twl6040-core.c 15 KB

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  1. /*
  2. * MFD driver for TWL6040 audio device
  3. *
  4. * Authors: Misael Lopez Cruz <misael.lopez@ti.com>
  5. * Jorge Eduardo Candelaria <jorge.candelaria@ti.com>
  6. * Peter Ujfalusi <peter.ujfalusi@ti.com>
  7. *
  8. * Copyright: (C) 2011 Texas Instruments, Inc.
  9. *
  10. * This program is free software; you can redistribute it and/or modify
  11. * it under the terms of the GNU General Public License version 2 as
  12. * published by the Free Software Foundation.
  13. *
  14. * This program is distributed in the hope that it will be useful, but
  15. * WITHOUT ANY WARRANTY; without even the implied warranty of
  16. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  17. * General Public License for more details.
  18. *
  19. * You should have received a copy of the GNU General Public License
  20. * along with this program; if not, write to the Free Software
  21. * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA
  22. * 02110-1301 USA
  23. *
  24. */
  25. #include <linux/module.h>
  26. #include <linux/types.h>
  27. #include <linux/slab.h>
  28. #include <linux/kernel.h>
  29. #include <linux/platform_device.h>
  30. #include <linux/gpio.h>
  31. #include <linux/delay.h>
  32. #include <linux/i2c/twl.h>
  33. #include <linux/mfd/core.h>
  34. #include <linux/mfd/twl6040.h>
  35. int twl6040_reg_read(struct twl6040 *twl6040, unsigned int reg)
  36. {
  37. int ret;
  38. u8 val = 0;
  39. mutex_lock(&twl6040->io_mutex);
  40. ret = twl_i2c_read_u8(TWL_MODULE_AUDIO_VOICE, &val, reg);
  41. if (ret < 0) {
  42. mutex_unlock(&twl6040->io_mutex);
  43. return ret;
  44. }
  45. mutex_unlock(&twl6040->io_mutex);
  46. return val;
  47. }
  48. EXPORT_SYMBOL(twl6040_reg_read);
  49. int twl6040_reg_write(struct twl6040 *twl6040, unsigned int reg, u8 val)
  50. {
  51. int ret;
  52. mutex_lock(&twl6040->io_mutex);
  53. ret = twl_i2c_write_u8(TWL_MODULE_AUDIO_VOICE, val, reg);
  54. mutex_unlock(&twl6040->io_mutex);
  55. return ret;
  56. }
  57. EXPORT_SYMBOL(twl6040_reg_write);
  58. int twl6040_set_bits(struct twl6040 *twl6040, unsigned int reg, u8 mask)
  59. {
  60. int ret;
  61. u8 val;
  62. mutex_lock(&twl6040->io_mutex);
  63. ret = twl_i2c_read_u8(TWL_MODULE_AUDIO_VOICE, &val, reg);
  64. if (ret)
  65. goto out;
  66. val |= mask;
  67. ret = twl_i2c_write_u8(TWL_MODULE_AUDIO_VOICE, val, reg);
  68. out:
  69. mutex_unlock(&twl6040->io_mutex);
  70. return ret;
  71. }
  72. EXPORT_SYMBOL(twl6040_set_bits);
  73. int twl6040_clear_bits(struct twl6040 *twl6040, unsigned int reg, u8 mask)
  74. {
  75. int ret;
  76. u8 val;
  77. mutex_lock(&twl6040->io_mutex);
  78. ret = twl_i2c_read_u8(TWL_MODULE_AUDIO_VOICE, &val, reg);
  79. if (ret)
  80. goto out;
  81. val &= ~mask;
  82. ret = twl_i2c_write_u8(TWL_MODULE_AUDIO_VOICE, val, reg);
  83. out:
  84. mutex_unlock(&twl6040->io_mutex);
  85. return ret;
  86. }
  87. EXPORT_SYMBOL(twl6040_clear_bits);
  88. /* twl6040 codec manual power-up sequence */
  89. static int twl6040_power_up(struct twl6040 *twl6040)
  90. {
  91. u8 ldoctl, ncpctl, lppllctl;
  92. int ret;
  93. /* enable high-side LDO, reference system and internal oscillator */
  94. ldoctl = TWL6040_HSLDOENA | TWL6040_REFENA | TWL6040_OSCENA;
  95. ret = twl6040_reg_write(twl6040, TWL6040_REG_LDOCTL, ldoctl);
  96. if (ret)
  97. return ret;
  98. usleep_range(10000, 10500);
  99. /* enable negative charge pump */
  100. ncpctl = TWL6040_NCPENA;
  101. ret = twl6040_reg_write(twl6040, TWL6040_REG_NCPCTL, ncpctl);
  102. if (ret)
  103. goto ncp_err;
  104. usleep_range(1000, 1500);
  105. /* enable low-side LDO */
  106. ldoctl |= TWL6040_LSLDOENA;
  107. ret = twl6040_reg_write(twl6040, TWL6040_REG_LDOCTL, ldoctl);
  108. if (ret)
  109. goto lsldo_err;
  110. usleep_range(1000, 1500);
  111. /* enable low-power PLL */
  112. lppllctl = TWL6040_LPLLENA;
  113. ret = twl6040_reg_write(twl6040, TWL6040_REG_LPPLLCTL, lppllctl);
  114. if (ret)
  115. goto lppll_err;
  116. usleep_range(5000, 5500);
  117. /* disable internal oscillator */
  118. ldoctl &= ~TWL6040_OSCENA;
  119. ret = twl6040_reg_write(twl6040, TWL6040_REG_LDOCTL, ldoctl);
  120. if (ret)
  121. goto osc_err;
  122. return 0;
  123. osc_err:
  124. lppllctl &= ~TWL6040_LPLLENA;
  125. twl6040_reg_write(twl6040, TWL6040_REG_LPPLLCTL, lppllctl);
  126. lppll_err:
  127. ldoctl &= ~TWL6040_LSLDOENA;
  128. twl6040_reg_write(twl6040, TWL6040_REG_LDOCTL, ldoctl);
  129. lsldo_err:
  130. ncpctl &= ~TWL6040_NCPENA;
  131. twl6040_reg_write(twl6040, TWL6040_REG_NCPCTL, ncpctl);
  132. ncp_err:
  133. ldoctl &= ~(TWL6040_HSLDOENA | TWL6040_REFENA | TWL6040_OSCENA);
  134. twl6040_reg_write(twl6040, TWL6040_REG_LDOCTL, ldoctl);
  135. return ret;
  136. }
  137. /* twl6040 manual power-down sequence */
  138. static void twl6040_power_down(struct twl6040 *twl6040)
  139. {
  140. u8 ncpctl, ldoctl, lppllctl;
  141. ncpctl = twl6040_reg_read(twl6040, TWL6040_REG_NCPCTL);
  142. ldoctl = twl6040_reg_read(twl6040, TWL6040_REG_LDOCTL);
  143. lppllctl = twl6040_reg_read(twl6040, TWL6040_REG_LPPLLCTL);
  144. /* enable internal oscillator */
  145. ldoctl |= TWL6040_OSCENA;
  146. twl6040_reg_write(twl6040, TWL6040_REG_LDOCTL, ldoctl);
  147. usleep_range(1000, 1500);
  148. /* disable low-power PLL */
  149. lppllctl &= ~TWL6040_LPLLENA;
  150. twl6040_reg_write(twl6040, TWL6040_REG_LPPLLCTL, lppllctl);
  151. /* disable low-side LDO */
  152. ldoctl &= ~TWL6040_LSLDOENA;
  153. twl6040_reg_write(twl6040, TWL6040_REG_LDOCTL, ldoctl);
  154. /* disable negative charge pump */
  155. ncpctl &= ~TWL6040_NCPENA;
  156. twl6040_reg_write(twl6040, TWL6040_REG_NCPCTL, ncpctl);
  157. /* disable high-side LDO, reference system and internal oscillator */
  158. ldoctl &= ~(TWL6040_HSLDOENA | TWL6040_REFENA | TWL6040_OSCENA);
  159. twl6040_reg_write(twl6040, TWL6040_REG_LDOCTL, ldoctl);
  160. }
  161. static irqreturn_t twl6040_naudint_handler(int irq, void *data)
  162. {
  163. struct twl6040 *twl6040 = data;
  164. u8 intid, status;
  165. intid = twl6040_reg_read(twl6040, TWL6040_REG_INTID);
  166. if (intid & TWL6040_READYINT)
  167. complete(&twl6040->ready);
  168. if (intid & TWL6040_THINT) {
  169. status = twl6040_reg_read(twl6040, TWL6040_REG_STATUS);
  170. if (status & TWL6040_TSHUTDET) {
  171. dev_warn(twl6040->dev,
  172. "Thermal shutdown, powering-off");
  173. twl6040_power(twl6040, 0);
  174. } else {
  175. dev_warn(twl6040->dev,
  176. "Leaving thermal shutdown, powering-on");
  177. twl6040_power(twl6040, 1);
  178. }
  179. }
  180. return IRQ_HANDLED;
  181. }
  182. static int twl6040_power_up_completion(struct twl6040 *twl6040,
  183. int naudint)
  184. {
  185. int time_left;
  186. u8 intid;
  187. time_left = wait_for_completion_timeout(&twl6040->ready,
  188. msecs_to_jiffies(144));
  189. if (!time_left) {
  190. intid = twl6040_reg_read(twl6040, TWL6040_REG_INTID);
  191. if (!(intid & TWL6040_READYINT)) {
  192. dev_err(twl6040->dev,
  193. "timeout waiting for READYINT\n");
  194. return -ETIMEDOUT;
  195. }
  196. }
  197. return 0;
  198. }
  199. int twl6040_power(struct twl6040 *twl6040, int on)
  200. {
  201. int audpwron = twl6040->audpwron;
  202. int naudint = twl6040->irq;
  203. int ret = 0;
  204. mutex_lock(&twl6040->mutex);
  205. if (on) {
  206. /* already powered-up */
  207. if (twl6040->power_count++)
  208. goto out;
  209. if (gpio_is_valid(audpwron)) {
  210. /* use AUDPWRON line */
  211. gpio_set_value(audpwron, 1);
  212. /* wait for power-up completion */
  213. ret = twl6040_power_up_completion(twl6040, naudint);
  214. if (ret) {
  215. dev_err(twl6040->dev,
  216. "automatic power-down failed\n");
  217. twl6040->power_count = 0;
  218. goto out;
  219. }
  220. } else {
  221. /* use manual power-up sequence */
  222. ret = twl6040_power_up(twl6040);
  223. if (ret) {
  224. dev_err(twl6040->dev,
  225. "manual power-up failed\n");
  226. twl6040->power_count = 0;
  227. goto out;
  228. }
  229. }
  230. /* Default PLL configuration after power up */
  231. twl6040->pll = TWL6040_SYSCLK_SEL_LPPLL;
  232. twl6040->sysclk = 19200000;
  233. } else {
  234. /* already powered-down */
  235. if (!twl6040->power_count) {
  236. dev_err(twl6040->dev,
  237. "device is already powered-off\n");
  238. ret = -EPERM;
  239. goto out;
  240. }
  241. if (--twl6040->power_count)
  242. goto out;
  243. if (gpio_is_valid(audpwron)) {
  244. /* use AUDPWRON line */
  245. gpio_set_value(audpwron, 0);
  246. /* power-down sequence latency */
  247. usleep_range(500, 700);
  248. } else {
  249. /* use manual power-down sequence */
  250. twl6040_power_down(twl6040);
  251. }
  252. twl6040->sysclk = 0;
  253. }
  254. out:
  255. mutex_unlock(&twl6040->mutex);
  256. return ret;
  257. }
  258. EXPORT_SYMBOL(twl6040_power);
  259. int twl6040_set_pll(struct twl6040 *twl6040, int pll_id,
  260. unsigned int freq_in, unsigned int freq_out)
  261. {
  262. u8 hppllctl, lppllctl;
  263. int ret = 0;
  264. mutex_lock(&twl6040->mutex);
  265. hppllctl = twl6040_reg_read(twl6040, TWL6040_REG_HPPLLCTL);
  266. lppllctl = twl6040_reg_read(twl6040, TWL6040_REG_LPPLLCTL);
  267. switch (pll_id) {
  268. case TWL6040_SYSCLK_SEL_LPPLL:
  269. /* low-power PLL divider */
  270. switch (freq_out) {
  271. case 17640000:
  272. lppllctl |= TWL6040_LPLLFIN;
  273. break;
  274. case 19200000:
  275. lppllctl &= ~TWL6040_LPLLFIN;
  276. break;
  277. default:
  278. dev_err(twl6040->dev,
  279. "freq_out %d not supported\n", freq_out);
  280. ret = -EINVAL;
  281. goto pll_out;
  282. }
  283. twl6040_reg_write(twl6040, TWL6040_REG_LPPLLCTL, lppllctl);
  284. switch (freq_in) {
  285. case 32768:
  286. lppllctl |= TWL6040_LPLLENA;
  287. twl6040_reg_write(twl6040, TWL6040_REG_LPPLLCTL,
  288. lppllctl);
  289. mdelay(5);
  290. lppllctl &= ~TWL6040_HPLLSEL;
  291. twl6040_reg_write(twl6040, TWL6040_REG_LPPLLCTL,
  292. lppllctl);
  293. hppllctl &= ~TWL6040_HPLLENA;
  294. twl6040_reg_write(twl6040, TWL6040_REG_HPPLLCTL,
  295. hppllctl);
  296. break;
  297. default:
  298. dev_err(twl6040->dev,
  299. "freq_in %d not supported\n", freq_in);
  300. ret = -EINVAL;
  301. goto pll_out;
  302. }
  303. break;
  304. case TWL6040_SYSCLK_SEL_HPPLL:
  305. /* high-performance PLL can provide only 19.2 MHz */
  306. if (freq_out != 19200000) {
  307. dev_err(twl6040->dev,
  308. "freq_out %d not supported\n", freq_out);
  309. ret = -EINVAL;
  310. goto pll_out;
  311. }
  312. hppllctl &= ~TWL6040_MCLK_MSK;
  313. switch (freq_in) {
  314. case 12000000:
  315. /* PLL enabled, active mode */
  316. hppllctl |= TWL6040_MCLK_12000KHZ |
  317. TWL6040_HPLLENA;
  318. break;
  319. case 19200000:
  320. /*
  321. * PLL disabled
  322. * (enable PLL if MCLK jitter quality
  323. * doesn't meet specification)
  324. */
  325. hppllctl |= TWL6040_MCLK_19200KHZ;
  326. break;
  327. case 26000000:
  328. /* PLL enabled, active mode */
  329. hppllctl |= TWL6040_MCLK_26000KHZ |
  330. TWL6040_HPLLENA;
  331. break;
  332. case 38400000:
  333. /* PLL enabled, active mode */
  334. hppllctl |= TWL6040_MCLK_38400KHZ |
  335. TWL6040_HPLLENA;
  336. break;
  337. default:
  338. dev_err(twl6040->dev,
  339. "freq_in %d not supported\n", freq_in);
  340. ret = -EINVAL;
  341. goto pll_out;
  342. }
  343. /* enable clock slicer to ensure input waveform is square */
  344. hppllctl |= TWL6040_HPLLSQRENA;
  345. twl6040_reg_write(twl6040, TWL6040_REG_HPPLLCTL, hppllctl);
  346. usleep_range(500, 700);
  347. lppllctl |= TWL6040_HPLLSEL;
  348. twl6040_reg_write(twl6040, TWL6040_REG_LPPLLCTL, lppllctl);
  349. lppllctl &= ~TWL6040_LPLLENA;
  350. twl6040_reg_write(twl6040, TWL6040_REG_LPPLLCTL, lppllctl);
  351. break;
  352. default:
  353. dev_err(twl6040->dev, "unknown pll id %d\n", pll_id);
  354. ret = -EINVAL;
  355. goto pll_out;
  356. }
  357. twl6040->sysclk = freq_out;
  358. twl6040->pll = pll_id;
  359. pll_out:
  360. mutex_unlock(&twl6040->mutex);
  361. return ret;
  362. }
  363. EXPORT_SYMBOL(twl6040_set_pll);
  364. int twl6040_get_pll(struct twl6040 *twl6040)
  365. {
  366. if (twl6040->power_count)
  367. return twl6040->pll;
  368. else
  369. return -ENODEV;
  370. }
  371. EXPORT_SYMBOL(twl6040_get_pll);
  372. unsigned int twl6040_get_sysclk(struct twl6040 *twl6040)
  373. {
  374. return twl6040->sysclk;
  375. }
  376. EXPORT_SYMBOL(twl6040_get_sysclk);
  377. static struct resource twl6040_vibra_rsrc[] = {
  378. {
  379. .flags = IORESOURCE_IRQ,
  380. },
  381. };
  382. static struct resource twl6040_codec_rsrc[] = {
  383. {
  384. .flags = IORESOURCE_IRQ,
  385. },
  386. };
  387. static int __devinit twl6040_probe(struct platform_device *pdev)
  388. {
  389. struct twl4030_audio_data *pdata = pdev->dev.platform_data;
  390. struct twl6040 *twl6040;
  391. struct mfd_cell *cell = NULL;
  392. int ret, children = 0;
  393. if (!pdata) {
  394. dev_err(&pdev->dev, "Platform data is missing\n");
  395. return -EINVAL;
  396. }
  397. /* In order to operate correctly we need valid interrupt config */
  398. if (!pdata->naudint_irq || !pdata->irq_base) {
  399. dev_err(&pdev->dev, "Invalid IRQ configuration\n");
  400. return -EINVAL;
  401. }
  402. twl6040 = kzalloc(sizeof(struct twl6040), GFP_KERNEL);
  403. if (!twl6040)
  404. return -ENOMEM;
  405. platform_set_drvdata(pdev, twl6040);
  406. twl6040->dev = &pdev->dev;
  407. twl6040->audpwron = pdata->audpwron_gpio;
  408. twl6040->irq = pdata->naudint_irq;
  409. twl6040->irq_base = pdata->irq_base;
  410. mutex_init(&twl6040->mutex);
  411. mutex_init(&twl6040->io_mutex);
  412. init_completion(&twl6040->ready);
  413. twl6040->rev = twl6040_reg_read(twl6040, TWL6040_REG_ASICREV);
  414. if (gpio_is_valid(twl6040->audpwron)) {
  415. ret = gpio_request(twl6040->audpwron, "audpwron");
  416. if (ret)
  417. goto gpio1_err;
  418. ret = gpio_direction_output(twl6040->audpwron, 0);
  419. if (ret)
  420. goto gpio2_err;
  421. }
  422. /* ERRATA: Automatic power-up is not possible in ES1.0 */
  423. if (twl6040_get_revid(twl6040) == TWL6040_REV_ES1_0)
  424. twl6040->audpwron = -EINVAL;
  425. /* codec interrupt */
  426. ret = twl6040_irq_init(twl6040);
  427. if (ret)
  428. goto gpio2_err;
  429. ret = request_threaded_irq(twl6040->irq_base + TWL6040_IRQ_READY,
  430. NULL, twl6040_naudint_handler, 0,
  431. "twl6040_irq_ready", twl6040);
  432. if (ret) {
  433. dev_err(twl6040->dev, "READY IRQ request failed: %d\n",
  434. ret);
  435. goto irq_err;
  436. }
  437. /* dual-access registers controlled by I2C only */
  438. twl6040_set_bits(twl6040, TWL6040_REG_ACCCTL, TWL6040_I2CSEL);
  439. if (pdata->codec) {
  440. int irq = twl6040->irq_base + TWL6040_IRQ_PLUG;
  441. cell = &twl6040->cells[children];
  442. cell->name = "twl6040-codec";
  443. twl6040_codec_rsrc[0].start = irq;
  444. twl6040_codec_rsrc[0].end = irq;
  445. cell->resources = twl6040_codec_rsrc;
  446. cell->num_resources = ARRAY_SIZE(twl6040_codec_rsrc);
  447. cell->platform_data = pdata->codec;
  448. cell->pdata_size = sizeof(*pdata->codec);
  449. children++;
  450. }
  451. if (pdata->vibra) {
  452. int irq = twl6040->irq_base + TWL6040_IRQ_VIB;
  453. cell = &twl6040->cells[children];
  454. cell->name = "twl6040-vibra";
  455. twl6040_vibra_rsrc[0].start = irq;
  456. twl6040_vibra_rsrc[0].end = irq;
  457. cell->resources = twl6040_vibra_rsrc;
  458. cell->num_resources = ARRAY_SIZE(twl6040_vibra_rsrc);
  459. cell->platform_data = pdata->vibra;
  460. cell->pdata_size = sizeof(*pdata->vibra);
  461. children++;
  462. }
  463. if (children) {
  464. ret = mfd_add_devices(&pdev->dev, pdev->id, twl6040->cells,
  465. children, NULL, 0);
  466. if (ret)
  467. goto mfd_err;
  468. } else {
  469. dev_err(&pdev->dev, "No platform data found for children\n");
  470. ret = -ENODEV;
  471. goto mfd_err;
  472. }
  473. return 0;
  474. mfd_err:
  475. free_irq(twl6040->irq_base + TWL6040_IRQ_READY, twl6040);
  476. irq_err:
  477. twl6040_irq_exit(twl6040);
  478. gpio2_err:
  479. if (gpio_is_valid(twl6040->audpwron))
  480. gpio_free(twl6040->audpwron);
  481. gpio1_err:
  482. platform_set_drvdata(pdev, NULL);
  483. kfree(twl6040);
  484. return ret;
  485. }
  486. static int __devexit twl6040_remove(struct platform_device *pdev)
  487. {
  488. struct twl6040 *twl6040 = platform_get_drvdata(pdev);
  489. if (twl6040->power_count)
  490. twl6040_power(twl6040, 0);
  491. if (gpio_is_valid(twl6040->audpwron))
  492. gpio_free(twl6040->audpwron);
  493. free_irq(twl6040->irq_base + TWL6040_IRQ_READY, twl6040);
  494. twl6040_irq_exit(twl6040);
  495. mfd_remove_devices(&pdev->dev);
  496. platform_set_drvdata(pdev, NULL);
  497. kfree(twl6040);
  498. return 0;
  499. }
  500. static struct platform_driver twl6040_driver = {
  501. .probe = twl6040_probe,
  502. .remove = __devexit_p(twl6040_remove),
  503. .driver = {
  504. .owner = THIS_MODULE,
  505. .name = "twl6040",
  506. },
  507. };
  508. static int __devinit twl6040_init(void)
  509. {
  510. return platform_driver_register(&twl6040_driver);
  511. }
  512. module_init(twl6040_init);
  513. static void __devexit twl6040_exit(void)
  514. {
  515. platform_driver_unregister(&twl6040_driver);
  516. }
  517. module_exit(twl6040_exit);
  518. MODULE_DESCRIPTION("TWL6040 MFD");
  519. MODULE_AUTHOR("Misael Lopez Cruz <misael.lopez@ti.com>");
  520. MODULE_AUTHOR("Jorge Eduardo Candelaria <jorge.candelaria@ti.com>");
  521. MODULE_LICENSE("GPL");
  522. MODULE_ALIAS("platform:twl6040");