qcom-rpmh-regulator.c 23 KB

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  1. // SPDX-License-Identifier: GPL-2.0
  2. // Copyright (c) 2018, The Linux Foundation. All rights reserved.
  3. #define pr_fmt(fmt) "%s: " fmt, __func__
  4. #include <linux/err.h>
  5. #include <linux/kernel.h>
  6. #include <linux/module.h>
  7. #include <linux/of.h>
  8. #include <linux/of_device.h>
  9. #include <linux/platform_device.h>
  10. #include <linux/slab.h>
  11. #include <linux/string.h>
  12. #include <linux/regulator/driver.h>
  13. #include <linux/regulator/machine.h>
  14. #include <linux/regulator/of_regulator.h>
  15. #include <soc/qcom/cmd-db.h>
  16. #include <soc/qcom/rpmh.h>
  17. #include <dt-bindings/regulator/qcom,rpmh-regulator.h>
  18. /**
  19. * enum rpmh_regulator_type - supported RPMh accelerator types
  20. * %VRM: RPMh VRM accelerator which supports voting on enable, voltage,
  21. * and mode of LDO, SMPS, and BOB type PMIC regulators.
  22. * %XOB: RPMh XOB accelerator which supports voting on the enable state
  23. * of PMIC regulators.
  24. */
  25. enum rpmh_regulator_type {
  26. VRM,
  27. XOB,
  28. };
  29. #define RPMH_REGULATOR_REG_VRM_VOLTAGE 0x0
  30. #define RPMH_REGULATOR_REG_ENABLE 0x4
  31. #define RPMH_REGULATOR_REG_VRM_MODE 0x8
  32. #define PMIC4_LDO_MODE_RETENTION 4
  33. #define PMIC4_LDO_MODE_LPM 5
  34. #define PMIC4_LDO_MODE_HPM 7
  35. #define PMIC4_SMPS_MODE_RETENTION 4
  36. #define PMIC4_SMPS_MODE_PFM 5
  37. #define PMIC4_SMPS_MODE_AUTO 6
  38. #define PMIC4_SMPS_MODE_PWM 7
  39. #define PMIC4_BOB_MODE_PASS 0
  40. #define PMIC4_BOB_MODE_PFM 1
  41. #define PMIC4_BOB_MODE_AUTO 2
  42. #define PMIC4_BOB_MODE_PWM 3
  43. /**
  44. * struct rpmh_vreg_hw_data - RPMh regulator hardware configurations
  45. * @regulator_type: RPMh accelerator type used to manage this
  46. * regulator
  47. * @ops: Pointer to regulator ops callback structure
  48. * @voltage_range: The single range of voltages supported by this
  49. * PMIC regulator type
  50. * @n_voltages: The number of unique voltage set points defined
  51. * by voltage_range
  52. * @hpm_min_load_uA: Minimum load current in microamps that requires
  53. * high power mode (HPM) operation. This is used
  54. * for LDO hardware type regulators only.
  55. * @pmic_mode_map: Array indexed by regulator framework mode
  56. * containing PMIC hardware modes. Must be large
  57. * enough to index all framework modes supported
  58. * by this regulator hardware type.
  59. * @of_map_mode: Maps an RPMH_REGULATOR_MODE_* mode value defined
  60. * in device tree to a regulator framework mode
  61. */
  62. struct rpmh_vreg_hw_data {
  63. enum rpmh_regulator_type regulator_type;
  64. const struct regulator_ops *ops;
  65. const struct regulator_linear_range voltage_range;
  66. int n_voltages;
  67. int hpm_min_load_uA;
  68. const int *pmic_mode_map;
  69. unsigned int (*of_map_mode)(unsigned int mode);
  70. };
  71. /**
  72. * struct rpmh_vreg - individual RPMh regulator data structure encapsulating a
  73. * single regulator device
  74. * @dev: Device pointer for the top-level PMIC RPMh
  75. * regulator parent device. This is used as a
  76. * handle in RPMh write requests.
  77. * @addr: Base address of the regulator resource within
  78. * an RPMh accelerator
  79. * @rdesc: Regulator descriptor
  80. * @hw_data: PMIC regulator configuration data for this RPMh
  81. * regulator
  82. * @always_wait_for_ack: Boolean flag indicating if a request must always
  83. * wait for an ACK from RPMh before continuing even
  84. * if it corresponds to a strictly lower power
  85. * state (e.g. enabled --> disabled).
  86. * @enabled: Flag indicating if the regulator is enabled or
  87. * not
  88. * @bypassed: Boolean indicating if the regulator is in
  89. * bypass (pass-through) mode or not. This is
  90. * only used by BOB rpmh-regulator resources.
  91. * @voltage_selector: Selector used for get_voltage_sel() and
  92. * set_voltage_sel() callbacks
  93. * @mode: RPMh VRM regulator current framework mode
  94. */
  95. struct rpmh_vreg {
  96. struct device *dev;
  97. u32 addr;
  98. struct regulator_desc rdesc;
  99. const struct rpmh_vreg_hw_data *hw_data;
  100. bool always_wait_for_ack;
  101. int enabled;
  102. bool bypassed;
  103. int voltage_selector;
  104. unsigned int mode;
  105. };
  106. /**
  107. * struct rpmh_vreg_init_data - initialization data for an RPMh regulator
  108. * @name: Name for the regulator which also corresponds
  109. * to the device tree subnode name of the regulator
  110. * @resource_name: RPMh regulator resource name format string.
  111. * This must include exactly one field: '%s' which
  112. * is filled at run-time with the PMIC ID provided
  113. * by device tree property qcom,pmic-id. Example:
  114. * "ldo%s1" for RPMh resource "ldoa1".
  115. * @supply_name: Parent supply regulator name
  116. * @hw_data: Configuration data for this PMIC regulator type
  117. */
  118. struct rpmh_vreg_init_data {
  119. const char *name;
  120. const char *resource_name;
  121. const char *supply_name;
  122. const struct rpmh_vreg_hw_data *hw_data;
  123. };
  124. /**
  125. * rpmh_regulator_send_request() - send the request to RPMh
  126. * @vreg: Pointer to the RPMh regulator
  127. * @cmd: Pointer to the RPMh command to send
  128. * @wait_for_ack: Boolean indicating if execution must wait until the
  129. * request has been acknowledged as complete
  130. *
  131. * Return: 0 on success, errno on failure
  132. */
  133. static int rpmh_regulator_send_request(struct rpmh_vreg *vreg,
  134. struct tcs_cmd *cmd, bool wait_for_ack)
  135. {
  136. int ret;
  137. if (wait_for_ack || vreg->always_wait_for_ack)
  138. ret = rpmh_write(vreg->dev, RPMH_ACTIVE_ONLY_STATE, cmd, 1);
  139. else
  140. ret = rpmh_write_async(vreg->dev, RPMH_ACTIVE_ONLY_STATE, cmd,
  141. 1);
  142. return ret;
  143. }
  144. static int _rpmh_regulator_vrm_set_voltage_sel(struct regulator_dev *rdev,
  145. unsigned int selector, bool wait_for_ack)
  146. {
  147. struct rpmh_vreg *vreg = rdev_get_drvdata(rdev);
  148. struct tcs_cmd cmd = {
  149. .addr = vreg->addr + RPMH_REGULATOR_REG_VRM_VOLTAGE,
  150. };
  151. int ret;
  152. /* VRM voltage control register is set with voltage in millivolts. */
  153. cmd.data = DIV_ROUND_UP(regulator_list_voltage_linear_range(rdev,
  154. selector), 1000);
  155. ret = rpmh_regulator_send_request(vreg, &cmd, wait_for_ack);
  156. if (!ret)
  157. vreg->voltage_selector = selector;
  158. return ret;
  159. }
  160. static int rpmh_regulator_vrm_set_voltage_sel(struct regulator_dev *rdev,
  161. unsigned int selector)
  162. {
  163. struct rpmh_vreg *vreg = rdev_get_drvdata(rdev);
  164. if (vreg->enabled == -EINVAL) {
  165. /*
  166. * Cache the voltage and send it later when the regulator is
  167. * enabled or disabled.
  168. */
  169. vreg->voltage_selector = selector;
  170. return 0;
  171. }
  172. return _rpmh_regulator_vrm_set_voltage_sel(rdev, selector,
  173. selector > vreg->voltage_selector);
  174. }
  175. static int rpmh_regulator_vrm_get_voltage_sel(struct regulator_dev *rdev)
  176. {
  177. struct rpmh_vreg *vreg = rdev_get_drvdata(rdev);
  178. return vreg->voltage_selector;
  179. }
  180. static int rpmh_regulator_is_enabled(struct regulator_dev *rdev)
  181. {
  182. struct rpmh_vreg *vreg = rdev_get_drvdata(rdev);
  183. return vreg->enabled;
  184. }
  185. static int rpmh_regulator_set_enable_state(struct regulator_dev *rdev,
  186. bool enable)
  187. {
  188. struct rpmh_vreg *vreg = rdev_get_drvdata(rdev);
  189. struct tcs_cmd cmd = {
  190. .addr = vreg->addr + RPMH_REGULATOR_REG_ENABLE,
  191. .data = enable,
  192. };
  193. int ret;
  194. if (vreg->enabled == -EINVAL &&
  195. vreg->voltage_selector != -ENOTRECOVERABLE) {
  196. ret = _rpmh_regulator_vrm_set_voltage_sel(rdev,
  197. vreg->voltage_selector, true);
  198. if (ret < 0)
  199. return ret;
  200. }
  201. ret = rpmh_regulator_send_request(vreg, &cmd, enable);
  202. if (!ret)
  203. vreg->enabled = enable;
  204. return ret;
  205. }
  206. static int rpmh_regulator_enable(struct regulator_dev *rdev)
  207. {
  208. return rpmh_regulator_set_enable_state(rdev, true);
  209. }
  210. static int rpmh_regulator_disable(struct regulator_dev *rdev)
  211. {
  212. return rpmh_regulator_set_enable_state(rdev, false);
  213. }
  214. static int rpmh_regulator_vrm_set_mode_bypass(struct rpmh_vreg *vreg,
  215. unsigned int mode, bool bypassed)
  216. {
  217. struct tcs_cmd cmd = {
  218. .addr = vreg->addr + RPMH_REGULATOR_REG_VRM_MODE,
  219. };
  220. int pmic_mode;
  221. if (mode > REGULATOR_MODE_STANDBY)
  222. return -EINVAL;
  223. pmic_mode = vreg->hw_data->pmic_mode_map[mode];
  224. if (pmic_mode < 0)
  225. return pmic_mode;
  226. if (bypassed)
  227. cmd.data = PMIC4_BOB_MODE_PASS;
  228. else
  229. cmd.data = pmic_mode;
  230. return rpmh_regulator_send_request(vreg, &cmd, true);
  231. }
  232. static int rpmh_regulator_vrm_set_mode(struct regulator_dev *rdev,
  233. unsigned int mode)
  234. {
  235. struct rpmh_vreg *vreg = rdev_get_drvdata(rdev);
  236. int ret;
  237. if (mode == vreg->mode)
  238. return 0;
  239. ret = rpmh_regulator_vrm_set_mode_bypass(vreg, mode, vreg->bypassed);
  240. if (!ret)
  241. vreg->mode = mode;
  242. return ret;
  243. }
  244. static unsigned int rpmh_regulator_vrm_get_mode(struct regulator_dev *rdev)
  245. {
  246. struct rpmh_vreg *vreg = rdev_get_drvdata(rdev);
  247. return vreg->mode;
  248. }
  249. /**
  250. * rpmh_regulator_vrm_set_load() - set the regulator mode based upon the load
  251. * current requested
  252. * @rdev: Regulator device pointer for the rpmh-regulator
  253. * @load_uA: Aggregated load current in microamps
  254. *
  255. * This function is used in the regulator_ops for VRM type RPMh regulator
  256. * devices.
  257. *
  258. * Return: 0 on success, errno on failure
  259. */
  260. static int rpmh_regulator_vrm_set_load(struct regulator_dev *rdev, int load_uA)
  261. {
  262. struct rpmh_vreg *vreg = rdev_get_drvdata(rdev);
  263. unsigned int mode;
  264. if (load_uA >= vreg->hw_data->hpm_min_load_uA)
  265. mode = REGULATOR_MODE_NORMAL;
  266. else
  267. mode = REGULATOR_MODE_IDLE;
  268. return rpmh_regulator_vrm_set_mode(rdev, mode);
  269. }
  270. static int rpmh_regulator_vrm_set_bypass(struct regulator_dev *rdev,
  271. bool enable)
  272. {
  273. struct rpmh_vreg *vreg = rdev_get_drvdata(rdev);
  274. int ret;
  275. if (vreg->bypassed == enable)
  276. return 0;
  277. ret = rpmh_regulator_vrm_set_mode_bypass(vreg, vreg->mode, enable);
  278. if (!ret)
  279. vreg->bypassed = enable;
  280. return ret;
  281. }
  282. static int rpmh_regulator_vrm_get_bypass(struct regulator_dev *rdev,
  283. bool *enable)
  284. {
  285. struct rpmh_vreg *vreg = rdev_get_drvdata(rdev);
  286. *enable = vreg->bypassed;
  287. return 0;
  288. }
  289. static const struct regulator_ops rpmh_regulator_vrm_ops = {
  290. .enable = rpmh_regulator_enable,
  291. .disable = rpmh_regulator_disable,
  292. .is_enabled = rpmh_regulator_is_enabled,
  293. .set_voltage_sel = rpmh_regulator_vrm_set_voltage_sel,
  294. .get_voltage_sel = rpmh_regulator_vrm_get_voltage_sel,
  295. .list_voltage = regulator_list_voltage_linear_range,
  296. .set_mode = rpmh_regulator_vrm_set_mode,
  297. .get_mode = rpmh_regulator_vrm_get_mode,
  298. };
  299. static const struct regulator_ops rpmh_regulator_vrm_drms_ops = {
  300. .enable = rpmh_regulator_enable,
  301. .disable = rpmh_regulator_disable,
  302. .is_enabled = rpmh_regulator_is_enabled,
  303. .set_voltage_sel = rpmh_regulator_vrm_set_voltage_sel,
  304. .get_voltage_sel = rpmh_regulator_vrm_get_voltage_sel,
  305. .list_voltage = regulator_list_voltage_linear_range,
  306. .set_mode = rpmh_regulator_vrm_set_mode,
  307. .get_mode = rpmh_regulator_vrm_get_mode,
  308. .set_load = rpmh_regulator_vrm_set_load,
  309. };
  310. static const struct regulator_ops rpmh_regulator_vrm_bypass_ops = {
  311. .enable = rpmh_regulator_enable,
  312. .disable = rpmh_regulator_disable,
  313. .is_enabled = rpmh_regulator_is_enabled,
  314. .set_voltage_sel = rpmh_regulator_vrm_set_voltage_sel,
  315. .get_voltage_sel = rpmh_regulator_vrm_get_voltage_sel,
  316. .list_voltage = regulator_list_voltage_linear_range,
  317. .set_mode = rpmh_regulator_vrm_set_mode,
  318. .get_mode = rpmh_regulator_vrm_get_mode,
  319. .set_bypass = rpmh_regulator_vrm_set_bypass,
  320. .get_bypass = rpmh_regulator_vrm_get_bypass,
  321. };
  322. static const struct regulator_ops rpmh_regulator_xob_ops = {
  323. .enable = rpmh_regulator_enable,
  324. .disable = rpmh_regulator_disable,
  325. .is_enabled = rpmh_regulator_is_enabled,
  326. };
  327. /**
  328. * rpmh_regulator_init_vreg() - initialize all attributes of an rpmh-regulator
  329. * vreg: Pointer to the individual rpmh-regulator resource
  330. * dev: Pointer to the top level rpmh-regulator PMIC device
  331. * node: Pointer to the individual rpmh-regulator resource
  332. * device node
  333. * pmic_id: String used to identify the top level rpmh-regulator
  334. * PMIC device on the board
  335. * pmic_rpmh_data: Pointer to a null-terminated array of rpmh-regulator
  336. * resources defined for the top level PMIC device
  337. *
  338. * Return: 0 on success, errno on failure
  339. */
  340. static int rpmh_regulator_init_vreg(struct rpmh_vreg *vreg, struct device *dev,
  341. struct device_node *node, const char *pmic_id,
  342. const struct rpmh_vreg_init_data *pmic_rpmh_data)
  343. {
  344. struct regulator_config reg_config = {};
  345. char rpmh_resource_name[20] = "";
  346. const struct rpmh_vreg_init_data *rpmh_data;
  347. struct regulator_init_data *init_data;
  348. struct regulator_dev *rdev;
  349. int ret;
  350. vreg->dev = dev;
  351. for (rpmh_data = pmic_rpmh_data; rpmh_data->name; rpmh_data++)
  352. if (!strcmp(rpmh_data->name, node->name))
  353. break;
  354. if (!rpmh_data->name) {
  355. dev_err(dev, "Unknown regulator %s\n", node->name);
  356. return -EINVAL;
  357. }
  358. scnprintf(rpmh_resource_name, sizeof(rpmh_resource_name),
  359. rpmh_data->resource_name, pmic_id);
  360. vreg->addr = cmd_db_read_addr(rpmh_resource_name);
  361. if (!vreg->addr) {
  362. dev_err(dev, "%s: could not find RPMh address for resource %s\n",
  363. node->name, rpmh_resource_name);
  364. return -ENODEV;
  365. }
  366. vreg->rdesc.name = rpmh_data->name;
  367. vreg->rdesc.supply_name = rpmh_data->supply_name;
  368. vreg->hw_data = rpmh_data->hw_data;
  369. vreg->enabled = -EINVAL;
  370. vreg->voltage_selector = -ENOTRECOVERABLE;
  371. vreg->mode = REGULATOR_MODE_INVALID;
  372. if (rpmh_data->hw_data->n_voltages) {
  373. vreg->rdesc.linear_ranges = &rpmh_data->hw_data->voltage_range;
  374. vreg->rdesc.n_linear_ranges = 1;
  375. vreg->rdesc.n_voltages = rpmh_data->hw_data->n_voltages;
  376. }
  377. vreg->always_wait_for_ack = of_property_read_bool(node,
  378. "qcom,always-wait-for-ack");
  379. vreg->rdesc.owner = THIS_MODULE;
  380. vreg->rdesc.type = REGULATOR_VOLTAGE;
  381. vreg->rdesc.ops = vreg->hw_data->ops;
  382. vreg->rdesc.of_map_mode = vreg->hw_data->of_map_mode;
  383. init_data = of_get_regulator_init_data(dev, node, &vreg->rdesc);
  384. if (!init_data)
  385. return -ENOMEM;
  386. if (rpmh_data->hw_data->regulator_type == XOB &&
  387. init_data->constraints.min_uV &&
  388. init_data->constraints.min_uV == init_data->constraints.max_uV) {
  389. vreg->rdesc.fixed_uV = init_data->constraints.min_uV;
  390. vreg->rdesc.n_voltages = 1;
  391. }
  392. reg_config.dev = dev;
  393. reg_config.init_data = init_data;
  394. reg_config.of_node = node;
  395. reg_config.driver_data = vreg;
  396. rdev = devm_regulator_register(dev, &vreg->rdesc, &reg_config);
  397. if (IS_ERR(rdev)) {
  398. ret = PTR_ERR(rdev);
  399. dev_err(dev, "%s: devm_regulator_register() failed, ret=%d\n",
  400. node->name, ret);
  401. return ret;
  402. }
  403. dev_dbg(dev, "%s regulator registered for RPMh resource %s @ 0x%05X\n",
  404. node->name, rpmh_resource_name, vreg->addr);
  405. return 0;
  406. }
  407. static const int pmic_mode_map_pmic4_ldo[REGULATOR_MODE_STANDBY + 1] = {
  408. [REGULATOR_MODE_INVALID] = -EINVAL,
  409. [REGULATOR_MODE_STANDBY] = PMIC4_LDO_MODE_RETENTION,
  410. [REGULATOR_MODE_IDLE] = PMIC4_LDO_MODE_LPM,
  411. [REGULATOR_MODE_NORMAL] = PMIC4_LDO_MODE_HPM,
  412. [REGULATOR_MODE_FAST] = -EINVAL,
  413. };
  414. static unsigned int rpmh_regulator_pmic4_ldo_of_map_mode(unsigned int rpmh_mode)
  415. {
  416. unsigned int mode;
  417. switch (rpmh_mode) {
  418. case RPMH_REGULATOR_MODE_HPM:
  419. mode = REGULATOR_MODE_NORMAL;
  420. break;
  421. case RPMH_REGULATOR_MODE_LPM:
  422. mode = REGULATOR_MODE_IDLE;
  423. break;
  424. case RPMH_REGULATOR_MODE_RET:
  425. mode = REGULATOR_MODE_STANDBY;
  426. break;
  427. default:
  428. mode = REGULATOR_MODE_INVALID;
  429. }
  430. return mode;
  431. }
  432. static const int pmic_mode_map_pmic4_smps[REGULATOR_MODE_STANDBY + 1] = {
  433. [REGULATOR_MODE_INVALID] = -EINVAL,
  434. [REGULATOR_MODE_STANDBY] = PMIC4_SMPS_MODE_RETENTION,
  435. [REGULATOR_MODE_IDLE] = PMIC4_SMPS_MODE_PFM,
  436. [REGULATOR_MODE_NORMAL] = PMIC4_SMPS_MODE_AUTO,
  437. [REGULATOR_MODE_FAST] = PMIC4_SMPS_MODE_PWM,
  438. };
  439. static unsigned int
  440. rpmh_regulator_pmic4_smps_of_map_mode(unsigned int rpmh_mode)
  441. {
  442. unsigned int mode;
  443. switch (rpmh_mode) {
  444. case RPMH_REGULATOR_MODE_HPM:
  445. mode = REGULATOR_MODE_FAST;
  446. break;
  447. case RPMH_REGULATOR_MODE_AUTO:
  448. mode = REGULATOR_MODE_NORMAL;
  449. break;
  450. case RPMH_REGULATOR_MODE_LPM:
  451. mode = REGULATOR_MODE_IDLE;
  452. break;
  453. case RPMH_REGULATOR_MODE_RET:
  454. mode = REGULATOR_MODE_STANDBY;
  455. break;
  456. default:
  457. mode = REGULATOR_MODE_INVALID;
  458. }
  459. return mode;
  460. }
  461. static const int pmic_mode_map_pmic4_bob[REGULATOR_MODE_STANDBY + 1] = {
  462. [REGULATOR_MODE_INVALID] = -EINVAL,
  463. [REGULATOR_MODE_STANDBY] = -EINVAL,
  464. [REGULATOR_MODE_IDLE] = PMIC4_BOB_MODE_PFM,
  465. [REGULATOR_MODE_NORMAL] = PMIC4_BOB_MODE_AUTO,
  466. [REGULATOR_MODE_FAST] = PMIC4_BOB_MODE_PWM,
  467. };
  468. static unsigned int rpmh_regulator_pmic4_bob_of_map_mode(unsigned int rpmh_mode)
  469. {
  470. unsigned int mode;
  471. switch (rpmh_mode) {
  472. case RPMH_REGULATOR_MODE_HPM:
  473. mode = REGULATOR_MODE_FAST;
  474. break;
  475. case RPMH_REGULATOR_MODE_AUTO:
  476. mode = REGULATOR_MODE_NORMAL;
  477. break;
  478. case RPMH_REGULATOR_MODE_LPM:
  479. mode = REGULATOR_MODE_IDLE;
  480. break;
  481. default:
  482. mode = REGULATOR_MODE_INVALID;
  483. }
  484. return mode;
  485. }
  486. static const struct rpmh_vreg_hw_data pmic4_pldo = {
  487. .regulator_type = VRM,
  488. .ops = &rpmh_regulator_vrm_drms_ops,
  489. .voltage_range = REGULATOR_LINEAR_RANGE(1664000, 0, 255, 8000),
  490. .n_voltages = 256,
  491. .hpm_min_load_uA = 10000,
  492. .pmic_mode_map = pmic_mode_map_pmic4_ldo,
  493. .of_map_mode = rpmh_regulator_pmic4_ldo_of_map_mode,
  494. };
  495. static const struct rpmh_vreg_hw_data pmic4_pldo_lv = {
  496. .regulator_type = VRM,
  497. .ops = &rpmh_regulator_vrm_drms_ops,
  498. .voltage_range = REGULATOR_LINEAR_RANGE(1256000, 0, 127, 8000),
  499. .n_voltages = 128,
  500. .hpm_min_load_uA = 10000,
  501. .pmic_mode_map = pmic_mode_map_pmic4_ldo,
  502. .of_map_mode = rpmh_regulator_pmic4_ldo_of_map_mode,
  503. };
  504. static const struct rpmh_vreg_hw_data pmic4_nldo = {
  505. .regulator_type = VRM,
  506. .ops = &rpmh_regulator_vrm_drms_ops,
  507. .voltage_range = REGULATOR_LINEAR_RANGE(312000, 0, 127, 8000),
  508. .n_voltages = 128,
  509. .hpm_min_load_uA = 30000,
  510. .pmic_mode_map = pmic_mode_map_pmic4_ldo,
  511. .of_map_mode = rpmh_regulator_pmic4_ldo_of_map_mode,
  512. };
  513. static const struct rpmh_vreg_hw_data pmic4_hfsmps3 = {
  514. .regulator_type = VRM,
  515. .ops = &rpmh_regulator_vrm_ops,
  516. .voltage_range = REGULATOR_LINEAR_RANGE(320000, 0, 215, 8000),
  517. .n_voltages = 216,
  518. .pmic_mode_map = pmic_mode_map_pmic4_smps,
  519. .of_map_mode = rpmh_regulator_pmic4_smps_of_map_mode,
  520. };
  521. static const struct rpmh_vreg_hw_data pmic4_ftsmps426 = {
  522. .regulator_type = VRM,
  523. .ops = &rpmh_regulator_vrm_ops,
  524. .voltage_range = REGULATOR_LINEAR_RANGE(320000, 0, 258, 4000),
  525. .n_voltages = 259,
  526. .pmic_mode_map = pmic_mode_map_pmic4_smps,
  527. .of_map_mode = rpmh_regulator_pmic4_smps_of_map_mode,
  528. };
  529. static const struct rpmh_vreg_hw_data pmic4_bob = {
  530. .regulator_type = VRM,
  531. .ops = &rpmh_regulator_vrm_bypass_ops,
  532. .voltage_range = REGULATOR_LINEAR_RANGE(1824000, 0, 83, 32000),
  533. .n_voltages = 84,
  534. .pmic_mode_map = pmic_mode_map_pmic4_bob,
  535. .of_map_mode = rpmh_regulator_pmic4_bob_of_map_mode,
  536. };
  537. static const struct rpmh_vreg_hw_data pmic4_lvs = {
  538. .regulator_type = XOB,
  539. .ops = &rpmh_regulator_xob_ops,
  540. /* LVS hardware does not support voltage or mode configuration. */
  541. };
  542. #define RPMH_VREG(_name, _resource_name, _hw_data, _supply_name) \
  543. { \
  544. .name = _name, \
  545. .resource_name = _resource_name, \
  546. .hw_data = _hw_data, \
  547. .supply_name = _supply_name, \
  548. }
  549. static const struct rpmh_vreg_init_data pm8998_vreg_data[] = {
  550. RPMH_VREG("smps1", "smp%s1", &pmic4_ftsmps426, "vdd-s1"),
  551. RPMH_VREG("smps2", "smp%s2", &pmic4_ftsmps426, "vdd-s2"),
  552. RPMH_VREG("smps3", "smp%s3", &pmic4_hfsmps3, "vdd-s3"),
  553. RPMH_VREG("smps4", "smp%s4", &pmic4_hfsmps3, "vdd-s4"),
  554. RPMH_VREG("smps5", "smp%s5", &pmic4_hfsmps3, "vdd-s5"),
  555. RPMH_VREG("smps6", "smp%s6", &pmic4_ftsmps426, "vdd-s6"),
  556. RPMH_VREG("smps7", "smp%s7", &pmic4_ftsmps426, "vdd-s7"),
  557. RPMH_VREG("smps8", "smp%s8", &pmic4_ftsmps426, "vdd-s8"),
  558. RPMH_VREG("smps9", "smp%s9", &pmic4_ftsmps426, "vdd-s9"),
  559. RPMH_VREG("smps10", "smp%s10", &pmic4_ftsmps426, "vdd-s10"),
  560. RPMH_VREG("smps11", "smp%s11", &pmic4_ftsmps426, "vdd-s11"),
  561. RPMH_VREG("smps12", "smp%s12", &pmic4_ftsmps426, "vdd-s12"),
  562. RPMH_VREG("smps13", "smp%s13", &pmic4_ftsmps426, "vdd-s13"),
  563. RPMH_VREG("ldo1", "ldo%s1", &pmic4_nldo, "vdd-l1-l27"),
  564. RPMH_VREG("ldo2", "ldo%s2", &pmic4_nldo, "vdd-l2-l8-l17"),
  565. RPMH_VREG("ldo3", "ldo%s3", &pmic4_nldo, "vdd-l3-l11"),
  566. RPMH_VREG("ldo4", "ldo%s4", &pmic4_nldo, "vdd-l4-l5"),
  567. RPMH_VREG("ldo5", "ldo%s5", &pmic4_nldo, "vdd-l4-l5"),
  568. RPMH_VREG("ldo6", "ldo%s6", &pmic4_pldo, "vdd-l6"),
  569. RPMH_VREG("ldo7", "ldo%s7", &pmic4_pldo_lv, "vdd-l7-l12-l14-l15"),
  570. RPMH_VREG("ldo8", "ldo%s8", &pmic4_nldo, "vdd-l2-l8-l17"),
  571. RPMH_VREG("ldo9", "ldo%s9", &pmic4_pldo, "vdd-l9"),
  572. RPMH_VREG("ldo10", "ldo%s10", &pmic4_pldo, "vdd-l10-l23-l25"),
  573. RPMH_VREG("ldo11", "ldo%s11", &pmic4_nldo, "vdd-l3-l11"),
  574. RPMH_VREG("ldo12", "ldo%s12", &pmic4_pldo_lv, "vdd-l7-l12-l14-l15"),
  575. RPMH_VREG("ldo13", "ldo%s13", &pmic4_pldo, "vdd-l13-l19-l21"),
  576. RPMH_VREG("ldo14", "ldo%s14", &pmic4_pldo_lv, "vdd-l7-l12-l14-l15"),
  577. RPMH_VREG("ldo15", "ldo%s15", &pmic4_pldo_lv, "vdd-l7-l12-l14-l15"),
  578. RPMH_VREG("ldo16", "ldo%s16", &pmic4_pldo, "vdd-l16-l28"),
  579. RPMH_VREG("ldo17", "ldo%s17", &pmic4_nldo, "vdd-l2-l8-l17"),
  580. RPMH_VREG("ldo18", "ldo%s18", &pmic4_pldo, "vdd-l18-l22"),
  581. RPMH_VREG("ldo19", "ldo%s19", &pmic4_pldo, "vdd-l13-l19-l21"),
  582. RPMH_VREG("ldo20", "ldo%s20", &pmic4_pldo, "vdd-l20-l24"),
  583. RPMH_VREG("ldo21", "ldo%s21", &pmic4_pldo, "vdd-l13-l19-l21"),
  584. RPMH_VREG("ldo22", "ldo%s22", &pmic4_pldo, "vdd-l18-l22"),
  585. RPMH_VREG("ldo23", "ldo%s23", &pmic4_pldo, "vdd-l10-l23-l25"),
  586. RPMH_VREG("ldo24", "ldo%s24", &pmic4_pldo, "vdd-l20-l24"),
  587. RPMH_VREG("ldo25", "ldo%s25", &pmic4_pldo, "vdd-l10-l23-l25"),
  588. RPMH_VREG("ldo26", "ldo%s26", &pmic4_nldo, "vdd-l26"),
  589. RPMH_VREG("ldo27", "ldo%s27", &pmic4_nldo, "vdd-l1-l27"),
  590. RPMH_VREG("ldo28", "ldo%s28", &pmic4_pldo, "vdd-l16-l28"),
  591. RPMH_VREG("lvs1", "vs%s1", &pmic4_lvs, "vin-lvs-1-2"),
  592. RPMH_VREG("lvs2", "vs%s2", &pmic4_lvs, "vin-lvs-1-2"),
  593. {},
  594. };
  595. static const struct rpmh_vreg_init_data pmi8998_vreg_data[] = {
  596. RPMH_VREG("bob", "bob%s1", &pmic4_bob, "vdd-bob"),
  597. {},
  598. };
  599. static const struct rpmh_vreg_init_data pm8005_vreg_data[] = {
  600. RPMH_VREG("smps1", "smp%s1", &pmic4_ftsmps426, "vdd-s1"),
  601. RPMH_VREG("smps2", "smp%s2", &pmic4_ftsmps426, "vdd-s2"),
  602. RPMH_VREG("smps3", "smp%s3", &pmic4_ftsmps426, "vdd-s3"),
  603. RPMH_VREG("smps4", "smp%s4", &pmic4_ftsmps426, "vdd-s4"),
  604. {},
  605. };
  606. static int rpmh_regulator_probe(struct platform_device *pdev)
  607. {
  608. struct device *dev = &pdev->dev;
  609. const struct rpmh_vreg_init_data *vreg_data;
  610. struct device_node *node;
  611. struct rpmh_vreg *vreg;
  612. const char *pmic_id;
  613. int ret;
  614. vreg_data = of_device_get_match_data(dev);
  615. if (!vreg_data)
  616. return -ENODEV;
  617. ret = of_property_read_string(dev->of_node, "qcom,pmic-id", &pmic_id);
  618. if (ret < 0) {
  619. dev_err(dev, "qcom,pmic-id missing in DT node\n");
  620. return ret;
  621. }
  622. for_each_available_child_of_node(dev->of_node, node) {
  623. vreg = devm_kzalloc(dev, sizeof(*vreg), GFP_KERNEL);
  624. if (!vreg) {
  625. of_node_put(node);
  626. return -ENOMEM;
  627. }
  628. ret = rpmh_regulator_init_vreg(vreg, dev, node, pmic_id,
  629. vreg_data);
  630. if (ret < 0) {
  631. of_node_put(node);
  632. return ret;
  633. }
  634. }
  635. return 0;
  636. }
  637. static const struct of_device_id rpmh_regulator_match_table[] = {
  638. {
  639. .compatible = "qcom,pm8998-rpmh-regulators",
  640. .data = pm8998_vreg_data,
  641. },
  642. {
  643. .compatible = "qcom,pmi8998-rpmh-regulators",
  644. .data = pmi8998_vreg_data,
  645. },
  646. {
  647. .compatible = "qcom,pm8005-rpmh-regulators",
  648. .data = pm8005_vreg_data,
  649. },
  650. {}
  651. };
  652. MODULE_DEVICE_TABLE(of, rpmh_regulator_match_table);
  653. static struct platform_driver rpmh_regulator_driver = {
  654. .driver = {
  655. .name = "qcom-rpmh-regulator",
  656. .of_match_table = of_match_ptr(rpmh_regulator_match_table),
  657. },
  658. .probe = rpmh_regulator_probe,
  659. };
  660. module_platform_driver(rpmh_regulator_driver);
  661. MODULE_DESCRIPTION("Qualcomm RPMh regulator driver");
  662. MODULE_LICENSE("GPL v2");