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mac80211: use nl80211 interface types
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95ea3627 1/*
811aa9ca 2 Copyright (C) 2004 - 2008 rt2x00 SourceForge Project
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3 <http://rt2x00.serialmonkey.com>
4
5 This program is free software; you can redistribute it and/or modify
6 it under the terms of the GNU General Public License as published by
7 the Free Software Foundation; either version 2 of the License, or
8 (at your option) any later version.
9
10 This program is distributed in the hope that it will be useful,
11 but WITHOUT ANY WARRANTY; without even the implied warranty of
12 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
13 GNU General Public License for more details.
14
15 You should have received a copy of the GNU General Public License
16 along with this program; if not, write to the
17 Free Software Foundation, Inc.,
18 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
19 */
20
21/*
22 Module: rt2x00
23 Abstract: rt2x00 global information.
24 */
25
26#ifndef RT2X00_H
27#define RT2X00_H
28
29#include <linux/bitops.h>
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30#include <linux/skbuff.h>
31#include <linux/workqueue.h>
32#include <linux/firmware.h>
a9450b70 33#include <linux/leds.h>
3d82346c 34#include <linux/mutex.h>
61af43c5 35#include <linux/etherdevice.h>
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36
37#include <net/mac80211.h>
38
39#include "rt2x00debug.h"
a9450b70 40#include "rt2x00leds.h"
95ea3627 41#include "rt2x00reg.h"
181d6902 42#include "rt2x00queue.h"
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43
44/*
45 * Module information.
95ea3627 46 */
35e032d8 47#define DRV_VERSION "2.2.1"
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48#define DRV_PROJECT "http://rt2x00.serialmonkey.com"
49
50/*
51 * Debug definitions.
52 * Debug output has to be enabled during compile time.
53 */
54#define DEBUG_PRINTK_MSG(__dev, __kernlvl, __lvl, __msg, __args...) \
55 printk(__kernlvl "%s -> %s: %s - " __msg, \
c94c93da 56 wiphy_name((__dev)->hw->wiphy), __func__, __lvl, ##__args)
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57
58#define DEBUG_PRINTK_PROBE(__kernlvl, __lvl, __msg, __args...) \
59 printk(__kernlvl "%s -> %s: %s - " __msg, \
c94c93da 60 KBUILD_MODNAME, __func__, __lvl, ##__args)
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61
62#ifdef CONFIG_RT2X00_DEBUG
63#define DEBUG_PRINTK(__dev, __kernlvl, __lvl, __msg, __args...) \
64 DEBUG_PRINTK_MSG(__dev, __kernlvl, __lvl, __msg, ##__args);
65#else
66#define DEBUG_PRINTK(__dev, __kernlvl, __lvl, __msg, __args...) \
67 do { } while (0)
68#endif /* CONFIG_RT2X00_DEBUG */
69
70/*
71 * Various debug levels.
72 * The debug levels PANIC and ERROR both indicate serious problems,
73 * for this reason they should never be ignored.
74 * The special ERROR_PROBE message is for messages that are generated
75 * when the rt2x00_dev is not yet initialized.
76 */
77#define PANIC(__dev, __msg, __args...) \
78 DEBUG_PRINTK_MSG(__dev, KERN_CRIT, "Panic", __msg, ##__args)
79#define ERROR(__dev, __msg, __args...) \
80 DEBUG_PRINTK_MSG(__dev, KERN_ERR, "Error", __msg, ##__args)
81#define ERROR_PROBE(__msg, __args...) \
82 DEBUG_PRINTK_PROBE(KERN_ERR, "Error", __msg, ##__args)
83#define WARNING(__dev, __msg, __args...) \
84 DEBUG_PRINTK(__dev, KERN_WARNING, "Warning", __msg, ##__args)
85#define NOTICE(__dev, __msg, __args...) \
86 DEBUG_PRINTK(__dev, KERN_NOTICE, "Notice", __msg, ##__args)
87#define INFO(__dev, __msg, __args...) \
88 DEBUG_PRINTK(__dev, KERN_INFO, "Info", __msg, ##__args)
89#define DEBUG(__dev, __msg, __args...) \
90 DEBUG_PRINTK(__dev, KERN_DEBUG, "Debug", __msg, ##__args)
91#define EEPROM(__dev, __msg, __args...) \
92 DEBUG_PRINTK(__dev, KERN_DEBUG, "EEPROM recovery", __msg, ##__args)
93
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94/*
95 * Standard timing and size defines.
96 * These values should follow the ieee80211 specifications.
97 */
98#define ACK_SIZE 14
99#define IEEE80211_HEADER 24
100#define PLCP 48
101#define BEACON 100
102#define PREAMBLE 144
103#define SHORT_PREAMBLE 72
104#define SLOT_TIME 20
105#define SHORT_SLOT_TIME 9
106#define SIFS 10
107#define PIFS ( SIFS + SLOT_TIME )
108#define SHORT_PIFS ( SIFS + SHORT_SLOT_TIME )
109#define DIFS ( PIFS + SLOT_TIME )
110#define SHORT_DIFS ( SHORT_PIFS + SHORT_SLOT_TIME )
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111#define EIFS ( SIFS + DIFS + \
112 (8 * (IEEE80211_HEADER + ACK_SIZE)) )
113#define SHORT_EIFS ( SIFS + SHORT_DIFS + \
114 (8 * (IEEE80211_HEADER + ACK_SIZE)) )
95ea3627 115
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116/*
117 * Chipset identification
118 * The chipset on the device is composed of a RT and RF chip.
119 * The chipset combination is important for determining device capabilities.
120 */
121struct rt2x00_chip {
122 u16 rt;
123#define RT2460 0x0101
124#define RT2560 0x0201
125#define RT2570 0x1201
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126#define RT2561s 0x0301 /* Turbo */
127#define RT2561 0x0302
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128#define RT2661 0x0401
129#define RT2571 0x1300
130
131 u16 rf;
132 u32 rev;
133};
134
135/*
136 * RF register values that belong to a particular channel.
137 */
138struct rf_channel {
139 int channel;
140 u32 rf1;
141 u32 rf2;
142 u32 rf3;
143 u32 rf4;
144};
145
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146/*
147 * Channel information structure
148 */
149struct channel_info {
150 unsigned int flags;
151#define GEOGRAPHY_ALLOWED 0x00000001
152
153 short tx_power1;
154 short tx_power2;
155};
156
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157/*
158 * Antenna setup values.
159 */
160struct antenna_setup {
161 enum antenna rx;
162 enum antenna tx;
163};
164
95ea3627 165/*
ebcf26da 166 * Quality statistics about the currently active link.
95ea3627 167 */
ebcf26da 168struct link_qual {
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169 /*
170 * Statistics required for Link tuning.
171 * For the average RSSI value we use the "Walking average" approach.
172 * When adding RSSI to the average value the following calculation
173 * is needed:
174 *
175 * avg_rssi = ((avg_rssi * 7) + rssi) / 8;
176 *
177 * The advantage of this approach is that we only need 1 variable
178 * to store the average in (No need for a count and a total).
179 * But more importantly, normal average values will over time
180 * move less and less towards newly added values this results
181 * that with link tuning, the device can have a very good RSSI
182 * for a few minutes but when the device is moved away from the AP
183 * the average will not decrease fast enough to compensate.
184 * The walking average compensates this and will move towards
185 * the new values correctly allowing a effective link tuning.
186 */
187 int avg_rssi;
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188 int false_cca;
189
190 /*
191 * Statistics required for Signal quality calculation.
192 * For calculating the Signal quality we have to determine
193 * the total number of success and failed RX and TX frames.
194 * After that we also use the average RSSI value to help
195 * determining the signal quality.
196 * For the calculation we will use the following algorithm:
197 *
198 * rssi_percentage = (avg_rssi * 100) / rssi_offset
199 * rx_percentage = (rx_success * 100) / rx_total
200 * tx_percentage = (tx_success * 100) / tx_total
201 * avg_signal = ((WEIGHT_RSSI * avg_rssi) +
202 * (WEIGHT_TX * tx_percentage) +
203 * (WEIGHT_RX * rx_percentage)) / 100
204 *
205 * This value should then be checked to not be greated then 100.
206 */
207 int rx_percentage;
208 int rx_success;
209 int rx_failed;
210 int tx_percentage;
211 int tx_success;
212 int tx_failed;
213#define WEIGHT_RSSI 20
214#define WEIGHT_RX 40
215#define WEIGHT_TX 40
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216};
217
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218/*
219 * Antenna settings about the currently active link.
220 */
221struct link_ant {
222 /*
223 * Antenna flags
224 */
225 unsigned int flags;
226#define ANTENNA_RX_DIVERSITY 0x00000001
227#define ANTENNA_TX_DIVERSITY 0x00000002
228#define ANTENNA_MODE_SAMPLE 0x00000004
229
230 /*
231 * Currently active TX/RX antenna setup.
232 * When software diversity is used, this will indicate
233 * which antenna is actually used at this time.
234 */
235 struct antenna_setup active;
236
237 /*
238 * RSSI information for the different antenna's.
239 * These statistics are used to determine when
240 * to switch antenna when using software diversity.
241 *
242 * rssi[0] -> Antenna A RSSI
243 * rssi[1] -> Antenna B RSSI
244 */
245 int rssi_history[2];
246
247 /*
248 * Current RSSI average of the currently active antenna.
249 * Similar to the avg_rssi in the link_qual structure
250 * this value is updated by using the walking average.
251 */
252 int rssi_ant;
253};
254
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255/*
256 * To optimize the quality of the link we need to store
257 * the quality of received frames and periodically
258 * optimize the link.
259 */
260struct link {
261 /*
262 * Link tuner counter
263 * The number of times the link has been tuned
264 * since the radio has been switched on.
265 */
266 u32 count;
267
268 /*
269 * Quality measurement values.
270 */
271 struct link_qual qual;
272
addc81bd 273 /*
69f81a2c 274 * TX/RX antenna setup.
addc81bd 275 */
69f81a2c 276 struct link_ant ant;
addc81bd 277
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278 /*
279 * Active VGC level
280 */
281 int vgc_level;
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282
283 /*
284 * Work structure for scheduling periodic link tuning.
285 */
286 struct delayed_work work;
287};
288
95ea3627 289/*
69f81a2c 290 * Small helper macro to work with moving/walking averages.
95ea3627 291 */
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292#define MOVING_AVERAGE(__avg, __val, __samples) \
293 ( (((__avg) * ((__samples) - 1)) + (__val)) / (__samples) )
294
295/*
296 * When we lack RSSI information return something less then -80 to
297 * tell the driver to tune the device to maximum sensitivity.
298 */
299#define DEFAULT_RSSI ( -128 )
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300
301/*
69f81a2c 302 * Link quality access functions.
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303 */
304static inline int rt2x00_get_link_rssi(struct link *link)
305{
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306 if (link->qual.avg_rssi && link->qual.rx_success)
307 return link->qual.avg_rssi;
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308 return DEFAULT_RSSI;
309}
310
311static inline int rt2x00_get_link_ant_rssi(struct link *link)
312{
313 if (link->ant.rssi_ant && link->qual.rx_success)
314 return link->ant.rssi_ant;
315 return DEFAULT_RSSI;
316}
317
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318static inline void rt2x00_reset_link_ant_rssi(struct link *link)
319{
320 link->ant.rssi_ant = 0;
321}
322
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323static inline int rt2x00_get_link_ant_rssi_history(struct link *link,
324 enum antenna ant)
325{
326 if (link->ant.rssi_history[ant - ANTENNA_A])
327 return link->ant.rssi_history[ant - ANTENNA_A];
328 return DEFAULT_RSSI;
329}
330
331static inline int rt2x00_update_ant_rssi(struct link *link, int rssi)
332{
333 int old_rssi = link->ant.rssi_history[link->ant.active.rx - ANTENNA_A];
334 link->ant.rssi_history[link->ant.active.rx - ANTENNA_A] = rssi;
335 return old_rssi;
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336}
337
338/*
339 * Interface structure
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340 * Per interface configuration details, this structure
341 * is allocated as the private data for ieee80211_vif.
95ea3627 342 */
6bb40dd1 343struct rt2x00_intf {
95ea3627 344 /*
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345 * All fields within the rt2x00_intf structure
346 * must be protected with a spinlock.
95ea3627 347 */
6bb40dd1 348 spinlock_t lock;
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349
350 /*
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351 * BSS configuration. Copied from the structure
352 * passed to us through the bss_info_changed()
353 * callback funtion.
95ea3627 354 */
6bb40dd1 355 struct ieee80211_bss_conf conf;
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356
357 /*
358 * MAC of the device.
359 */
360 u8 mac[ETH_ALEN];
361
362 /*
363 * BBSID of the AP to associate with.
364 */
365 u8 bssid[ETH_ALEN];
95ea3627 366
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367 /*
368 * Entry in the beacon queue which belongs to
369 * this interface. Each interface has its own
370 * dedicated beacon entry.
371 */
372 struct queue_entry *beacon;
95ea3627 373
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374 /*
375 * Actions that needed rescheduling.
376 */
377 unsigned int delayed_flags;
378#define DELAYED_UPDATE_BEACON 0x00000001
72810379 379#define DELAYED_CONFIG_ERP 0x00000002
a2e1d52a 380#define DELAYED_LED_ASSOC 0x00000004
f591fa5d 381
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382 /*
383 * Software sequence counter, this is only required
384 * for hardware which doesn't support hardware
385 * sequence counting.
386 */
387 spinlock_t seqlock;
f591fa5d 388 u16 seqno;
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389};
390
391static inline struct rt2x00_intf* vif_to_intf(struct ieee80211_vif *vif)
95ea3627 392{
6bb40dd1 393 return (struct rt2x00_intf *)vif->drv_priv;
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394}
395
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396/**
397 * struct hw_mode_spec: Hardware specifications structure
398 *
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399 * Details about the supported modes, rates and channels
400 * of a particular chipset. This is used by rt2x00lib
401 * to build the ieee80211_hw_mode array for mac80211.
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402 *
403 * @supported_bands: Bitmask contained the supported bands (2.4GHz, 5.2GHz).
404 * @supported_rates: Rate types which are supported (CCK, OFDM).
405 * @num_channels: Number of supported channels. This is used as array size
406 * for @tx_power_a, @tx_power_bg and @channels.
9a46d44e 407 * @channels: Device/chipset specific channel values (See &struct rf_channel).
8c5e7a5f 408 * @channels_info: Additional information for channels (See &struct channel_info).
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409 */
410struct hw_mode_spec {
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411 unsigned int supported_bands;
412#define SUPPORT_BAND_2GHZ 0x00000001
413#define SUPPORT_BAND_5GHZ 0x00000002
414
415 unsigned int supported_rates;
416#define SUPPORT_RATE_CCK 0x00000001
417#define SUPPORT_RATE_OFDM 0x00000002
418
419 unsigned int num_channels;
420 const struct rf_channel *channels;
8c5e7a5f 421 const struct channel_info *channels_info;
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422};
423
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424/*
425 * Configuration structure wrapper around the
426 * mac80211 configuration structure.
427 * When mac80211 configures the driver, rt2x00lib
428 * can precalculate values which are equal for all
429 * rt2x00 drivers. Those values can be stored in here.
430 */
431struct rt2x00lib_conf {
432 struct ieee80211_conf *conf;
8c5e7a5f 433
5c58ee51 434 struct rf_channel rf;
8c5e7a5f 435 struct channel_info channel;
5c58ee51 436
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437 struct antenna_setup ant;
438
f5507ce9 439 enum ieee80211_band band;
5c58ee51 440
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441 u32 basic_rates;
442 u32 slot_time;
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443
444 short sifs;
445 short pifs;
446 short difs;
447 short eifs;
448};
449
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450/*
451 * Configuration structure for erp settings.
452 */
453struct rt2x00lib_erp {
454 int short_preamble;
e360c4cb 455 int cts_protection;
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456
457 int ack_timeout;
458 int ack_consume_time;
459};
460
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461/*
462 * Configuration structure for hardware encryption.
463 */
464struct rt2x00lib_crypto {
465 enum cipher cipher;
466
467 enum set_key_cmd cmd;
468 const u8 *address;
469
470 u32 bssidx;
471 u32 aid;
472
473 u8 key[16];
474 u8 tx_mic[8];
475 u8 rx_mic[8];
476};
477
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478/*
479 * Configuration structure wrapper around the
480 * rt2x00 interface configuration handler.
481 */
482struct rt2x00intf_conf {
483 /*
484 * Interface type
485 */
05c914fe 486 enum nl80211_iftype type;
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487
488 /*
489 * TSF sync value, this is dependant on the operation type.
490 */
491 enum tsf_sync sync;
492
493 /*
494 * The MAC and BSSID addressess are simple array of bytes,
495 * these arrays are little endian, so when sending the addressess
496 * to the drivers, copy the it into a endian-signed variable.
497 *
498 * Note that all devices (except rt2500usb) have 32 bits
499 * register word sizes. This means that whatever variable we
500 * pass _must_ be a multiple of 32 bits. Otherwise the device
501 * might not accept what we are sending to it.
502 * This will also make it easier for the driver to write
503 * the data to the device.
504 */
505 __le32 mac[2];
506 __le32 bssid[2];
507};
508
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509/*
510 * rt2x00lib callback functions.
511 */
512struct rt2x00lib_ops {
513 /*
514 * Interrupt handlers.
515 */
516 irq_handler_t irq_handler;
517
518 /*
519 * Device init handlers.
520 */
521 int (*probe_hw) (struct rt2x00_dev *rt2x00dev);
522 char *(*get_firmware_name) (struct rt2x00_dev *rt2x00dev);
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523 u16 (*get_firmware_crc) (const void *data, const size_t len);
524 int (*load_firmware) (struct rt2x00_dev *rt2x00dev, const void *data,
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525 const size_t len);
526
527 /*
528 * Device initialization/deinitialization handlers.
529 */
530 int (*initialize) (struct rt2x00_dev *rt2x00dev);
531 void (*uninitialize) (struct rt2x00_dev *rt2x00dev);
532
837e7f24 533 /*
181d6902 534 * queue initialization handlers
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535 */
536 void (*init_rxentry) (struct rt2x00_dev *rt2x00dev,
181d6902 537 struct queue_entry *entry);
837e7f24 538 void (*init_txentry) (struct rt2x00_dev *rt2x00dev,
181d6902 539 struct queue_entry *entry);
837e7f24 540
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541 /*
542 * Radio control handlers.
543 */
544 int (*set_device_state) (struct rt2x00_dev *rt2x00dev,
545 enum dev_state state);
546 int (*rfkill_poll) (struct rt2x00_dev *rt2x00dev);
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547 void (*link_stats) (struct rt2x00_dev *rt2x00dev,
548 struct link_qual *qual);
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549 void (*reset_tuner) (struct rt2x00_dev *rt2x00dev);
550 void (*link_tuner) (struct rt2x00_dev *rt2x00dev);
551
552 /*
553 * TX control handlers
554 */
555 void (*write_tx_desc) (struct rt2x00_dev *rt2x00dev,
dd3193e1 556 struct sk_buff *skb,
61486e0f 557 struct txentry_desc *txdesc);
6db3786a 558 int (*write_tx_data) (struct queue_entry *entry);
bd88a781 559 void (*write_beacon) (struct queue_entry *entry);
b242e891 560 int (*get_tx_data_len) (struct rt2x00_dev *rt2x00dev,
dd9fa2d2 561 struct sk_buff *skb);
95ea3627 562 void (*kick_tx_queue) (struct rt2x00_dev *rt2x00dev,
e58c6aca 563 const enum data_queue_qid queue);
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564
565 /*
566 * RX control handlers
567 */
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568 void (*fill_rxdone) (struct queue_entry *entry,
569 struct rxdone_entry_desc *rxdesc);
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570
571 /*
572 * Configuration handlers.
573 */
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574 int (*config_shared_key) (struct rt2x00_dev *rt2x00dev,
575 struct rt2x00lib_crypto *crypto,
576 struct ieee80211_key_conf *key);
577 int (*config_pairwise_key) (struct rt2x00_dev *rt2x00dev,
578 struct rt2x00lib_crypto *crypto,
579 struct ieee80211_key_conf *key);
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580 void (*config_filter) (struct rt2x00_dev *rt2x00dev,
581 const unsigned int filter_flags);
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582 void (*config_intf) (struct rt2x00_dev *rt2x00dev,
583 struct rt2x00_intf *intf,
584 struct rt2x00intf_conf *conf,
585 const unsigned int flags);
586#define CONFIG_UPDATE_TYPE ( 1 << 1 )
587#define CONFIG_UPDATE_MAC ( 1 << 2 )
588#define CONFIG_UPDATE_BSSID ( 1 << 3 )
589
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590 void (*config_erp) (struct rt2x00_dev *rt2x00dev,
591 struct rt2x00lib_erp *erp);
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592 void (*config) (struct rt2x00_dev *rt2x00dev,
593 struct rt2x00lib_conf *libconf,
594 const unsigned int flags);
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595#define CONFIG_UPDATE_PHYMODE ( 1 << 1 )
596#define CONFIG_UPDATE_CHANNEL ( 1 << 2 )
597#define CONFIG_UPDATE_TXPOWER ( 1 << 3 )
598#define CONFIG_UPDATE_ANTENNA ( 1 << 4 )
599#define CONFIG_UPDATE_SLOT_TIME ( 1 << 5 )
600#define CONFIG_UPDATE_BEACON_INT ( 1 << 6 )
601#define CONFIG_UPDATE_ALL 0xffff
602};
603
604/*
605 * rt2x00 driver callback operation structure.
606 */
607struct rt2x00_ops {
608 const char *name;
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609 const unsigned int max_sta_intf;
610 const unsigned int max_ap_intf;
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611 const unsigned int eeprom_size;
612 const unsigned int rf_size;
61448f88 613 const unsigned int tx_queues;
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614 const struct data_queue_desc *rx;
615 const struct data_queue_desc *tx;
616 const struct data_queue_desc *bcn;
617 const struct data_queue_desc *atim;
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618 const struct rt2x00lib_ops *lib;
619 const struct ieee80211_ops *hw;
620#ifdef CONFIG_RT2X00_LIB_DEBUGFS
621 const struct rt2x00debug *debugfs;
622#endif /* CONFIG_RT2X00_LIB_DEBUGFS */
623};
624
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625/*
626 * rt2x00 device flags
627 */
628enum rt2x00_flags {
629 /*
630 * Device state flags
631 */
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632 DEVICE_STATE_PRESENT,
633 DEVICE_STATE_REGISTERED_HW,
634 DEVICE_STATE_INITIALIZED,
635 DEVICE_STATE_STARTED,
636 DEVICE_STATE_STARTED_SUSPEND,
637 DEVICE_STATE_ENABLED_RADIO,
638 DEVICE_STATE_DISABLED_RADIO_HW,
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639
640 /*
2bb057d0 641 * Driver requirements
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642 */
643 DRIVER_REQUIRE_FIRMWARE,
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644 DRIVER_REQUIRE_BEACON_GUARD,
645 DRIVER_REQUIRE_ATIM_QUEUE,
3a643d24 646 DRIVER_REQUIRE_SCHEDULED,
c4da0048 647 DRIVER_REQUIRE_DMA,
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648
649 /*
2bb057d0 650 * Driver features
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651 */
652 CONFIG_SUPPORT_HW_BUTTON,
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653 CONFIG_SUPPORT_HW_CRYPTO,
654
655 /*
656 * Driver configuration
657 */
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ID
658 CONFIG_FRAME_TYPE,
659 CONFIG_RF_SEQUENCE,
660 CONFIG_EXTERNAL_LNA_A,
661 CONFIG_EXTERNAL_LNA_BG,
662 CONFIG_DOUBLE_ANTENNA,
663 CONFIG_DISABLE_LINK_TUNING,
664};
665
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ID
666/*
667 * rt2x00 device structure.
668 */
669struct rt2x00_dev {
670 /*
671 * Device structure.
672 * The structure stored in here depends on the
673 * system bus (PCI or USB).
674 * When accessing this variable, the rt2x00dev_{pci,usb}
675 * macro's should be used for correct typecasting.
676 */
14a3bf89 677 struct device *dev;
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ID
678
679 /*
680 * Callback functions.
681 */
682 const struct rt2x00_ops *ops;
683
684 /*
685 * IEEE80211 control structure.
686 */
687 struct ieee80211_hw *hw;
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JB
688 struct ieee80211_supported_band bands[IEEE80211_NUM_BANDS];
689 enum ieee80211_band curr_band;
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ID
690
691 /*
692 * rfkill structure for RF state switching support.
693 * This will only be compiled in when required.
694 */
695#ifdef CONFIG_RT2X00_LIB_RFKILL
3480a58a 696 unsigned long rfkill_state;
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ID
697#define RFKILL_STATE_ALLOCATED 1
698#define RFKILL_STATE_REGISTERED 2
95ea3627 699 struct rfkill *rfkill;
50db7875 700 struct delayed_work rfkill_work;
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ID
701#endif /* CONFIG_RT2X00_LIB_RFKILL */
702
703 /*
704 * If enabled, the debugfs interface structures
705 * required for deregistration of debugfs.
706 */
707#ifdef CONFIG_RT2X00_LIB_DEBUGFS
4d8dd66c 708 struct rt2x00debug_intf *debugfs_intf;
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ID
709#endif /* CONFIG_RT2X00_LIB_DEBUGFS */
710
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ID
711 /*
712 * LED structure for changing the LED status
713 * by mac8011 or the kernel.
714 */
715#ifdef CONFIG_RT2X00_LIB_LEDS
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ID
716 struct rt2x00_led led_radio;
717 struct rt2x00_led led_assoc;
718 struct rt2x00_led led_qual;
719 u16 led_mcu_reg;
720#endif /* CONFIG_RT2X00_LIB_LEDS */
721
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ID
722 /*
723 * Device flags.
724 * In these flags the current status and some
725 * of the device capabilities are stored.
726 */
727 unsigned long flags;
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ID
728
729 /*
730 * Chipset identification.
731 */
732 struct rt2x00_chip chip;
733
734 /*
735 * hw capability specifications.
736 */
737 struct hw_mode_spec spec;
738
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ID
739 /*
740 * This is the default TX/RX antenna setup as indicated
741 * by the device's EEPROM. When mac80211 sets its
742 * antenna value to 0 we should be using these values.
743 */
744 struct antenna_setup default_ant;
745
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ID
746 /*
747 * Register pointers
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ID
748 * csr.base: CSR base register address. (PCI)
749 * csr.cache: CSR cache for usb_control_msg. (USB)
95ea3627 750 */
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ID
751 union csr {
752 void __iomem *base;
753 void *cache;
754 } csr;
95ea3627 755
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AB
756 /*
757 * Mutex to protect register accesses on USB devices.
758 * There are 2 reasons this is needed, one is to ensure
759 * use of the csr_cache (for USB devices) by one thread
760 * isn't corrupted by another thread trying to access it.
761 * The other is that access to BBP and RF registers
762 * require multiple BUS transactions and if another thread
763 * attempted to access one of those registers at the same
764 * time one of the writes could silently fail.
765 */
766 struct mutex usb_cache_mutex;
767
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ID
768 /*
769 * Current packet filter configuration for the device.
770 * This contains all currently active FIF_* flags send
771 * to us by mac80211 during configure_filter().
772 */
773 unsigned int packet_filter;
774
95ea3627 775 /*
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ID
776 * Interface details:
777 * - Open ap interface count.
778 * - Open sta interface count.
779 * - Association count.
95ea3627 780 */
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ID
781 unsigned int intf_ap_count;
782 unsigned int intf_sta_count;
783 unsigned int intf_associated;
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ID
784
785 /*
786 * Link quality
787 */
788 struct link link;
789
790 /*
791 * EEPROM data.
792 */
793 __le16 *eeprom;
794
795 /*
796 * Active RF register values.
797 * These are stored here so we don't need
798 * to read the rf registers and can directly
799 * use this value instead.
800 * This field should be accessed by using
801 * rt2x00_rf_read() and rt2x00_rf_write().
802 */
803 u32 *rf;
804
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ID
805 /*
806 * LNA gain
807 */
808 short lna_gain;
809
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ID
810 /*
811 * USB Max frame size (for rt2500usb & rt73usb).
812 */
813 u16 usb_maxpacket;
814
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ID
815 /*
816 * Current TX power value.
817 */
818 u16 tx_power;
819
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ID
820 /*
821 * Rssi <-> Dbm offset
822 */
823 u8 rssi_offset;
824
825 /*
826 * Frequency offset (for rt61pci & rt73usb).
827 */
828 u8 freq_offset;
829
830 /*
831 * Low level statistics which will have
832 * to be kept up to date while device is running.
833 */
834 struct ieee80211_low_level_stats low_level_stats;
835
836 /*
837 * RX configuration information.
838 */
839 struct ieee80211_rx_status rx_status;
840
841 /*
4150c572 842 * Scheduled work.
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ID
843 * NOTE: intf_work will use ieee80211_iterate_active_interfaces()
844 * which means it cannot be placed on the hw->workqueue
845 * due to RTNL locking requirements.
95ea3627 846 */
6bb40dd1 847 struct work_struct intf_work;
4150c572 848 struct work_struct filter_work;
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ID
849
850 /*
181d6902
ID
851 * Data queue arrays for RX, TX and Beacon.
852 * The Beacon array also contains the Atim queue
95ea3627
ID
853 * if that is supported by the device.
854 */
b869767b 855 unsigned int data_queues;
181d6902
ID
856 struct data_queue *rx;
857 struct data_queue *tx;
858 struct data_queue *bcn;
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ID
859
860 /*
861 * Firmware image.
862 */
863 const struct firmware *fw;
864};
865
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ID
866/*
867 * Generic RF access.
868 * The RF is being accessed by word index.
869 */
0e14f6d3 870static inline void rt2x00_rf_read(struct rt2x00_dev *rt2x00dev,
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ID
871 const unsigned int word, u32 *data)
872{
873 *data = rt2x00dev->rf[word];
874}
875
0e14f6d3 876static inline void rt2x00_rf_write(struct rt2x00_dev *rt2x00dev,
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ID
877 const unsigned int word, u32 data)
878{
879 rt2x00dev->rf[word] = data;
880}
881
882/*
883 * Generic EEPROM access.
884 * The EEPROM is being accessed by word index.
885 */
0e14f6d3 886static inline void *rt2x00_eeprom_addr(struct rt2x00_dev *rt2x00dev,
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ID
887 const unsigned int word)
888{
889 return (void *)&rt2x00dev->eeprom[word];
890}
891
0e14f6d3 892static inline void rt2x00_eeprom_read(struct rt2x00_dev *rt2x00dev,
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ID
893 const unsigned int word, u16 *data)
894{
895 *data = le16_to_cpu(rt2x00dev->eeprom[word]);
896}
897
0e14f6d3 898static inline void rt2x00_eeprom_write(struct rt2x00_dev *rt2x00dev,
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ID
899 const unsigned int word, u16 data)
900{
901 rt2x00dev->eeprom[word] = cpu_to_le16(data);
902}
903
904/*
905 * Chipset handlers
906 */
907static inline void rt2x00_set_chip(struct rt2x00_dev *rt2x00dev,
908 const u16 rt, const u16 rf, const u32 rev)
909{
910 INFO(rt2x00dev,
911 "Chipset detected - rt: %04x, rf: %04x, rev: %08x.\n",
912 rt, rf, rev);
913
914 rt2x00dev->chip.rt = rt;
915 rt2x00dev->chip.rf = rf;
916 rt2x00dev->chip.rev = rev;
917}
918
919static inline char rt2x00_rt(const struct rt2x00_chip *chipset, const u16 chip)
920{
921 return (chipset->rt == chip);
922}
923
924static inline char rt2x00_rf(const struct rt2x00_chip *chipset, const u16 chip)
925{
926 return (chipset->rf == chip);
927}
928
755a957d 929static inline u16 rt2x00_rev(const struct rt2x00_chip *chipset)
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ID
930{
931 return chipset->rev;
932}
933
755a957d
ID
934static inline u16 rt2x00_check_rev(const struct rt2x00_chip *chipset,
935 const u32 rev)
95ea3627 936{
755a957d
ID
937 return (((chipset->rev & 0xffff0) == rev) &&
938 !!(chipset->rev & 0x0000f));
95ea3627
ID
939}
940
941/*
942 * Duration calculations
943 * The rate variable passed is: 100kbs.
944 * To convert from bytes to bits we multiply size with 8,
945 * then the size is multiplied with 10 to make the
946 * real rate -> rate argument correction.
947 */
948static inline u16 get_duration(const unsigned int size, const u8 rate)
949{
950 return ((size * 8 * 10) / rate);
951}
952
953static inline u16 get_duration_res(const unsigned int size, const u8 rate)
954{
955 return ((size * 8 * 10) % rate);
956}
957
239c249d 958/**
c4da0048
GW
959 * rt2x00queue_map_txskb - Map a skb into DMA for TX purposes.
960 * @rt2x00dev: Pointer to &struct rt2x00_dev.
961 * @skb: The skb to map.
239c249d 962 */
c4da0048 963void rt2x00queue_map_txskb(struct rt2x00_dev *rt2x00dev, struct sk_buff *skb);
239c249d 964
181d6902 965/**
e58c6aca 966 * rt2x00queue_get_queue - Convert queue index to queue pointer
181d6902 967 * @rt2x00dev: Pointer to &struct rt2x00_dev.
e58c6aca 968 * @queue: rt2x00 queue index (see &enum data_queue_qid).
95ea3627 969 */
181d6902 970struct data_queue *rt2x00queue_get_queue(struct rt2x00_dev *rt2x00dev,
e58c6aca 971 const enum data_queue_qid queue);
181d6902
ID
972
973/**
974 * rt2x00queue_get_entry - Get queue entry where the given index points to.
9a46d44e 975 * @queue: Pointer to &struct data_queue from where we obtain the entry.
181d6902
ID
976 * @index: Index identifier for obtaining the correct index.
977 */
978struct queue_entry *rt2x00queue_get_entry(struct data_queue *queue,
979 enum queue_index index);
980
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ID
981/*
982 * Interrupt context handlers.
983 */
984void rt2x00lib_beacondone(struct rt2x00_dev *rt2x00dev);
181d6902
ID
985void rt2x00lib_txdone(struct queue_entry *entry,
986 struct txdone_entry_desc *txdesc);
c4da0048
GW
987void rt2x00lib_rxdone(struct rt2x00_dev *rt2x00dev,
988 struct queue_entry *entry);
95ea3627 989
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ID
990/*
991 * mac80211 handlers.
992 */
e039fa4a 993int rt2x00mac_tx(struct ieee80211_hw *hw, struct sk_buff *skb);
95ea3627
ID
994int rt2x00mac_start(struct ieee80211_hw *hw);
995void rt2x00mac_stop(struct ieee80211_hw *hw);
996int rt2x00mac_add_interface(struct ieee80211_hw *hw,
997 struct ieee80211_if_init_conf *conf);
998void rt2x00mac_remove_interface(struct ieee80211_hw *hw,
999 struct ieee80211_if_init_conf *conf);
1000int rt2x00mac_config(struct ieee80211_hw *hw, struct ieee80211_conf *conf);
32bfd35d
JB
1001int rt2x00mac_config_interface(struct ieee80211_hw *hw,
1002 struct ieee80211_vif *vif,
95ea3627 1003 struct ieee80211_if_conf *conf);
3a643d24
ID
1004void rt2x00mac_configure_filter(struct ieee80211_hw *hw,
1005 unsigned int changed_flags,
1006 unsigned int *total_flags,
1007 int mc_count, struct dev_addr_list *mc_list);
2bb057d0
ID
1008#ifdef CONFIG_RT2X00_LIB_CRYPTO
1009int rt2x00mac_set_key(struct ieee80211_hw *hw, enum set_key_cmd cmd,
1010 const u8 *local_address, const u8 *address,
1011 struct ieee80211_key_conf *key);
1012#else
1013#define rt2x00mac_set_key NULL
1014#endif /* CONFIG_RT2X00_LIB_CRYPTO */
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ID
1015int rt2x00mac_get_stats(struct ieee80211_hw *hw,
1016 struct ieee80211_low_level_stats *stats);
1017int rt2x00mac_get_tx_stats(struct ieee80211_hw *hw,
1018 struct ieee80211_tx_queue_stats *stats);
471b3efd
JB
1019void rt2x00mac_bss_info_changed(struct ieee80211_hw *hw,
1020 struct ieee80211_vif *vif,
1021 struct ieee80211_bss_conf *bss_conf,
1022 u32 changes);
e100bb64 1023int rt2x00mac_conf_tx(struct ieee80211_hw *hw, u16 queue,
95ea3627
ID
1024 const struct ieee80211_tx_queue_params *params);
1025
1026/*
1027 * Driver allocation handlers.
1028 */
1029int rt2x00lib_probe_dev(struct rt2x00_dev *rt2x00dev);
1030void rt2x00lib_remove_dev(struct rt2x00_dev *rt2x00dev);
1031#ifdef CONFIG_PM
1032int rt2x00lib_suspend(struct rt2x00_dev *rt2x00dev, pm_message_t state);
1033int rt2x00lib_resume(struct rt2x00_dev *rt2x00dev);
1034#endif /* CONFIG_PM */
1035
1036#endif /* RT2X00_H */