battery_common_fg_20.c 141 KB

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  1. /*****************************************************************************
  2. *
  3. * Filename:
  4. * ---------
  5. * battery_common.c
  6. *
  7. * Project:
  8. * --------
  9. * Android_Software
  10. *
  11. * Description:
  12. * ------------
  13. * This Module defines functions of mt6323 Battery charging algorithm
  14. * and the Anroid Battery service for updating the battery status
  15. *
  16. * Author:
  17. * -------
  18. * Oscar Liu
  19. *
  20. ****************************************************************************/
  21. #include <linux/init.h> /* For init/exit macros */
  22. #include <linux/module.h> /* For MODULE_ marcros */
  23. #include <linux/fs.h>
  24. #include <linux/device.h>
  25. #include <linux/interrupt.h>
  26. #include <linux/spinlock.h>
  27. #include <linux/platform_device.h>
  28. #include <linux/device.h>
  29. #include <linux/kdev_t.h>
  30. #include <linux/fs.h>
  31. #include <linux/cdev.h>
  32. #include <linux/delay.h>
  33. #include <linux/kernel.h>
  34. #include <linux/init.h>
  35. #include <linux/types.h>
  36. #include <linux/wait.h>
  37. #include <linux/slab.h>
  38. #include <linux/fs.h>
  39. #include <linux/sched.h>
  40. #include <linux/poll.h>
  41. #include <linux/power_supply.h>
  42. #include <linux/wakelock.h>
  43. #include <linux/time.h>
  44. #include <linux/mutex.h>
  45. #include <linux/kthread.h>
  46. #include <linux/proc_fs.h>
  47. #include <linux/platform_device.h>
  48. #include <linux/seq_file.h>
  49. #include <linux/scatterlist.h>
  50. #ifdef CONFIG_OF
  51. #include <linux/of.h>
  52. #include <linux/of_irq.h>
  53. #include <linux/of_address.h>
  54. #endif
  55. #include <linux/suspend.h>
  56. #include <asm/scatterlist.h>
  57. #include <asm/uaccess.h>
  58. #include <asm/io.h>
  59. #include <asm/irq.h>
  60. #include <linux/reboot.h>
  61. #include <mt-plat/mt_boot.h>
  62. #include <mt-plat/mtk_rtc.h>
  63. #include <mach/mt_charging.h>
  64. #include <mt-plat/upmu_common.h>
  65. #include <mt-plat/charging.h>
  66. #include <mt-plat/battery_meter.h>
  67. #include <mt-plat/battery_common.h>
  68. #include <mach/mt_battery_meter.h>
  69. #include <mach/mt_charging.h>
  70. #include <mach/mt_pmic.h>
  71. // Disable LED when DTU boot and pulg OTG by xmwuwh@20161118--start
  72. #ifdef CONFIG_AW2015
  73. extern unsigned char AW2015_LED_OFF(void);
  74. extern unsigned char AW2015_LED_RED_ON(void);
  75. extern unsigned char AW2015_LED_RED_OFF(void);
  76. #endif
  77. // Disable LED when DTU boot and pulg OTG by xmwuwh@20161118--end
  78. #if defined(CONFIG_MTK_DUAL_INPUT_CHARGER_SUPPORT)
  79. #include <mach/diso.h>
  80. #endif
  81. #if defined(CONFIG_MTK_PUMP_EXPRESS_PLUS_SUPPORT)
  82. #include <mach/mt_pe.h>
  83. #endif
  84. /* ////////////////////////////////////////////////////////////////////////////// */
  85. /* Battery Logging Entry */
  86. /* ////////////////////////////////////////////////////////////////////////////// */
  87. int Enable_BATDRV_LOG = BAT_LOG_CRTI;
  88. /* static struct proc_dir_entry *proc_entry; */
  89. char proc_bat_data[32];
  90. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  91. /* // Smart Battery Structure */
  92. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  93. PMU_ChargerStruct BMT_status;
  94. #if defined(CONFIG_MTK_DUAL_INPUT_CHARGER_SUPPORT)
  95. DISO_ChargerStruct DISO_data;
  96. /* Debug Msg */
  97. static char *DISO_state_s[8] = {
  98. "IDLE",
  99. "OTG_ONLY",
  100. "USB_ONLY",
  101. "USB_WITH_OTG",
  102. "DC_ONLY",
  103. "DC_WITH_OTG",
  104. "DC_WITH_USB",
  105. "DC_USB_OTG",
  106. };
  107. #endif
  108. struct battery_custom_data batt_cust_data;
  109. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  110. /* // Thermal related flags */
  111. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  112. /* 0:nothing, 1:enable batTT&chrTimer, 2:disable batTT&chrTimer, 3:enable batTT, disable chrTimer */
  113. int g_battery_thermal_throttling_flag = 3;
  114. int battery_cmd_thermal_test_mode = 0;
  115. int battery_cmd_thermal_test_mode_value = 0;
  116. int g_battery_tt_check_flag = 0; /* 0:default enable check batteryTT, 1:default disable check batteryTT */
  117. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  118. /* // Global Variable */
  119. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  120. struct wake_lock battery_suspend_lock, battery_meter_lock;
  121. CHARGING_CONTROL battery_charging_control;
  122. unsigned int g_BatteryNotifyCode = 0x0000;
  123. unsigned int g_BN_TestMode = 0x0000;
  124. kal_bool g_bat_init_flag = 0;
  125. unsigned int g_call_state = CALL_IDLE;
  126. kal_bool g_charging_full_reset_bat_meter = KAL_FALSE;
  127. int g_platform_boot_mode = 0;
  128. struct timespec g_bat_time_before_sleep;
  129. int g_smartbook_update = 0;
  130. #if defined(CONFIG_MTK_DUAL_INPUT_CHARGER_SUPPORT)
  131. kal_bool g_vcdt_irq_delay_flag = 0;
  132. #endif
  133. #if defined(MTK_TEMPERATURE_RECHARGE_SUPPORT)
  134. unsigned int g_batt_temp_status = TEMP_POS_NORMAL;
  135. #endif
  136. kal_bool battery_suspended = KAL_FALSE;
  137. struct timespec battery_duration_time[DURATION_NUM]; /* sec */
  138. unsigned int wake_up_smooth_time = 0; /* sec */
  139. unsigned int battery_tracking_time;
  140. signed int batterypseudo1 = BATTERYPSEUDO1;
  141. signed int batterypseudo100 = BATTERYPSEUDO100;
  142. int Is_In_IPOH;
  143. int pending_wake_up_bat;
  144. /* ////////////////////////////////////////////////////////////////////////////// */
  145. /* Integrate with NVRAM */
  146. /* ////////////////////////////////////////////////////////////////////////////// */
  147. #define ADC_CALI_DEVNAME "MT_pmic_adc_cali"
  148. #define TEST_ADC_CALI_PRINT _IO('k', 0)
  149. #define SET_ADC_CALI_Slop _IOW('k', 1, int)
  150. #define SET_ADC_CALI_Offset _IOW('k', 2, int)
  151. #define SET_ADC_CALI_Cal _IOW('k', 3, int)
  152. #define ADC_CHANNEL_READ _IOW('k', 4, int)
  153. #define BAT_STATUS_READ _IOW('k', 5, int)
  154. #define Set_Charger_Current _IOW('k', 6, int)
  155. /* add for meta tool----------------------------------------- */
  156. #define Get_META_BAT_VOL _IOW('k', 10, int)
  157. #define Get_META_BAT_SOC _IOW('k', 11, int)
  158. /* add for meta tool----------------------------------------- */
  159. static struct class *adc_cali_class;
  160. static int adc_cali_major;
  161. static dev_t adc_cali_devno;
  162. static struct cdev *adc_cali_cdev;
  163. int adc_cali_slop[14] = {
  164. 1000, 1000, 1000, 1000, 1000, 1000, 1000, 1000, 1000, 1000, 1000, 1000, 1000, 1000
  165. };
  166. int adc_cali_offset[14] = { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };
  167. int adc_cali_cal[1] = { 0 };
  168. int battery_in_data[1] = { 0 };
  169. int battery_out_data[1] = { 0 };
  170. int charging_level_data[1] = { 0 };
  171. kal_bool g_ADC_Cali = KAL_FALSE;
  172. kal_bool g_ftm_battery_flag = KAL_FALSE;
  173. #if !defined(CONFIG_POWER_EXT)
  174. static int g_wireless_state;
  175. #endif
  176. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  177. /* // Thread related */
  178. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  179. #define BAT_MS_TO_NS(x) (x * 1000 * 1000)
  180. static kal_bool bat_routine_thread_timeout = KAL_FALSE;
  181. static kal_bool bat_update_thread_timeout = KAL_FALSE;
  182. static kal_bool chr_wake_up_bat = KAL_FALSE; /* charger in/out to wake up battery thread */
  183. static kal_bool bat_meter_timeout = KAL_FALSE;
  184. static DEFINE_MUTEX(bat_mutex);
  185. static DEFINE_MUTEX(bat_update_mutex);
  186. static DEFINE_MUTEX(charger_type_mutex);
  187. static DECLARE_WAIT_QUEUE_HEAD(bat_routine_wq);
  188. static DECLARE_WAIT_QUEUE_HEAD(bat_update_wq);
  189. static struct hrtimer charger_hv_detect_timer;
  190. static struct task_struct *charger_hv_detect_thread;
  191. static kal_bool charger_hv_detect_flag = KAL_FALSE;
  192. static DECLARE_WAIT_QUEUE_HEAD(charger_hv_detect_waiter);
  193. static struct hrtimer battery_kthread_timer;
  194. kal_bool g_battery_soc_ready = KAL_FALSE;
  195. unsigned char fg_ipoh_reset;
  196. /* ////////////////////////////////////////////////////////////////////////////// */
  197. /* FOR ADB CMD */
  198. /* ////////////////////////////////////////////////////////////////////////////// */
  199. /* Dual battery */
  200. int g_status_smb = POWER_SUPPLY_STATUS_NOT_CHARGING;
  201. int g_capacity_smb = 50;
  202. int g_present_smb = 0;
  203. /* ADB charging CMD */
  204. static int cmd_discharging = -1;
  205. static int adjust_power = -1;
  206. static int suspend_discharging = -1;
  207. /* ////////////////////////////////////////////////////////////////////////////// */
  208. /* FOR ANDROID BATTERY SERVICE */
  209. /* ////////////////////////////////////////////////////////////////////////////// */
  210. struct wireless_data {
  211. struct power_supply psy;
  212. int WIRELESS_ONLINE;
  213. };
  214. struct ac_data {
  215. struct power_supply psy;
  216. int AC_ONLINE;
  217. };
  218. struct usb_data {
  219. struct power_supply psy;
  220. int USB_ONLINE;
  221. };
  222. struct battery_data {
  223. struct power_supply psy;
  224. int BAT_STATUS;
  225. int BAT_HEALTH;
  226. int BAT_PRESENT;
  227. int BAT_TECHNOLOGY;
  228. int BAT_CAPACITY;
  229. /* Add for Battery Service */
  230. int BAT_batt_vol;
  231. int BAT_batt_temp;
  232. /* Add for EM */
  233. int BAT_TemperatureR;
  234. int BAT_TempBattVoltage;
  235. int BAT_InstatVolt;
  236. int BAT_BatteryAverageCurrent;
  237. int BAT_BatterySenseVoltage;
  238. int BAT_ISenseVoltage;
  239. int BAT_ChargerVoltage;
  240. /* Dual battery */
  241. int status_smb;
  242. int capacity_smb;
  243. int present_smb;
  244. int adjust_power;
  245. };
  246. static enum power_supply_property wireless_props[] = {
  247. POWER_SUPPLY_PROP_ONLINE,
  248. };
  249. static enum power_supply_property ac_props[] = {
  250. POWER_SUPPLY_PROP_ONLINE,
  251. };
  252. static enum power_supply_property usb_props[] = {
  253. POWER_SUPPLY_PROP_ONLINE,
  254. };
  255. static enum power_supply_property battery_props[] = {
  256. POWER_SUPPLY_PROP_STATUS,
  257. POWER_SUPPLY_PROP_HEALTH,
  258. POWER_SUPPLY_PROP_PRESENT,
  259. POWER_SUPPLY_PROP_TECHNOLOGY,
  260. POWER_SUPPLY_PROP_CAPACITY,
  261. /* Add for Battery Service */
  262. POWER_SUPPLY_PROP_batt_vol,
  263. POWER_SUPPLY_PROP_batt_temp,
  264. /* Add for EM */
  265. POWER_SUPPLY_PROP_TemperatureR,
  266. POWER_SUPPLY_PROP_TempBattVoltage,
  267. POWER_SUPPLY_PROP_InstatVolt,
  268. POWER_SUPPLY_PROP_BatteryAverageCurrent,
  269. POWER_SUPPLY_PROP_BatterySenseVoltage,
  270. POWER_SUPPLY_PROP_ISenseVoltage,
  271. POWER_SUPPLY_PROP_ChargerVoltage,
  272. /* Dual battery */
  273. POWER_SUPPLY_PROP_status_smb,
  274. POWER_SUPPLY_PROP_capacity_smb,
  275. POWER_SUPPLY_PROP_present_smb,
  276. /* ADB CMD Discharging */
  277. POWER_SUPPLY_PROP_adjust_power,
  278. };
  279. struct timespec batteryThreadRunTime;
  280. void mt_battery_update_time(struct timespec *pre_time, BATTERY_TIME_ENUM duration_type)
  281. {
  282. struct timespec time;
  283. time.tv_sec = 0;
  284. time.tv_nsec = 0;
  285. get_monotonic_boottime(&time);
  286. battery_duration_time[duration_type] = timespec_sub(time, *pre_time);
  287. battery_log(BAT_LOG_CRTI,
  288. "[Battery] mt_battery_update_duration_time , last_time=%d current_time=%d duration=%d\n",
  289. (int)pre_time->tv_sec, (int)time.tv_sec,
  290. (int)battery_duration_time[duration_type].tv_sec);
  291. pre_time->tv_sec = time.tv_sec;
  292. pre_time->tv_nsec = time.tv_nsec;
  293. }
  294. unsigned int mt_battery_get_duration_time(BATTERY_TIME_ENUM duration_type)
  295. {
  296. return battery_duration_time[duration_type].tv_sec;
  297. }
  298. struct timespec mt_battery_get_duration_time_act(BATTERY_TIME_ENUM duration_type)
  299. {
  300. return battery_duration_time[duration_type];
  301. }
  302. void charging_suspend_enable(void)
  303. {
  304. unsigned int charging_enable = true;
  305. suspend_discharging = 0;
  306. battery_charging_control(CHARGING_CMD_ENABLE, &charging_enable);
  307. }
  308. void charging_suspend_disable(void)
  309. {
  310. unsigned int charging_enable = false;
  311. suspend_discharging = 1;
  312. battery_charging_control(CHARGING_CMD_ENABLE, &charging_enable);
  313. }
  314. int read_tbat_value(void)
  315. {
  316. return BMT_status.temperature;
  317. }
  318. int get_charger_detect_status(void)
  319. {
  320. kal_bool chr_status;
  321. battery_charging_control(CHARGING_CMD_GET_CHARGER_DET_STATUS, &chr_status);
  322. return chr_status;
  323. }
  324. #if defined(CONFIG_MTK_POWER_EXT_DETECT)
  325. kal_bool bat_is_ext_power(void)
  326. {
  327. kal_bool pwr_src = 0;
  328. battery_charging_control(CHARGING_CMD_GET_POWER_SOURCE, &pwr_src);
  329. battery_log(BAT_LOG_FULL, "[BAT_IS_EXT_POWER] is_ext_power = %d\n", pwr_src);
  330. return pwr_src;
  331. }
  332. #endif
  333. // Disable LED when DTU boot and pulg OTG by xmwuwh@20161118--start
  334. #ifdef CONFIG_AW2015
  335. static int LED_ON_COUNT = 1;
  336. #endif
  337. // Disable LED when DTU boot and pulg OTG by xmwuwh@20161118--end
  338. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  339. /* // PMIC PCHR Related APIs */
  340. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  341. kal_bool upmu_is_chr_det(void)
  342. {
  343. #if !defined(CONFIG_POWER_EXT)
  344. unsigned int tmp32;
  345. #endif
  346. if (!g_bat_init_flag) {
  347. battery_log(BAT_LOG_CRTI,
  348. "[upmu_is_chr_det] battery thread not ready, will do after bettery init.\n");
  349. return KAL_FALSE;
  350. }
  351. #if defined(CONFIG_POWER_EXT)
  352. /* return KAL_TRUE; */
  353. return get_charger_detect_status();
  354. #else
  355. if (suspend_discharging == 1)
  356. return KAL_FALSE;
  357. tmp32 = get_charger_detect_status();
  358. #ifdef CONFIG_MTK_POWER_EXT_DETECT
  359. if (KAL_TRUE == bat_is_ext_power())
  360. return tmp32;
  361. #endif
  362. if (tmp32 == 0)
  363. return KAL_FALSE;
  364. #if !defined(CONFIG_MTK_DUAL_INPUT_CHARGER_SUPPORT)
  365. if (mt_usb_is_device()) {
  366. battery_log(BAT_LOG_FULL, "[upmu_is_chr_det] Charger exist and USB is not host\n");
  367. return KAL_TRUE;
  368. }
  369. // Disable LED when DTU boot and pulg OTG by xmwuwh@20161118--start
  370. #ifdef CONFIG_AW2015
  371. if(LED_ON_COUNT)
  372. {
  373. //pr_err("xmwuwh close LED\n");
  374. AW2015_LED_OFF();
  375. LED_ON_COUNT--;
  376. }
  377. #endif
  378. // Disable LED when DTU boot and pulg OTG by xmwuwh@20161118--end
  379. battery_log(BAT_LOG_CRTI, "[upmu_is_chr_det] Charger exist but USB is host\n");
  380. return KAL_FALSE;
  381. #else
  382. return KAL_TRUE;
  383. #endif
  384. #endif
  385. }
  386. EXPORT_SYMBOL(upmu_is_chr_det);
  387. void wake_up_bat(void)
  388. {
  389. battery_log(BAT_LOG_CRTI, "[BATTERY] wake_up_bat. \r\n");
  390. chr_wake_up_bat = KAL_TRUE;
  391. bat_routine_thread_timeout = KAL_TRUE;
  392. battery_meter_reset_sleep_time();
  393. if (!Is_In_IPOH)
  394. wake_up(&bat_routine_wq);
  395. else
  396. pending_wake_up_bat = TRUE;
  397. }
  398. EXPORT_SYMBOL(wake_up_bat);
  399. void wake_up_bat3(void)
  400. {
  401. battery_log(BAT_LOG_CRTI, "[BATTERY] wake_up_bat 3 \r\n");
  402. wake_up(&bat_routine_wq);
  403. }
  404. EXPORT_SYMBOL(wake_up_bat3);
  405. static ssize_t bat_log_write(struct file *filp, const char __user *buff, size_t len, loff_t *data)
  406. {
  407. if (copy_from_user(&proc_bat_data, buff, len)) {
  408. battery_log(BAT_LOG_FULL, "bat_log_write error.\n");
  409. return -EFAULT;
  410. }
  411. if (proc_bat_data[0] == '1') {
  412. battery_log(BAT_LOG_CRTI, "enable battery driver log system\n");
  413. Enable_BATDRV_LOG = 1;
  414. } else if (proc_bat_data[0] == '2') {
  415. battery_log(BAT_LOG_CRTI, "enable battery driver log system:2\n");
  416. Enable_BATDRV_LOG = 2;
  417. } else {
  418. battery_log(BAT_LOG_CRTI, "Disable battery driver log system\n");
  419. Enable_BATDRV_LOG = 0;
  420. }
  421. return len;
  422. }
  423. static const struct file_operations bat_proc_fops = {
  424. .write = bat_log_write,
  425. };
  426. int init_proc_log(void)
  427. {
  428. int ret = 0;
  429. #if 1
  430. proc_create("batdrv_log", 0644, NULL, &bat_proc_fops);
  431. battery_log(BAT_LOG_CRTI, "proc_create bat_proc_fops\n");
  432. #else
  433. proc_entry = create_proc_entry("batdrv_log", 0644, NULL);
  434. if (proc_entry == NULL) {
  435. ret = -ENOMEM;
  436. battery_log(BAT_LOG_FULL, "init_proc_log: Couldn't create proc entry\n");
  437. } else {
  438. proc_entry->write_proc = bat_log_write;
  439. battery_log(BAT_LOG_CRTI, "init_proc_log loaded.\n");
  440. }
  441. #endif
  442. return ret;
  443. }
  444. static int wireless_get_property(struct power_supply *psy,
  445. enum power_supply_property psp, union power_supply_propval *val)
  446. {
  447. int ret = 0;
  448. struct wireless_data *data = container_of(psy, struct wireless_data, psy);
  449. switch (psp) {
  450. case POWER_SUPPLY_PROP_ONLINE:
  451. val->intval = data->WIRELESS_ONLINE;
  452. break;
  453. default:
  454. ret = -EINVAL;
  455. break;
  456. }
  457. return ret;
  458. }
  459. static int ac_get_property(struct power_supply *psy,
  460. enum power_supply_property psp, union power_supply_propval *val)
  461. {
  462. int ret = 0;
  463. struct ac_data *data = container_of(psy, struct ac_data, psy);
  464. switch (psp) {
  465. case POWER_SUPPLY_PROP_ONLINE:
  466. val->intval = data->AC_ONLINE;
  467. break;
  468. default:
  469. ret = -EINVAL;
  470. break;
  471. }
  472. return ret;
  473. }
  474. static int usb_get_property(struct power_supply *psy,
  475. enum power_supply_property psp, union power_supply_propval *val)
  476. {
  477. int ret = 0;
  478. struct usb_data *data = container_of(psy, struct usb_data, psy);
  479. switch (psp) {
  480. case POWER_SUPPLY_PROP_ONLINE:
  481. #if defined(CONFIG_POWER_EXT)
  482. /* #if 0 */
  483. data->USB_ONLINE = 1;
  484. val->intval = data->USB_ONLINE;
  485. #else
  486. #if defined(CONFIG_MTK_POWER_EXT_DETECT)
  487. if (KAL_TRUE == bat_is_ext_power())
  488. data->USB_ONLINE = 1;
  489. #endif
  490. val->intval = data->USB_ONLINE;
  491. #endif
  492. break;
  493. default:
  494. ret = -EINVAL;
  495. break;
  496. }
  497. return ret;
  498. }
  499. static int battery_get_property(struct power_supply *psy,
  500. enum power_supply_property psp, union power_supply_propval *val)
  501. {
  502. int ret = 0;
  503. struct battery_data *data = container_of(psy, struct battery_data, psy);
  504. switch (psp) {
  505. case POWER_SUPPLY_PROP_STATUS:
  506. val->intval = data->BAT_STATUS;
  507. break;
  508. case POWER_SUPPLY_PROP_HEALTH:
  509. val->intval = data->BAT_HEALTH;
  510. break;
  511. case POWER_SUPPLY_PROP_PRESENT:
  512. val->intval = data->BAT_PRESENT;
  513. break;
  514. case POWER_SUPPLY_PROP_TECHNOLOGY:
  515. val->intval = data->BAT_TECHNOLOGY;
  516. break;
  517. case POWER_SUPPLY_PROP_CAPACITY:
  518. val->intval = data->BAT_CAPACITY;
  519. break;
  520. case POWER_SUPPLY_PROP_batt_vol:
  521. val->intval = data->BAT_batt_vol;
  522. break;
  523. case POWER_SUPPLY_PROP_batt_temp:
  524. val->intval = data->BAT_batt_temp;
  525. break;
  526. case POWER_SUPPLY_PROP_TemperatureR:
  527. val->intval = data->BAT_TemperatureR;
  528. break;
  529. case POWER_SUPPLY_PROP_TempBattVoltage:
  530. val->intval = data->BAT_TempBattVoltage;
  531. break;
  532. case POWER_SUPPLY_PROP_InstatVolt:
  533. val->intval = data->BAT_InstatVolt;
  534. break;
  535. case POWER_SUPPLY_PROP_BatteryAverageCurrent:
  536. val->intval = data->BAT_BatteryAverageCurrent;
  537. break;
  538. case POWER_SUPPLY_PROP_BatterySenseVoltage:
  539. val->intval = data->BAT_BatterySenseVoltage;
  540. break;
  541. case POWER_SUPPLY_PROP_ISenseVoltage:
  542. val->intval = data->BAT_ISenseVoltage;
  543. break;
  544. case POWER_SUPPLY_PROP_ChargerVoltage:
  545. val->intval = data->BAT_ChargerVoltage;
  546. break;
  547. /* Dual battery */
  548. case POWER_SUPPLY_PROP_status_smb:
  549. val->intval = data->status_smb;
  550. break;
  551. case POWER_SUPPLY_PROP_capacity_smb:
  552. val->intval = data->capacity_smb;
  553. break;
  554. case POWER_SUPPLY_PROP_present_smb:
  555. val->intval = data->present_smb;
  556. break;
  557. case POWER_SUPPLY_PROP_adjust_power:
  558. val->intval = data->adjust_power;
  559. break;
  560. default:
  561. ret = -EINVAL;
  562. break;
  563. }
  564. return ret;
  565. }
  566. /* wireless_data initialization */
  567. static struct wireless_data wireless_main = {
  568. .psy = {
  569. .name = "wireless",
  570. .type = POWER_SUPPLY_TYPE_WIRELESS,
  571. .properties = wireless_props,
  572. .num_properties = ARRAY_SIZE(wireless_props),
  573. .get_property = wireless_get_property,
  574. },
  575. .WIRELESS_ONLINE = 0,
  576. };
  577. /* ac_data initialization */
  578. static struct ac_data ac_main = {
  579. .psy = {
  580. .name = "ac",
  581. .type = POWER_SUPPLY_TYPE_MAINS,
  582. .properties = ac_props,
  583. .num_properties = ARRAY_SIZE(ac_props),
  584. .get_property = ac_get_property,
  585. },
  586. .AC_ONLINE = 0,
  587. };
  588. /* usb_data initialization */
  589. static struct usb_data usb_main = {
  590. .psy = {
  591. .name = "usb",
  592. .type = POWER_SUPPLY_TYPE_USB,
  593. .properties = usb_props,
  594. .num_properties = ARRAY_SIZE(usb_props),
  595. .get_property = usb_get_property,
  596. },
  597. .USB_ONLINE = 0,
  598. };
  599. /* battery_data initialization */
  600. static struct battery_data battery_main = {
  601. .psy = {
  602. .name = "battery",
  603. .type = POWER_SUPPLY_TYPE_BATTERY,
  604. .properties = battery_props,
  605. .num_properties = ARRAY_SIZE(battery_props),
  606. .get_property = battery_get_property,
  607. },
  608. /* CC: modify to have a full power supply status */
  609. #if defined(CONFIG_POWER_EXT)
  610. .BAT_STATUS = POWER_SUPPLY_STATUS_FULL,
  611. .BAT_HEALTH = POWER_SUPPLY_HEALTH_GOOD,
  612. .BAT_PRESENT = 1,
  613. .BAT_TECHNOLOGY = POWER_SUPPLY_TECHNOLOGY_LION,
  614. .BAT_CAPACITY = 100,
  615. .BAT_batt_vol = 4200,
  616. .BAT_batt_temp = 22,
  617. /* Dual battery */
  618. .status_smb = POWER_SUPPLY_STATUS_NOT_CHARGING,
  619. .capacity_smb = 50,
  620. .present_smb = 0,
  621. /* ADB CMD discharging */
  622. .adjust_power = -1,
  623. #else
  624. .BAT_STATUS = POWER_SUPPLY_STATUS_NOT_CHARGING,
  625. .BAT_HEALTH = POWER_SUPPLY_HEALTH_GOOD,
  626. .BAT_PRESENT = 1,
  627. .BAT_TECHNOLOGY = POWER_SUPPLY_TECHNOLOGY_LION,
  628. #if defined(CONFIG_MTK_PUMP_EXPRESS_SUPPORT) || defined(CONFIG_MTK_PUMP_EXPRESS_PLUS_SUPPORT)
  629. .BAT_CAPACITY = -1,
  630. #else
  631. .BAT_CAPACITY = 50,
  632. #endif
  633. .BAT_batt_vol = 0,
  634. .BAT_batt_temp = 0,
  635. /* Dual battery */
  636. .status_smb = POWER_SUPPLY_STATUS_NOT_CHARGING,
  637. .capacity_smb = 50,
  638. .present_smb = 0,
  639. /* ADB CMD discharging */
  640. .adjust_power = -1,
  641. #endif
  642. };
  643. #if !defined(CONFIG_POWER_EXT)
  644. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  645. /* // Create File For EM : ADC_Charger_Voltage */
  646. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  647. static ssize_t show_ADC_Charger_Voltage(struct device *dev, struct device_attribute *attr,
  648. char *buf)
  649. {
  650. battery_log(BAT_LOG_CRTI, "[EM] show_ADC_Charger_Voltage : %d\n", BMT_status.charger_vol);
  651. return sprintf(buf, "%d\n", BMT_status.charger_vol);
  652. }
  653. static ssize_t store_ADC_Charger_Voltage(struct device *dev, struct device_attribute *attr,
  654. const char *buf, size_t size)
  655. {
  656. battery_log(BAT_LOG_CRTI, "[EM] Not Support Write Function\n");
  657. return size;
  658. }
  659. static DEVICE_ATTR(ADC_Charger_Voltage, 0664, show_ADC_Charger_Voltage, store_ADC_Charger_Voltage);
  660. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  661. /* // Create File For EM : ADC_Channel_0_Slope */
  662. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  663. static ssize_t show_ADC_Channel_0_Slope(struct device *dev, struct device_attribute *attr,
  664. char *buf)
  665. {
  666. int ret_value = 1;
  667. ret_value = (*(adc_cali_slop + 0));
  668. battery_log(BAT_LOG_CRTI, "[EM] ADC_Channel_0_Slope : %d\n", ret_value);
  669. return sprintf(buf, "%u\n", ret_value);
  670. }
  671. static ssize_t store_ADC_Channel_0_Slope(struct device *dev, struct device_attribute *attr,
  672. const char *buf, size_t size)
  673. {
  674. battery_log(BAT_LOG_CRTI, "[EM] Not Support Write Function\n");
  675. return size;
  676. }
  677. static DEVICE_ATTR(ADC_Channel_0_Slope, 0664, show_ADC_Channel_0_Slope, store_ADC_Channel_0_Slope);
  678. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  679. /* // Create File For EM : ADC_Channel_1_Slope */
  680. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  681. static ssize_t show_ADC_Channel_1_Slope(struct device *dev, struct device_attribute *attr,
  682. char *buf)
  683. {
  684. int ret_value = 1;
  685. ret_value = (*(adc_cali_slop + 1));
  686. battery_log(BAT_LOG_CRTI, "[EM] ADC_Channel_1_Slope : %d\n", ret_value);
  687. return sprintf(buf, "%u\n", ret_value);
  688. }
  689. static ssize_t store_ADC_Channel_1_Slope(struct device *dev, struct device_attribute *attr,
  690. const char *buf, size_t size)
  691. {
  692. battery_log(BAT_LOG_CRTI, "[EM] Not Support Write Function\n");
  693. return size;
  694. }
  695. static DEVICE_ATTR(ADC_Channel_1_Slope, 0664, show_ADC_Channel_1_Slope, store_ADC_Channel_1_Slope);
  696. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  697. /* // Create File For EM : ADC_Channel_2_Slope */
  698. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  699. static ssize_t show_ADC_Channel_2_Slope(struct device *dev, struct device_attribute *attr,
  700. char *buf)
  701. {
  702. int ret_value = 1;
  703. ret_value = (*(adc_cali_slop + 2));
  704. battery_log(BAT_LOG_CRTI, "[EM] ADC_Channel_2_Slope : %d\n", ret_value);
  705. return sprintf(buf, "%u\n", ret_value);
  706. }
  707. static ssize_t store_ADC_Channel_2_Slope(struct device *dev, struct device_attribute *attr,
  708. const char *buf, size_t size)
  709. {
  710. battery_log(BAT_LOG_CRTI, "[EM] Not Support Write Function\n");
  711. return size;
  712. }
  713. static DEVICE_ATTR(ADC_Channel_2_Slope, 0664, show_ADC_Channel_2_Slope, store_ADC_Channel_2_Slope);
  714. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  715. /* // Create File For EM : ADC_Channel_3_Slope */
  716. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  717. static ssize_t show_ADC_Channel_3_Slope(struct device *dev, struct device_attribute *attr,
  718. char *buf)
  719. {
  720. int ret_value = 1;
  721. ret_value = (*(adc_cali_slop + 3));
  722. battery_log(BAT_LOG_CRTI, "[EM] ADC_Channel_3_Slope : %d\n", ret_value);
  723. return sprintf(buf, "%u\n", ret_value);
  724. }
  725. static ssize_t store_ADC_Channel_3_Slope(struct device *dev, struct device_attribute *attr,
  726. const char *buf, size_t size)
  727. {
  728. battery_log(BAT_LOG_CRTI, "[EM] Not Support Write Function\n");
  729. return size;
  730. }
  731. static DEVICE_ATTR(ADC_Channel_3_Slope, 0664, show_ADC_Channel_3_Slope, store_ADC_Channel_3_Slope);
  732. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  733. /* // Create File For EM : ADC_Channel_4_Slope */
  734. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  735. static ssize_t show_ADC_Channel_4_Slope(struct device *dev, struct device_attribute *attr,
  736. char *buf)
  737. {
  738. int ret_value = 1;
  739. ret_value = (*(adc_cali_slop + 4));
  740. battery_log(BAT_LOG_CRTI, "[EM] ADC_Channel_4_Slope : %d\n", ret_value);
  741. return sprintf(buf, "%u\n", ret_value);
  742. }
  743. static ssize_t store_ADC_Channel_4_Slope(struct device *dev, struct device_attribute *attr,
  744. const char *buf, size_t size)
  745. {
  746. battery_log(BAT_LOG_CRTI, "[EM] Not Support Write Function\n");
  747. return size;
  748. }
  749. static DEVICE_ATTR(ADC_Channel_4_Slope, 0664, show_ADC_Channel_4_Slope, store_ADC_Channel_4_Slope);
  750. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  751. /* // Create File For EM : ADC_Channel_5_Slope */
  752. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  753. static ssize_t show_ADC_Channel_5_Slope(struct device *dev, struct device_attribute *attr,
  754. char *buf)
  755. {
  756. int ret_value = 1;
  757. ret_value = (*(adc_cali_slop + 5));
  758. battery_log(BAT_LOG_CRTI, "[EM] ADC_Channel_5_Slope : %d\n", ret_value);
  759. return sprintf(buf, "%u\n", ret_value);
  760. }
  761. static ssize_t store_ADC_Channel_5_Slope(struct device *dev, struct device_attribute *attr,
  762. const char *buf, size_t size)
  763. {
  764. battery_log(BAT_LOG_CRTI, "[EM] Not Support Write Function\n");
  765. return size;
  766. }
  767. static DEVICE_ATTR(ADC_Channel_5_Slope, 0664, show_ADC_Channel_5_Slope, store_ADC_Channel_5_Slope);
  768. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  769. /* // Create File For EM : ADC_Channel_6_Slope */
  770. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  771. static ssize_t show_ADC_Channel_6_Slope(struct device *dev, struct device_attribute *attr,
  772. char *buf)
  773. {
  774. int ret_value = 1;
  775. ret_value = (*(adc_cali_slop + 6));
  776. battery_log(BAT_LOG_CRTI, "[EM] ADC_Channel_6_Slope : %d\n", ret_value);
  777. return sprintf(buf, "%u\n", ret_value);
  778. }
  779. static ssize_t store_ADC_Channel_6_Slope(struct device *dev, struct device_attribute *attr,
  780. const char *buf, size_t size)
  781. {
  782. battery_log(BAT_LOG_CRTI, "[EM] Not Support Write Function\n");
  783. return size;
  784. }
  785. static DEVICE_ATTR(ADC_Channel_6_Slope, 0664, show_ADC_Channel_6_Slope, store_ADC_Channel_6_Slope);
  786. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  787. /* // Create File For EM : ADC_Channel_7_Slope */
  788. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  789. static ssize_t show_ADC_Channel_7_Slope(struct device *dev, struct device_attribute *attr,
  790. char *buf)
  791. {
  792. int ret_value = 1;
  793. ret_value = (*(adc_cali_slop + 7));
  794. battery_log(BAT_LOG_CRTI, "[EM] ADC_Channel_7_Slope : %d\n", ret_value);
  795. return sprintf(buf, "%u\n", ret_value);
  796. }
  797. static ssize_t store_ADC_Channel_7_Slope(struct device *dev, struct device_attribute *attr,
  798. const char *buf, size_t size)
  799. {
  800. battery_log(BAT_LOG_CRTI, "[EM] Not Support Write Function\n");
  801. return size;
  802. }
  803. static DEVICE_ATTR(ADC_Channel_7_Slope, 0664, show_ADC_Channel_7_Slope, store_ADC_Channel_7_Slope);
  804. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  805. /* // Create File For EM : ADC_Channel_8_Slope */
  806. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  807. static ssize_t show_ADC_Channel_8_Slope(struct device *dev, struct device_attribute *attr,
  808. char *buf)
  809. {
  810. int ret_value = 1;
  811. ret_value = (*(adc_cali_slop + 8));
  812. battery_log(BAT_LOG_CRTI, "[EM] ADC_Channel_8_Slope : %d\n", ret_value);
  813. return sprintf(buf, "%u\n", ret_value);
  814. }
  815. static ssize_t store_ADC_Channel_8_Slope(struct device *dev, struct device_attribute *attr,
  816. const char *buf, size_t size)
  817. {
  818. battery_log(BAT_LOG_CRTI, "[EM] Not Support Write Function\n");
  819. return size;
  820. }
  821. static DEVICE_ATTR(ADC_Channel_8_Slope, 0664, show_ADC_Channel_8_Slope, store_ADC_Channel_8_Slope);
  822. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  823. /* // Create File For EM : ADC_Channel_9_Slope */
  824. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  825. static ssize_t show_ADC_Channel_9_Slope(struct device *dev, struct device_attribute *attr,
  826. char *buf)
  827. {
  828. int ret_value = 1;
  829. ret_value = (*(adc_cali_slop + 9));
  830. battery_log(BAT_LOG_CRTI, "[EM] ADC_Channel_9_Slope : %d\n", ret_value);
  831. return sprintf(buf, "%u\n", ret_value);
  832. }
  833. static ssize_t store_ADC_Channel_9_Slope(struct device *dev, struct device_attribute *attr,
  834. const char *buf, size_t size)
  835. {
  836. battery_log(BAT_LOG_CRTI, "[EM] Not Support Write Function\n");
  837. return size;
  838. }
  839. static DEVICE_ATTR(ADC_Channel_9_Slope, 0664, show_ADC_Channel_9_Slope, store_ADC_Channel_9_Slope);
  840. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  841. /* // Create File For EM : ADC_Channel_10_Slope */
  842. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  843. static ssize_t show_ADC_Channel_10_Slope(struct device *dev, struct device_attribute *attr,
  844. char *buf)
  845. {
  846. int ret_value = 1;
  847. ret_value = (*(adc_cali_slop + 10));
  848. battery_log(BAT_LOG_CRTI, "[EM] ADC_Channel_10_Slope : %d\n", ret_value);
  849. return sprintf(buf, "%u\n", ret_value);
  850. }
  851. static ssize_t store_ADC_Channel_10_Slope(struct device *dev, struct device_attribute *attr,
  852. const char *buf, size_t size)
  853. {
  854. battery_log(BAT_LOG_CRTI, "[EM] Not Support Write Function\n");
  855. return size;
  856. }
  857. static DEVICE_ATTR(ADC_Channel_10_Slope, 0664, show_ADC_Channel_10_Slope,
  858. store_ADC_Channel_10_Slope);
  859. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  860. /* // Create File For EM : ADC_Channel_11_Slope */
  861. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  862. static ssize_t show_ADC_Channel_11_Slope(struct device *dev, struct device_attribute *attr,
  863. char *buf)
  864. {
  865. int ret_value = 1;
  866. ret_value = (*(adc_cali_slop + 11));
  867. battery_log(BAT_LOG_CRTI, "[EM] ADC_Channel_11_Slope : %d\n", ret_value);
  868. return sprintf(buf, "%u\n", ret_value);
  869. }
  870. static ssize_t store_ADC_Channel_11_Slope(struct device *dev, struct device_attribute *attr,
  871. const char *buf, size_t size)
  872. {
  873. battery_log(BAT_LOG_CRTI, "[EM] Not Support Write Function\n");
  874. return size;
  875. }
  876. static DEVICE_ATTR(ADC_Channel_11_Slope, 0664, show_ADC_Channel_11_Slope,
  877. store_ADC_Channel_11_Slope);
  878. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  879. /* // Create File For EM : ADC_Channel_12_Slope */
  880. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  881. static ssize_t show_ADC_Channel_12_Slope(struct device *dev, struct device_attribute *attr,
  882. char *buf)
  883. {
  884. int ret_value = 1;
  885. ret_value = (*(adc_cali_slop + 12));
  886. battery_log(BAT_LOG_CRTI, "[EM] ADC_Channel_12_Slope : %d\n", ret_value);
  887. return sprintf(buf, "%u\n", ret_value);
  888. }
  889. static ssize_t store_ADC_Channel_12_Slope(struct device *dev, struct device_attribute *attr,
  890. const char *buf, size_t size)
  891. {
  892. battery_log(BAT_LOG_CRTI, "[EM] Not Support Write Function\n");
  893. return size;
  894. }
  895. static DEVICE_ATTR(ADC_Channel_12_Slope, 0664, show_ADC_Channel_12_Slope,
  896. store_ADC_Channel_12_Slope);
  897. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  898. /* // Create File For EM : ADC_Channel_13_Slope */
  899. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  900. static ssize_t show_ADC_Channel_13_Slope(struct device *dev, struct device_attribute *attr,
  901. char *buf)
  902. {
  903. int ret_value = 1;
  904. ret_value = (*(adc_cali_slop + 13));
  905. battery_log(BAT_LOG_CRTI, "[EM] ADC_Channel_13_Slope : %d\n", ret_value);
  906. return sprintf(buf, "%u\n", ret_value);
  907. }
  908. static ssize_t store_ADC_Channel_13_Slope(struct device *dev, struct device_attribute *attr,
  909. const char *buf, size_t size)
  910. {
  911. battery_log(BAT_LOG_CRTI, "[EM] Not Support Write Function\n");
  912. return size;
  913. }
  914. static DEVICE_ATTR(ADC_Channel_13_Slope, 0664, show_ADC_Channel_13_Slope,
  915. store_ADC_Channel_13_Slope);
  916. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  917. /* // Create File For EM : ADC_Channel_0_Offset */
  918. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  919. static ssize_t show_ADC_Channel_0_Offset(struct device *dev, struct device_attribute *attr,
  920. char *buf)
  921. {
  922. int ret_value = 1;
  923. ret_value = (*(adc_cali_offset + 0));
  924. battery_log(BAT_LOG_CRTI, "[EM] ADC_Channel_0_Offset : %d\n", ret_value);
  925. return sprintf(buf, "%u\n", ret_value);
  926. }
  927. static ssize_t store_ADC_Channel_0_Offset(struct device *dev, struct device_attribute *attr,
  928. const char *buf, size_t size)
  929. {
  930. battery_log(BAT_LOG_CRTI, "[EM] Not Support Write Function\n");
  931. return size;
  932. }
  933. static DEVICE_ATTR(ADC_Channel_0_Offset, 0664, show_ADC_Channel_0_Offset,
  934. store_ADC_Channel_0_Offset);
  935. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  936. /* // Create File For EM : ADC_Channel_1_Offset */
  937. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  938. static ssize_t show_ADC_Channel_1_Offset(struct device *dev, struct device_attribute *attr,
  939. char *buf)
  940. {
  941. int ret_value = 1;
  942. ret_value = (*(adc_cali_offset + 1));
  943. battery_log(BAT_LOG_CRTI, "[EM] ADC_Channel_1_Offset : %d\n", ret_value);
  944. return sprintf(buf, "%u\n", ret_value);
  945. }
  946. static ssize_t store_ADC_Channel_1_Offset(struct device *dev, struct device_attribute *attr,
  947. const char *buf, size_t size)
  948. {
  949. battery_log(BAT_LOG_CRTI, "[EM] Not Support Write Function\n");
  950. return size;
  951. }
  952. static DEVICE_ATTR(ADC_Channel_1_Offset, 0664, show_ADC_Channel_1_Offset,
  953. store_ADC_Channel_1_Offset);
  954. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  955. /* // Create File For EM : ADC_Channel_2_Offset */
  956. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  957. static ssize_t show_ADC_Channel_2_Offset(struct device *dev, struct device_attribute *attr,
  958. char *buf)
  959. {
  960. int ret_value = 1;
  961. ret_value = (*(adc_cali_offset + 2));
  962. battery_log(BAT_LOG_CRTI, "[EM] ADC_Channel_2_Offset : %d\n", ret_value);
  963. return sprintf(buf, "%u\n", ret_value);
  964. }
  965. static ssize_t store_ADC_Channel_2_Offset(struct device *dev, struct device_attribute *attr,
  966. const char *buf, size_t size)
  967. {
  968. battery_log(BAT_LOG_CRTI, "[EM] Not Support Write Function\n");
  969. return size;
  970. }
  971. static DEVICE_ATTR(ADC_Channel_2_Offset, 0664, show_ADC_Channel_2_Offset,
  972. store_ADC_Channel_2_Offset);
  973. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  974. /* // Create File For EM : ADC_Channel_3_Offset */
  975. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  976. static ssize_t show_ADC_Channel_3_Offset(struct device *dev, struct device_attribute *attr,
  977. char *buf)
  978. {
  979. int ret_value = 1;
  980. ret_value = (*(adc_cali_offset + 3));
  981. battery_log(BAT_LOG_CRTI, "[EM] ADC_Channel_3_Offset : %d\n", ret_value);
  982. return sprintf(buf, "%u\n", ret_value);
  983. }
  984. static ssize_t store_ADC_Channel_3_Offset(struct device *dev, struct device_attribute *attr,
  985. const char *buf, size_t size)
  986. {
  987. battery_log(BAT_LOG_CRTI, "[EM] Not Support Write Function\n");
  988. return size;
  989. }
  990. static DEVICE_ATTR(ADC_Channel_3_Offset, 0664, show_ADC_Channel_3_Offset,
  991. store_ADC_Channel_3_Offset);
  992. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  993. /* // Create File For EM : ADC_Channel_4_Offset */
  994. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  995. static ssize_t show_ADC_Channel_4_Offset(struct device *dev, struct device_attribute *attr,
  996. char *buf)
  997. {
  998. int ret_value = 1;
  999. ret_value = (*(adc_cali_offset + 4));
  1000. battery_log(BAT_LOG_CRTI, "[EM] ADC_Channel_4_Offset : %d\n", ret_value);
  1001. return sprintf(buf, "%u\n", ret_value);
  1002. }
  1003. static ssize_t store_ADC_Channel_4_Offset(struct device *dev, struct device_attribute *attr,
  1004. const char *buf, size_t size)
  1005. {
  1006. battery_log(BAT_LOG_CRTI, "[EM] Not Support Write Function\n");
  1007. return size;
  1008. }
  1009. static DEVICE_ATTR(ADC_Channel_4_Offset, 0664, show_ADC_Channel_4_Offset,
  1010. store_ADC_Channel_4_Offset);
  1011. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  1012. /* // Create File For EM : ADC_Channel_5_Offset */
  1013. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  1014. static ssize_t show_ADC_Channel_5_Offset(struct device *dev, struct device_attribute *attr,
  1015. char *buf)
  1016. {
  1017. int ret_value = 1;
  1018. ret_value = (*(adc_cali_offset + 5));
  1019. battery_log(BAT_LOG_CRTI, "[EM] ADC_Channel_5_Offset : %d\n", ret_value);
  1020. return sprintf(buf, "%u\n", ret_value);
  1021. }
  1022. static ssize_t store_ADC_Channel_5_Offset(struct device *dev, struct device_attribute *attr,
  1023. const char *buf, size_t size)
  1024. {
  1025. battery_log(BAT_LOG_CRTI, "[EM] Not Support Write Function\n");
  1026. return size;
  1027. }
  1028. static DEVICE_ATTR(ADC_Channel_5_Offset, 0664, show_ADC_Channel_5_Offset,
  1029. store_ADC_Channel_5_Offset);
  1030. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  1031. /* // Create File For EM : ADC_Channel_6_Offset */
  1032. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  1033. static ssize_t show_ADC_Channel_6_Offset(struct device *dev, struct device_attribute *attr,
  1034. char *buf)
  1035. {
  1036. int ret_value = 1;
  1037. ret_value = (*(adc_cali_offset + 6));
  1038. battery_log(BAT_LOG_CRTI, "[EM] ADC_Channel_6_Offset : %d\n", ret_value);
  1039. return sprintf(buf, "%u\n", ret_value);
  1040. }
  1041. static ssize_t store_ADC_Channel_6_Offset(struct device *dev, struct device_attribute *attr,
  1042. const char *buf, size_t size)
  1043. {
  1044. battery_log(BAT_LOG_CRTI, "[EM] Not Support Write Function\n");
  1045. return size;
  1046. }
  1047. static DEVICE_ATTR(ADC_Channel_6_Offset, 0664, show_ADC_Channel_6_Offset,
  1048. store_ADC_Channel_6_Offset);
  1049. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  1050. /* // Create File For EM : ADC_Channel_7_Offset */
  1051. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  1052. static ssize_t show_ADC_Channel_7_Offset(struct device *dev, struct device_attribute *attr,
  1053. char *buf)
  1054. {
  1055. int ret_value = 1;
  1056. ret_value = (*(adc_cali_offset + 7));
  1057. battery_log(BAT_LOG_CRTI, "[EM] ADC_Channel_7_Offset : %d\n", ret_value);
  1058. return sprintf(buf, "%u\n", ret_value);
  1059. }
  1060. static ssize_t store_ADC_Channel_7_Offset(struct device *dev, struct device_attribute *attr,
  1061. const char *buf, size_t size)
  1062. {
  1063. battery_log(BAT_LOG_CRTI, "[EM] Not Support Write Function\n");
  1064. return size;
  1065. }
  1066. static DEVICE_ATTR(ADC_Channel_7_Offset, 0664, show_ADC_Channel_7_Offset,
  1067. store_ADC_Channel_7_Offset);
  1068. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  1069. /* // Create File For EM : ADC_Channel_8_Offset */
  1070. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  1071. static ssize_t show_ADC_Channel_8_Offset(struct device *dev, struct device_attribute *attr,
  1072. char *buf)
  1073. {
  1074. int ret_value = 1;
  1075. ret_value = (*(adc_cali_offset + 8));
  1076. battery_log(BAT_LOG_CRTI, "[EM] ADC_Channel_8_Offset : %d\n", ret_value);
  1077. return sprintf(buf, "%u\n", ret_value);
  1078. }
  1079. static ssize_t store_ADC_Channel_8_Offset(struct device *dev, struct device_attribute *attr,
  1080. const char *buf, size_t size)
  1081. {
  1082. battery_log(BAT_LOG_CRTI, "[EM] Not Support Write Function\n");
  1083. return size;
  1084. }
  1085. static DEVICE_ATTR(ADC_Channel_8_Offset, 0664, show_ADC_Channel_8_Offset,
  1086. store_ADC_Channel_8_Offset);
  1087. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  1088. /* // Create File For EM : ADC_Channel_9_Offset */
  1089. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  1090. static ssize_t show_ADC_Channel_9_Offset(struct device *dev, struct device_attribute *attr,
  1091. char *buf)
  1092. {
  1093. int ret_value = 1;
  1094. ret_value = (*(adc_cali_offset + 9));
  1095. battery_log(BAT_LOG_CRTI, "[EM] ADC_Channel_9_Offset : %d\n", ret_value);
  1096. return sprintf(buf, "%u\n", ret_value);
  1097. }
  1098. static ssize_t store_ADC_Channel_9_Offset(struct device *dev, struct device_attribute *attr,
  1099. const char *buf, size_t size)
  1100. {
  1101. battery_log(BAT_LOG_CRTI, "[EM] Not Support Write Function\n");
  1102. return size;
  1103. }
  1104. static DEVICE_ATTR(ADC_Channel_9_Offset, 0664, show_ADC_Channel_9_Offset,
  1105. store_ADC_Channel_9_Offset);
  1106. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  1107. /* // Create File For EM : ADC_Channel_10_Offset */
  1108. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  1109. static ssize_t show_ADC_Channel_10_Offset(struct device *dev, struct device_attribute *attr,
  1110. char *buf)
  1111. {
  1112. int ret_value = 1;
  1113. ret_value = (*(adc_cali_offset + 10));
  1114. battery_log(BAT_LOG_CRTI, "[EM] ADC_Channel_10_Offset : %d\n", ret_value);
  1115. return sprintf(buf, "%u\n", ret_value);
  1116. }
  1117. static ssize_t store_ADC_Channel_10_Offset(struct device *dev, struct device_attribute *attr,
  1118. const char *buf, size_t size)
  1119. {
  1120. battery_log(BAT_LOG_CRTI, "[EM] Not Support Write Function\n");
  1121. return size;
  1122. }
  1123. static DEVICE_ATTR(ADC_Channel_10_Offset, 0664, show_ADC_Channel_10_Offset,
  1124. store_ADC_Channel_10_Offset);
  1125. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  1126. /* // Create File For EM : ADC_Channel_11_Offset */
  1127. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  1128. static ssize_t show_ADC_Channel_11_Offset(struct device *dev, struct device_attribute *attr,
  1129. char *buf)
  1130. {
  1131. int ret_value = 1;
  1132. ret_value = (*(adc_cali_offset + 11));
  1133. battery_log(BAT_LOG_CRTI, "[EM] ADC_Channel_11_Offset : %d\n", ret_value);
  1134. return sprintf(buf, "%u\n", ret_value);
  1135. }
  1136. static ssize_t store_ADC_Channel_11_Offset(struct device *dev, struct device_attribute *attr,
  1137. const char *buf, size_t size)
  1138. {
  1139. battery_log(BAT_LOG_CRTI, "[EM] Not Support Write Function\n");
  1140. return size;
  1141. }
  1142. static DEVICE_ATTR(ADC_Channel_11_Offset, 0664, show_ADC_Channel_11_Offset,
  1143. store_ADC_Channel_11_Offset);
  1144. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  1145. /* // Create File For EM : ADC_Channel_12_Offset */
  1146. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  1147. static ssize_t show_ADC_Channel_12_Offset(struct device *dev, struct device_attribute *attr,
  1148. char *buf)
  1149. {
  1150. int ret_value = 1;
  1151. ret_value = (*(adc_cali_offset + 12));
  1152. battery_log(BAT_LOG_CRTI, "[EM] ADC_Channel_12_Offset : %d\n", ret_value);
  1153. return sprintf(buf, "%u\n", ret_value);
  1154. }
  1155. static ssize_t store_ADC_Channel_12_Offset(struct device *dev, struct device_attribute *attr,
  1156. const char *buf, size_t size)
  1157. {
  1158. battery_log(BAT_LOG_CRTI, "[EM] Not Support Write Function\n");
  1159. return size;
  1160. }
  1161. static DEVICE_ATTR(ADC_Channel_12_Offset, 0664, show_ADC_Channel_12_Offset,
  1162. store_ADC_Channel_12_Offset);
  1163. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  1164. /* // Create File For EM : ADC_Channel_13_Offset */
  1165. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  1166. static ssize_t show_ADC_Channel_13_Offset(struct device *dev, struct device_attribute *attr,
  1167. char *buf)
  1168. {
  1169. int ret_value = 1;
  1170. ret_value = (*(adc_cali_offset + 13));
  1171. battery_log(BAT_LOG_CRTI, "[EM] ADC_Channel_13_Offset : %d\n", ret_value);
  1172. return sprintf(buf, "%u\n", ret_value);
  1173. }
  1174. static ssize_t store_ADC_Channel_13_Offset(struct device *dev, struct device_attribute *attr,
  1175. const char *buf, size_t size)
  1176. {
  1177. battery_log(BAT_LOG_CRTI, "[EM] Not Support Write Function\n");
  1178. return size;
  1179. }
  1180. static DEVICE_ATTR(ADC_Channel_13_Offset, 0664, show_ADC_Channel_13_Offset,
  1181. store_ADC_Channel_13_Offset);
  1182. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  1183. /* // Create File For EM : ADC_Channel_Is_Calibration */
  1184. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  1185. static ssize_t show_ADC_Channel_Is_Calibration(struct device *dev, struct device_attribute *attr,
  1186. char *buf)
  1187. {
  1188. int ret_value = 2;
  1189. ret_value = g_ADC_Cali;
  1190. battery_log(BAT_LOG_CRTI, "[EM] ADC_Channel_Is_Calibration : %d\n", ret_value);
  1191. return sprintf(buf, "%u\n", ret_value);
  1192. }
  1193. static ssize_t store_ADC_Channel_Is_Calibration(struct device *dev, struct device_attribute *attr,
  1194. const char *buf, size_t size)
  1195. {
  1196. battery_log(BAT_LOG_CRTI, "[EM] Not Support Write Function\n");
  1197. return size;
  1198. }
  1199. static DEVICE_ATTR(ADC_Channel_Is_Calibration, 0664, show_ADC_Channel_Is_Calibration,
  1200. store_ADC_Channel_Is_Calibration);
  1201. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  1202. /* // Create File For EM : Power_On_Voltage */
  1203. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  1204. static ssize_t show_Power_On_Voltage(struct device *dev, struct device_attribute *attr, char *buf)
  1205. {
  1206. int ret_value = 1;
  1207. ret_value = 3400;
  1208. battery_log(BAT_LOG_CRTI, "[EM] Power_On_Voltage : %d\n", ret_value);
  1209. return sprintf(buf, "%u\n", ret_value);
  1210. }
  1211. static ssize_t store_Power_On_Voltage(struct device *dev, struct device_attribute *attr,
  1212. const char *buf, size_t size)
  1213. {
  1214. battery_log(BAT_LOG_CRTI, "[EM] Not Support Write Function\n");
  1215. return size;
  1216. }
  1217. static DEVICE_ATTR(Power_On_Voltage, 0664, show_Power_On_Voltage, store_Power_On_Voltage);
  1218. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  1219. /* // Create File For EM : Power_Off_Voltage */
  1220. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  1221. static ssize_t show_Power_Off_Voltage(struct device *dev, struct device_attribute *attr, char *buf)
  1222. {
  1223. int ret_value = 1;
  1224. ret_value = 3400;
  1225. battery_log(BAT_LOG_CRTI, "[EM] Power_Off_Voltage : %d\n", ret_value);
  1226. return sprintf(buf, "%u\n", ret_value);
  1227. }
  1228. static ssize_t store_Power_Off_Voltage(struct device *dev, struct device_attribute *attr,
  1229. const char *buf, size_t size)
  1230. {
  1231. battery_log(BAT_LOG_CRTI, "[EM] Not Support Write Function\n");
  1232. return size;
  1233. }
  1234. static DEVICE_ATTR(Power_Off_Voltage, 0664, show_Power_Off_Voltage, store_Power_Off_Voltage);
  1235. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  1236. /* // Create File For EM : Charger_TopOff_Value */
  1237. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  1238. static ssize_t show_Charger_TopOff_Value(struct device *dev, struct device_attribute *attr,
  1239. char *buf)
  1240. {
  1241. int ret_value = 1;
  1242. ret_value = 4110;
  1243. battery_log(BAT_LOG_CRTI, "[EM] Charger_TopOff_Value : %d\n", ret_value);
  1244. return sprintf(buf, "%u\n", ret_value);
  1245. }
  1246. static ssize_t store_Charger_TopOff_Value(struct device *dev, struct device_attribute *attr,
  1247. const char *buf, size_t size)
  1248. {
  1249. battery_log(BAT_LOG_CRTI, "[EM] Not Support Write Function\n");
  1250. return size;
  1251. }
  1252. static DEVICE_ATTR(Charger_TopOff_Value, 0664, show_Charger_TopOff_Value,
  1253. store_Charger_TopOff_Value);
  1254. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  1255. /* // Create File For EM : FG_Battery_CurrentConsumption */
  1256. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  1257. static ssize_t show_FG_Battery_CurrentConsumption(struct device *dev, struct device_attribute *attr,
  1258. char *buf)
  1259. {
  1260. int ret_value = 8888;
  1261. ret_value = battery_meter_get_battery_current();
  1262. battery_log(BAT_LOG_CRTI, "[EM] FG_Battery_CurrentConsumption : %d/10 mA\n", ret_value);
  1263. return sprintf(buf, "%u\n", ret_value);
  1264. }
  1265. static ssize_t store_FG_Battery_CurrentConsumption(struct device *dev,
  1266. struct device_attribute *attr, const char *buf,
  1267. size_t size)
  1268. {
  1269. battery_log(BAT_LOG_CRTI, "[EM] Not Support Write Function\n");
  1270. return size;
  1271. }
  1272. static DEVICE_ATTR(FG_Battery_CurrentConsumption, 0664, show_FG_Battery_CurrentConsumption,
  1273. store_FG_Battery_CurrentConsumption);
  1274. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  1275. /* // Create File For EM : FG_SW_CoulombCounter */
  1276. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  1277. static ssize_t show_FG_SW_CoulombCounter(struct device *dev, struct device_attribute *attr,
  1278. char *buf)
  1279. {
  1280. signed int ret_value = 7777;
  1281. ret_value = battery_meter_get_car();
  1282. battery_log(BAT_LOG_CRTI, "[EM] FG_SW_CoulombCounter : %d\n", ret_value);
  1283. return sprintf(buf, "%u\n", ret_value);
  1284. }
  1285. static ssize_t store_FG_SW_CoulombCounter(struct device *dev, struct device_attribute *attr,
  1286. const char *buf, size_t size)
  1287. {
  1288. battery_log(BAT_LOG_CRTI, "[EM] Not Support Write Function\n");
  1289. return size;
  1290. }
  1291. static DEVICE_ATTR(FG_SW_CoulombCounter, 0664, show_FG_SW_CoulombCounter,
  1292. store_FG_SW_CoulombCounter);
  1293. static ssize_t show_Charging_CallState(struct device *dev, struct device_attribute *attr, char *buf)
  1294. {
  1295. battery_log(BAT_LOG_CRTI, "call state = %d\n", g_call_state);
  1296. return sprintf(buf, "%u\n", g_call_state);
  1297. }
  1298. static ssize_t store_Charging_CallState(struct device *dev, struct device_attribute *attr,
  1299. const char *buf, size_t size)
  1300. {
  1301. if (kstrtouint(buf, 10, &g_call_state) == 0) {
  1302. battery_log(BAT_LOG_CRTI, "call state = %d\n", g_call_state);
  1303. return size;
  1304. }
  1305. /* hidden else, for sscanf format error */
  1306. {
  1307. battery_log(BAT_LOG_CRTI, " bad argument, echo [enable] > current_cmd\n");
  1308. }
  1309. return 0;
  1310. }
  1311. static DEVICE_ATTR(Charging_CallState, 0664, show_Charging_CallState, store_Charging_CallState);
  1312. static ssize_t show_Charger_Type(struct device *dev, struct device_attribute *attr, char *buf)
  1313. {
  1314. unsigned int chr_ype = CHARGER_UNKNOWN;
  1315. chr_ype = BMT_status.charger_exist ? BMT_status.charger_type : CHARGER_UNKNOWN;
  1316. battery_log(BAT_LOG_CRTI, "CHARGER_TYPE = %d\n", chr_ype);
  1317. return sprintf(buf, "%u\n", chr_ype);
  1318. }
  1319. static ssize_t store_Charger_Type(struct device *dev, struct device_attribute *attr,
  1320. const char *buf, size_t size)
  1321. {
  1322. battery_log(BAT_LOG_CRTI, "[EM] Not Support Write Function\n");
  1323. return size;
  1324. }
  1325. static DEVICE_ATTR(Charger_Type, 0664, show_Charger_Type, store_Charger_Type);
  1326. #if defined(CONFIG_MTK_PUMP_EXPRESS_SUPPORT) || defined(CONFIG_MTK_PUMP_EXPRESS_PLUS_SUPPORT)
  1327. static ssize_t show_Pump_Express(struct device *dev, struct device_attribute *attr, char *buf)
  1328. {
  1329. #if defined(CONFIG_MTK_PUMP_EXPRESS_PLUS_SUPPORT)
  1330. int icount = 20; /* max debouncing time 20 * 0.2 sec */
  1331. if (KAL_TRUE == ta_check_chr_type &&
  1332. STANDARD_CHARGER == BMT_status.charger_type &&
  1333. #if defined(CONFIG_MTK_HAFG_20)
  1334. BMT_status.UI_SOC2 >= TA_START_BATTERY_SOC &&
  1335. BMT_status.UI_SOC2 < TA_STOP_BATTERY_SOC)
  1336. #else
  1337. BMT_status.SOC >= TA_START_BATTERY_SOC &&
  1338. BMT_status.SOC < TA_STOP_BATTERY_SOC)
  1339. #endif
  1340. {
  1341. battery_log(BAT_LOG_CRTI, "[%s]Wait for PE detection\n", __func__);
  1342. do {
  1343. icount--;
  1344. msleep(200);
  1345. } while (icount && ta_check_chr_type);
  1346. }
  1347. #endif
  1348. battery_log(BAT_LOG_CRTI, "Pump express = %d\n", is_ta_connect);
  1349. return sprintf(buf, "%u\n", is_ta_connect);
  1350. }
  1351. static ssize_t store_Pump_Express(struct device *dev, struct device_attribute *attr,
  1352. const char *buf, size_t size)
  1353. {
  1354. unsigned int val;
  1355. if (kstrtouint(buf, 10, &val) == 0) {
  1356. is_ta_connect = val;
  1357. battery_log(BAT_LOG_CRTI, "Pump express= %d\n", is_ta_connect);
  1358. return size;
  1359. }
  1360. /* hidden else, for sscanf format error */
  1361. {
  1362. battery_log(BAT_LOG_CRTI, " bad argument, echo [enable] > current_cmd\n");
  1363. }
  1364. return 0;
  1365. }
  1366. static DEVICE_ATTR(Pump_Express, 0664, show_Pump_Express, store_Pump_Express);
  1367. #endif
  1368. static void mt_battery_update_EM(struct battery_data *bat_data)
  1369. {
  1370. bat_data->BAT_CAPACITY = BMT_status.UI_SOC2;
  1371. bat_data->BAT_TemperatureR = BMT_status.temperatureR; /* API */
  1372. bat_data->BAT_TempBattVoltage = BMT_status.temperatureV; /* API */
  1373. bat_data->BAT_InstatVolt = BMT_status.bat_vol; /* VBAT */
  1374. bat_data->BAT_BatteryAverageCurrent = BMT_status.ICharging;
  1375. bat_data->BAT_BatterySenseVoltage = BMT_status.bat_vol;
  1376. bat_data->BAT_ISenseVoltage = BMT_status.Vsense; /* API */
  1377. bat_data->BAT_ChargerVoltage = BMT_status.charger_vol;
  1378. /* Dual battery */
  1379. bat_data->status_smb = g_status_smb;
  1380. bat_data->capacity_smb = g_capacity_smb;
  1381. bat_data->present_smb = g_present_smb;
  1382. battery_log(BAT_LOG_FULL, "status_smb = %d, capacity_smb = %d, present_smb = %d\n",
  1383. bat_data->status_smb, bat_data->capacity_smb, bat_data->present_smb);
  1384. if ((BMT_status.UI_SOC2 == 100) && (BMT_status.charger_exist == KAL_TRUE))
  1385. bat_data->BAT_STATUS = POWER_SUPPLY_STATUS_FULL;
  1386. #ifdef CONFIG_MTK_DISABLE_POWER_ON_OFF_VOLTAGE_LIMITATION
  1387. if (bat_data->BAT_CAPACITY <= 0)
  1388. bat_data->BAT_CAPACITY = 1;
  1389. battery_log(BAT_LOG_CRTI,
  1390. "BAT_CAPACITY=1, due to define CONFIG_MTK_DISABLE_POWER_ON_OFF_VOLTAGE_LIMITATION\r\n");
  1391. #endif
  1392. }
  1393. static void battery_update(struct battery_data *bat_data)
  1394. {
  1395. struct power_supply *bat_psy = &bat_data->psy;
  1396. static unsigned int shutdown_cnt = 0xBADDCAFE;
  1397. static unsigned int shutdown_cnt_chr = 0xBADDCAFE;
  1398. if (shutdown_cnt == 0xBADDCAFE)
  1399. shutdown_cnt = 0;
  1400. if (shutdown_cnt_chr == 0xBADDCAFE)
  1401. shutdown_cnt_chr = 0;
  1402. bat_data->BAT_TECHNOLOGY = POWER_SUPPLY_TECHNOLOGY_LION;
  1403. bat_data->BAT_HEALTH = POWER_SUPPLY_HEALTH_GOOD;
  1404. bat_data->BAT_batt_vol = BMT_status.bat_vol;
  1405. bat_data->BAT_batt_temp = BMT_status.temperature * 10;
  1406. bat_data->BAT_PRESENT = BMT_status.bat_exist;
  1407. if ((BMT_status.charger_exist == KAL_TRUE) && (BMT_status.bat_charging_state != CHR_ERROR)) {
  1408. if (BMT_status.bat_exist) {
  1409. bat_data->BAT_STATUS = POWER_SUPPLY_STATUS_CHARGING;
  1410. } else {
  1411. /* No Battery, Only Charger */
  1412. bat_data->BAT_STATUS = POWER_SUPPLY_STATUS_UNKNOWN;
  1413. }
  1414. } else {
  1415. /* Only Battery */
  1416. bat_data->BAT_STATUS = POWER_SUPPLY_STATUS_NOT_CHARGING;
  1417. }
  1418. mt_battery_update_EM(bat_data);
  1419. if (cmd_discharging == 1)
  1420. bat_data->BAT_STATUS = POWER_SUPPLY_STATUS_CMD_DISCHARGING;
  1421. if (adjust_power != -1) {
  1422. bat_data->adjust_power = adjust_power;
  1423. battery_log(BAT_LOG_CRTI, "adjust_power=(%d)\n", adjust_power);
  1424. }
  1425. battery_log(BAT_LOG_CRTI,
  1426. "[kernel][battery_update] SOC %d,UI_SOC2 %d, status %d\n",
  1427. BMT_status.SOC, BMT_status.UI_SOC2, bat_data->BAT_STATUS);
  1428. #ifdef DLPT_POWER_OFF_EN
  1429. #ifndef DISABLE_DLPT_FEATURE
  1430. if (bat_data->BAT_CAPACITY <= DLPT_POWER_OFF_THD) {
  1431. static unsigned char cnt = 0xff;
  1432. if (cnt == 0xff)
  1433. cnt = 0;
  1434. battery_log(BAT_LOG_CRTI, "[DLPT_POWER_OFF_EN] run\n");
  1435. if (dlpt_check_power_off() == 1) {
  1436. bat_data->BAT_CAPACITY = 0;
  1437. cnt++;
  1438. battery_log(BAT_LOG_CRTI,
  1439. "[DLPT_POWER_OFF_EN] SOC=%d to power off , cnt=%d\n",
  1440. bat_data->BAT_CAPACITY, cnt);
  1441. if (cnt >= 2)
  1442. kernel_restart("DLPT reboot system");
  1443. } else {
  1444. cnt = 0;
  1445. }
  1446. } else {
  1447. battery_log(BAT_LOG_CRTI, "[DLPT_POWER_OFF_EN] disable(%d)\n",
  1448. bat_data->BAT_CAPACITY);
  1449. }
  1450. #endif
  1451. #endif
  1452. power_supply_changed(bat_psy);
  1453. }
  1454. void update_charger_info(int wireless_state)
  1455. {
  1456. #if defined(CONFIG_POWER_VERIFY)
  1457. battery_log(BAT_LOG_CRTI, "[update_charger_info] no support\n");
  1458. #else
  1459. g_wireless_state = wireless_state;
  1460. battery_log(BAT_LOG_CRTI, "[update_charger_info] get wireless_state=%d\n", wireless_state);
  1461. wake_up_bat();
  1462. #endif
  1463. }
  1464. static void wireless_update(struct wireless_data *wireless_data)
  1465. {
  1466. struct power_supply *wireless_psy = &wireless_data->psy;
  1467. if (BMT_status.charger_exist == KAL_TRUE || g_wireless_state) {
  1468. if ((BMT_status.charger_type == WIRELESS_CHARGER) || g_wireless_state) {
  1469. wireless_data->WIRELESS_ONLINE = 1;
  1470. wireless_psy->type = POWER_SUPPLY_TYPE_WIRELESS;
  1471. } else {
  1472. wireless_data->WIRELESS_ONLINE = 0;
  1473. }
  1474. } else {
  1475. wireless_data->WIRELESS_ONLINE = 0;
  1476. }
  1477. power_supply_changed(wireless_psy);
  1478. }
  1479. static void ac_update(struct ac_data *ac_data)
  1480. {
  1481. struct power_supply *ac_psy = &ac_data->psy;
  1482. if (BMT_status.charger_exist == KAL_TRUE) {
  1483. #if !defined(CONFIG_MTK_DUAL_INPUT_CHARGER_SUPPORT)
  1484. if ((BMT_status.charger_type == NONSTANDARD_CHARGER) ||
  1485. (BMT_status.charger_type == STANDARD_CHARGER) ||
  1486. (BMT_status.charger_type == APPLE_2_1A_CHARGER) ||
  1487. (BMT_status.charger_type == APPLE_1_0A_CHARGER) ||
  1488. (BMT_status.charger_type == APPLE_0_5A_CHARGER)) {
  1489. #else
  1490. if ((BMT_status.charger_type == NONSTANDARD_CHARGER) ||
  1491. (BMT_status.charger_type == STANDARD_CHARGER) ||
  1492. (BMT_status.charger_type == APPLE_2_1A_CHARGER) ||
  1493. (BMT_status.charger_type == APPLE_1_0A_CHARGER) ||
  1494. (BMT_status.charger_type == APPLE_0_5A_CHARGER) ||
  1495. (DISO_data.diso_state.cur_vdc_state == DISO_ONLINE)) {
  1496. #endif
  1497. ac_data->AC_ONLINE = 1;
  1498. ac_psy->type = POWER_SUPPLY_TYPE_MAINS;
  1499. } else {
  1500. ac_data->AC_ONLINE = 0;
  1501. }
  1502. } else {
  1503. ac_data->AC_ONLINE = 0;
  1504. }
  1505. power_supply_changed(ac_psy);
  1506. }
  1507. static void usb_update(struct usb_data *usb_data)
  1508. {
  1509. struct power_supply *usb_psy = &usb_data->psy;
  1510. if (BMT_status.charger_exist == KAL_TRUE) {
  1511. if ((BMT_status.charger_type == STANDARD_HOST) ||
  1512. (BMT_status.charger_type == CHARGING_HOST)) {
  1513. usb_data->USB_ONLINE = 1;
  1514. usb_psy->type = POWER_SUPPLY_TYPE_USB;
  1515. } else {
  1516. usb_data->USB_ONLINE = 0;
  1517. }
  1518. } else {
  1519. usb_data->USB_ONLINE = 0;
  1520. }
  1521. power_supply_changed(usb_psy);
  1522. }
  1523. #endif
  1524. unsigned char bat_is_kpoc(void)
  1525. {
  1526. #ifdef CONFIG_MTK_KERNEL_POWER_OFF_CHARGING
  1527. if (g_platform_boot_mode == KERNEL_POWER_OFF_CHARGING_BOOT
  1528. || g_platform_boot_mode == LOW_POWER_OFF_CHARGING_BOOT) {
  1529. return KAL_TRUE;
  1530. }
  1531. #endif
  1532. return KAL_FALSE;
  1533. }
  1534. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  1535. /* // Battery Temprature Parameters and functions */
  1536. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  1537. kal_bool pmic_chrdet_status(void)
  1538. {
  1539. if (upmu_is_chr_det() == KAL_TRUE)
  1540. return KAL_TRUE;
  1541. battery_log(BAT_LOG_CRTI, "[pmic_chrdet_status] No charger\r\n");
  1542. return KAL_FALSE;
  1543. }
  1544. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  1545. /* // Pulse Charging Algorithm */
  1546. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  1547. kal_bool bat_is_charger_exist(void)
  1548. {
  1549. return get_charger_detect_status();
  1550. }
  1551. kal_bool bat_is_charging_full(void)
  1552. {
  1553. if ((BMT_status.bat_full == KAL_TRUE) && (BMT_status.bat_in_recharging_state == KAL_FALSE))
  1554. return KAL_TRUE;
  1555. else
  1556. return KAL_FALSE;
  1557. }
  1558. unsigned int bat_get_ui_percentage(void)
  1559. {
  1560. return BMT_status.UI_SOC2;
  1561. }
  1562. /* Full state --> recharge voltage --> full state */
  1563. unsigned int bat_is_recharging_phase(void)
  1564. {
  1565. return (BMT_status.bat_in_recharging_state || BMT_status.bat_full == KAL_TRUE);
  1566. }
  1567. int get_bat_charging_current_level(void)
  1568. {
  1569. CHR_CURRENT_ENUM charging_current;
  1570. battery_charging_control(CHARGING_CMD_GET_CURRENT, &charging_current);
  1571. return charging_current;
  1572. }
  1573. #if defined(MTK_TEMPERATURE_RECHARGE_SUPPORT)
  1574. PMU_STATUS do_batt_temp_state_machine(void)
  1575. {
  1576. if (BMT_status.temperature == ERR_CHARGE_TEMPERATURE)
  1577. return PMU_STATUS_FAIL;
  1578. #ifdef BAT_LOW_TEMP_PROTECT_ENABLE
  1579. // if (BMT_status.temperature < MIN_CHARGE_TEMPERATURE) {
  1580. if (BMT_status.temperature < batt_cust_data.min_charge_temperature) {
  1581. battery_log(BAT_LOG_CRTI, "[BATTERY] Battery Under Temperature or NTC fail !!\n\r");
  1582. g_batt_temp_status = TEMP_POS_LOW;
  1583. return PMU_STATUS_FAIL;
  1584. } else if (g_batt_temp_status == TEMP_POS_LOW) {
  1585. // if (BMT_status.temperature >= MIN_CHARGE_TEMPERATURE_PLUS_X_DEGREE) {
  1586. if (BMT_status.temperature >= batt_cust_data.min_charge_temperature_plus_x_degree) {
  1587. battery_log(BAT_LOG_CRTI,
  1588. "[BATTERY] Battery Temperature raise from %d to %d(%d), allow charging!!\n\r",
  1589. batt_cust_data.min_charge_temperature, BMT_status.temperature,
  1590. batt_cust_data.min_charge_temperature_plus_x_degree);
  1591. g_batt_temp_status = TEMP_POS_NORMAL;
  1592. BMT_status.bat_charging_state = CHR_PRE;
  1593. return PMU_STATUS_OK;
  1594. } else {
  1595. return PMU_STATUS_FAIL;
  1596. }
  1597. } else
  1598. #endif
  1599. // if (BMT_status.temperature >= MAX_CHARGE_TEMPERATURE) {
  1600. if (BMT_status.temperature >= batt_cust_data.max_charge_temperature){
  1601. battery_log(BAT_LOG_CRTI, "[BATTERY] Battery Over Temperature !!\n\r");
  1602. g_batt_temp_status = TEMP_POS_HIGH;
  1603. return PMU_STATUS_FAIL;
  1604. } else if (g_batt_temp_status == TEMP_POS_HIGH) {
  1605. // if (BMT_status.temperature < MAX_CHARGE_TEMPERATURE_MINUS_X_DEGREE) {
  1606. if (BMT_status.temperature < batt_cust_data.max_charge_temperature_minus_x_degree) {
  1607. battery_log(BAT_LOG_CRTI,
  1608. "[BATTERY] Battery Temperature down from %d to %d(%d), allow charging!!\n\r",
  1609. batt_cust_data.max_charge_temperature, BMT_status.temperature,
  1610. batt_cust_data.max_charge_temperature_minus_x_degree);
  1611. g_batt_temp_status = TEMP_POS_NORMAL;
  1612. BMT_status.bat_charging_state = CHR_PRE;
  1613. return PMU_STATUS_OK;
  1614. } else {
  1615. return PMU_STATUS_FAIL;
  1616. }
  1617. } else {
  1618. g_batt_temp_status = TEMP_POS_NORMAL;
  1619. }
  1620. return PMU_STATUS_OK;
  1621. }
  1622. #endif
  1623. unsigned long BAT_Get_Battery_Voltage(int polling_mode)
  1624. {
  1625. unsigned long ret_val = 0;
  1626. #if defined(CONFIG_POWER_EXT)
  1627. ret_val = 4000;
  1628. #else
  1629. ret_val = battery_meter_get_battery_voltage(KAL_FALSE);
  1630. #endif
  1631. return ret_val;
  1632. }
  1633. static void mt_battery_average_method_init(BATTERY_AVG_ENUM type, unsigned int *bufferdata,
  1634. unsigned int data, signed int *sum)
  1635. {
  1636. unsigned int i;
  1637. static kal_bool batteryBufferFirst = KAL_TRUE;
  1638. static kal_bool previous_charger_exist = KAL_FALSE;
  1639. static kal_bool previous_in_recharge_state = KAL_FALSE;
  1640. static unsigned char index;
  1641. /* reset charging current window while plug in/out { */
  1642. if (type == BATTERY_AVG_CURRENT) {
  1643. if (BMT_status.charger_exist == KAL_TRUE) {
  1644. if (previous_charger_exist == KAL_FALSE) {
  1645. batteryBufferFirst = KAL_TRUE;
  1646. previous_charger_exist = KAL_TRUE;
  1647. if ((BMT_status.charger_type == STANDARD_CHARGER)
  1648. #if defined(CONFIG_MTK_DUAL_INPUT_CHARGER_SUPPORT)
  1649. && (DISO_data.diso_state.cur_vdc_state == DISO_ONLINE)
  1650. #endif
  1651. )
  1652. data = batt_cust_data.ac_charger_current / 100;//AC_CHARGER_CURRENT / 100;
  1653. else if (BMT_status.charger_type == CHARGING_HOST)
  1654. data = batt_cust_data.charging_host_charger_current / 100;//CHARGING_HOST_CHARGER_CURRENT / 100;
  1655. else if (BMT_status.charger_type == NONSTANDARD_CHARGER)
  1656. data = batt_cust_data.non_std_ac_charger_current / 100;//NON_STD_AC_CHARGER_CURRENT / 100; /* mA */
  1657. else /* USB */
  1658. data = batt_cust_data.usb_charger_current / 100;//USB_CHARGER_CURRENT / 100; /* mA */
  1659. } else if ((previous_in_recharge_state == KAL_FALSE)
  1660. && (BMT_status.bat_in_recharging_state == KAL_TRUE)) {
  1661. batteryBufferFirst = KAL_TRUE;
  1662. if ((BMT_status.charger_type == STANDARD_CHARGER)
  1663. #if defined(CONFIG_MTK_DUAL_INPUT_CHARGER_SUPPORT)
  1664. && (DISO_data.diso_state.cur_vdc_state == DISO_ONLINE)
  1665. #endif
  1666. )
  1667. data = batt_cust_data.ac_charger_current / 100;//AC_CHARGER_CURRENT / 100;
  1668. else if (BMT_status.charger_type == CHARGING_HOST)
  1669. data = batt_cust_data.charging_host_charger_current / 100;//CHARGING_HOST_CHARGER_CURRENT / 100;
  1670. else if (BMT_status.charger_type == NONSTANDARD_CHARGER)
  1671. data = batt_cust_data.non_std_ac_charger_current /100;//NON_STD_AC_CHARGER_CURRENT / 100; /* mA */
  1672. else /* USB */
  1673. data = batt_cust_data.usb_charger_current / 100;//USB_CHARGER_CURRENT / 100; /* mA */
  1674. }
  1675. previous_in_recharge_state = BMT_status.bat_in_recharging_state;
  1676. } else {
  1677. if (previous_charger_exist == KAL_TRUE) {
  1678. batteryBufferFirst = KAL_TRUE;
  1679. previous_charger_exist = KAL_FALSE;
  1680. data = 0;
  1681. }
  1682. }
  1683. }
  1684. /* reset charging current window while plug in/out } */
  1685. battery_log(BAT_LOG_FULL, "batteryBufferFirst =%d, data= (%d)\n", batteryBufferFirst, data);
  1686. if (batteryBufferFirst == KAL_TRUE) {
  1687. for (i = 0; i < BATTERY_AVERAGE_SIZE; i++)
  1688. bufferdata[i] = data;
  1689. *sum = data * BATTERY_AVERAGE_SIZE;
  1690. }
  1691. index++;
  1692. if (index >= BATTERY_AVERAGE_DATA_NUMBER) {
  1693. index = BATTERY_AVERAGE_DATA_NUMBER;
  1694. batteryBufferFirst = KAL_FALSE;
  1695. }
  1696. }
  1697. static unsigned int mt_battery_average_method(BATTERY_AVG_ENUM type, unsigned int *bufferdata,
  1698. unsigned int data, signed int *sum,
  1699. unsigned char batteryIndex)
  1700. {
  1701. unsigned int avgdata;
  1702. mt_battery_average_method_init(type, bufferdata, data, sum);
  1703. *sum -= bufferdata[batteryIndex];
  1704. *sum += data;
  1705. bufferdata[batteryIndex] = data;
  1706. avgdata = (*sum) / BATTERY_AVERAGE_SIZE;
  1707. battery_log(BAT_LOG_FULL, "bufferdata[%d]= (%d)\n", batteryIndex, bufferdata[batteryIndex]);
  1708. return avgdata;
  1709. }
  1710. void mt_battery_GetBatteryData(void)
  1711. {
  1712. unsigned int bat_vol, charger_vol, Vsense, ZCV;
  1713. signed int ICharging, temperature, temperatureR, temperatureV;
  1714. static signed int bat_sum, icharging_sum, temperature_sum;
  1715. static signed int batteryVoltageBuffer[BATTERY_AVERAGE_SIZE];
  1716. static signed int batteryCurrentBuffer[BATTERY_AVERAGE_SIZE];
  1717. static signed int batteryTempBuffer[BATTERY_AVERAGE_SIZE];
  1718. static unsigned char batteryIndex = 0xff;
  1719. static signed int previous_SOC = -1;
  1720. if (batteryIndex == 0xff)
  1721. batteryIndex = 0;
  1722. bat_vol = battery_meter_get_battery_voltage(KAL_TRUE);
  1723. Vsense = battery_meter_get_VSense();
  1724. // if (upmu_is_chr_det() == KAL_TRUE) {//remove fan warning by xmtjx
  1725. ICharging = battery_meter_get_charging_current();
  1726. charger_vol = battery_meter_get_charger_voltage();
  1727. // } else {
  1728. // ICharging = 0;
  1729. // charger_vol = 0;
  1730. // }
  1731. temperature = battery_meter_get_battery_temperature();
  1732. temperatureV = battery_meter_get_tempV();
  1733. temperatureR = battery_meter_get_tempR(temperatureV);
  1734. ZCV = battery_meter_get_battery_zcv();
  1735. BMT_status.ICharging =
  1736. mt_battery_average_method(BATTERY_AVG_CURRENT, &batteryCurrentBuffer[0], ICharging,
  1737. &icharging_sum, batteryIndex);
  1738. // if (previous_SOC == -1 && bat_vol <= V_0PERCENT_TRACKING) {
  1739. if (previous_SOC == -1 && bat_vol <= batt_cust_data.v_0percent_tracking) {
  1740. previous_SOC = 0;
  1741. if (ZCV != 0) {
  1742. battery_log(BAT_LOG_CRTI,
  1743. "battery voltage too low, use ZCV to init average data.\n");
  1744. BMT_status.bat_vol =
  1745. mt_battery_average_method(BATTERY_AVG_VOLT, &batteryVoltageBuffer[0],
  1746. ZCV, &bat_sum, batteryIndex);
  1747. } else {
  1748. battery_log(BAT_LOG_CRTI,
  1749. "battery voltage too low, use v_0percent_tracking + 100 to init average data.\n");
  1750. BMT_status.bat_vol =
  1751. mt_battery_average_method(BATTERY_AVG_VOLT, &batteryVoltageBuffer[0],
  1752. batt_cust_data.v_0percent_tracking + 100, &bat_sum,
  1753. batteryIndex);
  1754. }
  1755. } else {
  1756. BMT_status.bat_vol =
  1757. mt_battery_average_method(BATTERY_AVG_VOLT, &batteryVoltageBuffer[0], bat_vol,
  1758. &bat_sum, batteryIndex);
  1759. }
  1760. BMT_status.temperature =
  1761. mt_battery_average_method(BATTERY_AVG_TEMP, &batteryTempBuffer[0], temperature,
  1762. &temperature_sum, batteryIndex);
  1763. BMT_status.Vsense = Vsense;
  1764. BMT_status.charger_vol = charger_vol;
  1765. BMT_status.temperatureV = temperatureV;
  1766. BMT_status.temperatureR = temperatureR;
  1767. BMT_status.ZCV = ZCV;
  1768. batteryIndex++;
  1769. if (batteryIndex >= BATTERY_AVERAGE_SIZE)
  1770. batteryIndex = 0;
  1771. battery_log(BAT_LOG_CRTI,
  1772. "[kernel]AvgVbat %d,bat_vol %d, AvgI %d, I %d, VChr %d, AvgT %d, T %d, ZCV %d\n",
  1773. BMT_status.bat_vol, bat_vol, BMT_status.ICharging, ICharging,
  1774. BMT_status.charger_vol, BMT_status.temperature, temperature, BMT_status.ZCV);
  1775. }
  1776. static PMU_STATUS mt_battery_CheckBatteryTemp(void)
  1777. {
  1778. PMU_STATUS status = PMU_STATUS_OK;
  1779. #if defined(CONFIG_MTK_JEITA_STANDARD_SUPPORT)
  1780. battery_log(BAT_LOG_CRTI, "[BATTERY] support JEITA, temperature=%d\n",
  1781. BMT_status.temperature);
  1782. if (do_jeita_state_machine() == PMU_STATUS_FAIL) {
  1783. battery_log(BAT_LOG_CRTI, "[BATTERY] JEITA : fail\n");
  1784. status = PMU_STATUS_FAIL;
  1785. }
  1786. #else
  1787. #if defined(MTK_TEMPERATURE_RECHARGE_SUPPORT)
  1788. if (do_batt_temp_state_machine() == PMU_STATUS_FAIL) {
  1789. battery_log(BAT_LOG_CRTI, "[BATTERY] Batt temp check : fail\n");
  1790. status = PMU_STATUS_FAIL;
  1791. }
  1792. #else
  1793. #ifdef BAT_LOW_TEMP_PROTECT_ENABLE
  1794. // if ((BMT_status.temperature < MIN_CHARGE_TEMPERATURE)
  1795. if ((BMT_status.temperature < batt_cust_data.min_charge_temperature)
  1796. || (BMT_status.temperature == ERR_CHARGE_TEMPERATURE)) {
  1797. battery_log(BAT_LOG_CRTI, "[BATTERY] Battery Under Temperature or NTC fail !!\n\r");
  1798. status = PMU_STATUS_FAIL;
  1799. }
  1800. #endif
  1801. // if (BMT_status.temperature >= MAX_CHARGE_TEMPERATURE) {
  1802. if (BMT_status.temperature >= batt_cust_data.max_charge_temperature){
  1803. battery_log(BAT_LOG_CRTI, "[BATTERY] Battery Over Temperature !!\n\r");
  1804. status = PMU_STATUS_FAIL;
  1805. }
  1806. #endif
  1807. #endif
  1808. return status;
  1809. }
  1810. static PMU_STATUS mt_battery_CheckChargerVoltage(void)
  1811. {
  1812. PMU_STATUS status = PMU_STATUS_OK;
  1813. #if defined(CONFIG_MTK_DUAL_INPUT_CHARGER_SUPPORT)
  1814. unsigned int v_charger_max = DISO_data.hv_voltage;
  1815. #endif
  1816. if (BMT_status.charger_exist == KAL_TRUE) {
  1817. //#if (V_CHARGER_ENABLE == 1)
  1818. // if (BMT_status.charger_vol <= V_CHARGER_MIN) {
  1819. if (batt_cust_data.v_charger_enable == 1) {
  1820. if (BMT_status.charger_vol <= batt_cust_data.v_charger_min) {
  1821. battery_log(BAT_LOG_CRTI, "[BATTERY]Charger under voltage!!\r\n");
  1822. BMT_status.bat_charging_state = CHR_ERROR;
  1823. status = PMU_STATUS_FAIL;
  1824. }
  1825. }
  1826. #if !defined(CONFIG_MTK_DUAL_INPUT_CHARGER_SUPPORT)
  1827. // if (BMT_status.charger_vol >= V_CHARGER_MAX) {
  1828. if (BMT_status.charger_vol >= batt_cust_data.v_charger_max) {
  1829. #else
  1830. if (BMT_status.charger_vol >= v_charger_max) {
  1831. #endif
  1832. battery_log(BAT_LOG_CRTI, "[BATTERY]Charger over voltage !!\r\n");
  1833. BMT_status.charger_protect_status = charger_OVER_VOL;
  1834. BMT_status.bat_charging_state = CHR_ERROR;
  1835. status = PMU_STATUS_FAIL;
  1836. }
  1837. }
  1838. return status;
  1839. }
  1840. static PMU_STATUS mt_battery_CheckChargingTime(void)
  1841. {
  1842. PMU_STATUS status = PMU_STATUS_OK;
  1843. if ((g_battery_thermal_throttling_flag == 2) || (g_battery_thermal_throttling_flag == 3)) {
  1844. battery_log(BAT_LOG_FULL,
  1845. "[TestMode] Disable Safety Timer. bat_tt_enable=%d, bat_thr_test_mode=%d, bat_thr_test_value=%d\n",
  1846. g_battery_thermal_throttling_flag,
  1847. battery_cmd_thermal_test_mode, battery_cmd_thermal_test_mode_value);
  1848. } else {
  1849. /* Charging OT */
  1850. if (BMT_status.total_charging_time >= MAX_CHARGING_TIME) {
  1851. battery_log(BAT_LOG_CRTI, "[BATTERY] Charging Over Time.\n");
  1852. status = PMU_STATUS_FAIL;
  1853. }
  1854. }
  1855. return status;
  1856. }
  1857. #if defined(STOP_CHARGING_IN_TAKLING)
  1858. static PMU_STATUS mt_battery_CheckCallState(void)
  1859. {
  1860. PMU_STATUS status = PMU_STATUS_OK;
  1861. // if ((g_call_state == CALL_ACTIVE) && (BMT_status.bat_vol > V_CC2TOPOFF_THRES))
  1862. if ((g_call_state == CALL_ACTIVE) && (BMT_status.bat_vol > batt_cust_data.v_cc2topoff_thres))
  1863. status = PMU_STATUS_FAIL;
  1864. return status;
  1865. }
  1866. #endif
  1867. static void mt_battery_CheckBatteryStatus(void)
  1868. {
  1869. battery_log(BAT_LOG_FULL, "[mt_battery_CheckBatteryStatus] cmd_discharging=(%d)\n",
  1870. cmd_discharging);
  1871. if (cmd_discharging == 1) {
  1872. battery_log(BAT_LOG_CRTI,
  1873. "[mt_battery_CheckBatteryStatus] cmd_discharging=(%d)\n",
  1874. cmd_discharging);
  1875. BMT_status.bat_charging_state = CHR_ERROR;
  1876. battery_charging_control(CHARGING_CMD_SET_ERROR_STATE, &cmd_discharging);
  1877. return;
  1878. } else if (cmd_discharging == 0) {
  1879. BMT_status.bat_charging_state = CHR_PRE;
  1880. battery_charging_control(CHARGING_CMD_SET_ERROR_STATE, &cmd_discharging);
  1881. cmd_discharging = -1;
  1882. }
  1883. if (mt_battery_CheckBatteryTemp() != PMU_STATUS_OK) {
  1884. BMT_status.bat_charging_state = CHR_ERROR;
  1885. return;
  1886. }
  1887. if (mt_battery_CheckChargerVoltage() != PMU_STATUS_OK) {
  1888. BMT_status.bat_charging_state = CHR_ERROR;
  1889. return;
  1890. }
  1891. #if defined(STOP_CHARGING_IN_TAKLING)
  1892. if (mt_battery_CheckCallState() != PMU_STATUS_OK) {
  1893. BMT_status.bat_charging_state = CHR_HOLD;
  1894. return;
  1895. }
  1896. #endif
  1897. if (mt_battery_CheckChargingTime() != PMU_STATUS_OK) {
  1898. BMT_status.bat_charging_state = CHR_ERROR;
  1899. return;
  1900. }
  1901. }
  1902. static void mt_battery_notify_TotalChargingTime_check(void)
  1903. {
  1904. #if defined(BATTERY_NOTIFY_CASE_0005_TOTAL_CHARGINGTIME)
  1905. if ((g_battery_thermal_throttling_flag == 2) || (g_battery_thermal_throttling_flag == 3)) {
  1906. battery_log(BAT_LOG_FULL, "[TestMode] Disable Safety Timer : no UI display\n");
  1907. } else {
  1908. if (BMT_status.total_charging_time >= MAX_CHARGING_TIME)
  1909. /* if (BMT_status.total_charging_time >= 60) //test */
  1910. {
  1911. g_BatteryNotifyCode |= 0x0010;
  1912. battery_log(BAT_LOG_CRTI, "[BATTERY] Charging Over Time\n");
  1913. } else {
  1914. g_BatteryNotifyCode &= ~(0x0010);
  1915. }
  1916. }
  1917. battery_log(BAT_LOG_CRTI,
  1918. "[BATTERY] BATTERY_NOTIFY_CASE_0005_TOTAL_CHARGINGTIME (%x)\n",
  1919. g_BatteryNotifyCode);
  1920. #endif
  1921. }
  1922. static void mt_battery_notify_VBat_check(void)
  1923. {
  1924. #if defined(BATTERY_NOTIFY_CASE_0004_VBAT)
  1925. if (BMT_status.bat_vol > 4350)
  1926. /* if (BMT_status.bat_vol > 3800) //test */
  1927. {
  1928. g_BatteryNotifyCode |= 0x0008;
  1929. battery_log(BAT_LOG_CRTI, "[BATTERY] bat_vlot(%ld) > 4350mV\n", BMT_status.bat_vol);
  1930. } else {
  1931. g_BatteryNotifyCode &= ~(0x0008);
  1932. }
  1933. battery_log(BAT_LOG_CRTI, "[BATTERY] BATTERY_NOTIFY_CASE_0004_VBAT (%x)\n",
  1934. g_BatteryNotifyCode);
  1935. #endif
  1936. }
  1937. static void mt_battery_notify_ICharging_check(void)
  1938. {
  1939. #if defined(BATTERY_NOTIFY_CASE_0003_ICHARGING)
  1940. if ((BMT_status.ICharging > 1000) && (BMT_status.total_charging_time > 300)) {
  1941. g_BatteryNotifyCode |= 0x0004;
  1942. battery_log(BAT_LOG_CRTI, "[BATTERY] I_charging(%ld) > 1000mA\n",
  1943. BMT_status.ICharging);
  1944. } else {
  1945. g_BatteryNotifyCode &= ~(0x0004);
  1946. }
  1947. battery_log(BAT_LOG_CRTI, "[BATTERY] BATTERY_NOTIFY_CASE_0003_ICHARGING (%x)\n",
  1948. g_BatteryNotifyCode);
  1949. #endif
  1950. }
  1951. static void mt_battery_notify_VBatTemp_check(void)
  1952. {
  1953. #if defined(BATTERY_NOTIFY_CASE_0002_VBATTEMP)
  1954. // if (BMT_status.temperature >= MAX_CHARGE_TEMPERATURE) {
  1955. if (BMT_status.temperature >= batt_cust_data.max_charge_temperature){
  1956. g_BatteryNotifyCode |= 0x0002;
  1957. battery_log(BAT_LOG_CRTI, "[BATTERY] bat_temp(%d) out of range(too high)\n",
  1958. BMT_status.temperature);
  1959. }
  1960. #if defined(CONFIG_MTK_JEITA_STANDARD_SUPPORT)
  1961. else if (BMT_status.temperature < TEMP_NEG_10_THRESHOLD) {
  1962. g_BatteryNotifyCode |= 0x0020;
  1963. battery_log(BAT_LOG_CRTI, "[BATTERY] bat_temp(%d) out of range(too low)\n",
  1964. BMT_status.temperature);
  1965. }
  1966. #else
  1967. #ifdef BAT_LOW_TEMP_PROTECT_ENABLE
  1968. // else if (BMT_status.temperature < MIN_CHARGE_TEMPERATURE) {
  1969. else if (BMT_status.temperature < batt_cust_data.min_charge_temperature) {
  1970. g_BatteryNotifyCode |= 0x0020;
  1971. battery_log(BAT_LOG_CRTI, "[BATTERY] bat_temp(%d) out of range(too low)\n",
  1972. BMT_status.temperature);
  1973. }
  1974. #endif
  1975. #endif
  1976. battery_log(BAT_LOG_FULL, "[BATTERY] BATTERY_NOTIFY_CASE_0002_VBATTEMP (%x)\n",
  1977. g_BatteryNotifyCode);
  1978. #endif
  1979. }
  1980. static void mt_battery_notify_VCharger_check(void)
  1981. {
  1982. #if defined(BATTERY_NOTIFY_CASE_0001_VCHARGER)
  1983. #if defined(CONFIG_MTK_DUAL_INPUT_CHARGER_SUPPORT)
  1984. unsigned int v_charger_max = DISO_data.hv_voltage;
  1985. #endif
  1986. #if !defined(CONFIG_MTK_DUAL_INPUT_CHARGER_SUPPORT)
  1987. // if (BMT_status.charger_vol > V_CHARGER_MAX) {
  1988. if (BMT_status.charger_vol > batt_cust_data.v_charger_max) {
  1989. #else
  1990. if (BMT_status.charger_vol > v_charger_max) {
  1991. #endif
  1992. g_BatteryNotifyCode |= 0x0001;
  1993. battery_log(BAT_LOG_CRTI, "[BATTERY] BMT_status.charger_vol(%d) > %d mV\n",
  1994. BMT_status.charger_vol, batt_cust_data.v_charger_max);
  1995. } else {
  1996. g_BatteryNotifyCode &= ~(0x0001);
  1997. }
  1998. if (g_BatteryNotifyCode != 0x0000)
  1999. battery_log(BAT_LOG_CRTI,
  2000. "[BATTERY] BATTERY_NOTIFY_CASE_0001_VCHARGER (%x)\n",
  2001. g_BatteryNotifyCode);
  2002. #endif
  2003. }
  2004. static void mt_battery_notify_UI_test(void)
  2005. {
  2006. if (g_BN_TestMode == 0x0001) {
  2007. g_BatteryNotifyCode = 0x0001;
  2008. battery_log(BAT_LOG_CRTI, "[BATTERY_TestMode] BATTERY_NOTIFY_CASE_0001_VCHARGER\n");
  2009. } else if (g_BN_TestMode == 0x0002) {
  2010. g_BatteryNotifyCode = 0x0002;
  2011. battery_log(BAT_LOG_CRTI, "[BATTERY_TestMode] BATTERY_NOTIFY_CASE_0002_VBATTEMP\n");
  2012. } else if (g_BN_TestMode == 0x0003) {
  2013. g_BatteryNotifyCode = 0x0004;
  2014. battery_log(BAT_LOG_CRTI,
  2015. "[BATTERY_TestMode] BATTERY_NOTIFY_CASE_0003_ICHARGING\n");
  2016. } else if (g_BN_TestMode == 0x0004) {
  2017. g_BatteryNotifyCode = 0x0008;
  2018. battery_log(BAT_LOG_CRTI, "[BATTERY_TestMode] BATTERY_NOTIFY_CASE_0004_VBAT\n");
  2019. } else if (g_BN_TestMode == 0x0005) {
  2020. g_BatteryNotifyCode = 0x0010;
  2021. battery_log(BAT_LOG_CRTI,
  2022. "[BATTERY_TestMode] BATTERY_NOTIFY_CASE_0005_TOTAL_CHARGINGTIME\n");
  2023. } else {
  2024. battery_log(BAT_LOG_CRTI, "[BATTERY] Unknown BN_TestMode Code : %x\n",
  2025. g_BN_TestMode);
  2026. }
  2027. }
  2028. void mt_battery_notify_check(void)
  2029. {
  2030. g_BatteryNotifyCode = 0x0000;
  2031. if (g_BN_TestMode == 0x0000) { /* for normal case */
  2032. battery_log(BAT_LOG_FULL, "[BATTERY] mt_battery_notify_check\n");
  2033. mt_battery_notify_VCharger_check();
  2034. mt_battery_notify_VBatTemp_check();
  2035. mt_battery_notify_ICharging_check();
  2036. mt_battery_notify_VBat_check();
  2037. mt_battery_notify_TotalChargingTime_check();
  2038. } else { /* for UI test */
  2039. mt_battery_notify_UI_test();
  2040. }
  2041. }
  2042. static void mt_battery_thermal_check(void)
  2043. {
  2044. if ((g_battery_thermal_throttling_flag == 1) || (g_battery_thermal_throttling_flag == 3)) {
  2045. if (battery_cmd_thermal_test_mode == 1) {
  2046. BMT_status.temperature = battery_cmd_thermal_test_mode_value;
  2047. battery_log(BAT_LOG_FULL,
  2048. "[Battery] In thermal_test_mode , Tbat=%d\n",
  2049. BMT_status.temperature);
  2050. }
  2051. #if defined(CONFIG_MTK_JEITA_STANDARD_SUPPORT)
  2052. /* ignore default rule */
  2053. #else
  2054. if (BMT_status.temperature >= 60) {
  2055. #if defined(CONFIG_POWER_EXT)
  2056. battery_log(BAT_LOG_CRTI,
  2057. "[BATTERY] CONFIG_POWER_EXT, no update battery update power down.\n");
  2058. #else
  2059. {
  2060. if ((g_platform_boot_mode == META_BOOT)
  2061. || (g_platform_boot_mode == ADVMETA_BOOT)
  2062. || (g_platform_boot_mode == ATE_FACTORY_BOOT)) {
  2063. battery_log(BAT_LOG_FULL,
  2064. "[BATTERY] boot mode = %d, bypass temperature check\n",
  2065. g_platform_boot_mode);
  2066. } else {
  2067. struct battery_data *bat_data = &battery_main;
  2068. struct power_supply *bat_psy = &bat_data->psy;
  2069. battery_log(BAT_LOG_CRTI,
  2070. "[Battery] Tbat(%d)>=60, system need power down.\n",
  2071. BMT_status.temperature);
  2072. bat_data->BAT_CAPACITY = 0;
  2073. power_supply_changed(bat_psy);
  2074. if (BMT_status.charger_exist == KAL_TRUE) {
  2075. /* can not power down due to charger exist, so need reset system */
  2076. battery_charging_control
  2077. (CHARGING_CMD_SET_PLATFORM_RESET, NULL);
  2078. }
  2079. /* avoid SW no feedback */
  2080. battery_charging_control(CHARGING_CMD_SET_POWER_OFF, NULL);
  2081. /* mt_power_off(); */
  2082. }
  2083. }
  2084. #endif
  2085. }
  2086. #endif
  2087. }
  2088. }
  2089. void mt_battery_update_status(void)
  2090. {
  2091. #if defined(CONFIG_POWER_EXT)
  2092. battery_log(BAT_LOG_CRTI, "[BATTERY] CONFIG_POWER_EXT, no update Android.\n");
  2093. #else
  2094. if (g_battery_soc_ready) {
  2095. wireless_update(&wireless_main);
  2096. battery_update(&battery_main);
  2097. ac_update(&ac_main);
  2098. usb_update(&usb_main);
  2099. } else {
  2100. battery_log(BAT_LOG_CRTI, "User space SOC init still waiting\n");
  2101. return;
  2102. }
  2103. #endif
  2104. }
  2105. CHARGER_TYPE mt_charger_type_detection(void)
  2106. {
  2107. CHARGER_TYPE CHR_Type_num = CHARGER_UNKNOWN;
  2108. mutex_lock(&charger_type_mutex);
  2109. #if defined(CONFIG_MTK_WIRELESS_CHARGER_SUPPORT)
  2110. battery_charging_control(CHARGING_CMD_GET_CHARGER_TYPE, &CHR_Type_num);
  2111. BMT_status.charger_type = CHR_Type_num;
  2112. #else
  2113. #if !defined(CONFIG_MTK_DUAL_INPUT_CHARGER_SUPPORT)
  2114. if (BMT_status.charger_type == CHARGER_UNKNOWN) {
  2115. #else
  2116. if ((BMT_status.charger_type == CHARGER_UNKNOWN) &&
  2117. (DISO_data.diso_state.cur_vusb_state == DISO_ONLINE)) {
  2118. #endif
  2119. battery_charging_control(CHARGING_CMD_GET_CHARGER_TYPE, &CHR_Type_num);
  2120. BMT_status.charger_type = CHR_Type_num;
  2121. #if defined(CONFIG_MTK_KERNEL_POWER_OFF_CHARGING)
  2122. #if defined(CONFIG_MTK_PUMP_EXPRESS_SUPPORT) || defined(CONFIG_MTK_PUMP_EXPRESS_PLUS_SUPPORT)
  2123. /*if (BMT_status.UI_SOC2 == 100) {
  2124. BMT_status.bat_charging_state = CHR_BATFULL;
  2125. BMT_status.bat_full = KAL_TRUE;
  2126. g_charging_full_reset_bat_meter = KAL_TRUE;
  2127. }*/
  2128. if (g_battery_soc_ready == KAL_FALSE) {
  2129. if (BMT_status.nPercent_ZCV == 0)
  2130. battery_meter_initial();
  2131. BMT_status.SOC = battery_meter_get_battery_percentage();
  2132. }
  2133. if (BMT_status.bat_vol > 0)
  2134. mt_battery_update_status();
  2135. #endif
  2136. #endif
  2137. }
  2138. #endif
  2139. mutex_unlock(&charger_type_mutex);
  2140. return BMT_status.charger_type;
  2141. }
  2142. CHARGER_TYPE mt_get_charger_type(void)
  2143. {
  2144. #if defined(CONFIG_POWER_EXT) || defined(CONFIG_MTK_FPGA)
  2145. return STANDARD_HOST;
  2146. #else
  2147. return BMT_status.charger_type;
  2148. #endif
  2149. }
  2150. static void mt_battery_charger_detect_check(void)
  2151. {
  2152. #ifdef CONFIG_MTK_BQ25896_SUPPORT
  2153. /*New low power feature of MT6531: disable charger CLK without CHARIN.
  2154. * MT6351 API abstracted in charging_hw_bw25896.c. Any charger with MT6351 needs to set this.
  2155. * Compile option is not limited to CONFIG_MTK_BQ25896_SUPPORT.
  2156. * PowerDown = 0
  2157. */
  2158. unsigned int pwr;
  2159. #endif
  2160. if (upmu_is_chr_det() == KAL_TRUE) {
  2161. wake_lock(&battery_suspend_lock);
  2162. #if !defined(CONFIG_MTK_DUAL_INPUT_CHARGER_SUPPORT)
  2163. BMT_status.charger_exist = KAL_TRUE;
  2164. #endif
  2165. #if defined(CONFIG_MTK_WIRELESS_CHARGER_SUPPORT)
  2166. mt_charger_type_detection();
  2167. if ((BMT_status.charger_type == STANDARD_HOST)
  2168. || (BMT_status.charger_type == CHARGING_HOST)) {
  2169. mt_usb_connect();
  2170. }
  2171. #else
  2172. #if !defined(CONFIG_MTK_DUAL_INPUT_CHARGER_SUPPORT)
  2173. if (BMT_status.charger_type == CHARGER_UNKNOWN) {
  2174. #else
  2175. if ((BMT_status.charger_type == CHARGER_UNKNOWN) &&
  2176. (DISO_data.diso_state.cur_vusb_state == DISO_ONLINE)) {
  2177. #endif
  2178. mt_charger_type_detection();
  2179. if ((BMT_status.charger_type == STANDARD_HOST)
  2180. || (BMT_status.charger_type == CHARGING_HOST)) {
  2181. mt_usb_connect();
  2182. }
  2183. }
  2184. #endif
  2185. #ifdef CONFIG_MTK_BQ25896_SUPPORT
  2186. /*New low power feature of MT6531: disable charger CLK without CHARIN.
  2187. * MT6351 API abstracted in charging_hw_bw25896.c. Any charger with MT6351 needs to set this.
  2188. * Compile option is not limited to CONFIG_MTK_BQ25896_SUPPORT.
  2189. * PowerDown = 0
  2190. */
  2191. pwr = 0;
  2192. battery_charging_control(CHARGING_CMD_SET_CHRIND_CK_PDN, &pwr);
  2193. #endif
  2194. battery_log(BAT_LOG_CRTI, "[BAT_thread]Cable in, CHR_Type_num=%d\r\n",
  2195. BMT_status.charger_type);
  2196. #if defined(CONFIG_MTK_PUMP_EXPRESS_PLUS_SUPPORT)
  2197. /* is_ta_connect = KAL_FALSE; */
  2198. /* ta_check_chr_type = KAL_TRUE; */
  2199. ta_cable_out_occur = KAL_FALSE;
  2200. battery_log(BAT_LOG_CRTI, "[PE+] Cable In\n");
  2201. #endif
  2202. } else {
  2203. wake_unlock(&battery_suspend_lock);
  2204. BMT_status.charger_exist = KAL_FALSE;
  2205. BMT_status.charger_type = CHARGER_UNKNOWN;
  2206. BMT_status.bat_full = KAL_FALSE;
  2207. BMT_status.bat_in_recharging_state = KAL_FALSE;
  2208. BMT_status.bat_charging_state = CHR_PRE;
  2209. BMT_status.total_charging_time = 0;
  2210. BMT_status.PRE_charging_time = 0;
  2211. BMT_status.CC_charging_time = 0;
  2212. BMT_status.TOPOFF_charging_time = 0;
  2213. BMT_status.POSTFULL_charging_time = 0;
  2214. battery_log(BAT_LOG_CRTI, "[BAT_thread]Cable out \r\n");
  2215. mt_usb_disconnect();
  2216. #if defined(CONFIG_MTK_PUMP_EXPRESS_PLUS_SUPPORT)
  2217. is_ta_connect = KAL_FALSE;
  2218. ta_check_chr_type = KAL_TRUE;
  2219. ta_cable_out_occur = KAL_TRUE;
  2220. battery_log(BAT_LOG_CRTI, "[PE+] Cable OUT\n");
  2221. #endif
  2222. #ifdef CONFIG_MTK_BQ25896_SUPPORT
  2223. /*New low power feature of MT6531: disable charger CLK without CHARIN.
  2224. * MT6351 API abstracted in charging_hw_bw25896.c. Any charger with MT6351 needs to set this.
  2225. * Compile option is not limited to CONFIG_MTK_BQ25896_SUPPORT.
  2226. * PowerDown = 1
  2227. */
  2228. pwr = 1;
  2229. battery_charging_control(CHARGING_CMD_SET_CHRIND_CK_PDN, &pwr);
  2230. #endif
  2231. }
  2232. }
  2233. static void mt_kpoc_power_off_check(void)
  2234. {
  2235. #ifdef CONFIG_MTK_KERNEL_POWER_OFF_CHARGING
  2236. battery_log(BAT_LOG_CRTI,
  2237. "[mt_kpoc_power_off_check] , chr_vol=%d, boot_mode=%d\r\n",
  2238. BMT_status.charger_vol, g_platform_boot_mode);
  2239. if (g_platform_boot_mode == KERNEL_POWER_OFF_CHARGING_BOOT
  2240. || g_platform_boot_mode == LOW_POWER_OFF_CHARGING_BOOT) {
  2241. if ((upmu_is_chr_det() == KAL_FALSE) && (BMT_status.charger_vol < 2500)) { /* vbus < 2.5V */
  2242. battery_log(BAT_LOG_CRTI,
  2243. "[mt_kpoc_power_off_check] Unplug Charger/USB In Kernel Power Off Charging Mode! Shutdown OS!\r\n");
  2244. battery_charging_control(CHARGING_CMD_SET_POWER_OFF, NULL);
  2245. }
  2246. }
  2247. #endif
  2248. }
  2249. void update_battery_2nd_info(int status_smb, int capacity_smb, int present_smb)
  2250. {
  2251. #if defined(CONFIG_POWER_VERIFY)
  2252. battery_log(BAT_LOG_CRTI, "[update_battery_smb_info] no support\n");
  2253. #else
  2254. g_status_smb = status_smb;
  2255. g_capacity_smb = capacity_smb;
  2256. g_present_smb = present_smb;
  2257. battery_log(BAT_LOG_CRTI,
  2258. "[update_battery_smb_info] get status_smb=%d,capacity_smb=%d,present_smb=%d\n",
  2259. status_smb, capacity_smb, present_smb);
  2260. wake_up_bat();
  2261. g_smartbook_update = 1;
  2262. #endif
  2263. }
  2264. void do_chrdet_int_task(void)
  2265. {
  2266. if (g_bat_init_flag == KAL_TRUE) {
  2267. #if !defined(CONFIG_MTK_DUAL_INPUT_CHARGER_SUPPORT)
  2268. if (upmu_is_chr_det() == KAL_TRUE) {
  2269. #else
  2270. battery_charging_control(CHARGING_CMD_GET_DISO_STATE, &DISO_data);
  2271. if ((DISO_data.diso_state.cur_vusb_state == DISO_ONLINE) ||
  2272. (DISO_data.diso_state.cur_vdc_state == DISO_ONLINE)) {
  2273. #endif
  2274. battery_log(BAT_LOG_CRTI, "[do_chrdet_int_task] charger exist!\n");
  2275. BMT_status.charger_exist = KAL_TRUE;
  2276. #ifdef CONFIG_AW2015
  2277. if (BMT_status.UI_SOC2 <= 90)
  2278. {
  2279. AW2015_LED_RED_ON();
  2280. }
  2281. #endif
  2282. wake_lock(&battery_suspend_lock);
  2283. #if defined(CONFIG_POWER_EXT)
  2284. mt_usb_connect();
  2285. battery_log(BAT_LOG_CRTI,
  2286. "[do_chrdet_int_task] call mt_usb_connect() in EVB\n");
  2287. #elif defined(CONFIG_MTK_POWER_EXT_DETECT)
  2288. if (KAL_TRUE == bat_is_ext_power()) {
  2289. mt_usb_connect();
  2290. battery_log(BAT_LOG_CRTI,
  2291. "[do_chrdet_int_task] call mt_usb_connect() in EVB\n");
  2292. return;
  2293. }
  2294. #endif
  2295. } else {
  2296. battery_log(BAT_LOG_CRTI, "[do_chrdet_int_task] charger NOT exist!\n");
  2297. BMT_status.charger_exist = KAL_FALSE;
  2298. #ifdef CONFIG_AW2015
  2299. if (BMT_status.UI_SOC2 <= 90)
  2300. {
  2301. AW2015_LED_RED_OFF();
  2302. }
  2303. #endif
  2304. #if defined(CONFIG_MTK_DUAL_INPUT_CHARGER_SUPPORT)
  2305. battery_log(BAT_LOG_CRTI,
  2306. "turn off charging for no available charging source\n");
  2307. battery_charging_control(CHARGING_CMD_ENABLE, &BMT_status.charger_exist);
  2308. #endif
  2309. #ifdef CONFIG_MTK_KERNEL_POWER_OFF_CHARGING
  2310. if (g_platform_boot_mode == KERNEL_POWER_OFF_CHARGING_BOOT
  2311. || g_platform_boot_mode == LOW_POWER_OFF_CHARGING_BOOT) {
  2312. battery_log(BAT_LOG_CRTI,
  2313. "[pmic_thread_kthread] Unplug Charger/USB In Kernel Power Off Charging Mode! Shutdown OS!\r\n");
  2314. battery_charging_control(CHARGING_CMD_SET_POWER_OFF, NULL);
  2315. /* mt_power_off(); */
  2316. }
  2317. #endif
  2318. wake_unlock(&battery_suspend_lock);
  2319. #if defined(CONFIG_POWER_EXT)
  2320. mt_usb_disconnect();
  2321. battery_log(BAT_LOG_CRTI,
  2322. "[do_chrdet_int_task] call mt_usb_disconnect() in EVB\n");
  2323. #elif defined(CONFIG_MTK_POWER_EXT_DETECT)
  2324. if (KAL_TRUE == bat_is_ext_power()) {
  2325. mt_usb_disconnect();
  2326. battery_log(BAT_LOG_CRTI,
  2327. "[do_chrdet_int_task] call mt_usb_disconnect() in EVB\n");
  2328. return;
  2329. }
  2330. #endif
  2331. #if defined(CONFIG_MTK_PUMP_EXPRESS_SUPPORT) || defined(CONFIG_MTK_PUMP_EXPRESS_PLUS_SUPPORT)
  2332. is_ta_connect = KAL_FALSE;
  2333. ta_check_chr_type = KAL_TRUE;
  2334. ta_cable_out_occur = KAL_TRUE;
  2335. #endif
  2336. }
  2337. /* reset_parameter_dod_charger_plug_event(); */
  2338. wakeup_fg_algo(FG_CHARGER);
  2339. /* Place charger detection and battery update here is used to speed up charging icon display. */
  2340. mt_battery_charger_detect_check();
  2341. if (BMT_status.UI_SOC2 == 100 && BMT_status.charger_exist == KAL_TRUE) {
  2342. BMT_status.bat_charging_state = CHR_BATFULL;
  2343. BMT_status.bat_full = KAL_TRUE;
  2344. g_charging_full_reset_bat_meter = KAL_TRUE;
  2345. }
  2346. if (g_battery_soc_ready == KAL_FALSE) {
  2347. if (BMT_status.nPercent_ZCV == 0)
  2348. battery_meter_initial();
  2349. BMT_status.SOC = battery_meter_get_battery_percentage();
  2350. }
  2351. if (BMT_status.bat_vol > 0)
  2352. mt_battery_update_status();
  2353. #if defined(CONFIG_MTK_DUAL_INPUT_CHARGER_SUPPORT)
  2354. DISO_data.chr_get_diso_state = KAL_TRUE;
  2355. #endif
  2356. wake_up_bat();
  2357. } else {
  2358. #if defined(CONFIG_MTK_DUAL_INPUT_CHARGER_SUPPORT)
  2359. g_vcdt_irq_delay_flag = KAL_TRUE;
  2360. #endif
  2361. battery_log(BAT_LOG_CRTI,
  2362. "[do_chrdet_int_task] battery thread not ready, will do after bettery init.\n");
  2363. }
  2364. }
  2365. void BAT_thread(void)
  2366. {
  2367. static kal_bool battery_meter_initilized = KAL_FALSE;
  2368. if (battery_meter_initilized == KAL_FALSE) {
  2369. battery_meter_initial(); /* move from battery_probe() to decrease booting time */
  2370. BMT_status.nPercent_ZCV = battery_meter_get_battery_nPercent_zcv();
  2371. battery_meter_initilized = KAL_TRUE;
  2372. }
  2373. battery_log(BAT_LOG_CRTI, "[fg2.0]CUST_TRACKING_POINT: %d.\n", CUST_TRACKING_POINT);
  2374. mt_battery_update_time(&batteryThreadRunTime, BATTERY_THREAD_TIME);
  2375. if (fg_ipoh_reset) {
  2376. battery_log(BAT_LOG_CRTI, "[FG BAT_thread]FG_MAIN because IPOH .\n");
  2377. battery_meter_set_init_flag(false);
  2378. fgauge_algo_run_get_init_data();
  2379. wakeup_fg_algo((FG_MAIN));
  2380. fg_ipoh_reset = 0;
  2381. bat_spm_timeout = FALSE;
  2382. } else if (bat_spm_timeout) {
  2383. wakeup_fg_algo((FG_MAIN + FG_RESUME));
  2384. bat_spm_timeout = FALSE;
  2385. } else {
  2386. wakeup_fg_algo(FG_MAIN);
  2387. }
  2388. mt_battery_charger_detect_check();
  2389. mt_battery_GetBatteryData();
  2390. if (BMT_status.charger_exist == KAL_TRUE)
  2391. check_battery_exist();
  2392. mt_battery_thermal_check();
  2393. mt_battery_notify_check();
  2394. if (BMT_status.charger_exist == KAL_TRUE) {
  2395. mt_battery_CheckBatteryStatus();
  2396. mt_battery_charging_algorithm();
  2397. }
  2398. mt_kpoc_power_off_check();
  2399. }
  2400. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  2401. /* // Internal API */
  2402. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  2403. int bat_routine_thread(void *x)
  2404. {
  2405. ktime_t ktime = ktime_set(3, 0); /* 10s, 10* 1000 ms */
  2406. /* Run on a process content */
  2407. while (1) {
  2408. wake_lock(&battery_meter_lock);
  2409. mutex_lock(&bat_mutex);
  2410. if (((chargin_hw_init_done == KAL_TRUE) && (battery_suspended == KAL_FALSE))
  2411. || ((chargin_hw_init_done == KAL_TRUE) && (chr_wake_up_bat == KAL_TRUE)))
  2412. BAT_thread();
  2413. if (chr_wake_up_bat == KAL_TRUE)
  2414. chr_wake_up_bat = KAL_FALSE;
  2415. mutex_unlock(&bat_mutex);
  2416. wake_unlock(&battery_meter_lock);
  2417. battery_log(BAT_LOG_CRTI, "wait event 1\n");
  2418. wait_event(bat_routine_wq, (bat_routine_thread_timeout == KAL_TRUE));
  2419. bat_routine_thread_timeout = KAL_FALSE;
  2420. hrtimer_start(&battery_kthread_timer, ktime, HRTIMER_MODE_REL);
  2421. ktime = ktime_set(BAT_TASK_PERIOD, 0); /* 10s, 10* 1000 ms */
  2422. if (chr_wake_up_bat == KAL_TRUE && g_smartbook_update != 1) {
  2423. /* for charger plug in/ out */
  2424. #if defined(CONFIG_MTK_DUAL_INPUT_CHARGER_SUPPORT)
  2425. if (DISO_data.chr_get_diso_state) {
  2426. DISO_data.chr_get_diso_state = KAL_FALSE;
  2427. battery_charging_control(CHARGING_CMD_GET_DISO_STATE, &DISO_data);
  2428. }
  2429. #endif
  2430. g_smartbook_update = 0;
  2431. /* battery_meter_reset(); */
  2432. /* chr_wake_up_bat = KAL_FALSE; */
  2433. }
  2434. }
  2435. return 0;
  2436. }
  2437. void bat_thread_wakeup(void)
  2438. {
  2439. battery_log(BAT_LOG_FULL, "******** battery : bat_thread_wakeup ********\n");
  2440. bat_routine_thread_timeout = KAL_TRUE;
  2441. bat_meter_timeout = KAL_TRUE;
  2442. battery_meter_reset_sleep_time();
  2443. wake_up(&bat_routine_wq);
  2444. }
  2445. int bat_update_thread(void *x)
  2446. {
  2447. /* Run on a process content */
  2448. while (1) {
  2449. mutex_lock(&bat_update_mutex);
  2450. mt_battery_update_status();
  2451. mutex_unlock(&bat_update_mutex);
  2452. battery_log(BAT_LOG_CRTI, "wait event 2\n");
  2453. wait_event(bat_update_wq, (bat_update_thread_timeout == KAL_TRUE));
  2454. bat_update_thread_timeout = KAL_FALSE;
  2455. }
  2456. return 0;
  2457. }
  2458. void bat_update_thread_wakeup(void)
  2459. {
  2460. battery_log(BAT_LOG_FULL, "******** battery : bat_update_thread_wakeup ********\n");
  2461. bat_update_thread_timeout = KAL_TRUE;
  2462. wake_up(&bat_update_wq);
  2463. }
  2464. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  2465. /* // fop API */
  2466. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  2467. static long adc_cali_ioctl(struct file *file, unsigned int cmd, unsigned long arg)
  2468. {
  2469. int *user_data_addr;
  2470. int *naram_data_addr;
  2471. int i = 0;
  2472. int ret = 0;
  2473. int adc_in_data[2] = { 1, 1 };
  2474. int adc_out_data[2] = { 1, 1 };
  2475. mutex_lock(&bat_mutex);
  2476. switch (cmd) {
  2477. case TEST_ADC_CALI_PRINT:
  2478. g_ADC_Cali = KAL_FALSE;
  2479. break;
  2480. case SET_ADC_CALI_Slop:
  2481. naram_data_addr = (int *)arg;
  2482. ret = copy_from_user(adc_cali_slop, naram_data_addr, 36);
  2483. g_ADC_Cali = KAL_FALSE; /* enable calibration after setting ADC_CALI_Cal */
  2484. /* Protection */
  2485. for (i = 0; i < 14; i++) {
  2486. if ((*(adc_cali_slop + i) == 0) || (*(adc_cali_slop + i) == 1))
  2487. *(adc_cali_slop + i) = 1000;
  2488. }
  2489. for (i = 0; i < 14; i++)
  2490. battery_log(BAT_LOG_CRTI, "adc_cali_slop[%d] = %d\n", i,
  2491. *(adc_cali_slop + i));
  2492. battery_log(BAT_LOG_FULL, "**** unlocked_ioctl : SET_ADC_CALI_Slop Done!\n");
  2493. break;
  2494. case SET_ADC_CALI_Offset:
  2495. naram_data_addr = (int *)arg;
  2496. ret = copy_from_user(adc_cali_offset, naram_data_addr, 36);
  2497. g_ADC_Cali = KAL_FALSE; /* enable calibration after setting ADC_CALI_Cal */
  2498. for (i = 0; i < 14; i++)
  2499. battery_log(BAT_LOG_CRTI, "adc_cali_offset[%d] = %d\n", i,
  2500. *(adc_cali_offset + i));
  2501. battery_log(BAT_LOG_FULL, "**** unlocked_ioctl : SET_ADC_CALI_Offset Done!\n");
  2502. break;
  2503. case SET_ADC_CALI_Cal:
  2504. naram_data_addr = (int *)arg;
  2505. ret = copy_from_user(adc_cali_cal, naram_data_addr, 4);
  2506. g_ADC_Cali = KAL_TRUE;
  2507. if (adc_cali_cal[0] == 1)
  2508. g_ADC_Cali = KAL_TRUE;
  2509. else
  2510. g_ADC_Cali = KAL_FALSE;
  2511. for (i = 0; i < 1; i++)
  2512. battery_log(BAT_LOG_CRTI, "adc_cali_cal[%d] = %d\n", i,
  2513. *(adc_cali_cal + i));
  2514. battery_log(BAT_LOG_FULL, "**** unlocked_ioctl : SET_ADC_CALI_Cal Done!\n");
  2515. break;
  2516. case ADC_CHANNEL_READ:
  2517. /* g_ADC_Cali = KAL_FALSE; *//* 20100508 Infinity */
  2518. user_data_addr = (int *)arg;
  2519. ret = copy_from_user(adc_in_data, user_data_addr, 8); /* 2*int = 2*4 */
  2520. if (adc_in_data[0] == 0) {
  2521. /* I_SENSE */
  2522. adc_out_data[0] = battery_meter_get_VSense() * adc_in_data[1];
  2523. } else if (adc_in_data[0] == 1) {
  2524. /* BAT_SENSE */
  2525. adc_out_data[0] =
  2526. battery_meter_get_battery_voltage(KAL_TRUE) * adc_in_data[1];
  2527. } else if (adc_in_data[0] == 3) {
  2528. /* V_Charger */
  2529. adc_out_data[0] = battery_meter_get_charger_voltage() * adc_in_data[1];
  2530. /* adc_out_data[0] = adc_out_data[0] / 100; */
  2531. } else if (adc_in_data[0] == 30) {
  2532. /* V_Bat_temp magic number */
  2533. adc_out_data[0] = battery_meter_get_battery_temperature() * adc_in_data[1];
  2534. } else if (adc_in_data[0] == 66) {
  2535. adc_out_data[0] = (battery_meter_get_battery_current()) / 10;
  2536. if (battery_meter_get_battery_current_sign() == KAL_TRUE)
  2537. adc_out_data[0] = 0 - adc_out_data[0]; /* charging */
  2538. } else {
  2539. battery_log(BAT_LOG_FULL, "unknown channel(%d,%d)\n",
  2540. adc_in_data[0], adc_in_data[1]);
  2541. }
  2542. if (adc_out_data[0] < 0)
  2543. adc_out_data[1] = 1; /* failed */
  2544. else
  2545. adc_out_data[1] = 0; /* success */
  2546. if (adc_in_data[0] == 30)
  2547. adc_out_data[1] = 0; /* success */
  2548. if (adc_in_data[0] == 66)
  2549. adc_out_data[1] = 0; /* success */
  2550. ret = copy_to_user(user_data_addr, adc_out_data, 8);
  2551. battery_log(BAT_LOG_CRTI,
  2552. "**** unlocked_ioctl : Channel %d * %d times = %d\n",
  2553. adc_in_data[0], adc_in_data[1], adc_out_data[0]);
  2554. break;
  2555. case BAT_STATUS_READ:
  2556. user_data_addr = (int *)arg;
  2557. ret = copy_from_user(battery_in_data, user_data_addr, 4);
  2558. /* [0] is_CAL */
  2559. if (g_ADC_Cali)
  2560. battery_out_data[0] = 1;
  2561. else
  2562. battery_out_data[0] = 0;
  2563. ret = copy_to_user(user_data_addr, battery_out_data, 4);
  2564. battery_log(BAT_LOG_CRTI, "**** unlocked_ioctl : CAL:%d\n", battery_out_data[0]);
  2565. break;
  2566. case Set_Charger_Current: /* For Factory Mode */
  2567. user_data_addr = (int *)arg;
  2568. ret = copy_from_user(charging_level_data, user_data_addr, 4);
  2569. g_ftm_battery_flag = KAL_TRUE;
  2570. if (charging_level_data[0] == 0)
  2571. charging_level_data[0] = CHARGE_CURRENT_70_00_MA;
  2572. else if (charging_level_data[0] == 1)
  2573. charging_level_data[0] = CHARGE_CURRENT_200_00_MA;
  2574. else if (charging_level_data[0] == 2)
  2575. charging_level_data[0] = CHARGE_CURRENT_400_00_MA;
  2576. else if (charging_level_data[0] == 3)
  2577. charging_level_data[0] = CHARGE_CURRENT_450_00_MA;
  2578. else if (charging_level_data[0] == 4)
  2579. charging_level_data[0] = CHARGE_CURRENT_550_00_MA;
  2580. else if (charging_level_data[0] == 5)
  2581. charging_level_data[0] = CHARGE_CURRENT_650_00_MA;
  2582. else if (charging_level_data[0] == 6)
  2583. charging_level_data[0] = CHARGE_CURRENT_700_00_MA;
  2584. else if (charging_level_data[0] == 7)
  2585. charging_level_data[0] = CHARGE_CURRENT_800_00_MA;
  2586. else if (charging_level_data[0] == 8)
  2587. charging_level_data[0] = CHARGE_CURRENT_900_00_MA;
  2588. else if (charging_level_data[0] == 9)
  2589. charging_level_data[0] = CHARGE_CURRENT_1000_00_MA;
  2590. else if (charging_level_data[0] == 10)
  2591. charging_level_data[0] = CHARGE_CURRENT_1100_00_MA;
  2592. else if (charging_level_data[0] == 11)
  2593. charging_level_data[0] = CHARGE_CURRENT_1200_00_MA;
  2594. else if (charging_level_data[0] == 12)
  2595. charging_level_data[0] = CHARGE_CURRENT_1300_00_MA;
  2596. else if (charging_level_data[0] == 13)
  2597. charging_level_data[0] = CHARGE_CURRENT_1400_00_MA;
  2598. else if (charging_level_data[0] == 14)
  2599. charging_level_data[0] = CHARGE_CURRENT_1500_00_MA;
  2600. else if (charging_level_data[0] == 15)
  2601. charging_level_data[0] = CHARGE_CURRENT_1600_00_MA;
  2602. else
  2603. charging_level_data[0] = CHARGE_CURRENT_450_00_MA;
  2604. wake_up_bat();
  2605. battery_log(BAT_LOG_CRTI, "**** unlocked_ioctl : set_Charger_Current:%d\n",
  2606. charging_level_data[0]);
  2607. break;
  2608. /* add for meta tool------------------------------- */
  2609. case Get_META_BAT_VOL:
  2610. user_data_addr = (int *)arg;
  2611. ret = copy_from_user(adc_in_data, user_data_addr, 8);
  2612. adc_out_data[0] = BMT_status.bat_vol;
  2613. ret = copy_to_user(user_data_addr, adc_out_data, 8);
  2614. break;
  2615. case Get_META_BAT_SOC:
  2616. user_data_addr = (int *)arg;
  2617. ret = copy_from_user(adc_in_data, user_data_addr, 8);
  2618. adc_out_data[0] = BMT_status.UI_SOC2;
  2619. ret = copy_to_user(user_data_addr, adc_out_data, 8);
  2620. break;
  2621. /* add bing meta tool------------------------------- */
  2622. default:
  2623. g_ADC_Cali = KAL_FALSE;
  2624. break;
  2625. }
  2626. mutex_unlock(&bat_mutex);
  2627. return 0;
  2628. }
  2629. static int adc_cali_open(struct inode *inode, struct file *file)
  2630. {
  2631. return 0;
  2632. }
  2633. static int adc_cali_release(struct inode *inode, struct file *file)
  2634. {
  2635. return 0;
  2636. }
  2637. static const struct file_operations adc_cali_fops = {
  2638. .owner = THIS_MODULE,
  2639. .unlocked_ioctl = adc_cali_ioctl,
  2640. .open = adc_cali_open,
  2641. .release = adc_cali_release,
  2642. };
  2643. void check_battery_exist(void)
  2644. {
  2645. #if defined(CONFIG_DIS_CHECK_BATTERY)
  2646. battery_log(BAT_LOG_CRTI, "[BATTERY] Disable check battery exist.\n");
  2647. #else
  2648. unsigned int baton_count = 0;
  2649. unsigned int charging_enable = KAL_FALSE;
  2650. unsigned int battery_status;
  2651. unsigned int i;
  2652. for (i = 0; i < 3; i++) {
  2653. battery_charging_control(CHARGING_CMD_GET_BATTERY_STATUS, &battery_status);
  2654. baton_count += battery_status;
  2655. }
  2656. if (baton_count >= 3) {
  2657. if ((g_platform_boot_mode == META_BOOT) || (g_platform_boot_mode == ADVMETA_BOOT)
  2658. || (g_platform_boot_mode == ATE_FACTORY_BOOT)) {
  2659. battery_log(BAT_LOG_FULL,
  2660. "[BATTERY] boot mode = %d, bypass battery check\n",
  2661. g_platform_boot_mode);
  2662. } else {
  2663. battery_log(BAT_LOG_CRTI,
  2664. "[BATTERY] Battery is not exist, power off FAN5405 and system (%d)\n",
  2665. baton_count);
  2666. battery_charging_control(CHARGING_CMD_ENABLE, &charging_enable);
  2667. #ifdef CONFIG_MTK_POWER_PATH_MANAGEMENT_SUPPORT
  2668. battery_charging_control(CHARGING_CMD_SET_PLATFORM_RESET, NULL);
  2669. #else
  2670. battery_charging_control(CHARGING_CMD_SET_POWER_OFF, NULL);
  2671. #endif
  2672. }
  2673. }
  2674. #endif
  2675. }
  2676. int charger_hv_detect_sw_thread_handler(void *unused)
  2677. {
  2678. ktime_t ktime;
  2679. unsigned int charging_enable;
  2680. unsigned int hv_voltage = batt_cust_data.v_charger_max* 1000;//V_CHARGER_MAX * 1000;
  2681. kal_bool hv_status;
  2682. #if defined(CONFIG_MTK_DUAL_INPUT_CHARGER_SUPPORT)
  2683. hv_voltage = DISO_data.hv_voltage;
  2684. #endif
  2685. do {
  2686. #ifdef CONFIG_MTK_BQ25896_SUPPORT
  2687. /*this annoying SW workaround wakes up bat_thread. 10 secs is set instead of 1 sec */
  2688. ktime = ktime_set(10, 0);
  2689. #else
  2690. ktime = ktime_set(0, BAT_MS_TO_NS(1000));
  2691. #endif
  2692. if (chargin_hw_init_done)
  2693. battery_charging_control(CHARGING_CMD_SET_HV_THRESHOLD, &hv_voltage);
  2694. wait_event_interruptible(charger_hv_detect_waiter,
  2695. (charger_hv_detect_flag == KAL_TRUE));
  2696. if (upmu_is_chr_det() == KAL_TRUE)
  2697. check_battery_exist();
  2698. charger_hv_detect_flag = KAL_FALSE;
  2699. if (chargin_hw_init_done)
  2700. battery_charging_control(CHARGING_CMD_GET_HV_STATUS, &hv_status);
  2701. if (hv_status == KAL_TRUE) {
  2702. battery_log(BAT_LOG_CRTI,
  2703. "[charger_hv_detect_sw_thread_handler] charger hv\n");
  2704. charging_enable = KAL_FALSE;
  2705. if (chargin_hw_init_done)
  2706. battery_charging_control(CHARGING_CMD_ENABLE, &charging_enable);
  2707. } else {
  2708. battery_log(BAT_LOG_FULL,
  2709. "[charger_hv_detect_sw_thread_handler] upmu_chr_get_vcdt_hv_det() != 1\n");
  2710. }
  2711. if (chargin_hw_init_done)
  2712. battery_charging_control(CHARGING_CMD_RESET_WATCH_DOG_TIMER, NULL);
  2713. hrtimer_start(&charger_hv_detect_timer, ktime, HRTIMER_MODE_REL);
  2714. } while (!kthread_should_stop());
  2715. return 0;
  2716. }
  2717. enum hrtimer_restart charger_hv_detect_sw_workaround(struct hrtimer *timer)
  2718. {
  2719. charger_hv_detect_flag = KAL_TRUE;
  2720. wake_up_interruptible(&charger_hv_detect_waiter);
  2721. battery_log(BAT_LOG_FULL, "[charger_hv_detect_sw_workaround]\n");
  2722. return HRTIMER_NORESTART;
  2723. }
  2724. void charger_hv_detect_sw_workaround_init(void)
  2725. {
  2726. ktime_t ktime;
  2727. ktime = ktime_set(0, BAT_MS_TO_NS(2000));
  2728. hrtimer_init(&charger_hv_detect_timer, CLOCK_MONOTONIC, HRTIMER_MODE_REL);
  2729. charger_hv_detect_timer.function = charger_hv_detect_sw_workaround;
  2730. hrtimer_start(&charger_hv_detect_timer, ktime, HRTIMER_MODE_REL);
  2731. charger_hv_detect_thread =
  2732. kthread_run(charger_hv_detect_sw_thread_handler, 0,
  2733. "mtk charger_hv_detect_sw_workaround");
  2734. if (IS_ERR(charger_hv_detect_thread)) {
  2735. battery_log(BAT_LOG_FULL,
  2736. "[%s]: failed to create charger_hv_detect_sw_workaround thread\n",
  2737. __func__);
  2738. }
  2739. check_battery_exist();
  2740. battery_log(BAT_LOG_CRTI, "charger_hv_detect_sw_workaround_init : done\n");
  2741. }
  2742. enum hrtimer_restart battery_kthread_hrtimer_func(struct hrtimer *timer)
  2743. {
  2744. bat_thread_wakeup();
  2745. return HRTIMER_NORESTART;
  2746. }
  2747. void battery_kthread_hrtimer_init(void)
  2748. {
  2749. ktime_t ktime;
  2750. #ifdef CONFIG_MTK_BQ25896_SUPPORT
  2751. /*watchdog timer before 40 secs*/
  2752. ktime = ktime_set(10, 0); /* 3s, 10* 1000 ms */
  2753. #else
  2754. ktime = ktime_set(1, 0);
  2755. #endif
  2756. hrtimer_init(&battery_kthread_timer, CLOCK_MONOTONIC, HRTIMER_MODE_REL);
  2757. battery_kthread_timer.function = battery_kthread_hrtimer_func;
  2758. hrtimer_start(&battery_kthread_timer, ktime, HRTIMER_MODE_REL);
  2759. battery_log(BAT_LOG_CRTI, "battery_kthread_hrtimer_init : done\n");
  2760. }
  2761. static void get_charging_control(void)
  2762. {
  2763. battery_charging_control = chr_control_interface;
  2764. }
  2765. #if defined(CONFIG_MTK_DUAL_INPUT_CHARGER_SUPPORT)
  2766. static irqreturn_t diso_auxadc_irq_thread(int irq, void *dev_id)
  2767. {
  2768. int pre_diso_state = (DISO_data.diso_state.pre_otg_state |
  2769. (DISO_data.diso_state.pre_vusb_state << 1) |
  2770. (DISO_data.diso_state.pre_vdc_state << 2)) & 0x7;
  2771. battery_log(BAT_LOG_CRTI,
  2772. "[DISO]auxadc IRQ threaded handler triggered, pre_diso_state is %s\n",
  2773. DISO_state_s[pre_diso_state]);
  2774. switch (pre_diso_state) {
  2775. #ifdef MTK_DISCRETE_SWITCH /*for DSC DC plugin handle */
  2776. case USB_ONLY:
  2777. #endif
  2778. case OTG_ONLY:
  2779. BMT_status.charger_exist = KAL_TRUE;
  2780. wake_lock(&battery_suspend_lock);
  2781. wake_up_bat();
  2782. break;
  2783. case DC_WITH_OTG:
  2784. BMT_status.charger_exist = KAL_FALSE;
  2785. /* need stop charger quickly */
  2786. battery_charging_control(CHARGING_CMD_ENABLE, &BMT_status.charger_exist);
  2787. BMT_status.charger_exist = KAL_FALSE; /* reset charger status */
  2788. BMT_status.charger_type = CHARGER_UNKNOWN;
  2789. wake_unlock(&battery_suspend_lock);
  2790. wake_up_bat();
  2791. break;
  2792. case DC_WITH_USB:
  2793. /* usb delayed work will reflact BMT_staus , so need update state ASAP */
  2794. if ((BMT_status.charger_type == STANDARD_HOST)
  2795. || (BMT_status.charger_type == CHARGING_HOST))
  2796. mt_usb_disconnect(); /* disconnect if connected */
  2797. BMT_status.charger_type = CHARGER_UNKNOWN; /* reset chr_type */
  2798. wake_up_bat();
  2799. break;
  2800. case DC_ONLY:
  2801. BMT_status.charger_type = CHARGER_UNKNOWN;
  2802. mt_battery_charger_detect_check(); /* plug in VUSB, check if need connect usb */
  2803. break;
  2804. default:
  2805. battery_log(BAT_LOG_CRTI,
  2806. "[DISO]VUSB auxadc threaded handler triggered ERROR OR TEST\n");
  2807. break;
  2808. }
  2809. return IRQ_HANDLED;
  2810. }
  2811. static void dual_input_init(void)
  2812. {
  2813. DISO_data.irq_callback_func = diso_auxadc_irq_thread;
  2814. battery_charging_control(CHARGING_CMD_DISO_INIT, &DISO_data);
  2815. }
  2816. #endif
  2817. int __batt_init_cust_data_from_cust_header(void)
  2818. {
  2819. /* mt_charging.h */
  2820. /* stop charging while in talking mode */
  2821. #if defined(STOP_CHARGING_IN_TAKLING)
  2822. batt_cust_data.stop_charging_in_takling = 1;
  2823. #else /* #if defined(STOP_CHARGING_IN_TAKLING) */
  2824. batt_cust_data.stop_charging_in_takling = 0;
  2825. #endif /* #if defined(STOP_CHARGING_IN_TAKLING) */
  2826. #if defined(TALKING_RECHARGE_VOLTAGE)
  2827. batt_cust_data.talking_recharge_voltage = TALKING_RECHARGE_VOLTAGE;
  2828. #endif
  2829. #if defined(TALKING_SYNC_TIME)
  2830. batt_cust_data.talking_sync_time = TALKING_SYNC_TIME;
  2831. #endif
  2832. /* Battery Temperature Protection */
  2833. #if defined(MTK_TEMPERATURE_RECHARGE_SUPPORT)
  2834. batt_cust_data.mtk_temperature_recharge_support = 1;
  2835. #else /* #if defined(MTK_TEMPERATURE_RECHARGE_SUPPORT) */
  2836. batt_cust_data.mtk_temperature_recharge_support = 0;
  2837. #endif /* #if defined(MTK_TEMPERATURE_RECHARGE_SUPPORT) */
  2838. #if defined(MAX_CHARGE_TEMPERATURE)
  2839. batt_cust_data.max_charge_temperature = MAX_CHARGE_TEMPERATURE;
  2840. #endif
  2841. #if defined(MAX_CHARGE_TEMPERATURE_MINUS_X_DEGREE)
  2842. batt_cust_data.max_charge_temperature_minus_x_degree =
  2843. MAX_CHARGE_TEMPERATURE_MINUS_X_DEGREE;
  2844. #endif
  2845. #if defined(MIN_CHARGE_TEMPERATURE)
  2846. batt_cust_data.min_charge_temperature = MIN_CHARGE_TEMPERATURE;
  2847. #endif
  2848. #if defined(MIN_CHARGE_TEMPERATURE_PLUS_X_DEGREE)
  2849. batt_cust_data.min_charge_temperature_plus_x_degree = MIN_CHARGE_TEMPERATURE_PLUS_X_DEGREE;
  2850. #endif
  2851. #if defined(ERR_CHARGE_TEMPERATURE)
  2852. batt_cust_data.err_charge_temperature = ERR_CHARGE_TEMPERATURE;
  2853. #endif
  2854. /* Linear Charging Threshold */
  2855. #if defined(V_PRE2CC_THRES)
  2856. batt_cust_data.v_pre2cc_thres = V_PRE2CC_THRES;
  2857. #endif
  2858. #if defined(V_CC2TOPOFF_THRES)
  2859. batt_cust_data.v_cc2topoff_thres = V_CC2TOPOFF_THRES;
  2860. #endif
  2861. #if defined(RECHARGING_VOLTAGE)
  2862. batt_cust_data.recharging_voltage = RECHARGING_VOLTAGE;
  2863. #endif
  2864. #if defined(CHARGING_FULL_CURRENT)
  2865. batt_cust_data.charging_full_current = CHARGING_FULL_CURRENT;
  2866. #endif
  2867. /* Charging Current Setting */
  2868. #if defined(CONFIG_USB_IF)
  2869. batt_cust_data.config_usb_if = 1;
  2870. #else /* #if defined(CONFIG_USB_IF) */
  2871. batt_cust_data.config_usb_if = 0;
  2872. #endif /* #if defined(CONFIG_USB_IF) */
  2873. #if defined(USB_CHARGER_CURRENT_SUSPEND)
  2874. batt_cust_data.usb_charger_current_suspend = USB_CHARGER_CURRENT_SUSPEND;
  2875. #endif
  2876. #if defined(USB_CHARGER_CURRENT_UNCONFIGURED)
  2877. batt_cust_data.usb_charger_current_unconfigured = USB_CHARGER_CURRENT_UNCONFIGURED;
  2878. #endif
  2879. #if defined(USB_CHARGER_CURRENT_CONFIGURED)
  2880. batt_cust_data.usb_charger_current_configured = USB_CHARGER_CURRENT_CONFIGURED;
  2881. #endif
  2882. #if defined(USB_CHARGER_CURRENT)
  2883. batt_cust_data.usb_charger_current = USB_CHARGER_CURRENT;
  2884. #endif
  2885. #if defined(AC_CHARGER_INPUT_CURRENT)
  2886. batt_cust_data.ac_charger_input_current = AC_CHARGER_INPUT_CURRENT;
  2887. #endif
  2888. #if defined(AC_CHARGER_CURRENT)
  2889. batt_cust_data.ac_charger_current = AC_CHARGER_CURRENT;
  2890. #endif
  2891. #if defined(NON_STD_AC_CHARGER_CURRENT)
  2892. batt_cust_data.non_std_ac_charger_current = NON_STD_AC_CHARGER_CURRENT;
  2893. #endif
  2894. #if defined(CHARGING_HOST_CHARGER_CURRENT)
  2895. batt_cust_data.charging_host_charger_current = CHARGING_HOST_CHARGER_CURRENT;
  2896. #endif
  2897. #if defined(APPLE_0_5A_CHARGER_CURRENT)
  2898. batt_cust_data.apple_0_5a_charger_current = APPLE_0_5A_CHARGER_CURRENT;
  2899. #endif
  2900. #if defined(APPLE_1_0A_CHARGER_CURRENT)
  2901. batt_cust_data.apple_1_0a_charger_current = APPLE_1_0A_CHARGER_CURRENT;
  2902. #endif
  2903. #if defined(APPLE_2_1A_CHARGER_CURRENT)
  2904. batt_cust_data.apple_2_1a_charger_current = APPLE_2_1A_CHARGER_CURRENT;
  2905. #endif
  2906. /* Precise Tunning
  2907. batt_cust_data.battery_average_data_number = BATTERY_AVERAGE_DATA_NUMBER;
  2908. batt_cust_data.battery_average_size = BATTERY_AVERAGE_SIZE;
  2909. */
  2910. /* charger error check */
  2911. #if defined(BAT_LOW_TEMP_PROTECT_ENABLE)
  2912. batt_cust_data.bat_low_temp_protect_enable = 1;
  2913. #else /* #if defined(BAT_LOW_TEMP_PROTECT_ENABLE) */
  2914. batt_cust_data.bat_low_temp_protect_enable = 0;
  2915. #endif /* #if defined(BAT_LOW_TEMP_PROTECT_ENABLE) */
  2916. #if defined(V_CHARGER_ENABLE)
  2917. batt_cust_data.v_charger_enable = V_CHARGER_ENABLE;
  2918. #endif
  2919. #if defined(V_CHARGER_MAX)
  2920. batt_cust_data.v_charger_max = V_CHARGER_MAX;
  2921. #endif
  2922. #if defined(V_CHARGER_MIN)
  2923. batt_cust_data.v_charger_min = V_CHARGER_MIN;
  2924. #endif
  2925. /* Tracking TIME */
  2926. #if defined(ONEHUNDRED_PERCENT_TRACKING_TIME)
  2927. batt_cust_data.onehundred_percent_tracking_time = ONEHUNDRED_PERCENT_TRACKING_TIME;
  2928. #endif
  2929. #if defined(NPERCENT_TRACKING_TIME)
  2930. batt_cust_data.npercent_tracking_time = NPERCENT_TRACKING_TIME;
  2931. #endif
  2932. #if defined(SYNC_TO_REAL_TRACKING_TIME)
  2933. batt_cust_data.sync_to_real_tracking_time = SYNC_TO_REAL_TRACKING_TIME;
  2934. #endif
  2935. #if defined(V_0PERCENT_TRACKING)
  2936. batt_cust_data.v_0percent_tracking = V_0PERCENT_TRACKING;
  2937. #endif
  2938. /* High battery support */
  2939. #if defined(HIGH_BATTERY_VOLTAGE_SUPPORT)
  2940. batt_cust_data.high_battery_voltage_support = 1;
  2941. #else /* #if defined(HIGH_BATTERY_VOLTAGE_SUPPORT) */
  2942. batt_cust_data.high_battery_voltage_support = 0;
  2943. #endif /* #if defined(HIGH_BATTERY_VOLTAGE_SUPPORT) */
  2944. #if defined(CONFIG_MTK_PUMP_EXPRESS_PLUS_SUPPORT)
  2945. batt_cust_data.mtk_pump_express_plus_support = 1;
  2946. #if defined(TA_START_BATTERY_SOC)
  2947. batt_cust_data.ta_start_battery_soc = TA_START_BATTERY_SOC;
  2948. #endif
  2949. #if defined(TA_STOP_BATTERY_SOC)
  2950. batt_cust_data.ta_stop_battery_soc = TA_STOP_BATTERY_SOC;
  2951. #endif
  2952. #if defined(TA_AC_12V_INPUT_CURRENT)
  2953. batt_cust_data.ta_ac_12v_input_current = TA_AC_12V_INPUT_CURRENT;
  2954. #endif
  2955. #if defined(TA_AC_9V_INPUT_CURRENT)
  2956. batt_cust_data.ta_ac_9v_input_current = TA_AC_9V_INPUT_CURRENT;
  2957. #endif
  2958. #if defined(TA_AC_7V_INPUT_CURRENT)
  2959. batt_cust_data.ta_ac_7v_input_current = TA_AC_7V_INPUT_CURRENT;
  2960. #endif
  2961. #if defined(TA_AC_CHARGING_CURRENT)
  2962. batt_cust_data.ta_ac_charging_current = TA_AC_CHARGING_CURRENT;
  2963. #endif
  2964. #if defined(TA_9V_SUPPORT)
  2965. batt_cust_data.ta_9v_support = 1;
  2966. #endif
  2967. #if defined(TA_12V_SUPPORT)
  2968. batt_cust_data.ta_12v_support = 1;
  2969. #endif
  2970. #endif
  2971. return 0;
  2972. }
  2973. #if defined(CONFIG_OF)
  2974. static void __batt_parse_node(const struct device_node *np,
  2975. const char *node_srting, int *cust_val)
  2976. {
  2977. u32 val;
  2978. if (of_property_read_u32(np, node_srting, &val) == 0) {
  2979. (*cust_val) = (int)val;
  2980. battery_log(BAT_LOG_FULL, "Get %s: %d\n", node_srting, (*cust_val));
  2981. } else {
  2982. battery_log(BAT_LOG_CRTI, "Get %s failed\n", node_srting);
  2983. }
  2984. }
  2985. static int __batt_init_cust_data_from_dt(void)
  2986. {
  2987. /* struct device_node *np = dev->dev.of_node; */
  2988. struct device_node *np;
  2989. /* check customer setting */
  2990. np = of_find_compatible_node(NULL, NULL, "mediatek,battery");
  2991. if (!np) {
  2992. /* printk(KERN_ERR "(E) Failed to find device-tree node: %s\n", path); */
  2993. battery_log(BAT_LOG_CRTI, "Failed to find device-tree node: bat_comm\n");
  2994. return -ENODEV;
  2995. }
  2996. __batt_parse_node(np, "stop_charging_in_takling",
  2997. &batt_cust_data.stop_charging_in_takling);
  2998. __batt_parse_node(np, "talking_recharge_voltage",
  2999. &batt_cust_data.talking_recharge_voltage);
  3000. __batt_parse_node(np, "talking_sync_time",
  3001. &batt_cust_data.talking_sync_time);
  3002. __batt_parse_node(np, "mtk_temperature_recharge_support",
  3003. &batt_cust_data.mtk_temperature_recharge_support);
  3004. __batt_parse_node(np, "max_charge_temperature",
  3005. &batt_cust_data.max_charge_temperature);
  3006. __batt_parse_node(np, "max_charge_temperature_minus_x_degree",
  3007. &batt_cust_data.max_charge_temperature_minus_x_degree);
  3008. __batt_parse_node(np, "min_charge_temperature",
  3009. &batt_cust_data.min_charge_temperature);
  3010. __batt_parse_node(np, "min_charge_temperature_plus_x_degree",
  3011. &batt_cust_data.min_charge_temperature_plus_x_degree);
  3012. __batt_parse_node(np, "err_charge_temperature",
  3013. &batt_cust_data.err_charge_temperature);
  3014. __batt_parse_node(np, "v_pre2cc_thres",
  3015. &batt_cust_data.v_pre2cc_thres);
  3016. __batt_parse_node(np, "v_cc2topoff_thres",
  3017. &batt_cust_data.v_cc2topoff_thres);
  3018. __batt_parse_node(np, "recharging_voltage",
  3019. &batt_cust_data.recharging_voltage);
  3020. __batt_parse_node(np, "charging_full_current",
  3021. &batt_cust_data.charging_full_current);
  3022. __batt_parse_node(np, "config_usb_if",
  3023. &batt_cust_data.config_usb_if);
  3024. __batt_parse_node(np, "usb_charger_current_suspend",
  3025. &batt_cust_data.usb_charger_current_suspend);
  3026. __batt_parse_node(np, "usb_charger_current_unconfigured",
  3027. &batt_cust_data.usb_charger_current_unconfigured);
  3028. __batt_parse_node(np, "usb_charger_current_configured",
  3029. &batt_cust_data.usb_charger_current_configured);
  3030. __batt_parse_node(np, "usb_charger_current",
  3031. &batt_cust_data.usb_charger_current);
  3032. __batt_parse_node(np, "ac_charger_input_current",
  3033. &batt_cust_data.ac_charger_input_current);
  3034. __batt_parse_node(np, "ac_charger_current",
  3035. &batt_cust_data.ac_charger_current);
  3036. __batt_parse_node(np, "non_std_ac_charger_current",
  3037. &batt_cust_data.non_std_ac_charger_current);
  3038. __batt_parse_node(np, "charging_host_charger_current",
  3039. &batt_cust_data.charging_host_charger_current);
  3040. __batt_parse_node(np, "apple_0_5a_charger_current",
  3041. &batt_cust_data.apple_0_5a_charger_current);
  3042. __batt_parse_node(np, "apple_1_0a_charger_current",
  3043. &batt_cust_data.apple_1_0a_charger_current);
  3044. __batt_parse_node(np, "apple_2_1a_charger_current",
  3045. &batt_cust_data.apple_2_1a_charger_current);
  3046. __batt_parse_node(np, "bat_low_temp_protect_enable",
  3047. &batt_cust_data.bat_low_temp_protect_enable);
  3048. __batt_parse_node(np, "v_charger_enable",
  3049. &batt_cust_data.v_charger_enable);
  3050. __batt_parse_node(np, "v_charger_max",
  3051. &batt_cust_data.v_charger_max);
  3052. __batt_parse_node(np, "v_charger_min",
  3053. &batt_cust_data.v_charger_min);
  3054. __batt_parse_node(np, "onehundred_percent_tracking_time",
  3055. &batt_cust_data.onehundred_percent_tracking_time);
  3056. __batt_parse_node(np, "npercent_tracking_time",
  3057. &batt_cust_data.npercent_tracking_time);
  3058. __batt_parse_node(np, "sync_to_real_tracking_time",
  3059. &batt_cust_data.sync_to_real_tracking_time);
  3060. __batt_parse_node(np, "v_0percent_tracking",
  3061. &batt_cust_data.v_0percent_tracking);
  3062. __batt_parse_node(np, "high_battery_voltage_support",
  3063. &batt_cust_data.high_battery_voltage_support);
  3064. __batt_parse_node(np, "mtk_jeita_standard_support",
  3065. &batt_cust_data.mtk_jeita_standard_support);
  3066. __batt_parse_node(np, "cust_soc_jeita_sync_time",
  3067. &batt_cust_data.cust_soc_jeita_sync_time);
  3068. __batt_parse_node(np, "jeita_recharge_voltage",
  3069. &batt_cust_data.jeita_recharge_voltage);
  3070. __batt_parse_node(np, "jeita_temp_above_pos_60_cv_voltage",
  3071. &batt_cust_data.jeita_temp_above_pos_60_cv_voltage);
  3072. __batt_parse_node(np, "jeita_temp_pos_10_to_pos_45_cv_voltage",
  3073. &batt_cust_data.jeita_temp_pos_10_to_pos_45_cv_voltage);
  3074. __batt_parse_node(np, "jeita_temp_pos_0_to_pos_10_cv_voltage",
  3075. &batt_cust_data.jeita_temp_pos_0_to_pos_10_cv_voltage);
  3076. __batt_parse_node(np, "jeita_temp_neg_10_to_pos_0_cv_voltage",
  3077. &batt_cust_data.jeita_temp_neg_10_to_pos_0_cv_voltage);
  3078. __batt_parse_node(np, "jeita_temp_below_neg_10_cv_voltage",
  3079. &batt_cust_data.jeita_temp_below_neg_10_cv_voltage);
  3080. __batt_parse_node(np, "jeita_neg_10_to_pos_0_full_current",
  3081. &batt_cust_data.jeita_neg_10_to_pos_0_full_current);
  3082. __batt_parse_node(np, "jeita_temp_pos_45_to_pos_60_recharge_voltage",
  3083. &batt_cust_data.jeita_temp_pos_45_to_pos_60_recharge_voltage);
  3084. __batt_parse_node(np, "jeita_temp_pos_10_to_pos_45_recharge_voltage",
  3085. &batt_cust_data.jeita_temp_pos_10_to_pos_45_recharge_voltage);
  3086. __batt_parse_node(np, "jeita_temp_pos_0_to_pos_10_recharge_voltage",
  3087. &batt_cust_data.jeita_temp_pos_0_to_pos_10_recharge_voltage);
  3088. __batt_parse_node(np, "jeita_temp_neg_10_to_pos_0_recharge_voltage",
  3089. &batt_cust_data.jeita_temp_neg_10_to_pos_0_recharge_voltage);
  3090. __batt_parse_node(np, "jeita_temp_pos_45_to_pos_60_cc2topoff_threshold",
  3091. &batt_cust_data.jeita_temp_pos_45_to_pos_60_cc2topoff_threshold);
  3092. __batt_parse_node(np, "jeita_temp_pos_10_to_pos_45_cc2topoff_threshold",
  3093. &batt_cust_data.jeita_temp_pos_10_to_pos_45_cc2topoff_threshold);
  3094. __batt_parse_node(np, "jeita_temp_pos_0_to_pos_10_cc2topoff_threshold",
  3095. &batt_cust_data.jeita_temp_pos_0_to_pos_10_cc2topoff_threshold);
  3096. __batt_parse_node(np, "jeita_temp_neg_10_to_pos_0_cc2topoff_threshold",
  3097. &batt_cust_data.jeita_temp_neg_10_to_pos_0_cc2topoff_threshold);
  3098. #if defined(CONFIG_MTK_PUMP_EXPRESS_PLUS_SUPPORT)
  3099. __batt_parse_node(np, "mtk_pump_express_plus_support",
  3100. &batt_cust_data.mtk_pump_express_plus_support);
  3101. __batt_parse_node(np, "ta_start_battery_soc",
  3102. &batt_cust_data.ta_start_battery_soc);
  3103. __batt_parse_node(np, "ta_stop_battery_soc",
  3104. &batt_cust_data.ta_stop_battery_soc);
  3105. __batt_parse_node(np, "ta_ac_12v_input_current",
  3106. &batt_cust_data.ta_ac_12v_input_current);
  3107. __batt_parse_node(np, "ta_ac_9v_input_current",
  3108. &batt_cust_data.ta_ac_9v_input_current);
  3109. __batt_parse_node(np, "ta_ac_7v_input_current",
  3110. &batt_cust_data.ta_ac_7v_input_current);
  3111. __batt_parse_node(np, "ta_ac_charging_current",
  3112. &batt_cust_data.ta_ac_charging_current);
  3113. __batt_parse_node(np, "ta_9v_support",
  3114. &batt_cust_data.ta_9v_support);
  3115. __batt_parse_node(np, "ta_12v_support",
  3116. &batt_cust_data.ta_12v_support);
  3117. #endif
  3118. return 0;
  3119. }
  3120. #endif
  3121. int batt_init_cust_data(void)
  3122. {
  3123. __batt_init_cust_data_from_cust_header();
  3124. #if defined(CONFIG_OF)
  3125. battery_log(BAT_LOG_CRTI, "battery custom init by DTS\n");
  3126. __batt_init_cust_data_from_dt();
  3127. #endif
  3128. return 0;
  3129. }
  3130. static int battery_probe(struct platform_device *dev)
  3131. {
  3132. struct class_device *class_dev = NULL;
  3133. int ret = 0;
  3134. battery_log(BAT_LOG_CRTI, "******** battery driver probe!! ********\n");
  3135. get_monotonic_boottime(&batteryThreadRunTime);
  3136. /* Integrate with NVRAM */
  3137. ret = alloc_chrdev_region(&adc_cali_devno, 0, 1, ADC_CALI_DEVNAME);
  3138. if (ret)
  3139. battery_log(BAT_LOG_CRTI, "Error: Can't Get Major number for adc_cali\n");
  3140. adc_cali_cdev = cdev_alloc();
  3141. adc_cali_cdev->owner = THIS_MODULE;
  3142. adc_cali_cdev->ops = &adc_cali_fops;
  3143. ret = cdev_add(adc_cali_cdev, adc_cali_devno, 1);
  3144. if (ret)
  3145. battery_log(BAT_LOG_CRTI, "adc_cali Error: cdev_add\n");
  3146. adc_cali_major = MAJOR(adc_cali_devno);
  3147. adc_cali_class = class_create(THIS_MODULE, ADC_CALI_DEVNAME);
  3148. class_dev = (struct class_device *)device_create(adc_cali_class,
  3149. NULL,
  3150. adc_cali_devno, NULL, ADC_CALI_DEVNAME);
  3151. battery_log(BAT_LOG_CRTI, "[BAT_probe] adc_cali prepare : done !!\n ");
  3152. get_charging_control();
  3153. batt_init_cust_data();
  3154. #if defined(BATTERY_SW_INIT)
  3155. battery_charging_control(CHARGING_CMD_SW_INIT, NULL);
  3156. #endif
  3157. battery_charging_control(CHARGING_CMD_GET_PLATFORM_BOOT_MODE, &g_platform_boot_mode);
  3158. battery_log(BAT_LOG_CRTI, "[BAT_probe] g_platform_boot_mode = %d\n ", g_platform_boot_mode);
  3159. wake_lock_init(&battery_suspend_lock, WAKE_LOCK_SUSPEND, "battery suspend wakelock");
  3160. wake_lock_init(&battery_meter_lock, WAKE_LOCK_SUSPEND, "battery meter wakelock");
  3161. #if defined(CONFIG_MTK_PUMP_EXPRESS_SUPPORT) || defined(CONFIG_MTK_PUMP_EXPRESS_PLUS_SUPPORT)
  3162. wake_lock_init(&TA_charger_suspend_lock, WAKE_LOCK_SUSPEND, "TA charger suspend wakelock");
  3163. #endif
  3164. /* Integrate with Android Battery Service */
  3165. ret = power_supply_register(&(dev->dev), &ac_main.psy);
  3166. if (ret) {
  3167. battery_log(BAT_LOG_CRTI, "[BAT_probe] power_supply_register AC Fail !!\n");
  3168. return ret;
  3169. }
  3170. battery_log(BAT_LOG_CRTI, "[BAT_probe] power_supply_register AC Success !!\n");
  3171. ret = power_supply_register(&(dev->dev), &usb_main.psy);
  3172. if (ret) {
  3173. battery_log(BAT_LOG_CRTI, "[BAT_probe] power_supply_register USB Fail !!\n");
  3174. return ret;
  3175. }
  3176. battery_log(BAT_LOG_CRTI, "[BAT_probe] power_supply_register USB Success !!\n");
  3177. ret = power_supply_register(&(dev->dev), &wireless_main.psy);
  3178. if (ret) {
  3179. battery_log(BAT_LOG_CRTI, "[BAT_probe] power_supply_register WIRELESS Fail !!\n");
  3180. return ret;
  3181. }
  3182. battery_log(BAT_LOG_CRTI, "[BAT_probe] power_supply_register WIRELESS Success !!\n");
  3183. ret = power_supply_register(&(dev->dev), &battery_main.psy);
  3184. if (ret) {
  3185. battery_log(BAT_LOG_CRTI, "[BAT_probe] power_supply_register Battery Fail !!\n");
  3186. return ret;
  3187. }
  3188. battery_log(BAT_LOG_CRTI, "[BAT_probe] power_supply_register Battery Success !!\n");
  3189. #if !defined(CONFIG_POWER_EXT)
  3190. #ifdef CONFIG_MTK_POWER_EXT_DETECT
  3191. if (KAL_TRUE == bat_is_ext_power()) {
  3192. battery_main.BAT_STATUS = POWER_SUPPLY_STATUS_FULL;
  3193. battery_main.BAT_HEALTH = POWER_SUPPLY_HEALTH_GOOD;
  3194. battery_main.BAT_PRESENT = 1;
  3195. battery_main.BAT_TECHNOLOGY = POWER_SUPPLY_TECHNOLOGY_LION;
  3196. battery_main.BAT_CAPACITY = 100;
  3197. battery_main.BAT_batt_vol = 4200;
  3198. battery_main.BAT_batt_temp = 220;
  3199. g_bat_init_flag = KAL_TRUE;
  3200. return 0;
  3201. }
  3202. #endif
  3203. /* For EM */
  3204. {
  3205. int ret_device_file = 0;
  3206. ret_device_file = device_create_file(&(dev->dev), &dev_attr_ADC_Charger_Voltage);
  3207. ret_device_file = device_create_file(&(dev->dev), &dev_attr_ADC_Channel_0_Slope);
  3208. ret_device_file = device_create_file(&(dev->dev), &dev_attr_ADC_Channel_1_Slope);
  3209. ret_device_file = device_create_file(&(dev->dev), &dev_attr_ADC_Channel_2_Slope);
  3210. ret_device_file = device_create_file(&(dev->dev), &dev_attr_ADC_Channel_3_Slope);
  3211. ret_device_file = device_create_file(&(dev->dev), &dev_attr_ADC_Channel_4_Slope);
  3212. ret_device_file = device_create_file(&(dev->dev), &dev_attr_ADC_Channel_5_Slope);
  3213. ret_device_file = device_create_file(&(dev->dev), &dev_attr_ADC_Channel_6_Slope);
  3214. ret_device_file = device_create_file(&(dev->dev), &dev_attr_ADC_Channel_7_Slope);
  3215. ret_device_file = device_create_file(&(dev->dev), &dev_attr_ADC_Channel_8_Slope);
  3216. ret_device_file = device_create_file(&(dev->dev), &dev_attr_ADC_Channel_9_Slope);
  3217. ret_device_file = device_create_file(&(dev->dev), &dev_attr_ADC_Channel_10_Slope);
  3218. ret_device_file = device_create_file(&(dev->dev), &dev_attr_ADC_Channel_11_Slope);
  3219. ret_device_file = device_create_file(&(dev->dev), &dev_attr_ADC_Channel_12_Slope);
  3220. ret_device_file = device_create_file(&(dev->dev), &dev_attr_ADC_Channel_13_Slope);
  3221. ret_device_file = device_create_file(&(dev->dev), &dev_attr_ADC_Channel_0_Offset);
  3222. ret_device_file = device_create_file(&(dev->dev), &dev_attr_ADC_Channel_1_Offset);
  3223. ret_device_file = device_create_file(&(dev->dev), &dev_attr_ADC_Channel_2_Offset);
  3224. ret_device_file = device_create_file(&(dev->dev), &dev_attr_ADC_Channel_3_Offset);
  3225. ret_device_file = device_create_file(&(dev->dev), &dev_attr_ADC_Channel_4_Offset);
  3226. ret_device_file = device_create_file(&(dev->dev), &dev_attr_ADC_Channel_5_Offset);
  3227. ret_device_file = device_create_file(&(dev->dev), &dev_attr_ADC_Channel_6_Offset);
  3228. ret_device_file = device_create_file(&(dev->dev), &dev_attr_ADC_Channel_7_Offset);
  3229. ret_device_file = device_create_file(&(dev->dev), &dev_attr_ADC_Channel_8_Offset);
  3230. ret_device_file = device_create_file(&(dev->dev), &dev_attr_ADC_Channel_9_Offset);
  3231. ret_device_file = device_create_file(&(dev->dev), &dev_attr_ADC_Channel_10_Offset);
  3232. ret_device_file = device_create_file(&(dev->dev), &dev_attr_ADC_Channel_11_Offset);
  3233. ret_device_file = device_create_file(&(dev->dev), &dev_attr_ADC_Channel_12_Offset);
  3234. ret_device_file = device_create_file(&(dev->dev), &dev_attr_ADC_Channel_13_Offset);
  3235. ret_device_file =
  3236. device_create_file(&(dev->dev), &dev_attr_ADC_Channel_Is_Calibration);
  3237. ret_device_file = device_create_file(&(dev->dev), &dev_attr_Power_On_Voltage);
  3238. ret_device_file = device_create_file(&(dev->dev), &dev_attr_Power_Off_Voltage);
  3239. ret_device_file = device_create_file(&(dev->dev), &dev_attr_Charger_TopOff_Value);
  3240. ret_device_file =
  3241. device_create_file(&(dev->dev), &dev_attr_FG_Battery_CurrentConsumption);
  3242. ret_device_file = device_create_file(&(dev->dev), &dev_attr_FG_SW_CoulombCounter);
  3243. ret_device_file = device_create_file(&(dev->dev), &dev_attr_Charging_CallState);
  3244. ret_device_file = device_create_file(&(dev->dev), &dev_attr_Charger_Type);
  3245. #if defined(CONFIG_MTK_PUMP_EXPRESS_SUPPORT) || defined(CONFIG_MTK_PUMP_EXPRESS_PLUS_SUPPORT)
  3246. ret_device_file = device_create_file(&(dev->dev), &dev_attr_Pump_Express);
  3247. #endif
  3248. }
  3249. /* battery_meter_initial(); //move to mt_battery_GetBatteryData() to decrease booting time */
  3250. /* Initialization BMT Struct */
  3251. BMT_status.bat_exist = KAL_TRUE; /* phone must have battery */
  3252. BMT_status.charger_exist = KAL_FALSE; /* for default, no charger */
  3253. BMT_status.bat_vol = 0;
  3254. BMT_status.ICharging = 0;
  3255. BMT_status.temperature = 0;
  3256. BMT_status.charger_vol = 0;
  3257. BMT_status.total_charging_time = 0;
  3258. BMT_status.PRE_charging_time = 0;
  3259. BMT_status.CC_charging_time = 0;
  3260. BMT_status.TOPOFF_charging_time = 0;
  3261. BMT_status.POSTFULL_charging_time = 0;
  3262. BMT_status.SOC = 0;
  3263. BMT_status.UI_SOC = -100;
  3264. BMT_status.UI_SOC2 = -1;
  3265. BMT_status.bat_charging_state = CHR_PRE;
  3266. BMT_status.bat_in_recharging_state = KAL_FALSE;
  3267. BMT_status.bat_full = KAL_FALSE;
  3268. BMT_status.nPercent_ZCV = 0;
  3269. BMT_status.nPrecent_UI_SOC_check_point = battery_meter_get_battery_nPercent_UI_SOC();
  3270. #if defined(CONFIG_MTK_DUAL_INPUT_CHARGER_SUPPORT)
  3271. dual_input_init();
  3272. #endif
  3273. /* battery kernel thread for 10s check and charger in/out event */
  3274. /* Replace GPT timer by hrtime */
  3275. battery_kthread_hrtimer_init();
  3276. kthread_run(bat_routine_thread, NULL, "bat_routine_thread");
  3277. kthread_run(bat_update_thread, NULL, "bat_update_thread");
  3278. battery_log(BAT_LOG_CRTI, "[battery_probe] battery kthread init done\n");
  3279. charger_hv_detect_sw_workaround_init();
  3280. /* LOG System Set */
  3281. init_proc_log();
  3282. #else
  3283. /* keep HW alive */
  3284. charger_hv_detect_sw_workaround_init();
  3285. #endif
  3286. g_bat_init_flag = KAL_TRUE;
  3287. #if defined(CONFIG_MTK_DUAL_INPUT_CHARGER_SUPPORT)
  3288. if (g_vcdt_irq_delay_flag == KAL_TRUE)
  3289. do_chrdet_int_task();
  3290. #endif
  3291. return 0;
  3292. }
  3293. static void battery_timer_pause(void)
  3294. {
  3295. /* battery_log(BAT_LOG_CRTI, "******** battery driver suspend!! ********\n" ); */
  3296. #ifdef CONFIG_POWER_EXT
  3297. #else
  3298. #ifdef CONFIG_MTK_POWER_EXT_DETECT
  3299. if (KAL_TRUE == bat_is_ext_power())
  3300. return 0;
  3301. #endif
  3302. mutex_lock(&bat_mutex);
  3303. /* cancel timer */
  3304. hrtimer_cancel(&battery_kthread_timer);
  3305. hrtimer_cancel(&charger_hv_detect_timer);
  3306. battery_suspended = KAL_TRUE;
  3307. mutex_unlock(&bat_mutex);
  3308. battery_log(BAT_LOG_CRTI, "@bs=1@\n");
  3309. #endif
  3310. get_monotonic_boottime(&g_bat_time_before_sleep);
  3311. }
  3312. static void battery_timer_resume(void)
  3313. {
  3314. #ifdef CONFIG_POWER_EXT
  3315. #else
  3316. kal_bool is_pcm_timer_trigger = KAL_FALSE;
  3317. struct timespec bat_time_after_sleep;
  3318. ktime_t ktime, hvtime;
  3319. #ifdef CONFIG_MTK_POWER_EXT_DETECT
  3320. if (KAL_TRUE == bat_is_ext_power())
  3321. return 0;
  3322. #endif
  3323. ktime = ktime_set(BAT_TASK_PERIOD, 0); /* 10s, 10* 1000 ms */
  3324. hvtime = ktime_set(0, BAT_MS_TO_NS(2000));
  3325. get_monotonic_boottime(&bat_time_after_sleep);
  3326. battery_charging_control(CHARGING_CMD_GET_IS_PCM_TIMER_TRIGGER, &is_pcm_timer_trigger);
  3327. battery_log(BAT_LOG_CRTI, "[battery_timer_resume] is_pcm_timer_trigger %d bat_spm_timeout %d lbat %d\n",
  3328. is_pcm_timer_trigger, bat_spm_timeout, battery_meter_get_low_battery_interrupt_status());
  3329. if (is_pcm_timer_trigger == KAL_TRUE || bat_spm_timeout || battery_meter_get_low_battery_interrupt_status()) {
  3330. mutex_lock(&bat_mutex);
  3331. battery_meter_reset_sleep_time();
  3332. BAT_thread();
  3333. mutex_unlock(&bat_mutex);
  3334. } else {
  3335. battery_log(BAT_LOG_CRTI, "battery resume NOT by pcm timer!!\n");
  3336. }
  3337. /* phone call last than x min */
  3338. if (g_call_state == CALL_ACTIVE
  3339. && (bat_time_after_sleep.tv_sec - g_bat_time_before_sleep.tv_sec >=
  3340. TALKING_SYNC_TIME)) {
  3341. BMT_status.UI_SOC = battery_meter_get_battery_percentage();
  3342. battery_log(BAT_LOG_CRTI, "Sync UI SOC to SOC immediately\n");
  3343. }
  3344. mutex_lock(&bat_mutex);
  3345. /* restore timer */
  3346. hrtimer_start(&battery_kthread_timer, ktime, HRTIMER_MODE_REL);
  3347. hrtimer_start(&charger_hv_detect_timer, hvtime, HRTIMER_MODE_REL);
  3348. /*
  3349. battery_log(BAT_LOG_CRTI,
  3350. "[fg reg] current:0x%x 0x%x low:0x%x 0x%x high:0x%x 0x%x\r\n",
  3351. pmic_get_register_value(MT6351_PMIC_FG_CAR_18_03), pmic_get_register_value(MT6351_PMIC_FG_CAR_34_19),
  3352. pmic_get_register_value(MT6351_PMIC_FG_BLTR_15_00), pmic_get_register_value(MT6351_PMIC_FG_BLTR_31_16),
  3353. pmic_get_register_value(MT6351_PMIC_FG_BFTR_15_00), pmic_get_register_value(MT6351_PMIC_FG_BFTR_31_16));
  3354. {
  3355. signed int cur, low, high;
  3356. cur = (pmic_get_register_value(MT6351_PMIC_FG_CAR_18_03));
  3357. cur |= ((pmic_get_register_value(MT6351_PMIC_FG_CAR_34_19)) & 0xffff) << 16;
  3358. low = (pmic_get_register_value(MT6351_PMIC_FG_BLTR_15_00));
  3359. low |= ((pmic_get_register_value(MT6351_PMIC_FG_BLTR_31_16)) & 0xffff) << 16;
  3360. high = (pmic_get_register_value(MT6351_PMIC_FG_BFTR_15_00));
  3361. high |= ((pmic_get_register_value(MT6351_PMIC_FG_BFTR_31_16)) & 0xffff) << 16;
  3362. battery_log(BAT_LOG_CRTI,
  3363. "[fg reg] current:%d low:%d high:%d\r\n", cur, low, high);
  3364. }
  3365. */
  3366. battery_suspended = KAL_FALSE;
  3367. battery_log(BAT_LOG_CRTI, "@bs=0@\n");
  3368. mutex_unlock(&bat_mutex);
  3369. #endif
  3370. }
  3371. static int battery_remove(struct platform_device *dev)
  3372. {
  3373. battery_log(BAT_LOG_CRTI, "******** battery driver remove!! ********\n");
  3374. return 0;
  3375. }
  3376. static void battery_shutdown(struct platform_device *dev)
  3377. {
  3378. battery_log(BAT_LOG_CRTI, "******** battery driver shutdown!! ********\n");
  3379. }
  3380. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  3381. /* // Battery Notify API */
  3382. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  3383. static ssize_t show_BatteryNotify(struct device *dev, struct device_attribute *attr, char *buf)
  3384. {
  3385. battery_log(BAT_LOG_CRTI, "[Battery] show_BatteryNotify : %x\n", g_BatteryNotifyCode);
  3386. return sprintf(buf, "%u\n", g_BatteryNotifyCode);
  3387. }
  3388. static ssize_t store_BatteryNotify(struct device *dev, struct device_attribute *attr,
  3389. const char *buf, size_t size)
  3390. {
  3391. unsigned int reg_BatteryNotifyCode = 0;
  3392. int ret;
  3393. battery_log(BAT_LOG_CRTI, "[Battery] store_BatteryNotify\n");
  3394. if (buf != NULL && size != 0) {
  3395. battery_log(BAT_LOG_CRTI, "[Battery] buf is %s and size is %Zu\n", buf, size);
  3396. ret = kstrtouint(buf, 16, &reg_BatteryNotifyCode);
  3397. g_BatteryNotifyCode = reg_BatteryNotifyCode;
  3398. battery_log(BAT_LOG_CRTI, "[Battery] store code : %x\n", g_BatteryNotifyCode);
  3399. }
  3400. return size;
  3401. }
  3402. static DEVICE_ATTR(BatteryNotify, 0664, show_BatteryNotify, store_BatteryNotify);
  3403. static ssize_t show_BN_TestMode(struct device *dev, struct device_attribute *attr, char *buf)
  3404. {
  3405. battery_log(BAT_LOG_CRTI, "[Battery] show_BN_TestMode : %x\n", g_BN_TestMode);
  3406. return sprintf(buf, "%u\n", g_BN_TestMode);
  3407. }
  3408. static ssize_t store_BN_TestMode(struct device *dev, struct device_attribute *attr, const char *buf,
  3409. size_t size)
  3410. {
  3411. unsigned int reg_BN_TestMode = 0;
  3412. int ret;
  3413. battery_log(BAT_LOG_CRTI, "[Battery] store_BN_TestMode\n");
  3414. if (buf != NULL && size != 0) {
  3415. battery_log(BAT_LOG_CRTI, "[Battery] buf is %s and size is %Zu\n", buf, size);
  3416. ret = kstrtouint(buf, 16, &reg_BN_TestMode);
  3417. g_BN_TestMode = reg_BN_TestMode;
  3418. battery_log(BAT_LOG_CRTI, "[Battery] store g_BN_TestMode : %x\n", g_BN_TestMode);
  3419. }
  3420. return size;
  3421. }
  3422. static DEVICE_ATTR(BN_TestMode, 0664, show_BN_TestMode, store_BN_TestMode);
  3423. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  3424. /* // platform_driver API */
  3425. /* ///////////////////////////////////////////////////////////////////////////////////////// */
  3426. #if 0
  3427. static int battery_cmd_read(char *buf, char **start, off_t off, int count, int *eof, void *data)
  3428. {
  3429. int len = 0;
  3430. char *p = buf;
  3431. p += sprintf(p,
  3432. "g_battery_thermal_throttling_flag=%d,\nbattery_cmd_thermal_test_mode=%d,\nbattery_cmd_thermal_test_mode_value=%d\n",
  3433. g_battery_thermal_throttling_flag, battery_cmd_thermal_test_mode,
  3434. battery_cmd_thermal_test_mode_value);
  3435. *start = buf + off;
  3436. len = p - buf;
  3437. if (len > off)
  3438. len -= off;
  3439. else
  3440. len = 0;
  3441. return len < count ? len : count;
  3442. }
  3443. #endif
  3444. static ssize_t battery_cmd_write(struct file *file, const char *buffer, size_t count, loff_t *data)
  3445. {
  3446. int len = 0, bat_tt_enable = 0, bat_thr_test_mode = 0, bat_thr_test_value = 0;
  3447. char desc[32];
  3448. len = (count < (sizeof(desc) - 1)) ? count : (sizeof(desc) - 1);
  3449. if (copy_from_user(desc, buffer, len))
  3450. return 0;
  3451. desc[len] = '\0';
  3452. if (sscanf(desc, "%d %d %d", &bat_tt_enable, &bat_thr_test_mode, &bat_thr_test_value) == 3) {
  3453. g_battery_thermal_throttling_flag = bat_tt_enable;
  3454. battery_cmd_thermal_test_mode = bat_thr_test_mode;
  3455. battery_cmd_thermal_test_mode_value = bat_thr_test_value;
  3456. battery_log(BAT_LOG_CRTI,
  3457. "bat_tt_enable=%d, bat_thr_test_mode=%d, bat_thr_test_value=%d\n",
  3458. g_battery_thermal_throttling_flag,
  3459. battery_cmd_thermal_test_mode, battery_cmd_thermal_test_mode_value);
  3460. return count;
  3461. }
  3462. /* hidden else, for sscanf format error */
  3463. {
  3464. battery_log(BAT_LOG_CRTI,
  3465. "bad argument, echo [bat_tt_enable] [bat_thr_test_mode] [bat_thr_test_value] > battery_cmd\n");
  3466. }
  3467. return -EINVAL;
  3468. }
  3469. static int proc_utilization_show(struct seq_file *m, void *v)
  3470. {
  3471. seq_printf(m,
  3472. "=> g_battery_thermal_throttling_flag=%d,\nbattery_cmd_thermal_test_mode=%d,\nbattery_cmd_thermal_test_mode_value=%d\n",
  3473. g_battery_thermal_throttling_flag, battery_cmd_thermal_test_mode,
  3474. battery_cmd_thermal_test_mode_value);
  3475. seq_printf(m, "=> get_usb_current_unlimited=%d,\ncmd_discharging = %d\n",
  3476. get_usb_current_unlimited(), cmd_discharging);
  3477. return 0;
  3478. }
  3479. static int proc_utilization_open(struct inode *inode, struct file *file)
  3480. {
  3481. return single_open(file, proc_utilization_show, NULL);
  3482. }
  3483. static const struct file_operations battery_cmd_proc_fops = {
  3484. .open = proc_utilization_open,
  3485. .read = seq_read,
  3486. .write = battery_cmd_write,
  3487. };
  3488. static ssize_t current_cmd_write(struct file *file, const char *buffer, size_t count, loff_t *data)
  3489. {
  3490. int len = 0;
  3491. char desc[32];
  3492. int cmd_current_unlimited = false;
  3493. unsigned int charging_enable = false;
  3494. len = (count < (sizeof(desc) - 1)) ? count : (sizeof(desc) - 1);
  3495. if (copy_from_user(desc, buffer, len))
  3496. return 0;
  3497. desc[len] = '\0';
  3498. if (sscanf(desc, "%d %d", &cmd_current_unlimited, &cmd_discharging) == 2) {
  3499. set_usb_current_unlimited(cmd_current_unlimited);
  3500. if (cmd_discharging == 1) {
  3501. charging_enable = false;
  3502. adjust_power = -1;
  3503. } else if (cmd_discharging == 0) {
  3504. charging_enable = true;
  3505. adjust_power = -1;
  3506. }
  3507. battery_charging_control(CHARGING_CMD_ENABLE, &charging_enable);
  3508. battery_log(BAT_LOG_CRTI,
  3509. "[current_cmd_write] cmd_current_unlimited=%d, cmd_discharging=%d\n",
  3510. cmd_current_unlimited, cmd_discharging);
  3511. return count;
  3512. }
  3513. /* hidden else, for sscanf format error */
  3514. {
  3515. battery_log(BAT_LOG_CRTI, " bad argument, echo [enable] > current_cmd\n");
  3516. }
  3517. return -EINVAL;
  3518. }
  3519. static int current_cmd_read(struct seq_file *m, void *v)
  3520. {
  3521. unsigned int charging_enable = false;
  3522. cmd_discharging = 1;
  3523. charging_enable = false;
  3524. adjust_power = -1;
  3525. battery_charging_control(CHARGING_CMD_ENABLE, &charging_enable);
  3526. battery_log(BAT_LOG_CRTI, "[current_cmd_write] cmd_discharging=%d\n", cmd_discharging);
  3527. return 0;
  3528. }
  3529. static int proc_utilization_open_cur_stop(struct inode *inode, struct file *file)
  3530. {
  3531. return single_open(file, current_cmd_read, NULL);
  3532. }
  3533. static ssize_t discharging_cmd_write(struct file *file, const char *buffer, size_t count,
  3534. loff_t *data)
  3535. {
  3536. int len = 0;
  3537. char desc[32];
  3538. unsigned int charging_enable = false;
  3539. len = (count < (sizeof(desc) - 1)) ? count : (sizeof(desc) - 1);
  3540. if (copy_from_user(desc, buffer, len))
  3541. return 0;
  3542. desc[len] = '\0';
  3543. if (sscanf(desc, "%d %d", &charging_enable, &adjust_power) == 2) {
  3544. battery_log(BAT_LOG_CRTI, "[current_cmd_write] adjust_power = %d\n", adjust_power);
  3545. return count;
  3546. }
  3547. /* hidden else, for sscanf format error */
  3548. {
  3549. battery_log(BAT_LOG_CRTI, " bad argument, echo [enable] > current_cmd\n");
  3550. }
  3551. return -EINVAL;
  3552. }
  3553. static const struct file_operations discharging_cmd_proc_fops = {
  3554. .open = proc_utilization_open,
  3555. .read = seq_read,
  3556. .write = discharging_cmd_write,
  3557. };
  3558. static const struct file_operations current_cmd_proc_fops = {
  3559. .open = proc_utilization_open_cur_stop,
  3560. .read = seq_read,
  3561. .write = current_cmd_write,
  3562. };
  3563. static int mt_batteryNotify_probe(struct platform_device *dev)
  3564. {
  3565. int ret_device_file = 0;
  3566. /* struct proc_dir_entry *entry = NULL; */
  3567. struct proc_dir_entry *battery_dir = NULL;
  3568. battery_log(BAT_LOG_CRTI, "******** mt_batteryNotify_probe!! ********\n");
  3569. ret_device_file = device_create_file(&(dev->dev), &dev_attr_BatteryNotify);
  3570. ret_device_file = device_create_file(&(dev->dev), &dev_attr_BN_TestMode);
  3571. battery_dir = proc_mkdir("mtk_battery_cmd", NULL);
  3572. if (!battery_dir) {
  3573. pr_err("[%s]: mkdir /proc/mtk_battery_cmd failed\n", __func__);
  3574. } else {
  3575. #if 1
  3576. proc_create("battery_cmd", S_IRUGO | S_IWUSR, battery_dir, &battery_cmd_proc_fops);
  3577. battery_log(BAT_LOG_CRTI, "proc_create battery_cmd_proc_fops\n");
  3578. proc_create("current_cmd", S_IRUGO | S_IWUSR, battery_dir, &current_cmd_proc_fops);
  3579. battery_log(BAT_LOG_CRTI, "proc_create current_cmd_proc_fops\n");
  3580. proc_create("discharging_cmd", S_IRUGO | S_IWUSR, battery_dir,
  3581. &discharging_cmd_proc_fops);
  3582. battery_log(BAT_LOG_CRTI, "proc_create discharging_cmd_proc_fops\n");
  3583. #else
  3584. entry = create_proc_entry("battery_cmd", S_IRUGO | S_IWUSR, battery_dir);
  3585. if (entry) {
  3586. entry->read_proc = battery_cmd_read;
  3587. entry->write_proc = battery_cmd_write;
  3588. }
  3589. #endif
  3590. }
  3591. battery_log(BAT_LOG_CRTI, "******** mtk_battery_cmd!! ********\n");
  3592. return 0;
  3593. }
  3594. #ifdef CONFIG_OF
  3595. static const struct of_device_id mt_battery_of_match[] = {
  3596. {.compatible = "mediatek,battery",},
  3597. {},
  3598. };
  3599. MODULE_DEVICE_TABLE(of, mt_battery_of_match);
  3600. #endif
  3601. static int battery_pm_suspend(struct device *device)
  3602. {
  3603. int ret = 0;
  3604. struct platform_device *pdev = to_platform_device(device);
  3605. BUG_ON(pdev == NULL);
  3606. return ret;
  3607. }
  3608. static int battery_pm_resume(struct device *device)
  3609. {
  3610. int ret = 0;
  3611. struct platform_device *pdev = to_platform_device(device);
  3612. BUG_ON(pdev == NULL);
  3613. return ret;
  3614. }
  3615. static int battery_pm_freeze(struct device *device)
  3616. {
  3617. int ret = 0;
  3618. struct platform_device *pdev = to_platform_device(device);
  3619. BUG_ON(pdev == NULL);
  3620. return ret;
  3621. }
  3622. static int battery_pm_restore(struct device *device)
  3623. {
  3624. int ret = 0;
  3625. struct platform_device *pdev = to_platform_device(device);
  3626. BUG_ON(pdev == NULL);
  3627. return ret;
  3628. }
  3629. static int battery_pm_restore_noirq(struct device *device)
  3630. {
  3631. int ret = 0;
  3632. struct platform_device *pdev = to_platform_device(device);
  3633. BUG_ON(pdev == NULL);
  3634. return ret;
  3635. }
  3636. struct dev_pm_ops const battery_pm_ops = {
  3637. .suspend = battery_pm_suspend,
  3638. .resume = battery_pm_resume,
  3639. .freeze = battery_pm_freeze,
  3640. .thaw = battery_pm_restore,
  3641. .restore = battery_pm_restore,
  3642. .restore_noirq = battery_pm_restore_noirq,
  3643. };
  3644. #if defined(CONFIG_OF) || defined(BATTERY_MODULE_INIT)
  3645. struct platform_device battery_device = {
  3646. .name = "battery",
  3647. .id = -1,
  3648. };
  3649. #endif
  3650. static struct platform_driver battery_driver = {
  3651. .probe = battery_probe,
  3652. .remove = battery_remove,
  3653. .shutdown = battery_shutdown,
  3654. .driver = {
  3655. .name = "battery",
  3656. .pm = &battery_pm_ops,
  3657. },
  3658. };
  3659. #ifdef CONFIG_OF
  3660. static int battery_dts_probe(struct platform_device *dev)
  3661. {
  3662. int ret = 0;
  3663. battery_log(BAT_LOG_CRTI, "******** battery_dts_probe!! ********\n");
  3664. battery_device.dev.of_node = dev->dev.of_node;
  3665. ret = platform_device_register(&battery_device);
  3666. if (ret) {
  3667. battery_log(BAT_LOG_CRTI,
  3668. "****[battery_dts_probe] Unable to register device (%d)\n", ret);
  3669. return ret;
  3670. }
  3671. return 0;
  3672. }
  3673. static struct platform_driver battery_dts_driver = {
  3674. .probe = battery_dts_probe,
  3675. .remove = NULL,
  3676. .shutdown = NULL,
  3677. .driver = {
  3678. .name = "battery-dts",
  3679. #ifdef CONFIG_OF
  3680. .of_match_table = mt_battery_of_match,
  3681. #endif
  3682. },
  3683. };
  3684. /* -------------------------------------------------------- */
  3685. static const struct of_device_id mt_bat_notify_of_match[] = {
  3686. {.compatible = "mediatek,bat_notify",},
  3687. {},
  3688. };
  3689. MODULE_DEVICE_TABLE(of, mt_bat_notify_of_match);
  3690. #endif
  3691. struct platform_device MT_batteryNotify_device = {
  3692. .name = "mt-battery",
  3693. .id = -1,
  3694. };
  3695. static struct platform_driver mt_batteryNotify_driver = {
  3696. .probe = mt_batteryNotify_probe,
  3697. .driver = {
  3698. .name = "mt-battery",
  3699. },
  3700. };
  3701. #ifdef CONFIG_OF
  3702. static int mt_batteryNotify_dts_probe(struct platform_device *dev)
  3703. {
  3704. int ret = 0;
  3705. battery_log(BAT_LOG_CRTI, "******** mt_batteryNotify_dts_probe!! ********\n");
  3706. MT_batteryNotify_device.dev.of_node = dev->dev.of_node;
  3707. ret = platform_device_register(&MT_batteryNotify_device);
  3708. if (ret) {
  3709. battery_log(BAT_LOG_CRTI,
  3710. "****[mt_batteryNotify_dts] Unable to register device (%d)\n", ret);
  3711. return ret;
  3712. }
  3713. return 0;
  3714. }
  3715. static struct platform_driver mt_batteryNotify_dts_driver = {
  3716. .probe = mt_batteryNotify_dts_probe,
  3717. .driver = {
  3718. .name = "mt-dts-battery",
  3719. #ifdef CONFIG_OF
  3720. .of_match_table = mt_bat_notify_of_match,
  3721. #endif
  3722. },
  3723. };
  3724. #endif
  3725. /* -------------------------------------------------------- */
  3726. static int battery_pm_event(struct notifier_block *notifier, unsigned long pm_event, void *unused)
  3727. {
  3728. switch (pm_event) {
  3729. case PM_HIBERNATION_PREPARE: /* Going to hibernate */
  3730. pr_warn("[%s] pm_event %lu (IPOH)\n", __func__, pm_event);
  3731. Is_In_IPOH = TRUE;
  3732. case PM_RESTORE_PREPARE: /* Going to restore a saved image */
  3733. case PM_SUSPEND_PREPARE: /* Going to suspend the system */
  3734. pr_warn("[%s] pm_event %lu\n", __func__, pm_event);
  3735. battery_timer_pause();
  3736. return NOTIFY_DONE;
  3737. case PM_POST_SUSPEND: /* Suspend finished */
  3738. case PM_POST_RESTORE: /* Restore failed */
  3739. pr_warn("[%s] pm_event %lu\n", __func__, pm_event);
  3740. battery_timer_resume();
  3741. return NOTIFY_DONE;
  3742. case PM_POST_HIBERNATION: /* Hibernation finished */
  3743. pr_warn("[%s] pm_event %lu\n", __func__, pm_event);
  3744. fg_ipoh_reset = 1;
  3745. battery_timer_resume();
  3746. if (pending_wake_up_bat) {
  3747. pr_warn("[%s] PM_POST_HIBERNATION b4r wakeup bat_routine_wq\n", __func__);
  3748. wake_up(&bat_routine_wq);
  3749. }
  3750. pending_wake_up_bat = FALSE;
  3751. Is_In_IPOH = FALSE;
  3752. return NOTIFY_DONE;
  3753. }
  3754. return NOTIFY_OK;
  3755. }
  3756. static struct notifier_block battery_pm_notifier_block = {
  3757. .notifier_call = battery_pm_event,
  3758. .priority = 0,
  3759. };
  3760. static int __init battery_init(void)
  3761. {
  3762. int ret;
  3763. battery_log(BAT_LOG_CRTI, "battery_init\n");
  3764. #ifdef CONFIG_OF
  3765. /* */
  3766. #else
  3767. #ifdef BATTERY_MODULE_INIT
  3768. ret = platform_device_register(&battery_device);
  3769. if (ret) {
  3770. battery_log(BAT_LOG_CRTI,
  3771. "****[battery_device] Unable to device register(%d)\n", ret);
  3772. return ret;
  3773. }
  3774. #endif
  3775. #endif
  3776. ret = platform_driver_register(&battery_driver);
  3777. if (ret) {
  3778. battery_log(BAT_LOG_CRTI,
  3779. "****[battery_driver] Unable to register driver (%d)\n", ret);
  3780. return ret;
  3781. }
  3782. /* battery notofy UI */
  3783. #ifdef CONFIG_OF
  3784. /* */
  3785. #else
  3786. ret = platform_device_register(&MT_batteryNotify_device);
  3787. if (ret) {
  3788. battery_log(BAT_LOG_CRTI,
  3789. "****[mt_batteryNotify] Unable to device register(%d)\n", ret);
  3790. return ret;
  3791. }
  3792. #endif
  3793. ret = platform_driver_register(&mt_batteryNotify_driver);
  3794. if (ret) {
  3795. battery_log(BAT_LOG_CRTI,
  3796. "****[mt_batteryNotify] Unable to register driver (%d)\n", ret);
  3797. return ret;
  3798. }
  3799. #ifdef CONFIG_OF
  3800. ret = platform_driver_register(&battery_dts_driver);
  3801. ret = platform_driver_register(&mt_batteryNotify_dts_driver);
  3802. #endif
  3803. ret = register_pm_notifier(&battery_pm_notifier_block);
  3804. if (ret)
  3805. battery_log(BAT_LOG_CRTI, "[%s] failed to register PM notifier %d\n", __func__,
  3806. ret);
  3807. battery_log(BAT_LOG_CRTI, "****[battery_driver] Initialization : DONE !!\n");
  3808. return 0;
  3809. }
  3810. #ifdef BATTERY_MODULE_INIT
  3811. late_initcall(battery_init);
  3812. #else
  3813. static void __exit battery_exit(void)
  3814. {
  3815. }
  3816. module_init(battery_init);
  3817. module_exit(battery_exit);
  3818. #endif
  3819. MODULE_AUTHOR("Oscar Liu");
  3820. MODULE_DESCRIPTION("Battery Device Driver");
  3821. MODULE_LICENSE("GPL");