2 * Copyright (C) 2011 Samsung Electronics Co., Ltd.
3 * MyungJoo Ham <myungjoo.ham@samsung.com>
5 * This driver enables to monitor battery health and control charger
6 * during suspend-to-mem.
7 * Charger manager depends on other devices. register this later than
8 * the depending devices.
10 * This program is free software; you can redistribute it and/or modify
11 * it under the terms of the GNU General Public License version 2 as
12 * published by the Free Software Foundation.
16 #include <linux/module.h>
17 #include <linux/irq.h>
18 #include <linux/interrupt.h>
19 #include <linux/rtc.h>
20 #include <linux/slab.h>
21 #include <linux/workqueue.h>
22 #include <linux/platform_device.h>
23 #include <linux/power/charger-manager.h>
24 #include <linux/regulator/consumer.h>
25 #include <linux/sysfs.h>
27 static const char * const default_event_names
[] = {
28 [CM_EVENT_UNKNOWN
] = "Unknown",
29 [CM_EVENT_BATT_FULL
] = "Battery Full",
30 [CM_EVENT_BATT_IN
] = "Battery Inserted",
31 [CM_EVENT_BATT_OUT
] = "Battery Pulled Out",
32 [CM_EVENT_EXT_PWR_IN_OUT
] = "External Power Attach/Detach",
33 [CM_EVENT_CHG_START_STOP
] = "Charging Start/Stop",
34 [CM_EVENT_OTHERS
] = "Other battery events"
38 * Regard CM_JIFFIES_SMALL jiffies is small enough to ignore for
39 * delayed works so that we can run delayed works with CM_JIFFIES_SMALL
42 #define CM_JIFFIES_SMALL (2)
44 /* If y is valid (> 0) and smaller than x, do x = y */
45 #define CM_MIN_VALID(x, y) x = (((y > 0) && ((x) > (y))) ? (y) : (x))
48 * Regard CM_RTC_SMALL (sec) is small enough to ignore error in invoking
49 * rtc alarm. It should be 2 or larger
51 #define CM_RTC_SMALL (2)
53 #define UEVENT_BUF_SIZE 32
55 static LIST_HEAD(cm_list
);
56 static DEFINE_MUTEX(cm_list_mtx
);
58 /* About in-suspend (suspend-again) monitoring */
59 static struct rtc_device
*rtc_dev
;
62 * Save the wakeup alarm before entering suspend-to-RAM
64 static struct rtc_wkalrm rtc_wkalarm_save
;
65 /* Backup RTC alarm time in terms of seconds since 01-01-1970 00:00:00 */
66 static unsigned long rtc_wkalarm_save_time
;
67 static bool cm_suspended
;
68 static bool cm_rtc_set
;
69 static unsigned long cm_suspend_duration_ms
;
71 /* About normal (not suspended) monitoring */
72 static unsigned long polling_jiffy
= ULONG_MAX
; /* ULONG_MAX: no polling */
73 static unsigned long next_polling
; /* Next appointed polling time */
74 static struct workqueue_struct
*cm_wq
; /* init at driver add */
75 static struct delayed_work cm_monitor_work
; /* init at driver add */
77 /* Global charger-manager description */
78 static struct charger_global_desc
*g_desc
; /* init with setup_charger_manager */
81 * is_batt_present - See if the battery presents in place.
82 * @cm: the Charger Manager representing the battery.
84 static bool is_batt_present(struct charger_manager
*cm
)
86 union power_supply_propval val
;
90 switch (cm
->desc
->battery_present
) {
91 case CM_BATTERY_PRESENT
:
97 ret
= cm
->fuel_gauge
->get_property(cm
->fuel_gauge
,
98 POWER_SUPPLY_PROP_PRESENT
, &val
);
99 if (ret
== 0 && val
.intval
)
102 case CM_CHARGER_STAT
:
103 for (i
= 0; cm
->charger_stat
[i
]; i
++) {
104 ret
= cm
->charger_stat
[i
]->get_property(
106 POWER_SUPPLY_PROP_PRESENT
, &val
);
107 if (ret
== 0 && val
.intval
) {
119 * is_ext_pwr_online - See if an external power source is attached to charge
120 * @cm: the Charger Manager representing the battery.
122 * Returns true if at least one of the chargers of the battery has an external
123 * power source attached to charge the battery regardless of whether it is
124 * actually charging or not.
126 static bool is_ext_pwr_online(struct charger_manager
*cm
)
128 union power_supply_propval val
;
132 /* If at least one of them has one, it's yes. */
133 for (i
= 0; cm
->charger_stat
[i
]; i
++) {
134 ret
= cm
->charger_stat
[i
]->get_property(
136 POWER_SUPPLY_PROP_ONLINE
, &val
);
137 if (ret
== 0 && val
.intval
) {
147 * get_batt_uV - Get the voltage level of the battery
148 * @cm: the Charger Manager representing the battery.
149 * @uV: the voltage level returned.
151 * Returns 0 if there is no error.
152 * Returns a negative value on error.
154 static int get_batt_uV(struct charger_manager
*cm
, int *uV
)
156 union power_supply_propval val
;
162 ret
= cm
->fuel_gauge
->get_property(cm
->fuel_gauge
,
163 POWER_SUPPLY_PROP_VOLTAGE_NOW
, &val
);
172 * is_charging - Returns true if the battery is being charged.
173 * @cm: the Charger Manager representing the battery.
175 static bool is_charging(struct charger_manager
*cm
)
178 bool charging
= false;
179 union power_supply_propval val
;
181 /* If there is no battery, it cannot be charged */
182 if (!is_batt_present(cm
))
185 /* If at least one of the charger is charging, return yes */
186 for (i
= 0; cm
->charger_stat
[i
]; i
++) {
187 /* 1. The charger sholuld not be DISABLED */
188 if (cm
->emergency_stop
)
190 if (!cm
->charger_enabled
)
193 /* 2. The charger should be online (ext-power) */
194 ret
= cm
->charger_stat
[i
]->get_property(
196 POWER_SUPPLY_PROP_ONLINE
, &val
);
198 dev_warn(cm
->dev
, "Cannot read ONLINE value from %s.\n",
199 cm
->desc
->psy_charger_stat
[i
]);
206 * 3. The charger should not be FULL, DISCHARGING,
209 ret
= cm
->charger_stat
[i
]->get_property(
211 POWER_SUPPLY_PROP_STATUS
, &val
);
213 dev_warn(cm
->dev
, "Cannot read STATUS value from %s.\n",
214 cm
->desc
->psy_charger_stat
[i
]);
217 if (val
.intval
== POWER_SUPPLY_STATUS_FULL
||
218 val
.intval
== POWER_SUPPLY_STATUS_DISCHARGING
||
219 val
.intval
== POWER_SUPPLY_STATUS_NOT_CHARGING
)
222 /* Then, this is charging. */
231 * is_full_charged - Returns true if the battery is fully charged.
232 * @cm: the Charger Manager representing the battery.
234 static bool is_full_charged(struct charger_manager
*cm
)
236 struct charger_desc
*desc
= cm
->desc
;
237 union power_supply_propval val
;
241 /* If there is no battery, it cannot be charged */
242 if (!is_batt_present(cm
))
245 if (cm
->fuel_gauge
&& desc
->fullbatt_full_capacity
> 0) {
248 /* Not full if capacity of fuel gauge isn't full */
249 ret
= cm
->fuel_gauge
->get_property(cm
->fuel_gauge
,
250 POWER_SUPPLY_PROP_CHARGE_FULL
, &val
);
251 if (!ret
&& val
.intval
> desc
->fullbatt_full_capacity
)
255 /* Full, if it's over the fullbatt voltage */
256 if (desc
->fullbatt_uV
> 0) {
257 ret
= get_batt_uV(cm
, &uV
);
258 if (!ret
&& uV
>= desc
->fullbatt_uV
)
262 /* Full, if the capacity is more than fullbatt_soc */
263 if (cm
->fuel_gauge
&& desc
->fullbatt_soc
> 0) {
266 ret
= cm
->fuel_gauge
->get_property(cm
->fuel_gauge
,
267 POWER_SUPPLY_PROP_CAPACITY
, &val
);
268 if (!ret
&& val
.intval
>= desc
->fullbatt_soc
)
276 * is_polling_required - Return true if need to continue polling for this CM.
277 * @cm: the Charger Manager representing the battery.
279 static bool is_polling_required(struct charger_manager
*cm
)
281 switch (cm
->desc
->polling_mode
) {
282 case CM_POLL_DISABLE
:
286 case CM_POLL_EXTERNAL_POWER_ONLY
:
287 return is_ext_pwr_online(cm
);
288 case CM_POLL_CHARGING_ONLY
:
289 return is_charging(cm
);
291 dev_warn(cm
->dev
, "Incorrect polling_mode (%d)\n",
292 cm
->desc
->polling_mode
);
299 * try_charger_enable - Enable/Disable chargers altogether
300 * @cm: the Charger Manager representing the battery.
301 * @enable: true: enable / false: disable
303 * Note that Charger Manager keeps the charger enabled regardless whether
304 * the charger is charging or not (because battery is full or no external
305 * power source exists) except when CM needs to disable chargers forcibly
306 * bacause of emergency causes; when the battery is overheated or too cold.
308 static int try_charger_enable(struct charger_manager
*cm
, bool enable
)
311 struct charger_desc
*desc
= cm
->desc
;
313 /* Ignore if it's redundent command */
314 if (enable
== cm
->charger_enabled
)
318 if (cm
->emergency_stop
)
322 * Save start time of charging to limit
323 * maximum possible charging time.
325 cm
->charging_start_time
= ktime_to_ms(ktime_get());
326 cm
->charging_end_time
= 0;
328 for (i
= 0 ; i
< desc
->num_charger_regulators
; i
++) {
329 if (desc
->charger_regulators
[i
].externally_control
)
332 err
= regulator_enable(desc
->charger_regulators
[i
].consumer
);
335 "Cannot enable %s regulator\n",
336 desc
->charger_regulators
[i
].regulator_name
);
341 * Save end time of charging to maintain fully charged state
342 * of battery after full-batt.
344 cm
->charging_start_time
= 0;
345 cm
->charging_end_time
= ktime_to_ms(ktime_get());
347 for (i
= 0 ; i
< desc
->num_charger_regulators
; i
++) {
348 if (desc
->charger_regulators
[i
].externally_control
)
351 err
= regulator_disable(desc
->charger_regulators
[i
].consumer
);
354 "Cannot disable %s regulator\n",
355 desc
->charger_regulators
[i
].regulator_name
);
360 * Abnormal battery state - Stop charging forcibly,
361 * even if charger was enabled at the other places
363 for (i
= 0; i
< desc
->num_charger_regulators
; i
++) {
364 if (regulator_is_enabled(
365 desc
->charger_regulators
[i
].consumer
)) {
366 regulator_force_disable(
367 desc
->charger_regulators
[i
].consumer
);
369 "Disable regulator(%s) forcibly.\n",
370 desc
->charger_regulators
[i
].regulator_name
);
376 cm
->charger_enabled
= enable
;
382 * try_charger_restart - Restart charging.
383 * @cm: the Charger Manager representing the battery.
385 * Restart charging by turning off and on the charger.
387 static int try_charger_restart(struct charger_manager
*cm
)
391 if (cm
->emergency_stop
)
394 err
= try_charger_enable(cm
, false);
398 return try_charger_enable(cm
, true);
402 * uevent_notify - Let users know something has changed.
403 * @cm: the Charger Manager representing the battery.
404 * @event: the event string.
406 * If @event is null, it implies that uevent_notify is called
407 * by resume function. When called in the resume function, cm_suspended
408 * should be already reset to false in order to let uevent_notify
409 * notify the recent event during the suspend to users. While
410 * suspended, uevent_notify does not notify users, but tracks
411 * events so that uevent_notify can notify users later after resumed.
413 static void uevent_notify(struct charger_manager
*cm
, const char *event
)
415 static char env_str
[UEVENT_BUF_SIZE
+ 1] = "";
416 static char env_str_save
[UEVENT_BUF_SIZE
+ 1] = "";
419 /* Nothing in suspended-event buffer */
420 if (env_str_save
[0] == 0) {
421 if (!strncmp(env_str
, event
, UEVENT_BUF_SIZE
))
422 return; /* status not changed */
423 strncpy(env_str_save
, event
, UEVENT_BUF_SIZE
);
427 if (!strncmp(env_str_save
, event
, UEVENT_BUF_SIZE
))
428 return; /* Duplicated. */
429 strncpy(env_str_save
, event
, UEVENT_BUF_SIZE
);
434 /* No messages pending */
435 if (!env_str_save
[0])
438 strncpy(env_str
, env_str_save
, UEVENT_BUF_SIZE
);
439 kobject_uevent(&cm
->dev
->kobj
, KOBJ_CHANGE
);
445 /* status not changed */
446 if (!strncmp(env_str
, event
, UEVENT_BUF_SIZE
))
449 /* save the status and notify the update */
450 strncpy(env_str
, event
, UEVENT_BUF_SIZE
);
451 kobject_uevent(&cm
->dev
->kobj
, KOBJ_CHANGE
);
453 dev_info(cm
->dev
, event
);
457 * fullbatt_vchk - Check voltage drop some times after "FULL" event.
458 * @work: the work_struct appointing the function
460 * If a user has designated "fullbatt_vchkdrop_ms/uV" values with
461 * charger_desc, Charger Manager checks voltage drop after the battery
462 * "FULL" event. It checks whether the voltage has dropped more than
463 * fullbatt_vchkdrop_uV by calling this function after fullbatt_vchkrop_ms.
465 static void fullbatt_vchk(struct work_struct
*work
)
467 struct delayed_work
*dwork
= to_delayed_work(work
);
468 struct charger_manager
*cm
= container_of(dwork
,
469 struct charger_manager
, fullbatt_vchk_work
);
470 struct charger_desc
*desc
= cm
->desc
;
471 int batt_uV
, err
, diff
;
473 /* remove the appointment for fullbatt_vchk */
474 cm
->fullbatt_vchk_jiffies_at
= 0;
476 if (!desc
->fullbatt_vchkdrop_uV
|| !desc
->fullbatt_vchkdrop_ms
)
479 err
= get_batt_uV(cm
, &batt_uV
);
481 dev_err(cm
->dev
, "%s: get_batt_uV error(%d).\n", __func__
, err
);
485 diff
= desc
->fullbatt_uV
- batt_uV
;
489 dev_info(cm
->dev
, "VBATT dropped %duV after full-batt.\n", diff
);
491 if (diff
> desc
->fullbatt_vchkdrop_uV
) {
492 try_charger_restart(cm
);
493 uevent_notify(cm
, "Recharging");
498 * check_charging_duration - Monitor charging/discharging duration
499 * @cm: the Charger Manager representing the battery.
501 * If whole charging duration exceed 'charging_max_duration_ms',
502 * cm stop charging to prevent overcharge/overheat. If discharging
503 * duration exceed 'discharging _max_duration_ms', charger cable is
504 * attached, after full-batt, cm start charging to maintain fully
505 * charged state for battery.
507 static int check_charging_duration(struct charger_manager
*cm
)
509 struct charger_desc
*desc
= cm
->desc
;
510 u64 curr
= ktime_to_ms(ktime_get());
514 if (!desc
->charging_max_duration_ms
&&
515 !desc
->discharging_max_duration_ms
)
518 if (cm
->charger_enabled
) {
519 duration
= curr
- cm
->charging_start_time
;
521 if (duration
> desc
->charging_max_duration_ms
) {
522 dev_info(cm
->dev
, "Charging duration exceed %lldms",
523 desc
->charging_max_duration_ms
);
524 uevent_notify(cm
, "Discharging");
525 try_charger_enable(cm
, false);
528 } else if (is_ext_pwr_online(cm
) && !cm
->charger_enabled
) {
529 duration
= curr
- cm
->charging_end_time
;
531 if (duration
> desc
->charging_max_duration_ms
&&
532 is_ext_pwr_online(cm
)) {
533 dev_info(cm
->dev
, "DisCharging duration exceed %lldms",
534 desc
->discharging_max_duration_ms
);
535 uevent_notify(cm
, "Recharing");
536 try_charger_enable(cm
, true);
545 * _cm_monitor - Monitor the temperature and return true for exceptions.
546 * @cm: the Charger Manager representing the battery.
548 * Returns true if there is an event to notify for the battery.
549 * (True if the status of "emergency_stop" changes)
551 static bool _cm_monitor(struct charger_manager
*cm
)
553 struct charger_desc
*desc
= cm
->desc
;
554 int temp
= desc
->temperature_out_of_range(&cm
->last_temp_mC
);
556 dev_dbg(cm
->dev
, "monitoring (%2.2d.%3.3dC)\n",
557 cm
->last_temp_mC
/ 1000, cm
->last_temp_mC
% 1000);
559 /* It has been stopped already */
560 if (temp
&& cm
->emergency_stop
)
564 * Check temperature whether overheat or cold.
565 * If temperature is out of range normal state, stop charging.
568 cm
->emergency_stop
= temp
;
569 if (!try_charger_enable(cm
, false)) {
571 uevent_notify(cm
, "OVERHEAT");
573 uevent_notify(cm
, "COLD");
577 * Check whole charging duration and discharing duration
580 } else if (!cm
->emergency_stop
&& check_charging_duration(cm
)) {
582 "Charging/Discharging duration is out of range");
584 * Check dropped voltage of battery. If battery voltage is more
585 * dropped than fullbatt_vchkdrop_uV after fully charged state,
586 * charger-manager have to recharge battery.
588 } else if (!cm
->emergency_stop
&& is_ext_pwr_online(cm
) &&
589 !cm
->charger_enabled
) {
590 fullbatt_vchk(&cm
->fullbatt_vchk_work
.work
);
593 * Check whether fully charged state to protect overcharge
594 * if charger-manager is charging for battery.
596 } else if (!cm
->emergency_stop
&& is_full_charged(cm
) &&
597 cm
->charger_enabled
) {
598 dev_info(cm
->dev
, "EVENT_HANDLE: Battery Fully Charged.\n");
599 uevent_notify(cm
, default_event_names
[CM_EVENT_BATT_FULL
]);
601 try_charger_enable(cm
, false);
603 fullbatt_vchk(&cm
->fullbatt_vchk_work
.work
);
605 cm
->emergency_stop
= 0;
606 if (is_ext_pwr_online(cm
)) {
607 if (!try_charger_enable(cm
, true))
608 uevent_notify(cm
, "CHARGING");
616 * cm_monitor - Monitor every battery.
618 * Returns true if there is an event to notify from any of the batteries.
619 * (True if the status of "emergency_stop" changes)
621 static bool cm_monitor(void)
624 struct charger_manager
*cm
;
626 mutex_lock(&cm_list_mtx
);
628 list_for_each_entry(cm
, &cm_list
, entry
) {
633 mutex_unlock(&cm_list_mtx
);
639 * _setup_polling - Setup the next instance of polling.
640 * @work: work_struct of the function _setup_polling.
642 static void _setup_polling(struct work_struct
*work
)
644 unsigned long min
= ULONG_MAX
;
645 struct charger_manager
*cm
;
646 bool keep_polling
= false;
647 unsigned long _next_polling
;
649 mutex_lock(&cm_list_mtx
);
651 list_for_each_entry(cm
, &cm_list
, entry
) {
652 if (is_polling_required(cm
) && cm
->desc
->polling_interval_ms
) {
655 if (min
> cm
->desc
->polling_interval_ms
)
656 min
= cm
->desc
->polling_interval_ms
;
660 polling_jiffy
= msecs_to_jiffies(min
);
661 if (polling_jiffy
<= CM_JIFFIES_SMALL
)
662 polling_jiffy
= CM_JIFFIES_SMALL
+ 1;
665 polling_jiffy
= ULONG_MAX
;
666 if (polling_jiffy
== ULONG_MAX
)
669 WARN(cm_wq
== NULL
, "charger-manager: workqueue not initialized"
670 ". try it later. %s\n", __func__
);
673 * Use mod_delayed_work() iff the next polling interval should
674 * occur before the currently scheduled one. If @cm_monitor_work
675 * isn't active, the end result is the same, so no need to worry
676 * about stale @next_polling.
678 _next_polling
= jiffies
+ polling_jiffy
;
680 if (time_before(_next_polling
, next_polling
)) {
681 mod_delayed_work(cm_wq
, &cm_monitor_work
, polling_jiffy
);
682 next_polling
= _next_polling
;
684 if (queue_delayed_work(cm_wq
, &cm_monitor_work
, polling_jiffy
))
685 next_polling
= _next_polling
;
688 mutex_unlock(&cm_list_mtx
);
690 static DECLARE_WORK(setup_polling
, _setup_polling
);
693 * cm_monitor_poller - The Monitor / Poller.
694 * @work: work_struct of the function cm_monitor_poller
696 * During non-suspended state, cm_monitor_poller is used to poll and monitor
699 static void cm_monitor_poller(struct work_struct
*work
)
702 schedule_work(&setup_polling
);
706 * fullbatt_handler - Event handler for CM_EVENT_BATT_FULL
707 * @cm: the Charger Manager representing the battery.
709 static void fullbatt_handler(struct charger_manager
*cm
)
711 struct charger_desc
*desc
= cm
->desc
;
713 if (!desc
->fullbatt_vchkdrop_uV
|| !desc
->fullbatt_vchkdrop_ms
)
717 device_set_wakeup_capable(cm
->dev
, true);
719 mod_delayed_work(cm_wq
, &cm
->fullbatt_vchk_work
,
720 msecs_to_jiffies(desc
->fullbatt_vchkdrop_ms
));
721 cm
->fullbatt_vchk_jiffies_at
= jiffies
+ msecs_to_jiffies(
722 desc
->fullbatt_vchkdrop_ms
);
724 if (cm
->fullbatt_vchk_jiffies_at
== 0)
725 cm
->fullbatt_vchk_jiffies_at
= 1;
728 dev_info(cm
->dev
, "EVENT_HANDLE: Battery Fully Charged.\n");
729 uevent_notify(cm
, default_event_names
[CM_EVENT_BATT_FULL
]);
733 * battout_handler - Event handler for CM_EVENT_BATT_OUT
734 * @cm: the Charger Manager representing the battery.
736 static void battout_handler(struct charger_manager
*cm
)
739 device_set_wakeup_capable(cm
->dev
, true);
741 if (!is_batt_present(cm
)) {
742 dev_emerg(cm
->dev
, "Battery Pulled Out!\n");
743 uevent_notify(cm
, default_event_names
[CM_EVENT_BATT_OUT
]);
745 uevent_notify(cm
, "Battery Reinserted?");
750 * misc_event_handler - Handler for other evnets
751 * @cm: the Charger Manager representing the battery.
752 * @type: the Charger Manager representing the battery.
754 static void misc_event_handler(struct charger_manager
*cm
,
755 enum cm_event_types type
)
758 device_set_wakeup_capable(cm
->dev
, true);
760 if (is_polling_required(cm
) && cm
->desc
->polling_interval_ms
)
761 schedule_work(&setup_polling
);
762 uevent_notify(cm
, default_event_names
[type
]);
765 static int charger_get_property(struct power_supply
*psy
,
766 enum power_supply_property psp
,
767 union power_supply_propval
*val
)
769 struct charger_manager
*cm
= container_of(psy
,
770 struct charger_manager
, charger_psy
);
771 struct charger_desc
*desc
= cm
->desc
;
776 case POWER_SUPPLY_PROP_STATUS
:
778 val
->intval
= POWER_SUPPLY_STATUS_CHARGING
;
779 else if (is_ext_pwr_online(cm
))
780 val
->intval
= POWER_SUPPLY_STATUS_NOT_CHARGING
;
782 val
->intval
= POWER_SUPPLY_STATUS_DISCHARGING
;
784 case POWER_SUPPLY_PROP_HEALTH
:
785 if (cm
->emergency_stop
> 0)
786 val
->intval
= POWER_SUPPLY_HEALTH_OVERHEAT
;
787 else if (cm
->emergency_stop
< 0)
788 val
->intval
= POWER_SUPPLY_HEALTH_COLD
;
790 val
->intval
= POWER_SUPPLY_HEALTH_GOOD
;
792 case POWER_SUPPLY_PROP_PRESENT
:
793 if (is_batt_present(cm
))
798 case POWER_SUPPLY_PROP_VOLTAGE_NOW
:
799 ret
= get_batt_uV(cm
, &val
->intval
);
801 case POWER_SUPPLY_PROP_CURRENT_NOW
:
802 ret
= cm
->fuel_gauge
->get_property(cm
->fuel_gauge
,
803 POWER_SUPPLY_PROP_CURRENT_NOW
, val
);
805 case POWER_SUPPLY_PROP_TEMP
:
806 /* in thenth of centigrade */
807 if (cm
->last_temp_mC
== INT_MIN
)
808 desc
->temperature_out_of_range(&cm
->last_temp_mC
);
809 val
->intval
= cm
->last_temp_mC
/ 100;
810 if (!desc
->measure_battery_temp
)
813 case POWER_SUPPLY_PROP_TEMP_AMBIENT
:
814 /* in thenth of centigrade */
815 if (cm
->last_temp_mC
== INT_MIN
)
816 desc
->temperature_out_of_range(&cm
->last_temp_mC
);
817 val
->intval
= cm
->last_temp_mC
/ 100;
818 if (desc
->measure_battery_temp
)
821 case POWER_SUPPLY_PROP_CAPACITY
:
822 if (!cm
->fuel_gauge
) {
827 if (!is_batt_present(cm
)) {
828 /* There is no battery. Assume 100% */
833 ret
= cm
->fuel_gauge
->get_property(cm
->fuel_gauge
,
834 POWER_SUPPLY_PROP_CAPACITY
, val
);
838 if (val
->intval
> 100) {
845 /* Do not adjust SOC when charging: voltage is overrated */
850 * If the capacity value is inconsistent, calibrate it base on
851 * the battery voltage values and the thresholds given as desc
853 ret
= get_batt_uV(cm
, &uV
);
855 /* Voltage information not available. No calibration */
860 if (desc
->fullbatt_uV
> 0 && uV
>= desc
->fullbatt_uV
&&
867 case POWER_SUPPLY_PROP_ONLINE
:
868 if (is_ext_pwr_online(cm
))
873 case POWER_SUPPLY_PROP_CHARGE_FULL
:
874 if (is_full_charged(cm
))
880 case POWER_SUPPLY_PROP_CHARGE_NOW
:
881 if (is_charging(cm
)) {
882 ret
= cm
->fuel_gauge
->get_property(cm
->fuel_gauge
,
883 POWER_SUPPLY_PROP_CHARGE_NOW
,
889 /* If CHARGE_NOW is supplied, use it */
890 val
->intval
= (val
->intval
> 0) ?
903 #define NUM_CHARGER_PSY_OPTIONAL (4)
904 static enum power_supply_property default_charger_props
[] = {
905 /* Guaranteed to provide */
906 POWER_SUPPLY_PROP_STATUS
,
907 POWER_SUPPLY_PROP_HEALTH
,
908 POWER_SUPPLY_PROP_PRESENT
,
909 POWER_SUPPLY_PROP_VOLTAGE_NOW
,
910 POWER_SUPPLY_PROP_CAPACITY
,
911 POWER_SUPPLY_PROP_ONLINE
,
912 POWER_SUPPLY_PROP_CHARGE_FULL
,
914 * Optional properties are:
915 * POWER_SUPPLY_PROP_CHARGE_NOW,
916 * POWER_SUPPLY_PROP_CURRENT_NOW,
917 * POWER_SUPPLY_PROP_TEMP, and
918 * POWER_SUPPLY_PROP_TEMP_AMBIENT,
922 static struct power_supply psy_default
= {
924 .type
= POWER_SUPPLY_TYPE_BATTERY
,
925 .properties
= default_charger_props
,
926 .num_properties
= ARRAY_SIZE(default_charger_props
),
927 .get_property
= charger_get_property
,
931 * cm_setup_timer - For in-suspend monitoring setup wakeup alarm
934 * Returns true if the alarm is set for Charger Manager to use.
936 * cm_setup_timer fails to set an alarm,
937 * cm_setup_timer does not need to set an alarm for Charger Manager,
938 * or an alarm previously configured is to be used.
940 static bool cm_setup_timer(void)
942 struct charger_manager
*cm
;
943 unsigned int wakeup_ms
= UINT_MAX
;
946 mutex_lock(&cm_list_mtx
);
948 list_for_each_entry(cm
, &cm_list
, entry
) {
949 unsigned int fbchk_ms
= 0;
951 /* fullbatt_vchk is required. setup timer for that */
952 if (cm
->fullbatt_vchk_jiffies_at
) {
953 fbchk_ms
= jiffies_to_msecs(cm
->fullbatt_vchk_jiffies_at
955 if (time_is_before_eq_jiffies(
956 cm
->fullbatt_vchk_jiffies_at
) ||
957 msecs_to_jiffies(fbchk_ms
) < CM_JIFFIES_SMALL
) {
958 fullbatt_vchk(&cm
->fullbatt_vchk_work
.work
);
962 CM_MIN_VALID(wakeup_ms
, fbchk_ms
);
964 /* Skip if polling is not required for this CM */
965 if (!is_polling_required(cm
) && !cm
->emergency_stop
)
967 if (cm
->desc
->polling_interval_ms
== 0)
969 CM_MIN_VALID(wakeup_ms
, cm
->desc
->polling_interval_ms
);
972 mutex_unlock(&cm_list_mtx
);
974 if (wakeup_ms
< UINT_MAX
&& wakeup_ms
> 0) {
975 pr_info("Charger Manager wakeup timer: %u ms.\n", wakeup_ms
);
977 struct rtc_wkalrm tmp
;
978 unsigned long time
, now
;
979 unsigned long add
= DIV_ROUND_UP(wakeup_ms
, 1000);
982 * Set alarm with the polling interval (wakeup_ms)
983 * except when rtc_wkalarm_save comes first.
984 * However, the alarm time should be NOW +
985 * CM_RTC_SMALL or later.
988 rtc_read_time(rtc_dev
, &tmp
.time
);
989 rtc_tm_to_time(&tmp
.time
, &now
);
990 if (add
< CM_RTC_SMALL
)
996 if (rtc_wkalarm_save
.enabled
&&
997 rtc_wkalarm_save_time
&&
998 rtc_wkalarm_save_time
< time
) {
999 if (rtc_wkalarm_save_time
< now
+ CM_RTC_SMALL
)
1000 time
= now
+ CM_RTC_SMALL
;
1002 time
= rtc_wkalarm_save_time
;
1004 /* The timer is not appointed by CM */
1008 pr_info("Waking up after %lu secs.\n",
1011 rtc_time_to_tm(time
, &tmp
.time
);
1012 rtc_set_alarm(rtc_dev
, &tmp
);
1013 cm_suspend_duration_ms
+= wakeup_ms
;
1019 rtc_set_alarm(rtc_dev
, &rtc_wkalarm_save
);
1023 static void _cm_fbchk_in_suspend(struct charger_manager
*cm
)
1025 unsigned long jiffy_now
= jiffies
;
1027 if (!cm
->fullbatt_vchk_jiffies_at
)
1030 if (g_desc
&& g_desc
->assume_timer_stops_in_suspend
)
1031 jiffy_now
+= msecs_to_jiffies(cm_suspend_duration_ms
);
1033 /* Execute now if it's going to be executed not too long after */
1034 jiffy_now
+= CM_JIFFIES_SMALL
;
1036 if (time_after_eq(jiffy_now
, cm
->fullbatt_vchk_jiffies_at
))
1037 fullbatt_vchk(&cm
->fullbatt_vchk_work
.work
);
1041 * cm_suspend_again - Determine whether suspend again or not
1043 * Returns true if the system should be suspended again
1044 * Returns false if the system should be woken up
1046 bool cm_suspend_again(void)
1048 struct charger_manager
*cm
;
1051 if (!g_desc
|| !g_desc
->rtc_only_wakeup
|| !g_desc
->rtc_only_wakeup() ||
1059 mutex_lock(&cm_list_mtx
);
1060 list_for_each_entry(cm
, &cm_list
, entry
) {
1061 _cm_fbchk_in_suspend(cm
);
1063 if (cm
->status_save_ext_pwr_inserted
!= is_ext_pwr_online(cm
) ||
1064 cm
->status_save_batt
!= is_batt_present(cm
)) {
1069 mutex_unlock(&cm_list_mtx
);
1071 cm_rtc_set
= cm_setup_timer();
1073 /* It's about the time when the non-CM appointed timer goes off */
1074 if (rtc_wkalarm_save
.enabled
) {
1076 struct rtc_time tmp
;
1078 rtc_read_time(rtc_dev
, &tmp
);
1079 rtc_tm_to_time(&tmp
, &now
);
1081 if (rtc_wkalarm_save_time
&&
1082 now
+ CM_RTC_SMALL
>= rtc_wkalarm_save_time
)
1087 EXPORT_SYMBOL_GPL(cm_suspend_again
);
1090 * setup_charger_manager - initialize charger_global_desc data
1091 * @gd: pointer to instance of charger_global_desc
1093 int setup_charger_manager(struct charger_global_desc
*gd
)
1099 rtc_class_close(rtc_dev
);
1103 if (!gd
->rtc_only_wakeup
) {
1104 pr_err("The callback rtc_only_wakeup is not given.\n");
1109 rtc_dev
= rtc_class_open(gd
->rtc_name
);
1110 if (IS_ERR_OR_NULL(rtc_dev
)) {
1112 /* Retry at probe. RTC may be not registered yet */
1115 pr_warn("No wakeup timer is given for charger manager."
1116 "In-suspend monitoring won't work.\n");
1122 EXPORT_SYMBOL_GPL(setup_charger_manager
);
1125 * charger_extcon_work - enable/diable charger according to the state
1128 * @work: work_struct of the function charger_extcon_work.
1130 static void charger_extcon_work(struct work_struct
*work
)
1132 struct charger_cable
*cable
=
1133 container_of(work
, struct charger_cable
, wq
);
1136 if (cable
->attached
&& cable
->min_uA
!= 0 && cable
->max_uA
!= 0) {
1137 ret
= regulator_set_current_limit(cable
->charger
->consumer
,
1138 cable
->min_uA
, cable
->max_uA
);
1140 pr_err("Cannot set current limit of %s (%s)\n",
1141 cable
->charger
->regulator_name
, cable
->name
);
1145 pr_info("Set current limit of %s : %duA ~ %duA\n",
1146 cable
->charger
->regulator_name
,
1147 cable
->min_uA
, cable
->max_uA
);
1150 try_charger_enable(cable
->cm
, cable
->attached
);
1154 * charger_extcon_notifier - receive the state of charger cable
1155 * when registered cable is attached or detached.
1157 * @self: the notifier block of the charger_extcon_notifier.
1158 * @event: the cable state.
1159 * @ptr: the data pointer of notifier block.
1161 static int charger_extcon_notifier(struct notifier_block
*self
,
1162 unsigned long event
, void *ptr
)
1164 struct charger_cable
*cable
=
1165 container_of(self
, struct charger_cable
, nb
);
1168 * The newly state of charger cable.
1169 * If cable is attached, cable->attached is true.
1171 cable
->attached
= event
;
1174 * Setup monitoring to check battery state
1175 * when charger cable is attached.
1177 if (cable
->attached
&& is_polling_required(cable
->cm
)) {
1178 cancel_work_sync(&setup_polling
);
1179 schedule_work(&setup_polling
);
1183 * Setup work for controlling charger(regulator)
1184 * according to charger cable.
1186 schedule_work(&cable
->wq
);
1192 * charger_extcon_init - register external connector to use it
1193 * as the charger cable
1195 * @cm: the Charger Manager representing the battery.
1196 * @cable: the Charger cable representing the external connector.
1198 static int charger_extcon_init(struct charger_manager
*cm
,
1199 struct charger_cable
*cable
)
1204 * Charger manager use Extcon framework to identify
1205 * the charger cable among various external connector
1206 * cable (e.g., TA, USB, MHL, Dock).
1208 INIT_WORK(&cable
->wq
, charger_extcon_work
);
1209 cable
->nb
.notifier_call
= charger_extcon_notifier
;
1210 ret
= extcon_register_interest(&cable
->extcon_dev
,
1211 cable
->extcon_name
, cable
->name
, &cable
->nb
);
1213 pr_info("Cannot register extcon_dev for %s(cable: %s).\n",
1223 * charger_manager_register_extcon - Register extcon device to recevie state
1225 * @cm: the Charger Manager representing the battery.
1227 * This function support EXTCON(External Connector) subsystem to detect the
1228 * state of charger cables for enabling or disabling charger(regulator) and
1229 * select the charger cable for charging among a number of external cable
1230 * according to policy of H/W board.
1232 static int charger_manager_register_extcon(struct charger_manager
*cm
)
1234 struct charger_desc
*desc
= cm
->desc
;
1235 struct charger_regulator
*charger
;
1240 for (i
= 0; i
< desc
->num_charger_regulators
; i
++) {
1241 charger
= &desc
->charger_regulators
[i
];
1243 charger
->consumer
= regulator_get(cm
->dev
,
1244 charger
->regulator_name
);
1245 if (charger
->consumer
== NULL
) {
1246 dev_err(cm
->dev
, "Cannot find charger(%s)n",
1247 charger
->regulator_name
);
1253 for (j
= 0; j
< charger
->num_cables
; j
++) {
1254 struct charger_cable
*cable
= &charger
->cables
[j
];
1256 ret
= charger_extcon_init(cm
, cable
);
1258 dev_err(cm
->dev
, "Cannot initialize charger(%s)n",
1259 charger
->regulator_name
);
1262 cable
->charger
= charger
;
1271 /* help function of sysfs node to control charger(regulator) */
1272 static ssize_t
charger_name_show(struct device
*dev
,
1273 struct device_attribute
*attr
, char *buf
)
1275 struct charger_regulator
*charger
1276 = container_of(attr
, struct charger_regulator
, attr_name
);
1278 return sprintf(buf
, "%s\n", charger
->regulator_name
);
1281 static ssize_t
charger_state_show(struct device
*dev
,
1282 struct device_attribute
*attr
, char *buf
)
1284 struct charger_regulator
*charger
1285 = container_of(attr
, struct charger_regulator
, attr_state
);
1288 if (!charger
->externally_control
)
1289 state
= regulator_is_enabled(charger
->consumer
);
1291 return sprintf(buf
, "%s\n", state
? "enabled" : "disabled");
1294 static ssize_t
charger_externally_control_show(struct device
*dev
,
1295 struct device_attribute
*attr
, char *buf
)
1297 struct charger_regulator
*charger
= container_of(attr
,
1298 struct charger_regulator
, attr_externally_control
);
1300 return sprintf(buf
, "%d\n", charger
->externally_control
);
1303 static ssize_t
charger_externally_control_store(struct device
*dev
,
1304 struct device_attribute
*attr
, const char *buf
,
1307 struct charger_regulator
*charger
1308 = container_of(attr
, struct charger_regulator
,
1309 attr_externally_control
);
1310 struct charger_manager
*cm
= charger
->cm
;
1311 struct charger_desc
*desc
= cm
->desc
;
1314 int externally_control
;
1315 int chargers_externally_control
= 1;
1317 ret
= sscanf(buf
, "%d", &externally_control
);
1323 if (!externally_control
) {
1324 charger
->externally_control
= 0;
1328 for (i
= 0; i
< desc
->num_charger_regulators
; i
++) {
1329 if (&desc
->charger_regulators
[i
] != charger
&&
1330 !desc
->charger_regulators
[i
].externally_control
) {
1332 * At least, one charger is controlled by
1335 chargers_externally_control
= 0;
1340 if (!chargers_externally_control
) {
1341 if (cm
->charger_enabled
) {
1342 try_charger_enable(charger
->cm
, false);
1343 charger
->externally_control
= externally_control
;
1344 try_charger_enable(charger
->cm
, true);
1346 charger
->externally_control
= externally_control
;
1350 "'%s' regulator should be controlled "
1351 "in charger-manager because charger-manager "
1352 "must need at least one charger for charging\n",
1353 charger
->regulator_name
);
1360 * charger_manager_register_sysfs - Register sysfs entry for each charger
1361 * @cm: the Charger Manager representing the battery.
1363 * This function add sysfs entry for charger(regulator) to control charger from
1364 * user-space. If some development board use one more chargers for charging
1365 * but only need one charger on specific case which is dependent on user
1366 * scenario or hardware restrictions, the user enter 1 or 0(zero) to '/sys/
1367 * class/power_supply/battery/charger.[index]/externally_control'. For example,
1368 * if user enter 1 to 'sys/class/power_supply/battery/charger.[index]/
1369 * externally_control, this charger isn't controlled from charger-manager and
1370 * always stay off state of regulator.
1372 static int charger_manager_register_sysfs(struct charger_manager
*cm
)
1374 struct charger_desc
*desc
= cm
->desc
;
1375 struct charger_regulator
*charger
;
1376 int chargers_externally_control
= 1;
1382 /* Create sysfs entry to control charger(regulator) */
1383 for (i
= 0; i
< desc
->num_charger_regulators
; i
++) {
1384 charger
= &desc
->charger_regulators
[i
];
1386 snprintf(buf
, 10, "charger.%d", i
);
1387 str
= kzalloc(sizeof(char) * (strlen(buf
) + 1), GFP_KERNEL
);
1389 dev_err(cm
->dev
, "Cannot allocate memory: %s\n",
1390 charger
->regulator_name
);
1396 charger
->attrs
[0] = &charger
->attr_name
.attr
;
1397 charger
->attrs
[1] = &charger
->attr_state
.attr
;
1398 charger
->attrs
[2] = &charger
->attr_externally_control
.attr
;
1399 charger
->attrs
[3] = NULL
;
1400 charger
->attr_g
.name
= str
;
1401 charger
->attr_g
.attrs
= charger
->attrs
;
1403 sysfs_attr_init(&charger
->attr_name
.attr
);
1404 charger
->attr_name
.attr
.name
= "name";
1405 charger
->attr_name
.attr
.mode
= 0444;
1406 charger
->attr_name
.show
= charger_name_show
;
1408 sysfs_attr_init(&charger
->attr_state
.attr
);
1409 charger
->attr_state
.attr
.name
= "state";
1410 charger
->attr_state
.attr
.mode
= 0444;
1411 charger
->attr_state
.show
= charger_state_show
;
1413 sysfs_attr_init(&charger
->attr_externally_control
.attr
);
1414 charger
->attr_externally_control
.attr
.name
1415 = "externally_control";
1416 charger
->attr_externally_control
.attr
.mode
= 0644;
1417 charger
->attr_externally_control
.show
1418 = charger_externally_control_show
;
1419 charger
->attr_externally_control
.store
1420 = charger_externally_control_store
;
1422 if (!desc
->charger_regulators
[i
].externally_control
||
1423 !chargers_externally_control
)
1424 chargers_externally_control
= 0;
1426 dev_info(cm
->dev
, "'%s' regulator's externally_control"
1427 "is %d\n", charger
->regulator_name
,
1428 charger
->externally_control
);
1430 ret
= sysfs_create_group(&cm
->charger_psy
.dev
->kobj
,
1433 dev_err(cm
->dev
, "Cannot create sysfs entry"
1434 "of %s regulator\n",
1435 charger
->regulator_name
);
1441 if (chargers_externally_control
) {
1442 dev_err(cm
->dev
, "Cannot register regulator because "
1443 "charger-manager must need at least "
1444 "one charger for charging battery\n");
1454 static int charger_manager_probe(struct platform_device
*pdev
)
1456 struct charger_desc
*desc
= dev_get_platdata(&pdev
->dev
);
1457 struct charger_manager
*cm
;
1460 union power_supply_propval val
;
1462 if (g_desc
&& !rtc_dev
&& g_desc
->rtc_name
) {
1463 rtc_dev
= rtc_class_open(g_desc
->rtc_name
);
1464 if (IS_ERR_OR_NULL(rtc_dev
)) {
1466 dev_err(&pdev
->dev
, "Cannot get RTC %s.\n",
1474 dev_err(&pdev
->dev
, "No platform data (desc) found.\n");
1479 cm
= kzalloc(sizeof(struct charger_manager
), GFP_KERNEL
);
1481 dev_err(&pdev
->dev
, "Cannot allocate memory.\n");
1486 /* Basic Values. Unspecified are Null or 0 */
1487 cm
->dev
= &pdev
->dev
;
1488 cm
->desc
= kzalloc(sizeof(struct charger_desc
), GFP_KERNEL
);
1490 dev_err(&pdev
->dev
, "Cannot allocate memory.\n");
1492 goto err_alloc_desc
;
1494 memcpy(cm
->desc
, desc
, sizeof(struct charger_desc
));
1495 cm
->last_temp_mC
= INT_MIN
; /* denotes "unmeasured, yet" */
1498 * The following two do not need to be errors.
1499 * Users may intentionally ignore those two features.
1501 if (desc
->fullbatt_uV
== 0) {
1502 dev_info(&pdev
->dev
, "Ignoring full-battery voltage threshold"
1503 " as it is not supplied.");
1505 if (!desc
->fullbatt_vchkdrop_ms
|| !desc
->fullbatt_vchkdrop_uV
) {
1506 dev_info(&pdev
->dev
, "Disabling full-battery voltage drop "
1507 "checking mechanism as it is not supplied.");
1508 desc
->fullbatt_vchkdrop_ms
= 0;
1509 desc
->fullbatt_vchkdrop_uV
= 0;
1511 if (desc
->fullbatt_soc
== 0) {
1512 dev_info(&pdev
->dev
, "Ignoring full-battery soc(state of"
1513 " charge) threshold as it is not"
1516 if (desc
->fullbatt_full_capacity
== 0) {
1517 dev_info(&pdev
->dev
, "Ignoring full-battery full capacity"
1518 " threshold as it is not supplied.");
1521 if (!desc
->charger_regulators
|| desc
->num_charger_regulators
< 1) {
1523 dev_err(&pdev
->dev
, "charger_regulators undefined.\n");
1524 goto err_no_charger
;
1527 if (!desc
->psy_charger_stat
|| !desc
->psy_charger_stat
[0]) {
1528 dev_err(&pdev
->dev
, "No power supply defined.\n");
1530 goto err_no_charger_stat
;
1533 /* Counting index only */
1534 while (desc
->psy_charger_stat
[i
])
1537 cm
->charger_stat
= kzalloc(sizeof(struct power_supply
*) * (i
+ 1),
1539 if (!cm
->charger_stat
) {
1541 goto err_no_charger_stat
;
1544 for (i
= 0; desc
->psy_charger_stat
[i
]; i
++) {
1545 cm
->charger_stat
[i
] = power_supply_get_by_name(
1546 desc
->psy_charger_stat
[i
]);
1547 if (!cm
->charger_stat
[i
]) {
1548 dev_err(&pdev
->dev
, "Cannot find power supply "
1550 desc
->psy_charger_stat
[i
]);
1556 cm
->fuel_gauge
= power_supply_get_by_name(desc
->psy_fuel_gauge
);
1557 if (!cm
->fuel_gauge
) {
1558 dev_err(&pdev
->dev
, "Cannot find power supply \"%s\"\n",
1559 desc
->psy_fuel_gauge
);
1564 if (desc
->polling_interval_ms
== 0 ||
1565 msecs_to_jiffies(desc
->polling_interval_ms
) <= CM_JIFFIES_SMALL
) {
1566 dev_err(&pdev
->dev
, "polling_interval_ms is too small\n");
1571 if (!desc
->temperature_out_of_range
) {
1572 dev_err(&pdev
->dev
, "there is no temperature_out_of_range\n");
1577 if (!desc
->charging_max_duration_ms
||
1578 !desc
->discharging_max_duration_ms
) {
1579 dev_info(&pdev
->dev
, "Cannot limit charging duration "
1580 "checking mechanism to prevent overcharge/overheat "
1581 "and control discharging duration");
1582 desc
->charging_max_duration_ms
= 0;
1583 desc
->discharging_max_duration_ms
= 0;
1586 platform_set_drvdata(pdev
, cm
);
1588 memcpy(&cm
->charger_psy
, &psy_default
, sizeof(psy_default
));
1590 if (!desc
->psy_name
)
1591 strncpy(cm
->psy_name_buf
, psy_default
.name
, PSY_NAME_MAX
);
1593 strncpy(cm
->psy_name_buf
, desc
->psy_name
, PSY_NAME_MAX
);
1594 cm
->charger_psy
.name
= cm
->psy_name_buf
;
1596 /* Allocate for psy properties because they may vary */
1597 cm
->charger_psy
.properties
= kzalloc(sizeof(enum power_supply_property
)
1598 * (ARRAY_SIZE(default_charger_props
) +
1599 NUM_CHARGER_PSY_OPTIONAL
),
1601 if (!cm
->charger_psy
.properties
) {
1602 dev_err(&pdev
->dev
, "Cannot allocate for psy properties.\n");
1606 memcpy(cm
->charger_psy
.properties
, default_charger_props
,
1607 sizeof(enum power_supply_property
) *
1608 ARRAY_SIZE(default_charger_props
));
1609 cm
->charger_psy
.num_properties
= psy_default
.num_properties
;
1611 /* Find which optional psy-properties are available */
1612 if (!cm
->fuel_gauge
->get_property(cm
->fuel_gauge
,
1613 POWER_SUPPLY_PROP_CHARGE_NOW
, &val
)) {
1614 cm
->charger_psy
.properties
[cm
->charger_psy
.num_properties
] =
1615 POWER_SUPPLY_PROP_CHARGE_NOW
;
1616 cm
->charger_psy
.num_properties
++;
1618 if (!cm
->fuel_gauge
->get_property(cm
->fuel_gauge
,
1619 POWER_SUPPLY_PROP_CURRENT_NOW
,
1621 cm
->charger_psy
.properties
[cm
->charger_psy
.num_properties
] =
1622 POWER_SUPPLY_PROP_CURRENT_NOW
;
1623 cm
->charger_psy
.num_properties
++;
1626 if (desc
->measure_battery_temp
) {
1627 cm
->charger_psy
.properties
[cm
->charger_psy
.num_properties
] =
1628 POWER_SUPPLY_PROP_TEMP
;
1629 cm
->charger_psy
.num_properties
++;
1631 cm
->charger_psy
.properties
[cm
->charger_psy
.num_properties
] =
1632 POWER_SUPPLY_PROP_TEMP_AMBIENT
;
1633 cm
->charger_psy
.num_properties
++;
1636 INIT_DELAYED_WORK(&cm
->fullbatt_vchk_work
, fullbatt_vchk
);
1638 ret
= power_supply_register(NULL
, &cm
->charger_psy
);
1640 dev_err(&pdev
->dev
, "Cannot register charger-manager with"
1641 " name \"%s\".\n", cm
->charger_psy
.name
);
1645 /* Register extcon device for charger cable */
1646 ret
= charger_manager_register_extcon(cm
);
1648 dev_err(&pdev
->dev
, "Cannot initialize extcon device\n");
1649 goto err_reg_extcon
;
1652 /* Register sysfs entry for charger(regulator) */
1653 ret
= charger_manager_register_sysfs(cm
);
1656 "Cannot initialize sysfs entry of regulator\n");
1660 /* Add to the list */
1661 mutex_lock(&cm_list_mtx
);
1662 list_add(&cm
->entry
, &cm_list
);
1663 mutex_unlock(&cm_list_mtx
);
1666 * Charger-manager is capable of waking up the systme from sleep
1667 * when event is happend through cm_notify_event()
1669 device_init_wakeup(&pdev
->dev
, true);
1670 device_set_wakeup_capable(&pdev
->dev
, false);
1672 schedule_work(&setup_polling
);
1677 for (i
= 0; i
< desc
->num_charger_regulators
; i
++) {
1678 struct charger_regulator
*charger
;
1680 charger
= &desc
->charger_regulators
[i
];
1681 sysfs_remove_group(&cm
->charger_psy
.dev
->kobj
,
1684 kfree(charger
->attr_g
.name
);
1687 for (i
= 0; i
< desc
->num_charger_regulators
; i
++) {
1688 struct charger_regulator
*charger
;
1690 charger
= &desc
->charger_regulators
[i
];
1691 for (j
= 0; j
< charger
->num_cables
; j
++) {
1692 struct charger_cable
*cable
= &charger
->cables
[j
];
1693 extcon_unregister_interest(&cable
->extcon_dev
);
1696 regulator_put(desc
->charger_regulators
[i
].consumer
);
1699 power_supply_unregister(&cm
->charger_psy
);
1701 kfree(cm
->charger_psy
.properties
);
1703 kfree(cm
->charger_stat
);
1704 err_no_charger_stat
:
1713 static int charger_manager_remove(struct platform_device
*pdev
)
1715 struct charger_manager
*cm
= platform_get_drvdata(pdev
);
1716 struct charger_desc
*desc
= cm
->desc
;
1720 /* Remove from the list */
1721 mutex_lock(&cm_list_mtx
);
1722 list_del(&cm
->entry
);
1723 mutex_unlock(&cm_list_mtx
);
1725 cancel_work_sync(&setup_polling
);
1726 cancel_delayed_work_sync(&cm_monitor_work
);
1728 for (i
= 0 ; i
< desc
->num_charger_regulators
; i
++) {
1729 struct charger_regulator
*charger
1730 = &desc
->charger_regulators
[i
];
1731 for (j
= 0 ; j
< charger
->num_cables
; j
++) {
1732 struct charger_cable
*cable
= &charger
->cables
[j
];
1733 extcon_unregister_interest(&cable
->extcon_dev
);
1737 for (i
= 0 ; i
< desc
->num_charger_regulators
; i
++)
1738 regulator_put(desc
->charger_regulators
[i
].consumer
);
1740 power_supply_unregister(&cm
->charger_psy
);
1742 try_charger_enable(cm
, false);
1744 kfree(cm
->charger_psy
.properties
);
1745 kfree(cm
->charger_stat
);
1752 static const struct platform_device_id charger_manager_id
[] = {
1753 { "charger-manager", 0 },
1756 MODULE_DEVICE_TABLE(platform
, charger_manager_id
);
1758 static int cm_suspend_noirq(struct device
*dev
)
1762 if (device_may_wakeup(dev
)) {
1763 device_set_wakeup_capable(dev
, false);
1770 static int cm_suspend_prepare(struct device
*dev
)
1772 struct charger_manager
*cm
= dev_get_drvdata(dev
);
1774 if (!cm_suspended
) {
1776 struct rtc_time tmp
;
1779 rtc_read_alarm(rtc_dev
, &rtc_wkalarm_save
);
1780 rtc_read_time(rtc_dev
, &tmp
);
1782 if (rtc_wkalarm_save
.enabled
) {
1783 rtc_tm_to_time(&rtc_wkalarm_save
.time
,
1784 &rtc_wkalarm_save_time
);
1785 rtc_tm_to_time(&tmp
, &now
);
1786 if (now
> rtc_wkalarm_save_time
)
1787 rtc_wkalarm_save_time
= 0;
1789 rtc_wkalarm_save_time
= 0;
1792 cm_suspended
= true;
1795 cancel_delayed_work(&cm
->fullbatt_vchk_work
);
1796 cm
->status_save_ext_pwr_inserted
= is_ext_pwr_online(cm
);
1797 cm
->status_save_batt
= is_batt_present(cm
);
1800 cm_suspend_duration_ms
= 0;
1801 cm_rtc_set
= cm_setup_timer();
1807 static void cm_suspend_complete(struct device
*dev
)
1809 struct charger_manager
*cm
= dev_get_drvdata(dev
);
1813 struct rtc_wkalrm tmp
;
1815 rtc_read_alarm(rtc_dev
, &tmp
);
1816 rtc_wkalarm_save
.pending
= tmp
.pending
;
1817 rtc_set_alarm(rtc_dev
, &rtc_wkalarm_save
);
1819 cm_suspended
= false;
1823 /* Re-enqueue delayed work (fullbatt_vchk_work) */
1824 if (cm
->fullbatt_vchk_jiffies_at
) {
1825 unsigned long delay
= 0;
1826 unsigned long now
= jiffies
+ CM_JIFFIES_SMALL
;
1828 if (time_after_eq(now
, cm
->fullbatt_vchk_jiffies_at
)) {
1829 delay
= (unsigned long)((long)now
1830 - (long)(cm
->fullbatt_vchk_jiffies_at
));
1831 delay
= jiffies_to_msecs(delay
);
1837 * Account for cm_suspend_duration_ms if
1838 * assume_timer_stops_in_suspend is active
1840 if (g_desc
&& g_desc
->assume_timer_stops_in_suspend
) {
1841 if (delay
> cm_suspend_duration_ms
)
1842 delay
-= cm_suspend_duration_ms
;
1847 queue_delayed_work(cm_wq
, &cm
->fullbatt_vchk_work
,
1848 msecs_to_jiffies(delay
));
1850 device_set_wakeup_capable(cm
->dev
, false);
1851 uevent_notify(cm
, NULL
);
1854 static const struct dev_pm_ops charger_manager_pm
= {
1855 .prepare
= cm_suspend_prepare
,
1856 .suspend_noirq
= cm_suspend_noirq
,
1857 .complete
= cm_suspend_complete
,
1860 static struct platform_driver charger_manager_driver
= {
1862 .name
= "charger-manager",
1863 .owner
= THIS_MODULE
,
1864 .pm
= &charger_manager_pm
,
1866 .probe
= charger_manager_probe
,
1867 .remove
= charger_manager_remove
,
1868 .id_table
= charger_manager_id
,
1871 static int __init
charger_manager_init(void)
1873 cm_wq
= create_freezable_workqueue("charger_manager");
1874 INIT_DELAYED_WORK(&cm_monitor_work
, cm_monitor_poller
);
1876 return platform_driver_register(&charger_manager_driver
);
1878 late_initcall(charger_manager_init
);
1880 static void __exit
charger_manager_cleanup(void)
1882 destroy_workqueue(cm_wq
);
1885 platform_driver_unregister(&charger_manager_driver
);
1887 module_exit(charger_manager_cleanup
);
1890 * find_power_supply - find the associated power_supply of charger
1891 * @cm: the Charger Manager representing the battery
1892 * @psy: pointer to instance of charger's power_supply
1894 static bool find_power_supply(struct charger_manager
*cm
,
1895 struct power_supply
*psy
)
1900 for (i
= 0; cm
->charger_stat
[i
]; i
++) {
1901 if (psy
== cm
->charger_stat
[i
]) {
1911 * cm_notify_event - charger driver notify Charger Manager of charger event
1912 * @psy: pointer to instance of charger's power_supply
1913 * @type: type of charger event
1914 * @msg: optional message passed to uevent_notify fuction
1916 void cm_notify_event(struct power_supply
*psy
, enum cm_event_types type
,
1919 struct charger_manager
*cm
;
1920 bool found_power_supply
= false;
1925 mutex_lock(&cm_list_mtx
);
1926 list_for_each_entry(cm
, &cm_list
, entry
) {
1927 found_power_supply
= find_power_supply(cm
, psy
);
1928 if (found_power_supply
)
1931 mutex_unlock(&cm_list_mtx
);
1933 if (!found_power_supply
)
1937 case CM_EVENT_BATT_FULL
:
1938 fullbatt_handler(cm
);
1940 case CM_EVENT_BATT_OUT
:
1941 battout_handler(cm
);
1943 case CM_EVENT_BATT_IN
:
1944 case CM_EVENT_EXT_PWR_IN_OUT
... CM_EVENT_CHG_START_STOP
:
1945 misc_event_handler(cm
, type
);
1947 case CM_EVENT_UNKNOWN
:
1948 case CM_EVENT_OTHERS
:
1949 uevent_notify(cm
, msg
? msg
: default_event_names
[type
]);
1952 dev_err(cm
->dev
, "%s type not specified.\n", __func__
);
1956 EXPORT_SYMBOL_GPL(cm_notify_event
);
1958 MODULE_AUTHOR("MyungJoo Ham <myungjoo.ham@samsung.com>");
1959 MODULE_DESCRIPTION("Charger Manager");
1960 MODULE_LICENSE("GPL");