xref: /openbmc/linux/drivers/power/supply/axp20x_battery.c (revision 648badd797c762a713b48afc3b67d56abdd0073b)
146c202b5SQuentin Schulz /*
246c202b5SQuentin Schulz  * Battery power supply driver for X-Powers AXP20X and AXP22X PMICs
346c202b5SQuentin Schulz  *
446c202b5SQuentin Schulz  * Copyright 2016 Free Electrons NextThing Co.
546c202b5SQuentin Schulz  *	Quentin Schulz <quentin.schulz@free-electrons.com>
646c202b5SQuentin Schulz  *
746c202b5SQuentin Schulz  * This driver is based on a previous upstreaming attempt by:
846c202b5SQuentin Schulz  *	Bruno Prémont <bonbons@linux-vserver.org>
946c202b5SQuentin Schulz  *
1046c202b5SQuentin Schulz  * This file is subject to the terms and conditions of the GNU General
1146c202b5SQuentin Schulz  * Public License. See the file "COPYING" in the main directory of this
1246c202b5SQuentin Schulz  * archive for more details.
1346c202b5SQuentin Schulz  *
1446c202b5SQuentin Schulz  * This program is distributed in the hope that it will be useful,
1546c202b5SQuentin Schulz  * but WITHOUT ANY WARRANTY; without even the implied warranty of
1646c202b5SQuentin Schulz  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
1746c202b5SQuentin Schulz  * GNU General Public License for more details.
1846c202b5SQuentin Schulz  */
1946c202b5SQuentin Schulz 
2046c202b5SQuentin Schulz #include <linux/err.h>
2146c202b5SQuentin Schulz #include <linux/interrupt.h>
2246c202b5SQuentin Schulz #include <linux/irq.h>
2346c202b5SQuentin Schulz #include <linux/module.h>
2446c202b5SQuentin Schulz #include <linux/of.h>
2546c202b5SQuentin Schulz #include <linux/of_device.h>
2646c202b5SQuentin Schulz #include <linux/platform_device.h>
2746c202b5SQuentin Schulz #include <linux/power_supply.h>
2846c202b5SQuentin Schulz #include <linux/regmap.h>
2946c202b5SQuentin Schulz #include <linux/slab.h>
3046c202b5SQuentin Schulz #include <linux/time.h>
3146c202b5SQuentin Schulz #include <linux/iio/iio.h>
3246c202b5SQuentin Schulz #include <linux/iio/consumer.h>
3346c202b5SQuentin Schulz #include <linux/mfd/axp20x.h>
3446c202b5SQuentin Schulz 
3546c202b5SQuentin Schulz #define AXP20X_PWR_STATUS_BAT_CHARGING	BIT(2)
3646c202b5SQuentin Schulz 
3746c202b5SQuentin Schulz #define AXP20X_PWR_OP_BATT_PRESENT	BIT(5)
3846c202b5SQuentin Schulz #define AXP20X_PWR_OP_BATT_ACTIVATED	BIT(3)
3946c202b5SQuentin Schulz 
4046c202b5SQuentin Schulz #define AXP209_FG_PERCENT		GENMASK(6, 0)
4146c202b5SQuentin Schulz #define AXP22X_FG_VALID			BIT(7)
4246c202b5SQuentin Schulz 
4346c202b5SQuentin Schulz #define AXP20X_CHRG_CTRL1_TGT_VOLT	GENMASK(6, 5)
4446c202b5SQuentin Schulz #define AXP20X_CHRG_CTRL1_TGT_4_1V	(0 << 5)
4546c202b5SQuentin Schulz #define AXP20X_CHRG_CTRL1_TGT_4_15V	(1 << 5)
4646c202b5SQuentin Schulz #define AXP20X_CHRG_CTRL1_TGT_4_2V	(2 << 5)
4746c202b5SQuentin Schulz #define AXP20X_CHRG_CTRL1_TGT_4_36V	(3 << 5)
4846c202b5SQuentin Schulz 
4946c202b5SQuentin Schulz #define AXP22X_CHRG_CTRL1_TGT_4_22V	(1 << 5)
5046c202b5SQuentin Schulz #define AXP22X_CHRG_CTRL1_TGT_4_24V	(3 << 5)
5146c202b5SQuentin Schulz 
5246c202b5SQuentin Schulz #define AXP20X_CHRG_CTRL1_TGT_CURR	GENMASK(3, 0)
5346c202b5SQuentin Schulz 
5446c202b5SQuentin Schulz #define AXP20X_V_OFF_MASK		GENMASK(2, 0)
5546c202b5SQuentin Schulz 
56*648badd7SQuentin Schulz struct axp20x_batt_ps;
57*648badd7SQuentin Schulz 
58*648badd7SQuentin Schulz struct axp_data {
59*648badd7SQuentin Schulz 	int	ccc_scale;
60*648badd7SQuentin Schulz 	int	ccc_offset;
61*648badd7SQuentin Schulz 	bool	has_fg_valid;
62*648badd7SQuentin Schulz 	int	(*get_max_voltage)(struct axp20x_batt_ps *batt, int *val);
63*648badd7SQuentin Schulz 	int	(*set_max_voltage)(struct axp20x_batt_ps *batt, int val);
64*648badd7SQuentin Schulz };
65*648badd7SQuentin Schulz 
6646c202b5SQuentin Schulz struct axp20x_batt_ps {
6746c202b5SQuentin Schulz 	struct regmap *regmap;
6846c202b5SQuentin Schulz 	struct power_supply *batt;
6946c202b5SQuentin Schulz 	struct device *dev;
7046c202b5SQuentin Schulz 	struct iio_channel *batt_chrg_i;
7146c202b5SQuentin Schulz 	struct iio_channel *batt_dischrg_i;
7246c202b5SQuentin Schulz 	struct iio_channel *batt_v;
73c8003844SQuentin Schulz 	/* Maximum constant charge current */
74c8003844SQuentin Schulz 	unsigned int max_ccc;
75*648badd7SQuentin Schulz 	const struct axp_data	*data;
7646c202b5SQuentin Schulz };
7746c202b5SQuentin Schulz 
7846c202b5SQuentin Schulz static int axp20x_battery_get_max_voltage(struct axp20x_batt_ps *axp20x_batt,
7946c202b5SQuentin Schulz 					  int *val)
8046c202b5SQuentin Schulz {
8146c202b5SQuentin Schulz 	int ret, reg;
8246c202b5SQuentin Schulz 
8346c202b5SQuentin Schulz 	ret = regmap_read(axp20x_batt->regmap, AXP20X_CHRG_CTRL1, &reg);
8446c202b5SQuentin Schulz 	if (ret)
8546c202b5SQuentin Schulz 		return ret;
8646c202b5SQuentin Schulz 
8746c202b5SQuentin Schulz 	switch (reg & AXP20X_CHRG_CTRL1_TGT_VOLT) {
8846c202b5SQuentin Schulz 	case AXP20X_CHRG_CTRL1_TGT_4_1V:
8946c202b5SQuentin Schulz 		*val = 4100000;
9046c202b5SQuentin Schulz 		break;
9146c202b5SQuentin Schulz 	case AXP20X_CHRG_CTRL1_TGT_4_15V:
9246c202b5SQuentin Schulz 		*val = 4150000;
9346c202b5SQuentin Schulz 		break;
9446c202b5SQuentin Schulz 	case AXP20X_CHRG_CTRL1_TGT_4_2V:
9546c202b5SQuentin Schulz 		*val = 4200000;
9646c202b5SQuentin Schulz 		break;
9746c202b5SQuentin Schulz 	case AXP20X_CHRG_CTRL1_TGT_4_36V:
9846c202b5SQuentin Schulz 		*val = 4360000;
9946c202b5SQuentin Schulz 		break;
10046c202b5SQuentin Schulz 	default:
10146c202b5SQuentin Schulz 		return -EINVAL;
10246c202b5SQuentin Schulz 	}
10346c202b5SQuentin Schulz 
10446c202b5SQuentin Schulz 	return 0;
10546c202b5SQuentin Schulz }
10646c202b5SQuentin Schulz 
10746c202b5SQuentin Schulz static int axp22x_battery_get_max_voltage(struct axp20x_batt_ps *axp20x_batt,
10846c202b5SQuentin Schulz 					  int *val)
10946c202b5SQuentin Schulz {
11046c202b5SQuentin Schulz 	int ret, reg;
11146c202b5SQuentin Schulz 
11246c202b5SQuentin Schulz 	ret = regmap_read(axp20x_batt->regmap, AXP20X_CHRG_CTRL1, &reg);
11346c202b5SQuentin Schulz 	if (ret)
11446c202b5SQuentin Schulz 		return ret;
11546c202b5SQuentin Schulz 
11646c202b5SQuentin Schulz 	switch (reg & AXP20X_CHRG_CTRL1_TGT_VOLT) {
11746c202b5SQuentin Schulz 	case AXP20X_CHRG_CTRL1_TGT_4_1V:
11846c202b5SQuentin Schulz 		*val = 4100000;
11946c202b5SQuentin Schulz 		break;
12046c202b5SQuentin Schulz 	case AXP20X_CHRG_CTRL1_TGT_4_2V:
12146c202b5SQuentin Schulz 		*val = 4200000;
12246c202b5SQuentin Schulz 		break;
12346c202b5SQuentin Schulz 	case AXP22X_CHRG_CTRL1_TGT_4_22V:
12446c202b5SQuentin Schulz 		*val = 4220000;
12546c202b5SQuentin Schulz 		break;
12646c202b5SQuentin Schulz 	case AXP22X_CHRG_CTRL1_TGT_4_24V:
12746c202b5SQuentin Schulz 		*val = 4240000;
12846c202b5SQuentin Schulz 		break;
12946c202b5SQuentin Schulz 	default:
13046c202b5SQuentin Schulz 		return -EINVAL;
13146c202b5SQuentin Schulz 	}
13246c202b5SQuentin Schulz 
13346c202b5SQuentin Schulz 	return 0;
13446c202b5SQuentin Schulz }
13546c202b5SQuentin Schulz 
13646c202b5SQuentin Schulz static int axp20x_get_constant_charge_current(struct axp20x_batt_ps *axp,
13746c202b5SQuentin Schulz 					      int *val)
13846c202b5SQuentin Schulz {
13946c202b5SQuentin Schulz 	int ret;
14046c202b5SQuentin Schulz 
14146c202b5SQuentin Schulz 	ret = regmap_read(axp->regmap, AXP20X_CHRG_CTRL1, val);
14246c202b5SQuentin Schulz 	if (ret)
14346c202b5SQuentin Schulz 		return ret;
14446c202b5SQuentin Schulz 
14546c202b5SQuentin Schulz 	*val &= AXP20X_CHRG_CTRL1_TGT_CURR;
14646c202b5SQuentin Schulz 
147*648badd7SQuentin Schulz 	*val = *val * axp->data->ccc_scale + axp->data->ccc_offset;
14846c202b5SQuentin Schulz 
14946c202b5SQuentin Schulz 	return 0;
15046c202b5SQuentin Schulz }
15146c202b5SQuentin Schulz 
15246c202b5SQuentin Schulz static int axp20x_battery_get_prop(struct power_supply *psy,
15346c202b5SQuentin Schulz 				   enum power_supply_property psp,
15446c202b5SQuentin Schulz 				   union power_supply_propval *val)
15546c202b5SQuentin Schulz {
15646c202b5SQuentin Schulz 	struct axp20x_batt_ps *axp20x_batt = power_supply_get_drvdata(psy);
15746c202b5SQuentin Schulz 	struct iio_channel *chan;
15846c202b5SQuentin Schulz 	int ret = 0, reg, val1;
15946c202b5SQuentin Schulz 
16046c202b5SQuentin Schulz 	switch (psp) {
16146c202b5SQuentin Schulz 	case POWER_SUPPLY_PROP_PRESENT:
16246c202b5SQuentin Schulz 	case POWER_SUPPLY_PROP_ONLINE:
16346c202b5SQuentin Schulz 		ret = regmap_read(axp20x_batt->regmap, AXP20X_PWR_OP_MODE,
16446c202b5SQuentin Schulz 				  &reg);
16546c202b5SQuentin Schulz 		if (ret)
16646c202b5SQuentin Schulz 			return ret;
16746c202b5SQuentin Schulz 
16846c202b5SQuentin Schulz 		val->intval = !!(reg & AXP20X_PWR_OP_BATT_PRESENT);
16946c202b5SQuentin Schulz 		break;
17046c202b5SQuentin Schulz 
17146c202b5SQuentin Schulz 	case POWER_SUPPLY_PROP_STATUS:
17246c202b5SQuentin Schulz 		ret = regmap_read(axp20x_batt->regmap, AXP20X_PWR_INPUT_STATUS,
17346c202b5SQuentin Schulz 				  &reg);
17446c202b5SQuentin Schulz 		if (ret)
17546c202b5SQuentin Schulz 			return ret;
17646c202b5SQuentin Schulz 
17746c202b5SQuentin Schulz 		if (reg & AXP20X_PWR_STATUS_BAT_CHARGING) {
17846c202b5SQuentin Schulz 			val->intval = POWER_SUPPLY_STATUS_CHARGING;
17946c202b5SQuentin Schulz 			return 0;
18046c202b5SQuentin Schulz 		}
18146c202b5SQuentin Schulz 
18246c202b5SQuentin Schulz 		ret = iio_read_channel_processed(axp20x_batt->batt_dischrg_i,
18346c202b5SQuentin Schulz 						 &val1);
18446c202b5SQuentin Schulz 		if (ret)
18546c202b5SQuentin Schulz 			return ret;
18646c202b5SQuentin Schulz 
18746c202b5SQuentin Schulz 		if (val1) {
18846c202b5SQuentin Schulz 			val->intval = POWER_SUPPLY_STATUS_DISCHARGING;
18946c202b5SQuentin Schulz 			return 0;
19046c202b5SQuentin Schulz 		}
19146c202b5SQuentin Schulz 
19246c202b5SQuentin Schulz 		ret = regmap_read(axp20x_batt->regmap, AXP20X_FG_RES, &val1);
19346c202b5SQuentin Schulz 		if (ret)
19446c202b5SQuentin Schulz 			return ret;
19546c202b5SQuentin Schulz 
19646c202b5SQuentin Schulz 		/*
19746c202b5SQuentin Schulz 		 * Fuel Gauge data takes 7 bits but the stored value seems to be
19846c202b5SQuentin Schulz 		 * directly the raw percentage without any scaling to 7 bits.
19946c202b5SQuentin Schulz 		 */
20046c202b5SQuentin Schulz 		if ((val1 & AXP209_FG_PERCENT) == 100)
20146c202b5SQuentin Schulz 			val->intval = POWER_SUPPLY_STATUS_FULL;
20246c202b5SQuentin Schulz 		else
20346c202b5SQuentin Schulz 			val->intval = POWER_SUPPLY_STATUS_NOT_CHARGING;
20446c202b5SQuentin Schulz 		break;
20546c202b5SQuentin Schulz 
20646c202b5SQuentin Schulz 	case POWER_SUPPLY_PROP_HEALTH:
20746c202b5SQuentin Schulz 		ret = regmap_read(axp20x_batt->regmap, AXP20X_PWR_OP_MODE,
20846c202b5SQuentin Schulz 				  &val1);
20946c202b5SQuentin Schulz 		if (ret)
21046c202b5SQuentin Schulz 			return ret;
21146c202b5SQuentin Schulz 
21246c202b5SQuentin Schulz 		if (val1 & AXP20X_PWR_OP_BATT_ACTIVATED) {
21346c202b5SQuentin Schulz 			val->intval = POWER_SUPPLY_HEALTH_DEAD;
21446c202b5SQuentin Schulz 			return 0;
21546c202b5SQuentin Schulz 		}
21646c202b5SQuentin Schulz 
21746c202b5SQuentin Schulz 		val->intval = POWER_SUPPLY_HEALTH_GOOD;
21846c202b5SQuentin Schulz 		break;
21946c202b5SQuentin Schulz 
22046c202b5SQuentin Schulz 	case POWER_SUPPLY_PROP_CONSTANT_CHARGE_CURRENT:
22146c202b5SQuentin Schulz 		ret = axp20x_get_constant_charge_current(axp20x_batt,
22246c202b5SQuentin Schulz 							 &val->intval);
22346c202b5SQuentin Schulz 		if (ret)
22446c202b5SQuentin Schulz 			return ret;
22546c202b5SQuentin Schulz 		break;
22646c202b5SQuentin Schulz 
22746c202b5SQuentin Schulz 	case POWER_SUPPLY_PROP_CONSTANT_CHARGE_CURRENT_MAX:
228c8003844SQuentin Schulz 		val->intval = axp20x_batt->max_ccc;
22946c202b5SQuentin Schulz 		break;
23046c202b5SQuentin Schulz 
23146c202b5SQuentin Schulz 	case POWER_SUPPLY_PROP_CURRENT_NOW:
23246c202b5SQuentin Schulz 		ret = regmap_read(axp20x_batt->regmap, AXP20X_PWR_INPUT_STATUS,
23346c202b5SQuentin Schulz 				  &reg);
23446c202b5SQuentin Schulz 		if (ret)
23546c202b5SQuentin Schulz 			return ret;
23646c202b5SQuentin Schulz 
23746c202b5SQuentin Schulz 		if (reg & AXP20X_PWR_STATUS_BAT_CHARGING)
23846c202b5SQuentin Schulz 			chan = axp20x_batt->batt_chrg_i;
23946c202b5SQuentin Schulz 		else
24046c202b5SQuentin Schulz 			chan = axp20x_batt->batt_dischrg_i;
24146c202b5SQuentin Schulz 
24246c202b5SQuentin Schulz 		ret = iio_read_channel_processed(chan, &val->intval);
24346c202b5SQuentin Schulz 		if (ret)
24446c202b5SQuentin Schulz 			return ret;
24546c202b5SQuentin Schulz 
24646c202b5SQuentin Schulz 		/* IIO framework gives mA but Power Supply framework gives uA */
24746c202b5SQuentin Schulz 		val->intval *= 1000;
24846c202b5SQuentin Schulz 		break;
24946c202b5SQuentin Schulz 
25046c202b5SQuentin Schulz 	case POWER_SUPPLY_PROP_CAPACITY:
25146c202b5SQuentin Schulz 		/* When no battery is present, return capacity is 100% */
25246c202b5SQuentin Schulz 		ret = regmap_read(axp20x_batt->regmap, AXP20X_PWR_OP_MODE,
25346c202b5SQuentin Schulz 				  &reg);
25446c202b5SQuentin Schulz 		if (ret)
25546c202b5SQuentin Schulz 			return ret;
25646c202b5SQuentin Schulz 
25746c202b5SQuentin Schulz 		if (!(reg & AXP20X_PWR_OP_BATT_PRESENT)) {
25846c202b5SQuentin Schulz 			val->intval = 100;
25946c202b5SQuentin Schulz 			return 0;
26046c202b5SQuentin Schulz 		}
26146c202b5SQuentin Schulz 
26246c202b5SQuentin Schulz 		ret = regmap_read(axp20x_batt->regmap, AXP20X_FG_RES, &reg);
26346c202b5SQuentin Schulz 		if (ret)
26446c202b5SQuentin Schulz 			return ret;
26546c202b5SQuentin Schulz 
266*648badd7SQuentin Schulz 		if (axp20x_batt->data->has_fg_valid && !(reg & AXP22X_FG_VALID))
26746c202b5SQuentin Schulz 			return -EINVAL;
26846c202b5SQuentin Schulz 
26946c202b5SQuentin Schulz 		/*
27046c202b5SQuentin Schulz 		 * Fuel Gauge data takes 7 bits but the stored value seems to be
27146c202b5SQuentin Schulz 		 * directly the raw percentage without any scaling to 7 bits.
27246c202b5SQuentin Schulz 		 */
27346c202b5SQuentin Schulz 		val->intval = reg & AXP209_FG_PERCENT;
27446c202b5SQuentin Schulz 		break;
27546c202b5SQuentin Schulz 
27646c202b5SQuentin Schulz 	case POWER_SUPPLY_PROP_VOLTAGE_MAX_DESIGN:
277*648badd7SQuentin Schulz 		return axp20x_batt->data->get_max_voltage(axp20x_batt,
27846c202b5SQuentin Schulz 							  &val->intval);
27946c202b5SQuentin Schulz 
28046c202b5SQuentin Schulz 	case POWER_SUPPLY_PROP_VOLTAGE_MIN_DESIGN:
28146c202b5SQuentin Schulz 		ret = regmap_read(axp20x_batt->regmap, AXP20X_V_OFF, &reg);
28246c202b5SQuentin Schulz 		if (ret)
28346c202b5SQuentin Schulz 			return ret;
28446c202b5SQuentin Schulz 
28546c202b5SQuentin Schulz 		val->intval = 2600000 + 100000 * (reg & AXP20X_V_OFF_MASK);
28646c202b5SQuentin Schulz 		break;
28746c202b5SQuentin Schulz 
28846c202b5SQuentin Schulz 	case POWER_SUPPLY_PROP_VOLTAGE_NOW:
28946c202b5SQuentin Schulz 		ret = iio_read_channel_processed(axp20x_batt->batt_v,
29046c202b5SQuentin Schulz 						 &val->intval);
29146c202b5SQuentin Schulz 		if (ret)
29246c202b5SQuentin Schulz 			return ret;
29346c202b5SQuentin Schulz 
29446c202b5SQuentin Schulz 		/* IIO framework gives mV but Power Supply framework gives uV */
29546c202b5SQuentin Schulz 		val->intval *= 1000;
29646c202b5SQuentin Schulz 		break;
29746c202b5SQuentin Schulz 
29846c202b5SQuentin Schulz 	default:
29946c202b5SQuentin Schulz 		return -EINVAL;
30046c202b5SQuentin Schulz 	}
30146c202b5SQuentin Schulz 
30246c202b5SQuentin Schulz 	return 0;
30346c202b5SQuentin Schulz }
30446c202b5SQuentin Schulz 
305*648badd7SQuentin Schulz static int axp22x_battery_set_max_voltage(struct axp20x_batt_ps *axp20x_batt,
306*648badd7SQuentin Schulz 					  int val)
307*648badd7SQuentin Schulz {
308*648badd7SQuentin Schulz 	switch (val) {
309*648badd7SQuentin Schulz 	case 4100000:
310*648badd7SQuentin Schulz 		val = AXP20X_CHRG_CTRL1_TGT_4_1V;
311*648badd7SQuentin Schulz 		break;
312*648badd7SQuentin Schulz 
313*648badd7SQuentin Schulz 	case 4200000:
314*648badd7SQuentin Schulz 		val = AXP20X_CHRG_CTRL1_TGT_4_2V;
315*648badd7SQuentin Schulz 		break;
316*648badd7SQuentin Schulz 
317*648badd7SQuentin Schulz 	default:
318*648badd7SQuentin Schulz 		/*
319*648badd7SQuentin Schulz 		 * AXP20x max voltage can be set to 4.36V and AXP22X max voltage
320*648badd7SQuentin Schulz 		 * can be set to 4.22V and 4.24V, but these voltages are too
321*648badd7SQuentin Schulz 		 * high for Lithium based batteries (AXP PMICs are supposed to
322*648badd7SQuentin Schulz 		 * be used with these kinds of battery).
323*648badd7SQuentin Schulz 		 */
324*648badd7SQuentin Schulz 		return -EINVAL;
325*648badd7SQuentin Schulz 	}
326*648badd7SQuentin Schulz 
327*648badd7SQuentin Schulz 	return regmap_update_bits(axp20x_batt->regmap, AXP20X_CHRG_CTRL1,
328*648badd7SQuentin Schulz 				  AXP20X_CHRG_CTRL1_TGT_VOLT, val);
329*648badd7SQuentin Schulz }
330*648badd7SQuentin Schulz 
33146c202b5SQuentin Schulz static int axp20x_battery_set_max_voltage(struct axp20x_batt_ps *axp20x_batt,
33246c202b5SQuentin Schulz 					  int val)
33346c202b5SQuentin Schulz {
33446c202b5SQuentin Schulz 	switch (val) {
33546c202b5SQuentin Schulz 	case 4100000:
33646c202b5SQuentin Schulz 		val = AXP20X_CHRG_CTRL1_TGT_4_1V;
33746c202b5SQuentin Schulz 		break;
33846c202b5SQuentin Schulz 
33946c202b5SQuentin Schulz 	case 4150000:
34046c202b5SQuentin Schulz 		val = AXP20X_CHRG_CTRL1_TGT_4_15V;
34146c202b5SQuentin Schulz 		break;
34246c202b5SQuentin Schulz 
34346c202b5SQuentin Schulz 	case 4200000:
34446c202b5SQuentin Schulz 		val = AXP20X_CHRG_CTRL1_TGT_4_2V;
34546c202b5SQuentin Schulz 		break;
34646c202b5SQuentin Schulz 
34746c202b5SQuentin Schulz 	default:
34846c202b5SQuentin Schulz 		/*
34946c202b5SQuentin Schulz 		 * AXP20x max voltage can be set to 4.36V and AXP22X max voltage
35046c202b5SQuentin Schulz 		 * can be set to 4.22V and 4.24V, but these voltages are too
35146c202b5SQuentin Schulz 		 * high for Lithium based batteries (AXP PMICs are supposed to
35246c202b5SQuentin Schulz 		 * be used with these kinds of battery).
35346c202b5SQuentin Schulz 		 */
35446c202b5SQuentin Schulz 		return -EINVAL;
35546c202b5SQuentin Schulz 	}
35646c202b5SQuentin Schulz 
35746c202b5SQuentin Schulz 	return regmap_update_bits(axp20x_batt->regmap, AXP20X_CHRG_CTRL1,
35846c202b5SQuentin Schulz 				  AXP20X_CHRG_CTRL1_TGT_VOLT, val);
35946c202b5SQuentin Schulz }
36046c202b5SQuentin Schulz 
36146c202b5SQuentin Schulz static int axp20x_set_constant_charge_current(struct axp20x_batt_ps *axp_batt,
36246c202b5SQuentin Schulz 					      int charge_current)
36346c202b5SQuentin Schulz {
364c8003844SQuentin Schulz 	if (charge_current > axp_batt->max_ccc)
365c8003844SQuentin Schulz 		return -EINVAL;
366c8003844SQuentin Schulz 
367*648badd7SQuentin Schulz 	charge_current = (charge_current - axp_batt->data->ccc_offset) /
368*648badd7SQuentin Schulz 		axp_batt->data->ccc_scale;
36946c202b5SQuentin Schulz 
37046c202b5SQuentin Schulz 	if (charge_current > AXP20X_CHRG_CTRL1_TGT_CURR || charge_current < 0)
37146c202b5SQuentin Schulz 		return -EINVAL;
37246c202b5SQuentin Schulz 
37346c202b5SQuentin Schulz 	return regmap_update_bits(axp_batt->regmap, AXP20X_CHRG_CTRL1,
37446c202b5SQuentin Schulz 				  AXP20X_CHRG_CTRL1_TGT_CURR, charge_current);
37546c202b5SQuentin Schulz }
37646c202b5SQuentin Schulz 
377c8003844SQuentin Schulz static int axp20x_set_max_constant_charge_current(struct axp20x_batt_ps *axp,
378c8003844SQuentin Schulz 						  int charge_current)
379c8003844SQuentin Schulz {
380c8003844SQuentin Schulz 	bool lower_max = false;
381c8003844SQuentin Schulz 
382*648badd7SQuentin Schulz 	charge_current = (charge_current - axp->data->ccc_offset) /
383*648badd7SQuentin Schulz 		axp->data->ccc_scale;
384c8003844SQuentin Schulz 
385c8003844SQuentin Schulz 	if (charge_current > AXP20X_CHRG_CTRL1_TGT_CURR || charge_current < 0)
386c8003844SQuentin Schulz 		return -EINVAL;
387c8003844SQuentin Schulz 
388*648badd7SQuentin Schulz 	charge_current = charge_current * axp->data->ccc_scale +
389*648badd7SQuentin Schulz 		axp->data->ccc_offset;
390c8003844SQuentin Schulz 
391c8003844SQuentin Schulz 	if (charge_current > axp->max_ccc)
392c8003844SQuentin Schulz 		dev_warn(axp->dev,
393c8003844SQuentin Schulz 			 "Setting max constant charge current higher than previously defined. Note that increasing the constant charge current may damage your battery.\n");
394c8003844SQuentin Schulz 	else
395c8003844SQuentin Schulz 		lower_max = true;
396c8003844SQuentin Schulz 
397c8003844SQuentin Schulz 	axp->max_ccc = charge_current;
398c8003844SQuentin Schulz 
399c8003844SQuentin Schulz 	if (lower_max) {
400c8003844SQuentin Schulz 		int current_cc;
401c8003844SQuentin Schulz 
402c8003844SQuentin Schulz 		axp20x_get_constant_charge_current(axp, &current_cc);
403c8003844SQuentin Schulz 		if (current_cc > charge_current)
404c8003844SQuentin Schulz 			axp20x_set_constant_charge_current(axp, charge_current);
405c8003844SQuentin Schulz 	}
406c8003844SQuentin Schulz 
407c8003844SQuentin Schulz 	return 0;
408c8003844SQuentin Schulz }
40946c202b5SQuentin Schulz static int axp20x_set_voltage_min_design(struct axp20x_batt_ps *axp_batt,
41046c202b5SQuentin Schulz 					 int min_voltage)
41146c202b5SQuentin Schulz {
41246c202b5SQuentin Schulz 	int val1 = (min_voltage - 2600000) / 100000;
41346c202b5SQuentin Schulz 
41446c202b5SQuentin Schulz 	if (val1 < 0 || val1 > AXP20X_V_OFF_MASK)
41546c202b5SQuentin Schulz 		return -EINVAL;
41646c202b5SQuentin Schulz 
41746c202b5SQuentin Schulz 	return regmap_update_bits(axp_batt->regmap, AXP20X_V_OFF,
41846c202b5SQuentin Schulz 				  AXP20X_V_OFF_MASK, val1);
41946c202b5SQuentin Schulz }
42046c202b5SQuentin Schulz 
42146c202b5SQuentin Schulz static int axp20x_battery_set_prop(struct power_supply *psy,
42246c202b5SQuentin Schulz 				   enum power_supply_property psp,
42346c202b5SQuentin Schulz 				   const union power_supply_propval *val)
42446c202b5SQuentin Schulz {
42546c202b5SQuentin Schulz 	struct axp20x_batt_ps *axp20x_batt = power_supply_get_drvdata(psy);
42646c202b5SQuentin Schulz 
42746c202b5SQuentin Schulz 	switch (psp) {
42846c202b5SQuentin Schulz 	case POWER_SUPPLY_PROP_VOLTAGE_MIN_DESIGN:
42946c202b5SQuentin Schulz 		return axp20x_set_voltage_min_design(axp20x_batt, val->intval);
43046c202b5SQuentin Schulz 
43146c202b5SQuentin Schulz 	case POWER_SUPPLY_PROP_VOLTAGE_MAX_DESIGN:
432*648badd7SQuentin Schulz 		return axp20x_batt->data->set_max_voltage(axp20x_batt, val->intval);
43346c202b5SQuentin Schulz 
43446c202b5SQuentin Schulz 	case POWER_SUPPLY_PROP_CONSTANT_CHARGE_CURRENT:
43546c202b5SQuentin Schulz 		return axp20x_set_constant_charge_current(axp20x_batt,
43646c202b5SQuentin Schulz 							  val->intval);
437c8003844SQuentin Schulz 	case POWER_SUPPLY_PROP_CONSTANT_CHARGE_CURRENT_MAX:
438c8003844SQuentin Schulz 		return axp20x_set_max_constant_charge_current(axp20x_batt,
439c8003844SQuentin Schulz 							      val->intval);
44046c202b5SQuentin Schulz 
44146c202b5SQuentin Schulz 	default:
44246c202b5SQuentin Schulz 		return -EINVAL;
44346c202b5SQuentin Schulz 	}
44446c202b5SQuentin Schulz }
44546c202b5SQuentin Schulz 
44646c202b5SQuentin Schulz static enum power_supply_property axp20x_battery_props[] = {
44746c202b5SQuentin Schulz 	POWER_SUPPLY_PROP_PRESENT,
44846c202b5SQuentin Schulz 	POWER_SUPPLY_PROP_ONLINE,
44946c202b5SQuentin Schulz 	POWER_SUPPLY_PROP_STATUS,
45046c202b5SQuentin Schulz 	POWER_SUPPLY_PROP_VOLTAGE_NOW,
45146c202b5SQuentin Schulz 	POWER_SUPPLY_PROP_CURRENT_NOW,
45246c202b5SQuentin Schulz 	POWER_SUPPLY_PROP_CONSTANT_CHARGE_CURRENT,
45346c202b5SQuentin Schulz 	POWER_SUPPLY_PROP_CONSTANT_CHARGE_CURRENT_MAX,
45446c202b5SQuentin Schulz 	POWER_SUPPLY_PROP_HEALTH,
45546c202b5SQuentin Schulz 	POWER_SUPPLY_PROP_VOLTAGE_MAX_DESIGN,
45646c202b5SQuentin Schulz 	POWER_SUPPLY_PROP_VOLTAGE_MIN_DESIGN,
45746c202b5SQuentin Schulz 	POWER_SUPPLY_PROP_CAPACITY,
45846c202b5SQuentin Schulz };
45946c202b5SQuentin Schulz 
46046c202b5SQuentin Schulz static int axp20x_battery_prop_writeable(struct power_supply *psy,
46146c202b5SQuentin Schulz 					 enum power_supply_property psp)
46246c202b5SQuentin Schulz {
46346c202b5SQuentin Schulz 	return psp == POWER_SUPPLY_PROP_VOLTAGE_MIN_DESIGN ||
46446c202b5SQuentin Schulz 	       psp == POWER_SUPPLY_PROP_VOLTAGE_MAX_DESIGN ||
465c8003844SQuentin Schulz 	       psp == POWER_SUPPLY_PROP_CONSTANT_CHARGE_CURRENT ||
466c8003844SQuentin Schulz 	       psp == POWER_SUPPLY_PROP_CONSTANT_CHARGE_CURRENT_MAX;
46746c202b5SQuentin Schulz }
46846c202b5SQuentin Schulz 
46946c202b5SQuentin Schulz static const struct power_supply_desc axp20x_batt_ps_desc = {
47046c202b5SQuentin Schulz 	.name = "axp20x-battery",
47146c202b5SQuentin Schulz 	.type = POWER_SUPPLY_TYPE_BATTERY,
47246c202b5SQuentin Schulz 	.properties = axp20x_battery_props,
47346c202b5SQuentin Schulz 	.num_properties = ARRAY_SIZE(axp20x_battery_props),
47446c202b5SQuentin Schulz 	.property_is_writeable = axp20x_battery_prop_writeable,
47546c202b5SQuentin Schulz 	.get_property = axp20x_battery_get_prop,
47646c202b5SQuentin Schulz 	.set_property = axp20x_battery_set_prop,
47746c202b5SQuentin Schulz };
47846c202b5SQuentin Schulz 
479*648badd7SQuentin Schulz static const struct axp_data axp209_data = {
480*648badd7SQuentin Schulz 	.ccc_scale = 100000,
481*648badd7SQuentin Schulz 	.ccc_offset = 300000,
482*648badd7SQuentin Schulz 	.get_max_voltage = axp20x_battery_get_max_voltage,
483*648badd7SQuentin Schulz 	.set_max_voltage = axp20x_battery_set_max_voltage,
484*648badd7SQuentin Schulz };
485*648badd7SQuentin Schulz 
486*648badd7SQuentin Schulz static const struct axp_data axp221_data = {
487*648badd7SQuentin Schulz 	.ccc_scale = 150000,
488*648badd7SQuentin Schulz 	.ccc_offset = 300000,
489*648badd7SQuentin Schulz 	.has_fg_valid = true,
490*648badd7SQuentin Schulz 	.get_max_voltage = axp22x_battery_get_max_voltage,
491*648badd7SQuentin Schulz 	.set_max_voltage = axp22x_battery_set_max_voltage,
492*648badd7SQuentin Schulz };
493*648badd7SQuentin Schulz 
49446c202b5SQuentin Schulz static const struct of_device_id axp20x_battery_ps_id[] = {
49546c202b5SQuentin Schulz 	{
49646c202b5SQuentin Schulz 		.compatible = "x-powers,axp209-battery-power-supply",
497*648badd7SQuentin Schulz 		.data = (void *)&axp209_data,
49846c202b5SQuentin Schulz 	}, {
49946c202b5SQuentin Schulz 		.compatible = "x-powers,axp221-battery-power-supply",
500*648badd7SQuentin Schulz 		.data = (void *)&axp221_data,
50146c202b5SQuentin Schulz 	}, { /* sentinel */ },
50246c202b5SQuentin Schulz };
50346c202b5SQuentin Schulz MODULE_DEVICE_TABLE(of, axp20x_battery_ps_id);
50446c202b5SQuentin Schulz 
50546c202b5SQuentin Schulz static int axp20x_power_probe(struct platform_device *pdev)
50646c202b5SQuentin Schulz {
50746c202b5SQuentin Schulz 	struct axp20x_batt_ps *axp20x_batt;
50846c202b5SQuentin Schulz 	struct power_supply_config psy_cfg = {};
509f8c91baeSQuentin Schulz 	struct power_supply_battery_info info;
510*648badd7SQuentin Schulz 	struct device *dev = &pdev->dev;
51146c202b5SQuentin Schulz 
51246c202b5SQuentin Schulz 	if (!of_device_is_available(pdev->dev.of_node))
51346c202b5SQuentin Schulz 		return -ENODEV;
51446c202b5SQuentin Schulz 
51546c202b5SQuentin Schulz 	axp20x_batt = devm_kzalloc(&pdev->dev, sizeof(*axp20x_batt),
51646c202b5SQuentin Schulz 				   GFP_KERNEL);
51746c202b5SQuentin Schulz 	if (!axp20x_batt)
51846c202b5SQuentin Schulz 		return -ENOMEM;
51946c202b5SQuentin Schulz 
52046c202b5SQuentin Schulz 	axp20x_batt->dev = &pdev->dev;
52146c202b5SQuentin Schulz 
52246c202b5SQuentin Schulz 	axp20x_batt->batt_v = devm_iio_channel_get(&pdev->dev, "batt_v");
52346c202b5SQuentin Schulz 	if (IS_ERR(axp20x_batt->batt_v)) {
52446c202b5SQuentin Schulz 		if (PTR_ERR(axp20x_batt->batt_v) == -ENODEV)
52546c202b5SQuentin Schulz 			return -EPROBE_DEFER;
52646c202b5SQuentin Schulz 		return PTR_ERR(axp20x_batt->batt_v);
52746c202b5SQuentin Schulz 	}
52846c202b5SQuentin Schulz 
52946c202b5SQuentin Schulz 	axp20x_batt->batt_chrg_i = devm_iio_channel_get(&pdev->dev,
53046c202b5SQuentin Schulz 							"batt_chrg_i");
53146c202b5SQuentin Schulz 	if (IS_ERR(axp20x_batt->batt_chrg_i)) {
53246c202b5SQuentin Schulz 		if (PTR_ERR(axp20x_batt->batt_chrg_i) == -ENODEV)
53346c202b5SQuentin Schulz 			return -EPROBE_DEFER;
53446c202b5SQuentin Schulz 		return PTR_ERR(axp20x_batt->batt_chrg_i);
53546c202b5SQuentin Schulz 	}
53646c202b5SQuentin Schulz 
53746c202b5SQuentin Schulz 	axp20x_batt->batt_dischrg_i = devm_iio_channel_get(&pdev->dev,
53846c202b5SQuentin Schulz 							   "batt_dischrg_i");
53946c202b5SQuentin Schulz 	if (IS_ERR(axp20x_batt->batt_dischrg_i)) {
54046c202b5SQuentin Schulz 		if (PTR_ERR(axp20x_batt->batt_dischrg_i) == -ENODEV)
54146c202b5SQuentin Schulz 			return -EPROBE_DEFER;
54246c202b5SQuentin Schulz 		return PTR_ERR(axp20x_batt->batt_dischrg_i);
54346c202b5SQuentin Schulz 	}
54446c202b5SQuentin Schulz 
54546c202b5SQuentin Schulz 	axp20x_batt->regmap = dev_get_regmap(pdev->dev.parent, NULL);
54646c202b5SQuentin Schulz 	platform_set_drvdata(pdev, axp20x_batt);
54746c202b5SQuentin Schulz 
54846c202b5SQuentin Schulz 	psy_cfg.drv_data = axp20x_batt;
54946c202b5SQuentin Schulz 	psy_cfg.of_node = pdev->dev.of_node;
55046c202b5SQuentin Schulz 
551*648badd7SQuentin Schulz 	axp20x_batt->data = (struct axp_data *)of_device_get_match_data(dev);
55246c202b5SQuentin Schulz 
55346c202b5SQuentin Schulz 	axp20x_batt->batt = devm_power_supply_register(&pdev->dev,
55446c202b5SQuentin Schulz 						       &axp20x_batt_ps_desc,
55546c202b5SQuentin Schulz 						       &psy_cfg);
55646c202b5SQuentin Schulz 	if (IS_ERR(axp20x_batt->batt)) {
55746c202b5SQuentin Schulz 		dev_err(&pdev->dev, "failed to register power supply: %ld\n",
55846c202b5SQuentin Schulz 			PTR_ERR(axp20x_batt->batt));
55946c202b5SQuentin Schulz 		return PTR_ERR(axp20x_batt->batt);
56046c202b5SQuentin Schulz 	}
56146c202b5SQuentin Schulz 
562f8c91baeSQuentin Schulz 	if (!power_supply_get_battery_info(axp20x_batt->batt, &info)) {
563f8c91baeSQuentin Schulz 		int vmin = info.voltage_min_design_uv;
564c8003844SQuentin Schulz 		int ccc = info.constant_charge_current_max_ua;
565f8c91baeSQuentin Schulz 
566f8c91baeSQuentin Schulz 		if (vmin > 0 && axp20x_set_voltage_min_design(axp20x_batt,
567f8c91baeSQuentin Schulz 							      vmin))
568f8c91baeSQuentin Schulz 			dev_err(&pdev->dev,
569f8c91baeSQuentin Schulz 				"couldn't set voltage_min_design\n");
570c8003844SQuentin Schulz 
571c8003844SQuentin Schulz 		/* Set max to unverified value to be able to set CCC */
572c8003844SQuentin Schulz 		axp20x_batt->max_ccc = ccc;
573c8003844SQuentin Schulz 
574c8003844SQuentin Schulz 		if (ccc <= 0 || axp20x_set_constant_charge_current(axp20x_batt,
575c8003844SQuentin Schulz 								   ccc)) {
576c8003844SQuentin Schulz 			dev_err(&pdev->dev,
577c8003844SQuentin Schulz 				"couldn't set constant charge current from DT: fallback to minimum value\n");
578c8003844SQuentin Schulz 			ccc = 300000;
579c8003844SQuentin Schulz 			axp20x_batt->max_ccc = ccc;
580c8003844SQuentin Schulz 			axp20x_set_constant_charge_current(axp20x_batt, ccc);
581f8c91baeSQuentin Schulz 		}
582c8003844SQuentin Schulz 	}
583c8003844SQuentin Schulz 
584c8003844SQuentin Schulz 	/*
585c8003844SQuentin Schulz 	 * Update max CCC to a valid value if battery info is present or set it
586c8003844SQuentin Schulz 	 * to current register value by default.
587c8003844SQuentin Schulz 	 */
588c8003844SQuentin Schulz 	axp20x_get_constant_charge_current(axp20x_batt,
589c8003844SQuentin Schulz 					   &axp20x_batt->max_ccc);
590f8c91baeSQuentin Schulz 
59146c202b5SQuentin Schulz 	return 0;
59246c202b5SQuentin Schulz }
59346c202b5SQuentin Schulz 
59446c202b5SQuentin Schulz static struct platform_driver axp20x_batt_driver = {
59546c202b5SQuentin Schulz 	.probe    = axp20x_power_probe,
59646c202b5SQuentin Schulz 	.driver   = {
59746c202b5SQuentin Schulz 		.name  = "axp20x-battery-power-supply",
59846c202b5SQuentin Schulz 		.of_match_table = axp20x_battery_ps_id,
59946c202b5SQuentin Schulz 	},
60046c202b5SQuentin Schulz };
60146c202b5SQuentin Schulz 
60246c202b5SQuentin Schulz module_platform_driver(axp20x_batt_driver);
60346c202b5SQuentin Schulz 
60446c202b5SQuentin Schulz MODULE_DESCRIPTION("Battery power supply driver for AXP20X and AXP22X PMICs");
60546c202b5SQuentin Schulz MODULE_AUTHOR("Quentin Schulz <quentin.schulz@free-electrons.com>");
60646c202b5SQuentin Schulz MODULE_LICENSE("GPL");
607