rk808-regulator.c 24 KB

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  1. /*
  2. * Regulator driver for Rockchip RK808/RK818
  3. *
  4. * Copyright (c) 2014, Fuzhou Rockchip Electronics Co., Ltd
  5. *
  6. * Author: Chris Zhong <zyw@rock-chips.com>
  7. * Author: Zhang Qing <zhangqing@rock-chips.com>
  8. *
  9. * Copyright (C) 2016 PHYTEC Messtechnik GmbH
  10. *
  11. * Author: Wadim Egorov <w.egorov@phytec.de>
  12. *
  13. * This program is free software; you can redistribute it and/or modify it
  14. * under the terms and conditions of the GNU General Public License,
  15. * version 2, as published by the Free Software Foundation.
  16. *
  17. * This program is distributed in the hope it will be useful, but WITHOUT
  18. * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
  19. * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
  20. * more details.
  21. */
  22. #include <linux/delay.h>
  23. #include <linux/gpio.h>
  24. #include <linux/i2c.h>
  25. #include <linux/module.h>
  26. #include <linux/of_device.h>
  27. #include <linux/of_gpio.h>
  28. #include <linux/mfd/rk808.h>
  29. #include <linux/regulator/driver.h>
  30. #include <linux/regulator/of_regulator.h>
  31. #include <linux/gpio/consumer.h>
  32. /* Field Definitions */
  33. #define RK808_BUCK_VSEL_MASK 0x3f
  34. #define RK808_BUCK4_VSEL_MASK 0xf
  35. #define RK808_LDO_VSEL_MASK 0x1f
  36. #define RK818_BUCK_VSEL_MASK 0x3f
  37. #define RK818_BUCK4_VSEL_MASK 0x1f
  38. #define RK818_LDO_VSEL_MASK 0x1f
  39. #define RK818_LDO3_ON_VSEL_MASK 0xf
  40. #define RK818_BOOST_ON_VSEL_MASK 0xe0
  41. /* Ramp rate definitions for buck1 / buck2 only */
  42. #define RK808_RAMP_RATE_OFFSET 3
  43. #define RK808_RAMP_RATE_MASK (3 << RK808_RAMP_RATE_OFFSET)
  44. #define RK808_RAMP_RATE_2MV_PER_US (0 << RK808_RAMP_RATE_OFFSET)
  45. #define RK808_RAMP_RATE_4MV_PER_US (1 << RK808_RAMP_RATE_OFFSET)
  46. #define RK808_RAMP_RATE_6MV_PER_US (2 << RK808_RAMP_RATE_OFFSET)
  47. #define RK808_RAMP_RATE_10MV_PER_US (3 << RK808_RAMP_RATE_OFFSET)
  48. #define RK808_DVS2_POL BIT(2)
  49. #define RK808_DVS1_POL BIT(1)
  50. /* Offset from XXX_ON_VSEL to XXX_SLP_VSEL */
  51. #define RK808_SLP_REG_OFFSET 1
  52. /* Offset from XXX_ON_VSEL to XXX_DVS_VSEL */
  53. #define RK808_DVS_REG_OFFSET 2
  54. /* Offset from XXX_EN_REG to SLEEP_SET_OFF_XXX */
  55. #define RK808_SLP_SET_OFF_REG_OFFSET 2
  56. /* max steps for increase voltage of Buck1/2, equal 100mv*/
  57. #define MAX_STEPS_ONE_TIME 8
  58. #define RK805_DESC(_id, _match, _supply, _min, _max, _step, _vreg, \
  59. _vmask, _ereg, _emask, _etime) \
  60. [_id] = { \
  61. .name = (_match), \
  62. .supply_name = (_supply), \
  63. .of_match = of_match_ptr(_match), \
  64. .regulators_node = of_match_ptr("regulators"), \
  65. .type = REGULATOR_VOLTAGE, \
  66. .id = (_id), \
  67. .n_voltages = (((_max) - (_min)) / (_step) + 1), \
  68. .owner = THIS_MODULE, \
  69. .min_uV = (_min) * 1000, \
  70. .uV_step = (_step) * 1000, \
  71. .vsel_reg = (_vreg), \
  72. .vsel_mask = (_vmask), \
  73. .enable_reg = (_ereg), \
  74. .enable_mask = (_emask), \
  75. .enable_time = (_etime), \
  76. .ops = &rk805_reg_ops, \
  77. }
  78. #define RK8XX_DESC(_id, _match, _supply, _min, _max, _step, _vreg, \
  79. _vmask, _ereg, _emask, _etime) \
  80. [_id] = { \
  81. .name = (_match), \
  82. .supply_name = (_supply), \
  83. .of_match = of_match_ptr(_match), \
  84. .regulators_node = of_match_ptr("regulators"), \
  85. .type = REGULATOR_VOLTAGE, \
  86. .id = (_id), \
  87. .n_voltages = (((_max) - (_min)) / (_step) + 1), \
  88. .owner = THIS_MODULE, \
  89. .min_uV = (_min) * 1000, \
  90. .uV_step = (_step) * 1000, \
  91. .vsel_reg = (_vreg), \
  92. .vsel_mask = (_vmask), \
  93. .enable_reg = (_ereg), \
  94. .enable_mask = (_emask), \
  95. .enable_time = (_etime), \
  96. .ops = &rk808_reg_ops, \
  97. }
  98. #define RK8XX_DESC_SWITCH(_id, _match, _supply, _ereg, _emask) \
  99. [_id] = { \
  100. .name = (_match), \
  101. .supply_name = (_supply), \
  102. .of_match = of_match_ptr(_match), \
  103. .regulators_node = of_match_ptr("regulators"), \
  104. .type = REGULATOR_VOLTAGE, \
  105. .id = (_id), \
  106. .enable_reg = (_ereg), \
  107. .enable_mask = (_emask), \
  108. .owner = THIS_MODULE, \
  109. .ops = &rk808_switch_ops \
  110. }
  111. struct rk808_regulator_data {
  112. struct gpio_desc *dvs_gpio[2];
  113. };
  114. static const int rk808_buck_config_regs[] = {
  115. RK808_BUCK1_CONFIG_REG,
  116. RK808_BUCK2_CONFIG_REG,
  117. RK808_BUCK3_CONFIG_REG,
  118. RK808_BUCK4_CONFIG_REG,
  119. };
  120. static const struct regulator_linear_range rk808_ldo3_voltage_ranges[] = {
  121. REGULATOR_LINEAR_RANGE(800000, 0, 13, 100000),
  122. REGULATOR_LINEAR_RANGE(2500000, 15, 15, 0),
  123. };
  124. static int rk808_buck1_2_get_voltage_sel_regmap(struct regulator_dev *rdev)
  125. {
  126. struct rk808_regulator_data *pdata = rdev_get_drvdata(rdev);
  127. int id = rdev_get_id(rdev);
  128. struct gpio_desc *gpio = pdata->dvs_gpio[id];
  129. unsigned int val;
  130. int ret;
  131. if (!gpio || gpiod_get_value(gpio) == 0)
  132. return regulator_get_voltage_sel_regmap(rdev);
  133. ret = regmap_read(rdev->regmap,
  134. rdev->desc->vsel_reg + RK808_DVS_REG_OFFSET,
  135. &val);
  136. if (ret != 0)
  137. return ret;
  138. val &= rdev->desc->vsel_mask;
  139. val >>= ffs(rdev->desc->vsel_mask) - 1;
  140. return val;
  141. }
  142. static int rk808_buck1_2_i2c_set_voltage_sel(struct regulator_dev *rdev,
  143. unsigned sel)
  144. {
  145. int ret, delta_sel;
  146. unsigned int old_sel, tmp, val, mask = rdev->desc->vsel_mask;
  147. ret = regmap_read(rdev->regmap, rdev->desc->vsel_reg, &val);
  148. if (ret != 0)
  149. return ret;
  150. tmp = val & ~mask;
  151. old_sel = val & mask;
  152. old_sel >>= ffs(mask) - 1;
  153. delta_sel = sel - old_sel;
  154. /*
  155. * If directly modify the register to change the voltage, we will face
  156. * the risk of overshoot. Put it into a multi-step, can effectively
  157. * avoid this problem, a step is 100mv here.
  158. */
  159. while (delta_sel > MAX_STEPS_ONE_TIME) {
  160. old_sel += MAX_STEPS_ONE_TIME;
  161. val = old_sel << (ffs(mask) - 1);
  162. val |= tmp;
  163. /*
  164. * i2c is 400kHz (2.5us per bit) and we must transmit _at least_
  165. * 3 bytes (24 bits) plus start and stop so 26 bits. So we've
  166. * got more than 65 us between each voltage change and thus
  167. * won't ramp faster than ~1500 uV / us.
  168. */
  169. ret = regmap_write(rdev->regmap, rdev->desc->vsel_reg, val);
  170. delta_sel = sel - old_sel;
  171. }
  172. sel <<= ffs(mask) - 1;
  173. val = tmp | sel;
  174. ret = regmap_write(rdev->regmap, rdev->desc->vsel_reg, val);
  175. /*
  176. * When we change the voltage register directly, the ramp rate is about
  177. * 100000uv/us, wait 1us to make sure the target voltage to be stable,
  178. * so we needn't wait extra time after that.
  179. */
  180. udelay(1);
  181. return ret;
  182. }
  183. static int rk808_buck1_2_set_voltage_sel(struct regulator_dev *rdev,
  184. unsigned sel)
  185. {
  186. struct rk808_regulator_data *pdata = rdev_get_drvdata(rdev);
  187. int id = rdev_get_id(rdev);
  188. struct gpio_desc *gpio = pdata->dvs_gpio[id];
  189. unsigned int reg = rdev->desc->vsel_reg;
  190. unsigned old_sel;
  191. int ret, gpio_level;
  192. if (!gpio)
  193. return rk808_buck1_2_i2c_set_voltage_sel(rdev, sel);
  194. gpio_level = gpiod_get_value(gpio);
  195. if (gpio_level == 0) {
  196. reg += RK808_DVS_REG_OFFSET;
  197. ret = regmap_read(rdev->regmap, rdev->desc->vsel_reg, &old_sel);
  198. } else {
  199. ret = regmap_read(rdev->regmap,
  200. reg + RK808_DVS_REG_OFFSET,
  201. &old_sel);
  202. }
  203. if (ret != 0)
  204. return ret;
  205. sel <<= ffs(rdev->desc->vsel_mask) - 1;
  206. sel |= old_sel & ~rdev->desc->vsel_mask;
  207. ret = regmap_write(rdev->regmap, reg, sel);
  208. if (ret)
  209. return ret;
  210. gpiod_set_value(gpio, !gpio_level);
  211. return ret;
  212. }
  213. static int rk808_buck1_2_set_voltage_time_sel(struct regulator_dev *rdev,
  214. unsigned int old_selector,
  215. unsigned int new_selector)
  216. {
  217. struct rk808_regulator_data *pdata = rdev_get_drvdata(rdev);
  218. int id = rdev_get_id(rdev);
  219. struct gpio_desc *gpio = pdata->dvs_gpio[id];
  220. /* if there is no dvs1/2 pin, we don't need wait extra time here. */
  221. if (!gpio)
  222. return 0;
  223. return regulator_set_voltage_time_sel(rdev, old_selector, new_selector);
  224. }
  225. static int rk808_set_ramp_delay(struct regulator_dev *rdev, int ramp_delay)
  226. {
  227. unsigned int ramp_value = RK808_RAMP_RATE_10MV_PER_US;
  228. unsigned int reg = rk808_buck_config_regs[rdev_get_id(rdev)];
  229. switch (ramp_delay) {
  230. case 1 ... 2000:
  231. ramp_value = RK808_RAMP_RATE_2MV_PER_US;
  232. break;
  233. case 2001 ... 4000:
  234. ramp_value = RK808_RAMP_RATE_4MV_PER_US;
  235. break;
  236. case 4001 ... 6000:
  237. ramp_value = RK808_RAMP_RATE_6MV_PER_US;
  238. break;
  239. case 6001 ... 10000:
  240. break;
  241. default:
  242. pr_warn("%s ramp_delay: %d not supported, setting 10000\n",
  243. rdev->desc->name, ramp_delay);
  244. }
  245. return regmap_update_bits(rdev->regmap, reg,
  246. RK808_RAMP_RATE_MASK, ramp_value);
  247. }
  248. static int rk808_set_suspend_voltage(struct regulator_dev *rdev, int uv)
  249. {
  250. unsigned int reg;
  251. int sel = regulator_map_voltage_linear(rdev, uv, uv);
  252. if (sel < 0)
  253. return -EINVAL;
  254. reg = rdev->desc->vsel_reg + RK808_SLP_REG_OFFSET;
  255. return regmap_update_bits(rdev->regmap, reg,
  256. rdev->desc->vsel_mask,
  257. sel);
  258. }
  259. static int rk808_set_suspend_voltage_range(struct regulator_dev *rdev, int uv)
  260. {
  261. unsigned int reg;
  262. int sel = regulator_map_voltage_linear_range(rdev, uv, uv);
  263. if (sel < 0)
  264. return -EINVAL;
  265. reg = rdev->desc->vsel_reg + RK808_SLP_REG_OFFSET;
  266. return regmap_update_bits(rdev->regmap, reg,
  267. rdev->desc->vsel_mask,
  268. sel);
  269. }
  270. static int rk805_set_suspend_enable(struct regulator_dev *rdev)
  271. {
  272. unsigned int reg;
  273. reg = rdev->desc->enable_reg + RK808_SLP_SET_OFF_REG_OFFSET;
  274. return regmap_update_bits(rdev->regmap, reg,
  275. rdev->desc->enable_mask,
  276. rdev->desc->enable_mask);
  277. }
  278. static int rk805_set_suspend_disable(struct regulator_dev *rdev)
  279. {
  280. unsigned int reg;
  281. reg = rdev->desc->enable_reg + RK808_SLP_SET_OFF_REG_OFFSET;
  282. return regmap_update_bits(rdev->regmap, reg,
  283. rdev->desc->enable_mask,
  284. 0);
  285. }
  286. static int rk808_set_suspend_enable(struct regulator_dev *rdev)
  287. {
  288. unsigned int reg;
  289. reg = rdev->desc->enable_reg + RK808_SLP_SET_OFF_REG_OFFSET;
  290. return regmap_update_bits(rdev->regmap, reg,
  291. rdev->desc->enable_mask,
  292. 0);
  293. }
  294. static int rk808_set_suspend_disable(struct regulator_dev *rdev)
  295. {
  296. unsigned int reg;
  297. reg = rdev->desc->enable_reg + RK808_SLP_SET_OFF_REG_OFFSET;
  298. return regmap_update_bits(rdev->regmap, reg,
  299. rdev->desc->enable_mask,
  300. rdev->desc->enable_mask);
  301. }
  302. static struct regulator_ops rk805_reg_ops = {
  303. .list_voltage = regulator_list_voltage_linear,
  304. .map_voltage = regulator_map_voltage_linear,
  305. .get_voltage_sel = regulator_get_voltage_sel_regmap,
  306. .set_voltage_sel = regulator_set_voltage_sel_regmap,
  307. .enable = regulator_enable_regmap,
  308. .disable = regulator_disable_regmap,
  309. .is_enabled = regulator_is_enabled_regmap,
  310. .set_suspend_voltage = rk808_set_suspend_voltage,
  311. .set_suspend_enable = rk805_set_suspend_enable,
  312. .set_suspend_disable = rk805_set_suspend_disable,
  313. };
  314. static struct regulator_ops rk805_switch_ops = {
  315. .enable = regulator_enable_regmap,
  316. .disable = regulator_disable_regmap,
  317. .is_enabled = regulator_is_enabled_regmap,
  318. .set_suspend_enable = rk805_set_suspend_enable,
  319. .set_suspend_disable = rk805_set_suspend_disable,
  320. };
  321. static struct regulator_ops rk808_buck1_2_ops = {
  322. .list_voltage = regulator_list_voltage_linear,
  323. .map_voltage = regulator_map_voltage_linear,
  324. .get_voltage_sel = rk808_buck1_2_get_voltage_sel_regmap,
  325. .set_voltage_sel = rk808_buck1_2_set_voltage_sel,
  326. .set_voltage_time_sel = rk808_buck1_2_set_voltage_time_sel,
  327. .enable = regulator_enable_regmap,
  328. .disable = regulator_disable_regmap,
  329. .is_enabled = regulator_is_enabled_regmap,
  330. .set_ramp_delay = rk808_set_ramp_delay,
  331. .set_suspend_voltage = rk808_set_suspend_voltage,
  332. .set_suspend_enable = rk808_set_suspend_enable,
  333. .set_suspend_disable = rk808_set_suspend_disable,
  334. };
  335. static struct regulator_ops rk808_reg_ops = {
  336. .list_voltage = regulator_list_voltage_linear,
  337. .map_voltage = regulator_map_voltage_linear,
  338. .get_voltage_sel = regulator_get_voltage_sel_regmap,
  339. .set_voltage_sel = regulator_set_voltage_sel_regmap,
  340. .enable = regulator_enable_regmap,
  341. .disable = regulator_disable_regmap,
  342. .is_enabled = regulator_is_enabled_regmap,
  343. .set_suspend_voltage = rk808_set_suspend_voltage,
  344. .set_suspend_enable = rk808_set_suspend_enable,
  345. .set_suspend_disable = rk808_set_suspend_disable,
  346. };
  347. static struct regulator_ops rk808_reg_ops_ranges = {
  348. .list_voltage = regulator_list_voltage_linear_range,
  349. .map_voltage = regulator_map_voltage_linear_range,
  350. .get_voltage_sel = regulator_get_voltage_sel_regmap,
  351. .set_voltage_sel = regulator_set_voltage_sel_regmap,
  352. .enable = regulator_enable_regmap,
  353. .disable = regulator_disable_regmap,
  354. .is_enabled = regulator_is_enabled_regmap,
  355. .set_suspend_voltage = rk808_set_suspend_voltage_range,
  356. .set_suspend_enable = rk808_set_suspend_enable,
  357. .set_suspend_disable = rk808_set_suspend_disable,
  358. };
  359. static struct regulator_ops rk808_switch_ops = {
  360. .enable = regulator_enable_regmap,
  361. .disable = regulator_disable_regmap,
  362. .is_enabled = regulator_is_enabled_regmap,
  363. .set_suspend_enable = rk808_set_suspend_enable,
  364. .set_suspend_disable = rk808_set_suspend_disable,
  365. };
  366. static const struct regulator_desc rk805_reg[] = {
  367. {
  368. .name = "DCDC_REG1",
  369. .supply_name = "vcc1",
  370. .of_match = of_match_ptr("DCDC_REG1"),
  371. .regulators_node = of_match_ptr("regulators"),
  372. .id = RK805_ID_DCDC1,
  373. .ops = &rk805_reg_ops,
  374. .type = REGULATOR_VOLTAGE,
  375. .min_uV = 712500,
  376. .uV_step = 12500,
  377. .n_voltages = 64,
  378. .vsel_reg = RK805_BUCK1_ON_VSEL_REG,
  379. .vsel_mask = RK818_BUCK_VSEL_MASK,
  380. .enable_reg = RK805_DCDC_EN_REG,
  381. .enable_mask = BIT(0),
  382. .owner = THIS_MODULE,
  383. }, {
  384. .name = "DCDC_REG2",
  385. .supply_name = "vcc2",
  386. .of_match = of_match_ptr("DCDC_REG2"),
  387. .regulators_node = of_match_ptr("regulators"),
  388. .id = RK805_ID_DCDC2,
  389. .ops = &rk805_reg_ops,
  390. .type = REGULATOR_VOLTAGE,
  391. .min_uV = 712500,
  392. .uV_step = 12500,
  393. .n_voltages = 64,
  394. .vsel_reg = RK805_BUCK2_ON_VSEL_REG,
  395. .vsel_mask = RK818_BUCK_VSEL_MASK,
  396. .enable_reg = RK805_DCDC_EN_REG,
  397. .enable_mask = BIT(1),
  398. .owner = THIS_MODULE,
  399. }, {
  400. .name = "DCDC_REG3",
  401. .supply_name = "vcc3",
  402. .of_match = of_match_ptr("DCDC_REG3"),
  403. .regulators_node = of_match_ptr("regulators"),
  404. .id = RK805_ID_DCDC3,
  405. .ops = &rk805_switch_ops,
  406. .type = REGULATOR_VOLTAGE,
  407. .n_voltages = 1,
  408. .enable_reg = RK805_DCDC_EN_REG,
  409. .enable_mask = BIT(2),
  410. .owner = THIS_MODULE,
  411. },
  412. RK805_DESC(RK805_ID_DCDC4, "DCDC_REG4", "vcc4", 800, 3400, 100,
  413. RK805_BUCK4_ON_VSEL_REG, RK818_BUCK4_VSEL_MASK,
  414. RK805_DCDC_EN_REG, BIT(3), 0),
  415. RK805_DESC(RK805_ID_LDO1, "LDO_REG1", "vcc5", 800, 3400, 100,
  416. RK805_LDO1_ON_VSEL_REG, RK818_LDO_VSEL_MASK, RK805_LDO_EN_REG,
  417. BIT(0), 400),
  418. RK805_DESC(RK805_ID_LDO2, "LDO_REG2", "vcc5", 800, 3400, 100,
  419. RK805_LDO2_ON_VSEL_REG, RK818_LDO_VSEL_MASK, RK805_LDO_EN_REG,
  420. BIT(1), 400),
  421. RK805_DESC(RK805_ID_LDO3, "LDO_REG3", "vcc6", 800, 3400, 100,
  422. RK805_LDO3_ON_VSEL_REG, RK818_LDO_VSEL_MASK, RK805_LDO_EN_REG,
  423. BIT(2), 400),
  424. };
  425. static const struct regulator_desc rk808_reg[] = {
  426. {
  427. .name = "DCDC_REG1",
  428. .supply_name = "vcc1",
  429. .of_match = of_match_ptr("DCDC_REG1"),
  430. .regulators_node = of_match_ptr("regulators"),
  431. .id = RK808_ID_DCDC1,
  432. .ops = &rk808_buck1_2_ops,
  433. .type = REGULATOR_VOLTAGE,
  434. .min_uV = 712500,
  435. .uV_step = 12500,
  436. .n_voltages = 64,
  437. .vsel_reg = RK808_BUCK1_ON_VSEL_REG,
  438. .vsel_mask = RK808_BUCK_VSEL_MASK,
  439. .enable_reg = RK808_DCDC_EN_REG,
  440. .enable_mask = BIT(0),
  441. .owner = THIS_MODULE,
  442. }, {
  443. .name = "DCDC_REG2",
  444. .supply_name = "vcc2",
  445. .of_match = of_match_ptr("DCDC_REG2"),
  446. .regulators_node = of_match_ptr("regulators"),
  447. .id = RK808_ID_DCDC2,
  448. .ops = &rk808_buck1_2_ops,
  449. .type = REGULATOR_VOLTAGE,
  450. .min_uV = 712500,
  451. .uV_step = 12500,
  452. .n_voltages = 64,
  453. .vsel_reg = RK808_BUCK2_ON_VSEL_REG,
  454. .vsel_mask = RK808_BUCK_VSEL_MASK,
  455. .enable_reg = RK808_DCDC_EN_REG,
  456. .enable_mask = BIT(1),
  457. .owner = THIS_MODULE,
  458. }, {
  459. .name = "DCDC_REG3",
  460. .supply_name = "vcc3",
  461. .of_match = of_match_ptr("DCDC_REG3"),
  462. .regulators_node = of_match_ptr("regulators"),
  463. .id = RK808_ID_DCDC3,
  464. .ops = &rk808_switch_ops,
  465. .type = REGULATOR_VOLTAGE,
  466. .n_voltages = 1,
  467. .enable_reg = RK808_DCDC_EN_REG,
  468. .enable_mask = BIT(2),
  469. .owner = THIS_MODULE,
  470. },
  471. RK8XX_DESC(RK808_ID_DCDC4, "DCDC_REG4", "vcc4", 1800, 3300, 100,
  472. RK808_BUCK4_ON_VSEL_REG, RK808_BUCK4_VSEL_MASK,
  473. RK808_DCDC_EN_REG, BIT(3), 0),
  474. RK8XX_DESC(RK808_ID_LDO1, "LDO_REG1", "vcc6", 1800, 3400, 100,
  475. RK808_LDO1_ON_VSEL_REG, RK808_LDO_VSEL_MASK, RK808_LDO_EN_REG,
  476. BIT(0), 400),
  477. RK8XX_DESC(RK808_ID_LDO2, "LDO_REG2", "vcc6", 1800, 3400, 100,
  478. RK808_LDO2_ON_VSEL_REG, RK808_LDO_VSEL_MASK, RK808_LDO_EN_REG,
  479. BIT(1), 400),
  480. {
  481. .name = "LDO_REG3",
  482. .supply_name = "vcc7",
  483. .of_match = of_match_ptr("LDO_REG3"),
  484. .regulators_node = of_match_ptr("regulators"),
  485. .id = RK808_ID_LDO3,
  486. .ops = &rk808_reg_ops_ranges,
  487. .type = REGULATOR_VOLTAGE,
  488. .n_voltages = 16,
  489. .linear_ranges = rk808_ldo3_voltage_ranges,
  490. .n_linear_ranges = ARRAY_SIZE(rk808_ldo3_voltage_ranges),
  491. .vsel_reg = RK808_LDO3_ON_VSEL_REG,
  492. .vsel_mask = RK808_BUCK4_VSEL_MASK,
  493. .enable_reg = RK808_LDO_EN_REG,
  494. .enable_mask = BIT(2),
  495. .enable_time = 400,
  496. .owner = THIS_MODULE,
  497. },
  498. RK8XX_DESC(RK808_ID_LDO4, "LDO_REG4", "vcc9", 1800, 3400, 100,
  499. RK808_LDO4_ON_VSEL_REG, RK808_LDO_VSEL_MASK, RK808_LDO_EN_REG,
  500. BIT(3), 400),
  501. RK8XX_DESC(RK808_ID_LDO5, "LDO_REG5", "vcc9", 1800, 3400, 100,
  502. RK808_LDO5_ON_VSEL_REG, RK808_LDO_VSEL_MASK, RK808_LDO_EN_REG,
  503. BIT(4), 400),
  504. RK8XX_DESC(RK808_ID_LDO6, "LDO_REG6", "vcc10", 800, 2500, 100,
  505. RK808_LDO6_ON_VSEL_REG, RK808_LDO_VSEL_MASK, RK808_LDO_EN_REG,
  506. BIT(5), 400),
  507. RK8XX_DESC(RK808_ID_LDO7, "LDO_REG7", "vcc7", 800, 2500, 100,
  508. RK808_LDO7_ON_VSEL_REG, RK808_LDO_VSEL_MASK, RK808_LDO_EN_REG,
  509. BIT(6), 400),
  510. RK8XX_DESC(RK808_ID_LDO8, "LDO_REG8", "vcc11", 1800, 3400, 100,
  511. RK808_LDO8_ON_VSEL_REG, RK808_LDO_VSEL_MASK, RK808_LDO_EN_REG,
  512. BIT(7), 400),
  513. RK8XX_DESC_SWITCH(RK808_ID_SWITCH1, "SWITCH_REG1", "vcc8",
  514. RK808_DCDC_EN_REG, BIT(5)),
  515. RK8XX_DESC_SWITCH(RK808_ID_SWITCH2, "SWITCH_REG2", "vcc12",
  516. RK808_DCDC_EN_REG, BIT(6)),
  517. };
  518. static const struct regulator_desc rk818_reg[] = {
  519. {
  520. .name = "DCDC_REG1",
  521. .supply_name = "vcc1",
  522. .of_match = of_match_ptr("DCDC_REG1"),
  523. .regulators_node = of_match_ptr("regulators"),
  524. .id = RK818_ID_DCDC1,
  525. .ops = &rk808_reg_ops,
  526. .type = REGULATOR_VOLTAGE,
  527. .min_uV = 712500,
  528. .uV_step = 12500,
  529. .n_voltages = 64,
  530. .vsel_reg = RK818_BUCK1_ON_VSEL_REG,
  531. .vsel_mask = RK818_BUCK_VSEL_MASK,
  532. .enable_reg = RK818_DCDC_EN_REG,
  533. .enable_mask = BIT(0),
  534. .owner = THIS_MODULE,
  535. }, {
  536. .name = "DCDC_REG2",
  537. .supply_name = "vcc2",
  538. .of_match = of_match_ptr("DCDC_REG2"),
  539. .regulators_node = of_match_ptr("regulators"),
  540. .id = RK818_ID_DCDC2,
  541. .ops = &rk808_reg_ops,
  542. .type = REGULATOR_VOLTAGE,
  543. .min_uV = 712500,
  544. .uV_step = 12500,
  545. .n_voltages = 64,
  546. .vsel_reg = RK818_BUCK2_ON_VSEL_REG,
  547. .vsel_mask = RK818_BUCK_VSEL_MASK,
  548. .enable_reg = RK818_DCDC_EN_REG,
  549. .enable_mask = BIT(1),
  550. .owner = THIS_MODULE,
  551. }, {
  552. .name = "DCDC_REG3",
  553. .supply_name = "vcc3",
  554. .of_match = of_match_ptr("DCDC_REG3"),
  555. .regulators_node = of_match_ptr("regulators"),
  556. .id = RK818_ID_DCDC3,
  557. .ops = &rk808_switch_ops,
  558. .type = REGULATOR_VOLTAGE,
  559. .n_voltages = 1,
  560. .enable_reg = RK818_DCDC_EN_REG,
  561. .enable_mask = BIT(2),
  562. .owner = THIS_MODULE,
  563. },
  564. RK8XX_DESC(RK818_ID_DCDC4, "DCDC_REG4", "vcc4", 1800, 3600, 100,
  565. RK818_BUCK4_ON_VSEL_REG, RK818_BUCK4_VSEL_MASK,
  566. RK818_DCDC_EN_REG, BIT(3), 0),
  567. RK8XX_DESC(RK818_ID_BOOST, "DCDC_BOOST", "boost", 4700, 5400, 100,
  568. RK818_BOOST_LDO9_ON_VSEL_REG, RK818_BOOST_ON_VSEL_MASK,
  569. RK818_DCDC_EN_REG, BIT(4), 0),
  570. RK8XX_DESC(RK818_ID_LDO1, "LDO_REG1", "vcc6", 1800, 3400, 100,
  571. RK818_LDO1_ON_VSEL_REG, RK818_LDO_VSEL_MASK, RK818_LDO_EN_REG,
  572. BIT(0), 400),
  573. RK8XX_DESC(RK818_ID_LDO2, "LDO_REG2", "vcc6", 1800, 3400, 100,
  574. RK818_LDO2_ON_VSEL_REG, RK818_LDO_VSEL_MASK, RK818_LDO_EN_REG,
  575. BIT(1), 400),
  576. {
  577. .name = "LDO_REG3",
  578. .supply_name = "vcc7",
  579. .of_match = of_match_ptr("LDO_REG3"),
  580. .regulators_node = of_match_ptr("regulators"),
  581. .id = RK818_ID_LDO3,
  582. .ops = &rk808_reg_ops_ranges,
  583. .type = REGULATOR_VOLTAGE,
  584. .n_voltages = 16,
  585. .linear_ranges = rk808_ldo3_voltage_ranges,
  586. .n_linear_ranges = ARRAY_SIZE(rk808_ldo3_voltage_ranges),
  587. .vsel_reg = RK818_LDO3_ON_VSEL_REG,
  588. .vsel_mask = RK818_LDO3_ON_VSEL_MASK,
  589. .enable_reg = RK818_LDO_EN_REG,
  590. .enable_mask = BIT(2),
  591. .enable_time = 400,
  592. .owner = THIS_MODULE,
  593. },
  594. RK8XX_DESC(RK818_ID_LDO4, "LDO_REG4", "vcc8", 1800, 3400, 100,
  595. RK818_LDO4_ON_VSEL_REG, RK818_LDO_VSEL_MASK, RK818_LDO_EN_REG,
  596. BIT(3), 400),
  597. RK8XX_DESC(RK818_ID_LDO5, "LDO_REG5", "vcc7", 1800, 3400, 100,
  598. RK818_LDO5_ON_VSEL_REG, RK818_LDO_VSEL_MASK, RK818_LDO_EN_REG,
  599. BIT(4), 400),
  600. RK8XX_DESC(RK818_ID_LDO6, "LDO_REG6", "vcc8", 800, 2500, 100,
  601. RK818_LDO6_ON_VSEL_REG, RK818_LDO_VSEL_MASK, RK818_LDO_EN_REG,
  602. BIT(5), 400),
  603. RK8XX_DESC(RK818_ID_LDO7, "LDO_REG7", "vcc7", 800, 2500, 100,
  604. RK818_LDO7_ON_VSEL_REG, RK818_LDO_VSEL_MASK, RK818_LDO_EN_REG,
  605. BIT(6), 400),
  606. RK8XX_DESC(RK818_ID_LDO8, "LDO_REG8", "vcc8", 1800, 3400, 100,
  607. RK818_LDO8_ON_VSEL_REG, RK818_LDO_VSEL_MASK, RK818_LDO_EN_REG,
  608. BIT(7), 400),
  609. RK8XX_DESC(RK818_ID_LDO9, "LDO_REG9", "vcc9", 1800, 3400, 100,
  610. RK818_BOOST_LDO9_ON_VSEL_REG, RK818_LDO_VSEL_MASK,
  611. RK818_DCDC_EN_REG, BIT(5), 400),
  612. RK8XX_DESC_SWITCH(RK818_ID_SWITCH, "SWITCH_REG", "vcc9",
  613. RK818_DCDC_EN_REG, BIT(6)),
  614. RK8XX_DESC_SWITCH(RK818_ID_HDMI_SWITCH, "HDMI_SWITCH", "h_5v",
  615. RK818_H5V_EN_REG, BIT(0)),
  616. RK8XX_DESC_SWITCH(RK818_ID_OTG_SWITCH, "OTG_SWITCH", "usb",
  617. RK818_DCDC_EN_REG, BIT(7)),
  618. };
  619. static int rk808_regulator_dt_parse_pdata(struct device *dev,
  620. struct device *client_dev,
  621. struct regmap *map,
  622. struct rk808_regulator_data *pdata)
  623. {
  624. struct device_node *np;
  625. int tmp, ret = 0, i;
  626. np = of_get_child_by_name(client_dev->of_node, "regulators");
  627. if (!np)
  628. return -ENXIO;
  629. for (i = 0; i < ARRAY_SIZE(pdata->dvs_gpio); i++) {
  630. pdata->dvs_gpio[i] =
  631. devm_gpiod_get_index_optional(client_dev, "dvs", i,
  632. GPIOD_OUT_LOW);
  633. if (IS_ERR(pdata->dvs_gpio[i])) {
  634. ret = PTR_ERR(pdata->dvs_gpio[i]);
  635. dev_err(dev, "failed to get dvs%d gpio (%d)\n", i, ret);
  636. goto dt_parse_end;
  637. }
  638. if (!pdata->dvs_gpio[i]) {
  639. dev_info(dev, "there is no dvs%d gpio\n", i);
  640. continue;
  641. }
  642. tmp = i ? RK808_DVS2_POL : RK808_DVS1_POL;
  643. ret = regmap_update_bits(map, RK808_IO_POL_REG, tmp,
  644. gpiod_is_active_low(pdata->dvs_gpio[i]) ?
  645. 0 : tmp);
  646. }
  647. dt_parse_end:
  648. of_node_put(np);
  649. return ret;
  650. }
  651. static int rk808_regulator_probe(struct platform_device *pdev)
  652. {
  653. struct rk808 *rk808 = dev_get_drvdata(pdev->dev.parent);
  654. struct i2c_client *client = rk808->i2c;
  655. struct regulator_config config = {};
  656. struct regulator_dev *rk808_rdev;
  657. struct rk808_regulator_data *pdata;
  658. const struct regulator_desc *regulators;
  659. int ret, i, nregulators;
  660. pdata = devm_kzalloc(&pdev->dev, sizeof(*pdata), GFP_KERNEL);
  661. if (!pdata)
  662. return -ENOMEM;
  663. ret = rk808_regulator_dt_parse_pdata(&pdev->dev, &client->dev,
  664. rk808->regmap, pdata);
  665. if (ret < 0)
  666. return ret;
  667. platform_set_drvdata(pdev, pdata);
  668. switch (rk808->variant) {
  669. case RK805_ID:
  670. regulators = rk805_reg;
  671. nregulators = RK805_NUM_REGULATORS;
  672. break;
  673. case RK808_ID:
  674. regulators = rk808_reg;
  675. nregulators = RK808_NUM_REGULATORS;
  676. break;
  677. case RK818_ID:
  678. regulators = rk818_reg;
  679. nregulators = RK818_NUM_REGULATORS;
  680. break;
  681. default:
  682. dev_err(&client->dev, "unsupported RK8XX ID %lu\n",
  683. rk808->variant);
  684. return -EINVAL;
  685. }
  686. config.dev = &client->dev;
  687. config.driver_data = pdata;
  688. config.regmap = rk808->regmap;
  689. /* Instantiate the regulators */
  690. for (i = 0; i < nregulators; i++) {
  691. rk808_rdev = devm_regulator_register(&pdev->dev,
  692. &regulators[i], &config);
  693. if (IS_ERR(rk808_rdev)) {
  694. dev_err(&client->dev,
  695. "failed to register %d regulator\n", i);
  696. return PTR_ERR(rk808_rdev);
  697. }
  698. }
  699. return 0;
  700. }
  701. static struct platform_driver rk808_regulator_driver = {
  702. .probe = rk808_regulator_probe,
  703. .driver = {
  704. .name = "rk808-regulator"
  705. },
  706. };
  707. module_platform_driver(rk808_regulator_driver);
  708. MODULE_DESCRIPTION("regulator driver for the RK808/RK818 series PMICs");
  709. MODULE_AUTHOR("Chris Zhong <zyw@rock-chips.com>");
  710. MODULE_AUTHOR("Zhang Qing <zhangqing@rock-chips.com>");
  711. MODULE_AUTHOR("Wadim Egorov <w.egorov@phytec.de>");
  712. MODULE_LICENSE("GPL");
  713. MODULE_ALIAS("platform:rk808-regulator");