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mac80211: add specific-queue flushing support
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f0706e82 1/*
3017b80b
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2 * mac80211 <-> driver interface
3 *
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4 * Copyright 2002-2005, Devicescape Software, Inc.
5 * Copyright 2006-2007 Jiri Benc <jbenc@suse.cz>
026331c4 6 * Copyright 2007-2010 Johannes Berg <johannes@sipsolutions.net>
d98ad83e 7 * Copyright 2013-2014 Intel Mobile Communications GmbH
f0706e82
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8 *
9 * This program is free software; you can redistribute it and/or modify
10 * it under the terms of the GNU General Public License version 2 as
11 * published by the Free Software Foundation.
12 */
13
14#ifndef MAC80211_H
15#define MAC80211_H
16
187f1882 17#include <linux/bug.h>
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18#include <linux/kernel.h>
19#include <linux/if_ether.h>
20#include <linux/skbuff.h>
f0706e82 21#include <linux/ieee80211.h>
f0706e82 22#include <net/cfg80211.h>
42d98795 23#include <asm/unaligned.h>
f0706e82 24
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25/**
26 * DOC: Introduction
27 *
28 * mac80211 is the Linux stack for 802.11 hardware that implements
29 * only partial functionality in hard- or firmware. This document
30 * defines the interface between mac80211 and low-level hardware
31 * drivers.
32 */
33
34/**
35 * DOC: Calling mac80211 from interrupts
36 *
37 * Only ieee80211_tx_status_irqsafe() and ieee80211_rx_irqsafe() can be
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38 * called in hardware interrupt context. The low-level driver must not call any
39 * other functions in hardware interrupt context. If there is a need for such
40 * call, the low-level driver should first ACK the interrupt and perform the
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41 * IEEE 802.11 code call after this, e.g. from a scheduled workqueue or even
42 * tasklet function.
43 *
44 * NOTE: If the driver opts to use the _irqsafe() functions, it may not also
6ef307bc 45 * use the non-IRQ-safe functions!
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46 */
47
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48/**
49 * DOC: Warning
50 *
51 * If you're reading this document and not the header file itself, it will
52 * be incomplete because not all documentation has been converted yet.
53 */
54
55/**
56 * DOC: Frame format
57 *
58 * As a general rule, when frames are passed between mac80211 and the driver,
59 * they start with the IEEE 802.11 header and include the same octets that are
60 * sent over the air except for the FCS which should be calculated by the
61 * hardware.
62 *
63 * There are, however, various exceptions to this rule for advanced features:
64 *
65 * The first exception is for hardware encryption and decryption offload
66 * where the IV/ICV may or may not be generated in hardware.
67 *
68 * Secondly, when the hardware handles fragmentation, the frame handed to
69 * the driver from mac80211 is the MSDU, not the MPDU.
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70 */
71
42935eca
LR
72/**
73 * DOC: mac80211 workqueue
74 *
75 * mac80211 provides its own workqueue for drivers and internal mac80211 use.
76 * The workqueue is a single threaded workqueue and can only be accessed by
77 * helpers for sanity checking. Drivers must ensure all work added onto the
78 * mac80211 workqueue should be cancelled on the driver stop() callback.
79 *
80 * mac80211 will flushed the workqueue upon interface removal and during
81 * suspend.
82 *
83 * All work performed on the mac80211 workqueue must not acquire the RTNL lock.
84 *
85 */
86
313162d0
PG
87struct device;
88
e100bb64
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89/**
90 * enum ieee80211_max_queues - maximum number of queues
91 *
92 * @IEEE80211_MAX_QUEUES: Maximum number of regular device queues.
445ea4e8 93 * @IEEE80211_MAX_QUEUE_MAP: bitmap with maximum queues set
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94 */
95enum ieee80211_max_queues {
3a25a8c8 96 IEEE80211_MAX_QUEUES = 16,
445ea4e8 97 IEEE80211_MAX_QUEUE_MAP = BIT(IEEE80211_MAX_QUEUES) - 1,
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98};
99
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100#define IEEE80211_INVAL_HW_QUEUE 0xff
101
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102/**
103 * enum ieee80211_ac_numbers - AC numbers as used in mac80211
104 * @IEEE80211_AC_VO: voice
105 * @IEEE80211_AC_VI: video
106 * @IEEE80211_AC_BE: best effort
107 * @IEEE80211_AC_BK: background
108 */
109enum ieee80211_ac_numbers {
110 IEEE80211_AC_VO = 0,
111 IEEE80211_AC_VI = 1,
112 IEEE80211_AC_BE = 2,
113 IEEE80211_AC_BK = 3,
114};
948d887d 115#define IEEE80211_NUM_ACS 4
4bce22b9 116
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117/**
118 * struct ieee80211_tx_queue_params - transmit queue configuration
119 *
120 * The information provided in this structure is required for QoS
3330d7be 121 * transmit queue configuration. Cf. IEEE 802.11 7.3.2.29.
6b301cdf 122 *
e37d4dff 123 * @aifs: arbitration interframe space [0..255]
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124 * @cw_min: minimum contention window [a value of the form
125 * 2^n-1 in the range 1..32767]
6b301cdf 126 * @cw_max: maximum contention window [like @cw_min]
3330d7be 127 * @txop: maximum burst time in units of 32 usecs, 0 meaning disabled
908f8d07 128 * @acm: is mandatory admission control required for the access category
9d173fc5 129 * @uapsd: is U-APSD mode enabled for the queue
6b301cdf 130 */
f0706e82 131struct ieee80211_tx_queue_params {
f434b2d1 132 u16 txop;
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133 u16 cw_min;
134 u16 cw_max;
f434b2d1 135 u8 aifs;
908f8d07 136 bool acm;
ab13315a 137 bool uapsd;
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138};
139
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140struct ieee80211_low_level_stats {
141 unsigned int dot11ACKFailureCount;
142 unsigned int dot11RTSFailureCount;
143 unsigned int dot11FCSErrorCount;
144 unsigned int dot11RTSSuccessCount;
145};
146
d01a1e65
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147/**
148 * enum ieee80211_chanctx_change - change flag for channel context
4bf88530 149 * @IEEE80211_CHANCTX_CHANGE_WIDTH: The channel width changed
04ecd257 150 * @IEEE80211_CHANCTX_CHANGE_RX_CHAINS: The number of RX chains changed
164eb02d 151 * @IEEE80211_CHANCTX_CHANGE_RADAR: radar detection flag changed
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152 * @IEEE80211_CHANCTX_CHANGE_CHANNEL: switched to another operating channel,
153 * this is used only with channel switching with CSA
21f659bf 154 * @IEEE80211_CHANCTX_CHANGE_MIN_WIDTH: The min required channel width changed
d01a1e65
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155 */
156enum ieee80211_chanctx_change {
4bf88530 157 IEEE80211_CHANCTX_CHANGE_WIDTH = BIT(0),
04ecd257 158 IEEE80211_CHANCTX_CHANGE_RX_CHAINS = BIT(1),
164eb02d 159 IEEE80211_CHANCTX_CHANGE_RADAR = BIT(2),
73da7d5b 160 IEEE80211_CHANCTX_CHANGE_CHANNEL = BIT(3),
21f659bf 161 IEEE80211_CHANCTX_CHANGE_MIN_WIDTH = BIT(4),
d01a1e65
MK
162};
163
164/**
165 * struct ieee80211_chanctx_conf - channel context that vifs may be tuned to
166 *
167 * This is the driver-visible part. The ieee80211_chanctx
168 * that contains it is visible in mac80211 only.
169 *
4bf88530 170 * @def: the channel definition
21f659bf 171 * @min_def: the minimum channel definition currently required.
04ecd257
JB
172 * @rx_chains_static: The number of RX chains that must always be
173 * active on the channel to receive MIMO transmissions
174 * @rx_chains_dynamic: The number of RX chains that must be enabled
175 * after RTS/CTS handshake to receive SMPS MIMO transmissions;
5d7fad48 176 * this will always be >= @rx_chains_static.
164eb02d 177 * @radar_enabled: whether radar detection is enabled on this channel.
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MK
178 * @drv_priv: data area for driver use, will always be aligned to
179 * sizeof(void *), size is determined in hw information.
180 */
181struct ieee80211_chanctx_conf {
4bf88530 182 struct cfg80211_chan_def def;
21f659bf 183 struct cfg80211_chan_def min_def;
d01a1e65 184
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185 u8 rx_chains_static, rx_chains_dynamic;
186
164eb02d
SW
187 bool radar_enabled;
188
1c06ef98 189 u8 drv_priv[0] __aligned(sizeof(void *));
d01a1e65
MK
190};
191
1a5f0c13
LC
192/**
193 * enum ieee80211_chanctx_switch_mode - channel context switch mode
194 * @CHANCTX_SWMODE_REASSIGN_VIF: Both old and new contexts already
195 * exist (and will continue to exist), but the virtual interface
196 * needs to be switched from one to the other.
197 * @CHANCTX_SWMODE_SWAP_CONTEXTS: The old context exists but will stop
198 * to exist with this call, the new context doesn't exist but
199 * will be active after this call, the virtual interface switches
200 * from the old to the new (note that the driver may of course
201 * implement this as an on-the-fly chandef switch of the existing
202 * hardware context, but the mac80211 pointer for the old context
203 * will cease to exist and only the new one will later be used
204 * for changes/removal.)
205 */
206enum ieee80211_chanctx_switch_mode {
207 CHANCTX_SWMODE_REASSIGN_VIF,
208 CHANCTX_SWMODE_SWAP_CONTEXTS,
209};
210
211/**
212 * struct ieee80211_vif_chanctx_switch - vif chanctx switch information
213 *
214 * This is structure is used to pass information about a vif that
215 * needs to switch from one chanctx to another. The
216 * &ieee80211_chanctx_switch_mode defines how the switch should be
217 * done.
218 *
219 * @vif: the vif that should be switched from old_ctx to new_ctx
220 * @old_ctx: the old context to which the vif was assigned
221 * @new_ctx: the new context to which the vif must be assigned
222 */
223struct ieee80211_vif_chanctx_switch {
224 struct ieee80211_vif *vif;
225 struct ieee80211_chanctx_conf *old_ctx;
226 struct ieee80211_chanctx_conf *new_ctx;
227};
228
471b3efd
JB
229/**
230 * enum ieee80211_bss_change - BSS change notification flags
231 *
232 * These flags are used with the bss_info_changed() callback
233 * to indicate which BSS parameter changed.
234 *
235 * @BSS_CHANGED_ASSOC: association status changed (associated/disassociated),
236 * also implies a change in the AID.
237 * @BSS_CHANGED_ERP_CTS_PROT: CTS protection changed
238 * @BSS_CHANGED_ERP_PREAMBLE: preamble changed
9f1ba906 239 * @BSS_CHANGED_ERP_SLOT: slot timing changed
38668c05 240 * @BSS_CHANGED_HT: 802.11n parameters changed
96dd22ac 241 * @BSS_CHANGED_BASIC_RATES: Basic rateset changed
57c4d7b4 242 * @BSS_CHANGED_BEACON_INT: Beacon interval changed
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JB
243 * @BSS_CHANGED_BSSID: BSSID changed, for whatever
244 * reason (IBSS and managed mode)
245 * @BSS_CHANGED_BEACON: Beacon data changed, retrieve
246 * new beacon (beaconing modes)
247 * @BSS_CHANGED_BEACON_ENABLED: Beaconing should be
248 * enabled/disabled (beaconing modes)
a97c13c3 249 * @BSS_CHANGED_CQM: Connection quality monitor config changed
8fc214ba 250 * @BSS_CHANGED_IBSS: IBSS join status changed
68542962 251 * @BSS_CHANGED_ARP_FILTER: Hardware ARP filter address list or state changed.
4ced3f74
JB
252 * @BSS_CHANGED_QOS: QoS for this association was enabled/disabled. Note
253 * that it is only ever disabled for station mode.
7da7cc1d 254 * @BSS_CHANGED_IDLE: Idle changed for this BSS/interface.
0ca54f6c 255 * @BSS_CHANGED_SSID: SSID changed for this BSS (AP and IBSS mode)
02945821 256 * @BSS_CHANGED_AP_PROBE_RESP: Probe Response changed for this BSS (AP mode)
ab095877 257 * @BSS_CHANGED_PS: PS changed for this BSS (STA mode)
1ea6f9c0 258 * @BSS_CHANGED_TXPOWER: TX power setting changed for this interface
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259 * @BSS_CHANGED_P2P_PS: P2P powersave settings (CTWindow, opportunistic PS)
260 * changed (currently only in P2P client mode, GO mode will be later)
989c6505
AB
261 * @BSS_CHANGED_BEACON_INFO: Data from the AP's beacon became available:
262 * currently dtim_period only is under consideration.
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JB
263 * @BSS_CHANGED_BANDWIDTH: The bandwidth used by this interface changed,
264 * note that this is only called when it changes after the channel
265 * context had been assigned.
239281f8 266 * @BSS_CHANGED_OCB: OCB join status changed
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JB
267 */
268enum ieee80211_bss_change {
269 BSS_CHANGED_ASSOC = 1<<0,
270 BSS_CHANGED_ERP_CTS_PROT = 1<<1,
271 BSS_CHANGED_ERP_PREAMBLE = 1<<2,
9f1ba906 272 BSS_CHANGED_ERP_SLOT = 1<<3,
a7ce1c94 273 BSS_CHANGED_HT = 1<<4,
96dd22ac 274 BSS_CHANGED_BASIC_RATES = 1<<5,
57c4d7b4 275 BSS_CHANGED_BEACON_INT = 1<<6,
2d0ddec5
JB
276 BSS_CHANGED_BSSID = 1<<7,
277 BSS_CHANGED_BEACON = 1<<8,
278 BSS_CHANGED_BEACON_ENABLED = 1<<9,
a97c13c3 279 BSS_CHANGED_CQM = 1<<10,
8fc214ba 280 BSS_CHANGED_IBSS = 1<<11,
68542962 281 BSS_CHANGED_ARP_FILTER = 1<<12,
4ced3f74 282 BSS_CHANGED_QOS = 1<<13,
7da7cc1d 283 BSS_CHANGED_IDLE = 1<<14,
7827493b 284 BSS_CHANGED_SSID = 1<<15,
02945821 285 BSS_CHANGED_AP_PROBE_RESP = 1<<16,
ab095877 286 BSS_CHANGED_PS = 1<<17,
1ea6f9c0 287 BSS_CHANGED_TXPOWER = 1<<18,
488dd7b5 288 BSS_CHANGED_P2P_PS = 1<<19,
989c6505 289 BSS_CHANGED_BEACON_INFO = 1<<20,
2c9b7359 290 BSS_CHANGED_BANDWIDTH = 1<<21,
239281f8 291 BSS_CHANGED_OCB = 1<<22,
ac8dd506
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292
293 /* when adding here, make sure to change ieee80211_reconfig */
471b3efd
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294};
295
68542962
JO
296/*
297 * The maximum number of IPv4 addresses listed for ARP filtering. If the number
298 * of addresses for an interface increase beyond this value, hardware ARP
299 * filtering will be disabled.
300 */
301#define IEEE80211_BSS_ARP_ADDR_LIST_LEN 4
302
615f7b9b
MV
303/**
304 * enum ieee80211_rssi_event - RSSI threshold event
305 * An indicator for when RSSI goes below/above a certain threshold.
306 * @RSSI_EVENT_HIGH: AP's rssi crossed the high threshold set by the driver.
307 * @RSSI_EVENT_LOW: AP's rssi crossed the low threshold set by the driver.
308 */
309enum ieee80211_rssi_event {
310 RSSI_EVENT_HIGH,
311 RSSI_EVENT_LOW,
312};
313
471b3efd
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314/**
315 * struct ieee80211_bss_conf - holds the BSS's changing parameters
316 *
317 * This structure keeps information about a BSS (and an association
318 * to that BSS) that can change during the lifetime of the BSS.
319 *
320 * @assoc: association status
8fc214ba
JB
321 * @ibss_joined: indicates whether this station is part of an IBSS
322 * or not
c13a765b 323 * @ibss_creator: indicates if a new IBSS network is being created
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JB
324 * @aid: association ID number, valid only when @assoc is true
325 * @use_cts_prot: use CTS protection
7a5158ef
JB
326 * @use_short_preamble: use 802.11b short preamble;
327 * if the hardware cannot handle this it must set the
328 * IEEE80211_HW_2GHZ_SHORT_PREAMBLE_INCAPABLE hardware flag
329 * @use_short_slot: use short slot time (only relevant for ERP);
330 * if the hardware cannot handle this it must set the
331 * IEEE80211_HW_2GHZ_SHORT_SLOT_INCAPABLE hardware flag
56007a02 332 * @dtim_period: num of beacons before the next DTIM, for beaconing,
c65dd147 333 * valid in station mode only if after the driver was notified
989c6505 334 * with the %BSS_CHANGED_BEACON_INFO flag, will be non-zero then.
8c358bcd 335 * @sync_tsf: last beacon's/probe response's TSF timestamp (could be old
ef429dad
JB
336 * as it may have been received during scanning long ago). If the
337 * HW flag %IEEE80211_HW_TIMING_BEACON_ONLY is set, then this can
338 * only come from a beacon, but might not become valid until after
339 * association when a beacon is received (which is notified with the
340 * %BSS_CHANGED_DTIM flag.)
8c358bcd
JB
341 * @sync_device_ts: the device timestamp corresponding to the sync_tsf,
342 * the driver/device can use this to calculate synchronisation
ef429dad
JB
343 * (see @sync_tsf)
344 * @sync_dtim_count: Only valid when %IEEE80211_HW_TIMING_BEACON_ONLY
345 * is requested, see @sync_tsf/@sync_device_ts.
21c0cbe7 346 * @beacon_int: beacon interval
98f7dfd8 347 * @assoc_capability: capabilities taken from assoc resp
96dd22ac
JB
348 * @basic_rates: bitmap of basic rates, each bit stands for an
349 * index into the rate table configured by the driver in
350 * the current band.
817cee76 351 * @beacon_rate: associated AP's beacon TX rate
dd5b4cc7 352 * @mcast_rate: per-band multicast rate index + 1 (0: disabled)
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JB
353 * @bssid: The BSSID for this BSS
354 * @enable_beacon: whether beaconing should be enabled or not
4bf88530
JB
355 * @chandef: Channel definition for this BSS -- the hardware might be
356 * configured a higher bandwidth than this BSS uses, for example.
074d46d1 357 * @ht_operation_mode: HT operation mode like in &struct ieee80211_ht_operation.
9ed6bcce 358 * This field is only valid when the channel type is one of the HT types.
a97c13c3
JO
359 * @cqm_rssi_thold: Connection quality monitor RSSI threshold, a zero value
360 * implies disabled
361 * @cqm_rssi_hyst: Connection quality monitor RSSI hysteresis
68542962
JO
362 * @arp_addr_list: List of IPv4 addresses for hardware ARP filtering. The
363 * may filter ARP queries targeted for other addresses than listed here.
364 * The driver must allow ARP queries targeted for all address listed here
365 * to pass through. An empty list implies no ARP queries need to pass.
0f19b41e
JB
366 * @arp_addr_cnt: Number of addresses currently on the list. Note that this
367 * may be larger than %IEEE80211_BSS_ARP_ADDR_LIST_LEN (the arp_addr_list
368 * array size), it's up to the driver what to do in that case.
4ced3f74 369 * @qos: This is a QoS-enabled BSS.
7da7cc1d
JB
370 * @idle: This interface is idle. There's also a global idle flag in the
371 * hardware config which may be more appropriate depending on what
372 * your driver/device needs to do.
ab095877
EP
373 * @ps: power-save mode (STA only). This flag is NOT affected by
374 * offchannel/dynamic_ps operations.
0ca54f6c 375 * @ssid: The SSID of the current vif. Valid in AP and IBSS mode.
7827493b
AN
376 * @ssid_len: Length of SSID given in @ssid.
377 * @hidden_ssid: The SSID of the current vif is hidden. Only valid in AP-mode.
1ea6f9c0 378 * @txpower: TX power in dBm
67baf663 379 * @p2p_noa_attr: P2P NoA attribute for P2P powersave
471b3efd
JB
380 */
381struct ieee80211_bss_conf {
2d0ddec5 382 const u8 *bssid;
471b3efd 383 /* association related data */
8fc214ba 384 bool assoc, ibss_joined;
c13a765b 385 bool ibss_creator;
471b3efd
JB
386 u16 aid;
387 /* erp related data */
388 bool use_cts_prot;
389 bool use_short_preamble;
9f1ba906 390 bool use_short_slot;
2d0ddec5 391 bool enable_beacon;
98f7dfd8 392 u8 dtim_period;
21c0cbe7
TW
393 u16 beacon_int;
394 u16 assoc_capability;
8c358bcd
JB
395 u64 sync_tsf;
396 u32 sync_device_ts;
ef429dad 397 u8 sync_dtim_count;
881d948c 398 u32 basic_rates;
817cee76 399 struct ieee80211_rate *beacon_rate;
dd5b4cc7 400 int mcast_rate[IEEE80211_NUM_BANDS];
9ed6bcce 401 u16 ht_operation_mode;
a97c13c3
JO
402 s32 cqm_rssi_thold;
403 u32 cqm_rssi_hyst;
4bf88530 404 struct cfg80211_chan_def chandef;
68542962 405 __be32 arp_addr_list[IEEE80211_BSS_ARP_ADDR_LIST_LEN];
0f19b41e 406 int arp_addr_cnt;
4ced3f74 407 bool qos;
7da7cc1d 408 bool idle;
ab095877 409 bool ps;
7827493b
AN
410 u8 ssid[IEEE80211_MAX_SSID_LEN];
411 size_t ssid_len;
412 bool hidden_ssid;
1ea6f9c0 413 int txpower;
67baf663 414 struct ieee80211_p2p_noa_attr p2p_noa_attr;
471b3efd
JB
415};
416
11f4b1ce 417/**
af61a165 418 * enum mac80211_tx_info_flags - flags to describe transmission information/status
e039fa4a 419 *
6ef307bc 420 * These flags are used with the @flags member of &ieee80211_tx_info.
e039fa4a 421 *
7351c6bd 422 * @IEEE80211_TX_CTL_REQ_TX_STATUS: require TX status callback for this frame.
e6a9854b
JB
423 * @IEEE80211_TX_CTL_ASSIGN_SEQ: The driver has to assign a sequence
424 * number to this frame, taking care of not overwriting the fragment
425 * number and increasing the sequence number only when the
426 * IEEE80211_TX_CTL_FIRST_FRAGMENT flag is set. mac80211 will properly
427 * assign sequence numbers to QoS-data frames but cannot do so correctly
428 * for non-QoS-data and management frames because beacons need them from
429 * that counter as well and mac80211 cannot guarantee proper sequencing.
430 * If this flag is set, the driver should instruct the hardware to
431 * assign a sequence number to the frame or assign one itself. Cf. IEEE
432 * 802.11-2007 7.1.3.4.1 paragraph 3. This flag will always be set for
433 * beacons and always be clear for frames without a sequence number field.
e039fa4a 434 * @IEEE80211_TX_CTL_NO_ACK: tell the low level not to wait for an ack
e039fa4a
JB
435 * @IEEE80211_TX_CTL_CLEAR_PS_FILT: clear powersave filter for destination
436 * station
e039fa4a 437 * @IEEE80211_TX_CTL_FIRST_FRAGMENT: this is a first fragment of the frame
e039fa4a
JB
438 * @IEEE80211_TX_CTL_SEND_AFTER_DTIM: send this frame after DTIM beacon
439 * @IEEE80211_TX_CTL_AMPDU: this frame should be sent as part of an A-MPDU
e6a9854b 440 * @IEEE80211_TX_CTL_INJECTED: Frame was injected, internal to mac80211.
e039fa4a 441 * @IEEE80211_TX_STAT_TX_FILTERED: The frame was not transmitted
ab5b5342
JB
442 * because the destination STA was in powersave mode. Note that to
443 * avoid race conditions, the filter must be set by the hardware or
444 * firmware upon receiving a frame that indicates that the station
445 * went to sleep (must be done on device to filter frames already on
446 * the queue) and may only be unset after mac80211 gives the OK for
447 * that by setting the IEEE80211_TX_CTL_CLEAR_PS_FILT (see above),
448 * since only then is it guaranteed that no more frames are in the
449 * hardware queue.
e039fa4a
JB
450 * @IEEE80211_TX_STAT_ACK: Frame was acknowledged
451 * @IEEE80211_TX_STAT_AMPDU: The frame was aggregated, so status
452 * is for the whole aggregation.
429a3805
RR
453 * @IEEE80211_TX_STAT_AMPDU_NO_BACK: no block ack was returned,
454 * so consider using block ack request (BAR).
e6a9854b
JB
455 * @IEEE80211_TX_CTL_RATE_CTRL_PROBE: internal to mac80211, can be
456 * set by rate control algorithms to indicate probe rate, will
457 * be cleared for fragmented frames (except on the last fragment)
6c17b77b
SF
458 * @IEEE80211_TX_INTFL_OFFCHAN_TX_OK: Internal to mac80211. Used to indicate
459 * that a frame can be transmitted while the queues are stopped for
460 * off-channel operation.
cd8ffc80
JB
461 * @IEEE80211_TX_INTFL_NEED_TXPROCESSING: completely internal to mac80211,
462 * used to indicate that a pending frame requires TX processing before
463 * it can be sent out.
8f77f384
JB
464 * @IEEE80211_TX_INTFL_RETRIED: completely internal to mac80211,
465 * used to indicate that a frame was already retried due to PS
3b8d81e0
JB
466 * @IEEE80211_TX_INTFL_DONT_ENCRYPT: completely internal to mac80211,
467 * used to indicate frame should not be encrypted
02f2f1a9
JB
468 * @IEEE80211_TX_CTL_NO_PS_BUFFER: This frame is a response to a poll
469 * frame (PS-Poll or uAPSD) or a non-bufferable MMPDU and must
470 * be sent although the station is in powersave mode.
ad5351db
JB
471 * @IEEE80211_TX_CTL_MORE_FRAMES: More frames will be passed to the
472 * transmit function after the current frame, this can be used
473 * by drivers to kick the DMA queue only if unset or when the
474 * queue gets full.
c6fcf6bc
JB
475 * @IEEE80211_TX_INTFL_RETRANSMISSION: This frame is being retransmitted
476 * after TX status because the destination was asleep, it must not
477 * be modified again (no seqno assignment, crypto, etc.)
1672c0e3
JB
478 * @IEEE80211_TX_INTFL_MLME_CONN_TX: This frame was transmitted by the MLME
479 * code for connection establishment, this indicates that its status
480 * should kick the MLME state machine.
026331c4
JM
481 * @IEEE80211_TX_INTFL_NL80211_FRAME_TX: Frame was requested through nl80211
482 * MLME command (internal to mac80211 to figure out whether to send TX
483 * status to user space)
0a56bd0a 484 * @IEEE80211_TX_CTL_LDPC: tells the driver to use LDPC for this frame
f79d9bad
FF
485 * @IEEE80211_TX_CTL_STBC: Enables Space-Time Block Coding (STBC) for this
486 * frame and selects the maximum number of streams that it can use.
610dbc98
JB
487 * @IEEE80211_TX_CTL_TX_OFFCHAN: Marks this packet to be transmitted on
488 * the off-channel channel when a remain-on-channel offload is done
489 * in hardware -- normal packets still flow and are expected to be
490 * handled properly by the device.
681d1190
JM
491 * @IEEE80211_TX_INTFL_TKIP_MIC_FAILURE: Marks this packet to be used for TKIP
492 * testing. It will be sent out with incorrect Michael MIC key to allow
493 * TKIP countermeasures to be tested.
aad14ceb
RM
494 * @IEEE80211_TX_CTL_NO_CCK_RATE: This frame will be sent at non CCK rate.
495 * This flag is actually used for management frame especially for P2P
496 * frames not being sent at CCK rate in 2GHz band.
47086fc5
JB
497 * @IEEE80211_TX_STATUS_EOSP: This packet marks the end of service period,
498 * when its status is reported the service period ends. For frames in
499 * an SP that mac80211 transmits, it is already set; for driver frames
deeaee19
JB
500 * the driver may set this flag. It is also used to do the same for
501 * PS-Poll responses.
b6f35301
RM
502 * @IEEE80211_TX_CTL_USE_MINRATE: This frame will be sent at lowest rate.
503 * This flag is used to send nullfunc frame at minimum rate when
504 * the nullfunc is used for connection monitoring purpose.
a26eb27a
JB
505 * @IEEE80211_TX_CTL_DONTFRAG: Don't fragment this packet even if it
506 * would be fragmented by size (this is optional, only used for
507 * monitor injection).
d6d23de2
FF
508 * @IEEE80211_TX_CTL_PS_RESPONSE: This frame is a response to a poll
509 * frame (PS-Poll or uAPSD).
eb7d3066
CL
510 *
511 * Note: If you have to add new flags to the enumeration, then don't
512 * forget to update %IEEE80211_TX_TEMPORARY_FLAGS when necessary.
11f4b1ce 513 */
af61a165 514enum mac80211_tx_info_flags {
e039fa4a 515 IEEE80211_TX_CTL_REQ_TX_STATUS = BIT(0),
e6a9854b
JB
516 IEEE80211_TX_CTL_ASSIGN_SEQ = BIT(1),
517 IEEE80211_TX_CTL_NO_ACK = BIT(2),
518 IEEE80211_TX_CTL_CLEAR_PS_FILT = BIT(3),
519 IEEE80211_TX_CTL_FIRST_FRAGMENT = BIT(4),
520 IEEE80211_TX_CTL_SEND_AFTER_DTIM = BIT(5),
521 IEEE80211_TX_CTL_AMPDU = BIT(6),
522 IEEE80211_TX_CTL_INJECTED = BIT(7),
523 IEEE80211_TX_STAT_TX_FILTERED = BIT(8),
524 IEEE80211_TX_STAT_ACK = BIT(9),
525 IEEE80211_TX_STAT_AMPDU = BIT(10),
526 IEEE80211_TX_STAT_AMPDU_NO_BACK = BIT(11),
527 IEEE80211_TX_CTL_RATE_CTRL_PROBE = BIT(12),
6c17b77b 528 IEEE80211_TX_INTFL_OFFCHAN_TX_OK = BIT(13),
cd8ffc80 529 IEEE80211_TX_INTFL_NEED_TXPROCESSING = BIT(14),
8f77f384 530 IEEE80211_TX_INTFL_RETRIED = BIT(15),
3b8d81e0 531 IEEE80211_TX_INTFL_DONT_ENCRYPT = BIT(16),
02f2f1a9 532 IEEE80211_TX_CTL_NO_PS_BUFFER = BIT(17),
ad5351db 533 IEEE80211_TX_CTL_MORE_FRAMES = BIT(18),
c6fcf6bc 534 IEEE80211_TX_INTFL_RETRANSMISSION = BIT(19),
1672c0e3 535 IEEE80211_TX_INTFL_MLME_CONN_TX = BIT(20),
026331c4 536 IEEE80211_TX_INTFL_NL80211_FRAME_TX = BIT(21),
0a56bd0a 537 IEEE80211_TX_CTL_LDPC = BIT(22),
f79d9bad 538 IEEE80211_TX_CTL_STBC = BIT(23) | BIT(24),
21f83589 539 IEEE80211_TX_CTL_TX_OFFCHAN = BIT(25),
681d1190 540 IEEE80211_TX_INTFL_TKIP_MIC_FAILURE = BIT(26),
aad14ceb 541 IEEE80211_TX_CTL_NO_CCK_RATE = BIT(27),
47086fc5 542 IEEE80211_TX_STATUS_EOSP = BIT(28),
b6f35301 543 IEEE80211_TX_CTL_USE_MINRATE = BIT(29),
a26eb27a 544 IEEE80211_TX_CTL_DONTFRAG = BIT(30),
d6d23de2 545 IEEE80211_TX_CTL_PS_RESPONSE = BIT(31),
11f4b1ce
RR
546};
547
abe37c4b
JB
548#define IEEE80211_TX_CTL_STBC_SHIFT 23
549
af61a165
JB
550/**
551 * enum mac80211_tx_control_flags - flags to describe transmit control
552 *
553 * @IEEE80211_TX_CTRL_PORT_CTRL_PROTO: this frame is a port control
554 * protocol frame (e.g. EAP)
555 *
556 * These flags are used in tx_info->control.flags.
557 */
558enum mac80211_tx_control_flags {
559 IEEE80211_TX_CTRL_PORT_CTRL_PROTO = BIT(0),
560};
561
eb7d3066
CL
562/*
563 * This definition is used as a mask to clear all temporary flags, which are
564 * set by the tx handlers for each transmission attempt by the mac80211 stack.
565 */
566#define IEEE80211_TX_TEMPORARY_FLAGS (IEEE80211_TX_CTL_NO_ACK | \
567 IEEE80211_TX_CTL_CLEAR_PS_FILT | IEEE80211_TX_CTL_FIRST_FRAGMENT | \
568 IEEE80211_TX_CTL_SEND_AFTER_DTIM | IEEE80211_TX_CTL_AMPDU | \
569 IEEE80211_TX_STAT_TX_FILTERED | IEEE80211_TX_STAT_ACK | \
570 IEEE80211_TX_STAT_AMPDU | IEEE80211_TX_STAT_AMPDU_NO_BACK | \
02f2f1a9 571 IEEE80211_TX_CTL_RATE_CTRL_PROBE | IEEE80211_TX_CTL_NO_PS_BUFFER | \
eb7d3066 572 IEEE80211_TX_CTL_MORE_FRAMES | IEEE80211_TX_CTL_LDPC | \
47086fc5 573 IEEE80211_TX_CTL_STBC | IEEE80211_TX_STATUS_EOSP)
eb7d3066 574
2134e7e7
S
575/**
576 * enum mac80211_rate_control_flags - per-rate flags set by the
577 * Rate Control algorithm.
578 *
579 * These flags are set by the Rate control algorithm for each rate during tx,
580 * in the @flags member of struct ieee80211_tx_rate.
581 *
582 * @IEEE80211_TX_RC_USE_RTS_CTS: Use RTS/CTS exchange for this rate.
583 * @IEEE80211_TX_RC_USE_CTS_PROTECT: CTS-to-self protection is required.
584 * This is set if the current BSS requires ERP protection.
585 * @IEEE80211_TX_RC_USE_SHORT_PREAMBLE: Use short preamble.
586 * @IEEE80211_TX_RC_MCS: HT rate.
8bc83c24
JB
587 * @IEEE80211_TX_RC_VHT_MCS: VHT MCS rate, in this case the idx field is split
588 * into a higher 4 bits (Nss) and lower 4 bits (MCS number)
2134e7e7
S
589 * @IEEE80211_TX_RC_GREEN_FIELD: Indicates whether this rate should be used in
590 * Greenfield mode.
591 * @IEEE80211_TX_RC_40_MHZ_WIDTH: Indicates if the Channel Width should be 40 MHz.
8bc83c24
JB
592 * @IEEE80211_TX_RC_80_MHZ_WIDTH: Indicates 80 MHz transmission
593 * @IEEE80211_TX_RC_160_MHZ_WIDTH: Indicates 160 MHz transmission
594 * (80+80 isn't supported yet)
2134e7e7
S
595 * @IEEE80211_TX_RC_DUP_DATA: The frame should be transmitted on both of the
596 * adjacent 20 MHz channels, if the current channel type is
597 * NL80211_CHAN_HT40MINUS or NL80211_CHAN_HT40PLUS.
598 * @IEEE80211_TX_RC_SHORT_GI: Short Guard interval should be used for this rate.
599 */
e6a9854b
JB
600enum mac80211_rate_control_flags {
601 IEEE80211_TX_RC_USE_RTS_CTS = BIT(0),
602 IEEE80211_TX_RC_USE_CTS_PROTECT = BIT(1),
603 IEEE80211_TX_RC_USE_SHORT_PREAMBLE = BIT(2),
604
8bc83c24 605 /* rate index is an HT/VHT MCS instead of an index */
e6a9854b
JB
606 IEEE80211_TX_RC_MCS = BIT(3),
607 IEEE80211_TX_RC_GREEN_FIELD = BIT(4),
608 IEEE80211_TX_RC_40_MHZ_WIDTH = BIT(5),
609 IEEE80211_TX_RC_DUP_DATA = BIT(6),
610 IEEE80211_TX_RC_SHORT_GI = BIT(7),
8bc83c24
JB
611 IEEE80211_TX_RC_VHT_MCS = BIT(8),
612 IEEE80211_TX_RC_80_MHZ_WIDTH = BIT(9),
613 IEEE80211_TX_RC_160_MHZ_WIDTH = BIT(10),
e6a9854b
JB
614};
615
616
617/* there are 40 bytes if you don't need the rateset to be kept */
618#define IEEE80211_TX_INFO_DRIVER_DATA_SIZE 40
8318d78a 619
e6a9854b
JB
620/* if you do need the rateset, then you have less space */
621#define IEEE80211_TX_INFO_RATE_DRIVER_DATA_SIZE 24
1c014420 622
e6a9854b 623/* maximum number of rate stages */
e3e1a0bc 624#define IEEE80211_TX_MAX_RATES 4
870abdf6 625
0d528d85
FF
626/* maximum number of rate table entries */
627#define IEEE80211_TX_RATE_TABLE_SIZE 4
628
870abdf6 629/**
e6a9854b 630 * struct ieee80211_tx_rate - rate selection/status
870abdf6 631 *
e6a9854b
JB
632 * @idx: rate index to attempt to send with
633 * @flags: rate control flags (&enum mac80211_rate_control_flags)
e25cf4a6 634 * @count: number of tries in this rate before going to the next rate
e6a9854b
JB
635 *
636 * A value of -1 for @idx indicates an invalid rate and, if used
637 * in an array of retry rates, that no more rates should be tried.
638 *
639 * When used for transmit status reporting, the driver should
640 * always report the rate along with the flags it used.
c555b9b3
JB
641 *
642 * &struct ieee80211_tx_info contains an array of these structs
643 * in the control information, and it will be filled by the rate
644 * control algorithm according to what should be sent. For example,
645 * if this array contains, in the format { <idx>, <count> } the
646 * information
647 * { 3, 2 }, { 2, 2 }, { 1, 4 }, { -1, 0 }, { -1, 0 }
648 * then this means that the frame should be transmitted
649 * up to twice at rate 3, up to twice at rate 2, and up to four
650 * times at rate 1 if it doesn't get acknowledged. Say it gets
651 * acknowledged by the peer after the fifth attempt, the status
652 * information should then contain
653 * { 3, 2 }, { 2, 2 }, { 1, 1 }, { -1, 0 } ...
654 * since it was transmitted twice at rate 3, twice at rate 2
655 * and once at rate 1 after which we received an acknowledgement.
870abdf6 656 */
e6a9854b
JB
657struct ieee80211_tx_rate {
658 s8 idx;
8bc83c24
JB
659 u16 count:5,
660 flags:11;
3f30fc15 661} __packed;
870abdf6 662
8bc83c24
JB
663#define IEEE80211_MAX_TX_RETRY 31
664
665static inline void ieee80211_rate_set_vht(struct ieee80211_tx_rate *rate,
666 u8 mcs, u8 nss)
667{
668 WARN_ON(mcs & ~0xF);
6bc8312f
KB
669 WARN_ON((nss - 1) & ~0x7);
670 rate->idx = ((nss - 1) << 4) | mcs;
8bc83c24
JB
671}
672
673static inline u8
674ieee80211_rate_get_vht_mcs(const struct ieee80211_tx_rate *rate)
675{
676 return rate->idx & 0xF;
677}
678
679static inline u8
680ieee80211_rate_get_vht_nss(const struct ieee80211_tx_rate *rate)
681{
6bc8312f 682 return (rate->idx >> 4) + 1;
8bc83c24
JB
683}
684
e039fa4a
JB
685/**
686 * struct ieee80211_tx_info - skb transmit information
687 *
688 * This structure is placed in skb->cb for three uses:
689 * (1) mac80211 TX control - mac80211 tells the driver what to do
690 * (2) driver internal use (if applicable)
691 * (3) TX status information - driver tells mac80211 what happened
692 *
693 * @flags: transmit info flags, defined above
e6a9854b 694 * @band: the band to transmit on (use for checking for races)
3a25a8c8 695 * @hw_queue: HW queue to put the frame on, skb_get_queue_mapping() gives the AC
a729cff8 696 * @ack_frame_id: internal frame ID for TX status, used internally
6ef307bc
RD
697 * @control: union for control data
698 * @status: union for status data
699 * @driver_data: array of driver_data pointers
599bf6a4 700 * @ampdu_ack_len: number of acked aggregated frames.
93d95b12 701 * relevant only if IEEE80211_TX_STAT_AMPDU was set.
599bf6a4 702 * @ampdu_len: number of aggregated frames.
93d95b12 703 * relevant only if IEEE80211_TX_STAT_AMPDU was set.
e039fa4a 704 * @ack_signal: signal strength of the ACK frame
1c014420 705 */
e039fa4a
JB
706struct ieee80211_tx_info {
707 /* common information */
708 u32 flags;
709 u8 band;
e6a9854b 710
3a25a8c8 711 u8 hw_queue;
2e92e6f2 712
a729cff8 713 u16 ack_frame_id;
e039fa4a
JB
714
715 union {
716 struct {
e6a9854b
JB
717 union {
718 /* rate control */
719 struct {
720 struct ieee80211_tx_rate rates[
721 IEEE80211_TX_MAX_RATES];
722 s8 rts_cts_rate_idx;
991fec09
FF
723 u8 use_rts:1;
724 u8 use_cts_prot:1;
0d528d85
FF
725 u8 short_preamble:1;
726 u8 skip_table:1;
991fec09 727 /* 2 bytes free */
e6a9854b
JB
728 };
729 /* only needed before rate control */
730 unsigned long jiffies;
731 };
25d834e1 732 /* NB: vif can be NULL for injected frames */
e039fa4a
JB
733 struct ieee80211_vif *vif;
734 struct ieee80211_key_conf *hw_key;
af61a165
JB
735 u32 flags;
736 /* 4 bytes free */
e039fa4a
JB
737 } control;
738 struct {
e6a9854b 739 struct ieee80211_tx_rate rates[IEEE80211_TX_MAX_RATES];
a0f995a5 740 s32 ack_signal;
e3e1a0bc 741 u8 ampdu_ack_len;
599bf6a4 742 u8 ampdu_len;
d748b464 743 u8 antenna;
02219b3a
JB
744 u16 tx_time;
745 void *status_driver_data[19 / sizeof(void *)];
e039fa4a 746 } status;
e6a9854b
JB
747 struct {
748 struct ieee80211_tx_rate driver_rates[
749 IEEE80211_TX_MAX_RATES];
0d528d85
FF
750 u8 pad[4];
751
e6a9854b
JB
752 void *rate_driver_data[
753 IEEE80211_TX_INFO_RATE_DRIVER_DATA_SIZE / sizeof(void *)];
754 };
755 void *driver_data[
756 IEEE80211_TX_INFO_DRIVER_DATA_SIZE / sizeof(void *)];
e039fa4a 757 };
f0706e82
JB
758};
759
c56ef672
DS
760/**
761 * struct ieee80211_scan_ies - descriptors for different blocks of IEs
762 *
633e2713
DS
763 * This structure is used to point to different blocks of IEs in HW scan
764 * and scheduled scan. These blocks contain the IEs passed by userspace
765 * and the ones generated by mac80211.
c56ef672
DS
766 *
767 * @ies: pointers to band specific IEs.
768 * @len: lengths of band_specific IEs.
769 * @common_ies: IEs for all bands (especially vendor specific ones)
770 * @common_ie_len: length of the common_ies
771 */
772struct ieee80211_scan_ies {
773 const u8 *ies[IEEE80211_NUM_BANDS];
774 size_t len[IEEE80211_NUM_BANDS];
775 const u8 *common_ies;
776 size_t common_ie_len;
777};
778
779
e039fa4a
JB
780static inline struct ieee80211_tx_info *IEEE80211_SKB_CB(struct sk_buff *skb)
781{
782 return (struct ieee80211_tx_info *)skb->cb;
783}
7ac1bd6a 784
f1d58c25
JB
785static inline struct ieee80211_rx_status *IEEE80211_SKB_RXCB(struct sk_buff *skb)
786{
787 return (struct ieee80211_rx_status *)skb->cb;
788}
789
e6a9854b
JB
790/**
791 * ieee80211_tx_info_clear_status - clear TX status
792 *
793 * @info: The &struct ieee80211_tx_info to be cleared.
794 *
795 * When the driver passes an skb back to mac80211, it must report
796 * a number of things in TX status. This function clears everything
797 * in the TX status but the rate control information (it does clear
798 * the count since you need to fill that in anyway).
799 *
800 * NOTE: You can only use this function if you do NOT use
801 * info->driver_data! Use info->rate_driver_data
802 * instead if you need only the less space that allows.
803 */
804static inline void
805ieee80211_tx_info_clear_status(struct ieee80211_tx_info *info)
806{
807 int i;
808
809 BUILD_BUG_ON(offsetof(struct ieee80211_tx_info, status.rates) !=
810 offsetof(struct ieee80211_tx_info, control.rates));
811 BUILD_BUG_ON(offsetof(struct ieee80211_tx_info, status.rates) !=
812 offsetof(struct ieee80211_tx_info, driver_rates));
813 BUILD_BUG_ON(offsetof(struct ieee80211_tx_info, status.rates) != 8);
814 /* clear the rate counts */
815 for (i = 0; i < IEEE80211_TX_MAX_RATES; i++)
816 info->status.rates[i].count = 0;
817
818 BUILD_BUG_ON(
e3e1a0bc 819 offsetof(struct ieee80211_tx_info, status.ack_signal) != 20);
e6a9854b
JB
820 memset(&info->status.ampdu_ack_len, 0,
821 sizeof(struct ieee80211_tx_info) -
822 offsetof(struct ieee80211_tx_info, status.ampdu_ack_len));
823}
824
7ac1bd6a
JB
825
826/**
827 * enum mac80211_rx_flags - receive flags
828 *
829 * These flags are used with the @flag member of &struct ieee80211_rx_status.
830 * @RX_FLAG_MMIC_ERROR: Michael MIC error was reported on this frame.
831 * Use together with %RX_FLAG_MMIC_STRIPPED.
832 * @RX_FLAG_DECRYPTED: This frame was decrypted in hardware.
7ac1bd6a
JB
833 * @RX_FLAG_MMIC_STRIPPED: the Michael MIC is stripped off this frame,
834 * verification has been done by the hardware.
835 * @RX_FLAG_IV_STRIPPED: The IV/ICV are stripped from this frame.
836 * If this flag is set, the stack cannot do any replay detection
837 * hence the driver or hardware will have to do that.
72abd81b
JB
838 * @RX_FLAG_FAILED_FCS_CRC: Set this flag if the FCS check failed on
839 * the frame.
840 * @RX_FLAG_FAILED_PLCP_CRC: Set this flag if the PCLP check failed on
841 * the frame.
f4bda337 842 * @RX_FLAG_MACTIME_START: The timestamp passed in the RX status (@mactime
6ebacbb7
JB
843 * field) is valid and contains the time the first symbol of the MPDU
844 * was received. This is useful in monitor mode and for proper IBSS
845 * merging.
f4bda337
TP
846 * @RX_FLAG_MACTIME_END: The timestamp passed in the RX status (@mactime
847 * field) is valid and contains the time the last symbol of the MPDU
848 * (including FCS) was received.
b4f28bbb 849 * @RX_FLAG_SHORTPRE: Short preamble was used for this frame
0fb8ca45 850 * @RX_FLAG_HT: HT MCS was used and rate_idx is MCS index
5614618e 851 * @RX_FLAG_VHT: VHT MCS was used and rate_index is MCS index
0fb8ca45
JM
852 * @RX_FLAG_40MHZ: HT40 (40 MHz) was used
853 * @RX_FLAG_SHORT_GI: Short guard interval was used
fe8431f8
FF
854 * @RX_FLAG_NO_SIGNAL_VAL: The signal strength value is not present.
855 * Valid only for data frames (mainly A-MPDU)
ac55d2fe
JB
856 * @RX_FLAG_HT_GF: This frame was received in a HT-greenfield transmission, if
857 * the driver fills this value it should add %IEEE80211_RADIOTAP_MCS_HAVE_FMT
858 * to hw.radiotap_mcs_details to advertise that fact
4c298677
JB
859 * @RX_FLAG_AMPDU_DETAILS: A-MPDU details are known, in particular the reference
860 * number (@ampdu_reference) must be populated and be a distinct number for
861 * each A-MPDU
862 * @RX_FLAG_AMPDU_REPORT_ZEROLEN: driver reports 0-length subframes
863 * @RX_FLAG_AMPDU_IS_ZEROLEN: This is a zero-length subframe, for
864 * monitoring purposes only
865 * @RX_FLAG_AMPDU_LAST_KNOWN: last subframe is known, should be set on all
866 * subframes of a single A-MPDU
867 * @RX_FLAG_AMPDU_IS_LAST: this subframe is the last subframe of the A-MPDU
868 * @RX_FLAG_AMPDU_DELIM_CRC_ERROR: A delimiter CRC error has been detected
869 * on this subframe
870 * @RX_FLAG_AMPDU_DELIM_CRC_KNOWN: The delimiter CRC field is known (the CRC
871 * is stored in the @ampdu_delimiter_crc field)
63c361f5 872 * @RX_FLAG_LDPC: LDPC was used
786677d1 873 * @RX_FLAG_STBC_MASK: STBC 2 bit bitmask. 1 - Nss=1, 2 - Nss=2, 3 - Nss=3
a5e70697
SW
874 * @RX_FLAG_10MHZ: 10 MHz (half channel) was used
875 * @RX_FLAG_5MHZ: 5 MHz (quarter channel) was used
0cfcefef
MK
876 * @RX_FLAG_AMSDU_MORE: Some drivers may prefer to report separate A-MSDU
877 * subframes instead of a one huge frame for performance reasons.
878 * All, but the last MSDU from an A-MSDU should have this flag set. E.g.
879 * if an A-MSDU has 3 frames, the first 2 must have the flag set, while
880 * the 3rd (last) one must not have this flag set. The flag is used to
881 * deal with retransmission/duplication recovery properly since A-MSDU
882 * subframes share the same sequence number. Reported subframes can be
883 * either regular MSDU or singly A-MSDUs. Subframes must not be
884 * interleaved with other frames.
1f7bba79
JB
885 * @RX_FLAG_RADIOTAP_VENDOR_DATA: This frame contains vendor-specific
886 * radiotap data in the skb->data (before the frame) as described by
887 * the &struct ieee80211_vendor_radiotap.
7ac1bd6a
JB
888 */
889enum mac80211_rx_flags {
4c298677
JB
890 RX_FLAG_MMIC_ERROR = BIT(0),
891 RX_FLAG_DECRYPTED = BIT(1),
892 RX_FLAG_MMIC_STRIPPED = BIT(3),
893 RX_FLAG_IV_STRIPPED = BIT(4),
894 RX_FLAG_FAILED_FCS_CRC = BIT(5),
895 RX_FLAG_FAILED_PLCP_CRC = BIT(6),
f4bda337 896 RX_FLAG_MACTIME_START = BIT(7),
4c298677
JB
897 RX_FLAG_SHORTPRE = BIT(8),
898 RX_FLAG_HT = BIT(9),
899 RX_FLAG_40MHZ = BIT(10),
900 RX_FLAG_SHORT_GI = BIT(11),
901 RX_FLAG_NO_SIGNAL_VAL = BIT(12),
902 RX_FLAG_HT_GF = BIT(13),
903 RX_FLAG_AMPDU_DETAILS = BIT(14),
904 RX_FLAG_AMPDU_REPORT_ZEROLEN = BIT(15),
905 RX_FLAG_AMPDU_IS_ZEROLEN = BIT(16),
906 RX_FLAG_AMPDU_LAST_KNOWN = BIT(17),
907 RX_FLAG_AMPDU_IS_LAST = BIT(18),
908 RX_FLAG_AMPDU_DELIM_CRC_ERROR = BIT(19),
909 RX_FLAG_AMPDU_DELIM_CRC_KNOWN = BIT(20),
f4bda337 910 RX_FLAG_MACTIME_END = BIT(21),
5614618e 911 RX_FLAG_VHT = BIT(22),
63c361f5 912 RX_FLAG_LDPC = BIT(23),
786677d1 913 RX_FLAG_STBC_MASK = BIT(26) | BIT(27),
a5e70697
SW
914 RX_FLAG_10MHZ = BIT(28),
915 RX_FLAG_5MHZ = BIT(29),
0cfcefef 916 RX_FLAG_AMSDU_MORE = BIT(30),
1f7bba79 917 RX_FLAG_RADIOTAP_VENDOR_DATA = BIT(31),
7ac1bd6a
JB
918};
919
786677d1
OR
920#define RX_FLAG_STBC_SHIFT 26
921
1b8d242a
EG
922/**
923 * enum mac80211_rx_vht_flags - receive VHT flags
924 *
925 * These flags are used with the @vht_flag member of
926 * &struct ieee80211_rx_status.
927 * @RX_VHT_FLAG_80MHZ: 80 MHz was used
928 * @RX_VHT_FLAG_80P80MHZ: 80+80 MHz was used
929 * @RX_VHT_FLAG_160MHZ: 160 MHz was used
fb378c23 930 * @RX_VHT_FLAG_BF: packet was beamformed
1b8d242a
EG
931 */
932enum mac80211_rx_vht_flags {
933 RX_VHT_FLAG_80MHZ = BIT(0),
934 RX_VHT_FLAG_80P80MHZ = BIT(1),
935 RX_VHT_FLAG_160MHZ = BIT(2),
fb378c23 936 RX_VHT_FLAG_BF = BIT(3),
1b8d242a
EG
937};
938
7ac1bd6a
JB
939/**
940 * struct ieee80211_rx_status - receive status
941 *
942 * The low-level driver should provide this information (the subset
943 * supported by hardware) to the 802.11 code with each received
f1d58c25 944 * frame, in the skb's control buffer (cb).
566bfe5a 945 *
c132bec3
BR
946 * @mactime: value in microseconds of the 64-bit Time Synchronization Function
947 * (TSF) timer when the first data symbol (MPDU) arrived at the hardware.
8c358bcd
JB
948 * @device_timestamp: arbitrary timestamp for the device, mac80211 doesn't use
949 * it but can store it and pass it back to the driver for synchronisation
8318d78a 950 * @band: the active band when this frame was received
7ac1bd6a 951 * @freq: frequency the radio was tuned to when receiving this frame, in MHz
566bfe5a
BR
952 * @signal: signal strength when receiving this frame, either in dBm, in dB or
953 * unspecified depending on the hardware capabilities flags
954 * @IEEE80211_HW_SIGNAL_*
ef0621e8
FF
955 * @chains: bitmask of receive chains for which separate signal strength
956 * values were filled.
957 * @chain_signal: per-chain signal strength, in dBm (unlike @signal, doesn't
958 * support dB or unspecified units)
7ac1bd6a 959 * @antenna: antenna used
0fb8ca45 960 * @rate_idx: index of data rate into band's supported rates or MCS index if
5614618e
JB
961 * HT or VHT is used (%RX_FLAG_HT/%RX_FLAG_VHT)
962 * @vht_nss: number of streams (VHT only)
7ac1bd6a 963 * @flag: %RX_FLAG_*
1b8d242a 964 * @vht_flag: %RX_VHT_FLAG_*
554891e6 965 * @rx_flags: internal RX flags for mac80211
4c298677
JB
966 * @ampdu_reference: A-MPDU reference number, must be a different value for
967 * each A-MPDU but the same for each subframe within one A-MPDU
968 * @ampdu_delimiter_crc: A-MPDU delimiter CRC
7ac1bd6a 969 */
f0706e82
JB
970struct ieee80211_rx_status {
971 u64 mactime;
8c358bcd 972 u32 device_timestamp;
4c298677
JB
973 u32 ampdu_reference;
974 u32 flag;
30f42292 975 u16 freq;
1b8d242a 976 u8 vht_flag;
30f42292 977 u8 rate_idx;
5614618e 978 u8 vht_nss;
30f42292
JB
979 u8 rx_flags;
980 u8 band;
981 u8 antenna;
982 s8 signal;
ef0621e8
FF
983 u8 chains;
984 s8 chain_signal[IEEE80211_MAX_CHAINS];
4c298677 985 u8 ampdu_delimiter_crc;
f0706e82
JB
986};
987
1f7bba79
JB
988/**
989 * struct ieee80211_vendor_radiotap - vendor radiotap data information
990 * @present: presence bitmap for this vendor namespace
991 * (this could be extended in the future if any vendor needs more
992 * bits, the radiotap spec does allow for that)
993 * @align: radiotap vendor namespace alignment. This defines the needed
994 * alignment for the @data field below, not for the vendor namespace
995 * description itself (which has a fixed 2-byte alignment)
996 * Must be a power of two, and be set to at least 1!
997 * @oui: radiotap vendor namespace OUI
998 * @subns: radiotap vendor sub namespace
999 * @len: radiotap vendor sub namespace skip length, if alignment is done
1000 * then that's added to this, i.e. this is only the length of the
1001 * @data field.
1002 * @pad: number of bytes of padding after the @data, this exists so that
1003 * the skb data alignment can be preserved even if the data has odd
1004 * length
1005 * @data: the actual vendor namespace data
1006 *
1007 * This struct, including the vendor data, goes into the skb->data before
1008 * the 802.11 header. It's split up in mac80211 using the align/oui/subns
1009 * data.
1010 */
1011struct ieee80211_vendor_radiotap {
1012 u32 present;
1013 u8 align;
1014 u8 oui[3];
1015 u8 subns;
1016 u8 pad;
1017 u16 len;
1018 u8 data[];
1019} __packed;
1020
6b301cdf
JB
1021/**
1022 * enum ieee80211_conf_flags - configuration flags
1023 *
1024 * Flags to define PHY configuration options
1025 *
0869aea0
JB
1026 * @IEEE80211_CONF_MONITOR: there's a monitor interface present -- use this
1027 * to determine for example whether to calculate timestamps for packets
1028 * or not, do not use instead of filter flags!
c99445b1
KV
1029 * @IEEE80211_CONF_PS: Enable 802.11 power save mode (managed mode only).
1030 * This is the power save mode defined by IEEE 802.11-2007 section 11.2,
1031 * meaning that the hardware still wakes up for beacons, is able to
1032 * transmit frames and receive the possible acknowledgment frames.
1033 * Not to be confused with hardware specific wakeup/sleep states,
1034 * driver is responsible for that. See the section "Powersave support"
1035 * for more.
5cff20e6
JB
1036 * @IEEE80211_CONF_IDLE: The device is running, but idle; if the flag is set
1037 * the driver should be prepared to handle configuration requests but
1038 * may turn the device off as much as possible. Typically, this flag will
1039 * be set when an interface is set UP but not associated or scanning, but
1040 * it can also be unset in that case when monitor interfaces are active.
45521245
FF
1041 * @IEEE80211_CONF_OFFCHANNEL: The device is currently not on its main
1042 * operating channel.
6b301cdf
JB
1043 */
1044enum ieee80211_conf_flags {
0869aea0 1045 IEEE80211_CONF_MONITOR = (1<<0),
ae5eb026 1046 IEEE80211_CONF_PS = (1<<1),
5cff20e6 1047 IEEE80211_CONF_IDLE = (1<<2),
45521245 1048 IEEE80211_CONF_OFFCHANNEL = (1<<3),
6b301cdf 1049};
f0706e82 1050
7a5158ef 1051
e8975581
JB
1052/**
1053 * enum ieee80211_conf_changed - denotes which configuration changed
1054 *
e8975581 1055 * @IEEE80211_CONF_CHANGE_LISTEN_INTERVAL: the listen interval changed
0869aea0 1056 * @IEEE80211_CONF_CHANGE_MONITOR: the monitor flag changed
e255d5eb 1057 * @IEEE80211_CONF_CHANGE_PS: the PS flag or dynamic PS timeout changed
e8975581 1058 * @IEEE80211_CONF_CHANGE_POWER: the TX power changed
4797938c 1059 * @IEEE80211_CONF_CHANGE_CHANNEL: the channel/channel_type changed
9124b077 1060 * @IEEE80211_CONF_CHANGE_RETRY_LIMITS: retry limits changed
5cff20e6 1061 * @IEEE80211_CONF_CHANGE_IDLE: Idle flag changed
0f78231b 1062 * @IEEE80211_CONF_CHANGE_SMPS: Spatial multiplexing powersave mode changed
04ecd257
JB
1063 * Note that this is only valid if channel contexts are not used,
1064 * otherwise each channel context has the number of chains listed.
e8975581
JB
1065 */
1066enum ieee80211_conf_changed {
0f78231b 1067 IEEE80211_CONF_CHANGE_SMPS = BIT(1),
e8975581 1068 IEEE80211_CONF_CHANGE_LISTEN_INTERVAL = BIT(2),
0869aea0 1069 IEEE80211_CONF_CHANGE_MONITOR = BIT(3),
e8975581 1070 IEEE80211_CONF_CHANGE_PS = BIT(4),
e255d5eb
JB
1071 IEEE80211_CONF_CHANGE_POWER = BIT(5),
1072 IEEE80211_CONF_CHANGE_CHANNEL = BIT(6),
1073 IEEE80211_CONF_CHANGE_RETRY_LIMITS = BIT(7),
5cff20e6 1074 IEEE80211_CONF_CHANGE_IDLE = BIT(8),
e8975581
JB
1075};
1076
0f78231b
JB
1077/**
1078 * enum ieee80211_smps_mode - spatial multiplexing power save mode
1079 *
9d173fc5
KV
1080 * @IEEE80211_SMPS_AUTOMATIC: automatic
1081 * @IEEE80211_SMPS_OFF: off
1082 * @IEEE80211_SMPS_STATIC: static
1083 * @IEEE80211_SMPS_DYNAMIC: dynamic
1084 * @IEEE80211_SMPS_NUM_MODES: internal, don't use
0f78231b
JB
1085 */
1086enum ieee80211_smps_mode {
1087 IEEE80211_SMPS_AUTOMATIC,
1088 IEEE80211_SMPS_OFF,
1089 IEEE80211_SMPS_STATIC,
1090 IEEE80211_SMPS_DYNAMIC,
1091
1092 /* keep last */
1093 IEEE80211_SMPS_NUM_MODES,
1094};
1095
f0706e82
JB
1096/**
1097 * struct ieee80211_conf - configuration of the device
1098 *
1099 * This struct indicates how the driver shall configure the hardware.
1100 *
04fe2037
JB
1101 * @flags: configuration flags defined above
1102 *
ea95bba4 1103 * @listen_interval: listen interval in units of beacon interval
9ccebe61 1104 * @max_sleep_period: the maximum number of beacon intervals to sleep for
04fe2037
JB
1105 * before checking the beacon for a TIM bit (managed mode only); this
1106 * value will be only achievable between DTIM frames, the hardware
1107 * needs to check for the multicast traffic bit in DTIM beacons.
1108 * This variable is valid only when the CONF_PS flag is set.
56007a02
JB
1109 * @ps_dtim_period: The DTIM period of the AP we're connected to, for use
1110 * in power saving. Power saving will not be enabled until a beacon
1111 * has been received and the DTIM period is known.
04fe2037
JB
1112 * @dynamic_ps_timeout: The dynamic powersave timeout (in ms), see the
1113 * powersave documentation below. This variable is valid only when
1114 * the CONF_PS flag is set.
1115 *
1ea6f9c0
JB
1116 * @power_level: requested transmit power (in dBm), backward compatibility
1117 * value only that is set to the minimum of all interfaces
04fe2037 1118 *
675a0b04 1119 * @chandef: the channel definition to tune to
164eb02d 1120 * @radar_enabled: whether radar detection is enabled
04fe2037 1121 *
9124b077 1122 * @long_frame_max_tx_count: Maximum number of transmissions for a "long" frame
ad24b0da
JB
1123 * (a frame not RTS protected), called "dot11LongRetryLimit" in 802.11,
1124 * but actually means the number of transmissions not the number of retries
9124b077 1125 * @short_frame_max_tx_count: Maximum number of transmissions for a "short"
ad24b0da
JB
1126 * frame, called "dot11ShortRetryLimit" in 802.11, but actually means the
1127 * number of transmissions not the number of retries
0f78231b
JB
1128 *
1129 * @smps_mode: spatial multiplexing powersave mode; note that
1130 * %IEEE80211_SMPS_STATIC is used when the device is not
04ecd257
JB
1131 * configured for an HT channel.
1132 * Note that this is only valid if channel contexts are not used,
1133 * otherwise each channel context has the number of chains listed.
f0706e82
JB
1134 */
1135struct ieee80211_conf {
6b301cdf 1136 u32 flags;
ff616381 1137 int power_level, dynamic_ps_timeout;
9ccebe61 1138 int max_sleep_period;
10816d40 1139
e8975581 1140 u16 listen_interval;
56007a02 1141 u8 ps_dtim_period;
e8975581 1142
9124b077
JB
1143 u8 long_frame_max_tx_count, short_frame_max_tx_count;
1144
675a0b04 1145 struct cfg80211_chan_def chandef;
164eb02d 1146 bool radar_enabled;
0f78231b 1147 enum ieee80211_smps_mode smps_mode;
f0706e82
JB
1148};
1149
5ce6e438
JB
1150/**
1151 * struct ieee80211_channel_switch - holds the channel switch data
1152 *
1153 * The information provided in this structure is required for channel switch
1154 * operation.
1155 *
1156 * @timestamp: value in microseconds of the 64-bit Time Synchronization
1157 * Function (TSF) timer when the frame containing the channel switch
1158 * announcement was received. This is simply the rx.mactime parameter
1159 * the driver passed into mac80211.
2ba45384
LC
1160 * @device_timestamp: arbitrary timestamp for the device, this is the
1161 * rx.device_timestamp parameter the driver passed to mac80211.
5ce6e438
JB
1162 * @block_tx: Indicates whether transmission must be blocked before the
1163 * scheduled channel switch, as indicated by the AP.
85220d71 1164 * @chandef: the new channel to switch to
5ce6e438
JB
1165 * @count: the number of TBTT's until the channel switch event
1166 */
1167struct ieee80211_channel_switch {
1168 u64 timestamp;
2ba45384 1169 u32 device_timestamp;
5ce6e438 1170 bool block_tx;
85220d71 1171 struct cfg80211_chan_def chandef;
5ce6e438
JB
1172 u8 count;
1173};
1174
c1288b12
JB
1175/**
1176 * enum ieee80211_vif_flags - virtual interface flags
1177 *
1178 * @IEEE80211_VIF_BEACON_FILTER: the device performs beacon filtering
1179 * on this virtual interface to avoid unnecessary CPU wakeups
ea086359
JB
1180 * @IEEE80211_VIF_SUPPORTS_CQM_RSSI: the device can do connection quality
1181 * monitoring on this virtual interface -- i.e. it can monitor
1182 * connection quality related parameters, such as the RSSI level and
1183 * provide notifications if configured trigger levels are reached.
c1288b12
JB
1184 */
1185enum ieee80211_vif_flags {
1186 IEEE80211_VIF_BEACON_FILTER = BIT(0),
ea086359 1187 IEEE80211_VIF_SUPPORTS_CQM_RSSI = BIT(1),
c1288b12
JB
1188};
1189
32bfd35d
JB
1190/**
1191 * struct ieee80211_vif - per-interface data
1192 *
1193 * Data in this structure is continually present for driver
1194 * use during the life of a virtual interface.
1195 *
51fb61e7 1196 * @type: type of this virtual interface
bda3933a
JB
1197 * @bss_conf: BSS configuration for this interface, either our own
1198 * or the BSS we're associated to
47846c9b 1199 * @addr: address of this interface
2ca27bcf
JB
1200 * @p2p: indicates whether this AP or STA interface is a p2p
1201 * interface, i.e. a GO or p2p-sta respectively
59af6928
MK
1202 * @csa_active: marks whether a channel switch is going on. Internally it is
1203 * write-protected by sdata_lock and local->mtx so holding either is fine
1204 * for read access.
c1288b12
JB
1205 * @driver_flags: flags/capabilities the driver has for this interface,
1206 * these need to be set (or cleared) when the interface is added
1207 * or, if supported by the driver, the interface type is changed
1208 * at runtime, mac80211 will never touch this field
3a25a8c8
JB
1209 * @hw_queue: hardware queue for each AC
1210 * @cab_queue: content-after-beacon (DTIM beacon really) queue, AP mode only
d01a1e65
MK
1211 * @chanctx_conf: The channel context this interface is assigned to, or %NULL
1212 * when it is not assigned. This pointer is RCU-protected due to the TX
1213 * path needing to access it; even though the netdev carrier will always
1214 * be off when it is %NULL there can still be races and packets could be
1215 * processed after it switches back to %NULL.
ddbfe860 1216 * @debugfs_dir: debugfs dentry, can be used by drivers to create own per
ad24b0da 1217 * interface debug files. Note that it will be NULL for the virtual
ddbfe860 1218 * monitor interface (if that is requested.)
32bfd35d
JB
1219 * @drv_priv: data area for driver use, will always be aligned to
1220 * sizeof(void *).
1221 */
1222struct ieee80211_vif {
05c914fe 1223 enum nl80211_iftype type;
bda3933a 1224 struct ieee80211_bss_conf bss_conf;
47846c9b 1225 u8 addr[ETH_ALEN];
2ca27bcf 1226 bool p2p;
73da7d5b 1227 bool csa_active;
3a25a8c8
JB
1228
1229 u8 cab_queue;
1230 u8 hw_queue[IEEE80211_NUM_ACS];
1231
d01a1e65
MK
1232 struct ieee80211_chanctx_conf __rcu *chanctx_conf;
1233
c1288b12 1234 u32 driver_flags;
3a25a8c8 1235
ddbfe860
SG
1236#ifdef CONFIG_MAC80211_DEBUGFS
1237 struct dentry *debugfs_dir;
1238#endif
1239
32bfd35d 1240 /* must be last */
1c06ef98 1241 u8 drv_priv[0] __aligned(sizeof(void *));
32bfd35d
JB
1242};
1243
902acc78
JB
1244static inline bool ieee80211_vif_is_mesh(struct ieee80211_vif *vif)
1245{
1246#ifdef CONFIG_MAC80211_MESH
05c914fe 1247 return vif->type == NL80211_IFTYPE_MESH_POINT;
902acc78
JB
1248#endif
1249 return false;
1250}
1251
ad7e718c
JB
1252/**
1253 * wdev_to_ieee80211_vif - return a vif struct from a wdev
1254 * @wdev: the wdev to get the vif for
1255 *
1256 * This can be used by mac80211 drivers with direct cfg80211 APIs
1257 * (like the vendor commands) that get a wdev.
1258 *
1259 * Note that this function may return %NULL if the given wdev isn't
1260 * associated with a vif that the driver knows about (e.g. monitor
1261 * or AP_VLAN interfaces.)
1262 */
1263struct ieee80211_vif *wdev_to_ieee80211_vif(struct wireless_dev *wdev);
1264
7ac1bd6a
JB
1265/**
1266 * enum ieee80211_key_flags - key flags
1267 *
1268 * These flags are used for communication about keys between the driver
1269 * and mac80211, with the @flags parameter of &struct ieee80211_key_conf.
1270 *
7ac1bd6a
JB
1271 * @IEEE80211_KEY_FLAG_GENERATE_IV: This flag should be set by the
1272 * driver to indicate that it requires IV generation for this
ca34e3b5
IY
1273 * particular key. Setting this flag does not necessarily mean that SKBs
1274 * will have sufficient tailroom for ICV or MIC.
7ac1bd6a
JB
1275 * @IEEE80211_KEY_FLAG_GENERATE_MMIC: This flag should be set by
1276 * the driver for a TKIP key if it requires Michael MIC
1277 * generation in software.
c6adbd21
ID
1278 * @IEEE80211_KEY_FLAG_PAIRWISE: Set by mac80211, this flag indicates
1279 * that the key is pairwise rather then a shared key.
e548c49e 1280 * @IEEE80211_KEY_FLAG_SW_MGMT_TX: This flag should be set by the driver for a
1f7d77ab
JM
1281 * CCMP key if it requires CCMP encryption of management frames (MFP) to
1282 * be done in software.
077a9154 1283 * @IEEE80211_KEY_FLAG_PUT_IV_SPACE: This flag should be set by the driver
ee70108f 1284 * if space should be prepared for the IV, but the IV
077a9154 1285 * itself should not be generated. Do not set together with
ca34e3b5
IY
1286 * @IEEE80211_KEY_FLAG_GENERATE_IV on the same key. Setting this flag does
1287 * not necessarily mean that SKBs will have sufficient tailroom for ICV or
1288 * MIC.
e548c49e
JB
1289 * @IEEE80211_KEY_FLAG_RX_MGMT: This key will be used to decrypt received
1290 * management frames. The flag can help drivers that have a hardware
1291 * crypto implementation that doesn't deal with management frames
1292 * properly by allowing them to not upload the keys to hardware and
1293 * fall back to software crypto. Note that this flag deals only with
1294 * RX, if your crypto engine can't deal with TX you can also set the
1295 * %IEEE80211_KEY_FLAG_SW_MGMT_TX flag to encrypt such frames in SW.
17d38fa8
MK
1296 * @IEEE80211_KEY_FLAG_GENERATE_IV_MGMT: This flag should be set by the
1297 * driver for a CCMP key to indicate that is requires IV generation
1298 * only for managment frames (MFP).
7848ba7d 1299 */
7ac1bd6a 1300enum ieee80211_key_flags {
17d38fa8
MK
1301 IEEE80211_KEY_FLAG_GENERATE_IV_MGMT = BIT(0),
1302 IEEE80211_KEY_FLAG_GENERATE_IV = BIT(1),
1303 IEEE80211_KEY_FLAG_GENERATE_MMIC = BIT(2),
1304 IEEE80211_KEY_FLAG_PAIRWISE = BIT(3),
1305 IEEE80211_KEY_FLAG_SW_MGMT_TX = BIT(4),
1306 IEEE80211_KEY_FLAG_PUT_IV_SPACE = BIT(5),
1307 IEEE80211_KEY_FLAG_RX_MGMT = BIT(6),
7ac1bd6a 1308};
11a843b7 1309
7ac1bd6a
JB
1310/**
1311 * struct ieee80211_key_conf - key information
1312 *
1313 * This key information is given by mac80211 to the driver by
1314 * the set_key() callback in &struct ieee80211_ops.
1315 *
1316 * @hw_key_idx: To be set by the driver, this is the key index the driver
1317 * wants to be given when a frame is transmitted and needs to be
6a7664d4 1318 * encrypted in hardware.
97359d12 1319 * @cipher: The key's cipher suite selector.
7ac1bd6a
JB
1320 * @flags: key flags, see &enum ieee80211_key_flags.
1321 * @keyidx: the key index (0-3)
1322 * @keylen: key material length
ffd7891d
LR
1323 * @key: key material. For ALG_TKIP the key is encoded as a 256-bit (32 byte)
1324 * data block:
1325 * - Temporal Encryption Key (128 bits)
1326 * - Temporal Authenticator Tx MIC Key (64 bits)
1327 * - Temporal Authenticator Rx MIC Key (64 bits)
dc822b5d
JB
1328 * @icv_len: The ICV length for this key type
1329 * @iv_len: The IV length for this key type
7ac1bd6a 1330 */
f0706e82 1331struct ieee80211_key_conf {
97359d12 1332 u32 cipher;
76708dee
FF
1333 u8 icv_len;
1334 u8 iv_len;
6a7664d4 1335 u8 hw_key_idx;
11a843b7 1336 u8 flags;
11a843b7 1337 s8 keyidx;
11a843b7 1338 u8 keylen;
f0706e82
JB
1339 u8 key[0];
1340};
1341
2475b1cc
MS
1342/**
1343 * struct ieee80211_cipher_scheme - cipher scheme
1344 *
1345 * This structure contains a cipher scheme information defining
1346 * the secure packet crypto handling.
1347 *
1348 * @cipher: a cipher suite selector
1349 * @iftype: a cipher iftype bit mask indicating an allowed cipher usage
1350 * @hdr_len: a length of a security header used the cipher
1351 * @pn_len: a length of a packet number in the security header
1352 * @pn_off: an offset of pn from the beginning of the security header
1353 * @key_idx_off: an offset of key index byte in the security header
1354 * @key_idx_mask: a bit mask of key_idx bits
1355 * @key_idx_shift: a bit shift needed to get key_idx
1356 * key_idx value calculation:
1357 * (sec_header_base[key_idx_off] & key_idx_mask) >> key_idx_shift
1358 * @mic_len: a mic length in bytes
1359 */
1360struct ieee80211_cipher_scheme {
1361 u32 cipher;
1362 u16 iftype;
1363 u8 hdr_len;
1364 u8 pn_len;
1365 u8 pn_off;
1366 u8 key_idx_off;
1367 u8 key_idx_mask;
1368 u8 key_idx_shift;
1369 u8 mic_len;
1370};
1371
7ac1bd6a
JB
1372/**
1373 * enum set_key_cmd - key command
1374 *
1375 * Used with the set_key() callback in &struct ieee80211_ops, this
1376 * indicates whether a key is being removed or added.
1377 *
1378 * @SET_KEY: a key is set
1379 * @DISABLE_KEY: a key must be disabled
1380 */
ea49c359 1381enum set_key_cmd {
11a843b7 1382 SET_KEY, DISABLE_KEY,
ea49c359 1383};
f0706e82 1384
f09603a2
JB
1385/**
1386 * enum ieee80211_sta_state - station state
1387 *
1388 * @IEEE80211_STA_NOTEXIST: station doesn't exist at all,
1389 * this is a special state for add/remove transitions
1390 * @IEEE80211_STA_NONE: station exists without special state
1391 * @IEEE80211_STA_AUTH: station is authenticated
1392 * @IEEE80211_STA_ASSOC: station is associated
1393 * @IEEE80211_STA_AUTHORIZED: station is authorized (802.1X)
1394 */
1395enum ieee80211_sta_state {
1396 /* NOTE: These need to be ordered correctly! */
1397 IEEE80211_STA_NOTEXIST,
1398 IEEE80211_STA_NONE,
1399 IEEE80211_STA_AUTH,
1400 IEEE80211_STA_ASSOC,
1401 IEEE80211_STA_AUTHORIZED,
1402};
1403
e1a0c6b3
JB
1404/**
1405 * enum ieee80211_sta_rx_bandwidth - station RX bandwidth
1406 * @IEEE80211_STA_RX_BW_20: station can only receive 20 MHz
1407 * @IEEE80211_STA_RX_BW_40: station can receive up to 40 MHz
1408 * @IEEE80211_STA_RX_BW_80: station can receive up to 80 MHz
1409 * @IEEE80211_STA_RX_BW_160: station can receive up to 160 MHz
1410 * (including 80+80 MHz)
1411 *
1412 * Implementation note: 20 must be zero to be initialized
1413 * correctly, the values must be sorted.
1414 */
1415enum ieee80211_sta_rx_bandwidth {
1416 IEEE80211_STA_RX_BW_20 = 0,
1417 IEEE80211_STA_RX_BW_40,
1418 IEEE80211_STA_RX_BW_80,
1419 IEEE80211_STA_RX_BW_160,
1420};
1421
0d528d85
FF
1422/**
1423 * struct ieee80211_sta_rates - station rate selection table
1424 *
1425 * @rcu_head: RCU head used for freeing the table on update
03f831a6 1426 * @rate: transmit rates/flags to be used by default.
0d528d85
FF
1427 * Overriding entries per-packet is possible by using cb tx control.
1428 */
1429struct ieee80211_sta_rates {
1430 struct rcu_head rcu_head;
1431 struct {
1432 s8 idx;
1433 u8 count;
1434 u8 count_cts;
1435 u8 count_rts;
1436 u16 flags;
1437 } rate[IEEE80211_TX_RATE_TABLE_SIZE];
1438};
1439
17741cdc
JB
1440/**
1441 * struct ieee80211_sta - station table entry
1442 *
1443 * A station table entry represents a station we are possibly
1444 * communicating with. Since stations are RCU-managed in
1445 * mac80211, any ieee80211_sta pointer you get access to must
1446 * either be protected by rcu_read_lock() explicitly or implicitly,
1447 * or you must take good care to not use such a pointer after a
34e89507 1448 * call to your sta_remove callback that removed it.
17741cdc
JB
1449 *
1450 * @addr: MAC address
1451 * @aid: AID we assigned to the station if we're an AP
323ce79a 1452 * @supp_rates: Bitmap of supported rates (per band)
55d942f4
JB
1453 * @ht_cap: HT capabilities of this STA; restricted to our own capabilities
1454 * @vht_cap: VHT capabilities of this STA; restricted to our own capabilities
a74a8c84 1455 * @wme: indicates whether the STA supports QoS/WME.
17741cdc
JB
1456 * @drv_priv: data area for driver use, will always be aligned to
1457 * sizeof(void *), size is determined in hw information.
910868db
EP
1458 * @uapsd_queues: bitmap of queues configured for uapsd. Only valid
1459 * if wme is supported.
1460 * @max_sp: max Service Period. Only valid if wme is supported.
e1a0c6b3 1461 * @bandwidth: current bandwidth the station can receive with
8921d04e
JB
1462 * @rx_nss: in HT/VHT, the maximum number of spatial streams the
1463 * station can receive at the moment, changed by operating mode
1464 * notifications and capabilities. The value is only valid after
1465 * the station moves to associated state.
af0ed69b 1466 * @smps_mode: current SMPS mode (off, static or dynamic)
03f831a6 1467 * @rates: rate control selection table
0c4972cc 1468 * @tdls: indicates whether the STA is a TDLS peer
8b94148c
AN
1469 * @tdls_initiator: indicates the STA is an initiator of the TDLS link. Only
1470 * valid if the STA is a TDLS peer in the first place.
17741cdc
JB
1471 */
1472struct ieee80211_sta {
881d948c 1473 u32 supp_rates[IEEE80211_NUM_BANDS];
17741cdc
JB
1474 u8 addr[ETH_ALEN];
1475 u16 aid;
d9fe60de 1476 struct ieee80211_sta_ht_cap ht_cap;
818255ea 1477 struct ieee80211_sta_vht_cap vht_cap;
39df600a 1478 bool wme;
9533b4ac
EP
1479 u8 uapsd_queues;
1480 u8 max_sp;
8921d04e 1481 u8 rx_nss;
e1a0c6b3 1482 enum ieee80211_sta_rx_bandwidth bandwidth;
af0ed69b 1483 enum ieee80211_smps_mode smps_mode;
0d528d85 1484 struct ieee80211_sta_rates __rcu *rates;
0c4972cc 1485 bool tdls;
8b94148c 1486 bool tdls_initiator;
17741cdc
JB
1487
1488 /* must be last */
1c06ef98 1489 u8 drv_priv[0] __aligned(sizeof(void *));
17741cdc
JB
1490};
1491
478f8d2b
TW
1492/**
1493 * enum sta_notify_cmd - sta notify command
1494 *
1495 * Used with the sta_notify() callback in &struct ieee80211_ops, this
38a6cc75 1496 * indicates if an associated station made a power state transition.
478f8d2b 1497 *
4571d3bf
CL
1498 * @STA_NOTIFY_SLEEP: a station is now sleeping
1499 * @STA_NOTIFY_AWAKE: a sleeping station woke up
1500 */
89fad578 1501enum sta_notify_cmd {
4571d3bf
CL
1502 STA_NOTIFY_SLEEP, STA_NOTIFY_AWAKE,
1503};
1504
36323f81
TH
1505/**
1506 * struct ieee80211_tx_control - TX control data
1507 *
1508 * @sta: station table entry, this sta pointer may be NULL and
1509 * it is not allowed to copy the pointer, due to RCU.
1510 */
1511struct ieee80211_tx_control {
1512 struct ieee80211_sta *sta;
1513};
1514
1bc0826c
JB
1515/**
1516 * enum ieee80211_hw_flags - hardware flags
1517 *
1518 * These flags are used to indicate hardware capabilities to
1519 * the stack. Generally, flags here should have their meaning
1520 * done in a way that the simplest hardware doesn't need setting
1521 * any particular flags. There are some exceptions to this rule,
1522 * however, so you are advised to review these flags carefully.
1523 *
af65cd96
JB
1524 * @IEEE80211_HW_HAS_RATE_CONTROL:
1525 * The hardware or firmware includes rate control, and cannot be
1526 * controlled by the stack. As such, no rate control algorithm
1527 * should be instantiated, and the TX rate reported to userspace
1528 * will be taken from the TX status instead of the rate control
1529 * algorithm.
1530 * Note that this requires that the driver implement a number of
1531 * callbacks so it has the correct information, it needs to have
1532 * the @set_rts_threshold callback and must look at the BSS config
1533 * @use_cts_prot for G/N protection, @use_short_slot for slot
1534 * timing in 2.4 GHz and @use_short_preamble for preambles for
1535 * CCK frames.
1536 *
1bc0826c
JB
1537 * @IEEE80211_HW_RX_INCLUDES_FCS:
1538 * Indicates that received frames passed to the stack include
1539 * the FCS at the end.
1540 *
1541 * @IEEE80211_HW_HOST_BROADCAST_PS_BUFFERING:
1542 * Some wireless LAN chipsets buffer broadcast/multicast frames
1543 * for power saving stations in the hardware/firmware and others
1544 * rely on the host system for such buffering. This option is used
1545 * to configure the IEEE 802.11 upper layer to buffer broadcast and
1546 * multicast frames when there are power saving stations so that
546c80c9 1547 * the driver can fetch them with ieee80211_get_buffered_bc().
1bc0826c 1548 *
8318d78a
JB
1549 * @IEEE80211_HW_2GHZ_SHORT_SLOT_INCAPABLE:
1550 * Hardware is not capable of short slot operation on the 2.4 GHz band.
1551 *
1552 * @IEEE80211_HW_2GHZ_SHORT_PREAMBLE_INCAPABLE:
1553 * Hardware is not capable of receiving frames with short preamble on
1554 * the 2.4 GHz band.
566bfe5a
BR
1555 *
1556 * @IEEE80211_HW_SIGNAL_UNSPEC:
1557 * Hardware can provide signal values but we don't know its units. We
1558 * expect values between 0 and @max_signal.
1559 * If possible please provide dB or dBm instead.
1560 *
566bfe5a
BR
1561 * @IEEE80211_HW_SIGNAL_DBM:
1562 * Hardware gives signal values in dBm, decibel difference from
1563 * one milliwatt. This is the preferred method since it is standardized
1564 * between different devices. @max_signal does not need to be set.
1565 *
06ff47bc
TW
1566 * @IEEE80211_HW_SPECTRUM_MGMT:
1567 * Hardware supports spectrum management defined in 802.11h
1568 * Measurement, Channel Switch, Quieting, TPC
8b30b1fe
S
1569 *
1570 * @IEEE80211_HW_AMPDU_AGGREGATION:
1571 * Hardware supports 11n A-MPDU aggregation.
520eb820 1572 *
4be8c387
JB
1573 * @IEEE80211_HW_SUPPORTS_PS:
1574 * Hardware has power save support (i.e. can go to sleep).
1575 *
1576 * @IEEE80211_HW_PS_NULLFUNC_STACK:
1577 * Hardware requires nullfunc frame handling in stack, implies
1578 * stack support for dynamic PS.
1579 *
1580 * @IEEE80211_HW_SUPPORTS_DYNAMIC_PS:
1581 * Hardware has support for dynamic PS.
4375d083
JM
1582 *
1583 * @IEEE80211_HW_MFP_CAPABLE:
1584 * Hardware supports management frame protection (MFP, IEEE 802.11w).
04de8381 1585 *
ab13315a
KV
1586 * @IEEE80211_HW_SUPPORTS_UAPSD:
1587 * Hardware supports Unscheduled Automatic Power Save Delivery
1588 * (U-APSD) in managed mode. The mode is configured with
1589 * conf_tx() operation.
375177bf
VN
1590 *
1591 * @IEEE80211_HW_REPORTS_TX_ACK_STATUS:
1592 * Hardware can provide ack status reports of Tx frames to
1593 * the stack.
1594 *
1e4dcd01 1595 * @IEEE80211_HW_CONNECTION_MONITOR:
ad24b0da
JB
1596 * The hardware performs its own connection monitoring, including
1597 * periodic keep-alives to the AP and probing the AP on beacon loss.
a97c13c3 1598 *
c65dd147
EG
1599 * @IEEE80211_HW_NEED_DTIM_BEFORE_ASSOC:
1600 * This device needs to get data from beacon before association (i.e.
1601 * dtim_period).
e31b8213
JB
1602 *
1603 * @IEEE80211_HW_SUPPORTS_PER_STA_GTK: The device's crypto engine supports
1604 * per-station GTKs as used by IBSS RSN or during fast transition. If
1605 * the device doesn't support per-station GTKs, but can be asked not
1606 * to decrypt group addressed frames, then IBSS RSN support is still
1607 * possible but software crypto will be used. Advertise the wiphy flag
1608 * only in that case.
d057e5a3
AN
1609 *
1610 * @IEEE80211_HW_AP_LINK_PS: When operating in AP mode the device
1611 * autonomously manages the PS status of connected stations. When
1612 * this flag is set mac80211 will not trigger PS mode for connected
1613 * stations based on the PM bit of incoming frames.
1614 * Use ieee80211_start_ps()/ieee8021_end_ps() to manually configure
1615 * the PS mode of connected stations.
edf6b784
AN
1616 *
1617 * @IEEE80211_HW_TX_AMPDU_SETUP_IN_HW: The device handles TX A-MPDU session
1618 * setup strictly in HW. mac80211 should not attempt to do this in
1619 * software.
885bd8ec 1620 *
4b6f1dd6
JB
1621 * @IEEE80211_HW_WANT_MONITOR_VIF: The driver would like to be informed of
1622 * a virtual monitor interface when monitor interfaces are the only
1623 * active interfaces.
3a25a8c8 1624 *
e27513fb
BG
1625 * @IEEE80211_HW_NO_AUTO_VIF: The driver would like for no wlanX to
1626 * be created. It is expected user-space will create vifs as
1627 * desired (and thus have them named as desired).
1628 *
3a25a8c8
JB
1629 * @IEEE80211_HW_QUEUE_CONTROL: The driver wants to control per-interface
1630 * queue mapping in order to use different queues (not just one per AC)
1631 * for different virtual interfaces. See the doc section on HW queue
1632 * control for more details.
6d71117a 1633 *
0d528d85
FF
1634 * @IEEE80211_HW_SUPPORTS_RC_TABLE: The driver supports using a rate
1635 * selection table provided by the rate control algorithm.
1636 *
6d71117a
JB
1637 * @IEEE80211_HW_P2P_DEV_ADDR_FOR_INTF: Use the P2P Device address for any
1638 * P2P Interface. This will be honoured even if more than one interface
1639 * is supported.
ef429dad
JB
1640 *
1641 * @IEEE80211_HW_TIMING_BEACON_ONLY: Use sync timing from beacon frames
1642 * only, to allow getting TBTT of a DTIM beacon.
7578d575 1643 *
919be62b
JB
1644 * @IEEE80211_HW_SUPPORTS_HT_CCK_RATES: Hardware supports mixing HT/CCK rates
1645 * and can cope with CCK rates in an aggregation session (e.g. by not
1646 * using aggregation for such frames.)
1647 *
7578d575
AN
1648 * @IEEE80211_HW_CHANCTX_STA_CSA: Support 802.11h based channel-switch (CSA)
1649 * for a single active channel while using channel contexts. When support
1650 * is not enabled the default action is to disconnect when getting the
1651 * CSA frame.
5d52ee81 1652 *
c70f59a2
IY
1653 * @IEEE80211_HW_SUPPORTS_CLONED_SKBS: The driver will never modify the payload
1654 * or tailroom of TX skbs without copying them first.
1655 *
c56ef672
DS
1656 * @IEEE80211_SINGLE_HW_SCAN_ON_ALL_BANDS: The HW supports scanning on all bands
1657 * in one command, mac80211 doesn't have to run separate scans per band.
1bc0826c
JB
1658 */
1659enum ieee80211_hw_flags {
af65cd96 1660 IEEE80211_HW_HAS_RATE_CONTROL = 1<<0,
1bc0826c
JB
1661 IEEE80211_HW_RX_INCLUDES_FCS = 1<<1,
1662 IEEE80211_HW_HOST_BROADCAST_PS_BUFFERING = 1<<2,
8318d78a
JB
1663 IEEE80211_HW_2GHZ_SHORT_SLOT_INCAPABLE = 1<<3,
1664 IEEE80211_HW_2GHZ_SHORT_PREAMBLE_INCAPABLE = 1<<4,
566bfe5a 1665 IEEE80211_HW_SIGNAL_UNSPEC = 1<<5,
7fee5372 1666 IEEE80211_HW_SIGNAL_DBM = 1<<6,
c65dd147 1667 IEEE80211_HW_NEED_DTIM_BEFORE_ASSOC = 1<<7,
7fee5372
JB
1668 IEEE80211_HW_SPECTRUM_MGMT = 1<<8,
1669 IEEE80211_HW_AMPDU_AGGREGATION = 1<<9,
1670 IEEE80211_HW_SUPPORTS_PS = 1<<10,
1671 IEEE80211_HW_PS_NULLFUNC_STACK = 1<<11,
1672 IEEE80211_HW_SUPPORTS_DYNAMIC_PS = 1<<12,
1673 IEEE80211_HW_MFP_CAPABLE = 1<<13,
4b6f1dd6 1674 IEEE80211_HW_WANT_MONITOR_VIF = 1<<14,
e27513fb
BG
1675 IEEE80211_HW_NO_AUTO_VIF = 1<<15,
1676 /* free slot */
ab13315a 1677 IEEE80211_HW_SUPPORTS_UAPSD = 1<<17,
375177bf 1678 IEEE80211_HW_REPORTS_TX_ACK_STATUS = 1<<18,
1e4dcd01 1679 IEEE80211_HW_CONNECTION_MONITOR = 1<<19,
3a25a8c8 1680 IEEE80211_HW_QUEUE_CONTROL = 1<<20,
e31b8213 1681 IEEE80211_HW_SUPPORTS_PER_STA_GTK = 1<<21,
d057e5a3 1682 IEEE80211_HW_AP_LINK_PS = 1<<22,
edf6b784 1683 IEEE80211_HW_TX_AMPDU_SETUP_IN_HW = 1<<23,
0d528d85 1684 IEEE80211_HW_SUPPORTS_RC_TABLE = 1<<24,
6d71117a 1685 IEEE80211_HW_P2P_DEV_ADDR_FOR_INTF = 1<<25,
ef429dad 1686 IEEE80211_HW_TIMING_BEACON_ONLY = 1<<26,
2dfca312 1687 IEEE80211_HW_SUPPORTS_HT_CCK_RATES = 1<<27,
7578d575 1688 IEEE80211_HW_CHANCTX_STA_CSA = 1<<28,
c70f59a2 1689 IEEE80211_HW_SUPPORTS_CLONED_SKBS = 1<<29,
c56ef672 1690 IEEE80211_SINGLE_HW_SCAN_ON_ALL_BANDS = 1<<30,
1bc0826c
JB
1691};
1692
7ac1bd6a
JB
1693/**
1694 * struct ieee80211_hw - hardware information and state
75a5f0cc
JB
1695 *
1696 * This structure contains the configuration and hardware
1697 * information for an 802.11 PHY.
1698 *
1699 * @wiphy: This points to the &struct wiphy allocated for this
1700 * 802.11 PHY. You must fill in the @perm_addr and @dev
1701 * members of this structure using SET_IEEE80211_DEV()
8318d78a
JB
1702 * and SET_IEEE80211_PERM_ADDR(). Additionally, all supported
1703 * bands (with channels, bitrates) are registered here.
75a5f0cc
JB
1704 *
1705 * @conf: &struct ieee80211_conf, device configuration, don't use.
1706 *
75a5f0cc
JB
1707 * @priv: pointer to private area that was allocated for driver use
1708 * along with this structure.
1709 *
1710 * @flags: hardware flags, see &enum ieee80211_hw_flags.
1711 *
1712 * @extra_tx_headroom: headroom to reserve in each transmit skb
1713 * for use by the driver (e.g. for transmit headers.)
1714 *
70dabeb7
FF
1715 * @extra_beacon_tailroom: tailroom to reserve in each beacon tx skb.
1716 * Can be used by drivers to add extra IEs.
75a5f0cc 1717 *
566bfe5a 1718 * @max_signal: Maximum value for signal (rssi) in RX information, used
ad24b0da 1719 * only when @IEEE80211_HW_SIGNAL_UNSPEC or @IEEE80211_HW_SIGNAL_DB
75a5f0cc 1720 *
ea95bba4 1721 * @max_listen_interval: max listen interval in units of beacon interval
ad24b0da 1722 * that HW supports
ea95bba4 1723 *
75a5f0cc 1724 * @queues: number of available hardware transmit queues for
e100bb64
JB
1725 * data packets. WMM/QoS requires at least four, these
1726 * queues need to have configurable access parameters.
1727 *
830f9038
JB
1728 * @rate_control_algorithm: rate control algorithm for this hardware.
1729 * If unset (NULL), the default algorithm will be used. Must be
1730 * set before calling ieee80211_register_hw().
32bfd35d
JB
1731 *
1732 * @vif_data_size: size (in bytes) of the drv_priv data area
1733 * within &struct ieee80211_vif.
17741cdc
JB
1734 * @sta_data_size: size (in bytes) of the drv_priv data area
1735 * within &struct ieee80211_sta.
d01a1e65
MK
1736 * @chanctx_data_size: size (in bytes) of the drv_priv data area
1737 * within &struct ieee80211_chanctx_conf.
870abdf6 1738 *
78be49ec
HS
1739 * @max_rates: maximum number of alternate rate retry stages the hw
1740 * can handle.
1741 * @max_report_rates: maximum number of alternate rate retry stages
1742 * the hw can report back.
e6a9854b 1743 * @max_rate_tries: maximum number of tries for each stage
4e6cbfd0 1744 *
df6ba5d8
LC
1745 * @max_rx_aggregation_subframes: maximum buffer size (number of
1746 * sub-frames) to be used for A-MPDU block ack receiver
1747 * aggregation.
1748 * This is only relevant if the device has restrictions on the
1749 * number of subframes, if it relies on mac80211 to do reordering
1750 * it shouldn't be set.
5dd36bc9
JB
1751 *
1752 * @max_tx_aggregation_subframes: maximum number of subframes in an
1753 * aggregate an HT driver will transmit, used by the peer as a
1754 * hint to size its reorder buffer.
3a25a8c8
JB
1755 *
1756 * @offchannel_tx_hw_queue: HW queue ID to use for offchannel TX
1757 * (if %IEEE80211_HW_QUEUE_CONTROL is set)
ac55d2fe
JB
1758 *
1759 * @radiotap_mcs_details: lists which MCS information can the HW
1760 * reports, by default it is set to _MCS, _GI and _BW but doesn't
1761 * include _FMT. Use %IEEE80211_RADIOTAP_MCS_HAVE_* values, only
1762 * adding _BW is supported today.
72d78728 1763 *
51648921
JB
1764 * @radiotap_vht_details: lists which VHT MCS information the HW reports,
1765 * the default is _GI | _BANDWIDTH.
1766 * Use the %IEEE80211_RADIOTAP_VHT_KNOWN_* values.
1767 *
72d78728
AN
1768 * @netdev_features: netdev features to be set in each netdev created
1769 * from this HW. Note only HW checksum features are currently
1770 * compatible with mac80211. Other feature bits will be rejected.
219c3867
AB
1771 *
1772 * @uapsd_queues: This bitmap is included in (re)association frame to indicate
1773 * for each access category if it is uAPSD trigger-enabled and delivery-
1774 * enabled. Use IEEE80211_WMM_IE_STA_QOSINFO_AC_* to set this bitmap.
1775 * Each bit corresponds to different AC. Value '1' in specific bit means
1776 * that corresponding AC is both trigger- and delivery-enabled. '0' means
1777 * neither enabled.
1778 *
1779 * @uapsd_max_sp_len: maximum number of total buffered frames the WMM AP may
1780 * deliver to a WMM STA during any Service Period triggered by the WMM STA.
1781 * Use IEEE80211_WMM_IE_STA_QOSINFO_SP_* for correct values.
2475b1cc
MS
1782 *
1783 * @n_cipher_schemes: a size of an array of cipher schemes definitions.
1784 * @cipher_schemes: a pointer to an array of cipher scheme definitions
1785 * supported by HW.
7ac1bd6a 1786 */
f0706e82 1787struct ieee80211_hw {
f0706e82 1788 struct ieee80211_conf conf;
75a5f0cc 1789 struct wiphy *wiphy;
830f9038 1790 const char *rate_control_algorithm;
f0706e82 1791 void *priv;
75a5f0cc 1792 u32 flags;
f0706e82 1793 unsigned int extra_tx_headroom;
70dabeb7 1794 unsigned int extra_beacon_tailroom;
32bfd35d 1795 int vif_data_size;
17741cdc 1796 int sta_data_size;
d01a1e65 1797 int chanctx_data_size;
ea95bba4 1798 u16 queues;
ea95bba4 1799 u16 max_listen_interval;
f0706e82 1800 s8 max_signal;
e6a9854b 1801 u8 max_rates;
78be49ec 1802 u8 max_report_rates;
e6a9854b 1803 u8 max_rate_tries;
df6ba5d8 1804 u8 max_rx_aggregation_subframes;
5dd36bc9 1805 u8 max_tx_aggregation_subframes;
3a25a8c8 1806 u8 offchannel_tx_hw_queue;
ac55d2fe 1807 u8 radiotap_mcs_details;
51648921 1808 u16 radiotap_vht_details;
72d78728 1809 netdev_features_t netdev_features;
219c3867
AB
1810 u8 uapsd_queues;
1811 u8 uapsd_max_sp_len;
2475b1cc
MS
1812 u8 n_cipher_schemes;
1813 const struct ieee80211_cipher_scheme *cipher_schemes;
f0706e82
JB
1814};
1815
c56ef672
DS
1816/**
1817 * struct ieee80211_scan_request - hw scan request
1818 *
1819 * @ies: pointers different parts of IEs (in req.ie)
1820 * @req: cfg80211 request.
1821 */
1822struct ieee80211_scan_request {
1823 struct ieee80211_scan_ies ies;
1824
1825 /* Keep last */
1826 struct cfg80211_scan_request req;
1827};
1828
8a4d32f3
AN
1829/**
1830 * struct ieee80211_tdls_ch_sw_params - TDLS channel switch parameters
1831 *
1832 * @sta: peer this TDLS channel-switch request/response came from
1833 * @chandef: channel referenced in a TDLS channel-switch request
1834 * @action_code: see &enum ieee80211_tdls_actioncode
1835 * @status: channel-switch response status
1836 * @timestamp: time at which the frame was received
1837 * @switch_time: switch-timing parameter received in the frame
1838 * @switch_timeout: switch-timing parameter received in the frame
1839 * @tmpl_skb: TDLS switch-channel response template
1840 * @ch_sw_tm_ie: offset of the channel-switch timing IE inside @tmpl_skb
1841 */
1842struct ieee80211_tdls_ch_sw_params {
1843 struct ieee80211_sta *sta;
1844 struct cfg80211_chan_def *chandef;
1845 u8 action_code;
1846 u32 status;
1847 u32 timestamp;
1848 u16 switch_time;
1849 u16 switch_timeout;
1850 struct sk_buff *tmpl_skb;
1851 u32 ch_sw_tm_ie;
1852};
1853
9a95371a
LR
1854/**
1855 * wiphy_to_ieee80211_hw - return a mac80211 driver hw struct from a wiphy
1856 *
1857 * @wiphy: the &struct wiphy which we want to query
1858 *
1859 * mac80211 drivers can use this to get to their respective
1860 * &struct ieee80211_hw. Drivers wishing to get to their own private
1861 * structure can then access it via hw->priv. Note that mac802111 drivers should
1862 * not use wiphy_priv() to try to get their private driver structure as this
1863 * is already used internally by mac80211.
0ae997dc
YB
1864 *
1865 * Return: The mac80211 driver hw struct of @wiphy.
9a95371a
LR
1866 */
1867struct ieee80211_hw *wiphy_to_ieee80211_hw(struct wiphy *wiphy);
1868
75a5f0cc
JB
1869/**
1870 * SET_IEEE80211_DEV - set device for 802.11 hardware
1871 *
1872 * @hw: the &struct ieee80211_hw to set the device for
1873 * @dev: the &struct device of this 802.11 device
1874 */
f0706e82
JB
1875static inline void SET_IEEE80211_DEV(struct ieee80211_hw *hw, struct device *dev)
1876{
1877 set_wiphy_dev(hw->wiphy, dev);
1878}
1879
75a5f0cc 1880/**
e37d4dff 1881 * SET_IEEE80211_PERM_ADDR - set the permanent MAC address for 802.11 hardware
75a5f0cc
JB
1882 *
1883 * @hw: the &struct ieee80211_hw to set the MAC address for
1884 * @addr: the address to set
1885 */
f0706e82
JB
1886static inline void SET_IEEE80211_PERM_ADDR(struct ieee80211_hw *hw, u8 *addr)
1887{
1888 memcpy(hw->wiphy->perm_addr, addr, ETH_ALEN);
1889}
1890
2e92e6f2
JB
1891static inline struct ieee80211_rate *
1892ieee80211_get_tx_rate(const struct ieee80211_hw *hw,
e039fa4a 1893 const struct ieee80211_tx_info *c)
2e92e6f2 1894{
aa331df0 1895 if (WARN_ON_ONCE(c->control.rates[0].idx < 0))
2e92e6f2 1896 return NULL;
e6a9854b 1897 return &hw->wiphy->bands[c->band]->bitrates[c->control.rates[0].idx];
2e92e6f2
JB
1898}
1899
1900static inline struct ieee80211_rate *
1901ieee80211_get_rts_cts_rate(const struct ieee80211_hw *hw,
e039fa4a 1902 const struct ieee80211_tx_info *c)
2e92e6f2 1903{
e039fa4a 1904 if (c->control.rts_cts_rate_idx < 0)
2e92e6f2 1905 return NULL;
e039fa4a 1906 return &hw->wiphy->bands[c->band]->bitrates[c->control.rts_cts_rate_idx];
2e92e6f2
JB
1907}
1908
1909static inline struct ieee80211_rate *
1910ieee80211_get_alt_retry_rate(const struct ieee80211_hw *hw,
870abdf6 1911 const struct ieee80211_tx_info *c, int idx)
2e92e6f2 1912{
e6a9854b 1913 if (c->control.rates[idx + 1].idx < 0)
2e92e6f2 1914 return NULL;
e6a9854b 1915 return &hw->wiphy->bands[c->band]->bitrates[c->control.rates[idx + 1].idx];
2e92e6f2
JB
1916}
1917
6096de7f
JB
1918/**
1919 * ieee80211_free_txskb - free TX skb
1920 * @hw: the hardware
1921 * @skb: the skb
1922 *
1923 * Free a transmit skb. Use this funtion when some failure
1924 * to transmit happened and thus status cannot be reported.
1925 */
1926void ieee80211_free_txskb(struct ieee80211_hw *hw, struct sk_buff *skb);
1927
75a5f0cc
JB
1928/**
1929 * DOC: Hardware crypto acceleration
1930 *
1931 * mac80211 is capable of taking advantage of many hardware
1932 * acceleration designs for encryption and decryption operations.
1933 *
1934 * The set_key() callback in the &struct ieee80211_ops for a given
1935 * device is called to enable hardware acceleration of encryption and
dc822b5d
JB
1936 * decryption. The callback takes a @sta parameter that will be NULL
1937 * for default keys or keys used for transmission only, or point to
1938 * the station information for the peer for individual keys.
75a5f0cc
JB
1939 * Multiple transmission keys with the same key index may be used when
1940 * VLANs are configured for an access point.
4150c572 1941 *
75a5f0cc
JB
1942 * When transmitting, the TX control data will use the @hw_key_idx
1943 * selected by the driver by modifying the &struct ieee80211_key_conf
1944 * pointed to by the @key parameter to the set_key() function.
1945 *
1946 * The set_key() call for the %SET_KEY command should return 0 if
1947 * the key is now in use, -%EOPNOTSUPP or -%ENOSPC if it couldn't be
1948 * added; if you return 0 then hw_key_idx must be assigned to the
1949 * hardware key index, you are free to use the full u8 range.
1950 *
1951 * When the cmd is %DISABLE_KEY then it must succeed.
1952 *
1953 * Note that it is permissible to not decrypt a frame even if a key
1954 * for it has been uploaded to hardware, the stack will not make any
1955 * decision based on whether a key has been uploaded or not but rather
1956 * based on the receive flags.
1957 *
1958 * The &struct ieee80211_key_conf structure pointed to by the @key
1959 * parameter is guaranteed to be valid until another call to set_key()
1960 * removes it, but it can only be used as a cookie to differentiate
1961 * keys.
9ae4fda3
EG
1962 *
1963 * In TKIP some HW need to be provided a phase 1 key, for RX decryption
1964 * acceleration (i.e. iwlwifi). Those drivers should provide update_tkip_key
1965 * handler.
1966 * The update_tkip_key() call updates the driver with the new phase 1 key.
25985edc 1967 * This happens every time the iv16 wraps around (every 65536 packets). The
9ae4fda3
EG
1968 * set_key() call will happen only once for each key (unless the AP did
1969 * rekeying), it will not include a valid phase 1 key. The valid phase 1 key is
e37d4dff 1970 * provided by update_tkip_key only. The trigger that makes mac80211 call this
9ae4fda3 1971 * handler is software decryption with wrap around of iv16.
de5fad81
YD
1972 *
1973 * The set_default_unicast_key() call updates the default WEP key index
1974 * configured to the hardware for WEP encryption type. This is required
1975 * for devices that support offload of data packets (e.g. ARP responses).
4150c572 1976 */
75a5f0cc 1977
4be8c387
JB
1978/**
1979 * DOC: Powersave support
1980 *
1981 * mac80211 has support for various powersave implementations.
1982 *
c99445b1
KV
1983 * First, it can support hardware that handles all powersaving by itself,
1984 * such hardware should simply set the %IEEE80211_HW_SUPPORTS_PS hardware
1985 * flag. In that case, it will be told about the desired powersave mode
1986 * with the %IEEE80211_CONF_PS flag depending on the association status.
1987 * The hardware must take care of sending nullfunc frames when necessary,
1988 * i.e. when entering and leaving powersave mode. The hardware is required
1989 * to look at the AID in beacons and signal to the AP that it woke up when
1990 * it finds traffic directed to it.
1991 *
1992 * %IEEE80211_CONF_PS flag enabled means that the powersave mode defined in
1993 * IEEE 802.11-2007 section 11.2 is enabled. This is not to be confused
1994 * with hardware wakeup and sleep states. Driver is responsible for waking
2738bd68
BC
1995 * up the hardware before issuing commands to the hardware and putting it
1996 * back to sleep at appropriate times.
c99445b1
KV
1997 *
1998 * When PS is enabled, hardware needs to wakeup for beacons and receive the
1999 * buffered multicast/broadcast frames after the beacon. Also it must be
2000 * possible to send frames and receive the acknowledment frame.
4be8c387
JB
2001 *
2002 * Other hardware designs cannot send nullfunc frames by themselves and also
2003 * need software support for parsing the TIM bitmap. This is also supported
2004 * by mac80211 by combining the %IEEE80211_HW_SUPPORTS_PS and
2005 * %IEEE80211_HW_PS_NULLFUNC_STACK flags. The hardware is of course still
955394c9
JB
2006 * required to pass up beacons. The hardware is still required to handle
2007 * waking up for multicast traffic; if it cannot the driver must handle that
c99445b1
KV
2008 * as best as it can, mac80211 is too slow to do that.
2009 *
2010 * Dynamic powersave is an extension to normal powersave in which the
2011 * hardware stays awake for a user-specified period of time after sending a
2012 * frame so that reply frames need not be buffered and therefore delayed to
2013 * the next wakeup. It's compromise of getting good enough latency when
2014 * there's data traffic and still saving significantly power in idle
2015 * periods.
2016 *
2738bd68 2017 * Dynamic powersave is simply supported by mac80211 enabling and disabling
c99445b1
KV
2018 * PS based on traffic. Driver needs to only set %IEEE80211_HW_SUPPORTS_PS
2019 * flag and mac80211 will handle everything automatically. Additionally,
2020 * hardware having support for the dynamic PS feature may set the
2021 * %IEEE80211_HW_SUPPORTS_DYNAMIC_PS flag to indicate that it can support
2022 * dynamic PS mode itself. The driver needs to look at the
2023 * @dynamic_ps_timeout hardware configuration value and use it that value
2024 * whenever %IEEE80211_CONF_PS is set. In this case mac80211 will disable
2025 * dynamic PS feature in stack and will just keep %IEEE80211_CONF_PS
2026 * enabled whenever user has enabled powersave.
2027 *
2028 * Driver informs U-APSD client support by enabling
2029 * %IEEE80211_HW_SUPPORTS_UAPSD flag. The mode is configured through the
e227867f 2030 * uapsd parameter in conf_tx() operation. Hardware needs to send the QoS
c99445b1
KV
2031 * Nullfunc frames and stay awake until the service period has ended. To
2032 * utilize U-APSD, dynamic powersave is disabled for voip AC and all frames
2033 * from that AC are transmitted with powersave enabled.
2034 *
2035 * Note: U-APSD client mode is not yet supported with
2036 * %IEEE80211_HW_PS_NULLFUNC_STACK.
4be8c387
JB
2037 */
2038
04de8381
KV
2039/**
2040 * DOC: Beacon filter support
2041 *
2042 * Some hardware have beacon filter support to reduce host cpu wakeups
42b2aa86 2043 * which will reduce system power consumption. It usually works so that
04de8381
KV
2044 * the firmware creates a checksum of the beacon but omits all constantly
2045 * changing elements (TSF, TIM etc). Whenever the checksum changes the
2046 * beacon is forwarded to the host, otherwise it will be just dropped. That
2047 * way the host will only receive beacons where some relevant information
2048 * (for example ERP protection or WMM settings) have changed.
2049 *
c1288b12
JB
2050 * Beacon filter support is advertised with the %IEEE80211_VIF_BEACON_FILTER
2051 * interface capability. The driver needs to enable beacon filter support
955394c9
JB
2052 * whenever power save is enabled, that is %IEEE80211_CONF_PS is set. When
2053 * power save is enabled, the stack will not check for beacon loss and the
2054 * driver needs to notify about loss of beacons with ieee80211_beacon_loss().
2055 *
2056 * The time (or number of beacons missed) until the firmware notifies the
2057 * driver of a beacon loss event (which in turn causes the driver to call
2058 * ieee80211_beacon_loss()) should be configurable and will be controlled
2059 * by mac80211 and the roaming algorithm in the future.
2060 *
2061 * Since there may be constantly changing information elements that nothing
2062 * in the software stack cares about, we will, in the future, have mac80211
2063 * tell the driver which information elements are interesting in the sense
2064 * that we want to see changes in them. This will include
2065 * - a list of information element IDs
2066 * - a list of OUIs for the vendor information element
2067 *
2068 * Ideally, the hardware would filter out any beacons without changes in the
2069 * requested elements, but if it cannot support that it may, at the expense
2070 * of some efficiency, filter out only a subset. For example, if the device
2071 * doesn't support checking for OUIs it should pass up all changes in all
2072 * vendor information elements.
2073 *
2074 * Note that change, for the sake of simplification, also includes information
2075 * elements appearing or disappearing from the beacon.
2076 *
2077 * Some hardware supports an "ignore list" instead, just make sure nothing
2078 * that was requested is on the ignore list, and include commonly changing
2079 * information element IDs in the ignore list, for example 11 (BSS load) and
2080 * the various vendor-assigned IEs with unknown contents (128, 129, 133-136,
2081 * 149, 150, 155, 156, 173, 176, 178, 179, 219); for forward compatibility
2082 * it could also include some currently unused IDs.
2083 *
2084 *
2085 * In addition to these capabilities, hardware should support notifying the
2086 * host of changes in the beacon RSSI. This is relevant to implement roaming
2087 * when no traffic is flowing (when traffic is flowing we see the RSSI of
2088 * the received data packets). This can consist in notifying the host when
2089 * the RSSI changes significantly or when it drops below or rises above
2090 * configurable thresholds. In the future these thresholds will also be
2091 * configured by mac80211 (which gets them from userspace) to implement
2092 * them as the roaming algorithm requires.
2093 *
2094 * If the hardware cannot implement this, the driver should ask it to
2095 * periodically pass beacon frames to the host so that software can do the
2096 * signal strength threshold checking.
04de8381
KV
2097 */
2098
0f78231b
JB
2099/**
2100 * DOC: Spatial multiplexing power save
2101 *
2102 * SMPS (Spatial multiplexing power save) is a mechanism to conserve
2103 * power in an 802.11n implementation. For details on the mechanism
2104 * and rationale, please refer to 802.11 (as amended by 802.11n-2009)
2105 * "11.2.3 SM power save".
2106 *
2107 * The mac80211 implementation is capable of sending action frames
2108 * to update the AP about the station's SMPS mode, and will instruct
2109 * the driver to enter the specific mode. It will also announce the
2110 * requested SMPS mode during the association handshake. Hardware
2111 * support for this feature is required, and can be indicated by
2112 * hardware flags.
2113 *
2114 * The default mode will be "automatic", which nl80211/cfg80211
2115 * defines to be dynamic SMPS in (regular) powersave, and SMPS
2116 * turned off otherwise.
2117 *
2118 * To support this feature, the driver must set the appropriate
2119 * hardware support flags, and handle the SMPS flag to the config()
2120 * operation. It will then with this mechanism be instructed to
2121 * enter the requested SMPS mode while associated to an HT AP.
2122 */
2123
75a5f0cc
JB
2124/**
2125 * DOC: Frame filtering
2126 *
2127 * mac80211 requires to see many management frames for proper
2128 * operation, and users may want to see many more frames when
2129 * in monitor mode. However, for best CPU usage and power consumption,
2130 * having as few frames as possible percolate through the stack is
2131 * desirable. Hence, the hardware should filter as much as possible.
2132 *
2133 * To achieve this, mac80211 uses filter flags (see below) to tell
2134 * the driver's configure_filter() function which frames should be
2135 * passed to mac80211 and which should be filtered out.
2136 *
3ac64bee
JB
2137 * Before configure_filter() is invoked, the prepare_multicast()
2138 * callback is invoked with the parameters @mc_count and @mc_list
2139 * for the combined multicast address list of all virtual interfaces.
2140 * It's use is optional, and it returns a u64 that is passed to
2141 * configure_filter(). Additionally, configure_filter() has the
2142 * arguments @changed_flags telling which flags were changed and
2143 * @total_flags with the new flag states.
75a5f0cc
JB
2144 *
2145 * If your device has no multicast address filters your driver will
2146 * need to check both the %FIF_ALLMULTI flag and the @mc_count
2147 * parameter to see whether multicast frames should be accepted
2148 * or dropped.
2149 *
d0f5afbe
MB
2150 * All unsupported flags in @total_flags must be cleared.
2151 * Hardware does not support a flag if it is incapable of _passing_
2152 * the frame to the stack. Otherwise the driver must ignore
2153 * the flag, but not clear it.
2154 * You must _only_ clear the flag (announce no support for the
2155 * flag to mac80211) if you are not able to pass the packet type
2156 * to the stack (so the hardware always filters it).
2157 * So for example, you should clear @FIF_CONTROL, if your hardware
2158 * always filters control frames. If your hardware always passes
2159 * control frames to the kernel and is incapable of filtering them,
2160 * you do _not_ clear the @FIF_CONTROL flag.
2161 * This rule applies to all other FIF flags as well.
4150c572 2162 */
75a5f0cc 2163
4b801bc9
JB
2164/**
2165 * DOC: AP support for powersaving clients
2166 *
2167 * In order to implement AP and P2P GO modes, mac80211 has support for
2168 * client powersaving, both "legacy" PS (PS-Poll/null data) and uAPSD.
2169 * There currently is no support for sAPSD.
2170 *
2171 * There is one assumption that mac80211 makes, namely that a client
2172 * will not poll with PS-Poll and trigger with uAPSD at the same time.
2173 * Both are supported, and both can be used by the same client, but
2174 * they can't be used concurrently by the same client. This simplifies
2175 * the driver code.
2176 *
2177 * The first thing to keep in mind is that there is a flag for complete
2178 * driver implementation: %IEEE80211_HW_AP_LINK_PS. If this flag is set,
2179 * mac80211 expects the driver to handle most of the state machine for
2180 * powersaving clients and will ignore the PM bit in incoming frames.
2181 * Drivers then use ieee80211_sta_ps_transition() to inform mac80211 of
2182 * stations' powersave transitions. In this mode, mac80211 also doesn't
2183 * handle PS-Poll/uAPSD.
2184 *
2185 * In the mode without %IEEE80211_HW_AP_LINK_PS, mac80211 will check the
2186 * PM bit in incoming frames for client powersave transitions. When a
2187 * station goes to sleep, we will stop transmitting to it. There is,
2188 * however, a race condition: a station might go to sleep while there is
2189 * data buffered on hardware queues. If the device has support for this
2190 * it will reject frames, and the driver should give the frames back to
2191 * mac80211 with the %IEEE80211_TX_STAT_TX_FILTERED flag set which will
2192 * cause mac80211 to retry the frame when the station wakes up. The
2193 * driver is also notified of powersave transitions by calling its
2194 * @sta_notify callback.
2195 *
2196 * When the station is asleep, it has three choices: it can wake up,
2197 * it can PS-Poll, or it can possibly start a uAPSD service period.
2198 * Waking up is implemented by simply transmitting all buffered (and
2199 * filtered) frames to the station. This is the easiest case. When
2200 * the station sends a PS-Poll or a uAPSD trigger frame, mac80211
2201 * will inform the driver of this with the @allow_buffered_frames
2202 * callback; this callback is optional. mac80211 will then transmit
02f2f1a9 2203 * the frames as usual and set the %IEEE80211_TX_CTL_NO_PS_BUFFER
4b801bc9
JB
2204 * on each frame. The last frame in the service period (or the only
2205 * response to a PS-Poll) also has %IEEE80211_TX_STATUS_EOSP set to
2206 * indicate that it ends the service period; as this frame must have
2207 * TX status report it also sets %IEEE80211_TX_CTL_REQ_TX_STATUS.
2208 * When TX status is reported for this frame, the service period is
2209 * marked has having ended and a new one can be started by the peer.
2210 *
02f2f1a9
JB
2211 * Additionally, non-bufferable MMPDUs can also be transmitted by
2212 * mac80211 with the %IEEE80211_TX_CTL_NO_PS_BUFFER set in them.
2213 *
4b801bc9
JB
2214 * Another race condition can happen on some devices like iwlwifi
2215 * when there are frames queued for the station and it wakes up
2216 * or polls; the frames that are already queued could end up being
2217 * transmitted first instead, causing reordering and/or wrong
2218 * processing of the EOSP. The cause is that allowing frames to be
2219 * transmitted to a certain station is out-of-band communication to
2220 * the device. To allow this problem to be solved, the driver can
2221 * call ieee80211_sta_block_awake() if frames are buffered when it
2222 * is notified that the station went to sleep. When all these frames
2223 * have been filtered (see above), it must call the function again
2224 * to indicate that the station is no longer blocked.
2225 *
2226 * If the driver buffers frames in the driver for aggregation in any
2227 * way, it must use the ieee80211_sta_set_buffered() call when it is
2228 * notified of the station going to sleep to inform mac80211 of any
2229 * TIDs that have frames buffered. Note that when a station wakes up
2230 * this information is reset (hence the requirement to call it when
2231 * informed of the station going to sleep). Then, when a service
2232 * period starts for any reason, @release_buffered_frames is called
2233 * with the number of frames to be released and which TIDs they are
2234 * to come from. In this case, the driver is responsible for setting
2235 * the EOSP (for uAPSD) and MORE_DATA bits in the released frames,
e227867f 2236 * to help the @more_data parameter is passed to tell the driver if
4b801bc9
JB
2237 * there is more data on other TIDs -- the TIDs to release frames
2238 * from are ignored since mac80211 doesn't know how many frames the
2239 * buffers for those TIDs contain.
2240 *
2241 * If the driver also implement GO mode, where absence periods may
2242 * shorten service periods (or abort PS-Poll responses), it must
2243 * filter those response frames except in the case of frames that
2244 * are buffered in the driver -- those must remain buffered to avoid
2245 * reordering. Because it is possible that no frames are released
e943789e 2246 * in this case, the driver must call ieee80211_sta_eosp()
4b801bc9
JB
2247 * to indicate to mac80211 that the service period ended anyway.
2248 *
2249 * Finally, if frames from multiple TIDs are released from mac80211
2250 * but the driver might reorder them, it must clear & set the flags
2251 * appropriately (only the last frame may have %IEEE80211_TX_STATUS_EOSP)
2252 * and also take care of the EOSP and MORE_DATA bits in the frame.
e943789e 2253 * The driver may also use ieee80211_sta_eosp() in this case.
b77cf4f8
JB
2254 *
2255 * Note that if the driver ever buffers frames other than QoS-data
2256 * frames, it must take care to never send a non-QoS-data frame as
2257 * the last frame in a service period, adding a QoS-nulldata frame
2258 * after a non-QoS-data frame if needed.
4b801bc9
JB
2259 */
2260
3a25a8c8
JB
2261/**
2262 * DOC: HW queue control
2263 *
2264 * Before HW queue control was introduced, mac80211 only had a single static
2265 * assignment of per-interface AC software queues to hardware queues. This
2266 * was problematic for a few reasons:
2267 * 1) off-channel transmissions might get stuck behind other frames
2268 * 2) multiple virtual interfaces couldn't be handled correctly
2269 * 3) after-DTIM frames could get stuck behind other frames
2270 *
2271 * To solve this, hardware typically uses multiple different queues for all
2272 * the different usages, and this needs to be propagated into mac80211 so it
2273 * won't have the same problem with the software queues.
2274 *
2275 * Therefore, mac80211 now offers the %IEEE80211_HW_QUEUE_CONTROL capability
2276 * flag that tells it that the driver implements its own queue control. To do
2277 * so, the driver will set up the various queues in each &struct ieee80211_vif
2278 * and the offchannel queue in &struct ieee80211_hw. In response, mac80211 will
2279 * use those queue IDs in the hw_queue field of &struct ieee80211_tx_info and
2280 * if necessary will queue the frame on the right software queue that mirrors
2281 * the hardware queue.
2282 * Additionally, the driver has to then use these HW queue IDs for the queue
2283 * management functions (ieee80211_stop_queue() et al.)
2284 *
2285 * The driver is free to set up the queue mappings as needed, multiple virtual
2286 * interfaces may map to the same hardware queues if needed. The setup has to
2287 * happen during add_interface or change_interface callbacks. For example, a
2288 * driver supporting station+station and station+AP modes might decide to have
2289 * 10 hardware queues to handle different scenarios:
2290 *
2291 * 4 AC HW queues for 1st vif: 0, 1, 2, 3
2292 * 4 AC HW queues for 2nd vif: 4, 5, 6, 7
2293 * after-DTIM queue for AP: 8
2294 * off-channel queue: 9
2295 *
2296 * It would then set up the hardware like this:
2297 * hw.offchannel_tx_hw_queue = 9
2298 *
2299 * and the first virtual interface that is added as follows:
2300 * vif.hw_queue[IEEE80211_AC_VO] = 0
2301 * vif.hw_queue[IEEE80211_AC_VI] = 1
2302 * vif.hw_queue[IEEE80211_AC_BE] = 2
2303 * vif.hw_queue[IEEE80211_AC_BK] = 3
2304 * vif.cab_queue = 8 // if AP mode, otherwise %IEEE80211_INVAL_HW_QUEUE
2305 * and the second virtual interface with 4-7.
2306 *
2307 * If queue 6 gets full, for example, mac80211 would only stop the second
2308 * virtual interface's BE queue since virtual interface queues are per AC.
2309 *
2310 * Note that the vif.cab_queue value should be set to %IEEE80211_INVAL_HW_QUEUE
2311 * whenever the queue is not used (i.e. the interface is not in AP mode) if the
2312 * queue could potentially be shared since mac80211 will look at cab_queue when
2313 * a queue is stopped/woken even if the interface is not in AP mode.
2314 */
2315
75a5f0cc
JB
2316/**
2317 * enum ieee80211_filter_flags - hardware filter flags
2318 *
2319 * These flags determine what the filter in hardware should be
2320 * programmed to let through and what should not be passed to the
2321 * stack. It is always safe to pass more frames than requested,
2322 * but this has negative impact on power consumption.
2323 *
2324 * @FIF_PROMISC_IN_BSS: promiscuous mode within your BSS,
2325 * think of the BSS as your network segment and then this corresponds
2326 * to the regular ethernet device promiscuous mode.
2327 *
2328 * @FIF_ALLMULTI: pass all multicast frames, this is used if requested
2329 * by the user or if the hardware is not capable of filtering by
2330 * multicast address.
2331 *
2332 * @FIF_FCSFAIL: pass frames with failed FCS (but you need to set the
2333 * %RX_FLAG_FAILED_FCS_CRC for them)
2334 *
2335 * @FIF_PLCPFAIL: pass frames with failed PLCP CRC (but you need to set
2336 * the %RX_FLAG_FAILED_PLCP_CRC for them
2337 *
2338 * @FIF_BCN_PRBRESP_PROMISC: This flag is set during scanning to indicate
2339 * to the hardware that it should not filter beacons or probe responses
2340 * by BSSID. Filtering them can greatly reduce the amount of processing
2341 * mac80211 needs to do and the amount of CPU wakeups, so you should
2342 * honour this flag if possible.
2343 *
e3b90ca2 2344 * @FIF_CONTROL: pass control frames (except for PS Poll), if PROMISC_IN_BSS
7be5086d 2345 * is not set then only those addressed to this station.
75a5f0cc
JB
2346 *
2347 * @FIF_OTHER_BSS: pass frames destined to other BSSes
e3b90ca2 2348 *
7be5086d
JB
2349 * @FIF_PSPOLL: pass PS Poll frames, if PROMISC_IN_BSS is not set then only
2350 * those addressed to this station.
2351 *
2352 * @FIF_PROBE_REQ: pass probe request frames
4150c572 2353 */
75a5f0cc
JB
2354enum ieee80211_filter_flags {
2355 FIF_PROMISC_IN_BSS = 1<<0,
2356 FIF_ALLMULTI = 1<<1,
2357 FIF_FCSFAIL = 1<<2,
2358 FIF_PLCPFAIL = 1<<3,
2359 FIF_BCN_PRBRESP_PROMISC = 1<<4,
2360 FIF_CONTROL = 1<<5,
2361 FIF_OTHER_BSS = 1<<6,
e3b90ca2 2362 FIF_PSPOLL = 1<<7,
7be5086d 2363 FIF_PROBE_REQ = 1<<8,
75a5f0cc
JB
2364};
2365
1b7d03ac
RR
2366/**
2367 * enum ieee80211_ampdu_mlme_action - A-MPDU actions
2368 *
2369 * These flags are used with the ampdu_action() callback in
2370 * &struct ieee80211_ops to indicate which action is needed.
827d42c9
JB
2371 *
2372 * Note that drivers MUST be able to deal with a TX aggregation
2373 * session being stopped even before they OK'ed starting it by
5d22c89b 2374 * calling ieee80211_start_tx_ba_cb_irqsafe, because the peer
827d42c9
JB
2375 * might receive the addBA frame and send a delBA right away!
2376 *
18b559d5
JB
2377 * @IEEE80211_AMPDU_RX_START: start RX aggregation
2378 * @IEEE80211_AMPDU_RX_STOP: stop RX aggregation
2379 * @IEEE80211_AMPDU_TX_START: start TX aggregation
b1720231 2380 * @IEEE80211_AMPDU_TX_OPERATIONAL: TX aggregation has become operational
18b559d5
JB
2381 * @IEEE80211_AMPDU_TX_STOP_CONT: stop TX aggregation but continue transmitting
2382 * queued packets, now unaggregated. After all packets are transmitted the
2383 * driver has to call ieee80211_stop_tx_ba_cb_irqsafe().
2384 * @IEEE80211_AMPDU_TX_STOP_FLUSH: stop TX aggregation and flush all packets,
2385 * called when the station is removed. There's no need or reason to call
2386 * ieee80211_stop_tx_ba_cb_irqsafe() in this case as mac80211 assumes the
2387 * session is gone and removes the station.
2388 * @IEEE80211_AMPDU_TX_STOP_FLUSH_CONT: called when TX aggregation is stopped
2389 * but the driver hasn't called ieee80211_stop_tx_ba_cb_irqsafe() yet and
2390 * now the connection is dropped and the station will be removed. Drivers
2391 * should clean up and drop remaining packets when this is called.
1b7d03ac
RR
2392 */
2393enum ieee80211_ampdu_mlme_action {
2394 IEEE80211_AMPDU_RX_START,
2395 IEEE80211_AMPDU_RX_STOP,
0df3ef45 2396 IEEE80211_AMPDU_TX_START,
18b559d5
JB
2397 IEEE80211_AMPDU_TX_STOP_CONT,
2398 IEEE80211_AMPDU_TX_STOP_FLUSH,
2399 IEEE80211_AMPDU_TX_STOP_FLUSH_CONT,
b1720231 2400 IEEE80211_AMPDU_TX_OPERATIONAL,
1b7d03ac 2401};
75a5f0cc 2402
4049e09a
JB
2403/**
2404 * enum ieee80211_frame_release_type - frame release reason
2405 * @IEEE80211_FRAME_RELEASE_PSPOLL: frame released for PS-Poll
47086fc5
JB
2406 * @IEEE80211_FRAME_RELEASE_UAPSD: frame(s) released due to
2407 * frame received on trigger-enabled AC
4049e09a
JB
2408 */
2409enum ieee80211_frame_release_type {
2410 IEEE80211_FRAME_RELEASE_PSPOLL,
47086fc5 2411 IEEE80211_FRAME_RELEASE_UAPSD,
4049e09a
JB
2412};
2413
8f727ef3
JB
2414/**
2415 * enum ieee80211_rate_control_changed - flags to indicate what changed
2416 *
2417 * @IEEE80211_RC_BW_CHANGED: The bandwidth that can be used to transmit
e1a0c6b3
JB
2418 * to this station changed. The actual bandwidth is in the station
2419 * information -- for HT20/40 the IEEE80211_HT_CAP_SUP_WIDTH_20_40
2420 * flag changes, for HT and VHT the bandwidth field changes.
8f727ef3 2421 * @IEEE80211_RC_SMPS_CHANGED: The SMPS state of the station changed.
e687f61e
AQ
2422 * @IEEE80211_RC_SUPP_RATES_CHANGED: The supported rate set of this peer
2423 * changed (in IBSS mode) due to discovering more information about
2424 * the peer.
0af83d3d
JB
2425 * @IEEE80211_RC_NSS_CHANGED: N_SS (number of spatial streams) was changed
2426 * by the peer
8f727ef3
JB
2427 */
2428enum ieee80211_rate_control_changed {
2429 IEEE80211_RC_BW_CHANGED = BIT(0),
2430 IEEE80211_RC_SMPS_CHANGED = BIT(1),
e687f61e 2431 IEEE80211_RC_SUPP_RATES_CHANGED = BIT(2),
0af83d3d 2432 IEEE80211_RC_NSS_CHANGED = BIT(3),
8f727ef3
JB
2433};
2434
d339d5ca
IP
2435/**
2436 * enum ieee80211_roc_type - remain on channel type
2437 *
2438 * With the support for multi channel contexts and multi channel operations,
2439 * remain on channel operations might be limited/deferred/aborted by other
2440 * flows/operations which have higher priority (and vise versa).
2441 * Specifying the ROC type can be used by devices to prioritize the ROC
2442 * operations compared to other operations/flows.
2443 *
2444 * @IEEE80211_ROC_TYPE_NORMAL: There are no special requirements for this ROC.
2445 * @IEEE80211_ROC_TYPE_MGMT_TX: The remain on channel request is required
2446 * for sending managment frames offchannel.
2447 */
2448enum ieee80211_roc_type {
2449 IEEE80211_ROC_TYPE_NORMAL = 0,
2450 IEEE80211_ROC_TYPE_MGMT_TX,
2451};
2452
cf2c92d8
EP
2453/**
2454 * enum ieee80211_reconfig_complete_type - reconfig type
2455 *
2456 * This enum is used by the reconfig_complete() callback to indicate what
2457 * reconfiguration type was completed.
2458 *
2459 * @IEEE80211_RECONFIG_TYPE_RESTART: hw restart type
2460 * (also due to resume() callback returning 1)
2461 * @IEEE80211_RECONFIG_TYPE_SUSPEND: suspend type (regardless
2462 * of wowlan configuration)
2463 */
2464enum ieee80211_reconfig_type {
2465 IEEE80211_RECONFIG_TYPE_RESTART,
2466 IEEE80211_RECONFIG_TYPE_SUSPEND,
2467};
2468
75a5f0cc
JB
2469/**
2470 * struct ieee80211_ops - callbacks from mac80211 to the driver
2471 *
2472 * This structure contains various callbacks that the driver may
2473 * handle or, in some cases, must handle, for example to configure
2474 * the hardware to a new channel or to transmit a frame.
2475 *
2476 * @tx: Handler that 802.11 module calls for each transmitted frame.
2477 * skb contains the buffer starting from the IEEE 802.11 header.
2478 * The low-level driver should send the frame out based on
eefce91a 2479 * configuration in the TX control data. This handler should,
11127e91 2480 * preferably, never fail and stop queues appropriately.
11127e91 2481 * Must be atomic.
75a5f0cc
JB
2482 *
2483 * @start: Called before the first netdevice attached to the hardware
2484 * is enabled. This should turn on the hardware and must turn on
2485 * frame reception (for possibly enabled monitor interfaces.)
2486 * Returns negative error codes, these may be seen in userspace,
2487 * or zero.
2488 * When the device is started it should not have a MAC address
2489 * to avoid acknowledging frames before a non-monitor device
2490 * is added.
e1781ed3 2491 * Must be implemented and can sleep.
75a5f0cc
JB
2492 *
2493 * @stop: Called after last netdevice attached to the hardware
2494 * is disabled. This should turn off the hardware (at least
2495 * it must turn off frame reception.)
2496 * May be called right after add_interface if that rejects
42935eca
LR
2497 * an interface. If you added any work onto the mac80211 workqueue
2498 * you should ensure to cancel it on this callback.
e1781ed3 2499 * Must be implemented and can sleep.
75a5f0cc 2500 *
eecc4800
JB
2501 * @suspend: Suspend the device; mac80211 itself will quiesce before and
2502 * stop transmitting and doing any other configuration, and then
2503 * ask the device to suspend. This is only invoked when WoWLAN is
2504 * configured, otherwise the device is deconfigured completely and
2505 * reconfigured at resume time.
2b4562df
JB
2506 * The driver may also impose special conditions under which it
2507 * wants to use the "normal" suspend (deconfigure), say if it only
2508 * supports WoWLAN when the device is associated. In this case, it
2509 * must return 1 from this function.
eecc4800
JB
2510 *
2511 * @resume: If WoWLAN was configured, this indicates that mac80211 is
2512 * now resuming its operation, after this the device must be fully
2513 * functional again. If this returns an error, the only way out is
2514 * to also unregister the device. If it returns 1, then mac80211
2515 * will also go through the regular complete restart on resume.
2516 *
d13e1414
JB
2517 * @set_wakeup: Enable or disable wakeup when WoWLAN configuration is
2518 * modified. The reason is that device_set_wakeup_enable() is
2519 * supposed to be called when the configuration changes, not only
2520 * in suspend().
2521 *
75a5f0cc 2522 * @add_interface: Called when a netdevice attached to the hardware is
e37d4dff 2523 * enabled. Because it is not called for monitor mode devices, @start
75a5f0cc
JB
2524 * and @stop must be implemented.
2525 * The driver should perform any initialization it needs before
2526 * the device can be enabled. The initial configuration for the
2527 * interface is given in the conf parameter.
2528 * The callback may refuse to add an interface by returning a
2529 * negative error code (which will be seen in userspace.)
e1781ed3 2530 * Must be implemented and can sleep.
75a5f0cc 2531 *
34d4bc4d
JB
2532 * @change_interface: Called when a netdevice changes type. This callback
2533 * is optional, but only if it is supported can interface types be
2534 * switched while the interface is UP. The callback may sleep.
2535 * Note that while an interface is being switched, it will not be
2536 * found by the interface iteration callbacks.
2537 *
75a5f0cc
JB
2538 * @remove_interface: Notifies a driver that an interface is going down.
2539 * The @stop callback is called after this if it is the last interface
2540 * and no monitor interfaces are present.
2541 * When all interfaces are removed, the MAC address in the hardware
2542 * must be cleared so the device no longer acknowledges packets,
2543 * the mac_addr member of the conf structure is, however, set to the
2544 * MAC address of the device going away.
e1781ed3 2545 * Hence, this callback must be implemented. It can sleep.
75a5f0cc
JB
2546 *
2547 * @config: Handler for configuration requests. IEEE 802.11 code calls this
2548 * function to change hardware configuration, e.g., channel.
6dd1bf31 2549 * This function should never fail but returns a negative error code
e1781ed3 2550 * if it does. The callback can sleep.
75a5f0cc 2551 *
471b3efd
JB
2552 * @bss_info_changed: Handler for configuration requests related to BSS
2553 * parameters that may vary during BSS's lifespan, and may affect low
2554 * level driver (e.g. assoc/disassoc status, erp parameters).
2555 * This function should not be used if no BSS has been set, unless
2556 * for association indication. The @changed parameter indicates which
e1781ed3
KV
2557 * of the bss parameters has changed when a call is made. The callback
2558 * can sleep.
471b3efd 2559 *
3ac64bee
JB
2560 * @prepare_multicast: Prepare for multicast filter configuration.
2561 * This callback is optional, and its return value is passed
2562 * to configure_filter(). This callback must be atomic.
2563 *
75a5f0cc
JB
2564 * @configure_filter: Configure the device's RX filter.
2565 * See the section "Frame filtering" for more information.
e1781ed3 2566 * This callback must be implemented and can sleep.
75a5f0cc 2567 *
546c80c9 2568 * @set_tim: Set TIM bit. mac80211 calls this function when a TIM bit
17741cdc 2569 * must be set or cleared for a given STA. Must be atomic.
75a5f0cc
JB
2570 *
2571 * @set_key: See the section "Hardware crypto acceleration"
e1781ed3
KV
2572 * This callback is only called between add_interface and
2573 * remove_interface calls, i.e. while the given virtual interface
dc822b5d 2574 * is enabled.
6dd1bf31 2575 * Returns a negative error code if the key can't be added.
e1781ed3 2576 * The callback can sleep.
75a5f0cc 2577 *
9ae4fda3
EG
2578 * @update_tkip_key: See the section "Hardware crypto acceleration"
2579 * This callback will be called in the context of Rx. Called for drivers
2580 * which set IEEE80211_KEY_FLAG_TKIP_REQ_RX_P1_KEY.
eb807fb2 2581 * The callback must be atomic.
9ae4fda3 2582 *
c68f4b89
JB
2583 * @set_rekey_data: If the device supports GTK rekeying, for example while the
2584 * host is suspended, it can assign this callback to retrieve the data
2585 * necessary to do GTK rekeying, this is the KEK, KCK and replay counter.
2586 * After rekeying was done it should (for example during resume) notify
2587 * userspace of the new replay counter using ieee80211_gtk_rekey_notify().
2588 *
de5fad81
YD
2589 * @set_default_unicast_key: Set the default (unicast) key index, useful for
2590 * WEP when the device sends data packets autonomously, e.g. for ARP
2591 * offloading. The index can be 0-3, or -1 for unsetting it.
2592 *
75a5f0cc 2593 * @hw_scan: Ask the hardware to service the scan request, no need to start
8318d78a 2594 * the scan state machine in stack. The scan must honour the channel
9050bdd8
KV
2595 * configuration done by the regulatory agent in the wiphy's
2596 * registered bands. The hardware (or the driver) needs to make sure
de95a54b
JB
2597 * that power save is disabled.
2598 * The @req ie/ie_len members are rewritten by mac80211 to contain the
2599 * entire IEs after the SSID, so that drivers need not look at these
2600 * at all but just send them after the SSID -- mac80211 includes the
2601 * (extended) supported rates and HT information (where applicable).
2602 * When the scan finishes, ieee80211_scan_completed() must be called;
2603 * note that it also must be called when the scan cannot finish due to
2604 * any error unless this callback returned a negative error code.
e1781ed3 2605 * The callback can sleep.
75a5f0cc 2606 *
b856439b
EP
2607 * @cancel_hw_scan: Ask the low-level tp cancel the active hw scan.
2608 * The driver should ask the hardware to cancel the scan (if possible),
2609 * but the scan will be completed only after the driver will call
2610 * ieee80211_scan_completed().
2611 * This callback is needed for wowlan, to prevent enqueueing a new
2612 * scan_work after the low-level driver was already suspended.
2613 * The callback can sleep.
2614 *
79f460ca
LC
2615 * @sched_scan_start: Ask the hardware to start scanning repeatedly at
2616 * specific intervals. The driver must call the
2617 * ieee80211_sched_scan_results() function whenever it finds results.
2618 * This process will continue until sched_scan_stop is called.
2619 *
2620 * @sched_scan_stop: Tell the hardware to stop an ongoing scheduled scan.
37e3308c 2621 * In this case, ieee80211_sched_scan_stopped() must not be called.
79f460ca 2622 *
80e775bf
MB
2623 * @sw_scan_start: Notifier function that is called just before a software scan
2624 * is started. Can be NULL, if the driver doesn't need this notification.
e1781ed3 2625 * The callback can sleep.
80e775bf 2626 *
e1781ed3
KV
2627 * @sw_scan_complete: Notifier function that is called just after a
2628 * software scan finished. Can be NULL, if the driver doesn't need
2629 * this notification.
2630 * The callback can sleep.
80e775bf 2631 *
6dd1bf31
BC
2632 * @get_stats: Return low-level statistics.
2633 * Returns zero if statistics are available.
e1781ed3 2634 * The callback can sleep.
75a5f0cc 2635 *
62da92fb
JB
2636 * @get_tkip_seq: If your device implements TKIP encryption in hardware this
2637 * callback should be provided to read the TKIP transmit IVs (both IV32
2638 * and IV16) for the given key from hardware.
e1781ed3 2639 * The callback must be atomic.
75a5f0cc 2640 *
f23a4780
AN
2641 * @set_frag_threshold: Configuration of fragmentation threshold. Assign this
2642 * if the device does fragmentation by itself; if this callback is
2643 * implemented then the stack will not do fragmentation.
2644 * The callback can sleep.
2645 *
75a5f0cc 2646 * @set_rts_threshold: Configuration of RTS threshold (if device needs it)
e1781ed3 2647 * The callback can sleep.
75a5f0cc 2648 *
34e89507
JB
2649 * @sta_add: Notifies low level driver about addition of an associated station,
2650 * AP, IBSS/WDS/mesh peer etc. This callback can sleep.
2651 *
2652 * @sta_remove: Notifies low level driver about removal of an associated
6a9d1b91
JB
2653 * station, AP, IBSS/WDS/mesh peer etc. Note that after the callback
2654 * returns it isn't safe to use the pointer, not even RCU protected;
2655 * no RCU grace period is guaranteed between returning here and freeing
2656 * the station. See @sta_pre_rcu_remove if needed.
2657 * This callback can sleep.
34e89507 2658 *
77d2ece6
SM
2659 * @sta_add_debugfs: Drivers can use this callback to add debugfs files
2660 * when a station is added to mac80211's station list. This callback
2661 * and @sta_remove_debugfs should be within a CONFIG_MAC80211_DEBUGFS
2662 * conditional. This callback can sleep.
2663 *
2664 * @sta_remove_debugfs: Remove the debugfs files which were added using
2665 * @sta_add_debugfs. This callback can sleep.
2666 *
34e89507 2667 * @sta_notify: Notifies low level driver about power state transition of an
d057e5a3
AN
2668 * associated station, AP, IBSS/WDS/mesh peer etc. For a VIF operating
2669 * in AP mode, this callback will not be called when the flag
2670 * %IEEE80211_HW_AP_LINK_PS is set. Must be atomic.
4571d3bf 2671 *
f09603a2
JB
2672 * @sta_state: Notifies low level driver about state transition of a
2673 * station (which can be the AP, a client, IBSS/WDS/mesh peer etc.)
2674 * This callback is mutually exclusive with @sta_add/@sta_remove.
2675 * It must not fail for down transitions but may fail for transitions
6a9d1b91
JB
2676 * up the list of states. Also note that after the callback returns it
2677 * isn't safe to use the pointer, not even RCU protected - no RCU grace
2678 * period is guaranteed between returning here and freeing the station.
2679 * See @sta_pre_rcu_remove if needed.
2680 * The callback can sleep.
2681 *
2682 * @sta_pre_rcu_remove: Notify driver about station removal before RCU
2683 * synchronisation. This is useful if a driver needs to have station
2684 * pointers protected using RCU, it can then use this call to clear
2685 * the pointers instead of waiting for an RCU grace period to elapse
2686 * in @sta_state.
f09603a2
JB
2687 * The callback can sleep.
2688 *
8f727ef3
JB
2689 * @sta_rc_update: Notifies the driver of changes to the bitrates that can be
2690 * used to transmit to the station. The changes are advertised with bits
2691 * from &enum ieee80211_rate_control_changed and the values are reflected
2692 * in the station data. This callback should only be used when the driver
2693 * uses hardware rate control (%IEEE80211_HW_HAS_RATE_CONTROL) since
2694 * otherwise the rate control algorithm is notified directly.
2695 * Must be atomic.
2696 *
75a5f0cc 2697 * @conf_tx: Configure TX queue parameters (EDCF (aifs, cw_min, cw_max),
fe3fa827 2698 * bursting) for a hardware TX queue.
6dd1bf31 2699 * Returns a negative error code on failure.
e1781ed3 2700 * The callback can sleep.
75a5f0cc 2701 *
75a5f0cc 2702 * @get_tsf: Get the current TSF timer value from firmware/hardware. Currently,
3b5d665b 2703 * this is only used for IBSS mode BSSID merging and debugging. Is not a
7b08b3b4 2704 * required function.
e1781ed3 2705 * The callback can sleep.
3b5d665b
AF
2706 *
2707 * @set_tsf: Set the TSF timer to the specified value in the firmware/hardware.
ad24b0da 2708 * Currently, this is only used for IBSS mode debugging. Is not a
7b08b3b4 2709 * required function.
e1781ed3 2710 * The callback can sleep.
75a5f0cc
JB
2711 *
2712 * @reset_tsf: Reset the TSF timer and allow firmware/hardware to synchronize
2713 * with other STAs in the IBSS. This is only used in IBSS mode. This
2714 * function is optional if the firmware/hardware takes full care of
2715 * TSF synchronization.
e1781ed3 2716 * The callback can sleep.
75a5f0cc 2717 *
75a5f0cc
JB
2718 * @tx_last_beacon: Determine whether the last IBSS beacon was sent by us.
2719 * This is needed only for IBSS mode and the result of this function is
2720 * used to determine whether to reply to Probe Requests.
6dd1bf31 2721 * Returns non-zero if this device sent the last beacon.
e1781ed3 2722 * The callback can sleep.
d3c990fb 2723 *
1b7d03ac
RR
2724 * @ampdu_action: Perform a certain A-MPDU action
2725 * The RA/TID combination determines the destination and TID we want
2726 * the ampdu action to be performed for. The action is defined through
2727 * ieee80211_ampdu_mlme_action. Starting sequence number (@ssn)
6dd1bf31 2728 * is the first frame we expect to perform the action on. Notice
0df3ef45 2729 * that TX/RX_STOP can pass NULL for this parameter.
0b01f030
JB
2730 * The @buf_size parameter is only valid when the action is set to
2731 * %IEEE80211_AMPDU_TX_OPERATIONAL and indicates the peer's reorder
5312c3f6
JB
2732 * buffer size (number of subframes) for this session -- the driver
2733 * may neither send aggregates containing more subframes than this
2734 * nor send aggregates in a way that lost frames would exceed the
2735 * buffer size. If just limiting the aggregate size, this would be
2736 * possible with a buf_size of 8:
2737 * - TX: 1.....7
2738 * - RX: 2....7 (lost frame #1)
2739 * - TX: 8..1...
2740 * which is invalid since #1 was now re-transmitted well past the
2741 * buffer size of 8. Correct ways to retransmit #1 would be:
2742 * - TX: 1 or 18 or 81
2743 * Even "189" would be wrong since 1 could be lost again.
2744 *
6dd1bf31 2745 * Returns a negative error code on failure.
85ad181e 2746 * The callback can sleep.
1f87f7d3 2747 *
4e8998f0
RD
2748 * @get_survey: Return per-channel survey information
2749 *
1f87f7d3
JB
2750 * @rfkill_poll: Poll rfkill hardware state. If you need this, you also
2751 * need to set wiphy->rfkill_poll to %true before registration,
2752 * and need to call wiphy_rfkill_set_hw_state() in the callback.
e1781ed3 2753 * The callback can sleep.
aff89a9b 2754 *
310bc676
LT
2755 * @set_coverage_class: Set slot time for given coverage class as specified
2756 * in IEEE 802.11-2007 section 17.3.8.6 and modify ACK timeout
a4bcaf55
LB
2757 * accordingly; coverage class equals to -1 to enable ACK timeout
2758 * estimation algorithm (dynack). To disable dynack set valid value for
2759 * coverage class. This callback is not required and may sleep.
310bc676 2760 *
52981cd7
DS
2761 * @testmode_cmd: Implement a cfg80211 test mode command. The passed @vif may
2762 * be %NULL. The callback can sleep.
71063f0e 2763 * @testmode_dump: Implement a cfg80211 test mode dump. The callback can sleep.
a80f7c0b
JB
2764 *
2765 * @flush: Flush all pending frames from the hardware queue, making sure
39ecc01d
JB
2766 * that the hardware queues are empty. The @queues parameter is a bitmap
2767 * of queues to flush, which is useful if different virtual interfaces
2768 * use different hardware queues; it may also indicate all queues.
2769 * If the parameter @drop is set to %true, pending frames may be dropped.
77be2c54 2770 * Note that vif can be NULL.
39ecc01d 2771 * The callback can sleep.
5ce6e438
JB
2772 *
2773 * @channel_switch: Drivers that need (or want) to offload the channel
2774 * switch operation for CSAs received from the AP may implement this
2775 * callback. They must then call ieee80211_chswitch_done() to indicate
2776 * completion of the channel switch.
4e6cbfd0 2777 *
79b1c460
BR
2778 * @set_antenna: Set antenna configuration (tx_ant, rx_ant) on the device.
2779 * Parameters are bitmaps of allowed antennas to use for TX/RX. Drivers may
2780 * reject TX/RX mask combinations they cannot support by returning -EINVAL
2781 * (also see nl80211.h @NL80211_ATTR_WIPHY_ANTENNA_TX).
2782 *
2783 * @get_antenna: Get current antenna configuration from device (tx_ant, rx_ant).
4976b4eb
JB
2784 *
2785 * @remain_on_channel: Starts an off-channel period on the given channel, must
2786 * call back to ieee80211_ready_on_channel() when on that channel. Note
2787 * that normal channel traffic is not stopped as this is intended for hw
2788 * offload. Frames to transmit on the off-channel channel are transmitted
2789 * normally except for the %IEEE80211_TX_CTL_TX_OFFCHAN flag. When the
2790 * duration (which will always be non-zero) expires, the driver must call
196ac1c1 2791 * ieee80211_remain_on_channel_expired().
196ac1c1
JB
2792 * Note that this callback may be called while the device is in IDLE and
2793 * must be accepted in this case.
2794 * This callback may sleep.
4976b4eb
JB
2795 * @cancel_remain_on_channel: Requests that an ongoing off-channel period is
2796 * aborted before it expires. This callback may sleep.
38c09159
JL
2797 *
2798 * @set_ringparam: Set tx and rx ring sizes.
2799 *
2800 * @get_ringparam: Get tx and rx ring current and maximum sizes.
e8306f98
VN
2801 *
2802 * @tx_frames_pending: Check if there is any pending frame in the hardware
2803 * queues before entering power save.
bdbfd6b5
SM
2804 *
2805 * @set_bitrate_mask: Set a mask of rates to be used for rate control selection
2806 * when transmitting a frame. Currently only legacy rates are handled.
2807 * The callback can sleep.
615f7b9b
MV
2808 * @rssi_callback: Notify driver when the average RSSI goes above/below
2809 * thresholds that were registered previously. The callback can sleep.
4049e09a
JB
2810 *
2811 * @release_buffered_frames: Release buffered frames according to the given
2812 * parameters. In the case where the driver buffers some frames for
2813 * sleeping stations mac80211 will use this callback to tell the driver
2814 * to release some frames, either for PS-poll or uAPSD.
e227867f 2815 * Note that if the @more_data parameter is %false the driver must check
4049e09a
JB
2816 * if there are more frames on the given TIDs, and if there are more than
2817 * the frames being released then it must still set the more-data bit in
2818 * the frame. If the @more_data parameter is %true, then of course the
2819 * more-data bit must always be set.
2820 * The @tids parameter tells the driver which TIDs to release frames
2821 * from, for PS-poll it will always have only a single bit set.
deeaee19
JB
2822 * In the case this is used for a PS-poll initiated release, the
2823 * @num_frames parameter will always be 1 so code can be shared. In
2824 * this case the driver must also set %IEEE80211_TX_STATUS_EOSP flag
2825 * on the TX status (and must report TX status) so that the PS-poll
2826 * period is properly ended. This is used to avoid sending multiple
2827 * responses for a retried PS-poll frame.
4049e09a
JB
2828 * In the case this is used for uAPSD, the @num_frames parameter may be
2829 * bigger than one, but the driver may send fewer frames (it must send
2830 * at least one, however). In this case it is also responsible for
47086fc5
JB
2831 * setting the EOSP flag in the QoS header of the frames. Also, when the
2832 * service period ends, the driver must set %IEEE80211_TX_STATUS_EOSP
37fbd908 2833 * on the last frame in the SP. Alternatively, it may call the function
e943789e 2834 * ieee80211_sta_eosp() to inform mac80211 of the end of the SP.
4049e09a 2835 * This callback must be atomic.
40b96408
JB
2836 * @allow_buffered_frames: Prepare device to allow the given number of frames
2837 * to go out to the given station. The frames will be sent by mac80211
2838 * via the usual TX path after this call. The TX information for frames
02f2f1a9 2839 * released will also have the %IEEE80211_TX_CTL_NO_PS_BUFFER flag set
40b96408
JB
2840 * and the last one will also have %IEEE80211_TX_STATUS_EOSP set. In case
2841 * frames from multiple TIDs are released and the driver might reorder
2842 * them between the TIDs, it must set the %IEEE80211_TX_STATUS_EOSP flag
2843 * on the last frame and clear it on all others and also handle the EOSP
37fbd908 2844 * bit in the QoS header correctly. Alternatively, it can also call the
e943789e 2845 * ieee80211_sta_eosp() function.
40b96408
JB
2846 * The @tids parameter is a bitmap and tells the driver which TIDs the
2847 * frames will be on; it will at most have two bits set.
2848 * This callback must be atomic.
e352114f
BG
2849 *
2850 * @get_et_sset_count: Ethtool API to get string-set count.
2851 *
2852 * @get_et_stats: Ethtool API to get a set of u64 stats.
2853 *
2854 * @get_et_strings: Ethtool API to get a set of strings to describe stats
2855 * and perhaps other supported types of ethtool data-sets.
2856 *
66572cfc
VG
2857 * @get_rssi: Get current signal strength in dBm, the function is optional
2858 * and can sleep.
2859 *
a1845fc7
JB
2860 * @mgd_prepare_tx: Prepare for transmitting a management frame for association
2861 * before associated. In multi-channel scenarios, a virtual interface is
2862 * bound to a channel before it is associated, but as it isn't associated
2863 * yet it need not necessarily be given airtime, in particular since any
2864 * transmission to a P2P GO needs to be synchronized against the GO's
2865 * powersave state. mac80211 will call this function before transmitting a
2866 * management frame prior to having successfully associated to allow the
2867 * driver to give it channel time for the transmission, to get a response
2868 * and to be able to synchronize with the GO.
2869 * The callback will be called before each transmission and upon return
2870 * mac80211 will transmit the frame right away.
2871 * The callback is optional and can (should!) sleep.
c3645eac 2872 *
ee10f2c7
AN
2873 * @mgd_protect_tdls_discover: Protect a TDLS discovery session. After sending
2874 * a TDLS discovery-request, we expect a reply to arrive on the AP's
2875 * channel. We must stay on the channel (no PSM, scan, etc.), since a TDLS
2876 * setup-response is a direct packet not buffered by the AP.
2877 * mac80211 will call this function just before the transmission of a TDLS
2878 * discovery-request. The recommended period of protection is at least
2879 * 2 * (DTIM period).
2880 * The callback is optional and can sleep.
2881 *
c3645eac
MK
2882 * @add_chanctx: Notifies device driver about new channel context creation.
2883 * @remove_chanctx: Notifies device driver about channel context destruction.
2884 * @change_chanctx: Notifies device driver about channel context changes that
2885 * may happen when combining different virtual interfaces on the same
2886 * channel context with different settings
2887 * @assign_vif_chanctx: Notifies device driver about channel context being bound
2888 * to vif. Possible use is for hw queue remapping.
2889 * @unassign_vif_chanctx: Notifies device driver about channel context being
2890 * unbound from vif.
1a5f0c13
LC
2891 * @switch_vif_chanctx: switch a number of vifs from one chanctx to
2892 * another, as specified in the list of
2893 * @ieee80211_vif_chanctx_switch passed to the driver, according
2894 * to the mode defined in &ieee80211_chanctx_switch_mode.
2895 *
1041638f
JB
2896 * @start_ap: Start operation on the AP interface, this is called after all the
2897 * information in bss_conf is set and beacon can be retrieved. A channel
2898 * context is bound before this is called. Note that if the driver uses
2899 * software scan or ROC, this (and @stop_ap) isn't called when the AP is
2900 * just "paused" for scanning/ROC, which is indicated by the beacon being
2901 * disabled/enabled via @bss_info_changed.
2902 * @stop_ap: Stop operation on the AP interface.
9214ad7f 2903 *
cf2c92d8
EP
2904 * @reconfig_complete: Called after a call to ieee80211_restart_hw() and
2905 * during resume, when the reconfiguration has completed.
2906 * This can help the driver implement the reconfiguration step (and
2907 * indicate mac80211 is ready to receive frames).
2908 * This callback may sleep.
8f21b0ad 2909 *
a65240c1
JB
2910 * @ipv6_addr_change: IPv6 address assignment on the given interface changed.
2911 * Currently, this is only called for managed or P2P client interfaces.
2912 * This callback is optional; it must not sleep.
73da7d5b
SW
2913 *
2914 * @channel_switch_beacon: Starts a channel switch to a new channel.
2915 * Beacons are modified to include CSA or ECSA IEs before calling this
2916 * function. The corresponding count fields in these IEs must be
66e01cf9 2917 * decremented, and when they reach 1 the driver must call
73da7d5b
SW
2918 * ieee80211_csa_finish(). Drivers which use ieee80211_beacon_get()
2919 * get the csa counter decremented by mac80211, but must check if it is
66e01cf9 2920 * 1 using ieee80211_csa_is_complete() after the beacon has been
73da7d5b 2921 * transmitted and then call ieee80211_csa_finish().
66e01cf9
LC
2922 * If the CSA count starts as zero or 1, this function will not be called,
2923 * since there won't be any time to beacon before the switch anyway.
6d027bcc
LC
2924 * @pre_channel_switch: This is an optional callback that is called
2925 * before a channel switch procedure is started (ie. when a STA
2926 * gets a CSA or an userspace initiated channel-switch), allowing
2927 * the driver to prepare for the channel switch.
f1d65583
LC
2928 * @post_channel_switch: This is an optional callback that is called
2929 * after a channel switch procedure is completed, allowing the
2930 * driver to go back to a normal configuration.
73da7d5b 2931 *
55fff501
JB
2932 * @join_ibss: Join an IBSS (on an IBSS interface); this is called after all
2933 * information in bss_conf is set up and the beacon can be retrieved. A
2934 * channel context is bound before this is called.
2935 * @leave_ibss: Leave the IBSS again.
cca674d4
AQ
2936 *
2937 * @get_expected_throughput: extract the expected throughput towards the
2938 * specified station. The returned value is expressed in Kbps. It returns 0
2939 * if the RC algorithm does not have proper data to provide.
5b3dc42b
FF
2940 *
2941 * @get_txpower: get current maximum tx power (in dBm) based on configuration
2942 * and hardware limits.
a7a6bdd0
AN
2943 *
2944 * @tdls_channel_switch: Start channel-switching with a TDLS peer. The driver
2945 * is responsible for continually initiating channel-switching operations
2946 * and returning to the base channel for communication with the AP. The
2947 * driver receives a channel-switch request template and the location of
2948 * the switch-timing IE within the template as part of the invocation.
2949 * The template is valid only within the call, and the driver can
2950 * optionally copy the skb for further re-use.
2951 * @tdls_cancel_channel_switch: Stop channel-switching with a TDLS peer. Both
2952 * peers must be on the base channel when the call completes.
8a4d32f3
AN
2953 * @tdls_recv_channel_switch: a TDLS channel-switch related frame (request or
2954 * response) has been received from a remote peer. The driver gets
2955 * parameters parsed from the incoming frame and may use them to continue
2956 * an ongoing channel-switch operation. In addition, a channel-switch
2957 * response template is provided, together with the location of the
2958 * switch-timing IE within the template. The skb can only be used within
2959 * the function call.
75a5f0cc 2960 */
f0706e82 2961struct ieee80211_ops {
36323f81
TH
2962 void (*tx)(struct ieee80211_hw *hw,
2963 struct ieee80211_tx_control *control,
2964 struct sk_buff *skb);
4150c572 2965 int (*start)(struct ieee80211_hw *hw);
4150c572 2966 void (*stop)(struct ieee80211_hw *hw);
eecc4800
JB
2967#ifdef CONFIG_PM
2968 int (*suspend)(struct ieee80211_hw *hw, struct cfg80211_wowlan *wowlan);
2969 int (*resume)(struct ieee80211_hw *hw);
6d52563f 2970 void (*set_wakeup)(struct ieee80211_hw *hw, bool enabled);
eecc4800 2971#endif
f0706e82 2972 int (*add_interface)(struct ieee80211_hw *hw,
1ed32e4f 2973 struct ieee80211_vif *vif);
34d4bc4d
JB
2974 int (*change_interface)(struct ieee80211_hw *hw,
2975 struct ieee80211_vif *vif,
2ca27bcf 2976 enum nl80211_iftype new_type, bool p2p);
f0706e82 2977 void (*remove_interface)(struct ieee80211_hw *hw,
1ed32e4f 2978 struct ieee80211_vif *vif);
e8975581 2979 int (*config)(struct ieee80211_hw *hw, u32 changed);
471b3efd
JB
2980 void (*bss_info_changed)(struct ieee80211_hw *hw,
2981 struct ieee80211_vif *vif,
2982 struct ieee80211_bss_conf *info,
2983 u32 changed);
b2abb6e2 2984
1041638f
JB
2985 int (*start_ap)(struct ieee80211_hw *hw, struct ieee80211_vif *vif);
2986 void (*stop_ap)(struct ieee80211_hw *hw, struct ieee80211_vif *vif);
2987
3ac64bee 2988 u64 (*prepare_multicast)(struct ieee80211_hw *hw,
22bedad3 2989 struct netdev_hw_addr_list *mc_list);
4150c572
JB
2990 void (*configure_filter)(struct ieee80211_hw *hw,
2991 unsigned int changed_flags,
2992 unsigned int *total_flags,
3ac64bee 2993 u64 multicast);
17741cdc
JB
2994 int (*set_tim)(struct ieee80211_hw *hw, struct ieee80211_sta *sta,
2995 bool set);
ea49c359 2996 int (*set_key)(struct ieee80211_hw *hw, enum set_key_cmd cmd,
dc822b5d 2997 struct ieee80211_vif *vif, struct ieee80211_sta *sta,
11a843b7 2998 struct ieee80211_key_conf *key);
9ae4fda3 2999 void (*update_tkip_key)(struct ieee80211_hw *hw,
b3fbdcf4
JB
3000 struct ieee80211_vif *vif,
3001 struct ieee80211_key_conf *conf,
3002 struct ieee80211_sta *sta,
3003 u32 iv32, u16 *phase1key);
c68f4b89
JB
3004 void (*set_rekey_data)(struct ieee80211_hw *hw,
3005 struct ieee80211_vif *vif,
3006 struct cfg80211_gtk_rekey_data *data);
de5fad81
YD
3007 void (*set_default_unicast_key)(struct ieee80211_hw *hw,
3008 struct ieee80211_vif *vif, int idx);
a060bbfe 3009 int (*hw_scan)(struct ieee80211_hw *hw, struct ieee80211_vif *vif,
c56ef672 3010 struct ieee80211_scan_request *req);
b856439b
EP
3011 void (*cancel_hw_scan)(struct ieee80211_hw *hw,
3012 struct ieee80211_vif *vif);
79f460ca
LC
3013 int (*sched_scan_start)(struct ieee80211_hw *hw,
3014 struct ieee80211_vif *vif,
3015 struct cfg80211_sched_scan_request *req,
633e2713 3016 struct ieee80211_scan_ies *ies);
37e3308c 3017 int (*sched_scan_stop)(struct ieee80211_hw *hw,
79f460ca 3018 struct ieee80211_vif *vif);
80e775bf
MB
3019 void (*sw_scan_start)(struct ieee80211_hw *hw);
3020 void (*sw_scan_complete)(struct ieee80211_hw *hw);
f0706e82
JB
3021 int (*get_stats)(struct ieee80211_hw *hw,
3022 struct ieee80211_low_level_stats *stats);
62da92fb
JB
3023 void (*get_tkip_seq)(struct ieee80211_hw *hw, u8 hw_key_idx,
3024 u32 *iv32, u16 *iv16);
f23a4780 3025 int (*set_frag_threshold)(struct ieee80211_hw *hw, u32 value);
f0706e82 3026 int (*set_rts_threshold)(struct ieee80211_hw *hw, u32 value);
34e89507
JB
3027 int (*sta_add)(struct ieee80211_hw *hw, struct ieee80211_vif *vif,
3028 struct ieee80211_sta *sta);
3029 int (*sta_remove)(struct ieee80211_hw *hw, struct ieee80211_vif *vif,
3030 struct ieee80211_sta *sta);
77d2ece6
SM
3031#ifdef CONFIG_MAC80211_DEBUGFS
3032 void (*sta_add_debugfs)(struct ieee80211_hw *hw,
3033 struct ieee80211_vif *vif,
3034 struct ieee80211_sta *sta,
3035 struct dentry *dir);
3036 void (*sta_remove_debugfs)(struct ieee80211_hw *hw,
3037 struct ieee80211_vif *vif,
3038 struct ieee80211_sta *sta,
3039 struct dentry *dir);
3040#endif
32bfd35d 3041 void (*sta_notify)(struct ieee80211_hw *hw, struct ieee80211_vif *vif,
17741cdc 3042 enum sta_notify_cmd, struct ieee80211_sta *sta);
f09603a2
JB
3043 int (*sta_state)(struct ieee80211_hw *hw, struct ieee80211_vif *vif,
3044 struct ieee80211_sta *sta,
3045 enum ieee80211_sta_state old_state,
3046 enum ieee80211_sta_state new_state);
6a9d1b91
JB
3047 void (*sta_pre_rcu_remove)(struct ieee80211_hw *hw,
3048 struct ieee80211_vif *vif,
3049 struct ieee80211_sta *sta);
8f727ef3
JB
3050 void (*sta_rc_update)(struct ieee80211_hw *hw,
3051 struct ieee80211_vif *vif,
3052 struct ieee80211_sta *sta,
3053 u32 changed);
8a3a3c85 3054 int (*conf_tx)(struct ieee80211_hw *hw,
a3304b0a 3055 struct ieee80211_vif *vif, u16 ac,
f0706e82 3056 const struct ieee80211_tx_queue_params *params);
37a41b4a
EP
3057 u64 (*get_tsf)(struct ieee80211_hw *hw, struct ieee80211_vif *vif);
3058 void (*set_tsf)(struct ieee80211_hw *hw, struct ieee80211_vif *vif,
3059 u64 tsf);
3060 void (*reset_tsf)(struct ieee80211_hw *hw, struct ieee80211_vif *vif);
f0706e82 3061 int (*tx_last_beacon)(struct ieee80211_hw *hw);
1b7d03ac 3062 int (*ampdu_action)(struct ieee80211_hw *hw,
c951ad35 3063 struct ieee80211_vif *vif,
1b7d03ac 3064 enum ieee80211_ampdu_mlme_action action,
0b01f030
JB
3065 struct ieee80211_sta *sta, u16 tid, u16 *ssn,
3066 u8 buf_size);
1289723e
HS
3067 int (*get_survey)(struct ieee80211_hw *hw, int idx,
3068 struct survey_info *survey);
1f87f7d3 3069 void (*rfkill_poll)(struct ieee80211_hw *hw);
a4bcaf55 3070 void (*set_coverage_class)(struct ieee80211_hw *hw, s16 coverage_class);
aff89a9b 3071#ifdef CONFIG_NL80211_TESTMODE
52981cd7
DS
3072 int (*testmode_cmd)(struct ieee80211_hw *hw, struct ieee80211_vif *vif,
3073 void *data, int len);
71063f0e
WYG
3074 int (*testmode_dump)(struct ieee80211_hw *hw, struct sk_buff *skb,
3075 struct netlink_callback *cb,
3076 void *data, int len);
aff89a9b 3077#endif
77be2c54
EG
3078 void (*flush)(struct ieee80211_hw *hw, struct ieee80211_vif *vif,
3079 u32 queues, bool drop);
5ce6e438 3080 void (*channel_switch)(struct ieee80211_hw *hw,
0f791eb4 3081 struct ieee80211_vif *vif,
5ce6e438 3082 struct ieee80211_channel_switch *ch_switch);
15d96753
BR
3083 int (*set_antenna)(struct ieee80211_hw *hw, u32 tx_ant, u32 rx_ant);
3084 int (*get_antenna)(struct ieee80211_hw *hw, u32 *tx_ant, u32 *rx_ant);
21f83589
JB
3085
3086 int (*remain_on_channel)(struct ieee80211_hw *hw,
49884568 3087 struct ieee80211_vif *vif,
21f83589 3088 struct ieee80211_channel *chan,
d339d5ca
IP
3089 int duration,
3090 enum ieee80211_roc_type type);
21f83589 3091 int (*cancel_remain_on_channel)(struct ieee80211_hw *hw);
38c09159
JL
3092 int (*set_ringparam)(struct ieee80211_hw *hw, u32 tx, u32 rx);
3093 void (*get_ringparam)(struct ieee80211_hw *hw,
3094 u32 *tx, u32 *tx_max, u32 *rx, u32 *rx_max);
e8306f98 3095 bool (*tx_frames_pending)(struct ieee80211_hw *hw);
bdbfd6b5
SM
3096 int (*set_bitrate_mask)(struct ieee80211_hw *hw, struct ieee80211_vif *vif,
3097 const struct cfg80211_bitrate_mask *mask);
615f7b9b 3098 void (*rssi_callback)(struct ieee80211_hw *hw,
887da917 3099 struct ieee80211_vif *vif,
615f7b9b 3100 enum ieee80211_rssi_event rssi_event);
4049e09a 3101
40b96408
JB
3102 void (*allow_buffered_frames)(struct ieee80211_hw *hw,
3103 struct ieee80211_sta *sta,
3104 u16 tids, int num_frames,
3105 enum ieee80211_frame_release_type reason,
3106 bool more_data);
4049e09a
JB
3107 void (*release_buffered_frames)(struct ieee80211_hw *hw,
3108 struct ieee80211_sta *sta,
3109 u16 tids, int num_frames,
3110 enum ieee80211_frame_release_type reason,
3111 bool more_data);
e352114f
BG
3112
3113 int (*get_et_sset_count)(struct ieee80211_hw *hw,
3114 struct ieee80211_vif *vif, int sset);
3115 void (*get_et_stats)(struct ieee80211_hw *hw,
3116 struct ieee80211_vif *vif,
3117 struct ethtool_stats *stats, u64 *data);
3118 void (*get_et_strings)(struct ieee80211_hw *hw,
3119 struct ieee80211_vif *vif,
3120 u32 sset, u8 *data);
66572cfc
VG
3121 int (*get_rssi)(struct ieee80211_hw *hw, struct ieee80211_vif *vif,
3122 struct ieee80211_sta *sta, s8 *rssi_dbm);
a1845fc7
JB
3123
3124 void (*mgd_prepare_tx)(struct ieee80211_hw *hw,
3125 struct ieee80211_vif *vif);
c3645eac 3126
ee10f2c7
AN
3127 void (*mgd_protect_tdls_discover)(struct ieee80211_hw *hw,
3128 struct ieee80211_vif *vif);
3129
c3645eac
MK
3130 int (*add_chanctx)(struct ieee80211_hw *hw,
3131 struct ieee80211_chanctx_conf *ctx);
3132 void (*remove_chanctx)(struct ieee80211_hw *hw,
3133 struct ieee80211_chanctx_conf *ctx);
3134 void (*change_chanctx)(struct ieee80211_hw *hw,
3135 struct ieee80211_chanctx_conf *ctx,
3136 u32 changed);
3137 int (*assign_vif_chanctx)(struct ieee80211_hw *hw,
3138 struct ieee80211_vif *vif,
3139 struct ieee80211_chanctx_conf *ctx);
3140 void (*unassign_vif_chanctx)(struct ieee80211_hw *hw,
3141 struct ieee80211_vif *vif,
3142 struct ieee80211_chanctx_conf *ctx);
1a5f0c13
LC
3143 int (*switch_vif_chanctx)(struct ieee80211_hw *hw,
3144 struct ieee80211_vif_chanctx_switch *vifs,
3145 int n_vifs,
3146 enum ieee80211_chanctx_switch_mode mode);
9214ad7f 3147
cf2c92d8
EP
3148 void (*reconfig_complete)(struct ieee80211_hw *hw,
3149 enum ieee80211_reconfig_type reconfig_type);
a65240c1
JB
3150
3151#if IS_ENABLED(CONFIG_IPV6)
3152 void (*ipv6_addr_change)(struct ieee80211_hw *hw,
3153 struct ieee80211_vif *vif,
3154 struct inet6_dev *idev);
3155#endif
73da7d5b
SW
3156 void (*channel_switch_beacon)(struct ieee80211_hw *hw,
3157 struct ieee80211_vif *vif,
3158 struct cfg80211_chan_def *chandef);
6d027bcc
LC
3159 int (*pre_channel_switch)(struct ieee80211_hw *hw,
3160 struct ieee80211_vif *vif,
3161 struct ieee80211_channel_switch *ch_switch);
55fff501 3162
f1d65583
LC
3163 int (*post_channel_switch)(struct ieee80211_hw *hw,
3164 struct ieee80211_vif *vif);
3165
55fff501
JB
3166 int (*join_ibss)(struct ieee80211_hw *hw, struct ieee80211_vif *vif);
3167 void (*leave_ibss)(struct ieee80211_hw *hw, struct ieee80211_vif *vif);
cca674d4 3168 u32 (*get_expected_throughput)(struct ieee80211_sta *sta);
5b3dc42b
FF
3169 int (*get_txpower)(struct ieee80211_hw *hw, struct ieee80211_vif *vif,
3170 int *dbm);
a7a6bdd0
AN
3171
3172 int (*tdls_channel_switch)(struct ieee80211_hw *hw,
3173 struct ieee80211_vif *vif,
3174 struct ieee80211_sta *sta, u8 oper_class,
3175 struct cfg80211_chan_def *chandef,
8a4d32f3 3176 struct sk_buff *tmpl_skb, u32 ch_sw_tm_ie);
a7a6bdd0
AN
3177 void (*tdls_cancel_channel_switch)(struct ieee80211_hw *hw,
3178 struct ieee80211_vif *vif,
3179 struct ieee80211_sta *sta);
8a4d32f3
AN
3180 void (*tdls_recv_channel_switch)(struct ieee80211_hw *hw,
3181 struct ieee80211_vif *vif,
3182 struct ieee80211_tdls_ch_sw_params *params);
f0706e82
JB
3183};
3184
75a5f0cc 3185/**
ad28757e 3186 * ieee80211_alloc_hw_nm - Allocate a new hardware device
75a5f0cc
JB
3187 *
3188 * This must be called once for each hardware device. The returned pointer
3189 * must be used to refer to this device when calling other functions.
3190 * mac80211 allocates a private data area for the driver pointed to by
3191 * @priv in &struct ieee80211_hw, the size of this area is given as
3192 * @priv_data_len.
3193 *
3194 * @priv_data_len: length of private data
3195 * @ops: callbacks for this device
ad28757e
BG
3196 * @requested_name: Requested name for this device.
3197 * NULL is valid value, and means use the default naming (phy%d)
0ae997dc
YB
3198 *
3199 * Return: A pointer to the new hardware device, or %NULL on error.
f0706e82 3200 */
ad28757e
BG
3201struct ieee80211_hw *ieee80211_alloc_hw_nm(size_t priv_data_len,
3202 const struct ieee80211_ops *ops,
3203 const char *requested_name);
3204
3205/**
3206 * ieee80211_alloc_hw - Allocate a new hardware device
3207 *
3208 * This must be called once for each hardware device. The returned pointer
3209 * must be used to refer to this device when calling other functions.
3210 * mac80211 allocates a private data area for the driver pointed to by
3211 * @priv in &struct ieee80211_hw, the size of this area is given as
3212 * @priv_data_len.
3213 *
3214 * @priv_data_len: length of private data
3215 * @ops: callbacks for this device
3216 *
3217 * Return: A pointer to the new hardware device, or %NULL on error.
3218 */
3219static inline
f0706e82 3220struct ieee80211_hw *ieee80211_alloc_hw(size_t priv_data_len,
ad28757e
BG
3221 const struct ieee80211_ops *ops)
3222{
3223 return ieee80211_alloc_hw_nm(priv_data_len, ops, NULL);
3224}
f0706e82 3225
75a5f0cc
JB
3226/**
3227 * ieee80211_register_hw - Register hardware device
3228 *
dbbea671
JB
3229 * You must call this function before any other functions in
3230 * mac80211. Note that before a hardware can be registered, you
3231 * need to fill the contained wiphy's information.
75a5f0cc
JB
3232 *
3233 * @hw: the device to register as returned by ieee80211_alloc_hw()
0ae997dc
YB
3234 *
3235 * Return: 0 on success. An error code otherwise.
75a5f0cc 3236 */
f0706e82
JB
3237int ieee80211_register_hw(struct ieee80211_hw *hw);
3238
e1e54068
JB
3239/**
3240 * struct ieee80211_tpt_blink - throughput blink description
3241 * @throughput: throughput in Kbit/sec
3242 * @blink_time: blink time in milliseconds
3243 * (full cycle, ie. one off + one on period)
3244 */
3245struct ieee80211_tpt_blink {
3246 int throughput;
3247 int blink_time;
3248};
3249
67408c8c
JB
3250/**
3251 * enum ieee80211_tpt_led_trigger_flags - throughput trigger flags
3252 * @IEEE80211_TPT_LEDTRIG_FL_RADIO: enable blinking with radio
3253 * @IEEE80211_TPT_LEDTRIG_FL_WORK: enable blinking when working
3254 * @IEEE80211_TPT_LEDTRIG_FL_CONNECTED: enable blinking when at least one
3255 * interface is connected in some way, including being an AP
3256 */
3257enum ieee80211_tpt_led_trigger_flags {
3258 IEEE80211_TPT_LEDTRIG_FL_RADIO = BIT(0),
3259 IEEE80211_TPT_LEDTRIG_FL_WORK = BIT(1),
3260 IEEE80211_TPT_LEDTRIG_FL_CONNECTED = BIT(2),
3261};
3262
f0706e82 3263#ifdef CONFIG_MAC80211_LEDS
10dd9b7c
JP
3264char *__ieee80211_get_tx_led_name(struct ieee80211_hw *hw);
3265char *__ieee80211_get_rx_led_name(struct ieee80211_hw *hw);
3266char *__ieee80211_get_assoc_led_name(struct ieee80211_hw *hw);
3267char *__ieee80211_get_radio_led_name(struct ieee80211_hw *hw);
3268char *__ieee80211_create_tpt_led_trigger(struct ieee80211_hw *hw,
3269 unsigned int flags,
3270 const struct ieee80211_tpt_blink *blink_table,
3271 unsigned int blink_table_len);
f0706e82 3272#endif
75a5f0cc
JB
3273/**
3274 * ieee80211_get_tx_led_name - get name of TX LED
3275 *
3276 * mac80211 creates a transmit LED trigger for each wireless hardware
3277 * that can be used to drive LEDs if your driver registers a LED device.
3278 * This function returns the name (or %NULL if not configured for LEDs)
3279 * of the trigger so you can automatically link the LED device.
3280 *
3281 * @hw: the hardware to get the LED trigger name for
0ae997dc
YB
3282 *
3283 * Return: The name of the LED trigger. %NULL if not configured for LEDs.
75a5f0cc 3284 */
f0706e82
JB
3285static inline char *ieee80211_get_tx_led_name(struct ieee80211_hw *hw)
3286{
3287#ifdef CONFIG_MAC80211_LEDS
3288 return __ieee80211_get_tx_led_name(hw);
3289#else
3290 return NULL;
3291#endif
3292}
3293
75a5f0cc
JB
3294/**
3295 * ieee80211_get_rx_led_name - get name of RX LED
3296 *
3297 * mac80211 creates a receive LED trigger for each wireless hardware
3298 * that can be used to drive LEDs if your driver registers a LED device.
3299 * This function returns the name (or %NULL if not configured for LEDs)
3300 * of the trigger so you can automatically link the LED device.
3301 *
3302 * @hw: the hardware to get the LED trigger name for
0ae997dc
YB
3303 *
3304 * Return: The name of the LED trigger. %NULL if not configured for LEDs.
75a5f0cc 3305 */
f0706e82
JB
3306static inline char *ieee80211_get_rx_led_name(struct ieee80211_hw *hw)
3307{
3308#ifdef CONFIG_MAC80211_LEDS
3309 return __ieee80211_get_rx_led_name(hw);
3310#else
3311 return NULL;
3312#endif
3313}
3314
cdcb006f
ID
3315/**
3316 * ieee80211_get_assoc_led_name - get name of association LED
3317 *
3318 * mac80211 creates a association LED trigger for each wireless hardware
3319 * that can be used to drive LEDs if your driver registers a LED device.
3320 * This function returns the name (or %NULL if not configured for LEDs)
3321 * of the trigger so you can automatically link the LED device.
3322 *
3323 * @hw: the hardware to get the LED trigger name for
0ae997dc
YB
3324 *
3325 * Return: The name of the LED trigger. %NULL if not configured for LEDs.
cdcb006f 3326 */
47f0c502
MB
3327static inline char *ieee80211_get_assoc_led_name(struct ieee80211_hw *hw)
3328{
3329#ifdef CONFIG_MAC80211_LEDS
3330 return __ieee80211_get_assoc_led_name(hw);
3331#else
3332 return NULL;
3333#endif
3334}
3335
cdcb006f
ID
3336/**
3337 * ieee80211_get_radio_led_name - get name of radio LED
3338 *
3339 * mac80211 creates a radio change LED trigger for each wireless hardware
3340 * that can be used to drive LEDs if your driver registers a LED device.
3341 * This function returns the name (or %NULL if not configured for LEDs)
3342 * of the trigger so you can automatically link the LED device.
3343 *
3344 * @hw: the hardware to get the LED trigger name for
0ae997dc
YB
3345 *
3346 * Return: The name of the LED trigger. %NULL if not configured for LEDs.
cdcb006f
ID
3347 */
3348static inline char *ieee80211_get_radio_led_name(struct ieee80211_hw *hw)
3349{
3350#ifdef CONFIG_MAC80211_LEDS
3351 return __ieee80211_get_radio_led_name(hw);
3352#else
3353 return NULL;
3354#endif
3355}
47f0c502 3356
e1e54068
JB
3357/**
3358 * ieee80211_create_tpt_led_trigger - create throughput LED trigger
3359 * @hw: the hardware to create the trigger for
67408c8c 3360 * @flags: trigger flags, see &enum ieee80211_tpt_led_trigger_flags
e1e54068
JB
3361 * @blink_table: the blink table -- needs to be ordered by throughput
3362 * @blink_table_len: size of the blink table
3363 *
0ae997dc
YB
3364 * Return: %NULL (in case of error, or if no LED triggers are
3365 * configured) or the name of the new trigger.
3366 *
3367 * Note: This function must be called before ieee80211_register_hw().
e1e54068
JB
3368 */
3369static inline char *
67408c8c 3370ieee80211_create_tpt_led_trigger(struct ieee80211_hw *hw, unsigned int flags,
e1e54068
JB
3371 const struct ieee80211_tpt_blink *blink_table,
3372 unsigned int blink_table_len)
3373{
3374#ifdef CONFIG_MAC80211_LEDS
67408c8c 3375 return __ieee80211_create_tpt_led_trigger(hw, flags, blink_table,
e1e54068
JB
3376 blink_table_len);
3377#else
3378 return NULL;
3379#endif
3380}
3381
75a5f0cc
JB
3382/**
3383 * ieee80211_unregister_hw - Unregister a hardware device
3384 *
3385 * This function instructs mac80211 to free allocated resources
3386 * and unregister netdevices from the networking subsystem.
3387 *
3388 * @hw: the hardware to unregister
3389 */
f0706e82
JB
3390void ieee80211_unregister_hw(struct ieee80211_hw *hw);
3391
75a5f0cc
JB
3392/**
3393 * ieee80211_free_hw - free hardware descriptor
3394 *
3395 * This function frees everything that was allocated, including the
3396 * private data for the driver. You must call ieee80211_unregister_hw()
6ef307bc 3397 * before calling this function.
75a5f0cc
JB
3398 *
3399 * @hw: the hardware to free
3400 */
f0706e82
JB
3401void ieee80211_free_hw(struct ieee80211_hw *hw);
3402
f2753ddb
JB
3403/**
3404 * ieee80211_restart_hw - restart hardware completely
3405 *
3406 * Call this function when the hardware was restarted for some reason
3407 * (hardware error, ...) and the driver is unable to restore its state
3408 * by itself. mac80211 assumes that at this point the driver/hardware
3409 * is completely uninitialised and stopped, it starts the process by
3410 * calling the ->start() operation. The driver will need to reset all
3411 * internal state that it has prior to calling this function.
3412 *
3413 * @hw: the hardware to restart
3414 */
3415void ieee80211_restart_hw(struct ieee80211_hw *hw);
3416
06d181a8
JB
3417/**
3418 * ieee80211_napi_add - initialize mac80211 NAPI context
3419 * @hw: the hardware to initialize the NAPI context on
3420 * @napi: the NAPI context to initialize
3421 * @napi_dev: dummy NAPI netdevice, here to not waste the space if the
3422 * driver doesn't use NAPI
3423 * @poll: poll function
3424 * @weight: default weight
4e6cbfd0 3425 *
06d181a8 3426 * See also netif_napi_add().
4e6cbfd0 3427 */
06d181a8
JB
3428void ieee80211_napi_add(struct ieee80211_hw *hw, struct napi_struct *napi,
3429 struct net_device *napi_dev,
3430 int (*poll)(struct napi_struct *, int),
3431 int weight);
4e6cbfd0 3432
75a5f0cc
JB
3433/**
3434 * ieee80211_rx - receive frame
3435 *
3436 * Use this function to hand received frames to mac80211. The receive
e3cf8b3f
ZY
3437 * buffer in @skb must start with an IEEE 802.11 header. In case of a
3438 * paged @skb is used, the driver is recommended to put the ieee80211
3439 * header of the frame on the linear part of the @skb to avoid memory
3440 * allocation and/or memcpy by the stack.
75a5f0cc 3441 *
2485f710 3442 * This function may not be called in IRQ context. Calls to this function
e36e49f7
KV
3443 * for a single hardware must be synchronized against each other. Calls to
3444 * this function, ieee80211_rx_ni() and ieee80211_rx_irqsafe() may not be
f6b3d85f
FF
3445 * mixed for a single hardware. Must not run concurrently with
3446 * ieee80211_tx_status() or ieee80211_tx_status_ni().
75a5f0cc 3447 *
e36e49f7 3448 * In process context use instead ieee80211_rx_ni().
d20ef63d 3449 *
75a5f0cc
JB
3450 * @hw: the hardware this frame came in on
3451 * @skb: the buffer to receive, owned by mac80211 after this call
75a5f0cc 3452 */
103bf9f7 3453void ieee80211_rx(struct ieee80211_hw *hw, struct sk_buff *skb);
75a5f0cc
JB
3454
3455/**
3456 * ieee80211_rx_irqsafe - receive frame
3457 *
3458 * Like ieee80211_rx() but can be called in IRQ context
2485f710
JB
3459 * (internally defers to a tasklet.)
3460 *
e36e49f7 3461 * Calls to this function, ieee80211_rx() or ieee80211_rx_ni() may not
f6b3d85f
FF
3462 * be mixed for a single hardware.Must not run concurrently with
3463 * ieee80211_tx_status() or ieee80211_tx_status_ni().
75a5f0cc
JB
3464 *
3465 * @hw: the hardware this frame came in on
3466 * @skb: the buffer to receive, owned by mac80211 after this call
75a5f0cc 3467 */
f1d58c25 3468void ieee80211_rx_irqsafe(struct ieee80211_hw *hw, struct sk_buff *skb);
f0706e82 3469
e36e49f7
KV
3470/**
3471 * ieee80211_rx_ni - receive frame (in process context)
3472 *
3473 * Like ieee80211_rx() but can be called in process context
3474 * (internally disables bottom halves).
3475 *
3476 * Calls to this function, ieee80211_rx() and ieee80211_rx_irqsafe() may
f6b3d85f
FF
3477 * not be mixed for a single hardware. Must not run concurrently with
3478 * ieee80211_tx_status() or ieee80211_tx_status_ni().
e36e49f7
KV
3479 *
3480 * @hw: the hardware this frame came in on
3481 * @skb: the buffer to receive, owned by mac80211 after this call
3482 */
3483static inline void ieee80211_rx_ni(struct ieee80211_hw *hw,
3484 struct sk_buff *skb)
3485{
3486 local_bh_disable();
3487 ieee80211_rx(hw, skb);
3488 local_bh_enable();
3489}
3490
d057e5a3
AN
3491/**
3492 * ieee80211_sta_ps_transition - PS transition for connected sta
3493 *
3494 * When operating in AP mode with the %IEEE80211_HW_AP_LINK_PS
3495 * flag set, use this function to inform mac80211 about a connected station
3496 * entering/leaving PS mode.
3497 *
3498 * This function may not be called in IRQ context or with softirqs enabled.
3499 *
3500 * Calls to this function for a single hardware must be synchronized against
3501 * each other.
3502 *
d057e5a3
AN
3503 * @sta: currently connected sta
3504 * @start: start or stop PS
0ae997dc
YB
3505 *
3506 * Return: 0 on success. -EINVAL when the requested PS mode is already set.
d057e5a3
AN
3507 */
3508int ieee80211_sta_ps_transition(struct ieee80211_sta *sta, bool start);
3509
3510/**
3511 * ieee80211_sta_ps_transition_ni - PS transition for connected sta
3512 * (in process context)
3513 *
3514 * Like ieee80211_sta_ps_transition() but can be called in process context
3515 * (internally disables bottom halves). Concurrent call restriction still
3516 * applies.
3517 *
3518 * @sta: currently connected sta
3519 * @start: start or stop PS
0ae997dc
YB
3520 *
3521 * Return: Like ieee80211_sta_ps_transition().
d057e5a3
AN
3522 */
3523static inline int ieee80211_sta_ps_transition_ni(struct ieee80211_sta *sta,
3524 bool start)
3525{
3526 int ret;
3527
3528 local_bh_disable();
3529 ret = ieee80211_sta_ps_transition(sta, start);
3530 local_bh_enable();
3531
3532 return ret;
3533}
3534
d24deb25
GW
3535/*
3536 * The TX headroom reserved by mac80211 for its own tx_status functions.
3537 * This is enough for the radiotap header.
3538 */
7f2a5e21 3539#define IEEE80211_TX_STATUS_HEADROOM 14
d24deb25 3540
dcf55fb5 3541/**
042ec453 3542 * ieee80211_sta_set_buffered - inform mac80211 about driver-buffered frames
bdfbe804 3543 * @sta: &struct ieee80211_sta pointer for the sleeping station
042ec453
JB
3544 * @tid: the TID that has buffered frames
3545 * @buffered: indicates whether or not frames are buffered for this TID
dcf55fb5
FF
3546 *
3547 * If a driver buffers frames for a powersave station instead of passing
042ec453
JB
3548 * them back to mac80211 for retransmission, the station may still need
3549 * to be told that there are buffered frames via the TIM bit.
3550 *
3551 * This function informs mac80211 whether or not there are frames that are
3552 * buffered in the driver for a given TID; mac80211 can then use this data
3553 * to set the TIM bit (NOTE: This may call back into the driver's set_tim
3554 * call! Beware of the locking!)
3555 *
3556 * If all frames are released to the station (due to PS-poll or uAPSD)
3557 * then the driver needs to inform mac80211 that there no longer are
3558 * frames buffered. However, when the station wakes up mac80211 assumes
3559 * that all buffered frames will be transmitted and clears this data,
3560 * drivers need to make sure they inform mac80211 about all buffered
3561 * frames on the sleep transition (sta_notify() with %STA_NOTIFY_SLEEP).
3562 *
3563 * Note that technically mac80211 only needs to know this per AC, not per
3564 * TID, but since driver buffering will inevitably happen per TID (since
3565 * it is related to aggregation) it is easier to make mac80211 map the
3566 * TID to the AC as required instead of keeping track in all drivers that
3567 * use this API.
3568 */
3569void ieee80211_sta_set_buffered(struct ieee80211_sta *sta,
3570 u8 tid, bool buffered);
dcf55fb5 3571
0d528d85
FF
3572/**
3573 * ieee80211_get_tx_rates - get the selected transmit rates for a packet
3574 *
3575 * Call this function in a driver with per-packet rate selection support
3576 * to combine the rate info in the packet tx info with the most recent
3577 * rate selection table for the station entry.
3578 *
3579 * @vif: &struct ieee80211_vif pointer from the add_interface callback.
3580 * @sta: the receiver station to which this packet is sent.
3581 * @skb: the frame to be transmitted.
3582 * @dest: buffer for extracted rate/retry information
3583 * @max_rates: maximum number of rates to fetch
3584 */
3585void ieee80211_get_tx_rates(struct ieee80211_vif *vif,
3586 struct ieee80211_sta *sta,
3587 struct sk_buff *skb,
3588 struct ieee80211_tx_rate *dest,
3589 int max_rates);
3590
75a5f0cc
JB
3591/**
3592 * ieee80211_tx_status - transmit status callback
3593 *
3594 * Call this function for all transmitted frames after they have been
3595 * transmitted. It is permissible to not call this function for
3596 * multicast frames but this can affect statistics.
3597 *
2485f710
JB
3598 * This function may not be called in IRQ context. Calls to this function
3599 * for a single hardware must be synchronized against each other. Calls
20ed3166 3600 * to this function, ieee80211_tx_status_ni() and ieee80211_tx_status_irqsafe()
f6b3d85f
FF
3601 * may not be mixed for a single hardware. Must not run concurrently with
3602 * ieee80211_rx() or ieee80211_rx_ni().
2485f710 3603 *
75a5f0cc
JB
3604 * @hw: the hardware the frame was transmitted by
3605 * @skb: the frame that was transmitted, owned by mac80211 after this call
75a5f0cc 3606 */
f0706e82 3607void ieee80211_tx_status(struct ieee80211_hw *hw,
e039fa4a 3608 struct sk_buff *skb);
2485f710 3609
20ed3166
JS
3610/**
3611 * ieee80211_tx_status_ni - transmit status callback (in process context)
3612 *
3613 * Like ieee80211_tx_status() but can be called in process context.
3614 *
3615 * Calls to this function, ieee80211_tx_status() and
3616 * ieee80211_tx_status_irqsafe() may not be mixed
3617 * for a single hardware.
3618 *
3619 * @hw: the hardware the frame was transmitted by
3620 * @skb: the frame that was transmitted, owned by mac80211 after this call
3621 */
3622static inline void ieee80211_tx_status_ni(struct ieee80211_hw *hw,
3623 struct sk_buff *skb)
3624{
3625 local_bh_disable();
3626 ieee80211_tx_status(hw, skb);
3627 local_bh_enable();
3628}
3629
2485f710 3630/**
6ef307bc 3631 * ieee80211_tx_status_irqsafe - IRQ-safe transmit status callback
2485f710
JB
3632 *
3633 * Like ieee80211_tx_status() but can be called in IRQ context
3634 * (internally defers to a tasklet.)
3635 *
20ed3166
JS
3636 * Calls to this function, ieee80211_tx_status() and
3637 * ieee80211_tx_status_ni() may not be mixed for a single hardware.
2485f710
JB
3638 *
3639 * @hw: the hardware the frame was transmitted by
3640 * @skb: the frame that was transmitted, owned by mac80211 after this call
2485f710 3641 */
f0706e82 3642void ieee80211_tx_status_irqsafe(struct ieee80211_hw *hw,
e039fa4a 3643 struct sk_buff *skb);
f0706e82 3644
8178d38b
AN
3645/**
3646 * ieee80211_report_low_ack - report non-responding station
3647 *
3648 * When operating in AP-mode, call this function to report a non-responding
3649 * connected STA.
3650 *
3651 * @sta: the non-responding connected sta
3652 * @num_packets: number of packets sent to @sta without a response
3653 */
3654void ieee80211_report_low_ack(struct ieee80211_sta *sta, u32 num_packets);
3655
1af586c9
AO
3656#define IEEE80211_MAX_CSA_COUNTERS_NUM 2
3657
6ec8c332
AO
3658/**
3659 * struct ieee80211_mutable_offsets - mutable beacon offsets
3660 * @tim_offset: position of TIM element
3661 * @tim_length: size of TIM element
8d77ec85
LC
3662 * @csa_counter_offs: array of IEEE80211_MAX_CSA_COUNTERS_NUM offsets
3663 * to CSA counters. This array can contain zero values which
3664 * should be ignored.
6ec8c332
AO
3665 */
3666struct ieee80211_mutable_offsets {
3667 u16 tim_offset;
3668 u16 tim_length;
1af586c9
AO
3669
3670 u16 csa_counter_offs[IEEE80211_MAX_CSA_COUNTERS_NUM];
6ec8c332
AO
3671};
3672
3673/**
3674 * ieee80211_beacon_get_template - beacon template generation function
3675 * @hw: pointer obtained from ieee80211_alloc_hw().
3676 * @vif: &struct ieee80211_vif pointer from the add_interface callback.
3677 * @offs: &struct ieee80211_mutable_offsets pointer to struct that will
3678 * receive the offsets that may be updated by the driver.
3679 *
3680 * If the driver implements beaconing modes, it must use this function to
3681 * obtain the beacon template.
3682 *
3683 * This function should be used if the beacon frames are generated by the
3684 * device, and then the driver must use the returned beacon as the template
1af586c9
AO
3685 * The driver or the device are responsible to update the DTIM and, when
3686 * applicable, the CSA count.
6ec8c332
AO
3687 *
3688 * The driver is responsible for freeing the returned skb.
3689 *
3690 * Return: The beacon template. %NULL on error.
3691 */
3692struct sk_buff *
3693ieee80211_beacon_get_template(struct ieee80211_hw *hw,
3694 struct ieee80211_vif *vif,
3695 struct ieee80211_mutable_offsets *offs);
3696
f0706e82 3697/**
eddcbb94 3698 * ieee80211_beacon_get_tim - beacon generation function
f0706e82 3699 * @hw: pointer obtained from ieee80211_alloc_hw().
1ed32e4f 3700 * @vif: &struct ieee80211_vif pointer from the add_interface callback.
eddcbb94
JB
3701 * @tim_offset: pointer to variable that will receive the TIM IE offset.
3702 * Set to 0 if invalid (in non-AP modes).
3703 * @tim_length: pointer to variable that will receive the TIM IE length,
3704 * (including the ID and length bytes!).
3705 * Set to 0 if invalid (in non-AP modes).
3706 *
3707 * If the driver implements beaconing modes, it must use this function to
6ec8c332 3708 * obtain the beacon frame.
f0706e82
JB
3709 *
3710 * If the beacon frames are generated by the host system (i.e., not in
eddcbb94 3711 * hardware/firmware), the driver uses this function to get each beacon
6ec8c332
AO
3712 * frame from mac80211 -- it is responsible for calling this function exactly
3713 * once before the beacon is needed (e.g. based on hardware interrupt).
eddcbb94
JB
3714 *
3715 * The driver is responsible for freeing the returned skb.
0ae997dc
YB
3716 *
3717 * Return: The beacon template. %NULL on error.
eddcbb94
JB
3718 */
3719struct sk_buff *ieee80211_beacon_get_tim(struct ieee80211_hw *hw,
3720 struct ieee80211_vif *vif,
3721 u16 *tim_offset, u16 *tim_length);
3722
3723/**
3724 * ieee80211_beacon_get - beacon generation function
3725 * @hw: pointer obtained from ieee80211_alloc_hw().
1ed32e4f 3726 * @vif: &struct ieee80211_vif pointer from the add_interface callback.
eddcbb94
JB
3727 *
3728 * See ieee80211_beacon_get_tim().
0ae997dc
YB
3729 *
3730 * Return: See ieee80211_beacon_get_tim().
f0706e82 3731 */
eddcbb94
JB
3732static inline struct sk_buff *ieee80211_beacon_get(struct ieee80211_hw *hw,
3733 struct ieee80211_vif *vif)
3734{
3735 return ieee80211_beacon_get_tim(hw, vif, NULL, NULL);
3736}
f0706e82 3737
1af586c9
AO
3738/**
3739 * ieee80211_csa_update_counter - request mac80211 to decrement the csa counter
3740 * @vif: &struct ieee80211_vif pointer from the add_interface callback.
3741 *
3742 * The csa counter should be updated after each beacon transmission.
3743 * This function is called implicitly when
3744 * ieee80211_beacon_get/ieee80211_beacon_get_tim are called, however if the
3745 * beacon frames are generated by the device, the driver should call this
3746 * function after each beacon transmission to sync mac80211's csa counters.
3747 *
3748 * Return: new csa counter value
3749 */
3750u8 ieee80211_csa_update_counter(struct ieee80211_vif *vif);
3751
73da7d5b
SW
3752/**
3753 * ieee80211_csa_finish - notify mac80211 about channel switch
3754 * @vif: &struct ieee80211_vif pointer from the add_interface callback.
3755 *
3756 * After a channel switch announcement was scheduled and the counter in this
66e01cf9 3757 * announcement hits 1, this function must be called by the driver to
73da7d5b
SW
3758 * notify mac80211 that the channel can be changed.
3759 */
3760void ieee80211_csa_finish(struct ieee80211_vif *vif);
3761
3762/**
66e01cf9 3763 * ieee80211_csa_is_complete - find out if counters reached 1
73da7d5b
SW
3764 * @vif: &struct ieee80211_vif pointer from the add_interface callback.
3765 *
3766 * This function returns whether the channel switch counters reached zero.
3767 */
3768bool ieee80211_csa_is_complete(struct ieee80211_vif *vif);
3769
3770
02945821
AN
3771/**
3772 * ieee80211_proberesp_get - retrieve a Probe Response template
3773 * @hw: pointer obtained from ieee80211_alloc_hw().
3774 * @vif: &struct ieee80211_vif pointer from the add_interface callback.
3775 *
3776 * Creates a Probe Response template which can, for example, be uploaded to
3777 * hardware. The destination address should be set by the caller.
3778 *
3779 * Can only be called in AP mode.
0ae997dc
YB
3780 *
3781 * Return: The Probe Response template. %NULL on error.
02945821
AN
3782 */
3783struct sk_buff *ieee80211_proberesp_get(struct ieee80211_hw *hw,
3784 struct ieee80211_vif *vif);
3785
7044cc56
KV
3786/**
3787 * ieee80211_pspoll_get - retrieve a PS Poll template
3788 * @hw: pointer obtained from ieee80211_alloc_hw().
3789 * @vif: &struct ieee80211_vif pointer from the add_interface callback.
3790 *
3791 * Creates a PS Poll a template which can, for example, uploaded to
3792 * hardware. The template must be updated after association so that correct
3793 * AID, BSSID and MAC address is used.
3794 *
3795 * Note: Caller (or hardware) is responsible for setting the
3796 * &IEEE80211_FCTL_PM bit.
0ae997dc
YB
3797 *
3798 * Return: The PS Poll template. %NULL on error.
7044cc56
KV
3799 */
3800struct sk_buff *ieee80211_pspoll_get(struct ieee80211_hw *hw,
3801 struct ieee80211_vif *vif);
3802
3803/**
3804 * ieee80211_nullfunc_get - retrieve a nullfunc template
3805 * @hw: pointer obtained from ieee80211_alloc_hw().
3806 * @vif: &struct ieee80211_vif pointer from the add_interface callback.
3807 *
3808 * Creates a Nullfunc template which can, for example, uploaded to
3809 * hardware. The template must be updated after association so that correct
3810 * BSSID and address is used.
3811 *
3812 * Note: Caller (or hardware) is responsible for setting the
3813 * &IEEE80211_FCTL_PM bit as well as Duration and Sequence Control fields.
0ae997dc
YB
3814 *
3815 * Return: The nullfunc template. %NULL on error.
7044cc56
KV
3816 */
3817struct sk_buff *ieee80211_nullfunc_get(struct ieee80211_hw *hw,
3818 struct ieee80211_vif *vif);
3819
05e54ea6
KV
3820/**
3821 * ieee80211_probereq_get - retrieve a Probe Request template
3822 * @hw: pointer obtained from ieee80211_alloc_hw().
3823 * @vif: &struct ieee80211_vif pointer from the add_interface callback.
3824 * @ssid: SSID buffer
3825 * @ssid_len: length of SSID
b9a9ada1 3826 * @tailroom: tailroom to reserve at end of SKB for IEs
05e54ea6
KV
3827 *
3828 * Creates a Probe Request template which can, for example, be uploaded to
3829 * hardware.
0ae997dc
YB
3830 *
3831 * Return: The Probe Request template. %NULL on error.
05e54ea6
KV
3832 */
3833struct sk_buff *ieee80211_probereq_get(struct ieee80211_hw *hw,
3834 struct ieee80211_vif *vif,
3835 const u8 *ssid, size_t ssid_len,
b9a9ada1 3836 size_t tailroom);
05e54ea6 3837
f0706e82
JB
3838/**
3839 * ieee80211_rts_get - RTS frame generation function
3840 * @hw: pointer obtained from ieee80211_alloc_hw().
1ed32e4f 3841 * @vif: &struct ieee80211_vif pointer from the add_interface callback.
f0706e82
JB
3842 * @frame: pointer to the frame that is going to be protected by the RTS.
3843 * @frame_len: the frame length (in octets).
e039fa4a 3844 * @frame_txctl: &struct ieee80211_tx_info of the frame.
f0706e82
JB
3845 * @rts: The buffer where to store the RTS frame.
3846 *
3847 * If the RTS frames are generated by the host system (i.e., not in
3848 * hardware/firmware), the low-level driver uses this function to receive
3849 * the next RTS frame from the 802.11 code. The low-level is responsible
3850 * for calling this function before and RTS frame is needed.
3851 */
32bfd35d 3852void ieee80211_rts_get(struct ieee80211_hw *hw, struct ieee80211_vif *vif,
f0706e82 3853 const void *frame, size_t frame_len,
e039fa4a 3854 const struct ieee80211_tx_info *frame_txctl,
f0706e82
JB
3855 struct ieee80211_rts *rts);
3856
3857/**
3858 * ieee80211_rts_duration - Get the duration field for an RTS frame
3859 * @hw: pointer obtained from ieee80211_alloc_hw().
1ed32e4f 3860 * @vif: &struct ieee80211_vif pointer from the add_interface callback.
f0706e82 3861 * @frame_len: the length of the frame that is going to be protected by the RTS.
e039fa4a 3862 * @frame_txctl: &struct ieee80211_tx_info of the frame.
f0706e82
JB
3863 *
3864 * If the RTS is generated in firmware, but the host system must provide
3865 * the duration field, the low-level driver uses this function to receive
3866 * the duration field value in little-endian byteorder.
0ae997dc
YB
3867 *
3868 * Return: The duration.
f0706e82 3869 */
32bfd35d
JB
3870__le16 ieee80211_rts_duration(struct ieee80211_hw *hw,
3871 struct ieee80211_vif *vif, size_t frame_len,
e039fa4a 3872 const struct ieee80211_tx_info *frame_txctl);
f0706e82
JB
3873
3874/**
3875 * ieee80211_ctstoself_get - CTS-to-self frame generation function
3876 * @hw: pointer obtained from ieee80211_alloc_hw().
1ed32e4f 3877 * @vif: &struct ieee80211_vif pointer from the add_interface callback.
f0706e82
JB
3878 * @frame: pointer to the frame that is going to be protected by the CTS-to-self.
3879 * @frame_len: the frame length (in octets).
e039fa4a 3880 * @frame_txctl: &struct ieee80211_tx_info of the frame.
f0706e82
JB
3881 * @cts: The buffer where to store the CTS-to-self frame.
3882 *
3883 * If the CTS-to-self frames are generated by the host system (i.e., not in
3884 * hardware/firmware), the low-level driver uses this function to receive
3885 * the next CTS-to-self frame from the 802.11 code. The low-level is responsible
3886 * for calling this function before and CTS-to-self frame is needed.
3887 */
32bfd35d
JB
3888void ieee80211_ctstoself_get(struct ieee80211_hw *hw,
3889 struct ieee80211_vif *vif,
f0706e82 3890 const void *frame, size_t frame_len,
e039fa4a 3891 const struct ieee80211_tx_info *frame_txctl,
f0706e82
JB
3892 struct ieee80211_cts *cts);
3893
3894/**
3895 * ieee80211_ctstoself_duration - Get the duration field for a CTS-to-self frame
3896 * @hw: pointer obtained from ieee80211_alloc_hw().
1ed32e4f 3897 * @vif: &struct ieee80211_vif pointer from the add_interface callback.
f0706e82 3898 * @frame_len: the length of the frame that is going to be protected by the CTS-to-self.
e039fa4a 3899 * @frame_txctl: &struct ieee80211_tx_info of the frame.
f0706e82
JB
3900 *
3901 * If the CTS-to-self is generated in firmware, but the host system must provide
3902 * the duration field, the low-level driver uses this function to receive
3903 * the duration field value in little-endian byteorder.
0ae997dc
YB
3904 *
3905 * Return: The duration.
f0706e82 3906 */
32bfd35d
JB
3907__le16 ieee80211_ctstoself_duration(struct ieee80211_hw *hw,
3908 struct ieee80211_vif *vif,
f0706e82 3909 size_t frame_len,
e039fa4a 3910 const struct ieee80211_tx_info *frame_txctl);
f0706e82
JB
3911
3912/**
3913 * ieee80211_generic_frame_duration - Calculate the duration field for a frame
3914 * @hw: pointer obtained from ieee80211_alloc_hw().
1ed32e4f 3915 * @vif: &struct ieee80211_vif pointer from the add_interface callback.
d13e1414 3916 * @band: the band to calculate the frame duration on
f0706e82 3917 * @frame_len: the length of the frame.
8318d78a 3918 * @rate: the rate at which the frame is going to be transmitted.
f0706e82
JB
3919 *
3920 * Calculate the duration field of some generic frame, given its
3921 * length and transmission rate (in 100kbps).
0ae997dc
YB
3922 *
3923 * Return: The duration.
f0706e82 3924 */
32bfd35d
JB
3925__le16 ieee80211_generic_frame_duration(struct ieee80211_hw *hw,
3926 struct ieee80211_vif *vif,
4ee73f33 3927 enum ieee80211_band band,
f0706e82 3928 size_t frame_len,
8318d78a 3929 struct ieee80211_rate *rate);
f0706e82
JB
3930
3931/**
3932 * ieee80211_get_buffered_bc - accessing buffered broadcast and multicast frames
3933 * @hw: pointer as obtained from ieee80211_alloc_hw().
1ed32e4f 3934 * @vif: &struct ieee80211_vif pointer from the add_interface callback.
f0706e82
JB
3935 *
3936 * Function for accessing buffered broadcast and multicast frames. If
3937 * hardware/firmware does not implement buffering of broadcast/multicast
3938 * frames when power saving is used, 802.11 code buffers them in the host
3939 * memory. The low-level driver uses this function to fetch next buffered
0ae997dc
YB
3940 * frame. In most cases, this is used when generating beacon frame.
3941 *
3942 * Return: A pointer to the next buffered skb or NULL if no more buffered
3943 * frames are available.
f0706e82
JB
3944 *
3945 * Note: buffered frames are returned only after DTIM beacon frame was
3946 * generated with ieee80211_beacon_get() and the low-level driver must thus
3947 * call ieee80211_beacon_get() first. ieee80211_get_buffered_bc() returns
3948 * NULL if the previous generated beacon was not DTIM, so the low-level driver
3949 * does not need to check for DTIM beacons separately and should be able to
3950 * use common code for all beacons.
3951 */
3952struct sk_buff *
e039fa4a 3953ieee80211_get_buffered_bc(struct ieee80211_hw *hw, struct ieee80211_vif *vif);
f0706e82 3954
42d98795
JB
3955/**
3956 * ieee80211_get_tkip_p1k_iv - get a TKIP phase 1 key for IV32
3957 *
3958 * This function returns the TKIP phase 1 key for the given IV32.
3959 *
3960 * @keyconf: the parameter passed with the set key
3961 * @iv32: IV32 to get the P1K for
3962 * @p1k: a buffer to which the key will be written, as 5 u16 values
3963 */
3964void ieee80211_get_tkip_p1k_iv(struct ieee80211_key_conf *keyconf,
3965 u32 iv32, u16 *p1k);
3966
5d2cdcd4 3967/**
523b02ea
JB
3968 * ieee80211_get_tkip_p1k - get a TKIP phase 1 key
3969 *
3970 * This function returns the TKIP phase 1 key for the IV32 taken
3971 * from the given packet.
3972 *
3973 * @keyconf: the parameter passed with the set key
3974 * @skb: the packet to take the IV32 value from that will be encrypted
3975 * with this P1K
3976 * @p1k: a buffer to which the key will be written, as 5 u16 values
3977 */
42d98795
JB
3978static inline void ieee80211_get_tkip_p1k(struct ieee80211_key_conf *keyconf,
3979 struct sk_buff *skb, u16 *p1k)
3980{
3981 struct ieee80211_hdr *hdr = (struct ieee80211_hdr *)skb->data;
3982 const u8 *data = (u8 *)hdr + ieee80211_hdrlen(hdr->frame_control);
3983 u32 iv32 = get_unaligned_le32(&data[4]);
3984
3985 ieee80211_get_tkip_p1k_iv(keyconf, iv32, p1k);
3986}
523b02ea 3987
8bca5d81
JB
3988/**
3989 * ieee80211_get_tkip_rx_p1k - get a TKIP phase 1 key for RX
3990 *
3991 * This function returns the TKIP phase 1 key for the given IV32
3992 * and transmitter address.
3993 *
3994 * @keyconf: the parameter passed with the set key
3995 * @ta: TA that will be used with the key
3996 * @iv32: IV32 to get the P1K for
3997 * @p1k: a buffer to which the key will be written, as 5 u16 values
3998 */
3999void ieee80211_get_tkip_rx_p1k(struct ieee80211_key_conf *keyconf,
4000 const u8 *ta, u32 iv32, u16 *p1k);
4001
523b02ea
JB
4002/**
4003 * ieee80211_get_tkip_p2k - get a TKIP phase 2 key
5d2cdcd4 4004 *
523b02ea
JB
4005 * This function computes the TKIP RC4 key for the IV values
4006 * in the packet.
5d2cdcd4
EG
4007 *
4008 * @keyconf: the parameter passed with the set key
523b02ea
JB
4009 * @skb: the packet to take the IV32/IV16 values from that will be
4010 * encrypted with this key
4011 * @p2k: a buffer to which the key will be written, 16 bytes
5d2cdcd4 4012 */
523b02ea
JB
4013void ieee80211_get_tkip_p2k(struct ieee80211_key_conf *keyconf,
4014 struct sk_buff *skb, u8 *p2k);
c68f4b89 4015
5d0d04e4
AK
4016/**
4017 * ieee80211_aes_cmac_calculate_k1_k2 - calculate the AES-CMAC sub keys
4018 *
4019 * This function computes the two AES-CMAC sub-keys, based on the
4020 * previously installed master key.
4021 *
4022 * @keyconf: the parameter passed with the set key
4023 * @k1: a buffer to be filled with the 1st sub-key
4024 * @k2: a buffer to be filled with the 2nd sub-key
4025 */
4026void ieee80211_aes_cmac_calculate_k1_k2(struct ieee80211_key_conf *keyconf,
4027 u8 *k1, u8 *k2);
4028
3ea542d3
JB
4029/**
4030 * struct ieee80211_key_seq - key sequence counter
4031 *
4032 * @tkip: TKIP data, containing IV32 and IV16 in host byte order
4033 * @ccmp: PN data, most significant byte first (big endian,
4034 * reverse order than in packet)
4035 * @aes_cmac: PN data, most significant byte first (big endian,
4036 * reverse order than in packet)
4037 */
4038struct ieee80211_key_seq {
4039 union {
4040 struct {
4041 u32 iv32;
4042 u16 iv16;
4043 } tkip;
4044 struct {
4045 u8 pn[6];
4046 } ccmp;
4047 struct {
4048 u8 pn[6];
4049 } aes_cmac;
4050 };
4051};
4052
4053/**
4054 * ieee80211_get_key_tx_seq - get key TX sequence counter
4055 *
4056 * @keyconf: the parameter passed with the set key
4057 * @seq: buffer to receive the sequence data
4058 *
4059 * This function allows a driver to retrieve the current TX IV/PN
4060 * for the given key. It must not be called if IV generation is
4061 * offloaded to the device.
4062 *
4063 * Note that this function may only be called when no TX processing
4064 * can be done concurrently, for example when queues are stopped
4065 * and the stop has been synchronized.
4066 */
4067void ieee80211_get_key_tx_seq(struct ieee80211_key_conf *keyconf,
4068 struct ieee80211_key_seq *seq);
4069
4070/**
4071 * ieee80211_get_key_rx_seq - get key RX sequence counter
4072 *
4073 * @keyconf: the parameter passed with the set key
4074 * @tid: The TID, or -1 for the management frame value (CCMP only);
4075 * the value on TID 0 is also used for non-QoS frames. For
4076 * CMAC, only TID 0 is valid.
4077 * @seq: buffer to receive the sequence data
4078 *
4079 * This function allows a driver to retrieve the current RX IV/PNs
4080 * for the given key. It must not be called if IV checking is done
4081 * by the device and not by mac80211.
4082 *
4083 * Note that this function may only be called when no RX processing
4084 * can be done concurrently.
4085 */
4086void ieee80211_get_key_rx_seq(struct ieee80211_key_conf *keyconf,
4087 int tid, struct ieee80211_key_seq *seq);
4088
27b3eb9c
JB
4089/**
4090 * ieee80211_set_key_tx_seq - set key TX sequence counter
4091 *
4092 * @keyconf: the parameter passed with the set key
4093 * @seq: new sequence data
4094 *
4095 * This function allows a driver to set the current TX IV/PNs for the
4096 * given key. This is useful when resuming from WoWLAN sleep and the
4097 * device may have transmitted frames using the PTK, e.g. replies to
4098 * ARP requests.
4099 *
4100 * Note that this function may only be called when no TX processing
4101 * can be done concurrently.
4102 */
4103void ieee80211_set_key_tx_seq(struct ieee80211_key_conf *keyconf,
4104 struct ieee80211_key_seq *seq);
4105
4106/**
4107 * ieee80211_set_key_rx_seq - set key RX sequence counter
4108 *
4109 * @keyconf: the parameter passed with the set key
4110 * @tid: The TID, or -1 for the management frame value (CCMP only);
4111 * the value on TID 0 is also used for non-QoS frames. For
4112 * CMAC, only TID 0 is valid.
4113 * @seq: new sequence data
4114 *
4115 * This function allows a driver to set the current RX IV/PNs for the
4116 * given key. This is useful when resuming from WoWLAN sleep and GTK
4117 * rekey may have been done while suspended. It should not be called
4118 * if IV checking is done by the device and not by mac80211.
4119 *
4120 * Note that this function may only be called when no RX processing
4121 * can be done concurrently.
4122 */
4123void ieee80211_set_key_rx_seq(struct ieee80211_key_conf *keyconf,
4124 int tid, struct ieee80211_key_seq *seq);
4125
4126/**
4127 * ieee80211_remove_key - remove the given key
4128 * @keyconf: the parameter passed with the set key
4129 *
4130 * Remove the given key. If the key was uploaded to the hardware at the
4131 * time this function is called, it is not deleted in the hardware but
4132 * instead assumed to have been removed already.
4133 *
4134 * Note that due to locking considerations this function can (currently)
4135 * only be called during key iteration (ieee80211_iter_keys().)
4136 */
4137void ieee80211_remove_key(struct ieee80211_key_conf *keyconf);
4138
4139/**
4140 * ieee80211_gtk_rekey_add - add a GTK key from rekeying during WoWLAN
4141 * @vif: the virtual interface to add the key on
4142 * @keyconf: new key data
4143 *
4144 * When GTK rekeying was done while the system was suspended, (a) new
4145 * key(s) will be available. These will be needed by mac80211 for proper
4146 * RX processing, so this function allows setting them.
4147 *
4148 * The function returns the newly allocated key structure, which will
4149 * have similar contents to the passed key configuration but point to
4150 * mac80211-owned memory. In case of errors, the function returns an
4151 * ERR_PTR(), use IS_ERR() etc.
4152 *
4153 * Note that this function assumes the key isn't added to hardware
4154 * acceleration, so no TX will be done with the key. Since it's a GTK
4155 * on managed (station) networks, this is true anyway. If the driver
4156 * calls this function from the resume callback and subsequently uses
4157 * the return code 1 to reconfigure the device, this key will be part
4158 * of the reconfiguration.
4159 *
4160 * Note that the driver should also call ieee80211_set_key_rx_seq()
4161 * for the new key for each TID to set up sequence counters properly.
4162 *
4163 * IMPORTANT: If this replaces a key that is present in the hardware,
4164 * then it will attempt to remove it during this call. In many cases
4165 * this isn't what you want, so call ieee80211_remove_key() first for
4166 * the key that's being replaced.
4167 */
4168struct ieee80211_key_conf *
4169ieee80211_gtk_rekey_add(struct ieee80211_vif *vif,
4170 struct ieee80211_key_conf *keyconf);
4171
c68f4b89
JB
4172/**
4173 * ieee80211_gtk_rekey_notify - notify userspace supplicant of rekeying
4174 * @vif: virtual interface the rekeying was done on
4175 * @bssid: The BSSID of the AP, for checking association
4176 * @replay_ctr: the new replay counter after GTK rekeying
4177 * @gfp: allocation flags
4178 */
4179void ieee80211_gtk_rekey_notify(struct ieee80211_vif *vif, const u8 *bssid,
4180 const u8 *replay_ctr, gfp_t gfp);
4181
f0706e82
JB
4182/**
4183 * ieee80211_wake_queue - wake specific queue
4184 * @hw: pointer as obtained from ieee80211_alloc_hw().
4185 * @queue: queue number (counted from zero).
4186 *
4187 * Drivers should use this function instead of netif_wake_queue.
4188 */
4189void ieee80211_wake_queue(struct ieee80211_hw *hw, int queue);
4190
4191/**
4192 * ieee80211_stop_queue - stop specific queue
4193 * @hw: pointer as obtained from ieee80211_alloc_hw().
4194 * @queue: queue number (counted from zero).
4195 *
4196 * Drivers should use this function instead of netif_stop_queue.
4197 */
4198void ieee80211_stop_queue(struct ieee80211_hw *hw, int queue);
4199
92ab8535
TW
4200/**
4201 * ieee80211_queue_stopped - test status of the queue
4202 * @hw: pointer as obtained from ieee80211_alloc_hw().
4203 * @queue: queue number (counted from zero).
4204 *
4205 * Drivers should use this function instead of netif_stop_queue.
0ae997dc
YB
4206 *
4207 * Return: %true if the queue is stopped. %false otherwise.
92ab8535
TW
4208 */
4209
4210int ieee80211_queue_stopped(struct ieee80211_hw *hw, int queue);
4211
f0706e82
JB
4212/**
4213 * ieee80211_stop_queues - stop all queues
4214 * @hw: pointer as obtained from ieee80211_alloc_hw().
4215 *
4216 * Drivers should use this function instead of netif_stop_queue.
4217 */
4218void ieee80211_stop_queues(struct ieee80211_hw *hw);
4219
4220/**
4221 * ieee80211_wake_queues - wake all queues
4222 * @hw: pointer as obtained from ieee80211_alloc_hw().
4223 *
4224 * Drivers should use this function instead of netif_wake_queue.
4225 */
4226void ieee80211_wake_queues(struct ieee80211_hw *hw);
4227
75a5f0cc
JB
4228/**
4229 * ieee80211_scan_completed - completed hardware scan
4230 *
4231 * When hardware scan offload is used (i.e. the hw_scan() callback is
4232 * assigned) this function needs to be called by the driver to notify
8789d459
JB
4233 * mac80211 that the scan finished. This function can be called from
4234 * any context, including hardirq context.
75a5f0cc
JB
4235 *
4236 * @hw: the hardware that finished the scan
2a519311 4237 * @aborted: set to true if scan was aborted
75a5f0cc 4238 */
2a519311 4239void ieee80211_scan_completed(struct ieee80211_hw *hw, bool aborted);
f0706e82 4240
79f460ca
LC
4241/**
4242 * ieee80211_sched_scan_results - got results from scheduled scan
4243 *
4244 * When a scheduled scan is running, this function needs to be called by the
4245 * driver whenever there are new scan results available.
4246 *
4247 * @hw: the hardware that is performing scheduled scans
4248 */
4249void ieee80211_sched_scan_results(struct ieee80211_hw *hw);
4250
4251/**
4252 * ieee80211_sched_scan_stopped - inform that the scheduled scan has stopped
4253 *
4254 * When a scheduled scan is running, this function can be called by
4255 * the driver if it needs to stop the scan to perform another task.
4256 * Usual scenarios are drivers that cannot continue the scheduled scan
4257 * while associating, for instance.
4258 *
4259 * @hw: the hardware that is performing scheduled scans
4260 */
4261void ieee80211_sched_scan_stopped(struct ieee80211_hw *hw);
4262
8b2c9824
JB
4263/**
4264 * enum ieee80211_interface_iteration_flags - interface iteration flags
4265 * @IEEE80211_IFACE_ITER_NORMAL: Iterate over all interfaces that have
4266 * been added to the driver; However, note that during hardware
4267 * reconfiguration (after restart_hw) it will iterate over a new
4268 * interface and over all the existing interfaces even if they
4269 * haven't been re-added to the driver yet.
4270 * @IEEE80211_IFACE_ITER_RESUME_ALL: During resume, iterate over all
4271 * interfaces, even if they haven't been re-added to the driver yet.
4272 */
4273enum ieee80211_interface_iteration_flags {
4274 IEEE80211_IFACE_ITER_NORMAL = 0,
4275 IEEE80211_IFACE_ITER_RESUME_ALL = BIT(0),
4276};
4277
dabeb344 4278/**
6ef307bc 4279 * ieee80211_iterate_active_interfaces - iterate active interfaces
dabeb344
JB
4280 *
4281 * This function iterates over the interfaces associated with a given
4282 * hardware that are currently active and calls the callback for them.
2f561feb
ID
4283 * This function allows the iterator function to sleep, when the iterator
4284 * function is atomic @ieee80211_iterate_active_interfaces_atomic can
4285 * be used.
8b2c9824 4286 * Does not iterate over a new interface during add_interface().
dabeb344
JB
4287 *
4288 * @hw: the hardware struct of which the interfaces should be iterated over
8b2c9824 4289 * @iter_flags: iteration flags, see &enum ieee80211_interface_iteration_flags
2f561feb 4290 * @iterator: the iterator function to call
dabeb344
JB
4291 * @data: first argument of the iterator function
4292 */
4293void ieee80211_iterate_active_interfaces(struct ieee80211_hw *hw,
8b2c9824 4294 u32 iter_flags,
dabeb344 4295 void (*iterator)(void *data, u8 *mac,
32bfd35d 4296 struct ieee80211_vif *vif),
dabeb344
JB
4297 void *data);
4298
2f561feb
ID
4299/**
4300 * ieee80211_iterate_active_interfaces_atomic - iterate active interfaces
4301 *
4302 * This function iterates over the interfaces associated with a given
4303 * hardware that are currently active and calls the callback for them.
4304 * This function requires the iterator callback function to be atomic,
4305 * if that is not desired, use @ieee80211_iterate_active_interfaces instead.
8b2c9824 4306 * Does not iterate over a new interface during add_interface().
2f561feb
ID
4307 *
4308 * @hw: the hardware struct of which the interfaces should be iterated over
8b2c9824 4309 * @iter_flags: iteration flags, see &enum ieee80211_interface_iteration_flags
2f561feb
ID
4310 * @iterator: the iterator function to call, cannot sleep
4311 * @data: first argument of the iterator function
4312 */
4313void ieee80211_iterate_active_interfaces_atomic(struct ieee80211_hw *hw,
8b2c9824 4314 u32 iter_flags,
2f561feb
ID
4315 void (*iterator)(void *data,
4316 u8 *mac,
4317 struct ieee80211_vif *vif),
4318 void *data);
4319
c7c71066
JB
4320/**
4321 * ieee80211_iterate_active_interfaces_rtnl - iterate active interfaces
4322 *
4323 * This function iterates over the interfaces associated with a given
4324 * hardware that are currently active and calls the callback for them.
4325 * This version can only be used while holding the RTNL.
4326 *
4327 * @hw: the hardware struct of which the interfaces should be iterated over
4328 * @iter_flags: iteration flags, see &enum ieee80211_interface_iteration_flags
4329 * @iterator: the iterator function to call, cannot sleep
4330 * @data: first argument of the iterator function
4331 */
4332void ieee80211_iterate_active_interfaces_rtnl(struct ieee80211_hw *hw,
4333 u32 iter_flags,
4334 void (*iterator)(void *data,
4335 u8 *mac,
4336 struct ieee80211_vif *vif),
4337 void *data);
4338
0fc1e049
AN
4339/**
4340 * ieee80211_iterate_stations_atomic - iterate stations
4341 *
4342 * This function iterates over all stations associated with a given
4343 * hardware that are currently uploaded to the driver and calls the callback
4344 * function for them.
4345 * This function requires the iterator callback function to be atomic,
4346 *
4347 * @hw: the hardware struct of which the interfaces should be iterated over
4348 * @iterator: the iterator function to call, cannot sleep
4349 * @data: first argument of the iterator function
4350 */
4351void ieee80211_iterate_stations_atomic(struct ieee80211_hw *hw,
4352 void (*iterator)(void *data,
4353 struct ieee80211_sta *sta),
4354 void *data);
42935eca
LR
4355/**
4356 * ieee80211_queue_work - add work onto the mac80211 workqueue
4357 *
4358 * Drivers and mac80211 use this to add work onto the mac80211 workqueue.
4359 * This helper ensures drivers are not queueing work when they should not be.
4360 *
4361 * @hw: the hardware struct for the interface we are adding work for
4362 * @work: the work we want to add onto the mac80211 workqueue
4363 */
4364void ieee80211_queue_work(struct ieee80211_hw *hw, struct work_struct *work);
4365
4366/**
4367 * ieee80211_queue_delayed_work - add work onto the mac80211 workqueue
4368 *
4369 * Drivers and mac80211 use this to queue delayed work onto the mac80211
4370 * workqueue.
4371 *
4372 * @hw: the hardware struct for the interface we are adding work for
4373 * @dwork: delayable work to queue onto the mac80211 workqueue
4374 * @delay: number of jiffies to wait before queueing
4375 */
4376void ieee80211_queue_delayed_work(struct ieee80211_hw *hw,
4377 struct delayed_work *dwork,
4378 unsigned long delay);
4379
0df3ef45
RR
4380/**
4381 * ieee80211_start_tx_ba_session - Start a tx Block Ack session.
c951ad35 4382 * @sta: the station for which to start a BA session
0df3ef45 4383 * @tid: the TID to BA on.
bd2ce6e4 4384 * @timeout: session timeout value (in TUs)
ea2d8b59
RD
4385 *
4386 * Return: success if addBA request was sent, failure otherwise
0df3ef45
RR
4387 *
4388 * Although mac80211/low level driver/user space application can estimate
4389 * the need to start aggregation on a certain RA/TID, the session level
4390 * will be managed by the mac80211.
4391 */
bd2ce6e4
SM
4392int ieee80211_start_tx_ba_session(struct ieee80211_sta *sta, u16 tid,
4393 u16 timeout);
0df3ef45 4394
0df3ef45
RR
4395/**
4396 * ieee80211_start_tx_ba_cb_irqsafe - low level driver ready to aggregate.
1ed32e4f 4397 * @vif: &struct ieee80211_vif pointer from the add_interface callback
0df3ef45
RR
4398 * @ra: receiver address of the BA session recipient.
4399 * @tid: the TID to BA on.
4400 *
4401 * This function must be called by low level driver once it has
5d22c89b
JB
4402 * finished with preparations for the BA session. It can be called
4403 * from any context.
0df3ef45 4404 */
c951ad35 4405void ieee80211_start_tx_ba_cb_irqsafe(struct ieee80211_vif *vif, const u8 *ra,
0df3ef45
RR
4406 u16 tid);
4407
4408/**
4409 * ieee80211_stop_tx_ba_session - Stop a Block Ack session.
c951ad35 4410 * @sta: the station whose BA session to stop
0df3ef45 4411 * @tid: the TID to stop BA.
ea2d8b59 4412 *
6a8579d0 4413 * Return: negative error if the TID is invalid, or no aggregation active
0df3ef45
RR
4414 *
4415 * Although mac80211/low level driver/user space application can estimate
4416 * the need to stop aggregation on a certain RA/TID, the session level
4417 * will be managed by the mac80211.
4418 */
6a8579d0 4419int ieee80211_stop_tx_ba_session(struct ieee80211_sta *sta, u16 tid);
0df3ef45 4420
0df3ef45
RR
4421/**
4422 * ieee80211_stop_tx_ba_cb_irqsafe - low level driver ready to stop aggregate.
1ed32e4f 4423 * @vif: &struct ieee80211_vif pointer from the add_interface callback
0df3ef45
RR
4424 * @ra: receiver address of the BA session recipient.
4425 * @tid: the desired TID to BA on.
4426 *
4427 * This function must be called by low level driver once it has
5d22c89b
JB
4428 * finished with preparations for the BA session tear down. It
4429 * can be called from any context.
0df3ef45 4430 */
c951ad35 4431void ieee80211_stop_tx_ba_cb_irqsafe(struct ieee80211_vif *vif, const u8 *ra,
0df3ef45
RR
4432 u16 tid);
4433
17741cdc
JB
4434/**
4435 * ieee80211_find_sta - find a station
4436 *
5ed176e1 4437 * @vif: virtual interface to look for station on
17741cdc
JB
4438 * @addr: station's address
4439 *
0ae997dc
YB
4440 * Return: The station, if found. %NULL otherwise.
4441 *
4442 * Note: This function must be called under RCU lock and the
17741cdc
JB
4443 * resulting pointer is only valid under RCU lock as well.
4444 */
5ed176e1 4445struct ieee80211_sta *ieee80211_find_sta(struct ieee80211_vif *vif,
17741cdc
JB
4446 const u8 *addr);
4447
5ed176e1 4448/**
686b9cb9 4449 * ieee80211_find_sta_by_ifaddr - find a station on hardware
5ed176e1
JB
4450 *
4451 * @hw: pointer as obtained from ieee80211_alloc_hw()
686b9cb9
BG
4452 * @addr: remote station's address
4453 * @localaddr: local address (vif->sdata->vif.addr). Use NULL for 'any'.
5ed176e1 4454 *
0ae997dc
YB
4455 * Return: The station, if found. %NULL otherwise.
4456 *
4457 * Note: This function must be called under RCU lock and the
5ed176e1
JB
4458 * resulting pointer is only valid under RCU lock as well.
4459 *
686b9cb9
BG
4460 * NOTE: You may pass NULL for localaddr, but then you will just get
4461 * the first STA that matches the remote address 'addr'.
4462 * We can have multiple STA associated with multiple
4463 * logical stations (e.g. consider a station connecting to another
4464 * BSSID on the same AP hardware without disconnecting first).
4465 * In this case, the result of this method with localaddr NULL
4466 * is not reliable.
5ed176e1 4467 *
686b9cb9 4468 * DO NOT USE THIS FUNCTION with localaddr NULL if at all possible.
5ed176e1 4469 */
686b9cb9
BG
4470struct ieee80211_sta *ieee80211_find_sta_by_ifaddr(struct ieee80211_hw *hw,
4471 const u8 *addr,
4472 const u8 *localaddr);
5ed176e1 4473
af818581
JB
4474/**
4475 * ieee80211_sta_block_awake - block station from waking up
4476 * @hw: the hardware
4477 * @pubsta: the station
4478 * @block: whether to block or unblock
4479 *
4480 * Some devices require that all frames that are on the queues
4481 * for a specific station that went to sleep are flushed before
4482 * a poll response or frames after the station woke up can be
4483 * delivered to that it. Note that such frames must be rejected
4484 * by the driver as filtered, with the appropriate status flag.
4485 *
4486 * This function allows implementing this mode in a race-free
4487 * manner.
4488 *
4489 * To do this, a driver must keep track of the number of frames
4490 * still enqueued for a specific station. If this number is not
4491 * zero when the station goes to sleep, the driver must call
4492 * this function to force mac80211 to consider the station to
4493 * be asleep regardless of the station's actual state. Once the
4494 * number of outstanding frames reaches zero, the driver must
4495 * call this function again to unblock the station. That will
4496 * cause mac80211 to be able to send ps-poll responses, and if
4497 * the station queried in the meantime then frames will also
4498 * be sent out as a result of this. Additionally, the driver
4499 * will be notified that the station woke up some time after
4500 * it is unblocked, regardless of whether the station actually
4501 * woke up while blocked or not.
4502 */
4503void ieee80211_sta_block_awake(struct ieee80211_hw *hw,
4504 struct ieee80211_sta *pubsta, bool block);
4505
37fbd908
JB
4506/**
4507 * ieee80211_sta_eosp - notify mac80211 about end of SP
4508 * @pubsta: the station
4509 *
4510 * When a device transmits frames in a way that it can't tell
4511 * mac80211 in the TX status about the EOSP, it must clear the
4512 * %IEEE80211_TX_STATUS_EOSP bit and call this function instead.
4513 * This applies for PS-Poll as well as uAPSD.
4514 *
e943789e
JB
4515 * Note that just like with _tx_status() and _rx() drivers must
4516 * not mix calls to irqsafe/non-irqsafe versions, this function
4517 * must not be mixed with those either. Use the all irqsafe, or
4518 * all non-irqsafe, don't mix!
4519 *
4520 * NB: the _irqsafe version of this function doesn't exist, no
4521 * driver needs it right now. Don't call this function if
4522 * you'd need the _irqsafe version, look at the git history
4523 * and restore the _irqsafe version!
37fbd908 4524 */
e943789e 4525void ieee80211_sta_eosp(struct ieee80211_sta *pubsta);
37fbd908 4526
830af02f
JB
4527/**
4528 * ieee80211_iter_keys - iterate keys programmed into the device
4529 * @hw: pointer obtained from ieee80211_alloc_hw()
4530 * @vif: virtual interface to iterate, may be %NULL for all
4531 * @iter: iterator function that will be called for each key
4532 * @iter_data: custom data to pass to the iterator function
4533 *
4534 * This function can be used to iterate all the keys known to
4535 * mac80211, even those that weren't previously programmed into
4536 * the device. This is intended for use in WoWLAN if the device
4537 * needs reprogramming of the keys during suspend. Note that due
4538 * to locking reasons, it is also only safe to call this at few
4539 * spots since it must hold the RTNL and be able to sleep.
f850e00f
JB
4540 *
4541 * The order in which the keys are iterated matches the order
4542 * in which they were originally installed and handed to the
4543 * set_key callback.
830af02f
JB
4544 */
4545void ieee80211_iter_keys(struct ieee80211_hw *hw,
4546 struct ieee80211_vif *vif,
4547 void (*iter)(struct ieee80211_hw *hw,
4548 struct ieee80211_vif *vif,
4549 struct ieee80211_sta *sta,
4550 struct ieee80211_key_conf *key,
4551 void *data),
4552 void *iter_data);
4553
3448c005
JB
4554/**
4555 * ieee80211_iter_chan_contexts_atomic - iterate channel contexts
4556 * @hw: pointre obtained from ieee80211_alloc_hw().
4557 * @iter: iterator function
4558 * @iter_data: data passed to iterator function
4559 *
4560 * Iterate all active channel contexts. This function is atomic and
4561 * doesn't acquire any locks internally that might be held in other
4562 * places while calling into the driver.
4563 *
4564 * The iterator will not find a context that's being added (during
4565 * the driver callback to add it) but will find it while it's being
4566 * removed.
8a61af65
JB
4567 *
4568 * Note that during hardware restart, all contexts that existed
4569 * before the restart are considered already present so will be
4570 * found while iterating, whether they've been re-added already
4571 * or not.
3448c005
JB
4572 */
4573void ieee80211_iter_chan_contexts_atomic(
4574 struct ieee80211_hw *hw,
4575 void (*iter)(struct ieee80211_hw *hw,
4576 struct ieee80211_chanctx_conf *chanctx_conf,
4577 void *data),
4578 void *iter_data);
4579
a619a4c0
JO
4580/**
4581 * ieee80211_ap_probereq_get - retrieve a Probe Request template
4582 * @hw: pointer obtained from ieee80211_alloc_hw().
4583 * @vif: &struct ieee80211_vif pointer from the add_interface callback.
4584 *
4585 * Creates a Probe Request template which can, for example, be uploaded to
4586 * hardware. The template is filled with bssid, ssid and supported rate
4587 * information. This function must only be called from within the
4588 * .bss_info_changed callback function and only in managed mode. The function
4589 * is only useful when the interface is associated, otherwise it will return
0ae997dc
YB
4590 * %NULL.
4591 *
4592 * Return: The Probe Request template. %NULL on error.
a619a4c0
JO
4593 */
4594struct sk_buff *ieee80211_ap_probereq_get(struct ieee80211_hw *hw,
4595 struct ieee80211_vif *vif);
4596
04de8381
KV
4597/**
4598 * ieee80211_beacon_loss - inform hardware does not receive beacons
4599 *
1ed32e4f 4600 * @vif: &struct ieee80211_vif pointer from the add_interface callback.
04de8381 4601 *
c1288b12 4602 * When beacon filtering is enabled with %IEEE80211_VIF_BEACON_FILTER and
1e4dcd01 4603 * %IEEE80211_CONF_PS is set, the driver needs to inform whenever the
04de8381
KV
4604 * hardware is not receiving beacons with this function.
4605 */
4606void ieee80211_beacon_loss(struct ieee80211_vif *vif);
4b7679a5 4607
1e4dcd01
JO
4608/**
4609 * ieee80211_connection_loss - inform hardware has lost connection to the AP
4610 *
4611 * @vif: &struct ieee80211_vif pointer from the add_interface callback.
4612 *
c1288b12 4613 * When beacon filtering is enabled with %IEEE80211_VIF_BEACON_FILTER, and
1e4dcd01
JO
4614 * %IEEE80211_CONF_PS and %IEEE80211_HW_CONNECTION_MONITOR are set, the driver
4615 * needs to inform if the connection to the AP has been lost.
682bd38b
JB
4616 * The function may also be called if the connection needs to be terminated
4617 * for some other reason, even if %IEEE80211_HW_CONNECTION_MONITOR isn't set.
1e4dcd01
JO
4618 *
4619 * This function will cause immediate change to disassociated state,
4620 * without connection recovery attempts.
4621 */
4622void ieee80211_connection_loss(struct ieee80211_vif *vif);
4623
95acac61
JB
4624/**
4625 * ieee80211_resume_disconnect - disconnect from AP after resume
4626 *
4627 * @vif: &struct ieee80211_vif pointer from the add_interface callback.
4628 *
4629 * Instructs mac80211 to disconnect from the AP after resume.
4630 * Drivers can use this after WoWLAN if they know that the
4631 * connection cannot be kept up, for example because keys were
4632 * used while the device was asleep but the replay counters or
4633 * similar cannot be retrieved from the device during resume.
4634 *
4635 * Note that due to implementation issues, if the driver uses
4636 * the reconfiguration functionality during resume the interface
4637 * will still be added as associated first during resume and then
4638 * disconnect normally later.
4639 *
4640 * This function can only be called from the resume callback and
4641 * the driver must not be holding any of its own locks while it
4642 * calls this function, or at least not any locks it needs in the
4643 * key configuration paths (if it supports HW crypto).
4644 */
4645void ieee80211_resume_disconnect(struct ieee80211_vif *vif);
f90754c1 4646
a97c13c3
JO
4647/**
4648 * ieee80211_cqm_rssi_notify - inform a configured connection quality monitoring
4649 * rssi threshold triggered
4650 *
4651 * @vif: &struct ieee80211_vif pointer from the add_interface callback.
4652 * @rssi_event: the RSSI trigger event type
4653 * @gfp: context flags
4654 *
ea086359 4655 * When the %IEEE80211_VIF_SUPPORTS_CQM_RSSI is set, and a connection quality
a97c13c3
JO
4656 * monitoring is configured with an rssi threshold, the driver will inform
4657 * whenever the rssi level reaches the threshold.
4658 */
4659void ieee80211_cqm_rssi_notify(struct ieee80211_vif *vif,
4660 enum nl80211_cqm_rssi_threshold_event rssi_event,
4661 gfp_t gfp);
4662
164eb02d
SW
4663/**
4664 * ieee80211_radar_detected - inform that a radar was detected
4665 *
4666 * @hw: pointer as obtained from ieee80211_alloc_hw()
4667 */
4668void ieee80211_radar_detected(struct ieee80211_hw *hw);
4669
5ce6e438
JB
4670/**
4671 * ieee80211_chswitch_done - Complete channel switch process
4672 * @vif: &struct ieee80211_vif pointer from the add_interface callback.
4673 * @success: make the channel switch successful or not
4674 *
4675 * Complete the channel switch post-process: set the new operational channel
4676 * and wake up the suspended queues.
4677 */
4678void ieee80211_chswitch_done(struct ieee80211_vif *vif, bool success);
4679
d1f5b7a3
JB
4680/**
4681 * ieee80211_request_smps - request SM PS transition
4682 * @vif: &struct ieee80211_vif pointer from the add_interface callback.
633dd1ea 4683 * @smps_mode: new SM PS mode
d1f5b7a3
JB
4684 *
4685 * This allows the driver to request an SM PS transition in managed
4686 * mode. This is useful when the driver has more information than
4687 * the stack about possible interference, for example by bluetooth.
4688 */
4689void ieee80211_request_smps(struct ieee80211_vif *vif,
4690 enum ieee80211_smps_mode smps_mode);
4691
21f83589
JB
4692/**
4693 * ieee80211_ready_on_channel - notification of remain-on-channel start
4694 * @hw: pointer as obtained from ieee80211_alloc_hw()
4695 */
4696void ieee80211_ready_on_channel(struct ieee80211_hw *hw);
4697
4698/**
4699 * ieee80211_remain_on_channel_expired - remain_on_channel duration expired
4700 * @hw: pointer as obtained from ieee80211_alloc_hw()
4701 */
4702void ieee80211_remain_on_channel_expired(struct ieee80211_hw *hw);
4703
f41ccd71
SL
4704/**
4705 * ieee80211_stop_rx_ba_session - callback to stop existing BA sessions
4706 *
4707 * in order not to harm the system performance and user experience, the device
4708 * may request not to allow any rx ba session and tear down existing rx ba
4709 * sessions based on system constraints such as periodic BT activity that needs
4710 * to limit wlan activity (eg.sco or a2dp)."
4711 * in such cases, the intention is to limit the duration of the rx ppdu and
4712 * therefore prevent the peer device to use a-mpdu aggregation.
4713 *
4714 * @vif: &struct ieee80211_vif pointer from the add_interface callback.
4715 * @ba_rx_bitmap: Bit map of open rx ba per tid
4716 * @addr: & to bssid mac address
4717 */
4718void ieee80211_stop_rx_ba_session(struct ieee80211_vif *vif, u16 ba_rx_bitmap,
4719 const u8 *addr);
4720
8c771244
FF
4721/**
4722 * ieee80211_send_bar - send a BlockAckReq frame
4723 *
4724 * can be used to flush pending frames from the peer's aggregation reorder
4725 * buffer.
4726 *
4727 * @vif: &struct ieee80211_vif pointer from the add_interface callback.
4728 * @ra: the peer's destination address
4729 * @tid: the TID of the aggregation session
4730 * @ssn: the new starting sequence number for the receiver
4731 */
4732void ieee80211_send_bar(struct ieee80211_vif *vif, u8 *ra, u16 tid, u16 ssn);
4733
08cf42e8
MK
4734/**
4735 * ieee80211_start_rx_ba_session_offl - start a Rx BA session
4736 *
4737 * Some device drivers may offload part of the Rx aggregation flow including
4738 * AddBa/DelBa negotiation but may otherwise be incapable of full Rx
4739 * reordering.
4740 *
4741 * Create structures responsible for reordering so device drivers may call here
4742 * when they complete AddBa negotiation.
4743 *
4744 * @vif: &struct ieee80211_vif pointer from the add_interface callback
4745 * @addr: station mac address
4746 * @tid: the rx tid
4747 */
4748void ieee80211_start_rx_ba_session_offl(struct ieee80211_vif *vif,
4749 const u8 *addr, u16 tid);
4750
4751/**
4752 * ieee80211_stop_rx_ba_session_offl - stop a Rx BA session
4753 *
4754 * Some device drivers may offload part of the Rx aggregation flow including
4755 * AddBa/DelBa negotiation but may otherwise be incapable of full Rx
4756 * reordering.
4757 *
4758 * Destroy structures responsible for reordering so device drivers may call here
4759 * when they complete DelBa negotiation.
4760 *
4761 * @vif: &struct ieee80211_vif pointer from the add_interface callback
4762 * @addr: station mac address
4763 * @tid: the rx tid
4764 */
4765void ieee80211_stop_rx_ba_session_offl(struct ieee80211_vif *vif,
4766 const u8 *addr, u16 tid);
4767
4b7679a5 4768/* Rate control API */
e6a9854b 4769
4b7679a5 4770/**
e6a9854b
JB
4771 * struct ieee80211_tx_rate_control - rate control information for/from RC algo
4772 *
4773 * @hw: The hardware the algorithm is invoked for.
4774 * @sband: The band this frame is being transmitted on.
4775 * @bss_conf: the current BSS configuration
f44d4eb5
SW
4776 * @skb: the skb that will be transmitted, the control information in it needs
4777 * to be filled in
e6a9854b
JB
4778 * @reported_rate: The rate control algorithm can fill this in to indicate
4779 * which rate should be reported to userspace as the current rate and
4780 * used for rate calculations in the mesh network.
4781 * @rts: whether RTS will be used for this frame because it is longer than the
4782 * RTS threshold
4783 * @short_preamble: whether mac80211 will request short-preamble transmission
4784 * if the selected rate supports it
f44d4eb5 4785 * @max_rate_idx: user-requested maximum (legacy) rate
37eb0b16
JM
4786 * (deprecated; this will be removed once drivers get updated to use
4787 * rate_idx_mask)
f44d4eb5 4788 * @rate_idx_mask: user-requested (legacy) rate mask
2ffbe6d3 4789 * @rate_idx_mcs_mask: user-requested MCS rate mask (NULL if not in use)
8f0729b1 4790 * @bss: whether this frame is sent out in AP or IBSS mode
e6a9854b
JB
4791 */
4792struct ieee80211_tx_rate_control {
4793 struct ieee80211_hw *hw;
4794 struct ieee80211_supported_band *sband;
4795 struct ieee80211_bss_conf *bss_conf;
4796 struct sk_buff *skb;
4797 struct ieee80211_tx_rate reported_rate;
4798 bool rts, short_preamble;
4799 u8 max_rate_idx;
37eb0b16 4800 u32 rate_idx_mask;
2ffbe6d3 4801 u8 *rate_idx_mcs_mask;
8f0729b1 4802 bool bss;
4b7679a5
JB
4803};
4804
4805struct rate_control_ops {
4b7679a5
JB
4806 const char *name;
4807 void *(*alloc)(struct ieee80211_hw *hw, struct dentry *debugfsdir);
4b7679a5
JB
4808 void (*free)(void *priv);
4809
4810 void *(*alloc_sta)(void *priv, struct ieee80211_sta *sta, gfp_t gfp);
4811 void (*rate_init)(void *priv, struct ieee80211_supported_band *sband,
3de805cf 4812 struct cfg80211_chan_def *chandef,
4b7679a5 4813 struct ieee80211_sta *sta, void *priv_sta);
81cb7623 4814 void (*rate_update)(void *priv, struct ieee80211_supported_band *sband,
3de805cf 4815 struct cfg80211_chan_def *chandef,
64f68e5d
JB
4816 struct ieee80211_sta *sta, void *priv_sta,
4817 u32 changed);
4b7679a5
JB
4818 void (*free_sta)(void *priv, struct ieee80211_sta *sta,
4819 void *priv_sta);
4820
4821 void (*tx_status)(void *priv, struct ieee80211_supported_band *sband,
4822 struct ieee80211_sta *sta, void *priv_sta,
4823 struct sk_buff *skb);
e6a9854b
JB
4824 void (*get_rate)(void *priv, struct ieee80211_sta *sta, void *priv_sta,
4825 struct ieee80211_tx_rate_control *txrc);
4b7679a5
JB
4826
4827 void (*add_sta_debugfs)(void *priv, void *priv_sta,
4828 struct dentry *dir);
4829 void (*remove_sta_debugfs)(void *priv, void *priv_sta);
cca674d4
AQ
4830
4831 u32 (*get_expected_throughput)(void *priv_sta);
4b7679a5
JB
4832};
4833
4834static inline int rate_supported(struct ieee80211_sta *sta,
4835 enum ieee80211_band band,
4836 int index)
4837{
4838 return (sta == NULL || sta->supp_rates[band] & BIT(index));
4839}
4840
4c6d4f5c
LR
4841/**
4842 * rate_control_send_low - helper for drivers for management/no-ack frames
4843 *
4844 * Rate control algorithms that agree to use the lowest rate to
4845 * send management frames and NO_ACK data with the respective hw
4846 * retries should use this in the beginning of their mac80211 get_rate
4847 * callback. If true is returned the rate control can simply return.
4848 * If false is returned we guarantee that sta and sta and priv_sta is
4849 * not null.
4850 *
4851 * Rate control algorithms wishing to do more intelligent selection of
4852 * rate for multicast/broadcast frames may choose to not use this.
4853 *
4854 * @sta: &struct ieee80211_sta pointer to the target destination. Note
4855 * that this may be null.
4856 * @priv_sta: private rate control structure. This may be null.
4857 * @txrc: rate control information we sholud populate for mac80211.
4858 */
4859bool rate_control_send_low(struct ieee80211_sta *sta,
4860 void *priv_sta,
4861 struct ieee80211_tx_rate_control *txrc);
4862
4863
4b7679a5
JB
4864static inline s8
4865rate_lowest_index(struct ieee80211_supported_band *sband,
4866 struct ieee80211_sta *sta)
4867{
4868 int i;
4869
4870 for (i = 0; i < sband->n_bitrates; i++)
4871 if (rate_supported(sta, sband->band, i))
4872 return i;
4873
4874 /* warn when we cannot find a rate. */
54d5026e 4875 WARN_ON_ONCE(1);
4b7679a5 4876
54d5026e 4877 /* and return 0 (the lowest index) */
4b7679a5
JB
4878 return 0;
4879}
4880
b770b43e
LR
4881static inline
4882bool rate_usable_index_exists(struct ieee80211_supported_band *sband,
4883 struct ieee80211_sta *sta)
4884{
4885 unsigned int i;
4886
4887 for (i = 0; i < sband->n_bitrates; i++)
4888 if (rate_supported(sta, sband->band, i))
4889 return true;
4890 return false;
4891}
4b7679a5 4892
0d528d85
FF
4893/**
4894 * rate_control_set_rates - pass the sta rate selection to mac80211/driver
4895 *
4896 * When not doing a rate control probe to test rates, rate control should pass
4897 * its rate selection to mac80211. If the driver supports receiving a station
4898 * rate table, it will use it to ensure that frames are always sent based on
4899 * the most recent rate control module decision.
4900 *
4901 * @hw: pointer as obtained from ieee80211_alloc_hw()
4902 * @pubsta: &struct ieee80211_sta pointer to the target destination.
4903 * @rates: new tx rate set to be used for this station.
4904 */
4905int rate_control_set_rates(struct ieee80211_hw *hw,
4906 struct ieee80211_sta *pubsta,
4907 struct ieee80211_sta_rates *rates);
4908
631ad703
JB
4909int ieee80211_rate_control_register(const struct rate_control_ops *ops);
4910void ieee80211_rate_control_unregister(const struct rate_control_ops *ops);
4b7679a5 4911
10c806b3
LR
4912static inline bool
4913conf_is_ht20(struct ieee80211_conf *conf)
4914{
675a0b04 4915 return conf->chandef.width == NL80211_CHAN_WIDTH_20;
10c806b3
LR
4916}
4917
4918static inline bool
4919conf_is_ht40_minus(struct ieee80211_conf *conf)
4920{
675a0b04
KB
4921 return conf->chandef.width == NL80211_CHAN_WIDTH_40 &&
4922 conf->chandef.center_freq1 < conf->chandef.chan->center_freq;
10c806b3
LR
4923}
4924
4925static inline bool
4926conf_is_ht40_plus(struct ieee80211_conf *conf)
4927{
675a0b04
KB
4928 return conf->chandef.width == NL80211_CHAN_WIDTH_40 &&
4929 conf->chandef.center_freq1 > conf->chandef.chan->center_freq;
10c806b3
LR
4930}
4931
4932static inline bool
4933conf_is_ht40(struct ieee80211_conf *conf)
4934{
675a0b04 4935 return conf->chandef.width == NL80211_CHAN_WIDTH_40;
10c806b3
LR
4936}
4937
4938static inline bool
4939conf_is_ht(struct ieee80211_conf *conf)
4940{
041f607d
RL
4941 return (conf->chandef.width != NL80211_CHAN_WIDTH_5) &&
4942 (conf->chandef.width != NL80211_CHAN_WIDTH_10) &&
4943 (conf->chandef.width != NL80211_CHAN_WIDTH_20_NOHT);
10c806b3
LR
4944}
4945
2ca27bcf
JB
4946static inline enum nl80211_iftype
4947ieee80211_iftype_p2p(enum nl80211_iftype type, bool p2p)
4948{
4949 if (p2p) {
4950 switch (type) {
4951 case NL80211_IFTYPE_STATION:
4952 return NL80211_IFTYPE_P2P_CLIENT;
4953 case NL80211_IFTYPE_AP:
4954 return NL80211_IFTYPE_P2P_GO;
4955 default:
4956 break;
4957 }
4958 }
4959 return type;
4960}
4961
4962static inline enum nl80211_iftype
4963ieee80211_vif_type_p2p(struct ieee80211_vif *vif)
4964{
4965 return ieee80211_iftype_p2p(vif->type, vif->p2p);
4966}
4967
615f7b9b
MV
4968void ieee80211_enable_rssi_reports(struct ieee80211_vif *vif,
4969 int rssi_min_thold,
4970 int rssi_max_thold);
4971
4972void ieee80211_disable_rssi_reports(struct ieee80211_vif *vif);
768db343 4973
0d8a0a17 4974/**
0ae997dc 4975 * ieee80211_ave_rssi - report the average RSSI for the specified interface
0d8a0a17
WYG
4976 *
4977 * @vif: the specified virtual interface
4978 *
0ae997dc
YB
4979 * Note: This function assumes that the given vif is valid.
4980 *
4981 * Return: The average RSSI value for the requested interface, or 0 if not
4982 * applicable.
0d8a0a17 4983 */
1dae27f8
WYG
4984int ieee80211_ave_rssi(struct ieee80211_vif *vif);
4985
cd8f7cb4
JB
4986/**
4987 * ieee80211_report_wowlan_wakeup - report WoWLAN wakeup
4988 * @vif: virtual interface
4989 * @wakeup: wakeup reason(s)
4990 * @gfp: allocation flags
4991 *
4992 * See cfg80211_report_wowlan_wakeup().
4993 */
4994void ieee80211_report_wowlan_wakeup(struct ieee80211_vif *vif,
4995 struct cfg80211_wowlan_wakeup *wakeup,
4996 gfp_t gfp);
4997
06be6b14
FF
4998/**
4999 * ieee80211_tx_prepare_skb - prepare an 802.11 skb for transmission
5000 * @hw: pointer as obtained from ieee80211_alloc_hw()
5001 * @vif: virtual interface
5002 * @skb: frame to be sent from within the driver
5003 * @band: the band to transmit on
5004 * @sta: optional pointer to get the station to send the frame to
5005 *
5006 * Note: must be called under RCU lock
5007 */
5008bool ieee80211_tx_prepare_skb(struct ieee80211_hw *hw,
5009 struct ieee80211_vif *vif, struct sk_buff *skb,
5010 int band, struct ieee80211_sta **sta);
5011
a7022e65
FF
5012/**
5013 * struct ieee80211_noa_data - holds temporary data for tracking P2P NoA state
5014 *
5015 * @next_tsf: TSF timestamp of the next absent state change
5016 * @has_next_tsf: next absent state change event pending
5017 *
5018 * @absent: descriptor bitmask, set if GO is currently absent
5019 *
5020 * private:
5021 *
5022 * @count: count fields from the NoA descriptors
5023 * @desc: adjusted data from the NoA
5024 */
5025struct ieee80211_noa_data {
5026 u32 next_tsf;
5027 bool has_next_tsf;
5028
5029 u8 absent;
5030
5031 u8 count[IEEE80211_P2P_NOA_DESC_MAX];
5032 struct {
5033 u32 start;
5034 u32 duration;
5035 u32 interval;
5036 } desc[IEEE80211_P2P_NOA_DESC_MAX];
5037};
5038
5039/**
5040 * ieee80211_parse_p2p_noa - initialize NoA tracking data from P2P IE
5041 *
5042 * @attr: P2P NoA IE
5043 * @data: NoA tracking data
5044 * @tsf: current TSF timestamp
5045 *
5046 * Return: number of successfully parsed descriptors
5047 */
5048int ieee80211_parse_p2p_noa(const struct ieee80211_p2p_noa_attr *attr,
5049 struct ieee80211_noa_data *data, u32 tsf);
5050
5051/**
5052 * ieee80211_update_p2p_noa - get next pending P2P GO absent state change
5053 *
5054 * @data: NoA tracking data
5055 * @tsf: current TSF timestamp
5056 */
5057void ieee80211_update_p2p_noa(struct ieee80211_noa_data *data, u32 tsf);
5058
c887f0d3
AN
5059/**
5060 * ieee80211_tdls_oper - request userspace to perform a TDLS operation
5061 * @vif: virtual interface
5062 * @peer: the peer's destination address
5063 * @oper: the requested TDLS operation
5064 * @reason_code: reason code for the operation, valid for TDLS teardown
5065 * @gfp: allocation flags
5066 *
5067 * See cfg80211_tdls_oper_request().
5068 */
5069void ieee80211_tdls_oper_request(struct ieee80211_vif *vif, const u8 *peer,
5070 enum nl80211_tdls_operation oper,
5071 u16 reason_code, gfp_t gfp);
a7f3a768
AO
5072
5073/**
5074 * ieee80211_ie_split - split an IE buffer according to ordering
5075 *
5076 * @ies: the IE buffer
5077 * @ielen: the length of the IE buffer
5078 * @ids: an array with element IDs that are allowed before
5079 * the split
5080 * @n_ids: the size of the element ID array
5081 * @offset: offset where to start splitting in the buffer
5082 *
5083 * This function splits an IE buffer by updating the @offset
5084 * variable to point to the location where the buffer should be
5085 * split.
5086 *
5087 * It assumes that the given IE buffer is well-formed, this
5088 * has to be guaranteed by the caller!
5089 *
5090 * It also assumes that the IEs in the buffer are ordered
5091 * correctly, if not the result of using this function will not
5092 * be ordered correctly either, i.e. it does no reordering.
5093 *
5094 * The function returns the offset where the next part of the
5095 * buffer starts, which may be @ielen if the entire (remainder)
5096 * of the buffer should be used.
5097 */
5098size_t ieee80211_ie_split(const u8 *ies, size_t ielen,
5099 const u8 *ids, int n_ids, size_t offset);
f0706e82 5100#endif /* MAC80211_H */