1 // SPDX-License-Identifier: GPL-2.0-only
2 /*
3  * Copyright (C) ST-Ericsson SA 2012
4  * Copyright (c) 2012 Sony Mobile Communications AB
5  *
6  * Charging algorithm driver for AB8500
7  *
8  * Authors:
9  *	Johan Palsson <[email protected]>
10  *	Karl Komierowski <[email protected]>
11  *	Arun R Murthy <[email protected]>
12  *	Author: Imre Sunyi <[email protected]>
13  */
14 
15 #include <linux/init.h>
16 #include <linux/module.h>
17 #include <linux/device.h>
18 #include <linux/component.h>
19 #include <linux/hrtimer.h>
20 #include <linux/interrupt.h>
21 #include <linux/delay.h>
22 #include <linux/slab.h>
23 #include <linux/platform_device.h>
24 #include <linux/power_supply.h>
25 #include <linux/completion.h>
26 #include <linux/workqueue.h>
27 #include <linux/kobject.h>
28 #include <linux/of.h>
29 #include <linux/mfd/core.h>
30 #include <linux/mfd/abx500.h>
31 #include <linux/mfd/abx500/ab8500.h>
32 #include <linux/notifier.h>
33 
34 #include "ab8500-bm.h"
35 #include "ab8500-chargalg.h"
36 
37 /* Watchdog kick interval */
38 #define CHG_WD_INTERVAL			(6 * HZ)
39 
40 /* End-of-charge criteria counter */
41 #define EOC_COND_CNT			10
42 
43 /* One hour expressed in seconds */
44 #define ONE_HOUR_IN_SECONDS            3600
45 
46 /* Five minutes expressed in seconds */
47 #define FIVE_MINUTES_IN_SECONDS        300
48 
49 /*
50  * This is the battery capacity limit that will trigger a new
51  * full charging cycle in the case where maintenance charging
52  * has been disabled
53  */
54 #define AB8500_RECHARGE_CAP		95
55 
56 enum ab8500_chargers {
57 	NO_CHG,
58 	AC_CHG,
59 	USB_CHG,
60 };
61 
62 struct ab8500_chargalg_charger_info {
63 	enum ab8500_chargers conn_chg;
64 	enum ab8500_chargers prev_conn_chg;
65 	enum ab8500_chargers online_chg;
66 	enum ab8500_chargers prev_online_chg;
67 	enum ab8500_chargers charger_type;
68 	bool usb_chg_ok;
69 	bool ac_chg_ok;
70 	int usb_volt_uv;
71 	int usb_curr_ua;
72 	int ac_volt_uv;
73 	int ac_curr_ua;
74 	int usb_vset_uv;
75 	int usb_iset_ua;
76 	int ac_vset_uv;
77 	int ac_iset_ua;
78 };
79 
80 struct ab8500_chargalg_battery_data {
81 	int temp;
82 	int volt_uv;
83 	int avg_curr_ua;
84 	int inst_curr_ua;
85 	int percent;
86 };
87 
88 enum ab8500_chargalg_states {
89 	STATE_HANDHELD_INIT,
90 	STATE_HANDHELD,
91 	STATE_CHG_NOT_OK_INIT,
92 	STATE_CHG_NOT_OK,
93 	STATE_HW_TEMP_PROTECT_INIT,
94 	STATE_HW_TEMP_PROTECT,
95 	STATE_NORMAL_INIT,
96 	STATE_NORMAL,
97 	STATE_WAIT_FOR_RECHARGE_INIT,
98 	STATE_WAIT_FOR_RECHARGE,
99 	STATE_MAINTENANCE_A_INIT,
100 	STATE_MAINTENANCE_A,
101 	STATE_MAINTENANCE_B_INIT,
102 	STATE_MAINTENANCE_B,
103 	STATE_TEMP_UNDEROVER_INIT,
104 	STATE_TEMP_UNDEROVER,
105 	STATE_TEMP_LOWHIGH_INIT,
106 	STATE_TEMP_LOWHIGH,
107 	STATE_OVV_PROTECT_INIT,
108 	STATE_OVV_PROTECT,
109 	STATE_SAFETY_TIMER_EXPIRED_INIT,
110 	STATE_SAFETY_TIMER_EXPIRED,
111 	STATE_BATT_REMOVED_INIT,
112 	STATE_BATT_REMOVED,
113 	STATE_WD_EXPIRED_INIT,
114 	STATE_WD_EXPIRED,
115 };
116 
117 static const char * const states[] = {
118 	"HANDHELD_INIT",
119 	"HANDHELD",
120 	"CHG_NOT_OK_INIT",
121 	"CHG_NOT_OK",
122 	"HW_TEMP_PROTECT_INIT",
123 	"HW_TEMP_PROTECT",
124 	"NORMAL_INIT",
125 	"NORMAL",
126 	"WAIT_FOR_RECHARGE_INIT",
127 	"WAIT_FOR_RECHARGE",
128 	"MAINTENANCE_A_INIT",
129 	"MAINTENANCE_A",
130 	"MAINTENANCE_B_INIT",
131 	"MAINTENANCE_B",
132 	"TEMP_UNDEROVER_INIT",
133 	"TEMP_UNDEROVER",
134 	"TEMP_LOWHIGH_INIT",
135 	"TEMP_LOWHIGH",
136 	"OVV_PROTECT_INIT",
137 	"OVV_PROTECT",
138 	"SAFETY_TIMER_EXPIRED_INIT",
139 	"SAFETY_TIMER_EXPIRED",
140 	"BATT_REMOVED_INIT",
141 	"BATT_REMOVED",
142 	"WD_EXPIRED_INIT",
143 	"WD_EXPIRED",
144 };
145 
146 struct ab8500_chargalg_events {
147 	bool batt_unknown;
148 	bool mainextchnotok;
149 	bool batt_ovv;
150 	bool batt_rem;
151 	bool btemp_underover;
152 	bool btemp_low;
153 	bool btemp_high;
154 	bool main_thermal_prot;
155 	bool usb_thermal_prot;
156 	bool main_ovv;
157 	bool vbus_ovv;
158 	bool usbchargernotok;
159 	bool safety_timer_expired;
160 	bool maintenance_timer_expired;
161 	bool ac_wd_expired;
162 	bool usb_wd_expired;
163 	bool ac_cv_active;
164 	bool usb_cv_active;
165 	bool vbus_collapsed;
166 };
167 
168 /**
169  * struct ab8500_charge_curr_maximization - Charger maximization parameters
170  * @original_iset_ua:	the non optimized/maximised charger current
171  * @current_iset_ua:	the charging current used at this moment
172  * @condition_cnt:	number of iterations needed before a new charger current
173 			is set
174  * @max_current_ua:	maximum charger current
175  * @wait_cnt:		to avoid too fast current step down in case of charger
176  *			voltage collapse, we insert this delay between step
177  *			down
178  * @level:		tells in how many steps the charging current has been
179 			increased
180  */
181 struct ab8500_charge_curr_maximization {
182 	int original_iset_ua;
183 	int current_iset_ua;
184 	int condition_cnt;
185 	int max_current_ua;
186 	int wait_cnt;
187 	u8 level;
188 };
189 
190 enum maxim_ret {
191 	MAXIM_RET_NOACTION,
192 	MAXIM_RET_CHANGE,
193 	MAXIM_RET_IBAT_TOO_HIGH,
194 };
195 
196 /**
197  * struct ab8500_chargalg - ab8500 Charging algorithm device information
198  * @dev:		pointer to the structure device
199  * @charge_status:	battery operating status
200  * @eoc_cnt:		counter used to determine end-of_charge
201  * @maintenance_chg:	indicate if maintenance charge is active
202  * @t_hyst_norm		temperature hysteresis when the temperature has been
203  *			over or under normal limits
204  * @t_hyst_lowhigh	temperature hysteresis when the temperature has been
205  *			over or under the high or low limits
206  * @charge_state:	current state of the charging algorithm
207  * @ccm			charging current maximization parameters
208  * @chg_info:		information about connected charger types
209  * @batt_data:		data of the battery
210  * @bm:           	Platform specific battery management information
211  * @parent:		pointer to the struct ab8500
212  * @chargalg_psy:	structure that holds the battery properties exposed by
213  *			the charging algorithm
214  * @events:		structure for information about events triggered
215  * @chargalg_wq:		work queue for running the charging algorithm
216  * @chargalg_periodic_work:	work to run the charging algorithm periodically
217  * @chargalg_wd_work:		work to kick the charger watchdog periodically
218  * @chargalg_work:		work to run the charging algorithm instantly
219  * @safety_timer:		charging safety timer
220  * @maintenance_timer:		maintenance charging timer
221  * @chargalg_kobject:		structure of type kobject
222  */
223 struct ab8500_chargalg {
224 	struct device *dev;
225 	int charge_status;
226 	int eoc_cnt;
227 	bool maintenance_chg;
228 	int t_hyst_norm;
229 	int t_hyst_lowhigh;
230 	enum ab8500_chargalg_states charge_state;
231 	struct ab8500_charge_curr_maximization ccm;
232 	struct ab8500_chargalg_charger_info chg_info;
233 	struct ab8500_chargalg_battery_data batt_data;
234 	struct ab8500 *parent;
235 	struct ab8500_bm_data *bm;
236 	struct power_supply *chargalg_psy;
237 	struct ux500_charger *ac_chg;
238 	struct ux500_charger *usb_chg;
239 	struct ab8500_chargalg_events events;
240 	struct workqueue_struct *chargalg_wq;
241 	struct delayed_work chargalg_periodic_work;
242 	struct delayed_work chargalg_wd_work;
243 	struct work_struct chargalg_work;
244 	struct hrtimer safety_timer;
245 	struct hrtimer maintenance_timer;
246 	struct kobject chargalg_kobject;
247 };
248 
249 /* Main battery properties */
250 static enum power_supply_property ab8500_chargalg_props[] = {
251 	POWER_SUPPLY_PROP_STATUS,
252 	POWER_SUPPLY_PROP_HEALTH,
253 };
254 
255 /**
256  * ab8500_chargalg_safety_timer_expired() - Expiration of the safety timer
257  * @timer:     pointer to the hrtimer structure
258  *
259  * This function gets called when the safety timer for the charger
260  * expires
261  */
262 static enum hrtimer_restart
ab8500_chargalg_safety_timer_expired(struct hrtimer * timer)263 ab8500_chargalg_safety_timer_expired(struct hrtimer *timer)
264 {
265 	struct ab8500_chargalg *di = container_of(timer, struct ab8500_chargalg,
266 						  safety_timer);
267 	dev_err(di->dev, "Safety timer expired\n");
268 	di->events.safety_timer_expired = true;
269 
270 	/* Trigger execution of the algorithm instantly */
271 	queue_work(di->chargalg_wq, &di->chargalg_work);
272 
273 	return HRTIMER_NORESTART;
274 }
275 
276 /**
277  * ab8500_chargalg_maintenance_timer_expired() - Expiration of
278  * the maintenance timer
279  * @timer:     pointer to the timer structure
280  *
281  * This function gets called when the maintenance timer
282  * expires
283  */
284 static enum hrtimer_restart
ab8500_chargalg_maintenance_timer_expired(struct hrtimer * timer)285 ab8500_chargalg_maintenance_timer_expired(struct hrtimer *timer)
286 {
287 
288 	struct ab8500_chargalg *di = container_of(timer, struct ab8500_chargalg,
289 						  maintenance_timer);
290 
291 	dev_dbg(di->dev, "Maintenance timer expired\n");
292 	di->events.maintenance_timer_expired = true;
293 
294 	/* Trigger execution of the algorithm instantly */
295 	queue_work(di->chargalg_wq, &di->chargalg_work);
296 
297 	return HRTIMER_NORESTART;
298 }
299 
300 /**
301  * ab8500_chargalg_state_to() - Change charge state
302  * @di:		pointer to the ab8500_chargalg structure
303  *
304  * This function gets called when a charge state change should occur
305  */
ab8500_chargalg_state_to(struct ab8500_chargalg * di,enum ab8500_chargalg_states state)306 static void ab8500_chargalg_state_to(struct ab8500_chargalg *di,
307 	enum ab8500_chargalg_states state)
308 {
309 	dev_dbg(di->dev,
310 		"State changed: %s (From state: [%d] %s =to=> [%d] %s )\n",
311 		di->charge_state == state ? "NO" : "YES",
312 		di->charge_state,
313 		states[di->charge_state],
314 		state,
315 		states[state]);
316 
317 	di->charge_state = state;
318 }
319 
ab8500_chargalg_check_charger_enable(struct ab8500_chargalg * di)320 static int ab8500_chargalg_check_charger_enable(struct ab8500_chargalg *di)
321 {
322 	struct power_supply_battery_info *bi = di->bm->bi;
323 
324 	switch (di->charge_state) {
325 	case STATE_NORMAL:
326 	case STATE_MAINTENANCE_A:
327 	case STATE_MAINTENANCE_B:
328 		break;
329 	default:
330 		return 0;
331 	}
332 
333 	if (di->chg_info.charger_type & USB_CHG) {
334 		return di->usb_chg->ops.check_enable(di->usb_chg,
335 			bi->constant_charge_voltage_max_uv,
336 			bi->constant_charge_current_max_ua);
337 	} else if (di->chg_info.charger_type & AC_CHG) {
338 		return di->ac_chg->ops.check_enable(di->ac_chg,
339 			bi->constant_charge_voltage_max_uv,
340 			bi->constant_charge_current_max_ua);
341 	}
342 	return 0;
343 }
344 
345 /**
346  * ab8500_chargalg_check_charger_connection() - Check charger connection change
347  * @di:		pointer to the ab8500_chargalg structure
348  *
349  * This function will check if there is a change in the charger connection
350  * and change charge state accordingly. AC has precedence over USB.
351  */
ab8500_chargalg_check_charger_connection(struct ab8500_chargalg * di)352 static int ab8500_chargalg_check_charger_connection(struct ab8500_chargalg *di)
353 {
354 	if (di->chg_info.conn_chg != di->chg_info.prev_conn_chg) {
355 		/* Charger state changed since last update */
356 		if (di->chg_info.conn_chg & AC_CHG) {
357 			dev_info(di->dev, "Charging source is AC\n");
358 			if (di->chg_info.charger_type != AC_CHG) {
359 				di->chg_info.charger_type = AC_CHG;
360 				ab8500_chargalg_state_to(di, STATE_NORMAL_INIT);
361 			}
362 		} else if (di->chg_info.conn_chg & USB_CHG) {
363 			dev_info(di->dev, "Charging source is USB\n");
364 			di->chg_info.charger_type = USB_CHG;
365 			ab8500_chargalg_state_to(di, STATE_NORMAL_INIT);
366 		} else {
367 			dev_dbg(di->dev, "Charging source is OFF\n");
368 			di->chg_info.charger_type = NO_CHG;
369 			ab8500_chargalg_state_to(di, STATE_HANDHELD_INIT);
370 		}
371 		di->chg_info.prev_conn_chg = di->chg_info.conn_chg;
372 	}
373 	return di->chg_info.conn_chg;
374 }
375 
376 /**
377  * ab8500_chargalg_start_safety_timer() - Start charging safety timer
378  * @di:		pointer to the ab8500_chargalg structure
379  *
380  * The safety timer is used to avoid overcharging of old or bad batteries.
381  * There are different timers for AC and USB
382  */
ab8500_chargalg_start_safety_timer(struct ab8500_chargalg * di)383 static void ab8500_chargalg_start_safety_timer(struct ab8500_chargalg *di)
384 {
385 	/* Charger-dependent expiration time in hours*/
386 	int timer_expiration = 0;
387 
388 	switch (di->chg_info.charger_type) {
389 	case AC_CHG:
390 		timer_expiration = di->bm->main_safety_tmr_h;
391 		break;
392 
393 	case USB_CHG:
394 		timer_expiration = di->bm->usb_safety_tmr_h;
395 		break;
396 
397 	default:
398 		dev_err(di->dev, "Unknown charger to charge from\n");
399 		break;
400 	}
401 
402 	di->events.safety_timer_expired = false;
403 	hrtimer_set_expires_range(&di->safety_timer,
404 		ktime_set(timer_expiration * ONE_HOUR_IN_SECONDS, 0),
405 		ktime_set(FIVE_MINUTES_IN_SECONDS, 0));
406 	hrtimer_start_expires(&di->safety_timer, HRTIMER_MODE_REL);
407 }
408 
409 /**
410  * ab8500_chargalg_stop_safety_timer() - Stop charging safety timer
411  * @di:		pointer to the ab8500_chargalg structure
412  *
413  * The safety timer is stopped whenever the NORMAL state is exited
414  */
ab8500_chargalg_stop_safety_timer(struct ab8500_chargalg * di)415 static void ab8500_chargalg_stop_safety_timer(struct ab8500_chargalg *di)
416 {
417 	if (hrtimer_try_to_cancel(&di->safety_timer) >= 0)
418 		di->events.safety_timer_expired = false;
419 }
420 
421 /**
422  * ab8500_chargalg_start_maintenance_timer() - Start charging maintenance timer
423  * @di:		pointer to the ab8500_chargalg structure
424  * @duration:	duration of the maintenance timer in minutes
425  *
426  * The maintenance timer is used to maintain the charge in the battery once
427  * the battery is considered full. These timers are chosen to match the
428  * discharge curve of the battery
429  */
ab8500_chargalg_start_maintenance_timer(struct ab8500_chargalg * di,int duration)430 static void ab8500_chargalg_start_maintenance_timer(struct ab8500_chargalg *di,
431 	int duration)
432 {
433 	/* Set a timer in minutes with a 30 second range */
434 	hrtimer_set_expires_range(&di->maintenance_timer,
435 		ktime_set(duration * 60, 0),
436 		ktime_set(30, 0));
437 	di->events.maintenance_timer_expired = false;
438 	hrtimer_start_expires(&di->maintenance_timer, HRTIMER_MODE_REL);
439 }
440 
441 /**
442  * ab8500_chargalg_stop_maintenance_timer() - Stop maintenance timer
443  * @di:		pointer to the ab8500_chargalg structure
444  *
445  * The maintenance timer is stopped whenever maintenance ends or when another
446  * state is entered
447  */
ab8500_chargalg_stop_maintenance_timer(struct ab8500_chargalg * di)448 static void ab8500_chargalg_stop_maintenance_timer(struct ab8500_chargalg *di)
449 {
450 	if (hrtimer_try_to_cancel(&di->maintenance_timer) >= 0)
451 		di->events.maintenance_timer_expired = false;
452 }
453 
454 /**
455  * ab8500_chargalg_kick_watchdog() - Kick charger watchdog
456  * @di:		pointer to the ab8500_chargalg structure
457  *
458  * The charger watchdog have to be kicked periodically whenever the charger is
459  * on, else the ABB will reset the system
460  */
ab8500_chargalg_kick_watchdog(struct ab8500_chargalg * di)461 static int ab8500_chargalg_kick_watchdog(struct ab8500_chargalg *di)
462 {
463 	/* Check if charger exists and kick watchdog if charging */
464 	if (di->ac_chg && di->ac_chg->ops.kick_wd &&
465 	    di->chg_info.online_chg & AC_CHG) {
466 		return di->ac_chg->ops.kick_wd(di->ac_chg);
467 	} else if (di->usb_chg && di->usb_chg->ops.kick_wd &&
468 			di->chg_info.online_chg & USB_CHG)
469 		return di->usb_chg->ops.kick_wd(di->usb_chg);
470 
471 	return -ENXIO;
472 }
473 
474 /**
475  * ab8500_chargalg_ac_en() - Turn on/off the AC charger
476  * @di:		pointer to the ab8500_chargalg structure
477  * @enable:	charger on/off
478  * @vset_uv:	requested charger output voltage in microvolt
479  * @iset_ua:	requested charger output current in microampere
480  *
481  * The AC charger will be turned on/off with the requested charge voltage and
482  * current
483  */
ab8500_chargalg_ac_en(struct ab8500_chargalg * di,int enable,int vset_uv,int iset_ua)484 static int ab8500_chargalg_ac_en(struct ab8500_chargalg *di, int enable,
485 	int vset_uv, int iset_ua)
486 {
487 	if (!di->ac_chg || !di->ac_chg->ops.enable)
488 		return -ENXIO;
489 
490 	/* Select maximum of what both the charger and the battery supports */
491 	if (di->ac_chg->max_out_volt_uv)
492 		vset_uv = min(vset_uv, di->ac_chg->max_out_volt_uv);
493 	if (di->ac_chg->max_out_curr_ua)
494 		iset_ua = min(iset_ua, di->ac_chg->max_out_curr_ua);
495 
496 	di->chg_info.ac_iset_ua = iset_ua;
497 	di->chg_info.ac_vset_uv = vset_uv;
498 
499 	return di->ac_chg->ops.enable(di->ac_chg, enable, vset_uv, iset_ua);
500 }
501 
502 /**
503  * ab8500_chargalg_usb_en() - Turn on/off the USB charger
504  * @di:		pointer to the ab8500_chargalg structure
505  * @enable:	charger on/off
506  * @vset_uv:	requested charger output voltage in microvolt
507  * @iset_ua:	requested charger output current in microampere
508  *
509  * The USB charger will be turned on/off with the requested charge voltage and
510  * current
511  */
ab8500_chargalg_usb_en(struct ab8500_chargalg * di,int enable,int vset_uv,int iset_ua)512 static int ab8500_chargalg_usb_en(struct ab8500_chargalg *di, int enable,
513 	int vset_uv, int iset_ua)
514 {
515 	if (!di->usb_chg || !di->usb_chg->ops.enable)
516 		return -ENXIO;
517 
518 	/* Select maximum of what both the charger and the battery supports */
519 	if (di->usb_chg->max_out_volt_uv)
520 		vset_uv = min(vset_uv, di->usb_chg->max_out_volt_uv);
521 	if (di->usb_chg->max_out_curr_ua)
522 		iset_ua = min(iset_ua, di->usb_chg->max_out_curr_ua);
523 
524 	di->chg_info.usb_iset_ua = iset_ua;
525 	di->chg_info.usb_vset_uv = vset_uv;
526 
527 	return di->usb_chg->ops.enable(di->usb_chg, enable, vset_uv, iset_ua);
528 }
529 
530 /**
531  * ab8500_chargalg_update_chg_curr() - Update charger current
532  * @di:		pointer to the ab8500_chargalg structure
533  * @iset_ua:	requested charger output current in microampere
534  *
535  * The charger output current will be updated for the charger
536  * that is currently in use
537  */
ab8500_chargalg_update_chg_curr(struct ab8500_chargalg * di,int iset_ua)538 static int ab8500_chargalg_update_chg_curr(struct ab8500_chargalg *di,
539 		int iset_ua)
540 {
541 	/* Check if charger exists and update current if charging */
542 	if (di->ac_chg && di->ac_chg->ops.update_curr &&
543 			di->chg_info.charger_type & AC_CHG) {
544 		/*
545 		 * Select maximum of what both the charger
546 		 * and the battery supports
547 		 */
548 		if (di->ac_chg->max_out_curr_ua)
549 			iset_ua = min(iset_ua, di->ac_chg->max_out_curr_ua);
550 
551 		di->chg_info.ac_iset_ua = iset_ua;
552 
553 		return di->ac_chg->ops.update_curr(di->ac_chg, iset_ua);
554 	} else if (di->usb_chg && di->usb_chg->ops.update_curr &&
555 			di->chg_info.charger_type & USB_CHG) {
556 		/*
557 		 * Select maximum of what both the charger
558 		 * and the battery supports
559 		 */
560 		if (di->usb_chg->max_out_curr_ua)
561 			iset_ua = min(iset_ua, di->usb_chg->max_out_curr_ua);
562 
563 		di->chg_info.usb_iset_ua = iset_ua;
564 
565 		return di->usb_chg->ops.update_curr(di->usb_chg, iset_ua);
566 	}
567 
568 	return -ENXIO;
569 }
570 
571 /**
572  * ab8500_chargalg_stop_charging() - Stop charging
573  * @di:		pointer to the ab8500_chargalg structure
574  *
575  * This function is called from any state where charging should be stopped.
576  * All charging is disabled and all status parameters and timers are changed
577  * accordingly
578  */
ab8500_chargalg_stop_charging(struct ab8500_chargalg * di)579 static void ab8500_chargalg_stop_charging(struct ab8500_chargalg *di)
580 {
581 	ab8500_chargalg_ac_en(di, false, 0, 0);
582 	ab8500_chargalg_usb_en(di, false, 0, 0);
583 	ab8500_chargalg_stop_safety_timer(di);
584 	ab8500_chargalg_stop_maintenance_timer(di);
585 	di->charge_status = POWER_SUPPLY_STATUS_NOT_CHARGING;
586 	di->maintenance_chg = false;
587 	cancel_delayed_work(&di->chargalg_wd_work);
588 	power_supply_changed(di->chargalg_psy);
589 }
590 
591 /**
592  * ab8500_chargalg_hold_charging() - Pauses charging
593  * @di:		pointer to the ab8500_chargalg structure
594  *
595  * This function is called in the case where maintenance charging has been
596  * disabled and instead a battery voltage mode is entered to check when the
597  * battery voltage has reached a certain recharge voltage
598  */
ab8500_chargalg_hold_charging(struct ab8500_chargalg * di)599 static void ab8500_chargalg_hold_charging(struct ab8500_chargalg *di)
600 {
601 	ab8500_chargalg_ac_en(di, false, 0, 0);
602 	ab8500_chargalg_usb_en(di, false, 0, 0);
603 	ab8500_chargalg_stop_safety_timer(di);
604 	ab8500_chargalg_stop_maintenance_timer(di);
605 	di->charge_status = POWER_SUPPLY_STATUS_CHARGING;
606 	di->maintenance_chg = false;
607 	cancel_delayed_work(&di->chargalg_wd_work);
608 	power_supply_changed(di->chargalg_psy);
609 }
610 
611 /**
612  * ab8500_chargalg_start_charging() - Start the charger
613  * @di:		pointer to the ab8500_chargalg structure
614  * @vset_uv:	requested charger output voltage in microvolt
615  * @iset_ua:	requested charger output current in microampere
616  *
617  * A charger will be enabled depending on the requested charger type that was
618  * detected previously.
619  */
ab8500_chargalg_start_charging(struct ab8500_chargalg * di,int vset_uv,int iset_ua)620 static void ab8500_chargalg_start_charging(struct ab8500_chargalg *di,
621 	int vset_uv, int iset_ua)
622 {
623 	switch (di->chg_info.charger_type) {
624 	case AC_CHG:
625 		dev_dbg(di->dev,
626 			"AC parameters: Vset %d, Ich %d\n", vset_uv, iset_ua);
627 		ab8500_chargalg_usb_en(di, false, 0, 0);
628 		ab8500_chargalg_ac_en(di, true, vset_uv, iset_ua);
629 		break;
630 
631 	case USB_CHG:
632 		dev_dbg(di->dev,
633 			"USB parameters: Vset %d, Ich %d\n", vset_uv, iset_ua);
634 		ab8500_chargalg_ac_en(di, false, 0, 0);
635 		ab8500_chargalg_usb_en(di, true, vset_uv, iset_ua);
636 		break;
637 
638 	default:
639 		dev_err(di->dev, "Unknown charger to charge from\n");
640 		break;
641 	}
642 }
643 
644 /**
645  * ab8500_chargalg_check_temp() - Check battery temperature ranges
646  * @di:		pointer to the ab8500_chargalg structure
647  *
648  * The battery temperature is checked against the predefined limits and the
649  * charge state is changed accordingly
650  */
ab8500_chargalg_check_temp(struct ab8500_chargalg * di)651 static void ab8500_chargalg_check_temp(struct ab8500_chargalg *di)
652 {
653 	struct power_supply_battery_info *bi = di->bm->bi;
654 
655 	if (di->batt_data.temp > (bi->temp_alert_min + di->t_hyst_norm) &&
656 		di->batt_data.temp < (bi->temp_alert_max - di->t_hyst_norm)) {
657 		/* Temp OK! */
658 		di->events.btemp_underover = false;
659 		di->events.btemp_low = false;
660 		di->events.btemp_high = false;
661 		di->t_hyst_norm = 0;
662 		di->t_hyst_lowhigh = 0;
663 	} else {
664 		if ((di->batt_data.temp >= bi->temp_alert_max) &&
665 		    (di->batt_data.temp < (bi->temp_max - di->t_hyst_lowhigh))) {
666 			/* Alert zone for high temperature */
667 			di->events.btemp_underover = false;
668 			di->events.btemp_high = true;
669 			di->t_hyst_norm = di->bm->temp_hysteresis;
670 			di->t_hyst_lowhigh = 0;
671 		} else if ((di->batt_data.temp > (bi->temp_min + di->t_hyst_lowhigh)) &&
672 			   (di->batt_data.temp <= bi->temp_alert_min)) {
673 			/* Alert zone for low temperature */
674 			di->events.btemp_underover = false;
675 			di->events.btemp_low = true;
676 			di->t_hyst_norm = di->bm->temp_hysteresis;
677 			di->t_hyst_lowhigh = 0;
678 		} else if (di->batt_data.temp <= bi->temp_min ||
679 			di->batt_data.temp >= bi->temp_max) {
680 			/* TEMP major!!!!! */
681 			di->events.btemp_underover = true;
682 			di->events.btemp_low = false;
683 			di->events.btemp_high = false;
684 			di->t_hyst_norm = 0;
685 			di->t_hyst_lowhigh = di->bm->temp_hysteresis;
686 		} else {
687 			/* Within hysteresis */
688 			dev_dbg(di->dev, "Within hysteresis limit temp: %d "
689 				"hyst_lowhigh %d, hyst normal %d\n",
690 				di->batt_data.temp, di->t_hyst_lowhigh,
691 				di->t_hyst_norm);
692 		}
693 	}
694 }
695 
696 /**
697  * ab8500_chargalg_check_charger_voltage() - Check charger voltage
698  * @di:		pointer to the ab8500_chargalg structure
699  *
700  * Charger voltage is checked against maximum limit
701  */
ab8500_chargalg_check_charger_voltage(struct ab8500_chargalg * di)702 static void ab8500_chargalg_check_charger_voltage(struct ab8500_chargalg *di)
703 {
704 	if (di->chg_info.usb_volt_uv > di->bm->chg_params->usb_volt_max_uv)
705 		di->chg_info.usb_chg_ok = false;
706 	else
707 		di->chg_info.usb_chg_ok = true;
708 
709 	if (di->chg_info.ac_volt_uv > di->bm->chg_params->ac_volt_max_uv)
710 		di->chg_info.ac_chg_ok = false;
711 	else
712 		di->chg_info.ac_chg_ok = true;
713 
714 }
715 
716 /**
717  * ab8500_chargalg_end_of_charge() - Check if end-of-charge criteria is fulfilled
718  * @di:		pointer to the ab8500_chargalg structure
719  *
720  * End-of-charge criteria is fulfilled when the battery voltage is above a
721  * certain limit and the battery current is below a certain limit for a
722  * predefined number of consecutive seconds. If true, the battery is full
723  */
ab8500_chargalg_end_of_charge(struct ab8500_chargalg * di)724 static void ab8500_chargalg_end_of_charge(struct ab8500_chargalg *di)
725 {
726 	if (di->charge_status == POWER_SUPPLY_STATUS_CHARGING &&
727 		di->charge_state == STATE_NORMAL &&
728 		!di->maintenance_chg && (di->batt_data.volt_uv >=
729 		di->bm->bi->voltage_max_design_uv ||
730 		di->events.usb_cv_active || di->events.ac_cv_active) &&
731 		di->batt_data.avg_curr_ua <
732 		di->bm->bi->charge_term_current_ua &&
733 		di->batt_data.avg_curr_ua > 0) {
734 		if (++di->eoc_cnt >= EOC_COND_CNT) {
735 			di->eoc_cnt = 0;
736 			di->charge_status = POWER_SUPPLY_STATUS_FULL;
737 			di->maintenance_chg = true;
738 			dev_dbg(di->dev, "EOC reached!\n");
739 			power_supply_changed(di->chargalg_psy);
740 		} else {
741 			dev_dbg(di->dev,
742 				" EOC limit reached for the %d"
743 				" time, out of %d before EOC\n",
744 				di->eoc_cnt,
745 				EOC_COND_CNT);
746 		}
747 	} else {
748 		di->eoc_cnt = 0;
749 	}
750 }
751 
init_maxim_chg_curr(struct ab8500_chargalg * di)752 static void init_maxim_chg_curr(struct ab8500_chargalg *di)
753 {
754 	struct power_supply_battery_info *bi = di->bm->bi;
755 
756 	di->ccm.original_iset_ua = bi->constant_charge_current_max_ua;
757 	di->ccm.current_iset_ua = bi->constant_charge_current_max_ua;
758 	di->ccm.max_current_ua = di->bm->maxi->chg_curr_ua;
759 	di->ccm.condition_cnt = di->bm->maxi->wait_cycles;
760 	di->ccm.level = 0;
761 }
762 
763 /**
764  * ab8500_chargalg_chg_curr_maxim - increases the charger current to
765  *			compensate for the system load
766  * @di		pointer to the ab8500_chargalg structure
767  *
768  * This maximization function is used to raise the charger current to get the
769  * battery current as close to the optimal value as possible. The battery
770  * current during charging is affected by the system load
771  */
ab8500_chargalg_chg_curr_maxim(struct ab8500_chargalg * di)772 static enum maxim_ret ab8500_chargalg_chg_curr_maxim(struct ab8500_chargalg *di)
773 {
774 
775 	if (!di->bm->maxi->ena_maxi)
776 		return MAXIM_RET_NOACTION;
777 
778 	if (di->events.vbus_collapsed) {
779 		dev_dbg(di->dev, "Charger voltage has collapsed %d\n",
780 				di->ccm.wait_cnt);
781 		if (di->ccm.wait_cnt == 0) {
782 			dev_dbg(di->dev, "lowering current\n");
783 			di->ccm.wait_cnt++;
784 			di->ccm.condition_cnt = di->bm->maxi->wait_cycles;
785 			di->ccm.max_current_ua = di->ccm.current_iset_ua;
786 			di->ccm.current_iset_ua = di->ccm.max_current_ua;
787 			di->ccm.level--;
788 			return MAXIM_RET_CHANGE;
789 		} else {
790 			dev_dbg(di->dev, "waiting\n");
791 			/* Let's go in here twice before lowering curr again */
792 			di->ccm.wait_cnt = (di->ccm.wait_cnt + 1) % 3;
793 			return MAXIM_RET_NOACTION;
794 		}
795 	}
796 
797 	di->ccm.wait_cnt = 0;
798 
799 	if (di->batt_data.inst_curr_ua > di->ccm.original_iset_ua) {
800 		dev_dbg(di->dev, " Maximization Ibat (%duA) too high"
801 			" (limit %duA) (current iset: %duA)!\n",
802 			di->batt_data.inst_curr_ua, di->ccm.original_iset_ua,
803 			di->ccm.current_iset_ua);
804 
805 		if (di->ccm.current_iset_ua == di->ccm.original_iset_ua)
806 			return MAXIM_RET_NOACTION;
807 
808 		di->ccm.condition_cnt = di->bm->maxi->wait_cycles;
809 		di->ccm.current_iset_ua = di->ccm.original_iset_ua;
810 		di->ccm.level = 0;
811 
812 		return MAXIM_RET_IBAT_TOO_HIGH;
813 	}
814 
815 	di->ccm.condition_cnt = di->bm->maxi->wait_cycles;
816 	return MAXIM_RET_NOACTION;
817 }
818 
handle_maxim_chg_curr(struct ab8500_chargalg * di)819 static void handle_maxim_chg_curr(struct ab8500_chargalg *di)
820 {
821 	struct power_supply_battery_info *bi = di->bm->bi;
822 	enum maxim_ret ret;
823 	int result;
824 
825 	ret = ab8500_chargalg_chg_curr_maxim(di);
826 	switch (ret) {
827 	case MAXIM_RET_CHANGE:
828 		result = ab8500_chargalg_update_chg_curr(di,
829 			di->ccm.current_iset_ua);
830 		if (result)
831 			dev_err(di->dev, "failed to set chg curr\n");
832 		break;
833 	case MAXIM_RET_IBAT_TOO_HIGH:
834 		result = ab8500_chargalg_update_chg_curr(di,
835 			bi->constant_charge_current_max_ua);
836 		if (result)
837 			dev_err(di->dev, "failed to set chg curr\n");
838 		break;
839 
840 	case MAXIM_RET_NOACTION:
841 	default:
842 		/* Do nothing..*/
843 		break;
844 	}
845 }
846 
ab8500_chargalg_get_ext_psy_data(struct power_supply * ext,void * data)847 static int ab8500_chargalg_get_ext_psy_data(struct power_supply *ext, void *data)
848 {
849 	struct power_supply *psy;
850 	const char **supplicants = (const char **)ext->supplied_to;
851 	struct ab8500_chargalg *di;
852 	union power_supply_propval ret;
853 	int j;
854 	bool capacity_updated = false;
855 
856 	psy = (struct power_supply *)data;
857 	di = power_supply_get_drvdata(psy);
858 	/* For all psy where the driver name appears in any supplied_to */
859 	j = match_string(supplicants, ext->num_supplicants, psy->desc->name);
860 	if (j < 0)
861 		return 0;
862 
863 	/*
864 	 *  If external is not registering 'POWER_SUPPLY_PROP_CAPACITY' to its
865 	 * property because of handling that sysfs entry on its own, this is
866 	 * the place to get the battery capacity.
867 	 */
868 	if (!power_supply_get_property(ext, POWER_SUPPLY_PROP_CAPACITY, &ret)) {
869 		di->batt_data.percent = ret.intval;
870 		capacity_updated = true;
871 	}
872 
873 	/* Go through all properties for the psy */
874 	for (j = 0; j < ext->desc->num_properties; j++) {
875 		enum power_supply_property prop;
876 		prop = ext->desc->properties[j];
877 
878 		/*
879 		 * Initialize chargers if not already done.
880 		 * The ab8500_charger*/
881 		if (!di->ac_chg &&
882 			ext->desc->type == POWER_SUPPLY_TYPE_MAINS)
883 			di->ac_chg = psy_to_ux500_charger(ext);
884 		else if (!di->usb_chg &&
885 			ext->desc->type == POWER_SUPPLY_TYPE_USB)
886 			di->usb_chg = psy_to_ux500_charger(ext);
887 
888 		if (power_supply_get_property(ext, prop, &ret))
889 			continue;
890 		switch (prop) {
891 		case POWER_SUPPLY_PROP_PRESENT:
892 			switch (ext->desc->type) {
893 			case POWER_SUPPLY_TYPE_BATTERY:
894 				/* Battery present */
895 				if (ret.intval)
896 					di->events.batt_rem = false;
897 				/* Battery removed */
898 				else
899 					di->events.batt_rem = true;
900 				break;
901 			case POWER_SUPPLY_TYPE_MAINS:
902 				/* AC disconnected */
903 				if (!ret.intval &&
904 					(di->chg_info.conn_chg & AC_CHG)) {
905 					di->chg_info.prev_conn_chg =
906 						di->chg_info.conn_chg;
907 					di->chg_info.conn_chg &= ~AC_CHG;
908 				}
909 				/* AC connected */
910 				else if (ret.intval &&
911 					!(di->chg_info.conn_chg & AC_CHG)) {
912 					di->chg_info.prev_conn_chg =
913 						di->chg_info.conn_chg;
914 					di->chg_info.conn_chg |= AC_CHG;
915 				}
916 				break;
917 			case POWER_SUPPLY_TYPE_USB:
918 				/* USB disconnected */
919 				if (!ret.intval &&
920 					(di->chg_info.conn_chg & USB_CHG)) {
921 					di->chg_info.prev_conn_chg =
922 						di->chg_info.conn_chg;
923 					di->chg_info.conn_chg &= ~USB_CHG;
924 				}
925 				/* USB connected */
926 				else if (ret.intval &&
927 					!(di->chg_info.conn_chg & USB_CHG)) {
928 					di->chg_info.prev_conn_chg =
929 						di->chg_info.conn_chg;
930 					di->chg_info.conn_chg |= USB_CHG;
931 				}
932 				break;
933 			default:
934 				break;
935 			}
936 			break;
937 
938 		case POWER_SUPPLY_PROP_ONLINE:
939 			switch (ext->desc->type) {
940 			case POWER_SUPPLY_TYPE_BATTERY:
941 				break;
942 			case POWER_SUPPLY_TYPE_MAINS:
943 				/* AC offline */
944 				if (!ret.intval &&
945 					(di->chg_info.online_chg & AC_CHG)) {
946 					di->chg_info.prev_online_chg =
947 						di->chg_info.online_chg;
948 					di->chg_info.online_chg &= ~AC_CHG;
949 				}
950 				/* AC online */
951 				else if (ret.intval &&
952 					!(di->chg_info.online_chg & AC_CHG)) {
953 					di->chg_info.prev_online_chg =
954 						di->chg_info.online_chg;
955 					di->chg_info.online_chg |= AC_CHG;
956 					queue_delayed_work(di->chargalg_wq,
957 						&di->chargalg_wd_work, 0);
958 				}
959 				break;
960 			case POWER_SUPPLY_TYPE_USB:
961 				/* USB offline */
962 				if (!ret.intval &&
963 					(di->chg_info.online_chg & USB_CHG)) {
964 					di->chg_info.prev_online_chg =
965 						di->chg_info.online_chg;
966 					di->chg_info.online_chg &= ~USB_CHG;
967 				}
968 				/* USB online */
969 				else if (ret.intval &&
970 					!(di->chg_info.online_chg & USB_CHG)) {
971 					di->chg_info.prev_online_chg =
972 						di->chg_info.online_chg;
973 					di->chg_info.online_chg |= USB_CHG;
974 					queue_delayed_work(di->chargalg_wq,
975 						&di->chargalg_wd_work, 0);
976 				}
977 				break;
978 			default:
979 				break;
980 			}
981 			break;
982 
983 		case POWER_SUPPLY_PROP_HEALTH:
984 			switch (ext->desc->type) {
985 			case POWER_SUPPLY_TYPE_BATTERY:
986 				break;
987 			case POWER_SUPPLY_TYPE_MAINS:
988 				switch (ret.intval) {
989 				case POWER_SUPPLY_HEALTH_UNSPEC_FAILURE:
990 					di->events.mainextchnotok = true;
991 					di->events.main_thermal_prot = false;
992 					di->events.main_ovv = false;
993 					di->events.ac_wd_expired = false;
994 					break;
995 				case POWER_SUPPLY_HEALTH_DEAD:
996 					di->events.ac_wd_expired = true;
997 					di->events.mainextchnotok = false;
998 					di->events.main_ovv = false;
999 					di->events.main_thermal_prot = false;
1000 					break;
1001 				case POWER_SUPPLY_HEALTH_COLD:
1002 				case POWER_SUPPLY_HEALTH_OVERHEAT:
1003 					di->events.main_thermal_prot = true;
1004 					di->events.mainextchnotok = false;
1005 					di->events.main_ovv = false;
1006 					di->events.ac_wd_expired = false;
1007 					break;
1008 				case POWER_SUPPLY_HEALTH_OVERVOLTAGE:
1009 					di->events.main_ovv = true;
1010 					di->events.mainextchnotok = false;
1011 					di->events.main_thermal_prot = false;
1012 					di->events.ac_wd_expired = false;
1013 					break;
1014 				case POWER_SUPPLY_HEALTH_GOOD:
1015 					di->events.main_thermal_prot = false;
1016 					di->events.mainextchnotok = false;
1017 					di->events.main_ovv = false;
1018 					di->events.ac_wd_expired = false;
1019 					break;
1020 				default:
1021 					break;
1022 				}
1023 				break;
1024 
1025 			case POWER_SUPPLY_TYPE_USB:
1026 				switch (ret.intval) {
1027 				case POWER_SUPPLY_HEALTH_UNSPEC_FAILURE:
1028 					di->events.usbchargernotok = true;
1029 					di->events.usb_thermal_prot = false;
1030 					di->events.vbus_ovv = false;
1031 					di->events.usb_wd_expired = false;
1032 					break;
1033 				case POWER_SUPPLY_HEALTH_DEAD:
1034 					di->events.usb_wd_expired = true;
1035 					di->events.usbchargernotok = false;
1036 					di->events.usb_thermal_prot = false;
1037 					di->events.vbus_ovv = false;
1038 					break;
1039 				case POWER_SUPPLY_HEALTH_COLD:
1040 				case POWER_SUPPLY_HEALTH_OVERHEAT:
1041 					di->events.usb_thermal_prot = true;
1042 					di->events.usbchargernotok = false;
1043 					di->events.vbus_ovv = false;
1044 					di->events.usb_wd_expired = false;
1045 					break;
1046 				case POWER_SUPPLY_HEALTH_OVERVOLTAGE:
1047 					di->events.vbus_ovv = true;
1048 					di->events.usbchargernotok = false;
1049 					di->events.usb_thermal_prot = false;
1050 					di->events.usb_wd_expired = false;
1051 					break;
1052 				case POWER_SUPPLY_HEALTH_GOOD:
1053 					di->events.usbchargernotok = false;
1054 					di->events.usb_thermal_prot = false;
1055 					di->events.vbus_ovv = false;
1056 					di->events.usb_wd_expired = false;
1057 					break;
1058 				default:
1059 					break;
1060 				}
1061 				break;
1062 			default:
1063 				break;
1064 			}
1065 			break;
1066 
1067 		case POWER_SUPPLY_PROP_VOLTAGE_NOW:
1068 			switch (ext->desc->type) {
1069 			case POWER_SUPPLY_TYPE_BATTERY:
1070 				di->batt_data.volt_uv = ret.intval;
1071 				break;
1072 			case POWER_SUPPLY_TYPE_MAINS:
1073 				di->chg_info.ac_volt_uv = ret.intval;
1074 				break;
1075 			case POWER_SUPPLY_TYPE_USB:
1076 				di->chg_info.usb_volt_uv = ret.intval;
1077 				break;
1078 			default:
1079 				break;
1080 			}
1081 			break;
1082 
1083 		case POWER_SUPPLY_PROP_VOLTAGE_AVG:
1084 			switch (ext->desc->type) {
1085 			case POWER_SUPPLY_TYPE_MAINS:
1086 				/* AVG is used to indicate when we are
1087 				 * in CV mode */
1088 				if (ret.intval)
1089 					di->events.ac_cv_active = true;
1090 				else
1091 					di->events.ac_cv_active = false;
1092 
1093 				break;
1094 			case POWER_SUPPLY_TYPE_USB:
1095 				/* AVG is used to indicate when we are
1096 				 * in CV mode */
1097 				if (ret.intval)
1098 					di->events.usb_cv_active = true;
1099 				else
1100 					di->events.usb_cv_active = false;
1101 
1102 				break;
1103 			default:
1104 				break;
1105 			}
1106 			break;
1107 
1108 		case POWER_SUPPLY_PROP_TECHNOLOGY:
1109 			switch (ext->desc->type) {
1110 			case POWER_SUPPLY_TYPE_BATTERY:
1111 				if (ret.intval)
1112 					di->events.batt_unknown = false;
1113 				else
1114 					di->events.batt_unknown = true;
1115 
1116 				break;
1117 			default:
1118 				break;
1119 			}
1120 			break;
1121 
1122 		case POWER_SUPPLY_PROP_TEMP:
1123 			di->batt_data.temp = ret.intval / 10;
1124 			break;
1125 
1126 		case POWER_SUPPLY_PROP_CURRENT_NOW:
1127 			switch (ext->desc->type) {
1128 			case POWER_SUPPLY_TYPE_MAINS:
1129 				di->chg_info.ac_curr_ua = ret.intval;
1130 				break;
1131 			case POWER_SUPPLY_TYPE_USB:
1132 				di->chg_info.usb_curr_ua = ret.intval;
1133 				break;
1134 			case POWER_SUPPLY_TYPE_BATTERY:
1135 				di->batt_data.inst_curr_ua = ret.intval;
1136 				break;
1137 			default:
1138 				break;
1139 			}
1140 			break;
1141 
1142 		case POWER_SUPPLY_PROP_CURRENT_AVG:
1143 			switch (ext->desc->type) {
1144 			case POWER_SUPPLY_TYPE_BATTERY:
1145 				di->batt_data.avg_curr_ua = ret.intval;
1146 				break;
1147 			case POWER_SUPPLY_TYPE_USB:
1148 				if (ret.intval)
1149 					di->events.vbus_collapsed = true;
1150 				else
1151 					di->events.vbus_collapsed = false;
1152 				break;
1153 			default:
1154 				break;
1155 			}
1156 			break;
1157 		case POWER_SUPPLY_PROP_CAPACITY:
1158 			if (!capacity_updated)
1159 				di->batt_data.percent = ret.intval;
1160 			break;
1161 		default:
1162 			break;
1163 		}
1164 	}
1165 	return 0;
1166 }
1167 
1168 /**
1169  * ab8500_chargalg_external_power_changed() - callback for power supply changes
1170  * @psy:       pointer to the structure power_supply
1171  *
1172  * This function is the entry point of the pointer external_power_changed
1173  * of the structure power_supply.
1174  * This function gets executed when there is a change in any external power
1175  * supply that this driver needs to be notified of.
1176  */
ab8500_chargalg_external_power_changed(struct power_supply * psy)1177 static void ab8500_chargalg_external_power_changed(struct power_supply *psy)
1178 {
1179 	struct ab8500_chargalg *di = power_supply_get_drvdata(psy);
1180 
1181 	/*
1182 	 * Trigger execution of the algorithm instantly and read
1183 	 * all power_supply properties there instead
1184 	 */
1185 	if (di->chargalg_wq)
1186 		queue_work(di->chargalg_wq, &di->chargalg_work);
1187 }
1188 
1189 /**
1190  * ab8500_chargalg_time_to_restart() - time to restart CC/CV charging?
1191  * @di: charging algorithm state
1192  *
1193  * This checks if the voltage or capacity of the battery has fallen so
1194  * low that we need to restart the CC/CV charge cycle.
1195  */
ab8500_chargalg_time_to_restart(struct ab8500_chargalg * di)1196 static bool ab8500_chargalg_time_to_restart(struct ab8500_chargalg *di)
1197 {
1198 	struct power_supply_battery_info *bi = di->bm->bi;
1199 
1200 	/* Sanity check - these need to have some reasonable values */
1201 	if (!di->batt_data.volt_uv || !di->batt_data.percent)
1202 		return false;
1203 
1204 	/* Some batteries tell us at which voltage we should restart charging */
1205 	if (bi->charge_restart_voltage_uv > 0) {
1206 		if (di->batt_data.volt_uv <= bi->charge_restart_voltage_uv)
1207 			return true;
1208 		/* Else we restart as we reach a certain capacity */
1209 	} else {
1210 		if (di->batt_data.percent <= AB8500_RECHARGE_CAP)
1211 			return true;
1212 	}
1213 
1214 	return false;
1215 }
1216 
1217 /**
1218  * ab8500_chargalg_algorithm() - Main function for the algorithm
1219  * @di:		pointer to the ab8500_chargalg structure
1220  *
1221  * This is the main control function for the charging algorithm.
1222  * It is called periodically or when something happens that will
1223  * trigger a state change
1224  */
ab8500_chargalg_algorithm(struct ab8500_chargalg * di)1225 static void ab8500_chargalg_algorithm(struct ab8500_chargalg *di)
1226 {
1227 	const struct power_supply_maintenance_charge_table *mt;
1228 	struct power_supply_battery_info *bi = di->bm->bi;
1229 	int charger_status;
1230 	int ret;
1231 
1232 	/* Collect data from all power_supply class devices */
1233 	power_supply_for_each_psy(di->chargalg_psy, ab8500_chargalg_get_ext_psy_data);
1234 
1235 	ab8500_chargalg_end_of_charge(di);
1236 	ab8500_chargalg_check_temp(di);
1237 	ab8500_chargalg_check_charger_voltage(di);
1238 
1239 	charger_status = ab8500_chargalg_check_charger_connection(di);
1240 
1241 	if (is_ab8500(di->parent)) {
1242 		ret = ab8500_chargalg_check_charger_enable(di);
1243 		if (ret < 0)
1244 			dev_err(di->dev, "Checking charger is enabled error"
1245 					": Returned Value %d\n", ret);
1246 	}
1247 
1248 	/*
1249 	 * First check if we have a charger connected.
1250 	 * Also we don't allow charging of unknown batteries if configured
1251 	 * this way
1252 	 */
1253 	if (!charger_status ||
1254 		(di->events.batt_unknown && !di->bm->chg_unknown_bat)) {
1255 		if (di->charge_state != STATE_HANDHELD) {
1256 			di->events.safety_timer_expired = false;
1257 			ab8500_chargalg_state_to(di, STATE_HANDHELD_INIT);
1258 		}
1259 	}
1260 
1261 	/* Safety timer expiration */
1262 	else if (di->events.safety_timer_expired) {
1263 		if (di->charge_state != STATE_SAFETY_TIMER_EXPIRED)
1264 			ab8500_chargalg_state_to(di,
1265 				STATE_SAFETY_TIMER_EXPIRED_INIT);
1266 	}
1267 	/*
1268 	 * Check if any interrupts has occurred
1269 	 * that will prevent us from charging
1270 	 */
1271 
1272 	/* Battery removed */
1273 	else if (di->events.batt_rem) {
1274 		if (di->charge_state != STATE_BATT_REMOVED)
1275 			ab8500_chargalg_state_to(di, STATE_BATT_REMOVED_INIT);
1276 	}
1277 	/* Main or USB charger not ok. */
1278 	else if (di->events.mainextchnotok || di->events.usbchargernotok) {
1279 		/*
1280 		 * If vbus_collapsed is set, we have to lower the charger
1281 		 * current, which is done in the normal state below
1282 		 */
1283 		if (di->charge_state != STATE_CHG_NOT_OK &&
1284 				!di->events.vbus_collapsed)
1285 			ab8500_chargalg_state_to(di, STATE_CHG_NOT_OK_INIT);
1286 	}
1287 	/* VBUS, Main or VBAT OVV. */
1288 	else if (di->events.vbus_ovv ||
1289 			di->events.main_ovv ||
1290 			di->events.batt_ovv ||
1291 			!di->chg_info.usb_chg_ok ||
1292 			!di->chg_info.ac_chg_ok) {
1293 		if (di->charge_state != STATE_OVV_PROTECT)
1294 			ab8500_chargalg_state_to(di, STATE_OVV_PROTECT_INIT);
1295 	}
1296 	/* USB Thermal, stop charging */
1297 	else if (di->events.main_thermal_prot ||
1298 		di->events.usb_thermal_prot) {
1299 		if (di->charge_state != STATE_HW_TEMP_PROTECT)
1300 			ab8500_chargalg_state_to(di,
1301 				STATE_HW_TEMP_PROTECT_INIT);
1302 	}
1303 	/* Battery temp over/under */
1304 	else if (di->events.btemp_underover) {
1305 		if (di->charge_state != STATE_TEMP_UNDEROVER)
1306 			ab8500_chargalg_state_to(di,
1307 				STATE_TEMP_UNDEROVER_INIT);
1308 	}
1309 	/* Watchdog expired */
1310 	else if (di->events.ac_wd_expired ||
1311 		di->events.usb_wd_expired) {
1312 		if (di->charge_state != STATE_WD_EXPIRED)
1313 			ab8500_chargalg_state_to(di, STATE_WD_EXPIRED_INIT);
1314 	}
1315 	/* Battery temp high/low */
1316 	else if (di->events.btemp_low || di->events.btemp_high) {
1317 		if (di->charge_state != STATE_TEMP_LOWHIGH)
1318 			ab8500_chargalg_state_to(di, STATE_TEMP_LOWHIGH_INIT);
1319 	}
1320 
1321 	dev_dbg(di->dev,
1322 		"[CHARGALG] Vb %d Ib_avg %d Ib_inst %d Tb %d Cap %d Maint %d "
1323 		"State %s Active_chg %d Chg_status %d AC %d USB %d "
1324 		"AC_online %d USB_online %d AC_CV %d USB_CV %d AC_I %d "
1325 		"USB_I %d AC_Vset %d AC_Iset %d USB_Vset %d USB_Iset %d\n",
1326 		di->batt_data.volt_uv,
1327 		di->batt_data.avg_curr_ua,
1328 		di->batt_data.inst_curr_ua,
1329 		di->batt_data.temp,
1330 		di->batt_data.percent,
1331 		di->maintenance_chg,
1332 		states[di->charge_state],
1333 		di->chg_info.charger_type,
1334 		di->charge_status,
1335 		di->chg_info.conn_chg & AC_CHG,
1336 		di->chg_info.conn_chg & USB_CHG,
1337 		di->chg_info.online_chg & AC_CHG,
1338 		di->chg_info.online_chg & USB_CHG,
1339 		di->events.ac_cv_active,
1340 		di->events.usb_cv_active,
1341 		di->chg_info.ac_curr_ua,
1342 		di->chg_info.usb_curr_ua,
1343 		di->chg_info.ac_vset_uv,
1344 		di->chg_info.ac_iset_ua,
1345 		di->chg_info.usb_vset_uv,
1346 		di->chg_info.usb_iset_ua);
1347 
1348 	switch (di->charge_state) {
1349 	case STATE_HANDHELD_INIT:
1350 		ab8500_chargalg_stop_charging(di);
1351 		di->charge_status = POWER_SUPPLY_STATUS_DISCHARGING;
1352 		ab8500_chargalg_state_to(di, STATE_HANDHELD);
1353 		fallthrough;
1354 
1355 	case STATE_HANDHELD:
1356 		break;
1357 
1358 	case STATE_BATT_REMOVED_INIT:
1359 		ab8500_chargalg_stop_charging(di);
1360 		ab8500_chargalg_state_to(di, STATE_BATT_REMOVED);
1361 		fallthrough;
1362 
1363 	case STATE_BATT_REMOVED:
1364 		if (!di->events.batt_rem)
1365 			ab8500_chargalg_state_to(di, STATE_NORMAL_INIT);
1366 		break;
1367 
1368 	case STATE_HW_TEMP_PROTECT_INIT:
1369 		ab8500_chargalg_stop_charging(di);
1370 		ab8500_chargalg_state_to(di, STATE_HW_TEMP_PROTECT);
1371 		fallthrough;
1372 
1373 	case STATE_HW_TEMP_PROTECT:
1374 		if (!di->events.main_thermal_prot &&
1375 				!di->events.usb_thermal_prot)
1376 			ab8500_chargalg_state_to(di, STATE_NORMAL_INIT);
1377 		break;
1378 
1379 	case STATE_OVV_PROTECT_INIT:
1380 		ab8500_chargalg_stop_charging(di);
1381 		ab8500_chargalg_state_to(di, STATE_OVV_PROTECT);
1382 		fallthrough;
1383 
1384 	case STATE_OVV_PROTECT:
1385 		if (!di->events.vbus_ovv &&
1386 				!di->events.main_ovv &&
1387 				!di->events.batt_ovv &&
1388 				di->chg_info.usb_chg_ok &&
1389 				di->chg_info.ac_chg_ok)
1390 			ab8500_chargalg_state_to(di, STATE_NORMAL_INIT);
1391 		break;
1392 
1393 	case STATE_CHG_NOT_OK_INIT:
1394 		ab8500_chargalg_stop_charging(di);
1395 		ab8500_chargalg_state_to(di, STATE_CHG_NOT_OK);
1396 		fallthrough;
1397 
1398 	case STATE_CHG_NOT_OK:
1399 		if (!di->events.mainextchnotok &&
1400 				!di->events.usbchargernotok)
1401 			ab8500_chargalg_state_to(di, STATE_NORMAL_INIT);
1402 		break;
1403 
1404 	case STATE_SAFETY_TIMER_EXPIRED_INIT:
1405 		ab8500_chargalg_stop_charging(di);
1406 		ab8500_chargalg_state_to(di, STATE_SAFETY_TIMER_EXPIRED);
1407 		fallthrough;
1408 
1409 	case STATE_SAFETY_TIMER_EXPIRED:
1410 		/* We exit this state when charger is removed */
1411 		break;
1412 
1413 	case STATE_NORMAL_INIT:
1414 		if (bi->constant_charge_current_max_ua == 0)
1415 			/* "charging" with 0 uA */
1416 			ab8500_chargalg_stop_charging(di);
1417 		else {
1418 			ab8500_chargalg_start_charging(di,
1419 				bi->constant_charge_voltage_max_uv,
1420 				bi->constant_charge_current_max_ua);
1421 		}
1422 
1423 		ab8500_chargalg_state_to(di, STATE_NORMAL);
1424 		ab8500_chargalg_start_safety_timer(di);
1425 		ab8500_chargalg_stop_maintenance_timer(di);
1426 		init_maxim_chg_curr(di);
1427 		di->charge_status = POWER_SUPPLY_STATUS_CHARGING;
1428 		di->eoc_cnt = 0;
1429 		di->maintenance_chg = false;
1430 		power_supply_changed(di->chargalg_psy);
1431 
1432 		break;
1433 
1434 	case STATE_NORMAL:
1435 		handle_maxim_chg_curr(di);
1436 		if (di->charge_status == POWER_SUPPLY_STATUS_FULL &&
1437 			di->maintenance_chg) {
1438 			/*
1439 			 * The battery is fully charged, check if we support
1440 			 * maintenance charging else go back to waiting for
1441 			 * the recharge voltage limit.
1442 			 */
1443 			if (!power_supply_supports_maintenance_charging(bi))
1444 				ab8500_chargalg_state_to(di,
1445 					STATE_WAIT_FOR_RECHARGE_INIT);
1446 			else
1447 				ab8500_chargalg_state_to(di,
1448 					STATE_MAINTENANCE_A_INIT);
1449 		}
1450 		break;
1451 
1452 	/* This state will be used when the maintenance state is disabled */
1453 	case STATE_WAIT_FOR_RECHARGE_INIT:
1454 		ab8500_chargalg_hold_charging(di);
1455 		ab8500_chargalg_state_to(di, STATE_WAIT_FOR_RECHARGE);
1456 		fallthrough;
1457 
1458 	case STATE_WAIT_FOR_RECHARGE:
1459 		if (ab8500_chargalg_time_to_restart(di))
1460 			ab8500_chargalg_state_to(di, STATE_NORMAL_INIT);
1461 		break;
1462 
1463 	case STATE_MAINTENANCE_A_INIT:
1464 		mt = power_supply_get_maintenance_charging_setting(bi, 0);
1465 		if (!mt) {
1466 			/* No maintenance A state, go back to normal */
1467 			ab8500_chargalg_state_to(di, STATE_NORMAL_INIT);
1468 			power_supply_changed(di->chargalg_psy);
1469 			break;
1470 		}
1471 		ab8500_chargalg_stop_safety_timer(di);
1472 		ab8500_chargalg_start_maintenance_timer(di,
1473 			mt->charge_safety_timer_minutes);
1474 		ab8500_chargalg_start_charging(di,
1475 			mt->charge_voltage_max_uv,
1476 			mt->charge_current_max_ua);
1477 		ab8500_chargalg_state_to(di, STATE_MAINTENANCE_A);
1478 		power_supply_changed(di->chargalg_psy);
1479 		fallthrough;
1480 
1481 	case STATE_MAINTENANCE_A:
1482 		if (di->events.maintenance_timer_expired) {
1483 			ab8500_chargalg_stop_maintenance_timer(di);
1484 			ab8500_chargalg_state_to(di, STATE_MAINTENANCE_B_INIT);
1485 		}
1486 		/*
1487 		 * This happens if the voltage drops too quickly during
1488 		 * maintenance charging, especially in older batteries.
1489 		 */
1490 		if (ab8500_chargalg_time_to_restart(di)) {
1491 			ab8500_chargalg_state_to(di, STATE_NORMAL_INIT);
1492 			dev_info(di->dev, "restarted charging from maintenance state A - battery getting old?\n");
1493 		}
1494 		break;
1495 
1496 	case STATE_MAINTENANCE_B_INIT:
1497 		mt = power_supply_get_maintenance_charging_setting(bi, 1);
1498 		if (!mt) {
1499 			/* No maintenance B state, go back to normal */
1500 			ab8500_chargalg_state_to(di, STATE_NORMAL_INIT);
1501 			power_supply_changed(di->chargalg_psy);
1502 			break;
1503 		}
1504 		ab8500_chargalg_start_maintenance_timer(di,
1505 			mt->charge_safety_timer_minutes);
1506 		ab8500_chargalg_start_charging(di,
1507 			mt->charge_voltage_max_uv,
1508 			mt->charge_current_max_ua);
1509 		ab8500_chargalg_state_to(di, STATE_MAINTENANCE_B);
1510 		power_supply_changed(di->chargalg_psy);
1511 		fallthrough;
1512 
1513 	case STATE_MAINTENANCE_B:
1514 		if (di->events.maintenance_timer_expired) {
1515 			ab8500_chargalg_stop_maintenance_timer(di);
1516 			ab8500_chargalg_state_to(di, STATE_NORMAL_INIT);
1517 		}
1518 		/*
1519 		 * This happens if the voltage drops too quickly during
1520 		 * maintenance charging, especially in older batteries.
1521 		 */
1522 		if (ab8500_chargalg_time_to_restart(di)) {
1523 			ab8500_chargalg_state_to(di, STATE_NORMAL_INIT);
1524 			dev_info(di->dev, "restarted charging from maintenance state B - battery getting old?\n");
1525 		}
1526 		break;
1527 
1528 	case STATE_TEMP_LOWHIGH_INIT:
1529 		if (di->events.btemp_low) {
1530 			ab8500_chargalg_start_charging(di,
1531 				       bi->alert_low_temp_charge_voltage_uv,
1532 				       bi->alert_low_temp_charge_current_ua);
1533 		} else if (di->events.btemp_high) {
1534 			ab8500_chargalg_start_charging(di,
1535 				       bi->alert_high_temp_charge_voltage_uv,
1536 				       bi->alert_high_temp_charge_current_ua);
1537 		} else {
1538 			dev_err(di->dev, "neither low or high temp event occurred\n");
1539 			ab8500_chargalg_state_to(di, STATE_NORMAL_INIT);
1540 			break;
1541 		}
1542 		ab8500_chargalg_stop_maintenance_timer(di);
1543 		di->charge_status = POWER_SUPPLY_STATUS_CHARGING;
1544 		ab8500_chargalg_state_to(di, STATE_TEMP_LOWHIGH);
1545 		power_supply_changed(di->chargalg_psy);
1546 		fallthrough;
1547 
1548 	case STATE_TEMP_LOWHIGH:
1549 		if (!di->events.btemp_low && !di->events.btemp_high)
1550 			ab8500_chargalg_state_to(di, STATE_NORMAL_INIT);
1551 		break;
1552 
1553 	case STATE_WD_EXPIRED_INIT:
1554 		ab8500_chargalg_stop_charging(di);
1555 		ab8500_chargalg_state_to(di, STATE_WD_EXPIRED);
1556 		fallthrough;
1557 
1558 	case STATE_WD_EXPIRED:
1559 		if (!di->events.ac_wd_expired &&
1560 				!di->events.usb_wd_expired)
1561 			ab8500_chargalg_state_to(di, STATE_NORMAL_INIT);
1562 		break;
1563 
1564 	case STATE_TEMP_UNDEROVER_INIT:
1565 		ab8500_chargalg_stop_charging(di);
1566 		ab8500_chargalg_state_to(di, STATE_TEMP_UNDEROVER);
1567 		fallthrough;
1568 
1569 	case STATE_TEMP_UNDEROVER:
1570 		if (!di->events.btemp_underover)
1571 			ab8500_chargalg_state_to(di, STATE_NORMAL_INIT);
1572 		break;
1573 	}
1574 
1575 	/* Start charging directly if the new state is a charge state */
1576 	if (di->charge_state == STATE_NORMAL_INIT ||
1577 			di->charge_state == STATE_MAINTENANCE_A_INIT ||
1578 			di->charge_state == STATE_MAINTENANCE_B_INIT)
1579 		queue_work(di->chargalg_wq, &di->chargalg_work);
1580 }
1581 
1582 /**
1583  * ab8500_chargalg_periodic_work() - Periodic work for the algorithm
1584  * @work:	pointer to the work_struct structure
1585  *
1586  * Work queue function for the charging algorithm
1587  */
ab8500_chargalg_periodic_work(struct work_struct * work)1588 static void ab8500_chargalg_periodic_work(struct work_struct *work)
1589 {
1590 	struct ab8500_chargalg *di = container_of(work,
1591 		struct ab8500_chargalg, chargalg_periodic_work.work);
1592 
1593 	ab8500_chargalg_algorithm(di);
1594 
1595 	/*
1596 	 * If a charger is connected then the battery has to be monitored
1597 	 * frequently, else the work can be delayed.
1598 	 */
1599 	if (di->chg_info.conn_chg)
1600 		queue_delayed_work(di->chargalg_wq,
1601 			&di->chargalg_periodic_work,
1602 			di->bm->interval_charging * HZ);
1603 	else
1604 		queue_delayed_work(di->chargalg_wq,
1605 			&di->chargalg_periodic_work,
1606 			di->bm->interval_not_charging * HZ);
1607 }
1608 
1609 /**
1610  * ab8500_chargalg_wd_work() - periodic work to kick the charger watchdog
1611  * @work:	pointer to the work_struct structure
1612  *
1613  * Work queue function for kicking the charger watchdog
1614  */
ab8500_chargalg_wd_work(struct work_struct * work)1615 static void ab8500_chargalg_wd_work(struct work_struct *work)
1616 {
1617 	int ret;
1618 	struct ab8500_chargalg *di = container_of(work,
1619 		struct ab8500_chargalg, chargalg_wd_work.work);
1620 
1621 	ret = ab8500_chargalg_kick_watchdog(di);
1622 	if (ret < 0)
1623 		dev_err(di->dev, "failed to kick watchdog\n");
1624 
1625 	queue_delayed_work(di->chargalg_wq,
1626 		&di->chargalg_wd_work, CHG_WD_INTERVAL);
1627 }
1628 
1629 /**
1630  * ab8500_chargalg_work() - Work to run the charging algorithm instantly
1631  * @work:	pointer to the work_struct structure
1632  *
1633  * Work queue function for calling the charging algorithm
1634  */
ab8500_chargalg_work(struct work_struct * work)1635 static void ab8500_chargalg_work(struct work_struct *work)
1636 {
1637 	struct ab8500_chargalg *di = container_of(work,
1638 		struct ab8500_chargalg, chargalg_work);
1639 
1640 	ab8500_chargalg_algorithm(di);
1641 }
1642 
1643 /**
1644  * ab8500_chargalg_get_property() - get the chargalg properties
1645  * @psy:	pointer to the power_supply structure
1646  * @psp:	pointer to the power_supply_property structure
1647  * @val:	pointer to the power_supply_propval union
1648  *
1649  * This function gets called when an application tries to get the
1650  * chargalg properties by reading the sysfs files.
1651  * status:     charging/discharging/full/unknown
1652  * health:     health of the battery
1653  * Returns error code in case of failure else 0 on success
1654  */
ab8500_chargalg_get_property(struct power_supply * psy,enum power_supply_property psp,union power_supply_propval * val)1655 static int ab8500_chargalg_get_property(struct power_supply *psy,
1656 	enum power_supply_property psp,
1657 	union power_supply_propval *val)
1658 {
1659 	struct ab8500_chargalg *di = power_supply_get_drvdata(psy);
1660 
1661 	switch (psp) {
1662 	case POWER_SUPPLY_PROP_STATUS:
1663 		val->intval = di->charge_status;
1664 		break;
1665 	case POWER_SUPPLY_PROP_HEALTH:
1666 		if (di->events.batt_ovv) {
1667 			val->intval = POWER_SUPPLY_HEALTH_OVERVOLTAGE;
1668 		} else if (di->events.btemp_underover) {
1669 			if (di->batt_data.temp <= di->bm->bi->temp_min)
1670 				val->intval = POWER_SUPPLY_HEALTH_COLD;
1671 			else
1672 				val->intval = POWER_SUPPLY_HEALTH_OVERHEAT;
1673 		} else if (di->charge_state == STATE_SAFETY_TIMER_EXPIRED ||
1674 			   di->charge_state == STATE_SAFETY_TIMER_EXPIRED_INIT) {
1675 			val->intval = POWER_SUPPLY_HEALTH_UNSPEC_FAILURE;
1676 		} else {
1677 			val->intval = POWER_SUPPLY_HEALTH_GOOD;
1678 		}
1679 		break;
1680 	default:
1681 		return -EINVAL;
1682 	}
1683 	return 0;
1684 }
1685 
ab8500_chargalg_resume(struct device * dev)1686 static int __maybe_unused ab8500_chargalg_resume(struct device *dev)
1687 {
1688 	struct ab8500_chargalg *di = dev_get_drvdata(dev);
1689 
1690 	/* Kick charger watchdog if charging (any charger online) */
1691 	if (di->chg_info.online_chg)
1692 		queue_delayed_work(di->chargalg_wq, &di->chargalg_wd_work, 0);
1693 
1694 	/*
1695 	 * Run the charging algorithm directly to be sure we don't
1696 	 * do it too seldom
1697 	 */
1698 	queue_delayed_work(di->chargalg_wq, &di->chargalg_periodic_work, 0);
1699 
1700 	return 0;
1701 }
1702 
ab8500_chargalg_suspend(struct device * dev)1703 static int __maybe_unused ab8500_chargalg_suspend(struct device *dev)
1704 {
1705 	struct ab8500_chargalg *di = dev_get_drvdata(dev);
1706 
1707 	if (di->chg_info.online_chg)
1708 		cancel_delayed_work_sync(&di->chargalg_wd_work);
1709 
1710 	cancel_delayed_work_sync(&di->chargalg_periodic_work);
1711 
1712 	return 0;
1713 }
1714 
1715 static char *supply_interface[] = {
1716 	"ab8500_fg",
1717 };
1718 
1719 static const struct power_supply_desc ab8500_chargalg_desc = {
1720 	.name			= "ab8500_chargalg",
1721 	.type			= POWER_SUPPLY_TYPE_UNKNOWN,
1722 	.properties		= ab8500_chargalg_props,
1723 	.num_properties		= ARRAY_SIZE(ab8500_chargalg_props),
1724 	.get_property		= ab8500_chargalg_get_property,
1725 	.external_power_changed	= ab8500_chargalg_external_power_changed,
1726 };
1727 
ab8500_chargalg_bind(struct device * dev,struct device * master,void * data)1728 static int ab8500_chargalg_bind(struct device *dev, struct device *master,
1729 				void *data)
1730 {
1731 	struct ab8500_chargalg *di = dev_get_drvdata(dev);
1732 
1733 	/* Create a work queue for the chargalg */
1734 	di->chargalg_wq = alloc_ordered_workqueue("ab8500_chargalg_wq",
1735 						  WQ_MEM_RECLAIM);
1736 	if (di->chargalg_wq == NULL) {
1737 		dev_err(di->dev, "failed to create work queue\n");
1738 		return -ENOMEM;
1739 	}
1740 
1741 	/* Run the charging algorithm */
1742 	queue_delayed_work(di->chargalg_wq, &di->chargalg_periodic_work, 0);
1743 
1744 	return 0;
1745 }
1746 
ab8500_chargalg_unbind(struct device * dev,struct device * master,void * data)1747 static void ab8500_chargalg_unbind(struct device *dev, struct device *master,
1748 				   void *data)
1749 {
1750 	struct ab8500_chargalg *di = dev_get_drvdata(dev);
1751 
1752 	/* Stop all timers and work */
1753 	hrtimer_cancel(&di->safety_timer);
1754 	hrtimer_cancel(&di->maintenance_timer);
1755 
1756 	cancel_delayed_work_sync(&di->chargalg_periodic_work);
1757 	cancel_delayed_work_sync(&di->chargalg_wd_work);
1758 	cancel_work_sync(&di->chargalg_work);
1759 
1760 	/* Delete the work queue */
1761 	destroy_workqueue(di->chargalg_wq);
1762 }
1763 
1764 static const struct component_ops ab8500_chargalg_component_ops = {
1765 	.bind = ab8500_chargalg_bind,
1766 	.unbind = ab8500_chargalg_unbind,
1767 };
1768 
ab8500_chargalg_probe(struct platform_device * pdev)1769 static int ab8500_chargalg_probe(struct platform_device *pdev)
1770 {
1771 	struct device *dev = &pdev->dev;
1772 	struct power_supply_config psy_cfg = {};
1773 	struct ab8500_chargalg *di;
1774 
1775 	di = devm_kzalloc(dev, sizeof(*di), GFP_KERNEL);
1776 	if (!di)
1777 		return -ENOMEM;
1778 
1779 	di->bm = &ab8500_bm_data;
1780 
1781 	/* get device struct and parent */
1782 	di->dev = dev;
1783 	di->parent = dev_get_drvdata(pdev->dev.parent);
1784 
1785 	psy_cfg.supplied_to = supply_interface;
1786 	psy_cfg.num_supplicants = ARRAY_SIZE(supply_interface);
1787 	psy_cfg.drv_data = di;
1788 
1789 	/* Initilialize safety timer */
1790 	hrtimer_init(&di->safety_timer, CLOCK_MONOTONIC, HRTIMER_MODE_REL);
1791 	di->safety_timer.function = ab8500_chargalg_safety_timer_expired;
1792 
1793 	/* Initilialize maintenance timer */
1794 	hrtimer_init(&di->maintenance_timer, CLOCK_MONOTONIC, HRTIMER_MODE_REL);
1795 	di->maintenance_timer.function =
1796 		ab8500_chargalg_maintenance_timer_expired;
1797 
1798 	/* Init work for chargalg */
1799 	INIT_DEFERRABLE_WORK(&di->chargalg_periodic_work,
1800 		ab8500_chargalg_periodic_work);
1801 	INIT_DEFERRABLE_WORK(&di->chargalg_wd_work,
1802 		ab8500_chargalg_wd_work);
1803 
1804 	/* Init work for chargalg */
1805 	INIT_WORK(&di->chargalg_work, ab8500_chargalg_work);
1806 
1807 	/* To detect charger at startup */
1808 	di->chg_info.prev_conn_chg = -1;
1809 
1810 	/* Register chargalg power supply class */
1811 	di->chargalg_psy = devm_power_supply_register(di->dev,
1812 						 &ab8500_chargalg_desc,
1813 						 &psy_cfg);
1814 	if (IS_ERR(di->chargalg_psy)) {
1815 		dev_err(di->dev, "failed to register chargalg psy\n");
1816 		return PTR_ERR(di->chargalg_psy);
1817 	}
1818 
1819 	platform_set_drvdata(pdev, di);
1820 
1821 	dev_info(di->dev, "probe success\n");
1822 	return component_add(dev, &ab8500_chargalg_component_ops);
1823 }
1824 
ab8500_chargalg_remove(struct platform_device * pdev)1825 static void ab8500_chargalg_remove(struct platform_device *pdev)
1826 {
1827 	component_del(&pdev->dev, &ab8500_chargalg_component_ops);
1828 }
1829 
1830 static SIMPLE_DEV_PM_OPS(ab8500_chargalg_pm_ops, ab8500_chargalg_suspend, ab8500_chargalg_resume);
1831 
1832 static const struct of_device_id ab8500_chargalg_match[] = {
1833 	{ .compatible = "stericsson,ab8500-chargalg", },
1834 	{ },
1835 };
1836 
1837 struct platform_driver ab8500_chargalg_driver = {
1838 	.probe = ab8500_chargalg_probe,
1839 	.remove = ab8500_chargalg_remove,
1840 	.driver = {
1841 		.name = "ab8500_chargalg",
1842 		.of_match_table = ab8500_chargalg_match,
1843 		.pm = &ab8500_chargalg_pm_ops,
1844 	},
1845 };
1846 MODULE_LICENSE("GPL v2");
1847 MODULE_AUTHOR("Johan Palsson, Karl Komierowski");
1848 MODULE_ALIAS("platform:ab8500-chargalg");
1849 MODULE_DESCRIPTION("ab8500 battery charging algorithm");
1850