rt5190a-regulator.c 13 KB

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  1. // SPDX-License-Identifier: GPL-2.0+
  2. #include <dt-bindings/regulator/richtek,rt5190a-regulator.h>
  3. #include <linux/bits.h>
  4. #include <linux/i2c.h>
  5. #include <linux/interrupt.h>
  6. #include <linux/kernel.h>
  7. #include <linux/module.h>
  8. #include <linux/of.h>
  9. #include <linux/property.h>
  10. #include <linux/regmap.h>
  11. #include <linux/regulator/driver.h>
  12. #include <linux/regulator/machine.h>
  13. #include <linux/regulator/of_regulator.h>
  14. #define RT5190A_REG_MANUFACTURE 0x00
  15. #define RT5190A_REG_BUCK2VSEL 0x04
  16. #define RT5190A_REG_BUCK3VSEL 0x05
  17. #define RT5190A_REG_DCDCCNTL 0x06
  18. #define RT5190A_REG_ENABLE 0x07
  19. #define RT5190A_REG_DISCHARGE 0x09
  20. #define RT5190A_REG_PROTMODE 0x0A
  21. #define RT5190A_REG_MUTECNTL 0x0B
  22. #define RT5190A_REG_PGSTAT 0x0F
  23. #define RT5190A_REG_OVINT 0x10
  24. #define RT5190A_REG_HOTDIEMASK 0x17
  25. #define RT5190A_VSEL_MASK GENMASK(6, 0)
  26. #define RT5190A_RID_BITMASK(rid) BIT(rid + 1)
  27. #define RT5190A_BUCK1_DISCHG_MASK GENMASK(1, 0)
  28. #define RT5190A_BUCK1_DISCHG_ONVAL 0x01
  29. #define RT5190A_OVERVOLT_MASK GENMASK(7, 0)
  30. #define RT5190A_UNDERVOLT_MASK GENMASK(15, 8)
  31. #define RT5190A_CH234OT_MASK BIT(29)
  32. #define RT5190A_CHIPOT_MASK BIT(28)
  33. #define RT5190A_BUCK23_MINUV 600000
  34. #define RT5190A_BUCK23_MAXUV 1400000
  35. #define RT5190A_BUCK23_STEPUV 10000
  36. #define RT5190A_BUCK23_STEPNUM ((1400000 - 600000) / 10000 + 1)
  37. enum {
  38. RT5190A_IDX_BUCK1 = 0,
  39. RT5190A_IDX_BUCK2,
  40. RT5190A_IDX_BUCK3,
  41. RT5190A_IDX_BUCK4,
  42. RT5190A_IDX_LDO,
  43. RT5190A_MAX_IDX
  44. };
  45. struct rt5190a_priv {
  46. struct device *dev;
  47. struct regmap *regmap;
  48. struct regulator_desc rdesc[RT5190A_MAX_IDX];
  49. struct regulator_dev *rdev[RT5190A_MAX_IDX];
  50. };
  51. static int rt5190a_get_error_flags(struct regulator_dev *rdev,
  52. unsigned int *flags)
  53. {
  54. struct regmap *regmap = rdev_get_regmap(rdev);
  55. int rid = rdev_get_id(rdev);
  56. unsigned int pgood_stat;
  57. int ret;
  58. ret = regmap_read(regmap, RT5190A_REG_PGSTAT, &pgood_stat);
  59. if (ret)
  60. return ret;
  61. if (!(pgood_stat & RT5190A_RID_BITMASK(rid)))
  62. *flags = REGULATOR_ERROR_FAIL;
  63. else
  64. *flags = 0;
  65. return 0;
  66. }
  67. static int rt5190a_fixed_buck_set_mode(struct regulator_dev *rdev,
  68. unsigned int mode)
  69. {
  70. struct regmap *regmap = rdev_get_regmap(rdev);
  71. int rid = rdev_get_id(rdev);
  72. unsigned int mask = RT5190A_RID_BITMASK(rid), val;
  73. switch (mode) {
  74. case REGULATOR_MODE_FAST:
  75. val = mask;
  76. break;
  77. case REGULATOR_MODE_NORMAL:
  78. val = 0;
  79. break;
  80. default:
  81. return -EINVAL;
  82. }
  83. return regmap_update_bits(regmap, RT5190A_REG_DCDCCNTL, mask, val);
  84. }
  85. static unsigned int rt5190a_fixed_buck_get_mode(struct regulator_dev *rdev)
  86. {
  87. struct regmap *regmap = rdev_get_regmap(rdev);
  88. int rid = rdev_get_id(rdev);
  89. unsigned int val;
  90. int ret;
  91. ret = regmap_read(regmap, RT5190A_REG_DCDCCNTL, &val);
  92. if (ret) {
  93. dev_err(&rdev->dev, "Failed to get mode [%d]\n", ret);
  94. return ret;
  95. }
  96. if (val & RT5190A_RID_BITMASK(rid))
  97. return REGULATOR_MODE_FAST;
  98. return REGULATOR_MODE_NORMAL;
  99. }
  100. static const struct regulator_ops rt5190a_ranged_buck_ops = {
  101. .enable = regulator_enable_regmap,
  102. .disable = regulator_disable_regmap,
  103. .is_enabled = regulator_is_enabled_regmap,
  104. .set_voltage_sel = regulator_set_voltage_sel_regmap,
  105. .get_voltage_sel = regulator_get_voltage_sel_regmap,
  106. .list_voltage = regulator_list_voltage_linear,
  107. .set_active_discharge = regulator_set_active_discharge_regmap,
  108. .get_error_flags = rt5190a_get_error_flags,
  109. };
  110. static const struct regulator_ops rt5190a_fixed_buck_ops = {
  111. .enable = regulator_enable_regmap,
  112. .disable = regulator_disable_regmap,
  113. .is_enabled = regulator_is_enabled_regmap,
  114. .set_active_discharge = regulator_set_active_discharge_regmap,
  115. .set_mode = rt5190a_fixed_buck_set_mode,
  116. .get_mode = rt5190a_fixed_buck_get_mode,
  117. .get_error_flags = rt5190a_get_error_flags,
  118. };
  119. static const struct regulator_ops rt5190a_fixed_ldo_ops = {
  120. .enable = regulator_enable_regmap,
  121. .disable = regulator_disable_regmap,
  122. .is_enabled = regulator_is_enabled_regmap,
  123. .set_active_discharge = regulator_set_active_discharge_regmap,
  124. .get_error_flags = rt5190a_get_error_flags,
  125. };
  126. static irqreturn_t rt5190a_irq_handler(int irq, void *data)
  127. {
  128. struct rt5190a_priv *priv = data;
  129. __le32 raws;
  130. unsigned int events, fields;
  131. static const struct {
  132. unsigned int bitmask;
  133. unsigned int report;
  134. } event_tbl[] = {
  135. { RT5190A_OVERVOLT_MASK, REGULATOR_ERROR_REGULATION_OUT },
  136. { RT5190A_UNDERVOLT_MASK, REGULATOR_ERROR_UNDER_VOLTAGE }
  137. };
  138. int i, j, ret;
  139. ret = regmap_raw_read(priv->regmap, RT5190A_REG_OVINT, &raws,
  140. sizeof(raws));
  141. if (ret) {
  142. dev_err(priv->dev, "Failed to read events\n");
  143. return IRQ_NONE;
  144. }
  145. events = le32_to_cpu(raws);
  146. ret = regmap_raw_write(priv->regmap, RT5190A_REG_OVINT, &raws,
  147. sizeof(raws));
  148. if (ret)
  149. dev_err(priv->dev, "Failed to write-clear events\n");
  150. /* Handle OV,UV events */
  151. for (i = 0; i < ARRAY_SIZE(event_tbl); i++) {
  152. fields = events & event_tbl[i].bitmask;
  153. fields >>= ffs(event_tbl[i].bitmask) - 1;
  154. for (j = 0; j < RT5190A_MAX_IDX; j++) {
  155. if (!(fields & RT5190A_RID_BITMASK(j)))
  156. continue;
  157. regulator_notifier_call_chain(priv->rdev[j],
  158. event_tbl[i].report,
  159. NULL);
  160. }
  161. }
  162. /* Handle CH234 OT event */
  163. if (events & RT5190A_CH234OT_MASK) {
  164. for (j = RT5190A_IDX_BUCK2; j < RT5190A_IDX_LDO; j++) {
  165. regulator_notifier_call_chain(priv->rdev[j],
  166. REGULATOR_ERROR_OVER_TEMP,
  167. NULL);
  168. }
  169. }
  170. /* Warning if CHIP OT occur */
  171. if (events & RT5190A_CHIPOT_MASK)
  172. dev_warn(priv->dev, "CHIP overheat\n");
  173. return IRQ_HANDLED;
  174. }
  175. static unsigned int rt5190a_of_map_mode(unsigned int mode)
  176. {
  177. switch (mode) {
  178. case RT5190A_OPMODE_AUTO:
  179. return REGULATOR_MODE_NORMAL;
  180. case RT5190A_OPMODE_FPWM:
  181. return REGULATOR_MODE_FAST;
  182. default:
  183. return REGULATOR_MODE_INVALID;
  184. }
  185. }
  186. static int rt5190a_of_parse_cb(struct rt5190a_priv *priv, int rid,
  187. struct of_regulator_match *match)
  188. {
  189. struct regulator_desc *desc = priv->rdesc + rid;
  190. struct regulator_init_data *init_data = match->init_data;
  191. struct device_node *np = match->of_node;
  192. bool latchup_enable;
  193. unsigned int mask = RT5190A_RID_BITMASK(rid), val;
  194. if (!init_data)
  195. return 0;
  196. switch (rid) {
  197. case RT5190A_IDX_BUCK1:
  198. case RT5190A_IDX_BUCK4:
  199. case RT5190A_IDX_LDO:
  200. init_data->constraints.apply_uV = 0;
  201. if (init_data->constraints.min_uV ==
  202. init_data->constraints.max_uV)
  203. desc->fixed_uV = init_data->constraints.min_uV;
  204. else {
  205. dev_err(priv->dev,
  206. "Variable voltage for fixed regulator\n");
  207. return -EINVAL;
  208. }
  209. break;
  210. default:
  211. break;
  212. }
  213. latchup_enable = of_property_read_bool(np, "richtek,latchup-enable");
  214. /* latchup: 0, default hiccup: 1 */
  215. val = !latchup_enable ? mask : 0;
  216. return regmap_update_bits(priv->regmap, RT5190A_REG_PROTMODE, mask, val);
  217. }
  218. static void rt5190a_fillin_regulator_desc(struct regulator_desc *desc, int rid)
  219. {
  220. static const char * const regu_name[] = { "buck1", "buck2",
  221. "buck3", "buck4",
  222. "ldo" };
  223. static const char * const supply[] = { NULL, "vin2", "vin3", "vin4",
  224. "vinldo" };
  225. desc->name = regu_name[rid];
  226. desc->supply_name = supply[rid];
  227. desc->owner = THIS_MODULE;
  228. desc->type = REGULATOR_VOLTAGE;
  229. desc->id = rid;
  230. desc->enable_reg = RT5190A_REG_ENABLE;
  231. desc->enable_mask = RT5190A_RID_BITMASK(rid);
  232. desc->active_discharge_reg = RT5190A_REG_DISCHARGE;
  233. desc->active_discharge_mask = RT5190A_RID_BITMASK(rid);
  234. desc->active_discharge_on = RT5190A_RID_BITMASK(rid);
  235. switch (rid) {
  236. case RT5190A_IDX_BUCK1:
  237. desc->active_discharge_mask = RT5190A_BUCK1_DISCHG_MASK;
  238. desc->active_discharge_on = RT5190A_BUCK1_DISCHG_ONVAL;
  239. desc->n_voltages = 1;
  240. desc->ops = &rt5190a_fixed_buck_ops;
  241. desc->of_map_mode = rt5190a_of_map_mode;
  242. break;
  243. case RT5190A_IDX_BUCK2:
  244. desc->vsel_reg = RT5190A_REG_BUCK2VSEL;
  245. desc->vsel_mask = RT5190A_VSEL_MASK;
  246. desc->min_uV = RT5190A_BUCK23_MINUV;
  247. desc->uV_step = RT5190A_BUCK23_STEPUV;
  248. desc->n_voltages = RT5190A_BUCK23_STEPNUM;
  249. desc->ops = &rt5190a_ranged_buck_ops;
  250. break;
  251. case RT5190A_IDX_BUCK3:
  252. desc->vsel_reg = RT5190A_REG_BUCK3VSEL;
  253. desc->vsel_mask = RT5190A_VSEL_MASK;
  254. desc->min_uV = RT5190A_BUCK23_MINUV;
  255. desc->uV_step = RT5190A_BUCK23_STEPUV;
  256. desc->n_voltages = RT5190A_BUCK23_STEPNUM;
  257. desc->ops = &rt5190a_ranged_buck_ops;
  258. break;
  259. case RT5190A_IDX_BUCK4:
  260. desc->n_voltages = 1;
  261. desc->ops = &rt5190a_fixed_buck_ops;
  262. desc->of_map_mode = rt5190a_of_map_mode;
  263. break;
  264. case RT5190A_IDX_LDO:
  265. desc->n_voltages = 1;
  266. desc->ops = &rt5190a_fixed_ldo_ops;
  267. break;
  268. }
  269. }
  270. static struct of_regulator_match rt5190a_regulator_match[] = {
  271. { .name = "buck1", },
  272. { .name = "buck2", },
  273. { .name = "buck3", },
  274. { .name = "buck4", },
  275. { .name = "ldo", }
  276. };
  277. static int rt5190a_parse_regulator_dt_data(struct rt5190a_priv *priv)
  278. {
  279. struct device_node *regulator_np;
  280. struct regulator_desc *reg_desc;
  281. struct of_regulator_match *match;
  282. int i, ret;
  283. for (i = 0; i < RT5190A_MAX_IDX; i++) {
  284. reg_desc = priv->rdesc + i;
  285. match = rt5190a_regulator_match + i;
  286. rt5190a_fillin_regulator_desc(reg_desc, i);
  287. match->desc = reg_desc;
  288. }
  289. regulator_np = of_get_child_by_name(priv->dev->of_node, "regulators");
  290. if (!regulator_np) {
  291. dev_err(priv->dev, "Could not find 'regulators' node\n");
  292. return -ENODEV;
  293. }
  294. ret = of_regulator_match(priv->dev, regulator_np,
  295. rt5190a_regulator_match,
  296. ARRAY_SIZE(rt5190a_regulator_match));
  297. of_node_put(regulator_np);
  298. if (ret < 0) {
  299. dev_err(priv->dev,
  300. "Error parsing regulator init data: %d\n", ret);
  301. return ret;
  302. }
  303. for (i = 0; i < RT5190A_MAX_IDX; i++) {
  304. match = rt5190a_regulator_match + i;
  305. ret = rt5190a_of_parse_cb(priv, i, match);
  306. if (ret) {
  307. dev_err(priv->dev, "Failed in [%d] of_parse_cb\n", i);
  308. return ret;
  309. }
  310. }
  311. return 0;
  312. }
  313. static const struct reg_sequence rt5190a_init_patch[] = {
  314. { 0x09, 0x3d, },
  315. { 0x0a, 0x3e, },
  316. { 0x0b, 0x01, },
  317. { 0x10, 0xff, },
  318. { 0x11, 0xff, },
  319. { 0x12, 0xff, },
  320. { 0x13, 0xff, },
  321. { 0x14, 0, },
  322. { 0x15, 0, },
  323. { 0x16, 0x3e, },
  324. { 0x17, 0, }
  325. };
  326. static int rt5190a_device_initialize(struct rt5190a_priv *priv)
  327. {
  328. bool mute_enable;
  329. int ret;
  330. ret = regmap_register_patch(priv->regmap, rt5190a_init_patch,
  331. ARRAY_SIZE(rt5190a_init_patch));
  332. if (ret) {
  333. dev_err(priv->dev, "Failed to do register patch\n");
  334. return ret;
  335. }
  336. mute_enable = device_property_read_bool(priv->dev,
  337. "richtek,mute-enable");
  338. if (mute_enable) {
  339. ret = regmap_write(priv->regmap, RT5190A_REG_MUTECNTL, 0x00);
  340. if (ret) {
  341. dev_err(priv->dev, "Failed to enable mute function\n");
  342. return ret;
  343. }
  344. }
  345. return 0;
  346. }
  347. static int rt5190a_device_check(struct rt5190a_priv *priv)
  348. {
  349. u16 devid;
  350. int ret;
  351. ret = regmap_raw_read(priv->regmap, RT5190A_REG_MANUFACTURE, &devid,
  352. sizeof(devid));
  353. if (ret)
  354. return ret;
  355. if (devid) {
  356. dev_err(priv->dev, "Incorrect device id 0x%04x\n", devid);
  357. return -ENODEV;
  358. }
  359. return 0;
  360. }
  361. static const struct regmap_config rt5190a_regmap_config = {
  362. .reg_bits = 8,
  363. .val_bits = 8,
  364. .max_register = RT5190A_REG_HOTDIEMASK,
  365. };
  366. static int rt5190a_probe(struct i2c_client *i2c)
  367. {
  368. struct rt5190a_priv *priv;
  369. struct regulator_config cfg = {};
  370. int i, ret;
  371. priv = devm_kzalloc(&i2c->dev, sizeof(*priv), GFP_KERNEL);
  372. if (!priv)
  373. return -ENOMEM;
  374. priv->dev = &i2c->dev;
  375. priv->regmap = devm_regmap_init_i2c(i2c, &rt5190a_regmap_config);
  376. if (IS_ERR(priv->regmap)) {
  377. dev_err(&i2c->dev, "Failed to allocate regmap\n");
  378. return PTR_ERR(priv->regmap);
  379. }
  380. ret = rt5190a_device_check(priv);
  381. if (ret) {
  382. dev_err(&i2c->dev, "Failed to check device %d\n", ret);
  383. return ret;
  384. }
  385. ret = rt5190a_device_initialize(priv);
  386. if (ret) {
  387. dev_err(&i2c->dev, "Failed to initialize the device\n");
  388. return ret;
  389. }
  390. ret = rt5190a_parse_regulator_dt_data(priv);
  391. if (ret) {
  392. dev_err(&i2c->dev, "Failed to parse regulator dt\n");
  393. return ret;
  394. }
  395. cfg.dev = &i2c->dev;
  396. cfg.regmap = priv->regmap;
  397. for (i = 0; i < RT5190A_MAX_IDX; i++) {
  398. struct regulator_desc *desc = priv->rdesc + i;
  399. struct of_regulator_match *match = rt5190a_regulator_match + i;
  400. cfg.init_data = match->init_data;
  401. cfg.of_node = match->of_node;
  402. priv->rdev[i] = devm_regulator_register(&i2c->dev, desc, &cfg);
  403. if (IS_ERR(priv->rdev[i])) {
  404. dev_err(&i2c->dev, "Failed to register regulator %s\n",
  405. desc->name);
  406. return PTR_ERR(priv->rdev[i]);
  407. }
  408. }
  409. if (i2c->irq) {
  410. ret = devm_request_threaded_irq(&i2c->dev, i2c->irq, NULL,
  411. rt5190a_irq_handler,
  412. IRQF_ONESHOT,
  413. dev_name(&i2c->dev), priv);
  414. if (ret) {
  415. dev_err(&i2c->dev, "Failed to register interrupt\n");
  416. return ret;
  417. }
  418. }
  419. return 0;
  420. }
  421. static const struct of_device_id __maybe_unused rt5190a_device_table[] = {
  422. { .compatible = "richtek,rt5190a", },
  423. {}
  424. };
  425. MODULE_DEVICE_TABLE(of, rt5190a_device_table);
  426. static struct i2c_driver rt5190a_driver = {
  427. .driver = {
  428. .name = "rt5190a",
  429. .of_match_table = rt5190a_device_table,
  430. },
  431. .probe_new = rt5190a_probe,
  432. };
  433. module_i2c_driver(rt5190a_driver);
  434. MODULE_AUTHOR("ChiYuan Huang <[email protected]>");
  435. MODULE_DESCRIPTION("Richtek RT5190A Regulator Driver");
  436. MODULE_LICENSE("GPL v2");