zd_rf_al2230.c 13 KB

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  1. /* ZD1211 USB-WLAN driver for Linux
  2. *
  3. * Copyright (C) 2005-2007 Ulrich Kunitz <kune@deine-taler.de>
  4. * Copyright (C) 2006-2007 Daniel Drake <dsd@gentoo.org>
  5. *
  6. * This program is free software; you can redistribute it and/or modify
  7. * it under the terms of the GNU General Public License as published by
  8. * the Free Software Foundation; either version 2 of the License, or
  9. * (at your option) any later version.
  10. *
  11. * This program is distributed in the hope that it will be useful,
  12. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  13. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  14. * GNU General Public License for more details.
  15. *
  16. * You should have received a copy of the GNU General Public License
  17. * along with this program; if not, write to the Free Software
  18. * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
  19. */
  20. #include <linux/kernel.h>
  21. #include "zd_rf.h"
  22. #include "zd_usb.h"
  23. #include "zd_chip.h"
  24. #define IS_AL2230S(chip) ((chip)->al2230s_bit || (chip)->rf.type == AL2230S_RF)
  25. static const u32 zd1211_al2230_table[][3] = {
  26. RF_CHANNEL( 1) = { 0x03f790, 0x033331, 0x00000d, },
  27. RF_CHANNEL( 2) = { 0x03f790, 0x0b3331, 0x00000d, },
  28. RF_CHANNEL( 3) = { 0x03e790, 0x033331, 0x00000d, },
  29. RF_CHANNEL( 4) = { 0x03e790, 0x0b3331, 0x00000d, },
  30. RF_CHANNEL( 5) = { 0x03f7a0, 0x033331, 0x00000d, },
  31. RF_CHANNEL( 6) = { 0x03f7a0, 0x0b3331, 0x00000d, },
  32. RF_CHANNEL( 7) = { 0x03e7a0, 0x033331, 0x00000d, },
  33. RF_CHANNEL( 8) = { 0x03e7a0, 0x0b3331, 0x00000d, },
  34. RF_CHANNEL( 9) = { 0x03f7b0, 0x033331, 0x00000d, },
  35. RF_CHANNEL(10) = { 0x03f7b0, 0x0b3331, 0x00000d, },
  36. RF_CHANNEL(11) = { 0x03e7b0, 0x033331, 0x00000d, },
  37. RF_CHANNEL(12) = { 0x03e7b0, 0x0b3331, 0x00000d, },
  38. RF_CHANNEL(13) = { 0x03f7c0, 0x033331, 0x00000d, },
  39. RF_CHANNEL(14) = { 0x03e7c0, 0x066661, 0x00000d, },
  40. };
  41. static const u32 zd1211b_al2230_table[][3] = {
  42. RF_CHANNEL( 1) = { 0x09efc0, 0x8cccc0, 0xb00000, },
  43. RF_CHANNEL( 2) = { 0x09efc0, 0x8cccd0, 0xb00000, },
  44. RF_CHANNEL( 3) = { 0x09e7c0, 0x8cccc0, 0xb00000, },
  45. RF_CHANNEL( 4) = { 0x09e7c0, 0x8cccd0, 0xb00000, },
  46. RF_CHANNEL( 5) = { 0x05efc0, 0x8cccc0, 0xb00000, },
  47. RF_CHANNEL( 6) = { 0x05efc0, 0x8cccd0, 0xb00000, },
  48. RF_CHANNEL( 7) = { 0x05e7c0, 0x8cccc0, 0xb00000, },
  49. RF_CHANNEL( 8) = { 0x05e7c0, 0x8cccd0, 0xb00000, },
  50. RF_CHANNEL( 9) = { 0x0defc0, 0x8cccc0, 0xb00000, },
  51. RF_CHANNEL(10) = { 0x0defc0, 0x8cccd0, 0xb00000, },
  52. RF_CHANNEL(11) = { 0x0de7c0, 0x8cccc0, 0xb00000, },
  53. RF_CHANNEL(12) = { 0x0de7c0, 0x8cccd0, 0xb00000, },
  54. RF_CHANNEL(13) = { 0x03efc0, 0x8cccc0, 0xb00000, },
  55. RF_CHANNEL(14) = { 0x03e7c0, 0x866660, 0xb00000, },
  56. };
  57. static const struct zd_ioreq16 zd1211b_ioreqs_shared_1[] = {
  58. { ZD_CR240, 0x57 }, { ZD_CR9, 0xe0 },
  59. };
  60. static const struct zd_ioreq16 ioreqs_init_al2230s[] = {
  61. { ZD_CR47, 0x1e }, /* MARK_002 */
  62. { ZD_CR106, 0x22 },
  63. { ZD_CR107, 0x2a }, /* MARK_002 */
  64. { ZD_CR109, 0x13 }, /* MARK_002 */
  65. { ZD_CR118, 0xf8 }, /* MARK_002 */
  66. { ZD_CR119, 0x12 }, { ZD_CR122, 0xe0 },
  67. { ZD_CR128, 0x10 }, /* MARK_001 from 0xe->0x10 */
  68. { ZD_CR129, 0x0e }, /* MARK_001 from 0xd->0x0e */
  69. { ZD_CR130, 0x10 }, /* MARK_001 from 0xb->0x0d */
  70. };
  71. static int zd1211b_al2230_finalize_rf(struct zd_chip *chip)
  72. {
  73. int r;
  74. static const struct zd_ioreq16 ioreqs[] = {
  75. { ZD_CR80, 0x30 }, { ZD_CR81, 0x30 }, { ZD_CR79, 0x58 },
  76. { ZD_CR12, 0xf0 }, { ZD_CR77, 0x1b }, { ZD_CR78, 0x58 },
  77. { ZD_CR203, 0x06 },
  78. { },
  79. { ZD_CR240, 0x80 },
  80. };
  81. r = zd_iowrite16a_locked(chip, ioreqs, ARRAY_SIZE(ioreqs));
  82. if (r)
  83. return r;
  84. /* related to antenna selection? */
  85. if (chip->new_phy_layout) {
  86. r = zd_iowrite16_locked(chip, 0xe1, ZD_CR9);
  87. if (r)
  88. return r;
  89. }
  90. return zd_iowrite16_locked(chip, 0x06, ZD_CR203);
  91. }
  92. static int zd1211_al2230_init_hw(struct zd_rf *rf)
  93. {
  94. int r;
  95. struct zd_chip *chip = zd_rf_to_chip(rf);
  96. static const struct zd_ioreq16 ioreqs_init[] = {
  97. { ZD_CR15, 0x20 }, { ZD_CR23, 0x40 }, { ZD_CR24, 0x20 },
  98. { ZD_CR26, 0x11 }, { ZD_CR28, 0x3e }, { ZD_CR29, 0x00 },
  99. { ZD_CR44, 0x33 }, { ZD_CR106, 0x2a }, { ZD_CR107, 0x1a },
  100. { ZD_CR109, 0x09 }, { ZD_CR110, 0x27 }, { ZD_CR111, 0x2b },
  101. { ZD_CR112, 0x2b }, { ZD_CR119, 0x0a }, { ZD_CR10, 0x89 },
  102. /* for newest (3rd cut) AL2300 */
  103. { ZD_CR17, 0x28 },
  104. { ZD_CR26, 0x93 }, { ZD_CR34, 0x30 },
  105. /* for newest (3rd cut) AL2300 */
  106. { ZD_CR35, 0x3e },
  107. { ZD_CR41, 0x24 }, { ZD_CR44, 0x32 },
  108. /* for newest (3rd cut) AL2300 */
  109. { ZD_CR46, 0x96 },
  110. { ZD_CR47, 0x1e }, { ZD_CR79, 0x58 }, { ZD_CR80, 0x30 },
  111. { ZD_CR81, 0x30 }, { ZD_CR87, 0x0a }, { ZD_CR89, 0x04 },
  112. { ZD_CR92, 0x0a }, { ZD_CR99, 0x28 }, { ZD_CR100, 0x00 },
  113. { ZD_CR101, 0x13 }, { ZD_CR102, 0x27 }, { ZD_CR106, 0x24 },
  114. { ZD_CR107, 0x2a }, { ZD_CR109, 0x09 }, { ZD_CR110, 0x13 },
  115. { ZD_CR111, 0x1f }, { ZD_CR112, 0x1f }, { ZD_CR113, 0x27 },
  116. { ZD_CR114, 0x27 },
  117. /* for newest (3rd cut) AL2300 */
  118. { ZD_CR115, 0x24 },
  119. { ZD_CR116, 0x24 }, { ZD_CR117, 0xf4 }, { ZD_CR118, 0xfc },
  120. { ZD_CR119, 0x10 }, { ZD_CR120, 0x4f }, { ZD_CR121, 0x77 },
  121. { ZD_CR122, 0xe0 }, { ZD_CR137, 0x88 }, { ZD_CR252, 0xff },
  122. { ZD_CR253, 0xff },
  123. };
  124. static const struct zd_ioreq16 ioreqs_pll[] = {
  125. /* shdnb(PLL_ON)=0 */
  126. { ZD_CR251, 0x2f },
  127. /* shdnb(PLL_ON)=1 */
  128. { ZD_CR251, 0x3f },
  129. { ZD_CR138, 0x28 }, { ZD_CR203, 0x06 },
  130. };
  131. static const u32 rv1[] = {
  132. /* Channel 1 */
  133. 0x03f790,
  134. 0x033331,
  135. 0x00000d,
  136. 0x0b3331,
  137. 0x03b812,
  138. 0x00fff3,
  139. };
  140. static const u32 rv2[] = {
  141. 0x000da4,
  142. 0x0f4dc5, /* fix freq shift, 0x04edc5 */
  143. 0x0805b6,
  144. 0x011687,
  145. 0x000688,
  146. 0x0403b9, /* external control TX power (ZD_CR31) */
  147. 0x00dbba,
  148. 0x00099b,
  149. 0x0bdffc,
  150. 0x00000d,
  151. 0x00500f,
  152. };
  153. static const u32 rv3[] = {
  154. 0x00d00f,
  155. 0x004c0f,
  156. 0x00540f,
  157. 0x00700f,
  158. 0x00500f,
  159. };
  160. r = zd_iowrite16a_locked(chip, ioreqs_init, ARRAY_SIZE(ioreqs_init));
  161. if (r)
  162. return r;
  163. if (IS_AL2230S(chip)) {
  164. r = zd_iowrite16a_locked(chip, ioreqs_init_al2230s,
  165. ARRAY_SIZE(ioreqs_init_al2230s));
  166. if (r)
  167. return r;
  168. }
  169. r = zd_rfwritev_locked(chip, rv1, ARRAY_SIZE(rv1), RF_RV_BITS);
  170. if (r)
  171. return r;
  172. /* improve band edge for AL2230S */
  173. if (IS_AL2230S(chip))
  174. r = zd_rfwrite_locked(chip, 0x000824, RF_RV_BITS);
  175. else
  176. r = zd_rfwrite_locked(chip, 0x0005a4, RF_RV_BITS);
  177. if (r)
  178. return r;
  179. r = zd_rfwritev_locked(chip, rv2, ARRAY_SIZE(rv2), RF_RV_BITS);
  180. if (r)
  181. return r;
  182. r = zd_iowrite16a_locked(chip, ioreqs_pll, ARRAY_SIZE(ioreqs_pll));
  183. if (r)
  184. return r;
  185. r = zd_rfwritev_locked(chip, rv3, ARRAY_SIZE(rv3), RF_RV_BITS);
  186. if (r)
  187. return r;
  188. return 0;
  189. }
  190. static int zd1211b_al2230_init_hw(struct zd_rf *rf)
  191. {
  192. int r;
  193. struct zd_chip *chip = zd_rf_to_chip(rf);
  194. static const struct zd_ioreq16 ioreqs1[] = {
  195. { ZD_CR10, 0x89 }, { ZD_CR15, 0x20 },
  196. { ZD_CR17, 0x2B }, /* for newest(3rd cut) AL2230 */
  197. { ZD_CR23, 0x40 }, { ZD_CR24, 0x20 }, { ZD_CR26, 0x93 },
  198. { ZD_CR28, 0x3e }, { ZD_CR29, 0x00 },
  199. { ZD_CR33, 0x28 }, /* 5621 */
  200. { ZD_CR34, 0x30 },
  201. { ZD_CR35, 0x3e }, /* for newest(3rd cut) AL2230 */
  202. { ZD_CR41, 0x24 }, { ZD_CR44, 0x32 },
  203. { ZD_CR46, 0x99 }, /* for newest(3rd cut) AL2230 */
  204. { ZD_CR47, 0x1e },
  205. /* ZD1211B 05.06.10 */
  206. { ZD_CR48, 0x06 }, { ZD_CR49, 0xf9 }, { ZD_CR51, 0x01 },
  207. { ZD_CR52, 0x80 }, { ZD_CR53, 0x7e }, { ZD_CR65, 0x00 },
  208. { ZD_CR66, 0x00 }, { ZD_CR67, 0x00 }, { ZD_CR68, 0x00 },
  209. { ZD_CR69, 0x28 },
  210. { ZD_CR79, 0x58 }, { ZD_CR80, 0x30 }, { ZD_CR81, 0x30 },
  211. { ZD_CR87, 0x0a }, { ZD_CR89, 0x04 },
  212. { ZD_CR91, 0x00 }, /* 5621 */
  213. { ZD_CR92, 0x0a },
  214. { ZD_CR98, 0x8d }, /* 4804, for 1212 new algorithm */
  215. { ZD_CR99, 0x00 }, /* 5621 */
  216. { ZD_CR101, 0x13 }, { ZD_CR102, 0x27 },
  217. { ZD_CR106, 0x24 }, /* for newest(3rd cut) AL2230 */
  218. { ZD_CR107, 0x2a },
  219. { ZD_CR109, 0x13 }, /* 4804, for 1212 new algorithm */
  220. { ZD_CR110, 0x1f }, /* 4804, for 1212 new algorithm */
  221. { ZD_CR111, 0x1f }, { ZD_CR112, 0x1f }, { ZD_CR113, 0x27 },
  222. { ZD_CR114, 0x27 },
  223. { ZD_CR115, 0x26 }, /* 24->26 at 4902 for newest(3rd cut)
  224. * AL2230
  225. */
  226. { ZD_CR116, 0x24 },
  227. { ZD_CR117, 0xfa }, /* for 1211b */
  228. { ZD_CR118, 0xfa }, /* for 1211b */
  229. { ZD_CR119, 0x10 },
  230. { ZD_CR120, 0x4f },
  231. { ZD_CR121, 0x6c }, /* for 1211b */
  232. { ZD_CR122, 0xfc }, /* E0->FC at 4902 */
  233. { ZD_CR123, 0x57 }, /* 5623 */
  234. { ZD_CR125, 0xad }, /* 4804, for 1212 new algorithm */
  235. { ZD_CR126, 0x6c }, /* 5614 */
  236. { ZD_CR127, 0x03 }, /* 4804, for 1212 new algorithm */
  237. { ZD_CR137, 0x50 }, /* 5614 */
  238. { ZD_CR138, 0xa8 },
  239. { ZD_CR144, 0xac }, /* 5621 */
  240. { ZD_CR150, 0x0d }, { ZD_CR252, 0x34 }, { ZD_CR253, 0x34 },
  241. };
  242. static const u32 rv1[] = {
  243. 0x8cccd0,
  244. 0x481dc0,
  245. 0xcfff00,
  246. 0x25a000,
  247. };
  248. static const u32 rv2[] = {
  249. /* To improve AL2230 yield, improve phase noise, 4713 */
  250. 0x25a000,
  251. 0xa3b2f0,
  252. 0x6da010, /* Reg6 update for MP versio */
  253. 0xe36280, /* Modified by jxiao for Bor-Chin on 2004/08/02 */
  254. 0x116000,
  255. 0x9dc020, /* External control TX power (ZD_CR31) */
  256. 0x5ddb00, /* RegA update for MP version */
  257. 0xd99000, /* RegB update for MP version */
  258. 0x3ffbd0, /* RegC update for MP version */
  259. 0xb00000, /* RegD update for MP version */
  260. /* improve phase noise and remove phase calibration,4713 */
  261. 0xf01a00,
  262. };
  263. static const struct zd_ioreq16 ioreqs2[] = {
  264. { ZD_CR251, 0x2f }, /* shdnb(PLL_ON)=0 */
  265. { ZD_CR251, 0x7f }, /* shdnb(PLL_ON)=1 */
  266. };
  267. static const u32 rv3[] = {
  268. /* To improve AL2230 yield, 4713 */
  269. 0xf01b00,
  270. 0xf01e00,
  271. 0xf01a00,
  272. };
  273. static const struct zd_ioreq16 ioreqs3[] = {
  274. /* related to 6M band edge patching, happens unconditionally */
  275. { ZD_CR128, 0x14 }, { ZD_CR129, 0x12 }, { ZD_CR130, 0x10 },
  276. };
  277. r = zd_iowrite16a_locked(chip, zd1211b_ioreqs_shared_1,
  278. ARRAY_SIZE(zd1211b_ioreqs_shared_1));
  279. if (r)
  280. return r;
  281. r = zd_iowrite16a_locked(chip, ioreqs1, ARRAY_SIZE(ioreqs1));
  282. if (r)
  283. return r;
  284. if (IS_AL2230S(chip)) {
  285. r = zd_iowrite16a_locked(chip, ioreqs_init_al2230s,
  286. ARRAY_SIZE(ioreqs_init_al2230s));
  287. if (r)
  288. return r;
  289. }
  290. r = zd_rfwritev_cr_locked(chip, zd1211b_al2230_table[0], 3);
  291. if (r)
  292. return r;
  293. r = zd_rfwritev_cr_locked(chip, rv1, ARRAY_SIZE(rv1));
  294. if (r)
  295. return r;
  296. if (IS_AL2230S(chip))
  297. r = zd_rfwrite_locked(chip, 0x241000, RF_RV_BITS);
  298. else
  299. r = zd_rfwrite_locked(chip, 0x25a000, RF_RV_BITS);
  300. if (r)
  301. return r;
  302. r = zd_rfwritev_cr_locked(chip, rv2, ARRAY_SIZE(rv2));
  303. if (r)
  304. return r;
  305. r = zd_iowrite16a_locked(chip, ioreqs2, ARRAY_SIZE(ioreqs2));
  306. if (r)
  307. return r;
  308. r = zd_rfwritev_cr_locked(chip, rv3, ARRAY_SIZE(rv3));
  309. if (r)
  310. return r;
  311. r = zd_iowrite16a_locked(chip, ioreqs3, ARRAY_SIZE(ioreqs3));
  312. if (r)
  313. return r;
  314. return zd1211b_al2230_finalize_rf(chip);
  315. }
  316. static int zd1211_al2230_set_channel(struct zd_rf *rf, u8 channel)
  317. {
  318. int r;
  319. const u32 *rv = zd1211_al2230_table[channel-1];
  320. struct zd_chip *chip = zd_rf_to_chip(rf);
  321. static const struct zd_ioreq16 ioreqs[] = {
  322. { ZD_CR138, 0x28 },
  323. { ZD_CR203, 0x06 },
  324. };
  325. r = zd_rfwritev_locked(chip, rv, 3, RF_RV_BITS);
  326. if (r)
  327. return r;
  328. return zd_iowrite16a_locked(chip, ioreqs, ARRAY_SIZE(ioreqs));
  329. }
  330. static int zd1211b_al2230_set_channel(struct zd_rf *rf, u8 channel)
  331. {
  332. int r;
  333. const u32 *rv = zd1211b_al2230_table[channel-1];
  334. struct zd_chip *chip = zd_rf_to_chip(rf);
  335. r = zd_iowrite16a_locked(chip, zd1211b_ioreqs_shared_1,
  336. ARRAY_SIZE(zd1211b_ioreqs_shared_1));
  337. if (r)
  338. return r;
  339. r = zd_rfwritev_cr_locked(chip, rv, 3);
  340. if (r)
  341. return r;
  342. return zd1211b_al2230_finalize_rf(chip);
  343. }
  344. static int zd1211_al2230_switch_radio_on(struct zd_rf *rf)
  345. {
  346. struct zd_chip *chip = zd_rf_to_chip(rf);
  347. static const struct zd_ioreq16 ioreqs[] = {
  348. { ZD_CR11, 0x00 },
  349. { ZD_CR251, 0x3f },
  350. };
  351. return zd_iowrite16a_locked(chip, ioreqs, ARRAY_SIZE(ioreqs));
  352. }
  353. static int zd1211b_al2230_switch_radio_on(struct zd_rf *rf)
  354. {
  355. struct zd_chip *chip = zd_rf_to_chip(rf);
  356. static const struct zd_ioreq16 ioreqs[] = {
  357. { ZD_CR11, 0x00 },
  358. { ZD_CR251, 0x7f },
  359. };
  360. return zd_iowrite16a_locked(chip, ioreqs, ARRAY_SIZE(ioreqs));
  361. }
  362. static int al2230_switch_radio_off(struct zd_rf *rf)
  363. {
  364. struct zd_chip *chip = zd_rf_to_chip(rf);
  365. static const struct zd_ioreq16 ioreqs[] = {
  366. { ZD_CR11, 0x04 },
  367. { ZD_CR251, 0x2f },
  368. };
  369. return zd_iowrite16a_locked(chip, ioreqs, ARRAY_SIZE(ioreqs));
  370. }
  371. int zd_rf_init_al2230(struct zd_rf *rf)
  372. {
  373. struct zd_chip *chip = zd_rf_to_chip(rf);
  374. rf->switch_radio_off = al2230_switch_radio_off;
  375. if (zd_chip_is_zd1211b(chip)) {
  376. rf->init_hw = zd1211b_al2230_init_hw;
  377. rf->set_channel = zd1211b_al2230_set_channel;
  378. rf->switch_radio_on = zd1211b_al2230_switch_radio_on;
  379. } else {
  380. rf->init_hw = zd1211_al2230_init_hw;
  381. rf->set_channel = zd1211_al2230_set_channel;
  382. rf->switch_radio_on = zd1211_al2230_switch_radio_on;
  383. }
  384. rf->patch_6m_band_edge = zd_rf_generic_patch_6m;
  385. rf->patch_cck_gain = 1;
  386. return 0;
  387. }