phy_n.c 197 KB

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  1. // SPDX-License-Identifier: GPL-2.0-or-later
  2. /*
  3. Broadcom B43 wireless driver
  4. IEEE 802.11n PHY support
  5. Copyright (c) 2008 Michael Buesch <m@bues.ch>
  6. Copyright (c) 2010-2011 Rafał Miłecki <zajec5@gmail.com>
  7. */
  8. #include <linux/cordic.h>
  9. #include <linux/delay.h>
  10. #include <linux/slab.h>
  11. #include <linux/types.h>
  12. #include "b43.h"
  13. #include "phy_n.h"
  14. #include "tables_nphy.h"
  15. #include "radio_2055.h"
  16. #include "radio_2056.h"
  17. #include "radio_2057.h"
  18. #include "main.h"
  19. #include "ppr.h"
  20. struct nphy_txgains {
  21. u16 tx_lpf[2];
  22. u16 txgm[2];
  23. u16 pga[2];
  24. u16 pad[2];
  25. u16 ipa[2];
  26. };
  27. struct nphy_iqcal_params {
  28. u16 tx_lpf;
  29. u16 txgm;
  30. u16 pga;
  31. u16 pad;
  32. u16 ipa;
  33. u16 cal_gain;
  34. u16 ncorr[5];
  35. };
  36. struct nphy_iq_est {
  37. s32 iq0_prod;
  38. u32 i0_pwr;
  39. u32 q0_pwr;
  40. s32 iq1_prod;
  41. u32 i1_pwr;
  42. u32 q1_pwr;
  43. };
  44. enum b43_nphy_rf_sequence {
  45. B43_RFSEQ_RX2TX,
  46. B43_RFSEQ_TX2RX,
  47. B43_RFSEQ_RESET2RX,
  48. B43_RFSEQ_UPDATE_GAINH,
  49. B43_RFSEQ_UPDATE_GAINL,
  50. B43_RFSEQ_UPDATE_GAINU,
  51. };
  52. enum n_rf_ctl_over_cmd {
  53. N_RF_CTL_OVER_CMD_RXRF_PU = 0,
  54. N_RF_CTL_OVER_CMD_RX_PU = 1,
  55. N_RF_CTL_OVER_CMD_TX_PU = 2,
  56. N_RF_CTL_OVER_CMD_RX_GAIN = 3,
  57. N_RF_CTL_OVER_CMD_TX_GAIN = 4,
  58. };
  59. enum n_intc_override {
  60. N_INTC_OVERRIDE_OFF = 0,
  61. N_INTC_OVERRIDE_TRSW = 1,
  62. N_INTC_OVERRIDE_PA = 2,
  63. N_INTC_OVERRIDE_EXT_LNA_PU = 3,
  64. N_INTC_OVERRIDE_EXT_LNA_GAIN = 4,
  65. };
  66. enum n_rssi_type {
  67. N_RSSI_W1 = 0,
  68. N_RSSI_W2,
  69. N_RSSI_NB,
  70. N_RSSI_IQ,
  71. N_RSSI_TSSI_2G,
  72. N_RSSI_TSSI_5G,
  73. N_RSSI_TBD,
  74. };
  75. enum n_rail_type {
  76. N_RAIL_I = 0,
  77. N_RAIL_Q = 1,
  78. };
  79. static inline bool b43_nphy_ipa(struct b43_wldev *dev)
  80. {
  81. enum nl80211_band band = b43_current_band(dev->wl);
  82. return ((dev->phy.n->ipa2g_on && band == NL80211_BAND_2GHZ) ||
  83. (dev->phy.n->ipa5g_on && band == NL80211_BAND_5GHZ));
  84. }
  85. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/RxCoreGetState */
  86. static u8 b43_nphy_get_rx_core_state(struct b43_wldev *dev)
  87. {
  88. return (b43_phy_read(dev, B43_NPHY_RFSEQCA) & B43_NPHY_RFSEQCA_RXEN) >>
  89. B43_NPHY_RFSEQCA_RXEN_SHIFT;
  90. }
  91. /**************************************************
  92. * RF (just without b43_nphy_rf_ctl_intc_override)
  93. **************************************************/
  94. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/ForceRFSeq */
  95. static void b43_nphy_force_rf_sequence(struct b43_wldev *dev,
  96. enum b43_nphy_rf_sequence seq)
  97. {
  98. static const u16 trigger[] = {
  99. [B43_RFSEQ_RX2TX] = B43_NPHY_RFSEQTR_RX2TX,
  100. [B43_RFSEQ_TX2RX] = B43_NPHY_RFSEQTR_TX2RX,
  101. [B43_RFSEQ_RESET2RX] = B43_NPHY_RFSEQTR_RST2RX,
  102. [B43_RFSEQ_UPDATE_GAINH] = B43_NPHY_RFSEQTR_UPGH,
  103. [B43_RFSEQ_UPDATE_GAINL] = B43_NPHY_RFSEQTR_UPGL,
  104. [B43_RFSEQ_UPDATE_GAINU] = B43_NPHY_RFSEQTR_UPGU,
  105. };
  106. int i;
  107. u16 seq_mode = b43_phy_read(dev, B43_NPHY_RFSEQMODE);
  108. B43_WARN_ON(seq >= ARRAY_SIZE(trigger));
  109. b43_phy_set(dev, B43_NPHY_RFSEQMODE,
  110. B43_NPHY_RFSEQMODE_CAOVER | B43_NPHY_RFSEQMODE_TROVER);
  111. b43_phy_set(dev, B43_NPHY_RFSEQTR, trigger[seq]);
  112. for (i = 0; i < 200; i++) {
  113. if (!(b43_phy_read(dev, B43_NPHY_RFSEQST) & trigger[seq]))
  114. goto ok;
  115. msleep(1);
  116. }
  117. b43err(dev->wl, "RF sequence status timeout\n");
  118. ok:
  119. b43_phy_write(dev, B43_NPHY_RFSEQMODE, seq_mode);
  120. }
  121. static void b43_nphy_rf_ctl_override_rev19(struct b43_wldev *dev, u16 field,
  122. u16 value, u8 core, bool off,
  123. u8 override_id)
  124. {
  125. /* TODO */
  126. }
  127. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/RFCtrlOverrideRev7 */
  128. static void b43_nphy_rf_ctl_override_rev7(struct b43_wldev *dev, u16 field,
  129. u16 value, u8 core, bool off,
  130. u8 override)
  131. {
  132. struct b43_phy *phy = &dev->phy;
  133. const struct nphy_rf_control_override_rev7 *e;
  134. u16 en_addrs[3][2] = {
  135. { 0x0E7, 0x0EC }, { 0x342, 0x343 }, { 0x346, 0x347 }
  136. };
  137. u16 en_addr;
  138. u16 en_mask = field;
  139. u16 val_addr;
  140. u8 i;
  141. if (phy->rev >= 19 || phy->rev < 3) {
  142. B43_WARN_ON(1);
  143. return;
  144. }
  145. /* Remember: we can get NULL! */
  146. e = b43_nphy_get_rf_ctl_over_rev7(dev, field, override);
  147. for (i = 0; i < 2; i++) {
  148. if (override >= ARRAY_SIZE(en_addrs)) {
  149. b43err(dev->wl, "Invalid override value %d\n", override);
  150. return;
  151. }
  152. en_addr = en_addrs[override][i];
  153. if (e)
  154. val_addr = (i == 0) ? e->val_addr_core0 : e->val_addr_core1;
  155. if (off) {
  156. b43_phy_mask(dev, en_addr, ~en_mask);
  157. if (e) /* Do it safer, better than wl */
  158. b43_phy_mask(dev, val_addr, ~e->val_mask);
  159. } else {
  160. if (!core || (core & (1 << i))) {
  161. b43_phy_set(dev, en_addr, en_mask);
  162. if (e)
  163. b43_phy_maskset(dev, val_addr, ~e->val_mask, (value << e->val_shift));
  164. }
  165. }
  166. }
  167. }
  168. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/RFCtrlOverideOneToMany */
  169. static void b43_nphy_rf_ctl_override_one_to_many(struct b43_wldev *dev,
  170. enum n_rf_ctl_over_cmd cmd,
  171. u16 value, u8 core, bool off)
  172. {
  173. struct b43_phy *phy = &dev->phy;
  174. u16 tmp;
  175. B43_WARN_ON(phy->rev < 7);
  176. switch (cmd) {
  177. case N_RF_CTL_OVER_CMD_RXRF_PU:
  178. b43_nphy_rf_ctl_override_rev7(dev, 0x20, value, core, off, 1);
  179. b43_nphy_rf_ctl_override_rev7(dev, 0x10, value, core, off, 1);
  180. b43_nphy_rf_ctl_override_rev7(dev, 0x08, value, core, off, 1);
  181. break;
  182. case N_RF_CTL_OVER_CMD_RX_PU:
  183. b43_nphy_rf_ctl_override_rev7(dev, 0x4, value, core, off, 1);
  184. b43_nphy_rf_ctl_override_rev7(dev, 0x2, value, core, off, 1);
  185. b43_nphy_rf_ctl_override_rev7(dev, 0x1, value, core, off, 1);
  186. b43_nphy_rf_ctl_override_rev7(dev, 0x2, value, core, off, 2);
  187. b43_nphy_rf_ctl_override_rev7(dev, 0x0800, 0, core, off, 1);
  188. break;
  189. case N_RF_CTL_OVER_CMD_TX_PU:
  190. b43_nphy_rf_ctl_override_rev7(dev, 0x4, value, core, off, 0);
  191. b43_nphy_rf_ctl_override_rev7(dev, 0x2, value, core, off, 1);
  192. b43_nphy_rf_ctl_override_rev7(dev, 0x1, value, core, off, 2);
  193. b43_nphy_rf_ctl_override_rev7(dev, 0x0800, 1, core, off, 1);
  194. break;
  195. case N_RF_CTL_OVER_CMD_RX_GAIN:
  196. tmp = value & 0xFF;
  197. b43_nphy_rf_ctl_override_rev7(dev, 0x0800, tmp, core, off, 0);
  198. tmp = value >> 8;
  199. b43_nphy_rf_ctl_override_rev7(dev, 0x6000, tmp, core, off, 0);
  200. break;
  201. case N_RF_CTL_OVER_CMD_TX_GAIN:
  202. tmp = value & 0x7FFF;
  203. b43_nphy_rf_ctl_override_rev7(dev, 0x1000, tmp, core, off, 0);
  204. tmp = value >> 14;
  205. b43_nphy_rf_ctl_override_rev7(dev, 0x4000, tmp, core, off, 0);
  206. break;
  207. }
  208. }
  209. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/RFCtrlOverride */
  210. static void b43_nphy_rf_ctl_override(struct b43_wldev *dev, u16 field,
  211. u16 value, u8 core, bool off)
  212. {
  213. int i;
  214. u8 index = fls(field);
  215. u8 addr, en_addr, val_addr;
  216. /* we expect only one bit set */
  217. B43_WARN_ON(field & (~(1 << (index - 1))));
  218. if (dev->phy.rev >= 3) {
  219. const struct nphy_rf_control_override_rev3 *rf_ctrl;
  220. for (i = 0; i < 2; i++) {
  221. if (index == 0 || index == 16) {
  222. b43err(dev->wl,
  223. "Unsupported RF Ctrl Override call\n");
  224. return;
  225. }
  226. rf_ctrl = &tbl_rf_control_override_rev3[index - 1];
  227. en_addr = B43_PHY_N((i == 0) ?
  228. rf_ctrl->en_addr0 : rf_ctrl->en_addr1);
  229. val_addr = B43_PHY_N((i == 0) ?
  230. rf_ctrl->val_addr0 : rf_ctrl->val_addr1);
  231. if (off) {
  232. b43_phy_mask(dev, en_addr, ~(field));
  233. b43_phy_mask(dev, val_addr,
  234. ~(rf_ctrl->val_mask));
  235. } else {
  236. if (core == 0 || ((1 << i) & core)) {
  237. b43_phy_set(dev, en_addr, field);
  238. b43_phy_maskset(dev, val_addr,
  239. ~(rf_ctrl->val_mask),
  240. (value << rf_ctrl->val_shift));
  241. }
  242. }
  243. }
  244. } else {
  245. const struct nphy_rf_control_override_rev2 *rf_ctrl;
  246. if (off) {
  247. b43_phy_mask(dev, B43_NPHY_RFCTL_OVER, ~(field));
  248. value = 0;
  249. } else {
  250. b43_phy_set(dev, B43_NPHY_RFCTL_OVER, field);
  251. }
  252. for (i = 0; i < 2; i++) {
  253. if (index <= 1 || index == 16) {
  254. b43err(dev->wl,
  255. "Unsupported RF Ctrl Override call\n");
  256. return;
  257. }
  258. if (index == 2 || index == 10 ||
  259. (index >= 13 && index <= 15)) {
  260. core = 1;
  261. }
  262. rf_ctrl = &tbl_rf_control_override_rev2[index - 2];
  263. addr = B43_PHY_N((i == 0) ?
  264. rf_ctrl->addr0 : rf_ctrl->addr1);
  265. if ((1 << i) & core)
  266. b43_phy_maskset(dev, addr, ~(rf_ctrl->bmask),
  267. (value << rf_ctrl->shift));
  268. b43_phy_set(dev, B43_NPHY_RFCTL_OVER, 0x1);
  269. b43_phy_set(dev, B43_NPHY_RFCTL_CMD,
  270. B43_NPHY_RFCTL_CMD_START);
  271. udelay(1);
  272. b43_phy_mask(dev, B43_NPHY_RFCTL_OVER, 0xFFFE);
  273. }
  274. }
  275. }
  276. static void b43_nphy_rf_ctl_intc_override_rev7(struct b43_wldev *dev,
  277. enum n_intc_override intc_override,
  278. u16 value, u8 core_sel)
  279. {
  280. u16 reg, tmp, tmp2, val;
  281. int core;
  282. /* TODO: What about rev19+? Revs 3+ and 7+ are a bit similar */
  283. for (core = 0; core < 2; core++) {
  284. if ((core_sel == 1 && core != 0) ||
  285. (core_sel == 2 && core != 1))
  286. continue;
  287. reg = (core == 0) ? B43_NPHY_RFCTL_INTC1 : B43_NPHY_RFCTL_INTC2;
  288. switch (intc_override) {
  289. case N_INTC_OVERRIDE_OFF:
  290. b43_phy_write(dev, reg, 0);
  291. b43_phy_mask(dev, 0x2ff, ~0x2000);
  292. b43_nphy_force_rf_sequence(dev, B43_RFSEQ_RESET2RX);
  293. break;
  294. case N_INTC_OVERRIDE_TRSW:
  295. b43_phy_maskset(dev, reg, ~0xC0, value << 6);
  296. b43_phy_set(dev, reg, 0x400);
  297. b43_phy_mask(dev, 0x2ff, ~0xC000 & 0xFFFF);
  298. b43_phy_set(dev, 0x2ff, 0x2000);
  299. b43_phy_set(dev, 0x2ff, 0x0001);
  300. break;
  301. case N_INTC_OVERRIDE_PA:
  302. tmp = 0x0030;
  303. if (b43_current_band(dev->wl) == NL80211_BAND_5GHZ)
  304. val = value << 5;
  305. else
  306. val = value << 4;
  307. b43_phy_maskset(dev, reg, ~tmp, val);
  308. b43_phy_set(dev, reg, 0x1000);
  309. break;
  310. case N_INTC_OVERRIDE_EXT_LNA_PU:
  311. if (b43_current_band(dev->wl) == NL80211_BAND_5GHZ) {
  312. tmp = 0x0001;
  313. tmp2 = 0x0004;
  314. val = value;
  315. } else {
  316. tmp = 0x0004;
  317. tmp2 = 0x0001;
  318. val = value << 2;
  319. }
  320. b43_phy_maskset(dev, reg, ~tmp, val);
  321. b43_phy_mask(dev, reg, ~tmp2);
  322. break;
  323. case N_INTC_OVERRIDE_EXT_LNA_GAIN:
  324. if (b43_current_band(dev->wl) == NL80211_BAND_5GHZ) {
  325. tmp = 0x0002;
  326. tmp2 = 0x0008;
  327. val = value << 1;
  328. } else {
  329. tmp = 0x0008;
  330. tmp2 = 0x0002;
  331. val = value << 3;
  332. }
  333. b43_phy_maskset(dev, reg, ~tmp, val);
  334. b43_phy_mask(dev, reg, ~tmp2);
  335. break;
  336. }
  337. }
  338. }
  339. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/RFCtrlIntcOverride */
  340. static void b43_nphy_rf_ctl_intc_override(struct b43_wldev *dev,
  341. enum n_intc_override intc_override,
  342. u16 value, u8 core)
  343. {
  344. u8 i, j;
  345. u16 reg, tmp, val;
  346. if (dev->phy.rev >= 7) {
  347. b43_nphy_rf_ctl_intc_override_rev7(dev, intc_override, value,
  348. core);
  349. return;
  350. }
  351. B43_WARN_ON(dev->phy.rev < 3);
  352. for (i = 0; i < 2; i++) {
  353. if ((core == 1 && i == 1) || (core == 2 && !i))
  354. continue;
  355. reg = (i == 0) ?
  356. B43_NPHY_RFCTL_INTC1 : B43_NPHY_RFCTL_INTC2;
  357. b43_phy_set(dev, reg, 0x400);
  358. switch (intc_override) {
  359. case N_INTC_OVERRIDE_OFF:
  360. b43_phy_write(dev, reg, 0);
  361. b43_nphy_force_rf_sequence(dev, B43_RFSEQ_RESET2RX);
  362. break;
  363. case N_INTC_OVERRIDE_TRSW:
  364. if (!i) {
  365. b43_phy_maskset(dev, B43_NPHY_RFCTL_INTC1,
  366. 0xFC3F, (value << 6));
  367. b43_phy_maskset(dev, B43_NPHY_TXF_40CO_B1S1,
  368. 0xFFFE, 1);
  369. b43_phy_set(dev, B43_NPHY_RFCTL_CMD,
  370. B43_NPHY_RFCTL_CMD_START);
  371. for (j = 0; j < 100; j++) {
  372. if (!(b43_phy_read(dev, B43_NPHY_RFCTL_CMD) & B43_NPHY_RFCTL_CMD_START)) {
  373. j = 0;
  374. break;
  375. }
  376. udelay(10);
  377. }
  378. if (j)
  379. b43err(dev->wl,
  380. "intc override timeout\n");
  381. b43_phy_mask(dev, B43_NPHY_TXF_40CO_B1S1,
  382. 0xFFFE);
  383. } else {
  384. b43_phy_maskset(dev, B43_NPHY_RFCTL_INTC2,
  385. 0xFC3F, (value << 6));
  386. b43_phy_maskset(dev, B43_NPHY_RFCTL_OVER,
  387. 0xFFFE, 1);
  388. b43_phy_set(dev, B43_NPHY_RFCTL_CMD,
  389. B43_NPHY_RFCTL_CMD_RXTX);
  390. for (j = 0; j < 100; j++) {
  391. if (!(b43_phy_read(dev, B43_NPHY_RFCTL_CMD) & B43_NPHY_RFCTL_CMD_RXTX)) {
  392. j = 0;
  393. break;
  394. }
  395. udelay(10);
  396. }
  397. if (j)
  398. b43err(dev->wl,
  399. "intc override timeout\n");
  400. b43_phy_mask(dev, B43_NPHY_RFCTL_OVER,
  401. 0xFFFE);
  402. }
  403. break;
  404. case N_INTC_OVERRIDE_PA:
  405. if (b43_current_band(dev->wl) == NL80211_BAND_5GHZ) {
  406. tmp = 0x0020;
  407. val = value << 5;
  408. } else {
  409. tmp = 0x0010;
  410. val = value << 4;
  411. }
  412. b43_phy_maskset(dev, reg, ~tmp, val);
  413. break;
  414. case N_INTC_OVERRIDE_EXT_LNA_PU:
  415. if (b43_current_band(dev->wl) == NL80211_BAND_5GHZ) {
  416. tmp = 0x0001;
  417. val = value;
  418. } else {
  419. tmp = 0x0004;
  420. val = value << 2;
  421. }
  422. b43_phy_maskset(dev, reg, ~tmp, val);
  423. break;
  424. case N_INTC_OVERRIDE_EXT_LNA_GAIN:
  425. if (b43_current_band(dev->wl) == NL80211_BAND_5GHZ) {
  426. tmp = 0x0002;
  427. val = value << 1;
  428. } else {
  429. tmp = 0x0008;
  430. val = value << 3;
  431. }
  432. b43_phy_maskset(dev, reg, ~tmp, val);
  433. break;
  434. }
  435. }
  436. }
  437. /**************************************************
  438. * Various PHY ops
  439. **************************************************/
  440. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/clip-detection */
  441. static void b43_nphy_write_clip_detection(struct b43_wldev *dev,
  442. const u16 *clip_st)
  443. {
  444. b43_phy_write(dev, B43_NPHY_C1_CLIP1THRES, clip_st[0]);
  445. b43_phy_write(dev, B43_NPHY_C2_CLIP1THRES, clip_st[1]);
  446. }
  447. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/clip-detection */
  448. static void b43_nphy_read_clip_detection(struct b43_wldev *dev, u16 *clip_st)
  449. {
  450. clip_st[0] = b43_phy_read(dev, B43_NPHY_C1_CLIP1THRES);
  451. clip_st[1] = b43_phy_read(dev, B43_NPHY_C2_CLIP1THRES);
  452. }
  453. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/classifier */
  454. static u16 b43_nphy_classifier(struct b43_wldev *dev, u16 mask, u16 val)
  455. {
  456. u16 tmp;
  457. if (dev->dev->core_rev == 16)
  458. b43_mac_suspend(dev);
  459. tmp = b43_phy_read(dev, B43_NPHY_CLASSCTL);
  460. tmp &= (B43_NPHY_CLASSCTL_CCKEN | B43_NPHY_CLASSCTL_OFDMEN |
  461. B43_NPHY_CLASSCTL_WAITEDEN);
  462. tmp &= ~mask;
  463. tmp |= (val & mask);
  464. b43_phy_maskset(dev, B43_NPHY_CLASSCTL, 0xFFF8, tmp);
  465. if (dev->dev->core_rev == 16)
  466. b43_mac_enable(dev);
  467. return tmp;
  468. }
  469. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/CCA */
  470. static void b43_nphy_reset_cca(struct b43_wldev *dev)
  471. {
  472. u16 bbcfg;
  473. b43_phy_force_clock(dev, 1);
  474. bbcfg = b43_phy_read(dev, B43_NPHY_BBCFG);
  475. b43_phy_write(dev, B43_NPHY_BBCFG, bbcfg | B43_NPHY_BBCFG_RSTCCA);
  476. udelay(1);
  477. b43_phy_write(dev, B43_NPHY_BBCFG, bbcfg & ~B43_NPHY_BBCFG_RSTCCA);
  478. b43_phy_force_clock(dev, 0);
  479. b43_nphy_force_rf_sequence(dev, B43_RFSEQ_RESET2RX);
  480. }
  481. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/carriersearch */
  482. static void b43_nphy_stay_in_carrier_search(struct b43_wldev *dev, bool enable)
  483. {
  484. struct b43_phy *phy = &dev->phy;
  485. struct b43_phy_n *nphy = phy->n;
  486. if (enable) {
  487. static const u16 clip[] = { 0xFFFF, 0xFFFF };
  488. if (nphy->deaf_count++ == 0) {
  489. nphy->classifier_state = b43_nphy_classifier(dev, 0, 0);
  490. b43_nphy_classifier(dev, 0x7,
  491. B43_NPHY_CLASSCTL_WAITEDEN);
  492. b43_nphy_read_clip_detection(dev, nphy->clip_state);
  493. b43_nphy_write_clip_detection(dev, clip);
  494. }
  495. b43_nphy_reset_cca(dev);
  496. } else {
  497. if (--nphy->deaf_count == 0) {
  498. b43_nphy_classifier(dev, 0x7, nphy->classifier_state);
  499. b43_nphy_write_clip_detection(dev, nphy->clip_state);
  500. }
  501. }
  502. }
  503. /* https://bcm-v4.sipsolutions.net/PHY/N/Read_Lpf_Bw_Ctl */
  504. static u16 b43_nphy_read_lpf_ctl(struct b43_wldev *dev, u16 offset)
  505. {
  506. if (!offset)
  507. offset = b43_is_40mhz(dev) ? 0x159 : 0x154;
  508. return b43_ntab_read(dev, B43_NTAB16(7, offset)) & 0x7;
  509. }
  510. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/AdjustLnaGainTbl */
  511. static void b43_nphy_adjust_lna_gain_table(struct b43_wldev *dev)
  512. {
  513. struct b43_phy_n *nphy = dev->phy.n;
  514. u8 i;
  515. s16 tmp;
  516. u16 data[4];
  517. s16 gain[2];
  518. u16 minmax[2];
  519. static const s16 lna_gain[4] = { -2, 10, 19, 25 };
  520. if (nphy->hang_avoid)
  521. b43_nphy_stay_in_carrier_search(dev, 1);
  522. if (nphy->gain_boost) {
  523. if (b43_current_band(dev->wl) == NL80211_BAND_2GHZ) {
  524. gain[0] = 6;
  525. gain[1] = 6;
  526. } else {
  527. tmp = 40370 - 315 * dev->phy.channel;
  528. gain[0] = ((tmp >> 13) + ((tmp >> 12) & 1));
  529. tmp = 23242 - 224 * dev->phy.channel;
  530. gain[1] = ((tmp >> 13) + ((tmp >> 12) & 1));
  531. }
  532. } else {
  533. gain[0] = 0;
  534. gain[1] = 0;
  535. }
  536. for (i = 0; i < 2; i++) {
  537. if (nphy->elna_gain_config) {
  538. data[0] = 19 + gain[i];
  539. data[1] = 25 + gain[i];
  540. data[2] = 25 + gain[i];
  541. data[3] = 25 + gain[i];
  542. } else {
  543. data[0] = lna_gain[0] + gain[i];
  544. data[1] = lna_gain[1] + gain[i];
  545. data[2] = lna_gain[2] + gain[i];
  546. data[3] = lna_gain[3] + gain[i];
  547. }
  548. b43_ntab_write_bulk(dev, B43_NTAB16(i, 8), 4, data);
  549. minmax[i] = 23 + gain[i];
  550. }
  551. b43_phy_maskset(dev, B43_NPHY_C1_MINMAX_GAIN, ~B43_NPHY_C1_MINGAIN,
  552. minmax[0] << B43_NPHY_C1_MINGAIN_SHIFT);
  553. b43_phy_maskset(dev, B43_NPHY_C2_MINMAX_GAIN, ~B43_NPHY_C2_MINGAIN,
  554. minmax[1] << B43_NPHY_C2_MINGAIN_SHIFT);
  555. if (nphy->hang_avoid)
  556. b43_nphy_stay_in_carrier_search(dev, 0);
  557. }
  558. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/SetRfSeq */
  559. static void b43_nphy_set_rf_sequence(struct b43_wldev *dev, u8 cmd,
  560. u8 *events, u8 *delays, u8 length)
  561. {
  562. struct b43_phy_n *nphy = dev->phy.n;
  563. u8 i;
  564. u8 end = (dev->phy.rev >= 3) ? 0x1F : 0x0F;
  565. u16 offset1 = cmd << 4;
  566. u16 offset2 = offset1 + 0x80;
  567. if (nphy->hang_avoid)
  568. b43_nphy_stay_in_carrier_search(dev, true);
  569. b43_ntab_write_bulk(dev, B43_NTAB8(7, offset1), length, events);
  570. b43_ntab_write_bulk(dev, B43_NTAB8(7, offset2), length, delays);
  571. for (i = length; i < 16; i++) {
  572. b43_ntab_write(dev, B43_NTAB8(7, offset1 + i), end);
  573. b43_ntab_write(dev, B43_NTAB8(7, offset2 + i), 1);
  574. }
  575. if (nphy->hang_avoid)
  576. b43_nphy_stay_in_carrier_search(dev, false);
  577. }
  578. /**************************************************
  579. * Radio 0x2057
  580. **************************************************/
  581. static void b43_radio_2057_chantab_upload(struct b43_wldev *dev,
  582. const struct b43_nphy_chantabent_rev7 *e_r7,
  583. const struct b43_nphy_chantabent_rev7_2g *e_r7_2g)
  584. {
  585. if (e_r7_2g) {
  586. b43_radio_write(dev, R2057_VCOCAL_COUNTVAL0, e_r7_2g->radio_vcocal_countval0);
  587. b43_radio_write(dev, R2057_VCOCAL_COUNTVAL1, e_r7_2g->radio_vcocal_countval1);
  588. b43_radio_write(dev, R2057_RFPLL_REFMASTER_SPAREXTALSIZE, e_r7_2g->radio_rfpll_refmaster_sparextalsize);
  589. b43_radio_write(dev, R2057_RFPLL_LOOPFILTER_R1, e_r7_2g->radio_rfpll_loopfilter_r1);
  590. b43_radio_write(dev, R2057_RFPLL_LOOPFILTER_C2, e_r7_2g->radio_rfpll_loopfilter_c2);
  591. b43_radio_write(dev, R2057_RFPLL_LOOPFILTER_C1, e_r7_2g->radio_rfpll_loopfilter_c1);
  592. b43_radio_write(dev, R2057_CP_KPD_IDAC, e_r7_2g->radio_cp_kpd_idac);
  593. b43_radio_write(dev, R2057_RFPLL_MMD0, e_r7_2g->radio_rfpll_mmd0);
  594. b43_radio_write(dev, R2057_RFPLL_MMD1, e_r7_2g->radio_rfpll_mmd1);
  595. b43_radio_write(dev, R2057_VCOBUF_TUNE, e_r7_2g->radio_vcobuf_tune);
  596. b43_radio_write(dev, R2057_LOGEN_MX2G_TUNE, e_r7_2g->radio_logen_mx2g_tune);
  597. b43_radio_write(dev, R2057_LOGEN_INDBUF2G_TUNE, e_r7_2g->radio_logen_indbuf2g_tune);
  598. b43_radio_write(dev, R2057_TXMIX2G_TUNE_BOOST_PU_CORE0, e_r7_2g->radio_txmix2g_tune_boost_pu_core0);
  599. b43_radio_write(dev, R2057_PAD2G_TUNE_PUS_CORE0, e_r7_2g->radio_pad2g_tune_pus_core0);
  600. b43_radio_write(dev, R2057_LNA2G_TUNE_CORE0, e_r7_2g->radio_lna2g_tune_core0);
  601. b43_radio_write(dev, R2057_TXMIX2G_TUNE_BOOST_PU_CORE1, e_r7_2g->radio_txmix2g_tune_boost_pu_core1);
  602. b43_radio_write(dev, R2057_PAD2G_TUNE_PUS_CORE1, e_r7_2g->radio_pad2g_tune_pus_core1);
  603. b43_radio_write(dev, R2057_LNA2G_TUNE_CORE1, e_r7_2g->radio_lna2g_tune_core1);
  604. } else {
  605. b43_radio_write(dev, R2057_VCOCAL_COUNTVAL0, e_r7->radio_vcocal_countval0);
  606. b43_radio_write(dev, R2057_VCOCAL_COUNTVAL1, e_r7->radio_vcocal_countval1);
  607. b43_radio_write(dev, R2057_RFPLL_REFMASTER_SPAREXTALSIZE, e_r7->radio_rfpll_refmaster_sparextalsize);
  608. b43_radio_write(dev, R2057_RFPLL_LOOPFILTER_R1, e_r7->radio_rfpll_loopfilter_r1);
  609. b43_radio_write(dev, R2057_RFPLL_LOOPFILTER_C2, e_r7->radio_rfpll_loopfilter_c2);
  610. b43_radio_write(dev, R2057_RFPLL_LOOPFILTER_C1, e_r7->radio_rfpll_loopfilter_c1);
  611. b43_radio_write(dev, R2057_CP_KPD_IDAC, e_r7->radio_cp_kpd_idac);
  612. b43_radio_write(dev, R2057_RFPLL_MMD0, e_r7->radio_rfpll_mmd0);
  613. b43_radio_write(dev, R2057_RFPLL_MMD1, e_r7->radio_rfpll_mmd1);
  614. b43_radio_write(dev, R2057_VCOBUF_TUNE, e_r7->radio_vcobuf_tune);
  615. b43_radio_write(dev, R2057_LOGEN_MX2G_TUNE, e_r7->radio_logen_mx2g_tune);
  616. b43_radio_write(dev, R2057_LOGEN_MX5G_TUNE, e_r7->radio_logen_mx5g_tune);
  617. b43_radio_write(dev, R2057_LOGEN_INDBUF2G_TUNE, e_r7->radio_logen_indbuf2g_tune);
  618. b43_radio_write(dev, R2057_LOGEN_INDBUF5G_TUNE, e_r7->radio_logen_indbuf5g_tune);
  619. b43_radio_write(dev, R2057_TXMIX2G_TUNE_BOOST_PU_CORE0, e_r7->radio_txmix2g_tune_boost_pu_core0);
  620. b43_radio_write(dev, R2057_PAD2G_TUNE_PUS_CORE0, e_r7->radio_pad2g_tune_pus_core0);
  621. b43_radio_write(dev, R2057_PGA_BOOST_TUNE_CORE0, e_r7->radio_pga_boost_tune_core0);
  622. b43_radio_write(dev, R2057_TXMIX5G_BOOST_TUNE_CORE0, e_r7->radio_txmix5g_boost_tune_core0);
  623. b43_radio_write(dev, R2057_PAD5G_TUNE_MISC_PUS_CORE0, e_r7->radio_pad5g_tune_misc_pus_core0);
  624. b43_radio_write(dev, R2057_LNA2G_TUNE_CORE0, e_r7->radio_lna2g_tune_core0);
  625. b43_radio_write(dev, R2057_LNA5G_TUNE_CORE0, e_r7->radio_lna5g_tune_core0);
  626. b43_radio_write(dev, R2057_TXMIX2G_TUNE_BOOST_PU_CORE1, e_r7->radio_txmix2g_tune_boost_pu_core1);
  627. b43_radio_write(dev, R2057_PAD2G_TUNE_PUS_CORE1, e_r7->radio_pad2g_tune_pus_core1);
  628. b43_radio_write(dev, R2057_PGA_BOOST_TUNE_CORE1, e_r7->radio_pga_boost_tune_core1);
  629. b43_radio_write(dev, R2057_TXMIX5G_BOOST_TUNE_CORE1, e_r7->radio_txmix5g_boost_tune_core1);
  630. b43_radio_write(dev, R2057_PAD5G_TUNE_MISC_PUS_CORE1, e_r7->radio_pad5g_tune_misc_pus_core1);
  631. b43_radio_write(dev, R2057_LNA2G_TUNE_CORE1, e_r7->radio_lna2g_tune_core1);
  632. b43_radio_write(dev, R2057_LNA5G_TUNE_CORE1, e_r7->radio_lna5g_tune_core1);
  633. }
  634. }
  635. static void b43_radio_2057_setup(struct b43_wldev *dev,
  636. const struct b43_nphy_chantabent_rev7 *tabent_r7,
  637. const struct b43_nphy_chantabent_rev7_2g *tabent_r7_2g)
  638. {
  639. struct b43_phy *phy = &dev->phy;
  640. b43_radio_2057_chantab_upload(dev, tabent_r7, tabent_r7_2g);
  641. switch (phy->radio_rev) {
  642. case 0 ... 4:
  643. case 6:
  644. if (b43_current_band(dev->wl) == NL80211_BAND_2GHZ) {
  645. b43_radio_write(dev, R2057_RFPLL_LOOPFILTER_R1, 0x3f);
  646. b43_radio_write(dev, R2057_CP_KPD_IDAC, 0x3f);
  647. b43_radio_write(dev, R2057_RFPLL_LOOPFILTER_C1, 0x8);
  648. b43_radio_write(dev, R2057_RFPLL_LOOPFILTER_C2, 0x8);
  649. } else {
  650. b43_radio_write(dev, R2057_RFPLL_LOOPFILTER_R1, 0x1f);
  651. b43_radio_write(dev, R2057_CP_KPD_IDAC, 0x3f);
  652. b43_radio_write(dev, R2057_RFPLL_LOOPFILTER_C1, 0x8);
  653. b43_radio_write(dev, R2057_RFPLL_LOOPFILTER_C2, 0x8);
  654. }
  655. break;
  656. case 9: /* e.g. PHY rev 16 */
  657. b43_radio_write(dev, R2057_LOGEN_PTAT_RESETS, 0x20);
  658. b43_radio_write(dev, R2057_VCOBUF_IDACS, 0x18);
  659. if (b43_current_band(dev->wl) == NL80211_BAND_5GHZ) {
  660. b43_radio_write(dev, R2057_LOGEN_PTAT_RESETS, 0x38);
  661. b43_radio_write(dev, R2057_VCOBUF_IDACS, 0x0f);
  662. if (b43_is_40mhz(dev)) {
  663. /* TODO */
  664. } else {
  665. b43_radio_write(dev,
  666. R2057_PAD_BIAS_FILTER_BWS_CORE0,
  667. 0x3c);
  668. b43_radio_write(dev,
  669. R2057_PAD_BIAS_FILTER_BWS_CORE1,
  670. 0x3c);
  671. }
  672. }
  673. break;
  674. case 14: /* 2 GHz only */
  675. b43_radio_write(dev, R2057_RFPLL_LOOPFILTER_R1, 0x1b);
  676. b43_radio_write(dev, R2057_CP_KPD_IDAC, 0x3f);
  677. b43_radio_write(dev, R2057_RFPLL_LOOPFILTER_C1, 0x1f);
  678. b43_radio_write(dev, R2057_RFPLL_LOOPFILTER_C2, 0x1f);
  679. break;
  680. }
  681. if (b43_current_band(dev->wl) == NL80211_BAND_2GHZ) {
  682. u16 txmix2g_tune_boost_pu = 0;
  683. u16 pad2g_tune_pus = 0;
  684. if (b43_nphy_ipa(dev)) {
  685. switch (phy->radio_rev) {
  686. case 9:
  687. txmix2g_tune_boost_pu = 0x0041;
  688. /* TODO */
  689. break;
  690. case 14:
  691. txmix2g_tune_boost_pu = 0x21;
  692. pad2g_tune_pus = 0x23;
  693. break;
  694. }
  695. }
  696. if (txmix2g_tune_boost_pu)
  697. b43_radio_write(dev, R2057_TXMIX2G_TUNE_BOOST_PU_CORE0,
  698. txmix2g_tune_boost_pu);
  699. if (pad2g_tune_pus)
  700. b43_radio_write(dev, R2057_PAD2G_TUNE_PUS_CORE0,
  701. pad2g_tune_pus);
  702. if (txmix2g_tune_boost_pu)
  703. b43_radio_write(dev, R2057_TXMIX2G_TUNE_BOOST_PU_CORE1,
  704. txmix2g_tune_boost_pu);
  705. if (pad2g_tune_pus)
  706. b43_radio_write(dev, R2057_PAD2G_TUNE_PUS_CORE1,
  707. pad2g_tune_pus);
  708. }
  709. usleep_range(50, 100);
  710. /* VCO calibration */
  711. b43_radio_mask(dev, R2057_RFPLL_MISC_EN, ~0x01);
  712. b43_radio_mask(dev, R2057_RFPLL_MISC_CAL_RESETN, ~0x04);
  713. b43_radio_set(dev, R2057_RFPLL_MISC_CAL_RESETN, 0x4);
  714. b43_radio_set(dev, R2057_RFPLL_MISC_EN, 0x01);
  715. usleep_range(300, 600);
  716. }
  717. /* Calibrate resistors in LPF of PLL?
  718. * https://bcm-v4.sipsolutions.net/PHY/radio205x_rcal
  719. */
  720. static u8 b43_radio_2057_rcal(struct b43_wldev *dev)
  721. {
  722. struct b43_phy *phy = &dev->phy;
  723. u16 saved_regs_phy[12];
  724. u16 saved_regs_phy_rf[6];
  725. u16 saved_regs_radio[2] = { };
  726. static const u16 phy_to_store[] = {
  727. B43_NPHY_RFCTL_RSSIO1, B43_NPHY_RFCTL_RSSIO2,
  728. B43_NPHY_RFCTL_LUT_TRSW_LO1, B43_NPHY_RFCTL_LUT_TRSW_LO2,
  729. B43_NPHY_RFCTL_RXG1, B43_NPHY_RFCTL_RXG2,
  730. B43_NPHY_RFCTL_TXG1, B43_NPHY_RFCTL_TXG2,
  731. B43_NPHY_REV7_RF_CTL_MISC_REG3, B43_NPHY_REV7_RF_CTL_MISC_REG4,
  732. B43_NPHY_REV7_RF_CTL_MISC_REG5, B43_NPHY_REV7_RF_CTL_MISC_REG6,
  733. };
  734. static const u16 phy_to_store_rf[] = {
  735. B43_NPHY_REV3_RFCTL_OVER0, B43_NPHY_REV3_RFCTL_OVER1,
  736. B43_NPHY_REV7_RF_CTL_OVER3, B43_NPHY_REV7_RF_CTL_OVER4,
  737. B43_NPHY_REV7_RF_CTL_OVER5, B43_NPHY_REV7_RF_CTL_OVER6,
  738. };
  739. u16 tmp;
  740. int i;
  741. /* Save */
  742. for (i = 0; i < ARRAY_SIZE(phy_to_store); i++)
  743. saved_regs_phy[i] = b43_phy_read(dev, phy_to_store[i]);
  744. for (i = 0; i < ARRAY_SIZE(phy_to_store_rf); i++)
  745. saved_regs_phy_rf[i] = b43_phy_read(dev, phy_to_store_rf[i]);
  746. /* Set */
  747. for (i = 0; i < ARRAY_SIZE(phy_to_store); i++)
  748. b43_phy_write(dev, phy_to_store[i], 0);
  749. b43_phy_write(dev, B43_NPHY_REV3_RFCTL_OVER0, 0x07ff);
  750. b43_phy_write(dev, B43_NPHY_REV3_RFCTL_OVER1, 0x07ff);
  751. b43_phy_write(dev, B43_NPHY_REV7_RF_CTL_OVER3, 0x07ff);
  752. b43_phy_write(dev, B43_NPHY_REV7_RF_CTL_OVER4, 0x07ff);
  753. b43_phy_write(dev, B43_NPHY_REV7_RF_CTL_OVER5, 0x007f);
  754. b43_phy_write(dev, B43_NPHY_REV7_RF_CTL_OVER6, 0x007f);
  755. switch (phy->radio_rev) {
  756. case 5:
  757. b43_phy_mask(dev, B43_NPHY_REV7_RF_CTL_OVER3, ~0x2);
  758. udelay(10);
  759. b43_radio_set(dev, R2057_IQTEST_SEL_PU, 0x1);
  760. b43_radio_maskset(dev, R2057v7_IQTEST_SEL_PU2, ~0x2, 0x1);
  761. break;
  762. case 9:
  763. b43_phy_set(dev, B43_NPHY_REV7_RF_CTL_OVER3, 0x2);
  764. b43_phy_set(dev, B43_NPHY_REV7_RF_CTL_MISC_REG3, 0x2);
  765. saved_regs_radio[0] = b43_radio_read(dev, R2057_IQTEST_SEL_PU);
  766. b43_radio_write(dev, R2057_IQTEST_SEL_PU, 0x11);
  767. break;
  768. case 14:
  769. saved_regs_radio[0] = b43_radio_read(dev, R2057_IQTEST_SEL_PU);
  770. saved_regs_radio[1] = b43_radio_read(dev, R2057v7_IQTEST_SEL_PU2);
  771. b43_phy_set(dev, B43_NPHY_REV7_RF_CTL_MISC_REG3, 0x2);
  772. b43_phy_set(dev, B43_NPHY_REV7_RF_CTL_OVER3, 0x2);
  773. b43_radio_write(dev, R2057v7_IQTEST_SEL_PU2, 0x2);
  774. b43_radio_write(dev, R2057_IQTEST_SEL_PU, 0x1);
  775. break;
  776. }
  777. /* Enable */
  778. b43_radio_set(dev, R2057_RCAL_CONFIG, 0x1);
  779. udelay(10);
  780. /* Start */
  781. b43_radio_set(dev, R2057_RCAL_CONFIG, 0x2);
  782. usleep_range(100, 200);
  783. /* Stop */
  784. b43_radio_mask(dev, R2057_RCAL_CONFIG, ~0x2);
  785. /* Wait and check for result */
  786. if (!b43_radio_wait_value(dev, R2057_RCAL_STATUS, 1, 1, 100, 1000000)) {
  787. b43err(dev->wl, "Radio 0x2057 rcal timeout\n");
  788. return 0;
  789. }
  790. tmp = b43_radio_read(dev, R2057_RCAL_STATUS) & 0x3E;
  791. /* Disable */
  792. b43_radio_mask(dev, R2057_RCAL_CONFIG, ~0x1);
  793. /* Restore */
  794. for (i = 0; i < ARRAY_SIZE(phy_to_store_rf); i++)
  795. b43_phy_write(dev, phy_to_store_rf[i], saved_regs_phy_rf[i]);
  796. for (i = 0; i < ARRAY_SIZE(phy_to_store); i++)
  797. b43_phy_write(dev, phy_to_store[i], saved_regs_phy[i]);
  798. switch (phy->radio_rev) {
  799. case 0 ... 4:
  800. case 6:
  801. b43_radio_maskset(dev, R2057_TEMPSENSE_CONFIG, ~0x3C, tmp);
  802. b43_radio_maskset(dev, R2057_BANDGAP_RCAL_TRIM, ~0xF0,
  803. tmp << 2);
  804. break;
  805. case 5:
  806. b43_radio_mask(dev, R2057_IPA2G_CASCONV_CORE0, ~0x1);
  807. b43_radio_mask(dev, R2057v7_IQTEST_SEL_PU2, ~0x2);
  808. break;
  809. case 9:
  810. b43_radio_write(dev, R2057_IQTEST_SEL_PU, saved_regs_radio[0]);
  811. break;
  812. case 14:
  813. b43_radio_write(dev, R2057_IQTEST_SEL_PU, saved_regs_radio[0]);
  814. b43_radio_write(dev, R2057v7_IQTEST_SEL_PU2, saved_regs_radio[1]);
  815. break;
  816. }
  817. return tmp & 0x3e;
  818. }
  819. /* Calibrate the internal RC oscillator?
  820. * https://bcm-v4.sipsolutions.net/PHY/radio2057_rccal
  821. */
  822. static u16 b43_radio_2057_rccal(struct b43_wldev *dev)
  823. {
  824. struct b43_phy *phy = &dev->phy;
  825. bool special = (phy->radio_rev == 3 || phy->radio_rev == 4 ||
  826. phy->radio_rev == 6);
  827. u16 tmp;
  828. /* Setup cal */
  829. if (special) {
  830. b43_radio_write(dev, R2057_RCCAL_MASTER, 0x61);
  831. b43_radio_write(dev, R2057_RCCAL_TRC0, 0xC0);
  832. } else {
  833. b43_radio_write(dev, R2057v7_RCCAL_MASTER, 0x61);
  834. b43_radio_write(dev, R2057_RCCAL_TRC0, 0xE9);
  835. }
  836. b43_radio_write(dev, R2057_RCCAL_X1, 0x6E);
  837. /* Start, wait, stop */
  838. b43_radio_write(dev, R2057_RCCAL_START_R1_Q1_P1, 0x55);
  839. if (!b43_radio_wait_value(dev, R2057_RCCAL_DONE_OSCCAP, 2, 2, 500,
  840. 5000000))
  841. b43dbg(dev->wl, "Radio 0x2057 rccal timeout\n");
  842. usleep_range(35, 70);
  843. b43_radio_write(dev, R2057_RCCAL_START_R1_Q1_P1, 0x15);
  844. usleep_range(70, 140);
  845. /* Setup cal */
  846. if (special) {
  847. b43_radio_write(dev, R2057_RCCAL_MASTER, 0x69);
  848. b43_radio_write(dev, R2057_RCCAL_TRC0, 0xB0);
  849. } else {
  850. b43_radio_write(dev, R2057v7_RCCAL_MASTER, 0x69);
  851. b43_radio_write(dev, R2057_RCCAL_TRC0, 0xD5);
  852. }
  853. b43_radio_write(dev, R2057_RCCAL_X1, 0x6E);
  854. /* Start, wait, stop */
  855. usleep_range(35, 70);
  856. b43_radio_write(dev, R2057_RCCAL_START_R1_Q1_P1, 0x55);
  857. usleep_range(70, 140);
  858. if (!b43_radio_wait_value(dev, R2057_RCCAL_DONE_OSCCAP, 2, 2, 500,
  859. 5000000))
  860. b43dbg(dev->wl, "Radio 0x2057 rccal timeout\n");
  861. usleep_range(35, 70);
  862. b43_radio_write(dev, R2057_RCCAL_START_R1_Q1_P1, 0x15);
  863. usleep_range(70, 140);
  864. /* Setup cal */
  865. if (special) {
  866. b43_radio_write(dev, R2057_RCCAL_MASTER, 0x73);
  867. b43_radio_write(dev, R2057_RCCAL_X1, 0x28);
  868. b43_radio_write(dev, R2057_RCCAL_TRC0, 0xB0);
  869. } else {
  870. b43_radio_write(dev, R2057v7_RCCAL_MASTER, 0x73);
  871. b43_radio_write(dev, R2057_RCCAL_X1, 0x6E);
  872. b43_radio_write(dev, R2057_RCCAL_TRC0, 0x99);
  873. }
  874. /* Start, wait, stop */
  875. usleep_range(35, 70);
  876. b43_radio_write(dev, R2057_RCCAL_START_R1_Q1_P1, 0x55);
  877. usleep_range(70, 140);
  878. if (!b43_radio_wait_value(dev, R2057_RCCAL_DONE_OSCCAP, 2, 2, 500,
  879. 5000000)) {
  880. b43err(dev->wl, "Radio 0x2057 rcal timeout\n");
  881. return 0;
  882. }
  883. tmp = b43_radio_read(dev, R2057_RCCAL_DONE_OSCCAP);
  884. usleep_range(35, 70);
  885. b43_radio_write(dev, R2057_RCCAL_START_R1_Q1_P1, 0x15);
  886. usleep_range(70, 140);
  887. if (special)
  888. b43_radio_mask(dev, R2057_RCCAL_MASTER, ~0x1);
  889. else
  890. b43_radio_mask(dev, R2057v7_RCCAL_MASTER, ~0x1);
  891. return tmp;
  892. }
  893. static void b43_radio_2057_init_pre(struct b43_wldev *dev)
  894. {
  895. b43_phy_mask(dev, B43_NPHY_RFCTL_CMD, ~B43_NPHY_RFCTL_CMD_CHIP0PU);
  896. /* Maybe wl meant to reset and set (order?) RFCTL_CMD_OEPORFORCE? */
  897. b43_phy_mask(dev, B43_NPHY_RFCTL_CMD, B43_NPHY_RFCTL_CMD_OEPORFORCE);
  898. b43_phy_set(dev, B43_NPHY_RFCTL_CMD, ~B43_NPHY_RFCTL_CMD_OEPORFORCE);
  899. b43_phy_set(dev, B43_NPHY_RFCTL_CMD, B43_NPHY_RFCTL_CMD_CHIP0PU);
  900. }
  901. static void b43_radio_2057_init_post(struct b43_wldev *dev)
  902. {
  903. b43_radio_set(dev, R2057_XTALPUOVR_PINCTRL, 0x1);
  904. if (0) /* FIXME: Is this BCM43217 specific? */
  905. b43_radio_set(dev, R2057_XTALPUOVR_PINCTRL, 0x2);
  906. b43_radio_set(dev, R2057_RFPLL_MISC_CAL_RESETN, 0x78);
  907. b43_radio_set(dev, R2057_XTAL_CONFIG2, 0x80);
  908. usleep_range(2000, 3000);
  909. b43_radio_mask(dev, R2057_RFPLL_MISC_CAL_RESETN, ~0x78);
  910. b43_radio_mask(dev, R2057_XTAL_CONFIG2, ~0x80);
  911. if (dev->phy.do_full_init) {
  912. b43_radio_2057_rcal(dev);
  913. b43_radio_2057_rccal(dev);
  914. }
  915. b43_radio_mask(dev, R2057_RFPLL_MASTER, ~0x8);
  916. }
  917. /* https://bcm-v4.sipsolutions.net/802.11/Radio/2057/Init */
  918. static void b43_radio_2057_init(struct b43_wldev *dev)
  919. {
  920. b43_radio_2057_init_pre(dev);
  921. r2057_upload_inittabs(dev);
  922. b43_radio_2057_init_post(dev);
  923. }
  924. /**************************************************
  925. * Radio 0x2056
  926. **************************************************/
  927. static void b43_chantab_radio_2056_upload(struct b43_wldev *dev,
  928. const struct b43_nphy_channeltab_entry_rev3 *e)
  929. {
  930. b43_radio_write(dev, B2056_SYN_PLL_VCOCAL1, e->radio_syn_pll_vcocal1);
  931. b43_radio_write(dev, B2056_SYN_PLL_VCOCAL2, e->radio_syn_pll_vcocal2);
  932. b43_radio_write(dev, B2056_SYN_PLL_REFDIV, e->radio_syn_pll_refdiv);
  933. b43_radio_write(dev, B2056_SYN_PLL_MMD2, e->radio_syn_pll_mmd2);
  934. b43_radio_write(dev, B2056_SYN_PLL_MMD1, e->radio_syn_pll_mmd1);
  935. b43_radio_write(dev, B2056_SYN_PLL_LOOPFILTER1,
  936. e->radio_syn_pll_loopfilter1);
  937. b43_radio_write(dev, B2056_SYN_PLL_LOOPFILTER2,
  938. e->radio_syn_pll_loopfilter2);
  939. b43_radio_write(dev, B2056_SYN_PLL_LOOPFILTER3,
  940. e->radio_syn_pll_loopfilter3);
  941. b43_radio_write(dev, B2056_SYN_PLL_LOOPFILTER4,
  942. e->radio_syn_pll_loopfilter4);
  943. b43_radio_write(dev, B2056_SYN_PLL_LOOPFILTER5,
  944. e->radio_syn_pll_loopfilter5);
  945. b43_radio_write(dev, B2056_SYN_RESERVED_ADDR27,
  946. e->radio_syn_reserved_addr27);
  947. b43_radio_write(dev, B2056_SYN_RESERVED_ADDR28,
  948. e->radio_syn_reserved_addr28);
  949. b43_radio_write(dev, B2056_SYN_RESERVED_ADDR29,
  950. e->radio_syn_reserved_addr29);
  951. b43_radio_write(dev, B2056_SYN_LOGEN_VCOBUF1,
  952. e->radio_syn_logen_vcobuf1);
  953. b43_radio_write(dev, B2056_SYN_LOGEN_MIXER2, e->radio_syn_logen_mixer2);
  954. b43_radio_write(dev, B2056_SYN_LOGEN_BUF3, e->radio_syn_logen_buf3);
  955. b43_radio_write(dev, B2056_SYN_LOGEN_BUF4, e->radio_syn_logen_buf4);
  956. b43_radio_write(dev, B2056_RX0 | B2056_RX_LNAA_TUNE,
  957. e->radio_rx0_lnaa_tune);
  958. b43_radio_write(dev, B2056_RX0 | B2056_RX_LNAG_TUNE,
  959. e->radio_rx0_lnag_tune);
  960. b43_radio_write(dev, B2056_TX0 | B2056_TX_INTPAA_BOOST_TUNE,
  961. e->radio_tx0_intpaa_boost_tune);
  962. b43_radio_write(dev, B2056_TX0 | B2056_TX_INTPAG_BOOST_TUNE,
  963. e->radio_tx0_intpag_boost_tune);
  964. b43_radio_write(dev, B2056_TX0 | B2056_TX_PADA_BOOST_TUNE,
  965. e->radio_tx0_pada_boost_tune);
  966. b43_radio_write(dev, B2056_TX0 | B2056_TX_PADG_BOOST_TUNE,
  967. e->radio_tx0_padg_boost_tune);
  968. b43_radio_write(dev, B2056_TX0 | B2056_TX_PGAA_BOOST_TUNE,
  969. e->radio_tx0_pgaa_boost_tune);
  970. b43_radio_write(dev, B2056_TX0 | B2056_TX_PGAG_BOOST_TUNE,
  971. e->radio_tx0_pgag_boost_tune);
  972. b43_radio_write(dev, B2056_TX0 | B2056_TX_MIXA_BOOST_TUNE,
  973. e->radio_tx0_mixa_boost_tune);
  974. b43_radio_write(dev, B2056_TX0 | B2056_TX_MIXG_BOOST_TUNE,
  975. e->radio_tx0_mixg_boost_tune);
  976. b43_radio_write(dev, B2056_RX1 | B2056_RX_LNAA_TUNE,
  977. e->radio_rx1_lnaa_tune);
  978. b43_radio_write(dev, B2056_RX1 | B2056_RX_LNAG_TUNE,
  979. e->radio_rx1_lnag_tune);
  980. b43_radio_write(dev, B2056_TX1 | B2056_TX_INTPAA_BOOST_TUNE,
  981. e->radio_tx1_intpaa_boost_tune);
  982. b43_radio_write(dev, B2056_TX1 | B2056_TX_INTPAG_BOOST_TUNE,
  983. e->radio_tx1_intpag_boost_tune);
  984. b43_radio_write(dev, B2056_TX1 | B2056_TX_PADA_BOOST_TUNE,
  985. e->radio_tx1_pada_boost_tune);
  986. b43_radio_write(dev, B2056_TX1 | B2056_TX_PADG_BOOST_TUNE,
  987. e->radio_tx1_padg_boost_tune);
  988. b43_radio_write(dev, B2056_TX1 | B2056_TX_PGAA_BOOST_TUNE,
  989. e->radio_tx1_pgaa_boost_tune);
  990. b43_radio_write(dev, B2056_TX1 | B2056_TX_PGAG_BOOST_TUNE,
  991. e->radio_tx1_pgag_boost_tune);
  992. b43_radio_write(dev, B2056_TX1 | B2056_TX_MIXA_BOOST_TUNE,
  993. e->radio_tx1_mixa_boost_tune);
  994. b43_radio_write(dev, B2056_TX1 | B2056_TX_MIXG_BOOST_TUNE,
  995. e->radio_tx1_mixg_boost_tune);
  996. }
  997. /* https://bcm-v4.sipsolutions.net/802.11/PHY/Radio/2056Setup */
  998. static void b43_radio_2056_setup(struct b43_wldev *dev,
  999. const struct b43_nphy_channeltab_entry_rev3 *e)
  1000. {
  1001. struct b43_phy *phy = &dev->phy;
  1002. struct ssb_sprom *sprom = dev->dev->bus_sprom;
  1003. enum nl80211_band band = b43_current_band(dev->wl);
  1004. u16 offset;
  1005. u8 i;
  1006. u16 bias, cbias;
  1007. u16 pag_boost, padg_boost, pgag_boost, mixg_boost;
  1008. u16 paa_boost, pada_boost, pgaa_boost, mixa_boost;
  1009. bool is_pkg_fab_smic;
  1010. B43_WARN_ON(dev->phy.rev < 3);
  1011. is_pkg_fab_smic =
  1012. ((dev->dev->chip_id == BCMA_CHIP_ID_BCM43224 ||
  1013. dev->dev->chip_id == BCMA_CHIP_ID_BCM43225 ||
  1014. dev->dev->chip_id == BCMA_CHIP_ID_BCM43421) &&
  1015. dev->dev->chip_pkg == BCMA_PKG_ID_BCM43224_FAB_SMIC);
  1016. b43_chantab_radio_2056_upload(dev, e);
  1017. b2056_upload_syn_pll_cp2(dev, band == NL80211_BAND_5GHZ);
  1018. if (sprom->boardflags2_lo & B43_BFL2_GPLL_WAR &&
  1019. b43_current_band(dev->wl) == NL80211_BAND_2GHZ) {
  1020. b43_radio_write(dev, B2056_SYN_PLL_LOOPFILTER1, 0x1F);
  1021. b43_radio_write(dev, B2056_SYN_PLL_LOOPFILTER2, 0x1F);
  1022. if (dev->dev->chip_id == BCMA_CHIP_ID_BCM4716 ||
  1023. dev->dev->chip_id == BCMA_CHIP_ID_BCM47162) {
  1024. b43_radio_write(dev, B2056_SYN_PLL_LOOPFILTER4, 0x14);
  1025. b43_radio_write(dev, B2056_SYN_PLL_CP2, 0);
  1026. } else {
  1027. b43_radio_write(dev, B2056_SYN_PLL_LOOPFILTER4, 0x0B);
  1028. b43_radio_write(dev, B2056_SYN_PLL_CP2, 0x14);
  1029. }
  1030. }
  1031. if (sprom->boardflags2_hi & B43_BFH2_GPLL_WAR2 &&
  1032. b43_current_band(dev->wl) == NL80211_BAND_2GHZ) {
  1033. b43_radio_write(dev, B2056_SYN_PLL_LOOPFILTER1, 0x1f);
  1034. b43_radio_write(dev, B2056_SYN_PLL_LOOPFILTER2, 0x1f);
  1035. b43_radio_write(dev, B2056_SYN_PLL_LOOPFILTER4, 0x0b);
  1036. b43_radio_write(dev, B2056_SYN_PLL_CP2, 0x20);
  1037. }
  1038. if (sprom->boardflags2_lo & B43_BFL2_APLL_WAR &&
  1039. b43_current_band(dev->wl) == NL80211_BAND_5GHZ) {
  1040. b43_radio_write(dev, B2056_SYN_PLL_LOOPFILTER1, 0x1F);
  1041. b43_radio_write(dev, B2056_SYN_PLL_LOOPFILTER2, 0x1F);
  1042. b43_radio_write(dev, B2056_SYN_PLL_LOOPFILTER4, 0x05);
  1043. b43_radio_write(dev, B2056_SYN_PLL_CP2, 0x0C);
  1044. }
  1045. if (dev->phy.n->ipa2g_on && band == NL80211_BAND_2GHZ) {
  1046. for (i = 0; i < 2; i++) {
  1047. offset = i ? B2056_TX1 : B2056_TX0;
  1048. if (dev->phy.rev >= 5) {
  1049. b43_radio_write(dev,
  1050. offset | B2056_TX_PADG_IDAC, 0xcc);
  1051. if (dev->dev->chip_id == BCMA_CHIP_ID_BCM4716 ||
  1052. dev->dev->chip_id == BCMA_CHIP_ID_BCM47162) {
  1053. bias = 0x40;
  1054. cbias = 0x45;
  1055. pag_boost = 0x5;
  1056. pgag_boost = 0x33;
  1057. mixg_boost = 0x55;
  1058. } else {
  1059. bias = 0x25;
  1060. cbias = 0x20;
  1061. if (is_pkg_fab_smic) {
  1062. bias = 0x2a;
  1063. cbias = 0x38;
  1064. }
  1065. pag_boost = 0x4;
  1066. pgag_boost = 0x03;
  1067. mixg_boost = 0x65;
  1068. }
  1069. padg_boost = 0x77;
  1070. b43_radio_write(dev,
  1071. offset | B2056_TX_INTPAG_IMAIN_STAT,
  1072. bias);
  1073. b43_radio_write(dev,
  1074. offset | B2056_TX_INTPAG_IAUX_STAT,
  1075. bias);
  1076. b43_radio_write(dev,
  1077. offset | B2056_TX_INTPAG_CASCBIAS,
  1078. cbias);
  1079. b43_radio_write(dev,
  1080. offset | B2056_TX_INTPAG_BOOST_TUNE,
  1081. pag_boost);
  1082. b43_radio_write(dev,
  1083. offset | B2056_TX_PGAG_BOOST_TUNE,
  1084. pgag_boost);
  1085. b43_radio_write(dev,
  1086. offset | B2056_TX_PADG_BOOST_TUNE,
  1087. padg_boost);
  1088. b43_radio_write(dev,
  1089. offset | B2056_TX_MIXG_BOOST_TUNE,
  1090. mixg_boost);
  1091. } else {
  1092. bias = b43_is_40mhz(dev) ? 0x40 : 0x20;
  1093. b43_radio_write(dev,
  1094. offset | B2056_TX_INTPAG_IMAIN_STAT,
  1095. bias);
  1096. b43_radio_write(dev,
  1097. offset | B2056_TX_INTPAG_IAUX_STAT,
  1098. bias);
  1099. b43_radio_write(dev,
  1100. offset | B2056_TX_INTPAG_CASCBIAS,
  1101. 0x30);
  1102. }
  1103. b43_radio_write(dev, offset | B2056_TX_PA_SPARE1, 0xee);
  1104. }
  1105. } else if (dev->phy.n->ipa5g_on && band == NL80211_BAND_5GHZ) {
  1106. u16 freq = phy->chandef->chan->center_freq;
  1107. if (freq < 5100) {
  1108. paa_boost = 0xA;
  1109. pada_boost = 0x77;
  1110. pgaa_boost = 0xF;
  1111. mixa_boost = 0xF;
  1112. } else if (freq < 5340) {
  1113. paa_boost = 0x8;
  1114. pada_boost = 0x77;
  1115. pgaa_boost = 0xFB;
  1116. mixa_boost = 0xF;
  1117. } else if (freq < 5650) {
  1118. paa_boost = 0x0;
  1119. pada_boost = 0x77;
  1120. pgaa_boost = 0xB;
  1121. mixa_boost = 0xF;
  1122. } else {
  1123. paa_boost = 0x0;
  1124. pada_boost = 0x77;
  1125. if (freq != 5825)
  1126. pgaa_boost = -(freq - 18) / 36 + 168;
  1127. else
  1128. pgaa_boost = 6;
  1129. mixa_boost = 0xF;
  1130. }
  1131. cbias = is_pkg_fab_smic ? 0x35 : 0x30;
  1132. for (i = 0; i < 2; i++) {
  1133. offset = i ? B2056_TX1 : B2056_TX0;
  1134. b43_radio_write(dev,
  1135. offset | B2056_TX_INTPAA_BOOST_TUNE, paa_boost);
  1136. b43_radio_write(dev,
  1137. offset | B2056_TX_PADA_BOOST_TUNE, pada_boost);
  1138. b43_radio_write(dev,
  1139. offset | B2056_TX_PGAA_BOOST_TUNE, pgaa_boost);
  1140. b43_radio_write(dev,
  1141. offset | B2056_TX_MIXA_BOOST_TUNE, mixa_boost);
  1142. b43_radio_write(dev,
  1143. offset | B2056_TX_TXSPARE1, 0x30);
  1144. b43_radio_write(dev,
  1145. offset | B2056_TX_PA_SPARE2, 0xee);
  1146. b43_radio_write(dev,
  1147. offset | B2056_TX_PADA_CASCBIAS, 0x03);
  1148. b43_radio_write(dev,
  1149. offset | B2056_TX_INTPAA_IAUX_STAT, 0x30);
  1150. b43_radio_write(dev,
  1151. offset | B2056_TX_INTPAA_IMAIN_STAT, 0x30);
  1152. b43_radio_write(dev,
  1153. offset | B2056_TX_INTPAA_CASCBIAS, cbias);
  1154. }
  1155. }
  1156. udelay(50);
  1157. /* VCO calibration */
  1158. b43_radio_write(dev, B2056_SYN_PLL_VCOCAL12, 0x00);
  1159. b43_radio_write(dev, B2056_TX_INTPAA_PA_MISC, 0x38);
  1160. b43_radio_write(dev, B2056_TX_INTPAA_PA_MISC, 0x18);
  1161. b43_radio_write(dev, B2056_TX_INTPAA_PA_MISC, 0x38);
  1162. b43_radio_write(dev, B2056_TX_INTPAA_PA_MISC, 0x39);
  1163. udelay(300);
  1164. }
  1165. static u8 b43_radio_2056_rcal(struct b43_wldev *dev)
  1166. {
  1167. struct b43_phy *phy = &dev->phy;
  1168. u16 mast2, tmp;
  1169. if (phy->rev != 3)
  1170. return 0;
  1171. mast2 = b43_radio_read(dev, B2056_SYN_PLL_MAST2);
  1172. b43_radio_write(dev, B2056_SYN_PLL_MAST2, mast2 | 0x7);
  1173. udelay(10);
  1174. b43_radio_write(dev, B2056_SYN_RCAL_MASTER, 0x01);
  1175. udelay(10);
  1176. b43_radio_write(dev, B2056_SYN_RCAL_MASTER, 0x09);
  1177. if (!b43_radio_wait_value(dev, B2056_SYN_RCAL_CODE_OUT, 0x80, 0x80, 100,
  1178. 1000000)) {
  1179. b43err(dev->wl, "Radio recalibration timeout\n");
  1180. return 0;
  1181. }
  1182. b43_radio_write(dev, B2056_SYN_RCAL_MASTER, 0x01);
  1183. tmp = b43_radio_read(dev, B2056_SYN_RCAL_CODE_OUT);
  1184. b43_radio_write(dev, B2056_SYN_RCAL_MASTER, 0x00);
  1185. b43_radio_write(dev, B2056_SYN_PLL_MAST2, mast2);
  1186. return tmp & 0x1f;
  1187. }
  1188. static void b43_radio_init2056_pre(struct b43_wldev *dev)
  1189. {
  1190. b43_phy_mask(dev, B43_NPHY_RFCTL_CMD,
  1191. ~B43_NPHY_RFCTL_CMD_CHIP0PU);
  1192. /* Maybe wl meant to reset and set (order?) RFCTL_CMD_OEPORFORCE? */
  1193. b43_phy_mask(dev, B43_NPHY_RFCTL_CMD,
  1194. B43_NPHY_RFCTL_CMD_OEPORFORCE);
  1195. b43_phy_set(dev, B43_NPHY_RFCTL_CMD,
  1196. ~B43_NPHY_RFCTL_CMD_OEPORFORCE);
  1197. b43_phy_set(dev, B43_NPHY_RFCTL_CMD,
  1198. B43_NPHY_RFCTL_CMD_CHIP0PU);
  1199. }
  1200. static void b43_radio_init2056_post(struct b43_wldev *dev)
  1201. {
  1202. b43_radio_set(dev, B2056_SYN_COM_CTRL, 0xB);
  1203. b43_radio_set(dev, B2056_SYN_COM_PU, 0x2);
  1204. b43_radio_set(dev, B2056_SYN_COM_RESET, 0x2);
  1205. msleep(1);
  1206. b43_radio_mask(dev, B2056_SYN_COM_RESET, ~0x2);
  1207. b43_radio_mask(dev, B2056_SYN_PLL_MAST2, ~0xFC);
  1208. b43_radio_mask(dev, B2056_SYN_RCCAL_CTRL0, ~0x1);
  1209. if (dev->phy.do_full_init)
  1210. b43_radio_2056_rcal(dev);
  1211. }
  1212. /*
  1213. * Initialize a Broadcom 2056 N-radio
  1214. * https://bcm-v4.sipsolutions.net/802.11/Radio/2056/Init
  1215. */
  1216. static void b43_radio_init2056(struct b43_wldev *dev)
  1217. {
  1218. b43_radio_init2056_pre(dev);
  1219. b2056_upload_inittabs(dev, 0, 0);
  1220. b43_radio_init2056_post(dev);
  1221. }
  1222. /**************************************************
  1223. * Radio 0x2055
  1224. **************************************************/
  1225. static void b43_chantab_radio_upload(struct b43_wldev *dev,
  1226. const struct b43_nphy_channeltab_entry_rev2 *e)
  1227. {
  1228. b43_radio_write(dev, B2055_PLL_REF, e->radio_pll_ref);
  1229. b43_radio_write(dev, B2055_RF_PLLMOD0, e->radio_rf_pllmod0);
  1230. b43_radio_write(dev, B2055_RF_PLLMOD1, e->radio_rf_pllmod1);
  1231. b43_radio_write(dev, B2055_VCO_CAPTAIL, e->radio_vco_captail);
  1232. b43_read32(dev, B43_MMIO_MACCTL); /* flush writes */
  1233. b43_radio_write(dev, B2055_VCO_CAL1, e->radio_vco_cal1);
  1234. b43_radio_write(dev, B2055_VCO_CAL2, e->radio_vco_cal2);
  1235. b43_radio_write(dev, B2055_PLL_LFC1, e->radio_pll_lfc1);
  1236. b43_radio_write(dev, B2055_PLL_LFR1, e->radio_pll_lfr1);
  1237. b43_read32(dev, B43_MMIO_MACCTL); /* flush writes */
  1238. b43_radio_write(dev, B2055_PLL_LFC2, e->radio_pll_lfc2);
  1239. b43_radio_write(dev, B2055_LGBUF_CENBUF, e->radio_lgbuf_cenbuf);
  1240. b43_radio_write(dev, B2055_LGEN_TUNE1, e->radio_lgen_tune1);
  1241. b43_radio_write(dev, B2055_LGEN_TUNE2, e->radio_lgen_tune2);
  1242. b43_read32(dev, B43_MMIO_MACCTL); /* flush writes */
  1243. b43_radio_write(dev, B2055_C1_LGBUF_ATUNE, e->radio_c1_lgbuf_atune);
  1244. b43_radio_write(dev, B2055_C1_LGBUF_GTUNE, e->radio_c1_lgbuf_gtune);
  1245. b43_radio_write(dev, B2055_C1_RX_RFR1, e->radio_c1_rx_rfr1);
  1246. b43_radio_write(dev, B2055_C1_TX_PGAPADTN, e->radio_c1_tx_pgapadtn);
  1247. b43_read32(dev, B43_MMIO_MACCTL); /* flush writes */
  1248. b43_radio_write(dev, B2055_C1_TX_MXBGTRIM, e->radio_c1_tx_mxbgtrim);
  1249. b43_radio_write(dev, B2055_C2_LGBUF_ATUNE, e->radio_c2_lgbuf_atune);
  1250. b43_radio_write(dev, B2055_C2_LGBUF_GTUNE, e->radio_c2_lgbuf_gtune);
  1251. b43_radio_write(dev, B2055_C2_RX_RFR1, e->radio_c2_rx_rfr1);
  1252. b43_read32(dev, B43_MMIO_MACCTL); /* flush writes */
  1253. b43_radio_write(dev, B2055_C2_TX_PGAPADTN, e->radio_c2_tx_pgapadtn);
  1254. b43_radio_write(dev, B2055_C2_TX_MXBGTRIM, e->radio_c2_tx_mxbgtrim);
  1255. }
  1256. /* https://bcm-v4.sipsolutions.net/802.11/PHY/Radio/2055Setup */
  1257. static void b43_radio_2055_setup(struct b43_wldev *dev,
  1258. const struct b43_nphy_channeltab_entry_rev2 *e)
  1259. {
  1260. B43_WARN_ON(dev->phy.rev >= 3);
  1261. b43_chantab_radio_upload(dev, e);
  1262. udelay(50);
  1263. b43_radio_write(dev, B2055_VCO_CAL10, 0x05);
  1264. b43_radio_write(dev, B2055_VCO_CAL10, 0x45);
  1265. b43_read32(dev, B43_MMIO_MACCTL); /* flush writes */
  1266. b43_radio_write(dev, B2055_VCO_CAL10, 0x65);
  1267. udelay(300);
  1268. }
  1269. static void b43_radio_init2055_pre(struct b43_wldev *dev)
  1270. {
  1271. b43_phy_mask(dev, B43_NPHY_RFCTL_CMD,
  1272. ~B43_NPHY_RFCTL_CMD_PORFORCE);
  1273. b43_phy_set(dev, B43_NPHY_RFCTL_CMD,
  1274. B43_NPHY_RFCTL_CMD_CHIP0PU |
  1275. B43_NPHY_RFCTL_CMD_OEPORFORCE);
  1276. b43_phy_set(dev, B43_NPHY_RFCTL_CMD,
  1277. B43_NPHY_RFCTL_CMD_PORFORCE);
  1278. }
  1279. static void b43_radio_init2055_post(struct b43_wldev *dev)
  1280. {
  1281. struct b43_phy_n *nphy = dev->phy.n;
  1282. struct ssb_sprom *sprom = dev->dev->bus_sprom;
  1283. bool workaround = false;
  1284. if (sprom->revision < 4)
  1285. workaround = (dev->dev->board_vendor != PCI_VENDOR_ID_BROADCOM
  1286. && dev->dev->board_type == SSB_BOARD_CB2_4321
  1287. && dev->dev->board_rev >= 0x41);
  1288. else
  1289. workaround =
  1290. !(sprom->boardflags2_lo & B43_BFL2_RXBB_INT_REG_DIS);
  1291. b43_radio_mask(dev, B2055_MASTER1, 0xFFF3);
  1292. if (workaround) {
  1293. b43_radio_mask(dev, B2055_C1_RX_BB_REG, 0x7F);
  1294. b43_radio_mask(dev, B2055_C2_RX_BB_REG, 0x7F);
  1295. }
  1296. b43_radio_maskset(dev, B2055_RRCCAL_NOPTSEL, 0xFFC0, 0x2C);
  1297. b43_radio_write(dev, B2055_CAL_MISC, 0x3C);
  1298. b43_radio_mask(dev, B2055_CAL_MISC, 0xFFBE);
  1299. b43_radio_set(dev, B2055_CAL_LPOCTL, 0x80);
  1300. b43_radio_set(dev, B2055_CAL_MISC, 0x1);
  1301. msleep(1);
  1302. b43_radio_set(dev, B2055_CAL_MISC, 0x40);
  1303. if (!b43_radio_wait_value(dev, B2055_CAL_COUT2, 0x80, 0x80, 10, 2000))
  1304. b43err(dev->wl, "radio post init timeout\n");
  1305. b43_radio_mask(dev, B2055_CAL_LPOCTL, 0xFF7F);
  1306. b43_switch_channel(dev, dev->phy.channel);
  1307. b43_radio_write(dev, B2055_C1_RX_BB_LPF, 0x9);
  1308. b43_radio_write(dev, B2055_C2_RX_BB_LPF, 0x9);
  1309. b43_radio_write(dev, B2055_C1_RX_BB_MIDACHP, 0x83);
  1310. b43_radio_write(dev, B2055_C2_RX_BB_MIDACHP, 0x83);
  1311. b43_radio_maskset(dev, B2055_C1_LNA_GAINBST, 0xFFF8, 0x6);
  1312. b43_radio_maskset(dev, B2055_C2_LNA_GAINBST, 0xFFF8, 0x6);
  1313. if (!nphy->gain_boost) {
  1314. b43_radio_set(dev, B2055_C1_RX_RFSPC1, 0x2);
  1315. b43_radio_set(dev, B2055_C2_RX_RFSPC1, 0x2);
  1316. } else {
  1317. b43_radio_mask(dev, B2055_C1_RX_RFSPC1, 0xFFFD);
  1318. b43_radio_mask(dev, B2055_C2_RX_RFSPC1, 0xFFFD);
  1319. }
  1320. udelay(2);
  1321. }
  1322. /*
  1323. * Initialize a Broadcom 2055 N-radio
  1324. * https://bcm-v4.sipsolutions.net/802.11/Radio/2055/Init
  1325. */
  1326. static void b43_radio_init2055(struct b43_wldev *dev)
  1327. {
  1328. b43_radio_init2055_pre(dev);
  1329. if (b43_status(dev) < B43_STAT_INITIALIZED) {
  1330. /* Follow wl, not specs. Do not force uploading all regs */
  1331. b2055_upload_inittab(dev, 0, 0);
  1332. } else {
  1333. bool ghz5 = b43_current_band(dev->wl) == NL80211_BAND_5GHZ;
  1334. b2055_upload_inittab(dev, ghz5, 0);
  1335. }
  1336. b43_radio_init2055_post(dev);
  1337. }
  1338. /**************************************************
  1339. * Samples
  1340. **************************************************/
  1341. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/LoadSampleTable */
  1342. static int b43_nphy_load_samples(struct b43_wldev *dev,
  1343. struct cordic_iq *samples, u16 len) {
  1344. struct b43_phy_n *nphy = dev->phy.n;
  1345. u16 i;
  1346. u32 *data;
  1347. data = kcalloc(len, sizeof(u32), GFP_KERNEL);
  1348. if (!data) {
  1349. b43err(dev->wl, "allocation for samples loading failed\n");
  1350. return -ENOMEM;
  1351. }
  1352. if (nphy->hang_avoid)
  1353. b43_nphy_stay_in_carrier_search(dev, 1);
  1354. for (i = 0; i < len; i++) {
  1355. data[i] = (samples[i].i & 0x3FF << 10);
  1356. data[i] |= samples[i].q & 0x3FF;
  1357. }
  1358. b43_ntab_write_bulk(dev, B43_NTAB32(17, 0), len, data);
  1359. kfree(data);
  1360. if (nphy->hang_avoid)
  1361. b43_nphy_stay_in_carrier_search(dev, 0);
  1362. return 0;
  1363. }
  1364. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/GenLoadSamples */
  1365. static u16 b43_nphy_gen_load_samples(struct b43_wldev *dev, u32 freq, u16 max,
  1366. bool test)
  1367. {
  1368. int i;
  1369. u16 bw, len, rot, angle;
  1370. struct cordic_iq *samples;
  1371. bw = b43_is_40mhz(dev) ? 40 : 20;
  1372. len = bw << 3;
  1373. if (test) {
  1374. if (b43_phy_read(dev, B43_NPHY_BBCFG) & B43_NPHY_BBCFG_RSTRX)
  1375. bw = 82;
  1376. else
  1377. bw = 80;
  1378. if (b43_is_40mhz(dev))
  1379. bw <<= 1;
  1380. len = bw << 1;
  1381. }
  1382. samples = kcalloc(len, sizeof(struct cordic_iq), GFP_KERNEL);
  1383. if (!samples) {
  1384. b43err(dev->wl, "allocation for samples generation failed\n");
  1385. return 0;
  1386. }
  1387. rot = (((freq * 36) / bw) << 16) / 100;
  1388. angle = 0;
  1389. for (i = 0; i < len; i++) {
  1390. samples[i] = cordic_calc_iq(CORDIC_FIXED(angle));
  1391. angle += rot;
  1392. samples[i].q = CORDIC_FLOAT(samples[i].q * max);
  1393. samples[i].i = CORDIC_FLOAT(samples[i].i * max);
  1394. }
  1395. i = b43_nphy_load_samples(dev, samples, len);
  1396. kfree(samples);
  1397. return (i < 0) ? 0 : len;
  1398. }
  1399. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/RunSamples */
  1400. static void b43_nphy_run_samples(struct b43_wldev *dev, u16 samps, u16 loops,
  1401. u16 wait, bool iqmode, bool dac_test,
  1402. bool modify_bbmult)
  1403. {
  1404. struct b43_phy *phy = &dev->phy;
  1405. struct b43_phy_n *nphy = dev->phy.n;
  1406. int i;
  1407. u16 seq_mode;
  1408. u32 tmp;
  1409. b43_nphy_stay_in_carrier_search(dev, true);
  1410. if (phy->rev >= 7) {
  1411. bool lpf_bw3, lpf_bw4;
  1412. lpf_bw3 = b43_phy_read(dev, B43_NPHY_REV7_RF_CTL_OVER3) & 0x80;
  1413. lpf_bw4 = b43_phy_read(dev, B43_NPHY_REV7_RF_CTL_OVER4) & 0x80;
  1414. if (lpf_bw3 || lpf_bw4) {
  1415. /* TODO */
  1416. } else {
  1417. u16 value = b43_nphy_read_lpf_ctl(dev, 0);
  1418. if (phy->rev >= 19)
  1419. b43_nphy_rf_ctl_override_rev19(dev, 0x80, value,
  1420. 0, false, 1);
  1421. else
  1422. b43_nphy_rf_ctl_override_rev7(dev, 0x80, value,
  1423. 0, false, 1);
  1424. nphy->lpf_bw_overrode_for_sample_play = true;
  1425. }
  1426. }
  1427. if ((nphy->bb_mult_save & 0x80000000) == 0) {
  1428. tmp = b43_ntab_read(dev, B43_NTAB16(15, 87));
  1429. nphy->bb_mult_save = (tmp & 0xFFFF) | 0x80000000;
  1430. }
  1431. if (modify_bbmult) {
  1432. tmp = !b43_is_40mhz(dev) ? 0x6464 : 0x4747;
  1433. b43_ntab_write(dev, B43_NTAB16(15, 87), tmp);
  1434. }
  1435. b43_phy_write(dev, B43_NPHY_SAMP_DEPCNT, (samps - 1));
  1436. if (loops != 0xFFFF)
  1437. b43_phy_write(dev, B43_NPHY_SAMP_LOOPCNT, (loops - 1));
  1438. else
  1439. b43_phy_write(dev, B43_NPHY_SAMP_LOOPCNT, loops);
  1440. b43_phy_write(dev, B43_NPHY_SAMP_WAITCNT, wait);
  1441. seq_mode = b43_phy_read(dev, B43_NPHY_RFSEQMODE);
  1442. b43_phy_set(dev, B43_NPHY_RFSEQMODE, B43_NPHY_RFSEQMODE_CAOVER);
  1443. if (iqmode) {
  1444. b43_phy_mask(dev, B43_NPHY_IQLOCAL_CMDGCTL, 0x7FFF);
  1445. b43_phy_set(dev, B43_NPHY_IQLOCAL_CMDGCTL, 0x8000);
  1446. } else {
  1447. tmp = dac_test ? 5 : 1;
  1448. b43_phy_write(dev, B43_NPHY_SAMP_CMD, tmp);
  1449. }
  1450. for (i = 0; i < 100; i++) {
  1451. if (!(b43_phy_read(dev, B43_NPHY_RFSEQST) & 1)) {
  1452. i = 0;
  1453. break;
  1454. }
  1455. udelay(10);
  1456. }
  1457. if (i)
  1458. b43err(dev->wl, "run samples timeout\n");
  1459. b43_phy_write(dev, B43_NPHY_RFSEQMODE, seq_mode);
  1460. b43_nphy_stay_in_carrier_search(dev, false);
  1461. }
  1462. /**************************************************
  1463. * RSSI
  1464. **************************************************/
  1465. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/ScaleOffsetRssi */
  1466. static void b43_nphy_scale_offset_rssi(struct b43_wldev *dev, u16 scale,
  1467. s8 offset, u8 core,
  1468. enum n_rail_type rail,
  1469. enum n_rssi_type rssi_type)
  1470. {
  1471. u16 tmp;
  1472. bool core1or5 = (core == 1) || (core == 5);
  1473. bool core2or5 = (core == 2) || (core == 5);
  1474. offset = clamp_val(offset, -32, 31);
  1475. tmp = ((scale & 0x3F) << 8) | (offset & 0x3F);
  1476. switch (rssi_type) {
  1477. case N_RSSI_NB:
  1478. if (core1or5 && rail == N_RAIL_I)
  1479. b43_phy_write(dev, B43_NPHY_RSSIMC_0I_RSSI_Z, tmp);
  1480. if (core1or5 && rail == N_RAIL_Q)
  1481. b43_phy_write(dev, B43_NPHY_RSSIMC_0Q_RSSI_Z, tmp);
  1482. if (core2or5 && rail == N_RAIL_I)
  1483. b43_phy_write(dev, B43_NPHY_RSSIMC_1I_RSSI_Z, tmp);
  1484. if (core2or5 && rail == N_RAIL_Q)
  1485. b43_phy_write(dev, B43_NPHY_RSSIMC_1Q_RSSI_Z, tmp);
  1486. break;
  1487. case N_RSSI_W1:
  1488. if (core1or5 && rail == N_RAIL_I)
  1489. b43_phy_write(dev, B43_NPHY_RSSIMC_0I_RSSI_X, tmp);
  1490. if (core1or5 && rail == N_RAIL_Q)
  1491. b43_phy_write(dev, B43_NPHY_RSSIMC_0Q_RSSI_X, tmp);
  1492. if (core2or5 && rail == N_RAIL_I)
  1493. b43_phy_write(dev, B43_NPHY_RSSIMC_1I_RSSI_X, tmp);
  1494. if (core2or5 && rail == N_RAIL_Q)
  1495. b43_phy_write(dev, B43_NPHY_RSSIMC_1Q_RSSI_X, tmp);
  1496. break;
  1497. case N_RSSI_W2:
  1498. if (core1or5 && rail == N_RAIL_I)
  1499. b43_phy_write(dev, B43_NPHY_RSSIMC_0I_RSSI_Y, tmp);
  1500. if (core1or5 && rail == N_RAIL_Q)
  1501. b43_phy_write(dev, B43_NPHY_RSSIMC_0Q_RSSI_Y, tmp);
  1502. if (core2or5 && rail == N_RAIL_I)
  1503. b43_phy_write(dev, B43_NPHY_RSSIMC_1I_RSSI_Y, tmp);
  1504. if (core2or5 && rail == N_RAIL_Q)
  1505. b43_phy_write(dev, B43_NPHY_RSSIMC_1Q_RSSI_Y, tmp);
  1506. break;
  1507. case N_RSSI_TBD:
  1508. if (core1or5 && rail == N_RAIL_I)
  1509. b43_phy_write(dev, B43_NPHY_RSSIMC_0I_TBD, tmp);
  1510. if (core1or5 && rail == N_RAIL_Q)
  1511. b43_phy_write(dev, B43_NPHY_RSSIMC_0Q_TBD, tmp);
  1512. if (core2or5 && rail == N_RAIL_I)
  1513. b43_phy_write(dev, B43_NPHY_RSSIMC_1I_TBD, tmp);
  1514. if (core2or5 && rail == N_RAIL_Q)
  1515. b43_phy_write(dev, B43_NPHY_RSSIMC_1Q_TBD, tmp);
  1516. break;
  1517. case N_RSSI_IQ:
  1518. if (core1or5 && rail == N_RAIL_I)
  1519. b43_phy_write(dev, B43_NPHY_RSSIMC_0I_PWRDET, tmp);
  1520. if (core1or5 && rail == N_RAIL_Q)
  1521. b43_phy_write(dev, B43_NPHY_RSSIMC_0Q_PWRDET, tmp);
  1522. if (core2or5 && rail == N_RAIL_I)
  1523. b43_phy_write(dev, B43_NPHY_RSSIMC_1I_PWRDET, tmp);
  1524. if (core2or5 && rail == N_RAIL_Q)
  1525. b43_phy_write(dev, B43_NPHY_RSSIMC_1Q_PWRDET, tmp);
  1526. break;
  1527. case N_RSSI_TSSI_2G:
  1528. if (core1or5)
  1529. b43_phy_write(dev, B43_NPHY_RSSIMC_0I_TSSI, tmp);
  1530. if (core2or5)
  1531. b43_phy_write(dev, B43_NPHY_RSSIMC_1I_TSSI, tmp);
  1532. break;
  1533. case N_RSSI_TSSI_5G:
  1534. if (core1or5)
  1535. b43_phy_write(dev, B43_NPHY_RSSIMC_0Q_TSSI, tmp);
  1536. if (core2or5)
  1537. b43_phy_write(dev, B43_NPHY_RSSIMC_1Q_TSSI, tmp);
  1538. break;
  1539. }
  1540. }
  1541. static void b43_nphy_rssi_select_rev19(struct b43_wldev *dev, u8 code,
  1542. enum n_rssi_type rssi_type)
  1543. {
  1544. /* TODO */
  1545. }
  1546. static void b43_nphy_rev3_rssi_select(struct b43_wldev *dev, u8 code,
  1547. enum n_rssi_type rssi_type)
  1548. {
  1549. u8 i;
  1550. u16 reg, val;
  1551. if (code == 0) {
  1552. b43_phy_mask(dev, B43_NPHY_AFECTL_OVER1, 0xFDFF);
  1553. b43_phy_mask(dev, B43_NPHY_AFECTL_OVER, 0xFDFF);
  1554. b43_phy_mask(dev, B43_NPHY_AFECTL_C1, 0xFCFF);
  1555. b43_phy_mask(dev, B43_NPHY_AFECTL_C2, 0xFCFF);
  1556. b43_phy_mask(dev, B43_NPHY_TXF_40CO_B1S0, 0xFFDF);
  1557. b43_phy_mask(dev, B43_NPHY_TXF_40CO_B32S1, 0xFFDF);
  1558. b43_phy_mask(dev, B43_NPHY_RFCTL_LUT_TRSW_UP1, 0xFFC3);
  1559. b43_phy_mask(dev, B43_NPHY_RFCTL_LUT_TRSW_UP2, 0xFFC3);
  1560. } else {
  1561. for (i = 0; i < 2; i++) {
  1562. if ((code == 1 && i == 1) || (code == 2 && !i))
  1563. continue;
  1564. reg = (i == 0) ?
  1565. B43_NPHY_AFECTL_OVER1 : B43_NPHY_AFECTL_OVER;
  1566. b43_phy_maskset(dev, reg, 0xFDFF, 0x0200);
  1567. if (rssi_type == N_RSSI_W1 ||
  1568. rssi_type == N_RSSI_W2 ||
  1569. rssi_type == N_RSSI_NB) {
  1570. reg = (i == 0) ?
  1571. B43_NPHY_AFECTL_C1 :
  1572. B43_NPHY_AFECTL_C2;
  1573. b43_phy_maskset(dev, reg, 0xFCFF, 0);
  1574. reg = (i == 0) ?
  1575. B43_NPHY_RFCTL_LUT_TRSW_UP1 :
  1576. B43_NPHY_RFCTL_LUT_TRSW_UP2;
  1577. b43_phy_maskset(dev, reg, 0xFFC3, 0);
  1578. if (rssi_type == N_RSSI_W1)
  1579. val = (b43_current_band(dev->wl) == NL80211_BAND_5GHZ) ? 4 : 8;
  1580. else if (rssi_type == N_RSSI_W2)
  1581. val = 16;
  1582. else
  1583. val = 32;
  1584. b43_phy_set(dev, reg, val);
  1585. reg = (i == 0) ?
  1586. B43_NPHY_TXF_40CO_B1S0 :
  1587. B43_NPHY_TXF_40CO_B32S1;
  1588. b43_phy_set(dev, reg, 0x0020);
  1589. } else {
  1590. if (rssi_type == N_RSSI_TBD)
  1591. val = 0x0100;
  1592. else if (rssi_type == N_RSSI_IQ)
  1593. val = 0x0200;
  1594. else
  1595. val = 0x0300;
  1596. reg = (i == 0) ?
  1597. B43_NPHY_AFECTL_C1 :
  1598. B43_NPHY_AFECTL_C2;
  1599. b43_phy_maskset(dev, reg, 0xFCFF, val);
  1600. b43_phy_maskset(dev, reg, 0xF3FF, val << 2);
  1601. if (rssi_type != N_RSSI_IQ &&
  1602. rssi_type != N_RSSI_TBD) {
  1603. enum nl80211_band band =
  1604. b43_current_band(dev->wl);
  1605. if (dev->phy.rev < 7) {
  1606. if (b43_nphy_ipa(dev))
  1607. val = (band == NL80211_BAND_5GHZ) ? 0xC : 0xE;
  1608. else
  1609. val = 0x11;
  1610. reg = (i == 0) ? B2056_TX0 : B2056_TX1;
  1611. reg |= B2056_TX_TX_SSI_MUX;
  1612. b43_radio_write(dev, reg, val);
  1613. }
  1614. reg = (i == 0) ?
  1615. B43_NPHY_AFECTL_OVER1 :
  1616. B43_NPHY_AFECTL_OVER;
  1617. b43_phy_set(dev, reg, 0x0200);
  1618. }
  1619. }
  1620. }
  1621. }
  1622. }
  1623. static void b43_nphy_rev2_rssi_select(struct b43_wldev *dev, u8 code,
  1624. enum n_rssi_type rssi_type)
  1625. {
  1626. u16 val;
  1627. bool rssi_w1_w2_nb = false;
  1628. switch (rssi_type) {
  1629. case N_RSSI_W1:
  1630. case N_RSSI_W2:
  1631. case N_RSSI_NB:
  1632. val = 0;
  1633. rssi_w1_w2_nb = true;
  1634. break;
  1635. case N_RSSI_TBD:
  1636. val = 1;
  1637. break;
  1638. case N_RSSI_IQ:
  1639. val = 2;
  1640. break;
  1641. default:
  1642. val = 3;
  1643. }
  1644. val = (val << 12) | (val << 14);
  1645. b43_phy_maskset(dev, B43_NPHY_AFECTL_C1, 0x0FFF, val);
  1646. b43_phy_maskset(dev, B43_NPHY_AFECTL_C2, 0x0FFF, val);
  1647. if (rssi_w1_w2_nb) {
  1648. b43_phy_maskset(dev, B43_NPHY_RFCTL_RSSIO1, 0xFFCF,
  1649. (rssi_type + 1) << 4);
  1650. b43_phy_maskset(dev, B43_NPHY_RFCTL_RSSIO2, 0xFFCF,
  1651. (rssi_type + 1) << 4);
  1652. }
  1653. if (code == 0) {
  1654. b43_phy_mask(dev, B43_NPHY_AFECTL_OVER, ~0x3000);
  1655. if (rssi_w1_w2_nb) {
  1656. b43_phy_mask(dev, B43_NPHY_RFCTL_CMD,
  1657. ~(B43_NPHY_RFCTL_CMD_RXEN |
  1658. B43_NPHY_RFCTL_CMD_CORESEL));
  1659. b43_phy_mask(dev, B43_NPHY_RFCTL_OVER,
  1660. ~(0x1 << 12 |
  1661. 0x1 << 5 |
  1662. 0x1 << 1 |
  1663. 0x1));
  1664. b43_phy_mask(dev, B43_NPHY_RFCTL_CMD,
  1665. ~B43_NPHY_RFCTL_CMD_START);
  1666. udelay(20);
  1667. b43_phy_mask(dev, B43_NPHY_RFCTL_OVER, ~0x1);
  1668. }
  1669. } else {
  1670. b43_phy_set(dev, B43_NPHY_AFECTL_OVER, 0x3000);
  1671. if (rssi_w1_w2_nb) {
  1672. b43_phy_maskset(dev, B43_NPHY_RFCTL_CMD,
  1673. ~(B43_NPHY_RFCTL_CMD_RXEN |
  1674. B43_NPHY_RFCTL_CMD_CORESEL),
  1675. (B43_NPHY_RFCTL_CMD_RXEN |
  1676. code << B43_NPHY_RFCTL_CMD_CORESEL_SHIFT));
  1677. b43_phy_set(dev, B43_NPHY_RFCTL_OVER,
  1678. (0x1 << 12 |
  1679. 0x1 << 5 |
  1680. 0x1 << 1 |
  1681. 0x1));
  1682. b43_phy_set(dev, B43_NPHY_RFCTL_CMD,
  1683. B43_NPHY_RFCTL_CMD_START);
  1684. udelay(20);
  1685. b43_phy_mask(dev, B43_NPHY_RFCTL_OVER, ~0x1);
  1686. }
  1687. }
  1688. }
  1689. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/RSSISel */
  1690. static void b43_nphy_rssi_select(struct b43_wldev *dev, u8 code,
  1691. enum n_rssi_type type)
  1692. {
  1693. if (dev->phy.rev >= 19)
  1694. b43_nphy_rssi_select_rev19(dev, code, type);
  1695. else if (dev->phy.rev >= 3)
  1696. b43_nphy_rev3_rssi_select(dev, code, type);
  1697. else
  1698. b43_nphy_rev2_rssi_select(dev, code, type);
  1699. }
  1700. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/SetRssi2055Vcm */
  1701. static void b43_nphy_set_rssi_2055_vcm(struct b43_wldev *dev,
  1702. enum n_rssi_type rssi_type, u8 *buf)
  1703. {
  1704. int i;
  1705. for (i = 0; i < 2; i++) {
  1706. if (rssi_type == N_RSSI_NB) {
  1707. if (i == 0) {
  1708. b43_radio_maskset(dev, B2055_C1_B0NB_RSSIVCM,
  1709. 0xFC, buf[0]);
  1710. b43_radio_maskset(dev, B2055_C1_RX_BB_RSSICTL5,
  1711. 0xFC, buf[1]);
  1712. } else {
  1713. b43_radio_maskset(dev, B2055_C2_B0NB_RSSIVCM,
  1714. 0xFC, buf[2 * i]);
  1715. b43_radio_maskset(dev, B2055_C2_RX_BB_RSSICTL5,
  1716. 0xFC, buf[2 * i + 1]);
  1717. }
  1718. } else {
  1719. if (i == 0)
  1720. b43_radio_maskset(dev, B2055_C1_RX_BB_RSSICTL5,
  1721. 0xF3, buf[0] << 2);
  1722. else
  1723. b43_radio_maskset(dev, B2055_C2_RX_BB_RSSICTL5,
  1724. 0xF3, buf[2 * i + 1] << 2);
  1725. }
  1726. }
  1727. }
  1728. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/PollRssi */
  1729. static int b43_nphy_poll_rssi(struct b43_wldev *dev, enum n_rssi_type rssi_type,
  1730. s32 *buf, u8 nsamp)
  1731. {
  1732. int i;
  1733. int out;
  1734. u16 save_regs_phy[9];
  1735. u16 s[2];
  1736. /* TODO: rev7+ is treated like rev3+, what about rev19+? */
  1737. if (dev->phy.rev >= 3) {
  1738. save_regs_phy[0] = b43_phy_read(dev, B43_NPHY_AFECTL_C1);
  1739. save_regs_phy[1] = b43_phy_read(dev, B43_NPHY_AFECTL_C2);
  1740. save_regs_phy[2] = b43_phy_read(dev,
  1741. B43_NPHY_RFCTL_LUT_TRSW_UP1);
  1742. save_regs_phy[3] = b43_phy_read(dev,
  1743. B43_NPHY_RFCTL_LUT_TRSW_UP2);
  1744. save_regs_phy[4] = b43_phy_read(dev, B43_NPHY_AFECTL_OVER1);
  1745. save_regs_phy[5] = b43_phy_read(dev, B43_NPHY_AFECTL_OVER);
  1746. save_regs_phy[6] = b43_phy_read(dev, B43_NPHY_TXF_40CO_B1S0);
  1747. save_regs_phy[7] = b43_phy_read(dev, B43_NPHY_TXF_40CO_B32S1);
  1748. save_regs_phy[8] = 0;
  1749. } else {
  1750. save_regs_phy[0] = b43_phy_read(dev, B43_NPHY_AFECTL_C1);
  1751. save_regs_phy[1] = b43_phy_read(dev, B43_NPHY_AFECTL_C2);
  1752. save_regs_phy[2] = b43_phy_read(dev, B43_NPHY_AFECTL_OVER);
  1753. save_regs_phy[3] = b43_phy_read(dev, B43_NPHY_RFCTL_CMD);
  1754. save_regs_phy[4] = b43_phy_read(dev, B43_NPHY_RFCTL_OVER);
  1755. save_regs_phy[5] = b43_phy_read(dev, B43_NPHY_RFCTL_RSSIO1);
  1756. save_regs_phy[6] = b43_phy_read(dev, B43_NPHY_RFCTL_RSSIO2);
  1757. save_regs_phy[7] = 0;
  1758. save_regs_phy[8] = 0;
  1759. }
  1760. b43_nphy_rssi_select(dev, 5, rssi_type);
  1761. if (dev->phy.rev < 2) {
  1762. save_regs_phy[8] = b43_phy_read(dev, B43_NPHY_GPIO_SEL);
  1763. b43_phy_write(dev, B43_NPHY_GPIO_SEL, 5);
  1764. }
  1765. for (i = 0; i < 4; i++)
  1766. buf[i] = 0;
  1767. for (i = 0; i < nsamp; i++) {
  1768. if (dev->phy.rev < 2) {
  1769. s[0] = b43_phy_read(dev, B43_NPHY_GPIO_LOOUT);
  1770. s[1] = b43_phy_read(dev, B43_NPHY_GPIO_HIOUT);
  1771. } else {
  1772. s[0] = b43_phy_read(dev, B43_NPHY_RSSI1);
  1773. s[1] = b43_phy_read(dev, B43_NPHY_RSSI2);
  1774. }
  1775. buf[0] += ((s8)((s[0] & 0x3F) << 2)) >> 2;
  1776. buf[1] += ((s8)(((s[0] >> 8) & 0x3F) << 2)) >> 2;
  1777. buf[2] += ((s8)((s[1] & 0x3F) << 2)) >> 2;
  1778. buf[3] += ((s8)(((s[1] >> 8) & 0x3F) << 2)) >> 2;
  1779. }
  1780. out = (buf[0] & 0xFF) << 24 | (buf[1] & 0xFF) << 16 |
  1781. (buf[2] & 0xFF) << 8 | (buf[3] & 0xFF);
  1782. if (dev->phy.rev < 2)
  1783. b43_phy_write(dev, B43_NPHY_GPIO_SEL, save_regs_phy[8]);
  1784. if (dev->phy.rev >= 3) {
  1785. b43_phy_write(dev, B43_NPHY_AFECTL_C1, save_regs_phy[0]);
  1786. b43_phy_write(dev, B43_NPHY_AFECTL_C2, save_regs_phy[1]);
  1787. b43_phy_write(dev, B43_NPHY_RFCTL_LUT_TRSW_UP1,
  1788. save_regs_phy[2]);
  1789. b43_phy_write(dev, B43_NPHY_RFCTL_LUT_TRSW_UP2,
  1790. save_regs_phy[3]);
  1791. b43_phy_write(dev, B43_NPHY_AFECTL_OVER1, save_regs_phy[4]);
  1792. b43_phy_write(dev, B43_NPHY_AFECTL_OVER, save_regs_phy[5]);
  1793. b43_phy_write(dev, B43_NPHY_TXF_40CO_B1S0, save_regs_phy[6]);
  1794. b43_phy_write(dev, B43_NPHY_TXF_40CO_B32S1, save_regs_phy[7]);
  1795. } else {
  1796. b43_phy_write(dev, B43_NPHY_AFECTL_C1, save_regs_phy[0]);
  1797. b43_phy_write(dev, B43_NPHY_AFECTL_C2, save_regs_phy[1]);
  1798. b43_phy_write(dev, B43_NPHY_AFECTL_OVER, save_regs_phy[2]);
  1799. b43_phy_write(dev, B43_NPHY_RFCTL_CMD, save_regs_phy[3]);
  1800. b43_phy_write(dev, B43_NPHY_RFCTL_OVER, save_regs_phy[4]);
  1801. b43_phy_write(dev, B43_NPHY_RFCTL_RSSIO1, save_regs_phy[5]);
  1802. b43_phy_write(dev, B43_NPHY_RFCTL_RSSIO2, save_regs_phy[6]);
  1803. }
  1804. return out;
  1805. }
  1806. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/RSSICalRev3 */
  1807. static void b43_nphy_rev3_rssi_cal(struct b43_wldev *dev)
  1808. {
  1809. struct b43_phy *phy = &dev->phy;
  1810. struct b43_phy_n *nphy = dev->phy.n;
  1811. u16 saved_regs_phy_rfctl[2];
  1812. u16 saved_regs_phy[22];
  1813. u16 regs_to_store_rev3[] = {
  1814. B43_NPHY_AFECTL_OVER1, B43_NPHY_AFECTL_OVER,
  1815. B43_NPHY_AFECTL_C1, B43_NPHY_AFECTL_C2,
  1816. B43_NPHY_TXF_40CO_B1S1, B43_NPHY_RFCTL_OVER,
  1817. B43_NPHY_TXF_40CO_B1S0, B43_NPHY_TXF_40CO_B32S1,
  1818. B43_NPHY_RFCTL_CMD,
  1819. B43_NPHY_RFCTL_LUT_TRSW_UP1, B43_NPHY_RFCTL_LUT_TRSW_UP2,
  1820. B43_NPHY_RFCTL_RSSIO1, B43_NPHY_RFCTL_RSSIO2
  1821. };
  1822. u16 regs_to_store_rev7[] = {
  1823. B43_NPHY_AFECTL_OVER1, B43_NPHY_AFECTL_OVER,
  1824. B43_NPHY_AFECTL_C1, B43_NPHY_AFECTL_C2,
  1825. B43_NPHY_TXF_40CO_B1S1, B43_NPHY_RFCTL_OVER,
  1826. B43_NPHY_REV7_RF_CTL_OVER3, B43_NPHY_REV7_RF_CTL_OVER4,
  1827. B43_NPHY_REV7_RF_CTL_OVER5, B43_NPHY_REV7_RF_CTL_OVER6,
  1828. 0x2ff,
  1829. B43_NPHY_TXF_40CO_B1S0, B43_NPHY_TXF_40CO_B32S1,
  1830. B43_NPHY_RFCTL_CMD,
  1831. B43_NPHY_RFCTL_LUT_TRSW_UP1, B43_NPHY_RFCTL_LUT_TRSW_UP2,
  1832. B43_NPHY_REV7_RF_CTL_MISC_REG3, B43_NPHY_REV7_RF_CTL_MISC_REG4,
  1833. B43_NPHY_REV7_RF_CTL_MISC_REG5, B43_NPHY_REV7_RF_CTL_MISC_REG6,
  1834. B43_NPHY_RFCTL_RSSIO1, B43_NPHY_RFCTL_RSSIO2
  1835. };
  1836. u16 *regs_to_store;
  1837. int regs_amount;
  1838. u16 class;
  1839. u16 clip_state[2];
  1840. u16 clip_off[2] = { 0xFFFF, 0xFFFF };
  1841. u8 vcm_final = 0;
  1842. s32 offset[4];
  1843. s32 results[8][4] = { };
  1844. s32 results_min[4] = { };
  1845. s32 poll_results[4] = { };
  1846. u16 *rssical_radio_regs = NULL;
  1847. u16 *rssical_phy_regs = NULL;
  1848. u16 r; /* routing */
  1849. u8 rx_core_state;
  1850. int core, i, j, vcm;
  1851. if (dev->phy.rev >= 7) {
  1852. regs_to_store = regs_to_store_rev7;
  1853. regs_amount = ARRAY_SIZE(regs_to_store_rev7);
  1854. } else {
  1855. regs_to_store = regs_to_store_rev3;
  1856. regs_amount = ARRAY_SIZE(regs_to_store_rev3);
  1857. }
  1858. BUG_ON(regs_amount > ARRAY_SIZE(saved_regs_phy));
  1859. class = b43_nphy_classifier(dev, 0, 0);
  1860. b43_nphy_classifier(dev, 7, 4);
  1861. b43_nphy_read_clip_detection(dev, clip_state);
  1862. b43_nphy_write_clip_detection(dev, clip_off);
  1863. saved_regs_phy_rfctl[0] = b43_phy_read(dev, B43_NPHY_RFCTL_INTC1);
  1864. saved_regs_phy_rfctl[1] = b43_phy_read(dev, B43_NPHY_RFCTL_INTC2);
  1865. for (i = 0; i < regs_amount; i++)
  1866. saved_regs_phy[i] = b43_phy_read(dev, regs_to_store[i]);
  1867. b43_nphy_rf_ctl_intc_override(dev, N_INTC_OVERRIDE_OFF, 0, 7);
  1868. b43_nphy_rf_ctl_intc_override(dev, N_INTC_OVERRIDE_TRSW, 1, 7);
  1869. if (dev->phy.rev >= 7) {
  1870. b43_nphy_rf_ctl_override_one_to_many(dev,
  1871. N_RF_CTL_OVER_CMD_RXRF_PU,
  1872. 0, 0, false);
  1873. b43_nphy_rf_ctl_override_one_to_many(dev,
  1874. N_RF_CTL_OVER_CMD_RX_PU,
  1875. 1, 0, false);
  1876. b43_nphy_rf_ctl_override_rev7(dev, 0x80, 1, 0, false, 0);
  1877. b43_nphy_rf_ctl_override_rev7(dev, 0x40, 1, 0, false, 0);
  1878. if (b43_current_band(dev->wl) == NL80211_BAND_5GHZ) {
  1879. b43_nphy_rf_ctl_override_rev7(dev, 0x20, 0, 0, false,
  1880. 0);
  1881. b43_nphy_rf_ctl_override_rev7(dev, 0x10, 1, 0, false,
  1882. 0);
  1883. } else {
  1884. b43_nphy_rf_ctl_override_rev7(dev, 0x10, 0, 0, false,
  1885. 0);
  1886. b43_nphy_rf_ctl_override_rev7(dev, 0x20, 1, 0, false,
  1887. 0);
  1888. }
  1889. } else {
  1890. b43_nphy_rf_ctl_override(dev, 0x1, 0, 0, false);
  1891. b43_nphy_rf_ctl_override(dev, 0x2, 1, 0, false);
  1892. b43_nphy_rf_ctl_override(dev, 0x80, 1, 0, false);
  1893. b43_nphy_rf_ctl_override(dev, 0x40, 1, 0, false);
  1894. if (b43_current_band(dev->wl) == NL80211_BAND_5GHZ) {
  1895. b43_nphy_rf_ctl_override(dev, 0x20, 0, 0, false);
  1896. b43_nphy_rf_ctl_override(dev, 0x10, 1, 0, false);
  1897. } else {
  1898. b43_nphy_rf_ctl_override(dev, 0x10, 0, 0, false);
  1899. b43_nphy_rf_ctl_override(dev, 0x20, 1, 0, false);
  1900. }
  1901. }
  1902. rx_core_state = b43_nphy_get_rx_core_state(dev);
  1903. for (core = 0; core < 2; core++) {
  1904. if (!(rx_core_state & (1 << core)))
  1905. continue;
  1906. r = core ? B2056_RX1 : B2056_RX0;
  1907. b43_nphy_scale_offset_rssi(dev, 0, 0, core + 1, N_RAIL_I,
  1908. N_RSSI_NB);
  1909. b43_nphy_scale_offset_rssi(dev, 0, 0, core + 1, N_RAIL_Q,
  1910. N_RSSI_NB);
  1911. /* Grab RSSI results for every possible VCM */
  1912. for (vcm = 0; vcm < 8; vcm++) {
  1913. if (dev->phy.rev >= 7)
  1914. b43_radio_maskset(dev,
  1915. core ? R2057_NB_MASTER_CORE1 :
  1916. R2057_NB_MASTER_CORE0,
  1917. ~R2057_VCM_MASK, vcm);
  1918. else
  1919. b43_radio_maskset(dev, r | B2056_RX_RSSI_MISC,
  1920. 0xE3, vcm << 2);
  1921. b43_nphy_poll_rssi(dev, N_RSSI_NB, results[vcm], 8);
  1922. }
  1923. /* Find out which VCM got the best results */
  1924. for (i = 0; i < 4; i += 2) {
  1925. s32 currd;
  1926. s32 mind = 0x100000;
  1927. s32 minpoll = 249;
  1928. u8 minvcm = 0;
  1929. if (2 * core != i)
  1930. continue;
  1931. for (vcm = 0; vcm < 8; vcm++) {
  1932. currd = results[vcm][i] * results[vcm][i] +
  1933. results[vcm][i + 1] * results[vcm][i];
  1934. if (currd < mind) {
  1935. mind = currd;
  1936. minvcm = vcm;
  1937. }
  1938. if (results[vcm][i] < minpoll)
  1939. minpoll = results[vcm][i];
  1940. }
  1941. vcm_final = minvcm;
  1942. results_min[i] = minpoll;
  1943. }
  1944. /* Select the best VCM */
  1945. if (dev->phy.rev >= 7)
  1946. b43_radio_maskset(dev,
  1947. core ? R2057_NB_MASTER_CORE1 :
  1948. R2057_NB_MASTER_CORE0,
  1949. ~R2057_VCM_MASK, vcm);
  1950. else
  1951. b43_radio_maskset(dev, r | B2056_RX_RSSI_MISC,
  1952. 0xE3, vcm_final << 2);
  1953. for (i = 0; i < 4; i++) {
  1954. if (core != i / 2)
  1955. continue;
  1956. offset[i] = -results[vcm_final][i];
  1957. if (offset[i] < 0)
  1958. offset[i] = -((abs(offset[i]) + 4) / 8);
  1959. else
  1960. offset[i] = (offset[i] + 4) / 8;
  1961. if (results_min[i] == 248)
  1962. offset[i] = -32;
  1963. b43_nphy_scale_offset_rssi(dev, 0, offset[i],
  1964. (i / 2 == 0) ? 1 : 2,
  1965. (i % 2 == 0) ? N_RAIL_I : N_RAIL_Q,
  1966. N_RSSI_NB);
  1967. }
  1968. }
  1969. for (core = 0; core < 2; core++) {
  1970. if (!(rx_core_state & (1 << core)))
  1971. continue;
  1972. for (i = 0; i < 2; i++) {
  1973. b43_nphy_scale_offset_rssi(dev, 0, 0, core + 1,
  1974. N_RAIL_I, i);
  1975. b43_nphy_scale_offset_rssi(dev, 0, 0, core + 1,
  1976. N_RAIL_Q, i);
  1977. b43_nphy_poll_rssi(dev, i, poll_results, 8);
  1978. for (j = 0; j < 4; j++) {
  1979. if (j / 2 == core) {
  1980. offset[j] = 232 - poll_results[j];
  1981. if (offset[j] < 0)
  1982. offset[j] = -(abs(offset[j] + 4) / 8);
  1983. else
  1984. offset[j] = (offset[j] + 4) / 8;
  1985. b43_nphy_scale_offset_rssi(dev, 0,
  1986. offset[2 * core], core + 1, j % 2, i);
  1987. }
  1988. }
  1989. }
  1990. }
  1991. b43_phy_write(dev, B43_NPHY_RFCTL_INTC1, saved_regs_phy_rfctl[0]);
  1992. b43_phy_write(dev, B43_NPHY_RFCTL_INTC2, saved_regs_phy_rfctl[1]);
  1993. b43_nphy_force_rf_sequence(dev, B43_RFSEQ_RESET2RX);
  1994. b43_phy_set(dev, B43_NPHY_TXF_40CO_B1S1, 0x1);
  1995. b43_phy_set(dev, B43_NPHY_RFCTL_CMD, B43_NPHY_RFCTL_CMD_START);
  1996. b43_phy_mask(dev, B43_NPHY_TXF_40CO_B1S1, ~0x1);
  1997. b43_phy_set(dev, B43_NPHY_RFCTL_OVER, 0x1);
  1998. b43_phy_set(dev, B43_NPHY_RFCTL_CMD, B43_NPHY_RFCTL_CMD_RXTX);
  1999. b43_phy_mask(dev, B43_NPHY_RFCTL_OVER, ~0x1);
  2000. for (i = 0; i < regs_amount; i++)
  2001. b43_phy_write(dev, regs_to_store[i], saved_regs_phy[i]);
  2002. /* Store for future configuration */
  2003. if (b43_current_band(dev->wl) == NL80211_BAND_2GHZ) {
  2004. rssical_radio_regs = nphy->rssical_cache.rssical_radio_regs_2G;
  2005. rssical_phy_regs = nphy->rssical_cache.rssical_phy_regs_2G;
  2006. } else {
  2007. rssical_radio_regs = nphy->rssical_cache.rssical_radio_regs_5G;
  2008. rssical_phy_regs = nphy->rssical_cache.rssical_phy_regs_5G;
  2009. }
  2010. if (dev->phy.rev >= 7) {
  2011. rssical_radio_regs[0] = b43_radio_read(dev,
  2012. R2057_NB_MASTER_CORE0);
  2013. rssical_radio_regs[1] = b43_radio_read(dev,
  2014. R2057_NB_MASTER_CORE1);
  2015. } else {
  2016. rssical_radio_regs[0] = b43_radio_read(dev, B2056_RX0 |
  2017. B2056_RX_RSSI_MISC);
  2018. rssical_radio_regs[1] = b43_radio_read(dev, B2056_RX1 |
  2019. B2056_RX_RSSI_MISC);
  2020. }
  2021. rssical_phy_regs[0] = b43_phy_read(dev, B43_NPHY_RSSIMC_0I_RSSI_Z);
  2022. rssical_phy_regs[1] = b43_phy_read(dev, B43_NPHY_RSSIMC_0Q_RSSI_Z);
  2023. rssical_phy_regs[2] = b43_phy_read(dev, B43_NPHY_RSSIMC_1I_RSSI_Z);
  2024. rssical_phy_regs[3] = b43_phy_read(dev, B43_NPHY_RSSIMC_1Q_RSSI_Z);
  2025. rssical_phy_regs[4] = b43_phy_read(dev, B43_NPHY_RSSIMC_0I_RSSI_X);
  2026. rssical_phy_regs[5] = b43_phy_read(dev, B43_NPHY_RSSIMC_0Q_RSSI_X);
  2027. rssical_phy_regs[6] = b43_phy_read(dev, B43_NPHY_RSSIMC_1I_RSSI_X);
  2028. rssical_phy_regs[7] = b43_phy_read(dev, B43_NPHY_RSSIMC_1Q_RSSI_X);
  2029. rssical_phy_regs[8] = b43_phy_read(dev, B43_NPHY_RSSIMC_0I_RSSI_Y);
  2030. rssical_phy_regs[9] = b43_phy_read(dev, B43_NPHY_RSSIMC_0Q_RSSI_Y);
  2031. rssical_phy_regs[10] = b43_phy_read(dev, B43_NPHY_RSSIMC_1I_RSSI_Y);
  2032. rssical_phy_regs[11] = b43_phy_read(dev, B43_NPHY_RSSIMC_1Q_RSSI_Y);
  2033. /* Remember for which channel we store configuration */
  2034. if (b43_current_band(dev->wl) == NL80211_BAND_2GHZ)
  2035. nphy->rssical_chanspec_2G.center_freq = phy->chandef->chan->center_freq;
  2036. else
  2037. nphy->rssical_chanspec_5G.center_freq = phy->chandef->chan->center_freq;
  2038. /* End of calibration, restore configuration */
  2039. b43_nphy_classifier(dev, 7, class);
  2040. b43_nphy_write_clip_detection(dev, clip_state);
  2041. }
  2042. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/RSSICal */
  2043. static void b43_nphy_rev2_rssi_cal(struct b43_wldev *dev, enum n_rssi_type type)
  2044. {
  2045. int i, j, vcm;
  2046. u8 state[4];
  2047. u8 code, val;
  2048. u16 class, override;
  2049. u8 regs_save_radio[2];
  2050. u16 regs_save_phy[2];
  2051. s32 offset[4];
  2052. u8 core;
  2053. u8 rail;
  2054. u16 clip_state[2];
  2055. u16 clip_off[2] = { 0xFFFF, 0xFFFF };
  2056. s32 results_min[4] = { };
  2057. u8 vcm_final[4] = { };
  2058. s32 results[4][4] = { };
  2059. s32 miniq[4][2] = { };
  2060. if (type == N_RSSI_NB) {
  2061. code = 0;
  2062. val = 6;
  2063. } else if (type == N_RSSI_W1 || type == N_RSSI_W2) {
  2064. code = 25;
  2065. val = 4;
  2066. } else {
  2067. B43_WARN_ON(1);
  2068. return;
  2069. }
  2070. class = b43_nphy_classifier(dev, 0, 0);
  2071. b43_nphy_classifier(dev, 7, 4);
  2072. b43_nphy_read_clip_detection(dev, clip_state);
  2073. b43_nphy_write_clip_detection(dev, clip_off);
  2074. if (b43_current_band(dev->wl) == NL80211_BAND_5GHZ)
  2075. override = 0x140;
  2076. else
  2077. override = 0x110;
  2078. regs_save_phy[0] = b43_phy_read(dev, B43_NPHY_RFCTL_INTC1);
  2079. regs_save_radio[0] = b43_radio_read(dev, B2055_C1_PD_RXTX);
  2080. b43_phy_write(dev, B43_NPHY_RFCTL_INTC1, override);
  2081. b43_radio_write(dev, B2055_C1_PD_RXTX, val);
  2082. regs_save_phy[1] = b43_phy_read(dev, B43_NPHY_RFCTL_INTC2);
  2083. regs_save_radio[1] = b43_radio_read(dev, B2055_C2_PD_RXTX);
  2084. b43_phy_write(dev, B43_NPHY_RFCTL_INTC2, override);
  2085. b43_radio_write(dev, B2055_C2_PD_RXTX, val);
  2086. state[0] = b43_radio_read(dev, B2055_C1_PD_RSSIMISC) & 0x07;
  2087. state[1] = b43_radio_read(dev, B2055_C2_PD_RSSIMISC) & 0x07;
  2088. b43_radio_mask(dev, B2055_C1_PD_RSSIMISC, 0xF8);
  2089. b43_radio_mask(dev, B2055_C2_PD_RSSIMISC, 0xF8);
  2090. state[2] = b43_radio_read(dev, B2055_C1_SP_RSSI) & 0x07;
  2091. state[3] = b43_radio_read(dev, B2055_C2_SP_RSSI) & 0x07;
  2092. b43_nphy_rssi_select(dev, 5, type);
  2093. b43_nphy_scale_offset_rssi(dev, 0, 0, 5, N_RAIL_I, type);
  2094. b43_nphy_scale_offset_rssi(dev, 0, 0, 5, N_RAIL_Q, type);
  2095. for (vcm = 0; vcm < 4; vcm++) {
  2096. u8 tmp[4];
  2097. for (j = 0; j < 4; j++)
  2098. tmp[j] = vcm;
  2099. if (type != N_RSSI_W2)
  2100. b43_nphy_set_rssi_2055_vcm(dev, type, tmp);
  2101. b43_nphy_poll_rssi(dev, type, results[vcm], 8);
  2102. if (type == N_RSSI_W1 || type == N_RSSI_W2)
  2103. for (j = 0; j < 2; j++)
  2104. miniq[vcm][j] = min(results[vcm][2 * j],
  2105. results[vcm][2 * j + 1]);
  2106. }
  2107. for (i = 0; i < 4; i++) {
  2108. s32 mind = 0x100000;
  2109. u8 minvcm = 0;
  2110. s32 minpoll = 249;
  2111. s32 currd;
  2112. for (vcm = 0; vcm < 4; vcm++) {
  2113. if (type == N_RSSI_NB)
  2114. currd = abs(results[vcm][i] - code * 8);
  2115. else
  2116. currd = abs(miniq[vcm][i / 2] - code * 8);
  2117. if (currd < mind) {
  2118. mind = currd;
  2119. minvcm = vcm;
  2120. }
  2121. if (results[vcm][i] < minpoll)
  2122. minpoll = results[vcm][i];
  2123. }
  2124. results_min[i] = minpoll;
  2125. vcm_final[i] = minvcm;
  2126. }
  2127. if (type != N_RSSI_W2)
  2128. b43_nphy_set_rssi_2055_vcm(dev, type, vcm_final);
  2129. for (i = 0; i < 4; i++) {
  2130. offset[i] = (code * 8) - results[vcm_final[i]][i];
  2131. if (offset[i] < 0)
  2132. offset[i] = -((abs(offset[i]) + 4) / 8);
  2133. else
  2134. offset[i] = (offset[i] + 4) / 8;
  2135. if (results_min[i] == 248)
  2136. offset[i] = code - 32;
  2137. core = (i / 2) ? 2 : 1;
  2138. rail = (i % 2) ? N_RAIL_Q : N_RAIL_I;
  2139. b43_nphy_scale_offset_rssi(dev, 0, offset[i], core, rail,
  2140. type);
  2141. }
  2142. b43_radio_maskset(dev, B2055_C1_PD_RSSIMISC, 0xF8, state[0]);
  2143. b43_radio_maskset(dev, B2055_C2_PD_RSSIMISC, 0xF8, state[1]);
  2144. switch (state[2]) {
  2145. case 1:
  2146. b43_nphy_rssi_select(dev, 1, N_RSSI_NB);
  2147. break;
  2148. case 4:
  2149. b43_nphy_rssi_select(dev, 1, N_RSSI_W1);
  2150. break;
  2151. case 2:
  2152. b43_nphy_rssi_select(dev, 1, N_RSSI_W2);
  2153. break;
  2154. default:
  2155. b43_nphy_rssi_select(dev, 1, N_RSSI_W2);
  2156. break;
  2157. }
  2158. switch (state[3]) {
  2159. case 1:
  2160. b43_nphy_rssi_select(dev, 2, N_RSSI_NB);
  2161. break;
  2162. case 4:
  2163. b43_nphy_rssi_select(dev, 2, N_RSSI_W1);
  2164. break;
  2165. default:
  2166. b43_nphy_rssi_select(dev, 2, N_RSSI_W2);
  2167. break;
  2168. }
  2169. b43_nphy_rssi_select(dev, 0, type);
  2170. b43_phy_write(dev, B43_NPHY_RFCTL_INTC1, regs_save_phy[0]);
  2171. b43_radio_write(dev, B2055_C1_PD_RXTX, regs_save_radio[0]);
  2172. b43_phy_write(dev, B43_NPHY_RFCTL_INTC2, regs_save_phy[1]);
  2173. b43_radio_write(dev, B2055_C2_PD_RXTX, regs_save_radio[1]);
  2174. b43_nphy_classifier(dev, 7, class);
  2175. b43_nphy_write_clip_detection(dev, clip_state);
  2176. /* Specs don't say about reset here, but it makes wl and b43 dumps
  2177. identical, it really seems wl performs this */
  2178. b43_nphy_reset_cca(dev);
  2179. }
  2180. /*
  2181. * RSSI Calibration
  2182. * https://bcm-v4.sipsolutions.net/802.11/PHY/N/RSSICal
  2183. */
  2184. static void b43_nphy_rssi_cal(struct b43_wldev *dev)
  2185. {
  2186. if (dev->phy.rev >= 19) {
  2187. /* TODO */
  2188. } else if (dev->phy.rev >= 3) {
  2189. b43_nphy_rev3_rssi_cal(dev);
  2190. } else {
  2191. b43_nphy_rev2_rssi_cal(dev, N_RSSI_NB);
  2192. b43_nphy_rev2_rssi_cal(dev, N_RSSI_W1);
  2193. b43_nphy_rev2_rssi_cal(dev, N_RSSI_W2);
  2194. }
  2195. }
  2196. /**************************************************
  2197. * Workarounds
  2198. **************************************************/
  2199. static void b43_nphy_gain_ctl_workarounds_rev19(struct b43_wldev *dev)
  2200. {
  2201. /* TODO */
  2202. }
  2203. static void b43_nphy_gain_ctl_workarounds_rev7(struct b43_wldev *dev)
  2204. {
  2205. /* TODO - should depend on phy->rev */
  2206. }
  2207. static void b43_nphy_gain_ctl_workarounds_rev3(struct b43_wldev *dev)
  2208. {
  2209. struct ssb_sprom *sprom = dev->dev->bus_sprom;
  2210. bool ghz5;
  2211. bool ext_lna;
  2212. u16 rssi_gain;
  2213. struct nphy_gain_ctl_workaround_entry *e;
  2214. u8 lpf_gain[6] = { 0x00, 0x06, 0x0C, 0x12, 0x12, 0x12 };
  2215. u8 lpf_bits[6] = { 0, 1, 2, 3, 3, 3 };
  2216. /* Prepare values */
  2217. ghz5 = b43_phy_read(dev, B43_NPHY_BANDCTL)
  2218. & B43_NPHY_BANDCTL_5GHZ;
  2219. ext_lna = ghz5 ? sprom->boardflags_hi & B43_BFH_EXTLNA_5GHZ :
  2220. sprom->boardflags_lo & B43_BFL_EXTLNA;
  2221. e = b43_nphy_get_gain_ctl_workaround_ent(dev, ghz5, ext_lna);
  2222. if (ghz5 && dev->phy.rev >= 5)
  2223. rssi_gain = 0x90;
  2224. else
  2225. rssi_gain = 0x50;
  2226. b43_phy_set(dev, B43_NPHY_RXCTL, 0x0040);
  2227. /* Set Clip 2 detect */
  2228. b43_phy_set(dev, B43_NPHY_C1_CGAINI, B43_NPHY_C1_CGAINI_CL2DETECT);
  2229. b43_phy_set(dev, B43_NPHY_C2_CGAINI, B43_NPHY_C2_CGAINI_CL2DETECT);
  2230. b43_radio_write(dev, B2056_RX0 | B2056_RX_BIASPOLE_LNAG1_IDAC,
  2231. 0x17);
  2232. b43_radio_write(dev, B2056_RX1 | B2056_RX_BIASPOLE_LNAG1_IDAC,
  2233. 0x17);
  2234. b43_radio_write(dev, B2056_RX0 | B2056_RX_LNAG2_IDAC, 0xF0);
  2235. b43_radio_write(dev, B2056_RX1 | B2056_RX_LNAG2_IDAC, 0xF0);
  2236. b43_radio_write(dev, B2056_RX0 | B2056_RX_RSSI_POLE, 0x00);
  2237. b43_radio_write(dev, B2056_RX1 | B2056_RX_RSSI_POLE, 0x00);
  2238. b43_radio_write(dev, B2056_RX0 | B2056_RX_RSSI_GAIN,
  2239. rssi_gain);
  2240. b43_radio_write(dev, B2056_RX1 | B2056_RX_RSSI_GAIN,
  2241. rssi_gain);
  2242. b43_radio_write(dev, B2056_RX0 | B2056_RX_BIASPOLE_LNAA1_IDAC,
  2243. 0x17);
  2244. b43_radio_write(dev, B2056_RX1 | B2056_RX_BIASPOLE_LNAA1_IDAC,
  2245. 0x17);
  2246. b43_radio_write(dev, B2056_RX0 | B2056_RX_LNAA2_IDAC, 0xFF);
  2247. b43_radio_write(dev, B2056_RX1 | B2056_RX_LNAA2_IDAC, 0xFF);
  2248. b43_ntab_write_bulk(dev, B43_NTAB8(0, 8), 4, e->lna1_gain);
  2249. b43_ntab_write_bulk(dev, B43_NTAB8(1, 8), 4, e->lna1_gain);
  2250. b43_ntab_write_bulk(dev, B43_NTAB8(0, 16), 4, e->lna2_gain);
  2251. b43_ntab_write_bulk(dev, B43_NTAB8(1, 16), 4, e->lna2_gain);
  2252. b43_ntab_write_bulk(dev, B43_NTAB8(0, 32), 10, e->gain_db);
  2253. b43_ntab_write_bulk(dev, B43_NTAB8(1, 32), 10, e->gain_db);
  2254. b43_ntab_write_bulk(dev, B43_NTAB8(2, 32), 10, e->gain_bits);
  2255. b43_ntab_write_bulk(dev, B43_NTAB8(3, 32), 10, e->gain_bits);
  2256. b43_ntab_write_bulk(dev, B43_NTAB8(0, 0x40), 6, lpf_gain);
  2257. b43_ntab_write_bulk(dev, B43_NTAB8(1, 0x40), 6, lpf_gain);
  2258. b43_ntab_write_bulk(dev, B43_NTAB8(2, 0x40), 6, lpf_bits);
  2259. b43_ntab_write_bulk(dev, B43_NTAB8(3, 0x40), 6, lpf_bits);
  2260. b43_phy_write(dev, B43_NPHY_REV3_C1_INITGAIN_A, e->init_gain);
  2261. b43_phy_write(dev, B43_NPHY_REV3_C2_INITGAIN_A, e->init_gain);
  2262. b43_ntab_write_bulk(dev, B43_NTAB16(7, 0x106), 2,
  2263. e->rfseq_init);
  2264. b43_phy_write(dev, B43_NPHY_REV3_C1_CLIP_HIGAIN_A, e->cliphi_gain);
  2265. b43_phy_write(dev, B43_NPHY_REV3_C2_CLIP_HIGAIN_A, e->cliphi_gain);
  2266. b43_phy_write(dev, B43_NPHY_REV3_C1_CLIP_MEDGAIN_A, e->clipmd_gain);
  2267. b43_phy_write(dev, B43_NPHY_REV3_C2_CLIP_MEDGAIN_A, e->clipmd_gain);
  2268. b43_phy_write(dev, B43_NPHY_REV3_C1_CLIP_LOGAIN_A, e->cliplo_gain);
  2269. b43_phy_write(dev, B43_NPHY_REV3_C2_CLIP_LOGAIN_A, e->cliplo_gain);
  2270. b43_phy_maskset(dev, B43_NPHY_CRSMINPOWER0, 0xFF00, e->crsmin);
  2271. b43_phy_maskset(dev, B43_NPHY_CRSMINPOWERL0, 0xFF00, e->crsminl);
  2272. b43_phy_maskset(dev, B43_NPHY_CRSMINPOWERU0, 0xFF00, e->crsminu);
  2273. b43_phy_write(dev, B43_NPHY_C1_NBCLIPTHRES, e->nbclip);
  2274. b43_phy_write(dev, B43_NPHY_C2_NBCLIPTHRES, e->nbclip);
  2275. b43_phy_maskset(dev, B43_NPHY_C1_CLIPWBTHRES,
  2276. ~B43_NPHY_C1_CLIPWBTHRES_CLIP2, e->wlclip);
  2277. b43_phy_maskset(dev, B43_NPHY_C2_CLIPWBTHRES,
  2278. ~B43_NPHY_C2_CLIPWBTHRES_CLIP2, e->wlclip);
  2279. b43_phy_write(dev, B43_NPHY_CCK_SHIFTB_REF, 0x809C);
  2280. }
  2281. static void b43_nphy_gain_ctl_workarounds_rev1_2(struct b43_wldev *dev)
  2282. {
  2283. struct b43_phy_n *nphy = dev->phy.n;
  2284. u8 i, j;
  2285. u8 code;
  2286. u16 tmp;
  2287. u8 rfseq_events[3] = { 6, 8, 7 };
  2288. u8 rfseq_delays[3] = { 10, 30, 1 };
  2289. /* Set Clip 2 detect */
  2290. b43_phy_set(dev, B43_NPHY_C1_CGAINI, B43_NPHY_C1_CGAINI_CL2DETECT);
  2291. b43_phy_set(dev, B43_NPHY_C2_CGAINI, B43_NPHY_C2_CGAINI_CL2DETECT);
  2292. /* Set narrowband clip threshold */
  2293. b43_phy_write(dev, B43_NPHY_C1_NBCLIPTHRES, 0x84);
  2294. b43_phy_write(dev, B43_NPHY_C2_NBCLIPTHRES, 0x84);
  2295. if (!b43_is_40mhz(dev)) {
  2296. /* Set dwell lengths */
  2297. b43_phy_write(dev, B43_NPHY_CLIP1_NBDWELL_LEN, 0x002B);
  2298. b43_phy_write(dev, B43_NPHY_CLIP2_NBDWELL_LEN, 0x002B);
  2299. b43_phy_write(dev, B43_NPHY_W1CLIP1_DWELL_LEN, 0x0009);
  2300. b43_phy_write(dev, B43_NPHY_W1CLIP2_DWELL_LEN, 0x0009);
  2301. }
  2302. /* Set wideband clip 2 threshold */
  2303. b43_phy_maskset(dev, B43_NPHY_C1_CLIPWBTHRES,
  2304. ~B43_NPHY_C1_CLIPWBTHRES_CLIP2, 21);
  2305. b43_phy_maskset(dev, B43_NPHY_C2_CLIPWBTHRES,
  2306. ~B43_NPHY_C2_CLIPWBTHRES_CLIP2, 21);
  2307. if (!b43_is_40mhz(dev)) {
  2308. b43_phy_maskset(dev, B43_NPHY_C1_CGAINI,
  2309. ~B43_NPHY_C1_CGAINI_GAINBKOFF, 0x1);
  2310. b43_phy_maskset(dev, B43_NPHY_C2_CGAINI,
  2311. ~B43_NPHY_C2_CGAINI_GAINBKOFF, 0x1);
  2312. b43_phy_maskset(dev, B43_NPHY_C1_CCK_CGAINI,
  2313. ~B43_NPHY_C1_CCK_CGAINI_GAINBKOFF, 0x1);
  2314. b43_phy_maskset(dev, B43_NPHY_C2_CCK_CGAINI,
  2315. ~B43_NPHY_C2_CCK_CGAINI_GAINBKOFF, 0x1);
  2316. }
  2317. b43_phy_write(dev, B43_NPHY_CCK_SHIFTB_REF, 0x809C);
  2318. if (nphy->gain_boost) {
  2319. if (b43_current_band(dev->wl) == NL80211_BAND_2GHZ &&
  2320. b43_is_40mhz(dev))
  2321. code = 4;
  2322. else
  2323. code = 5;
  2324. } else {
  2325. code = b43_is_40mhz(dev) ? 6 : 7;
  2326. }
  2327. /* Set HPVGA2 index */
  2328. b43_phy_maskset(dev, B43_NPHY_C1_INITGAIN, ~B43_NPHY_C1_INITGAIN_HPVGA2,
  2329. code << B43_NPHY_C1_INITGAIN_HPVGA2_SHIFT);
  2330. b43_phy_maskset(dev, B43_NPHY_C2_INITGAIN, ~B43_NPHY_C2_INITGAIN_HPVGA2,
  2331. code << B43_NPHY_C2_INITGAIN_HPVGA2_SHIFT);
  2332. b43_phy_write(dev, B43_NPHY_TABLE_ADDR, 0x1D06);
  2333. /* specs say about 2 loops, but wl does 4 */
  2334. for (i = 0; i < 4; i++)
  2335. b43_phy_write(dev, B43_NPHY_TABLE_DATALO, (code << 8 | 0x7C));
  2336. b43_nphy_adjust_lna_gain_table(dev);
  2337. if (nphy->elna_gain_config) {
  2338. b43_phy_write(dev, B43_NPHY_TABLE_ADDR, 0x0808);
  2339. b43_phy_write(dev, B43_NPHY_TABLE_DATALO, 0x0);
  2340. b43_phy_write(dev, B43_NPHY_TABLE_DATALO, 0x1);
  2341. b43_phy_write(dev, B43_NPHY_TABLE_DATALO, 0x1);
  2342. b43_phy_write(dev, B43_NPHY_TABLE_DATALO, 0x1);
  2343. b43_phy_write(dev, B43_NPHY_TABLE_ADDR, 0x0C08);
  2344. b43_phy_write(dev, B43_NPHY_TABLE_DATALO, 0x0);
  2345. b43_phy_write(dev, B43_NPHY_TABLE_DATALO, 0x1);
  2346. b43_phy_write(dev, B43_NPHY_TABLE_DATALO, 0x1);
  2347. b43_phy_write(dev, B43_NPHY_TABLE_DATALO, 0x1);
  2348. b43_phy_write(dev, B43_NPHY_TABLE_ADDR, 0x1D06);
  2349. /* specs say about 2 loops, but wl does 4 */
  2350. for (i = 0; i < 4; i++)
  2351. b43_phy_write(dev, B43_NPHY_TABLE_DATALO,
  2352. (code << 8 | 0x74));
  2353. }
  2354. if (dev->phy.rev == 2) {
  2355. for (i = 0; i < 4; i++) {
  2356. b43_phy_write(dev, B43_NPHY_TABLE_ADDR,
  2357. (0x0400 * i) + 0x0020);
  2358. for (j = 0; j < 21; j++) {
  2359. tmp = j * (i < 2 ? 3 : 1);
  2360. b43_phy_write(dev,
  2361. B43_NPHY_TABLE_DATALO, tmp);
  2362. }
  2363. }
  2364. }
  2365. b43_nphy_set_rf_sequence(dev, 5, rfseq_events, rfseq_delays, 3);
  2366. b43_phy_maskset(dev, B43_NPHY_OVER_DGAIN1,
  2367. ~B43_NPHY_OVER_DGAIN_CCKDGECV & 0xFFFF,
  2368. 0x5A << B43_NPHY_OVER_DGAIN_CCKDGECV_SHIFT);
  2369. if (b43_current_band(dev->wl) == NL80211_BAND_2GHZ)
  2370. b43_phy_maskset(dev, B43_PHY_N(0xC5D), 0xFF80, 4);
  2371. }
  2372. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/WorkaroundsGainCtrl */
  2373. static void b43_nphy_gain_ctl_workarounds(struct b43_wldev *dev)
  2374. {
  2375. if (dev->phy.rev >= 19)
  2376. b43_nphy_gain_ctl_workarounds_rev19(dev);
  2377. else if (dev->phy.rev >= 7)
  2378. b43_nphy_gain_ctl_workarounds_rev7(dev);
  2379. else if (dev->phy.rev >= 3)
  2380. b43_nphy_gain_ctl_workarounds_rev3(dev);
  2381. else
  2382. b43_nphy_gain_ctl_workarounds_rev1_2(dev);
  2383. }
  2384. static void b43_nphy_workarounds_rev7plus(struct b43_wldev *dev)
  2385. {
  2386. struct ssb_sprom *sprom = dev->dev->bus_sprom;
  2387. struct b43_phy *phy = &dev->phy;
  2388. /* TX to RX */
  2389. u8 tx2rx_events[7] = { 4, 3, 5, 2, 1, 8, 31, };
  2390. u8 tx2rx_delays[7] = { 8, 4, 4, 4, 4, 6, 1, };
  2391. /* RX to TX */
  2392. u8 rx2tx_events_ipa[9] = { 0x0, 0x1, 0x2, 0x8, 0x5, 0x6, 0xF, 0x3,
  2393. 0x1F };
  2394. u8 rx2tx_delays_ipa[9] = { 8, 6, 6, 4, 4, 16, 43, 1, 1 };
  2395. static const u16 ntab7_15e_16e[] = { 0, 0x10f, 0x10f };
  2396. u8 ntab7_138_146[] = { 0x11, 0x11 };
  2397. u8 ntab7_133[] = { 0x77, 0x11, 0x11 };
  2398. u16 lpf_ofdm_20mhz[2], lpf_ofdm_40mhz[2], lpf_11b[2];
  2399. u16 bcap_val;
  2400. s16 bcap_val_11b[2], bcap_val_11n_20[2], bcap_val_11n_40[2];
  2401. u16 scap_val;
  2402. s16 scap_val_11b[2], scap_val_11n_20[2], scap_val_11n_40[2];
  2403. bool rccal_ovrd = false;
  2404. u16 bias, conv, filt;
  2405. u32 noise_tbl[2];
  2406. u32 tmp32;
  2407. u8 core;
  2408. b43_phy_write(dev, B43_NPHY_PHASETR_A0, 0x0125);
  2409. b43_phy_write(dev, B43_NPHY_PHASETR_A1, 0x01b3);
  2410. b43_phy_write(dev, B43_NPHY_PHASETR_A2, 0x0105);
  2411. b43_phy_write(dev, B43_NPHY_PHASETR_B0, 0x016e);
  2412. b43_phy_write(dev, B43_NPHY_PHASETR_B1, 0x00cd);
  2413. b43_phy_write(dev, B43_NPHY_PHASETR_B2, 0x0020);
  2414. if (phy->rev == 7) {
  2415. b43_phy_set(dev, B43_NPHY_FINERX2_CGC, 0x10);
  2416. b43_phy_maskset(dev, B43_NPHY_FREQGAIN0, 0xFF80, 0x0020);
  2417. b43_phy_maskset(dev, B43_NPHY_FREQGAIN0, 0x80FF, 0x2700);
  2418. b43_phy_maskset(dev, B43_NPHY_FREQGAIN1, 0xFF80, 0x002E);
  2419. b43_phy_maskset(dev, B43_NPHY_FREQGAIN1, 0x80FF, 0x3300);
  2420. b43_phy_maskset(dev, B43_NPHY_FREQGAIN2, 0xFF80, 0x0037);
  2421. b43_phy_maskset(dev, B43_NPHY_FREQGAIN2, 0x80FF, 0x3A00);
  2422. b43_phy_maskset(dev, B43_NPHY_FREQGAIN3, 0xFF80, 0x003C);
  2423. b43_phy_maskset(dev, B43_NPHY_FREQGAIN3, 0x80FF, 0x3E00);
  2424. b43_phy_maskset(dev, B43_NPHY_FREQGAIN4, 0xFF80, 0x003E);
  2425. b43_phy_maskset(dev, B43_NPHY_FREQGAIN4, 0x80FF, 0x3F00);
  2426. b43_phy_maskset(dev, B43_NPHY_FREQGAIN5, 0xFF80, 0x0040);
  2427. b43_phy_maskset(dev, B43_NPHY_FREQGAIN5, 0x80FF, 0x4000);
  2428. b43_phy_maskset(dev, B43_NPHY_FREQGAIN6, 0xFF80, 0x0040);
  2429. b43_phy_maskset(dev, B43_NPHY_FREQGAIN6, 0x80FF, 0x4000);
  2430. b43_phy_maskset(dev, B43_NPHY_FREQGAIN7, 0xFF80, 0x0040);
  2431. b43_phy_maskset(dev, B43_NPHY_FREQGAIN7, 0x80FF, 0x4000);
  2432. }
  2433. if (phy->rev >= 16) {
  2434. b43_phy_write(dev, B43_NPHY_FORCEFRONT0, 0x7ff);
  2435. b43_phy_write(dev, B43_NPHY_FORCEFRONT1, 0x7ff);
  2436. } else if (phy->rev <= 8) {
  2437. b43_phy_write(dev, B43_NPHY_FORCEFRONT0, 0x1B0);
  2438. b43_phy_write(dev, B43_NPHY_FORCEFRONT1, 0x1B0);
  2439. }
  2440. if (phy->rev >= 16)
  2441. b43_phy_maskset(dev, B43_NPHY_TXTAILCNT, ~0xFF, 0xa0);
  2442. else if (phy->rev >= 8)
  2443. b43_phy_maskset(dev, B43_NPHY_TXTAILCNT, ~0xFF, 0x72);
  2444. b43_ntab_write(dev, B43_NTAB16(8, 0x00), 2);
  2445. b43_ntab_write(dev, B43_NTAB16(8, 0x10), 2);
  2446. tmp32 = b43_ntab_read(dev, B43_NTAB32(30, 0));
  2447. tmp32 &= 0xffffff;
  2448. b43_ntab_write(dev, B43_NTAB32(30, 0), tmp32);
  2449. b43_ntab_write_bulk(dev, B43_NTAB16(7, 0x15d), 3, ntab7_15e_16e);
  2450. b43_ntab_write_bulk(dev, B43_NTAB16(7, 0x16d), 3, ntab7_15e_16e);
  2451. b43_nphy_set_rf_sequence(dev, 1, tx2rx_events, tx2rx_delays,
  2452. ARRAY_SIZE(tx2rx_events));
  2453. if (b43_nphy_ipa(dev))
  2454. b43_nphy_set_rf_sequence(dev, 0, rx2tx_events_ipa,
  2455. rx2tx_delays_ipa, ARRAY_SIZE(rx2tx_events_ipa));
  2456. b43_phy_maskset(dev, B43_NPHY_EPS_OVERRIDEI_0, 0x3FFF, 0x4000);
  2457. b43_phy_maskset(dev, B43_NPHY_EPS_OVERRIDEI_1, 0x3FFF, 0x4000);
  2458. for (core = 0; core < 2; core++) {
  2459. lpf_ofdm_20mhz[core] = b43_nphy_read_lpf_ctl(dev, 0x154 + core * 0x10);
  2460. lpf_ofdm_40mhz[core] = b43_nphy_read_lpf_ctl(dev, 0x159 + core * 0x10);
  2461. lpf_11b[core] = b43_nphy_read_lpf_ctl(dev, 0x152 + core * 0x10);
  2462. }
  2463. bcap_val = b43_radio_read(dev, R2057_RCCAL_BCAP_VAL);
  2464. scap_val = b43_radio_read(dev, R2057_RCCAL_SCAP_VAL);
  2465. if (b43_nphy_ipa(dev)) {
  2466. bool ghz2 = b43_current_band(dev->wl) == NL80211_BAND_2GHZ;
  2467. switch (phy->radio_rev) {
  2468. case 5:
  2469. /* Check radio version (to be 0) by PHY rev for now */
  2470. if (phy->rev == 8 && b43_is_40mhz(dev)) {
  2471. for (core = 0; core < 2; core++) {
  2472. scap_val_11b[core] = scap_val;
  2473. bcap_val_11b[core] = bcap_val;
  2474. scap_val_11n_20[core] = scap_val;
  2475. bcap_val_11n_20[core] = bcap_val;
  2476. scap_val_11n_40[core] = 0xc;
  2477. bcap_val_11n_40[core] = 0xc;
  2478. }
  2479. rccal_ovrd = true;
  2480. }
  2481. if (phy->rev == 9) {
  2482. /* TODO: Radio version 1 (e.g. BCM5357B0) */
  2483. }
  2484. break;
  2485. case 7:
  2486. case 8:
  2487. for (core = 0; core < 2; core++) {
  2488. scap_val_11b[core] = scap_val;
  2489. bcap_val_11b[core] = bcap_val;
  2490. lpf_ofdm_20mhz[core] = 4;
  2491. lpf_11b[core] = 1;
  2492. if (b43_current_band(dev->wl) == NL80211_BAND_2GHZ) {
  2493. scap_val_11n_20[core] = 0xc;
  2494. bcap_val_11n_20[core] = 0xc;
  2495. scap_val_11n_40[core] = 0xa;
  2496. bcap_val_11n_40[core] = 0xa;
  2497. } else {
  2498. scap_val_11n_20[core] = 0x14;
  2499. bcap_val_11n_20[core] = 0x14;
  2500. scap_val_11n_40[core] = 0xf;
  2501. bcap_val_11n_40[core] = 0xf;
  2502. }
  2503. }
  2504. rccal_ovrd = true;
  2505. break;
  2506. case 9:
  2507. for (core = 0; core < 2; core++) {
  2508. bcap_val_11b[core] = bcap_val;
  2509. scap_val_11b[core] = scap_val;
  2510. lpf_11b[core] = 1;
  2511. if (ghz2) {
  2512. bcap_val_11n_20[core] = bcap_val + 13;
  2513. scap_val_11n_20[core] = scap_val + 15;
  2514. } else {
  2515. bcap_val_11n_20[core] = bcap_val + 14;
  2516. scap_val_11n_20[core] = scap_val + 15;
  2517. }
  2518. lpf_ofdm_20mhz[core] = 4;
  2519. if (ghz2) {
  2520. bcap_val_11n_40[core] = bcap_val - 7;
  2521. scap_val_11n_40[core] = scap_val - 5;
  2522. } else {
  2523. bcap_val_11n_40[core] = bcap_val + 2;
  2524. scap_val_11n_40[core] = scap_val + 4;
  2525. }
  2526. lpf_ofdm_40mhz[core] = 4;
  2527. }
  2528. rccal_ovrd = true;
  2529. break;
  2530. case 14:
  2531. for (core = 0; core < 2; core++) {
  2532. bcap_val_11b[core] = bcap_val;
  2533. scap_val_11b[core] = scap_val;
  2534. lpf_11b[core] = 1;
  2535. }
  2536. bcap_val_11n_20[0] = bcap_val + 20;
  2537. scap_val_11n_20[0] = scap_val + 20;
  2538. lpf_ofdm_20mhz[0] = 3;
  2539. bcap_val_11n_20[1] = bcap_val + 16;
  2540. scap_val_11n_20[1] = scap_val + 16;
  2541. lpf_ofdm_20mhz[1] = 3;
  2542. bcap_val_11n_40[0] = bcap_val + 20;
  2543. scap_val_11n_40[0] = scap_val + 20;
  2544. lpf_ofdm_40mhz[0] = 4;
  2545. bcap_val_11n_40[1] = bcap_val + 10;
  2546. scap_val_11n_40[1] = scap_val + 10;
  2547. lpf_ofdm_40mhz[1] = 4;
  2548. rccal_ovrd = true;
  2549. break;
  2550. }
  2551. } else {
  2552. if (phy->radio_rev == 5) {
  2553. for (core = 0; core < 2; core++) {
  2554. lpf_ofdm_20mhz[core] = 1;
  2555. lpf_ofdm_40mhz[core] = 3;
  2556. scap_val_11b[core] = scap_val;
  2557. bcap_val_11b[core] = bcap_val;
  2558. scap_val_11n_20[core] = 0x11;
  2559. scap_val_11n_40[core] = 0x11;
  2560. bcap_val_11n_20[core] = 0x13;
  2561. bcap_val_11n_40[core] = 0x13;
  2562. }
  2563. rccal_ovrd = true;
  2564. }
  2565. }
  2566. if (rccal_ovrd) {
  2567. u16 rx2tx_lut_20_11b[2], rx2tx_lut_20_11n[2], rx2tx_lut_40_11n[2];
  2568. u8 rx2tx_lut_extra = 1;
  2569. for (core = 0; core < 2; core++) {
  2570. bcap_val_11b[core] = clamp_val(bcap_val_11b[core], 0, 0x1f);
  2571. scap_val_11b[core] = clamp_val(scap_val_11b[core], 0, 0x1f);
  2572. bcap_val_11n_20[core] = clamp_val(bcap_val_11n_20[core], 0, 0x1f);
  2573. scap_val_11n_20[core] = clamp_val(scap_val_11n_20[core], 0, 0x1f);
  2574. bcap_val_11n_40[core] = clamp_val(bcap_val_11n_40[core], 0, 0x1f);
  2575. scap_val_11n_40[core] = clamp_val(scap_val_11n_40[core], 0, 0x1f);
  2576. rx2tx_lut_20_11b[core] = (rx2tx_lut_extra << 13) |
  2577. (bcap_val_11b[core] << 8) |
  2578. (scap_val_11b[core] << 3) |
  2579. lpf_11b[core];
  2580. rx2tx_lut_20_11n[core] = (rx2tx_lut_extra << 13) |
  2581. (bcap_val_11n_20[core] << 8) |
  2582. (scap_val_11n_20[core] << 3) |
  2583. lpf_ofdm_20mhz[core];
  2584. rx2tx_lut_40_11n[core] = (rx2tx_lut_extra << 13) |
  2585. (bcap_val_11n_40[core] << 8) |
  2586. (scap_val_11n_40[core] << 3) |
  2587. lpf_ofdm_40mhz[core];
  2588. }
  2589. for (core = 0; core < 2; core++) {
  2590. b43_ntab_write(dev, B43_NTAB16(7, 0x152 + core * 16),
  2591. rx2tx_lut_20_11b[core]);
  2592. b43_ntab_write(dev, B43_NTAB16(7, 0x153 + core * 16),
  2593. rx2tx_lut_20_11n[core]);
  2594. b43_ntab_write(dev, B43_NTAB16(7, 0x154 + core * 16),
  2595. rx2tx_lut_20_11n[core]);
  2596. b43_ntab_write(dev, B43_NTAB16(7, 0x155 + core * 16),
  2597. rx2tx_lut_40_11n[core]);
  2598. b43_ntab_write(dev, B43_NTAB16(7, 0x156 + core * 16),
  2599. rx2tx_lut_40_11n[core]);
  2600. b43_ntab_write(dev, B43_NTAB16(7, 0x157 + core * 16),
  2601. rx2tx_lut_40_11n[core]);
  2602. b43_ntab_write(dev, B43_NTAB16(7, 0x158 + core * 16),
  2603. rx2tx_lut_40_11n[core]);
  2604. b43_ntab_write(dev, B43_NTAB16(7, 0x159 + core * 16),
  2605. rx2tx_lut_40_11n[core]);
  2606. }
  2607. }
  2608. b43_phy_write(dev, 0x32F, 0x3);
  2609. if (phy->radio_rev == 4 || phy->radio_rev == 6)
  2610. b43_nphy_rf_ctl_override_rev7(dev, 4, 1, 3, false, 0);
  2611. if (phy->radio_rev == 3 || phy->radio_rev == 4 || phy->radio_rev == 6) {
  2612. if (sprom->revision &&
  2613. sprom->boardflags2_hi & B43_BFH2_IPALVLSHIFT_3P3) {
  2614. b43_radio_write(dev, 0x5, 0x05);
  2615. b43_radio_write(dev, 0x6, 0x30);
  2616. b43_radio_write(dev, 0x7, 0x00);
  2617. b43_radio_set(dev, 0x4f, 0x1);
  2618. b43_radio_set(dev, 0xd4, 0x1);
  2619. bias = 0x1f;
  2620. conv = 0x6f;
  2621. filt = 0xaa;
  2622. } else {
  2623. bias = 0x2b;
  2624. conv = 0x7f;
  2625. filt = 0xee;
  2626. }
  2627. if (b43_current_band(dev->wl) == NL80211_BAND_2GHZ) {
  2628. for (core = 0; core < 2; core++) {
  2629. if (core == 0) {
  2630. b43_radio_write(dev, 0x5F, bias);
  2631. b43_radio_write(dev, 0x64, conv);
  2632. b43_radio_write(dev, 0x66, filt);
  2633. } else {
  2634. b43_radio_write(dev, 0xE8, bias);
  2635. b43_radio_write(dev, 0xE9, conv);
  2636. b43_radio_write(dev, 0xEB, filt);
  2637. }
  2638. }
  2639. }
  2640. }
  2641. if (b43_nphy_ipa(dev)) {
  2642. if (b43_current_band(dev->wl) == NL80211_BAND_2GHZ) {
  2643. if (phy->radio_rev == 3 || phy->radio_rev == 4 ||
  2644. phy->radio_rev == 6) {
  2645. for (core = 0; core < 2; core++) {
  2646. if (core == 0)
  2647. b43_radio_write(dev, 0x51,
  2648. 0x7f);
  2649. else
  2650. b43_radio_write(dev, 0xd6,
  2651. 0x7f);
  2652. }
  2653. }
  2654. switch (phy->radio_rev) {
  2655. case 3:
  2656. for (core = 0; core < 2; core++) {
  2657. if (core == 0) {
  2658. b43_radio_write(dev, 0x64,
  2659. 0x13);
  2660. b43_radio_write(dev, 0x5F,
  2661. 0x1F);
  2662. b43_radio_write(dev, 0x66,
  2663. 0xEE);
  2664. b43_radio_write(dev, 0x59,
  2665. 0x8A);
  2666. b43_radio_write(dev, 0x80,
  2667. 0x3E);
  2668. } else {
  2669. b43_radio_write(dev, 0x69,
  2670. 0x13);
  2671. b43_radio_write(dev, 0xE8,
  2672. 0x1F);
  2673. b43_radio_write(dev, 0xEB,
  2674. 0xEE);
  2675. b43_radio_write(dev, 0xDE,
  2676. 0x8A);
  2677. b43_radio_write(dev, 0x105,
  2678. 0x3E);
  2679. }
  2680. }
  2681. break;
  2682. case 7:
  2683. case 8:
  2684. if (!b43_is_40mhz(dev)) {
  2685. b43_radio_write(dev, 0x5F, 0x14);
  2686. b43_radio_write(dev, 0xE8, 0x12);
  2687. } else {
  2688. b43_radio_write(dev, 0x5F, 0x16);
  2689. b43_radio_write(dev, 0xE8, 0x16);
  2690. }
  2691. break;
  2692. case 14:
  2693. for (core = 0; core < 2; core++) {
  2694. int o = core ? 0x85 : 0;
  2695. b43_radio_write(dev, o + R2057_IPA2G_CASCONV_CORE0, 0x13);
  2696. b43_radio_write(dev, o + R2057_TXMIX2G_TUNE_BOOST_PU_CORE0, 0x21);
  2697. b43_radio_write(dev, o + R2057_IPA2G_BIAS_FILTER_CORE0, 0xff);
  2698. b43_radio_write(dev, o + R2057_PAD2G_IDACS_CORE0, 0x88);
  2699. b43_radio_write(dev, o + R2057_PAD2G_TUNE_PUS_CORE0, 0x23);
  2700. b43_radio_write(dev, o + R2057_IPA2G_IMAIN_CORE0, 0x16);
  2701. b43_radio_write(dev, o + R2057_PAD_BIAS_FILTER_BWS_CORE0, 0x3e);
  2702. b43_radio_write(dev, o + R2057_BACKUP1_CORE0, 0x10);
  2703. }
  2704. break;
  2705. }
  2706. } else {
  2707. u16 freq = phy->chandef->chan->center_freq;
  2708. if ((freq >= 5180 && freq <= 5230) ||
  2709. (freq >= 5745 && freq <= 5805)) {
  2710. b43_radio_write(dev, 0x7D, 0xFF);
  2711. b43_radio_write(dev, 0xFE, 0xFF);
  2712. }
  2713. }
  2714. } else {
  2715. if (phy->radio_rev != 5) {
  2716. for (core = 0; core < 2; core++) {
  2717. if (core == 0) {
  2718. b43_radio_write(dev, 0x5c, 0x61);
  2719. b43_radio_write(dev, 0x51, 0x70);
  2720. } else {
  2721. b43_radio_write(dev, 0xe1, 0x61);
  2722. b43_radio_write(dev, 0xd6, 0x70);
  2723. }
  2724. }
  2725. }
  2726. }
  2727. if (phy->radio_rev == 4) {
  2728. b43_ntab_write(dev, B43_NTAB16(8, 0x05), 0x20);
  2729. b43_ntab_write(dev, B43_NTAB16(8, 0x15), 0x20);
  2730. for (core = 0; core < 2; core++) {
  2731. if (core == 0) {
  2732. b43_radio_write(dev, 0x1a1, 0x00);
  2733. b43_radio_write(dev, 0x1a2, 0x3f);
  2734. b43_radio_write(dev, 0x1a6, 0x3f);
  2735. } else {
  2736. b43_radio_write(dev, 0x1a7, 0x00);
  2737. b43_radio_write(dev, 0x1ab, 0x3f);
  2738. b43_radio_write(dev, 0x1ac, 0x3f);
  2739. }
  2740. }
  2741. } else {
  2742. b43_phy_set(dev, B43_NPHY_AFECTL_C1, 0x4);
  2743. b43_phy_set(dev, B43_NPHY_AFECTL_OVER1, 0x4);
  2744. b43_phy_set(dev, B43_NPHY_AFECTL_C2, 0x4);
  2745. b43_phy_set(dev, B43_NPHY_AFECTL_OVER, 0x4);
  2746. b43_phy_mask(dev, B43_NPHY_AFECTL_C1, ~0x1);
  2747. b43_phy_set(dev, B43_NPHY_AFECTL_OVER1, 0x1);
  2748. b43_phy_mask(dev, B43_NPHY_AFECTL_C2, ~0x1);
  2749. b43_phy_set(dev, B43_NPHY_AFECTL_OVER, 0x1);
  2750. b43_ntab_write(dev, B43_NTAB16(8, 0x05), 0);
  2751. b43_ntab_write(dev, B43_NTAB16(8, 0x15), 0);
  2752. b43_phy_mask(dev, B43_NPHY_AFECTL_C1, ~0x4);
  2753. b43_phy_mask(dev, B43_NPHY_AFECTL_OVER1, ~0x4);
  2754. b43_phy_mask(dev, B43_NPHY_AFECTL_C2, ~0x4);
  2755. b43_phy_mask(dev, B43_NPHY_AFECTL_OVER, ~0x4);
  2756. }
  2757. b43_phy_write(dev, B43_NPHY_ENDROP_TLEN, 0x2);
  2758. b43_ntab_write(dev, B43_NTAB32(16, 0x100), 20);
  2759. b43_ntab_write_bulk(dev, B43_NTAB8(7, 0x138), 2, ntab7_138_146);
  2760. b43_ntab_write(dev, B43_NTAB16(7, 0x141), 0x77);
  2761. b43_ntab_write_bulk(dev, B43_NTAB8(7, 0x133), 3, ntab7_133);
  2762. b43_ntab_write_bulk(dev, B43_NTAB8(7, 0x146), 2, ntab7_138_146);
  2763. b43_ntab_write(dev, B43_NTAB16(7, 0x123), 0x77);
  2764. b43_ntab_write(dev, B43_NTAB16(7, 0x12A), 0x77);
  2765. b43_ntab_read_bulk(dev, B43_NTAB32(16, 0x02), 1, noise_tbl);
  2766. noise_tbl[1] = b43_is_40mhz(dev) ? 0x14D : 0x18D;
  2767. b43_ntab_write_bulk(dev, B43_NTAB32(16, 0x02), 2, noise_tbl);
  2768. b43_ntab_read_bulk(dev, B43_NTAB32(16, 0x7E), 1, noise_tbl);
  2769. noise_tbl[1] = b43_is_40mhz(dev) ? 0x14D : 0x18D;
  2770. b43_ntab_write_bulk(dev, B43_NTAB32(16, 0x7E), 2, noise_tbl);
  2771. b43_nphy_gain_ctl_workarounds(dev);
  2772. /* TODO
  2773. b43_ntab_write_bulk(dev, B43_NTAB16(8, 0x08), 4,
  2774. aux_adc_vmid_rev7_core0);
  2775. b43_ntab_write_bulk(dev, B43_NTAB16(8, 0x18), 4,
  2776. aux_adc_vmid_rev7_core1);
  2777. b43_ntab_write_bulk(dev, B43_NTAB16(8, 0x0C), 4,
  2778. aux_adc_gain_rev7);
  2779. b43_ntab_write_bulk(dev, B43_NTAB16(8, 0x1C), 4,
  2780. aux_adc_gain_rev7);
  2781. */
  2782. }
  2783. static void b43_nphy_workarounds_rev3plus(struct b43_wldev *dev)
  2784. {
  2785. struct b43_phy_n *nphy = dev->phy.n;
  2786. struct ssb_sprom *sprom = dev->dev->bus_sprom;
  2787. /* TX to RX */
  2788. u8 tx2rx_events[7] = { 0x4, 0x3, 0x5, 0x2, 0x1, 0x8, 0x1F };
  2789. u8 tx2rx_delays[7] = { 8, 4, 4, 4, 4, 6, 1 };
  2790. /* RX to TX */
  2791. u8 rx2tx_events_ipa[9] = { 0x0, 0x1, 0x2, 0x8, 0x5, 0x6, 0xF, 0x3,
  2792. 0x1F };
  2793. u8 rx2tx_delays_ipa[9] = { 8, 6, 6, 4, 4, 16, 43, 1, 1 };
  2794. u8 rx2tx_events[9] = { 0x0, 0x1, 0x2, 0x8, 0x5, 0x6, 0x3, 0x4, 0x1F };
  2795. u8 rx2tx_delays[9] = { 8, 6, 6, 4, 4, 18, 42, 1, 1 };
  2796. u16 vmids[5][4] = {
  2797. { 0xa2, 0xb4, 0xb4, 0x89, }, /* 0 */
  2798. { 0xb4, 0xb4, 0xb4, 0x24, }, /* 1 */
  2799. { 0xa2, 0xb4, 0xb4, 0x74, }, /* 2 */
  2800. { 0xa2, 0xb4, 0xb4, 0x270, }, /* 3 */
  2801. { 0xa2, 0xb4, 0xb4, 0x00, }, /* 4 and 5 */
  2802. };
  2803. u16 gains[5][4] = {
  2804. { 0x02, 0x02, 0x02, 0x00, }, /* 0 */
  2805. { 0x02, 0x02, 0x02, 0x02, }, /* 1 */
  2806. { 0x02, 0x02, 0x02, 0x04, }, /* 2 */
  2807. { 0x02, 0x02, 0x02, 0x00, }, /* 3 */
  2808. { 0x02, 0x02, 0x02, 0x00, }, /* 4 and 5 */
  2809. };
  2810. u16 *vmid, *gain;
  2811. u8 pdet_range;
  2812. u16 tmp16;
  2813. u32 tmp32;
  2814. b43_phy_write(dev, B43_NPHY_FORCEFRONT0, 0x1f8);
  2815. b43_phy_write(dev, B43_NPHY_FORCEFRONT1, 0x1f8);
  2816. tmp32 = b43_ntab_read(dev, B43_NTAB32(30, 0));
  2817. tmp32 &= 0xffffff;
  2818. b43_ntab_write(dev, B43_NTAB32(30, 0), tmp32);
  2819. b43_phy_write(dev, B43_NPHY_PHASETR_A0, 0x0125);
  2820. b43_phy_write(dev, B43_NPHY_PHASETR_A1, 0x01B3);
  2821. b43_phy_write(dev, B43_NPHY_PHASETR_A2, 0x0105);
  2822. b43_phy_write(dev, B43_NPHY_PHASETR_B0, 0x016E);
  2823. b43_phy_write(dev, B43_NPHY_PHASETR_B1, 0x00CD);
  2824. b43_phy_write(dev, B43_NPHY_PHASETR_B2, 0x0020);
  2825. b43_phy_write(dev, B43_NPHY_REV3_C1_CLIP_LOGAIN_B, 0x000C);
  2826. b43_phy_write(dev, B43_NPHY_REV3_C2_CLIP_LOGAIN_B, 0x000C);
  2827. /* TX to RX */
  2828. b43_nphy_set_rf_sequence(dev, 1, tx2rx_events, tx2rx_delays,
  2829. ARRAY_SIZE(tx2rx_events));
  2830. /* RX to TX */
  2831. if (b43_nphy_ipa(dev))
  2832. b43_nphy_set_rf_sequence(dev, 0, rx2tx_events_ipa,
  2833. rx2tx_delays_ipa, ARRAY_SIZE(rx2tx_events_ipa));
  2834. if (nphy->hw_phyrxchain != 3 &&
  2835. nphy->hw_phyrxchain != nphy->hw_phytxchain) {
  2836. if (b43_nphy_ipa(dev)) {
  2837. rx2tx_delays[5] = 59;
  2838. rx2tx_delays[6] = 1;
  2839. rx2tx_events[7] = 0x1F;
  2840. }
  2841. b43_nphy_set_rf_sequence(dev, 0, rx2tx_events, rx2tx_delays,
  2842. ARRAY_SIZE(rx2tx_events));
  2843. }
  2844. tmp16 = (b43_current_band(dev->wl) == NL80211_BAND_2GHZ) ?
  2845. 0x2 : 0x9C40;
  2846. b43_phy_write(dev, B43_NPHY_ENDROP_TLEN, tmp16);
  2847. b43_phy_maskset(dev, B43_NPHY_SGILTRNOFFSET, 0xF0FF, 0x0700);
  2848. if (!b43_is_40mhz(dev)) {
  2849. b43_ntab_write(dev, B43_NTAB32(16, 3), 0x18D);
  2850. b43_ntab_write(dev, B43_NTAB32(16, 127), 0x18D);
  2851. } else {
  2852. b43_ntab_write(dev, B43_NTAB32(16, 3), 0x14D);
  2853. b43_ntab_write(dev, B43_NTAB32(16, 127), 0x14D);
  2854. }
  2855. b43_nphy_gain_ctl_workarounds(dev);
  2856. b43_ntab_write(dev, B43_NTAB16(8, 0), 2);
  2857. b43_ntab_write(dev, B43_NTAB16(8, 16), 2);
  2858. if (b43_current_band(dev->wl) == NL80211_BAND_2GHZ)
  2859. pdet_range = sprom->fem.ghz2.pdet_range;
  2860. else
  2861. pdet_range = sprom->fem.ghz5.pdet_range;
  2862. vmid = vmids[min_t(u16, pdet_range, 4)];
  2863. gain = gains[min_t(u16, pdet_range, 4)];
  2864. switch (pdet_range) {
  2865. case 3:
  2866. if (!(dev->phy.rev >= 4 &&
  2867. b43_current_band(dev->wl) == NL80211_BAND_2GHZ))
  2868. break;
  2869. fallthrough;
  2870. case 0:
  2871. case 1:
  2872. b43_ntab_write_bulk(dev, B43_NTAB16(8, 0x08), 4, vmid);
  2873. b43_ntab_write_bulk(dev, B43_NTAB16(8, 0x18), 4, vmid);
  2874. b43_ntab_write_bulk(dev, B43_NTAB16(8, 0x0c), 4, gain);
  2875. b43_ntab_write_bulk(dev, B43_NTAB16(8, 0x1c), 4, gain);
  2876. break;
  2877. case 2:
  2878. if (dev->phy.rev >= 6) {
  2879. if (b43_current_band(dev->wl) == NL80211_BAND_2GHZ)
  2880. vmid[3] = 0x94;
  2881. else
  2882. vmid[3] = 0x8e;
  2883. gain[3] = 3;
  2884. } else if (dev->phy.rev == 5) {
  2885. vmid[3] = 0x84;
  2886. gain[3] = 2;
  2887. }
  2888. b43_ntab_write_bulk(dev, B43_NTAB16(8, 0x08), 4, vmid);
  2889. b43_ntab_write_bulk(dev, B43_NTAB16(8, 0x18), 4, vmid);
  2890. b43_ntab_write_bulk(dev, B43_NTAB16(8, 0x0c), 4, gain);
  2891. b43_ntab_write_bulk(dev, B43_NTAB16(8, 0x1c), 4, gain);
  2892. break;
  2893. case 4:
  2894. case 5:
  2895. if (b43_current_band(dev->wl) != NL80211_BAND_2GHZ) {
  2896. if (pdet_range == 4) {
  2897. vmid[3] = 0x8e;
  2898. tmp16 = 0x96;
  2899. gain[3] = 0x2;
  2900. } else {
  2901. vmid[3] = 0x89;
  2902. tmp16 = 0x89;
  2903. gain[3] = 0;
  2904. }
  2905. } else {
  2906. if (pdet_range == 4) {
  2907. vmid[3] = 0x89;
  2908. tmp16 = 0x8b;
  2909. gain[3] = 0x2;
  2910. } else {
  2911. vmid[3] = 0x74;
  2912. tmp16 = 0x70;
  2913. gain[3] = 0;
  2914. }
  2915. }
  2916. b43_ntab_write_bulk(dev, B43_NTAB16(8, 0x08), 4, vmid);
  2917. b43_ntab_write_bulk(dev, B43_NTAB16(8, 0x0c), 4, gain);
  2918. vmid[3] = tmp16;
  2919. b43_ntab_write_bulk(dev, B43_NTAB16(8, 0x18), 4, vmid);
  2920. b43_ntab_write_bulk(dev, B43_NTAB16(8, 0x1c), 4, gain);
  2921. break;
  2922. }
  2923. b43_radio_write(dev, B2056_RX0 | B2056_RX_MIXA_MAST_BIAS, 0x00);
  2924. b43_radio_write(dev, B2056_RX1 | B2056_RX_MIXA_MAST_BIAS, 0x00);
  2925. b43_radio_write(dev, B2056_RX0 | B2056_RX_MIXA_BIAS_MAIN, 0x06);
  2926. b43_radio_write(dev, B2056_RX1 | B2056_RX_MIXA_BIAS_MAIN, 0x06);
  2927. b43_radio_write(dev, B2056_RX0 | B2056_RX_MIXA_BIAS_AUX, 0x07);
  2928. b43_radio_write(dev, B2056_RX1 | B2056_RX_MIXA_BIAS_AUX, 0x07);
  2929. b43_radio_write(dev, B2056_RX0 | B2056_RX_MIXA_LOB_BIAS, 0x88);
  2930. b43_radio_write(dev, B2056_RX1 | B2056_RX_MIXA_LOB_BIAS, 0x88);
  2931. b43_radio_write(dev, B2056_RX0 | B2056_RX_MIXA_CMFB_IDAC, 0x00);
  2932. b43_radio_write(dev, B2056_RX1 | B2056_RX_MIXA_CMFB_IDAC, 0x00);
  2933. b43_radio_write(dev, B2056_RX0 | B2056_RX_MIXG_CMFB_IDAC, 0x00);
  2934. b43_radio_write(dev, B2056_RX1 | B2056_RX_MIXG_CMFB_IDAC, 0x00);
  2935. /* N PHY WAR TX Chain Update with hw_phytxchain as argument */
  2936. if ((sprom->boardflags2_lo & B43_BFL2_APLL_WAR &&
  2937. b43_current_band(dev->wl) == NL80211_BAND_5GHZ) ||
  2938. (sprom->boardflags2_lo & B43_BFL2_GPLL_WAR &&
  2939. b43_current_band(dev->wl) == NL80211_BAND_2GHZ))
  2940. tmp32 = 0x00088888;
  2941. else
  2942. tmp32 = 0x88888888;
  2943. b43_ntab_write(dev, B43_NTAB32(30, 1), tmp32);
  2944. b43_ntab_write(dev, B43_NTAB32(30, 2), tmp32);
  2945. b43_ntab_write(dev, B43_NTAB32(30, 3), tmp32);
  2946. if (dev->phy.rev == 4 &&
  2947. b43_current_band(dev->wl) == NL80211_BAND_5GHZ) {
  2948. b43_radio_write(dev, B2056_TX0 | B2056_TX_GMBB_IDAC,
  2949. 0x70);
  2950. b43_radio_write(dev, B2056_TX1 | B2056_TX_GMBB_IDAC,
  2951. 0x70);
  2952. }
  2953. /* Dropped probably-always-true condition */
  2954. b43_phy_write(dev, B43_NPHY_ED_CRS40ASSERTTHRESH0, 0x03eb);
  2955. b43_phy_write(dev, B43_NPHY_ED_CRS40ASSERTTHRESH1, 0x03eb);
  2956. b43_phy_write(dev, B43_NPHY_ED_CRS40DEASSERTTHRESH0, 0x0341);
  2957. b43_phy_write(dev, B43_NPHY_ED_CRS40DEASSERTTHRESH1, 0x0341);
  2958. b43_phy_write(dev, B43_NPHY_ED_CRS20LASSERTTHRESH0, 0x042b);
  2959. b43_phy_write(dev, B43_NPHY_ED_CRS20LASSERTTHRESH1, 0x042b);
  2960. b43_phy_write(dev, B43_NPHY_ED_CRS20LDEASSERTTHRESH0, 0x0381);
  2961. b43_phy_write(dev, B43_NPHY_ED_CRS20LDEASSERTTHRESH1, 0x0381);
  2962. b43_phy_write(dev, B43_NPHY_ED_CRS20UASSERTTHRESH0, 0x042b);
  2963. b43_phy_write(dev, B43_NPHY_ED_CRS20UASSERTTHRESH1, 0x042b);
  2964. b43_phy_write(dev, B43_NPHY_ED_CRS20UDEASSERTTHRESH0, 0x0381);
  2965. b43_phy_write(dev, B43_NPHY_ED_CRS20UDEASSERTTHRESH1, 0x0381);
  2966. if (dev->phy.rev >= 6 && sprom->boardflags2_lo & B43_BFL2_SINGLEANT_CCK) {
  2967. ; /* TODO: 0x0080000000000000 HF */
  2968. }
  2969. }
  2970. static void b43_nphy_workarounds_rev1_2(struct b43_wldev *dev)
  2971. {
  2972. struct ssb_sprom *sprom = dev->dev->bus_sprom;
  2973. struct b43_phy *phy = &dev->phy;
  2974. struct b43_phy_n *nphy = phy->n;
  2975. u8 events1[7] = { 0x0, 0x1, 0x2, 0x8, 0x4, 0x5, 0x3 };
  2976. u8 delays1[7] = { 0x8, 0x6, 0x6, 0x2, 0x4, 0x3C, 0x1 };
  2977. u8 events2[7] = { 0x0, 0x3, 0x5, 0x4, 0x2, 0x1, 0x8 };
  2978. u8 delays2[7] = { 0x8, 0x6, 0x2, 0x4, 0x4, 0x6, 0x1 };
  2979. if (sprom->boardflags2_lo & B43_BFL2_SKWRKFEM_BRD ||
  2980. dev->dev->board_type == BCMA_BOARD_TYPE_BCM943224M93) {
  2981. delays1[0] = 0x1;
  2982. delays1[5] = 0x14;
  2983. }
  2984. if (b43_current_band(dev->wl) == NL80211_BAND_5GHZ &&
  2985. nphy->band5g_pwrgain) {
  2986. b43_radio_mask(dev, B2055_C1_TX_RF_SPARE, ~0x8);
  2987. b43_radio_mask(dev, B2055_C2_TX_RF_SPARE, ~0x8);
  2988. } else {
  2989. b43_radio_set(dev, B2055_C1_TX_RF_SPARE, 0x8);
  2990. b43_radio_set(dev, B2055_C2_TX_RF_SPARE, 0x8);
  2991. }
  2992. b43_ntab_write(dev, B43_NTAB16(8, 0x00), 0x000A);
  2993. b43_ntab_write(dev, B43_NTAB16(8, 0x10), 0x000A);
  2994. if (dev->phy.rev < 3) {
  2995. b43_ntab_write(dev, B43_NTAB16(8, 0x02), 0xCDAA);
  2996. b43_ntab_write(dev, B43_NTAB16(8, 0x12), 0xCDAA);
  2997. }
  2998. if (dev->phy.rev < 2) {
  2999. b43_ntab_write(dev, B43_NTAB16(8, 0x08), 0x0000);
  3000. b43_ntab_write(dev, B43_NTAB16(8, 0x18), 0x0000);
  3001. b43_ntab_write(dev, B43_NTAB16(8, 0x07), 0x7AAB);
  3002. b43_ntab_write(dev, B43_NTAB16(8, 0x17), 0x7AAB);
  3003. b43_ntab_write(dev, B43_NTAB16(8, 0x06), 0x0800);
  3004. b43_ntab_write(dev, B43_NTAB16(8, 0x16), 0x0800);
  3005. }
  3006. b43_phy_write(dev, B43_NPHY_RFCTL_LUT_TRSW_LO1, 0x2D8);
  3007. b43_phy_write(dev, B43_NPHY_RFCTL_LUT_TRSW_UP1, 0x301);
  3008. b43_phy_write(dev, B43_NPHY_RFCTL_LUT_TRSW_LO2, 0x2D8);
  3009. b43_phy_write(dev, B43_NPHY_RFCTL_LUT_TRSW_UP2, 0x301);
  3010. b43_nphy_set_rf_sequence(dev, 0, events1, delays1, 7);
  3011. b43_nphy_set_rf_sequence(dev, 1, events2, delays2, 7);
  3012. b43_nphy_gain_ctl_workarounds(dev);
  3013. if (dev->phy.rev < 2) {
  3014. if (b43_phy_read(dev, B43_NPHY_RXCTL) & 0x2)
  3015. b43_hf_write(dev, b43_hf_read(dev) |
  3016. B43_HF_MLADVW);
  3017. } else if (dev->phy.rev == 2) {
  3018. b43_phy_write(dev, B43_NPHY_CRSCHECK2, 0);
  3019. b43_phy_write(dev, B43_NPHY_CRSCHECK3, 0);
  3020. }
  3021. if (dev->phy.rev < 2)
  3022. b43_phy_mask(dev, B43_NPHY_SCRAM_SIGCTL,
  3023. ~B43_NPHY_SCRAM_SIGCTL_SCM);
  3024. /* Set phase track alpha and beta */
  3025. b43_phy_write(dev, B43_NPHY_PHASETR_A0, 0x125);
  3026. b43_phy_write(dev, B43_NPHY_PHASETR_A1, 0x1B3);
  3027. b43_phy_write(dev, B43_NPHY_PHASETR_A2, 0x105);
  3028. b43_phy_write(dev, B43_NPHY_PHASETR_B0, 0x16E);
  3029. b43_phy_write(dev, B43_NPHY_PHASETR_B1, 0xCD);
  3030. b43_phy_write(dev, B43_NPHY_PHASETR_B2, 0x20);
  3031. if (dev->phy.rev < 3) {
  3032. b43_phy_mask(dev, B43_NPHY_PIL_DW1,
  3033. ~B43_NPHY_PIL_DW_64QAM & 0xFFFF);
  3034. b43_phy_write(dev, B43_NPHY_TXF_20CO_S2B1, 0xB5);
  3035. b43_phy_write(dev, B43_NPHY_TXF_20CO_S2B2, 0xA4);
  3036. b43_phy_write(dev, B43_NPHY_TXF_20CO_S2B3, 0x00);
  3037. }
  3038. if (dev->phy.rev == 2)
  3039. b43_phy_set(dev, B43_NPHY_FINERX2_CGC,
  3040. B43_NPHY_FINERX2_CGC_DECGC);
  3041. }
  3042. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/Workarounds */
  3043. static void b43_nphy_workarounds(struct b43_wldev *dev)
  3044. {
  3045. struct b43_phy *phy = &dev->phy;
  3046. struct b43_phy_n *nphy = phy->n;
  3047. if (b43_current_band(dev->wl) == NL80211_BAND_5GHZ)
  3048. b43_nphy_classifier(dev, 1, 0);
  3049. else
  3050. b43_nphy_classifier(dev, 1, 1);
  3051. if (nphy->hang_avoid)
  3052. b43_nphy_stay_in_carrier_search(dev, 1);
  3053. b43_phy_set(dev, B43_NPHY_IQFLIP,
  3054. B43_NPHY_IQFLIP_ADC1 | B43_NPHY_IQFLIP_ADC2);
  3055. /* TODO: rev19+ */
  3056. if (dev->phy.rev >= 7)
  3057. b43_nphy_workarounds_rev7plus(dev);
  3058. else if (dev->phy.rev >= 3)
  3059. b43_nphy_workarounds_rev3plus(dev);
  3060. else
  3061. b43_nphy_workarounds_rev1_2(dev);
  3062. if (nphy->hang_avoid)
  3063. b43_nphy_stay_in_carrier_search(dev, 0);
  3064. }
  3065. /**************************************************
  3066. * Tx/Rx common
  3067. **************************************************/
  3068. /*
  3069. * Transmits a known value for LO calibration
  3070. * https://bcm-v4.sipsolutions.net/802.11/PHY/N/TXTone
  3071. */
  3072. static int b43_nphy_tx_tone(struct b43_wldev *dev, u32 freq, u16 max_val,
  3073. bool iqmode, bool dac_test, bool modify_bbmult)
  3074. {
  3075. u16 samp = b43_nphy_gen_load_samples(dev, freq, max_val, dac_test);
  3076. if (samp == 0)
  3077. return -1;
  3078. b43_nphy_run_samples(dev, samp, 0xFFFF, 0, iqmode, dac_test,
  3079. modify_bbmult);
  3080. return 0;
  3081. }
  3082. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/Chains */
  3083. static void b43_nphy_update_txrx_chain(struct b43_wldev *dev)
  3084. {
  3085. struct b43_phy_n *nphy = dev->phy.n;
  3086. bool override = false;
  3087. u16 chain = 0x33;
  3088. if (nphy->txrx_chain == 0) {
  3089. chain = 0x11;
  3090. override = true;
  3091. } else if (nphy->txrx_chain == 1) {
  3092. chain = 0x22;
  3093. override = true;
  3094. }
  3095. b43_phy_maskset(dev, B43_NPHY_RFSEQCA,
  3096. ~(B43_NPHY_RFSEQCA_TXEN | B43_NPHY_RFSEQCA_RXEN),
  3097. chain);
  3098. if (override)
  3099. b43_phy_set(dev, B43_NPHY_RFSEQMODE,
  3100. B43_NPHY_RFSEQMODE_CAOVER);
  3101. else
  3102. b43_phy_mask(dev, B43_NPHY_RFSEQMODE,
  3103. ~B43_NPHY_RFSEQMODE_CAOVER);
  3104. }
  3105. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/stop-playback */
  3106. static void b43_nphy_stop_playback(struct b43_wldev *dev)
  3107. {
  3108. struct b43_phy *phy = &dev->phy;
  3109. struct b43_phy_n *nphy = dev->phy.n;
  3110. u16 tmp;
  3111. if (nphy->hang_avoid)
  3112. b43_nphy_stay_in_carrier_search(dev, 1);
  3113. tmp = b43_phy_read(dev, B43_NPHY_SAMP_STAT);
  3114. if (tmp & 0x1)
  3115. b43_phy_set(dev, B43_NPHY_SAMP_CMD, B43_NPHY_SAMP_CMD_STOP);
  3116. else if (tmp & 0x2)
  3117. b43_phy_mask(dev, B43_NPHY_IQLOCAL_CMDGCTL, 0x7FFF);
  3118. b43_phy_mask(dev, B43_NPHY_SAMP_CMD, ~0x0004);
  3119. if (nphy->bb_mult_save & 0x80000000) {
  3120. tmp = nphy->bb_mult_save & 0xFFFF;
  3121. b43_ntab_write(dev, B43_NTAB16(15, 87), tmp);
  3122. nphy->bb_mult_save = 0;
  3123. }
  3124. if (phy->rev >= 7 && nphy->lpf_bw_overrode_for_sample_play) {
  3125. if (phy->rev >= 19)
  3126. b43_nphy_rf_ctl_override_rev19(dev, 0x80, 0, 0, true,
  3127. 1);
  3128. else
  3129. b43_nphy_rf_ctl_override_rev7(dev, 0x80, 0, 0, true, 1);
  3130. nphy->lpf_bw_overrode_for_sample_play = false;
  3131. }
  3132. if (nphy->hang_avoid)
  3133. b43_nphy_stay_in_carrier_search(dev, 0);
  3134. }
  3135. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/IqCalGainParams */
  3136. static void b43_nphy_iq_cal_gain_params(struct b43_wldev *dev, u16 core,
  3137. struct nphy_txgains target,
  3138. struct nphy_iqcal_params *params)
  3139. {
  3140. struct b43_phy *phy = &dev->phy;
  3141. int i, j, indx;
  3142. u16 gain;
  3143. if (dev->phy.rev >= 3) {
  3144. params->tx_lpf = target.tx_lpf[core]; /* Rev 7+ */
  3145. params->txgm = target.txgm[core];
  3146. params->pga = target.pga[core];
  3147. params->pad = target.pad[core];
  3148. params->ipa = target.ipa[core];
  3149. if (phy->rev >= 19) {
  3150. /* TODO */
  3151. } else if (phy->rev >= 7) {
  3152. params->cal_gain = (params->txgm << 12) | (params->pga << 8) | (params->pad << 3) | (params->ipa) | (params->tx_lpf << 15);
  3153. } else {
  3154. params->cal_gain = (params->txgm << 12) | (params->pga << 8) | (params->pad << 4) | (params->ipa);
  3155. }
  3156. for (j = 0; j < 5; j++)
  3157. params->ncorr[j] = 0x79;
  3158. } else {
  3159. gain = (target.pad[core]) | (target.pga[core] << 4) |
  3160. (target.txgm[core] << 8);
  3161. indx = (b43_current_band(dev->wl) == NL80211_BAND_5GHZ) ?
  3162. 1 : 0;
  3163. for (i = 0; i < 9; i++)
  3164. if (tbl_iqcal_gainparams[indx][i][0] == gain)
  3165. break;
  3166. i = min(i, 8);
  3167. params->txgm = tbl_iqcal_gainparams[indx][i][1];
  3168. params->pga = tbl_iqcal_gainparams[indx][i][2];
  3169. params->pad = tbl_iqcal_gainparams[indx][i][3];
  3170. params->cal_gain = (params->txgm << 7) | (params->pga << 4) |
  3171. (params->pad << 2);
  3172. for (j = 0; j < 4; j++)
  3173. params->ncorr[j] = tbl_iqcal_gainparams[indx][i][4 + j];
  3174. }
  3175. }
  3176. /**************************************************
  3177. * Tx and Rx
  3178. **************************************************/
  3179. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/TxPwrCtrlEnable */
  3180. static void b43_nphy_tx_power_ctrl(struct b43_wldev *dev, bool enable)
  3181. {
  3182. struct b43_phy *phy = &dev->phy;
  3183. struct b43_phy_n *nphy = dev->phy.n;
  3184. u8 i;
  3185. u16 bmask, val, tmp;
  3186. enum nl80211_band band = b43_current_band(dev->wl);
  3187. if (nphy->hang_avoid)
  3188. b43_nphy_stay_in_carrier_search(dev, 1);
  3189. nphy->txpwrctrl = enable;
  3190. if (!enable) {
  3191. if (dev->phy.rev >= 3 &&
  3192. (b43_phy_read(dev, B43_NPHY_TXPCTL_CMD) &
  3193. (B43_NPHY_TXPCTL_CMD_COEFF |
  3194. B43_NPHY_TXPCTL_CMD_HWPCTLEN |
  3195. B43_NPHY_TXPCTL_CMD_PCTLEN))) {
  3196. /* We disable enabled TX pwr ctl, save it's state */
  3197. nphy->tx_pwr_idx[0] = b43_phy_read(dev,
  3198. B43_NPHY_C1_TXPCTL_STAT) & 0x7f;
  3199. nphy->tx_pwr_idx[1] = b43_phy_read(dev,
  3200. B43_NPHY_C2_TXPCTL_STAT) & 0x7f;
  3201. }
  3202. b43_phy_write(dev, B43_NPHY_TABLE_ADDR, 0x6840);
  3203. for (i = 0; i < 84; i++)
  3204. b43_phy_write(dev, B43_NPHY_TABLE_DATALO, 0);
  3205. b43_phy_write(dev, B43_NPHY_TABLE_ADDR, 0x6C40);
  3206. for (i = 0; i < 84; i++)
  3207. b43_phy_write(dev, B43_NPHY_TABLE_DATALO, 0);
  3208. tmp = B43_NPHY_TXPCTL_CMD_COEFF | B43_NPHY_TXPCTL_CMD_HWPCTLEN;
  3209. if (dev->phy.rev >= 3)
  3210. tmp |= B43_NPHY_TXPCTL_CMD_PCTLEN;
  3211. b43_phy_mask(dev, B43_NPHY_TXPCTL_CMD, ~tmp);
  3212. if (dev->phy.rev >= 3) {
  3213. b43_phy_set(dev, B43_NPHY_AFECTL_OVER1, 0x0100);
  3214. b43_phy_set(dev, B43_NPHY_AFECTL_OVER, 0x0100);
  3215. } else {
  3216. b43_phy_set(dev, B43_NPHY_AFECTL_OVER, 0x4000);
  3217. }
  3218. if (dev->phy.rev == 2)
  3219. b43_phy_maskset(dev, B43_NPHY_BPHY_CTL3,
  3220. ~B43_NPHY_BPHY_CTL3_SCALE, 0x53);
  3221. else if (dev->phy.rev < 2)
  3222. b43_phy_maskset(dev, B43_NPHY_BPHY_CTL3,
  3223. ~B43_NPHY_BPHY_CTL3_SCALE, 0x5A);
  3224. if (dev->phy.rev < 2 && b43_is_40mhz(dev))
  3225. b43_hf_write(dev, b43_hf_read(dev) | B43_HF_TSSIRPSMW);
  3226. } else {
  3227. b43_ntab_write_bulk(dev, B43_NTAB16(26, 64), 84,
  3228. nphy->adj_pwr_tbl);
  3229. b43_ntab_write_bulk(dev, B43_NTAB16(27, 64), 84,
  3230. nphy->adj_pwr_tbl);
  3231. bmask = B43_NPHY_TXPCTL_CMD_COEFF |
  3232. B43_NPHY_TXPCTL_CMD_HWPCTLEN;
  3233. /* wl does useless check for "enable" param here */
  3234. val = B43_NPHY_TXPCTL_CMD_COEFF | B43_NPHY_TXPCTL_CMD_HWPCTLEN;
  3235. if (dev->phy.rev >= 3) {
  3236. bmask |= B43_NPHY_TXPCTL_CMD_PCTLEN;
  3237. if (val)
  3238. val |= B43_NPHY_TXPCTL_CMD_PCTLEN;
  3239. }
  3240. b43_phy_maskset(dev, B43_NPHY_TXPCTL_CMD, ~(bmask), val);
  3241. if (band == NL80211_BAND_5GHZ) {
  3242. if (phy->rev >= 19) {
  3243. /* TODO */
  3244. } else if (phy->rev >= 7) {
  3245. b43_phy_maskset(dev, B43_NPHY_TXPCTL_CMD,
  3246. ~B43_NPHY_TXPCTL_CMD_INIT,
  3247. 0x32);
  3248. b43_phy_maskset(dev, B43_NPHY_TXPCTL_INIT,
  3249. ~B43_NPHY_TXPCTL_INIT_PIDXI1,
  3250. 0x32);
  3251. } else {
  3252. b43_phy_maskset(dev, B43_NPHY_TXPCTL_CMD,
  3253. ~B43_NPHY_TXPCTL_CMD_INIT,
  3254. 0x64);
  3255. if (phy->rev > 1)
  3256. b43_phy_maskset(dev,
  3257. B43_NPHY_TXPCTL_INIT,
  3258. ~B43_NPHY_TXPCTL_INIT_PIDXI1,
  3259. 0x64);
  3260. }
  3261. }
  3262. if (dev->phy.rev >= 3) {
  3263. if (nphy->tx_pwr_idx[0] != 128 &&
  3264. nphy->tx_pwr_idx[1] != 128) {
  3265. /* Recover TX pwr ctl state */
  3266. b43_phy_maskset(dev, B43_NPHY_TXPCTL_CMD,
  3267. ~B43_NPHY_TXPCTL_CMD_INIT,
  3268. nphy->tx_pwr_idx[0]);
  3269. if (dev->phy.rev > 1)
  3270. b43_phy_maskset(dev,
  3271. B43_NPHY_TXPCTL_INIT,
  3272. ~0xff, nphy->tx_pwr_idx[1]);
  3273. }
  3274. }
  3275. if (phy->rev >= 7) {
  3276. /* TODO */
  3277. }
  3278. if (dev->phy.rev >= 3) {
  3279. b43_phy_mask(dev, B43_NPHY_AFECTL_OVER1, ~0x100);
  3280. b43_phy_mask(dev, B43_NPHY_AFECTL_OVER, ~0x100);
  3281. } else {
  3282. b43_phy_mask(dev, B43_NPHY_AFECTL_OVER, ~0x4000);
  3283. }
  3284. if (dev->phy.rev == 2)
  3285. b43_phy_maskset(dev, B43_NPHY_BPHY_CTL3, ~0xFF, 0x3b);
  3286. else if (dev->phy.rev < 2)
  3287. b43_phy_maskset(dev, B43_NPHY_BPHY_CTL3, ~0xFF, 0x40);
  3288. if (dev->phy.rev < 2 && b43_is_40mhz(dev))
  3289. b43_hf_write(dev, b43_hf_read(dev) & ~B43_HF_TSSIRPSMW);
  3290. if (b43_nphy_ipa(dev)) {
  3291. b43_phy_mask(dev, B43_NPHY_PAPD_EN0, ~0x4);
  3292. b43_phy_mask(dev, B43_NPHY_PAPD_EN1, ~0x4);
  3293. }
  3294. }
  3295. if (nphy->hang_avoid)
  3296. b43_nphy_stay_in_carrier_search(dev, 0);
  3297. }
  3298. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/TxPwrFix */
  3299. static void b43_nphy_tx_power_fix(struct b43_wldev *dev)
  3300. {
  3301. struct b43_phy *phy = &dev->phy;
  3302. struct b43_phy_n *nphy = dev->phy.n;
  3303. struct ssb_sprom *sprom = dev->dev->bus_sprom;
  3304. u8 txpi[2], bbmult, i;
  3305. u16 tmp, radio_gain, dac_gain;
  3306. u16 freq = phy->chandef->chan->center_freq;
  3307. u32 txgain;
  3308. /* u32 gaintbl; rev3+ */
  3309. if (nphy->hang_avoid)
  3310. b43_nphy_stay_in_carrier_search(dev, 1);
  3311. /* TODO: rev19+ */
  3312. if (dev->phy.rev >= 7) {
  3313. txpi[0] = txpi[1] = 30;
  3314. } else if (dev->phy.rev >= 3) {
  3315. txpi[0] = 40;
  3316. txpi[1] = 40;
  3317. } else if (sprom->revision < 4) {
  3318. txpi[0] = 72;
  3319. txpi[1] = 72;
  3320. } else {
  3321. if (b43_current_band(dev->wl) == NL80211_BAND_2GHZ) {
  3322. txpi[0] = sprom->txpid2g[0];
  3323. txpi[1] = sprom->txpid2g[1];
  3324. } else if (freq >= 4900 && freq < 5100) {
  3325. txpi[0] = sprom->txpid5gl[0];
  3326. txpi[1] = sprom->txpid5gl[1];
  3327. } else if (freq >= 5100 && freq < 5500) {
  3328. txpi[0] = sprom->txpid5g[0];
  3329. txpi[1] = sprom->txpid5g[1];
  3330. } else if (freq >= 5500) {
  3331. txpi[0] = sprom->txpid5gh[0];
  3332. txpi[1] = sprom->txpid5gh[1];
  3333. } else {
  3334. txpi[0] = 91;
  3335. txpi[1] = 91;
  3336. }
  3337. }
  3338. if (dev->phy.rev < 7 &&
  3339. (txpi[0] < 40 || txpi[0] > 100 || txpi[1] < 40 || txpi[1] > 100))
  3340. txpi[0] = txpi[1] = 91;
  3341. /*
  3342. for (i = 0; i < 2; i++) {
  3343. nphy->txpwrindex[i].index_internal = txpi[i];
  3344. nphy->txpwrindex[i].index_internal_save = txpi[i];
  3345. }
  3346. */
  3347. for (i = 0; i < 2; i++) {
  3348. const u32 *table = b43_nphy_get_tx_gain_table(dev);
  3349. if (!table)
  3350. break;
  3351. txgain = *(table + txpi[i]);
  3352. if (dev->phy.rev >= 3)
  3353. radio_gain = (txgain >> 16) & 0x1FFFF;
  3354. else
  3355. radio_gain = (txgain >> 16) & 0x1FFF;
  3356. if (dev->phy.rev >= 7)
  3357. dac_gain = (txgain >> 8) & 0x7;
  3358. else
  3359. dac_gain = (txgain >> 8) & 0x3F;
  3360. bbmult = txgain & 0xFF;
  3361. if (dev->phy.rev >= 3) {
  3362. if (i == 0)
  3363. b43_phy_set(dev, B43_NPHY_AFECTL_OVER1, 0x0100);
  3364. else
  3365. b43_phy_set(dev, B43_NPHY_AFECTL_OVER, 0x0100);
  3366. } else {
  3367. b43_phy_set(dev, B43_NPHY_AFECTL_OVER, 0x4000);
  3368. }
  3369. if (i == 0)
  3370. b43_phy_write(dev, B43_NPHY_AFECTL_DACGAIN1, dac_gain);
  3371. else
  3372. b43_phy_write(dev, B43_NPHY_AFECTL_DACGAIN2, dac_gain);
  3373. b43_ntab_write(dev, B43_NTAB16(0x7, 0x110 + i), radio_gain);
  3374. tmp = b43_ntab_read(dev, B43_NTAB16(0xF, 0x57));
  3375. if (i == 0)
  3376. tmp = (tmp & 0x00FF) | (bbmult << 8);
  3377. else
  3378. tmp = (tmp & 0xFF00) | bbmult;
  3379. b43_ntab_write(dev, B43_NTAB16(0xF, 0x57), tmp);
  3380. if (b43_nphy_ipa(dev)) {
  3381. u32 tmp32;
  3382. u16 reg = (i == 0) ?
  3383. B43_NPHY_PAPD_EN0 : B43_NPHY_PAPD_EN1;
  3384. tmp32 = b43_ntab_read(dev, B43_NTAB32(26 + i,
  3385. 576 + txpi[i]));
  3386. b43_phy_maskset(dev, reg, 0xE00F, (u32) tmp32 << 4);
  3387. b43_phy_set(dev, reg, 0x4);
  3388. }
  3389. }
  3390. b43_phy_mask(dev, B43_NPHY_BPHY_CTL2, ~B43_NPHY_BPHY_CTL2_LUT);
  3391. if (nphy->hang_avoid)
  3392. b43_nphy_stay_in_carrier_search(dev, 0);
  3393. }
  3394. static void b43_nphy_ipa_internal_tssi_setup(struct b43_wldev *dev)
  3395. {
  3396. struct b43_phy *phy = &dev->phy;
  3397. u8 core;
  3398. u16 r; /* routing */
  3399. if (phy->rev >= 19) {
  3400. /* TODO */
  3401. } else if (phy->rev >= 7) {
  3402. for (core = 0; core < 2; core++) {
  3403. r = core ? 0x190 : 0x170;
  3404. if (b43_current_band(dev->wl) == NL80211_BAND_2GHZ) {
  3405. b43_radio_write(dev, r + 0x5, 0x5);
  3406. b43_radio_write(dev, r + 0x9, 0xE);
  3407. if (phy->rev != 5)
  3408. b43_radio_write(dev, r + 0xA, 0);
  3409. if (phy->rev != 7)
  3410. b43_radio_write(dev, r + 0xB, 1);
  3411. else
  3412. b43_radio_write(dev, r + 0xB, 0x31);
  3413. } else {
  3414. b43_radio_write(dev, r + 0x5, 0x9);
  3415. b43_radio_write(dev, r + 0x9, 0xC);
  3416. b43_radio_write(dev, r + 0xB, 0x0);
  3417. if (phy->rev != 5)
  3418. b43_radio_write(dev, r + 0xA, 1);
  3419. else
  3420. b43_radio_write(dev, r + 0xA, 0x31);
  3421. }
  3422. b43_radio_write(dev, r + 0x6, 0);
  3423. b43_radio_write(dev, r + 0x7, 0);
  3424. b43_radio_write(dev, r + 0x8, 3);
  3425. b43_radio_write(dev, r + 0xC, 0);
  3426. }
  3427. } else {
  3428. if (b43_current_band(dev->wl) == NL80211_BAND_2GHZ)
  3429. b43_radio_write(dev, B2056_SYN_RESERVED_ADDR31, 0x128);
  3430. else
  3431. b43_radio_write(dev, B2056_SYN_RESERVED_ADDR31, 0x80);
  3432. b43_radio_write(dev, B2056_SYN_RESERVED_ADDR30, 0);
  3433. b43_radio_write(dev, B2056_SYN_GPIO_MASTER1, 0x29);
  3434. for (core = 0; core < 2; core++) {
  3435. r = core ? B2056_TX1 : B2056_TX0;
  3436. b43_radio_write(dev, r | B2056_TX_IQCAL_VCM_HG, 0);
  3437. b43_radio_write(dev, r | B2056_TX_IQCAL_IDAC, 0);
  3438. b43_radio_write(dev, r | B2056_TX_TSSI_VCM, 3);
  3439. b43_radio_write(dev, r | B2056_TX_TX_AMP_DET, 0);
  3440. b43_radio_write(dev, r | B2056_TX_TSSI_MISC1, 8);
  3441. b43_radio_write(dev, r | B2056_TX_TSSI_MISC2, 0);
  3442. b43_radio_write(dev, r | B2056_TX_TSSI_MISC3, 0);
  3443. if (b43_current_band(dev->wl) == NL80211_BAND_2GHZ) {
  3444. b43_radio_write(dev, r | B2056_TX_TX_SSI_MASTER,
  3445. 0x5);
  3446. if (phy->rev != 5)
  3447. b43_radio_write(dev, r | B2056_TX_TSSIA,
  3448. 0x00);
  3449. if (phy->rev >= 5)
  3450. b43_radio_write(dev, r | B2056_TX_TSSIG,
  3451. 0x31);
  3452. else
  3453. b43_radio_write(dev, r | B2056_TX_TSSIG,
  3454. 0x11);
  3455. b43_radio_write(dev, r | B2056_TX_TX_SSI_MUX,
  3456. 0xE);
  3457. } else {
  3458. b43_radio_write(dev, r | B2056_TX_TX_SSI_MASTER,
  3459. 0x9);
  3460. b43_radio_write(dev, r | B2056_TX_TSSIA, 0x31);
  3461. b43_radio_write(dev, r | B2056_TX_TSSIG, 0x0);
  3462. b43_radio_write(dev, r | B2056_TX_TX_SSI_MUX,
  3463. 0xC);
  3464. }
  3465. }
  3466. }
  3467. }
  3468. /*
  3469. * Stop radio and transmit known signal. Then check received signal strength to
  3470. * get TSSI (Transmit Signal Strength Indicator).
  3471. * https://bcm-v4.sipsolutions.net/802.11/PHY/N/TxPwrCtrlIdleTssi
  3472. */
  3473. static void b43_nphy_tx_power_ctl_idle_tssi(struct b43_wldev *dev)
  3474. {
  3475. struct b43_phy *phy = &dev->phy;
  3476. struct b43_phy_n *nphy = dev->phy.n;
  3477. u32 tmp;
  3478. s32 rssi[4] = { };
  3479. if (phy->chandef->chan->flags & IEEE80211_CHAN_NO_IR)
  3480. return;
  3481. if (b43_nphy_ipa(dev))
  3482. b43_nphy_ipa_internal_tssi_setup(dev);
  3483. if (phy->rev >= 19)
  3484. b43_nphy_rf_ctl_override_rev19(dev, 0x1000, 0, 3, false, 0);
  3485. else if (phy->rev >= 7)
  3486. b43_nphy_rf_ctl_override_rev7(dev, 0x1000, 0, 3, false, 0);
  3487. else if (phy->rev >= 3)
  3488. b43_nphy_rf_ctl_override(dev, 0x2000, 0, 3, false);
  3489. b43_nphy_stop_playback(dev);
  3490. b43_nphy_tx_tone(dev, 4000, 0, false, false, false);
  3491. udelay(20);
  3492. tmp = b43_nphy_poll_rssi(dev, N_RSSI_TSSI_2G, rssi, 1);
  3493. b43_nphy_stop_playback(dev);
  3494. b43_nphy_rssi_select(dev, 0, N_RSSI_W1);
  3495. if (phy->rev >= 19)
  3496. b43_nphy_rf_ctl_override_rev19(dev, 0x1000, 0, 3, true, 0);
  3497. else if (phy->rev >= 7)
  3498. b43_nphy_rf_ctl_override_rev7(dev, 0x1000, 0, 3, true, 0);
  3499. else if (phy->rev >= 3)
  3500. b43_nphy_rf_ctl_override(dev, 0x2000, 0, 3, true);
  3501. if (phy->rev >= 19) {
  3502. /* TODO */
  3503. return;
  3504. } else if (phy->rev >= 3) {
  3505. nphy->pwr_ctl_info[0].idle_tssi_5g = (tmp >> 24) & 0xFF;
  3506. nphy->pwr_ctl_info[1].idle_tssi_5g = (tmp >> 8) & 0xFF;
  3507. } else {
  3508. nphy->pwr_ctl_info[0].idle_tssi_5g = (tmp >> 16) & 0xFF;
  3509. nphy->pwr_ctl_info[1].idle_tssi_5g = tmp & 0xFF;
  3510. }
  3511. nphy->pwr_ctl_info[0].idle_tssi_2g = (tmp >> 24) & 0xFF;
  3512. nphy->pwr_ctl_info[1].idle_tssi_2g = (tmp >> 8) & 0xFF;
  3513. }
  3514. /* https://bcm-v4.sipsolutions.net/PHY/N/TxPwrLimitToTbl */
  3515. static void b43_nphy_tx_prepare_adjusted_power_table(struct b43_wldev *dev)
  3516. {
  3517. struct b43_phy_n *nphy = dev->phy.n;
  3518. u8 idx, delta;
  3519. u8 i, stf_mode;
  3520. /* Array adj_pwr_tbl corresponds to the hardware table. It consists of
  3521. * 21 groups, each containing 4 entries.
  3522. *
  3523. * First group has entries for CCK modulation.
  3524. * The rest of groups has 1 entry per modulation (SISO, CDD, STBC, SDM).
  3525. *
  3526. * Group 0 is for CCK
  3527. * Groups 1..4 use BPSK (group per coding rate)
  3528. * Groups 5..8 use QPSK (group per coding rate)
  3529. * Groups 9..12 use 16-QAM (group per coding rate)
  3530. * Groups 13..16 use 64-QAM (group per coding rate)
  3531. * Groups 17..20 are unknown
  3532. */
  3533. for (i = 0; i < 4; i++)
  3534. nphy->adj_pwr_tbl[i] = nphy->tx_power_offset[i];
  3535. for (stf_mode = 0; stf_mode < 4; stf_mode++) {
  3536. delta = 0;
  3537. switch (stf_mode) {
  3538. case 0:
  3539. if (b43_is_40mhz(dev) && dev->phy.rev >= 5) {
  3540. idx = 68;
  3541. } else {
  3542. delta = 1;
  3543. idx = b43_is_40mhz(dev) ? 52 : 4;
  3544. }
  3545. break;
  3546. case 1:
  3547. idx = b43_is_40mhz(dev) ? 76 : 28;
  3548. break;
  3549. case 2:
  3550. idx = b43_is_40mhz(dev) ? 84 : 36;
  3551. break;
  3552. case 3:
  3553. idx = b43_is_40mhz(dev) ? 92 : 44;
  3554. break;
  3555. }
  3556. for (i = 0; i < 20; i++) {
  3557. nphy->adj_pwr_tbl[4 + 4 * i + stf_mode] =
  3558. nphy->tx_power_offset[idx];
  3559. if (i == 0)
  3560. idx += delta;
  3561. if (i == 14)
  3562. idx += 1 - delta;
  3563. if (i == 3 || i == 4 || i == 7 || i == 8 || i == 11 ||
  3564. i == 13)
  3565. idx += 1;
  3566. }
  3567. }
  3568. }
  3569. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/TxPwrCtrlSetup */
  3570. static void b43_nphy_tx_power_ctl_setup(struct b43_wldev *dev)
  3571. {
  3572. struct b43_phy *phy = &dev->phy;
  3573. struct b43_phy_n *nphy = dev->phy.n;
  3574. struct ssb_sprom *sprom = dev->dev->bus_sprom;
  3575. s16 a1[2], b0[2], b1[2];
  3576. u8 idle[2];
  3577. u8 ppr_max;
  3578. s8 target[2];
  3579. s32 num, den, pwr;
  3580. u32 regval[64];
  3581. u16 freq = phy->chandef->chan->center_freq;
  3582. u16 tmp;
  3583. u16 r; /* routing */
  3584. u8 i, c;
  3585. if (dev->dev->core_rev == 11 || dev->dev->core_rev == 12) {
  3586. b43_maskset32(dev, B43_MMIO_MACCTL, ~0, 0x200000);
  3587. b43_read32(dev, B43_MMIO_MACCTL);
  3588. udelay(1);
  3589. }
  3590. if (nphy->hang_avoid)
  3591. b43_nphy_stay_in_carrier_search(dev, true);
  3592. b43_phy_set(dev, B43_NPHY_TSSIMODE, B43_NPHY_TSSIMODE_EN);
  3593. if (dev->phy.rev >= 3)
  3594. b43_phy_mask(dev, B43_NPHY_TXPCTL_CMD,
  3595. ~B43_NPHY_TXPCTL_CMD_PCTLEN & 0xFFFF);
  3596. else
  3597. b43_phy_set(dev, B43_NPHY_TXPCTL_CMD,
  3598. B43_NPHY_TXPCTL_CMD_PCTLEN);
  3599. if (dev->dev->core_rev == 11 || dev->dev->core_rev == 12)
  3600. b43_maskset32(dev, B43_MMIO_MACCTL, ~0x200000, 0);
  3601. if (sprom->revision < 4) {
  3602. idle[0] = nphy->pwr_ctl_info[0].idle_tssi_2g;
  3603. idle[1] = nphy->pwr_ctl_info[1].idle_tssi_2g;
  3604. target[0] = target[1] = 52;
  3605. a1[0] = a1[1] = -424;
  3606. b0[0] = b0[1] = 5612;
  3607. b1[0] = b1[1] = -1393;
  3608. } else {
  3609. if (b43_current_band(dev->wl) == NL80211_BAND_2GHZ) {
  3610. for (c = 0; c < 2; c++) {
  3611. idle[c] = nphy->pwr_ctl_info[c].idle_tssi_2g;
  3612. target[c] = sprom->core_pwr_info[c].maxpwr_2g;
  3613. a1[c] = sprom->core_pwr_info[c].pa_2g[0];
  3614. b0[c] = sprom->core_pwr_info[c].pa_2g[1];
  3615. b1[c] = sprom->core_pwr_info[c].pa_2g[2];
  3616. }
  3617. } else if (freq >= 4900 && freq < 5100) {
  3618. for (c = 0; c < 2; c++) {
  3619. idle[c] = nphy->pwr_ctl_info[c].idle_tssi_5g;
  3620. target[c] = sprom->core_pwr_info[c].maxpwr_5gl;
  3621. a1[c] = sprom->core_pwr_info[c].pa_5gl[0];
  3622. b0[c] = sprom->core_pwr_info[c].pa_5gl[1];
  3623. b1[c] = sprom->core_pwr_info[c].pa_5gl[2];
  3624. }
  3625. } else if (freq >= 5100 && freq < 5500) {
  3626. for (c = 0; c < 2; c++) {
  3627. idle[c] = nphy->pwr_ctl_info[c].idle_tssi_5g;
  3628. target[c] = sprom->core_pwr_info[c].maxpwr_5g;
  3629. a1[c] = sprom->core_pwr_info[c].pa_5g[0];
  3630. b0[c] = sprom->core_pwr_info[c].pa_5g[1];
  3631. b1[c] = sprom->core_pwr_info[c].pa_5g[2];
  3632. }
  3633. } else if (freq >= 5500) {
  3634. for (c = 0; c < 2; c++) {
  3635. idle[c] = nphy->pwr_ctl_info[c].idle_tssi_5g;
  3636. target[c] = sprom->core_pwr_info[c].maxpwr_5gh;
  3637. a1[c] = sprom->core_pwr_info[c].pa_5gh[0];
  3638. b0[c] = sprom->core_pwr_info[c].pa_5gh[1];
  3639. b1[c] = sprom->core_pwr_info[c].pa_5gh[2];
  3640. }
  3641. } else {
  3642. idle[0] = nphy->pwr_ctl_info[0].idle_tssi_5g;
  3643. idle[1] = nphy->pwr_ctl_info[1].idle_tssi_5g;
  3644. target[0] = target[1] = 52;
  3645. a1[0] = a1[1] = -424;
  3646. b0[0] = b0[1] = 5612;
  3647. b1[0] = b1[1] = -1393;
  3648. }
  3649. }
  3650. ppr_max = b43_ppr_get_max(dev, &nphy->tx_pwr_max_ppr);
  3651. if (ppr_max) {
  3652. target[0] = ppr_max;
  3653. target[1] = ppr_max;
  3654. }
  3655. if (dev->phy.rev >= 3) {
  3656. if (sprom->fem.ghz2.tssipos)
  3657. b43_phy_set(dev, B43_NPHY_TXPCTL_ITSSI, 0x4000);
  3658. if (dev->phy.rev >= 7) {
  3659. for (c = 0; c < 2; c++) {
  3660. r = c ? 0x190 : 0x170;
  3661. if (b43_nphy_ipa(dev))
  3662. b43_radio_write(dev, r + 0x9, (b43_current_band(dev->wl) == NL80211_BAND_2GHZ) ? 0xE : 0xC);
  3663. }
  3664. } else {
  3665. if (b43_nphy_ipa(dev)) {
  3666. tmp = (b43_current_band(dev->wl) == NL80211_BAND_5GHZ) ? 0xC : 0xE;
  3667. b43_radio_write(dev,
  3668. B2056_TX0 | B2056_TX_TX_SSI_MUX, tmp);
  3669. b43_radio_write(dev,
  3670. B2056_TX1 | B2056_TX_TX_SSI_MUX, tmp);
  3671. } else {
  3672. b43_radio_write(dev,
  3673. B2056_TX0 | B2056_TX_TX_SSI_MUX, 0x11);
  3674. b43_radio_write(dev,
  3675. B2056_TX1 | B2056_TX_TX_SSI_MUX, 0x11);
  3676. }
  3677. }
  3678. }
  3679. if (dev->dev->core_rev == 11 || dev->dev->core_rev == 12) {
  3680. b43_maskset32(dev, B43_MMIO_MACCTL, ~0, 0x200000);
  3681. b43_read32(dev, B43_MMIO_MACCTL);
  3682. udelay(1);
  3683. }
  3684. if (phy->rev >= 19) {
  3685. /* TODO */
  3686. } else if (phy->rev >= 7) {
  3687. b43_phy_maskset(dev, B43_NPHY_TXPCTL_CMD,
  3688. ~B43_NPHY_TXPCTL_CMD_INIT, 0x19);
  3689. b43_phy_maskset(dev, B43_NPHY_TXPCTL_INIT,
  3690. ~B43_NPHY_TXPCTL_INIT_PIDXI1, 0x19);
  3691. } else {
  3692. b43_phy_maskset(dev, B43_NPHY_TXPCTL_CMD,
  3693. ~B43_NPHY_TXPCTL_CMD_INIT, 0x40);
  3694. if (dev->phy.rev > 1)
  3695. b43_phy_maskset(dev, B43_NPHY_TXPCTL_INIT,
  3696. ~B43_NPHY_TXPCTL_INIT_PIDXI1, 0x40);
  3697. }
  3698. if (dev->dev->core_rev == 11 || dev->dev->core_rev == 12)
  3699. b43_maskset32(dev, B43_MMIO_MACCTL, ~0x200000, 0);
  3700. b43_phy_write(dev, B43_NPHY_TXPCTL_N,
  3701. 0xF0 << B43_NPHY_TXPCTL_N_TSSID_SHIFT |
  3702. 3 << B43_NPHY_TXPCTL_N_NPTIL2_SHIFT);
  3703. b43_phy_write(dev, B43_NPHY_TXPCTL_ITSSI,
  3704. idle[0] << B43_NPHY_TXPCTL_ITSSI_0_SHIFT |
  3705. idle[1] << B43_NPHY_TXPCTL_ITSSI_1_SHIFT |
  3706. B43_NPHY_TXPCTL_ITSSI_BINF);
  3707. b43_phy_write(dev, B43_NPHY_TXPCTL_TPWR,
  3708. target[0] << B43_NPHY_TXPCTL_TPWR_0_SHIFT |
  3709. target[1] << B43_NPHY_TXPCTL_TPWR_1_SHIFT);
  3710. for (c = 0; c < 2; c++) {
  3711. for (i = 0; i < 64; i++) {
  3712. num = 8 * (16 * b0[c] + b1[c] * i);
  3713. den = 32768 + a1[c] * i;
  3714. pwr = max((4 * num + den / 2) / den, -8);
  3715. if (dev->phy.rev < 3 && (i <= (31 - idle[c] + 1)))
  3716. pwr = max(pwr, target[c] + 1);
  3717. regval[i] = pwr;
  3718. }
  3719. b43_ntab_write_bulk(dev, B43_NTAB32(26 + c, 0), 64, regval);
  3720. }
  3721. b43_nphy_tx_prepare_adjusted_power_table(dev);
  3722. b43_ntab_write_bulk(dev, B43_NTAB16(26, 64), 84, nphy->adj_pwr_tbl);
  3723. b43_ntab_write_bulk(dev, B43_NTAB16(27, 64), 84, nphy->adj_pwr_tbl);
  3724. if (nphy->hang_avoid)
  3725. b43_nphy_stay_in_carrier_search(dev, false);
  3726. }
  3727. static void b43_nphy_tx_gain_table_upload(struct b43_wldev *dev)
  3728. {
  3729. struct b43_phy *phy = &dev->phy;
  3730. const u32 *table = NULL;
  3731. u32 rfpwr_offset;
  3732. u8 pga_gain, pad_gain;
  3733. int i;
  3734. const s16 *rf_pwr_offset_table = NULL;
  3735. table = b43_nphy_get_tx_gain_table(dev);
  3736. if (!table)
  3737. return;
  3738. b43_ntab_write_bulk(dev, B43_NTAB32(26, 192), 128, table);
  3739. b43_ntab_write_bulk(dev, B43_NTAB32(27, 192), 128, table);
  3740. if (phy->rev < 3)
  3741. return;
  3742. #if 0
  3743. nphy->gmval = (table[0] >> 16) & 0x7000;
  3744. #endif
  3745. if (phy->rev >= 19) {
  3746. return;
  3747. } else if (phy->rev >= 7) {
  3748. rf_pwr_offset_table = b43_ntab_get_rf_pwr_offset_table(dev);
  3749. if (!rf_pwr_offset_table)
  3750. return;
  3751. /* TODO: Enable this once we have gains configured */
  3752. return;
  3753. }
  3754. for (i = 0; i < 128; i++) {
  3755. if (phy->rev >= 19) {
  3756. /* TODO */
  3757. return;
  3758. } else if (phy->rev >= 7) {
  3759. pga_gain = (table[i] >> 24) & 0xf;
  3760. pad_gain = (table[i] >> 19) & 0x1f;
  3761. if (b43_current_band(dev->wl) == NL80211_BAND_2GHZ)
  3762. rfpwr_offset = rf_pwr_offset_table[pad_gain];
  3763. else
  3764. rfpwr_offset = rf_pwr_offset_table[pga_gain];
  3765. } else {
  3766. pga_gain = (table[i] >> 24) & 0xF;
  3767. if (b43_current_band(dev->wl) == NL80211_BAND_2GHZ)
  3768. rfpwr_offset = b43_ntab_papd_pga_gain_delta_ipa_2g[pga_gain];
  3769. else
  3770. rfpwr_offset = 0; /* FIXME */
  3771. }
  3772. b43_ntab_write(dev, B43_NTAB32(26, 576 + i), rfpwr_offset);
  3773. b43_ntab_write(dev, B43_NTAB32(27, 576 + i), rfpwr_offset);
  3774. }
  3775. }
  3776. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/PA%20override */
  3777. static void b43_nphy_pa_override(struct b43_wldev *dev, bool enable)
  3778. {
  3779. struct b43_phy_n *nphy = dev->phy.n;
  3780. enum nl80211_band band;
  3781. u16 tmp;
  3782. if (!enable) {
  3783. nphy->rfctrl_intc1_save = b43_phy_read(dev,
  3784. B43_NPHY_RFCTL_INTC1);
  3785. nphy->rfctrl_intc2_save = b43_phy_read(dev,
  3786. B43_NPHY_RFCTL_INTC2);
  3787. band = b43_current_band(dev->wl);
  3788. if (dev->phy.rev >= 7) {
  3789. tmp = 0x1480;
  3790. } else if (dev->phy.rev >= 3) {
  3791. if (band == NL80211_BAND_5GHZ)
  3792. tmp = 0x600;
  3793. else
  3794. tmp = 0x480;
  3795. } else {
  3796. if (band == NL80211_BAND_5GHZ)
  3797. tmp = 0x180;
  3798. else
  3799. tmp = 0x120;
  3800. }
  3801. b43_phy_write(dev, B43_NPHY_RFCTL_INTC1, tmp);
  3802. b43_phy_write(dev, B43_NPHY_RFCTL_INTC2, tmp);
  3803. } else {
  3804. b43_phy_write(dev, B43_NPHY_RFCTL_INTC1,
  3805. nphy->rfctrl_intc1_save);
  3806. b43_phy_write(dev, B43_NPHY_RFCTL_INTC2,
  3807. nphy->rfctrl_intc2_save);
  3808. }
  3809. }
  3810. /*
  3811. * TX low-pass filter bandwidth setup
  3812. * https://bcm-v4.sipsolutions.net/802.11/PHY/N/TxLpFbw
  3813. */
  3814. static void b43_nphy_tx_lpf_bw(struct b43_wldev *dev)
  3815. {
  3816. u16 tmp;
  3817. if (dev->phy.rev < 3 || dev->phy.rev >= 7)
  3818. return;
  3819. if (b43_nphy_ipa(dev))
  3820. tmp = b43_is_40mhz(dev) ? 5 : 4;
  3821. else
  3822. tmp = b43_is_40mhz(dev) ? 3 : 1;
  3823. b43_phy_write(dev, B43_NPHY_TXF_40CO_B32S2,
  3824. (tmp << 9) | (tmp << 6) | (tmp << 3) | tmp);
  3825. if (b43_nphy_ipa(dev)) {
  3826. tmp = b43_is_40mhz(dev) ? 4 : 1;
  3827. b43_phy_write(dev, B43_NPHY_TXF_40CO_B1S2,
  3828. (tmp << 9) | (tmp << 6) | (tmp << 3) | tmp);
  3829. }
  3830. }
  3831. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/RxIqEst */
  3832. static void b43_nphy_rx_iq_est(struct b43_wldev *dev, struct nphy_iq_est *est,
  3833. u16 samps, u8 time, bool wait)
  3834. {
  3835. int i;
  3836. u16 tmp;
  3837. b43_phy_write(dev, B43_NPHY_IQEST_SAMCNT, samps);
  3838. b43_phy_maskset(dev, B43_NPHY_IQEST_WT, ~B43_NPHY_IQEST_WT_VAL, time);
  3839. if (wait)
  3840. b43_phy_set(dev, B43_NPHY_IQEST_CMD, B43_NPHY_IQEST_CMD_MODE);
  3841. else
  3842. b43_phy_mask(dev, B43_NPHY_IQEST_CMD, ~B43_NPHY_IQEST_CMD_MODE);
  3843. b43_phy_set(dev, B43_NPHY_IQEST_CMD, B43_NPHY_IQEST_CMD_START);
  3844. for (i = 1000; i; i--) {
  3845. tmp = b43_phy_read(dev, B43_NPHY_IQEST_CMD);
  3846. if (!(tmp & B43_NPHY_IQEST_CMD_START)) {
  3847. est->i0_pwr = (b43_phy_read(dev, B43_NPHY_IQEST_IPACC_HI0) << 16) |
  3848. b43_phy_read(dev, B43_NPHY_IQEST_IPACC_LO0);
  3849. est->q0_pwr = (b43_phy_read(dev, B43_NPHY_IQEST_QPACC_HI0) << 16) |
  3850. b43_phy_read(dev, B43_NPHY_IQEST_QPACC_LO0);
  3851. est->iq0_prod = (b43_phy_read(dev, B43_NPHY_IQEST_IQACC_HI0) << 16) |
  3852. b43_phy_read(dev, B43_NPHY_IQEST_IQACC_LO0);
  3853. est->i1_pwr = (b43_phy_read(dev, B43_NPHY_IQEST_IPACC_HI1) << 16) |
  3854. b43_phy_read(dev, B43_NPHY_IQEST_IPACC_LO1);
  3855. est->q1_pwr = (b43_phy_read(dev, B43_NPHY_IQEST_QPACC_HI1) << 16) |
  3856. b43_phy_read(dev, B43_NPHY_IQEST_QPACC_LO1);
  3857. est->iq1_prod = (b43_phy_read(dev, B43_NPHY_IQEST_IQACC_HI1) << 16) |
  3858. b43_phy_read(dev, B43_NPHY_IQEST_IQACC_LO1);
  3859. return;
  3860. }
  3861. udelay(10);
  3862. }
  3863. memset(est, 0, sizeof(*est));
  3864. }
  3865. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/RxIqCoeffs */
  3866. static void b43_nphy_rx_iq_coeffs(struct b43_wldev *dev, bool write,
  3867. struct b43_phy_n_iq_comp *pcomp)
  3868. {
  3869. if (write) {
  3870. b43_phy_write(dev, B43_NPHY_C1_RXIQ_COMPA0, pcomp->a0);
  3871. b43_phy_write(dev, B43_NPHY_C1_RXIQ_COMPB0, pcomp->b0);
  3872. b43_phy_write(dev, B43_NPHY_C2_RXIQ_COMPA1, pcomp->a1);
  3873. b43_phy_write(dev, B43_NPHY_C2_RXIQ_COMPB1, pcomp->b1);
  3874. } else {
  3875. pcomp->a0 = b43_phy_read(dev, B43_NPHY_C1_RXIQ_COMPA0);
  3876. pcomp->b0 = b43_phy_read(dev, B43_NPHY_C1_RXIQ_COMPB0);
  3877. pcomp->a1 = b43_phy_read(dev, B43_NPHY_C2_RXIQ_COMPA1);
  3878. pcomp->b1 = b43_phy_read(dev, B43_NPHY_C2_RXIQ_COMPB1);
  3879. }
  3880. }
  3881. #if 0
  3882. /* Ready but not used anywhere */
  3883. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/RxCalPhyCleanup */
  3884. static void b43_nphy_rx_cal_phy_cleanup(struct b43_wldev *dev, u8 core)
  3885. {
  3886. u16 *regs = dev->phy.n->tx_rx_cal_phy_saveregs;
  3887. b43_phy_write(dev, B43_NPHY_RFSEQCA, regs[0]);
  3888. if (core == 0) {
  3889. b43_phy_write(dev, B43_NPHY_AFECTL_C1, regs[1]);
  3890. b43_phy_write(dev, B43_NPHY_AFECTL_OVER1, regs[2]);
  3891. } else {
  3892. b43_phy_write(dev, B43_NPHY_AFECTL_C2, regs[1]);
  3893. b43_phy_write(dev, B43_NPHY_AFECTL_OVER, regs[2]);
  3894. }
  3895. b43_phy_write(dev, B43_NPHY_RFCTL_INTC1, regs[3]);
  3896. b43_phy_write(dev, B43_NPHY_RFCTL_INTC2, regs[4]);
  3897. b43_phy_write(dev, B43_NPHY_RFCTL_RSSIO1, regs[5]);
  3898. b43_phy_write(dev, B43_NPHY_RFCTL_RSSIO2, regs[6]);
  3899. b43_phy_write(dev, B43_NPHY_TXF_40CO_B1S1, regs[7]);
  3900. b43_phy_write(dev, B43_NPHY_RFCTL_OVER, regs[8]);
  3901. b43_phy_write(dev, B43_NPHY_PAPD_EN0, regs[9]);
  3902. b43_phy_write(dev, B43_NPHY_PAPD_EN1, regs[10]);
  3903. }
  3904. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/RxCalPhySetup */
  3905. static void b43_nphy_rx_cal_phy_setup(struct b43_wldev *dev, u8 core)
  3906. {
  3907. u8 rxval, txval;
  3908. u16 *regs = dev->phy.n->tx_rx_cal_phy_saveregs;
  3909. regs[0] = b43_phy_read(dev, B43_NPHY_RFSEQCA);
  3910. if (core == 0) {
  3911. regs[1] = b43_phy_read(dev, B43_NPHY_AFECTL_C1);
  3912. regs[2] = b43_phy_read(dev, B43_NPHY_AFECTL_OVER1);
  3913. } else {
  3914. regs[1] = b43_phy_read(dev, B43_NPHY_AFECTL_C2);
  3915. regs[2] = b43_phy_read(dev, B43_NPHY_AFECTL_OVER);
  3916. }
  3917. regs[3] = b43_phy_read(dev, B43_NPHY_RFCTL_INTC1);
  3918. regs[4] = b43_phy_read(dev, B43_NPHY_RFCTL_INTC2);
  3919. regs[5] = b43_phy_read(dev, B43_NPHY_RFCTL_RSSIO1);
  3920. regs[6] = b43_phy_read(dev, B43_NPHY_RFCTL_RSSIO2);
  3921. regs[7] = b43_phy_read(dev, B43_NPHY_TXF_40CO_B1S1);
  3922. regs[8] = b43_phy_read(dev, B43_NPHY_RFCTL_OVER);
  3923. regs[9] = b43_phy_read(dev, B43_NPHY_PAPD_EN0);
  3924. regs[10] = b43_phy_read(dev, B43_NPHY_PAPD_EN1);
  3925. b43_phy_mask(dev, B43_NPHY_PAPD_EN0, ~0x0001);
  3926. b43_phy_mask(dev, B43_NPHY_PAPD_EN1, ~0x0001);
  3927. b43_phy_maskset(dev, B43_NPHY_RFSEQCA,
  3928. ~B43_NPHY_RFSEQCA_RXDIS & 0xFFFF,
  3929. ((1 - core) << B43_NPHY_RFSEQCA_RXDIS_SHIFT));
  3930. b43_phy_maskset(dev, B43_NPHY_RFSEQCA, ~B43_NPHY_RFSEQCA_TXEN,
  3931. ((1 - core) << B43_NPHY_RFSEQCA_TXEN_SHIFT));
  3932. b43_phy_maskset(dev, B43_NPHY_RFSEQCA, ~B43_NPHY_RFSEQCA_RXEN,
  3933. (core << B43_NPHY_RFSEQCA_RXEN_SHIFT));
  3934. b43_phy_maskset(dev, B43_NPHY_RFSEQCA, ~B43_NPHY_RFSEQCA_TXDIS,
  3935. (core << B43_NPHY_RFSEQCA_TXDIS_SHIFT));
  3936. if (core == 0) {
  3937. b43_phy_mask(dev, B43_NPHY_AFECTL_C1, ~0x0007);
  3938. b43_phy_set(dev, B43_NPHY_AFECTL_OVER1, 0x0007);
  3939. } else {
  3940. b43_phy_mask(dev, B43_NPHY_AFECTL_C2, ~0x0007);
  3941. b43_phy_set(dev, B43_NPHY_AFECTL_OVER, 0x0007);
  3942. }
  3943. b43_nphy_rf_ctl_intc_override(dev, N_INTC_OVERRIDE_PA, 0, 3);
  3944. b43_nphy_rf_ctl_override(dev, 8, 0, 3, false);
  3945. b43_nphy_force_rf_sequence(dev, B43_RFSEQ_RX2TX);
  3946. if (core == 0) {
  3947. rxval = 1;
  3948. txval = 8;
  3949. } else {
  3950. rxval = 4;
  3951. txval = 2;
  3952. }
  3953. b43_nphy_rf_ctl_intc_override(dev, N_INTC_OVERRIDE_TRSW, rxval,
  3954. core + 1);
  3955. b43_nphy_rf_ctl_intc_override(dev, N_INTC_OVERRIDE_TRSW, txval,
  3956. 2 - core);
  3957. }
  3958. #endif
  3959. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/CalcRxIqComp */
  3960. static void b43_nphy_calc_rx_iq_comp(struct b43_wldev *dev, u8 mask)
  3961. {
  3962. int i;
  3963. s32 iq;
  3964. u32 ii;
  3965. u32 qq;
  3966. int iq_nbits, qq_nbits;
  3967. int arsh, brsh;
  3968. u16 tmp, a, b;
  3969. struct nphy_iq_est est;
  3970. struct b43_phy_n_iq_comp old;
  3971. struct b43_phy_n_iq_comp new = { };
  3972. bool error = false;
  3973. if (mask == 0)
  3974. return;
  3975. b43_nphy_rx_iq_coeffs(dev, false, &old);
  3976. b43_nphy_rx_iq_coeffs(dev, true, &new);
  3977. b43_nphy_rx_iq_est(dev, &est, 0x4000, 32, false);
  3978. new = old;
  3979. for (i = 0; i < 2; i++) {
  3980. if (i == 0 && (mask & 1)) {
  3981. iq = est.iq0_prod;
  3982. ii = est.i0_pwr;
  3983. qq = est.q0_pwr;
  3984. } else if (i == 1 && (mask & 2)) {
  3985. iq = est.iq1_prod;
  3986. ii = est.i1_pwr;
  3987. qq = est.q1_pwr;
  3988. } else {
  3989. continue;
  3990. }
  3991. if (ii + qq < 2) {
  3992. error = true;
  3993. break;
  3994. }
  3995. iq_nbits = fls(abs(iq));
  3996. qq_nbits = fls(qq);
  3997. arsh = iq_nbits - 20;
  3998. if (arsh >= 0) {
  3999. a = -((iq << (30 - iq_nbits)) + (ii >> (1 + arsh)));
  4000. tmp = ii >> arsh;
  4001. } else {
  4002. a = -((iq << (30 - iq_nbits)) + (ii << (-1 - arsh)));
  4003. tmp = ii << -arsh;
  4004. }
  4005. if (tmp == 0) {
  4006. error = true;
  4007. break;
  4008. }
  4009. a /= tmp;
  4010. brsh = qq_nbits - 11;
  4011. if (brsh >= 0) {
  4012. b = (qq << (31 - qq_nbits));
  4013. tmp = ii >> brsh;
  4014. } else {
  4015. b = (qq << (31 - qq_nbits));
  4016. tmp = ii << -brsh;
  4017. }
  4018. if (tmp == 0) {
  4019. error = true;
  4020. break;
  4021. }
  4022. b = int_sqrt(b / tmp - a * a) - (1 << 10);
  4023. if (i == 0 && (mask & 0x1)) {
  4024. if (dev->phy.rev >= 3) {
  4025. new.a0 = a & 0x3FF;
  4026. new.b0 = b & 0x3FF;
  4027. } else {
  4028. new.a0 = b & 0x3FF;
  4029. new.b0 = a & 0x3FF;
  4030. }
  4031. } else if (i == 1 && (mask & 0x2)) {
  4032. if (dev->phy.rev >= 3) {
  4033. new.a1 = a & 0x3FF;
  4034. new.b1 = b & 0x3FF;
  4035. } else {
  4036. new.a1 = b & 0x3FF;
  4037. new.b1 = a & 0x3FF;
  4038. }
  4039. }
  4040. }
  4041. if (error)
  4042. new = old;
  4043. b43_nphy_rx_iq_coeffs(dev, true, &new);
  4044. }
  4045. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/TxIqWar */
  4046. static void b43_nphy_tx_iq_workaround(struct b43_wldev *dev)
  4047. {
  4048. u16 array[4];
  4049. b43_ntab_read_bulk(dev, B43_NTAB16(0xF, 0x50), 4, array);
  4050. b43_shm_write16(dev, B43_SHM_SHARED, B43_SHM_SH_NPHY_TXIQW0, array[0]);
  4051. b43_shm_write16(dev, B43_SHM_SHARED, B43_SHM_SH_NPHY_TXIQW1, array[1]);
  4052. b43_shm_write16(dev, B43_SHM_SHARED, B43_SHM_SH_NPHY_TXIQW2, array[2]);
  4053. b43_shm_write16(dev, B43_SHM_SHARED, B43_SHM_SH_NPHY_TXIQW3, array[3]);
  4054. }
  4055. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/SpurWar */
  4056. static void b43_nphy_spur_workaround(struct b43_wldev *dev)
  4057. {
  4058. struct b43_phy_n *nphy = dev->phy.n;
  4059. B43_WARN_ON(dev->phy.rev < 3);
  4060. if (nphy->hang_avoid)
  4061. b43_nphy_stay_in_carrier_search(dev, 1);
  4062. if (nphy->hang_avoid)
  4063. b43_nphy_stay_in_carrier_search(dev, 0);
  4064. }
  4065. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/TxPwrCtrlCoefSetup */
  4066. static void b43_nphy_tx_pwr_ctrl_coef_setup(struct b43_wldev *dev)
  4067. {
  4068. struct b43_phy_n *nphy = dev->phy.n;
  4069. int i, j;
  4070. u32 tmp;
  4071. u32 cur_real, cur_imag, real_part, imag_part;
  4072. u16 buffer[7];
  4073. if (nphy->hang_avoid)
  4074. b43_nphy_stay_in_carrier_search(dev, true);
  4075. b43_ntab_read_bulk(dev, B43_NTAB16(15, 80), 7, buffer);
  4076. for (i = 0; i < 2; i++) {
  4077. tmp = ((buffer[i * 2] & 0x3FF) << 10) |
  4078. (buffer[i * 2 + 1] & 0x3FF);
  4079. b43_phy_write(dev, B43_NPHY_TABLE_ADDR,
  4080. (((i + 26) << 10) | 320));
  4081. for (j = 0; j < 128; j++) {
  4082. b43_phy_write(dev, B43_NPHY_TABLE_DATAHI,
  4083. ((tmp >> 16) & 0xFFFF));
  4084. b43_phy_write(dev, B43_NPHY_TABLE_DATALO,
  4085. (tmp & 0xFFFF));
  4086. }
  4087. }
  4088. for (i = 0; i < 2; i++) {
  4089. tmp = buffer[5 + i];
  4090. real_part = (tmp >> 8) & 0xFF;
  4091. imag_part = (tmp & 0xFF);
  4092. b43_phy_write(dev, B43_NPHY_TABLE_ADDR,
  4093. (((i + 26) << 10) | 448));
  4094. if (dev->phy.rev >= 3) {
  4095. cur_real = real_part;
  4096. cur_imag = imag_part;
  4097. tmp = ((cur_real & 0xFF) << 8) | (cur_imag & 0xFF);
  4098. }
  4099. for (j = 0; j < 128; j++) {
  4100. if (dev->phy.rev < 3) {
  4101. cur_real = (real_part * loscale[j] + 128) >> 8;
  4102. cur_imag = (imag_part * loscale[j] + 128) >> 8;
  4103. tmp = ((cur_real & 0xFF) << 8) |
  4104. (cur_imag & 0xFF);
  4105. }
  4106. b43_phy_write(dev, B43_NPHY_TABLE_DATAHI,
  4107. ((tmp >> 16) & 0xFFFF));
  4108. b43_phy_write(dev, B43_NPHY_TABLE_DATALO,
  4109. (tmp & 0xFFFF));
  4110. }
  4111. }
  4112. if (dev->phy.rev >= 3) {
  4113. b43_shm_write16(dev, B43_SHM_SHARED,
  4114. B43_SHM_SH_NPHY_TXPWR_INDX0, 0xFFFF);
  4115. b43_shm_write16(dev, B43_SHM_SHARED,
  4116. B43_SHM_SH_NPHY_TXPWR_INDX1, 0xFFFF);
  4117. }
  4118. if (nphy->hang_avoid)
  4119. b43_nphy_stay_in_carrier_search(dev, false);
  4120. }
  4121. /*
  4122. * Restore RSSI Calibration
  4123. * https://bcm-v4.sipsolutions.net/802.11/PHY/N/RestoreRssiCal
  4124. */
  4125. static void b43_nphy_restore_rssi_cal(struct b43_wldev *dev)
  4126. {
  4127. struct b43_phy_n *nphy = dev->phy.n;
  4128. u16 *rssical_radio_regs = NULL;
  4129. u16 *rssical_phy_regs = NULL;
  4130. if (b43_current_band(dev->wl) == NL80211_BAND_2GHZ) {
  4131. if (!nphy->rssical_chanspec_2G.center_freq)
  4132. return;
  4133. rssical_radio_regs = nphy->rssical_cache.rssical_radio_regs_2G;
  4134. rssical_phy_regs = nphy->rssical_cache.rssical_phy_regs_2G;
  4135. } else {
  4136. if (!nphy->rssical_chanspec_5G.center_freq)
  4137. return;
  4138. rssical_radio_regs = nphy->rssical_cache.rssical_radio_regs_5G;
  4139. rssical_phy_regs = nphy->rssical_cache.rssical_phy_regs_5G;
  4140. }
  4141. if (dev->phy.rev >= 19) {
  4142. /* TODO */
  4143. } else if (dev->phy.rev >= 7) {
  4144. b43_radio_maskset(dev, R2057_NB_MASTER_CORE0, ~R2057_VCM_MASK,
  4145. rssical_radio_regs[0]);
  4146. b43_radio_maskset(dev, R2057_NB_MASTER_CORE1, ~R2057_VCM_MASK,
  4147. rssical_radio_regs[1]);
  4148. } else {
  4149. b43_radio_maskset(dev, B2056_RX0 | B2056_RX_RSSI_MISC, 0xE3,
  4150. rssical_radio_regs[0]);
  4151. b43_radio_maskset(dev, B2056_RX1 | B2056_RX_RSSI_MISC, 0xE3,
  4152. rssical_radio_regs[1]);
  4153. }
  4154. b43_phy_write(dev, B43_NPHY_RSSIMC_0I_RSSI_Z, rssical_phy_regs[0]);
  4155. b43_phy_write(dev, B43_NPHY_RSSIMC_0Q_RSSI_Z, rssical_phy_regs[1]);
  4156. b43_phy_write(dev, B43_NPHY_RSSIMC_1I_RSSI_Z, rssical_phy_regs[2]);
  4157. b43_phy_write(dev, B43_NPHY_RSSIMC_1Q_RSSI_Z, rssical_phy_regs[3]);
  4158. b43_phy_write(dev, B43_NPHY_RSSIMC_0I_RSSI_X, rssical_phy_regs[4]);
  4159. b43_phy_write(dev, B43_NPHY_RSSIMC_0Q_RSSI_X, rssical_phy_regs[5]);
  4160. b43_phy_write(dev, B43_NPHY_RSSIMC_1I_RSSI_X, rssical_phy_regs[6]);
  4161. b43_phy_write(dev, B43_NPHY_RSSIMC_1Q_RSSI_X, rssical_phy_regs[7]);
  4162. b43_phy_write(dev, B43_NPHY_RSSIMC_0I_RSSI_Y, rssical_phy_regs[8]);
  4163. b43_phy_write(dev, B43_NPHY_RSSIMC_0Q_RSSI_Y, rssical_phy_regs[9]);
  4164. b43_phy_write(dev, B43_NPHY_RSSIMC_1I_RSSI_Y, rssical_phy_regs[10]);
  4165. b43_phy_write(dev, B43_NPHY_RSSIMC_1Q_RSSI_Y, rssical_phy_regs[11]);
  4166. }
  4167. static void b43_nphy_tx_cal_radio_setup_rev19(struct b43_wldev *dev)
  4168. {
  4169. /* TODO */
  4170. }
  4171. static void b43_nphy_tx_cal_radio_setup_rev7(struct b43_wldev *dev)
  4172. {
  4173. struct b43_phy *phy = &dev->phy;
  4174. struct b43_phy_n *nphy = dev->phy.n;
  4175. u16 *save = nphy->tx_rx_cal_radio_saveregs;
  4176. int core, off;
  4177. u16 r, tmp;
  4178. for (core = 0; core < 2; core++) {
  4179. r = core ? 0x20 : 0;
  4180. off = core * 11;
  4181. save[off + 0] = b43_radio_read(dev, r + R2057_TX0_TX_SSI_MASTER);
  4182. save[off + 1] = b43_radio_read(dev, r + R2057_TX0_IQCAL_VCM_HG);
  4183. save[off + 2] = b43_radio_read(dev, r + R2057_TX0_IQCAL_IDAC);
  4184. save[off + 3] = b43_radio_read(dev, r + R2057_TX0_TSSI_VCM);
  4185. save[off + 4] = 0;
  4186. save[off + 5] = b43_radio_read(dev, r + R2057_TX0_TX_SSI_MUX);
  4187. if (phy->radio_rev != 5)
  4188. save[off + 6] = b43_radio_read(dev, r + R2057_TX0_TSSIA);
  4189. save[off + 7] = b43_radio_read(dev, r + R2057_TX0_TSSIG);
  4190. save[off + 8] = b43_radio_read(dev, r + R2057_TX0_TSSI_MISC1);
  4191. if (b43_current_band(dev->wl) == NL80211_BAND_5GHZ) {
  4192. b43_radio_write(dev, r + R2057_TX0_TX_SSI_MASTER, 0xA);
  4193. b43_radio_write(dev, r + R2057_TX0_IQCAL_VCM_HG, 0x43);
  4194. b43_radio_write(dev, r + R2057_TX0_IQCAL_IDAC, 0x55);
  4195. b43_radio_write(dev, r + R2057_TX0_TSSI_VCM, 0);
  4196. b43_radio_write(dev, r + R2057_TX0_TSSIG, 0);
  4197. if (nphy->use_int_tx_iq_lo_cal) {
  4198. b43_radio_write(dev, r + R2057_TX0_TX_SSI_MUX, 0x4);
  4199. tmp = true ? 0x31 : 0x21; /* TODO */
  4200. b43_radio_write(dev, r + R2057_TX0_TSSIA, tmp);
  4201. }
  4202. b43_radio_write(dev, r + R2057_TX0_TSSI_MISC1, 0x00);
  4203. } else {
  4204. b43_radio_write(dev, r + R2057_TX0_TX_SSI_MASTER, 0x6);
  4205. b43_radio_write(dev, r + R2057_TX0_IQCAL_VCM_HG, 0x43);
  4206. b43_radio_write(dev, r + R2057_TX0_IQCAL_IDAC, 0x55);
  4207. b43_radio_write(dev, r + R2057_TX0_TSSI_VCM, 0);
  4208. if (phy->radio_rev != 5)
  4209. b43_radio_write(dev, r + R2057_TX0_TSSIA, 0);
  4210. if (nphy->use_int_tx_iq_lo_cal) {
  4211. b43_radio_write(dev, r + R2057_TX0_TX_SSI_MUX, 0x6);
  4212. tmp = true ? 0x31 : 0x21; /* TODO */
  4213. b43_radio_write(dev, r + R2057_TX0_TSSIG, tmp);
  4214. }
  4215. b43_radio_write(dev, r + R2057_TX0_TSSI_MISC1, 0);
  4216. }
  4217. }
  4218. }
  4219. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/TxCalRadioSetup */
  4220. static void b43_nphy_tx_cal_radio_setup(struct b43_wldev *dev)
  4221. {
  4222. struct b43_phy *phy = &dev->phy;
  4223. struct b43_phy_n *nphy = dev->phy.n;
  4224. u16 *save = nphy->tx_rx_cal_radio_saveregs;
  4225. u16 tmp;
  4226. u8 offset, i;
  4227. if (phy->rev >= 19) {
  4228. b43_nphy_tx_cal_radio_setup_rev19(dev);
  4229. } else if (phy->rev >= 7) {
  4230. b43_nphy_tx_cal_radio_setup_rev7(dev);
  4231. } else if (phy->rev >= 3) {
  4232. for (i = 0; i < 2; i++) {
  4233. tmp = (i == 0) ? 0x2000 : 0x3000;
  4234. offset = i * 11;
  4235. save[offset + 0] = b43_radio_read(dev, B2055_CAL_RVARCTL);
  4236. save[offset + 1] = b43_radio_read(dev, B2055_CAL_LPOCTL);
  4237. save[offset + 2] = b43_radio_read(dev, B2055_CAL_TS);
  4238. save[offset + 3] = b43_radio_read(dev, B2055_CAL_RCCALRTS);
  4239. save[offset + 4] = b43_radio_read(dev, B2055_CAL_RCALRTS);
  4240. save[offset + 5] = b43_radio_read(dev, B2055_PADDRV);
  4241. save[offset + 6] = b43_radio_read(dev, B2055_XOCTL1);
  4242. save[offset + 7] = b43_radio_read(dev, B2055_XOCTL2);
  4243. save[offset + 8] = b43_radio_read(dev, B2055_XOREGUL);
  4244. save[offset + 9] = b43_radio_read(dev, B2055_XOMISC);
  4245. save[offset + 10] = b43_radio_read(dev, B2055_PLL_LFC1);
  4246. if (b43_current_band(dev->wl) == NL80211_BAND_5GHZ) {
  4247. b43_radio_write(dev, tmp | B2055_CAL_RVARCTL, 0x0A);
  4248. b43_radio_write(dev, tmp | B2055_CAL_LPOCTL, 0x40);
  4249. b43_radio_write(dev, tmp | B2055_CAL_TS, 0x55);
  4250. b43_radio_write(dev, tmp | B2055_CAL_RCCALRTS, 0);
  4251. b43_radio_write(dev, tmp | B2055_CAL_RCALRTS, 0);
  4252. if (nphy->ipa5g_on) {
  4253. b43_radio_write(dev, tmp | B2055_PADDRV, 4);
  4254. b43_radio_write(dev, tmp | B2055_XOCTL1, 1);
  4255. } else {
  4256. b43_radio_write(dev, tmp | B2055_PADDRV, 0);
  4257. b43_radio_write(dev, tmp | B2055_XOCTL1, 0x2F);
  4258. }
  4259. b43_radio_write(dev, tmp | B2055_XOCTL2, 0);
  4260. } else {
  4261. b43_radio_write(dev, tmp | B2055_CAL_RVARCTL, 0x06);
  4262. b43_radio_write(dev, tmp | B2055_CAL_LPOCTL, 0x40);
  4263. b43_radio_write(dev, tmp | B2055_CAL_TS, 0x55);
  4264. b43_radio_write(dev, tmp | B2055_CAL_RCCALRTS, 0);
  4265. b43_radio_write(dev, tmp | B2055_CAL_RCALRTS, 0);
  4266. b43_radio_write(dev, tmp | B2055_XOCTL1, 0);
  4267. if (nphy->ipa2g_on) {
  4268. b43_radio_write(dev, tmp | B2055_PADDRV, 6);
  4269. b43_radio_write(dev, tmp | B2055_XOCTL2,
  4270. (dev->phy.rev < 5) ? 0x11 : 0x01);
  4271. } else {
  4272. b43_radio_write(dev, tmp | B2055_PADDRV, 0);
  4273. b43_radio_write(dev, tmp | B2055_XOCTL2, 0);
  4274. }
  4275. }
  4276. b43_radio_write(dev, tmp | B2055_XOREGUL, 0);
  4277. b43_radio_write(dev, tmp | B2055_XOMISC, 0);
  4278. b43_radio_write(dev, tmp | B2055_PLL_LFC1, 0);
  4279. }
  4280. } else {
  4281. save[0] = b43_radio_read(dev, B2055_C1_TX_RF_IQCAL1);
  4282. b43_radio_write(dev, B2055_C1_TX_RF_IQCAL1, 0x29);
  4283. save[1] = b43_radio_read(dev, B2055_C1_TX_RF_IQCAL2);
  4284. b43_radio_write(dev, B2055_C1_TX_RF_IQCAL2, 0x54);
  4285. save[2] = b43_radio_read(dev, B2055_C2_TX_RF_IQCAL1);
  4286. b43_radio_write(dev, B2055_C2_TX_RF_IQCAL1, 0x29);
  4287. save[3] = b43_radio_read(dev, B2055_C2_TX_RF_IQCAL2);
  4288. b43_radio_write(dev, B2055_C2_TX_RF_IQCAL2, 0x54);
  4289. save[3] = b43_radio_read(dev, B2055_C1_PWRDET_RXTX);
  4290. save[4] = b43_radio_read(dev, B2055_C2_PWRDET_RXTX);
  4291. if (!(b43_phy_read(dev, B43_NPHY_BANDCTL) &
  4292. B43_NPHY_BANDCTL_5GHZ)) {
  4293. b43_radio_write(dev, B2055_C1_PWRDET_RXTX, 0x04);
  4294. b43_radio_write(dev, B2055_C2_PWRDET_RXTX, 0x04);
  4295. } else {
  4296. b43_radio_write(dev, B2055_C1_PWRDET_RXTX, 0x20);
  4297. b43_radio_write(dev, B2055_C2_PWRDET_RXTX, 0x20);
  4298. }
  4299. if (dev->phy.rev < 2) {
  4300. b43_radio_set(dev, B2055_C1_TX_BB_MXGM, 0x20);
  4301. b43_radio_set(dev, B2055_C2_TX_BB_MXGM, 0x20);
  4302. } else {
  4303. b43_radio_mask(dev, B2055_C1_TX_BB_MXGM, ~0x20);
  4304. b43_radio_mask(dev, B2055_C2_TX_BB_MXGM, ~0x20);
  4305. }
  4306. }
  4307. }
  4308. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/UpdateTxCalLadder */
  4309. static void b43_nphy_update_tx_cal_ladder(struct b43_wldev *dev, u16 core)
  4310. {
  4311. struct b43_phy_n *nphy = dev->phy.n;
  4312. int i;
  4313. u16 scale, entry;
  4314. u16 tmp = nphy->txcal_bbmult;
  4315. if (core == 0)
  4316. tmp >>= 8;
  4317. tmp &= 0xff;
  4318. for (i = 0; i < 18; i++) {
  4319. scale = (ladder_lo[i].percent * tmp) / 100;
  4320. entry = ((scale & 0xFF) << 8) | ladder_lo[i].g_env;
  4321. b43_ntab_write(dev, B43_NTAB16(15, i), entry);
  4322. scale = (ladder_iq[i].percent * tmp) / 100;
  4323. entry = ((scale & 0xFF) << 8) | ladder_iq[i].g_env;
  4324. b43_ntab_write(dev, B43_NTAB16(15, i + 32), entry);
  4325. }
  4326. }
  4327. static void b43_nphy_pa_set_tx_dig_filter(struct b43_wldev *dev, u16 offset,
  4328. const s16 *filter)
  4329. {
  4330. int i;
  4331. offset = B43_PHY_N(offset);
  4332. for (i = 0; i < 15; i++, offset++)
  4333. b43_phy_write(dev, offset, filter[i]);
  4334. }
  4335. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/ExtPaSetTxDigiFilts */
  4336. static void b43_nphy_ext_pa_set_tx_dig_filters(struct b43_wldev *dev)
  4337. {
  4338. b43_nphy_pa_set_tx_dig_filter(dev, 0x2C5,
  4339. tbl_tx_filter_coef_rev4[2]);
  4340. }
  4341. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/IpaSetTxDigiFilts */
  4342. static void b43_nphy_int_pa_set_tx_dig_filters(struct b43_wldev *dev)
  4343. {
  4344. /* B43_NPHY_TXF_20CO_S0A1, B43_NPHY_TXF_40CO_S0A1, unknown */
  4345. static const u16 offset[] = { 0x186, 0x195, 0x2C5 };
  4346. static const s16 dig_filter_phy_rev16[] = {
  4347. -375, 136, -407, 208, -1527,
  4348. 956, 93, 186, 93, 230,
  4349. -44, 230, 201, -191, 201,
  4350. };
  4351. int i;
  4352. for (i = 0; i < 3; i++)
  4353. b43_nphy_pa_set_tx_dig_filter(dev, offset[i],
  4354. tbl_tx_filter_coef_rev4[i]);
  4355. /* Verified with BCM43227 and BCM43228 */
  4356. if (dev->phy.rev == 16)
  4357. b43_nphy_pa_set_tx_dig_filter(dev, 0x186, dig_filter_phy_rev16);
  4358. /* Verified with BCM43131 and BCM43217 */
  4359. if (dev->phy.rev == 17) {
  4360. b43_nphy_pa_set_tx_dig_filter(dev, 0x186, dig_filter_phy_rev16);
  4361. b43_nphy_pa_set_tx_dig_filter(dev, 0x195,
  4362. tbl_tx_filter_coef_rev4[1]);
  4363. }
  4364. if (b43_is_40mhz(dev)) {
  4365. b43_nphy_pa_set_tx_dig_filter(dev, 0x186,
  4366. tbl_tx_filter_coef_rev4[3]);
  4367. } else {
  4368. if (b43_current_band(dev->wl) == NL80211_BAND_5GHZ)
  4369. b43_nphy_pa_set_tx_dig_filter(dev, 0x186,
  4370. tbl_tx_filter_coef_rev4[5]);
  4371. if (dev->phy.channel == 14)
  4372. b43_nphy_pa_set_tx_dig_filter(dev, 0x186,
  4373. tbl_tx_filter_coef_rev4[6]);
  4374. }
  4375. }
  4376. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/GetTxGain */
  4377. static struct nphy_txgains b43_nphy_get_tx_gains(struct b43_wldev *dev)
  4378. {
  4379. struct b43_phy_n *nphy = dev->phy.n;
  4380. u16 curr_gain[2];
  4381. struct nphy_txgains target;
  4382. const u32 *table = NULL;
  4383. if (!nphy->txpwrctrl) {
  4384. int i;
  4385. if (nphy->hang_avoid)
  4386. b43_nphy_stay_in_carrier_search(dev, true);
  4387. b43_ntab_read_bulk(dev, B43_NTAB16(7, 0x110), 2, curr_gain);
  4388. if (nphy->hang_avoid)
  4389. b43_nphy_stay_in_carrier_search(dev, false);
  4390. for (i = 0; i < 2; ++i) {
  4391. if (dev->phy.rev >= 7) {
  4392. target.ipa[i] = curr_gain[i] & 0x0007;
  4393. target.pad[i] = (curr_gain[i] & 0x00F8) >> 3;
  4394. target.pga[i] = (curr_gain[i] & 0x0F00) >> 8;
  4395. target.txgm[i] = (curr_gain[i] & 0x7000) >> 12;
  4396. target.tx_lpf[i] = (curr_gain[i] & 0x8000) >> 15;
  4397. } else if (dev->phy.rev >= 3) {
  4398. target.ipa[i] = curr_gain[i] & 0x000F;
  4399. target.pad[i] = (curr_gain[i] & 0x00F0) >> 4;
  4400. target.pga[i] = (curr_gain[i] & 0x0F00) >> 8;
  4401. target.txgm[i] = (curr_gain[i] & 0x7000) >> 12;
  4402. } else {
  4403. target.ipa[i] = curr_gain[i] & 0x0003;
  4404. target.pad[i] = (curr_gain[i] & 0x000C) >> 2;
  4405. target.pga[i] = (curr_gain[i] & 0x0070) >> 4;
  4406. target.txgm[i] = (curr_gain[i] & 0x0380) >> 7;
  4407. }
  4408. }
  4409. } else {
  4410. int i;
  4411. u16 index[2];
  4412. index[0] = (b43_phy_read(dev, B43_NPHY_C1_TXPCTL_STAT) &
  4413. B43_NPHY_TXPCTL_STAT_BIDX) >>
  4414. B43_NPHY_TXPCTL_STAT_BIDX_SHIFT;
  4415. index[1] = (b43_phy_read(dev, B43_NPHY_C2_TXPCTL_STAT) &
  4416. B43_NPHY_TXPCTL_STAT_BIDX) >>
  4417. B43_NPHY_TXPCTL_STAT_BIDX_SHIFT;
  4418. for (i = 0; i < 2; ++i) {
  4419. table = b43_nphy_get_tx_gain_table(dev);
  4420. if (!table)
  4421. break;
  4422. if (dev->phy.rev >= 7) {
  4423. target.ipa[i] = (table[index[i]] >> 16) & 0x7;
  4424. target.pad[i] = (table[index[i]] >> 19) & 0x1F;
  4425. target.pga[i] = (table[index[i]] >> 24) & 0xF;
  4426. target.txgm[i] = (table[index[i]] >> 28) & 0x7;
  4427. target.tx_lpf[i] = (table[index[i]] >> 31) & 0x1;
  4428. } else if (dev->phy.rev >= 3) {
  4429. target.ipa[i] = (table[index[i]] >> 16) & 0xF;
  4430. target.pad[i] = (table[index[i]] >> 20) & 0xF;
  4431. target.pga[i] = (table[index[i]] >> 24) & 0xF;
  4432. target.txgm[i] = (table[index[i]] >> 28) & 0xF;
  4433. } else {
  4434. target.ipa[i] = (table[index[i]] >> 16) & 0x3;
  4435. target.pad[i] = (table[index[i]] >> 18) & 0x3;
  4436. target.pga[i] = (table[index[i]] >> 20) & 0x7;
  4437. target.txgm[i] = (table[index[i]] >> 23) & 0x7;
  4438. }
  4439. }
  4440. }
  4441. return target;
  4442. }
  4443. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/TxCalPhyCleanup */
  4444. static void b43_nphy_tx_cal_phy_cleanup(struct b43_wldev *dev)
  4445. {
  4446. u16 *regs = dev->phy.n->tx_rx_cal_phy_saveregs;
  4447. if (dev->phy.rev >= 3) {
  4448. b43_phy_write(dev, B43_NPHY_AFECTL_C1, regs[0]);
  4449. b43_phy_write(dev, B43_NPHY_AFECTL_C2, regs[1]);
  4450. b43_phy_write(dev, B43_NPHY_AFECTL_OVER1, regs[2]);
  4451. b43_phy_write(dev, B43_NPHY_AFECTL_OVER, regs[3]);
  4452. b43_phy_write(dev, B43_NPHY_BBCFG, regs[4]);
  4453. b43_ntab_write(dev, B43_NTAB16(8, 3), regs[5]);
  4454. b43_ntab_write(dev, B43_NTAB16(8, 19), regs[6]);
  4455. b43_phy_write(dev, B43_NPHY_RFCTL_INTC1, regs[7]);
  4456. b43_phy_write(dev, B43_NPHY_RFCTL_INTC2, regs[8]);
  4457. b43_phy_write(dev, B43_NPHY_PAPD_EN0, regs[9]);
  4458. b43_phy_write(dev, B43_NPHY_PAPD_EN1, regs[10]);
  4459. b43_nphy_reset_cca(dev);
  4460. } else {
  4461. b43_phy_maskset(dev, B43_NPHY_AFECTL_C1, 0x0FFF, regs[0]);
  4462. b43_phy_maskset(dev, B43_NPHY_AFECTL_C2, 0x0FFF, regs[1]);
  4463. b43_phy_write(dev, B43_NPHY_AFECTL_OVER, regs[2]);
  4464. b43_ntab_write(dev, B43_NTAB16(8, 2), regs[3]);
  4465. b43_ntab_write(dev, B43_NTAB16(8, 18), regs[4]);
  4466. b43_phy_write(dev, B43_NPHY_RFCTL_INTC1, regs[5]);
  4467. b43_phy_write(dev, B43_NPHY_RFCTL_INTC2, regs[6]);
  4468. }
  4469. }
  4470. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/TxCalPhySetup */
  4471. static void b43_nphy_tx_cal_phy_setup(struct b43_wldev *dev)
  4472. {
  4473. struct b43_phy *phy = &dev->phy;
  4474. struct b43_phy_n *nphy = dev->phy.n;
  4475. u16 *regs = dev->phy.n->tx_rx_cal_phy_saveregs;
  4476. u16 tmp;
  4477. regs[0] = b43_phy_read(dev, B43_NPHY_AFECTL_C1);
  4478. regs[1] = b43_phy_read(dev, B43_NPHY_AFECTL_C2);
  4479. if (dev->phy.rev >= 3) {
  4480. b43_phy_maskset(dev, B43_NPHY_AFECTL_C1, 0xF0FF, 0x0A00);
  4481. b43_phy_maskset(dev, B43_NPHY_AFECTL_C2, 0xF0FF, 0x0A00);
  4482. tmp = b43_phy_read(dev, B43_NPHY_AFECTL_OVER1);
  4483. regs[2] = tmp;
  4484. b43_phy_write(dev, B43_NPHY_AFECTL_OVER1, tmp | 0x0600);
  4485. tmp = b43_phy_read(dev, B43_NPHY_AFECTL_OVER);
  4486. regs[3] = tmp;
  4487. b43_phy_write(dev, B43_NPHY_AFECTL_OVER, tmp | 0x0600);
  4488. regs[4] = b43_phy_read(dev, B43_NPHY_BBCFG);
  4489. b43_phy_mask(dev, B43_NPHY_BBCFG,
  4490. ~B43_NPHY_BBCFG_RSTRX & 0xFFFF);
  4491. tmp = b43_ntab_read(dev, B43_NTAB16(8, 3));
  4492. regs[5] = tmp;
  4493. b43_ntab_write(dev, B43_NTAB16(8, 3), 0);
  4494. tmp = b43_ntab_read(dev, B43_NTAB16(8, 19));
  4495. regs[6] = tmp;
  4496. b43_ntab_write(dev, B43_NTAB16(8, 19), 0);
  4497. regs[7] = b43_phy_read(dev, B43_NPHY_RFCTL_INTC1);
  4498. regs[8] = b43_phy_read(dev, B43_NPHY_RFCTL_INTC2);
  4499. if (!nphy->use_int_tx_iq_lo_cal)
  4500. b43_nphy_rf_ctl_intc_override(dev, N_INTC_OVERRIDE_PA,
  4501. 1, 3);
  4502. else
  4503. b43_nphy_rf_ctl_intc_override(dev, N_INTC_OVERRIDE_PA,
  4504. 0, 3);
  4505. b43_nphy_rf_ctl_intc_override(dev, N_INTC_OVERRIDE_TRSW, 2, 1);
  4506. b43_nphy_rf_ctl_intc_override(dev, N_INTC_OVERRIDE_TRSW, 8, 2);
  4507. regs[9] = b43_phy_read(dev, B43_NPHY_PAPD_EN0);
  4508. regs[10] = b43_phy_read(dev, B43_NPHY_PAPD_EN1);
  4509. b43_phy_mask(dev, B43_NPHY_PAPD_EN0, ~0x0001);
  4510. b43_phy_mask(dev, B43_NPHY_PAPD_EN1, ~0x0001);
  4511. tmp = b43_nphy_read_lpf_ctl(dev, 0);
  4512. if (phy->rev >= 19)
  4513. b43_nphy_rf_ctl_override_rev19(dev, 0x80, tmp, 0, false,
  4514. 1);
  4515. else if (phy->rev >= 7)
  4516. b43_nphy_rf_ctl_override_rev7(dev, 0x80, tmp, 0, false,
  4517. 1);
  4518. if (nphy->use_int_tx_iq_lo_cal && true /* FIXME */) {
  4519. if (phy->rev >= 19) {
  4520. b43_nphy_rf_ctl_override_rev19(dev, 0x8, 0, 0x3,
  4521. false, 0);
  4522. } else if (phy->rev >= 8) {
  4523. b43_nphy_rf_ctl_override_rev7(dev, 0x8, 0, 0x3,
  4524. false, 0);
  4525. } else if (phy->rev == 7) {
  4526. b43_radio_maskset(dev, R2057_OVR_REG0, 1 << 4, 1 << 4);
  4527. if (b43_current_band(dev->wl) == NL80211_BAND_2GHZ) {
  4528. b43_radio_maskset(dev, R2057_PAD2G_TUNE_PUS_CORE0, ~1, 0);
  4529. b43_radio_maskset(dev, R2057_PAD2G_TUNE_PUS_CORE1, ~1, 0);
  4530. } else {
  4531. b43_radio_maskset(dev, R2057_IPA5G_CASCOFFV_PU_CORE0, ~1, 0);
  4532. b43_radio_maskset(dev, R2057_IPA5G_CASCOFFV_PU_CORE1, ~1, 0);
  4533. }
  4534. }
  4535. }
  4536. } else {
  4537. b43_phy_maskset(dev, B43_NPHY_AFECTL_C1, 0x0FFF, 0xA000);
  4538. b43_phy_maskset(dev, B43_NPHY_AFECTL_C2, 0x0FFF, 0xA000);
  4539. tmp = b43_phy_read(dev, B43_NPHY_AFECTL_OVER);
  4540. regs[2] = tmp;
  4541. b43_phy_write(dev, B43_NPHY_AFECTL_OVER, tmp | 0x3000);
  4542. tmp = b43_ntab_read(dev, B43_NTAB16(8, 2));
  4543. regs[3] = tmp;
  4544. tmp |= 0x2000;
  4545. b43_ntab_write(dev, B43_NTAB16(8, 2), tmp);
  4546. tmp = b43_ntab_read(dev, B43_NTAB16(8, 18));
  4547. regs[4] = tmp;
  4548. tmp |= 0x2000;
  4549. b43_ntab_write(dev, B43_NTAB16(8, 18), tmp);
  4550. regs[5] = b43_phy_read(dev, B43_NPHY_RFCTL_INTC1);
  4551. regs[6] = b43_phy_read(dev, B43_NPHY_RFCTL_INTC2);
  4552. if (b43_current_band(dev->wl) == NL80211_BAND_5GHZ)
  4553. tmp = 0x0180;
  4554. else
  4555. tmp = 0x0120;
  4556. b43_phy_write(dev, B43_NPHY_RFCTL_INTC1, tmp);
  4557. b43_phy_write(dev, B43_NPHY_RFCTL_INTC2, tmp);
  4558. }
  4559. }
  4560. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/SaveCal */
  4561. static void b43_nphy_save_cal(struct b43_wldev *dev)
  4562. {
  4563. struct b43_phy *phy = &dev->phy;
  4564. struct b43_phy_n *nphy = dev->phy.n;
  4565. struct b43_phy_n_iq_comp *rxcal_coeffs = NULL;
  4566. u16 *txcal_radio_regs = NULL;
  4567. struct b43_chanspec *iqcal_chanspec;
  4568. u16 *table = NULL;
  4569. if (nphy->hang_avoid)
  4570. b43_nphy_stay_in_carrier_search(dev, 1);
  4571. if (b43_current_band(dev->wl) == NL80211_BAND_2GHZ) {
  4572. rxcal_coeffs = &nphy->cal_cache.rxcal_coeffs_2G;
  4573. txcal_radio_regs = nphy->cal_cache.txcal_radio_regs_2G;
  4574. iqcal_chanspec = &nphy->iqcal_chanspec_2G;
  4575. table = nphy->cal_cache.txcal_coeffs_2G;
  4576. } else {
  4577. rxcal_coeffs = &nphy->cal_cache.rxcal_coeffs_5G;
  4578. txcal_radio_regs = nphy->cal_cache.txcal_radio_regs_5G;
  4579. iqcal_chanspec = &nphy->iqcal_chanspec_5G;
  4580. table = nphy->cal_cache.txcal_coeffs_5G;
  4581. }
  4582. b43_nphy_rx_iq_coeffs(dev, false, rxcal_coeffs);
  4583. /* TODO use some definitions */
  4584. if (phy->rev >= 19) {
  4585. /* TODO */
  4586. } else if (phy->rev >= 7) {
  4587. txcal_radio_regs[0] = b43_radio_read(dev,
  4588. R2057_TX0_LOFT_FINE_I);
  4589. txcal_radio_regs[1] = b43_radio_read(dev,
  4590. R2057_TX0_LOFT_FINE_Q);
  4591. txcal_radio_regs[4] = b43_radio_read(dev,
  4592. R2057_TX0_LOFT_COARSE_I);
  4593. txcal_radio_regs[5] = b43_radio_read(dev,
  4594. R2057_TX0_LOFT_COARSE_Q);
  4595. txcal_radio_regs[2] = b43_radio_read(dev,
  4596. R2057_TX1_LOFT_FINE_I);
  4597. txcal_radio_regs[3] = b43_radio_read(dev,
  4598. R2057_TX1_LOFT_FINE_Q);
  4599. txcal_radio_regs[6] = b43_radio_read(dev,
  4600. R2057_TX1_LOFT_COARSE_I);
  4601. txcal_radio_regs[7] = b43_radio_read(dev,
  4602. R2057_TX1_LOFT_COARSE_Q);
  4603. } else if (phy->rev >= 3) {
  4604. txcal_radio_regs[0] = b43_radio_read(dev, 0x2021);
  4605. txcal_radio_regs[1] = b43_radio_read(dev, 0x2022);
  4606. txcal_radio_regs[2] = b43_radio_read(dev, 0x3021);
  4607. txcal_radio_regs[3] = b43_radio_read(dev, 0x3022);
  4608. txcal_radio_regs[4] = b43_radio_read(dev, 0x2023);
  4609. txcal_radio_regs[5] = b43_radio_read(dev, 0x2024);
  4610. txcal_radio_regs[6] = b43_radio_read(dev, 0x3023);
  4611. txcal_radio_regs[7] = b43_radio_read(dev, 0x3024);
  4612. } else {
  4613. txcal_radio_regs[0] = b43_radio_read(dev, 0x8B);
  4614. txcal_radio_regs[1] = b43_radio_read(dev, 0xBA);
  4615. txcal_radio_regs[2] = b43_radio_read(dev, 0x8D);
  4616. txcal_radio_regs[3] = b43_radio_read(dev, 0xBC);
  4617. }
  4618. iqcal_chanspec->center_freq = dev->phy.chandef->chan->center_freq;
  4619. iqcal_chanspec->channel_type =
  4620. cfg80211_get_chandef_type(dev->phy.chandef);
  4621. b43_ntab_read_bulk(dev, B43_NTAB16(15, 80), 8, table);
  4622. if (nphy->hang_avoid)
  4623. b43_nphy_stay_in_carrier_search(dev, 0);
  4624. }
  4625. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/RestoreCal */
  4626. static void b43_nphy_restore_cal(struct b43_wldev *dev)
  4627. {
  4628. struct b43_phy *phy = &dev->phy;
  4629. struct b43_phy_n *nphy = dev->phy.n;
  4630. u16 coef[4];
  4631. u16 *loft = NULL;
  4632. u16 *table = NULL;
  4633. int i;
  4634. u16 *txcal_radio_regs = NULL;
  4635. struct b43_phy_n_iq_comp *rxcal_coeffs = NULL;
  4636. if (b43_current_band(dev->wl) == NL80211_BAND_2GHZ) {
  4637. if (!nphy->iqcal_chanspec_2G.center_freq)
  4638. return;
  4639. table = nphy->cal_cache.txcal_coeffs_2G;
  4640. loft = &nphy->cal_cache.txcal_coeffs_2G[5];
  4641. } else {
  4642. if (!nphy->iqcal_chanspec_5G.center_freq)
  4643. return;
  4644. table = nphy->cal_cache.txcal_coeffs_5G;
  4645. loft = &nphy->cal_cache.txcal_coeffs_5G[5];
  4646. }
  4647. b43_ntab_write_bulk(dev, B43_NTAB16(15, 80), 4, table);
  4648. for (i = 0; i < 4; i++) {
  4649. if (dev->phy.rev >= 3)
  4650. coef[i] = table[i];
  4651. else
  4652. coef[i] = 0;
  4653. }
  4654. b43_ntab_write_bulk(dev, B43_NTAB16(15, 88), 4, coef);
  4655. b43_ntab_write_bulk(dev, B43_NTAB16(15, 85), 2, loft);
  4656. b43_ntab_write_bulk(dev, B43_NTAB16(15, 93), 2, loft);
  4657. if (dev->phy.rev < 2)
  4658. b43_nphy_tx_iq_workaround(dev);
  4659. if (b43_current_band(dev->wl) == NL80211_BAND_2GHZ) {
  4660. txcal_radio_regs = nphy->cal_cache.txcal_radio_regs_2G;
  4661. rxcal_coeffs = &nphy->cal_cache.rxcal_coeffs_2G;
  4662. } else {
  4663. txcal_radio_regs = nphy->cal_cache.txcal_radio_regs_5G;
  4664. rxcal_coeffs = &nphy->cal_cache.rxcal_coeffs_5G;
  4665. }
  4666. /* TODO use some definitions */
  4667. if (phy->rev >= 19) {
  4668. /* TODO */
  4669. } else if (phy->rev >= 7) {
  4670. b43_radio_write(dev, R2057_TX0_LOFT_FINE_I,
  4671. txcal_radio_regs[0]);
  4672. b43_radio_write(dev, R2057_TX0_LOFT_FINE_Q,
  4673. txcal_radio_regs[1]);
  4674. b43_radio_write(dev, R2057_TX0_LOFT_COARSE_I,
  4675. txcal_radio_regs[4]);
  4676. b43_radio_write(dev, R2057_TX0_LOFT_COARSE_Q,
  4677. txcal_radio_regs[5]);
  4678. b43_radio_write(dev, R2057_TX1_LOFT_FINE_I,
  4679. txcal_radio_regs[2]);
  4680. b43_radio_write(dev, R2057_TX1_LOFT_FINE_Q,
  4681. txcal_radio_regs[3]);
  4682. b43_radio_write(dev, R2057_TX1_LOFT_COARSE_I,
  4683. txcal_radio_regs[6]);
  4684. b43_radio_write(dev, R2057_TX1_LOFT_COARSE_Q,
  4685. txcal_radio_regs[7]);
  4686. } else if (phy->rev >= 3) {
  4687. b43_radio_write(dev, 0x2021, txcal_radio_regs[0]);
  4688. b43_radio_write(dev, 0x2022, txcal_radio_regs[1]);
  4689. b43_radio_write(dev, 0x3021, txcal_radio_regs[2]);
  4690. b43_radio_write(dev, 0x3022, txcal_radio_regs[3]);
  4691. b43_radio_write(dev, 0x2023, txcal_radio_regs[4]);
  4692. b43_radio_write(dev, 0x2024, txcal_radio_regs[5]);
  4693. b43_radio_write(dev, 0x3023, txcal_radio_regs[6]);
  4694. b43_radio_write(dev, 0x3024, txcal_radio_regs[7]);
  4695. } else {
  4696. b43_radio_write(dev, 0x8B, txcal_radio_regs[0]);
  4697. b43_radio_write(dev, 0xBA, txcal_radio_regs[1]);
  4698. b43_radio_write(dev, 0x8D, txcal_radio_regs[2]);
  4699. b43_radio_write(dev, 0xBC, txcal_radio_regs[3]);
  4700. }
  4701. b43_nphy_rx_iq_coeffs(dev, true, rxcal_coeffs);
  4702. }
  4703. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/CalTxIqlo */
  4704. static int b43_nphy_cal_tx_iq_lo(struct b43_wldev *dev,
  4705. struct nphy_txgains target,
  4706. bool full, bool mphase)
  4707. {
  4708. struct b43_phy *phy = &dev->phy;
  4709. struct b43_phy_n *nphy = dev->phy.n;
  4710. int i;
  4711. int error = 0;
  4712. int freq;
  4713. bool avoid = false;
  4714. u8 length;
  4715. u16 tmp, core, type, count, max, numb, last = 0, cmd;
  4716. const u16 *table;
  4717. bool phy6or5x;
  4718. u16 buffer[11];
  4719. u16 diq_start = 0;
  4720. u16 save[2];
  4721. u16 gain[2];
  4722. struct nphy_iqcal_params params[2];
  4723. bool updated[2] = { };
  4724. b43_nphy_stay_in_carrier_search(dev, true);
  4725. if (dev->phy.rev >= 4) {
  4726. avoid = nphy->hang_avoid;
  4727. nphy->hang_avoid = false;
  4728. }
  4729. b43_ntab_read_bulk(dev, B43_NTAB16(7, 0x110), 2, save);
  4730. for (i = 0; i < 2; i++) {
  4731. b43_nphy_iq_cal_gain_params(dev, i, target, &params[i]);
  4732. gain[i] = params[i].cal_gain;
  4733. }
  4734. b43_ntab_write_bulk(dev, B43_NTAB16(7, 0x110), 2, gain);
  4735. b43_nphy_tx_cal_radio_setup(dev);
  4736. b43_nphy_tx_cal_phy_setup(dev);
  4737. phy6or5x = dev->phy.rev >= 6 ||
  4738. (dev->phy.rev == 5 && nphy->ipa2g_on &&
  4739. b43_current_band(dev->wl) == NL80211_BAND_2GHZ);
  4740. if (phy6or5x) {
  4741. if (b43_is_40mhz(dev)) {
  4742. b43_ntab_write_bulk(dev, B43_NTAB16(15, 0), 18,
  4743. tbl_tx_iqlo_cal_loft_ladder_40);
  4744. b43_ntab_write_bulk(dev, B43_NTAB16(15, 32), 18,
  4745. tbl_tx_iqlo_cal_iqimb_ladder_40);
  4746. } else {
  4747. b43_ntab_write_bulk(dev, B43_NTAB16(15, 0), 18,
  4748. tbl_tx_iqlo_cal_loft_ladder_20);
  4749. b43_ntab_write_bulk(dev, B43_NTAB16(15, 32), 18,
  4750. tbl_tx_iqlo_cal_iqimb_ladder_20);
  4751. }
  4752. }
  4753. if (phy->rev >= 19) {
  4754. /* TODO */
  4755. } else if (phy->rev >= 7) {
  4756. b43_phy_write(dev, B43_NPHY_IQLOCAL_CMDGCTL, 0x8AD9);
  4757. } else {
  4758. b43_phy_write(dev, B43_NPHY_IQLOCAL_CMDGCTL, 0x8AA9);
  4759. }
  4760. if (!b43_is_40mhz(dev))
  4761. freq = 2500;
  4762. else
  4763. freq = 5000;
  4764. if (nphy->mphase_cal_phase_id > 2)
  4765. b43_nphy_run_samples(dev, (b43_is_40mhz(dev) ? 40 : 20) * 8,
  4766. 0xFFFF, 0, true, false, false);
  4767. else
  4768. error = b43_nphy_tx_tone(dev, freq, 250, true, false, false);
  4769. if (error == 0) {
  4770. if (nphy->mphase_cal_phase_id > 2) {
  4771. table = nphy->mphase_txcal_bestcoeffs;
  4772. length = 11;
  4773. if (dev->phy.rev < 3)
  4774. length -= 2;
  4775. } else {
  4776. if (!full && nphy->txiqlocal_coeffsvalid) {
  4777. table = nphy->txiqlocal_bestc;
  4778. length = 11;
  4779. if (dev->phy.rev < 3)
  4780. length -= 2;
  4781. } else {
  4782. full = true;
  4783. if (dev->phy.rev >= 3) {
  4784. table = tbl_tx_iqlo_cal_startcoefs_nphyrev3;
  4785. length = B43_NTAB_TX_IQLO_CAL_STARTCOEFS_REV3;
  4786. } else {
  4787. table = tbl_tx_iqlo_cal_startcoefs;
  4788. length = B43_NTAB_TX_IQLO_CAL_STARTCOEFS;
  4789. }
  4790. }
  4791. }
  4792. b43_ntab_write_bulk(dev, B43_NTAB16(15, 64), length, table);
  4793. if (full) {
  4794. if (dev->phy.rev >= 3)
  4795. max = B43_NTAB_TX_IQLO_CAL_CMDS_FULLCAL_REV3;
  4796. else
  4797. max = B43_NTAB_TX_IQLO_CAL_CMDS_FULLCAL;
  4798. } else {
  4799. if (dev->phy.rev >= 3)
  4800. max = B43_NTAB_TX_IQLO_CAL_CMDS_RECAL_REV3;
  4801. else
  4802. max = B43_NTAB_TX_IQLO_CAL_CMDS_RECAL;
  4803. }
  4804. if (mphase) {
  4805. count = nphy->mphase_txcal_cmdidx;
  4806. numb = min(max,
  4807. (u16)(count + nphy->mphase_txcal_numcmds));
  4808. } else {
  4809. count = 0;
  4810. numb = max;
  4811. }
  4812. for (; count < numb; count++) {
  4813. if (full) {
  4814. if (dev->phy.rev >= 3)
  4815. cmd = tbl_tx_iqlo_cal_cmds_fullcal_nphyrev3[count];
  4816. else
  4817. cmd = tbl_tx_iqlo_cal_cmds_fullcal[count];
  4818. } else {
  4819. if (dev->phy.rev >= 3)
  4820. cmd = tbl_tx_iqlo_cal_cmds_recal_nphyrev3[count];
  4821. else
  4822. cmd = tbl_tx_iqlo_cal_cmds_recal[count];
  4823. }
  4824. core = (cmd & 0x3000) >> 12;
  4825. type = (cmd & 0x0F00) >> 8;
  4826. if (phy6or5x && !updated[core]) {
  4827. b43_nphy_update_tx_cal_ladder(dev, core);
  4828. updated[core] = true;
  4829. }
  4830. tmp = (params[core].ncorr[type] << 8) | 0x66;
  4831. b43_phy_write(dev, B43_NPHY_IQLOCAL_CMDNNUM, tmp);
  4832. if (type == 1 || type == 3 || type == 4) {
  4833. buffer[0] = b43_ntab_read(dev,
  4834. B43_NTAB16(15, 69 + core));
  4835. diq_start = buffer[0];
  4836. buffer[0] = 0;
  4837. b43_ntab_write(dev, B43_NTAB16(15, 69 + core),
  4838. 0);
  4839. }
  4840. b43_phy_write(dev, B43_NPHY_IQLOCAL_CMD, cmd);
  4841. for (i = 0; i < 2000; i++) {
  4842. tmp = b43_phy_read(dev, B43_NPHY_IQLOCAL_CMD);
  4843. if (tmp & 0xC000)
  4844. break;
  4845. udelay(10);
  4846. }
  4847. b43_ntab_read_bulk(dev, B43_NTAB16(15, 96), length,
  4848. buffer);
  4849. b43_ntab_write_bulk(dev, B43_NTAB16(15, 64), length,
  4850. buffer);
  4851. if (type == 1 || type == 3 || type == 4)
  4852. buffer[0] = diq_start;
  4853. }
  4854. if (mphase)
  4855. nphy->mphase_txcal_cmdidx = (numb >= max) ? 0 : numb;
  4856. last = (dev->phy.rev < 3) ? 6 : 7;
  4857. if (!mphase || nphy->mphase_cal_phase_id == last) {
  4858. b43_ntab_write_bulk(dev, B43_NTAB16(15, 96), 4, buffer);
  4859. b43_ntab_read_bulk(dev, B43_NTAB16(15, 80), 4, buffer);
  4860. if (dev->phy.rev < 3) {
  4861. buffer[0] = 0;
  4862. buffer[1] = 0;
  4863. buffer[2] = 0;
  4864. buffer[3] = 0;
  4865. }
  4866. b43_ntab_write_bulk(dev, B43_NTAB16(15, 88), 4,
  4867. buffer);
  4868. b43_ntab_read_bulk(dev, B43_NTAB16(15, 101), 2,
  4869. buffer);
  4870. b43_ntab_write_bulk(dev, B43_NTAB16(15, 85), 2,
  4871. buffer);
  4872. b43_ntab_write_bulk(dev, B43_NTAB16(15, 93), 2,
  4873. buffer);
  4874. length = 11;
  4875. if (dev->phy.rev < 3)
  4876. length -= 2;
  4877. b43_ntab_read_bulk(dev, B43_NTAB16(15, 96), length,
  4878. nphy->txiqlocal_bestc);
  4879. nphy->txiqlocal_coeffsvalid = true;
  4880. nphy->txiqlocal_chanspec.center_freq =
  4881. phy->chandef->chan->center_freq;
  4882. nphy->txiqlocal_chanspec.channel_type =
  4883. cfg80211_get_chandef_type(phy->chandef);
  4884. } else {
  4885. length = 11;
  4886. if (dev->phy.rev < 3)
  4887. length -= 2;
  4888. b43_ntab_read_bulk(dev, B43_NTAB16(15, 96), length,
  4889. nphy->mphase_txcal_bestcoeffs);
  4890. }
  4891. b43_nphy_stop_playback(dev);
  4892. b43_phy_write(dev, B43_NPHY_IQLOCAL_CMDGCTL, 0);
  4893. }
  4894. b43_nphy_tx_cal_phy_cleanup(dev);
  4895. b43_ntab_write_bulk(dev, B43_NTAB16(7, 0x110), 2, save);
  4896. if (dev->phy.rev < 2 && (!mphase || nphy->mphase_cal_phase_id == last))
  4897. b43_nphy_tx_iq_workaround(dev);
  4898. if (dev->phy.rev >= 4)
  4899. nphy->hang_avoid = avoid;
  4900. b43_nphy_stay_in_carrier_search(dev, false);
  4901. return error;
  4902. }
  4903. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/ReapplyTxCalCoeffs */
  4904. static void b43_nphy_reapply_tx_cal_coeffs(struct b43_wldev *dev)
  4905. {
  4906. struct b43_phy_n *nphy = dev->phy.n;
  4907. u8 i;
  4908. u16 buffer[7];
  4909. bool equal = true;
  4910. if (!nphy->txiqlocal_coeffsvalid ||
  4911. nphy->txiqlocal_chanspec.center_freq != dev->phy.chandef->chan->center_freq ||
  4912. nphy->txiqlocal_chanspec.channel_type != cfg80211_get_chandef_type(dev->phy.chandef))
  4913. return;
  4914. b43_ntab_read_bulk(dev, B43_NTAB16(15, 80), 7, buffer);
  4915. for (i = 0; i < 4; i++) {
  4916. if (buffer[i] != nphy->txiqlocal_bestc[i]) {
  4917. equal = false;
  4918. break;
  4919. }
  4920. }
  4921. if (!equal) {
  4922. b43_ntab_write_bulk(dev, B43_NTAB16(15, 80), 4,
  4923. nphy->txiqlocal_bestc);
  4924. for (i = 0; i < 4; i++)
  4925. buffer[i] = 0;
  4926. b43_ntab_write_bulk(dev, B43_NTAB16(15, 88), 4,
  4927. buffer);
  4928. b43_ntab_write_bulk(dev, B43_NTAB16(15, 85), 2,
  4929. &nphy->txiqlocal_bestc[5]);
  4930. b43_ntab_write_bulk(dev, B43_NTAB16(15, 93), 2,
  4931. &nphy->txiqlocal_bestc[5]);
  4932. }
  4933. }
  4934. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/CalRxIqRev2 */
  4935. static int b43_nphy_rev2_cal_rx_iq(struct b43_wldev *dev,
  4936. struct nphy_txgains target, u8 type, bool debug)
  4937. {
  4938. struct b43_phy_n *nphy = dev->phy.n;
  4939. int i, j, index;
  4940. u8 rfctl[2];
  4941. u8 afectl_core;
  4942. u16 tmp[6];
  4943. u16 cur_hpf1, cur_hpf2, cur_lna;
  4944. u32 real, imag;
  4945. enum nl80211_band band;
  4946. u8 use;
  4947. u16 cur_hpf;
  4948. u16 lna[3] = { 3, 3, 1 };
  4949. u16 hpf1[3] = { 7, 2, 0 };
  4950. u16 hpf2[3] = { 2, 0, 0 };
  4951. u32 power[3] = { };
  4952. u16 gain_save[2];
  4953. u16 cal_gain[2];
  4954. struct nphy_iqcal_params cal_params[2];
  4955. struct nphy_iq_est est;
  4956. int ret = 0;
  4957. bool playtone = true;
  4958. int desired = 13;
  4959. b43_nphy_stay_in_carrier_search(dev, 1);
  4960. if (dev->phy.rev < 2)
  4961. b43_nphy_reapply_tx_cal_coeffs(dev);
  4962. b43_ntab_read_bulk(dev, B43_NTAB16(7, 0x110), 2, gain_save);
  4963. for (i = 0; i < 2; i++) {
  4964. b43_nphy_iq_cal_gain_params(dev, i, target, &cal_params[i]);
  4965. cal_gain[i] = cal_params[i].cal_gain;
  4966. }
  4967. b43_ntab_write_bulk(dev, B43_NTAB16(7, 0x110), 2, cal_gain);
  4968. for (i = 0; i < 2; i++) {
  4969. if (i == 0) {
  4970. rfctl[0] = B43_NPHY_RFCTL_INTC1;
  4971. rfctl[1] = B43_NPHY_RFCTL_INTC2;
  4972. afectl_core = B43_NPHY_AFECTL_C1;
  4973. } else {
  4974. rfctl[0] = B43_NPHY_RFCTL_INTC2;
  4975. rfctl[1] = B43_NPHY_RFCTL_INTC1;
  4976. afectl_core = B43_NPHY_AFECTL_C2;
  4977. }
  4978. tmp[1] = b43_phy_read(dev, B43_NPHY_RFSEQCA);
  4979. tmp[2] = b43_phy_read(dev, afectl_core);
  4980. tmp[3] = b43_phy_read(dev, B43_NPHY_AFECTL_OVER);
  4981. tmp[4] = b43_phy_read(dev, rfctl[0]);
  4982. tmp[5] = b43_phy_read(dev, rfctl[1]);
  4983. b43_phy_maskset(dev, B43_NPHY_RFSEQCA,
  4984. ~B43_NPHY_RFSEQCA_RXDIS & 0xFFFF,
  4985. ((1 - i) << B43_NPHY_RFSEQCA_RXDIS_SHIFT));
  4986. b43_phy_maskset(dev, B43_NPHY_RFSEQCA, ~B43_NPHY_RFSEQCA_TXEN,
  4987. (1 - i));
  4988. b43_phy_set(dev, afectl_core, 0x0006);
  4989. b43_phy_set(dev, B43_NPHY_AFECTL_OVER, 0x0006);
  4990. band = b43_current_band(dev->wl);
  4991. if (nphy->rxcalparams & 0xFF000000) {
  4992. if (band == NL80211_BAND_5GHZ)
  4993. b43_phy_write(dev, rfctl[0], 0x140);
  4994. else
  4995. b43_phy_write(dev, rfctl[0], 0x110);
  4996. } else {
  4997. if (band == NL80211_BAND_5GHZ)
  4998. b43_phy_write(dev, rfctl[0], 0x180);
  4999. else
  5000. b43_phy_write(dev, rfctl[0], 0x120);
  5001. }
  5002. if (band == NL80211_BAND_5GHZ)
  5003. b43_phy_write(dev, rfctl[1], 0x148);
  5004. else
  5005. b43_phy_write(dev, rfctl[1], 0x114);
  5006. if (nphy->rxcalparams & 0x10000) {
  5007. b43_radio_maskset(dev, B2055_C1_GENSPARE2, 0xFC,
  5008. (i + 1));
  5009. b43_radio_maskset(dev, B2055_C2_GENSPARE2, 0xFC,
  5010. (2 - i));
  5011. }
  5012. for (j = 0; j < 4; j++) {
  5013. if (j < 3) {
  5014. cur_lna = lna[j];
  5015. cur_hpf1 = hpf1[j];
  5016. cur_hpf2 = hpf2[j];
  5017. } else {
  5018. if (power[1] > 10000) {
  5019. use = 1;
  5020. cur_hpf = cur_hpf1;
  5021. index = 2;
  5022. } else {
  5023. if (power[0] > 10000) {
  5024. use = 1;
  5025. cur_hpf = cur_hpf1;
  5026. index = 1;
  5027. } else {
  5028. index = 0;
  5029. use = 2;
  5030. cur_hpf = cur_hpf2;
  5031. }
  5032. }
  5033. cur_lna = lna[index];
  5034. cur_hpf1 = hpf1[index];
  5035. cur_hpf2 = hpf2[index];
  5036. cur_hpf += desired - hweight32(power[index]);
  5037. cur_hpf = clamp_val(cur_hpf, 0, 10);
  5038. if (use == 1)
  5039. cur_hpf1 = cur_hpf;
  5040. else
  5041. cur_hpf2 = cur_hpf;
  5042. }
  5043. tmp[0] = ((cur_hpf2 << 8) | (cur_hpf1 << 4) |
  5044. (cur_lna << 2));
  5045. b43_nphy_rf_ctl_override(dev, 0x400, tmp[0], 3,
  5046. false);
  5047. b43_nphy_force_rf_sequence(dev, B43_RFSEQ_RESET2RX);
  5048. b43_nphy_stop_playback(dev);
  5049. if (playtone) {
  5050. ret = b43_nphy_tx_tone(dev, 4000,
  5051. (nphy->rxcalparams & 0xFFFF),
  5052. false, false, true);
  5053. playtone = false;
  5054. } else {
  5055. b43_nphy_run_samples(dev, 160, 0xFFFF, 0, false,
  5056. false, true);
  5057. }
  5058. if (ret == 0) {
  5059. if (j < 3) {
  5060. b43_nphy_rx_iq_est(dev, &est, 1024, 32,
  5061. false);
  5062. if (i == 0) {
  5063. real = est.i0_pwr;
  5064. imag = est.q0_pwr;
  5065. } else {
  5066. real = est.i1_pwr;
  5067. imag = est.q1_pwr;
  5068. }
  5069. power[i] = ((real + imag) / 1024) + 1;
  5070. } else {
  5071. b43_nphy_calc_rx_iq_comp(dev, 1 << i);
  5072. }
  5073. b43_nphy_stop_playback(dev);
  5074. }
  5075. if (ret != 0)
  5076. break;
  5077. }
  5078. b43_radio_mask(dev, B2055_C1_GENSPARE2, 0xFC);
  5079. b43_radio_mask(dev, B2055_C2_GENSPARE2, 0xFC);
  5080. b43_phy_write(dev, rfctl[1], tmp[5]);
  5081. b43_phy_write(dev, rfctl[0], tmp[4]);
  5082. b43_phy_write(dev, B43_NPHY_AFECTL_OVER, tmp[3]);
  5083. b43_phy_write(dev, afectl_core, tmp[2]);
  5084. b43_phy_write(dev, B43_NPHY_RFSEQCA, tmp[1]);
  5085. if (ret != 0)
  5086. break;
  5087. }
  5088. b43_nphy_rf_ctl_override(dev, 0x400, 0, 3, true);
  5089. b43_nphy_force_rf_sequence(dev, B43_RFSEQ_RESET2RX);
  5090. b43_ntab_write_bulk(dev, B43_NTAB16(7, 0x110), 2, gain_save);
  5091. b43_nphy_stay_in_carrier_search(dev, 0);
  5092. return ret;
  5093. }
  5094. static int b43_nphy_rev3_cal_rx_iq(struct b43_wldev *dev,
  5095. struct nphy_txgains target, u8 type, bool debug)
  5096. {
  5097. return -1;
  5098. }
  5099. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/CalRxIq */
  5100. static int b43_nphy_cal_rx_iq(struct b43_wldev *dev,
  5101. struct nphy_txgains target, u8 type, bool debug)
  5102. {
  5103. if (dev->phy.rev >= 7)
  5104. type = 0;
  5105. if (dev->phy.rev >= 3)
  5106. return b43_nphy_rev3_cal_rx_iq(dev, target, type, debug);
  5107. else
  5108. return b43_nphy_rev2_cal_rx_iq(dev, target, type, debug);
  5109. }
  5110. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/RxCoreSetState */
  5111. static void b43_nphy_set_rx_core_state(struct b43_wldev *dev, u8 mask)
  5112. {
  5113. struct b43_phy *phy = &dev->phy;
  5114. struct b43_phy_n *nphy = phy->n;
  5115. /* u16 buf[16]; it's rev3+ */
  5116. nphy->phyrxchain = mask;
  5117. if (0 /* FIXME clk */)
  5118. return;
  5119. b43_mac_suspend(dev);
  5120. if (nphy->hang_avoid)
  5121. b43_nphy_stay_in_carrier_search(dev, true);
  5122. b43_phy_maskset(dev, B43_NPHY_RFSEQCA, ~B43_NPHY_RFSEQCA_RXEN,
  5123. (mask & 0x3) << B43_NPHY_RFSEQCA_RXEN_SHIFT);
  5124. if ((mask & 0x3) != 0x3) {
  5125. b43_phy_write(dev, B43_NPHY_HPANT_SWTHRES, 1);
  5126. if (dev->phy.rev >= 3) {
  5127. /* TODO */
  5128. }
  5129. } else {
  5130. b43_phy_write(dev, B43_NPHY_HPANT_SWTHRES, 0x1E);
  5131. if (dev->phy.rev >= 3) {
  5132. /* TODO */
  5133. }
  5134. }
  5135. b43_nphy_force_rf_sequence(dev, B43_RFSEQ_RESET2RX);
  5136. if (nphy->hang_avoid)
  5137. b43_nphy_stay_in_carrier_search(dev, false);
  5138. b43_mac_enable(dev);
  5139. }
  5140. static enum b43_txpwr_result b43_nphy_op_recalc_txpower(struct b43_wldev *dev,
  5141. bool ignore_tssi)
  5142. {
  5143. struct b43_phy *phy = &dev->phy;
  5144. struct b43_phy_n *nphy = dev->phy.n;
  5145. struct ieee80211_channel *channel = dev->wl->hw->conf.chandef.chan;
  5146. struct b43_ppr *ppr = &nphy->tx_pwr_max_ppr;
  5147. u8 max; /* qdBm */
  5148. if (nphy->tx_pwr_last_recalc_freq == channel->center_freq &&
  5149. nphy->tx_pwr_last_recalc_limit == phy->desired_txpower)
  5150. return B43_TXPWR_RES_DONE;
  5151. /* Make sure we have a clean PPR */
  5152. b43_ppr_clear(dev, ppr);
  5153. /* HW limitations */
  5154. b43_ppr_load_max_from_sprom(dev, ppr, B43_BAND_2G);
  5155. /* Regulatory & user settings */
  5156. max = INT_TO_Q52(phy->chandef->chan->max_power);
  5157. if (phy->desired_txpower)
  5158. max = min_t(u8, max, INT_TO_Q52(phy->desired_txpower));
  5159. b43_ppr_apply_max(dev, ppr, max);
  5160. if (b43_debug(dev, B43_DBG_XMITPOWER))
  5161. b43dbg(dev->wl, "Calculated TX power: " Q52_FMT "\n",
  5162. Q52_ARG(b43_ppr_get_max(dev, ppr)));
  5163. /* TODO: Enable this once we get gains working */
  5164. #if 0
  5165. /* Some extra gains */
  5166. hw_gain = 6; /* N-PHY specific */
  5167. if (b43_current_band(dev->wl) == NL80211_BAND_2GHZ)
  5168. hw_gain += sprom->antenna_gain.a0;
  5169. else
  5170. hw_gain += sprom->antenna_gain.a1;
  5171. b43_ppr_add(dev, ppr, -hw_gain);
  5172. #endif
  5173. /* Make sure we didn't go too low */
  5174. b43_ppr_apply_min(dev, ppr, INT_TO_Q52(8));
  5175. /* Apply */
  5176. b43_mac_suspend(dev);
  5177. b43_nphy_tx_power_ctl_setup(dev);
  5178. if (dev->dev->core_rev == 11 || dev->dev->core_rev == 12) {
  5179. b43_maskset32(dev, B43_MMIO_MACCTL, ~0, B43_MACCTL_PHY_LOCK);
  5180. b43_read32(dev, B43_MMIO_MACCTL);
  5181. udelay(1);
  5182. }
  5183. b43_nphy_tx_power_ctrl(dev, nphy->txpwrctrl);
  5184. if (dev->dev->core_rev == 11 || dev->dev->core_rev == 12)
  5185. b43_maskset32(dev, B43_MMIO_MACCTL, ~B43_MACCTL_PHY_LOCK, 0);
  5186. b43_mac_enable(dev);
  5187. nphy->tx_pwr_last_recalc_freq = channel->center_freq;
  5188. nphy->tx_pwr_last_recalc_limit = phy->desired_txpower;
  5189. return B43_TXPWR_RES_DONE;
  5190. }
  5191. /**************************************************
  5192. * N-PHY init
  5193. **************************************************/
  5194. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/MIMOConfig */
  5195. static void b43_nphy_update_mimo_config(struct b43_wldev *dev, s32 preamble)
  5196. {
  5197. u16 mimocfg = b43_phy_read(dev, B43_NPHY_MIMOCFG);
  5198. mimocfg |= B43_NPHY_MIMOCFG_AUTO;
  5199. if (preamble == 1)
  5200. mimocfg |= B43_NPHY_MIMOCFG_GFMIX;
  5201. else
  5202. mimocfg &= ~B43_NPHY_MIMOCFG_GFMIX;
  5203. b43_phy_write(dev, B43_NPHY_MIMOCFG, mimocfg);
  5204. }
  5205. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/BPHYInit */
  5206. static void b43_nphy_bphy_init(struct b43_wldev *dev)
  5207. {
  5208. unsigned int i;
  5209. u16 val;
  5210. val = 0x1E1F;
  5211. for (i = 0; i < 16; i++) {
  5212. b43_phy_write(dev, B43_PHY_N_BMODE(0x88 + i), val);
  5213. val -= 0x202;
  5214. }
  5215. val = 0x3E3F;
  5216. for (i = 0; i < 16; i++) {
  5217. b43_phy_write(dev, B43_PHY_N_BMODE(0x98 + i), val);
  5218. val -= 0x202;
  5219. }
  5220. b43_phy_write(dev, B43_PHY_N_BMODE(0x38), 0x668);
  5221. }
  5222. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/SuperSwitchInit */
  5223. static void b43_nphy_superswitch_init(struct b43_wldev *dev, bool init)
  5224. {
  5225. if (dev->phy.rev >= 7)
  5226. return;
  5227. if (dev->phy.rev >= 3) {
  5228. if (!init)
  5229. return;
  5230. if (0 /* FIXME */) {
  5231. b43_ntab_write(dev, B43_NTAB16(9, 2), 0x211);
  5232. b43_ntab_write(dev, B43_NTAB16(9, 3), 0x222);
  5233. b43_ntab_write(dev, B43_NTAB16(9, 8), 0x144);
  5234. b43_ntab_write(dev, B43_NTAB16(9, 12), 0x188);
  5235. }
  5236. } else {
  5237. b43_phy_write(dev, B43_NPHY_GPIO_LOOEN, 0);
  5238. b43_phy_write(dev, B43_NPHY_GPIO_HIOEN, 0);
  5239. switch (dev->dev->bus_type) {
  5240. #ifdef CONFIG_B43_BCMA
  5241. case B43_BUS_BCMA:
  5242. bcma_chipco_gpio_control(&dev->dev->bdev->bus->drv_cc,
  5243. 0xFC00, 0xFC00);
  5244. break;
  5245. #endif
  5246. #ifdef CONFIG_B43_SSB
  5247. case B43_BUS_SSB:
  5248. ssb_chipco_gpio_control(&dev->dev->sdev->bus->chipco,
  5249. 0xFC00, 0xFC00);
  5250. break;
  5251. #endif
  5252. }
  5253. b43_maskset32(dev, B43_MMIO_MACCTL, ~B43_MACCTL_GPOUTSMSK, 0);
  5254. b43_maskset16(dev, B43_MMIO_GPIO_MASK, ~0, 0xFC00);
  5255. b43_maskset16(dev, B43_MMIO_GPIO_CONTROL, (~0xFC00 & 0xFFFF),
  5256. 0);
  5257. if (init) {
  5258. b43_phy_write(dev, B43_NPHY_RFCTL_LUT_TRSW_LO1, 0x2D8);
  5259. b43_phy_write(dev, B43_NPHY_RFCTL_LUT_TRSW_UP1, 0x301);
  5260. b43_phy_write(dev, B43_NPHY_RFCTL_LUT_TRSW_LO2, 0x2D8);
  5261. b43_phy_write(dev, B43_NPHY_RFCTL_LUT_TRSW_UP2, 0x301);
  5262. }
  5263. }
  5264. }
  5265. /* http://bcm-v4.sipsolutions.net/802.11/PHY/Init/N */
  5266. static int b43_phy_initn(struct b43_wldev *dev)
  5267. {
  5268. struct ssb_sprom *sprom = dev->dev->bus_sprom;
  5269. struct b43_phy *phy = &dev->phy;
  5270. struct b43_phy_n *nphy = phy->n;
  5271. u8 tx_pwr_state;
  5272. struct nphy_txgains target;
  5273. u16 tmp;
  5274. bool do_rssi_cal;
  5275. u16 clip[2];
  5276. bool do_cal = false;
  5277. if ((dev->phy.rev >= 3) &&
  5278. (sprom->boardflags_lo & B43_BFL_EXTLNA) &&
  5279. (b43_current_band(dev->wl) == NL80211_BAND_2GHZ)) {
  5280. switch (dev->dev->bus_type) {
  5281. #ifdef CONFIG_B43_BCMA
  5282. case B43_BUS_BCMA:
  5283. bcma_cc_set32(&dev->dev->bdev->bus->drv_cc,
  5284. BCMA_CC_CHIPCTL, 0x40);
  5285. break;
  5286. #endif
  5287. #ifdef CONFIG_B43_SSB
  5288. case B43_BUS_SSB:
  5289. chipco_set32(&dev->dev->sdev->bus->chipco,
  5290. SSB_CHIPCO_CHIPCTL, 0x40);
  5291. break;
  5292. #endif
  5293. }
  5294. }
  5295. nphy->use_int_tx_iq_lo_cal = b43_nphy_ipa(dev) ||
  5296. phy->rev >= 7 ||
  5297. (phy->rev >= 5 &&
  5298. sprom->boardflags2_hi & B43_BFH2_INTERNDET_TXIQCAL);
  5299. nphy->deaf_count = 0;
  5300. b43_nphy_tables_init(dev);
  5301. nphy->crsminpwr_adjusted = false;
  5302. nphy->noisevars_adjusted = false;
  5303. /* Clear all overrides */
  5304. if (dev->phy.rev >= 3) {
  5305. b43_phy_write(dev, B43_NPHY_TXF_40CO_B1S1, 0);
  5306. b43_phy_write(dev, B43_NPHY_RFCTL_OVER, 0);
  5307. if (phy->rev >= 7) {
  5308. b43_phy_write(dev, B43_NPHY_REV7_RF_CTL_OVER3, 0);
  5309. b43_phy_write(dev, B43_NPHY_REV7_RF_CTL_OVER4, 0);
  5310. b43_phy_write(dev, B43_NPHY_REV7_RF_CTL_OVER5, 0);
  5311. b43_phy_write(dev, B43_NPHY_REV7_RF_CTL_OVER6, 0);
  5312. }
  5313. if (phy->rev >= 19) {
  5314. /* TODO */
  5315. }
  5316. b43_phy_write(dev, B43_NPHY_TXF_40CO_B1S0, 0);
  5317. b43_phy_write(dev, B43_NPHY_TXF_40CO_B32S1, 0);
  5318. } else {
  5319. b43_phy_write(dev, B43_NPHY_RFCTL_OVER, 0);
  5320. }
  5321. b43_phy_write(dev, B43_NPHY_RFCTL_INTC1, 0);
  5322. b43_phy_write(dev, B43_NPHY_RFCTL_INTC2, 0);
  5323. if (dev->phy.rev < 6) {
  5324. b43_phy_write(dev, B43_NPHY_RFCTL_INTC3, 0);
  5325. b43_phy_write(dev, B43_NPHY_RFCTL_INTC4, 0);
  5326. }
  5327. b43_phy_mask(dev, B43_NPHY_RFSEQMODE,
  5328. ~(B43_NPHY_RFSEQMODE_CAOVER |
  5329. B43_NPHY_RFSEQMODE_TROVER));
  5330. if (dev->phy.rev >= 3)
  5331. b43_phy_write(dev, B43_NPHY_AFECTL_OVER1, 0);
  5332. b43_phy_write(dev, B43_NPHY_AFECTL_OVER, 0);
  5333. if (dev->phy.rev <= 2) {
  5334. tmp = (dev->phy.rev == 2) ? 0x3B : 0x40;
  5335. b43_phy_maskset(dev, B43_NPHY_BPHY_CTL3,
  5336. ~B43_NPHY_BPHY_CTL3_SCALE,
  5337. tmp << B43_NPHY_BPHY_CTL3_SCALE_SHIFT);
  5338. }
  5339. b43_phy_write(dev, B43_NPHY_AFESEQ_TX2RX_PUD_20M, 0x20);
  5340. b43_phy_write(dev, B43_NPHY_AFESEQ_TX2RX_PUD_40M, 0x20);
  5341. if (sprom->boardflags2_lo & B43_BFL2_SKWRKFEM_BRD ||
  5342. (dev->dev->board_vendor == PCI_VENDOR_ID_APPLE &&
  5343. dev->dev->board_type == BCMA_BOARD_TYPE_BCM943224M93))
  5344. b43_phy_write(dev, B43_NPHY_TXREALFD, 0xA0);
  5345. else
  5346. b43_phy_write(dev, B43_NPHY_TXREALFD, 0xB8);
  5347. b43_phy_write(dev, B43_NPHY_MIMO_CRSTXEXT, 0xC8);
  5348. b43_phy_write(dev, B43_NPHY_PLOAD_CSENSE_EXTLEN, 0x50);
  5349. b43_phy_write(dev, B43_NPHY_TXRIFS_FRDEL, 0x30);
  5350. if (phy->rev < 8)
  5351. b43_nphy_update_mimo_config(dev, nphy->preamble_override);
  5352. b43_nphy_update_txrx_chain(dev);
  5353. if (phy->rev < 2) {
  5354. b43_phy_write(dev, B43_NPHY_DUP40_GFBL, 0xAA8);
  5355. b43_phy_write(dev, B43_NPHY_DUP40_BL, 0x9A4);
  5356. }
  5357. if (b43_nphy_ipa(dev)) {
  5358. b43_phy_set(dev, B43_NPHY_PAPD_EN0, 0x1);
  5359. b43_phy_maskset(dev, B43_NPHY_EPS_TABLE_ADJ0, 0x007F,
  5360. nphy->papd_epsilon_offset[0] << 7);
  5361. b43_phy_set(dev, B43_NPHY_PAPD_EN1, 0x1);
  5362. b43_phy_maskset(dev, B43_NPHY_EPS_TABLE_ADJ1, 0x007F,
  5363. nphy->papd_epsilon_offset[1] << 7);
  5364. b43_nphy_int_pa_set_tx_dig_filters(dev);
  5365. } else if (phy->rev >= 5) {
  5366. b43_nphy_ext_pa_set_tx_dig_filters(dev);
  5367. }
  5368. b43_nphy_workarounds(dev);
  5369. /* Reset CCA, in init code it differs a little from standard way */
  5370. b43_phy_force_clock(dev, 1);
  5371. tmp = b43_phy_read(dev, B43_NPHY_BBCFG);
  5372. b43_phy_write(dev, B43_NPHY_BBCFG, tmp | B43_NPHY_BBCFG_RSTCCA);
  5373. b43_phy_write(dev, B43_NPHY_BBCFG, tmp & ~B43_NPHY_BBCFG_RSTCCA);
  5374. b43_phy_force_clock(dev, 0);
  5375. b43_mac_phy_clock_set(dev, true);
  5376. if (phy->rev < 7) {
  5377. b43_nphy_pa_override(dev, false);
  5378. b43_nphy_force_rf_sequence(dev, B43_RFSEQ_RX2TX);
  5379. b43_nphy_force_rf_sequence(dev, B43_RFSEQ_RESET2RX);
  5380. b43_nphy_pa_override(dev, true);
  5381. }
  5382. b43_nphy_classifier(dev, 0, 0);
  5383. b43_nphy_read_clip_detection(dev, clip);
  5384. if (b43_current_band(dev->wl) == NL80211_BAND_2GHZ)
  5385. b43_nphy_bphy_init(dev);
  5386. tx_pwr_state = nphy->txpwrctrl;
  5387. b43_nphy_tx_power_ctrl(dev, false);
  5388. b43_nphy_tx_power_fix(dev);
  5389. b43_nphy_tx_power_ctl_idle_tssi(dev);
  5390. b43_nphy_tx_power_ctl_setup(dev);
  5391. b43_nphy_tx_gain_table_upload(dev);
  5392. if (nphy->phyrxchain != 3)
  5393. b43_nphy_set_rx_core_state(dev, nphy->phyrxchain);
  5394. if (nphy->mphase_cal_phase_id > 0) {
  5395. ;/* TODO PHY Periodic Calibration Multi-Phase Restart */
  5396. }
  5397. do_rssi_cal = false;
  5398. if (phy->rev >= 3) {
  5399. if (b43_current_band(dev->wl) == NL80211_BAND_2GHZ)
  5400. do_rssi_cal = !nphy->rssical_chanspec_2G.center_freq;
  5401. else
  5402. do_rssi_cal = !nphy->rssical_chanspec_5G.center_freq;
  5403. if (do_rssi_cal)
  5404. b43_nphy_rssi_cal(dev);
  5405. else
  5406. b43_nphy_restore_rssi_cal(dev);
  5407. } else {
  5408. b43_nphy_rssi_cal(dev);
  5409. }
  5410. if (!((nphy->measure_hold & 0x6) != 0)) {
  5411. if (b43_current_band(dev->wl) == NL80211_BAND_2GHZ)
  5412. do_cal = !nphy->iqcal_chanspec_2G.center_freq;
  5413. else
  5414. do_cal = !nphy->iqcal_chanspec_5G.center_freq;
  5415. if (nphy->mute)
  5416. do_cal = false;
  5417. if (do_cal) {
  5418. target = b43_nphy_get_tx_gains(dev);
  5419. if (nphy->antsel_type == 2)
  5420. b43_nphy_superswitch_init(dev, true);
  5421. if (nphy->perical != 2) {
  5422. b43_nphy_rssi_cal(dev);
  5423. if (phy->rev >= 3) {
  5424. nphy->cal_orig_pwr_idx[0] =
  5425. nphy->txpwrindex[0].index_internal;
  5426. nphy->cal_orig_pwr_idx[1] =
  5427. nphy->txpwrindex[1].index_internal;
  5428. /* TODO N PHY Pre Calibrate TX Gain */
  5429. target = b43_nphy_get_tx_gains(dev);
  5430. }
  5431. if (!b43_nphy_cal_tx_iq_lo(dev, target, true, false))
  5432. if (b43_nphy_cal_rx_iq(dev, target, 2, 0) == 0)
  5433. b43_nphy_save_cal(dev);
  5434. } else if (nphy->mphase_cal_phase_id == 0) {
  5435. ;/* N PHY Periodic Calibration with arg 3 */
  5436. }
  5437. } else {
  5438. b43_nphy_restore_cal(dev);
  5439. }
  5440. }
  5441. b43_nphy_tx_pwr_ctrl_coef_setup(dev);
  5442. b43_nphy_tx_power_ctrl(dev, tx_pwr_state);
  5443. b43_phy_write(dev, B43_NPHY_TXMACIF_HOLDOFF, 0x0015);
  5444. b43_phy_write(dev, B43_NPHY_TXMACDELAY, 0x0320);
  5445. if (phy->rev >= 3 && phy->rev <= 6)
  5446. b43_phy_write(dev, B43_NPHY_PLOAD_CSENSE_EXTLEN, 0x0032);
  5447. b43_nphy_tx_lpf_bw(dev);
  5448. if (phy->rev >= 3)
  5449. b43_nphy_spur_workaround(dev);
  5450. return 0;
  5451. }
  5452. /**************************************************
  5453. * Channel switching ops.
  5454. **************************************************/
  5455. static void b43_chantab_phy_upload(struct b43_wldev *dev,
  5456. const struct b43_phy_n_sfo_cfg *e)
  5457. {
  5458. b43_phy_write(dev, B43_NPHY_BW1A, e->phy_bw1a);
  5459. b43_phy_write(dev, B43_NPHY_BW2, e->phy_bw2);
  5460. b43_phy_write(dev, B43_NPHY_BW3, e->phy_bw3);
  5461. b43_phy_write(dev, B43_NPHY_BW4, e->phy_bw4);
  5462. b43_phy_write(dev, B43_NPHY_BW5, e->phy_bw5);
  5463. b43_phy_write(dev, B43_NPHY_BW6, e->phy_bw6);
  5464. }
  5465. /* https://bcm-v4.sipsolutions.net/802.11/PmuSpurAvoid */
  5466. static void b43_nphy_pmu_spur_avoid(struct b43_wldev *dev, bool avoid)
  5467. {
  5468. switch (dev->dev->bus_type) {
  5469. #ifdef CONFIG_B43_BCMA
  5470. case B43_BUS_BCMA:
  5471. bcma_pmu_spuravoid_pllupdate(&dev->dev->bdev->bus->drv_cc,
  5472. avoid);
  5473. break;
  5474. #endif
  5475. #ifdef CONFIG_B43_SSB
  5476. case B43_BUS_SSB:
  5477. ssb_pmu_spuravoid_pllupdate(&dev->dev->sdev->bus->chipco,
  5478. avoid);
  5479. break;
  5480. #endif
  5481. }
  5482. }
  5483. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/ChanspecSetup */
  5484. static void b43_nphy_channel_setup(struct b43_wldev *dev,
  5485. const struct b43_phy_n_sfo_cfg *e,
  5486. struct ieee80211_channel *new_channel)
  5487. {
  5488. struct b43_phy *phy = &dev->phy;
  5489. struct b43_phy_n *nphy = dev->phy.n;
  5490. int ch = new_channel->hw_value;
  5491. u16 tmp16;
  5492. if (new_channel->band == NL80211_BAND_5GHZ) {
  5493. /* Switch to 2 GHz for a moment to access B43_PHY_B_BBCFG */
  5494. b43_phy_mask(dev, B43_NPHY_BANDCTL, ~B43_NPHY_BANDCTL_5GHZ);
  5495. tmp16 = b43_read16(dev, B43_MMIO_PSM_PHY_HDR);
  5496. b43_write16(dev, B43_MMIO_PSM_PHY_HDR, tmp16 | 4);
  5497. /* Put BPHY in the reset */
  5498. b43_phy_set(dev, B43_PHY_B_BBCFG,
  5499. B43_PHY_B_BBCFG_RSTCCA | B43_PHY_B_BBCFG_RSTRX);
  5500. b43_write16(dev, B43_MMIO_PSM_PHY_HDR, tmp16);
  5501. b43_phy_set(dev, B43_NPHY_BANDCTL, B43_NPHY_BANDCTL_5GHZ);
  5502. } else if (new_channel->band == NL80211_BAND_2GHZ) {
  5503. b43_phy_mask(dev, B43_NPHY_BANDCTL, ~B43_NPHY_BANDCTL_5GHZ);
  5504. tmp16 = b43_read16(dev, B43_MMIO_PSM_PHY_HDR);
  5505. b43_write16(dev, B43_MMIO_PSM_PHY_HDR, tmp16 | 4);
  5506. /* Take BPHY out of the reset */
  5507. b43_phy_mask(dev, B43_PHY_B_BBCFG,
  5508. ~(B43_PHY_B_BBCFG_RSTCCA | B43_PHY_B_BBCFG_RSTRX) & 0xffff);
  5509. b43_write16(dev, B43_MMIO_PSM_PHY_HDR, tmp16);
  5510. }
  5511. b43_chantab_phy_upload(dev, e);
  5512. if (new_channel->hw_value == 14) {
  5513. b43_nphy_classifier(dev, 2, 0);
  5514. b43_phy_set(dev, B43_PHY_B_TEST, 0x0800);
  5515. } else {
  5516. b43_nphy_classifier(dev, 2, 2);
  5517. if (new_channel->band == NL80211_BAND_2GHZ)
  5518. b43_phy_mask(dev, B43_PHY_B_TEST, ~0x840);
  5519. }
  5520. if (!nphy->txpwrctrl)
  5521. b43_nphy_tx_power_fix(dev);
  5522. if (dev->phy.rev < 3)
  5523. b43_nphy_adjust_lna_gain_table(dev);
  5524. b43_nphy_tx_lpf_bw(dev);
  5525. if (dev->phy.rev >= 3 &&
  5526. dev->phy.n->spur_avoid != B43_SPUR_AVOID_DISABLE) {
  5527. u8 spuravoid = 0;
  5528. if (dev->phy.n->spur_avoid == B43_SPUR_AVOID_FORCE) {
  5529. spuravoid = 1;
  5530. } else if (phy->rev >= 19) {
  5531. /* TODO */
  5532. } else if (phy->rev >= 18) {
  5533. /* TODO */
  5534. } else if (phy->rev >= 17) {
  5535. /* TODO: Off for channels 1-11, but check 12-14! */
  5536. } else if (phy->rev >= 16) {
  5537. /* TODO: Off for 2 GHz, but check 5 GHz! */
  5538. } else if (phy->rev >= 7) {
  5539. if (!b43_is_40mhz(dev)) { /* 20MHz */
  5540. if (ch == 13 || ch == 14 || ch == 153)
  5541. spuravoid = 1;
  5542. } else { /* 40 MHz */
  5543. if (ch == 54)
  5544. spuravoid = 1;
  5545. }
  5546. } else {
  5547. if (!b43_is_40mhz(dev)) { /* 20MHz */
  5548. if ((ch >= 5 && ch <= 8) || ch == 13 || ch == 14)
  5549. spuravoid = 1;
  5550. } else { /* 40MHz */
  5551. if (nphy->aband_spurwar_en &&
  5552. (ch == 38 || ch == 102 || ch == 118))
  5553. spuravoid = dev->dev->chip_id == 0x4716;
  5554. }
  5555. }
  5556. b43_nphy_pmu_spur_avoid(dev, spuravoid);
  5557. b43_mac_switch_freq(dev, spuravoid);
  5558. if (dev->phy.rev == 3 || dev->phy.rev == 4)
  5559. b43_wireless_core_phy_pll_reset(dev);
  5560. if (spuravoid)
  5561. b43_phy_set(dev, B43_NPHY_BBCFG, B43_NPHY_BBCFG_RSTRX);
  5562. else
  5563. b43_phy_mask(dev, B43_NPHY_BBCFG,
  5564. ~B43_NPHY_BBCFG_RSTRX & 0xFFFF);
  5565. b43_nphy_reset_cca(dev);
  5566. /* wl sets useless phy_isspuravoid here */
  5567. }
  5568. b43_phy_write(dev, B43_NPHY_NDATAT_DUP40, 0x3830);
  5569. if (phy->rev >= 3)
  5570. b43_nphy_spur_workaround(dev);
  5571. }
  5572. /* https://bcm-v4.sipsolutions.net/802.11/PHY/N/SetChanspec */
  5573. static int b43_nphy_set_channel(struct b43_wldev *dev,
  5574. struct ieee80211_channel *channel,
  5575. enum nl80211_channel_type channel_type)
  5576. {
  5577. struct b43_phy *phy = &dev->phy;
  5578. const struct b43_nphy_channeltab_entry_rev2 *tabent_r2 = NULL;
  5579. const struct b43_nphy_channeltab_entry_rev3 *tabent_r3 = NULL;
  5580. const struct b43_nphy_chantabent_rev7 *tabent_r7 = NULL;
  5581. const struct b43_nphy_chantabent_rev7_2g *tabent_r7_2g = NULL;
  5582. u8 tmp;
  5583. if (phy->rev >= 19) {
  5584. return -ESRCH;
  5585. /* TODO */
  5586. } else if (phy->rev >= 7) {
  5587. r2057_get_chantabent_rev7(dev, channel->center_freq,
  5588. &tabent_r7, &tabent_r7_2g);
  5589. if (!tabent_r7 && !tabent_r7_2g)
  5590. return -ESRCH;
  5591. } else if (phy->rev >= 3) {
  5592. tabent_r3 = b43_nphy_get_chantabent_rev3(dev,
  5593. channel->center_freq);
  5594. if (!tabent_r3)
  5595. return -ESRCH;
  5596. } else {
  5597. tabent_r2 = b43_nphy_get_chantabent_rev2(dev,
  5598. channel->hw_value);
  5599. if (!tabent_r2)
  5600. return -ESRCH;
  5601. }
  5602. /* Channel is set later in common code, but we need to set it on our
  5603. own to let this function's subcalls work properly. */
  5604. phy->channel = channel->hw_value;
  5605. #if 0
  5606. if (b43_channel_type_is_40mhz(phy->channel_type) !=
  5607. b43_channel_type_is_40mhz(channel_type))
  5608. ; /* TODO: BMAC BW Set (channel_type) */
  5609. #endif
  5610. if (channel_type == NL80211_CHAN_HT40PLUS) {
  5611. b43_phy_set(dev, B43_NPHY_RXCTL, B43_NPHY_RXCTL_BSELU20);
  5612. if (phy->rev >= 7)
  5613. b43_phy_set(dev, 0x310, 0x8000);
  5614. } else if (channel_type == NL80211_CHAN_HT40MINUS) {
  5615. b43_phy_mask(dev, B43_NPHY_RXCTL, ~B43_NPHY_RXCTL_BSELU20);
  5616. if (phy->rev >= 7)
  5617. b43_phy_mask(dev, 0x310, 0x7fff);
  5618. }
  5619. if (phy->rev >= 19) {
  5620. /* TODO */
  5621. } else if (phy->rev >= 7) {
  5622. const struct b43_phy_n_sfo_cfg *phy_regs = tabent_r7 ?
  5623. &(tabent_r7->phy_regs) : &(tabent_r7_2g->phy_regs);
  5624. if (phy->radio_rev <= 4 || phy->radio_rev == 6) {
  5625. tmp = (channel->band == NL80211_BAND_5GHZ) ? 2 : 0;
  5626. b43_radio_maskset(dev, R2057_TIA_CONFIG_CORE0, ~2, tmp);
  5627. b43_radio_maskset(dev, R2057_TIA_CONFIG_CORE1, ~2, tmp);
  5628. }
  5629. b43_radio_2057_setup(dev, tabent_r7, tabent_r7_2g);
  5630. b43_nphy_channel_setup(dev, phy_regs, channel);
  5631. } else if (phy->rev >= 3) {
  5632. tmp = (channel->band == NL80211_BAND_5GHZ) ? 4 : 0;
  5633. b43_radio_maskset(dev, 0x08, 0xFFFB, tmp);
  5634. b43_radio_2056_setup(dev, tabent_r3);
  5635. b43_nphy_channel_setup(dev, &(tabent_r3->phy_regs), channel);
  5636. } else {
  5637. tmp = (channel->band == NL80211_BAND_5GHZ) ? 0x0020 : 0x0050;
  5638. b43_radio_maskset(dev, B2055_MASTER1, 0xFF8F, tmp);
  5639. b43_radio_2055_setup(dev, tabent_r2);
  5640. b43_nphy_channel_setup(dev, &(tabent_r2->phy_regs), channel);
  5641. }
  5642. return 0;
  5643. }
  5644. /**************************************************
  5645. * Basic PHY ops.
  5646. **************************************************/
  5647. static int b43_nphy_op_allocate(struct b43_wldev *dev)
  5648. {
  5649. struct b43_phy_n *nphy;
  5650. nphy = kzalloc(sizeof(*nphy), GFP_KERNEL);
  5651. if (!nphy)
  5652. return -ENOMEM;
  5653. dev->phy.n = nphy;
  5654. return 0;
  5655. }
  5656. static void b43_nphy_op_prepare_structs(struct b43_wldev *dev)
  5657. {
  5658. struct b43_phy *phy = &dev->phy;
  5659. struct b43_phy_n *nphy = phy->n;
  5660. struct ssb_sprom *sprom = dev->dev->bus_sprom;
  5661. memset(nphy, 0, sizeof(*nphy));
  5662. nphy->hang_avoid = (phy->rev == 3 || phy->rev == 4);
  5663. nphy->spur_avoid = (phy->rev >= 3) ?
  5664. B43_SPUR_AVOID_AUTO : B43_SPUR_AVOID_DISABLE;
  5665. nphy->gain_boost = true; /* this way we follow wl, assume it is true */
  5666. nphy->txrx_chain = 2; /* sth different than 0 and 1 for now */
  5667. nphy->phyrxchain = 3; /* to avoid b43_nphy_set_rx_core_state like wl */
  5668. nphy->perical = 2; /* avoid additional rssi cal on init (like wl) */
  5669. /* 128 can mean disabled-by-default state of TX pwr ctl. Max value is
  5670. * 0x7f == 127 and we check for 128 when restoring TX pwr ctl. */
  5671. nphy->tx_pwr_idx[0] = 128;
  5672. nphy->tx_pwr_idx[1] = 128;
  5673. /* Hardware TX power control and 5GHz power gain */
  5674. nphy->txpwrctrl = false;
  5675. nphy->pwg_gain_5ghz = false;
  5676. if (dev->phy.rev >= 3 ||
  5677. (dev->dev->board_vendor == PCI_VENDOR_ID_APPLE &&
  5678. (dev->dev->core_rev == 11 || dev->dev->core_rev == 12))) {
  5679. nphy->txpwrctrl = true;
  5680. nphy->pwg_gain_5ghz = true;
  5681. } else if (sprom->revision >= 4) {
  5682. if (dev->phy.rev >= 2 &&
  5683. (sprom->boardflags2_lo & B43_BFL2_TXPWRCTRL_EN)) {
  5684. nphy->txpwrctrl = true;
  5685. #ifdef CONFIG_B43_SSB
  5686. if (dev->dev->bus_type == B43_BUS_SSB &&
  5687. dev->dev->sdev->bus->bustype == SSB_BUSTYPE_PCI) {
  5688. struct pci_dev *pdev =
  5689. dev->dev->sdev->bus->host_pci;
  5690. if (pdev->device == 0x4328 ||
  5691. pdev->device == 0x432a)
  5692. nphy->pwg_gain_5ghz = true;
  5693. }
  5694. #endif
  5695. } else if (sprom->boardflags2_lo & B43_BFL2_5G_PWRGAIN) {
  5696. nphy->pwg_gain_5ghz = true;
  5697. }
  5698. }
  5699. if (dev->phy.rev >= 3) {
  5700. nphy->ipa2g_on = sprom->fem.ghz2.extpa_gain == 2;
  5701. nphy->ipa5g_on = sprom->fem.ghz5.extpa_gain == 2;
  5702. }
  5703. }
  5704. static void b43_nphy_op_free(struct b43_wldev *dev)
  5705. {
  5706. struct b43_phy *phy = &dev->phy;
  5707. struct b43_phy_n *nphy = phy->n;
  5708. kfree(nphy);
  5709. phy->n = NULL;
  5710. }
  5711. static int b43_nphy_op_init(struct b43_wldev *dev)
  5712. {
  5713. return b43_phy_initn(dev);
  5714. }
  5715. static inline void check_phyreg(struct b43_wldev *dev, u16 offset)
  5716. {
  5717. #if B43_DEBUG
  5718. if ((offset & B43_PHYROUTE) == B43_PHYROUTE_OFDM_GPHY) {
  5719. /* OFDM registers are onnly available on A/G-PHYs */
  5720. b43err(dev->wl, "Invalid OFDM PHY access at "
  5721. "0x%04X on N-PHY\n", offset);
  5722. dump_stack();
  5723. }
  5724. if ((offset & B43_PHYROUTE) == B43_PHYROUTE_EXT_GPHY) {
  5725. /* Ext-G registers are only available on G-PHYs */
  5726. b43err(dev->wl, "Invalid EXT-G PHY access at "
  5727. "0x%04X on N-PHY\n", offset);
  5728. dump_stack();
  5729. }
  5730. #endif /* B43_DEBUG */
  5731. }
  5732. static void b43_nphy_op_maskset(struct b43_wldev *dev, u16 reg, u16 mask,
  5733. u16 set)
  5734. {
  5735. check_phyreg(dev, reg);
  5736. b43_write16f(dev, B43_MMIO_PHY_CONTROL, reg);
  5737. b43_maskset16(dev, B43_MMIO_PHY_DATA, mask, set);
  5738. dev->phy.writes_counter = 1;
  5739. }
  5740. static u16 b43_nphy_op_radio_read(struct b43_wldev *dev, u16 reg)
  5741. {
  5742. /* Register 1 is a 32-bit register. */
  5743. B43_WARN_ON(dev->phy.rev < 7 && reg == 1);
  5744. if (dev->phy.rev >= 7)
  5745. reg |= 0x200; /* Radio 0x2057 */
  5746. else
  5747. reg |= 0x100;
  5748. b43_write16f(dev, B43_MMIO_RADIO_CONTROL, reg);
  5749. return b43_read16(dev, B43_MMIO_RADIO_DATA_LOW);
  5750. }
  5751. static void b43_nphy_op_radio_write(struct b43_wldev *dev, u16 reg, u16 value)
  5752. {
  5753. /* Register 1 is a 32-bit register. */
  5754. B43_WARN_ON(dev->phy.rev < 7 && reg == 1);
  5755. b43_write16f(dev, B43_MMIO_RADIO_CONTROL, reg);
  5756. b43_write16(dev, B43_MMIO_RADIO_DATA_LOW, value);
  5757. }
  5758. /* https://bcm-v4.sipsolutions.net/802.11/Radio/Switch%20Radio */
  5759. static void b43_nphy_op_software_rfkill(struct b43_wldev *dev,
  5760. bool blocked)
  5761. {
  5762. struct b43_phy *phy = &dev->phy;
  5763. if (b43_read32(dev, B43_MMIO_MACCTL) & B43_MACCTL_ENABLED)
  5764. b43err(dev->wl, "MAC not suspended\n");
  5765. if (blocked) {
  5766. if (phy->rev >= 19) {
  5767. /* TODO */
  5768. } else if (phy->rev >= 8) {
  5769. b43_phy_mask(dev, B43_NPHY_RFCTL_CMD,
  5770. ~B43_NPHY_RFCTL_CMD_CHIP0PU);
  5771. } else if (phy->rev >= 7) {
  5772. /* Nothing needed */
  5773. } else if (phy->rev >= 3) {
  5774. b43_phy_mask(dev, B43_NPHY_RFCTL_CMD,
  5775. ~B43_NPHY_RFCTL_CMD_CHIP0PU);
  5776. b43_radio_mask(dev, 0x09, ~0x2);
  5777. b43_radio_write(dev, 0x204D, 0);
  5778. b43_radio_write(dev, 0x2053, 0);
  5779. b43_radio_write(dev, 0x2058, 0);
  5780. b43_radio_write(dev, 0x205E, 0);
  5781. b43_radio_mask(dev, 0x2062, ~0xF0);
  5782. b43_radio_write(dev, 0x2064, 0);
  5783. b43_radio_write(dev, 0x304D, 0);
  5784. b43_radio_write(dev, 0x3053, 0);
  5785. b43_radio_write(dev, 0x3058, 0);
  5786. b43_radio_write(dev, 0x305E, 0);
  5787. b43_radio_mask(dev, 0x3062, ~0xF0);
  5788. b43_radio_write(dev, 0x3064, 0);
  5789. }
  5790. } else {
  5791. if (phy->rev >= 19) {
  5792. /* TODO */
  5793. } else if (phy->rev >= 7) {
  5794. if (!dev->phy.radio_on)
  5795. b43_radio_2057_init(dev);
  5796. b43_switch_channel(dev, dev->phy.channel);
  5797. } else if (phy->rev >= 3) {
  5798. if (!dev->phy.radio_on)
  5799. b43_radio_init2056(dev);
  5800. b43_switch_channel(dev, dev->phy.channel);
  5801. } else {
  5802. b43_radio_init2055(dev);
  5803. }
  5804. }
  5805. }
  5806. /* https://bcm-v4.sipsolutions.net/802.11/PHY/Anacore */
  5807. static void b43_nphy_op_switch_analog(struct b43_wldev *dev, bool on)
  5808. {
  5809. struct b43_phy *phy = &dev->phy;
  5810. u16 override = on ? 0x0 : 0x7FFF;
  5811. u16 core = on ? 0xD : 0x00FD;
  5812. if (phy->rev >= 19) {
  5813. /* TODO */
  5814. } else if (phy->rev >= 3) {
  5815. if (on) {
  5816. b43_phy_write(dev, B43_NPHY_AFECTL_C1, core);
  5817. b43_phy_write(dev, B43_NPHY_AFECTL_OVER1, override);
  5818. b43_phy_write(dev, B43_NPHY_AFECTL_C2, core);
  5819. b43_phy_write(dev, B43_NPHY_AFECTL_OVER, override);
  5820. } else {
  5821. b43_phy_write(dev, B43_NPHY_AFECTL_OVER1, override);
  5822. b43_phy_write(dev, B43_NPHY_AFECTL_C1, core);
  5823. b43_phy_write(dev, B43_NPHY_AFECTL_OVER, override);
  5824. b43_phy_write(dev, B43_NPHY_AFECTL_C2, core);
  5825. }
  5826. } else {
  5827. b43_phy_write(dev, B43_NPHY_AFECTL_OVER, override);
  5828. }
  5829. }
  5830. static int b43_nphy_op_switch_channel(struct b43_wldev *dev,
  5831. unsigned int new_channel)
  5832. {
  5833. struct ieee80211_channel *channel = dev->wl->hw->conf.chandef.chan;
  5834. enum nl80211_channel_type channel_type =
  5835. cfg80211_get_chandef_type(&dev->wl->hw->conf.chandef);
  5836. if (b43_current_band(dev->wl) == NL80211_BAND_2GHZ) {
  5837. if ((new_channel < 1) || (new_channel > 14))
  5838. return -EINVAL;
  5839. } else {
  5840. if (new_channel > 200)
  5841. return -EINVAL;
  5842. }
  5843. return b43_nphy_set_channel(dev, channel, channel_type);
  5844. }
  5845. static unsigned int b43_nphy_op_get_default_chan(struct b43_wldev *dev)
  5846. {
  5847. if (b43_current_band(dev->wl) == NL80211_BAND_2GHZ)
  5848. return 1;
  5849. return 36;
  5850. }
  5851. const struct b43_phy_operations b43_phyops_n = {
  5852. .allocate = b43_nphy_op_allocate,
  5853. .free = b43_nphy_op_free,
  5854. .prepare_structs = b43_nphy_op_prepare_structs,
  5855. .init = b43_nphy_op_init,
  5856. .phy_maskset = b43_nphy_op_maskset,
  5857. .radio_read = b43_nphy_op_radio_read,
  5858. .radio_write = b43_nphy_op_radio_write,
  5859. .software_rfkill = b43_nphy_op_software_rfkill,
  5860. .switch_analog = b43_nphy_op_switch_analog,
  5861. .switch_channel = b43_nphy_op_switch_channel,
  5862. .get_default_chan = b43_nphy_op_get_default_chan,
  5863. .recalc_txpower = b43_nphy_op_recalc_txpower,
  5864. };