twl-regulator.c 18 KB

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  1. /*
  2. * twl-regulator.c -- support regulators in twl4030/twl6030 family chips
  3. *
  4. * Copyright (C) 2008 David Brownell
  5. *
  6. * This program is free software; you can redistribute it and/or modify
  7. * it under the terms of the GNU General Public License as published by
  8. * the Free Software Foundation; either version 2 of the License, or
  9. * (at your option) any later version.
  10. */
  11. #include <linux/module.h>
  12. #include <linux/string.h>
  13. #include <linux/slab.h>
  14. #include <linux/init.h>
  15. #include <linux/err.h>
  16. #include <linux/platform_device.h>
  17. #include <linux/of.h>
  18. #include <linux/of_device.h>
  19. #include <linux/regulator/driver.h>
  20. #include <linux/regulator/machine.h>
  21. #include <linux/regulator/of_regulator.h>
  22. #include <linux/mfd/twl.h>
  23. #include <linux/delay.h>
  24. /*
  25. * The TWL4030/TW5030/TPS659x0 family chips include power management, a
  26. * USB OTG transceiver, an RTC, ADC, PWM, and lots more. Some versions
  27. * include an audio codec, battery charger, and more voltage regulators.
  28. * These chips are often used in OMAP-based systems.
  29. *
  30. * This driver implements software-based resource control for various
  31. * voltage regulators. This is usually augmented with state machine
  32. * based control.
  33. */
  34. struct twlreg_info {
  35. /* start of regulator's PM_RECEIVER control register bank */
  36. u8 base;
  37. /* twl resource ID, for resource control state machine */
  38. u8 id;
  39. /* voltage in mV = table[VSEL]; table_len must be a power-of-two */
  40. u8 table_len;
  41. const u16 *table;
  42. /* State REMAP default configuration */
  43. u8 remap;
  44. /* used by regulator core */
  45. struct regulator_desc desc;
  46. /* chip specific features */
  47. unsigned long features;
  48. /* data passed from board for external get/set voltage */
  49. void *data;
  50. };
  51. /* LDO control registers ... offset is from the base of its register bank.
  52. * The first three registers of all power resource banks help hardware to
  53. * manage the various resource groups.
  54. */
  55. /* Common offset in TWL4030/6030 */
  56. #define VREG_GRP 0
  57. /* TWL4030 register offsets */
  58. #define VREG_TYPE 1
  59. #define VREG_REMAP 2
  60. #define VREG_DEDICATED 3 /* LDO control */
  61. #define VREG_VOLTAGE_SMPS_4030 9
  62. /* TWL6030 register offsets */
  63. #define VREG_TRANS 1
  64. #define VREG_STATE 2
  65. #define VREG_VOLTAGE 3
  66. #define VREG_VOLTAGE_SMPS 4
  67. static inline int
  68. twlreg_read(struct twlreg_info *info, unsigned slave_subgp, unsigned offset)
  69. {
  70. u8 value;
  71. int status;
  72. status = twl_i2c_read_u8(slave_subgp,
  73. &value, info->base + offset);
  74. return (status < 0) ? status : value;
  75. }
  76. static inline int
  77. twlreg_write(struct twlreg_info *info, unsigned slave_subgp, unsigned offset,
  78. u8 value)
  79. {
  80. return twl_i2c_write_u8(slave_subgp,
  81. value, info->base + offset);
  82. }
  83. /*----------------------------------------------------------------------*/
  84. /* generic power resource operations, which work on all regulators */
  85. static int twlreg_grp(struct regulator_dev *rdev)
  86. {
  87. return twlreg_read(rdev_get_drvdata(rdev), TWL_MODULE_PM_RECEIVER,
  88. VREG_GRP);
  89. }
  90. /*
  91. * Enable/disable regulators by joining/leaving the P1 (processor) group.
  92. * We assume nobody else is updating the DEV_GRP registers.
  93. */
  94. /* definition for 4030 family */
  95. #define P3_GRP_4030 BIT(7) /* "peripherals" */
  96. #define P2_GRP_4030 BIT(6) /* secondary processor, modem, etc */
  97. #define P1_GRP_4030 BIT(5) /* CPU/Linux */
  98. /* definition for 6030 family */
  99. #define P3_GRP_6030 BIT(2) /* secondary processor, modem, etc */
  100. #define P2_GRP_6030 BIT(1) /* "peripherals" */
  101. #define P1_GRP_6030 BIT(0) /* CPU/Linux */
  102. static int twl4030reg_is_enabled(struct regulator_dev *rdev)
  103. {
  104. int state = twlreg_grp(rdev);
  105. if (state < 0)
  106. return state;
  107. return state & P1_GRP_4030;
  108. }
  109. #define PB_I2C_BUSY BIT(0)
  110. #define PB_I2C_BWEN BIT(1)
  111. /* Wait until buffer empty/ready to send a word on power bus. */
  112. static int twl4030_wait_pb_ready(void)
  113. {
  114. int ret;
  115. int timeout = 10;
  116. u8 val;
  117. do {
  118. ret = twl_i2c_read_u8(TWL_MODULE_PM_MASTER, &val,
  119. TWL4030_PM_MASTER_PB_CFG);
  120. if (ret < 0)
  121. return ret;
  122. if (!(val & PB_I2C_BUSY))
  123. return 0;
  124. mdelay(1);
  125. timeout--;
  126. } while (timeout);
  127. return -ETIMEDOUT;
  128. }
  129. /* Send a word over the powerbus */
  130. static int twl4030_send_pb_msg(unsigned msg)
  131. {
  132. u8 val;
  133. int ret;
  134. /* save powerbus configuration */
  135. ret = twl_i2c_read_u8(TWL_MODULE_PM_MASTER, &val,
  136. TWL4030_PM_MASTER_PB_CFG);
  137. if (ret < 0)
  138. return ret;
  139. /* Enable i2c access to powerbus */
  140. ret = twl_i2c_write_u8(TWL_MODULE_PM_MASTER, val | PB_I2C_BWEN,
  141. TWL4030_PM_MASTER_PB_CFG);
  142. if (ret < 0)
  143. return ret;
  144. ret = twl4030_wait_pb_ready();
  145. if (ret < 0)
  146. return ret;
  147. ret = twl_i2c_write_u8(TWL_MODULE_PM_MASTER, msg >> 8,
  148. TWL4030_PM_MASTER_PB_WORD_MSB);
  149. if (ret < 0)
  150. return ret;
  151. ret = twl_i2c_write_u8(TWL_MODULE_PM_MASTER, msg & 0xff,
  152. TWL4030_PM_MASTER_PB_WORD_LSB);
  153. if (ret < 0)
  154. return ret;
  155. ret = twl4030_wait_pb_ready();
  156. if (ret < 0)
  157. return ret;
  158. /* Restore powerbus configuration */
  159. return twl_i2c_write_u8(TWL_MODULE_PM_MASTER, val,
  160. TWL4030_PM_MASTER_PB_CFG);
  161. }
  162. static int twl4030reg_enable(struct regulator_dev *rdev)
  163. {
  164. struct twlreg_info *info = rdev_get_drvdata(rdev);
  165. int grp;
  166. int ret;
  167. grp = twlreg_grp(rdev);
  168. if (grp < 0)
  169. return grp;
  170. grp |= P1_GRP_4030;
  171. ret = twlreg_write(info, TWL_MODULE_PM_RECEIVER, VREG_GRP, grp);
  172. return ret;
  173. }
  174. static int twl4030reg_disable(struct regulator_dev *rdev)
  175. {
  176. struct twlreg_info *info = rdev_get_drvdata(rdev);
  177. int grp;
  178. int ret;
  179. grp = twlreg_grp(rdev);
  180. if (grp < 0)
  181. return grp;
  182. grp &= ~(P1_GRP_4030 | P2_GRP_4030 | P3_GRP_4030);
  183. ret = twlreg_write(info, TWL_MODULE_PM_RECEIVER, VREG_GRP, grp);
  184. return ret;
  185. }
  186. static int twl4030reg_get_status(struct regulator_dev *rdev)
  187. {
  188. int state = twlreg_grp(rdev);
  189. if (state < 0)
  190. return state;
  191. state &= 0x0f;
  192. /* assume state != WARM_RESET; we'd not be running... */
  193. if (!state)
  194. return REGULATOR_STATUS_OFF;
  195. return (state & BIT(3))
  196. ? REGULATOR_STATUS_NORMAL
  197. : REGULATOR_STATUS_STANDBY;
  198. }
  199. static int twl4030reg_set_mode(struct regulator_dev *rdev, unsigned mode)
  200. {
  201. struct twlreg_info *info = rdev_get_drvdata(rdev);
  202. unsigned message;
  203. /* We can only set the mode through state machine commands... */
  204. switch (mode) {
  205. case REGULATOR_MODE_NORMAL:
  206. message = MSG_SINGULAR(DEV_GRP_P1, info->id, RES_STATE_ACTIVE);
  207. break;
  208. case REGULATOR_MODE_STANDBY:
  209. message = MSG_SINGULAR(DEV_GRP_P1, info->id, RES_STATE_SLEEP);
  210. break;
  211. default:
  212. return -EINVAL;
  213. }
  214. return twl4030_send_pb_msg(message);
  215. }
  216. static inline unsigned int twl4030reg_map_mode(unsigned int mode)
  217. {
  218. switch (mode) {
  219. case RES_STATE_ACTIVE:
  220. return REGULATOR_MODE_NORMAL;
  221. case RES_STATE_SLEEP:
  222. return REGULATOR_MODE_STANDBY;
  223. default:
  224. return REGULATOR_MODE_INVALID;
  225. }
  226. }
  227. /*----------------------------------------------------------------------*/
  228. /*
  229. * Support for adjustable-voltage LDOs uses a four bit (or less) voltage
  230. * select field in its control register. We use tables indexed by VSEL
  231. * to record voltages in milliVolts. (Accuracy is about three percent.)
  232. *
  233. * Note that VSEL values for VAUX2 changed in twl5030 and newer silicon;
  234. * currently handled by listing two slightly different VAUX2 regulators,
  235. * only one of which will be configured.
  236. *
  237. * VSEL values documented as "TI cannot support these values" are flagged
  238. * in these tables as UNSUP() values; we normally won't assign them.
  239. *
  240. * VAUX3 at 3V is incorrectly listed in some TI manuals as unsupported.
  241. * TI are revising the twl5030/tps659x0 specs to support that 3.0V setting.
  242. */
  243. #define UNSUP_MASK 0x8000
  244. #define UNSUP(x) (UNSUP_MASK | (x))
  245. #define IS_UNSUP(info, x) \
  246. ((UNSUP_MASK & (x)) && \
  247. !((info)->features & TWL4030_ALLOW_UNSUPPORTED))
  248. #define LDO_MV(x) (~UNSUP_MASK & (x))
  249. static const u16 VAUX1_VSEL_table[] = {
  250. UNSUP(1500), UNSUP(1800), 2500, 2800,
  251. 3000, 3000, 3000, 3000,
  252. };
  253. static const u16 VAUX2_4030_VSEL_table[] = {
  254. UNSUP(1000), UNSUP(1000), UNSUP(1200), 1300,
  255. 1500, 1800, UNSUP(1850), 2500,
  256. UNSUP(2600), 2800, UNSUP(2850), UNSUP(3000),
  257. UNSUP(3150), UNSUP(3150), UNSUP(3150), UNSUP(3150),
  258. };
  259. static const u16 VAUX2_VSEL_table[] = {
  260. 1700, 1700, 1900, 1300,
  261. 1500, 1800, 2000, 2500,
  262. 2100, 2800, 2200, 2300,
  263. 2400, 2400, 2400, 2400,
  264. };
  265. static const u16 VAUX3_VSEL_table[] = {
  266. 1500, 1800, 2500, 2800,
  267. 3000, 3000, 3000, 3000,
  268. };
  269. static const u16 VAUX4_VSEL_table[] = {
  270. 700, 1000, 1200, UNSUP(1300),
  271. 1500, 1800, UNSUP(1850), 2500,
  272. UNSUP(2600), 2800, UNSUP(2850), UNSUP(3000),
  273. UNSUP(3150), UNSUP(3150), UNSUP(3150), UNSUP(3150),
  274. };
  275. static const u16 VMMC1_VSEL_table[] = {
  276. 1850, 2850, 3000, 3150,
  277. };
  278. static const u16 VMMC2_VSEL_table[] = {
  279. UNSUP(1000), UNSUP(1000), UNSUP(1200), UNSUP(1300),
  280. UNSUP(1500), UNSUP(1800), 1850, UNSUP(2500),
  281. 2600, 2800, 2850, 3000,
  282. 3150, 3150, 3150, 3150,
  283. };
  284. static const u16 VPLL1_VSEL_table[] = {
  285. 1000, 1200, 1300, 1800,
  286. UNSUP(2800), UNSUP(3000), UNSUP(3000), UNSUP(3000),
  287. };
  288. static const u16 VPLL2_VSEL_table[] = {
  289. 700, 1000, 1200, 1300,
  290. UNSUP(1500), 1800, UNSUP(1850), UNSUP(2500),
  291. UNSUP(2600), UNSUP(2800), UNSUP(2850), UNSUP(3000),
  292. UNSUP(3150), UNSUP(3150), UNSUP(3150), UNSUP(3150),
  293. };
  294. static const u16 VSIM_VSEL_table[] = {
  295. UNSUP(1000), UNSUP(1200), UNSUP(1300), 1800,
  296. 2800, 3000, 3000, 3000,
  297. };
  298. static const u16 VDAC_VSEL_table[] = {
  299. 1200, 1300, 1800, 1800,
  300. };
  301. static const u16 VIO_VSEL_table[] = {
  302. 1800, 1850,
  303. };
  304. static const u16 VINTANA2_VSEL_table[] = {
  305. 2500, 2750,
  306. };
  307. static int twl4030ldo_list_voltage(struct regulator_dev *rdev, unsigned index)
  308. {
  309. struct twlreg_info *info = rdev_get_drvdata(rdev);
  310. int mV = info->table[index];
  311. return IS_UNSUP(info, mV) ? 0 : (LDO_MV(mV) * 1000);
  312. }
  313. static int
  314. twl4030ldo_set_voltage_sel(struct regulator_dev *rdev, unsigned selector)
  315. {
  316. struct twlreg_info *info = rdev_get_drvdata(rdev);
  317. return twlreg_write(info, TWL_MODULE_PM_RECEIVER, VREG_VOLTAGE,
  318. selector);
  319. }
  320. static int twl4030ldo_get_voltage_sel(struct regulator_dev *rdev)
  321. {
  322. struct twlreg_info *info = rdev_get_drvdata(rdev);
  323. int vsel = twlreg_read(info, TWL_MODULE_PM_RECEIVER, VREG_VOLTAGE);
  324. if (vsel < 0)
  325. return vsel;
  326. vsel &= info->table_len - 1;
  327. return vsel;
  328. }
  329. static struct regulator_ops twl4030ldo_ops = {
  330. .list_voltage = twl4030ldo_list_voltage,
  331. .set_voltage_sel = twl4030ldo_set_voltage_sel,
  332. .get_voltage_sel = twl4030ldo_get_voltage_sel,
  333. .enable = twl4030reg_enable,
  334. .disable = twl4030reg_disable,
  335. .is_enabled = twl4030reg_is_enabled,
  336. .set_mode = twl4030reg_set_mode,
  337. .get_status = twl4030reg_get_status,
  338. };
  339. static int
  340. twl4030smps_set_voltage(struct regulator_dev *rdev, int min_uV, int max_uV,
  341. unsigned *selector)
  342. {
  343. struct twlreg_info *info = rdev_get_drvdata(rdev);
  344. int vsel = DIV_ROUND_UP(min_uV - 600000, 12500);
  345. twlreg_write(info, TWL_MODULE_PM_RECEIVER, VREG_VOLTAGE_SMPS_4030, vsel);
  346. return 0;
  347. }
  348. static int twl4030smps_get_voltage(struct regulator_dev *rdev)
  349. {
  350. struct twlreg_info *info = rdev_get_drvdata(rdev);
  351. int vsel;
  352. vsel = twlreg_read(info, TWL_MODULE_PM_RECEIVER,
  353. VREG_VOLTAGE_SMPS_4030);
  354. return vsel * 12500 + 600000;
  355. }
  356. static struct regulator_ops twl4030smps_ops = {
  357. .set_voltage = twl4030smps_set_voltage,
  358. .get_voltage = twl4030smps_get_voltage,
  359. };
  360. /*----------------------------------------------------------------------*/
  361. static struct regulator_ops twl4030fixed_ops = {
  362. .list_voltage = regulator_list_voltage_linear,
  363. .enable = twl4030reg_enable,
  364. .disable = twl4030reg_disable,
  365. .is_enabled = twl4030reg_is_enabled,
  366. .set_mode = twl4030reg_set_mode,
  367. .get_status = twl4030reg_get_status,
  368. };
  369. /*----------------------------------------------------------------------*/
  370. #define TWL4030_ADJUSTABLE_LDO(label, offset, num, turnon_delay, remap_conf) \
  371. static const struct twlreg_info TWL4030_INFO_##label = { \
  372. .base = offset, \
  373. .id = num, \
  374. .table_len = ARRAY_SIZE(label##_VSEL_table), \
  375. .table = label##_VSEL_table, \
  376. .remap = remap_conf, \
  377. .desc = { \
  378. .name = #label, \
  379. .id = TWL4030_REG_##label, \
  380. .n_voltages = ARRAY_SIZE(label##_VSEL_table), \
  381. .ops = &twl4030ldo_ops, \
  382. .type = REGULATOR_VOLTAGE, \
  383. .owner = THIS_MODULE, \
  384. .enable_time = turnon_delay, \
  385. .of_map_mode = twl4030reg_map_mode, \
  386. }, \
  387. }
  388. #define TWL4030_ADJUSTABLE_SMPS(label, offset, num, turnon_delay, remap_conf) \
  389. static const struct twlreg_info TWL4030_INFO_##label = { \
  390. .base = offset, \
  391. .id = num, \
  392. .remap = remap_conf, \
  393. .desc = { \
  394. .name = #label, \
  395. .id = TWL4030_REG_##label, \
  396. .ops = &twl4030smps_ops, \
  397. .type = REGULATOR_VOLTAGE, \
  398. .owner = THIS_MODULE, \
  399. .enable_time = turnon_delay, \
  400. .of_map_mode = twl4030reg_map_mode, \
  401. }, \
  402. }
  403. #define TWL4030_FIXED_LDO(label, offset, mVolts, num, turnon_delay, \
  404. remap_conf) \
  405. static const struct twlreg_info TWLFIXED_INFO_##label = { \
  406. .base = offset, \
  407. .id = num, \
  408. .remap = remap_conf, \
  409. .desc = { \
  410. .name = #label, \
  411. .id = TWL4030##_REG_##label, \
  412. .n_voltages = 1, \
  413. .ops = &twl4030fixed_ops, \
  414. .type = REGULATOR_VOLTAGE, \
  415. .owner = THIS_MODULE, \
  416. .min_uV = mVolts * 1000, \
  417. .enable_time = turnon_delay, \
  418. .of_map_mode = twl4030reg_map_mode, \
  419. }, \
  420. }
  421. /*
  422. * We list regulators here if systems need some level of
  423. * software control over them after boot.
  424. */
  425. TWL4030_ADJUSTABLE_LDO(VAUX1, 0x17, 1, 100, 0x08);
  426. TWL4030_ADJUSTABLE_LDO(VAUX2_4030, 0x1b, 2, 100, 0x08);
  427. TWL4030_ADJUSTABLE_LDO(VAUX2, 0x1b, 2, 100, 0x08);
  428. TWL4030_ADJUSTABLE_LDO(VAUX3, 0x1f, 3, 100, 0x08);
  429. TWL4030_ADJUSTABLE_LDO(VAUX4, 0x23, 4, 100, 0x08);
  430. TWL4030_ADJUSTABLE_LDO(VMMC1, 0x27, 5, 100, 0x08);
  431. TWL4030_ADJUSTABLE_LDO(VMMC2, 0x2b, 6, 100, 0x08);
  432. TWL4030_ADJUSTABLE_LDO(VPLL1, 0x2f, 7, 100, 0x00);
  433. TWL4030_ADJUSTABLE_LDO(VPLL2, 0x33, 8, 100, 0x08);
  434. TWL4030_ADJUSTABLE_LDO(VSIM, 0x37, 9, 100, 0x00);
  435. TWL4030_ADJUSTABLE_LDO(VDAC, 0x3b, 10, 100, 0x08);
  436. TWL4030_ADJUSTABLE_LDO(VINTANA2, 0x43, 12, 100, 0x08);
  437. TWL4030_ADJUSTABLE_LDO(VIO, 0x4b, 14, 1000, 0x08);
  438. TWL4030_ADJUSTABLE_SMPS(VDD1, 0x55, 15, 1000, 0x08);
  439. TWL4030_ADJUSTABLE_SMPS(VDD2, 0x63, 16, 1000, 0x08);
  440. /* VUSBCP is managed *only* by the USB subchip */
  441. TWL4030_FIXED_LDO(VINTANA1, 0x3f, 1500, 11, 100, 0x08);
  442. TWL4030_FIXED_LDO(VINTDIG, 0x47, 1500, 13, 100, 0x08);
  443. TWL4030_FIXED_LDO(VUSB1V5, 0x71, 1500, 17, 100, 0x08);
  444. TWL4030_FIXED_LDO(VUSB1V8, 0x74, 1800, 18, 100, 0x08);
  445. TWL4030_FIXED_LDO(VUSB3V1, 0x77, 3100, 19, 150, 0x08);
  446. #define TWL_OF_MATCH(comp, family, label) \
  447. { \
  448. .compatible = comp, \
  449. .data = &family##_INFO_##label, \
  450. }
  451. #define TWL4030_OF_MATCH(comp, label) TWL_OF_MATCH(comp, TWL4030, label)
  452. #define TWL6030_OF_MATCH(comp, label) TWL_OF_MATCH(comp, TWL6030, label)
  453. #define TWL6032_OF_MATCH(comp, label) TWL_OF_MATCH(comp, TWL6032, label)
  454. #define TWLFIXED_OF_MATCH(comp, label) TWL_OF_MATCH(comp, TWLFIXED, label)
  455. #define TWLSMPS_OF_MATCH(comp, label) TWL_OF_MATCH(comp, TWLSMPS, label)
  456. static const struct of_device_id twl_of_match[] = {
  457. TWL4030_OF_MATCH("ti,twl4030-vaux1", VAUX1),
  458. TWL4030_OF_MATCH("ti,twl4030-vaux2", VAUX2_4030),
  459. TWL4030_OF_MATCH("ti,twl5030-vaux2", VAUX2),
  460. TWL4030_OF_MATCH("ti,twl4030-vaux3", VAUX3),
  461. TWL4030_OF_MATCH("ti,twl4030-vaux4", VAUX4),
  462. TWL4030_OF_MATCH("ti,twl4030-vmmc1", VMMC1),
  463. TWL4030_OF_MATCH("ti,twl4030-vmmc2", VMMC2),
  464. TWL4030_OF_MATCH("ti,twl4030-vpll1", VPLL1),
  465. TWL4030_OF_MATCH("ti,twl4030-vpll2", VPLL2),
  466. TWL4030_OF_MATCH("ti,twl4030-vsim", VSIM),
  467. TWL4030_OF_MATCH("ti,twl4030-vdac", VDAC),
  468. TWL4030_OF_MATCH("ti,twl4030-vintana2", VINTANA2),
  469. TWL4030_OF_MATCH("ti,twl4030-vio", VIO),
  470. TWL4030_OF_MATCH("ti,twl4030-vdd1", VDD1),
  471. TWL4030_OF_MATCH("ti,twl4030-vdd2", VDD2),
  472. TWLFIXED_OF_MATCH("ti,twl4030-vintana1", VINTANA1),
  473. TWLFIXED_OF_MATCH("ti,twl4030-vintdig", VINTDIG),
  474. TWLFIXED_OF_MATCH("ti,twl4030-vusb1v5", VUSB1V5),
  475. TWLFIXED_OF_MATCH("ti,twl4030-vusb1v8", VUSB1V8),
  476. TWLFIXED_OF_MATCH("ti,twl4030-vusb3v1", VUSB3V1),
  477. {},
  478. };
  479. MODULE_DEVICE_TABLE(of, twl_of_match);
  480. static int twlreg_probe(struct platform_device *pdev)
  481. {
  482. int id;
  483. struct twlreg_info *info;
  484. const struct twlreg_info *template;
  485. struct regulator_init_data *initdata;
  486. struct regulation_constraints *c;
  487. struct regulator_dev *rdev;
  488. const struct of_device_id *match;
  489. struct regulator_config config = { };
  490. match = of_match_device(twl_of_match, &pdev->dev);
  491. if (!match)
  492. return -ENODEV;
  493. template = match->data;
  494. if (!template)
  495. return -ENODEV;
  496. id = template->desc.id;
  497. initdata = of_get_regulator_init_data(&pdev->dev, pdev->dev.of_node,
  498. &template->desc);
  499. if (!initdata)
  500. return -EINVAL;
  501. info = devm_kmemdup(&pdev->dev, template, sizeof(*info), GFP_KERNEL);
  502. if (!info)
  503. return -ENOMEM;
  504. /* Constrain board-specific capabilities according to what
  505. * this driver and the chip itself can actually do.
  506. */
  507. c = &initdata->constraints;
  508. c->valid_modes_mask &= REGULATOR_MODE_NORMAL | REGULATOR_MODE_STANDBY;
  509. c->valid_ops_mask &= REGULATOR_CHANGE_VOLTAGE
  510. | REGULATOR_CHANGE_MODE
  511. | REGULATOR_CHANGE_STATUS;
  512. switch (id) {
  513. case TWL4030_REG_VIO:
  514. case TWL4030_REG_VDD1:
  515. case TWL4030_REG_VDD2:
  516. case TWL4030_REG_VPLL1:
  517. case TWL4030_REG_VINTANA1:
  518. case TWL4030_REG_VINTANA2:
  519. case TWL4030_REG_VINTDIG:
  520. c->always_on = true;
  521. break;
  522. default:
  523. break;
  524. }
  525. config.dev = &pdev->dev;
  526. config.init_data = initdata;
  527. config.driver_data = info;
  528. config.of_node = pdev->dev.of_node;
  529. rdev = devm_regulator_register(&pdev->dev, &info->desc, &config);
  530. if (IS_ERR(rdev)) {
  531. dev_err(&pdev->dev, "can't register %s, %ld\n",
  532. info->desc.name, PTR_ERR(rdev));
  533. return PTR_ERR(rdev);
  534. }
  535. platform_set_drvdata(pdev, rdev);
  536. twlreg_write(info, TWL_MODULE_PM_RECEIVER, VREG_REMAP, info->remap);
  537. /* NOTE: many regulators support short-circuit IRQs (presentable
  538. * as REGULATOR_OVER_CURRENT notifications?) configured via:
  539. * - SC_CONFIG
  540. * - SC_DETECT1 (vintana2, vmmc1/2, vaux1/2/3/4)
  541. * - SC_DETECT2 (vusb, vdac, vio, vdd1/2, vpll2)
  542. * - IT_CONFIG
  543. */
  544. return 0;
  545. }
  546. MODULE_ALIAS("platform:twl4030_reg");
  547. static struct platform_driver twlreg_driver = {
  548. .probe = twlreg_probe,
  549. /* NOTE: short name, to work around driver model truncation of
  550. * "twl_regulator.12" (and friends) to "twl_regulator.1".
  551. */
  552. .driver = {
  553. .name = "twl4030_reg",
  554. .of_match_table = of_match_ptr(twl_of_match),
  555. },
  556. };
  557. static int __init twlreg_init(void)
  558. {
  559. return platform_driver_register(&twlreg_driver);
  560. }
  561. subsys_initcall(twlreg_init);
  562. static void __exit twlreg_exit(void)
  563. {
  564. platform_driver_unregister(&twlreg_driver);
  565. }
  566. module_exit(twlreg_exit)
  567. MODULE_DESCRIPTION("TWL4030 regulator driver");
  568. MODULE_LICENSE("GPL");