rn5t618_power.c 19 KB

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  1. // SPDX-License-Identifier: GPL-2.0+
  2. /*
  3. * Power supply driver for the RICOH RN5T618 power management chip family
  4. *
  5. * Copyright (C) 2020 Andreas Kemnade
  6. */
  7. #include <linux/kernel.h>
  8. #include <linux/device.h>
  9. #include <linux/bitops.h>
  10. #include <linux/errno.h>
  11. #include <linux/iio/consumer.h>
  12. #include <linux/init.h>
  13. #include <linux/interrupt.h>
  14. #include <linux/module.h>
  15. #include <linux/mfd/rn5t618.h>
  16. #include <linux/of_device.h>
  17. #include <linux/platform_device.h>
  18. #include <linux/power_supply.h>
  19. #include <linux/regmap.h>
  20. #include <linux/slab.h>
  21. #define CHG_STATE_ADP_INPUT 0x40
  22. #define CHG_STATE_USB_INPUT 0x80
  23. #define CHG_STATE_MASK 0x1f
  24. #define CHG_STATE_CHG_OFF 0
  25. #define CHG_STATE_CHG_READY_VADP 1
  26. #define CHG_STATE_CHG_TRICKLE 2
  27. #define CHG_STATE_CHG_RAPID 3
  28. #define CHG_STATE_CHG_COMPLETE 4
  29. #define CHG_STATE_SUSPEND 5
  30. #define CHG_STATE_VCHG_OVER_VOL 6
  31. #define CHG_STATE_BAT_ERROR 7
  32. #define CHG_STATE_NO_BAT 8
  33. #define CHG_STATE_BAT_OVER_VOL 9
  34. #define CHG_STATE_BAT_TEMP_ERR 10
  35. #define CHG_STATE_DIE_ERR 11
  36. #define CHG_STATE_DIE_SHUTDOWN 12
  37. #define CHG_STATE_NO_BAT2 13
  38. #define CHG_STATE_CHG_READY_VUSB 14
  39. #define GCHGDET_TYPE_MASK 0x30
  40. #define GCHGDET_TYPE_SDP 0x00
  41. #define GCHGDET_TYPE_CDP 0x10
  42. #define GCHGDET_TYPE_DCP 0x20
  43. #define FG_ENABLE 1
  44. /*
  45. * Formula seems accurate for battery current, but for USB current around 70mA
  46. * per step was seen on Kobo Clara HD but all sources show the same formula
  47. * also fur USB current. To avoid accidentially unwanted high currents we stick
  48. * to that formula
  49. */
  50. #define TO_CUR_REG(x) ((x) / 100000 - 1)
  51. #define FROM_CUR_REG(x) ((((x) & 0x1f) + 1) * 100000)
  52. #define CHG_MIN_CUR 100000
  53. #define CHG_MAX_CUR 1800000
  54. #define ADP_MAX_CUR 2500000
  55. #define USB_MAX_CUR 1400000
  56. struct rn5t618_power_info {
  57. struct rn5t618 *rn5t618;
  58. struct platform_device *pdev;
  59. struct power_supply *battery;
  60. struct power_supply *usb;
  61. struct power_supply *adp;
  62. struct iio_channel *channel_vusb;
  63. struct iio_channel *channel_vadp;
  64. int irq;
  65. };
  66. static enum power_supply_usb_type rn5t618_usb_types[] = {
  67. POWER_SUPPLY_USB_TYPE_SDP,
  68. POWER_SUPPLY_USB_TYPE_DCP,
  69. POWER_SUPPLY_USB_TYPE_CDP,
  70. POWER_SUPPLY_USB_TYPE_UNKNOWN
  71. };
  72. static enum power_supply_property rn5t618_usb_props[] = {
  73. /* input current limit is not very accurate */
  74. POWER_SUPPLY_PROP_INPUT_CURRENT_LIMIT,
  75. POWER_SUPPLY_PROP_VOLTAGE_NOW,
  76. POWER_SUPPLY_PROP_STATUS,
  77. POWER_SUPPLY_PROP_USB_TYPE,
  78. POWER_SUPPLY_PROP_ONLINE,
  79. };
  80. static enum power_supply_property rn5t618_adp_props[] = {
  81. /* input current limit is not very accurate */
  82. POWER_SUPPLY_PROP_INPUT_CURRENT_LIMIT,
  83. POWER_SUPPLY_PROP_VOLTAGE_NOW,
  84. POWER_SUPPLY_PROP_STATUS,
  85. POWER_SUPPLY_PROP_ONLINE,
  86. };
  87. static enum power_supply_property rn5t618_battery_props[] = {
  88. POWER_SUPPLY_PROP_STATUS,
  89. POWER_SUPPLY_PROP_PRESENT,
  90. POWER_SUPPLY_PROP_VOLTAGE_NOW,
  91. POWER_SUPPLY_PROP_CURRENT_NOW,
  92. POWER_SUPPLY_PROP_CAPACITY,
  93. POWER_SUPPLY_PROP_TEMP,
  94. POWER_SUPPLY_PROP_TIME_TO_EMPTY_NOW,
  95. POWER_SUPPLY_PROP_TIME_TO_FULL_NOW,
  96. POWER_SUPPLY_PROP_TECHNOLOGY,
  97. POWER_SUPPLY_PROP_CHARGE_CONTROL_LIMIT,
  98. POWER_SUPPLY_PROP_CHARGE_FULL,
  99. POWER_SUPPLY_PROP_CHARGE_NOW,
  100. };
  101. static int rn5t618_battery_read_doublereg(struct rn5t618_power_info *info,
  102. u8 reg, u16 *result)
  103. {
  104. int ret, i;
  105. u8 data[2];
  106. u16 old, new;
  107. old = 0;
  108. /* Prevent races when registers are changing. */
  109. for (i = 0; i < 3; i++) {
  110. ret = regmap_bulk_read(info->rn5t618->regmap,
  111. reg, data, sizeof(data));
  112. if (ret)
  113. return ret;
  114. new = data[0] << 8;
  115. new |= data[1];
  116. if (new == old)
  117. break;
  118. old = new;
  119. }
  120. *result = new;
  121. return 0;
  122. }
  123. static int rn5t618_decode_status(unsigned int status)
  124. {
  125. switch (status & CHG_STATE_MASK) {
  126. case CHG_STATE_CHG_OFF:
  127. case CHG_STATE_SUSPEND:
  128. case CHG_STATE_VCHG_OVER_VOL:
  129. case CHG_STATE_DIE_SHUTDOWN:
  130. return POWER_SUPPLY_STATUS_DISCHARGING;
  131. case CHG_STATE_CHG_TRICKLE:
  132. case CHG_STATE_CHG_RAPID:
  133. return POWER_SUPPLY_STATUS_CHARGING;
  134. case CHG_STATE_CHG_COMPLETE:
  135. return POWER_SUPPLY_STATUS_FULL;
  136. default:
  137. return POWER_SUPPLY_STATUS_NOT_CHARGING;
  138. }
  139. }
  140. static int rn5t618_battery_status(struct rn5t618_power_info *info,
  141. union power_supply_propval *val)
  142. {
  143. unsigned int v;
  144. int ret;
  145. ret = regmap_read(info->rn5t618->regmap, RN5T618_CHGSTATE, &v);
  146. if (ret)
  147. return ret;
  148. val->intval = POWER_SUPPLY_STATUS_UNKNOWN;
  149. if (v & 0xc0) { /* USB or ADP plugged */
  150. val->intval = rn5t618_decode_status(v);
  151. } else
  152. val->intval = POWER_SUPPLY_STATUS_DISCHARGING;
  153. return ret;
  154. }
  155. static int rn5t618_battery_present(struct rn5t618_power_info *info,
  156. union power_supply_propval *val)
  157. {
  158. unsigned int v;
  159. int ret;
  160. ret = regmap_read(info->rn5t618->regmap, RN5T618_CHGSTATE, &v);
  161. if (ret)
  162. return ret;
  163. v &= CHG_STATE_MASK;
  164. if ((v == CHG_STATE_NO_BAT) || (v == CHG_STATE_NO_BAT2))
  165. val->intval = 0;
  166. else
  167. val->intval = 1;
  168. return ret;
  169. }
  170. static int rn5t618_battery_voltage_now(struct rn5t618_power_info *info,
  171. union power_supply_propval *val)
  172. {
  173. u16 res;
  174. int ret;
  175. ret = rn5t618_battery_read_doublereg(info, RN5T618_VOLTAGE_1, &res);
  176. if (ret)
  177. return ret;
  178. val->intval = res * 2 * 2500 / 4095 * 1000;
  179. return 0;
  180. }
  181. static int rn5t618_battery_current_now(struct rn5t618_power_info *info,
  182. union power_supply_propval *val)
  183. {
  184. u16 res;
  185. int ret;
  186. ret = rn5t618_battery_read_doublereg(info, RN5T618_CC_AVEREG1, &res);
  187. if (ret)
  188. return ret;
  189. /* current is negative when discharging */
  190. val->intval = sign_extend32(res, 13) * 1000;
  191. return 0;
  192. }
  193. static int rn5t618_battery_capacity(struct rn5t618_power_info *info,
  194. union power_supply_propval *val)
  195. {
  196. unsigned int v;
  197. int ret;
  198. ret = regmap_read(info->rn5t618->regmap, RN5T618_SOC, &v);
  199. if (ret)
  200. return ret;
  201. val->intval = v;
  202. return 0;
  203. }
  204. static int rn5t618_battery_temp(struct rn5t618_power_info *info,
  205. union power_supply_propval *val)
  206. {
  207. u16 res;
  208. int ret;
  209. ret = rn5t618_battery_read_doublereg(info, RN5T618_TEMP_1, &res);
  210. if (ret)
  211. return ret;
  212. val->intval = sign_extend32(res, 11) * 10 / 16;
  213. return 0;
  214. }
  215. static int rn5t618_battery_tte(struct rn5t618_power_info *info,
  216. union power_supply_propval *val)
  217. {
  218. u16 res;
  219. int ret;
  220. ret = rn5t618_battery_read_doublereg(info, RN5T618_TT_EMPTY_H, &res);
  221. if (ret)
  222. return ret;
  223. if (res == 65535)
  224. return -ENODATA;
  225. val->intval = res * 60;
  226. return 0;
  227. }
  228. static int rn5t618_battery_ttf(struct rn5t618_power_info *info,
  229. union power_supply_propval *val)
  230. {
  231. u16 res;
  232. int ret;
  233. ret = rn5t618_battery_read_doublereg(info, RN5T618_TT_FULL_H, &res);
  234. if (ret)
  235. return ret;
  236. if (res == 65535)
  237. return -ENODATA;
  238. val->intval = res * 60;
  239. return 0;
  240. }
  241. static int rn5t618_battery_set_current_limit(struct rn5t618_power_info *info,
  242. const union power_supply_propval *val)
  243. {
  244. if (val->intval < CHG_MIN_CUR)
  245. return -EINVAL;
  246. if (val->intval >= CHG_MAX_CUR)
  247. return -EINVAL;
  248. return regmap_update_bits(info->rn5t618->regmap,
  249. RN5T618_CHGISET,
  250. 0x1F, TO_CUR_REG(val->intval));
  251. }
  252. static int rn5t618_battery_get_current_limit(struct rn5t618_power_info *info,
  253. union power_supply_propval *val)
  254. {
  255. unsigned int regval;
  256. int ret;
  257. ret = regmap_read(info->rn5t618->regmap, RN5T618_CHGISET,
  258. &regval);
  259. if (ret < 0)
  260. return ret;
  261. val->intval = FROM_CUR_REG(regval);
  262. return 0;
  263. }
  264. static int rn5t618_battery_charge_full(struct rn5t618_power_info *info,
  265. union power_supply_propval *val)
  266. {
  267. u16 res;
  268. int ret;
  269. ret = rn5t618_battery_read_doublereg(info, RN5T618_FA_CAP_H, &res);
  270. if (ret)
  271. return ret;
  272. val->intval = res * 1000;
  273. return 0;
  274. }
  275. static int rn5t618_battery_charge_now(struct rn5t618_power_info *info,
  276. union power_supply_propval *val)
  277. {
  278. u16 res;
  279. int ret;
  280. ret = rn5t618_battery_read_doublereg(info, RN5T618_RE_CAP_H, &res);
  281. if (ret)
  282. return ret;
  283. val->intval = res * 1000;
  284. return 0;
  285. }
  286. static int rn5t618_battery_get_property(struct power_supply *psy,
  287. enum power_supply_property psp,
  288. union power_supply_propval *val)
  289. {
  290. int ret = 0;
  291. struct rn5t618_power_info *info = power_supply_get_drvdata(psy);
  292. switch (psp) {
  293. case POWER_SUPPLY_PROP_STATUS:
  294. ret = rn5t618_battery_status(info, val);
  295. break;
  296. case POWER_SUPPLY_PROP_PRESENT:
  297. ret = rn5t618_battery_present(info, val);
  298. break;
  299. case POWER_SUPPLY_PROP_VOLTAGE_NOW:
  300. ret = rn5t618_battery_voltage_now(info, val);
  301. break;
  302. case POWER_SUPPLY_PROP_CURRENT_NOW:
  303. ret = rn5t618_battery_current_now(info, val);
  304. break;
  305. case POWER_SUPPLY_PROP_CAPACITY:
  306. ret = rn5t618_battery_capacity(info, val);
  307. break;
  308. case POWER_SUPPLY_PROP_TEMP:
  309. ret = rn5t618_battery_temp(info, val);
  310. break;
  311. case POWER_SUPPLY_PROP_TIME_TO_EMPTY_NOW:
  312. ret = rn5t618_battery_tte(info, val);
  313. break;
  314. case POWER_SUPPLY_PROP_TIME_TO_FULL_NOW:
  315. ret = rn5t618_battery_ttf(info, val);
  316. break;
  317. case POWER_SUPPLY_PROP_TECHNOLOGY:
  318. val->intval = POWER_SUPPLY_TECHNOLOGY_LION;
  319. break;
  320. case POWER_SUPPLY_PROP_CHARGE_CONTROL_LIMIT:
  321. ret = rn5t618_battery_get_current_limit(info, val);
  322. break;
  323. case POWER_SUPPLY_PROP_CHARGE_FULL:
  324. ret = rn5t618_battery_charge_full(info, val);
  325. break;
  326. case POWER_SUPPLY_PROP_CHARGE_NOW:
  327. ret = rn5t618_battery_charge_now(info, val);
  328. break;
  329. default:
  330. return -EINVAL;
  331. }
  332. return ret;
  333. }
  334. static int rn5t618_battery_set_property(struct power_supply *psy,
  335. enum power_supply_property psp,
  336. const union power_supply_propval *val)
  337. {
  338. struct rn5t618_power_info *info = power_supply_get_drvdata(psy);
  339. switch (psp) {
  340. case POWER_SUPPLY_PROP_CHARGE_CONTROL_LIMIT:
  341. return rn5t618_battery_set_current_limit(info, val);
  342. default:
  343. return -EINVAL;
  344. }
  345. }
  346. static int rn5t618_battery_property_is_writeable(struct power_supply *psy,
  347. enum power_supply_property psp)
  348. {
  349. switch (psp) {
  350. case POWER_SUPPLY_PROP_CHARGE_CONTROL_LIMIT:
  351. return true;
  352. default:
  353. return false;
  354. }
  355. }
  356. static int rn5t618_adp_get_property(struct power_supply *psy,
  357. enum power_supply_property psp,
  358. union power_supply_propval *val)
  359. {
  360. struct rn5t618_power_info *info = power_supply_get_drvdata(psy);
  361. unsigned int chgstate;
  362. unsigned int regval;
  363. bool online;
  364. int ret;
  365. ret = regmap_read(info->rn5t618->regmap, RN5T618_CHGSTATE, &chgstate);
  366. if (ret)
  367. return ret;
  368. online = !!(chgstate & CHG_STATE_ADP_INPUT);
  369. switch (psp) {
  370. case POWER_SUPPLY_PROP_ONLINE:
  371. val->intval = online;
  372. break;
  373. case POWER_SUPPLY_PROP_STATUS:
  374. if (!online) {
  375. val->intval = POWER_SUPPLY_STATUS_NOT_CHARGING;
  376. break;
  377. }
  378. val->intval = rn5t618_decode_status(chgstate);
  379. if (val->intval != POWER_SUPPLY_STATUS_CHARGING)
  380. val->intval = POWER_SUPPLY_STATUS_NOT_CHARGING;
  381. break;
  382. case POWER_SUPPLY_PROP_INPUT_CURRENT_LIMIT:
  383. ret = regmap_read(info->rn5t618->regmap,
  384. RN5T618_REGISET1, &regval);
  385. if (ret < 0)
  386. return ret;
  387. val->intval = FROM_CUR_REG(regval);
  388. break;
  389. case POWER_SUPPLY_PROP_VOLTAGE_NOW:
  390. if (!info->channel_vadp)
  391. return -ENODATA;
  392. ret = iio_read_channel_processed_scale(info->channel_vadp, &val->intval, 1000);
  393. if (ret < 0)
  394. return ret;
  395. break;
  396. default:
  397. return -EINVAL;
  398. }
  399. return 0;
  400. }
  401. static int rn5t618_adp_set_property(struct power_supply *psy,
  402. enum power_supply_property psp,
  403. const union power_supply_propval *val)
  404. {
  405. struct rn5t618_power_info *info = power_supply_get_drvdata(psy);
  406. int ret;
  407. switch (psp) {
  408. case POWER_SUPPLY_PROP_INPUT_CURRENT_LIMIT:
  409. if (val->intval > ADP_MAX_CUR)
  410. return -EINVAL;
  411. if (val->intval < CHG_MIN_CUR)
  412. return -EINVAL;
  413. ret = regmap_write(info->rn5t618->regmap, RN5T618_REGISET1,
  414. TO_CUR_REG(val->intval));
  415. if (ret < 0)
  416. return ret;
  417. break;
  418. default:
  419. return -EINVAL;
  420. }
  421. return 0;
  422. }
  423. static int rn5t618_adp_property_is_writeable(struct power_supply *psy,
  424. enum power_supply_property psp)
  425. {
  426. switch (psp) {
  427. case POWER_SUPPLY_PROP_INPUT_CURRENT_LIMIT:
  428. return true;
  429. default:
  430. return false;
  431. }
  432. }
  433. static int rc5t619_usb_get_type(struct rn5t618_power_info *info,
  434. union power_supply_propval *val)
  435. {
  436. unsigned int regval;
  437. int ret;
  438. ret = regmap_read(info->rn5t618->regmap, RN5T618_GCHGDET, &regval);
  439. if (ret < 0)
  440. return ret;
  441. switch (regval & GCHGDET_TYPE_MASK) {
  442. case GCHGDET_TYPE_SDP:
  443. val->intval = POWER_SUPPLY_USB_TYPE_SDP;
  444. break;
  445. case GCHGDET_TYPE_CDP:
  446. val->intval = POWER_SUPPLY_USB_TYPE_CDP;
  447. break;
  448. case GCHGDET_TYPE_DCP:
  449. val->intval = POWER_SUPPLY_USB_TYPE_DCP;
  450. break;
  451. default:
  452. val->intval = POWER_SUPPLY_USB_TYPE_UNKNOWN;
  453. }
  454. return 0;
  455. }
  456. static int rn5t618_usb_get_property(struct power_supply *psy,
  457. enum power_supply_property psp,
  458. union power_supply_propval *val)
  459. {
  460. struct rn5t618_power_info *info = power_supply_get_drvdata(psy);
  461. unsigned int chgstate;
  462. unsigned int regval;
  463. bool online;
  464. int ret;
  465. ret = regmap_read(info->rn5t618->regmap, RN5T618_CHGSTATE, &chgstate);
  466. if (ret)
  467. return ret;
  468. online = !!(chgstate & CHG_STATE_USB_INPUT);
  469. switch (psp) {
  470. case POWER_SUPPLY_PROP_ONLINE:
  471. val->intval = online;
  472. break;
  473. case POWER_SUPPLY_PROP_STATUS:
  474. if (!online) {
  475. val->intval = POWER_SUPPLY_STATUS_NOT_CHARGING;
  476. break;
  477. }
  478. val->intval = rn5t618_decode_status(chgstate);
  479. if (val->intval != POWER_SUPPLY_STATUS_CHARGING)
  480. val->intval = POWER_SUPPLY_STATUS_NOT_CHARGING;
  481. break;
  482. case POWER_SUPPLY_PROP_USB_TYPE:
  483. if (!online || (info->rn5t618->variant != RC5T619))
  484. return -ENODATA;
  485. return rc5t619_usb_get_type(info, val);
  486. case POWER_SUPPLY_PROP_INPUT_CURRENT_LIMIT:
  487. ret = regmap_read(info->rn5t618->regmap, RN5T618_CHGCTL1,
  488. &regval);
  489. if (ret < 0)
  490. return ret;
  491. val->intval = 0;
  492. if (regval & 2) {
  493. ret = regmap_read(info->rn5t618->regmap,
  494. RN5T618_REGISET2,
  495. &regval);
  496. if (ret < 0)
  497. return ret;
  498. val->intval = FROM_CUR_REG(regval);
  499. }
  500. break;
  501. case POWER_SUPPLY_PROP_VOLTAGE_NOW:
  502. if (!info->channel_vusb)
  503. return -ENODATA;
  504. ret = iio_read_channel_processed_scale(info->channel_vusb, &val->intval, 1000);
  505. if (ret < 0)
  506. return ret;
  507. break;
  508. default:
  509. return -EINVAL;
  510. }
  511. return 0;
  512. }
  513. static int rn5t618_usb_set_property(struct power_supply *psy,
  514. enum power_supply_property psp,
  515. const union power_supply_propval *val)
  516. {
  517. struct rn5t618_power_info *info = power_supply_get_drvdata(psy);
  518. int ret;
  519. switch (psp) {
  520. case POWER_SUPPLY_PROP_INPUT_CURRENT_LIMIT:
  521. if (val->intval > USB_MAX_CUR)
  522. return -EINVAL;
  523. if (val->intval < CHG_MIN_CUR)
  524. return -EINVAL;
  525. ret = regmap_write(info->rn5t618->regmap, RN5T618_REGISET2,
  526. 0xE0 | TO_CUR_REG(val->intval));
  527. if (ret < 0)
  528. return ret;
  529. break;
  530. default:
  531. return -EINVAL;
  532. }
  533. return 0;
  534. }
  535. static int rn5t618_usb_property_is_writeable(struct power_supply *psy,
  536. enum power_supply_property psp)
  537. {
  538. switch (psp) {
  539. case POWER_SUPPLY_PROP_INPUT_CURRENT_LIMIT:
  540. return true;
  541. default:
  542. return false;
  543. }
  544. }
  545. static const struct power_supply_desc rn5t618_battery_desc = {
  546. .name = "rn5t618-battery",
  547. .type = POWER_SUPPLY_TYPE_BATTERY,
  548. .properties = rn5t618_battery_props,
  549. .num_properties = ARRAY_SIZE(rn5t618_battery_props),
  550. .get_property = rn5t618_battery_get_property,
  551. .set_property = rn5t618_battery_set_property,
  552. .property_is_writeable = rn5t618_battery_property_is_writeable,
  553. };
  554. static const struct power_supply_desc rn5t618_adp_desc = {
  555. .name = "rn5t618-adp",
  556. .type = POWER_SUPPLY_TYPE_MAINS,
  557. .properties = rn5t618_adp_props,
  558. .num_properties = ARRAY_SIZE(rn5t618_adp_props),
  559. .get_property = rn5t618_adp_get_property,
  560. .set_property = rn5t618_adp_set_property,
  561. .property_is_writeable = rn5t618_adp_property_is_writeable,
  562. };
  563. static const struct power_supply_desc rn5t618_usb_desc = {
  564. .name = "rn5t618-usb",
  565. .type = POWER_SUPPLY_TYPE_USB,
  566. .usb_types = rn5t618_usb_types,
  567. .num_usb_types = ARRAY_SIZE(rn5t618_usb_types),
  568. .properties = rn5t618_usb_props,
  569. .num_properties = ARRAY_SIZE(rn5t618_usb_props),
  570. .get_property = rn5t618_usb_get_property,
  571. .set_property = rn5t618_usb_set_property,
  572. .property_is_writeable = rn5t618_usb_property_is_writeable,
  573. };
  574. static irqreturn_t rn5t618_charger_irq(int irq, void *data)
  575. {
  576. struct device *dev = data;
  577. struct rn5t618_power_info *info = dev_get_drvdata(dev);
  578. unsigned int ctrl, stat1, stat2, err;
  579. regmap_read(info->rn5t618->regmap, RN5T618_CHGERR_IRR, &err);
  580. regmap_read(info->rn5t618->regmap, RN5T618_CHGCTRL_IRR, &ctrl);
  581. regmap_read(info->rn5t618->regmap, RN5T618_CHGSTAT_IRR1, &stat1);
  582. regmap_read(info->rn5t618->regmap, RN5T618_CHGSTAT_IRR2, &stat2);
  583. regmap_write(info->rn5t618->regmap, RN5T618_CHGERR_IRR, 0);
  584. regmap_write(info->rn5t618->regmap, RN5T618_CHGCTRL_IRR, 0);
  585. regmap_write(info->rn5t618->regmap, RN5T618_CHGSTAT_IRR1, 0);
  586. regmap_write(info->rn5t618->regmap, RN5T618_CHGSTAT_IRR2, 0);
  587. dev_dbg(dev, "chgerr: %x chgctrl: %x chgstat: %x chgstat2: %x\n",
  588. err, ctrl, stat1, stat2);
  589. power_supply_changed(info->usb);
  590. power_supply_changed(info->adp);
  591. power_supply_changed(info->battery);
  592. return IRQ_HANDLED;
  593. }
  594. static int rn5t618_power_probe(struct platform_device *pdev)
  595. {
  596. int ret = 0;
  597. unsigned int v;
  598. struct power_supply_config psy_cfg = {};
  599. struct rn5t618_power_info *info;
  600. info = devm_kzalloc(&pdev->dev, sizeof(*info), GFP_KERNEL);
  601. if (!info)
  602. return -ENOMEM;
  603. info->pdev = pdev;
  604. info->rn5t618 = dev_get_drvdata(pdev->dev.parent);
  605. info->irq = -1;
  606. platform_set_drvdata(pdev, info);
  607. info->channel_vusb = devm_iio_channel_get(&pdev->dev, "vusb");
  608. if (IS_ERR(info->channel_vusb)) {
  609. if (PTR_ERR(info->channel_vusb) == -ENODEV)
  610. return -EPROBE_DEFER;
  611. return PTR_ERR(info->channel_vusb);
  612. }
  613. info->channel_vadp = devm_iio_channel_get(&pdev->dev, "vadp");
  614. if (IS_ERR(info->channel_vadp)) {
  615. if (PTR_ERR(info->channel_vadp) == -ENODEV)
  616. return -EPROBE_DEFER;
  617. return PTR_ERR(info->channel_vadp);
  618. }
  619. ret = regmap_read(info->rn5t618->regmap, RN5T618_CONTROL, &v);
  620. if (ret)
  621. return ret;
  622. if (!(v & FG_ENABLE)) {
  623. /* E.g. the vendor kernels of various Kobo and Tolino Ebook
  624. * readers disable the fuel gauge on shutdown. If a kernel
  625. * without fuel gauge support is booted after that, the fuel
  626. * gauge will get decalibrated.
  627. */
  628. dev_info(&pdev->dev, "Fuel gauge not enabled, enabling now\n");
  629. dev_info(&pdev->dev, "Expect imprecise results\n");
  630. regmap_update_bits(info->rn5t618->regmap, RN5T618_CONTROL,
  631. FG_ENABLE, FG_ENABLE);
  632. }
  633. psy_cfg.drv_data = info;
  634. info->battery = devm_power_supply_register(&pdev->dev,
  635. &rn5t618_battery_desc,
  636. &psy_cfg);
  637. if (IS_ERR(info->battery)) {
  638. ret = PTR_ERR(info->battery);
  639. dev_err(&pdev->dev, "failed to register battery: %d\n", ret);
  640. return ret;
  641. }
  642. info->adp = devm_power_supply_register(&pdev->dev,
  643. &rn5t618_adp_desc,
  644. &psy_cfg);
  645. if (IS_ERR(info->adp)) {
  646. ret = PTR_ERR(info->adp);
  647. dev_err(&pdev->dev, "failed to register adp: %d\n", ret);
  648. return ret;
  649. }
  650. info->usb = devm_power_supply_register(&pdev->dev,
  651. &rn5t618_usb_desc,
  652. &psy_cfg);
  653. if (IS_ERR(info->usb)) {
  654. ret = PTR_ERR(info->usb);
  655. dev_err(&pdev->dev, "failed to register usb: %d\n", ret);
  656. return ret;
  657. }
  658. if (info->rn5t618->irq_data)
  659. info->irq = regmap_irq_get_virq(info->rn5t618->irq_data,
  660. RN5T618_IRQ_CHG);
  661. if (info->irq < 0)
  662. info->irq = -1;
  663. else {
  664. ret = devm_request_threaded_irq(&pdev->dev, info->irq, NULL,
  665. rn5t618_charger_irq,
  666. IRQF_ONESHOT,
  667. "rn5t618_power",
  668. &pdev->dev);
  669. if (ret < 0) {
  670. dev_err(&pdev->dev, "request IRQ:%d fail\n",
  671. info->irq);
  672. info->irq = -1;
  673. }
  674. }
  675. return 0;
  676. }
  677. static struct platform_driver rn5t618_power_driver = {
  678. .driver = {
  679. .name = "rn5t618-power",
  680. },
  681. .probe = rn5t618_power_probe,
  682. };
  683. module_platform_driver(rn5t618_power_driver);
  684. MODULE_ALIAS("platform:rn5t618-power");
  685. MODULE_DESCRIPTION("Power supply driver for RICOH RN5T618");
  686. MODULE_LICENSE("GPL");