max17042_battery.c 33 KB

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  1. // SPDX-License-Identifier: GPL-2.0+
  2. //
  3. // Fuel gauge driver for Maxim 17042 / 8966 / 8997
  4. // Note that Maxim 8966 and 8997 are mfd and this is its subdevice.
  5. //
  6. // Copyright (C) 2011 Samsung Electronics
  7. // MyungJoo Ham <[email protected]>
  8. //
  9. // This driver is based on max17040_battery.c
  10. #include <linux/acpi.h>
  11. #include <linux/devm-helpers.h>
  12. #include <linux/init.h>
  13. #include <linux/module.h>
  14. #include <linux/slab.h>
  15. #include <linux/i2c.h>
  16. #include <linux/delay.h>
  17. #include <linux/interrupt.h>
  18. #include <linux/pm.h>
  19. #include <linux/mod_devicetable.h>
  20. #include <linux/power_supply.h>
  21. #include <linux/power/max17042_battery.h>
  22. #include <linux/of.h>
  23. #include <linux/regmap.h>
  24. /* Status register bits */
  25. #define STATUS_POR_BIT (1 << 1)
  26. #define STATUS_BST_BIT (1 << 3)
  27. #define STATUS_VMN_BIT (1 << 8)
  28. #define STATUS_TMN_BIT (1 << 9)
  29. #define STATUS_SMN_BIT (1 << 10)
  30. #define STATUS_BI_BIT (1 << 11)
  31. #define STATUS_VMX_BIT (1 << 12)
  32. #define STATUS_TMX_BIT (1 << 13)
  33. #define STATUS_SMX_BIT (1 << 14)
  34. #define STATUS_BR_BIT (1 << 15)
  35. /* Interrupt mask bits */
  36. #define CONFIG_ALRT_BIT_ENBL (1 << 2)
  37. #define VFSOC0_LOCK 0x0000
  38. #define VFSOC0_UNLOCK 0x0080
  39. #define MODEL_UNLOCK1 0X0059
  40. #define MODEL_UNLOCK2 0X00C4
  41. #define MODEL_LOCK1 0X0000
  42. #define MODEL_LOCK2 0X0000
  43. #define dQ_ACC_DIV 0x4
  44. #define dP_ACC_100 0x1900
  45. #define dP_ACC_200 0x3200
  46. #define MAX17042_VMAX_TOLERANCE 50 /* 50 mV */
  47. struct max17042_chip {
  48. struct i2c_client *client;
  49. struct regmap *regmap;
  50. struct power_supply *battery;
  51. enum max170xx_chip_type chip_type;
  52. struct max17042_platform_data *pdata;
  53. struct work_struct work;
  54. int init_complete;
  55. };
  56. static enum power_supply_property max17042_battery_props[] = {
  57. POWER_SUPPLY_PROP_STATUS,
  58. POWER_SUPPLY_PROP_PRESENT,
  59. POWER_SUPPLY_PROP_TECHNOLOGY,
  60. POWER_SUPPLY_PROP_CYCLE_COUNT,
  61. POWER_SUPPLY_PROP_VOLTAGE_MAX,
  62. POWER_SUPPLY_PROP_VOLTAGE_MIN,
  63. POWER_SUPPLY_PROP_VOLTAGE_MIN_DESIGN,
  64. POWER_SUPPLY_PROP_VOLTAGE_NOW,
  65. POWER_SUPPLY_PROP_VOLTAGE_AVG,
  66. POWER_SUPPLY_PROP_VOLTAGE_OCV,
  67. POWER_SUPPLY_PROP_CAPACITY,
  68. POWER_SUPPLY_PROP_CHARGE_FULL_DESIGN,
  69. POWER_SUPPLY_PROP_CHARGE_FULL,
  70. POWER_SUPPLY_PROP_CHARGE_NOW,
  71. POWER_SUPPLY_PROP_CHARGE_COUNTER,
  72. POWER_SUPPLY_PROP_CHARGE_TERM_CURRENT,
  73. POWER_SUPPLY_PROP_TEMP,
  74. POWER_SUPPLY_PROP_TEMP_ALERT_MIN,
  75. POWER_SUPPLY_PROP_TEMP_ALERT_MAX,
  76. POWER_SUPPLY_PROP_TEMP_MIN,
  77. POWER_SUPPLY_PROP_TEMP_MAX,
  78. POWER_SUPPLY_PROP_HEALTH,
  79. POWER_SUPPLY_PROP_SCOPE,
  80. POWER_SUPPLY_PROP_TIME_TO_EMPTY_NOW,
  81. // these two have to be at the end on the list
  82. POWER_SUPPLY_PROP_CURRENT_NOW,
  83. POWER_SUPPLY_PROP_CURRENT_AVG,
  84. };
  85. static int max17042_get_temperature(struct max17042_chip *chip, int *temp)
  86. {
  87. int ret;
  88. u32 data;
  89. struct regmap *map = chip->regmap;
  90. ret = regmap_read(map, MAX17042_TEMP, &data);
  91. if (ret < 0)
  92. return ret;
  93. *temp = sign_extend32(data, 15);
  94. /* The value is converted into deci-centigrade scale */
  95. /* Units of LSB = 1 / 256 degree Celsius */
  96. *temp = *temp * 10 / 256;
  97. return 0;
  98. }
  99. static int max17042_get_status(struct max17042_chip *chip, int *status)
  100. {
  101. int ret, charge_full, charge_now;
  102. int avg_current;
  103. u32 data;
  104. ret = power_supply_am_i_supplied(chip->battery);
  105. if (ret < 0) {
  106. *status = POWER_SUPPLY_STATUS_UNKNOWN;
  107. return 0;
  108. }
  109. if (ret == 0) {
  110. *status = POWER_SUPPLY_STATUS_DISCHARGING;
  111. return 0;
  112. }
  113. /*
  114. * The MAX170xx has builtin end-of-charge detection and will update
  115. * FullCAP to match RepCap when it detects end of charging.
  116. *
  117. * When this cycle the battery gets charged to a higher (calculated)
  118. * capacity then the previous cycle then FullCAP will get updated
  119. * continuously once end-of-charge detection kicks in, so allow the
  120. * 2 to differ a bit.
  121. */
  122. ret = regmap_read(chip->regmap, MAX17042_FullCAP, &charge_full);
  123. if (ret < 0)
  124. return ret;
  125. ret = regmap_read(chip->regmap, MAX17042_RepCap, &charge_now);
  126. if (ret < 0)
  127. return ret;
  128. if ((charge_full - charge_now) <= MAX17042_FULL_THRESHOLD) {
  129. *status = POWER_SUPPLY_STATUS_FULL;
  130. return 0;
  131. }
  132. /*
  133. * Even though we are supplied, we may still be discharging if the
  134. * supply is e.g. only delivering 5V 0.5A. Check current if available.
  135. */
  136. if (!chip->pdata->enable_current_sense) {
  137. *status = POWER_SUPPLY_STATUS_CHARGING;
  138. return 0;
  139. }
  140. ret = regmap_read(chip->regmap, MAX17042_AvgCurrent, &data);
  141. if (ret < 0)
  142. return ret;
  143. avg_current = sign_extend32(data, 15);
  144. avg_current *= 1562500 / chip->pdata->r_sns;
  145. if (avg_current > 0)
  146. *status = POWER_SUPPLY_STATUS_CHARGING;
  147. else
  148. *status = POWER_SUPPLY_STATUS_DISCHARGING;
  149. return 0;
  150. }
  151. static int max17042_get_battery_health(struct max17042_chip *chip, int *health)
  152. {
  153. int temp, vavg, vbatt, ret;
  154. u32 val;
  155. ret = regmap_read(chip->regmap, MAX17042_AvgVCELL, &val);
  156. if (ret < 0)
  157. goto health_error;
  158. /* bits [0-3] unused */
  159. vavg = val * 625 / 8;
  160. /* Convert to millivolts */
  161. vavg /= 1000;
  162. ret = regmap_read(chip->regmap, MAX17042_VCELL, &val);
  163. if (ret < 0)
  164. goto health_error;
  165. /* bits [0-3] unused */
  166. vbatt = val * 625 / 8;
  167. /* Convert to millivolts */
  168. vbatt /= 1000;
  169. if (vavg < chip->pdata->vmin) {
  170. *health = POWER_SUPPLY_HEALTH_DEAD;
  171. goto out;
  172. }
  173. if (vbatt > chip->pdata->vmax + MAX17042_VMAX_TOLERANCE) {
  174. *health = POWER_SUPPLY_HEALTH_OVERVOLTAGE;
  175. goto out;
  176. }
  177. ret = max17042_get_temperature(chip, &temp);
  178. if (ret < 0)
  179. goto health_error;
  180. if (temp < chip->pdata->temp_min) {
  181. *health = POWER_SUPPLY_HEALTH_COLD;
  182. goto out;
  183. }
  184. if (temp > chip->pdata->temp_max) {
  185. *health = POWER_SUPPLY_HEALTH_OVERHEAT;
  186. goto out;
  187. }
  188. *health = POWER_SUPPLY_HEALTH_GOOD;
  189. out:
  190. return 0;
  191. health_error:
  192. return ret;
  193. }
  194. static int max17042_get_property(struct power_supply *psy,
  195. enum power_supply_property psp,
  196. union power_supply_propval *val)
  197. {
  198. struct max17042_chip *chip = power_supply_get_drvdata(psy);
  199. struct regmap *map = chip->regmap;
  200. int ret;
  201. u32 data;
  202. u64 data64;
  203. if (!chip->init_complete)
  204. return -EAGAIN;
  205. switch (psp) {
  206. case POWER_SUPPLY_PROP_STATUS:
  207. ret = max17042_get_status(chip, &val->intval);
  208. if (ret < 0)
  209. return ret;
  210. break;
  211. case POWER_SUPPLY_PROP_PRESENT:
  212. ret = regmap_read(map, MAX17042_STATUS, &data);
  213. if (ret < 0)
  214. return ret;
  215. if (data & MAX17042_STATUS_BattAbsent)
  216. val->intval = 0;
  217. else
  218. val->intval = 1;
  219. break;
  220. case POWER_SUPPLY_PROP_TECHNOLOGY:
  221. val->intval = POWER_SUPPLY_TECHNOLOGY_LION;
  222. break;
  223. case POWER_SUPPLY_PROP_CYCLE_COUNT:
  224. ret = regmap_read(map, MAX17042_Cycles, &data);
  225. if (ret < 0)
  226. return ret;
  227. val->intval = data;
  228. break;
  229. case POWER_SUPPLY_PROP_VOLTAGE_MAX:
  230. ret = regmap_read(map, MAX17042_MinMaxVolt, &data);
  231. if (ret < 0)
  232. return ret;
  233. val->intval = data >> 8;
  234. val->intval *= 20000; /* Units of LSB = 20mV */
  235. break;
  236. case POWER_SUPPLY_PROP_VOLTAGE_MIN:
  237. ret = regmap_read(map, MAX17042_MinMaxVolt, &data);
  238. if (ret < 0)
  239. return ret;
  240. val->intval = (data & 0xff) * 20000; /* Units of 20mV */
  241. break;
  242. case POWER_SUPPLY_PROP_VOLTAGE_MIN_DESIGN:
  243. if (chip->chip_type == MAXIM_DEVICE_TYPE_MAX17042)
  244. ret = regmap_read(map, MAX17042_V_empty, &data);
  245. else
  246. ret = regmap_read(map, MAX17047_V_empty, &data);
  247. if (ret < 0)
  248. return ret;
  249. val->intval = data >> 7;
  250. val->intval *= 10000; /* Units of LSB = 10mV */
  251. break;
  252. case POWER_SUPPLY_PROP_VOLTAGE_NOW:
  253. ret = regmap_read(map, MAX17042_VCELL, &data);
  254. if (ret < 0)
  255. return ret;
  256. val->intval = data * 625 / 8;
  257. break;
  258. case POWER_SUPPLY_PROP_VOLTAGE_AVG:
  259. ret = regmap_read(map, MAX17042_AvgVCELL, &data);
  260. if (ret < 0)
  261. return ret;
  262. val->intval = data * 625 / 8;
  263. break;
  264. case POWER_SUPPLY_PROP_VOLTAGE_OCV:
  265. ret = regmap_read(map, MAX17042_OCVInternal, &data);
  266. if (ret < 0)
  267. return ret;
  268. val->intval = data * 625 / 8;
  269. break;
  270. case POWER_SUPPLY_PROP_CAPACITY:
  271. if (chip->pdata->enable_current_sense)
  272. ret = regmap_read(map, MAX17042_RepSOC, &data);
  273. else
  274. ret = regmap_read(map, MAX17042_VFSOC, &data);
  275. if (ret < 0)
  276. return ret;
  277. val->intval = data >> 8;
  278. break;
  279. case POWER_SUPPLY_PROP_CHARGE_FULL_DESIGN:
  280. ret = regmap_read(map, MAX17042_DesignCap, &data);
  281. if (ret < 0)
  282. return ret;
  283. data64 = data * 5000000ll;
  284. do_div(data64, chip->pdata->r_sns);
  285. val->intval = data64;
  286. break;
  287. case POWER_SUPPLY_PROP_CHARGE_FULL:
  288. ret = regmap_read(map, MAX17042_FullCAP, &data);
  289. if (ret < 0)
  290. return ret;
  291. data64 = data * 5000000ll;
  292. do_div(data64, chip->pdata->r_sns);
  293. val->intval = data64;
  294. break;
  295. case POWER_SUPPLY_PROP_CHARGE_NOW:
  296. ret = regmap_read(map, MAX17042_RepCap, &data);
  297. if (ret < 0)
  298. return ret;
  299. data64 = data * 5000000ll;
  300. do_div(data64, chip->pdata->r_sns);
  301. val->intval = data64;
  302. break;
  303. case POWER_SUPPLY_PROP_CHARGE_COUNTER:
  304. ret = regmap_read(map, MAX17042_QH, &data);
  305. if (ret < 0)
  306. return ret;
  307. data64 = sign_extend64(data, 15) * 5000000ll;
  308. val->intval = div_s64(data64, chip->pdata->r_sns);
  309. break;
  310. case POWER_SUPPLY_PROP_TEMP:
  311. ret = max17042_get_temperature(chip, &val->intval);
  312. if (ret < 0)
  313. return ret;
  314. break;
  315. case POWER_SUPPLY_PROP_TEMP_ALERT_MIN:
  316. ret = regmap_read(map, MAX17042_TALRT_Th, &data);
  317. if (ret < 0)
  318. return ret;
  319. /* LSB is Alert Minimum. In deci-centigrade */
  320. val->intval = sign_extend32(data & 0xff, 7) * 10;
  321. break;
  322. case POWER_SUPPLY_PROP_TEMP_ALERT_MAX:
  323. ret = regmap_read(map, MAX17042_TALRT_Th, &data);
  324. if (ret < 0)
  325. return ret;
  326. /* MSB is Alert Maximum. In deci-centigrade */
  327. val->intval = sign_extend32(data >> 8, 7) * 10;
  328. break;
  329. case POWER_SUPPLY_PROP_TEMP_MIN:
  330. val->intval = chip->pdata->temp_min;
  331. break;
  332. case POWER_SUPPLY_PROP_TEMP_MAX:
  333. val->intval = chip->pdata->temp_max;
  334. break;
  335. case POWER_SUPPLY_PROP_HEALTH:
  336. ret = max17042_get_battery_health(chip, &val->intval);
  337. if (ret < 0)
  338. return ret;
  339. break;
  340. case POWER_SUPPLY_PROP_SCOPE:
  341. val->intval = POWER_SUPPLY_SCOPE_SYSTEM;
  342. break;
  343. case POWER_SUPPLY_PROP_CURRENT_NOW:
  344. if (chip->pdata->enable_current_sense) {
  345. ret = regmap_read(map, MAX17042_Current, &data);
  346. if (ret < 0)
  347. return ret;
  348. data64 = sign_extend64(data, 15) * 1562500ll;
  349. val->intval = div_s64(data64, chip->pdata->r_sns);
  350. } else {
  351. return -EINVAL;
  352. }
  353. break;
  354. case POWER_SUPPLY_PROP_CURRENT_AVG:
  355. if (chip->pdata->enable_current_sense) {
  356. ret = regmap_read(map, MAX17042_AvgCurrent, &data);
  357. if (ret < 0)
  358. return ret;
  359. data64 = sign_extend64(data, 15) * 1562500ll;
  360. val->intval = div_s64(data64, chip->pdata->r_sns);
  361. } else {
  362. return -EINVAL;
  363. }
  364. break;
  365. case POWER_SUPPLY_PROP_CHARGE_TERM_CURRENT:
  366. ret = regmap_read(map, MAX17042_ICHGTerm, &data);
  367. if (ret < 0)
  368. return ret;
  369. data64 = data * 1562500ll;
  370. val->intval = div_s64(data64, chip->pdata->r_sns);
  371. break;
  372. case POWER_SUPPLY_PROP_TIME_TO_EMPTY_NOW:
  373. ret = regmap_read(map, MAX17042_TTE, &data);
  374. if (ret < 0)
  375. return ret;
  376. val->intval = data * 5625 / 1000;
  377. break;
  378. default:
  379. return -EINVAL;
  380. }
  381. return 0;
  382. }
  383. static int max17042_set_property(struct power_supply *psy,
  384. enum power_supply_property psp,
  385. const union power_supply_propval *val)
  386. {
  387. struct max17042_chip *chip = power_supply_get_drvdata(psy);
  388. struct regmap *map = chip->regmap;
  389. int ret = 0;
  390. u32 data;
  391. int8_t temp;
  392. switch (psp) {
  393. case POWER_SUPPLY_PROP_TEMP_ALERT_MIN:
  394. ret = regmap_read(map, MAX17042_TALRT_Th, &data);
  395. if (ret < 0)
  396. return ret;
  397. /* Input in deci-centigrade, convert to centigrade */
  398. temp = val->intval / 10;
  399. /* force min < max */
  400. if (temp >= (int8_t)(data >> 8))
  401. temp = (int8_t)(data >> 8) - 1;
  402. /* Write both MAX and MIN ALERT */
  403. data = (data & 0xff00) + temp;
  404. ret = regmap_write(map, MAX17042_TALRT_Th, data);
  405. break;
  406. case POWER_SUPPLY_PROP_TEMP_ALERT_MAX:
  407. ret = regmap_read(map, MAX17042_TALRT_Th, &data);
  408. if (ret < 0)
  409. return ret;
  410. /* Input in Deci-Centigrade, convert to centigrade */
  411. temp = val->intval / 10;
  412. /* force max > min */
  413. if (temp <= (int8_t)(data & 0xff))
  414. temp = (int8_t)(data & 0xff) + 1;
  415. /* Write both MAX and MIN ALERT */
  416. data = (data & 0xff) + (temp << 8);
  417. ret = regmap_write(map, MAX17042_TALRT_Th, data);
  418. break;
  419. default:
  420. ret = -EINVAL;
  421. }
  422. return ret;
  423. }
  424. static int max17042_property_is_writeable(struct power_supply *psy,
  425. enum power_supply_property psp)
  426. {
  427. int ret;
  428. switch (psp) {
  429. case POWER_SUPPLY_PROP_TEMP_ALERT_MIN:
  430. case POWER_SUPPLY_PROP_TEMP_ALERT_MAX:
  431. ret = 1;
  432. break;
  433. default:
  434. ret = 0;
  435. }
  436. return ret;
  437. }
  438. static void max17042_external_power_changed(struct power_supply *psy)
  439. {
  440. power_supply_changed(psy);
  441. }
  442. static int max17042_write_verify_reg(struct regmap *map, u8 reg, u32 value)
  443. {
  444. int retries = 8;
  445. int ret;
  446. u32 read_value;
  447. do {
  448. ret = regmap_write(map, reg, value);
  449. regmap_read(map, reg, &read_value);
  450. if (read_value != value) {
  451. ret = -EIO;
  452. retries--;
  453. }
  454. } while (retries && read_value != value);
  455. if (ret < 0)
  456. pr_err("%s: err %d\n", __func__, ret);
  457. return ret;
  458. }
  459. static inline void max17042_override_por(struct regmap *map,
  460. u8 reg, u16 value)
  461. {
  462. if (value)
  463. regmap_write(map, reg, value);
  464. }
  465. static inline void max17042_unlock_model(struct max17042_chip *chip)
  466. {
  467. struct regmap *map = chip->regmap;
  468. regmap_write(map, MAX17042_MLOCKReg1, MODEL_UNLOCK1);
  469. regmap_write(map, MAX17042_MLOCKReg2, MODEL_UNLOCK2);
  470. }
  471. static inline void max17042_lock_model(struct max17042_chip *chip)
  472. {
  473. struct regmap *map = chip->regmap;
  474. regmap_write(map, MAX17042_MLOCKReg1, MODEL_LOCK1);
  475. regmap_write(map, MAX17042_MLOCKReg2, MODEL_LOCK2);
  476. }
  477. static inline void max17042_write_model_data(struct max17042_chip *chip,
  478. u8 addr, int size)
  479. {
  480. struct regmap *map = chip->regmap;
  481. int i;
  482. for (i = 0; i < size; i++)
  483. regmap_write(map, addr + i,
  484. chip->pdata->config_data->cell_char_tbl[i]);
  485. }
  486. static inline void max17042_read_model_data(struct max17042_chip *chip,
  487. u8 addr, u16 *data, int size)
  488. {
  489. struct regmap *map = chip->regmap;
  490. int i;
  491. u32 tmp;
  492. for (i = 0; i < size; i++) {
  493. regmap_read(map, addr + i, &tmp);
  494. data[i] = (u16)tmp;
  495. }
  496. }
  497. static inline int max17042_model_data_compare(struct max17042_chip *chip,
  498. u16 *data1, u16 *data2, int size)
  499. {
  500. int i;
  501. if (memcmp(data1, data2, size)) {
  502. dev_err(&chip->client->dev, "%s compare failed\n", __func__);
  503. for (i = 0; i < size; i++)
  504. dev_info(&chip->client->dev, "0x%x, 0x%x",
  505. data1[i], data2[i]);
  506. dev_info(&chip->client->dev, "\n");
  507. return -EINVAL;
  508. }
  509. return 0;
  510. }
  511. static int max17042_init_model(struct max17042_chip *chip)
  512. {
  513. int ret;
  514. int table_size = ARRAY_SIZE(chip->pdata->config_data->cell_char_tbl);
  515. u16 *temp_data;
  516. temp_data = kcalloc(table_size, sizeof(*temp_data), GFP_KERNEL);
  517. if (!temp_data)
  518. return -ENOMEM;
  519. max17042_unlock_model(chip);
  520. max17042_write_model_data(chip, MAX17042_MODELChrTbl,
  521. table_size);
  522. max17042_read_model_data(chip, MAX17042_MODELChrTbl, temp_data,
  523. table_size);
  524. ret = max17042_model_data_compare(
  525. chip,
  526. chip->pdata->config_data->cell_char_tbl,
  527. temp_data,
  528. table_size);
  529. max17042_lock_model(chip);
  530. kfree(temp_data);
  531. return ret;
  532. }
  533. static int max17042_verify_model_lock(struct max17042_chip *chip)
  534. {
  535. int i;
  536. int table_size = ARRAY_SIZE(chip->pdata->config_data->cell_char_tbl);
  537. u16 *temp_data;
  538. int ret = 0;
  539. temp_data = kcalloc(table_size, sizeof(*temp_data), GFP_KERNEL);
  540. if (!temp_data)
  541. return -ENOMEM;
  542. max17042_read_model_data(chip, MAX17042_MODELChrTbl, temp_data,
  543. table_size);
  544. for (i = 0; i < table_size; i++)
  545. if (temp_data[i])
  546. ret = -EINVAL;
  547. kfree(temp_data);
  548. return ret;
  549. }
  550. static void max17042_write_config_regs(struct max17042_chip *chip)
  551. {
  552. struct max17042_config_data *config = chip->pdata->config_data;
  553. struct regmap *map = chip->regmap;
  554. regmap_write(map, MAX17042_CONFIG, config->config);
  555. regmap_write(map, MAX17042_LearnCFG, config->learn_cfg);
  556. regmap_write(map, MAX17042_FilterCFG,
  557. config->filter_cfg);
  558. regmap_write(map, MAX17042_RelaxCFG, config->relax_cfg);
  559. if (chip->chip_type == MAXIM_DEVICE_TYPE_MAX17047 ||
  560. chip->chip_type == MAXIM_DEVICE_TYPE_MAX17050 ||
  561. chip->chip_type == MAXIM_DEVICE_TYPE_MAX17055)
  562. regmap_write(map, MAX17047_FullSOCThr,
  563. config->full_soc_thresh);
  564. }
  565. static void max17042_write_custom_regs(struct max17042_chip *chip)
  566. {
  567. struct max17042_config_data *config = chip->pdata->config_data;
  568. struct regmap *map = chip->regmap;
  569. max17042_write_verify_reg(map, MAX17042_RCOMP0, config->rcomp0);
  570. max17042_write_verify_reg(map, MAX17042_TempCo, config->tcompc0);
  571. max17042_write_verify_reg(map, MAX17042_ICHGTerm, config->ichgt_term);
  572. if (chip->chip_type == MAXIM_DEVICE_TYPE_MAX17042) {
  573. regmap_write(map, MAX17042_EmptyTempCo, config->empty_tempco);
  574. max17042_write_verify_reg(map, MAX17042_K_empty0,
  575. config->kempty0);
  576. } else {
  577. max17042_write_verify_reg(map, MAX17047_QRTbl00,
  578. config->qrtbl00);
  579. max17042_write_verify_reg(map, MAX17047_QRTbl10,
  580. config->qrtbl10);
  581. max17042_write_verify_reg(map, MAX17047_QRTbl20,
  582. config->qrtbl20);
  583. max17042_write_verify_reg(map, MAX17047_QRTbl30,
  584. config->qrtbl30);
  585. }
  586. }
  587. static void max17042_update_capacity_regs(struct max17042_chip *chip)
  588. {
  589. struct max17042_config_data *config = chip->pdata->config_data;
  590. struct regmap *map = chip->regmap;
  591. max17042_write_verify_reg(map, MAX17042_FullCAP,
  592. config->fullcap);
  593. regmap_write(map, MAX17042_DesignCap, config->design_cap);
  594. max17042_write_verify_reg(map, MAX17042_FullCAPNom,
  595. config->fullcapnom);
  596. }
  597. static void max17042_reset_vfsoc0_reg(struct max17042_chip *chip)
  598. {
  599. unsigned int vfSoc;
  600. struct regmap *map = chip->regmap;
  601. regmap_read(map, MAX17042_VFSOC, &vfSoc);
  602. regmap_write(map, MAX17042_VFSOC0Enable, VFSOC0_UNLOCK);
  603. max17042_write_verify_reg(map, MAX17042_VFSOC0, vfSoc);
  604. regmap_write(map, MAX17042_VFSOC0Enable, VFSOC0_LOCK);
  605. }
  606. static void max17042_load_new_capacity_params(struct max17042_chip *chip)
  607. {
  608. u32 full_cap0, rep_cap, dq_acc, vfSoc;
  609. u32 rem_cap;
  610. struct max17042_config_data *config = chip->pdata->config_data;
  611. struct regmap *map = chip->regmap;
  612. regmap_read(map, MAX17042_FullCAP0, &full_cap0);
  613. regmap_read(map, MAX17042_VFSOC, &vfSoc);
  614. /* fg_vfSoc needs to shifted by 8 bits to get the
  615. * perc in 1% accuracy, to get the right rem_cap multiply
  616. * full_cap0, fg_vfSoc and devide by 100
  617. */
  618. rem_cap = ((vfSoc >> 8) * full_cap0) / 100;
  619. max17042_write_verify_reg(map, MAX17042_RemCap, rem_cap);
  620. rep_cap = rem_cap;
  621. max17042_write_verify_reg(map, MAX17042_RepCap, rep_cap);
  622. /* Write dQ_acc to 200% of Capacity and dP_acc to 200% */
  623. dq_acc = config->fullcap / dQ_ACC_DIV;
  624. max17042_write_verify_reg(map, MAX17042_dQacc, dq_acc);
  625. max17042_write_verify_reg(map, MAX17042_dPacc, dP_ACC_200);
  626. max17042_write_verify_reg(map, MAX17042_FullCAP,
  627. config->fullcap);
  628. regmap_write(map, MAX17042_DesignCap,
  629. config->design_cap);
  630. max17042_write_verify_reg(map, MAX17042_FullCAPNom,
  631. config->fullcapnom);
  632. /* Update SOC register with new SOC */
  633. regmap_write(map, MAX17042_RepSOC, vfSoc);
  634. }
  635. /*
  636. * Block write all the override values coming from platform data.
  637. * This function MUST be called before the POR initialization procedure
  638. * specified by maxim.
  639. */
  640. static inline void max17042_override_por_values(struct max17042_chip *chip)
  641. {
  642. struct regmap *map = chip->regmap;
  643. struct max17042_config_data *config = chip->pdata->config_data;
  644. max17042_override_por(map, MAX17042_TGAIN, config->tgain);
  645. max17042_override_por(map, MAX17042_TOFF, config->toff);
  646. max17042_override_por(map, MAX17042_CGAIN, config->cgain);
  647. max17042_override_por(map, MAX17042_COFF, config->coff);
  648. max17042_override_por(map, MAX17042_VALRT_Th, config->valrt_thresh);
  649. max17042_override_por(map, MAX17042_TALRT_Th, config->talrt_thresh);
  650. max17042_override_por(map, MAX17042_SALRT_Th,
  651. config->soc_alrt_thresh);
  652. max17042_override_por(map, MAX17042_CONFIG, config->config);
  653. max17042_override_por(map, MAX17042_SHDNTIMER, config->shdntimer);
  654. max17042_override_por(map, MAX17042_DesignCap, config->design_cap);
  655. max17042_override_por(map, MAX17042_ICHGTerm, config->ichgt_term);
  656. max17042_override_por(map, MAX17042_AtRate, config->at_rate);
  657. max17042_override_por(map, MAX17042_LearnCFG, config->learn_cfg);
  658. max17042_override_por(map, MAX17042_FilterCFG, config->filter_cfg);
  659. max17042_override_por(map, MAX17042_RelaxCFG, config->relax_cfg);
  660. max17042_override_por(map, MAX17042_MiscCFG, config->misc_cfg);
  661. max17042_override_por(map, MAX17042_FullCAP, config->fullcap);
  662. max17042_override_por(map, MAX17042_FullCAPNom, config->fullcapnom);
  663. max17042_override_por(map, MAX17042_dQacc, config->dqacc);
  664. max17042_override_por(map, MAX17042_dPacc, config->dpacc);
  665. max17042_override_por(map, MAX17042_RCOMP0, config->rcomp0);
  666. max17042_override_por(map, MAX17042_TempCo, config->tcompc0);
  667. if (chip->chip_type == MAXIM_DEVICE_TYPE_MAX17042) {
  668. max17042_override_por(map, MAX17042_MaskSOC, config->masksoc);
  669. max17042_override_por(map, MAX17042_SOC_empty, config->socempty);
  670. max17042_override_por(map, MAX17042_V_empty, config->vempty);
  671. max17042_override_por(map, MAX17042_EmptyTempCo, config->empty_tempco);
  672. max17042_override_por(map, MAX17042_K_empty0, config->kempty0);
  673. }
  674. if ((chip->chip_type == MAXIM_DEVICE_TYPE_MAX17042) ||
  675. (chip->chip_type == MAXIM_DEVICE_TYPE_MAX17047) ||
  676. (chip->chip_type == MAXIM_DEVICE_TYPE_MAX17050)) {
  677. max17042_override_por(map, MAX17042_IAvg_empty, config->iavg_empty);
  678. max17042_override_por(map, MAX17042_TempNom, config->temp_nom);
  679. max17042_override_por(map, MAX17042_TempLim, config->temp_lim);
  680. max17042_override_por(map, MAX17042_FCTC, config->fctc);
  681. }
  682. if ((chip->chip_type == MAXIM_DEVICE_TYPE_MAX17047) ||
  683. (chip->chip_type == MAXIM_DEVICE_TYPE_MAX17050) ||
  684. (chip->chip_type == MAXIM_DEVICE_TYPE_MAX17055)) {
  685. max17042_override_por(map, MAX17047_V_empty, config->vempty);
  686. }
  687. }
  688. static int max17042_init_chip(struct max17042_chip *chip)
  689. {
  690. struct regmap *map = chip->regmap;
  691. int ret;
  692. max17042_override_por_values(chip);
  693. /* After Power up, the MAX17042 requires 500mS in order
  694. * to perform signal debouncing and initial SOC reporting
  695. */
  696. msleep(500);
  697. /* Initialize configuration */
  698. max17042_write_config_regs(chip);
  699. /* write cell characterization data */
  700. ret = max17042_init_model(chip);
  701. if (ret) {
  702. dev_err(&chip->client->dev, "%s init failed\n",
  703. __func__);
  704. return -EIO;
  705. }
  706. ret = max17042_verify_model_lock(chip);
  707. if (ret) {
  708. dev_err(&chip->client->dev, "%s lock verify failed\n",
  709. __func__);
  710. return -EIO;
  711. }
  712. /* write custom parameters */
  713. max17042_write_custom_regs(chip);
  714. /* update capacity params */
  715. max17042_update_capacity_regs(chip);
  716. /* delay must be atleast 350mS to allow VFSOC
  717. * to be calculated from the new configuration
  718. */
  719. msleep(350);
  720. /* reset vfsoc0 reg */
  721. max17042_reset_vfsoc0_reg(chip);
  722. /* load new capacity params */
  723. max17042_load_new_capacity_params(chip);
  724. /* Init complete, Clear the POR bit */
  725. regmap_update_bits(map, MAX17042_STATUS, STATUS_POR_BIT, 0x0);
  726. return 0;
  727. }
  728. static void max17042_set_soc_threshold(struct max17042_chip *chip, u16 off)
  729. {
  730. struct regmap *map = chip->regmap;
  731. u32 soc, soc_tr;
  732. /* program interrupt thresholds such that we should
  733. * get interrupt for every 'off' perc change in the soc
  734. */
  735. regmap_read(map, MAX17042_RepSOC, &soc);
  736. soc >>= 8;
  737. soc_tr = (soc + off) << 8;
  738. if (off < soc)
  739. soc_tr |= soc - off;
  740. regmap_write(map, MAX17042_SALRT_Th, soc_tr);
  741. }
  742. static irqreturn_t max17042_thread_handler(int id, void *dev)
  743. {
  744. struct max17042_chip *chip = dev;
  745. u32 val;
  746. int ret;
  747. ret = regmap_read(chip->regmap, MAX17042_STATUS, &val);
  748. if (ret)
  749. return IRQ_HANDLED;
  750. if ((val & STATUS_SMN_BIT) || (val & STATUS_SMX_BIT)) {
  751. dev_dbg(&chip->client->dev, "SOC threshold INTR\n");
  752. max17042_set_soc_threshold(chip, 1);
  753. }
  754. /* we implicitly handle all alerts via power_supply_changed */
  755. regmap_clear_bits(chip->regmap, MAX17042_STATUS,
  756. 0xFFFF & ~(STATUS_POR_BIT | STATUS_BST_BIT));
  757. power_supply_changed(chip->battery);
  758. return IRQ_HANDLED;
  759. }
  760. static void max17042_init_worker(struct work_struct *work)
  761. {
  762. struct max17042_chip *chip = container_of(work,
  763. struct max17042_chip, work);
  764. int ret;
  765. /* Initialize registers according to values from the platform data */
  766. if (chip->pdata->enable_por_init && chip->pdata->config_data) {
  767. ret = max17042_init_chip(chip);
  768. if (ret)
  769. return;
  770. }
  771. chip->init_complete = 1;
  772. }
  773. #ifdef CONFIG_OF
  774. static struct max17042_platform_data *
  775. max17042_get_of_pdata(struct max17042_chip *chip)
  776. {
  777. struct device *dev = &chip->client->dev;
  778. struct device_node *np = dev->of_node;
  779. u32 prop;
  780. struct max17042_platform_data *pdata;
  781. pdata = devm_kzalloc(dev, sizeof(*pdata), GFP_KERNEL);
  782. if (!pdata)
  783. return NULL;
  784. /*
  785. * Require current sense resistor value to be specified for
  786. * current-sense functionality to be enabled at all.
  787. */
  788. if (of_property_read_u32(np, "maxim,rsns-microohm", &prop) == 0) {
  789. pdata->r_sns = prop;
  790. pdata->enable_current_sense = true;
  791. }
  792. if (of_property_read_s32(np, "maxim,cold-temp", &pdata->temp_min))
  793. pdata->temp_min = INT_MIN;
  794. if (of_property_read_s32(np, "maxim,over-heat-temp", &pdata->temp_max))
  795. pdata->temp_max = INT_MAX;
  796. if (of_property_read_s32(np, "maxim,dead-volt", &pdata->vmin))
  797. pdata->vmin = INT_MIN;
  798. if (of_property_read_s32(np, "maxim,over-volt", &pdata->vmax))
  799. pdata->vmax = INT_MAX;
  800. return pdata;
  801. }
  802. #endif
  803. static struct max17042_reg_data max17047_default_pdata_init_regs[] = {
  804. /*
  805. * Some firmwares do not set FullSOCThr, Enable End-of-Charge Detection
  806. * when the voltage FG reports 95%, as recommended in the datasheet.
  807. */
  808. { MAX17047_FullSOCThr, MAX17042_BATTERY_FULL << 8 },
  809. };
  810. static struct max17042_platform_data *
  811. max17042_get_default_pdata(struct max17042_chip *chip)
  812. {
  813. struct device *dev = &chip->client->dev;
  814. struct max17042_platform_data *pdata;
  815. int ret, misc_cfg;
  816. /*
  817. * The MAX17047 gets used on x86 where we might not have pdata, assume
  818. * the firmware will already have initialized the fuel-gauge and provide
  819. * default values for the non init bits to make things work.
  820. */
  821. pdata = devm_kzalloc(dev, sizeof(*pdata), GFP_KERNEL);
  822. if (!pdata)
  823. return pdata;
  824. if ((chip->chip_type == MAXIM_DEVICE_TYPE_MAX17047) ||
  825. (chip->chip_type == MAXIM_DEVICE_TYPE_MAX17050)) {
  826. pdata->init_data = max17047_default_pdata_init_regs;
  827. pdata->num_init_data =
  828. ARRAY_SIZE(max17047_default_pdata_init_regs);
  829. }
  830. ret = regmap_read(chip->regmap, MAX17042_MiscCFG, &misc_cfg);
  831. if (ret < 0)
  832. return NULL;
  833. /* If bits 0-1 are set to 3 then only Voltage readings are used */
  834. if ((misc_cfg & 0x3) == 0x3)
  835. pdata->enable_current_sense = false;
  836. else
  837. pdata->enable_current_sense = true;
  838. pdata->vmin = MAX17042_DEFAULT_VMIN;
  839. pdata->vmax = MAX17042_DEFAULT_VMAX;
  840. pdata->temp_min = MAX17042_DEFAULT_TEMP_MIN;
  841. pdata->temp_max = MAX17042_DEFAULT_TEMP_MAX;
  842. return pdata;
  843. }
  844. static struct max17042_platform_data *
  845. max17042_get_pdata(struct max17042_chip *chip)
  846. {
  847. struct device *dev = &chip->client->dev;
  848. #ifdef CONFIG_OF
  849. if (dev->of_node)
  850. return max17042_get_of_pdata(chip);
  851. #endif
  852. if (dev->platform_data)
  853. return dev->platform_data;
  854. return max17042_get_default_pdata(chip);
  855. }
  856. static const struct regmap_config max17042_regmap_config = {
  857. .reg_bits = 8,
  858. .val_bits = 16,
  859. .val_format_endian = REGMAP_ENDIAN_NATIVE,
  860. };
  861. static const struct power_supply_desc max17042_psy_desc = {
  862. .name = "max170xx_battery",
  863. .type = POWER_SUPPLY_TYPE_BATTERY,
  864. .get_property = max17042_get_property,
  865. .set_property = max17042_set_property,
  866. .property_is_writeable = max17042_property_is_writeable,
  867. .external_power_changed = max17042_external_power_changed,
  868. .properties = max17042_battery_props,
  869. .num_properties = ARRAY_SIZE(max17042_battery_props),
  870. };
  871. static const struct power_supply_desc max17042_no_current_sense_psy_desc = {
  872. .name = "max170xx_battery",
  873. .type = POWER_SUPPLY_TYPE_BATTERY,
  874. .get_property = max17042_get_property,
  875. .set_property = max17042_set_property,
  876. .property_is_writeable = max17042_property_is_writeable,
  877. .properties = max17042_battery_props,
  878. .num_properties = ARRAY_SIZE(max17042_battery_props) - 2,
  879. };
  880. static int max17042_probe(struct i2c_client *client,
  881. const struct i2c_device_id *id)
  882. {
  883. struct i2c_adapter *adapter = client->adapter;
  884. const struct power_supply_desc *max17042_desc = &max17042_psy_desc;
  885. struct power_supply_config psy_cfg = {};
  886. const struct acpi_device_id *acpi_id = NULL;
  887. struct device *dev = &client->dev;
  888. struct max17042_chip *chip;
  889. int ret;
  890. int i;
  891. u32 val;
  892. if (!i2c_check_functionality(adapter, I2C_FUNC_SMBUS_WORD_DATA))
  893. return -EIO;
  894. chip = devm_kzalloc(&client->dev, sizeof(*chip), GFP_KERNEL);
  895. if (!chip)
  896. return -ENOMEM;
  897. chip->client = client;
  898. if (id) {
  899. chip->chip_type = id->driver_data;
  900. } else {
  901. acpi_id = acpi_match_device(dev->driver->acpi_match_table, dev);
  902. if (!acpi_id)
  903. return -ENODEV;
  904. chip->chip_type = acpi_id->driver_data;
  905. }
  906. chip->regmap = devm_regmap_init_i2c(client, &max17042_regmap_config);
  907. if (IS_ERR(chip->regmap)) {
  908. dev_err(&client->dev, "Failed to initialize regmap\n");
  909. return -EINVAL;
  910. }
  911. chip->pdata = max17042_get_pdata(chip);
  912. if (!chip->pdata) {
  913. dev_err(&client->dev, "no platform data provided\n");
  914. return -EINVAL;
  915. }
  916. i2c_set_clientdata(client, chip);
  917. psy_cfg.drv_data = chip;
  918. psy_cfg.of_node = dev->of_node;
  919. /* When current is not measured,
  920. * CURRENT_NOW and CURRENT_AVG properties should be invisible. */
  921. if (!chip->pdata->enable_current_sense)
  922. max17042_desc = &max17042_no_current_sense_psy_desc;
  923. if (chip->pdata->r_sns == 0)
  924. chip->pdata->r_sns = MAX17042_DEFAULT_SNS_RESISTOR;
  925. if (chip->pdata->init_data)
  926. for (i = 0; i < chip->pdata->num_init_data; i++)
  927. regmap_write(chip->regmap,
  928. chip->pdata->init_data[i].addr,
  929. chip->pdata->init_data[i].data);
  930. if (!chip->pdata->enable_current_sense) {
  931. regmap_write(chip->regmap, MAX17042_CGAIN, 0x0000);
  932. regmap_write(chip->regmap, MAX17042_MiscCFG, 0x0003);
  933. regmap_write(chip->regmap, MAX17042_LearnCFG, 0x0007);
  934. }
  935. chip->battery = devm_power_supply_register(&client->dev, max17042_desc,
  936. &psy_cfg);
  937. if (IS_ERR(chip->battery)) {
  938. dev_err(&client->dev, "failed: power supply register\n");
  939. return PTR_ERR(chip->battery);
  940. }
  941. if (client->irq) {
  942. unsigned int flags = IRQF_ONESHOT;
  943. /*
  944. * On ACPI systems the IRQ may be handled by ACPI-event code,
  945. * so we need to share (if the ACPI code is willing to share).
  946. */
  947. if (acpi_id)
  948. flags |= IRQF_SHARED | IRQF_PROBE_SHARED;
  949. ret = devm_request_threaded_irq(&client->dev, client->irq,
  950. NULL,
  951. max17042_thread_handler, flags,
  952. chip->battery->desc->name,
  953. chip);
  954. if (!ret) {
  955. regmap_update_bits(chip->regmap, MAX17042_CONFIG,
  956. CONFIG_ALRT_BIT_ENBL,
  957. CONFIG_ALRT_BIT_ENBL);
  958. max17042_set_soc_threshold(chip, 1);
  959. } else {
  960. client->irq = 0;
  961. if (ret != -EBUSY)
  962. dev_err(&client->dev, "Failed to get IRQ\n");
  963. }
  964. }
  965. /* Not able to update the charge threshold when exceeded? -> disable */
  966. if (!client->irq)
  967. regmap_write(chip->regmap, MAX17042_SALRT_Th, 0xff00);
  968. regmap_read(chip->regmap, MAX17042_STATUS, &val);
  969. if (val & STATUS_POR_BIT) {
  970. ret = devm_work_autocancel(&client->dev, &chip->work,
  971. max17042_init_worker);
  972. if (ret)
  973. return ret;
  974. schedule_work(&chip->work);
  975. } else {
  976. chip->init_complete = 1;
  977. }
  978. return 0;
  979. }
  980. #ifdef CONFIG_PM_SLEEP
  981. static int max17042_suspend(struct device *dev)
  982. {
  983. struct max17042_chip *chip = dev_get_drvdata(dev);
  984. /*
  985. * disable the irq and enable irq_wake
  986. * capability to the interrupt line.
  987. */
  988. if (chip->client->irq) {
  989. disable_irq(chip->client->irq);
  990. enable_irq_wake(chip->client->irq);
  991. }
  992. return 0;
  993. }
  994. static int max17042_resume(struct device *dev)
  995. {
  996. struct max17042_chip *chip = dev_get_drvdata(dev);
  997. if (chip->client->irq) {
  998. disable_irq_wake(chip->client->irq);
  999. enable_irq(chip->client->irq);
  1000. /* re-program the SOC thresholds to 1% change */
  1001. max17042_set_soc_threshold(chip, 1);
  1002. }
  1003. return 0;
  1004. }
  1005. #endif
  1006. static SIMPLE_DEV_PM_OPS(max17042_pm_ops, max17042_suspend,
  1007. max17042_resume);
  1008. #ifdef CONFIG_ACPI
  1009. static const struct acpi_device_id max17042_acpi_match[] = {
  1010. { "MAX17047", MAXIM_DEVICE_TYPE_MAX17047 },
  1011. { }
  1012. };
  1013. MODULE_DEVICE_TABLE(acpi, max17042_acpi_match);
  1014. #endif
  1015. #ifdef CONFIG_OF
  1016. static const struct of_device_id max17042_dt_match[] = {
  1017. { .compatible = "maxim,max17042" },
  1018. { .compatible = "maxim,max17047" },
  1019. { .compatible = "maxim,max17050" },
  1020. { .compatible = "maxim,max17055" },
  1021. { .compatible = "maxim,max77849-battery" },
  1022. { },
  1023. };
  1024. MODULE_DEVICE_TABLE(of, max17042_dt_match);
  1025. #endif
  1026. static const struct i2c_device_id max17042_id[] = {
  1027. { "max17042", MAXIM_DEVICE_TYPE_MAX17042 },
  1028. { "max17047", MAXIM_DEVICE_TYPE_MAX17047 },
  1029. { "max17050", MAXIM_DEVICE_TYPE_MAX17050 },
  1030. { "max17055", MAXIM_DEVICE_TYPE_MAX17055 },
  1031. { "max77849-battery", MAXIM_DEVICE_TYPE_MAX17047 },
  1032. { }
  1033. };
  1034. MODULE_DEVICE_TABLE(i2c, max17042_id);
  1035. static struct i2c_driver max17042_i2c_driver = {
  1036. .driver = {
  1037. .name = "max17042",
  1038. .acpi_match_table = ACPI_PTR(max17042_acpi_match),
  1039. .of_match_table = of_match_ptr(max17042_dt_match),
  1040. .pm = &max17042_pm_ops,
  1041. },
  1042. .probe = max17042_probe,
  1043. .id_table = max17042_id,
  1044. };
  1045. module_i2c_driver(max17042_i2c_driver);
  1046. MODULE_AUTHOR("MyungJoo Ham <[email protected]>");
  1047. MODULE_DESCRIPTION("MAX17042 Fuel Gauge");
  1048. MODULE_LICENSE("GPL");