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, ®); 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, ®); 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 ®); 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 ®); 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 ®); 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 ®); 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, ®); 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, ®); 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, ¤t_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