twl-core.c 34 KB

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  1. /*
  2. * twl_core.c - driver for TWL4030/TWL5030/TWL60X0/TPS659x0 PM
  3. * and audio CODEC devices
  4. *
  5. * Copyright (C) 2005-2006 Texas Instruments, Inc.
  6. *
  7. * Modifications to defer interrupt handling to a kernel thread:
  8. * Copyright (C) 2006 MontaVista Software, Inc.
  9. *
  10. * Based on tlv320aic23.c:
  11. * Copyright (c) by Kai Svahn <kai.svahn@nokia.com>
  12. *
  13. * Code cleanup and modifications to IRQ handler.
  14. * by syed khasim <x0khasim@ti.com>
  15. *
  16. * This program is free software; you can redistribute it and/or modify
  17. * it under the terms of the GNU General Public License as published by
  18. * the Free Software Foundation; either version 2 of the License, or
  19. * (at your option) any later version.
  20. *
  21. * This program is distributed in the hope that it will be useful,
  22. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  23. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  24. * GNU General Public License for more details.
  25. *
  26. * You should have received a copy of the GNU General Public License
  27. * along with this program; if not, write to the Free Software
  28. * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
  29. */
  30. #include <linux/init.h>
  31. #include <linux/mutex.h>
  32. #include <linux/module.h>
  33. #include <linux/platform_device.h>
  34. #include <linux/regmap.h>
  35. #include <linux/clk.h>
  36. #include <linux/err.h>
  37. #include <linux/device.h>
  38. #include <linux/of.h>
  39. #include <linux/of_irq.h>
  40. #include <linux/of_platform.h>
  41. #include <linux/irq.h>
  42. #include <linux/irqdomain.h>
  43. #include <linux/regulator/machine.h>
  44. #include <linux/i2c.h>
  45. #include <linux/i2c/twl.h>
  46. #include "twl-core.h"
  47. /*
  48. * The TWL4030 "Triton 2" is one of a family of a multi-function "Power
  49. * Management and System Companion Device" chips originally designed for
  50. * use in OMAP2 and OMAP 3 based systems. Its control interfaces use I2C,
  51. * often at around 3 Mbit/sec, including for interrupt handling.
  52. *
  53. * This driver core provides genirq support for the interrupts emitted,
  54. * by the various modules, and exports register access primitives.
  55. *
  56. * FIXME this driver currently requires use of the first interrupt line
  57. * (and associated registers).
  58. */
  59. #define DRIVER_NAME "twl"
  60. /* Triton Core internal information (BEGIN) */
  61. #define TWL_NUM_SLAVES 4
  62. #define SUB_CHIP_ID0 0
  63. #define SUB_CHIP_ID1 1
  64. #define SUB_CHIP_ID2 2
  65. #define SUB_CHIP_ID3 3
  66. /* Base Address defns for twl4030_map[] */
  67. /* subchip/slave 0 - USB ID */
  68. #define TWL4030_BASEADD_USB 0x0000
  69. /* subchip/slave 1 - AUD ID */
  70. #define TWL4030_BASEADD_AUDIO_VOICE 0x0000
  71. #define TWL4030_BASEADD_GPIO 0x0098
  72. #define TWL4030_BASEADD_INTBR 0x0085
  73. #define TWL4030_BASEADD_PIH 0x0080
  74. #define TWL4030_BASEADD_TEST 0x004C
  75. /* subchip/slave 2 - AUX ID */
  76. #define TWL4030_BASEADD_INTERRUPTS 0x00B9
  77. #define TWL4030_BASEADD_LED 0x00EE
  78. #define TWL4030_BASEADD_MADC 0x0000
  79. #define TWL4030_BASEADD_MAIN_CHARGE 0x0074
  80. #define TWL4030_BASEADD_PRECHARGE 0x00AA
  81. #define TWL4030_BASEADD_PWM 0x00F8
  82. #define TWL4030_BASEADD_KEYPAD 0x00D2
  83. #define TWL5031_BASEADD_ACCESSORY 0x0074 /* Replaces Main Charge */
  84. #define TWL5031_BASEADD_INTERRUPTS 0x00B9 /* Different than TWL4030's
  85. one */
  86. /* subchip/slave 3 - POWER ID */
  87. #define TWL4030_BASEADD_BACKUP 0x0014
  88. #define TWL4030_BASEADD_INT 0x002E
  89. #define TWL4030_BASEADD_PM_MASTER 0x0036
  90. #define TWL4030_BASEADD_PM_RECEIVER 0x005B
  91. #define TWL4030_BASEADD_RTC 0x001C
  92. #define TWL4030_BASEADD_SECURED_REG 0x0000
  93. /* Triton Core internal information (END) */
  94. /* subchip/slave 0 0x48 - POWER */
  95. #define TWL6030_BASEADD_RTC 0x0000
  96. #define TWL6030_BASEADD_SECURED_REG 0x0017
  97. #define TWL6030_BASEADD_PM_MASTER 0x001F
  98. #define TWL6030_BASEADD_PM_SLAVE_MISC 0x0030 /* PM_RECEIVER */
  99. #define TWL6030_BASEADD_PM_MISC 0x00E2
  100. #define TWL6030_BASEADD_PM_PUPD 0x00F0
  101. /* subchip/slave 1 0x49 - FEATURE */
  102. #define TWL6030_BASEADD_USB 0x0000
  103. #define TWL6030_BASEADD_GPADC_CTRL 0x002E
  104. #define TWL6030_BASEADD_AUX 0x0090
  105. #define TWL6030_BASEADD_PWM 0x00BA
  106. #define TWL6030_BASEADD_GASGAUGE 0x00C0
  107. #define TWL6030_BASEADD_PIH 0x00D0
  108. #define TWL6030_BASEADD_CHARGER 0x00E0
  109. #define TWL6025_BASEADD_CHARGER 0x00DA
  110. #define TWL6030_BASEADD_LED 0x00F4
  111. /* subchip/slave 2 0x4A - DFT */
  112. #define TWL6030_BASEADD_DIEID 0x00C0
  113. /* subchip/slave 3 0x4B - AUDIO */
  114. #define TWL6030_BASEADD_AUDIO 0x0000
  115. #define TWL6030_BASEADD_RSV 0x0000
  116. #define TWL6030_BASEADD_ZERO 0x0000
  117. /* Few power values */
  118. #define R_CFG_BOOT 0x05
  119. /* some fields in R_CFG_BOOT */
  120. #define HFCLK_FREQ_19p2_MHZ (1 << 0)
  121. #define HFCLK_FREQ_26_MHZ (2 << 0)
  122. #define HFCLK_FREQ_38p4_MHZ (3 << 0)
  123. #define HIGH_PERF_SQ (1 << 3)
  124. #define CK32K_LOWPWR_EN (1 << 7)
  125. /*----------------------------------------------------------------------*/
  126. /* is driver active, bound to a chip? */
  127. static bool inuse;
  128. /* TWL IDCODE Register value */
  129. static u32 twl_idcode;
  130. static unsigned int twl_id;
  131. unsigned int twl_rev(void)
  132. {
  133. return twl_id;
  134. }
  135. EXPORT_SYMBOL(twl_rev);
  136. /* Structure for each TWL4030/TWL6030 Slave */
  137. struct twl_client {
  138. struct i2c_client *client;
  139. struct regmap *regmap;
  140. };
  141. static struct twl_client twl_modules[TWL_NUM_SLAVES];
  142. /* mapping the module id to slave id and base address */
  143. struct twl_mapping {
  144. unsigned char sid; /* Slave ID */
  145. unsigned char base; /* base address */
  146. };
  147. static struct twl_mapping *twl_map;
  148. static struct twl_mapping twl4030_map[] = {
  149. /*
  150. * NOTE: don't change this table without updating the
  151. * <linux/i2c/twl.h> defines for TWL4030_MODULE_*
  152. * so they continue to match the order in this table.
  153. */
  154. /* Common IPs */
  155. { 0, TWL4030_BASEADD_USB },
  156. { 1, TWL4030_BASEADD_PIH },
  157. { 2, TWL4030_BASEADD_MAIN_CHARGE },
  158. { 3, TWL4030_BASEADD_PM_MASTER },
  159. { 3, TWL4030_BASEADD_PM_RECEIVER },
  160. { 3, TWL4030_BASEADD_RTC },
  161. { 2, TWL4030_BASEADD_PWM },
  162. { 2, TWL4030_BASEADD_LED },
  163. { 3, TWL4030_BASEADD_SECURED_REG },
  164. /* TWL4030 specific IPs */
  165. { 1, TWL4030_BASEADD_AUDIO_VOICE },
  166. { 1, TWL4030_BASEADD_GPIO },
  167. { 1, TWL4030_BASEADD_INTBR },
  168. { 1, TWL4030_BASEADD_TEST },
  169. { 2, TWL4030_BASEADD_KEYPAD },
  170. { 2, TWL4030_BASEADD_MADC },
  171. { 2, TWL4030_BASEADD_INTERRUPTS },
  172. { 2, TWL4030_BASEADD_PRECHARGE },
  173. { 3, TWL4030_BASEADD_BACKUP },
  174. { 3, TWL4030_BASEADD_INT },
  175. { 2, TWL5031_BASEADD_ACCESSORY },
  176. { 2, TWL5031_BASEADD_INTERRUPTS },
  177. };
  178. static struct regmap_config twl4030_regmap_config[4] = {
  179. {
  180. /* Address 0x48 */
  181. .reg_bits = 8,
  182. .val_bits = 8,
  183. .max_register = 0xff,
  184. },
  185. {
  186. /* Address 0x49 */
  187. .reg_bits = 8,
  188. .val_bits = 8,
  189. .max_register = 0xff,
  190. },
  191. {
  192. /* Address 0x4a */
  193. .reg_bits = 8,
  194. .val_bits = 8,
  195. .max_register = 0xff,
  196. },
  197. {
  198. /* Address 0x4b */
  199. .reg_bits = 8,
  200. .val_bits = 8,
  201. .max_register = 0xff,
  202. },
  203. };
  204. static struct twl_mapping twl6030_map[] = {
  205. /*
  206. * NOTE: don't change this table without updating the
  207. * <linux/i2c/twl.h> defines for TWL4030_MODULE_*
  208. * so they continue to match the order in this table.
  209. */
  210. /* Common IPs */
  211. { 1, TWL6030_BASEADD_USB },
  212. { 1, TWL6030_BASEADD_PIH },
  213. { 1, TWL6030_BASEADD_CHARGER },
  214. { 0, TWL6030_BASEADD_PM_MASTER },
  215. { 0, TWL6030_BASEADD_PM_SLAVE_MISC },
  216. { 0, TWL6030_BASEADD_RTC },
  217. { 1, TWL6030_BASEADD_PWM },
  218. { 1, TWL6030_BASEADD_LED },
  219. { 0, TWL6030_BASEADD_SECURED_REG },
  220. /* TWL6030 specific IPs */
  221. { 0, TWL6030_BASEADD_ZERO },
  222. { 1, TWL6030_BASEADD_ZERO },
  223. { 2, TWL6030_BASEADD_ZERO },
  224. { 1, TWL6030_BASEADD_GPADC_CTRL },
  225. { 1, TWL6030_BASEADD_GASGAUGE },
  226. };
  227. static struct regmap_config twl6030_regmap_config[3] = {
  228. {
  229. /* Address 0x48 */
  230. .reg_bits = 8,
  231. .val_bits = 8,
  232. .max_register = 0xff,
  233. },
  234. {
  235. /* Address 0x49 */
  236. .reg_bits = 8,
  237. .val_bits = 8,
  238. .max_register = 0xff,
  239. },
  240. {
  241. /* Address 0x4a */
  242. .reg_bits = 8,
  243. .val_bits = 8,
  244. .max_register = 0xff,
  245. },
  246. };
  247. /*----------------------------------------------------------------------*/
  248. static inline int twl_get_last_module(void)
  249. {
  250. if (twl_class_is_4030())
  251. return TWL4030_MODULE_LAST;
  252. else
  253. return TWL6030_MODULE_LAST;
  254. }
  255. /* Exported Functions */
  256. /**
  257. * twl_i2c_write - Writes a n bit register in TWL4030/TWL5030/TWL60X0
  258. * @mod_no: module number
  259. * @value: an array of num_bytes+1 containing data to write
  260. * @reg: register address (just offset will do)
  261. * @num_bytes: number of bytes to transfer
  262. *
  263. * IMPORTANT: for 'value' parameter: Allocate value num_bytes+1 and
  264. * valid data starts at Offset 1.
  265. *
  266. * Returns the result of operation - 0 is success
  267. */
  268. int twl_i2c_write(u8 mod_no, u8 *value, u8 reg, unsigned num_bytes)
  269. {
  270. int ret;
  271. int sid;
  272. struct twl_client *twl;
  273. if (unlikely(mod_no >= twl_get_last_module())) {
  274. pr_err("%s: invalid module number %d\n", DRIVER_NAME, mod_no);
  275. return -EPERM;
  276. }
  277. if (unlikely(!inuse)) {
  278. pr_err("%s: not initialized\n", DRIVER_NAME);
  279. return -EPERM;
  280. }
  281. sid = twl_map[mod_no].sid;
  282. twl = &twl_modules[sid];
  283. ret = regmap_bulk_write(twl->regmap, twl_map[mod_no].base + reg,
  284. value, num_bytes);
  285. if (ret)
  286. pr_err("%s: Write failed (mod %d, reg 0x%02x count %d)\n",
  287. DRIVER_NAME, mod_no, reg, num_bytes);
  288. return ret;
  289. }
  290. EXPORT_SYMBOL(twl_i2c_write);
  291. /**
  292. * twl_i2c_read - Reads a n bit register in TWL4030/TWL5030/TWL60X0
  293. * @mod_no: module number
  294. * @value: an array of num_bytes containing data to be read
  295. * @reg: register address (just offset will do)
  296. * @num_bytes: number of bytes to transfer
  297. *
  298. * Returns result of operation - num_bytes is success else failure.
  299. */
  300. int twl_i2c_read(u8 mod_no, u8 *value, u8 reg, unsigned num_bytes)
  301. {
  302. int ret;
  303. int sid;
  304. struct twl_client *twl;
  305. if (unlikely(mod_no >= twl_get_last_module())) {
  306. pr_err("%s: invalid module number %d\n", DRIVER_NAME, mod_no);
  307. return -EPERM;
  308. }
  309. if (unlikely(!inuse)) {
  310. pr_err("%s: not initialized\n", DRIVER_NAME);
  311. return -EPERM;
  312. }
  313. sid = twl_map[mod_no].sid;
  314. twl = &twl_modules[sid];
  315. ret = regmap_bulk_read(twl->regmap, twl_map[mod_no].base + reg,
  316. value, num_bytes);
  317. if (ret)
  318. pr_err("%s: Read failed (mod %d, reg 0x%02x count %d)\n",
  319. DRIVER_NAME, mod_no, reg, num_bytes);
  320. return ret;
  321. }
  322. EXPORT_SYMBOL(twl_i2c_read);
  323. /**
  324. * twl_i2c_write_u8 - Writes a 8 bit register in TWL4030/TWL5030/TWL60X0
  325. * @mod_no: module number
  326. * @value: the value to be written 8 bit
  327. * @reg: register address (just offset will do)
  328. *
  329. * Returns result of operation - 0 is success
  330. */
  331. int twl_i2c_write_u8(u8 mod_no, u8 value, u8 reg)
  332. {
  333. return twl_i2c_write(mod_no, &value, reg, 1);
  334. }
  335. EXPORT_SYMBOL(twl_i2c_write_u8);
  336. /**
  337. * twl_i2c_read_u8 - Reads a 8 bit register from TWL4030/TWL5030/TWL60X0
  338. * @mod_no: module number
  339. * @value: the value read 8 bit
  340. * @reg: register address (just offset will do)
  341. *
  342. * Returns result of operation - 0 is success
  343. */
  344. int twl_i2c_read_u8(u8 mod_no, u8 *value, u8 reg)
  345. {
  346. return twl_i2c_read(mod_no, value, reg, 1);
  347. }
  348. EXPORT_SYMBOL(twl_i2c_read_u8);
  349. /*----------------------------------------------------------------------*/
  350. /**
  351. * twl_read_idcode_register - API to read the IDCODE register.
  352. *
  353. * Unlocks the IDCODE register and read the 32 bit value.
  354. */
  355. static int twl_read_idcode_register(void)
  356. {
  357. int err;
  358. err = twl_i2c_write_u8(TWL4030_MODULE_INTBR, TWL_EEPROM_R_UNLOCK,
  359. REG_UNLOCK_TEST_REG);
  360. if (err) {
  361. pr_err("TWL4030 Unable to unlock IDCODE registers -%d\n", err);
  362. goto fail;
  363. }
  364. err = twl_i2c_read(TWL4030_MODULE_INTBR, (u8 *)(&twl_idcode),
  365. REG_IDCODE_7_0, 4);
  366. if (err) {
  367. pr_err("TWL4030: unable to read IDCODE -%d\n", err);
  368. goto fail;
  369. }
  370. err = twl_i2c_write_u8(TWL4030_MODULE_INTBR, 0x0, REG_UNLOCK_TEST_REG);
  371. if (err)
  372. pr_err("TWL4030 Unable to relock IDCODE registers -%d\n", err);
  373. fail:
  374. return err;
  375. }
  376. /**
  377. * twl_get_type - API to get TWL Si type.
  378. *
  379. * Api to get the TWL Si type from IDCODE value.
  380. */
  381. int twl_get_type(void)
  382. {
  383. return TWL_SIL_TYPE(twl_idcode);
  384. }
  385. EXPORT_SYMBOL_GPL(twl_get_type);
  386. /**
  387. * twl_get_version - API to get TWL Si version.
  388. *
  389. * Api to get the TWL Si version from IDCODE value.
  390. */
  391. int twl_get_version(void)
  392. {
  393. return TWL_SIL_REV(twl_idcode);
  394. }
  395. EXPORT_SYMBOL_GPL(twl_get_version);
  396. /**
  397. * twl_get_hfclk_rate - API to get TWL external HFCLK clock rate.
  398. *
  399. * Api to get the TWL HFCLK rate based on BOOT_CFG register.
  400. */
  401. int twl_get_hfclk_rate(void)
  402. {
  403. u8 ctrl;
  404. int rate;
  405. twl_i2c_read_u8(TWL_MODULE_PM_MASTER, &ctrl, R_CFG_BOOT);
  406. switch (ctrl & 0x3) {
  407. case HFCLK_FREQ_19p2_MHZ:
  408. rate = 19200000;
  409. break;
  410. case HFCLK_FREQ_26_MHZ:
  411. rate = 26000000;
  412. break;
  413. case HFCLK_FREQ_38p4_MHZ:
  414. rate = 38400000;
  415. break;
  416. default:
  417. pr_err("TWL4030: HFCLK is not configured\n");
  418. rate = -EINVAL;
  419. break;
  420. }
  421. return rate;
  422. }
  423. EXPORT_SYMBOL_GPL(twl_get_hfclk_rate);
  424. static struct device *
  425. add_numbered_child(unsigned chip, const char *name, int num,
  426. void *pdata, unsigned pdata_len,
  427. bool can_wakeup, int irq0, int irq1)
  428. {
  429. struct platform_device *pdev;
  430. struct twl_client *twl = &twl_modules[chip];
  431. int status;
  432. pdev = platform_device_alloc(name, num);
  433. if (!pdev) {
  434. dev_dbg(&twl->client->dev, "can't alloc dev\n");
  435. status = -ENOMEM;
  436. goto err;
  437. }
  438. pdev->dev.parent = &twl->client->dev;
  439. if (pdata) {
  440. status = platform_device_add_data(pdev, pdata, pdata_len);
  441. if (status < 0) {
  442. dev_dbg(&pdev->dev, "can't add platform_data\n");
  443. goto err;
  444. }
  445. }
  446. if (irq0) {
  447. struct resource r[2] = {
  448. { .start = irq0, .flags = IORESOURCE_IRQ, },
  449. { .start = irq1, .flags = IORESOURCE_IRQ, },
  450. };
  451. status = platform_device_add_resources(pdev, r, irq1 ? 2 : 1);
  452. if (status < 0) {
  453. dev_dbg(&pdev->dev, "can't add irqs\n");
  454. goto err;
  455. }
  456. }
  457. status = platform_device_add(pdev);
  458. if (status == 0)
  459. device_init_wakeup(&pdev->dev, can_wakeup);
  460. err:
  461. if (status < 0) {
  462. platform_device_put(pdev);
  463. dev_err(&twl->client->dev, "can't add %s dev\n", name);
  464. return ERR_PTR(status);
  465. }
  466. return &pdev->dev;
  467. }
  468. static inline struct device *add_child(unsigned chip, const char *name,
  469. void *pdata, unsigned pdata_len,
  470. bool can_wakeup, int irq0, int irq1)
  471. {
  472. return add_numbered_child(chip, name, -1, pdata, pdata_len,
  473. can_wakeup, irq0, irq1);
  474. }
  475. static struct device *
  476. add_regulator_linked(int num, struct regulator_init_data *pdata,
  477. struct regulator_consumer_supply *consumers,
  478. unsigned num_consumers, unsigned long features)
  479. {
  480. unsigned sub_chip_id;
  481. struct twl_regulator_driver_data drv_data;
  482. /* regulator framework demands init_data ... */
  483. if (!pdata)
  484. return NULL;
  485. if (consumers) {
  486. pdata->consumer_supplies = consumers;
  487. pdata->num_consumer_supplies = num_consumers;
  488. }
  489. if (pdata->driver_data) {
  490. /* If we have existing drv_data, just add the flags */
  491. struct twl_regulator_driver_data *tmp;
  492. tmp = pdata->driver_data;
  493. tmp->features |= features;
  494. } else {
  495. /* add new driver data struct, used only during init */
  496. drv_data.features = features;
  497. drv_data.set_voltage = NULL;
  498. drv_data.get_voltage = NULL;
  499. drv_data.data = NULL;
  500. pdata->driver_data = &drv_data;
  501. }
  502. /* NOTE: we currently ignore regulator IRQs, e.g. for short circuits */
  503. sub_chip_id = twl_map[TWL_MODULE_PM_MASTER].sid;
  504. return add_numbered_child(sub_chip_id, "twl_reg", num,
  505. pdata, sizeof(*pdata), false, 0, 0);
  506. }
  507. static struct device *
  508. add_regulator(int num, struct regulator_init_data *pdata,
  509. unsigned long features)
  510. {
  511. return add_regulator_linked(num, pdata, NULL, 0, features);
  512. }
  513. /*
  514. * NOTE: We know the first 8 IRQs after pdata->base_irq are
  515. * for the PIH, and the next are for the PWR_INT SIH, since
  516. * that's how twl_init_irq() sets things up.
  517. */
  518. static int
  519. add_children(struct twl4030_platform_data *pdata, unsigned irq_base,
  520. unsigned long features)
  521. {
  522. struct device *child;
  523. unsigned sub_chip_id;
  524. if (IS_ENABLED(CONFIG_GPIO_TWL4030) && pdata->gpio) {
  525. child = add_child(SUB_CHIP_ID1, "twl4030_gpio",
  526. pdata->gpio, sizeof(*pdata->gpio),
  527. false, irq_base + GPIO_INTR_OFFSET, 0);
  528. if (IS_ERR(child))
  529. return PTR_ERR(child);
  530. }
  531. if (IS_ENABLED(CONFIG_KEYBOARD_TWL4030) && pdata->keypad) {
  532. child = add_child(SUB_CHIP_ID2, "twl4030_keypad",
  533. pdata->keypad, sizeof(*pdata->keypad),
  534. true, irq_base + KEYPAD_INTR_OFFSET, 0);
  535. if (IS_ERR(child))
  536. return PTR_ERR(child);
  537. }
  538. if (IS_ENABLED(CONFIG_TWL4030_MADC) && pdata->madc &&
  539. twl_class_is_4030()) {
  540. child = add_child(SUB_CHIP_ID2, "twl4030_madc",
  541. pdata->madc, sizeof(*pdata->madc),
  542. true, irq_base + MADC_INTR_OFFSET, 0);
  543. if (IS_ERR(child))
  544. return PTR_ERR(child);
  545. }
  546. if (IS_ENABLED(CONFIG_RTC_DRV_TWL4030)) {
  547. /*
  548. * REVISIT platform_data here currently might expose the
  549. * "msecure" line ... but for now we just expect board
  550. * setup to tell the chip "it's always ok to SET_TIME".
  551. * Eventually, Linux might become more aware of such
  552. * HW security concerns, and "least privilege".
  553. */
  554. sub_chip_id = twl_map[TWL_MODULE_RTC].sid;
  555. child = add_child(sub_chip_id, "twl_rtc", NULL, 0,
  556. true, irq_base + RTC_INTR_OFFSET, 0);
  557. if (IS_ERR(child))
  558. return PTR_ERR(child);
  559. }
  560. if (IS_ENABLED(CONFIG_PWM_TWL)) {
  561. child = add_child(SUB_CHIP_ID1, "twl-pwm", NULL, 0,
  562. false, 0, 0);
  563. if (IS_ERR(child))
  564. return PTR_ERR(child);
  565. }
  566. if (IS_ENABLED(CONFIG_PWM_TWL_LED)) {
  567. child = add_child(SUB_CHIP_ID1, "twl-pwmled", NULL, 0,
  568. false, 0, 0);
  569. if (IS_ERR(child))
  570. return PTR_ERR(child);
  571. }
  572. if (IS_ENABLED(CONFIG_TWL4030_USB) && pdata->usb &&
  573. twl_class_is_4030()) {
  574. static struct regulator_consumer_supply usb1v5 = {
  575. .supply = "usb1v5",
  576. };
  577. static struct regulator_consumer_supply usb1v8 = {
  578. .supply = "usb1v8",
  579. };
  580. static struct regulator_consumer_supply usb3v1[] = {
  581. { .supply = "usb3v1" },
  582. { .supply = "bci3v1" },
  583. };
  584. /* First add the regulators so that they can be used by transceiver */
  585. if (IS_ENABLED(CONFIG_REGULATOR_TWL4030)) {
  586. /* this is a template that gets copied */
  587. struct regulator_init_data usb_fixed = {
  588. .constraints.valid_modes_mask =
  589. REGULATOR_MODE_NORMAL
  590. | REGULATOR_MODE_STANDBY,
  591. .constraints.valid_ops_mask =
  592. REGULATOR_CHANGE_MODE
  593. | REGULATOR_CHANGE_STATUS,
  594. };
  595. child = add_regulator_linked(TWL4030_REG_VUSB1V5,
  596. &usb_fixed, &usb1v5, 1,
  597. features);
  598. if (IS_ERR(child))
  599. return PTR_ERR(child);
  600. child = add_regulator_linked(TWL4030_REG_VUSB1V8,
  601. &usb_fixed, &usb1v8, 1,
  602. features);
  603. if (IS_ERR(child))
  604. return PTR_ERR(child);
  605. child = add_regulator_linked(TWL4030_REG_VUSB3V1,
  606. &usb_fixed, usb3v1, 2,
  607. features);
  608. if (IS_ERR(child))
  609. return PTR_ERR(child);
  610. }
  611. child = add_child(SUB_CHIP_ID0, "twl4030_usb",
  612. pdata->usb, sizeof(*pdata->usb), true,
  613. /* irq0 = USB_PRES, irq1 = USB */
  614. irq_base + USB_PRES_INTR_OFFSET,
  615. irq_base + USB_INTR_OFFSET);
  616. if (IS_ERR(child))
  617. return PTR_ERR(child);
  618. /* we need to connect regulators to this transceiver */
  619. if (IS_ENABLED(CONFIG_REGULATOR_TWL4030) && child) {
  620. usb1v5.dev_name = dev_name(child);
  621. usb1v8.dev_name = dev_name(child);
  622. usb3v1[0].dev_name = dev_name(child);
  623. }
  624. }
  625. if (IS_ENABLED(CONFIG_TWL6030_USB) && pdata->usb &&
  626. twl_class_is_6030()) {
  627. static struct regulator_consumer_supply usb3v3;
  628. int regulator;
  629. if (IS_ENABLED(CONFIG_REGULATOR_TWL4030)) {
  630. /* this is a template that gets copied */
  631. struct regulator_init_data usb_fixed = {
  632. .constraints.valid_modes_mask =
  633. REGULATOR_MODE_NORMAL
  634. | REGULATOR_MODE_STANDBY,
  635. .constraints.valid_ops_mask =
  636. REGULATOR_CHANGE_MODE
  637. | REGULATOR_CHANGE_STATUS,
  638. };
  639. if (features & TWL6025_SUBCLASS) {
  640. usb3v3.supply = "ldousb";
  641. regulator = TWL6025_REG_LDOUSB;
  642. } else {
  643. usb3v3.supply = "vusb";
  644. regulator = TWL6030_REG_VUSB;
  645. }
  646. child = add_regulator_linked(regulator, &usb_fixed,
  647. &usb3v3, 1,
  648. features);
  649. if (IS_ERR(child))
  650. return PTR_ERR(child);
  651. }
  652. pdata->usb->features = features;
  653. child = add_child(SUB_CHIP_ID0, "twl6030_usb",
  654. pdata->usb, sizeof(*pdata->usb), true,
  655. /* irq1 = VBUS_PRES, irq0 = USB ID */
  656. irq_base + USBOTG_INTR_OFFSET,
  657. irq_base + USB_PRES_INTR_OFFSET);
  658. if (IS_ERR(child))
  659. return PTR_ERR(child);
  660. /* we need to connect regulators to this transceiver */
  661. if (IS_ENABLED(CONFIG_REGULATOR_TWL4030) && child)
  662. usb3v3.dev_name = dev_name(child);
  663. } else if (IS_ENABLED(CONFIG_REGULATOR_TWL4030) &&
  664. twl_class_is_6030()) {
  665. if (features & TWL6025_SUBCLASS)
  666. child = add_regulator(TWL6025_REG_LDOUSB,
  667. pdata->ldousb, features);
  668. else
  669. child = add_regulator(TWL6030_REG_VUSB,
  670. pdata->vusb, features);
  671. if (IS_ERR(child))
  672. return PTR_ERR(child);
  673. }
  674. if (IS_ENABLED(CONFIG_TWL4030_WATCHDOG) && twl_class_is_4030()) {
  675. child = add_child(SUB_CHIP_ID3, "twl4030_wdt", NULL, 0,
  676. false, 0, 0);
  677. if (IS_ERR(child))
  678. return PTR_ERR(child);
  679. }
  680. if (IS_ENABLED(CONFIG_INPUT_TWL4030_PWRBUTTON) && twl_class_is_4030()) {
  681. child = add_child(SUB_CHIP_ID3, "twl4030_pwrbutton", NULL, 0,
  682. true, irq_base + 8 + 0, 0);
  683. if (IS_ERR(child))
  684. return PTR_ERR(child);
  685. }
  686. if (IS_ENABLED(CONFIG_MFD_TWL4030_AUDIO) && pdata->audio &&
  687. twl_class_is_4030()) {
  688. child = add_child(SUB_CHIP_ID1, "twl4030-audio",
  689. pdata->audio, sizeof(*pdata->audio),
  690. false, 0, 0);
  691. if (IS_ERR(child))
  692. return PTR_ERR(child);
  693. }
  694. /* twl4030 regulators */
  695. if (IS_ENABLED(CONFIG_REGULATOR_TWL4030) && twl_class_is_4030()) {
  696. child = add_regulator(TWL4030_REG_VPLL1, pdata->vpll1,
  697. features);
  698. if (IS_ERR(child))
  699. return PTR_ERR(child);
  700. child = add_regulator(TWL4030_REG_VIO, pdata->vio,
  701. features);
  702. if (IS_ERR(child))
  703. return PTR_ERR(child);
  704. child = add_regulator(TWL4030_REG_VDD1, pdata->vdd1,
  705. features);
  706. if (IS_ERR(child))
  707. return PTR_ERR(child);
  708. child = add_regulator(TWL4030_REG_VDD2, pdata->vdd2,
  709. features);
  710. if (IS_ERR(child))
  711. return PTR_ERR(child);
  712. child = add_regulator(TWL4030_REG_VMMC1, pdata->vmmc1,
  713. features);
  714. if (IS_ERR(child))
  715. return PTR_ERR(child);
  716. child = add_regulator(TWL4030_REG_VDAC, pdata->vdac,
  717. features);
  718. if (IS_ERR(child))
  719. return PTR_ERR(child);
  720. child = add_regulator((features & TWL4030_VAUX2)
  721. ? TWL4030_REG_VAUX2_4030
  722. : TWL4030_REG_VAUX2,
  723. pdata->vaux2, features);
  724. if (IS_ERR(child))
  725. return PTR_ERR(child);
  726. child = add_regulator(TWL4030_REG_VINTANA1, pdata->vintana1,
  727. features);
  728. if (IS_ERR(child))
  729. return PTR_ERR(child);
  730. child = add_regulator(TWL4030_REG_VINTANA2, pdata->vintana2,
  731. features);
  732. if (IS_ERR(child))
  733. return PTR_ERR(child);
  734. child = add_regulator(TWL4030_REG_VINTDIG, pdata->vintdig,
  735. features);
  736. if (IS_ERR(child))
  737. return PTR_ERR(child);
  738. }
  739. /* maybe add LDOs that are omitted on cost-reduced parts */
  740. if (IS_ENABLED(CONFIG_REGULATOR_TWL4030) && !(features & TPS_SUBSET)
  741. && twl_class_is_4030()) {
  742. child = add_regulator(TWL4030_REG_VPLL2, pdata->vpll2,
  743. features);
  744. if (IS_ERR(child))
  745. return PTR_ERR(child);
  746. child = add_regulator(TWL4030_REG_VMMC2, pdata->vmmc2,
  747. features);
  748. if (IS_ERR(child))
  749. return PTR_ERR(child);
  750. child = add_regulator(TWL4030_REG_VSIM, pdata->vsim,
  751. features);
  752. if (IS_ERR(child))
  753. return PTR_ERR(child);
  754. child = add_regulator(TWL4030_REG_VAUX1, pdata->vaux1,
  755. features);
  756. if (IS_ERR(child))
  757. return PTR_ERR(child);
  758. child = add_regulator(TWL4030_REG_VAUX3, pdata->vaux3,
  759. features);
  760. if (IS_ERR(child))
  761. return PTR_ERR(child);
  762. child = add_regulator(TWL4030_REG_VAUX4, pdata->vaux4,
  763. features);
  764. if (IS_ERR(child))
  765. return PTR_ERR(child);
  766. }
  767. /* twl6030 regulators */
  768. if (IS_ENABLED(CONFIG_REGULATOR_TWL4030) && twl_class_is_6030() &&
  769. !(features & TWL6025_SUBCLASS)) {
  770. child = add_regulator(TWL6030_REG_VDD1, pdata->vdd1,
  771. features);
  772. if (IS_ERR(child))
  773. return PTR_ERR(child);
  774. child = add_regulator(TWL6030_REG_VDD2, pdata->vdd2,
  775. features);
  776. if (IS_ERR(child))
  777. return PTR_ERR(child);
  778. child = add_regulator(TWL6030_REG_VDD3, pdata->vdd3,
  779. features);
  780. if (IS_ERR(child))
  781. return PTR_ERR(child);
  782. child = add_regulator(TWL6030_REG_V1V8, pdata->v1v8,
  783. features);
  784. if (IS_ERR(child))
  785. return PTR_ERR(child);
  786. child = add_regulator(TWL6030_REG_V2V1, pdata->v2v1,
  787. features);
  788. if (IS_ERR(child))
  789. return PTR_ERR(child);
  790. child = add_regulator(TWL6030_REG_VMMC, pdata->vmmc,
  791. features);
  792. if (IS_ERR(child))
  793. return PTR_ERR(child);
  794. child = add_regulator(TWL6030_REG_VPP, pdata->vpp,
  795. features);
  796. if (IS_ERR(child))
  797. return PTR_ERR(child);
  798. child = add_regulator(TWL6030_REG_VUSIM, pdata->vusim,
  799. features);
  800. if (IS_ERR(child))
  801. return PTR_ERR(child);
  802. child = add_regulator(TWL6030_REG_VCXIO, pdata->vcxio,
  803. features);
  804. if (IS_ERR(child))
  805. return PTR_ERR(child);
  806. child = add_regulator(TWL6030_REG_VDAC, pdata->vdac,
  807. features);
  808. if (IS_ERR(child))
  809. return PTR_ERR(child);
  810. child = add_regulator(TWL6030_REG_VAUX1_6030, pdata->vaux1,
  811. features);
  812. if (IS_ERR(child))
  813. return PTR_ERR(child);
  814. child = add_regulator(TWL6030_REG_VAUX2_6030, pdata->vaux2,
  815. features);
  816. if (IS_ERR(child))
  817. return PTR_ERR(child);
  818. child = add_regulator(TWL6030_REG_VAUX3_6030, pdata->vaux3,
  819. features);
  820. if (IS_ERR(child))
  821. return PTR_ERR(child);
  822. child = add_regulator(TWL6030_REG_CLK32KG, pdata->clk32kg,
  823. features);
  824. if (IS_ERR(child))
  825. return PTR_ERR(child);
  826. }
  827. /* 6030 and 6025 share this regulator */
  828. if (IS_ENABLED(CONFIG_REGULATOR_TWL4030) && twl_class_is_6030()) {
  829. child = add_regulator(TWL6030_REG_VANA, pdata->vana,
  830. features);
  831. if (IS_ERR(child))
  832. return PTR_ERR(child);
  833. }
  834. /* twl6025 regulators */
  835. if (IS_ENABLED(CONFIG_REGULATOR_TWL4030) && twl_class_is_6030() &&
  836. (features & TWL6025_SUBCLASS)) {
  837. child = add_regulator(TWL6025_REG_LDO5, pdata->ldo5,
  838. features);
  839. if (IS_ERR(child))
  840. return PTR_ERR(child);
  841. child = add_regulator(TWL6025_REG_LDO1, pdata->ldo1,
  842. features);
  843. if (IS_ERR(child))
  844. return PTR_ERR(child);
  845. child = add_regulator(TWL6025_REG_LDO7, pdata->ldo7,
  846. features);
  847. if (IS_ERR(child))
  848. return PTR_ERR(child);
  849. child = add_regulator(TWL6025_REG_LDO6, pdata->ldo6,
  850. features);
  851. if (IS_ERR(child))
  852. return PTR_ERR(child);
  853. child = add_regulator(TWL6025_REG_LDOLN, pdata->ldoln,
  854. features);
  855. if (IS_ERR(child))
  856. return PTR_ERR(child);
  857. child = add_regulator(TWL6025_REG_LDO2, pdata->ldo2,
  858. features);
  859. if (IS_ERR(child))
  860. return PTR_ERR(child);
  861. child = add_regulator(TWL6025_REG_LDO4, pdata->ldo4,
  862. features);
  863. if (IS_ERR(child))
  864. return PTR_ERR(child);
  865. child = add_regulator(TWL6025_REG_LDO3, pdata->ldo3,
  866. features);
  867. if (IS_ERR(child))
  868. return PTR_ERR(child);
  869. child = add_regulator(TWL6025_REG_SMPS3, pdata->smps3,
  870. features);
  871. if (IS_ERR(child))
  872. return PTR_ERR(child);
  873. child = add_regulator(TWL6025_REG_SMPS4, pdata->smps4,
  874. features);
  875. if (IS_ERR(child))
  876. return PTR_ERR(child);
  877. child = add_regulator(TWL6025_REG_VIO, pdata->vio6025,
  878. features);
  879. if (IS_ERR(child))
  880. return PTR_ERR(child);
  881. }
  882. if (IS_ENABLED(CONFIG_CHARGER_TWL4030) && pdata->bci &&
  883. !(features & (TPS_SUBSET | TWL5031))) {
  884. child = add_child(SUB_CHIP_ID3, "twl4030_bci",
  885. pdata->bci, sizeof(*pdata->bci), false,
  886. /* irq0 = CHG_PRES, irq1 = BCI */
  887. irq_base + BCI_PRES_INTR_OFFSET,
  888. irq_base + BCI_INTR_OFFSET);
  889. if (IS_ERR(child))
  890. return PTR_ERR(child);
  891. }
  892. return 0;
  893. }
  894. /*----------------------------------------------------------------------*/
  895. /*
  896. * These three functions initialize the on-chip clock framework,
  897. * letting it generate the right frequencies for USB, MADC, and
  898. * other purposes.
  899. */
  900. static inline int __init protect_pm_master(void)
  901. {
  902. int e = 0;
  903. e = twl_i2c_write_u8(TWL_MODULE_PM_MASTER, 0,
  904. TWL4030_PM_MASTER_PROTECT_KEY);
  905. return e;
  906. }
  907. static inline int __init unprotect_pm_master(void)
  908. {
  909. int e = 0;
  910. e |= twl_i2c_write_u8(TWL_MODULE_PM_MASTER, TWL4030_PM_MASTER_KEY_CFG1,
  911. TWL4030_PM_MASTER_PROTECT_KEY);
  912. e |= twl_i2c_write_u8(TWL_MODULE_PM_MASTER, TWL4030_PM_MASTER_KEY_CFG2,
  913. TWL4030_PM_MASTER_PROTECT_KEY);
  914. return e;
  915. }
  916. static void clocks_init(struct device *dev,
  917. struct twl4030_clock_init_data *clock)
  918. {
  919. int e = 0;
  920. struct clk *osc;
  921. u32 rate;
  922. u8 ctrl = HFCLK_FREQ_26_MHZ;
  923. osc = clk_get(dev, "fck");
  924. if (IS_ERR(osc)) {
  925. printk(KERN_WARNING "Skipping twl internal clock init and "
  926. "using bootloader value (unknown osc rate)\n");
  927. return;
  928. }
  929. rate = clk_get_rate(osc);
  930. clk_put(osc);
  931. switch (rate) {
  932. case 19200000:
  933. ctrl = HFCLK_FREQ_19p2_MHZ;
  934. break;
  935. case 26000000:
  936. ctrl = HFCLK_FREQ_26_MHZ;
  937. break;
  938. case 38400000:
  939. ctrl = HFCLK_FREQ_38p4_MHZ;
  940. break;
  941. }
  942. ctrl |= HIGH_PERF_SQ;
  943. if (clock && clock->ck32k_lowpwr_enable)
  944. ctrl |= CK32K_LOWPWR_EN;
  945. e |= unprotect_pm_master();
  946. /* effect->MADC+USB ck en */
  947. e |= twl_i2c_write_u8(TWL_MODULE_PM_MASTER, ctrl, R_CFG_BOOT);
  948. e |= protect_pm_master();
  949. if (e < 0)
  950. pr_err("%s: clock init err [%d]\n", DRIVER_NAME, e);
  951. }
  952. /*----------------------------------------------------------------------*/
  953. static int twl_remove(struct i2c_client *client)
  954. {
  955. unsigned i, num_slaves;
  956. int status;
  957. if (twl_class_is_4030()) {
  958. status = twl4030_exit_irq();
  959. num_slaves = TWL_NUM_SLAVES;
  960. } else {
  961. status = twl6030_exit_irq();
  962. num_slaves = TWL_NUM_SLAVES - 1;
  963. }
  964. if (status < 0)
  965. return status;
  966. for (i = 0; i < num_slaves; i++) {
  967. struct twl_client *twl = &twl_modules[i];
  968. if (twl->client && twl->client != client)
  969. i2c_unregister_device(twl->client);
  970. twl_modules[i].client = NULL;
  971. }
  972. inuse = false;
  973. return 0;
  974. }
  975. /* NOTE: This driver only handles a single twl4030/tps659x0 chip */
  976. static int
  977. twl_probe(struct i2c_client *client, const struct i2c_device_id *id)
  978. {
  979. struct twl4030_platform_data *pdata = client->dev.platform_data;
  980. struct device_node *node = client->dev.of_node;
  981. struct platform_device *pdev;
  982. struct regmap_config *twl_regmap_config;
  983. int irq_base = 0;
  984. int status;
  985. unsigned i, num_slaves;
  986. pdev = platform_device_alloc(DRIVER_NAME, -1);
  987. if (!pdev) {
  988. dev_err(&client->dev, "can't alloc pdev\n");
  989. return -ENOMEM;
  990. }
  991. status = platform_device_add(pdev);
  992. if (status) {
  993. platform_device_put(pdev);
  994. return status;
  995. }
  996. if (node && !pdata) {
  997. /*
  998. * XXX: Temporary pdata until the information is correctly
  999. * retrieved by every TWL modules from DT.
  1000. */
  1001. pdata = devm_kzalloc(&client->dev,
  1002. sizeof(struct twl4030_platform_data),
  1003. GFP_KERNEL);
  1004. if (!pdata) {
  1005. status = -ENOMEM;
  1006. goto free;
  1007. }
  1008. }
  1009. if (!pdata) {
  1010. dev_dbg(&client->dev, "no platform data?\n");
  1011. status = -EINVAL;
  1012. goto free;
  1013. }
  1014. platform_set_drvdata(pdev, pdata);
  1015. if (i2c_check_functionality(client->adapter, I2C_FUNC_I2C) == 0) {
  1016. dev_dbg(&client->dev, "can't talk I2C?\n");
  1017. status = -EIO;
  1018. goto free;
  1019. }
  1020. if (inuse) {
  1021. dev_dbg(&client->dev, "driver is already in use\n");
  1022. status = -EBUSY;
  1023. goto free;
  1024. }
  1025. if ((id->driver_data) & TWL6030_CLASS) {
  1026. twl_id = TWL6030_CLASS_ID;
  1027. twl_map = &twl6030_map[0];
  1028. /* The charger base address is different in twl6025 */
  1029. if ((id->driver_data) & TWL6025_SUBCLASS)
  1030. twl_map[TWL_MODULE_MAIN_CHARGE].base =
  1031. TWL6025_BASEADD_CHARGER;
  1032. twl_regmap_config = twl6030_regmap_config;
  1033. num_slaves = TWL_NUM_SLAVES - 1;
  1034. } else {
  1035. twl_id = TWL4030_CLASS_ID;
  1036. twl_map = &twl4030_map[0];
  1037. twl_regmap_config = twl4030_regmap_config;
  1038. num_slaves = TWL_NUM_SLAVES;
  1039. }
  1040. for (i = 0; i < num_slaves; i++) {
  1041. struct twl_client *twl = &twl_modules[i];
  1042. if (i == 0) {
  1043. twl->client = client;
  1044. } else {
  1045. twl->client = i2c_new_dummy(client->adapter,
  1046. client->addr + i);
  1047. if (!twl->client) {
  1048. dev_err(&client->dev,
  1049. "can't attach client %d\n", i);
  1050. status = -ENOMEM;
  1051. goto fail;
  1052. }
  1053. }
  1054. twl->regmap = devm_regmap_init_i2c(twl->client,
  1055. &twl_regmap_config[i]);
  1056. if (IS_ERR(twl->regmap)) {
  1057. status = PTR_ERR(twl->regmap);
  1058. dev_err(&client->dev,
  1059. "Failed to allocate regmap %d, err: %d\n", i,
  1060. status);
  1061. goto fail;
  1062. }
  1063. }
  1064. inuse = true;
  1065. /* setup clock framework */
  1066. clocks_init(&pdev->dev, pdata->clock);
  1067. /* read TWL IDCODE Register */
  1068. if (twl_id == TWL4030_CLASS_ID) {
  1069. status = twl_read_idcode_register();
  1070. WARN(status < 0, "Error: reading twl_idcode register value\n");
  1071. }
  1072. /* load power event scripts */
  1073. if (IS_ENABLED(CONFIG_TWL4030_POWER) && pdata->power)
  1074. twl4030_power_init(pdata->power);
  1075. /* Maybe init the T2 Interrupt subsystem */
  1076. if (client->irq) {
  1077. if (twl_class_is_4030()) {
  1078. twl4030_init_chip_irq(id->name);
  1079. irq_base = twl4030_init_irq(&client->dev, client->irq);
  1080. } else {
  1081. irq_base = twl6030_init_irq(&client->dev, client->irq);
  1082. }
  1083. if (irq_base < 0) {
  1084. status = irq_base;
  1085. goto fail;
  1086. }
  1087. }
  1088. /*
  1089. * Disable TWL4030/TWL5030 I2C Pull-up on I2C1 and I2C4(SR) interface.
  1090. * Program I2C_SCL_CTRL_PU(bit 0)=0, I2C_SDA_CTRL_PU (bit 2)=0,
  1091. * SR_I2C_SCL_CTRL_PU(bit 4)=0 and SR_I2C_SDA_CTRL_PU(bit 6)=0.
  1092. */
  1093. if (twl_class_is_4030()) {
  1094. u8 temp;
  1095. twl_i2c_read_u8(TWL4030_MODULE_INTBR, &temp, REG_GPPUPDCTR1);
  1096. temp &= ~(SR_I2C_SDA_CTRL_PU | SR_I2C_SCL_CTRL_PU | \
  1097. I2C_SDA_CTRL_PU | I2C_SCL_CTRL_PU);
  1098. twl_i2c_write_u8(TWL4030_MODULE_INTBR, temp, REG_GPPUPDCTR1);
  1099. }
  1100. status = -ENODEV;
  1101. if (node)
  1102. status = of_platform_populate(node, NULL, NULL, &client->dev);
  1103. if (status)
  1104. status = add_children(pdata, irq_base, id->driver_data);
  1105. fail:
  1106. if (status < 0)
  1107. twl_remove(client);
  1108. free:
  1109. if (status < 0)
  1110. platform_device_unregister(pdev);
  1111. return status;
  1112. }
  1113. static const struct i2c_device_id twl_ids[] = {
  1114. { "twl4030", TWL4030_VAUX2 }, /* "Triton 2" */
  1115. { "twl5030", 0 }, /* T2 updated */
  1116. { "twl5031", TWL5031 }, /* TWL5030 updated */
  1117. { "tps65950", 0 }, /* catalog version of twl5030 */
  1118. { "tps65930", TPS_SUBSET }, /* fewer LDOs and DACs; no charger */
  1119. { "tps65920", TPS_SUBSET }, /* fewer LDOs; no codec or charger */
  1120. { "tps65921", TPS_SUBSET }, /* fewer LDOs; no codec, no LED
  1121. and vibrator. Charger in USB module*/
  1122. { "twl6030", TWL6030_CLASS }, /* "Phoenix power chip" */
  1123. { "twl6025", TWL6030_CLASS | TWL6025_SUBCLASS }, /* "Phoenix lite" */
  1124. { /* end of list */ },
  1125. };
  1126. MODULE_DEVICE_TABLE(i2c, twl_ids);
  1127. /* One Client Driver , 4 Clients */
  1128. static struct i2c_driver twl_driver = {
  1129. .driver.name = DRIVER_NAME,
  1130. .id_table = twl_ids,
  1131. .probe = twl_probe,
  1132. .remove = twl_remove,
  1133. };
  1134. static int __init twl_init(void)
  1135. {
  1136. return i2c_add_driver(&twl_driver);
  1137. }
  1138. subsys_initcall(twl_init);
  1139. static void __exit twl_exit(void)
  1140. {
  1141. i2c_del_driver(&twl_driver);
  1142. }
  1143. module_exit(twl_exit);
  1144. MODULE_AUTHOR("Texas Instruments, Inc.");
  1145. MODULE_DESCRIPTION("I2C Core interface for TWL");
  1146. MODULE_LICENSE("GPL");