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By using cm_notify_event function, charger driver can report several charger events (e.g. battery full and external power in/out, etc) to Charger-Manager. Charger-Manager can properly and immediately control chargers by the reported event. Signed-off-by: MyungJoo Ham <myungjoo.ham@samsung.com> Signed-off-by: Donggeun Kim <dg77.kim@samsung.com> Signed-off-by: Kyungmin Park <kyungmin.park@samsung.com> Signed-off-by: Anton Vorontsov <anton.vorontsov@linaro.org>
182 lines
5.2 KiB
C
182 lines
5.2 KiB
C
/*
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* Copyright (C) 2011 Samsung Electronics Co., Ltd.
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* MyungJoo.Ham <myungjoo.ham@samsung.com>
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*
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* Charger Manager.
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* This framework enables to control and multiple chargers and to
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* monitor charging even in the context of suspend-to-RAM with
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* an interface combining the chargers.
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License version 2 as
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* published by the Free Software Foundation.
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**/
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#ifndef _CHARGER_MANAGER_H
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#define _CHARGER_MANAGER_H
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#include <linux/power_supply.h>
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enum data_source {
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CM_BATTERY_PRESENT,
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CM_NO_BATTERY,
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CM_FUEL_GAUGE,
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CM_CHARGER_STAT,
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};
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enum polling_modes {
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CM_POLL_DISABLE = 0,
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CM_POLL_ALWAYS,
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CM_POLL_EXTERNAL_POWER_ONLY,
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CM_POLL_CHARGING_ONLY,
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};
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enum cm_event_types {
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CM_EVENT_UNKNOWN = 0,
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CM_EVENT_BATT_FULL,
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CM_EVENT_BATT_IN,
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CM_EVENT_BATT_OUT,
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CM_EVENT_EXT_PWR_IN_OUT,
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CM_EVENT_CHG_START_STOP,
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CM_EVENT_OTHERS,
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};
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/**
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* struct charger_global_desc
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* @rtc_name: the name of RTC used to wake up the system from suspend.
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* @rtc_only_wakeup:
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* If the system is woken up by waekup-sources other than the RTC or
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* callbacks, Charger Manager should recognize with
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* rtc_only_wakeup() returning false.
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* If the RTC given to CM is the only wakeup reason,
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* rtc_only_wakeup should return true.
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* @assume_timer_stops_in_suspend:
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* Assume that the jiffy timer stops in suspend-to-RAM.
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* When enabled, CM does not rely on jiffies value in
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* suspend_again and assumes that jiffies value does not
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* change during suspend.
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*/
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struct charger_global_desc {
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char *rtc_name;
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bool (*rtc_only_wakeup)(void);
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bool assume_timer_stops_in_suspend;
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};
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/**
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* struct charger_desc
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* @psy_name: the name of power-supply-class for charger manager
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* @polling_mode:
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* Determine which polling mode will be used
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* @fullbatt_vchkdrop_ms:
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* @fullbatt_vchkdrop_uV:
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* Check voltage drop after the battery is fully charged.
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* If it has dropped more than fullbatt_vchkdrop_uV after
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* fullbatt_vchkdrop_ms, CM will restart charging.
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* @fullbatt_uV: voltage in microvolt
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* If it is not being charged and VBATT >= fullbatt_uV,
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* it is assumed to be full.
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* @polling_interval_ms: interval in millisecond at which
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* charger manager will monitor battery health
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* @battery_present:
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* Specify where information for existance of battery can be obtained
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* @psy_charger_stat: the names of power-supply for chargers
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* @num_charger_regulator: the number of entries in charger_regulators
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* @charger_regulators: array of regulator_bulk_data for chargers
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* @psy_fuel_gauge: the name of power-supply for fuel gauge
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* @temperature_out_of_range:
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* Determine whether the status is overheat or cold or normal.
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* return_value > 0: overheat
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* return_value == 0: normal
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* return_value < 0: cold
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* @measure_battery_temp:
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* true: measure battery temperature
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* false: measure ambient temperature
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*/
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struct charger_desc {
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char *psy_name;
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enum polling_modes polling_mode;
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unsigned int polling_interval_ms;
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unsigned int fullbatt_vchkdrop_ms;
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unsigned int fullbatt_vchkdrop_uV;
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unsigned int fullbatt_uV;
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enum data_source battery_present;
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char **psy_charger_stat;
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int num_charger_regulators;
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struct regulator_bulk_data *charger_regulators;
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char *psy_fuel_gauge;
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int (*temperature_out_of_range)(int *mC);
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bool measure_battery_temp;
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};
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#define PSY_NAME_MAX 30
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/**
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* struct charger_manager
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* @entry: entry for list
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* @dev: device pointer
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* @desc: instance of charger_desc
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* @fuel_gauge: power_supply for fuel gauge
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* @charger_stat: array of power_supply for chargers
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* @charger_enabled: the state of charger
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* @fullbatt_vchk_jiffies_at:
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* jiffies at the time full battery check will occur.
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* @fullbatt_vchk_uV: voltage in microvolt
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* criteria for full battery
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* @fullbatt_vchk_work: work queue for full battery check
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* @emergency_stop:
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* When setting true, stop charging
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* @last_temp_mC: the measured temperature in milli-Celsius
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* @psy_name_buf: the name of power-supply-class for charger manager
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* @charger_psy: power_supply for charger manager
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* @status_save_ext_pwr_inserted:
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* saved status of external power before entering suspend-to-RAM
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* @status_save_batt:
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* saved status of battery before entering suspend-to-RAM
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*/
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struct charger_manager {
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struct list_head entry;
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struct device *dev;
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struct charger_desc *desc;
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struct power_supply *fuel_gauge;
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struct power_supply **charger_stat;
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bool charger_enabled;
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unsigned long fullbatt_vchk_jiffies_at;
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unsigned int fullbatt_vchk_uV;
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struct delayed_work fullbatt_vchk_work;
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int emergency_stop;
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int last_temp_mC;
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char psy_name_buf[PSY_NAME_MAX + 1];
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struct power_supply charger_psy;
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bool status_save_ext_pwr_inserted;
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bool status_save_batt;
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};
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#ifdef CONFIG_CHARGER_MANAGER
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extern int setup_charger_manager(struct charger_global_desc *gd);
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extern bool cm_suspend_again(void);
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extern void cm_notify_event(struct power_supply *psy,
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enum cm_event_types type, char *msg);
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#else
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static inline int setup_charger_manager(struct charger_global_desc *gd)
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{ return 0; }
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static inline bool cm_suspend_again(void) { return false; }
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static inline void cm_notify_event(struct power_supply *psy,
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enum cm_event_types type, char *msg) { }
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#endif
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#endif /* _CHARGER_MANAGER_H */
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