fmdrv_rx.c 20 KB

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  1. /*
  2. * FM Driver for Connectivity chip of Texas Instruments.
  3. * This sub-module of FM driver implements FM RX functionality.
  4. *
  5. * Copyright (C) 2011 Texas Instruments
  6. * Author: Raja Mani <raja_mani@ti.com>
  7. * Author: Manjunatha Halli <manjunatha_halli@ti.com>
  8. *
  9. * This program is free software; you can redistribute it and/or modify
  10. * it under the terms of the GNU General Public License version 2 as
  11. * published by the Free Software Foundation.
  12. *
  13. * This program is distributed in the hope that it will be useful,
  14. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  15. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  16. * GNU General Public License for more details.
  17. *
  18. * You should have received a copy of the GNU General Public License
  19. * along with this program; if not, write to the Free Software
  20. * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
  21. *
  22. */
  23. #include "fmdrv.h"
  24. #include "fmdrv_common.h"
  25. #include "fmdrv_rx.h"
  26. void fm_rx_reset_rds_cache(struct fmdev *fmdev)
  27. {
  28. fmdev->rx.rds.flag = FM_RDS_DISABLE;
  29. fmdev->rx.rds.last_blk_idx = 0;
  30. fmdev->rx.rds.wr_idx = 0;
  31. fmdev->rx.rds.rd_idx = 0;
  32. if (fmdev->rx.af_mode == FM_RX_RDS_AF_SWITCH_MODE_ON)
  33. fmdev->irq_info.mask |= FM_LEV_EVENT;
  34. }
  35. void fm_rx_reset_station_info(struct fmdev *fmdev)
  36. {
  37. fmdev->rx.stat_info.picode = FM_NO_PI_CODE;
  38. fmdev->rx.stat_info.afcache_size = 0;
  39. fmdev->rx.stat_info.af_list_max = 0;
  40. }
  41. u32 fm_rx_set_freq(struct fmdev *fmdev, u32 freq)
  42. {
  43. unsigned long timeleft;
  44. u16 payload, curr_frq, intr_flag;
  45. u32 curr_frq_in_khz;
  46. u32 ret, resp_len;
  47. if (freq < fmdev->rx.region.bot_freq || freq > fmdev->rx.region.top_freq) {
  48. fmerr("Invalid frequency %d\n", freq);
  49. return -EINVAL;
  50. }
  51. /* Set audio enable */
  52. payload = FM_RX_AUDIO_ENABLE_I2S_AND_ANALOG;
  53. ret = fmc_send_cmd(fmdev, AUDIO_ENABLE_SET, REG_WR, &payload,
  54. sizeof(payload), NULL, NULL);
  55. if (ret < 0)
  56. return ret;
  57. /* Set hilo to automatic selection */
  58. payload = FM_RX_IFFREQ_HILO_AUTOMATIC;
  59. ret = fmc_send_cmd(fmdev, HILO_SET, REG_WR, &payload,
  60. sizeof(payload), NULL, NULL);
  61. if (ret < 0)
  62. return ret;
  63. /* Calculate frequency index and set*/
  64. payload = (freq - fmdev->rx.region.bot_freq) / FM_FREQ_MUL;
  65. ret = fmc_send_cmd(fmdev, FREQ_SET, REG_WR, &payload,
  66. sizeof(payload), NULL, NULL);
  67. if (ret < 0)
  68. return ret;
  69. /* Read flags - just to clear any pending interrupts if we had */
  70. ret = fmc_send_cmd(fmdev, FLAG_GET, REG_RD, NULL, 2, NULL, NULL);
  71. if (ret < 0)
  72. return ret;
  73. /* Enable FR, BL interrupts */
  74. intr_flag = fmdev->irq_info.mask;
  75. fmdev->irq_info.mask = (FM_FR_EVENT | FM_BL_EVENT);
  76. payload = fmdev->irq_info.mask;
  77. ret = fmc_send_cmd(fmdev, INT_MASK_SET, REG_WR, &payload,
  78. sizeof(payload), NULL, NULL);
  79. if (ret < 0)
  80. return ret;
  81. /* Start tune */
  82. payload = FM_TUNER_PRESET_MODE;
  83. ret = fmc_send_cmd(fmdev, TUNER_MODE_SET, REG_WR, &payload,
  84. sizeof(payload), NULL, NULL);
  85. if (ret < 0)
  86. goto exit;
  87. /* Wait for tune ended interrupt */
  88. init_completion(&fmdev->maintask_comp);
  89. timeleft = wait_for_completion_timeout(&fmdev->maintask_comp,
  90. FM_DRV_TX_TIMEOUT);
  91. if (!timeleft) {
  92. fmerr("Timeout(%d sec),didn't get tune ended int\n",
  93. jiffies_to_msecs(FM_DRV_TX_TIMEOUT) / 1000);
  94. ret = -ETIMEDOUT;
  95. goto exit;
  96. }
  97. /* Read freq back to confirm */
  98. ret = fmc_send_cmd(fmdev, FREQ_SET, REG_RD, NULL, 2, &curr_frq, &resp_len);
  99. if (ret < 0)
  100. goto exit;
  101. curr_frq = be16_to_cpu(curr_frq);
  102. curr_frq_in_khz = (fmdev->rx.region.bot_freq + ((u32)curr_frq * FM_FREQ_MUL));
  103. if (curr_frq_in_khz != freq) {
  104. pr_info("Frequency is set to (%d) but "
  105. "requested freq is (%d)\n", curr_frq_in_khz, freq);
  106. }
  107. /* Update local cache */
  108. fmdev->rx.freq = curr_frq_in_khz;
  109. exit:
  110. /* Re-enable default FM interrupts */
  111. fmdev->irq_info.mask = intr_flag;
  112. payload = fmdev->irq_info.mask;
  113. ret = fmc_send_cmd(fmdev, INT_MASK_SET, REG_WR, &payload,
  114. sizeof(payload), NULL, NULL);
  115. if (ret < 0)
  116. return ret;
  117. /* Reset RDS cache and current station pointers */
  118. fm_rx_reset_rds_cache(fmdev);
  119. fm_rx_reset_station_info(fmdev);
  120. return ret;
  121. }
  122. static u32 fm_rx_set_channel_spacing(struct fmdev *fmdev, u32 spacing)
  123. {
  124. u16 payload;
  125. u32 ret;
  126. if (spacing > 0 && spacing <= 50000)
  127. spacing = FM_CHANNEL_SPACING_50KHZ;
  128. else if (spacing > 50000 && spacing <= 100000)
  129. spacing = FM_CHANNEL_SPACING_100KHZ;
  130. else
  131. spacing = FM_CHANNEL_SPACING_200KHZ;
  132. /* set channel spacing */
  133. payload = spacing;
  134. ret = fmc_send_cmd(fmdev, CHANL_BW_SET, REG_WR, &payload,
  135. sizeof(payload), NULL, NULL);
  136. if (ret < 0)
  137. return ret;
  138. fmdev->rx.region.chanl_space = spacing * FM_FREQ_MUL;
  139. return ret;
  140. }
  141. u32 fm_rx_seek(struct fmdev *fmdev, u32 seek_upward,
  142. u32 wrap_around, u32 spacing)
  143. {
  144. u32 resp_len;
  145. u16 curr_frq, next_frq, last_frq;
  146. u16 payload, int_reason, intr_flag;
  147. u16 offset, space_idx;
  148. unsigned long timeleft;
  149. u32 ret;
  150. /* Set channel spacing */
  151. ret = fm_rx_set_channel_spacing(fmdev, spacing);
  152. if (ret < 0) {
  153. fmerr("Failed to set channel spacing\n");
  154. return ret;
  155. }
  156. /* Read the current frequency from chip */
  157. ret = fmc_send_cmd(fmdev, FREQ_SET, REG_RD, NULL,
  158. sizeof(curr_frq), &curr_frq, &resp_len);
  159. if (ret < 0)
  160. return ret;
  161. curr_frq = be16_to_cpu(curr_frq);
  162. last_frq = (fmdev->rx.region.top_freq - fmdev->rx.region.bot_freq) / FM_FREQ_MUL;
  163. /* Check the offset in order to be aligned to the channel spacing*/
  164. space_idx = fmdev->rx.region.chanl_space / FM_FREQ_MUL;
  165. offset = curr_frq % space_idx;
  166. next_frq = seek_upward ? curr_frq + space_idx /* Seek Up */ :
  167. curr_frq - space_idx /* Seek Down */ ;
  168. /*
  169. * Add or subtract offset in order to stay aligned to the channel
  170. * spacing.
  171. */
  172. if ((short)next_frq < 0)
  173. next_frq = last_frq - offset;
  174. else if (next_frq > last_frq)
  175. next_frq = 0 + offset;
  176. again:
  177. /* Set calculated next frequency to perform seek */
  178. payload = next_frq;
  179. ret = fmc_send_cmd(fmdev, FREQ_SET, REG_WR, &payload,
  180. sizeof(payload), NULL, NULL);
  181. if (ret < 0)
  182. return ret;
  183. /* Set search direction (0:Seek Down, 1:Seek Up) */
  184. payload = (seek_upward ? FM_SEARCH_DIRECTION_UP : FM_SEARCH_DIRECTION_DOWN);
  185. ret = fmc_send_cmd(fmdev, SEARCH_DIR_SET, REG_WR, &payload,
  186. sizeof(payload), NULL, NULL);
  187. if (ret < 0)
  188. return ret;
  189. /* Read flags - just to clear any pending interrupts if we had */
  190. ret = fmc_send_cmd(fmdev, FLAG_GET, REG_RD, NULL, 2, NULL, NULL);
  191. if (ret < 0)
  192. return ret;
  193. /* Enable FR, BL interrupts */
  194. intr_flag = fmdev->irq_info.mask;
  195. fmdev->irq_info.mask = (FM_FR_EVENT | FM_BL_EVENT);
  196. payload = fmdev->irq_info.mask;
  197. ret = fmc_send_cmd(fmdev, INT_MASK_SET, REG_WR, &payload,
  198. sizeof(payload), NULL, NULL);
  199. if (ret < 0)
  200. return ret;
  201. /* Start seek */
  202. payload = FM_TUNER_AUTONOMOUS_SEARCH_MODE;
  203. ret = fmc_send_cmd(fmdev, TUNER_MODE_SET, REG_WR, &payload,
  204. sizeof(payload), NULL, NULL);
  205. if (ret < 0)
  206. return ret;
  207. /* Wait for tune ended/band limit reached interrupt */
  208. init_completion(&fmdev->maintask_comp);
  209. timeleft = wait_for_completion_timeout(&fmdev->maintask_comp,
  210. FM_DRV_RX_SEEK_TIMEOUT);
  211. if (!timeleft) {
  212. fmerr("Timeout(%d sec),didn't get tune ended int\n",
  213. jiffies_to_msecs(FM_DRV_RX_SEEK_TIMEOUT) / 1000);
  214. return -ETIMEDOUT;
  215. }
  216. int_reason = fmdev->irq_info.flag & (FM_TUNE_COMPLETE | FM_BAND_LIMIT);
  217. /* Re-enable default FM interrupts */
  218. fmdev->irq_info.mask = intr_flag;
  219. payload = fmdev->irq_info.mask;
  220. ret = fmc_send_cmd(fmdev, INT_MASK_SET, REG_WR, &payload,
  221. sizeof(payload), NULL, NULL);
  222. if (ret < 0)
  223. return ret;
  224. if (int_reason & FM_BL_EVENT) {
  225. if (wrap_around == 0) {
  226. fmdev->rx.freq = seek_upward ?
  227. fmdev->rx.region.top_freq :
  228. fmdev->rx.region.bot_freq;
  229. } else {
  230. fmdev->rx.freq = seek_upward ?
  231. fmdev->rx.region.bot_freq :
  232. fmdev->rx.region.top_freq;
  233. /* Calculate frequency index to write */
  234. next_frq = (fmdev->rx.freq -
  235. fmdev->rx.region.bot_freq) / FM_FREQ_MUL;
  236. goto again;
  237. }
  238. } else {
  239. /* Read freq to know where operation tune operation stopped */
  240. ret = fmc_send_cmd(fmdev, FREQ_SET, REG_RD, NULL, 2,
  241. &curr_frq, &resp_len);
  242. if (ret < 0)
  243. return ret;
  244. curr_frq = be16_to_cpu(curr_frq);
  245. fmdev->rx.freq = (fmdev->rx.region.bot_freq +
  246. ((u32)curr_frq * FM_FREQ_MUL));
  247. }
  248. /* Reset RDS cache and current station pointers */
  249. fm_rx_reset_rds_cache(fmdev);
  250. fm_rx_reset_station_info(fmdev);
  251. return ret;
  252. }
  253. u32 fm_rx_set_volume(struct fmdev *fmdev, u16 vol_to_set)
  254. {
  255. u16 payload;
  256. u32 ret;
  257. if (fmdev->curr_fmmode != FM_MODE_RX)
  258. return -EPERM;
  259. if (vol_to_set < FM_RX_VOLUME_MIN || vol_to_set > FM_RX_VOLUME_MAX) {
  260. fmerr("Volume is not within(%d-%d) range\n",
  261. FM_RX_VOLUME_MIN, FM_RX_VOLUME_MAX);
  262. return -EINVAL;
  263. }
  264. vol_to_set *= FM_RX_VOLUME_GAIN_STEP;
  265. payload = vol_to_set;
  266. ret = fmc_send_cmd(fmdev, VOLUME_SET, REG_WR, &payload,
  267. sizeof(payload), NULL, NULL);
  268. if (ret < 0)
  269. return ret;
  270. fmdev->rx.volume = vol_to_set;
  271. return ret;
  272. }
  273. /* Get volume */
  274. u32 fm_rx_get_volume(struct fmdev *fmdev, u16 *curr_vol)
  275. {
  276. if (fmdev->curr_fmmode != FM_MODE_RX)
  277. return -EPERM;
  278. if (curr_vol == NULL) {
  279. fmerr("Invalid memory\n");
  280. return -ENOMEM;
  281. }
  282. *curr_vol = fmdev->rx.volume / FM_RX_VOLUME_GAIN_STEP;
  283. return 0;
  284. }
  285. /* To get current band's bottom and top frequency */
  286. u32 fm_rx_get_band_freq_range(struct fmdev *fmdev, u32 *bot_freq, u32 *top_freq)
  287. {
  288. if (bot_freq != NULL)
  289. *bot_freq = fmdev->rx.region.bot_freq;
  290. if (top_freq != NULL)
  291. *top_freq = fmdev->rx.region.top_freq;
  292. return 0;
  293. }
  294. /* Returns current band index (0-Europe/US; 1-Japan) */
  295. void fm_rx_get_region(struct fmdev *fmdev, u8 *region)
  296. {
  297. *region = fmdev->rx.region.fm_band;
  298. }
  299. /* Sets band (0-Europe/US; 1-Japan) */
  300. u32 fm_rx_set_region(struct fmdev *fmdev, u8 region_to_set)
  301. {
  302. u16 payload;
  303. u32 new_frq = 0;
  304. u32 ret;
  305. if (region_to_set != FM_BAND_EUROPE_US &&
  306. region_to_set != FM_BAND_JAPAN) {
  307. fmerr("Invalid band\n");
  308. return -EINVAL;
  309. }
  310. if (fmdev->rx.region.fm_band == region_to_set) {
  311. fmerr("Requested band is already configured\n");
  312. return 0;
  313. }
  314. /* Send cmd to set the band */
  315. payload = (u16)region_to_set;
  316. ret = fmc_send_cmd(fmdev, BAND_SET, REG_WR, &payload,
  317. sizeof(payload), NULL, NULL);
  318. if (ret < 0)
  319. return ret;
  320. fmc_update_region_info(fmdev, region_to_set);
  321. /* Check whether current RX frequency is within band boundary */
  322. if (fmdev->rx.freq < fmdev->rx.region.bot_freq)
  323. new_frq = fmdev->rx.region.bot_freq;
  324. else if (fmdev->rx.freq > fmdev->rx.region.top_freq)
  325. new_frq = fmdev->rx.region.top_freq;
  326. if (new_frq) {
  327. fmdbg("Current freq is not within band limit boundary,"
  328. "switching to %d KHz\n", new_frq);
  329. /* Current RX frequency is not in range. So, update it */
  330. ret = fm_rx_set_freq(fmdev, new_frq);
  331. }
  332. return ret;
  333. }
  334. /* Reads current mute mode (Mute Off/On/Attenuate)*/
  335. u32 fm_rx_get_mute_mode(struct fmdev *fmdev, u8 *curr_mute_mode)
  336. {
  337. if (fmdev->curr_fmmode != FM_MODE_RX)
  338. return -EPERM;
  339. if (curr_mute_mode == NULL) {
  340. fmerr("Invalid memory\n");
  341. return -ENOMEM;
  342. }
  343. *curr_mute_mode = fmdev->rx.mute_mode;
  344. return 0;
  345. }
  346. static u32 fm_config_rx_mute_reg(struct fmdev *fmdev)
  347. {
  348. u16 payload, muteval;
  349. u32 ret;
  350. muteval = 0;
  351. switch (fmdev->rx.mute_mode) {
  352. case FM_MUTE_ON:
  353. muteval = FM_RX_AC_MUTE_MODE;
  354. break;
  355. case FM_MUTE_OFF:
  356. muteval = FM_RX_UNMUTE_MODE;
  357. break;
  358. case FM_MUTE_ATTENUATE:
  359. muteval = FM_RX_SOFT_MUTE_FORCE_MODE;
  360. break;
  361. }
  362. if (fmdev->rx.rf_depend_mute == FM_RX_RF_DEPENDENT_MUTE_ON)
  363. muteval |= FM_RX_RF_DEP_MODE;
  364. else
  365. muteval &= ~FM_RX_RF_DEP_MODE;
  366. payload = muteval;
  367. ret = fmc_send_cmd(fmdev, MUTE_STATUS_SET, REG_WR, &payload,
  368. sizeof(payload), NULL, NULL);
  369. if (ret < 0)
  370. return ret;
  371. return 0;
  372. }
  373. /* Configures mute mode (Mute Off/On/Attenuate) */
  374. u32 fm_rx_set_mute_mode(struct fmdev *fmdev, u8 mute_mode_toset)
  375. {
  376. u8 org_state;
  377. u32 ret;
  378. if (fmdev->rx.mute_mode == mute_mode_toset)
  379. return 0;
  380. org_state = fmdev->rx.mute_mode;
  381. fmdev->rx.mute_mode = mute_mode_toset;
  382. ret = fm_config_rx_mute_reg(fmdev);
  383. if (ret < 0) {
  384. fmdev->rx.mute_mode = org_state;
  385. return ret;
  386. }
  387. return 0;
  388. }
  389. /* Gets RF dependent soft mute mode enable/disable status */
  390. u32 fm_rx_get_rfdepend_softmute(struct fmdev *fmdev, u8 *curr_mute_mode)
  391. {
  392. if (fmdev->curr_fmmode != FM_MODE_RX)
  393. return -EPERM;
  394. if (curr_mute_mode == NULL) {
  395. fmerr("Invalid memory\n");
  396. return -ENOMEM;
  397. }
  398. *curr_mute_mode = fmdev->rx.rf_depend_mute;
  399. return 0;
  400. }
  401. /* Sets RF dependent soft mute mode */
  402. u32 fm_rx_set_rfdepend_softmute(struct fmdev *fmdev, u8 rfdepend_mute)
  403. {
  404. u8 org_state;
  405. u32 ret;
  406. if (fmdev->curr_fmmode != FM_MODE_RX)
  407. return -EPERM;
  408. if (rfdepend_mute != FM_RX_RF_DEPENDENT_MUTE_ON &&
  409. rfdepend_mute != FM_RX_RF_DEPENDENT_MUTE_OFF) {
  410. fmerr("Invalid RF dependent soft mute\n");
  411. return -EINVAL;
  412. }
  413. if (fmdev->rx.rf_depend_mute == rfdepend_mute)
  414. return 0;
  415. org_state = fmdev->rx.rf_depend_mute;
  416. fmdev->rx.rf_depend_mute = rfdepend_mute;
  417. ret = fm_config_rx_mute_reg(fmdev);
  418. if (ret < 0) {
  419. fmdev->rx.rf_depend_mute = org_state;
  420. return ret;
  421. }
  422. return 0;
  423. }
  424. /* Returns the signal strength level of current channel */
  425. u32 fm_rx_get_rssi_level(struct fmdev *fmdev, u16 *rssilvl)
  426. {
  427. u16 curr_rssi_lel;
  428. u32 resp_len;
  429. u32 ret;
  430. if (rssilvl == NULL) {
  431. fmerr("Invalid memory\n");
  432. return -ENOMEM;
  433. }
  434. /* Read current RSSI level */
  435. ret = fmc_send_cmd(fmdev, RSSI_LVL_GET, REG_RD, NULL, 2,
  436. &curr_rssi_lel, &resp_len);
  437. if (ret < 0)
  438. return ret;
  439. *rssilvl = be16_to_cpu(curr_rssi_lel);
  440. return 0;
  441. }
  442. /*
  443. * Sets the signal strength level that once reached
  444. * will stop the auto search process
  445. */
  446. u32 fm_rx_set_rssi_threshold(struct fmdev *fmdev, short rssi_lvl_toset)
  447. {
  448. u16 payload;
  449. u32 ret;
  450. if (rssi_lvl_toset < FM_RX_RSSI_THRESHOLD_MIN ||
  451. rssi_lvl_toset > FM_RX_RSSI_THRESHOLD_MAX) {
  452. fmerr("Invalid RSSI threshold level\n");
  453. return -EINVAL;
  454. }
  455. payload = (u16)rssi_lvl_toset;
  456. ret = fmc_send_cmd(fmdev, SEARCH_LVL_SET, REG_WR, &payload,
  457. sizeof(payload), NULL, NULL);
  458. if (ret < 0)
  459. return ret;
  460. fmdev->rx.rssi_threshold = rssi_lvl_toset;
  461. return 0;
  462. }
  463. /* Returns current RX RSSI threshold value */
  464. u32 fm_rx_get_rssi_threshold(struct fmdev *fmdev, short *curr_rssi_lvl)
  465. {
  466. if (fmdev->curr_fmmode != FM_MODE_RX)
  467. return -EPERM;
  468. if (curr_rssi_lvl == NULL) {
  469. fmerr("Invalid memory\n");
  470. return -ENOMEM;
  471. }
  472. *curr_rssi_lvl = fmdev->rx.rssi_threshold;
  473. return 0;
  474. }
  475. /* Sets RX stereo/mono modes */
  476. u32 fm_rx_set_stereo_mono(struct fmdev *fmdev, u16 mode)
  477. {
  478. u16 payload;
  479. u32 ret;
  480. if (mode != FM_STEREO_MODE && mode != FM_MONO_MODE) {
  481. fmerr("Invalid mode\n");
  482. return -EINVAL;
  483. }
  484. /* Set stereo/mono mode */
  485. payload = (u16)mode;
  486. ret = fmc_send_cmd(fmdev, MOST_MODE_SET, REG_WR, &payload,
  487. sizeof(payload), NULL, NULL);
  488. if (ret < 0)
  489. return ret;
  490. /* Set stereo blending mode */
  491. payload = FM_STEREO_SOFT_BLEND;
  492. ret = fmc_send_cmd(fmdev, MOST_BLEND_SET, REG_WR, &payload,
  493. sizeof(payload), NULL, NULL);
  494. if (ret < 0)
  495. return ret;
  496. return 0;
  497. }
  498. /* Gets current RX stereo/mono mode */
  499. u32 fm_rx_get_stereo_mono(struct fmdev *fmdev, u16 *mode)
  500. {
  501. u16 curr_mode;
  502. u32 ret, resp_len;
  503. if (mode == NULL) {
  504. fmerr("Invalid memory\n");
  505. return -ENOMEM;
  506. }
  507. ret = fmc_send_cmd(fmdev, MOST_MODE_SET, REG_RD, NULL, 2,
  508. &curr_mode, &resp_len);
  509. if (ret < 0)
  510. return ret;
  511. *mode = be16_to_cpu(curr_mode);
  512. return 0;
  513. }
  514. /* Choose RX de-emphasis filter mode (50us/75us) */
  515. u32 fm_rx_set_deemphasis_mode(struct fmdev *fmdev, u16 mode)
  516. {
  517. u16 payload;
  518. u32 ret;
  519. if (fmdev->curr_fmmode != FM_MODE_RX)
  520. return -EPERM;
  521. if (mode != FM_RX_EMPHASIS_FILTER_50_USEC &&
  522. mode != FM_RX_EMPHASIS_FILTER_75_USEC) {
  523. fmerr("Invalid rx de-emphasis mode (%d)\n", mode);
  524. return -EINVAL;
  525. }
  526. payload = mode;
  527. ret = fmc_send_cmd(fmdev, DEMPH_MODE_SET, REG_WR, &payload,
  528. sizeof(payload), NULL, NULL);
  529. if (ret < 0)
  530. return ret;
  531. fmdev->rx.deemphasis_mode = mode;
  532. return 0;
  533. }
  534. /* Gets current RX de-emphasis filter mode */
  535. u32 fm_rx_get_deemph_mode(struct fmdev *fmdev, u16 *curr_deemphasis_mode)
  536. {
  537. if (fmdev->curr_fmmode != FM_MODE_RX)
  538. return -EPERM;
  539. if (curr_deemphasis_mode == NULL) {
  540. fmerr("Invalid memory\n");
  541. return -ENOMEM;
  542. }
  543. *curr_deemphasis_mode = fmdev->rx.deemphasis_mode;
  544. return 0;
  545. }
  546. /* Enable/Disable RX RDS */
  547. u32 fm_rx_set_rds_mode(struct fmdev *fmdev, u8 rds_en_dis)
  548. {
  549. u16 payload;
  550. u32 ret;
  551. if (rds_en_dis != FM_RDS_ENABLE && rds_en_dis != FM_RDS_DISABLE) {
  552. fmerr("Invalid rds option\n");
  553. return -EINVAL;
  554. }
  555. if (rds_en_dis == FM_RDS_ENABLE
  556. && fmdev->rx.rds.flag == FM_RDS_DISABLE) {
  557. /* Turn on RX RDS and RDS circuit */
  558. payload = FM_RX_PWR_SET_FM_AND_RDS_BLK_ON;
  559. ret = fmc_send_cmd(fmdev, POWER_SET, REG_WR, &payload,
  560. sizeof(payload), NULL, NULL);
  561. if (ret < 0)
  562. return ret;
  563. /* Clear and reset RDS FIFO */
  564. payload = FM_RX_RDS_FLUSH_FIFO;
  565. ret = fmc_send_cmd(fmdev, RDS_CNTRL_SET, REG_WR, &payload,
  566. sizeof(payload), NULL, NULL);
  567. if (ret < 0)
  568. return ret;
  569. /* Read flags - just to clear any pending interrupts. */
  570. ret = fmc_send_cmd(fmdev, FLAG_GET, REG_RD, NULL, 2,
  571. NULL, NULL);
  572. if (ret < 0)
  573. return ret;
  574. /* Set RDS FIFO threshold value */
  575. payload = FM_RX_RDS_FIFO_THRESHOLD;
  576. ret = fmc_send_cmd(fmdev, RDS_MEM_SET, REG_WR, &payload,
  577. sizeof(payload), NULL, NULL);
  578. if (ret < 0)
  579. return ret;
  580. /* Enable RDS interrupt */
  581. fmdev->irq_info.mask |= FM_RDS_EVENT;
  582. payload = fmdev->irq_info.mask;
  583. ret = fmc_send_cmd(fmdev, INT_MASK_SET, REG_WR, &payload,
  584. sizeof(payload), NULL, NULL);
  585. if (ret < 0) {
  586. fmdev->irq_info.mask &= ~FM_RDS_EVENT;
  587. return ret;
  588. }
  589. /* Update our local flag */
  590. fmdev->rx.rds.flag = FM_RDS_ENABLE;
  591. } else if (rds_en_dis == FM_RDS_DISABLE
  592. && fmdev->rx.rds.flag == FM_RDS_ENABLE) {
  593. /* Turn off RX RDS */
  594. payload = FM_RX_PWR_SET_FM_ON_RDS_OFF;
  595. ret = fmc_send_cmd(fmdev, POWER_SET, REG_WR, &payload,
  596. sizeof(payload), NULL, NULL);
  597. if (ret < 0)
  598. return ret;
  599. /* Reset RDS pointers */
  600. fmdev->rx.rds.last_blk_idx = 0;
  601. fmdev->rx.rds.wr_idx = 0;
  602. fmdev->rx.rds.rd_idx = 0;
  603. fm_rx_reset_station_info(fmdev);
  604. /* Update RDS local cache */
  605. fmdev->irq_info.mask &= ~(FM_RDS_EVENT);
  606. fmdev->rx.rds.flag = FM_RDS_DISABLE;
  607. }
  608. return 0;
  609. }
  610. /* Returns current RX RDS enable/disable status */
  611. u32 fm_rx_get_rds_mode(struct fmdev *fmdev, u8 *curr_rds_en_dis)
  612. {
  613. if (fmdev->curr_fmmode != FM_MODE_RX)
  614. return -EPERM;
  615. if (curr_rds_en_dis == NULL) {
  616. fmerr("Invalid memory\n");
  617. return -ENOMEM;
  618. }
  619. *curr_rds_en_dis = fmdev->rx.rds.flag;
  620. return 0;
  621. }
  622. /* Sets RDS operation mode (RDS/RDBS) */
  623. u32 fm_rx_set_rds_system(struct fmdev *fmdev, u8 rds_mode)
  624. {
  625. u16 payload;
  626. u32 ret;
  627. if (fmdev->curr_fmmode != FM_MODE_RX)
  628. return -EPERM;
  629. if (rds_mode != FM_RDS_SYSTEM_RDS && rds_mode != FM_RDS_SYSTEM_RBDS) {
  630. fmerr("Invalid rds mode\n");
  631. return -EINVAL;
  632. }
  633. /* Set RDS operation mode */
  634. payload = (u16)rds_mode;
  635. ret = fmc_send_cmd(fmdev, RDS_SYSTEM_SET, REG_WR, &payload,
  636. sizeof(payload), NULL, NULL);
  637. if (ret < 0)
  638. return ret;
  639. fmdev->rx.rds_mode = rds_mode;
  640. return 0;
  641. }
  642. /* Returns current RDS operation mode */
  643. u32 fm_rx_get_rds_system(struct fmdev *fmdev, u8 *rds_mode)
  644. {
  645. if (fmdev->curr_fmmode != FM_MODE_RX)
  646. return -EPERM;
  647. if (rds_mode == NULL) {
  648. fmerr("Invalid memory\n");
  649. return -ENOMEM;
  650. }
  651. *rds_mode = fmdev->rx.rds_mode;
  652. return 0;
  653. }
  654. /* Configures Alternate Frequency switch mode */
  655. u32 fm_rx_set_af_switch(struct fmdev *fmdev, u8 af_mode)
  656. {
  657. u16 payload;
  658. u32 ret;
  659. if (fmdev->curr_fmmode != FM_MODE_RX)
  660. return -EPERM;
  661. if (af_mode != FM_RX_RDS_AF_SWITCH_MODE_ON &&
  662. af_mode != FM_RX_RDS_AF_SWITCH_MODE_OFF) {
  663. fmerr("Invalid af mode\n");
  664. return -EINVAL;
  665. }
  666. /* Enable/disable low RSSI interrupt based on af_mode */
  667. if (af_mode == FM_RX_RDS_AF_SWITCH_MODE_ON)
  668. fmdev->irq_info.mask |= FM_LEV_EVENT;
  669. else
  670. fmdev->irq_info.mask &= ~FM_LEV_EVENT;
  671. payload = fmdev->irq_info.mask;
  672. ret = fmc_send_cmd(fmdev, INT_MASK_SET, REG_WR, &payload,
  673. sizeof(payload), NULL, NULL);
  674. if (ret < 0)
  675. return ret;
  676. fmdev->rx.af_mode = af_mode;
  677. return 0;
  678. }
  679. /* Returns Alternate Frequency switch status */
  680. u32 fm_rx_get_af_switch(struct fmdev *fmdev, u8 *af_mode)
  681. {
  682. if (fmdev->curr_fmmode != FM_MODE_RX)
  683. return -EPERM;
  684. if (af_mode == NULL) {
  685. fmerr("Invalid memory\n");
  686. return -ENOMEM;
  687. }
  688. *af_mode = fmdev->rx.af_mode;
  689. return 0;
  690. }