ath5k.h 44 KB

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  1. /*
  2. * Copyright (c) 2004-2007 Reyk Floeter <reyk@openbsd.org>
  3. * Copyright (c) 2006-2007 Nick Kossifidis <mickflemm@gmail.com>
  4. *
  5. * Permission to use, copy, modify, and distribute this software for any
  6. * purpose with or without fee is hereby granted, provided that the above
  7. * copyright notice and this permission notice appear in all copies.
  8. *
  9. * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
  10. * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
  11. * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
  12. * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
  13. * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
  14. * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
  15. * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
  16. */
  17. #ifndef _ATH5K_H
  18. #define _ATH5K_H
  19. /* TODO: Clean up channel debuging -doesn't work anyway- and start
  20. * working on reg. control code using all available eeprom information
  21. * -rev. engineering needed- */
  22. #define CHAN_DEBUG 0
  23. #include <linux/io.h>
  24. #include <linux/types.h>
  25. #include <net/mac80211.h>
  26. /* RX/TX descriptor hw structs
  27. * TODO: Driver part should only see sw structs */
  28. #include "desc.h"
  29. /* EEPROM structs/offsets
  30. * TODO: Make a more generic struct (eg. add more stuff to ath5k_capabilities)
  31. * and clean up common bits, then introduce set/get functions in eeprom.c */
  32. #include "eeprom.h"
  33. /* PCI IDs */
  34. #define PCI_DEVICE_ID_ATHEROS_AR5210 0x0007 /* AR5210 */
  35. #define PCI_DEVICE_ID_ATHEROS_AR5311 0x0011 /* AR5311 */
  36. #define PCI_DEVICE_ID_ATHEROS_AR5211 0x0012 /* AR5211 */
  37. #define PCI_DEVICE_ID_ATHEROS_AR5212 0x0013 /* AR5212 */
  38. #define PCI_DEVICE_ID_3COM_3CRDAG675 0x0013 /* 3CRDAG675 (Atheros AR5212) */
  39. #define PCI_DEVICE_ID_3COM_2_3CRPAG175 0x0013 /* 3CRPAG175 (Atheros AR5212) */
  40. #define PCI_DEVICE_ID_ATHEROS_AR5210_AP 0x0207 /* AR5210 (Early) */
  41. #define PCI_DEVICE_ID_ATHEROS_AR5212_IBM 0x1014 /* AR5212 (IBM MiniPCI) */
  42. #define PCI_DEVICE_ID_ATHEROS_AR5210_DEFAULT 0x1107 /* AR5210 (no eeprom) */
  43. #define PCI_DEVICE_ID_ATHEROS_AR5212_DEFAULT 0x1113 /* AR5212 (no eeprom) */
  44. #define PCI_DEVICE_ID_ATHEROS_AR5211_DEFAULT 0x1112 /* AR5211 (no eeprom) */
  45. #define PCI_DEVICE_ID_ATHEROS_AR5212_FPGA 0xf013 /* AR5212 (emulation board) */
  46. #define PCI_DEVICE_ID_ATHEROS_AR5211_LEGACY 0xff12 /* AR5211 (emulation board) */
  47. #define PCI_DEVICE_ID_ATHEROS_AR5211_FPGA11B 0xf11b /* AR5211 (emulation board) */
  48. #define PCI_DEVICE_ID_ATHEROS_AR5312_REV2 0x0052 /* AR5312 WMAC (AP31) */
  49. #define PCI_DEVICE_ID_ATHEROS_AR5312_REV7 0x0057 /* AR5312 WMAC (AP30-040) */
  50. #define PCI_DEVICE_ID_ATHEROS_AR5312_REV8 0x0058 /* AR5312 WMAC (AP43-030) */
  51. #define PCI_DEVICE_ID_ATHEROS_AR5212_0014 0x0014 /* AR5212 compatible */
  52. #define PCI_DEVICE_ID_ATHEROS_AR5212_0015 0x0015 /* AR5212 compatible */
  53. #define PCI_DEVICE_ID_ATHEROS_AR5212_0016 0x0016 /* AR5212 compatible */
  54. #define PCI_DEVICE_ID_ATHEROS_AR5212_0017 0x0017 /* AR5212 compatible */
  55. #define PCI_DEVICE_ID_ATHEROS_AR5212_0018 0x0018 /* AR5212 compatible */
  56. #define PCI_DEVICE_ID_ATHEROS_AR5212_0019 0x0019 /* AR5212 compatible */
  57. #define PCI_DEVICE_ID_ATHEROS_AR2413 0x001a /* AR2413 (Griffin-lite) */
  58. #define PCI_DEVICE_ID_ATHEROS_AR5413 0x001b /* AR5413 (Eagle) */
  59. #define PCI_DEVICE_ID_ATHEROS_AR5424 0x001c /* AR5424 (Condor PCI-E) */
  60. #define PCI_DEVICE_ID_ATHEROS_AR5416 0x0023 /* AR5416 */
  61. #define PCI_DEVICE_ID_ATHEROS_AR5418 0x0024 /* AR5418 */
  62. /****************************\
  63. GENERIC DRIVER DEFINITIONS
  64. \****************************/
  65. #define ATH5K_PRINTF(fmt, ...) printk("%s: " fmt, __func__, ##__VA_ARGS__)
  66. #define ATH5K_PRINTK(_sc, _level, _fmt, ...) \
  67. printk(_level "ath5k %s: " _fmt, \
  68. ((_sc) && (_sc)->hw) ? wiphy_name((_sc)->hw->wiphy) : "", \
  69. ##__VA_ARGS__)
  70. #define ATH5K_PRINTK_LIMIT(_sc, _level, _fmt, ...) do { \
  71. if (net_ratelimit()) \
  72. ATH5K_PRINTK(_sc, _level, _fmt, ##__VA_ARGS__); \
  73. } while (0)
  74. #define ATH5K_INFO(_sc, _fmt, ...) \
  75. ATH5K_PRINTK(_sc, KERN_INFO, _fmt, ##__VA_ARGS__)
  76. #define ATH5K_WARN(_sc, _fmt, ...) \
  77. ATH5K_PRINTK_LIMIT(_sc, KERN_WARNING, _fmt, ##__VA_ARGS__)
  78. #define ATH5K_ERR(_sc, _fmt, ...) \
  79. ATH5K_PRINTK_LIMIT(_sc, KERN_ERR, _fmt, ##__VA_ARGS__)
  80. /*
  81. * AR5K REGISTER ACCESS
  82. */
  83. /* Some macros to read/write fields */
  84. /* First shift, then mask */
  85. #define AR5K_REG_SM(_val, _flags) \
  86. (((_val) << _flags##_S) & (_flags))
  87. /* First mask, then shift */
  88. #define AR5K_REG_MS(_val, _flags) \
  89. (((_val) & (_flags)) >> _flags##_S)
  90. /* Some registers can hold multiple values of interest. For this
  91. * reason when we want to write to these registers we must first
  92. * retrieve the values which we do not want to clear (lets call this
  93. * old_data) and then set the register with this and our new_value:
  94. * ( old_data | new_value) */
  95. #define AR5K_REG_WRITE_BITS(ah, _reg, _flags, _val) \
  96. ath5k_hw_reg_write(ah, (ath5k_hw_reg_read(ah, _reg) & ~(_flags)) | \
  97. (((_val) << _flags##_S) & (_flags)), _reg)
  98. #define AR5K_REG_MASKED_BITS(ah, _reg, _flags, _mask) \
  99. ath5k_hw_reg_write(ah, (ath5k_hw_reg_read(ah, _reg) & \
  100. (_mask)) | (_flags), _reg)
  101. #define AR5K_REG_ENABLE_BITS(ah, _reg, _flags) \
  102. ath5k_hw_reg_write(ah, ath5k_hw_reg_read(ah, _reg) | (_flags), _reg)
  103. #define AR5K_REG_DISABLE_BITS(ah, _reg, _flags) \
  104. ath5k_hw_reg_write(ah, ath5k_hw_reg_read(ah, _reg) & ~(_flags), _reg)
  105. /* Access to PHY registers */
  106. #define AR5K_PHY_READ(ah, _reg) \
  107. ath5k_hw_reg_read(ah, (ah)->ah_phy + ((_reg) << 2))
  108. #define AR5K_PHY_WRITE(ah, _reg, _val) \
  109. ath5k_hw_reg_write(ah, _val, (ah)->ah_phy + ((_reg) << 2))
  110. /* Access QCU registers per queue */
  111. #define AR5K_REG_READ_Q(ah, _reg, _queue) \
  112. (ath5k_hw_reg_read(ah, _reg) & (1 << _queue)) \
  113. #define AR5K_REG_WRITE_Q(ah, _reg, _queue) \
  114. ath5k_hw_reg_write(ah, (1 << _queue), _reg)
  115. #define AR5K_Q_ENABLE_BITS(_reg, _queue) do { \
  116. _reg |= 1 << _queue; \
  117. } while (0)
  118. #define AR5K_Q_DISABLE_BITS(_reg, _queue) do { \
  119. _reg &= ~(1 << _queue); \
  120. } while (0)
  121. /* Used while writing initvals */
  122. #define AR5K_REG_WAIT(_i) do { \
  123. if (_i % 64) \
  124. udelay(1); \
  125. } while (0)
  126. /* Register dumps are done per operation mode */
  127. #define AR5K_INI_RFGAIN_5GHZ 0
  128. #define AR5K_INI_RFGAIN_2GHZ 1
  129. /* TODO: Clean this up */
  130. #define AR5K_INI_VAL_11A 0
  131. #define AR5K_INI_VAL_11A_TURBO 1
  132. #define AR5K_INI_VAL_11B 2
  133. #define AR5K_INI_VAL_11G 3
  134. #define AR5K_INI_VAL_11G_TURBO 4
  135. #define AR5K_INI_VAL_XR 0
  136. #define AR5K_INI_VAL_MAX 5
  137. /* Used for BSSID etc manipulation */
  138. #define AR5K_LOW_ID(_a)( \
  139. (_a)[0] | (_a)[1] << 8 | (_a)[2] << 16 | (_a)[3] << 24 \
  140. )
  141. #define AR5K_HIGH_ID(_a) ((_a)[4] | (_a)[5] << 8)
  142. /*
  143. * Some tuneable values (these should be changeable by the user)
  144. * TODO: Make use of them and add more options OR use debug/configfs
  145. */
  146. #define AR5K_TUNE_DMA_BEACON_RESP 2
  147. #define AR5K_TUNE_SW_BEACON_RESP 10
  148. #define AR5K_TUNE_ADDITIONAL_SWBA_BACKOFF 0
  149. #define AR5K_TUNE_RADAR_ALERT false
  150. #define AR5K_TUNE_MIN_TX_FIFO_THRES 1
  151. #define AR5K_TUNE_MAX_TX_FIFO_THRES ((IEEE80211_MAX_LEN / 64) + 1)
  152. #define AR5K_TUNE_REGISTER_TIMEOUT 20000
  153. /* Register for RSSI threshold has a mask of 0xff, so 255 seems to
  154. * be the max value. */
  155. #define AR5K_TUNE_RSSI_THRES 129
  156. /* This must be set when setting the RSSI threshold otherwise it can
  157. * prevent a reset. If AR5K_RSSI_THR is read after writing to it
  158. * the BMISS_THRES will be seen as 0, seems harware doesn't keep
  159. * track of it. Max value depends on harware. For AR5210 this is just 7.
  160. * For AR5211+ this seems to be up to 255. */
  161. #define AR5K_TUNE_BMISS_THRES 7
  162. #define AR5K_TUNE_REGISTER_DWELL_TIME 20000
  163. #define AR5K_TUNE_BEACON_INTERVAL 100
  164. #define AR5K_TUNE_AIFS 2
  165. #define AR5K_TUNE_AIFS_11B 2
  166. #define AR5K_TUNE_AIFS_XR 0
  167. #define AR5K_TUNE_CWMIN 15
  168. #define AR5K_TUNE_CWMIN_11B 31
  169. #define AR5K_TUNE_CWMIN_XR 3
  170. #define AR5K_TUNE_CWMAX 1023
  171. #define AR5K_TUNE_CWMAX_11B 1023
  172. #define AR5K_TUNE_CWMAX_XR 7
  173. #define AR5K_TUNE_NOISE_FLOOR -72
  174. #define AR5K_TUNE_MAX_TXPOWER 63
  175. #define AR5K_TUNE_DEFAULT_TXPOWER 25
  176. #define AR5K_TUNE_TPC_TXPOWER false
  177. #define AR5K_TUNE_ANT_DIVERSITY true
  178. #define AR5K_TUNE_HWTXTRIES 4
  179. #define AR5K_INIT_CARR_SENSE_EN 1
  180. /*Swap RX/TX Descriptor for big endian archs*/
  181. #if defined(__BIG_ENDIAN)
  182. #define AR5K_INIT_CFG ( \
  183. AR5K_CFG_SWTD | AR5K_CFG_SWRD \
  184. )
  185. #else
  186. #define AR5K_INIT_CFG 0x00000000
  187. #endif
  188. /* Initial values */
  189. #define AR5K_INIT_CYCRSSI_THR1 2
  190. #define AR5K_INIT_TX_LATENCY 502
  191. #define AR5K_INIT_USEC 39
  192. #define AR5K_INIT_USEC_TURBO 79
  193. #define AR5K_INIT_USEC_32 31
  194. #define AR5K_INIT_SLOT_TIME 396
  195. #define AR5K_INIT_SLOT_TIME_TURBO 480
  196. #define AR5K_INIT_ACK_CTS_TIMEOUT 1024
  197. #define AR5K_INIT_ACK_CTS_TIMEOUT_TURBO 0x08000800
  198. #define AR5K_INIT_PROG_IFS 920
  199. #define AR5K_INIT_PROG_IFS_TURBO 960
  200. #define AR5K_INIT_EIFS 3440
  201. #define AR5K_INIT_EIFS_TURBO 6880
  202. #define AR5K_INIT_SIFS 560
  203. #define AR5K_INIT_SIFS_TURBO 480
  204. #define AR5K_INIT_SH_RETRY 10
  205. #define AR5K_INIT_LG_RETRY AR5K_INIT_SH_RETRY
  206. #define AR5K_INIT_SSH_RETRY 32
  207. #define AR5K_INIT_SLG_RETRY AR5K_INIT_SSH_RETRY
  208. #define AR5K_INIT_TX_RETRY 10
  209. #define AR5K_INIT_TRANSMIT_LATENCY ( \
  210. (AR5K_INIT_TX_LATENCY << 14) | (AR5K_INIT_USEC_32 << 7) | \
  211. (AR5K_INIT_USEC) \
  212. )
  213. #define AR5K_INIT_TRANSMIT_LATENCY_TURBO ( \
  214. (AR5K_INIT_TX_LATENCY << 14) | (AR5K_INIT_USEC_32 << 7) | \
  215. (AR5K_INIT_USEC_TURBO) \
  216. )
  217. #define AR5K_INIT_PROTO_TIME_CNTRL ( \
  218. (AR5K_INIT_CARR_SENSE_EN << 26) | (AR5K_INIT_EIFS << 12) | \
  219. (AR5K_INIT_PROG_IFS) \
  220. )
  221. #define AR5K_INIT_PROTO_TIME_CNTRL_TURBO ( \
  222. (AR5K_INIT_CARR_SENSE_EN << 26) | (AR5K_INIT_EIFS_TURBO << 12) | \
  223. (AR5K_INIT_PROG_IFS_TURBO) \
  224. )
  225. /* token to use for aifs, cwmin, cwmax in MadWiFi */
  226. #define AR5K_TXQ_USEDEFAULT ((u32) -1)
  227. /* GENERIC CHIPSET DEFINITIONS */
  228. /* MAC Chips */
  229. enum ath5k_version {
  230. AR5K_AR5210 = 0,
  231. AR5K_AR5211 = 1,
  232. AR5K_AR5212 = 2,
  233. };
  234. /* PHY Chips */
  235. enum ath5k_radio {
  236. AR5K_RF5110 = 0,
  237. AR5K_RF5111 = 1,
  238. AR5K_RF5112 = 2,
  239. AR5K_RF2413 = 3,
  240. AR5K_RF5413 = 4,
  241. AR5K_RF2316 = 5,
  242. AR5K_RF2317 = 6,
  243. AR5K_RF2425 = 7,
  244. };
  245. /*
  246. * Common silicon revision/version values
  247. */
  248. enum ath5k_srev_type {
  249. AR5K_VERSION_MAC,
  250. AR5K_VERSION_RAD,
  251. };
  252. struct ath5k_srev_name {
  253. const char *sr_name;
  254. enum ath5k_srev_type sr_type;
  255. u_int sr_val;
  256. };
  257. #define AR5K_SREV_UNKNOWN 0xffff
  258. #define AR5K_SREV_AR5210 0x00 /* Crete */
  259. #define AR5K_SREV_AR5311 0x10 /* Maui 1 */
  260. #define AR5K_SREV_AR5311A 0x20 /* Maui 2 */
  261. #define AR5K_SREV_AR5311B 0x30 /* Spirit */
  262. #define AR5K_SREV_AR5211 0x40 /* Oahu */
  263. #define AR5K_SREV_AR5212 0x50 /* Venice */
  264. #define AR5K_SREV_AR5213 0x55 /* ??? */
  265. #define AR5K_SREV_AR5213A 0x59 /* Hainan */
  266. #define AR5K_SREV_AR2413 0x78 /* Griffin lite */
  267. #define AR5K_SREV_AR2414 0x70 /* Griffin */
  268. #define AR5K_SREV_AR5424 0x90 /* Condor */
  269. #define AR5K_SREV_AR5413 0xa4 /* Eagle lite */
  270. #define AR5K_SREV_AR5414 0xa0 /* Eagle */
  271. #define AR5K_SREV_AR2415 0xb0 /* Talon */
  272. #define AR5K_SREV_AR5416 0xc0 /* PCI-E */
  273. #define AR5K_SREV_AR5418 0xca /* PCI-E */
  274. #define AR5K_SREV_AR2425 0xe0 /* Swan */
  275. #define AR5K_SREV_AR2417 0xf0 /* Nala */
  276. #define AR5K_SREV_RAD_5110 0x00
  277. #define AR5K_SREV_RAD_5111 0x10
  278. #define AR5K_SREV_RAD_5111A 0x15
  279. #define AR5K_SREV_RAD_2111 0x20
  280. #define AR5K_SREV_RAD_5112 0x30
  281. #define AR5K_SREV_RAD_5112A 0x35
  282. #define AR5K_SREV_RAD_5112B 0x36
  283. #define AR5K_SREV_RAD_2112 0x40
  284. #define AR5K_SREV_RAD_2112A 0x45
  285. #define AR5K_SREV_RAD_2112B 0x46
  286. #define AR5K_SREV_RAD_2413 0x50
  287. #define AR5K_SREV_RAD_5413 0x60
  288. #define AR5K_SREV_RAD_2316 0x70 /* Cobra SoC */
  289. #define AR5K_SREV_RAD_2317 0x80
  290. #define AR5K_SREV_RAD_5424 0xa0 /* Mostly same as 5413 */
  291. #define AR5K_SREV_RAD_2425 0xa2
  292. #define AR5K_SREV_RAD_5133 0xc0
  293. #define AR5K_SREV_PHY_5211 0x30
  294. #define AR5K_SREV_PHY_5212 0x41
  295. #define AR5K_SREV_PHY_5212A 0x42
  296. #define AR5K_SREV_PHY_5212B 0x43
  297. #define AR5K_SREV_PHY_2413 0x45
  298. #define AR5K_SREV_PHY_5413 0x61
  299. #define AR5K_SREV_PHY_2425 0x70
  300. /* IEEE defs */
  301. #define IEEE80211_MAX_LEN 2500
  302. /* TODO add support to mac80211 for vendor-specific rates and modes */
  303. /*
  304. * Some of this information is based on Documentation from:
  305. *
  306. * http://madwifi.org/wiki/ChipsetFeatures/SuperAG
  307. *
  308. * Modulation for Atheros' eXtended Range - range enhancing extension that is
  309. * supposed to double the distance an Atheros client device can keep a
  310. * connection with an Atheros access point. This is achieved by increasing
  311. * the receiver sensitivity up to, -105dBm, which is about 20dB above what
  312. * the 802.11 specifications demand. In addition, new (proprietary) data rates
  313. * are introduced: 3, 2, 1, 0.5 and 0.25 MBit/s.
  314. *
  315. * Please note that can you either use XR or TURBO but you cannot use both,
  316. * they are exclusive.
  317. *
  318. */
  319. #define MODULATION_XR 0x00000200
  320. /*
  321. * Modulation for Atheros' Turbo G and Turbo A, its supposed to provide a
  322. * throughput transmission speed up to 40Mbit/s-60Mbit/s at a 108Mbit/s
  323. * signaling rate achieved through the bonding of two 54Mbit/s 802.11g
  324. * channels. To use this feature your Access Point must also suport it.
  325. * There is also a distinction between "static" and "dynamic" turbo modes:
  326. *
  327. * - Static: is the dumb version: devices set to this mode stick to it until
  328. * the mode is turned off.
  329. * - Dynamic: is the intelligent version, the network decides itself if it
  330. * is ok to use turbo. As soon as traffic is detected on adjacent channels
  331. * (which would get used in turbo mode), or when a non-turbo station joins
  332. * the network, turbo mode won't be used until the situation changes again.
  333. * Dynamic mode is achieved by Atheros' Adaptive Radio (AR) feature which
  334. * monitors the used radio band in order to decide whether turbo mode may
  335. * be used or not.
  336. *
  337. * This article claims Super G sticks to bonding of channels 5 and 6 for
  338. * USA:
  339. *
  340. * http://www.pcworld.com/article/id,113428-page,1/article.html
  341. *
  342. * The channel bonding seems to be driver specific though. In addition to
  343. * deciding what channels will be used, these "Turbo" modes are accomplished
  344. * by also enabling the following features:
  345. *
  346. * - Bursting: allows multiple frames to be sent at once, rather than pausing
  347. * after each frame. Bursting is a standards-compliant feature that can be
  348. * used with any Access Point.
  349. * - Fast frames: increases the amount of information that can be sent per
  350. * frame, also resulting in a reduction of transmission overhead. It is a
  351. * proprietary feature that needs to be supported by the Access Point.
  352. * - Compression: data frames are compressed in real time using a Lempel Ziv
  353. * algorithm. This is done transparently. Once this feature is enabled,
  354. * compression and decompression takes place inside the chipset, without
  355. * putting additional load on the host CPU.
  356. *
  357. */
  358. #define MODULATION_TURBO 0x00000080
  359. enum ath5k_driver_mode {
  360. AR5K_MODE_11A = 0,
  361. AR5K_MODE_11A_TURBO = 1,
  362. AR5K_MODE_11B = 2,
  363. AR5K_MODE_11G = 3,
  364. AR5K_MODE_11G_TURBO = 4,
  365. AR5K_MODE_XR = 0,
  366. AR5K_MODE_MAX = 5
  367. };
  368. /****************\
  369. TX DEFINITIONS
  370. \****************/
  371. /*
  372. * TX Status descriptor
  373. */
  374. struct ath5k_tx_status {
  375. u16 ts_seqnum;
  376. u16 ts_tstamp;
  377. u8 ts_status;
  378. u8 ts_rate[4];
  379. u8 ts_retry[4];
  380. u8 ts_final_idx;
  381. s8 ts_rssi;
  382. u8 ts_shortretry;
  383. u8 ts_longretry;
  384. u8 ts_virtcol;
  385. u8 ts_antenna;
  386. };
  387. #define AR5K_TXSTAT_ALTRATE 0x80
  388. #define AR5K_TXERR_XRETRY 0x01
  389. #define AR5K_TXERR_FILT 0x02
  390. #define AR5K_TXERR_FIFO 0x04
  391. /**
  392. * enum ath5k_tx_queue - Queue types used to classify tx queues.
  393. * @AR5K_TX_QUEUE_INACTIVE: q is unused -- see ath5k_hw_release_tx_queue
  394. * @AR5K_TX_QUEUE_DATA: A normal data queue
  395. * @AR5K_TX_QUEUE_XR_DATA: An XR-data queue
  396. * @AR5K_TX_QUEUE_BEACON: The beacon queue
  397. * @AR5K_TX_QUEUE_CAB: The after-beacon queue
  398. * @AR5K_TX_QUEUE_UAPSD: Unscheduled Automatic Power Save Delivery queue
  399. */
  400. enum ath5k_tx_queue {
  401. AR5K_TX_QUEUE_INACTIVE = 0,
  402. AR5K_TX_QUEUE_DATA,
  403. AR5K_TX_QUEUE_XR_DATA,
  404. AR5K_TX_QUEUE_BEACON,
  405. AR5K_TX_QUEUE_CAB,
  406. AR5K_TX_QUEUE_UAPSD,
  407. };
  408. #define AR5K_NUM_TX_QUEUES 10
  409. #define AR5K_NUM_TX_QUEUES_NOQCU 2
  410. /*
  411. * Queue syb-types to classify normal data queues.
  412. * These are the 4 Access Categories as defined in
  413. * WME spec. 0 is the lowest priority and 4 is the
  414. * highest. Normal data that hasn't been classified
  415. * goes to the Best Effort AC.
  416. */
  417. enum ath5k_tx_queue_subtype {
  418. AR5K_WME_AC_BK = 0, /*Background traffic*/
  419. AR5K_WME_AC_BE, /*Best-effort (normal) traffic)*/
  420. AR5K_WME_AC_VI, /*Video traffic*/
  421. AR5K_WME_AC_VO, /*Voice traffic*/
  422. };
  423. /*
  424. * Queue ID numbers as returned by the hw functions, each number
  425. * represents a hw queue. If hw does not support hw queues
  426. * (eg 5210) all data goes in one queue. These match
  427. * d80211 definitions (net80211/MadWiFi don't use them).
  428. */
  429. enum ath5k_tx_queue_id {
  430. AR5K_TX_QUEUE_ID_NOQCU_DATA = 0,
  431. AR5K_TX_QUEUE_ID_NOQCU_BEACON = 1,
  432. AR5K_TX_QUEUE_ID_DATA_MIN = 0, /*IEEE80211_TX_QUEUE_DATA0*/
  433. AR5K_TX_QUEUE_ID_DATA_MAX = 4, /*IEEE80211_TX_QUEUE_DATA4*/
  434. AR5K_TX_QUEUE_ID_DATA_SVP = 5, /*IEEE80211_TX_QUEUE_SVP - Spectralink Voice Protocol*/
  435. AR5K_TX_QUEUE_ID_CAB = 6, /*IEEE80211_TX_QUEUE_AFTER_BEACON*/
  436. AR5K_TX_QUEUE_ID_BEACON = 7, /*IEEE80211_TX_QUEUE_BEACON*/
  437. AR5K_TX_QUEUE_ID_UAPSD = 8,
  438. AR5K_TX_QUEUE_ID_XR_DATA = 9,
  439. };
  440. /*
  441. * Flags to set hw queue's parameters...
  442. */
  443. #define AR5K_TXQ_FLAG_TXOKINT_ENABLE 0x0001 /* Enable TXOK interrupt */
  444. #define AR5K_TXQ_FLAG_TXERRINT_ENABLE 0x0002 /* Enable TXERR interrupt */
  445. #define AR5K_TXQ_FLAG_TXEOLINT_ENABLE 0x0004 /* Enable TXEOL interrupt -not used- */
  446. #define AR5K_TXQ_FLAG_TXDESCINT_ENABLE 0x0008 /* Enable TXDESC interrupt -not used- */
  447. #define AR5K_TXQ_FLAG_TXURNINT_ENABLE 0x0010 /* Enable TXURN interrupt */
  448. #define AR5K_TXQ_FLAG_CBRORNINT_ENABLE 0x0020 /* Enable CBRORN interrupt */
  449. #define AR5K_TXQ_FLAG_CBRURNINT_ENABLE 0x0040 /* Enable CBRURN interrupt */
  450. #define AR5K_TXQ_FLAG_QTRIGINT_ENABLE 0x0080 /* Enable QTRIG interrupt */
  451. #define AR5K_TXQ_FLAG_TXNOFRMINT_ENABLE 0x0100 /* Enable TXNOFRM interrupt */
  452. #define AR5K_TXQ_FLAG_BACKOFF_DISABLE 0x0200 /* Disable random post-backoff */
  453. #define AR5K_TXQ_FLAG_RDYTIME_EXP_POLICY_ENABLE 0x0300 /* Enable ready time expiry policy (?)*/
  454. #define AR5K_TXQ_FLAG_FRAG_BURST_BACKOFF_ENABLE 0x0800 /* Enable backoff while bursting */
  455. #define AR5K_TXQ_FLAG_POST_FR_BKOFF_DIS 0x1000 /* Disable backoff while bursting */
  456. #define AR5K_TXQ_FLAG_COMPRESSION_ENABLE 0x2000 /* Enable hw compression -not implemented-*/
  457. /*
  458. * A struct to hold tx queue's parameters
  459. */
  460. struct ath5k_txq_info {
  461. enum ath5k_tx_queue tqi_type;
  462. enum ath5k_tx_queue_subtype tqi_subtype;
  463. u16 tqi_flags; /* Tx queue flags (see above) */
  464. u32 tqi_aifs; /* Arbitrated Interframe Space */
  465. s32 tqi_cw_min; /* Minimum Contention Window */
  466. s32 tqi_cw_max; /* Maximum Contention Window */
  467. u32 tqi_cbr_period; /* Constant bit rate period */
  468. u32 tqi_cbr_overflow_limit;
  469. u32 tqi_burst_time;
  470. u32 tqi_ready_time; /* Not used */
  471. };
  472. /*
  473. * Transmit packet types.
  474. * used on tx control descriptor
  475. * TODO: Use them inside base.c corectly
  476. */
  477. enum ath5k_pkt_type {
  478. AR5K_PKT_TYPE_NORMAL = 0,
  479. AR5K_PKT_TYPE_ATIM = 1,
  480. AR5K_PKT_TYPE_PSPOLL = 2,
  481. AR5K_PKT_TYPE_BEACON = 3,
  482. AR5K_PKT_TYPE_PROBE_RESP = 4,
  483. AR5K_PKT_TYPE_PIFS = 5,
  484. };
  485. /*
  486. * TX power and TPC settings
  487. */
  488. #define AR5K_TXPOWER_OFDM(_r, _v) ( \
  489. ((0 & 1) << ((_v) + 6)) | \
  490. (((ah->ah_txpower.txp_rates_power_table[(_r)]) & 0x3f) << (_v)) \
  491. )
  492. #define AR5K_TXPOWER_CCK(_r, _v) ( \
  493. (ah->ah_txpower.txp_rates_power_table[(_r)] & 0x3f) << (_v) \
  494. )
  495. /*
  496. * DMA size definitions (2^n+2)
  497. */
  498. enum ath5k_dmasize {
  499. AR5K_DMASIZE_4B = 0,
  500. AR5K_DMASIZE_8B,
  501. AR5K_DMASIZE_16B,
  502. AR5K_DMASIZE_32B,
  503. AR5K_DMASIZE_64B,
  504. AR5K_DMASIZE_128B,
  505. AR5K_DMASIZE_256B,
  506. AR5K_DMASIZE_512B
  507. };
  508. /****************\
  509. RX DEFINITIONS
  510. \****************/
  511. /*
  512. * RX Status descriptor
  513. */
  514. struct ath5k_rx_status {
  515. u16 rs_datalen;
  516. u16 rs_tstamp;
  517. u8 rs_status;
  518. u8 rs_phyerr;
  519. s8 rs_rssi;
  520. u8 rs_keyix;
  521. u8 rs_rate;
  522. u8 rs_antenna;
  523. u8 rs_more;
  524. };
  525. #define AR5K_RXERR_CRC 0x01
  526. #define AR5K_RXERR_PHY 0x02
  527. #define AR5K_RXERR_FIFO 0x04
  528. #define AR5K_RXERR_DECRYPT 0x08
  529. #define AR5K_RXERR_MIC 0x10
  530. #define AR5K_RXKEYIX_INVALID ((u8) - 1)
  531. #define AR5K_TXKEYIX_INVALID ((u32) - 1)
  532. /**************************\
  533. BEACON TIMERS DEFINITIONS
  534. \**************************/
  535. #define AR5K_BEACON_PERIOD 0x0000ffff
  536. #define AR5K_BEACON_ENA 0x00800000 /*enable beacon xmit*/
  537. #define AR5K_BEACON_RESET_TSF 0x01000000 /*force a TSF reset*/
  538. #if 0
  539. /**
  540. * struct ath5k_beacon_state - Per-station beacon timer state.
  541. * @bs_interval: in TU's, can also include the above flags
  542. * @bs_cfp_max_duration: if non-zero hw is setup to coexist with a
  543. * Point Coordination Function capable AP
  544. */
  545. struct ath5k_beacon_state {
  546. u32 bs_next_beacon;
  547. u32 bs_next_dtim;
  548. u32 bs_interval;
  549. u8 bs_dtim_period;
  550. u8 bs_cfp_period;
  551. u16 bs_cfp_max_duration;
  552. u16 bs_cfp_du_remain;
  553. u16 bs_tim_offset;
  554. u16 bs_sleep_duration;
  555. u16 bs_bmiss_threshold;
  556. u32 bs_cfp_next;
  557. };
  558. #endif
  559. /*
  560. * TSF to TU conversion:
  561. *
  562. * TSF is a 64bit value in usec (microseconds).
  563. * TU is a 32bit value and defined by IEEE802.11 (page 6) as "A measurement of
  564. * time equal to 1024 usec", so it's roughly milliseconds (usec / 1024).
  565. */
  566. #define TSF_TO_TU(_tsf) (u32)((_tsf) >> 10)
  567. /*******************************\
  568. GAIN OPTIMIZATION DEFINITIONS
  569. \*******************************/
  570. enum ath5k_rfgain {
  571. AR5K_RFGAIN_INACTIVE = 0,
  572. AR5K_RFGAIN_ACTIVE,
  573. AR5K_RFGAIN_READ_REQUESTED,
  574. AR5K_RFGAIN_NEED_CHANGE,
  575. };
  576. struct ath5k_gain {
  577. u8 g_step_idx;
  578. u8 g_current;
  579. u8 g_target;
  580. u8 g_low;
  581. u8 g_high;
  582. u8 g_f_corr;
  583. u8 g_state;
  584. };
  585. /********************\
  586. COMMON DEFINITIONS
  587. \********************/
  588. #define AR5K_SLOT_TIME_9 396
  589. #define AR5K_SLOT_TIME_20 880
  590. #define AR5K_SLOT_TIME_MAX 0xffff
  591. /* channel_flags */
  592. #define CHANNEL_CW_INT 0x0008 /* Contention Window interference detected */
  593. #define CHANNEL_TURBO 0x0010 /* Turbo Channel */
  594. #define CHANNEL_CCK 0x0020 /* CCK channel */
  595. #define CHANNEL_OFDM 0x0040 /* OFDM channel */
  596. #define CHANNEL_2GHZ 0x0080 /* 2GHz channel. */
  597. #define CHANNEL_5GHZ 0x0100 /* 5GHz channel */
  598. #define CHANNEL_PASSIVE 0x0200 /* Only passive scan allowed */
  599. #define CHANNEL_DYN 0x0400 /* Dynamic CCK-OFDM channel (for g operation) */
  600. #define CHANNEL_XR 0x0800 /* XR channel */
  601. #define CHANNEL_A (CHANNEL_5GHZ|CHANNEL_OFDM)
  602. #define CHANNEL_B (CHANNEL_2GHZ|CHANNEL_CCK)
  603. #define CHANNEL_G (CHANNEL_2GHZ|CHANNEL_OFDM)
  604. #define CHANNEL_T (CHANNEL_5GHZ|CHANNEL_OFDM|CHANNEL_TURBO)
  605. #define CHANNEL_TG (CHANNEL_2GHZ|CHANNEL_OFDM|CHANNEL_TURBO)
  606. #define CHANNEL_108A CHANNEL_T
  607. #define CHANNEL_108G CHANNEL_TG
  608. #define CHANNEL_X (CHANNEL_5GHZ|CHANNEL_OFDM|CHANNEL_XR)
  609. #define CHANNEL_ALL (CHANNEL_OFDM|CHANNEL_CCK|CHANNEL_2GHZ|CHANNEL_5GHZ| \
  610. CHANNEL_TURBO)
  611. #define CHANNEL_ALL_NOTURBO (CHANNEL_ALL & ~CHANNEL_TURBO)
  612. #define CHANNEL_MODES CHANNEL_ALL
  613. /*
  614. * Used internaly for reset_tx_queue).
  615. * Also see struct struct ieee80211_channel.
  616. */
  617. #define IS_CHAN_XR(_c) ((_c.hw_value & CHANNEL_XR) != 0)
  618. #define IS_CHAN_B(_c) ((_c.hw_value & CHANNEL_B) != 0)
  619. /*
  620. * The following structure is used to map 2GHz channels to
  621. * 5GHz Atheros channels.
  622. * TODO: Clean up
  623. */
  624. struct ath5k_athchan_2ghz {
  625. u32 a2_flags;
  626. u16 a2_athchan;
  627. };
  628. /******************\
  629. RATE DEFINITIONS
  630. \******************/
  631. /**
  632. * Seems the ar5xxx harware supports up to 32 rates, indexed by 1-32.
  633. *
  634. * The rate code is used to get the RX rate or set the TX rate on the
  635. * hardware descriptors. It is also used for internal modulation control
  636. * and settings.
  637. *
  638. * This is the hardware rate map we are aware of:
  639. *
  640. * rate_code 0x01 0x02 0x03 0x04 0x05 0x06 0x07 0x08
  641. * rate_kbps 3000 1000 ? ? ? 2000 500 48000
  642. *
  643. * rate_code 0x09 0x0A 0x0B 0x0C 0x0D 0x0E 0x0F 0x10
  644. * rate_kbps 24000 12000 6000 54000 36000 18000 9000 ?
  645. *
  646. * rate_code 17 18 19 20 21 22 23 24
  647. * rate_kbps ? ? ? ? ? ? ? 11000
  648. *
  649. * rate_code 25 26 27 28 29 30 31 32
  650. * rate_kbps 5500 2000 1000 11000S 5500S 2000S ? ?
  651. *
  652. * "S" indicates CCK rates with short preamble.
  653. *
  654. * AR5211 has different rate codes for CCK (802.11B) rates. It only uses the
  655. * lowest 4 bits, so they are the same as below with a 0xF mask.
  656. * (0xB, 0xA, 0x9 and 0x8 for 1M, 2M, 5.5M and 11M).
  657. * We handle this in ath5k_setup_bands().
  658. */
  659. #define AR5K_MAX_RATES 32
  660. /* B */
  661. #define ATH5K_RATE_CODE_1M 0x1B
  662. #define ATH5K_RATE_CODE_2M 0x1A
  663. #define ATH5K_RATE_CODE_5_5M 0x19
  664. #define ATH5K_RATE_CODE_11M 0x18
  665. /* A and G */
  666. #define ATH5K_RATE_CODE_6M 0x0B
  667. #define ATH5K_RATE_CODE_9M 0x0F
  668. #define ATH5K_RATE_CODE_12M 0x0A
  669. #define ATH5K_RATE_CODE_18M 0x0E
  670. #define ATH5K_RATE_CODE_24M 0x09
  671. #define ATH5K_RATE_CODE_36M 0x0D
  672. #define ATH5K_RATE_CODE_48M 0x08
  673. #define ATH5K_RATE_CODE_54M 0x0C
  674. /* XR */
  675. #define ATH5K_RATE_CODE_XR_500K 0x07
  676. #define ATH5K_RATE_CODE_XR_1M 0x02
  677. #define ATH5K_RATE_CODE_XR_2M 0x06
  678. #define ATH5K_RATE_CODE_XR_3M 0x01
  679. /* adding this flag to rate_code enables short preamble */
  680. #define AR5K_SET_SHORT_PREAMBLE 0x04
  681. /*
  682. * Crypto definitions
  683. */
  684. #define AR5K_KEYCACHE_SIZE 8
  685. /***********************\
  686. HW RELATED DEFINITIONS
  687. \***********************/
  688. /*
  689. * Misc definitions
  690. */
  691. #define AR5K_RSSI_EP_MULTIPLIER (1<<7)
  692. #define AR5K_ASSERT_ENTRY(_e, _s) do { \
  693. if (_e >= _s) \
  694. return (false); \
  695. } while (0)
  696. /*
  697. * Hardware interrupt abstraction
  698. */
  699. /**
  700. * enum ath5k_int - Hardware interrupt masks helpers
  701. *
  702. * @AR5K_INT_RX: mask to identify received frame interrupts, of type
  703. * AR5K_ISR_RXOK or AR5K_ISR_RXERR
  704. * @AR5K_INT_RXDESC: Request RX descriptor/Read RX descriptor (?)
  705. * @AR5K_INT_RXNOFRM: No frame received (?)
  706. * @AR5K_INT_RXEOL: received End Of List for VEOL (Virtual End Of List). The
  707. * Queue Control Unit (QCU) signals an EOL interrupt only if a descriptor's
  708. * LinkPtr is NULL. For more details, refer to:
  709. * http://www.freepatentsonline.com/20030225739.html
  710. * @AR5K_INT_RXORN: Indicates we got RX overrun (eg. no more descriptors).
  711. * Note that Rx overrun is not always fatal, on some chips we can continue
  712. * operation without reseting the card, that's why int_fatal is not
  713. * common for all chips.
  714. * @AR5K_INT_TX: mask to identify received frame interrupts, of type
  715. * AR5K_ISR_TXOK or AR5K_ISR_TXERR
  716. * @AR5K_INT_TXDESC: Request TX descriptor/Read TX status descriptor (?)
  717. * @AR5K_INT_TXURN: received when we should increase the TX trigger threshold
  718. * We currently do increments on interrupt by
  719. * (AR5K_TUNE_MAX_TX_FIFO_THRES - current_trigger_level) / 2
  720. * @AR5K_INT_MIB: Indicates the Management Information Base counters should be
  721. * checked. We should do this with ath5k_hw_update_mib_counters() but
  722. * it seems we should also then do some noise immunity work.
  723. * @AR5K_INT_RXPHY: RX PHY Error
  724. * @AR5K_INT_RXKCM: RX Key cache miss
  725. * @AR5K_INT_SWBA: SoftWare Beacon Alert - indicates its time to send a
  726. * beacon that must be handled in software. The alternative is if you
  727. * have VEOL support, in that case you let the hardware deal with things.
  728. * @AR5K_INT_BMISS: If in STA mode this indicates we have stopped seeing
  729. * beacons from the AP have associated with, we should probably try to
  730. * reassociate. When in IBSS mode this might mean we have not received
  731. * any beacons from any local stations. Note that every station in an
  732. * IBSS schedules to send beacons at the Target Beacon Transmission Time
  733. * (TBTT) with a random backoff.
  734. * @AR5K_INT_BNR: Beacon Not Ready interrupt - ??
  735. * @AR5K_INT_GPIO: GPIO interrupt is used for RF Kill, disabled for now
  736. * until properly handled
  737. * @AR5K_INT_FATAL: Fatal errors were encountered, typically caused by DMA
  738. * errors. These types of errors we can enable seem to be of type
  739. * AR5K_SIMR2_MCABT, AR5K_SIMR2_SSERR and AR5K_SIMR2_DPERR.
  740. * @AR5K_INT_GLOBAL: Used to clear and set the IER
  741. * @AR5K_INT_NOCARD: signals the card has been removed
  742. * @AR5K_INT_COMMON: common interrupts shared amogst MACs with the same
  743. * bit value
  744. *
  745. * These are mapped to take advantage of some common bits
  746. * between the MACs, to be able to set intr properties
  747. * easier. Some of them are not used yet inside hw.c. Most map
  748. * to the respective hw interrupt value as they are common amogst different
  749. * MACs.
  750. */
  751. enum ath5k_int {
  752. AR5K_INT_RXOK = 0x00000001,
  753. AR5K_INT_RXDESC = 0x00000002,
  754. AR5K_INT_RXERR = 0x00000004,
  755. AR5K_INT_RXNOFRM = 0x00000008,
  756. AR5K_INT_RXEOL = 0x00000010,
  757. AR5K_INT_RXORN = 0x00000020,
  758. AR5K_INT_TXOK = 0x00000040,
  759. AR5K_INT_TXDESC = 0x00000080,
  760. AR5K_INT_TXERR = 0x00000100,
  761. AR5K_INT_TXNOFRM = 0x00000200,
  762. AR5K_INT_TXEOL = 0x00000400,
  763. AR5K_INT_TXURN = 0x00000800,
  764. AR5K_INT_MIB = 0x00001000,
  765. AR5K_INT_SWI = 0x00002000,
  766. AR5K_INT_RXPHY = 0x00004000,
  767. AR5K_INT_RXKCM = 0x00008000,
  768. AR5K_INT_SWBA = 0x00010000,
  769. AR5K_INT_BRSSI = 0x00020000,
  770. AR5K_INT_BMISS = 0x00040000,
  771. AR5K_INT_FATAL = 0x00080000, /* Non common */
  772. AR5K_INT_BNR = 0x00100000, /* Non common */
  773. AR5K_INT_TIM = 0x00200000, /* Non common */
  774. AR5K_INT_DTIM = 0x00400000, /* Non common */
  775. AR5K_INT_DTIM_SYNC = 0x00800000, /* Non common */
  776. AR5K_INT_GPIO = 0x01000000,
  777. AR5K_INT_BCN_TIMEOUT = 0x02000000, /* Non common */
  778. AR5K_INT_CAB_TIMEOUT = 0x04000000, /* Non common */
  779. AR5K_INT_RX_DOPPLER = 0x08000000, /* Non common */
  780. AR5K_INT_QCBRORN = 0x10000000, /* Non common */
  781. AR5K_INT_QCBRURN = 0x20000000, /* Non common */
  782. AR5K_INT_QTRIG = 0x40000000, /* Non common */
  783. AR5K_INT_GLOBAL = 0x80000000,
  784. AR5K_INT_COMMON = AR5K_INT_RXOK
  785. | AR5K_INT_RXDESC
  786. | AR5K_INT_RXERR
  787. | AR5K_INT_RXNOFRM
  788. | AR5K_INT_RXEOL
  789. | AR5K_INT_RXORN
  790. | AR5K_INT_TXOK
  791. | AR5K_INT_TXDESC
  792. | AR5K_INT_TXERR
  793. | AR5K_INT_TXNOFRM
  794. | AR5K_INT_TXEOL
  795. | AR5K_INT_TXURN
  796. | AR5K_INT_MIB
  797. | AR5K_INT_SWI
  798. | AR5K_INT_RXPHY
  799. | AR5K_INT_RXKCM
  800. | AR5K_INT_SWBA
  801. | AR5K_INT_BRSSI
  802. | AR5K_INT_BMISS
  803. | AR5K_INT_GPIO
  804. | AR5K_INT_GLOBAL,
  805. AR5K_INT_NOCARD = 0xffffffff
  806. };
  807. /*
  808. * Power management
  809. */
  810. enum ath5k_power_mode {
  811. AR5K_PM_UNDEFINED = 0,
  812. AR5K_PM_AUTO,
  813. AR5K_PM_AWAKE,
  814. AR5K_PM_FULL_SLEEP,
  815. AR5K_PM_NETWORK_SLEEP,
  816. };
  817. /*
  818. * These match net80211 definitions (not used in
  819. * mac80211).
  820. * TODO: Clean this up
  821. */
  822. #define AR5K_LED_INIT 0 /*IEEE80211_S_INIT*/
  823. #define AR5K_LED_SCAN 1 /*IEEE80211_S_SCAN*/
  824. #define AR5K_LED_AUTH 2 /*IEEE80211_S_AUTH*/
  825. #define AR5K_LED_ASSOC 3 /*IEEE80211_S_ASSOC*/
  826. #define AR5K_LED_RUN 4 /*IEEE80211_S_RUN*/
  827. /* GPIO-controlled software LED */
  828. #define AR5K_SOFTLED_PIN 0
  829. #define AR5K_SOFTLED_ON 0
  830. #define AR5K_SOFTLED_OFF 1
  831. /*
  832. * Chipset capabilities -see ath5k_hw_get_capability-
  833. * get_capability function is not yet fully implemented
  834. * in ath5k so most of these don't work yet...
  835. * TODO: Implement these & merge with _TUNE_ stuff above
  836. */
  837. enum ath5k_capability_type {
  838. AR5K_CAP_REG_DMN = 0, /* Used to get current reg. domain id */
  839. AR5K_CAP_TKIP_MIC = 2, /* Can handle TKIP MIC in hardware */
  840. AR5K_CAP_TKIP_SPLIT = 3, /* TKIP uses split keys */
  841. AR5K_CAP_PHYCOUNTERS = 4, /* PHY error counters */
  842. AR5K_CAP_DIVERSITY = 5, /* Supports fast diversity */
  843. AR5K_CAP_NUM_TXQUEUES = 6, /* Used to get max number of hw txqueues */
  844. AR5K_CAP_VEOL = 7, /* Supports virtual EOL */
  845. AR5K_CAP_COMPRESSION = 8, /* Supports compression */
  846. AR5K_CAP_BURST = 9, /* Supports packet bursting */
  847. AR5K_CAP_FASTFRAME = 10, /* Supports fast frames */
  848. AR5K_CAP_TXPOW = 11, /* Used to get global tx power limit */
  849. AR5K_CAP_TPC = 12, /* Can do per-packet tx power control (needed for 802.11a) */
  850. AR5K_CAP_BSSIDMASK = 13, /* Supports bssid mask */
  851. AR5K_CAP_MCAST_KEYSRCH = 14, /* Supports multicast key search */
  852. AR5K_CAP_TSF_ADJUST = 15, /* Supports beacon tsf adjust */
  853. AR5K_CAP_XR = 16, /* Supports XR mode */
  854. AR5K_CAP_WME_TKIPMIC = 17, /* Supports TKIP MIC when using WMM */
  855. AR5K_CAP_CHAN_HALFRATE = 18, /* Supports half rate channels */
  856. AR5K_CAP_CHAN_QUARTERRATE = 19, /* Supports quarter rate channels */
  857. AR5K_CAP_RFSILENT = 20, /* Supports RFsilent */
  858. };
  859. /* XXX: we *may* move cap_range stuff to struct wiphy */
  860. struct ath5k_capabilities {
  861. /*
  862. * Supported PHY modes
  863. * (ie. CHANNEL_A, CHANNEL_B, ...)
  864. */
  865. DECLARE_BITMAP(cap_mode, AR5K_MODE_MAX);
  866. /*
  867. * Frequency range (without regulation restrictions)
  868. */
  869. struct {
  870. u16 range_2ghz_min;
  871. u16 range_2ghz_max;
  872. u16 range_5ghz_min;
  873. u16 range_5ghz_max;
  874. } cap_range;
  875. /*
  876. * Values stored in the EEPROM (some of them...)
  877. */
  878. struct ath5k_eeprom_info cap_eeprom;
  879. /*
  880. * Queue information
  881. */
  882. struct {
  883. u8 q_tx_num;
  884. } cap_queues;
  885. };
  886. /***************************************\
  887. HARDWARE ABSTRACTION LAYER STRUCTURE
  888. \***************************************/
  889. /*
  890. * Misc defines
  891. */
  892. #define AR5K_MAX_GPIO 10
  893. #define AR5K_MAX_RF_BANKS 8
  894. /* TODO: Clean up and merge with ath5k_softc */
  895. struct ath5k_hw {
  896. u32 ah_magic;
  897. struct ath5k_softc *ah_sc;
  898. void __iomem *ah_iobase;
  899. enum ath5k_int ah_imr;
  900. enum nl80211_iftype ah_op_mode;
  901. enum ath5k_power_mode ah_power_mode;
  902. struct ieee80211_channel ah_current_channel;
  903. bool ah_turbo;
  904. bool ah_calibration;
  905. bool ah_running;
  906. bool ah_single_chip;
  907. bool ah_combined_mic;
  908. u32 ah_mac_srev;
  909. u16 ah_mac_version;
  910. u16 ah_mac_revision;
  911. u16 ah_phy_revision;
  912. u16 ah_radio_5ghz_revision;
  913. u16 ah_radio_2ghz_revision;
  914. enum ath5k_version ah_version;
  915. enum ath5k_radio ah_radio;
  916. u32 ah_phy;
  917. bool ah_5ghz;
  918. bool ah_2ghz;
  919. #define ah_regdomain ah_capabilities.cap_regdomain.reg_current
  920. #define ah_regdomain_hw ah_capabilities.cap_regdomain.reg_hw
  921. #define ah_modes ah_capabilities.cap_mode
  922. #define ah_ee_version ah_capabilities.cap_eeprom.ee_version
  923. u32 ah_atim_window;
  924. u32 ah_aifs;
  925. u32 ah_cw_min;
  926. u32 ah_cw_max;
  927. bool ah_software_retry;
  928. u32 ah_limit_tx_retries;
  929. u32 ah_antenna[AR5K_EEPROM_N_MODES][AR5K_ANT_MAX];
  930. bool ah_ant_diversity;
  931. u8 ah_sta_id[ETH_ALEN];
  932. /* Current BSSID we are trying to assoc to / create.
  933. * This is passed by mac80211 on config_interface() and cached here for
  934. * use in resets */
  935. u8 ah_bssid[ETH_ALEN];
  936. u8 ah_bssid_mask[ETH_ALEN];
  937. u32 ah_gpio[AR5K_MAX_GPIO];
  938. int ah_gpio_npins;
  939. struct ath5k_capabilities ah_capabilities;
  940. struct ath5k_txq_info ah_txq[AR5K_NUM_TX_QUEUES];
  941. u32 ah_txq_status;
  942. u32 ah_txq_imr_txok;
  943. u32 ah_txq_imr_txerr;
  944. u32 ah_txq_imr_txurn;
  945. u32 ah_txq_imr_txdesc;
  946. u32 ah_txq_imr_txeol;
  947. u32 ah_txq_imr_cbrorn;
  948. u32 ah_txq_imr_cbrurn;
  949. u32 ah_txq_imr_qtrig;
  950. u32 ah_txq_imr_nofrm;
  951. u32 ah_txq_isr;
  952. u32 *ah_rf_banks;
  953. size_t ah_rf_banks_size;
  954. size_t ah_rf_regs_count;
  955. struct ath5k_gain ah_gain;
  956. u8 ah_offset[AR5K_MAX_RF_BANKS];
  957. struct {
  958. /* Temporary tables used for interpolation */
  959. u8 tmpL[AR5K_EEPROM_N_PD_GAINS]
  960. [AR5K_EEPROM_POWER_TABLE_SIZE];
  961. u8 tmpR[AR5K_EEPROM_N_PD_GAINS]
  962. [AR5K_EEPROM_POWER_TABLE_SIZE];
  963. u8 txp_pd_table[AR5K_EEPROM_POWER_TABLE_SIZE * 2];
  964. u16 txp_rates_power_table[AR5K_MAX_RATES];
  965. u8 txp_min_idx;
  966. bool txp_tpc;
  967. /* Values in 0.25dB units */
  968. s16 txp_min_pwr;
  969. s16 txp_max_pwr;
  970. s16 txp_offset;
  971. s16 txp_ofdm;
  972. /* Values in dB units */
  973. s16 txp_cck_ofdm_pwr_delta;
  974. s16 txp_cck_ofdm_gainf_delta;
  975. } ah_txpower;
  976. struct {
  977. bool r_enabled;
  978. int r_last_alert;
  979. struct ieee80211_channel r_last_channel;
  980. } ah_radar;
  981. /* noise floor from last periodic calibration */
  982. s32 ah_noise_floor;
  983. /*
  984. * Function pointers
  985. */
  986. int (*ah_setup_rx_desc)(struct ath5k_hw *ah, struct ath5k_desc *desc,
  987. u32 size, unsigned int flags);
  988. int (*ah_setup_tx_desc)(struct ath5k_hw *, struct ath5k_desc *,
  989. unsigned int, unsigned int, enum ath5k_pkt_type, unsigned int,
  990. unsigned int, unsigned int, unsigned int, unsigned int,
  991. unsigned int, unsigned int, unsigned int);
  992. int (*ah_setup_mrr_tx_desc)(struct ath5k_hw *, struct ath5k_desc *,
  993. unsigned int, unsigned int, unsigned int, unsigned int,
  994. unsigned int, unsigned int);
  995. int (*ah_proc_tx_desc)(struct ath5k_hw *, struct ath5k_desc *,
  996. struct ath5k_tx_status *);
  997. int (*ah_proc_rx_desc)(struct ath5k_hw *, struct ath5k_desc *,
  998. struct ath5k_rx_status *);
  999. };
  1000. /*
  1001. * Prototypes
  1002. */
  1003. /* Attach/Detach Functions */
  1004. extern struct ath5k_hw *ath5k_hw_attach(struct ath5k_softc *sc, u8 mac_version);
  1005. extern void ath5k_hw_detach(struct ath5k_hw *ah);
  1006. /* LED functions */
  1007. extern int ath5k_init_leds(struct ath5k_softc *sc);
  1008. extern void ath5k_led_enable(struct ath5k_softc *sc);
  1009. extern void ath5k_led_off(struct ath5k_softc *sc);
  1010. extern void ath5k_unregister_leds(struct ath5k_softc *sc);
  1011. /* Reset Functions */
  1012. extern int ath5k_hw_nic_wakeup(struct ath5k_hw *ah, int flags, bool initial);
  1013. extern int ath5k_hw_reset(struct ath5k_hw *ah, enum nl80211_iftype op_mode, struct ieee80211_channel *channel, bool change_channel);
  1014. /* Power management functions */
  1015. extern int ath5k_hw_set_power(struct ath5k_hw *ah, enum ath5k_power_mode mode, bool set_chip, u16 sleep_duration);
  1016. /* DMA Related Functions */
  1017. extern void ath5k_hw_start_rx_dma(struct ath5k_hw *ah);
  1018. extern int ath5k_hw_stop_rx_dma(struct ath5k_hw *ah);
  1019. extern u32 ath5k_hw_get_rxdp(struct ath5k_hw *ah);
  1020. extern void ath5k_hw_set_rxdp(struct ath5k_hw *ah, u32 phys_addr);
  1021. extern int ath5k_hw_start_tx_dma(struct ath5k_hw *ah, unsigned int queue);
  1022. extern int ath5k_hw_stop_tx_dma(struct ath5k_hw *ah, unsigned int queue);
  1023. extern u32 ath5k_hw_get_txdp(struct ath5k_hw *ah, unsigned int queue);
  1024. extern int ath5k_hw_set_txdp(struct ath5k_hw *ah, unsigned int queue,
  1025. u32 phys_addr);
  1026. extern int ath5k_hw_update_tx_triglevel(struct ath5k_hw *ah, bool increase);
  1027. /* Interrupt handling */
  1028. extern bool ath5k_hw_is_intr_pending(struct ath5k_hw *ah);
  1029. extern int ath5k_hw_get_isr(struct ath5k_hw *ah, enum ath5k_int *interrupt_mask);
  1030. extern enum ath5k_int ath5k_hw_set_imr(struct ath5k_hw *ah, enum
  1031. ath5k_int new_mask);
  1032. extern void ath5k_hw_update_mib_counters(struct ath5k_hw *ah, struct ieee80211_low_level_stats *stats);
  1033. /* EEPROM access functions */
  1034. extern int ath5k_eeprom_init(struct ath5k_hw *ah);
  1035. extern void ath5k_eeprom_detach(struct ath5k_hw *ah);
  1036. extern int ath5k_eeprom_read_mac(struct ath5k_hw *ah, u8 *mac);
  1037. extern bool ath5k_eeprom_is_hb63(struct ath5k_hw *ah);
  1038. /* Protocol Control Unit Functions */
  1039. extern int ath5k_hw_set_opmode(struct ath5k_hw *ah);
  1040. /* BSSID Functions */
  1041. extern void ath5k_hw_get_lladdr(struct ath5k_hw *ah, u8 *mac);
  1042. extern int ath5k_hw_set_lladdr(struct ath5k_hw *ah, const u8 *mac);
  1043. extern void ath5k_hw_set_associd(struct ath5k_hw *ah, const u8 *bssid, u16 assoc_id);
  1044. extern int ath5k_hw_set_bssid_mask(struct ath5k_hw *ah, const u8 *mask);
  1045. /* Receive start/stop functions */
  1046. extern void ath5k_hw_start_rx_pcu(struct ath5k_hw *ah);
  1047. extern void ath5k_hw_stop_rx_pcu(struct ath5k_hw *ah);
  1048. /* RX Filter functions */
  1049. extern void ath5k_hw_set_mcast_filter(struct ath5k_hw *ah, u32 filter0, u32 filter1);
  1050. extern int ath5k_hw_set_mcast_filter_idx(struct ath5k_hw *ah, u32 index);
  1051. extern int ath5k_hw_clear_mcast_filter_idx(struct ath5k_hw *ah, u32 index);
  1052. extern u32 ath5k_hw_get_rx_filter(struct ath5k_hw *ah);
  1053. extern void ath5k_hw_set_rx_filter(struct ath5k_hw *ah, u32 filter);
  1054. /* Beacon control functions */
  1055. extern u32 ath5k_hw_get_tsf32(struct ath5k_hw *ah);
  1056. extern u64 ath5k_hw_get_tsf64(struct ath5k_hw *ah);
  1057. extern void ath5k_hw_set_tsf64(struct ath5k_hw *ah, u64 tsf64);
  1058. extern void ath5k_hw_reset_tsf(struct ath5k_hw *ah);
  1059. extern void ath5k_hw_init_beacon(struct ath5k_hw *ah, u32 next_beacon, u32 interval);
  1060. #if 0
  1061. extern int ath5k_hw_set_beacon_timers(struct ath5k_hw *ah, const struct ath5k_beacon_state *state);
  1062. extern void ath5k_hw_reset_beacon(struct ath5k_hw *ah);
  1063. extern int ath5k_hw_beaconq_finish(struct ath5k_hw *ah, unsigned long phys_addr);
  1064. #endif
  1065. /* ACK bit rate */
  1066. void ath5k_hw_set_ack_bitrate_high(struct ath5k_hw *ah, bool high);
  1067. /* ACK/CTS Timeouts */
  1068. extern int ath5k_hw_set_ack_timeout(struct ath5k_hw *ah, unsigned int timeout);
  1069. extern unsigned int ath5k_hw_get_ack_timeout(struct ath5k_hw *ah);
  1070. extern int ath5k_hw_set_cts_timeout(struct ath5k_hw *ah, unsigned int timeout);
  1071. extern unsigned int ath5k_hw_get_cts_timeout(struct ath5k_hw *ah);
  1072. /* Key table (WEP) functions */
  1073. extern int ath5k_hw_reset_key(struct ath5k_hw *ah, u16 entry);
  1074. extern int ath5k_hw_is_key_valid(struct ath5k_hw *ah, u16 entry);
  1075. extern int ath5k_hw_set_key(struct ath5k_hw *ah, u16 entry, const struct ieee80211_key_conf *key, const u8 *mac);
  1076. extern int ath5k_hw_set_key_lladdr(struct ath5k_hw *ah, u16 entry, const u8 *mac);
  1077. /* Queue Control Unit, DFS Control Unit Functions */
  1078. extern int ath5k_hw_get_tx_queueprops(struct ath5k_hw *ah, int queue, struct ath5k_txq_info *queue_info);
  1079. extern int ath5k_hw_set_tx_queueprops(struct ath5k_hw *ah, int queue,
  1080. const struct ath5k_txq_info *queue_info);
  1081. extern int ath5k_hw_setup_tx_queue(struct ath5k_hw *ah,
  1082. enum ath5k_tx_queue queue_type,
  1083. struct ath5k_txq_info *queue_info);
  1084. extern u32 ath5k_hw_num_tx_pending(struct ath5k_hw *ah, unsigned int queue);
  1085. extern void ath5k_hw_release_tx_queue(struct ath5k_hw *ah, unsigned int queue);
  1086. extern int ath5k_hw_reset_tx_queue(struct ath5k_hw *ah, unsigned int queue);
  1087. extern unsigned int ath5k_hw_get_slot_time(struct ath5k_hw *ah);
  1088. extern int ath5k_hw_set_slot_time(struct ath5k_hw *ah, unsigned int slot_time);
  1089. /* Hardware Descriptor Functions */
  1090. extern int ath5k_hw_init_desc_functions(struct ath5k_hw *ah);
  1091. /* GPIO Functions */
  1092. extern void ath5k_hw_set_ledstate(struct ath5k_hw *ah, unsigned int state);
  1093. extern int ath5k_hw_set_gpio_input(struct ath5k_hw *ah, u32 gpio);
  1094. extern int ath5k_hw_set_gpio_output(struct ath5k_hw *ah, u32 gpio);
  1095. extern u32 ath5k_hw_get_gpio(struct ath5k_hw *ah, u32 gpio);
  1096. extern int ath5k_hw_set_gpio(struct ath5k_hw *ah, u32 gpio, u32 val);
  1097. extern void ath5k_hw_set_gpio_intr(struct ath5k_hw *ah, unsigned int gpio, u32 interrupt_level);
  1098. /* Misc functions */
  1099. int ath5k_hw_set_capabilities(struct ath5k_hw *ah);
  1100. extern int ath5k_hw_get_capability(struct ath5k_hw *ah, enum ath5k_capability_type cap_type, u32 capability, u32 *result);
  1101. extern int ath5k_hw_enable_pspoll(struct ath5k_hw *ah, u8 *bssid, u16 assoc_id);
  1102. extern int ath5k_hw_disable_pspoll(struct ath5k_hw *ah);
  1103. /* Initial register settings functions */
  1104. extern int ath5k_hw_write_initvals(struct ath5k_hw *ah, u8 mode, bool change_channel);
  1105. /* Initialize RF */
  1106. extern int ath5k_hw_rfregs_init(struct ath5k_hw *ah,
  1107. struct ieee80211_channel *channel,
  1108. unsigned int mode);
  1109. extern int ath5k_hw_rfgain_init(struct ath5k_hw *ah, unsigned int freq);
  1110. extern enum ath5k_rfgain ath5k_hw_gainf_calibrate(struct ath5k_hw *ah);
  1111. extern int ath5k_hw_rfgain_opt_init(struct ath5k_hw *ah);
  1112. /* PHY/RF channel functions */
  1113. extern bool ath5k_channel_ok(struct ath5k_hw *ah, u16 freq, unsigned int flags);
  1114. extern int ath5k_hw_channel(struct ath5k_hw *ah, struct ieee80211_channel *channel);
  1115. /* PHY calibration */
  1116. extern int ath5k_hw_phy_calibrate(struct ath5k_hw *ah, struct ieee80211_channel *channel);
  1117. extern int ath5k_hw_noise_floor_calibration(struct ath5k_hw *ah, short freq);
  1118. /* Misc PHY functions */
  1119. extern u16 ath5k_hw_radio_revision(struct ath5k_hw *ah, unsigned int chan);
  1120. extern void ath5k_hw_set_def_antenna(struct ath5k_hw *ah, unsigned int ant);
  1121. extern unsigned int ath5k_hw_get_def_antenna(struct ath5k_hw *ah);
  1122. extern int ath5k_hw_phy_disable(struct ath5k_hw *ah);
  1123. /* TX power setup */
  1124. extern int ath5k_hw_txpower(struct ath5k_hw *ah, struct ieee80211_channel *channel, u8 ee_mode, u8 txpower);
  1125. extern int ath5k_hw_set_txpower_limit(struct ath5k_hw *ah, u8 ee_mode, u8 txpower);
  1126. /*
  1127. * Functions used internaly
  1128. */
  1129. /*
  1130. * Translate usec to hw clock units
  1131. * TODO: Half/quarter rate
  1132. */
  1133. static inline unsigned int ath5k_hw_htoclock(unsigned int usec, bool turbo)
  1134. {
  1135. return turbo ? (usec * 80) : (usec * 40);
  1136. }
  1137. /*
  1138. * Translate hw clock units to usec
  1139. * TODO: Half/quarter rate
  1140. */
  1141. static inline unsigned int ath5k_hw_clocktoh(unsigned int clock, bool turbo)
  1142. {
  1143. return turbo ? (clock / 80) : (clock / 40);
  1144. }
  1145. /*
  1146. * Read from a register
  1147. */
  1148. static inline u32 ath5k_hw_reg_read(struct ath5k_hw *ah, u16 reg)
  1149. {
  1150. return ioread32(ah->ah_iobase + reg);
  1151. }
  1152. /*
  1153. * Write to a register
  1154. */
  1155. static inline void ath5k_hw_reg_write(struct ath5k_hw *ah, u32 val, u16 reg)
  1156. {
  1157. iowrite32(val, ah->ah_iobase + reg);
  1158. }
  1159. #if defined(_ATH5K_RESET) || defined(_ATH5K_PHY)
  1160. /*
  1161. * Check if a register write has been completed
  1162. */
  1163. static int ath5k_hw_register_timeout(struct ath5k_hw *ah, u32 reg, u32 flag,
  1164. u32 val, bool is_set)
  1165. {
  1166. int i;
  1167. u32 data;
  1168. for (i = AR5K_TUNE_REGISTER_TIMEOUT; i > 0; i--) {
  1169. data = ath5k_hw_reg_read(ah, reg);
  1170. if (is_set && (data & flag))
  1171. break;
  1172. else if ((data & flag) == val)
  1173. break;
  1174. udelay(15);
  1175. }
  1176. return (i <= 0) ? -EAGAIN : 0;
  1177. }
  1178. #endif
  1179. static inline u32 ath5k_hw_bitswap(u32 val, unsigned int bits)
  1180. {
  1181. u32 retval = 0, bit, i;
  1182. for (i = 0; i < bits; i++) {
  1183. bit = (val >> i) & 1;
  1184. retval = (retval << 1) | bit;
  1185. }
  1186. return retval;
  1187. }
  1188. static inline int ath5k_pad_size(int hdrlen)
  1189. {
  1190. return (hdrlen < 24) ? 0 : hdrlen & 3;
  1191. }
  1192. #endif