time, s390: Get rid of compile warning
[deliverable/linux.git] / include / net / cfg80211.h
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1#ifndef __NET_CFG80211_H
2#define __NET_CFG80211_H
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3/*
4 * 802.11 device and configuration interface
5 *
026331c4 6 * Copyright 2006-2010 Johannes Berg <johannes@sipsolutions.net>
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7 *
8 * This program is free software; you can redistribute it and/or modify
9 * it under the terms of the GNU General Public License version 2 as
10 * published by the Free Software Foundation.
11 */
704232c2 12
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13#include <linux/netdevice.h>
14#include <linux/debugfs.h>
15#include <linux/list.h>
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16#include <linux/netlink.h>
17#include <linux/skbuff.h>
55682965 18#include <linux/nl80211.h>
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19#include <linux/if_ether.h>
20#include <linux/ieee80211.h>
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21#include <net/regulatory.h>
22
fee52678 23/* remove once we remove the wext stuff */
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24#include <net/iw_handler.h>
25#include <linux/wireless.h>
26
704232c2 27
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28/**
29 * DOC: Introduction
30 *
31 * cfg80211 is the configuration API for 802.11 devices in Linux. It bridges
32 * userspace and drivers, and offers some utility functionality associated
33 * with 802.11. cfg80211 must, directly or indirectly via mac80211, be used
34 * by all modern wireless drivers in Linux, so that they offer a consistent
35 * API through nl80211. For backward compatibility, cfg80211 also offers
36 * wireless extensions to userspace, but hides them from drivers completely.
37 *
38 * Additionally, cfg80211 contains code to help enforce regulatory spectrum
39 * use restrictions.
40 */
41
42
43/**
44 * DOC: Device registration
45 *
46 * In order for a driver to use cfg80211, it must register the hardware device
47 * with cfg80211. This happens through a number of hardware capability structs
48 * described below.
49 *
50 * The fundamental structure for each device is the 'wiphy', of which each
51 * instance describes a physical wireless device connected to the system. Each
52 * such wiphy can have zero, one, or many virtual interfaces associated with
53 * it, which need to be identified as such by pointing the network interface's
54 * @ieee80211_ptr pointer to a &struct wireless_dev which further describes
55 * the wireless part of the interface, normally this struct is embedded in the
56 * network interface's private data area. Drivers can optionally allow creating
57 * or destroying virtual interfaces on the fly, but without at least one or the
58 * ability to create some the wireless device isn't useful.
59 *
60 * Each wiphy structure contains device capability information, and also has
61 * a pointer to the various operations the driver offers. The definitions and
62 * structures here describe these capabilities in detail.
63 */
64
704232c2 65/*
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66 * wireless hardware capability structures
67 */
68
69/**
70 * enum ieee80211_band - supported frequency bands
71 *
72 * The bands are assigned this way because the supported
73 * bitrates differ in these bands.
704232c2 74 *
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75 * @IEEE80211_BAND_2GHZ: 2.4GHz ISM band
76 * @IEEE80211_BAND_5GHZ: around 5GHz band (4.9-5.7)
abe37c4b 77 * @IEEE80211_NUM_BANDS: number of defined bands
704232c2 78 */
d3236553 79enum ieee80211_band {
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80 IEEE80211_BAND_2GHZ = NL80211_BAND_2GHZ,
81 IEEE80211_BAND_5GHZ = NL80211_BAND_5GHZ,
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82
83 /* keep last */
84 IEEE80211_NUM_BANDS
85};
704232c2 86
2ec600d6 87/**
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88 * enum ieee80211_channel_flags - channel flags
89 *
90 * Channel flags set by the regulatory control code.
91 *
92 * @IEEE80211_CHAN_DISABLED: This channel is disabled.
93 * @IEEE80211_CHAN_PASSIVE_SCAN: Only passive scanning is permitted
94 * on this channel.
95 * @IEEE80211_CHAN_NO_IBSS: IBSS is not allowed on this channel.
96 * @IEEE80211_CHAN_RADAR: Radar detection is required on this channel.
689da1b3 97 * @IEEE80211_CHAN_NO_HT40PLUS: extension channel above this channel
d3236553 98 * is not permitted.
689da1b3 99 * @IEEE80211_CHAN_NO_HT40MINUS: extension channel below this channel
d3236553 100 * is not permitted.
2ec600d6 101 */
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102enum ieee80211_channel_flags {
103 IEEE80211_CHAN_DISABLED = 1<<0,
104 IEEE80211_CHAN_PASSIVE_SCAN = 1<<1,
105 IEEE80211_CHAN_NO_IBSS = 1<<2,
106 IEEE80211_CHAN_RADAR = 1<<3,
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107 IEEE80211_CHAN_NO_HT40PLUS = 1<<4,
108 IEEE80211_CHAN_NO_HT40MINUS = 1<<5,
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109};
110
038659e7 111#define IEEE80211_CHAN_NO_HT40 \
689da1b3 112 (IEEE80211_CHAN_NO_HT40PLUS | IEEE80211_CHAN_NO_HT40MINUS)
038659e7 113
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114/**
115 * struct ieee80211_channel - channel definition
116 *
117 * This structure describes a single channel for use
118 * with cfg80211.
119 *
120 * @center_freq: center frequency in MHz
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121 * @hw_value: hardware-specific value for the channel
122 * @flags: channel flags from &enum ieee80211_channel_flags.
123 * @orig_flags: channel flags at registration time, used by regulatory
124 * code to support devices with additional restrictions
125 * @band: band this channel belongs to.
126 * @max_antenna_gain: maximum antenna gain in dBi
127 * @max_power: maximum transmission power (in dBm)
128 * @beacon_found: helper to regulatory code to indicate when a beacon
129 * has been found on this channel. Use regulatory_hint_found_beacon()
77c2061d 130 * to enable this, this is useful only on 5 GHz band.
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131 * @orig_mag: internal use
132 * @orig_mpwr: internal use
179f831b 133 */
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134struct ieee80211_channel {
135 enum ieee80211_band band;
136 u16 center_freq;
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137 u16 hw_value;
138 u32 flags;
139 int max_antenna_gain;
140 int max_power;
141 bool beacon_found;
142 u32 orig_flags;
143 int orig_mag, orig_mpwr;
144};
145
179f831b 146/**
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147 * enum ieee80211_rate_flags - rate flags
148 *
149 * Hardware/specification flags for rates. These are structured
150 * in a way that allows using the same bitrate structure for
151 * different bands/PHY modes.
152 *
153 * @IEEE80211_RATE_SHORT_PREAMBLE: Hardware can send with short
154 * preamble on this bitrate; only relevant in 2.4GHz band and
155 * with CCK rates.
156 * @IEEE80211_RATE_MANDATORY_A: This bitrate is a mandatory rate
157 * when used with 802.11a (on the 5 GHz band); filled by the
158 * core code when registering the wiphy.
159 * @IEEE80211_RATE_MANDATORY_B: This bitrate is a mandatory rate
160 * when used with 802.11b (on the 2.4 GHz band); filled by the
161 * core code when registering the wiphy.
162 * @IEEE80211_RATE_MANDATORY_G: This bitrate is a mandatory rate
163 * when used with 802.11g (on the 2.4 GHz band); filled by the
164 * core code when registering the wiphy.
165 * @IEEE80211_RATE_ERP_G: This is an ERP rate in 802.11g mode.
179f831b 166 */
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167enum ieee80211_rate_flags {
168 IEEE80211_RATE_SHORT_PREAMBLE = 1<<0,
169 IEEE80211_RATE_MANDATORY_A = 1<<1,
170 IEEE80211_RATE_MANDATORY_B = 1<<2,
171 IEEE80211_RATE_MANDATORY_G = 1<<3,
172 IEEE80211_RATE_ERP_G = 1<<4,
173};
179f831b 174
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175/**
176 * struct ieee80211_rate - bitrate definition
177 *
178 * This structure describes a bitrate that an 802.11 PHY can
179 * operate with. The two values @hw_value and @hw_value_short
180 * are only for driver use when pointers to this structure are
181 * passed around.
182 *
183 * @flags: rate-specific flags
184 * @bitrate: bitrate in units of 100 Kbps
185 * @hw_value: driver/hardware value for this rate
186 * @hw_value_short: driver/hardware value for this rate when
187 * short preamble is used
188 */
189struct ieee80211_rate {
190 u32 flags;
191 u16 bitrate;
192 u16 hw_value, hw_value_short;
193};
179f831b 194
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195/**
196 * struct ieee80211_sta_ht_cap - STA's HT capabilities
197 *
198 * This structure describes most essential parameters needed
199 * to describe 802.11n HT capabilities for an STA.
200 *
201 * @ht_supported: is HT supported by the STA
202 * @cap: HT capabilities map as described in 802.11n spec
203 * @ampdu_factor: Maximum A-MPDU length factor
204 * @ampdu_density: Minimum A-MPDU spacing
205 * @mcs: Supported MCS rates
206 */
207struct ieee80211_sta_ht_cap {
208 u16 cap; /* use IEEE80211_HT_CAP_ */
209 bool ht_supported;
210 u8 ampdu_factor;
211 u8 ampdu_density;
212 struct ieee80211_mcs_info mcs;
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213};
214
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215/**
216 * struct ieee80211_supported_band - frequency band definition
217 *
218 * This structure describes a frequency band a wiphy
219 * is able to operate in.
220 *
221 * @channels: Array of channels the hardware can operate in
222 * in this band.
223 * @band: the band this structure represents
224 * @n_channels: Number of channels in @channels
225 * @bitrates: Array of bitrates the hardware can operate with
226 * in this band. Must be sorted to give a valid "supported
227 * rates" IE, i.e. CCK rates first, then OFDM.
228 * @n_bitrates: Number of bitrates in @bitrates
abe37c4b 229 * @ht_cap: HT capabilities in this band
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230 */
231struct ieee80211_supported_band {
232 struct ieee80211_channel *channels;
233 struct ieee80211_rate *bitrates;
234 enum ieee80211_band band;
235 int n_channels;
236 int n_bitrates;
237 struct ieee80211_sta_ht_cap ht_cap;
238};
179f831b 239
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240/*
241 * Wireless hardware/device configuration structures and methods
242 */
179f831b 243
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244/**
245 * DOC: Actions and configuration
246 *
247 * Each wireless device and each virtual interface offer a set of configuration
248 * operations and other actions that are invoked by userspace. Each of these
249 * actions is described in the operations structure, and the parameters these
250 * operations use are described separately.
251 *
252 * Additionally, some operations are asynchronous and expect to get status
253 * information via some functions that drivers need to call.
254 *
255 * Scanning and BSS list handling with its associated functionality is described
256 * in a separate chapter.
257 */
258
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259/**
260 * struct vif_params - describes virtual interface parameters
8b787643 261 * @use_4addr: use 4-address frames
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262 */
263struct vif_params {
8b787643 264 int use_4addr;
d3236553 265};
179f831b 266
d3236553 267/**
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268 * struct key_params - key information
269 *
270 * Information about a key
271 *
272 * @key: key material
273 * @key_len: length of key material
274 * @cipher: cipher suite selector
275 * @seq: sequence counter (IV/PN) for TKIP and CCMP keys, only used
276 * with the get_key() callback, must be in little endian,
277 * length given by @seq_len.
abe37c4b 278 * @seq_len: length of @seq.
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279 */
280struct key_params {
281 u8 *key;
282 u8 *seq;
283 int key_len;
284 int seq_len;
285 u32 cipher;
286};
287
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288/**
289 * enum survey_info_flags - survey information flags
290 *
abe37c4b 291 * @SURVEY_INFO_NOISE_DBM: noise (in dBm) was filled in
17e5a808 292 * @SURVEY_INFO_IN_USE: channel is currently being used
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293 * @SURVEY_INFO_CHANNEL_TIME: channel active time (in ms) was filled in
294 * @SURVEY_INFO_CHANNEL_TIME_BUSY: channel busy time was filled in
295 * @SURVEY_INFO_CHANNEL_TIME_EXT_BUSY: extension channel busy time was filled in
296 * @SURVEY_INFO_CHANNEL_TIME_RX: channel receive time was filled in
297 * @SURVEY_INFO_CHANNEL_TIME_TX: channel transmit time was filled in
abe37c4b 298 *
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299 * Used by the driver to indicate which info in &struct survey_info
300 * it has filled in during the get_survey().
301 */
302enum survey_info_flags {
303 SURVEY_INFO_NOISE_DBM = 1<<0,
17e5a808 304 SURVEY_INFO_IN_USE = 1<<1,
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305 SURVEY_INFO_CHANNEL_TIME = 1<<2,
306 SURVEY_INFO_CHANNEL_TIME_BUSY = 1<<3,
307 SURVEY_INFO_CHANNEL_TIME_EXT_BUSY = 1<<4,
308 SURVEY_INFO_CHANNEL_TIME_RX = 1<<5,
309 SURVEY_INFO_CHANNEL_TIME_TX = 1<<6,
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310};
311
312/**
313 * struct survey_info - channel survey response
314 *
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315 * @channel: the channel this survey record reports, mandatory
316 * @filled: bitflag of flags from &enum survey_info_flags
317 * @noise: channel noise in dBm. This and all following fields are
318 * optional
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319 * @channel_time: amount of time in ms the radio spent on the channel
320 * @channel_time_busy: amount of time the primary channel was sensed busy
321 * @channel_time_ext_busy: amount of time the extension channel was sensed busy
322 * @channel_time_rx: amount of time the radio spent receiving data
323 * @channel_time_tx: amount of time the radio spent transmitting data
61fa713c 324 *
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325 * Used by dump_survey() to report back per-channel survey information.
326 *
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327 * This structure can later be expanded with things like
328 * channel duty cycle etc.
329 */
330struct survey_info {
331 struct ieee80211_channel *channel;
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332 u64 channel_time;
333 u64 channel_time_busy;
334 u64 channel_time_ext_busy;
335 u64 channel_time_rx;
336 u64 channel_time_tx;
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337 u32 filled;
338 s8 noise;
339};
340
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341/**
342 * struct beacon_parameters - beacon parameters
343 *
344 * Used to configure the beacon for an interface.
345 *
346 * @head: head portion of beacon (before TIM IE)
347 * or %NULL if not changed
348 * @tail: tail portion of beacon (after TIM IE)
349 * or %NULL if not changed
350 * @interval: beacon interval or zero if not changed
351 * @dtim_period: DTIM period or zero if not changed
352 * @head_len: length of @head
353 * @tail_len: length of @tail
354 */
355struct beacon_parameters {
356 u8 *head, *tail;
357 int interval, dtim_period;
358 int head_len, tail_len;
359};
360
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361/**
362 * enum plink_action - actions to perform in mesh peers
363 *
364 * @PLINK_ACTION_INVALID: action 0 is reserved
365 * @PLINK_ACTION_OPEN: start mesh peer link establishment
abe37c4b 366 * @PLINK_ACTION_BLOCK: block traffic from this mesh peer
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367 */
368enum plink_actions {
369 PLINK_ACTION_INVALID,
370 PLINK_ACTION_OPEN,
371 PLINK_ACTION_BLOCK,
372};
373
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374/**
375 * struct station_parameters - station parameters
376 *
377 * Used to change and create a new station.
378 *
379 * @vlan: vlan interface station should belong to
380 * @supported_rates: supported rates in IEEE 802.11 format
381 * (or NULL for no change)
382 * @supported_rates_len: number of supported rates
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383 * @sta_flags_mask: station flags that changed
384 * (bitmask of BIT(NL80211_STA_FLAG_...))
385 * @sta_flags_set: station flags values
386 * (bitmask of BIT(NL80211_STA_FLAG_...))
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387 * @listen_interval: listen interval or -1 for no change
388 * @aid: AID or zero for no change
abe37c4b 389 * @plink_action: plink action to take
9c3990aa 390 * @plink_state: set the peer link state for a station
abe37c4b 391 * @ht_capa: HT capabilities of station
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392 */
393struct station_parameters {
394 u8 *supported_rates;
395 struct net_device *vlan;
eccb8e8f 396 u32 sta_flags_mask, sta_flags_set;
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397 int listen_interval;
398 u16 aid;
399 u8 supported_rates_len;
2ec600d6 400 u8 plink_action;
9c3990aa 401 u8 plink_state;
36aedc90 402 struct ieee80211_ht_cap *ht_capa;
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403};
404
fd5b74dc 405/**
2ec600d6 406 * enum station_info_flags - station information flags
fd5b74dc 407 *
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408 * Used by the driver to indicate which info in &struct station_info
409 * it has filled in during get_station() or dump_station().
fd5b74dc 410 *
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411 * @STATION_INFO_INACTIVE_TIME: @inactive_time filled
412 * @STATION_INFO_RX_BYTES: @rx_bytes filled
413 * @STATION_INFO_TX_BYTES: @tx_bytes filled
414 * @STATION_INFO_LLID: @llid filled
415 * @STATION_INFO_PLID: @plid filled
416 * @STATION_INFO_PLINK_STATE: @plink_state filled
420e7fab 417 * @STATION_INFO_SIGNAL: @signal filled
c8dcfd8a 418 * @STATION_INFO_TX_BITRATE: @txrate fields are filled
420e7fab 419 * (tx_bitrate, tx_bitrate_flags and tx_bitrate_mcs)
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420 * @STATION_INFO_RX_PACKETS: @rx_packets filled
421 * @STATION_INFO_TX_PACKETS: @tx_packets filled
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422 * @STATION_INFO_TX_RETRIES: @tx_retries filled
423 * @STATION_INFO_TX_FAILED: @tx_failed filled
5a5c731a 424 * @STATION_INFO_RX_DROP_MISC: @rx_dropped_misc filled
541a45a1 425 * @STATION_INFO_SIGNAL_AVG: @signal_avg filled
c8dcfd8a 426 * @STATION_INFO_RX_BITRATE: @rxrate fields are filled
f4263c98 427 * @STATION_INFO_BSS_PARAM: @bss_param filled
ebe27c91 428 * @STATION_INFO_CONNECTED_TIME: @connected_time filled
fd5b74dc 429 */
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430enum station_info_flags {
431 STATION_INFO_INACTIVE_TIME = 1<<0,
432 STATION_INFO_RX_BYTES = 1<<1,
433 STATION_INFO_TX_BYTES = 1<<2,
434 STATION_INFO_LLID = 1<<3,
435 STATION_INFO_PLID = 1<<4,
436 STATION_INFO_PLINK_STATE = 1<<5,
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437 STATION_INFO_SIGNAL = 1<<6,
438 STATION_INFO_TX_BITRATE = 1<<7,
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439 STATION_INFO_RX_PACKETS = 1<<8,
440 STATION_INFO_TX_PACKETS = 1<<9,
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441 STATION_INFO_TX_RETRIES = 1<<10,
442 STATION_INFO_TX_FAILED = 1<<11,
5a5c731a 443 STATION_INFO_RX_DROP_MISC = 1<<12,
541a45a1 444 STATION_INFO_SIGNAL_AVG = 1<<13,
c8dcfd8a 445 STATION_INFO_RX_BITRATE = 1<<14,
f4263c98 446 STATION_INFO_BSS_PARAM = 1<<15,
ebe27c91 447 STATION_INFO_CONNECTED_TIME = 1<<16
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448};
449
450/**
451 * enum station_info_rate_flags - bitrate info flags
452 *
453 * Used by the driver to indicate the specific rate transmission
454 * type for 802.11n transmissions.
455 *
456 * @RATE_INFO_FLAGS_MCS: @tx_bitrate_mcs filled
457 * @RATE_INFO_FLAGS_40_MHZ_WIDTH: 40 Mhz width transmission
458 * @RATE_INFO_FLAGS_SHORT_GI: 400ns guard interval
459 */
460enum rate_info_flags {
461 RATE_INFO_FLAGS_MCS = 1<<0,
462 RATE_INFO_FLAGS_40_MHZ_WIDTH = 1<<1,
463 RATE_INFO_FLAGS_SHORT_GI = 1<<2,
464};
465
466/**
467 * struct rate_info - bitrate information
468 *
469 * Information about a receiving or transmitting bitrate
470 *
471 * @flags: bitflag of flags from &enum rate_info_flags
472 * @mcs: mcs index if struct describes a 802.11n bitrate
473 * @legacy: bitrate in 100kbit/s for 802.11abg
474 */
475struct rate_info {
476 u8 flags;
477 u8 mcs;
478 u16 legacy;
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479};
480
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481/**
482 * enum station_info_rate_flags - bitrate info flags
483 *
484 * Used by the driver to indicate the specific rate transmission
485 * type for 802.11n transmissions.
486 *
487 * @BSS_PARAM_FLAGS_CTS_PROT: whether CTS protection is enabled
488 * @BSS_PARAM_FLAGS_SHORT_PREAMBLE: whether short preamble is enabled
489 * @BSS_PARAM_FLAGS_SHORT_SLOT_TIME: whether short slot time is enabled
490 */
491enum bss_param_flags {
492 BSS_PARAM_FLAGS_CTS_PROT = 1<<0,
493 BSS_PARAM_FLAGS_SHORT_PREAMBLE = 1<<1,
494 BSS_PARAM_FLAGS_SHORT_SLOT_TIME = 1<<2,
495};
496
497/**
498 * struct sta_bss_parameters - BSS parameters for the attached station
499 *
500 * Information about the currently associated BSS
501 *
502 * @flags: bitflag of flags from &enum bss_param_flags
503 * @dtim_period: DTIM period for the BSS
504 * @beacon_interval: beacon interval
505 */
506struct sta_bss_parameters {
507 u8 flags;
508 u8 dtim_period;
509 u16 beacon_interval;
510};
511
fd5b74dc 512/**
2ec600d6 513 * struct station_info - station information
fd5b74dc 514 *
2ec600d6 515 * Station information filled by driver for get_station() and dump_station.
fd5b74dc 516 *
2ec600d6 517 * @filled: bitflag of flags from &enum station_info_flags
ebe27c91 518 * @connected_time: time(in secs) since a station is last connected
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519 * @inactive_time: time since last station activity (tx/rx) in milliseconds
520 * @rx_bytes: bytes received from this station
521 * @tx_bytes: bytes transmitted to this station
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522 * @llid: mesh local link id
523 * @plid: mesh peer link id
524 * @plink_state: mesh peer link state
420e7fab 525 * @signal: signal strength of last received packet in dBm
541a45a1 526 * @signal_avg: signal strength average in dBm
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527 * @txrate: current unicast bitrate from this station
528 * @rxrate: current unicast bitrate to this station
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529 * @rx_packets: packets received from this station
530 * @tx_packets: packets transmitted to this station
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531 * @tx_retries: cumulative retry counts
532 * @tx_failed: number of failed transmissions (retries exceeded, no ACK)
5a5c731a 533 * @rx_dropped_misc: Dropped for un-specified reason.
1ba01458 534 * @bss_param: current BSS parameters
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535 * @generation: generation number for nl80211 dumps.
536 * This number should increase every time the list of stations
537 * changes, i.e. when a station is added or removed, so that
538 * userspace can tell whether it got a consistent snapshot.
fd5b74dc 539 */
2ec600d6 540struct station_info {
fd5b74dc 541 u32 filled;
ebe27c91 542 u32 connected_time;
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543 u32 inactive_time;
544 u32 rx_bytes;
545 u32 tx_bytes;
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546 u16 llid;
547 u16 plid;
548 u8 plink_state;
420e7fab 549 s8 signal;
541a45a1 550 s8 signal_avg;
420e7fab 551 struct rate_info txrate;
c8dcfd8a 552 struct rate_info rxrate;
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553 u32 rx_packets;
554 u32 tx_packets;
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555 u32 tx_retries;
556 u32 tx_failed;
5a5c731a 557 u32 rx_dropped_misc;
f4263c98 558 struct sta_bss_parameters bss_param;
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559
560 int generation;
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561};
562
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563/**
564 * enum monitor_flags - monitor flags
565 *
566 * Monitor interface configuration flags. Note that these must be the bits
567 * according to the nl80211 flags.
568 *
569 * @MONITOR_FLAG_FCSFAIL: pass frames with bad FCS
570 * @MONITOR_FLAG_PLCPFAIL: pass frames with bad PLCP
571 * @MONITOR_FLAG_CONTROL: pass control frames
572 * @MONITOR_FLAG_OTHER_BSS: disable BSSID filtering
573 * @MONITOR_FLAG_COOK_FRAMES: report frames after processing
574 */
575enum monitor_flags {
576 MONITOR_FLAG_FCSFAIL = 1<<NL80211_MNTR_FLAG_FCSFAIL,
577 MONITOR_FLAG_PLCPFAIL = 1<<NL80211_MNTR_FLAG_PLCPFAIL,
578 MONITOR_FLAG_CONTROL = 1<<NL80211_MNTR_FLAG_CONTROL,
579 MONITOR_FLAG_OTHER_BSS = 1<<NL80211_MNTR_FLAG_OTHER_BSS,
580 MONITOR_FLAG_COOK_FRAMES = 1<<NL80211_MNTR_FLAG_COOK_FRAMES,
581};
582
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LCC
583/**
584 * enum mpath_info_flags - mesh path information flags
585 *
586 * Used by the driver to indicate which info in &struct mpath_info it has filled
587 * in during get_station() or dump_station().
588 *
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JB
589 * @MPATH_INFO_FRAME_QLEN: @frame_qlen filled
590 * @MPATH_INFO_SN: @sn filled
591 * @MPATH_INFO_METRIC: @metric filled
592 * @MPATH_INFO_EXPTIME: @exptime filled
593 * @MPATH_INFO_DISCOVERY_TIMEOUT: @discovery_timeout filled
594 * @MPATH_INFO_DISCOVERY_RETRIES: @discovery_retries filled
595 * @MPATH_INFO_FLAGS: @flags filled
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596 */
597enum mpath_info_flags {
598 MPATH_INFO_FRAME_QLEN = BIT(0),
d19b3bf6 599 MPATH_INFO_SN = BIT(1),
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LCC
600 MPATH_INFO_METRIC = BIT(2),
601 MPATH_INFO_EXPTIME = BIT(3),
602 MPATH_INFO_DISCOVERY_TIMEOUT = BIT(4),
603 MPATH_INFO_DISCOVERY_RETRIES = BIT(5),
604 MPATH_INFO_FLAGS = BIT(6),
605};
606
607/**
608 * struct mpath_info - mesh path information
609 *
610 * Mesh path information filled by driver for get_mpath() and dump_mpath().
611 *
612 * @filled: bitfield of flags from &enum mpath_info_flags
613 * @frame_qlen: number of queued frames for this destination
d19b3bf6 614 * @sn: target sequence number
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LCC
615 * @metric: metric (cost) of this mesh path
616 * @exptime: expiration time for the mesh path from now, in msecs
617 * @flags: mesh path flags
618 * @discovery_timeout: total mesh path discovery timeout, in msecs
619 * @discovery_retries: mesh path discovery retries
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620 * @generation: generation number for nl80211 dumps.
621 * This number should increase every time the list of mesh paths
622 * changes, i.e. when a station is added or removed, so that
623 * userspace can tell whether it got a consistent snapshot.
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LCC
624 */
625struct mpath_info {
626 u32 filled;
627 u32 frame_qlen;
d19b3bf6 628 u32 sn;
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LCC
629 u32 metric;
630 u32 exptime;
631 u32 discovery_timeout;
632 u8 discovery_retries;
633 u8 flags;
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JB
634
635 int generation;
2ec600d6
LCC
636};
637
9f1ba906
JM
638/**
639 * struct bss_parameters - BSS parameters
640 *
641 * Used to change BSS parameters (mainly for AP mode).
642 *
643 * @use_cts_prot: Whether to use CTS protection
644 * (0 = no, 1 = yes, -1 = do not change)
645 * @use_short_preamble: Whether the use of short preambles is allowed
646 * (0 = no, 1 = yes, -1 = do not change)
647 * @use_short_slot_time: Whether the use of short slot time is allowed
648 * (0 = no, 1 = yes, -1 = do not change)
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JM
649 * @basic_rates: basic rates in IEEE 802.11 format
650 * (or NULL for no change)
651 * @basic_rates_len: number of basic rates
fd8aaaf3 652 * @ap_isolate: do not forward packets between connected stations
50b12f59
HS
653 * @ht_opmode: HT Operation mode
654 * (u16 = opmode, -1 = do not change)
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JM
655 */
656struct bss_parameters {
657 int use_cts_prot;
658 int use_short_preamble;
659 int use_short_slot_time;
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JM
660 u8 *basic_rates;
661 u8 basic_rates_len;
fd8aaaf3 662 int ap_isolate;
50b12f59 663 int ht_opmode;
9f1ba906 664};
2ec600d6 665
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JB
666/*
667 * struct mesh_config - 802.11s mesh configuration
668 *
669 * These parameters can be changed while the mesh is active.
670 */
93da9cc1 671struct mesh_config {
672 /* Timeouts in ms */
673 /* Mesh plink management parameters */
674 u16 dot11MeshRetryTimeout;
675 u16 dot11MeshConfirmTimeout;
676 u16 dot11MeshHoldingTimeout;
677 u16 dot11MeshMaxPeerLinks;
678 u8 dot11MeshMaxRetries;
679 u8 dot11MeshTTL;
45904f21
JC
680 /* ttl used in path selection information elements */
681 u8 element_ttl;
93da9cc1 682 bool auto_open_plinks;
683 /* HWMP parameters */
684 u8 dot11MeshHWMPmaxPREQretries;
685 u32 path_refresh_time;
686 u16 min_discovery_timeout;
687 u32 dot11MeshHWMPactivePathTimeout;
688 u16 dot11MeshHWMPpreqMinInterval;
689 u16 dot11MeshHWMPnetDiameterTraversalTime;
63c5723b 690 u8 dot11MeshHWMPRootMode;
93da9cc1 691};
692
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JB
693/**
694 * struct mesh_setup - 802.11s mesh setup configuration
695 * @mesh_id: the mesh ID
696 * @mesh_id_len: length of the mesh ID, at least 1 and at most 32 bytes
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JC
697 * @path_sel_proto: which path selection protocol to use
698 * @path_metric: which metric to use
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JC
699 * @ie: vendor information elements (optional)
700 * @ie_len: length of vendor information elements
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JC
701 * @is_authenticated: this mesh requires authentication
702 * @is_secure: this mesh uses security
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JB
703 *
704 * These parameters are fixed when the mesh is created.
705 */
706struct mesh_setup {
707 const u8 *mesh_id;
708 u8 mesh_id_len;
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JC
709 u8 path_sel_proto;
710 u8 path_metric;
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JC
711 const u8 *ie;
712 u8 ie_len;
b130e5ce 713 bool is_authenticated;
15d5dda6 714 bool is_secure;
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JB
715};
716
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JM
717/**
718 * struct ieee80211_txq_params - TX queue parameters
719 * @queue: TX queue identifier (NL80211_TXQ_Q_*)
720 * @txop: Maximum burst time in units of 32 usecs, 0 meaning disabled
721 * @cwmin: Minimum contention window [a value of the form 2^n-1 in the range
722 * 1..32767]
723 * @cwmax: Maximum contention window [a value of the form 2^n-1 in the range
724 * 1..32767]
725 * @aifs: Arbitration interframe space [0..255]
726 */
727struct ieee80211_txq_params {
728 enum nl80211_txq_q queue;
729 u16 txop;
730 u16 cwmin;
731 u16 cwmax;
732 u8 aifs;
733};
734
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JB
735/* from net/wireless.h */
736struct wiphy;
737
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JB
738/**
739 * DOC: Scanning and BSS list handling
740 *
741 * The scanning process itself is fairly simple, but cfg80211 offers quite
742 * a bit of helper functionality. To start a scan, the scan operation will
743 * be invoked with a scan definition. This scan definition contains the
744 * channels to scan, and the SSIDs to send probe requests for (including the
745 * wildcard, if desired). A passive scan is indicated by having no SSIDs to
746 * probe. Additionally, a scan request may contain extra information elements
747 * that should be added to the probe request. The IEs are guaranteed to be
748 * well-formed, and will not exceed the maximum length the driver advertised
749 * in the wiphy structure.
750 *
751 * When scanning finds a BSS, cfg80211 needs to be notified of that, because
752 * it is responsible for maintaining the BSS list; the driver should not
753 * maintain a list itself. For this notification, various functions exist.
754 *
755 * Since drivers do not maintain a BSS list, there are also a number of
756 * functions to search for a BSS and obtain information about it from the
757 * BSS structure cfg80211 maintains. The BSS list is also made available
758 * to userspace.
759 */
72bdcf34 760
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JB
761/**
762 * struct cfg80211_ssid - SSID description
763 * @ssid: the SSID
764 * @ssid_len: length of the ssid
765 */
766struct cfg80211_ssid {
767 u8 ssid[IEEE80211_MAX_SSID_LEN];
768 u8 ssid_len;
769};
770
771/**
772 * struct cfg80211_scan_request - scan request description
773 *
774 * @ssids: SSIDs to scan for (active scan only)
775 * @n_ssids: number of SSIDs
776 * @channels: channels to scan on.
ca3dbc20 777 * @n_channels: total number of channels to scan
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JM
778 * @ie: optional information element(s) to add into Probe Request or %NULL
779 * @ie_len: length of ie in octets
34850ab2 780 * @rates: bitmap of rates to advertise for each band
2a519311 781 * @wiphy: the wiphy this was for
463d0183 782 * @dev: the interface
abe37c4b 783 * @aborted: (internal) scan request was notified as aborted
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JB
784 */
785struct cfg80211_scan_request {
786 struct cfg80211_ssid *ssids;
787 int n_ssids;
2a519311 788 u32 n_channels;
de95a54b 789 const u8 *ie;
70692ad2 790 size_t ie_len;
2a519311 791
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JB
792 u32 rates[IEEE80211_NUM_BANDS];
793
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JB
794 /* internal */
795 struct wiphy *wiphy;
463d0183 796 struct net_device *dev;
667503dd 797 bool aborted;
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JB
798
799 /* keep last */
800 struct ieee80211_channel *channels[0];
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JB
801};
802
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LC
803/**
804 * struct cfg80211_sched_scan_request - scheduled scan request description
805 *
806 * @ssids: SSIDs to scan for (passed in the probe_reqs in active scans)
807 * @n_ssids: number of SSIDs
808 * @n_channels: total number of channels to scan
bbe6ad6d 809 * @interval: interval between each scheduled scan cycle
807f8a8c
LC
810 * @ie: optional information element(s) to add into Probe Request or %NULL
811 * @ie_len: length of ie in octets
812 * @wiphy: the wiphy this was for
813 * @dev: the interface
814 * @channels: channels to scan
815 */
816struct cfg80211_sched_scan_request {
817 struct cfg80211_ssid *ssids;
818 int n_ssids;
819 u32 n_channels;
bbe6ad6d 820 u32 interval;
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LC
821 const u8 *ie;
822 size_t ie_len;
823
824 /* internal */
825 struct wiphy *wiphy;
826 struct net_device *dev;
827
828 /* keep last */
829 struct ieee80211_channel *channels[0];
830};
831
2a519311
JB
832/**
833 * enum cfg80211_signal_type - signal type
834 *
835 * @CFG80211_SIGNAL_TYPE_NONE: no signal strength information available
836 * @CFG80211_SIGNAL_TYPE_MBM: signal strength in mBm (100*dBm)
837 * @CFG80211_SIGNAL_TYPE_UNSPEC: signal strength, increasing from 0 through 100
838 */
839enum cfg80211_signal_type {
840 CFG80211_SIGNAL_TYPE_NONE,
841 CFG80211_SIGNAL_TYPE_MBM,
842 CFG80211_SIGNAL_TYPE_UNSPEC,
843};
844
845/**
846 * struct cfg80211_bss - BSS description
847 *
848 * This structure describes a BSS (which may also be a mesh network)
849 * for use in scan results and similar.
850 *
abe37c4b 851 * @channel: channel this BSS is on
2a519311
JB
852 * @bssid: BSSID of the BSS
853 * @tsf: timestamp of last received update
854 * @beacon_interval: the beacon interval as from the frame
855 * @capability: the capability field in host byte order
856 * @information_elements: the information elements (Note that there
34a6eddb
JM
857 * is no guarantee that these are well-formed!); this is a pointer to
858 * either the beacon_ies or proberesp_ies depending on whether Probe
859 * Response frame has been received
2a519311 860 * @len_information_elements: total length of the information elements
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JM
861 * @beacon_ies: the information elements from the last Beacon frame
862 * @len_beacon_ies: total length of the beacon_ies
863 * @proberesp_ies: the information elements from the last Probe Response frame
864 * @len_proberesp_ies: total length of the proberesp_ies
77965c97 865 * @signal: signal strength value (type depends on the wiphy's signal_type)
78c1c7e1 866 * @free_priv: function pointer to free private data
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JB
867 * @priv: private area for driver use, has at least wiphy->bss_priv_size bytes
868 */
869struct cfg80211_bss {
870 struct ieee80211_channel *channel;
871
872 u8 bssid[ETH_ALEN];
873 u64 tsf;
874 u16 beacon_interval;
875 u16 capability;
876 u8 *information_elements;
877 size_t len_information_elements;
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JM
878 u8 *beacon_ies;
879 size_t len_beacon_ies;
880 u8 *proberesp_ies;
881 size_t len_proberesp_ies;
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JB
882
883 s32 signal;
2a519311 884
78c1c7e1 885 void (*free_priv)(struct cfg80211_bss *bss);
2a519311
JB
886 u8 priv[0] __attribute__((__aligned__(sizeof(void *))));
887};
888
517357c6
JB
889/**
890 * ieee80211_bss_get_ie - find IE with given ID
891 * @bss: the bss to search
892 * @ie: the IE ID
893 * Returns %NULL if not found.
894 */
895const u8 *ieee80211_bss_get_ie(struct cfg80211_bss *bss, u8 ie);
896
897
b23aa676
SO
898/**
899 * struct cfg80211_crypto_settings - Crypto settings
900 * @wpa_versions: indicates which, if any, WPA versions are enabled
901 * (from enum nl80211_wpa_versions)
902 * @cipher_group: group key cipher suite (or 0 if unset)
903 * @n_ciphers_pairwise: number of AP supported unicast ciphers
904 * @ciphers_pairwise: unicast key cipher suites
905 * @n_akm_suites: number of AKM suites
906 * @akm_suites: AKM suites
907 * @control_port: Whether user space controls IEEE 802.1X port, i.e.,
908 * sets/clears %NL80211_STA_FLAG_AUTHORIZED. If true, the driver is
909 * required to assume that the port is unauthorized until authorized by
910 * user space. Otherwise, port is marked authorized by default.
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911 * @control_port_ethertype: the control port protocol that should be
912 * allowed through even on unauthorized ports
913 * @control_port_no_encrypt: TRUE to prevent encryption of control port
914 * protocol frames.
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SO
915 */
916struct cfg80211_crypto_settings {
917 u32 wpa_versions;
918 u32 cipher_group;
919 int n_ciphers_pairwise;
920 u32 ciphers_pairwise[NL80211_MAX_NR_CIPHER_SUITES];
921 int n_akm_suites;
922 u32 akm_suites[NL80211_MAX_NR_AKM_SUITES];
923 bool control_port;
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JB
924 __be16 control_port_ethertype;
925 bool control_port_no_encrypt;
b23aa676
SO
926};
927
636a5d36
JM
928/**
929 * struct cfg80211_auth_request - Authentication request data
930 *
931 * This structure provides information needed to complete IEEE 802.11
932 * authentication.
19957bb3
JB
933 *
934 * @bss: The BSS to authenticate with.
636a5d36
JM
935 * @auth_type: Authentication type (algorithm)
936 * @ie: Extra IEs to add to Authentication frame or %NULL
937 * @ie_len: Length of ie buffer in octets
fffd0934
JB
938 * @key_len: length of WEP key for shared key authentication
939 * @key_idx: index of WEP key for shared key authentication
940 * @key: WEP key for shared key authentication
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JM
941 * @local_state_change: This is a request for a local state only, i.e., no
942 * Authentication frame is to be transmitted and authentication state is
943 * to be changed without having to wait for a response from the peer STA
944 * (AP).
636a5d36
JM
945 */
946struct cfg80211_auth_request {
19957bb3 947 struct cfg80211_bss *bss;
636a5d36
JM
948 const u8 *ie;
949 size_t ie_len;
19957bb3 950 enum nl80211_auth_type auth_type;
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JB
951 const u8 *key;
952 u8 key_len, key_idx;
d5cdfacb 953 bool local_state_change;
636a5d36
JM
954};
955
956/**
957 * struct cfg80211_assoc_request - (Re)Association request data
958 *
959 * This structure provides information needed to complete IEEE 802.11
960 * (re)association.
19957bb3 961 * @bss: The BSS to associate with.
636a5d36
JM
962 * @ie: Extra IEs to add to (Re)Association Request frame or %NULL
963 * @ie_len: Length of ie buffer in octets
dc6382ce 964 * @use_mfp: Use management frame protection (IEEE 802.11w) in this association
b23aa676 965 * @crypto: crypto settings
3e5d7649 966 * @prev_bssid: previous BSSID, if not %NULL use reassociate frame
636a5d36
JM
967 */
968struct cfg80211_assoc_request {
19957bb3 969 struct cfg80211_bss *bss;
3e5d7649 970 const u8 *ie, *prev_bssid;
636a5d36 971 size_t ie_len;
b23aa676 972 struct cfg80211_crypto_settings crypto;
19957bb3 973 bool use_mfp;
636a5d36
JM
974};
975
976/**
977 * struct cfg80211_deauth_request - Deauthentication request data
978 *
979 * This structure provides information needed to complete IEEE 802.11
980 * deauthentication.
981 *
19957bb3 982 * @bss: the BSS to deauthenticate from
636a5d36
JM
983 * @ie: Extra IEs to add to Deauthentication frame or %NULL
984 * @ie_len: Length of ie buffer in octets
19957bb3 985 * @reason_code: The reason code for the deauthentication
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JM
986 * @local_state_change: This is a request for a local state only, i.e., no
987 * Deauthentication frame is to be transmitted.
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JM
988 */
989struct cfg80211_deauth_request {
19957bb3 990 struct cfg80211_bss *bss;
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JM
991 const u8 *ie;
992 size_t ie_len;
19957bb3 993 u16 reason_code;
d5cdfacb 994 bool local_state_change;
636a5d36
JM
995};
996
997/**
998 * struct cfg80211_disassoc_request - Disassociation request data
999 *
1000 * This structure provides information needed to complete IEEE 802.11
1001 * disassocation.
1002 *
19957bb3 1003 * @bss: the BSS to disassociate from
636a5d36
JM
1004 * @ie: Extra IEs to add to Disassociation frame or %NULL
1005 * @ie_len: Length of ie buffer in octets
19957bb3 1006 * @reason_code: The reason code for the disassociation
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JM
1007 * @local_state_change: This is a request for a local state only, i.e., no
1008 * Disassociation frame is to be transmitted.
636a5d36
JM
1009 */
1010struct cfg80211_disassoc_request {
19957bb3 1011 struct cfg80211_bss *bss;
636a5d36
JM
1012 const u8 *ie;
1013 size_t ie_len;
19957bb3 1014 u16 reason_code;
d5cdfacb 1015 bool local_state_change;
636a5d36
JM
1016};
1017
04a773ad
JB
1018/**
1019 * struct cfg80211_ibss_params - IBSS parameters
1020 *
1021 * This structure defines the IBSS parameters for the join_ibss()
1022 * method.
1023 *
1024 * @ssid: The SSID, will always be non-null.
1025 * @ssid_len: The length of the SSID, will always be non-zero.
1026 * @bssid: Fixed BSSID requested, maybe be %NULL, if set do not
1027 * search for IBSSs with a different BSSID.
1028 * @channel: The channel to use if no IBSS can be found to join.
1029 * @channel_fixed: The channel should be fixed -- do not search for
1030 * IBSSs to join on other channels.
1031 * @ie: information element(s) to include in the beacon
1032 * @ie_len: length of that
8e30bc55 1033 * @beacon_interval: beacon interval to use
fffd0934
JB
1034 * @privacy: this is a protected network, keys will be configured
1035 * after joining
fbd2c8dc 1036 * @basic_rates: bitmap of basic rates to use when creating the IBSS
dd5b4cc7 1037 * @mcast_rate: per-band multicast rate index + 1 (0: disabled)
04a773ad
JB
1038 */
1039struct cfg80211_ibss_params {
1040 u8 *ssid;
1041 u8 *bssid;
1042 struct ieee80211_channel *channel;
1043 u8 *ie;
1044 u8 ssid_len, ie_len;
8e30bc55 1045 u16 beacon_interval;
fbd2c8dc 1046 u32 basic_rates;
04a773ad 1047 bool channel_fixed;
fffd0934 1048 bool privacy;
dd5b4cc7 1049 int mcast_rate[IEEE80211_NUM_BANDS];
04a773ad
JB
1050};
1051
b23aa676
SO
1052/**
1053 * struct cfg80211_connect_params - Connection parameters
1054 *
1055 * This structure provides information needed to complete IEEE 802.11
1056 * authentication and association.
1057 *
1058 * @channel: The channel to use or %NULL if not specified (auto-select based
1059 * on scan results)
1060 * @bssid: The AP BSSID or %NULL if not specified (auto-select based on scan
1061 * results)
1062 * @ssid: SSID
1063 * @ssid_len: Length of ssid in octets
1064 * @auth_type: Authentication type (algorithm)
abe37c4b
JB
1065 * @ie: IEs for association request
1066 * @ie_len: Length of assoc_ie in octets
b23aa676
SO
1067 * @privacy: indicates whether privacy-enabled APs should be used
1068 * @crypto: crypto settings
fffd0934
JB
1069 * @key_len: length of WEP key for shared key authentication
1070 * @key_idx: index of WEP key for shared key authentication
1071 * @key: WEP key for shared key authentication
b23aa676
SO
1072 */
1073struct cfg80211_connect_params {
1074 struct ieee80211_channel *channel;
1075 u8 *bssid;
1076 u8 *ssid;
1077 size_t ssid_len;
1078 enum nl80211_auth_type auth_type;
1079 u8 *ie;
1080 size_t ie_len;
1081 bool privacy;
1082 struct cfg80211_crypto_settings crypto;
fffd0934
JB
1083 const u8 *key;
1084 u8 key_len, key_idx;
b23aa676
SO
1085};
1086
b9a5f8ca
JM
1087/**
1088 * enum wiphy_params_flags - set_wiphy_params bitfield values
abe37c4b
JB
1089 * @WIPHY_PARAM_RETRY_SHORT: wiphy->retry_short has changed
1090 * @WIPHY_PARAM_RETRY_LONG: wiphy->retry_long has changed
1091 * @WIPHY_PARAM_FRAG_THRESHOLD: wiphy->frag_threshold has changed
1092 * @WIPHY_PARAM_RTS_THRESHOLD: wiphy->rts_threshold has changed
1093 * @WIPHY_PARAM_COVERAGE_CLASS: coverage class changed
b9a5f8ca
JM
1094 */
1095enum wiphy_params_flags {
1096 WIPHY_PARAM_RETRY_SHORT = 1 << 0,
1097 WIPHY_PARAM_RETRY_LONG = 1 << 1,
1098 WIPHY_PARAM_FRAG_THRESHOLD = 1 << 2,
1099 WIPHY_PARAM_RTS_THRESHOLD = 1 << 3,
81077e82 1100 WIPHY_PARAM_COVERAGE_CLASS = 1 << 4,
b9a5f8ca
JM
1101};
1102
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JB
1103/*
1104 * cfg80211_bitrate_mask - masks for bitrate control
1105 */
1106struct cfg80211_bitrate_mask {
9930380f
JB
1107 struct {
1108 u32 legacy;
37eb0b16
JM
1109 /* TODO: add support for masking MCS rates; e.g.: */
1110 /* u8 mcs[IEEE80211_HT_MCS_MASK_LEN]; */
9930380f 1111 } control[IEEE80211_NUM_BANDS];
9930380f 1112};
67fbb16b
SO
1113/**
1114 * struct cfg80211_pmksa - PMK Security Association
1115 *
1116 * This structure is passed to the set/del_pmksa() method for PMKSA
1117 * caching.
1118 *
1119 * @bssid: The AP's BSSID.
1120 * @pmkid: The PMK material itself.
1121 */
1122struct cfg80211_pmksa {
1123 u8 *bssid;
1124 u8 *pmkid;
1125};
9930380f 1126
ff1b6e69
JB
1127/**
1128 * struct cfg80211_wowlan_trig_pkt_pattern - packet pattern
1129 * @mask: bitmask where to match pattern and where to ignore bytes,
1130 * one bit per byte, in same format as nl80211
1131 * @pattern: bytes to match where bitmask is 1
1132 * @pattern_len: length of pattern (in bytes)
1133 *
1134 * Internal note: @mask and @pattern are allocated in one chunk of
1135 * memory, free @mask only!
1136 */
1137struct cfg80211_wowlan_trig_pkt_pattern {
1138 u8 *mask, *pattern;
1139 int pattern_len;
1140};
1141
1142/**
1143 * struct cfg80211_wowlan - Wake on Wireless-LAN support info
1144 *
1145 * This structure defines the enabled WoWLAN triggers for the device.
1146 * @any: wake up on any activity -- special trigger if device continues
1147 * operating as normal during suspend
1148 * @disconnect: wake up if getting disconnected
1149 * @magic_pkt: wake up on receiving magic packet
1150 * @patterns: wake up on receiving packet matching a pattern
1151 * @n_patterns: number of patterns
77dbbb13
JB
1152 * @gtk_rekey_failure: wake up on GTK rekey failure
1153 * @eap_identity_req: wake up on EAP identity request packet
1154 * @four_way_handshake: wake up on 4-way handshake
1155 * @rfkill_release: wake up when rfkill is released
ff1b6e69
JB
1156 */
1157struct cfg80211_wowlan {
77dbbb13
JB
1158 bool any, disconnect, magic_pkt, gtk_rekey_failure,
1159 eap_identity_req, four_way_handshake,
1160 rfkill_release;
ff1b6e69
JB
1161 struct cfg80211_wowlan_trig_pkt_pattern *patterns;
1162 int n_patterns;
1163};
1164
e5497d76
JB
1165/**
1166 * struct cfg80211_gtk_rekey_data - rekey data
1167 * @kek: key encryption key
1168 * @kck: key confirmation key
1169 * @replay_ctr: replay counter
1170 */
1171struct cfg80211_gtk_rekey_data {
1172 u8 kek[NL80211_KEK_LEN];
1173 u8 kck[NL80211_KCK_LEN];
1174 u8 replay_ctr[NL80211_REPLAY_CTR_LEN];
1175};
1176
704232c2
JB
1177/**
1178 * struct cfg80211_ops - backend description for wireless configuration
1179 *
1180 * This struct is registered by fullmac card drivers and/or wireless stacks
1181 * in order to handle configuration requests on their interfaces.
1182 *
1183 * All callbacks except where otherwise noted should return 0
1184 * on success or a negative error code.
1185 *
43fb45cb
JB
1186 * All operations are currently invoked under rtnl for consistency with the
1187 * wireless extensions but this is subject to reevaluation as soon as this
1188 * code is used more widely and we have a first user without wext.
1189 *
ff1b6e69
JB
1190 * @suspend: wiphy device needs to be suspended. The variable @wow will
1191 * be %NULL or contain the enabled Wake-on-Wireless triggers that are
1192 * configured for the device.
0378b3f1
JB
1193 * @resume: wiphy device needs to be resumed
1194 *
60719ffd 1195 * @add_virtual_intf: create a new virtual interface with the given name,
463d0183 1196 * must set the struct wireless_dev's iftype. Beware: You must create
f9e10ce4
JB
1197 * the new netdev in the wiphy's network namespace! Returns the netdev,
1198 * or an ERR_PTR.
704232c2
JB
1199 *
1200 * @del_virtual_intf: remove the virtual interface determined by ifindex.
55682965 1201 *
60719ffd
JB
1202 * @change_virtual_intf: change type/configuration of virtual interface,
1203 * keep the struct wireless_dev's iftype updated.
55682965 1204 *
41ade00f
JB
1205 * @add_key: add a key with the given parameters. @mac_addr will be %NULL
1206 * when adding a group key.
1207 *
1208 * @get_key: get information about the key with the given parameters.
1209 * @mac_addr will be %NULL when requesting information for a group
1210 * key. All pointers given to the @callback function need not be valid
e3da574a
JB
1211 * after it returns. This function should return an error if it is
1212 * not possible to retrieve the key, -ENOENT if it doesn't exist.
41ade00f
JB
1213 *
1214 * @del_key: remove a key given the @mac_addr (%NULL for a group key)
e3da574a 1215 * and @key_index, return -ENOENT if the key doesn't exist.
41ade00f
JB
1216 *
1217 * @set_default_key: set the default key on an interface
ed1b6cc7 1218 *
3cfcf6ac
JM
1219 * @set_default_mgmt_key: set the default management frame key on an interface
1220 *
e5497d76
JB
1221 * @set_rekey_data: give the data necessary for GTK rekeying to the driver
1222 *
ed1b6cc7
JB
1223 * @add_beacon: Add a beacon with given parameters, @head, @interval
1224 * and @dtim_period will be valid, @tail is optional.
1225 * @set_beacon: Change the beacon parameters for an access point mode
1226 * interface. This should reject the call when no beacon has been
1227 * configured.
1228 * @del_beacon: Remove beacon configuration and stop sending the beacon.
5727ef1b
JB
1229 *
1230 * @add_station: Add a new station.
5727ef1b 1231 * @del_station: Remove a station; @mac may be NULL to remove all stations.
5727ef1b 1232 * @change_station: Modify a given station.
abe37c4b
JB
1233 * @get_station: get station information for the station identified by @mac
1234 * @dump_station: dump station callback -- resume dump at index @idx
1235 *
1236 * @add_mpath: add a fixed mesh path
1237 * @del_mpath: delete a given mesh path
1238 * @change_mpath: change a given mesh path
1239 * @get_mpath: get a mesh path for the given parameters
1240 * @dump_mpath: dump mesh path callback -- resume dump at index @idx
f52555a4
JB
1241 * @join_mesh: join the mesh network with the specified parameters
1242 * @leave_mesh: leave the current mesh network
2ec600d6 1243 *
24bdd9f4 1244 * @get_mesh_config: Get the current mesh configuration
93da9cc1 1245 *
24bdd9f4 1246 * @update_mesh_config: Update mesh parameters on a running mesh.
93da9cc1 1247 * The mask is a bitfield which tells us which parameters to
1248 * set, and which to leave alone.
1249 *
9f1ba906 1250 * @change_bss: Modify parameters for a given BSS.
31888487
JM
1251 *
1252 * @set_txq_params: Set TX queue parameters
72bdcf34 1253 *
f444de05
JB
1254 * @set_channel: Set channel for a given wireless interface. Some devices
1255 * may support multi-channel operation (by channel hopping) so cfg80211
1256 * doesn't verify much. Note, however, that the passed netdev may be
1257 * %NULL as well if the user requested changing the channel for the
1258 * device itself, or for a monitor interface.
9aed3cc1 1259 *
2a519311
JB
1260 * @scan: Request to do a scan. If returning zero, the scan request is given
1261 * the driver, and will be valid until passed to cfg80211_scan_done().
1262 * For scan results, call cfg80211_inform_bss(); you can call this outside
1263 * the scan/scan_done bracket too.
636a5d36
JM
1264 *
1265 * @auth: Request to authenticate with the specified peer
1266 * @assoc: Request to (re)associate with the specified peer
1267 * @deauth: Request to deauthenticate from the specified peer
1268 * @disassoc: Request to disassociate from the specified peer
04a773ad 1269 *
b23aa676
SO
1270 * @connect: Connect to the ESS with the specified parameters. When connected,
1271 * call cfg80211_connect_result() with status code %WLAN_STATUS_SUCCESS.
1272 * If the connection fails for some reason, call cfg80211_connect_result()
1273 * with the status from the AP.
1274 * @disconnect: Disconnect from the BSS/ESS.
1275 *
04a773ad
JB
1276 * @join_ibss: Join the specified IBSS (or create if necessary). Once done, call
1277 * cfg80211_ibss_joined(), also call that function when changing BSSID due
1278 * to a merge.
1279 * @leave_ibss: Leave the IBSS.
b9a5f8ca
JM
1280 *
1281 * @set_wiphy_params: Notify that wiphy parameters have changed;
1282 * @changed bitfield (see &enum wiphy_params_flags) describes which values
1283 * have changed. The actual parameter values are available in
1284 * struct wiphy. If returning an error, no value should be changed.
7643a2c3
JB
1285 *
1286 * @set_tx_power: set the transmit power according to the parameters
1287 * @get_tx_power: store the current TX power into the dbm variable;
1f87f7d3
JB
1288 * return 0 if successful
1289 *
abe37c4b
JB
1290 * @set_wds_peer: set the WDS peer for a WDS interface
1291 *
1f87f7d3
JB
1292 * @rfkill_poll: polls the hw rfkill line, use cfg80211 reporting
1293 * functions to adjust rfkill hw state
aff89a9b 1294 *
61fa713c
HS
1295 * @dump_survey: get site survey information.
1296 *
9588bbd5
JM
1297 * @remain_on_channel: Request the driver to remain awake on the specified
1298 * channel for the specified duration to complete an off-channel
1299 * operation (e.g., public action frame exchange). When the driver is
1300 * ready on the requested channel, it must indicate this with an event
1301 * notification by calling cfg80211_ready_on_channel().
1302 * @cancel_remain_on_channel: Cancel an on-going remain-on-channel operation.
1303 * This allows the operation to be terminated prior to timeout based on
1304 * the duration value.
f7ca38df
JB
1305 * @mgmt_tx: Transmit a management frame.
1306 * @mgmt_tx_cancel_wait: Cancel the wait time from transmitting a management
1307 * frame on another channel
9588bbd5 1308 *
aff89a9b 1309 * @testmode_cmd: run a test mode command
71063f0e
WYG
1310 * @testmode_dump: Implement a test mode dump. The cb->args[2] and up may be
1311 * used by the function, but 0 and 1 must not be touched. Additionally,
1312 * return error codes other than -ENOBUFS and -ENOENT will terminate the
1313 * dump and return to userspace with an error, so be careful. If any data
1314 * was passed in from userspace then the data/len arguments will be present
1315 * and point to the data contained in %NL80211_ATTR_TESTDATA.
67fbb16b 1316 *
abe37c4b
JB
1317 * @set_bitrate_mask: set the bitrate mask configuration
1318 *
67fbb16b
SO
1319 * @set_pmksa: Cache a PMKID for a BSSID. This is mostly useful for fullmac
1320 * devices running firmwares capable of generating the (re) association
1321 * RSN IE. It allows for faster roaming between WPA2 BSSIDs.
1322 * @del_pmksa: Delete a cached PMKID.
1323 * @flush_pmksa: Flush all cached PMKIDs.
9043f3b8
JO
1324 * @set_power_mgmt: Configure WLAN power management. A timeout value of -1
1325 * allows the driver to adjust the dynamic ps timeout value.
d6dc1a38 1326 * @set_cqm_rssi_config: Configure connection quality monitor RSSI threshold.
807f8a8c
LC
1327 * @sched_scan_start: Tell the driver to start a scheduled scan.
1328 * @sched_scan_stop: Tell the driver to stop an ongoing scheduled
1329 * scan. The driver_initiated flag specifies whether the driver
1330 * itself has informed that the scan has stopped.
67fbb16b 1331 *
271733cf
JB
1332 * @mgmt_frame_register: Notify driver that a management frame type was
1333 * registered. Note that this callback may not sleep, and cannot run
1334 * concurrently with itself.
547025d5
BR
1335 *
1336 * @set_antenna: Set antenna configuration (tx_ant, rx_ant) on the device.
1337 * Parameters are bitmaps of allowed antennas to use for TX/RX. Drivers may
1338 * reject TX/RX mask combinations they cannot support by returning -EINVAL
1339 * (also see nl80211.h @NL80211_ATTR_WIPHY_ANTENNA_TX).
1340 *
1341 * @get_antenna: Get current antenna configuration from device (tx_ant, rx_ant).
3677713b
JL
1342 *
1343 * @set_ringparam: Set tx and rx ring sizes.
1344 *
1345 * @get_ringparam: Get tx and rx ring current and maximum sizes.
704232c2
JB
1346 */
1347struct cfg80211_ops {
ff1b6e69 1348 int (*suspend)(struct wiphy *wiphy, struct cfg80211_wowlan *wow);
0378b3f1
JB
1349 int (*resume)(struct wiphy *wiphy);
1350
f9e10ce4
JB
1351 struct net_device * (*add_virtual_intf)(struct wiphy *wiphy,
1352 char *name,
1353 enum nl80211_iftype type,
1354 u32 *flags,
1355 struct vif_params *params);
463d0183 1356 int (*del_virtual_intf)(struct wiphy *wiphy, struct net_device *dev);
e36d56b6
JB
1357 int (*change_virtual_intf)(struct wiphy *wiphy,
1358 struct net_device *dev,
2ec600d6
LCC
1359 enum nl80211_iftype type, u32 *flags,
1360 struct vif_params *params);
41ade00f
JB
1361
1362 int (*add_key)(struct wiphy *wiphy, struct net_device *netdev,
e31b8213 1363 u8 key_index, bool pairwise, const u8 *mac_addr,
41ade00f
JB
1364 struct key_params *params);
1365 int (*get_key)(struct wiphy *wiphy, struct net_device *netdev,
e31b8213
JB
1366 u8 key_index, bool pairwise, const u8 *mac_addr,
1367 void *cookie,
41ade00f
JB
1368 void (*callback)(void *cookie, struct key_params*));
1369 int (*del_key)(struct wiphy *wiphy, struct net_device *netdev,
e31b8213 1370 u8 key_index, bool pairwise, const u8 *mac_addr);
41ade00f
JB
1371 int (*set_default_key)(struct wiphy *wiphy,
1372 struct net_device *netdev,
dbd2fd65 1373 u8 key_index, bool unicast, bool multicast);
3cfcf6ac
JM
1374 int (*set_default_mgmt_key)(struct wiphy *wiphy,
1375 struct net_device *netdev,
1376 u8 key_index);
ed1b6cc7
JB
1377
1378 int (*add_beacon)(struct wiphy *wiphy, struct net_device *dev,
1379 struct beacon_parameters *info);
1380 int (*set_beacon)(struct wiphy *wiphy, struct net_device *dev,
1381 struct beacon_parameters *info);
1382 int (*del_beacon)(struct wiphy *wiphy, struct net_device *dev);
5727ef1b
JB
1383
1384
1385 int (*add_station)(struct wiphy *wiphy, struct net_device *dev,
1386 u8 *mac, struct station_parameters *params);
1387 int (*del_station)(struct wiphy *wiphy, struct net_device *dev,
1388 u8 *mac);
1389 int (*change_station)(struct wiphy *wiphy, struct net_device *dev,
1390 u8 *mac, struct station_parameters *params);
fd5b74dc 1391 int (*get_station)(struct wiphy *wiphy, struct net_device *dev,
2ec600d6
LCC
1392 u8 *mac, struct station_info *sinfo);
1393 int (*dump_station)(struct wiphy *wiphy, struct net_device *dev,
1394 int idx, u8 *mac, struct station_info *sinfo);
1395
1396 int (*add_mpath)(struct wiphy *wiphy, struct net_device *dev,
1397 u8 *dst, u8 *next_hop);
1398 int (*del_mpath)(struct wiphy *wiphy, struct net_device *dev,
1399 u8 *dst);
1400 int (*change_mpath)(struct wiphy *wiphy, struct net_device *dev,
1401 u8 *dst, u8 *next_hop);
1402 int (*get_mpath)(struct wiphy *wiphy, struct net_device *dev,
1403 u8 *dst, u8 *next_hop,
1404 struct mpath_info *pinfo);
1405 int (*dump_mpath)(struct wiphy *wiphy, struct net_device *dev,
1406 int idx, u8 *dst, u8 *next_hop,
1407 struct mpath_info *pinfo);
24bdd9f4 1408 int (*get_mesh_config)(struct wiphy *wiphy,
93da9cc1 1409 struct net_device *dev,
1410 struct mesh_config *conf);
24bdd9f4 1411 int (*update_mesh_config)(struct wiphy *wiphy,
29cbe68c
JB
1412 struct net_device *dev, u32 mask,
1413 const struct mesh_config *nconf);
1414 int (*join_mesh)(struct wiphy *wiphy, struct net_device *dev,
1415 const struct mesh_config *conf,
1416 const struct mesh_setup *setup);
1417 int (*leave_mesh)(struct wiphy *wiphy, struct net_device *dev);
1418
9f1ba906
JM
1419 int (*change_bss)(struct wiphy *wiphy, struct net_device *dev,
1420 struct bss_parameters *params);
31888487
JM
1421
1422 int (*set_txq_params)(struct wiphy *wiphy,
1423 struct ieee80211_txq_params *params);
72bdcf34 1424
f444de05 1425 int (*set_channel)(struct wiphy *wiphy, struct net_device *dev,
72bdcf34 1426 struct ieee80211_channel *chan,
094d05dc 1427 enum nl80211_channel_type channel_type);
9aed3cc1 1428
2a519311
JB
1429 int (*scan)(struct wiphy *wiphy, struct net_device *dev,
1430 struct cfg80211_scan_request *request);
636a5d36
JM
1431
1432 int (*auth)(struct wiphy *wiphy, struct net_device *dev,
1433 struct cfg80211_auth_request *req);
1434 int (*assoc)(struct wiphy *wiphy, struct net_device *dev,
1435 struct cfg80211_assoc_request *req);
1436 int (*deauth)(struct wiphy *wiphy, struct net_device *dev,
667503dd
JB
1437 struct cfg80211_deauth_request *req,
1438 void *cookie);
636a5d36 1439 int (*disassoc)(struct wiphy *wiphy, struct net_device *dev,
667503dd
JB
1440 struct cfg80211_disassoc_request *req,
1441 void *cookie);
04a773ad 1442
b23aa676
SO
1443 int (*connect)(struct wiphy *wiphy, struct net_device *dev,
1444 struct cfg80211_connect_params *sme);
1445 int (*disconnect)(struct wiphy *wiphy, struct net_device *dev,
1446 u16 reason_code);
1447
04a773ad
JB
1448 int (*join_ibss)(struct wiphy *wiphy, struct net_device *dev,
1449 struct cfg80211_ibss_params *params);
1450 int (*leave_ibss)(struct wiphy *wiphy, struct net_device *dev);
b9a5f8ca
JM
1451
1452 int (*set_wiphy_params)(struct wiphy *wiphy, u32 changed);
7643a2c3
JB
1453
1454 int (*set_tx_power)(struct wiphy *wiphy,
fa61cf70 1455 enum nl80211_tx_power_setting type, int mbm);
7643a2c3 1456 int (*get_tx_power)(struct wiphy *wiphy, int *dbm);
1f87f7d3 1457
ab737a4f 1458 int (*set_wds_peer)(struct wiphy *wiphy, struct net_device *dev,
388ac775 1459 const u8 *addr);
ab737a4f 1460
1f87f7d3 1461 void (*rfkill_poll)(struct wiphy *wiphy);
aff89a9b
JB
1462
1463#ifdef CONFIG_NL80211_TESTMODE
1464 int (*testmode_cmd)(struct wiphy *wiphy, void *data, int len);
71063f0e
WYG
1465 int (*testmode_dump)(struct wiphy *wiphy, struct sk_buff *skb,
1466 struct netlink_callback *cb,
1467 void *data, int len);
aff89a9b 1468#endif
bc92afd9 1469
9930380f
JB
1470 int (*set_bitrate_mask)(struct wiphy *wiphy,
1471 struct net_device *dev,
1472 const u8 *peer,
1473 const struct cfg80211_bitrate_mask *mask);
1474
61fa713c
HS
1475 int (*dump_survey)(struct wiphy *wiphy, struct net_device *netdev,
1476 int idx, struct survey_info *info);
1477
67fbb16b
SO
1478 int (*set_pmksa)(struct wiphy *wiphy, struct net_device *netdev,
1479 struct cfg80211_pmksa *pmksa);
1480 int (*del_pmksa)(struct wiphy *wiphy, struct net_device *netdev,
1481 struct cfg80211_pmksa *pmksa);
1482 int (*flush_pmksa)(struct wiphy *wiphy, struct net_device *netdev);
1483
9588bbd5
JM
1484 int (*remain_on_channel)(struct wiphy *wiphy,
1485 struct net_device *dev,
1486 struct ieee80211_channel *chan,
1487 enum nl80211_channel_type channel_type,
1488 unsigned int duration,
1489 u64 *cookie);
1490 int (*cancel_remain_on_channel)(struct wiphy *wiphy,
1491 struct net_device *dev,
1492 u64 cookie);
1493
2e161f78 1494 int (*mgmt_tx)(struct wiphy *wiphy, struct net_device *dev,
f7ca38df 1495 struct ieee80211_channel *chan, bool offchan,
026331c4 1496 enum nl80211_channel_type channel_type,
f7ca38df 1497 bool channel_type_valid, unsigned int wait,
026331c4 1498 const u8 *buf, size_t len, u64 *cookie);
f7ca38df
JB
1499 int (*mgmt_tx_cancel_wait)(struct wiphy *wiphy,
1500 struct net_device *dev,
1501 u64 cookie);
026331c4 1502
bc92afd9
JB
1503 int (*set_power_mgmt)(struct wiphy *wiphy, struct net_device *dev,
1504 bool enabled, int timeout);
d6dc1a38
JO
1505
1506 int (*set_cqm_rssi_config)(struct wiphy *wiphy,
1507 struct net_device *dev,
1508 s32 rssi_thold, u32 rssi_hyst);
271733cf
JB
1509
1510 void (*mgmt_frame_register)(struct wiphy *wiphy,
1511 struct net_device *dev,
1512 u16 frame_type, bool reg);
afe0cbf8
BR
1513
1514 int (*set_antenna)(struct wiphy *wiphy, u32 tx_ant, u32 rx_ant);
1515 int (*get_antenna)(struct wiphy *wiphy, u32 *tx_ant, u32 *rx_ant);
3677713b
JL
1516
1517 int (*set_ringparam)(struct wiphy *wiphy, u32 tx, u32 rx);
1518 void (*get_ringparam)(struct wiphy *wiphy,
1519 u32 *tx, u32 *tx_max, u32 *rx, u32 *rx_max);
807f8a8c
LC
1520
1521 int (*sched_scan_start)(struct wiphy *wiphy,
1522 struct net_device *dev,
1523 struct cfg80211_sched_scan_request *request);
85a9994a 1524 int (*sched_scan_stop)(struct wiphy *wiphy, struct net_device *dev);
e5497d76
JB
1525
1526 int (*set_rekey_data)(struct wiphy *wiphy, struct net_device *dev,
1527 struct cfg80211_gtk_rekey_data *data);
704232c2
JB
1528};
1529
d3236553
JB
1530/*
1531 * wireless hardware and networking interfaces structures
1532 * and registration/helper functions
1533 */
1534
1535/**
5be83de5
JB
1536 * enum wiphy_flags - wiphy capability flags
1537 *
1538 * @WIPHY_FLAG_CUSTOM_REGULATORY: tells us the driver for this device
d3236553
JB
1539 * has its own custom regulatory domain and cannot identify the
1540 * ISO / IEC 3166 alpha2 it belongs to. When this is enabled
1541 * we will disregard the first regulatory hint (when the
1542 * initiator is %REGDOM_SET_BY_CORE).
5be83de5
JB
1543 * @WIPHY_FLAG_STRICT_REGULATORY: tells us the driver for this device will
1544 * ignore regulatory domain settings until it gets its own regulatory
749b527b
LR
1545 * domain via its regulatory_hint() unless the regulatory hint is
1546 * from a country IE. After its gets its own regulatory domain it will
1547 * only allow further regulatory domain settings to further enhance
1548 * compliance. For example if channel 13 and 14 are disabled by this
1549 * regulatory domain no user regulatory domain can enable these channels
1550 * at a later time. This can be used for devices which do not have
1551 * calibration information guaranteed for frequencies or settings
1552 * outside of its regulatory domain.
5be83de5
JB
1553 * @WIPHY_FLAG_DISABLE_BEACON_HINTS: enable this if your driver needs to ensure
1554 * that passive scan flags and beaconing flags may not be lifted by
1555 * cfg80211 due to regulatory beacon hints. For more information on beacon
37184244 1556 * hints read the documenation for regulatory_hint_found_beacon()
5be83de5
JB
1557 * @WIPHY_FLAG_NETNS_OK: if not set, do not allow changing the netns of this
1558 * wiphy at all
7527a782
JB
1559 * @WIPHY_FLAG_ENFORCE_COMBINATIONS: Set this flag to enforce interface
1560 * combinations for this device. This flag is used for backward
1561 * compatibility only until all drivers advertise combinations and
1562 * they will always be enforced.
5be83de5
JB
1563 * @WIPHY_FLAG_PS_ON_BY_DEFAULT: if set to true, powersave will be enabled
1564 * by default -- this flag will be set depending on the kernel's default
1565 * on wiphy_new(), but can be changed by the driver if it has a good
1566 * reason to override the default
9bc383de
JB
1567 * @WIPHY_FLAG_4ADDR_AP: supports 4addr mode even on AP (with a single station
1568 * on a VLAN interface)
1569 * @WIPHY_FLAG_4ADDR_STATION: supports 4addr mode even as a station
c0692b8f
JB
1570 * @WIPHY_FLAG_CONTROL_PORT_PROTOCOL: This device supports setting the
1571 * control port protocol ethertype. The device also honours the
1572 * control_port_no_encrypt flag.
e31b8213 1573 * @WIPHY_FLAG_IBSS_RSN: The device supports IBSS RSN.
15d5dda6
JC
1574 * @WIPHY_FLAG_MESH_AUTH: The device supports mesh authentication by routing
1575 * auth frames to userspace. See @NL80211_MESH_SETUP_USERSPACE_AUTH.
1ba01458 1576 * @WIPHY_FLAG_SUPPORTS_SCHED_SCAN: The device supports scheduled scans.
5be83de5
JB
1577 */
1578enum wiphy_flags {
c0692b8f
JB
1579 WIPHY_FLAG_CUSTOM_REGULATORY = BIT(0),
1580 WIPHY_FLAG_STRICT_REGULATORY = BIT(1),
1581 WIPHY_FLAG_DISABLE_BEACON_HINTS = BIT(2),
1582 WIPHY_FLAG_NETNS_OK = BIT(3),
1583 WIPHY_FLAG_PS_ON_BY_DEFAULT = BIT(4),
1584 WIPHY_FLAG_4ADDR_AP = BIT(5),
1585 WIPHY_FLAG_4ADDR_STATION = BIT(6),
1586 WIPHY_FLAG_CONTROL_PORT_PROTOCOL = BIT(7),
309075cf 1587 WIPHY_FLAG_IBSS_RSN = BIT(8),
15d5dda6 1588 WIPHY_FLAG_MESH_AUTH = BIT(10),
807f8a8c 1589 WIPHY_FLAG_SUPPORTS_SCHED_SCAN = BIT(11),
7527a782
JB
1590 WIPHY_FLAG_ENFORCE_COMBINATIONS = BIT(12),
1591};
1592
1593/**
1594 * struct ieee80211_iface_limit - limit on certain interface types
1595 * @max: maximum number of interfaces of these types
1596 * @types: interface types (bits)
1597 */
1598struct ieee80211_iface_limit {
1599 u16 max;
1600 u16 types;
1601};
1602
1603/**
1604 * struct ieee80211_iface_combination - possible interface combination
1605 * @limits: limits for the given interface types
1606 * @n_limits: number of limitations
1607 * @num_different_channels: can use up to this many different channels
1608 * @max_interfaces: maximum number of interfaces in total allowed in this
1609 * group
1610 * @beacon_int_infra_match: In this combination, the beacon intervals
1611 * between infrastructure and AP types must match. This is required
1612 * only in special cases.
1613 *
1614 * These examples can be expressed as follows:
1615 *
1616 * Allow #STA <= 1, #AP <= 1, matching BI, channels = 1, 2 total:
1617 *
1618 * struct ieee80211_iface_limit limits1[] = {
1619 * { .max = 1, .types = BIT(NL80211_IFTYPE_STATION), },
1620 * { .max = 1, .types = BIT(NL80211_IFTYPE_AP}, },
1621 * };
1622 * struct ieee80211_iface_combination combination1 = {
1623 * .limits = limits1,
1624 * .n_limits = ARRAY_SIZE(limits1),
1625 * .max_interfaces = 2,
1626 * .beacon_int_infra_match = true,
1627 * };
1628 *
1629 *
1630 * Allow #{AP, P2P-GO} <= 8, channels = 1, 8 total:
1631 *
1632 * struct ieee80211_iface_limit limits2[] = {
1633 * { .max = 8, .types = BIT(NL80211_IFTYPE_AP) |
1634 * BIT(NL80211_IFTYPE_P2P_GO), },
1635 * };
1636 * struct ieee80211_iface_combination combination2 = {
1637 * .limits = limits2,
1638 * .n_limits = ARRAY_SIZE(limits2),
1639 * .max_interfaces = 8,
1640 * .num_different_channels = 1,
1641 * };
1642 *
1643 *
1644 * Allow #STA <= 1, #{P2P-client,P2P-GO} <= 3 on two channels, 4 total.
1645 * This allows for an infrastructure connection and three P2P connections.
1646 *
1647 * struct ieee80211_iface_limit limits3[] = {
1648 * { .max = 1, .types = BIT(NL80211_IFTYPE_STATION), },
1649 * { .max = 3, .types = BIT(NL80211_IFTYPE_P2P_GO) |
1650 * BIT(NL80211_IFTYPE_P2P_CLIENT), },
1651 * };
1652 * struct ieee80211_iface_combination combination3 = {
1653 * .limits = limits3,
1654 * .n_limits = ARRAY_SIZE(limits3),
1655 * .max_interfaces = 4,
1656 * .num_different_channels = 2,
1657 * };
1658 */
1659struct ieee80211_iface_combination {
1660 const struct ieee80211_iface_limit *limits;
1661 u32 num_different_channels;
1662 u16 max_interfaces;
1663 u8 n_limits;
1664 bool beacon_int_infra_match;
5be83de5
JB
1665};
1666
ef15aac6
JB
1667struct mac_address {
1668 u8 addr[ETH_ALEN];
1669};
1670
2e161f78
JB
1671struct ieee80211_txrx_stypes {
1672 u16 tx, rx;
1673};
1674
ff1b6e69
JB
1675/**
1676 * enum wiphy_wowlan_support_flags - WoWLAN support flags
1677 * @WIPHY_WOWLAN_ANY: supports wakeup for the special "any"
1678 * trigger that keeps the device operating as-is and
1679 * wakes up the host on any activity, for example a
1680 * received packet that passed filtering; note that the
1681 * packet should be preserved in that case
1682 * @WIPHY_WOWLAN_MAGIC_PKT: supports wakeup on magic packet
1683 * (see nl80211.h)
1684 * @WIPHY_WOWLAN_DISCONNECT: supports wakeup on disconnect
77dbbb13
JB
1685 * @WIPHY_WOWLAN_SUPPORTS_GTK_REKEY: supports GTK rekeying while asleep
1686 * @WIPHY_WOWLAN_GTK_REKEY_FAILURE: supports wakeup on GTK rekey failure
1687 * @WIPHY_WOWLAN_EAP_IDENTITY_REQ: supports wakeup on EAP identity request
1688 * @WIPHY_WOWLAN_4WAY_HANDSHAKE: supports wakeup on 4-way handshake failure
1689 * @WIPHY_WOWLAN_RFKILL_RELEASE: supports wakeup on RF-kill release
ff1b6e69
JB
1690 */
1691enum wiphy_wowlan_support_flags {
77dbbb13
JB
1692 WIPHY_WOWLAN_ANY = BIT(0),
1693 WIPHY_WOWLAN_MAGIC_PKT = BIT(1),
1694 WIPHY_WOWLAN_DISCONNECT = BIT(2),
1695 WIPHY_WOWLAN_SUPPORTS_GTK_REKEY = BIT(3),
1696 WIPHY_WOWLAN_GTK_REKEY_FAILURE = BIT(4),
1697 WIPHY_WOWLAN_EAP_IDENTITY_REQ = BIT(5),
1698 WIPHY_WOWLAN_4WAY_HANDSHAKE = BIT(6),
1699 WIPHY_WOWLAN_RFKILL_RELEASE = BIT(7),
ff1b6e69
JB
1700};
1701
1702/**
1703 * struct wiphy_wowlan_support - WoWLAN support data
1704 * @flags: see &enum wiphy_wowlan_support_flags
1705 * @n_patterns: number of supported wakeup patterns
1706 * (see nl80211.h for the pattern definition)
1707 * @pattern_max_len: maximum length of each pattern
1708 * @pattern_min_len: minimum length of each pattern
1709 */
1710struct wiphy_wowlan_support {
1711 u32 flags;
1712 int n_patterns;
1713 int pattern_max_len;
1714 int pattern_min_len;
1715};
1716
5be83de5
JB
1717/**
1718 * struct wiphy - wireless hardware description
2784fe91
LR
1719 * @reg_notifier: the driver's regulatory notification callback,
1720 * note that if your driver uses wiphy_apply_custom_regulatory()
1721 * the reg_notifier's request can be passed as NULL
d3236553
JB
1722 * @regd: the driver's regulatory domain, if one was requested via
1723 * the regulatory_hint() API. This can be used by the driver
1724 * on the reg_notifier() if it chooses to ignore future
1725 * regulatory domain changes caused by other drivers.
1726 * @signal_type: signal type reported in &struct cfg80211_bss.
1727 * @cipher_suites: supported cipher suites
1728 * @n_cipher_suites: number of supported cipher suites
b9a5f8ca
JM
1729 * @retry_short: Retry limit for short frames (dot11ShortRetryLimit)
1730 * @retry_long: Retry limit for long frames (dot11LongRetryLimit)
1731 * @frag_threshold: Fragmentation threshold (dot11FragmentationThreshold);
1732 * -1 = fragmentation disabled, only odd values >= 256 used
1733 * @rts_threshold: RTS threshold (dot11RTSThreshold); -1 = RTS/CTS disabled
abe37c4b 1734 * @_net: the network namespace this wiphy currently lives in
ef15aac6
JB
1735 * @perm_addr: permanent MAC address of this device
1736 * @addr_mask: If the device supports multiple MAC addresses by masking,
1737 * set this to a mask with variable bits set to 1, e.g. if the last
1738 * four bits are variable then set it to 00:...:00:0f. The actual
1739 * variable bits shall be determined by the interfaces added, with
1740 * interfaces not matching the mask being rejected to be brought up.
1741 * @n_addresses: number of addresses in @addresses.
1742 * @addresses: If the device has more than one address, set this pointer
1743 * to a list of addresses (6 bytes each). The first one will be used
1744 * by default for perm_addr. In this case, the mask should be set to
1745 * all-zeroes. In this case it is assumed that the device can handle
1746 * the same number of arbitrary MAC addresses.
abe37c4b
JB
1747 * @debugfsdir: debugfs directory used for this wiphy, will be renamed
1748 * automatically on wiphy renames
1749 * @dev: (virtual) struct device for this wiphy
1750 * @wext: wireless extension handlers
1751 * @priv: driver private data (sized according to wiphy_new() parameter)
1752 * @interface_modes: bitmask of interfaces types valid for this wiphy,
1753 * must be set by driver
7527a782
JB
1754 * @iface_combinations: Valid interface combinations array, should not
1755 * list single interface types.
1756 * @n_iface_combinations: number of entries in @iface_combinations array.
1757 * @software_iftypes: bitmask of software interface types, these are not
1758 * subject to any restrictions since they are purely managed in SW.
abe37c4b
JB
1759 * @flags: wiphy flags, see &enum wiphy_flags
1760 * @bss_priv_size: each BSS struct has private data allocated with it,
1761 * this variable determines its size
1762 * @max_scan_ssids: maximum number of SSIDs the device can scan for in
1763 * any given scan
93b6aa69
LC
1764 * @max_sched_scan_ssids: maximum number of SSIDs the device can scan
1765 * for in any given scheduled scan
abe37c4b
JB
1766 * @max_scan_ie_len: maximum length of user-controlled IEs device can
1767 * add to probe request frames transmitted during a scan, must not
1768 * include fixed IEs like supported rates
5a865bad
LC
1769 * @max_sched_scan_ie_len: same as max_scan_ie_len, but for scheduled
1770 * scans
abe37c4b
JB
1771 * @coverage_class: current coverage class
1772 * @fw_version: firmware version for ethtool reporting
1773 * @hw_version: hardware version for ethtool reporting
1774 * @max_num_pmkids: maximum number of PMKIDs supported by device
1775 * @privid: a pointer that drivers can use to identify if an arbitrary
1776 * wiphy is theirs, e.g. in global notifiers
1777 * @bands: information about bands/channels supported by this device
2e161f78
JB
1778 *
1779 * @mgmt_stypes: bitmasks of frame subtypes that can be subscribed to or
1780 * transmitted through nl80211, points to an array indexed by interface
1781 * type
a7ffac95 1782 *
7f531e03
BR
1783 * @available_antennas_tx: bitmap of antennas which are available to be
1784 * configured as TX antennas. Antenna configuration commands will be
1785 * rejected unless this or @available_antennas_rx is set.
1786 *
1787 * @available_antennas_rx: bitmap of antennas which are available to be
1788 * configured as RX antennas. Antenna configuration commands will be
1789 * rejected unless this or @available_antennas_tx is set.
a293911d
JB
1790 *
1791 * @max_remain_on_channel_duration: Maximum time a remain-on-channel operation
1792 * may request, if implemented.
ff1b6e69
JB
1793 *
1794 * @wowlan: WoWLAN support information
d3236553
JB
1795 */
1796struct wiphy {
1797 /* assign these fields before you register the wiphy */
1798
ef15aac6 1799 /* permanent MAC address(es) */
d3236553 1800 u8 perm_addr[ETH_ALEN];
ef15aac6
JB
1801 u8 addr_mask[ETH_ALEN];
1802
ef15aac6 1803 struct mac_address *addresses;
d3236553 1804
2e161f78
JB
1805 const struct ieee80211_txrx_stypes *mgmt_stypes;
1806
7527a782
JB
1807 const struct ieee80211_iface_combination *iface_combinations;
1808 int n_iface_combinations;
1809 u16 software_iftypes;
1810
2e161f78
JB
1811 u16 n_addresses;
1812
d3236553
JB
1813 /* Supported interface modes, OR together BIT(NL80211_IFTYPE_...) */
1814 u16 interface_modes;
1815
5be83de5 1816 u32 flags;
463d0183 1817
d3236553
JB
1818 enum cfg80211_signal_type signal_type;
1819
1820 int bss_priv_size;
1821 u8 max_scan_ssids;
93b6aa69 1822 u8 max_sched_scan_ssids;
d3236553 1823 u16 max_scan_ie_len;
5a865bad 1824 u16 max_sched_scan_ie_len;
d3236553
JB
1825
1826 int n_cipher_suites;
1827 const u32 *cipher_suites;
1828
b9a5f8ca
JM
1829 u8 retry_short;
1830 u8 retry_long;
1831 u32 frag_threshold;
1832 u32 rts_threshold;
81077e82 1833 u8 coverage_class;
b9a5f8ca 1834
dfce95f5
KV
1835 char fw_version[ETHTOOL_BUSINFO_LEN];
1836 u32 hw_version;
1837
ff1b6e69
JB
1838 struct wiphy_wowlan_support wowlan;
1839
a293911d
JB
1840 u16 max_remain_on_channel_duration;
1841
67fbb16b
SO
1842 u8 max_num_pmkids;
1843
7f531e03
BR
1844 u32 available_antennas_tx;
1845 u32 available_antennas_rx;
a7ffac95 1846
d3236553
JB
1847 /* If multiple wiphys are registered and you're handed e.g.
1848 * a regular netdev with assigned ieee80211_ptr, you won't
1849 * know whether it points to a wiphy your driver has registered
1850 * or not. Assign this to something global to your driver to
1851 * help determine whether you own this wiphy or not. */
cf5aa2f1 1852 const void *privid;
d3236553
JB
1853
1854 struct ieee80211_supported_band *bands[IEEE80211_NUM_BANDS];
1855
1856 /* Lets us get back the wiphy on the callback */
1857 int (*reg_notifier)(struct wiphy *wiphy,
1858 struct regulatory_request *request);
1859
1860 /* fields below are read-only, assigned by cfg80211 */
1861
1862 const struct ieee80211_regdomain *regd;
1863
1864 /* the item in /sys/class/ieee80211/ points to this,
1865 * you need use set_wiphy_dev() (see below) */
1866 struct device dev;
1867
1868 /* dir in debugfs: ieee80211/<wiphyname> */
1869 struct dentry *debugfsdir;
1870
463d0183
JB
1871#ifdef CONFIG_NET_NS
1872 /* the network namespace this phy lives in currently */
1873 struct net *_net;
1874#endif
1875
3d23e349
JB
1876#ifdef CONFIG_CFG80211_WEXT
1877 const struct iw_handler_def *wext;
1878#endif
1879
d3236553
JB
1880 char priv[0] __attribute__((__aligned__(NETDEV_ALIGN)));
1881};
1882
463d0183
JB
1883static inline struct net *wiphy_net(struct wiphy *wiphy)
1884{
c2d9ba9b 1885 return read_pnet(&wiphy->_net);
463d0183
JB
1886}
1887
1888static inline void wiphy_net_set(struct wiphy *wiphy, struct net *net)
1889{
c2d9ba9b 1890 write_pnet(&wiphy->_net, net);
463d0183 1891}
463d0183 1892
d3236553
JB
1893/**
1894 * wiphy_priv - return priv from wiphy
1895 *
1896 * @wiphy: the wiphy whose priv pointer to return
1897 */
1898static inline void *wiphy_priv(struct wiphy *wiphy)
1899{
1900 BUG_ON(!wiphy);
1901 return &wiphy->priv;
1902}
1903
f1f74825
DK
1904/**
1905 * priv_to_wiphy - return the wiphy containing the priv
1906 *
1907 * @priv: a pointer previously returned by wiphy_priv
1908 */
1909static inline struct wiphy *priv_to_wiphy(void *priv)
1910{
1911 BUG_ON(!priv);
1912 return container_of(priv, struct wiphy, priv);
1913}
1914
d3236553
JB
1915/**
1916 * set_wiphy_dev - set device pointer for wiphy
1917 *
1918 * @wiphy: The wiphy whose device to bind
1919 * @dev: The device to parent it to
1920 */
1921static inline void set_wiphy_dev(struct wiphy *wiphy, struct device *dev)
1922{
1923 wiphy->dev.parent = dev;
1924}
1925
1926/**
1927 * wiphy_dev - get wiphy dev pointer
1928 *
1929 * @wiphy: The wiphy whose device struct to look up
1930 */
1931static inline struct device *wiphy_dev(struct wiphy *wiphy)
1932{
1933 return wiphy->dev.parent;
1934}
1935
1936/**
1937 * wiphy_name - get wiphy name
1938 *
1939 * @wiphy: The wiphy whose name to return
1940 */
e1db74fc 1941static inline const char *wiphy_name(const struct wiphy *wiphy)
d3236553
JB
1942{
1943 return dev_name(&wiphy->dev);
1944}
1945
1946/**
1947 * wiphy_new - create a new wiphy for use with cfg80211
1948 *
1949 * @ops: The configuration operations for this device
1950 * @sizeof_priv: The size of the private area to allocate
1951 *
1952 * Create a new wiphy and associate the given operations with it.
1953 * @sizeof_priv bytes are allocated for private use.
1954 *
1955 * The returned pointer must be assigned to each netdev's
1956 * ieee80211_ptr for proper operation.
1957 */
3dcf670b 1958struct wiphy *wiphy_new(const struct cfg80211_ops *ops, int sizeof_priv);
d3236553
JB
1959
1960/**
1961 * wiphy_register - register a wiphy with cfg80211
1962 *
1963 * @wiphy: The wiphy to register.
1964 *
1965 * Returns a non-negative wiphy index or a negative error code.
1966 */
1967extern int wiphy_register(struct wiphy *wiphy);
1968
1969/**
1970 * wiphy_unregister - deregister a wiphy from cfg80211
1971 *
1972 * @wiphy: The wiphy to unregister.
1973 *
1974 * After this call, no more requests can be made with this priv
1975 * pointer, but the call may sleep to wait for an outstanding
1976 * request that is being handled.
1977 */
1978extern void wiphy_unregister(struct wiphy *wiphy);
1979
1980/**
1981 * wiphy_free - free wiphy
1982 *
1983 * @wiphy: The wiphy to free
1984 */
1985extern void wiphy_free(struct wiphy *wiphy);
1986
fffd0934 1987/* internal structs */
6829c878 1988struct cfg80211_conn;
19957bb3 1989struct cfg80211_internal_bss;
fffd0934 1990struct cfg80211_cached_keys;
19957bb3
JB
1991
1992#define MAX_AUTH_BSSES 4
6829c878 1993
d3236553
JB
1994/**
1995 * struct wireless_dev - wireless per-netdev state
1996 *
1997 * This structure must be allocated by the driver/stack
1998 * that uses the ieee80211_ptr field in struct net_device
1999 * (this is intentional so it can be allocated along with
2000 * the netdev.)
2001 *
2002 * @wiphy: pointer to hardware description
2003 * @iftype: interface type
2004 * @list: (private) Used to collect the interfaces
2005 * @netdev: (private) Used to reference back to the netdev
2006 * @current_bss: (private) Used by the internal configuration code
f444de05
JB
2007 * @channel: (private) Used by the internal configuration code to track
2008 * user-set AP, monitor and WDS channels for wireless extensions
d3236553
JB
2009 * @bssid: (private) Used by the internal configuration code
2010 * @ssid: (private) Used by the internal configuration code
2011 * @ssid_len: (private) Used by the internal configuration code
29cbe68c
JB
2012 * @mesh_id_len: (private) Used by the internal configuration code
2013 * @mesh_id_up_len: (private) Used by the internal configuration code
d3236553 2014 * @wext: (private) Used by the internal wireless extensions compat code
9bc383de
JB
2015 * @use_4addr: indicates 4addr mode is used on this interface, must be
2016 * set by driver (if supported) on add_interface BEFORE registering the
2017 * netdev and may otherwise be used by driver read-only, will be update
2018 * by cfg80211 on change_interface
2e161f78
JB
2019 * @mgmt_registrations: list of registrations for management frames
2020 * @mgmt_registrations_lock: lock for the list
abe37c4b
JB
2021 * @mtx: mutex used to lock data in this struct
2022 * @cleanup_work: work struct used for cleanup that can't be done directly
56d1893d
JB
2023 * @beacon_interval: beacon interval used on this device for transmitting
2024 * beacons, 0 when not valid
d3236553
JB
2025 */
2026struct wireless_dev {
2027 struct wiphy *wiphy;
2028 enum nl80211_iftype iftype;
2029
667503dd 2030 /* the remainder of this struct should be private to cfg80211 */
d3236553
JB
2031 struct list_head list;
2032 struct net_device *netdev;
2033
2e161f78
JB
2034 struct list_head mgmt_registrations;
2035 spinlock_t mgmt_registrations_lock;
026331c4 2036
667503dd
JB
2037 struct mutex mtx;
2038
ad002395
JB
2039 struct work_struct cleanup_work;
2040
9bc383de
JB
2041 bool use_4addr;
2042
b23aa676 2043 /* currently used for IBSS and SME - might be rearranged later */
d3236553 2044 u8 ssid[IEEE80211_MAX_SSID_LEN];
29cbe68c 2045 u8 ssid_len, mesh_id_len, mesh_id_up_len;
b23aa676
SO
2046 enum {
2047 CFG80211_SME_IDLE,
6829c878 2048 CFG80211_SME_CONNECTING,
b23aa676
SO
2049 CFG80211_SME_CONNECTED,
2050 } sme_state;
6829c878 2051 struct cfg80211_conn *conn;
fffd0934 2052 struct cfg80211_cached_keys *connect_keys;
d3236553 2053
667503dd
JB
2054 struct list_head event_list;
2055 spinlock_t event_lock;
2056
19957bb3
JB
2057 struct cfg80211_internal_bss *authtry_bsses[MAX_AUTH_BSSES];
2058 struct cfg80211_internal_bss *auth_bsses[MAX_AUTH_BSSES];
2059 struct cfg80211_internal_bss *current_bss; /* associated / joined */
f444de05 2060 struct ieee80211_channel *channel;
19957bb3 2061
ffb9eb3d
KV
2062 bool ps;
2063 int ps_timeout;
2064
56d1893d
JB
2065 int beacon_interval;
2066
3d23e349 2067#ifdef CONFIG_CFG80211_WEXT
d3236553 2068 /* wext data */
cbe8fa9c 2069 struct {
c238c8ac
JB
2070 struct cfg80211_ibss_params ibss;
2071 struct cfg80211_connect_params connect;
fffd0934 2072 struct cfg80211_cached_keys *keys;
f2129354
JB
2073 u8 *ie;
2074 size_t ie_len;
f401a6f7 2075 u8 bssid[ETH_ALEN], prev_bssid[ETH_ALEN];
f2129354 2076 u8 ssid[IEEE80211_MAX_SSID_LEN];
08645126 2077 s8 default_key, default_mgmt_key;
ffb9eb3d 2078 bool prev_bssid_valid;
cbe8fa9c 2079 } wext;
d3236553
JB
2080#endif
2081};
2082
2083/**
2084 * wdev_priv - return wiphy priv from wireless_dev
2085 *
2086 * @wdev: The wireless device whose wiphy's priv pointer to return
2087 */
2088static inline void *wdev_priv(struct wireless_dev *wdev)
2089{
2090 BUG_ON(!wdev);
2091 return wiphy_priv(wdev->wiphy);
2092}
2093
d70e9693
JB
2094/**
2095 * DOC: Utility functions
2096 *
2097 * cfg80211 offers a number of utility functions that can be useful.
d3236553
JB
2098 */
2099
2100/**
2101 * ieee80211_channel_to_frequency - convert channel number to frequency
abe37c4b 2102 * @chan: channel number
59eb21a6 2103 * @band: band, necessary due to channel number overlap
d3236553 2104 */
59eb21a6 2105extern int ieee80211_channel_to_frequency(int chan, enum ieee80211_band band);
d3236553
JB
2106
2107/**
2108 * ieee80211_frequency_to_channel - convert frequency to channel number
abe37c4b 2109 * @freq: center frequency
d3236553
JB
2110 */
2111extern int ieee80211_frequency_to_channel(int freq);
2112
2113/*
2114 * Name indirection necessary because the ieee80211 code also has
2115 * a function named "ieee80211_get_channel", so if you include
2116 * cfg80211's header file you get cfg80211's version, if you try
2117 * to include both header files you'll (rightfully!) get a symbol
2118 * clash.
2119 */
2120extern struct ieee80211_channel *__ieee80211_get_channel(struct wiphy *wiphy,
2121 int freq);
2122/**
2123 * ieee80211_get_channel - get channel struct from wiphy for specified frequency
abe37c4b
JB
2124 * @wiphy: the struct wiphy to get the channel for
2125 * @freq: the center frequency of the channel
d3236553
JB
2126 */
2127static inline struct ieee80211_channel *
2128ieee80211_get_channel(struct wiphy *wiphy, int freq)
2129{
2130 return __ieee80211_get_channel(wiphy, freq);
2131}
2132
2133/**
2134 * ieee80211_get_response_rate - get basic rate for a given rate
2135 *
2136 * @sband: the band to look for rates in
2137 * @basic_rates: bitmap of basic rates
2138 * @bitrate: the bitrate for which to find the basic rate
2139 *
2140 * This function returns the basic rate corresponding to a given
2141 * bitrate, that is the next lower bitrate contained in the basic
2142 * rate map, which is, for this function, given as a bitmap of
2143 * indices of rates in the band's bitrate table.
2144 */
2145struct ieee80211_rate *
2146ieee80211_get_response_rate(struct ieee80211_supported_band *sband,
2147 u32 basic_rates, int bitrate);
2148
2149/*
2150 * Radiotap parsing functions -- for controlled injection support
2151 *
2152 * Implemented in net/wireless/radiotap.c
2153 * Documentation in Documentation/networking/radiotap-headers.txt
2154 */
2155
33e5a2f7
JB
2156struct radiotap_align_size {
2157 uint8_t align:4, size:4;
2158};
2159
2160struct ieee80211_radiotap_namespace {
2161 const struct radiotap_align_size *align_size;
2162 int n_bits;
2163 uint32_t oui;
2164 uint8_t subns;
2165};
2166
2167struct ieee80211_radiotap_vendor_namespaces {
2168 const struct ieee80211_radiotap_namespace *ns;
2169 int n_ns;
2170};
2171
d3236553
JB
2172/**
2173 * struct ieee80211_radiotap_iterator - tracks walk thru present radiotap args
33e5a2f7
JB
2174 * @this_arg_index: index of current arg, valid after each successful call
2175 * to ieee80211_radiotap_iterator_next()
2176 * @this_arg: pointer to current radiotap arg; it is valid after each
2177 * call to ieee80211_radiotap_iterator_next() but also after
2178 * ieee80211_radiotap_iterator_init() where it will point to
2179 * the beginning of the actual data portion
2180 * @this_arg_size: length of the current arg, for convenience
2181 * @current_namespace: pointer to the current namespace definition
2182 * (or internally %NULL if the current namespace is unknown)
2183 * @is_radiotap_ns: indicates whether the current namespace is the default
2184 * radiotap namespace or not
2185 *
33e5a2f7
JB
2186 * @_rtheader: pointer to the radiotap header we are walking through
2187 * @_max_length: length of radiotap header in cpu byte ordering
2188 * @_arg_index: next argument index
2189 * @_arg: next argument pointer
2190 * @_next_bitmap: internal pointer to next present u32
2191 * @_bitmap_shifter: internal shifter for curr u32 bitmap, b0 set == arg present
2192 * @_vns: vendor namespace definitions
2193 * @_next_ns_data: beginning of the next namespace's data
2194 * @_reset_on_ext: internal; reset the arg index to 0 when going to the
2195 * next bitmap word
2196 *
2197 * Describes the radiotap parser state. Fields prefixed with an underscore
2198 * must not be used by users of the parser, only by the parser internally.
d3236553
JB
2199 */
2200
2201struct ieee80211_radiotap_iterator {
33e5a2f7
JB
2202 struct ieee80211_radiotap_header *_rtheader;
2203 const struct ieee80211_radiotap_vendor_namespaces *_vns;
2204 const struct ieee80211_radiotap_namespace *current_namespace;
2205
2206 unsigned char *_arg, *_next_ns_data;
67272440 2207 __le32 *_next_bitmap;
33e5a2f7
JB
2208
2209 unsigned char *this_arg;
d3236553 2210 int this_arg_index;
33e5a2f7 2211 int this_arg_size;
d3236553 2212
33e5a2f7
JB
2213 int is_radiotap_ns;
2214
2215 int _max_length;
2216 int _arg_index;
2217 uint32_t _bitmap_shifter;
2218 int _reset_on_ext;
d3236553
JB
2219};
2220
2221extern int ieee80211_radiotap_iterator_init(
33e5a2f7
JB
2222 struct ieee80211_radiotap_iterator *iterator,
2223 struct ieee80211_radiotap_header *radiotap_header,
2224 int max_length, const struct ieee80211_radiotap_vendor_namespaces *vns);
d3236553
JB
2225
2226extern int ieee80211_radiotap_iterator_next(
33e5a2f7
JB
2227 struct ieee80211_radiotap_iterator *iterator);
2228
d3236553 2229
e31a16d6
ZY
2230extern const unsigned char rfc1042_header[6];
2231extern const unsigned char bridge_tunnel_header[6];
2232
2233/**
2234 * ieee80211_get_hdrlen_from_skb - get header length from data
2235 *
2236 * Given an skb with a raw 802.11 header at the data pointer this function
2237 * returns the 802.11 header length in bytes (not including encryption
2238 * headers). If the data in the sk_buff is too short to contain a valid 802.11
2239 * header the function returns 0.
2240 *
2241 * @skb: the frame
2242 */
2243unsigned int ieee80211_get_hdrlen_from_skb(const struct sk_buff *skb);
2244
2245/**
2246 * ieee80211_hdrlen - get header length in bytes from frame control
2247 * @fc: frame control field in little-endian format
2248 */
633adf1a 2249unsigned int __attribute_const__ ieee80211_hdrlen(__le16 fc);
e31a16d6 2250
d70e9693
JB
2251/**
2252 * DOC: Data path helpers
2253 *
2254 * In addition to generic utilities, cfg80211 also offers
2255 * functions that help implement the data path for devices
2256 * that do not do the 802.11/802.3 conversion on the device.
2257 */
2258
e31a16d6
ZY
2259/**
2260 * ieee80211_data_to_8023 - convert an 802.11 data frame to 802.3
2261 * @skb: the 802.11 data frame
2262 * @addr: the device MAC address
2263 * @iftype: the virtual interface type
2264 */
eaf85ca7 2265int ieee80211_data_to_8023(struct sk_buff *skb, const u8 *addr,
e31a16d6
ZY
2266 enum nl80211_iftype iftype);
2267
2268/**
2269 * ieee80211_data_from_8023 - convert an 802.3 frame to 802.11
2270 * @skb: the 802.3 frame
2271 * @addr: the device MAC address
2272 * @iftype: the virtual interface type
2273 * @bssid: the network bssid (used only for iftype STATION and ADHOC)
2274 * @qos: build 802.11 QoS data frame
2275 */
eaf85ca7 2276int ieee80211_data_from_8023(struct sk_buff *skb, const u8 *addr,
e31a16d6
ZY
2277 enum nl80211_iftype iftype, u8 *bssid, bool qos);
2278
eaf85ca7
ZY
2279/**
2280 * ieee80211_amsdu_to_8023s - decode an IEEE 802.11n A-MSDU frame
2281 *
2282 * Decode an IEEE 802.11n A-MSDU frame and convert it to a list of
2283 * 802.3 frames. The @list will be empty if the decode fails. The
2284 * @skb is consumed after the function returns.
2285 *
2286 * @skb: The input IEEE 802.11n A-MSDU frame.
2287 * @list: The output list of 802.3 frames. It must be allocated and
2288 * initialized by by the caller.
2289 * @addr: The device MAC address.
2290 * @iftype: The device interface type.
2291 * @extra_headroom: The hardware extra headroom for SKBs in the @list.
8b3becad 2292 * @has_80211_header: Set it true if SKB is with IEEE 802.11 header.
eaf85ca7
ZY
2293 */
2294void ieee80211_amsdu_to_8023s(struct sk_buff *skb, struct sk_buff_head *list,
2295 const u8 *addr, enum nl80211_iftype iftype,
8b3becad
YAP
2296 const unsigned int extra_headroom,
2297 bool has_80211_header);
eaf85ca7 2298
e31a16d6
ZY
2299/**
2300 * cfg80211_classify8021d - determine the 802.1p/1d tag for a data frame
2301 * @skb: the data frame
2302 */
2303unsigned int cfg80211_classify8021d(struct sk_buff *skb);
2304
c21dbf92
JB
2305/**
2306 * cfg80211_find_ie - find information element in data
2307 *
2308 * @eid: element ID
2309 * @ies: data consisting of IEs
2310 * @len: length of data
2311 *
2312 * This function will return %NULL if the element ID could
2313 * not be found or if the element is invalid (claims to be
2314 * longer than the given data), or a pointer to the first byte
2315 * of the requested element, that is the byte containing the
2316 * element ID. There are no checks on the element length
2317 * other than having to fit into the given data.
2318 */
2319const u8 *cfg80211_find_ie(u8 eid, const u8 *ies, int len);
2320
d70e9693
JB
2321/**
2322 * DOC: Regulatory enforcement infrastructure
2323 *
2324 * TODO
d3236553
JB
2325 */
2326
2327/**
2328 * regulatory_hint - driver hint to the wireless core a regulatory domain
2329 * @wiphy: the wireless device giving the hint (used only for reporting
2330 * conflicts)
2331 * @alpha2: the ISO/IEC 3166 alpha2 the driver claims its regulatory domain
2332 * should be in. If @rd is set this should be NULL. Note that if you
2333 * set this to NULL you should still set rd->alpha2 to some accepted
2334 * alpha2.
2335 *
2336 * Wireless drivers can use this function to hint to the wireless core
2337 * what it believes should be the current regulatory domain by
2338 * giving it an ISO/IEC 3166 alpha2 country code it knows its regulatory
2339 * domain should be in or by providing a completely build regulatory domain.
2340 * If the driver provides an ISO/IEC 3166 alpha2 userspace will be queried
2341 * for a regulatory domain structure for the respective country.
2342 *
2343 * The wiphy must have been registered to cfg80211 prior to this call.
2344 * For cfg80211 drivers this means you must first use wiphy_register(),
2345 * for mac80211 drivers you must first use ieee80211_register_hw().
2346 *
2347 * Drivers should check the return value, its possible you can get
2348 * an -ENOMEM.
2349 */
2350extern int regulatory_hint(struct wiphy *wiphy, const char *alpha2);
2351
d3236553
JB
2352/**
2353 * wiphy_apply_custom_regulatory - apply a custom driver regulatory domain
2354 * @wiphy: the wireless device we want to process the regulatory domain on
2355 * @regd: the custom regulatory domain to use for this wiphy
2356 *
2357 * Drivers can sometimes have custom regulatory domains which do not apply
2358 * to a specific country. Drivers can use this to apply such custom regulatory
2359 * domains. This routine must be called prior to wiphy registration. The
2360 * custom regulatory domain will be trusted completely and as such previous
2361 * default channel settings will be disregarded. If no rule is found for a
2362 * channel on the regulatory domain the channel will be disabled.
2363 */
2364extern void wiphy_apply_custom_regulatory(
2365 struct wiphy *wiphy,
2366 const struct ieee80211_regdomain *regd);
2367
2368/**
2369 * freq_reg_info - get regulatory information for the given frequency
2370 * @wiphy: the wiphy for which we want to process this rule for
2371 * @center_freq: Frequency in KHz for which we want regulatory information for
038659e7
LR
2372 * @desired_bw_khz: the desired max bandwidth you want to use per
2373 * channel. Note that this is still 20 MHz if you want to use HT40
2374 * as HT40 makes use of two channels for its 40 MHz width bandwidth.
2375 * If set to 0 we'll assume you want the standard 20 MHz.
d3236553
JB
2376 * @reg_rule: the regulatory rule which we have for this frequency
2377 *
2378 * Use this function to get the regulatory rule for a specific frequency on
2379 * a given wireless device. If the device has a specific regulatory domain
2380 * it wants to follow we respect that unless a country IE has been received
2381 * and processed already.
2382 *
2383 * Returns 0 if it was able to find a valid regulatory rule which does
2384 * apply to the given center_freq otherwise it returns non-zero. It will
2385 * also return -ERANGE if we determine the given center_freq does not even have
2386 * a regulatory rule for a frequency range in the center_freq's band. See
2387 * freq_in_rule_band() for our current definition of a band -- this is purely
2388 * subjective and right now its 802.11 specific.
2389 */
038659e7
LR
2390extern int freq_reg_info(struct wiphy *wiphy,
2391 u32 center_freq,
2392 u32 desired_bw_khz,
d3236553
JB
2393 const struct ieee80211_reg_rule **reg_rule);
2394
2395/*
2396 * Temporary wext handlers & helper functions
2397 *
2398 * In the future cfg80211 will simply assign the entire wext handler
2399 * structure to netdevs it manages, but we're not there yet.
2400 */
fee52678
JB
2401int cfg80211_wext_giwname(struct net_device *dev,
2402 struct iw_request_info *info,
2403 char *name, char *extra);
e60c7744
JB
2404int cfg80211_wext_siwmode(struct net_device *dev, struct iw_request_info *info,
2405 u32 *mode, char *extra);
2406int cfg80211_wext_giwmode(struct net_device *dev, struct iw_request_info *info,
2407 u32 *mode, char *extra);
2a519311
JB
2408int cfg80211_wext_siwscan(struct net_device *dev,
2409 struct iw_request_info *info,
2410 union iwreq_data *wrqu, char *extra);
2411int cfg80211_wext_giwscan(struct net_device *dev,
2412 struct iw_request_info *info,
2413 struct iw_point *data, char *extra);
691597cb
JB
2414int cfg80211_wext_siwmlme(struct net_device *dev,
2415 struct iw_request_info *info,
2416 struct iw_point *data, char *extra);
4aa188e1
JB
2417int cfg80211_wext_giwrange(struct net_device *dev,
2418 struct iw_request_info *info,
2419 struct iw_point *data, char *extra);
f2129354
JB
2420int cfg80211_wext_siwgenie(struct net_device *dev,
2421 struct iw_request_info *info,
2422 struct iw_point *data, char *extra);
2423int cfg80211_wext_siwauth(struct net_device *dev,
2424 struct iw_request_info *info,
2425 struct iw_param *data, char *extra);
2426int cfg80211_wext_giwauth(struct net_device *dev,
2427 struct iw_request_info *info,
2428 struct iw_param *data, char *extra);
2429
0e82ffe3
JB
2430int cfg80211_wext_siwfreq(struct net_device *dev,
2431 struct iw_request_info *info,
2432 struct iw_freq *freq, char *extra);
2433int cfg80211_wext_giwfreq(struct net_device *dev,
2434 struct iw_request_info *info,
2435 struct iw_freq *freq, char *extra);
1f9298f9
JB
2436int cfg80211_wext_siwessid(struct net_device *dev,
2437 struct iw_request_info *info,
2438 struct iw_point *data, char *ssid);
2439int cfg80211_wext_giwessid(struct net_device *dev,
2440 struct iw_request_info *info,
2441 struct iw_point *data, char *ssid);
9930380f
JB
2442int cfg80211_wext_siwrate(struct net_device *dev,
2443 struct iw_request_info *info,
2444 struct iw_param *rate, char *extra);
2445int cfg80211_wext_giwrate(struct net_device *dev,
2446 struct iw_request_info *info,
2447 struct iw_param *rate, char *extra);
2448
b9a5f8ca
JM
2449int cfg80211_wext_siwrts(struct net_device *dev,
2450 struct iw_request_info *info,
2451 struct iw_param *rts, char *extra);
2452int cfg80211_wext_giwrts(struct net_device *dev,
2453 struct iw_request_info *info,
2454 struct iw_param *rts, char *extra);
2455int cfg80211_wext_siwfrag(struct net_device *dev,
2456 struct iw_request_info *info,
2457 struct iw_param *frag, char *extra);
2458int cfg80211_wext_giwfrag(struct net_device *dev,
2459 struct iw_request_info *info,
2460 struct iw_param *frag, char *extra);
2461int cfg80211_wext_siwretry(struct net_device *dev,
2462 struct iw_request_info *info,
2463 struct iw_param *retry, char *extra);
2464int cfg80211_wext_giwretry(struct net_device *dev,
2465 struct iw_request_info *info,
2466 struct iw_param *retry, char *extra);
08645126
JB
2467int cfg80211_wext_siwencodeext(struct net_device *dev,
2468 struct iw_request_info *info,
2469 struct iw_point *erq, char *extra);
2470int cfg80211_wext_siwencode(struct net_device *dev,
2471 struct iw_request_info *info,
2472 struct iw_point *erq, char *keybuf);
2473int cfg80211_wext_giwencode(struct net_device *dev,
2474 struct iw_request_info *info,
2475 struct iw_point *erq, char *keybuf);
7643a2c3
JB
2476int cfg80211_wext_siwtxpower(struct net_device *dev,
2477 struct iw_request_info *info,
2478 union iwreq_data *data, char *keybuf);
2479int cfg80211_wext_giwtxpower(struct net_device *dev,
2480 struct iw_request_info *info,
2481 union iwreq_data *data, char *keybuf);
8990646d 2482struct iw_statistics *cfg80211_wireless_stats(struct net_device *dev);
b9a5f8ca 2483
bc92afd9
JB
2484int cfg80211_wext_siwpower(struct net_device *dev,
2485 struct iw_request_info *info,
2486 struct iw_param *wrq, char *extra);
2487int cfg80211_wext_giwpower(struct net_device *dev,
2488 struct iw_request_info *info,
2489 struct iw_param *wrq, char *extra);
2490
562e4822
JB
2491int cfg80211_wext_siwap(struct net_device *dev,
2492 struct iw_request_info *info,
2493 struct sockaddr *ap_addr, char *extra);
2494int cfg80211_wext_giwap(struct net_device *dev,
2495 struct iw_request_info *info,
2496 struct sockaddr *ap_addr, char *extra);
ab737a4f 2497
c28991a0
JL
2498int cfg80211_wext_siwpmksa(struct net_device *dev,
2499 struct iw_request_info *info,
2500 struct iw_point *data, char *extra);
2501
d3236553
JB
2502/*
2503 * callbacks for asynchronous cfg80211 methods, notification
2504 * functions and BSS handling helpers
2505 */
2506
2a519311
JB
2507/**
2508 * cfg80211_scan_done - notify that scan finished
2509 *
2510 * @request: the corresponding scan request
2511 * @aborted: set to true if the scan was aborted for any reason,
2512 * userspace will be notified of that
2513 */
2514void cfg80211_scan_done(struct cfg80211_scan_request *request, bool aborted);
2515
807f8a8c
LC
2516/**
2517 * cfg80211_sched_scan_results - notify that new scan results are available
2518 *
2519 * @wiphy: the wiphy which got scheduled scan results
2520 */
2521void cfg80211_sched_scan_results(struct wiphy *wiphy);
2522
2523/**
2524 * cfg80211_sched_scan_stopped - notify that the scheduled scan has stopped
2525 *
2526 * @wiphy: the wiphy on which the scheduled scan stopped
2527 *
2528 * The driver can call this function to inform cfg80211 that the
2529 * scheduled scan had to be stopped, for whatever reason. The driver
2530 * is then called back via the sched_scan_stop operation when done.
2531 */
2532void cfg80211_sched_scan_stopped(struct wiphy *wiphy);
2533
2a519311 2534/**
abe37c4b 2535 * cfg80211_inform_bss_frame - inform cfg80211 of a received BSS frame
2a519311
JB
2536 *
2537 * @wiphy: the wiphy reporting the BSS
abe37c4b
JB
2538 * @channel: The channel the frame was received on
2539 * @mgmt: the management frame (probe response or beacon)
2540 * @len: length of the management frame
77965c97 2541 * @signal: the signal strength, type depends on the wiphy's signal_type
2a519311
JB
2542 * @gfp: context flags
2543 *
2544 * This informs cfg80211 that BSS information was found and
2545 * the BSS should be updated/added.
2546 */
2547struct cfg80211_bss*
2548cfg80211_inform_bss_frame(struct wiphy *wiphy,
2549 struct ieee80211_channel *channel,
2550 struct ieee80211_mgmt *mgmt, size_t len,
77965c97 2551 s32 signal, gfp_t gfp);
2a519311 2552
abe37c4b
JB
2553/**
2554 * cfg80211_inform_bss - inform cfg80211 of a new BSS
2555 *
2556 * @wiphy: the wiphy reporting the BSS
2557 * @channel: The channel the frame was received on
2558 * @bssid: the BSSID of the BSS
2559 * @timestamp: the TSF timestamp sent by the peer
2560 * @capability: the capability field sent by the peer
2561 * @beacon_interval: the beacon interval announced by the peer
2562 * @ie: additional IEs sent by the peer
2563 * @ielen: length of the additional IEs
2564 * @signal: the signal strength, type depends on the wiphy's signal_type
2565 * @gfp: context flags
2566 *
2567 * This informs cfg80211 that BSS information was found and
2568 * the BSS should be updated/added.
2569 */
06aa7afa
JK
2570struct cfg80211_bss*
2571cfg80211_inform_bss(struct wiphy *wiphy,
2572 struct ieee80211_channel *channel,
2573 const u8 *bssid,
2574 u64 timestamp, u16 capability, u16 beacon_interval,
2575 const u8 *ie, size_t ielen,
2576 s32 signal, gfp_t gfp);
2577
2a519311
JB
2578struct cfg80211_bss *cfg80211_get_bss(struct wiphy *wiphy,
2579 struct ieee80211_channel *channel,
2580 const u8 *bssid,
79420f09
JB
2581 const u8 *ssid, size_t ssid_len,
2582 u16 capa_mask, u16 capa_val);
2583static inline struct cfg80211_bss *
2584cfg80211_get_ibss(struct wiphy *wiphy,
2585 struct ieee80211_channel *channel,
2586 const u8 *ssid, size_t ssid_len)
2587{
2588 return cfg80211_get_bss(wiphy, channel, NULL, ssid, ssid_len,
2589 WLAN_CAPABILITY_IBSS, WLAN_CAPABILITY_IBSS);
2590}
2591
2a519311
JB
2592struct cfg80211_bss *cfg80211_get_mesh(struct wiphy *wiphy,
2593 struct ieee80211_channel *channel,
2594 const u8 *meshid, size_t meshidlen,
2595 const u8 *meshcfg);
2596void cfg80211_put_bss(struct cfg80211_bss *bss);
d3236553 2597
d491af19
JB
2598/**
2599 * cfg80211_unlink_bss - unlink BSS from internal data structures
2600 * @wiphy: the wiphy
2601 * @bss: the bss to remove
2602 *
2603 * This function removes the given BSS from the internal data structures
2604 * thereby making it no longer show up in scan results etc. Use this
2605 * function when you detect a BSS is gone. Normally BSSes will also time
2606 * out, so it is not necessary to use this function at all.
2607 */
2608void cfg80211_unlink_bss(struct wiphy *wiphy, struct cfg80211_bss *bss);
fee52678 2609
6039f6d2
JM
2610/**
2611 * cfg80211_send_rx_auth - notification of processed authentication
2612 * @dev: network device
2613 * @buf: authentication frame (header + body)
2614 * @len: length of the frame data
2615 *
2616 * This function is called whenever an authentication has been processed in
1965c853
JM
2617 * station mode. The driver is required to call either this function or
2618 * cfg80211_send_auth_timeout() to indicate the result of cfg80211_ops::auth()
cb0b4beb 2619 * call. This function may sleep.
6039f6d2 2620 */
cb0b4beb 2621void cfg80211_send_rx_auth(struct net_device *dev, const u8 *buf, size_t len);
6039f6d2 2622
1965c853
JM
2623/**
2624 * cfg80211_send_auth_timeout - notification of timed out authentication
2625 * @dev: network device
2626 * @addr: The MAC address of the device with which the authentication timed out
cb0b4beb
JB
2627 *
2628 * This function may sleep.
1965c853 2629 */
cb0b4beb 2630void cfg80211_send_auth_timeout(struct net_device *dev, const u8 *addr);
1965c853 2631
a58ce43f
JB
2632/**
2633 * __cfg80211_auth_canceled - notify cfg80211 that authentication was canceled
2634 * @dev: network device
2635 * @addr: The MAC address of the device with which the authentication timed out
2636 *
2637 * When a pending authentication had no action yet, the driver may decide
2638 * to not send a deauth frame, but in that case must calls this function
2639 * to tell cfg80211 about this decision. It is only valid to call this
2640 * function within the deauth() callback.
2641 */
2642void __cfg80211_auth_canceled(struct net_device *dev, const u8 *addr);
2643
6039f6d2
JM
2644/**
2645 * cfg80211_send_rx_assoc - notification of processed association
2646 * @dev: network device
2647 * @buf: (re)association response frame (header + body)
2648 * @len: length of the frame data
2649 *
2650 * This function is called whenever a (re)association response has been
1965c853
JM
2651 * processed in station mode. The driver is required to call either this
2652 * function or cfg80211_send_assoc_timeout() to indicate the result of
cb0b4beb 2653 * cfg80211_ops::assoc() call. This function may sleep.
6039f6d2 2654 */
cb0b4beb 2655void cfg80211_send_rx_assoc(struct net_device *dev, const u8 *buf, size_t len);
6039f6d2 2656
1965c853
JM
2657/**
2658 * cfg80211_send_assoc_timeout - notification of timed out association
2659 * @dev: network device
2660 * @addr: The MAC address of the device with which the association timed out
cb0b4beb
JB
2661 *
2662 * This function may sleep.
1965c853 2663 */
cb0b4beb 2664void cfg80211_send_assoc_timeout(struct net_device *dev, const u8 *addr);
1965c853 2665
6039f6d2 2666/**
53b46b84 2667 * cfg80211_send_deauth - notification of processed deauthentication
6039f6d2
JM
2668 * @dev: network device
2669 * @buf: deauthentication frame (header + body)
2670 * @len: length of the frame data
2671 *
2672 * This function is called whenever deauthentication has been processed in
53b46b84 2673 * station mode. This includes both received deauthentication frames and
cb0b4beb 2674 * locally generated ones. This function may sleep.
6039f6d2 2675 */
ce470613
HS
2676void cfg80211_send_deauth(struct net_device *dev, const u8 *buf, size_t len);
2677
2678/**
2679 * __cfg80211_send_deauth - notification of processed deauthentication
2680 * @dev: network device
2681 * @buf: deauthentication frame (header + body)
2682 * @len: length of the frame data
2683 *
2684 * Like cfg80211_send_deauth(), but doesn't take the wdev lock.
2685 */
2686void __cfg80211_send_deauth(struct net_device *dev, const u8 *buf, size_t len);
6039f6d2
JM
2687
2688/**
53b46b84 2689 * cfg80211_send_disassoc - notification of processed disassociation
6039f6d2
JM
2690 * @dev: network device
2691 * @buf: disassociation response frame (header + body)
2692 * @len: length of the frame data
2693 *
2694 * This function is called whenever disassociation has been processed in
53b46b84 2695 * station mode. This includes both received disassociation frames and locally
cb0b4beb 2696 * generated ones. This function may sleep.
6039f6d2 2697 */
ce470613
HS
2698void cfg80211_send_disassoc(struct net_device *dev, const u8 *buf, size_t len);
2699
2700/**
2701 * __cfg80211_send_disassoc - notification of processed disassociation
2702 * @dev: network device
2703 * @buf: disassociation response frame (header + body)
2704 * @len: length of the frame data
2705 *
2706 * Like cfg80211_send_disassoc(), but doesn't take the wdev lock.
2707 */
2708void __cfg80211_send_disassoc(struct net_device *dev, const u8 *buf,
2709 size_t len);
6039f6d2 2710
cf4e594e
JM
2711/**
2712 * cfg80211_send_unprot_deauth - notification of unprotected deauthentication
2713 * @dev: network device
2714 * @buf: deauthentication frame (header + body)
2715 * @len: length of the frame data
2716 *
2717 * This function is called whenever a received Deauthentication frame has been
2718 * dropped in station mode because of MFP being used but the Deauthentication
2719 * frame was not protected. This function may sleep.
2720 */
2721void cfg80211_send_unprot_deauth(struct net_device *dev, const u8 *buf,
2722 size_t len);
2723
2724/**
2725 * cfg80211_send_unprot_disassoc - notification of unprotected disassociation
2726 * @dev: network device
2727 * @buf: disassociation frame (header + body)
2728 * @len: length of the frame data
2729 *
2730 * This function is called whenever a received Disassociation frame has been
2731 * dropped in station mode because of MFP being used but the Disassociation
2732 * frame was not protected. This function may sleep.
2733 */
2734void cfg80211_send_unprot_disassoc(struct net_device *dev, const u8 *buf,
2735 size_t len);
2736
a3b8b056
JM
2737/**
2738 * cfg80211_michael_mic_failure - notification of Michael MIC failure (TKIP)
2739 * @dev: network device
2740 * @addr: The source MAC address of the frame
2741 * @key_type: The key type that the received frame used
a66b98db 2742 * @key_id: Key identifier (0..3). Can be -1 if missing.
a3b8b056 2743 * @tsc: The TSC value of the frame that generated the MIC failure (6 octets)
e6d6e342 2744 * @gfp: allocation flags
a3b8b056
JM
2745 *
2746 * This function is called whenever the local MAC detects a MIC failure in a
2747 * received frame. This matches with MLME-MICHAELMICFAILURE.indication()
2748 * primitive.
2749 */
2750void cfg80211_michael_mic_failure(struct net_device *dev, const u8 *addr,
2751 enum nl80211_key_type key_type, int key_id,
e6d6e342 2752 const u8 *tsc, gfp_t gfp);
a3b8b056 2753
04a773ad
JB
2754/**
2755 * cfg80211_ibss_joined - notify cfg80211 that device joined an IBSS
2756 *
2757 * @dev: network device
2758 * @bssid: the BSSID of the IBSS joined
2759 * @gfp: allocation flags
2760 *
2761 * This function notifies cfg80211 that the device joined an IBSS or
2762 * switched to a different BSSID. Before this function can be called,
2763 * either a beacon has to have been received from the IBSS, or one of
2764 * the cfg80211_inform_bss{,_frame} functions must have been called
2765 * with the locally generated beacon -- this guarantees that there is
2766 * always a scan result for this IBSS. cfg80211 will handle the rest.
2767 */
2768void cfg80211_ibss_joined(struct net_device *dev, const u8 *bssid, gfp_t gfp);
2769
c93b5e71
JC
2770/**
2771 * cfg80211_notify_new_candidate - notify cfg80211 of a new mesh peer candidate
2772 *
2773 * @dev: network device
2774 * @macaddr: the MAC address of the new candidate
2775 * @ie: information elements advertised by the peer candidate
2776 * @ie_len: lenght of the information elements buffer
2777 * @gfp: allocation flags
2778 *
2779 * This function notifies cfg80211 that the mesh peer candidate has been
2780 * detected, most likely via a beacon or, less likely, via a probe response.
2781 * cfg80211 then sends a notification to userspace.
2782 */
2783void cfg80211_notify_new_peer_candidate(struct net_device *dev,
2784 const u8 *macaddr, const u8 *ie, u8 ie_len, gfp_t gfp);
2785
d70e9693
JB
2786/**
2787 * DOC: RFkill integration
2788 *
2789 * RFkill integration in cfg80211 is almost invisible to drivers,
2790 * as cfg80211 automatically registers an rfkill instance for each
2791 * wireless device it knows about. Soft kill is also translated
2792 * into disconnecting and turning all interfaces off, drivers are
2793 * expected to turn off the device when all interfaces are down.
2794 *
2795 * However, devices may have a hard RFkill line, in which case they
2796 * also need to interact with the rfkill subsystem, via cfg80211.
2797 * They can do this with a few helper functions documented here.
2798 */
2799
1f87f7d3
JB
2800/**
2801 * wiphy_rfkill_set_hw_state - notify cfg80211 about hw block state
2802 * @wiphy: the wiphy
2803 * @blocked: block status
2804 */
2805void wiphy_rfkill_set_hw_state(struct wiphy *wiphy, bool blocked);
2806
2807/**
2808 * wiphy_rfkill_start_polling - start polling rfkill
2809 * @wiphy: the wiphy
2810 */
2811void wiphy_rfkill_start_polling(struct wiphy *wiphy);
2812
2813/**
2814 * wiphy_rfkill_stop_polling - stop polling rfkill
2815 * @wiphy: the wiphy
2816 */
2817void wiphy_rfkill_stop_polling(struct wiphy *wiphy);
2818
aff89a9b 2819#ifdef CONFIG_NL80211_TESTMODE
d70e9693
JB
2820/**
2821 * DOC: Test mode
2822 *
2823 * Test mode is a set of utility functions to allow drivers to
2824 * interact with driver-specific tools to aid, for instance,
2825 * factory programming.
2826 *
2827 * This chapter describes how drivers interact with it, for more
2828 * information see the nl80211 book's chapter on it.
2829 */
2830
aff89a9b
JB
2831/**
2832 * cfg80211_testmode_alloc_reply_skb - allocate testmode reply
2833 * @wiphy: the wiphy
2834 * @approxlen: an upper bound of the length of the data that will
2835 * be put into the skb
2836 *
2837 * This function allocates and pre-fills an skb for a reply to
2838 * the testmode command. Since it is intended for a reply, calling
2839 * it outside of the @testmode_cmd operation is invalid.
2840 *
2841 * The returned skb (or %NULL if any errors happen) is pre-filled
2842 * with the wiphy index and set up in a way that any data that is
2843 * put into the skb (with skb_put(), nla_put() or similar) will end
2844 * up being within the %NL80211_ATTR_TESTDATA attribute, so all that
2845 * needs to be done with the skb is adding data for the corresponding
2846 * userspace tool which can then read that data out of the testdata
2847 * attribute. You must not modify the skb in any other way.
2848 *
2849 * When done, call cfg80211_testmode_reply() with the skb and return
2850 * its error code as the result of the @testmode_cmd operation.
2851 */
2852struct sk_buff *cfg80211_testmode_alloc_reply_skb(struct wiphy *wiphy,
2853 int approxlen);
2854
2855/**
2856 * cfg80211_testmode_reply - send the reply skb
2857 * @skb: The skb, must have been allocated with
2858 * cfg80211_testmode_alloc_reply_skb()
2859 *
2860 * Returns an error code or 0 on success, since calling this
2861 * function will usually be the last thing before returning
2862 * from the @testmode_cmd you should return the error code.
2863 * Note that this function consumes the skb regardless of the
2864 * return value.
2865 */
2866int cfg80211_testmode_reply(struct sk_buff *skb);
2867
2868/**
2869 * cfg80211_testmode_alloc_event_skb - allocate testmode event
2870 * @wiphy: the wiphy
2871 * @approxlen: an upper bound of the length of the data that will
2872 * be put into the skb
2873 * @gfp: allocation flags
2874 *
2875 * This function allocates and pre-fills an skb for an event on the
2876 * testmode multicast group.
2877 *
2878 * The returned skb (or %NULL if any errors happen) is set up in the
2879 * same way as with cfg80211_testmode_alloc_reply_skb() but prepared
2880 * for an event. As there, you should simply add data to it that will
2881 * then end up in the %NL80211_ATTR_TESTDATA attribute. Again, you must
2882 * not modify the skb in any other way.
2883 *
2884 * When done filling the skb, call cfg80211_testmode_event() with the
2885 * skb to send the event.
2886 */
2887struct sk_buff *cfg80211_testmode_alloc_event_skb(struct wiphy *wiphy,
2888 int approxlen, gfp_t gfp);
2889
2890/**
2891 * cfg80211_testmode_event - send the event
2892 * @skb: The skb, must have been allocated with
2893 * cfg80211_testmode_alloc_event_skb()
2894 * @gfp: allocation flags
2895 *
2896 * This function sends the given @skb, which must have been allocated
2897 * by cfg80211_testmode_alloc_event_skb(), as an event. It always
2898 * consumes it.
2899 */
2900void cfg80211_testmode_event(struct sk_buff *skb, gfp_t gfp);
2901
2902#define CFG80211_TESTMODE_CMD(cmd) .testmode_cmd = (cmd),
71063f0e 2903#define CFG80211_TESTMODE_DUMP(cmd) .testmode_dump = (cmd),
aff89a9b
JB
2904#else
2905#define CFG80211_TESTMODE_CMD(cmd)
71063f0e 2906#define CFG80211_TESTMODE_DUMP(cmd)
aff89a9b
JB
2907#endif
2908
b23aa676
SO
2909/**
2910 * cfg80211_connect_result - notify cfg80211 of connection result
2911 *
2912 * @dev: network device
2913 * @bssid: the BSSID of the AP
2914 * @req_ie: association request IEs (maybe be %NULL)
2915 * @req_ie_len: association request IEs length
2916 * @resp_ie: association response IEs (may be %NULL)
2917 * @resp_ie_len: assoc response IEs length
2918 * @status: status code, 0 for successful connection, use
2919 * %WLAN_STATUS_UNSPECIFIED_FAILURE if your device cannot give you
2920 * the real status code for failures.
2921 * @gfp: allocation flags
2922 *
2923 * It should be called by the underlying driver whenever connect() has
2924 * succeeded.
2925 */
2926void cfg80211_connect_result(struct net_device *dev, const u8 *bssid,
2927 const u8 *req_ie, size_t req_ie_len,
2928 const u8 *resp_ie, size_t resp_ie_len,
2929 u16 status, gfp_t gfp);
2930
2931/**
2932 * cfg80211_roamed - notify cfg80211 of roaming
2933 *
2934 * @dev: network device
ed9d0102 2935 * @channel: the channel of the new AP
b23aa676
SO
2936 * @bssid: the BSSID of the new AP
2937 * @req_ie: association request IEs (maybe be %NULL)
2938 * @req_ie_len: association request IEs length
2939 * @resp_ie: association response IEs (may be %NULL)
2940 * @resp_ie_len: assoc response IEs length
2941 * @gfp: allocation flags
2942 *
2943 * It should be called by the underlying driver whenever it roamed
2944 * from one AP to another while connected.
2945 */
ed9d0102
JM
2946void cfg80211_roamed(struct net_device *dev,
2947 struct ieee80211_channel *channel,
2948 const u8 *bssid,
b23aa676
SO
2949 const u8 *req_ie, size_t req_ie_len,
2950 const u8 *resp_ie, size_t resp_ie_len, gfp_t gfp);
2951
2952/**
2953 * cfg80211_disconnected - notify cfg80211 that connection was dropped
2954 *
2955 * @dev: network device
2956 * @ie: information elements of the deauth/disassoc frame (may be %NULL)
2957 * @ie_len: length of IEs
2958 * @reason: reason code for the disconnection, set it to 0 if unknown
2959 * @gfp: allocation flags
2960 *
2961 * After it calls this function, the driver should enter an idle state
2962 * and not try to connect to any AP any more.
2963 */
2964void cfg80211_disconnected(struct net_device *dev, u16 reason,
2965 u8 *ie, size_t ie_len, gfp_t gfp);
2966
9588bbd5
JM
2967/**
2968 * cfg80211_ready_on_channel - notification of remain_on_channel start
2969 * @dev: network device
2970 * @cookie: the request cookie
2971 * @chan: The current channel (from remain_on_channel request)
2972 * @channel_type: Channel type
2973 * @duration: Duration in milliseconds that the driver intents to remain on the
2974 * channel
2975 * @gfp: allocation flags
2976 */
2977void cfg80211_ready_on_channel(struct net_device *dev, u64 cookie,
2978 struct ieee80211_channel *chan,
2979 enum nl80211_channel_type channel_type,
2980 unsigned int duration, gfp_t gfp);
2981
2982/**
2983 * cfg80211_remain_on_channel_expired - remain_on_channel duration expired
2984 * @dev: network device
2985 * @cookie: the request cookie
2986 * @chan: The current channel (from remain_on_channel request)
2987 * @channel_type: Channel type
2988 * @gfp: allocation flags
2989 */
2990void cfg80211_remain_on_channel_expired(struct net_device *dev,
2991 u64 cookie,
2992 struct ieee80211_channel *chan,
2993 enum nl80211_channel_type channel_type,
2994 gfp_t gfp);
b23aa676 2995
98b62183
JB
2996
2997/**
2998 * cfg80211_new_sta - notify userspace about station
2999 *
3000 * @dev: the netdev
3001 * @mac_addr: the station's address
3002 * @sinfo: the station information
3003 * @gfp: allocation flags
3004 */
3005void cfg80211_new_sta(struct net_device *dev, const u8 *mac_addr,
3006 struct station_info *sinfo, gfp_t gfp);
3007
ec15e68b
JM
3008/**
3009 * cfg80211_del_sta - notify userspace about deletion of a station
3010 *
3011 * @dev: the netdev
3012 * @mac_addr: the station's address
3013 * @gfp: allocation flags
3014 */
3015void cfg80211_del_sta(struct net_device *dev, const u8 *mac_addr, gfp_t gfp);
3016
026331c4 3017/**
2e161f78 3018 * cfg80211_rx_mgmt - notification of received, unprocessed management frame
026331c4
JM
3019 * @dev: network device
3020 * @freq: Frequency on which the frame was received in MHz
2e161f78 3021 * @buf: Management frame (header + body)
026331c4
JM
3022 * @len: length of the frame data
3023 * @gfp: context flags
2e161f78
JB
3024 *
3025 * Returns %true if a user space application has registered for this frame.
3026 * For action frames, that makes it responsible for rejecting unrecognized
3027 * action frames; %false otherwise, in which case for action frames the
3028 * driver is responsible for rejecting the frame.
026331c4
JM
3029 *
3030 * This function is called whenever an Action frame is received for a station
3031 * mode interface, but is not processed in kernel.
3032 */
2e161f78
JB
3033bool cfg80211_rx_mgmt(struct net_device *dev, int freq, const u8 *buf,
3034 size_t len, gfp_t gfp);
026331c4
JM
3035
3036/**
2e161f78 3037 * cfg80211_mgmt_tx_status - notification of TX status for management frame
026331c4 3038 * @dev: network device
2e161f78
JB
3039 * @cookie: Cookie returned by cfg80211_ops::mgmt_tx()
3040 * @buf: Management frame (header + body)
026331c4
JM
3041 * @len: length of the frame data
3042 * @ack: Whether frame was acknowledged
3043 * @gfp: context flags
3044 *
2e161f78
JB
3045 * This function is called whenever a management frame was requested to be
3046 * transmitted with cfg80211_ops::mgmt_tx() to report the TX status of the
026331c4
JM
3047 * transmission attempt.
3048 */
2e161f78
JB
3049void cfg80211_mgmt_tx_status(struct net_device *dev, u64 cookie,
3050 const u8 *buf, size_t len, bool ack, gfp_t gfp);
026331c4 3051
d6dc1a38
JO
3052
3053/**
3054 * cfg80211_cqm_rssi_notify - connection quality monitoring rssi event
3055 * @dev: network device
3056 * @rssi_event: the triggered RSSI event
3057 * @gfp: context flags
3058 *
3059 * This function is called when a configured connection quality monitoring
3060 * rssi threshold reached event occurs.
3061 */
3062void cfg80211_cqm_rssi_notify(struct net_device *dev,
3063 enum nl80211_cqm_rssi_threshold_event rssi_event,
3064 gfp_t gfp);
3065
c063dbf5
JB
3066/**
3067 * cfg80211_cqm_pktloss_notify - notify userspace about packetloss to peer
3068 * @dev: network device
3069 * @peer: peer's MAC address
3070 * @num_packets: how many packets were lost -- should be a fixed threshold
3071 * but probably no less than maybe 50, or maybe a throughput dependent
3072 * threshold (to account for temporary interference)
3073 * @gfp: context flags
3074 */
3075void cfg80211_cqm_pktloss_notify(struct net_device *dev,
3076 const u8 *peer, u32 num_packets, gfp_t gfp);
3077
e5497d76
JB
3078/**
3079 * cfg80211_gtk_rekey_notify - notify userspace about driver rekeying
3080 * @dev: network device
3081 * @bssid: BSSID of AP (to avoid races)
3082 * @replay_ctr: new replay counter
af71ff85 3083 * @gfp: allocation flags
e5497d76
JB
3084 */
3085void cfg80211_gtk_rekey_notify(struct net_device *dev, const u8 *bssid,
3086 const u8 *replay_ctr, gfp_t gfp);
3087
e1db74fc
JP
3088/* Logging, debugging and troubleshooting/diagnostic helpers. */
3089
3090/* wiphy_printk helpers, similar to dev_printk */
3091
3092#define wiphy_printk(level, wiphy, format, args...) \
9c376639 3093 dev_printk(level, &(wiphy)->dev, format, ##args)
e1db74fc 3094#define wiphy_emerg(wiphy, format, args...) \
9c376639 3095 dev_emerg(&(wiphy)->dev, format, ##args)
e1db74fc 3096#define wiphy_alert(wiphy, format, args...) \
9c376639 3097 dev_alert(&(wiphy)->dev, format, ##args)
e1db74fc 3098#define wiphy_crit(wiphy, format, args...) \
9c376639 3099 dev_crit(&(wiphy)->dev, format, ##args)
e1db74fc 3100#define wiphy_err(wiphy, format, args...) \
9c376639 3101 dev_err(&(wiphy)->dev, format, ##args)
e1db74fc 3102#define wiphy_warn(wiphy, format, args...) \
9c376639 3103 dev_warn(&(wiphy)->dev, format, ##args)
e1db74fc 3104#define wiphy_notice(wiphy, format, args...) \
9c376639 3105 dev_notice(&(wiphy)->dev, format, ##args)
e1db74fc 3106#define wiphy_info(wiphy, format, args...) \
9c376639 3107 dev_info(&(wiphy)->dev, format, ##args)
073730d7 3108
9c376639 3109#define wiphy_debug(wiphy, format, args...) \
e1db74fc 3110 wiphy_printk(KERN_DEBUG, wiphy, format, ##args)
9c376639 3111
e1db74fc 3112#define wiphy_dbg(wiphy, format, args...) \
9c376639 3113 dev_dbg(&(wiphy)->dev, format, ##args)
e1db74fc
JP
3114
3115#if defined(VERBOSE_DEBUG)
3116#define wiphy_vdbg wiphy_dbg
3117#else
e1db74fc
JP
3118#define wiphy_vdbg(wiphy, format, args...) \
3119({ \
3120 if (0) \
3121 wiphy_printk(KERN_DEBUG, wiphy, format, ##args); \
9c376639 3122 0; \
e1db74fc
JP
3123})
3124#endif
3125
3126/*
3127 * wiphy_WARN() acts like wiphy_printk(), but with the key difference
3128 * of using a WARN/WARN_ON to get the message out, including the
3129 * file/line information and a backtrace.
3130 */
3131#define wiphy_WARN(wiphy, format, args...) \
3132 WARN(1, "wiphy: %s\n" format, wiphy_name(wiphy), ##args);
3133
704232c2 3134#endif /* __NET_CFG80211_H */
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