smb347-charger.c 43 KB

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  1. // SPDX-License-Identifier: GPL-2.0-only
  2. /*
  3. * Summit Microelectronics SMB347 Battery Charger Driver
  4. *
  5. * Copyright (C) 2011, Intel Corporation
  6. *
  7. * Authors: Bruce E. Robertson <[email protected]>
  8. * Mika Westerberg <[email protected]>
  9. */
  10. #include <linux/delay.h>
  11. #include <linux/err.h>
  12. #include <linux/kernel.h>
  13. #include <linux/module.h>
  14. #include <linux/init.h>
  15. #include <linux/interrupt.h>
  16. #include <linux/i2c.h>
  17. #include <linux/power_supply.h>
  18. #include <linux/property.h>
  19. #include <linux/regmap.h>
  20. #include <linux/regulator/driver.h>
  21. #include <dt-bindings/power/summit,smb347-charger.h>
  22. /* Use the default compensation method */
  23. #define SMB3XX_SOFT_TEMP_COMPENSATE_DEFAULT -1
  24. /* Use default factory programmed value for hard/soft temperature limit */
  25. #define SMB3XX_TEMP_USE_DEFAULT -273
  26. /*
  27. * Configuration registers. These are mirrored to volatile RAM and can be
  28. * written once %CMD_A_ALLOW_WRITE is set in %CMD_A register. They will be
  29. * reloaded from non-volatile registers after POR.
  30. */
  31. #define CFG_CHARGE_CURRENT 0x00
  32. #define CFG_CHARGE_CURRENT_FCC_MASK 0xe0
  33. #define CFG_CHARGE_CURRENT_FCC_SHIFT 5
  34. #define CFG_CHARGE_CURRENT_PCC_MASK 0x18
  35. #define CFG_CHARGE_CURRENT_PCC_SHIFT 3
  36. #define CFG_CHARGE_CURRENT_TC_MASK 0x07
  37. #define CFG_CURRENT_LIMIT 0x01
  38. #define CFG_CURRENT_LIMIT_DC_MASK 0xf0
  39. #define CFG_CURRENT_LIMIT_DC_SHIFT 4
  40. #define CFG_CURRENT_LIMIT_USB_MASK 0x0f
  41. #define CFG_FLOAT_VOLTAGE 0x03
  42. #define CFG_FLOAT_VOLTAGE_FLOAT_MASK 0x3f
  43. #define CFG_FLOAT_VOLTAGE_THRESHOLD_MASK 0xc0
  44. #define CFG_FLOAT_VOLTAGE_THRESHOLD_SHIFT 6
  45. #define CFG_STAT 0x05
  46. #define CFG_STAT_DISABLED BIT(5)
  47. #define CFG_STAT_ACTIVE_HIGH BIT(7)
  48. #define CFG_PIN 0x06
  49. #define CFG_PIN_EN_CTRL_MASK 0x60
  50. #define CFG_PIN_EN_CTRL_ACTIVE_HIGH 0x40
  51. #define CFG_PIN_EN_CTRL_ACTIVE_LOW 0x60
  52. #define CFG_PIN_EN_APSD_IRQ BIT(1)
  53. #define CFG_PIN_EN_CHARGER_ERROR BIT(2)
  54. #define CFG_PIN_EN_CTRL BIT(4)
  55. #define CFG_THERM 0x07
  56. #define CFG_THERM_SOFT_HOT_COMPENSATION_MASK 0x03
  57. #define CFG_THERM_SOFT_HOT_COMPENSATION_SHIFT 0
  58. #define CFG_THERM_SOFT_COLD_COMPENSATION_MASK 0x0c
  59. #define CFG_THERM_SOFT_COLD_COMPENSATION_SHIFT 2
  60. #define CFG_THERM_MONITOR_DISABLED BIT(4)
  61. #define CFG_SYSOK 0x08
  62. #define CFG_SYSOK_INOK_ACTIVE_HIGH BIT(0)
  63. #define CFG_SYSOK_SUSPEND_HARD_LIMIT_DISABLED BIT(2)
  64. #define CFG_OTHER 0x09
  65. #define CFG_OTHER_RID_MASK 0xc0
  66. #define CFG_OTHER_RID_ENABLED_AUTO_OTG 0xc0
  67. #define CFG_OTG 0x0a
  68. #define CFG_OTG_TEMP_THRESHOLD_MASK 0x30
  69. #define CFG_OTG_CURRENT_LIMIT_250mA BIT(2)
  70. #define CFG_OTG_CURRENT_LIMIT_750mA BIT(3)
  71. #define CFG_OTG_TEMP_THRESHOLD_SHIFT 4
  72. #define CFG_OTG_CC_COMPENSATION_MASK 0xc0
  73. #define CFG_OTG_CC_COMPENSATION_SHIFT 6
  74. #define CFG_TEMP_LIMIT 0x0b
  75. #define CFG_TEMP_LIMIT_SOFT_HOT_MASK 0x03
  76. #define CFG_TEMP_LIMIT_SOFT_HOT_SHIFT 0
  77. #define CFG_TEMP_LIMIT_SOFT_COLD_MASK 0x0c
  78. #define CFG_TEMP_LIMIT_SOFT_COLD_SHIFT 2
  79. #define CFG_TEMP_LIMIT_HARD_HOT_MASK 0x30
  80. #define CFG_TEMP_LIMIT_HARD_HOT_SHIFT 4
  81. #define CFG_TEMP_LIMIT_HARD_COLD_MASK 0xc0
  82. #define CFG_TEMP_LIMIT_HARD_COLD_SHIFT 6
  83. #define CFG_FAULT_IRQ 0x0c
  84. #define CFG_FAULT_IRQ_DCIN_UV BIT(2)
  85. #define CFG_STATUS_IRQ 0x0d
  86. #define CFG_STATUS_IRQ_TERMINATION_OR_TAPER BIT(4)
  87. #define CFG_STATUS_IRQ_CHARGE_TIMEOUT BIT(7)
  88. #define CFG_ADDRESS 0x0e
  89. /* Command registers */
  90. #define CMD_A 0x30
  91. #define CMD_A_CHG_ENABLED BIT(1)
  92. #define CMD_A_SUSPEND_ENABLED BIT(2)
  93. #define CMD_A_OTG_ENABLED BIT(4)
  94. #define CMD_A_ALLOW_WRITE BIT(7)
  95. #define CMD_B 0x31
  96. #define CMD_C 0x33
  97. /* Interrupt Status registers */
  98. #define IRQSTAT_A 0x35
  99. #define IRQSTAT_C 0x37
  100. #define IRQSTAT_C_TERMINATION_STAT BIT(0)
  101. #define IRQSTAT_C_TERMINATION_IRQ BIT(1)
  102. #define IRQSTAT_C_TAPER_IRQ BIT(3)
  103. #define IRQSTAT_D 0x38
  104. #define IRQSTAT_D_CHARGE_TIMEOUT_STAT BIT(2)
  105. #define IRQSTAT_D_CHARGE_TIMEOUT_IRQ BIT(3)
  106. #define IRQSTAT_E 0x39
  107. #define IRQSTAT_E_USBIN_UV_STAT BIT(0)
  108. #define IRQSTAT_E_USBIN_UV_IRQ BIT(1)
  109. #define IRQSTAT_E_DCIN_UV_STAT BIT(4)
  110. #define IRQSTAT_E_DCIN_UV_IRQ BIT(5)
  111. #define IRQSTAT_F 0x3a
  112. /* Status registers */
  113. #define STAT_A 0x3b
  114. #define STAT_A_FLOAT_VOLTAGE_MASK 0x3f
  115. #define STAT_B 0x3c
  116. #define STAT_C 0x3d
  117. #define STAT_C_CHG_ENABLED BIT(0)
  118. #define STAT_C_HOLDOFF_STAT BIT(3)
  119. #define STAT_C_CHG_MASK 0x06
  120. #define STAT_C_CHG_SHIFT 1
  121. #define STAT_C_CHG_TERM BIT(5)
  122. #define STAT_C_CHARGER_ERROR BIT(6)
  123. #define STAT_E 0x3f
  124. #define SMB347_MAX_REGISTER 0x3f
  125. /**
  126. * struct smb347_charger - smb347 charger instance
  127. * @dev: pointer to device
  128. * @regmap: pointer to driver regmap
  129. * @mains: power_supply instance for AC/DC power
  130. * @usb: power_supply instance for USB power
  131. * @usb_rdev: USB VBUS regulator device
  132. * @id: SMB charger ID
  133. * @mains_online: is AC/DC input connected
  134. * @usb_online: is USB input connected
  135. * @irq_unsupported: is interrupt unsupported by SMB hardware
  136. * @usb_vbus_enabled: is USB VBUS powered by SMB charger
  137. * @max_charge_current: maximum current (in uA) the battery can be charged
  138. * @max_charge_voltage: maximum voltage (in uV) the battery can be charged
  139. * @pre_charge_current: current (in uA) to use in pre-charging phase
  140. * @termination_current: current (in uA) used to determine when the
  141. * charging cycle terminates
  142. * @pre_to_fast_voltage: voltage (in uV) treshold used for transitioning to
  143. * pre-charge to fast charge mode
  144. * @mains_current_limit: maximum input current drawn from AC/DC input (in uA)
  145. * @usb_hc_current_limit: maximum input high current (in uA) drawn from USB
  146. * input
  147. * @chip_temp_threshold: die temperature where device starts limiting charge
  148. * current [%100 - %130] (in degree C)
  149. * @soft_cold_temp_limit: soft cold temperature limit [%0 - %15] (in degree C),
  150. * granularity is 5 deg C.
  151. * @soft_hot_temp_limit: soft hot temperature limit [%40 - %55] (in degree C),
  152. * granularity is 5 deg C.
  153. * @hard_cold_temp_limit: hard cold temperature limit [%-5 - %10] (in degree C),
  154. * granularity is 5 deg C.
  155. * @hard_hot_temp_limit: hard hot temperature limit [%50 - %65] (in degree C),
  156. * granularity is 5 deg C.
  157. * @suspend_on_hard_temp_limit: suspend charging when hard limit is hit
  158. * @soft_temp_limit_compensation: compensation method when soft temperature
  159. * limit is hit
  160. * @charge_current_compensation: current (in uA) for charging compensation
  161. * current when temperature hits soft limits
  162. * @use_mains: AC/DC input can be used
  163. * @use_usb: USB input can be used
  164. * @use_usb_otg: USB OTG output can be used (not implemented yet)
  165. * @enable_control: how charging enable/disable is controlled
  166. * (driver/pin controls)
  167. * @inok_polarity: polarity of INOK signal which denotes presence of external
  168. * power supply
  169. *
  170. * @use_main, @use_usb, and @use_usb_otg are means to enable/disable
  171. * hardware support for these. This is useful when we want to have for
  172. * example OTG charging controlled via OTG transceiver driver and not by
  173. * the SMB347 hardware.
  174. *
  175. * Hard and soft temperature limit values are given as described in the
  176. * device data sheet and assuming NTC beta value is %3750. Even if this is
  177. * not the case, these values should be used. They can be mapped to the
  178. * corresponding NTC beta values with the help of table %2 in the data
  179. * sheet. So for example if NTC beta is %3375 and we want to program hard
  180. * hot limit to be %53 deg C, @hard_hot_temp_limit should be set to %50.
  181. *
  182. * If zero value is given in any of the current and voltage values, the
  183. * factory programmed default will be used. For soft/hard temperature
  184. * values, pass in %SMB3XX_TEMP_USE_DEFAULT instead.
  185. */
  186. struct smb347_charger {
  187. struct device *dev;
  188. struct regmap *regmap;
  189. struct power_supply *mains;
  190. struct power_supply *usb;
  191. struct regulator_dev *usb_rdev;
  192. unsigned int id;
  193. bool mains_online;
  194. bool usb_online;
  195. bool irq_unsupported;
  196. bool usb_vbus_enabled;
  197. unsigned int max_charge_current;
  198. unsigned int max_charge_voltage;
  199. unsigned int pre_charge_current;
  200. unsigned int termination_current;
  201. unsigned int pre_to_fast_voltage;
  202. unsigned int mains_current_limit;
  203. unsigned int usb_hc_current_limit;
  204. unsigned int chip_temp_threshold;
  205. int soft_cold_temp_limit;
  206. int soft_hot_temp_limit;
  207. int hard_cold_temp_limit;
  208. int hard_hot_temp_limit;
  209. bool suspend_on_hard_temp_limit;
  210. unsigned int soft_temp_limit_compensation;
  211. unsigned int charge_current_compensation;
  212. bool use_mains;
  213. bool use_usb;
  214. bool use_usb_otg;
  215. unsigned int enable_control;
  216. unsigned int inok_polarity;
  217. };
  218. enum smb_charger_chipid {
  219. SMB345,
  220. SMB347,
  221. SMB358,
  222. NUM_CHIP_TYPES,
  223. };
  224. /* Fast charge current in uA */
  225. static const unsigned int fcc_tbl[NUM_CHIP_TYPES][8] = {
  226. [SMB345] = { 200000, 450000, 600000, 900000,
  227. 1300000, 1500000, 1800000, 2000000 },
  228. [SMB347] = { 700000, 900000, 1200000, 1500000,
  229. 1800000, 2000000, 2200000, 2500000 },
  230. [SMB358] = { 200000, 450000, 600000, 900000,
  231. 1300000, 1500000, 1800000, 2000000 },
  232. };
  233. /* Pre-charge current in uA */
  234. static const unsigned int pcc_tbl[NUM_CHIP_TYPES][4] = {
  235. [SMB345] = { 150000, 250000, 350000, 450000 },
  236. [SMB347] = { 100000, 150000, 200000, 250000 },
  237. [SMB358] = { 150000, 250000, 350000, 450000 },
  238. };
  239. /* Termination current in uA */
  240. static const unsigned int tc_tbl[NUM_CHIP_TYPES][8] = {
  241. [SMB345] = { 30000, 40000, 60000, 80000,
  242. 100000, 125000, 150000, 200000 },
  243. [SMB347] = { 37500, 50000, 100000, 150000,
  244. 200000, 250000, 500000, 600000 },
  245. [SMB358] = { 30000, 40000, 60000, 80000,
  246. 100000, 125000, 150000, 200000 },
  247. };
  248. /* Input current limit in uA */
  249. static const unsigned int icl_tbl[NUM_CHIP_TYPES][10] = {
  250. [SMB345] = { 300000, 500000, 700000, 1000000, 1500000,
  251. 1800000, 2000000, 2000000, 2000000, 2000000 },
  252. [SMB347] = { 300000, 500000, 700000, 900000, 1200000,
  253. 1500000, 1800000, 2000000, 2200000, 2500000 },
  254. [SMB358] = { 300000, 500000, 700000, 1000000, 1500000,
  255. 1800000, 2000000, 2000000, 2000000, 2000000 },
  256. };
  257. /* Charge current compensation in uA */
  258. static const unsigned int ccc_tbl[NUM_CHIP_TYPES][4] = {
  259. [SMB345] = { 200000, 450000, 600000, 900000 },
  260. [SMB347] = { 250000, 700000, 900000, 1200000 },
  261. [SMB358] = { 200000, 450000, 600000, 900000 },
  262. };
  263. /* Convert register value to current using lookup table */
  264. static int hw_to_current(const unsigned int *tbl, size_t size, unsigned int val)
  265. {
  266. if (val >= size)
  267. return -EINVAL;
  268. return tbl[val];
  269. }
  270. /* Convert current to register value using lookup table */
  271. static int current_to_hw(const unsigned int *tbl, size_t size, unsigned int val)
  272. {
  273. size_t i;
  274. for (i = 0; i < size; i++)
  275. if (val < tbl[i])
  276. break;
  277. return i > 0 ? i - 1 : -EINVAL;
  278. }
  279. /**
  280. * smb347_update_ps_status - refreshes the power source status
  281. * @smb: pointer to smb347 charger instance
  282. *
  283. * Function checks whether any power source is connected to the charger and
  284. * updates internal state accordingly. If there is a change to previous state
  285. * function returns %1, otherwise %0 and negative errno in case of errror.
  286. */
  287. static int smb347_update_ps_status(struct smb347_charger *smb)
  288. {
  289. bool usb = false;
  290. bool dc = false;
  291. unsigned int val;
  292. int ret;
  293. ret = regmap_read(smb->regmap, IRQSTAT_E, &val);
  294. if (ret < 0)
  295. return ret;
  296. /*
  297. * Dc and usb are set depending on whether they are enabled in
  298. * platform data _and_ whether corresponding undervoltage is set.
  299. */
  300. if (smb->use_mains)
  301. dc = !(val & IRQSTAT_E_DCIN_UV_STAT);
  302. if (smb->use_usb)
  303. usb = !(val & IRQSTAT_E_USBIN_UV_STAT);
  304. ret = smb->mains_online != dc || smb->usb_online != usb;
  305. smb->mains_online = dc;
  306. smb->usb_online = usb;
  307. return ret;
  308. }
  309. /*
  310. * smb347_is_ps_online - returns whether input power source is connected
  311. * @smb: pointer to smb347 charger instance
  312. *
  313. * Returns %true if input power source is connected. Note that this is
  314. * dependent on what platform has configured for usable power sources. For
  315. * example if USB is disabled, this will return %false even if the USB cable
  316. * is connected.
  317. */
  318. static bool smb347_is_ps_online(struct smb347_charger *smb)
  319. {
  320. return smb->usb_online || smb->mains_online;
  321. }
  322. /**
  323. * smb347_charging_status - returns status of charging
  324. * @smb: pointer to smb347 charger instance
  325. *
  326. * Function returns charging status. %0 means no charging is in progress,
  327. * %1 means pre-charging, %2 fast-charging and %3 taper-charging.
  328. */
  329. static int smb347_charging_status(struct smb347_charger *smb)
  330. {
  331. unsigned int val;
  332. int ret;
  333. if (!smb347_is_ps_online(smb))
  334. return 0;
  335. ret = regmap_read(smb->regmap, STAT_C, &val);
  336. if (ret < 0)
  337. return 0;
  338. return (val & STAT_C_CHG_MASK) >> STAT_C_CHG_SHIFT;
  339. }
  340. static int smb347_charging_set(struct smb347_charger *smb, bool enable)
  341. {
  342. if (smb->enable_control != SMB3XX_CHG_ENABLE_SW) {
  343. dev_dbg(smb->dev, "charging enable/disable in SW disabled\n");
  344. return 0;
  345. }
  346. if (enable && smb->usb_vbus_enabled) {
  347. dev_dbg(smb->dev, "charging not enabled because USB is in host mode\n");
  348. return 0;
  349. }
  350. return regmap_update_bits(smb->regmap, CMD_A, CMD_A_CHG_ENABLED,
  351. enable ? CMD_A_CHG_ENABLED : 0);
  352. }
  353. static inline int smb347_charging_enable(struct smb347_charger *smb)
  354. {
  355. return smb347_charging_set(smb, true);
  356. }
  357. static inline int smb347_charging_disable(struct smb347_charger *smb)
  358. {
  359. return smb347_charging_set(smb, false);
  360. }
  361. static int smb347_start_stop_charging(struct smb347_charger *smb)
  362. {
  363. int ret;
  364. /*
  365. * Depending on whether valid power source is connected or not, we
  366. * disable or enable the charging. We do it manually because it
  367. * depends on how the platform has configured the valid inputs.
  368. */
  369. if (smb347_is_ps_online(smb)) {
  370. ret = smb347_charging_enable(smb);
  371. if (ret < 0)
  372. dev_err(smb->dev, "failed to enable charging\n");
  373. } else {
  374. ret = smb347_charging_disable(smb);
  375. if (ret < 0)
  376. dev_err(smb->dev, "failed to disable charging\n");
  377. }
  378. return ret;
  379. }
  380. static int smb347_set_charge_current(struct smb347_charger *smb)
  381. {
  382. unsigned int id = smb->id;
  383. int ret;
  384. if (smb->max_charge_current) {
  385. ret = current_to_hw(fcc_tbl[id], ARRAY_SIZE(fcc_tbl[id]),
  386. smb->max_charge_current);
  387. if (ret < 0)
  388. return ret;
  389. ret = regmap_update_bits(smb->regmap, CFG_CHARGE_CURRENT,
  390. CFG_CHARGE_CURRENT_FCC_MASK,
  391. ret << CFG_CHARGE_CURRENT_FCC_SHIFT);
  392. if (ret < 0)
  393. return ret;
  394. }
  395. if (smb->pre_charge_current) {
  396. ret = current_to_hw(pcc_tbl[id], ARRAY_SIZE(pcc_tbl[id]),
  397. smb->pre_charge_current);
  398. if (ret < 0)
  399. return ret;
  400. ret = regmap_update_bits(smb->regmap, CFG_CHARGE_CURRENT,
  401. CFG_CHARGE_CURRENT_PCC_MASK,
  402. ret << CFG_CHARGE_CURRENT_PCC_SHIFT);
  403. if (ret < 0)
  404. return ret;
  405. }
  406. if (smb->termination_current) {
  407. ret = current_to_hw(tc_tbl[id], ARRAY_SIZE(tc_tbl[id]),
  408. smb->termination_current);
  409. if (ret < 0)
  410. return ret;
  411. ret = regmap_update_bits(smb->regmap, CFG_CHARGE_CURRENT,
  412. CFG_CHARGE_CURRENT_TC_MASK, ret);
  413. if (ret < 0)
  414. return ret;
  415. }
  416. return 0;
  417. }
  418. static int smb347_set_current_limits(struct smb347_charger *smb)
  419. {
  420. unsigned int id = smb->id;
  421. int ret;
  422. if (smb->mains_current_limit) {
  423. ret = current_to_hw(icl_tbl[id], ARRAY_SIZE(icl_tbl[id]),
  424. smb->mains_current_limit);
  425. if (ret < 0)
  426. return ret;
  427. ret = regmap_update_bits(smb->regmap, CFG_CURRENT_LIMIT,
  428. CFG_CURRENT_LIMIT_DC_MASK,
  429. ret << CFG_CURRENT_LIMIT_DC_SHIFT);
  430. if (ret < 0)
  431. return ret;
  432. }
  433. if (smb->usb_hc_current_limit) {
  434. ret = current_to_hw(icl_tbl[id], ARRAY_SIZE(icl_tbl[id]),
  435. smb->usb_hc_current_limit);
  436. if (ret < 0)
  437. return ret;
  438. ret = regmap_update_bits(smb->regmap, CFG_CURRENT_LIMIT,
  439. CFG_CURRENT_LIMIT_USB_MASK, ret);
  440. if (ret < 0)
  441. return ret;
  442. }
  443. return 0;
  444. }
  445. static int smb347_set_voltage_limits(struct smb347_charger *smb)
  446. {
  447. int ret;
  448. if (smb->pre_to_fast_voltage) {
  449. ret = smb->pre_to_fast_voltage;
  450. /* uV */
  451. ret = clamp_val(ret, 2400000, 3000000) - 2400000;
  452. ret /= 200000;
  453. ret = regmap_update_bits(smb->regmap, CFG_FLOAT_VOLTAGE,
  454. CFG_FLOAT_VOLTAGE_THRESHOLD_MASK,
  455. ret << CFG_FLOAT_VOLTAGE_THRESHOLD_SHIFT);
  456. if (ret < 0)
  457. return ret;
  458. }
  459. if (smb->max_charge_voltage) {
  460. ret = smb->max_charge_voltage;
  461. /* uV */
  462. ret = clamp_val(ret, 3500000, 4500000) - 3500000;
  463. ret /= 20000;
  464. ret = regmap_update_bits(smb->regmap, CFG_FLOAT_VOLTAGE,
  465. CFG_FLOAT_VOLTAGE_FLOAT_MASK, ret);
  466. if (ret < 0)
  467. return ret;
  468. }
  469. return 0;
  470. }
  471. static int smb347_set_temp_limits(struct smb347_charger *smb)
  472. {
  473. unsigned int id = smb->id;
  474. bool enable_therm_monitor = false;
  475. int ret = 0;
  476. int val;
  477. if (smb->chip_temp_threshold) {
  478. val = smb->chip_temp_threshold;
  479. /* degree C */
  480. val = clamp_val(val, 100, 130) - 100;
  481. val /= 10;
  482. ret = regmap_update_bits(smb->regmap, CFG_OTG,
  483. CFG_OTG_TEMP_THRESHOLD_MASK,
  484. val << CFG_OTG_TEMP_THRESHOLD_SHIFT);
  485. if (ret < 0)
  486. return ret;
  487. }
  488. if (smb->soft_cold_temp_limit != SMB3XX_TEMP_USE_DEFAULT) {
  489. val = smb->soft_cold_temp_limit;
  490. val = clamp_val(val, 0, 15);
  491. val /= 5;
  492. /* this goes from higher to lower so invert the value */
  493. val = ~val & 0x3;
  494. ret = regmap_update_bits(smb->regmap, CFG_TEMP_LIMIT,
  495. CFG_TEMP_LIMIT_SOFT_COLD_MASK,
  496. val << CFG_TEMP_LIMIT_SOFT_COLD_SHIFT);
  497. if (ret < 0)
  498. return ret;
  499. enable_therm_monitor = true;
  500. }
  501. if (smb->soft_hot_temp_limit != SMB3XX_TEMP_USE_DEFAULT) {
  502. val = smb->soft_hot_temp_limit;
  503. val = clamp_val(val, 40, 55) - 40;
  504. val /= 5;
  505. ret = regmap_update_bits(smb->regmap, CFG_TEMP_LIMIT,
  506. CFG_TEMP_LIMIT_SOFT_HOT_MASK,
  507. val << CFG_TEMP_LIMIT_SOFT_HOT_SHIFT);
  508. if (ret < 0)
  509. return ret;
  510. enable_therm_monitor = true;
  511. }
  512. if (smb->hard_cold_temp_limit != SMB3XX_TEMP_USE_DEFAULT) {
  513. val = smb->hard_cold_temp_limit;
  514. val = clamp_val(val, -5, 10) + 5;
  515. val /= 5;
  516. /* this goes from higher to lower so invert the value */
  517. val = ~val & 0x3;
  518. ret = regmap_update_bits(smb->regmap, CFG_TEMP_LIMIT,
  519. CFG_TEMP_LIMIT_HARD_COLD_MASK,
  520. val << CFG_TEMP_LIMIT_HARD_COLD_SHIFT);
  521. if (ret < 0)
  522. return ret;
  523. enable_therm_monitor = true;
  524. }
  525. if (smb->hard_hot_temp_limit != SMB3XX_TEMP_USE_DEFAULT) {
  526. val = smb->hard_hot_temp_limit;
  527. val = clamp_val(val, 50, 65) - 50;
  528. val /= 5;
  529. ret = regmap_update_bits(smb->regmap, CFG_TEMP_LIMIT,
  530. CFG_TEMP_LIMIT_HARD_HOT_MASK,
  531. val << CFG_TEMP_LIMIT_HARD_HOT_SHIFT);
  532. if (ret < 0)
  533. return ret;
  534. enable_therm_monitor = true;
  535. }
  536. /*
  537. * If any of the temperature limits are set, we also enable the
  538. * thermistor monitoring.
  539. *
  540. * When soft limits are hit, the device will start to compensate
  541. * current and/or voltage depending on the configuration.
  542. *
  543. * When hard limit is hit, the device will suspend charging
  544. * depending on the configuration.
  545. */
  546. if (enable_therm_monitor) {
  547. ret = regmap_update_bits(smb->regmap, CFG_THERM,
  548. CFG_THERM_MONITOR_DISABLED, 0);
  549. if (ret < 0)
  550. return ret;
  551. }
  552. if (smb->suspend_on_hard_temp_limit) {
  553. ret = regmap_update_bits(smb->regmap, CFG_SYSOK,
  554. CFG_SYSOK_SUSPEND_HARD_LIMIT_DISABLED, 0);
  555. if (ret < 0)
  556. return ret;
  557. }
  558. if (smb->soft_temp_limit_compensation !=
  559. SMB3XX_SOFT_TEMP_COMPENSATE_DEFAULT) {
  560. val = smb->soft_temp_limit_compensation & 0x3;
  561. ret = regmap_update_bits(smb->regmap, CFG_THERM,
  562. CFG_THERM_SOFT_HOT_COMPENSATION_MASK,
  563. val << CFG_THERM_SOFT_HOT_COMPENSATION_SHIFT);
  564. if (ret < 0)
  565. return ret;
  566. ret = regmap_update_bits(smb->regmap, CFG_THERM,
  567. CFG_THERM_SOFT_COLD_COMPENSATION_MASK,
  568. val << CFG_THERM_SOFT_COLD_COMPENSATION_SHIFT);
  569. if (ret < 0)
  570. return ret;
  571. }
  572. if (smb->charge_current_compensation) {
  573. val = current_to_hw(ccc_tbl[id], ARRAY_SIZE(ccc_tbl[id]),
  574. smb->charge_current_compensation);
  575. if (val < 0)
  576. return val;
  577. ret = regmap_update_bits(smb->regmap, CFG_OTG,
  578. CFG_OTG_CC_COMPENSATION_MASK,
  579. (val & 0x3) << CFG_OTG_CC_COMPENSATION_SHIFT);
  580. if (ret < 0)
  581. return ret;
  582. }
  583. return ret;
  584. }
  585. /*
  586. * smb347_set_writable - enables/disables writing to non-volatile registers
  587. * @smb: pointer to smb347 charger instance
  588. *
  589. * You can enable/disable writing to the non-volatile configuration
  590. * registers by calling this function.
  591. *
  592. * Returns %0 on success and negative errno in case of failure.
  593. */
  594. static int smb347_set_writable(struct smb347_charger *smb, bool writable,
  595. bool irq_toggle)
  596. {
  597. struct i2c_client *client = to_i2c_client(smb->dev);
  598. int ret;
  599. if (writable && irq_toggle && !smb->irq_unsupported)
  600. disable_irq(client->irq);
  601. ret = regmap_update_bits(smb->regmap, CMD_A, CMD_A_ALLOW_WRITE,
  602. writable ? CMD_A_ALLOW_WRITE : 0);
  603. if ((!writable || ret) && irq_toggle && !smb->irq_unsupported)
  604. enable_irq(client->irq);
  605. return ret;
  606. }
  607. static int smb347_hw_init(struct smb347_charger *smb)
  608. {
  609. unsigned int val;
  610. int ret;
  611. ret = smb347_set_writable(smb, true, false);
  612. if (ret < 0)
  613. return ret;
  614. /*
  615. * Program the platform specific configuration values to the device
  616. * first.
  617. */
  618. ret = smb347_set_charge_current(smb);
  619. if (ret < 0)
  620. goto fail;
  621. ret = smb347_set_current_limits(smb);
  622. if (ret < 0)
  623. goto fail;
  624. ret = smb347_set_voltage_limits(smb);
  625. if (ret < 0)
  626. goto fail;
  627. ret = smb347_set_temp_limits(smb);
  628. if (ret < 0)
  629. goto fail;
  630. /* If USB charging is disabled we put the USB in suspend mode */
  631. if (!smb->use_usb) {
  632. ret = regmap_update_bits(smb->regmap, CMD_A,
  633. CMD_A_SUSPEND_ENABLED,
  634. CMD_A_SUSPEND_ENABLED);
  635. if (ret < 0)
  636. goto fail;
  637. }
  638. /*
  639. * If configured by platform data, we enable hardware Auto-OTG
  640. * support for driving VBUS. Otherwise we disable it.
  641. */
  642. ret = regmap_update_bits(smb->regmap, CFG_OTHER, CFG_OTHER_RID_MASK,
  643. smb->use_usb_otg ? CFG_OTHER_RID_ENABLED_AUTO_OTG : 0);
  644. if (ret < 0)
  645. goto fail;
  646. /* Activate pin control, making it writable. */
  647. switch (smb->enable_control) {
  648. case SMB3XX_CHG_ENABLE_PIN_ACTIVE_LOW:
  649. case SMB3XX_CHG_ENABLE_PIN_ACTIVE_HIGH:
  650. ret = regmap_set_bits(smb->regmap, CFG_PIN, CFG_PIN_EN_CTRL);
  651. if (ret < 0)
  652. goto fail;
  653. }
  654. /*
  655. * Make the charging functionality controllable by a write to the
  656. * command register unless pin control is specified in the platform
  657. * data.
  658. */
  659. switch (smb->enable_control) {
  660. case SMB3XX_CHG_ENABLE_PIN_ACTIVE_LOW:
  661. val = CFG_PIN_EN_CTRL_ACTIVE_LOW;
  662. break;
  663. case SMB3XX_CHG_ENABLE_PIN_ACTIVE_HIGH:
  664. val = CFG_PIN_EN_CTRL_ACTIVE_HIGH;
  665. break;
  666. default:
  667. val = 0;
  668. break;
  669. }
  670. ret = regmap_update_bits(smb->regmap, CFG_PIN, CFG_PIN_EN_CTRL_MASK,
  671. val);
  672. if (ret < 0)
  673. goto fail;
  674. /* Disable Automatic Power Source Detection (APSD) interrupt. */
  675. ret = regmap_update_bits(smb->regmap, CFG_PIN, CFG_PIN_EN_APSD_IRQ, 0);
  676. if (ret < 0)
  677. goto fail;
  678. ret = smb347_update_ps_status(smb);
  679. if (ret < 0)
  680. goto fail;
  681. ret = smb347_start_stop_charging(smb);
  682. fail:
  683. smb347_set_writable(smb, false, false);
  684. return ret;
  685. }
  686. static irqreturn_t smb347_interrupt(int irq, void *data)
  687. {
  688. struct smb347_charger *smb = data;
  689. unsigned int stat_c, irqstat_c, irqstat_d, irqstat_e;
  690. bool handled = false;
  691. int ret;
  692. /* SMB347 it needs at least 20ms for setting IRQSTAT_E_*IN_UV_IRQ */
  693. usleep_range(25000, 35000);
  694. ret = regmap_read(smb->regmap, STAT_C, &stat_c);
  695. if (ret < 0) {
  696. dev_warn(smb->dev, "reading STAT_C failed\n");
  697. return IRQ_NONE;
  698. }
  699. ret = regmap_read(smb->regmap, IRQSTAT_C, &irqstat_c);
  700. if (ret < 0) {
  701. dev_warn(smb->dev, "reading IRQSTAT_C failed\n");
  702. return IRQ_NONE;
  703. }
  704. ret = regmap_read(smb->regmap, IRQSTAT_D, &irqstat_d);
  705. if (ret < 0) {
  706. dev_warn(smb->dev, "reading IRQSTAT_D failed\n");
  707. return IRQ_NONE;
  708. }
  709. ret = regmap_read(smb->regmap, IRQSTAT_E, &irqstat_e);
  710. if (ret < 0) {
  711. dev_warn(smb->dev, "reading IRQSTAT_E failed\n");
  712. return IRQ_NONE;
  713. }
  714. /*
  715. * If we get charger error we report the error back to user.
  716. * If the error is recovered charging will resume again.
  717. */
  718. if (stat_c & STAT_C_CHARGER_ERROR) {
  719. dev_err(smb->dev, "charging stopped due to charger error\n");
  720. if (smb->use_mains)
  721. power_supply_changed(smb->mains);
  722. if (smb->use_usb)
  723. power_supply_changed(smb->usb);
  724. handled = true;
  725. }
  726. /*
  727. * If we reached the termination current the battery is charged and
  728. * we can update the status now. Charging is automatically
  729. * disabled by the hardware.
  730. */
  731. if (irqstat_c & (IRQSTAT_C_TERMINATION_IRQ | IRQSTAT_C_TAPER_IRQ)) {
  732. if (irqstat_c & IRQSTAT_C_TERMINATION_STAT) {
  733. if (smb->use_mains)
  734. power_supply_changed(smb->mains);
  735. if (smb->use_usb)
  736. power_supply_changed(smb->usb);
  737. }
  738. dev_dbg(smb->dev, "going to HW maintenance mode\n");
  739. handled = true;
  740. }
  741. /*
  742. * If we got a charger timeout INT that means the charge
  743. * full is not detected with in charge timeout value.
  744. */
  745. if (irqstat_d & IRQSTAT_D_CHARGE_TIMEOUT_IRQ) {
  746. dev_dbg(smb->dev, "total Charge Timeout INT received\n");
  747. if (irqstat_d & IRQSTAT_D_CHARGE_TIMEOUT_STAT)
  748. dev_warn(smb->dev, "charging stopped due to timeout\n");
  749. if (smb->use_mains)
  750. power_supply_changed(smb->mains);
  751. if (smb->use_usb)
  752. power_supply_changed(smb->usb);
  753. handled = true;
  754. }
  755. /*
  756. * If we got an under voltage interrupt it means that AC/USB input
  757. * was connected or disconnected.
  758. */
  759. if (irqstat_e & (IRQSTAT_E_USBIN_UV_IRQ | IRQSTAT_E_DCIN_UV_IRQ)) {
  760. if (smb347_update_ps_status(smb) > 0) {
  761. smb347_start_stop_charging(smb);
  762. if (smb->use_mains)
  763. power_supply_changed(smb->mains);
  764. if (smb->use_usb)
  765. power_supply_changed(smb->usb);
  766. }
  767. handled = true;
  768. }
  769. return handled ? IRQ_HANDLED : IRQ_NONE;
  770. }
  771. static int smb347_irq_set(struct smb347_charger *smb, bool enable)
  772. {
  773. int ret;
  774. if (smb->irq_unsupported)
  775. return 0;
  776. ret = smb347_set_writable(smb, true, true);
  777. if (ret < 0)
  778. return ret;
  779. /*
  780. * Enable/disable interrupts for:
  781. * - under voltage
  782. * - termination current reached
  783. * - charger timeout
  784. * - charger error
  785. */
  786. ret = regmap_update_bits(smb->regmap, CFG_FAULT_IRQ, 0xff,
  787. enable ? CFG_FAULT_IRQ_DCIN_UV : 0);
  788. if (ret < 0)
  789. goto fail;
  790. ret = regmap_update_bits(smb->regmap, CFG_STATUS_IRQ, 0xff,
  791. enable ? (CFG_STATUS_IRQ_TERMINATION_OR_TAPER |
  792. CFG_STATUS_IRQ_CHARGE_TIMEOUT) : 0);
  793. if (ret < 0)
  794. goto fail;
  795. ret = regmap_update_bits(smb->regmap, CFG_PIN, CFG_PIN_EN_CHARGER_ERROR,
  796. enable ? CFG_PIN_EN_CHARGER_ERROR : 0);
  797. fail:
  798. smb347_set_writable(smb, false, true);
  799. return ret;
  800. }
  801. static inline int smb347_irq_enable(struct smb347_charger *smb)
  802. {
  803. return smb347_irq_set(smb, true);
  804. }
  805. static inline int smb347_irq_disable(struct smb347_charger *smb)
  806. {
  807. return smb347_irq_set(smb, false);
  808. }
  809. static int smb347_irq_init(struct smb347_charger *smb,
  810. struct i2c_client *client)
  811. {
  812. int ret;
  813. smb->irq_unsupported = true;
  814. /*
  815. * Interrupt pin is optional. If it is connected, we setup the
  816. * interrupt support here.
  817. */
  818. if (!client->irq)
  819. return 0;
  820. ret = smb347_set_writable(smb, true, false);
  821. if (ret < 0)
  822. return ret;
  823. /*
  824. * Configure the STAT output to be suitable for interrupts: disable
  825. * all other output (except interrupts) and make it active low.
  826. */
  827. ret = regmap_update_bits(smb->regmap, CFG_STAT,
  828. CFG_STAT_ACTIVE_HIGH | CFG_STAT_DISABLED,
  829. CFG_STAT_DISABLED);
  830. smb347_set_writable(smb, false, false);
  831. if (ret < 0) {
  832. dev_warn(smb->dev, "failed to initialize IRQ: %d\n", ret);
  833. dev_warn(smb->dev, "disabling IRQ support\n");
  834. return 0;
  835. }
  836. ret = devm_request_threaded_irq(smb->dev, client->irq, NULL,
  837. smb347_interrupt, IRQF_ONESHOT,
  838. client->name, smb);
  839. if (ret)
  840. return ret;
  841. smb->irq_unsupported = false;
  842. ret = smb347_irq_enable(smb);
  843. if (ret < 0)
  844. return ret;
  845. return 0;
  846. }
  847. /*
  848. * Returns the constant charge current programmed
  849. * into the charger in uA.
  850. */
  851. static int get_const_charge_current(struct smb347_charger *smb)
  852. {
  853. unsigned int id = smb->id;
  854. int ret, intval;
  855. unsigned int v;
  856. if (!smb347_is_ps_online(smb))
  857. return -ENODATA;
  858. ret = regmap_read(smb->regmap, STAT_B, &v);
  859. if (ret < 0)
  860. return ret;
  861. /*
  862. * The current value is composition of FCC and PCC values
  863. * and we can detect which table to use from bit 5.
  864. */
  865. if (v & 0x20) {
  866. intval = hw_to_current(fcc_tbl[id],
  867. ARRAY_SIZE(fcc_tbl[id]), v & 7);
  868. } else {
  869. v >>= 3;
  870. intval = hw_to_current(pcc_tbl[id],
  871. ARRAY_SIZE(pcc_tbl[id]), v & 7);
  872. }
  873. return intval;
  874. }
  875. /*
  876. * Returns the constant charge voltage programmed
  877. * into the charger in uV.
  878. */
  879. static int get_const_charge_voltage(struct smb347_charger *smb)
  880. {
  881. int ret, intval;
  882. unsigned int v;
  883. if (!smb347_is_ps_online(smb))
  884. return -ENODATA;
  885. ret = regmap_read(smb->regmap, STAT_A, &v);
  886. if (ret < 0)
  887. return ret;
  888. v &= STAT_A_FLOAT_VOLTAGE_MASK;
  889. if (v > 0x3d)
  890. v = 0x3d;
  891. intval = 3500000 + v * 20000;
  892. return intval;
  893. }
  894. static int smb347_get_charging_status(struct smb347_charger *smb,
  895. struct power_supply *psy)
  896. {
  897. int ret, status;
  898. unsigned int val;
  899. if (psy->desc->type == POWER_SUPPLY_TYPE_USB) {
  900. if (!smb->usb_online)
  901. return POWER_SUPPLY_STATUS_DISCHARGING;
  902. } else {
  903. if (!smb->mains_online)
  904. return POWER_SUPPLY_STATUS_DISCHARGING;
  905. }
  906. ret = regmap_read(smb->regmap, STAT_C, &val);
  907. if (ret < 0)
  908. return ret;
  909. if ((val & STAT_C_CHARGER_ERROR) ||
  910. (val & STAT_C_HOLDOFF_STAT)) {
  911. /*
  912. * set to NOT CHARGING upon charger error
  913. * or charging has stopped.
  914. */
  915. status = POWER_SUPPLY_STATUS_NOT_CHARGING;
  916. } else {
  917. if ((val & STAT_C_CHG_MASK) >> STAT_C_CHG_SHIFT) {
  918. /*
  919. * set to charging if battery is in pre-charge,
  920. * fast charge or taper charging mode.
  921. */
  922. status = POWER_SUPPLY_STATUS_CHARGING;
  923. } else if (val & STAT_C_CHG_TERM) {
  924. /*
  925. * set the status to FULL if battery is not in pre
  926. * charge, fast charge or taper charging mode AND
  927. * charging is terminated at least once.
  928. */
  929. status = POWER_SUPPLY_STATUS_FULL;
  930. } else {
  931. /*
  932. * in this case no charger error or termination
  933. * occured but charging is not in progress!!!
  934. */
  935. status = POWER_SUPPLY_STATUS_NOT_CHARGING;
  936. }
  937. }
  938. return status;
  939. }
  940. static int smb347_get_property_locked(struct power_supply *psy,
  941. enum power_supply_property prop,
  942. union power_supply_propval *val)
  943. {
  944. struct smb347_charger *smb = power_supply_get_drvdata(psy);
  945. int ret;
  946. switch (prop) {
  947. case POWER_SUPPLY_PROP_STATUS:
  948. ret = smb347_get_charging_status(smb, psy);
  949. if (ret < 0)
  950. return ret;
  951. val->intval = ret;
  952. break;
  953. case POWER_SUPPLY_PROP_CHARGE_TYPE:
  954. if (psy->desc->type == POWER_SUPPLY_TYPE_USB) {
  955. if (!smb->usb_online)
  956. return -ENODATA;
  957. } else {
  958. if (!smb->mains_online)
  959. return -ENODATA;
  960. }
  961. /*
  962. * We handle trickle and pre-charging the same, and taper
  963. * and none the same.
  964. */
  965. switch (smb347_charging_status(smb)) {
  966. case 1:
  967. val->intval = POWER_SUPPLY_CHARGE_TYPE_TRICKLE;
  968. break;
  969. case 2:
  970. val->intval = POWER_SUPPLY_CHARGE_TYPE_FAST;
  971. break;
  972. default:
  973. val->intval = POWER_SUPPLY_CHARGE_TYPE_NONE;
  974. break;
  975. }
  976. break;
  977. case POWER_SUPPLY_PROP_ONLINE:
  978. if (psy->desc->type == POWER_SUPPLY_TYPE_USB)
  979. val->intval = smb->usb_online;
  980. else
  981. val->intval = smb->mains_online;
  982. break;
  983. case POWER_SUPPLY_PROP_CONSTANT_CHARGE_VOLTAGE:
  984. ret = get_const_charge_voltage(smb);
  985. if (ret < 0)
  986. return ret;
  987. val->intval = ret;
  988. break;
  989. case POWER_SUPPLY_PROP_CONSTANT_CHARGE_CURRENT:
  990. ret = get_const_charge_current(smb);
  991. if (ret < 0)
  992. return ret;
  993. val->intval = ret;
  994. break;
  995. default:
  996. return -EINVAL;
  997. }
  998. return 0;
  999. }
  1000. static int smb347_get_property(struct power_supply *psy,
  1001. enum power_supply_property prop,
  1002. union power_supply_propval *val)
  1003. {
  1004. struct smb347_charger *smb = power_supply_get_drvdata(psy);
  1005. struct i2c_client *client = to_i2c_client(smb->dev);
  1006. int ret;
  1007. if (!smb->irq_unsupported)
  1008. disable_irq(client->irq);
  1009. ret = smb347_get_property_locked(psy, prop, val);
  1010. if (!smb->irq_unsupported)
  1011. enable_irq(client->irq);
  1012. return ret;
  1013. }
  1014. static enum power_supply_property smb347_properties[] = {
  1015. POWER_SUPPLY_PROP_STATUS,
  1016. POWER_SUPPLY_PROP_CHARGE_TYPE,
  1017. POWER_SUPPLY_PROP_ONLINE,
  1018. POWER_SUPPLY_PROP_CONSTANT_CHARGE_CURRENT,
  1019. POWER_SUPPLY_PROP_CONSTANT_CHARGE_VOLTAGE,
  1020. };
  1021. static bool smb347_volatile_reg(struct device *dev, unsigned int reg)
  1022. {
  1023. switch (reg) {
  1024. case IRQSTAT_A:
  1025. case IRQSTAT_C:
  1026. case IRQSTAT_D:
  1027. case IRQSTAT_E:
  1028. case IRQSTAT_F:
  1029. case STAT_A:
  1030. case STAT_B:
  1031. case STAT_C:
  1032. case STAT_E:
  1033. return true;
  1034. }
  1035. return false;
  1036. }
  1037. static bool smb347_readable_reg(struct device *dev, unsigned int reg)
  1038. {
  1039. switch (reg) {
  1040. case CFG_CHARGE_CURRENT:
  1041. case CFG_CURRENT_LIMIT:
  1042. case CFG_FLOAT_VOLTAGE:
  1043. case CFG_STAT:
  1044. case CFG_PIN:
  1045. case CFG_THERM:
  1046. case CFG_SYSOK:
  1047. case CFG_OTHER:
  1048. case CFG_OTG:
  1049. case CFG_TEMP_LIMIT:
  1050. case CFG_FAULT_IRQ:
  1051. case CFG_STATUS_IRQ:
  1052. case CFG_ADDRESS:
  1053. case CMD_A:
  1054. case CMD_B:
  1055. case CMD_C:
  1056. return true;
  1057. }
  1058. return smb347_volatile_reg(dev, reg);
  1059. }
  1060. static void smb347_dt_parse_dev_info(struct smb347_charger *smb)
  1061. {
  1062. struct device *dev = smb->dev;
  1063. smb->soft_temp_limit_compensation =
  1064. SMB3XX_SOFT_TEMP_COMPENSATE_DEFAULT;
  1065. /*
  1066. * These properties come from the battery info, still we need to
  1067. * pre-initialize the values. See smb347_get_battery_info() below.
  1068. */
  1069. smb->soft_cold_temp_limit = SMB3XX_TEMP_USE_DEFAULT;
  1070. smb->hard_cold_temp_limit = SMB3XX_TEMP_USE_DEFAULT;
  1071. smb->soft_hot_temp_limit = SMB3XX_TEMP_USE_DEFAULT;
  1072. smb->hard_hot_temp_limit = SMB3XX_TEMP_USE_DEFAULT;
  1073. /* Charging constraints */
  1074. device_property_read_u32(dev, "summit,fast-voltage-threshold-microvolt",
  1075. &smb->pre_to_fast_voltage);
  1076. device_property_read_u32(dev, "summit,mains-current-limit-microamp",
  1077. &smb->mains_current_limit);
  1078. device_property_read_u32(dev, "summit,usb-current-limit-microamp",
  1079. &smb->usb_hc_current_limit);
  1080. /* For thermometer monitoring */
  1081. device_property_read_u32(dev, "summit,chip-temperature-threshold-celsius",
  1082. &smb->chip_temp_threshold);
  1083. device_property_read_u32(dev, "summit,soft-compensation-method",
  1084. &smb->soft_temp_limit_compensation);
  1085. device_property_read_u32(dev, "summit,charge-current-compensation-microamp",
  1086. &smb->charge_current_compensation);
  1087. /* Supported charging mode */
  1088. smb->use_mains = device_property_read_bool(dev, "summit,enable-mains-charging");
  1089. smb->use_usb = device_property_read_bool(dev, "summit,enable-usb-charging");
  1090. smb->use_usb_otg = device_property_read_bool(dev, "summit,enable-otg-charging");
  1091. /* Select charging control */
  1092. device_property_read_u32(dev, "summit,enable-charge-control",
  1093. &smb->enable_control);
  1094. /*
  1095. * Polarity of INOK signal indicating presence of external power
  1096. * supply connected to the charger.
  1097. */
  1098. device_property_read_u32(dev, "summit,inok-polarity",
  1099. &smb->inok_polarity);
  1100. }
  1101. static int smb347_get_battery_info(struct smb347_charger *smb)
  1102. {
  1103. struct power_supply_battery_info *info;
  1104. struct power_supply *supply;
  1105. int err;
  1106. if (smb->mains)
  1107. supply = smb->mains;
  1108. else
  1109. supply = smb->usb;
  1110. err = power_supply_get_battery_info(supply, &info);
  1111. if (err == -ENXIO || err == -ENODEV)
  1112. return 0;
  1113. if (err)
  1114. return err;
  1115. if (info->constant_charge_current_max_ua != -EINVAL)
  1116. smb->max_charge_current = info->constant_charge_current_max_ua;
  1117. if (info->constant_charge_voltage_max_uv != -EINVAL)
  1118. smb->max_charge_voltage = info->constant_charge_voltage_max_uv;
  1119. if (info->precharge_current_ua != -EINVAL)
  1120. smb->pre_charge_current = info->precharge_current_ua;
  1121. if (info->charge_term_current_ua != -EINVAL)
  1122. smb->termination_current = info->charge_term_current_ua;
  1123. if (info->temp_alert_min != INT_MIN)
  1124. smb->soft_cold_temp_limit = info->temp_alert_min;
  1125. if (info->temp_alert_max != INT_MAX)
  1126. smb->soft_hot_temp_limit = info->temp_alert_max;
  1127. if (info->temp_min != INT_MIN)
  1128. smb->hard_cold_temp_limit = info->temp_min;
  1129. if (info->temp_max != INT_MAX)
  1130. smb->hard_hot_temp_limit = info->temp_max;
  1131. /* Suspend when battery temperature is outside hard limits */
  1132. if (smb->hard_cold_temp_limit != SMB3XX_TEMP_USE_DEFAULT ||
  1133. smb->hard_hot_temp_limit != SMB3XX_TEMP_USE_DEFAULT)
  1134. smb->suspend_on_hard_temp_limit = true;
  1135. return 0;
  1136. }
  1137. static int smb347_usb_vbus_get_current_limit(struct regulator_dev *rdev)
  1138. {
  1139. struct smb347_charger *smb = rdev_get_drvdata(rdev);
  1140. unsigned int val;
  1141. int ret;
  1142. ret = regmap_read(smb->regmap, CFG_OTG, &val);
  1143. if (ret < 0)
  1144. return ret;
  1145. /*
  1146. * It's unknown what happens if this bit is unset due to lack of
  1147. * access to the datasheet, assume it's limit-enable.
  1148. */
  1149. if (!(val & CFG_OTG_CURRENT_LIMIT_250mA))
  1150. return 0;
  1151. return val & CFG_OTG_CURRENT_LIMIT_750mA ? 750000 : 250000;
  1152. }
  1153. static int smb347_usb_vbus_set_new_current_limit(struct smb347_charger *smb,
  1154. int max_uA)
  1155. {
  1156. const unsigned int mask = CFG_OTG_CURRENT_LIMIT_750mA |
  1157. CFG_OTG_CURRENT_LIMIT_250mA;
  1158. unsigned int val = CFG_OTG_CURRENT_LIMIT_250mA;
  1159. int ret;
  1160. if (max_uA >= 750000)
  1161. val |= CFG_OTG_CURRENT_LIMIT_750mA;
  1162. ret = regmap_update_bits(smb->regmap, CFG_OTG, mask, val);
  1163. if (ret < 0)
  1164. dev_err(smb->dev, "failed to change USB current limit\n");
  1165. return ret;
  1166. }
  1167. static int smb347_usb_vbus_set_current_limit(struct regulator_dev *rdev,
  1168. int min_uA, int max_uA)
  1169. {
  1170. struct smb347_charger *smb = rdev_get_drvdata(rdev);
  1171. int ret;
  1172. ret = smb347_set_writable(smb, true, true);
  1173. if (ret < 0)
  1174. return ret;
  1175. ret = smb347_usb_vbus_set_new_current_limit(smb, max_uA);
  1176. smb347_set_writable(smb, false, true);
  1177. return ret;
  1178. }
  1179. static int smb347_usb_vbus_regulator_enable(struct regulator_dev *rdev)
  1180. {
  1181. struct smb347_charger *smb = rdev_get_drvdata(rdev);
  1182. int ret, max_uA;
  1183. ret = smb347_set_writable(smb, true, true);
  1184. if (ret < 0)
  1185. return ret;
  1186. smb347_charging_disable(smb);
  1187. if (device_property_read_bool(&rdev->dev, "summit,needs-inok-toggle")) {
  1188. unsigned int sysok = 0;
  1189. if (smb->inok_polarity == SMB3XX_SYSOK_INOK_ACTIVE_LOW)
  1190. sysok = CFG_SYSOK_INOK_ACTIVE_HIGH;
  1191. /*
  1192. * VBUS won't be powered if INOK is active, so we need to
  1193. * manually disable INOK on some platforms.
  1194. */
  1195. ret = regmap_update_bits(smb->regmap, CFG_SYSOK,
  1196. CFG_SYSOK_INOK_ACTIVE_HIGH, sysok);
  1197. if (ret < 0) {
  1198. dev_err(smb->dev, "failed to disable INOK\n");
  1199. goto done;
  1200. }
  1201. }
  1202. ret = smb347_usb_vbus_get_current_limit(rdev);
  1203. if (ret < 0) {
  1204. dev_err(smb->dev, "failed to get USB VBUS current limit\n");
  1205. goto done;
  1206. }
  1207. max_uA = ret;
  1208. ret = smb347_usb_vbus_set_new_current_limit(smb, 250000);
  1209. if (ret < 0) {
  1210. dev_err(smb->dev, "failed to preset USB VBUS current limit\n");
  1211. goto done;
  1212. }
  1213. ret = regmap_set_bits(smb->regmap, CMD_A, CMD_A_OTG_ENABLED);
  1214. if (ret < 0) {
  1215. dev_err(smb->dev, "failed to enable USB VBUS\n");
  1216. goto done;
  1217. }
  1218. smb->usb_vbus_enabled = true;
  1219. ret = smb347_usb_vbus_set_new_current_limit(smb, max_uA);
  1220. if (ret < 0) {
  1221. dev_err(smb->dev, "failed to restore USB VBUS current limit\n");
  1222. goto done;
  1223. }
  1224. done:
  1225. smb347_set_writable(smb, false, true);
  1226. return ret;
  1227. }
  1228. static int smb347_usb_vbus_regulator_disable(struct regulator_dev *rdev)
  1229. {
  1230. struct smb347_charger *smb = rdev_get_drvdata(rdev);
  1231. int ret;
  1232. ret = smb347_set_writable(smb, true, true);
  1233. if (ret < 0)
  1234. return ret;
  1235. ret = regmap_clear_bits(smb->regmap, CMD_A, CMD_A_OTG_ENABLED);
  1236. if (ret < 0) {
  1237. dev_err(smb->dev, "failed to disable USB VBUS\n");
  1238. goto done;
  1239. }
  1240. smb->usb_vbus_enabled = false;
  1241. if (device_property_read_bool(&rdev->dev, "summit,needs-inok-toggle")) {
  1242. unsigned int sysok = 0;
  1243. if (smb->inok_polarity == SMB3XX_SYSOK_INOK_ACTIVE_HIGH)
  1244. sysok = CFG_SYSOK_INOK_ACTIVE_HIGH;
  1245. ret = regmap_update_bits(smb->regmap, CFG_SYSOK,
  1246. CFG_SYSOK_INOK_ACTIVE_HIGH, sysok);
  1247. if (ret < 0) {
  1248. dev_err(smb->dev, "failed to enable INOK\n");
  1249. goto done;
  1250. }
  1251. }
  1252. smb347_start_stop_charging(smb);
  1253. done:
  1254. smb347_set_writable(smb, false, true);
  1255. return ret;
  1256. }
  1257. static const struct regmap_config smb347_regmap = {
  1258. .reg_bits = 8,
  1259. .val_bits = 8,
  1260. .max_register = SMB347_MAX_REGISTER,
  1261. .volatile_reg = smb347_volatile_reg,
  1262. .readable_reg = smb347_readable_reg,
  1263. .cache_type = REGCACHE_RBTREE,
  1264. };
  1265. static const struct regulator_ops smb347_usb_vbus_regulator_ops = {
  1266. .is_enabled = regulator_is_enabled_regmap,
  1267. .enable = smb347_usb_vbus_regulator_enable,
  1268. .disable = smb347_usb_vbus_regulator_disable,
  1269. .get_current_limit = smb347_usb_vbus_get_current_limit,
  1270. .set_current_limit = smb347_usb_vbus_set_current_limit,
  1271. };
  1272. static const struct power_supply_desc smb347_mains_desc = {
  1273. .name = "smb347-mains",
  1274. .type = POWER_SUPPLY_TYPE_MAINS,
  1275. .get_property = smb347_get_property,
  1276. .properties = smb347_properties,
  1277. .num_properties = ARRAY_SIZE(smb347_properties),
  1278. };
  1279. static const struct power_supply_desc smb347_usb_desc = {
  1280. .name = "smb347-usb",
  1281. .type = POWER_SUPPLY_TYPE_USB,
  1282. .get_property = smb347_get_property,
  1283. .properties = smb347_properties,
  1284. .num_properties = ARRAY_SIZE(smb347_properties),
  1285. };
  1286. static const struct regulator_desc smb347_usb_vbus_regulator_desc = {
  1287. .name = "smb347-usb-vbus",
  1288. .of_match = of_match_ptr("usb-vbus"),
  1289. .ops = &smb347_usb_vbus_regulator_ops,
  1290. .type = REGULATOR_VOLTAGE,
  1291. .owner = THIS_MODULE,
  1292. .enable_reg = CMD_A,
  1293. .enable_mask = CMD_A_OTG_ENABLED,
  1294. .enable_val = CMD_A_OTG_ENABLED,
  1295. .fixed_uV = 5000000,
  1296. .n_voltages = 1,
  1297. };
  1298. static int smb347_probe(struct i2c_client *client,
  1299. const struct i2c_device_id *id)
  1300. {
  1301. struct power_supply_config mains_usb_cfg = {};
  1302. struct regulator_config usb_rdev_cfg = {};
  1303. struct device *dev = &client->dev;
  1304. struct smb347_charger *smb;
  1305. int ret;
  1306. smb = devm_kzalloc(dev, sizeof(*smb), GFP_KERNEL);
  1307. if (!smb)
  1308. return -ENOMEM;
  1309. smb->dev = &client->dev;
  1310. smb->id = id->driver_data;
  1311. i2c_set_clientdata(client, smb);
  1312. smb347_dt_parse_dev_info(smb);
  1313. if (!smb->use_mains && !smb->use_usb)
  1314. return -EINVAL;
  1315. smb->regmap = devm_regmap_init_i2c(client, &smb347_regmap);
  1316. if (IS_ERR(smb->regmap))
  1317. return PTR_ERR(smb->regmap);
  1318. mains_usb_cfg.drv_data = smb;
  1319. mains_usb_cfg.of_node = dev->of_node;
  1320. if (smb->use_mains) {
  1321. smb->mains = devm_power_supply_register(dev, &smb347_mains_desc,
  1322. &mains_usb_cfg);
  1323. if (IS_ERR(smb->mains))
  1324. return PTR_ERR(smb->mains);
  1325. }
  1326. if (smb->use_usb) {
  1327. smb->usb = devm_power_supply_register(dev, &smb347_usb_desc,
  1328. &mains_usb_cfg);
  1329. if (IS_ERR(smb->usb))
  1330. return PTR_ERR(smb->usb);
  1331. }
  1332. ret = smb347_get_battery_info(smb);
  1333. if (ret)
  1334. return ret;
  1335. ret = smb347_hw_init(smb);
  1336. if (ret < 0)
  1337. return ret;
  1338. ret = smb347_irq_init(smb, client);
  1339. if (ret)
  1340. return ret;
  1341. usb_rdev_cfg.dev = dev;
  1342. usb_rdev_cfg.driver_data = smb;
  1343. usb_rdev_cfg.regmap = smb->regmap;
  1344. smb->usb_rdev = devm_regulator_register(dev,
  1345. &smb347_usb_vbus_regulator_desc,
  1346. &usb_rdev_cfg);
  1347. if (IS_ERR(smb->usb_rdev)) {
  1348. smb347_irq_disable(smb);
  1349. return PTR_ERR(smb->usb_rdev);
  1350. }
  1351. return 0;
  1352. }
  1353. static void smb347_remove(struct i2c_client *client)
  1354. {
  1355. struct smb347_charger *smb = i2c_get_clientdata(client);
  1356. smb347_usb_vbus_regulator_disable(smb->usb_rdev);
  1357. smb347_irq_disable(smb);
  1358. }
  1359. static void smb347_shutdown(struct i2c_client *client)
  1360. {
  1361. smb347_remove(client);
  1362. }
  1363. static const struct i2c_device_id smb347_id[] = {
  1364. { "smb345", SMB345 },
  1365. { "smb347", SMB347 },
  1366. { "smb358", SMB358 },
  1367. { },
  1368. };
  1369. MODULE_DEVICE_TABLE(i2c, smb347_id);
  1370. static const struct of_device_id smb3xx_of_match[] = {
  1371. { .compatible = "summit,smb345" },
  1372. { .compatible = "summit,smb347" },
  1373. { .compatible = "summit,smb358" },
  1374. { },
  1375. };
  1376. MODULE_DEVICE_TABLE(of, smb3xx_of_match);
  1377. static struct i2c_driver smb347_driver = {
  1378. .driver = {
  1379. .name = "smb347",
  1380. .of_match_table = smb3xx_of_match,
  1381. },
  1382. .probe = smb347_probe,
  1383. .remove = smb347_remove,
  1384. .shutdown = smb347_shutdown,
  1385. .id_table = smb347_id,
  1386. };
  1387. module_i2c_driver(smb347_driver);
  1388. MODULE_AUTHOR("Bruce E. Robertson <[email protected]>");
  1389. MODULE_AUTHOR("Mika Westerberg <[email protected]>");
  1390. MODULE_DESCRIPTION("SMB347 battery charger driver");
  1391. MODULE_LICENSE("GPL");