274 * IEEE 802.11 REVme D2.0 definition of bufferable MMPDU;
4275 * note that this ignores the IBSS special case.
4277 if (!ieee80211_is_mgmt(fc))
4280 if (ieee80211_is_disassoc(fc) || ieee80211_is_deauth(fc))
4283 if (!ieee80211_is_action(fc))
4286 if (len < offsetofend(typeof(*mgmt), u.action.u.ftm.action_code))
4289 /* action frame - additionally check for non-bufferable FTM */
4291 if (mgmt->u.action.category != WLAN_CATEGORY_PUBLIC &&
4292 mgmt->u.action.category != WLAN_CATEGORY_PROTECTED_DUAL_OF_ACTION)
4295 if (mgmt->u.action.u.ftm.action_code == WLAN_PUB_ACTION_FTM_REQUEST ||
4296 mgmt->u.action.u.ftm.action_code == WLAN_PUB_ACTION_FTM_RESPONSE)
4303 * ieee80211_get_DA - get pointer to DA
4306 * Given an 802.11 frame, this function returns the offset
4307 * to the destination address (DA). It does not verify that
4308 * the header is long enough to contain the address, and the
4309 * header must be long enough to contain the frame control
4312 static inline u8 *ieee80211_get_DA(struct ieee80211_hdr *hdr)
4314 if (ieee80211_has_tods(hdr->frame_control))
4321 * ieee80211_is_robust_mgmt_frame - check if frame is a robust management frame
4322 * @hdr: the frame (buffer must include at least the first octet of payload)
4324 static inline bool ieee80211_is_robust_mgmt_frame(struct ieee80211_hdr *hdr)
4326 if (ieee80211_is_disassoc(hdr->frame_control) ||
4327 ieee80211_is_deauth(hdr->frame_control))
4330 if (ieee80211_is_action(hdr->frame_control)) {
4334 * Action frames, excluding Public Action frames, are Robust
4335 * Management Frames. However, if we are looking at a Protected
4336 * frame, skip the check since the data may be encrypted and
4337 * the frame has already been found to be a Robust Management
4338 * Frame (by the other end).
4340 if (ieee80211_has_protected(hdr->frame_control))
4342 category = ((u8 *) hdr) + 24;
4343 return *category != WLAN_CATEGORY_PUBLIC &&
4344 *category != WLAN_CATEGORY_HT &&
4345 *category != WLAN_CATEGORY_WNM_UNPROTECTED &&
4346 *category != WLAN_CATEGORY_SELF_PROTECTED &&
4347 *category != WLAN_CATEGORY_UNPROT_DMG &&
4348 *category != WLAN_CATEGORY_VHT &&
4349 *category != WLAN_CATEGORY_S1G &&
4350 *category != WLAN_CATEGORY_VENDOR_SPECIFIC;
4357 * ieee80211_is_public_action - check if frame is a public action frame
4359 * @len: length of the frame
4361 static inline bool ieee80211_is_public_action(struct ieee80211_hdr *hdr,
4364 struct ieee80211_mgmt *mgmt = (void *)hdr;
4366 if (len < IEEE80211_MIN_ACTION_SIZE)
4368 if (!ieee80211_is_action(hdr->frame_control))
4370 return mgmt->u.action.category == WLAN_CATEGORY_PUBLIC;
4373 static inline bool is_multicast_ether_addr(const u8 *a)
4379 * _ieee80211_is_group_privacy_action - check if frame is a group addressed
4380 * privacy action frame
4383 static inline bool ieee80211_is_group_privacy_action(struct ieee80211_hdr *hdr)
4385 struct ieee80211_mgmt *mgmt = (void *)hdr;
4387 if (!ieee80211_is_action(hdr->frame_control) ||
4388 !is_multicast_ether_addr(hdr->addr1))
4391 return mgmt->u.action.category == WLAN_CATEGORY_MESH_ACTION ||
4392 mgmt->u.action.category == WLAN_CATEGORY_MULTIHOP_ACTION;
4396 * ieee80211_tu_to_usec - convert time units (TU) to microseconds
4399 static inline unsigned long ieee80211_tu_to_usec(unsigned long tu)
4405 * ieee80211_check_tim - check if AID bit is set in TIM
4407 * @tim_len: length of the TIM IE
4408 * @aid: the AID to look for
4410 static inline bool ieee80211_check_tim(const struct ieee80211_tim_ie *tim,
4411 u8 tim_len, u16 aid)
4414 u8 indexn0, indexn1, indexn2;
4416 if (unlikely(!tim || tim_len < sizeof(*tim)))
4421 mask = 1 << (aid & 7);
4423 indexn1 = tim->bitmap_ctrl & 0xfe;
4424 indexn2 = tim_len + indexn1 - 4;
4426 if (indexn0 < indexn1 || indexn0 > indexn2)
4431 return !!(tim->virtual_map[indexn0] & mask);
4434 /* convert time units */
4435 #define TU_TO_JIFFIES(x) (usecs_to_jiffies((x) * 1024))
4436 #define TU_TO_EXP_TIME(x) (jiffies + TU_TO_JIFFIES(x))
4438 static inline bool ieee80211_is_timing_measurement(struct ieee80211_hdr *hdr, size_t len)
4440 struct ieee80211_mgmt *mgmt = (void *)hdr;
4442 if (len < IEEE80211_MIN_ACTION_SIZE)
4445 if (!ieee80211_is_action(hdr->frame_control))
4448 if (mgmt->u.action.category == WLAN_CATEGORY_WNM_UNPROTECTED &&
4449 mgmt->u.action.u.wnm_timing_msr.action_code ==
4450 WLAN_UNPROTECTED_WNM_ACTION_TIMING_MEASUREMENT_RESPONSE &&
4451 len >= offsetofend(typeof(*mgmt), u.action.u.wnm_timing_msr))
4457 static inline bool ieee80211_is_ftm(struct ieee80211_hdr *hdr, size_t len)
4459 struct ieee80211_mgmt *mgmt = (void *)hdr;
4461 if (!ieee80211_is_public_action((void *)mgmt, len))
4464 if (mgmt->u.action.u.ftm.action_code ==
4465 WLAN_PUB_ACTION_FTM_RESPONSE &&
4466 len >= offsetofend(typeof(*mgmt), u.action.u.ftm))
4478 /* element iteration helpers */
4479 #define for_each_element(_elem, _data, _datalen) \
4480 for (_elem = (const struct element *)(_data); \
4481 (const u8 *)(_data) + (_datalen) - (const u8 *)_elem >= \
4482 (int)sizeof(*_elem) && \
4483 (const u8 *)(_data) + (_datalen) - (const u8 *)_elem >= \
4484 (int)sizeof(*_elem) + _elem->datalen; \
4485 _elem = (const struct element *)(_elem->data + _elem->datalen))
4487 #define for_each_element_id(element, _id, data, datalen) \
4488 for_each_element(element, data, datalen) \
4489 if (element->id == (_id))
4491 #define for_each_element_extid(element, extid, _data, _datalen) \
4492 for_each_element(element, _data, _datalen) \
4493 if (element->id == WLAN_EID_EXTENSION && \
4494 element->datalen > 0 && \
4495 element->data[0] == (extid))
4497 #define for_each_subelement(sub, element) \
4498 for_each_element(sub, (element)->data, (element)->datalen)
4500 #define for_each_subelement_id(sub, id, element) \
4501 for_each_element_id(sub, id, (element)->data, (element)->datalen)
4503 #define for_each_subelement_extid(sub, extid, element) \
4504 for_each_element_extid(sub, extid, (element)->data, (element)->datalen)
4506 /* convert frequencies */
4507 #define MHZ_TO_KHZ(freq) ((freq) * 1000)
4508 #define KHZ_TO_MHZ(freq) ((freq) / 1000)
4509 #define PR_KHZ(f) KHZ_TO_MHZ(f), f % 1000
4510 #define KHZ_F "%d.%03d"
4512 /* convert powers */
4513 #define DBI_TO_MBI(gain) ((gain) * 100)
4514 #define MBI_TO_DBI(gain) ((gain) / 100)
4515 #define DBM_TO_MBM(gain) ((gain) * 100)
4516 #define MBM_TO_DBM(gain) ((gain) / 100)
4519 * for_each_element_completed - determine if element parsing consumed all data
4520 * @element: element pointer after for_each_element() or friends
4521 * @data: same data pointer as passed to for_each_element() or friends
4522 * @datalen: same data length as passed to for_each_element() or friends
4524 * This function returns %true if all the data was parsed or considered
4525 * while walking the elements. Only use this if your for_each_element()
4526 * loop cannot be broken out of, otherwise it always returns %false.
4528 * If some data was malformed, this returns %false since the last parsed
4529 * element will not fill the whole remaining data.
4531 static inline bool for_each_element_completed(const struct element *element,
4532 const void *data, size_t datalen)
4534 return (const u8 *)element == (const u8 *)data + datalen;
4538 * RSNX Capabilities:
4539 * bits 0-3: Field length (n-1)
4541 #define WLAN_RSNX_CAPA_PROTECTED_TWT BIT(4)
4542 #define WLAN_RSNX_CAPA_SAE_H2E BIT(5)
4545 * reduced neighbor report, based on Draft P802.11ax_D6.1,
4546 * section 9.4.2.170 and accepted contributions.
4548 #define IEEE80211_AP_INFO_TBTT_HDR_TYPE 0x03
4549 #define IEEE80211_AP_INFO_TBTT_HDR_FILTERED 0x04
4550 #define IEEE80211_AP_INFO_TBTT_HDR_COLOC 0x08
4551 #define IEEE80211_AP_INFO_TBTT_HDR_COUNT 0xF0
4552 #define IEEE80211_TBTT_INFO_TYPE_TBTT 0
4553 #define IEEE80211_TBTT_INFO_TYPE_MLD 1
4555 #define IEEE80211_RNR_TBTT_PARAMS_OCT_RECOMMENDED 0x01
4556 #define IEEE80211_RNR_TBTT_PARAMS_SAME_SSID 0x02
4557 #define IEEE80211_RNR_TBTT_PARAMS_MULTI_BSSID 0x04
4558 #define IEEE80211_RNR_TBTT_PARAMS_TRANSMITTED_BSSID 0x08
4559 #define IEEE80211_RNR_TBTT_PARAMS_COLOC_ESS 0x10
4560 #define IEEE80211_RNR_TBTT_PARAMS_PROBE_ACTIVE 0x20
4561 #define IEEE80211_RNR_TBTT_PARAMS_COLOC_AP 0x40
4563 #define IEEE80211_RNR_TBTT_PARAMS_PSD_NO_LIMIT 127
4564 #define IEEE80211_RNR_TBTT_PARAMS_PSD_RESERVED -128
4566 struct ieee80211_neighbor_ap_info {
4573 enum ieee80211_range_params_max_total_ltf {
4574 IEEE80211_RANGE_PARAMS_MAX_TOTAL_LTF_4 = 0,
4575 IEEE80211_RANGE_PARAMS_MAX_TOTAL_LTF_8,
4576 IEEE80211_RANGE_PARAMS_MAX_TOTAL_LTF_16,
4577 IEEE80211_RANGE_PARAMS_MAX_TOTAL_LTF_UNSPECIFIED,
4581 * reduced neighbor report, based on Draft P802.11be_D3.0,
4582 * section 9.4.2.170.2.
4584 struct ieee80211_rnr_mld_params {
4589 #define IEEE80211_RNR_MLD_PARAMS_LINK_ID 0x000F
4590 #define IEEE80211_RNR_MLD_PARAMS_BSS_CHANGE_COUNT 0x0FF0
4591 #define IEEE80211_RNR_MLD_PARAMS_UPDATES_INCLUDED 0x1000
4592 #define IEEE80211_RNR_MLD_PARAMS_DISABLED_LINK 0x2000
4594 /* Format of the TBTT information element if it has 7, 8 or 9 bytes */
4595 struct ieee80211_tbtt_info_7_8_9 {
4599 /* The following element is optional, structure may not grow */
4604 /* Format of the TBTT information element if it has >= 11 bytes */
4605 struct ieee80211_tbtt_info_ge_11 {
4610 /* The following elements are optional, structure may grow */
4613 struct ieee80211_rnr_mld_params mld_params;
4616 /* multi-link device */
4617 #define IEEE80211_MLD_MAX_NUM_LINKS 15
4619 #define IEEE80211_ML_CONTROL_TYPE 0x0007
4620 #define IEEE80211_ML_CONTROL_TYPE_BASIC 0
4621 #define IEEE80211_ML_CONTROL_TYPE_PREQ 1
4622 #define IEEE80211_ML_CONTROL_TYPE_RECONF 2
4623 #define IEEE80211_ML_CONTROL_TYPE_TDLS 3
4624 #define IEEE80211_ML_CONTROL_TYPE_PRIO_ACCESS 4
4625 #define IEEE80211_ML_CONTROL_PRESENCE_MASK 0xfff0
4627 struct ieee80211_multi_link_elem {
4632 #define IEEE80211_MLC_BASIC_PRES_LINK_ID 0x0010
4633 #define IEEE80211_MLC_BASIC_PRES_BSS_PARAM_CH_CNT 0x0020
4634 #define IEEE80211_MLC_BASIC_PRES_MED_SYNC_DELAY 0x0040
4635 #define IEEE80211_MLC_BASIC_PRES_EML_CAPA 0x0080
4636 #define IEEE80211_MLC_BASIC_PRES_MLD_CAPA_OP 0x0100
4637 #define IEEE80211_MLC_BASIC_PRES_MLD_ID 0x0200
4639 #define IEEE80211_MED_SYNC_DELAY_DURATION 0x00ff
4640 #define IEEE80211_MED_SYNC_DELAY_SYNC_OFDM_ED_THRESH 0x0f00
4641 #define IEEE80211_MED_SYNC_DELAY_SYNC_MAX_NUM_TXOPS 0xf000
4644 * Described in P802.11be_D3.0
4645 * dot11MSDTimerDuration should default to 5484 (i.e. 171.375)
4646 * dot11MSDOFDMEDthreshold defaults to -72 (i.e. 0)
4647 * dot11MSDTXOPMAX defaults to 1
4649 #define IEEE80211_MED_SYNC_DELAY_DEFAULT 0x10ac
4651 #define IEEE80211_EML_CAP_EMLSR_SUPP 0x0001
4652 #define IEEE80211_EML_CAP_EMLSR_PADDING_DELAY 0x000e
4653 #define IEEE80211_EML_CAP_EMLSR_PADDING_DELAY_0US 0
4654 #define IEEE80211_EML_CAP_EMLSR_PADDING_DELAY_32US 1
4655 #define IEEE80211_EML_CAP_EMLSR_PADDING_DELAY_64US 2
4656 #define IEEE80211_EML_CAP_EMLSR_PADDING_DELAY_128US 3
4657 #define IEEE80211_EML_CAP_EMLSR_PADDING_DELAY_256US 4
4658 #define IEEE80211_EML_CAP_EMLSR_TRANSITION_DELAY 0x0070
4659 #define IEEE80211_EML_CAP_EMLSR_TRANSITION_DELAY_0US 0
4660 #define IEEE80211_EML_CAP_EMLSR_TRANSITION_DELAY_16US 1
4661 #define IEEE80211_EML_CAP_EMLSR_TRANSITION_DELAY_32US 2
4662 #define IEEE80211_EML_CAP_EMLSR_TRANSITION_DELAY_64US 3
4663 #define IEEE80211_EML_CAP_EMLSR_TRANSITION_DELAY_128US 4
4664 #define IEEE80211_EML_CAP_EMLSR_TRANSITION_DELAY_256US 5
4665 #define IEEE80211_EML_CAP_EMLMR_SUPPORT 0x0080
4666 #define IEEE80211_EML_CAP_EMLMR_DELAY 0x0700
4667 #define IEEE80211_EML_CAP_EMLMR_DELAY_0US 0
4668 #define IEEE80211_EML_CAP_EMLMR_DELAY_32US 1
4669 #define IEEE80211_EML_CAP_EMLMR_DELAY_64US 2
4670 #define IEEE80211_EML_CAP_EMLMR_DELAY_128US 3
4671 #define IEEE80211_EML_CAP_EMLMR_DELAY_256US 4
4672 #define IEEE80211_EML_CAP_TRANSITION_TIMEOUT 0x7800
4673 #define IEEE80211_EML_CAP_TRANSITION_TIMEOUT_0 0
4674 #define IEEE80211_EML_CAP_TRANSITION_TIMEOUT_128US 1
4675 #define IEEE80211_EML_CAP_TRANSITION_TIMEOUT_256US 2
4676 #define IEEE80211_EML_CAP_TRANSITION_TIMEOUT_512US 3
4677 #define IEEE80211_EML_CAP_TRANSITION_TIMEOUT_1TU 4
4678 #define IEEE80211_EML_CAP_TRANSITION_TIMEOUT_2TU 5
4679 #define IEEE80211_EML_CAP_TRANSITION_TIMEOUT_4TU 6
4680 #define IEEE80211_EML_CAP_TRANSITION_TIMEOUT_8TU 7
4681 #define IEEE80211_EML_CAP_TRANSITION_TIMEOUT_16TU 8
4682 #define IEEE80211_EML_CAP_TRANSITION_TIMEOUT_32TU 9
4683 #define IEEE80211_EML_CAP_TRANSITION_TIMEOUT_64TU 10
4684 #define IEEE80211_EML_CAP_TRANSITION_TIMEOUT_128TU 11
4686 #define IEEE80211_MLD_CAP_OP_MAX_SIMUL_LINKS 0x000f
4687 #define IEEE80211_MLD_CAP_OP_SRS_SUPPORT 0x0010
4688 #define IEEE80211_MLD_CAP_OP_TID_TO_LINK_MAP_NEG_SUPP 0x0060
4689 #define IEEE80211_MLD_CAP_OP_FREQ_SEP_TYPE_IND 0x0f80
4690 #define IEEE80211_MLD_CAP_OP_AAR_SUPPORT 0x1000
4692 struct ieee80211_mle_basic_common_info {
4698 #define IEEE80211_MLC_PREQ_PRES_MLD_ID 0x0010
4700 struct ieee80211_mle_preq_common_info {
4705 #define IEEE80211_MLC_RECONF_PRES_MLD_MAC_ADDR 0x0010
4707 /* no fixed fields in RECONF */
4709 struct ieee80211_mle_tdls_common_info {
4711 u8 ap_mld_mac_addr[6];
4714 #define IEEE80211_MLC_PRIO_ACCESS_PRES_AP_MLD_MAC_ADDR 0x0010
4716 /* no fixed fields in PRIO_ACCESS */
4719 * ieee80211_mle_common_size - check multi-link element common size
4720 * @data: multi-link element, must already be checked for size using
4721 * ieee80211_mle_size_ok()
4723 static inline u8 ieee80211_mle_common_size(const u8 *data)
4725 const struct ieee80211_multi_link_elem *mle = (const void *)data;
4726 u16 control = le16_to_cpu(mle->control);
4729 switch (u16_get_bits(control, IEEE80211_ML_CONTROL_TYPE)) {
4730 case IEEE80211_ML_CONTROL_TYPE_BASIC:
4731 case IEEE80211_ML_CONTROL_TYPE_PREQ:
4732 case IEEE80211_ML_CONTROL_TYPE_TDLS:
4733 case IEEE80211_ML_CONTROL_TYPE_RECONF:
4735 * The length is the first octet pointed by mle->variable so no
4736 * need to add anything
4739 case IEEE80211_ML_CONTROL_TYPE_PRIO_ACCESS:
4740 if (control & IEEE80211_MLC_PRIO_ACCESS_PRES_AP_MLD_MAC_ADDR)
4747 return sizeof(*mle) + common + mle->variable[0];
4751 * ieee80211_mle_get_bss_param_ch_cnt - returns the BSS parameter change count
4752 * @mle: the basic multi link element
4754 * The element is assumed to be of the correct type (BASIC) and big enough,
4755 * this must be checked using ieee80211_mle_type_ok().
4757 * If the BSS parameter change count value can't be found (the presence bit
4758 * for it is clear), 0 will be returned.
4761 ieee80211_mle_get_bss_param_ch_cnt(const struct ieee80211_multi_link_elem *mle)
4763 u16 control = le16_to_cpu(mle->control);
4764 const u8 *common = mle->variable;
4766 /* common points now at the beginning of ieee80211_mle_basic_common_info */
4767 common += sizeof(struct ieee80211_mle_basic_common_info);
4769 if (!(control & IEEE80211_MLC_BASIC_PRES_BSS_PARAM_CH_CNT))
4772 if (control & IEEE80211_MLC_BASIC_PRES_LINK_ID)
4779 * ieee80211_mle_get_eml_med_sync_delay - returns the medium sync delay
4780 * @data: pointer to the multi link EHT IE
4782 * The element is assumed to be of the correct type (BASIC) and big enough,
4783 * this must be checked using ieee80211_mle_type_ok().
4785 * If the medium synchronization is not present, then the default value is
4788 static inline u16 ieee80211_mle_get_eml_med_sync_delay(const u8 *data)
4790 const struct ieee80211_multi_link_elem *mle = (const void *)data;
4791 u16 control = le16_to_cpu(mle->control);
4792 const u8 *common = mle->variable;
4794 /* common points now at the beginning of ieee80211_mle_basic_common_info */
4795 common += sizeof(struct ieee80211_mle_basic_common_info);
4797 if (!(control & IEEE80211_MLC_BASIC_PRES_MED_SYNC_DELAY))
4798 return IEEE80211_MED_SYNC_DELAY_DEFAULT;
4800 if (control & IEEE80211_MLC_BASIC_PRES_LINK_ID)
4802 if (control & IEEE80211_MLC_BASIC_PRES_BSS_PARAM_CH_CNT)
4805 return get_unaligned_le16(common);
4809 * ieee80211_mle_get_eml_cap - returns the EML capability
4810 * @data: pointer to the multi link EHT IE
4812 * The element is assumed to be of the correct type (BASIC) and big enough,
4813 * this must be checked using ieee80211_mle_type_ok().
4815 * If the EML capability is not present, 0 will be returned.
4817 static inline u16 ieee80211_mle_get_eml_cap(const u8 *data)
4819 const struct ieee80211_multi_link_elem *mle = (const void *)data;
4820 u16 control = le16_to_cpu(mle->control);
4821 const u8 *common = mle->variable;
4823 /* common points now at the beginning of ieee80211_mle_basic_common_info */
4824 common += sizeof(struct ieee80211_mle_basic_common_info);
4826 if (!(control & IEEE80211_MLC_BASIC_PRES_EML_CAPA))
4829 if (control & IEEE80211_MLC_BASIC_PRES_LINK_ID)
4831 if (control & IEEE80211_MLC_BASIC_PRES_BSS_PARAM_CH_CNT)
4833 if (control & IEEE80211_MLC_BASIC_PRES_MED_SYNC_DELAY)
4836 return get_unaligned_le16(common);
4840 * ieee80211_mle_size_ok - validate multi-link element size
4841 * @data: pointer to the element data
4842 * @len: length of the containing element
4844 static inline bool ieee80211_mle_size_ok(const u8 *data, size_t len)
4846 const struct ieee80211_multi_link_elem *mle = (const void *)data;
4847 u8 fixed = sizeof(*mle);
4849 bool check_common_len = false;
4855 control = le16_to_cpu(mle->control);
4857 switch (u16_get_bits(control, IEEE80211_ML_CONTROL_TYPE)) {
4858 case IEEE80211_ML_CONTROL_TYPE_BASIC:
4859 common += sizeof(struct ieee80211_mle_basic_common_info);
4860 check_common_len = true;
4861 if (control & IEEE80211_MLC_BASIC_PRES_LINK_ID)
4863 if (control & IEEE80211_MLC_BASIC_PRES_BSS_PARAM_CH_CNT)
4865 if (control & IEEE80211_MLC_BASIC_PRES_MED_SYNC_DELAY)
4867 if (control & IEEE80211_MLC_BASIC_PRES_EML_CAPA)
4869 if (control & IEEE80211_MLC_BASIC_PRES_MLD_CAPA_OP)
4871 if (control & IEEE80211_MLC_BASIC_PRES_MLD_ID)
4874 case IEEE80211_ML_CONTROL_TYPE_PREQ:
4875 common += sizeof(struct ieee80211_mle_preq_common_info);
4876 if (control & IEEE80211_MLC_PREQ_PRES_MLD_ID)
4878 check_common_len = true;
4880 case IEEE80211_ML_CONTROL_TYPE_RECONF:
4881 if (control & IEEE80211_MLC_RECONF_PRES_MLD_MAC_ADDR)
4884 case IEEE80211_ML_CONTROL_TYPE_TDLS:
4885 common += sizeof(struct ieee80211_mle_tdls_common_info);
4886 check_common_len = true;
4888 case IEEE80211_ML_CONTROL_TYPE_PRIO_ACCESS:
4889 if (control & IEEE80211_MLC_PRIO_ACCESS_PRES_AP_MLD_MAC_ADDR)
4893 /* we don't know this type */
4897 if (len < fixed + common)
4900 if (!check_common_len)
4903 /* if present, common length is the first octet there */
4904 return mle->variable[0] >= common;
4908 * ieee80211_mle_type_ok - validate multi-link element type and size
4909 * @data: pointer to the element data
4910 * @type: expected type of the element
4911 * @len: length of the containing element
4913 static inline bool ieee80211_mle_type_ok(const u8 *data, u8 type, size_t len)
4915 const struct ieee80211_multi_link_elem *mle = (const void *)data;
4918 if (!ieee80211_mle_size_ok(data, len))
4921 control = le16_to_cpu(mle->control);
4923 if (u16_get_bits(control, IEEE80211_ML_CONTROL_TYPE) == type)
4929 enum ieee80211_mle_subelems {
4930 IEEE80211_MLE_SUBELEM_PER_STA_PROFILE = 0,
4931 IEEE80211_MLE_SUBELEM_FRAGMENT = 254,
4934 #define IEEE80211_MLE_STA_CONTROL_LINK_ID 0x000f
4935 #define IEEE80211_MLE_STA_CONTROL_COMPLETE_PROFILE 0x0010
4936 #define IEEE80211_MLE_STA_CONTROL_STA_MAC_ADDR_PRESENT 0x0020
4937 #define IEEE80211_MLE_STA_CONTROL_BEACON_INT_PRESENT 0x0040
4938 #define IEEE80211_MLE_STA_CONTROL_TSF_OFFS_PRESENT 0x0080
4939 #define IEEE80211_MLE_STA_CONTROL_DTIM_INFO_PRESENT 0x0100
4940 #define IEEE80211_MLE_STA_CONTROL_NSTR_LINK_PAIR_PRESENT 0x0200
4941 #define IEEE80211_MLE_STA_CONTROL_NSTR_BITMAP_SIZE 0x0400
4942 #define IEEE80211_MLE_STA_CONTROL_BSS_PARAM_CHANGE_CNT_PRESENT 0x0800
4944 struct ieee80211_mle_per_sta_profile {
4951 * ieee80211_mle_basic_sta_prof_size_ok - validate basic multi-link element sta
4953 * @data: pointer to the sub element data
4954 * @len: length of the containing sub element
4956 static inline bool ieee80211_mle_basic_sta_prof_size_ok(const u8 *data,
4959 const struct ieee80211_mle_per_sta_profile *prof = (const void *)data;
4961 u8 fixed = sizeof(*prof);
4967 control = le16_to_cpu(prof->control);
4969 if (control & IEEE80211_MLE_STA_CONTROL_STA_MAC_ADDR_PRESENT)
4971 if (control & IEEE80211_MLE_STA_CONTROL_BEACON_INT_PRESENT)
4973 if (control & IEEE80211_MLE_STA_CONTROL_TSF_OFFS_PRESENT)
4975 if (control & IEEE80211_MLE_STA_CONTROL_DTIM_INFO_PRESENT)
4977 if (control & IEEE80211_MLE_STA_CONTROL_COMPLETE_PROFILE &&
4978 control & IEEE80211_MLE_STA_CONTROL_NSTR_LINK_PAIR_PRESENT) {
4979 if (control & IEEE80211_MLE_STA_CONTROL_NSTR_BITMAP_SIZE)
4984 if (control & IEEE80211_MLE_STA_CONTROL_BSS_PARAM_CHANGE_CNT_PRESENT)
4987 return prof->sta_info_len >= info_len &&
4988 fixed + prof->sta_info_len <= len;
4992 * ieee80211_mle_basic_sta_prof_bss_param_ch_cnt - get per-STA profile BSS
4993 * parameter change count
4994 * @prof: the per-STA profile, having been checked with
4995 * ieee80211_mle_basic_sta_prof_size_ok() for the correct length
4997 * Return: The BSS parameter change count value if present, 0 otherwise.
5000 ieee80211_mle_basic_sta_prof_bss_param_ch_cnt(const struct ieee80211_mle_per_sta_profile *prof)
5002 u16 control = le16_to_cpu(prof->control);
5003 const u8 *pos = prof->variable;
5005 if (!(control & IEEE80211_MLE_STA_CONTROL_BSS_PARAM_CHANGE_CNT_PRESENT))
5008 if (control & IEEE80211_MLE_STA_CONTROL_STA_MAC_ADDR_PRESENT)
5010 if (control & IEEE80211_MLE_STA_CONTROL_BEACON_INT_PRESENT)
5012 if (control & IEEE80211_MLE_STA_CONTROL_TSF_OFFS_PRESENT)
5014 if (control & IEEE80211_MLE_STA_CONTROL_DTIM_INFO_PRESENT)
5016 if (control & IEEE80211_MLE_STA_CONTROL_COMPLETE_PROFILE &&
5017 control & IEEE80211_MLE_STA_CONTROL_NSTR_LINK_PAIR_PRESENT) {
5018 if (control & IEEE80211_MLE_STA_CONTROL_NSTR_BITMAP_SIZE)
5027 #define IEEE80211_MLE_STA_RECONF_CONTROL_LINK_ID 0x000f
5028 #define IEEE80211_MLE_STA_RECONF_CONTROL_COMPLETE_PROFILE 0x0010
5029 #define IEEE80211_MLE_STA_RECONF_CONTROL_STA_MAC_ADDR_PRESENT 0x0020
5030 #define IEEE80211_MLE_STA_RECONF_CONTROL_AP_REM_TIMER_PRESENT 0x0040
5031 #define IEEE80211_MLE_STA_RECONF_CONTROL_OPERATION_UPDATE_TYPE 0x0780
5032 #define IEEE80211_MLE_STA_RECONF_CONTROL_OPERATION_PARAMS_PRESENT 0x0800
5035 * ieee80211_mle_reconf_sta_prof_size_ok - validate reconfiguration multi-link
5036 * element sta profile size.
5037 * @data: pointer to the sub element data
5038 * @len: length of the containing sub element
5040 static inline bool ieee80211_mle_reconf_sta_prof_size_ok(const u8 *data,
5043 const struct ieee80211_mle_per_sta_profile *prof = (const void *)data;
5045 u8 fixed = sizeof(*prof);
5051 control = le16_to_cpu(prof->control);
5053 if (control & IEEE80211_MLE_STA_RECONF_CONTROL_STA_MAC_ADDR_PRESENT)
5055 if (control & IEEE80211_MLE_STA_RECONF_CONTROL_AP_REM_TIMER_PRESENT)
5057 if (control & IEEE80211_MLE_STA_RECONF_CONTROL_OPERATION_PARAMS_PRESENT)
5060 return prof->sta_info_len >= info_len &&
5061 ((size_t)(fixed + prof->sta_info_len - 1) <= len);
5064 #define for_each_mle_subelement(_elem, _data, _len) \
5065 if (ieee80211_mle_size_ok(_data, _len)) \
5066 for_each_element(_elem, \
5067 _data + ieee80211_mle_common_size(_data),\
5068 _len - ieee80211_mle_common_size(_data))
5070 #endif /* __LINUX_IEEE80211_H */