1*46c202b5SQuentin Schulz /* 2*46c202b5SQuentin Schulz * Battery power supply driver for X-Powers AXP20X and AXP22X PMICs 3*46c202b5SQuentin Schulz * 4*46c202b5SQuentin Schulz * Copyright 2016 Free Electrons NextThing Co. 5*46c202b5SQuentin Schulz * Quentin Schulz <quentin.schulz@free-electrons.com> 6*46c202b5SQuentin Schulz * 7*46c202b5SQuentin Schulz * This driver is based on a previous upstreaming attempt by: 8*46c202b5SQuentin Schulz * Bruno Prémont <bonbons@linux-vserver.org> 9*46c202b5SQuentin Schulz * 10*46c202b5SQuentin Schulz * This file is subject to the terms and conditions of the GNU General 11*46c202b5SQuentin Schulz * Public License. See the file "COPYING" in the main directory of this 12*46c202b5SQuentin Schulz * archive for more details. 13*46c202b5SQuentin Schulz * 14*46c202b5SQuentin Schulz * This program is distributed in the hope that it will be useful, 15*46c202b5SQuentin Schulz * but WITHOUT ANY WARRANTY; without even the implied warranty of 16*46c202b5SQuentin Schulz * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the 17*46c202b5SQuentin Schulz * GNU General Public License for more details. 18*46c202b5SQuentin Schulz */ 19*46c202b5SQuentin Schulz 20*46c202b5SQuentin Schulz #include <linux/err.h> 21*46c202b5SQuentin Schulz #include <linux/interrupt.h> 22*46c202b5SQuentin Schulz #include <linux/irq.h> 23*46c202b5SQuentin Schulz #include <linux/module.h> 24*46c202b5SQuentin Schulz #include <linux/of.h> 25*46c202b5SQuentin Schulz #include <linux/of_device.h> 26*46c202b5SQuentin Schulz #include <linux/platform_device.h> 27*46c202b5SQuentin Schulz #include <linux/power_supply.h> 28*46c202b5SQuentin Schulz #include <linux/regmap.h> 29*46c202b5SQuentin Schulz #include <linux/slab.h> 30*46c202b5SQuentin Schulz #include <linux/time.h> 31*46c202b5SQuentin Schulz #include <linux/iio/iio.h> 32*46c202b5SQuentin Schulz #include <linux/iio/consumer.h> 33*46c202b5SQuentin Schulz #include <linux/mfd/axp20x.h> 34*46c202b5SQuentin Schulz 35*46c202b5SQuentin Schulz #define AXP20X_PWR_STATUS_BAT_CHARGING BIT(2) 36*46c202b5SQuentin Schulz 37*46c202b5SQuentin Schulz #define AXP20X_PWR_OP_BATT_PRESENT BIT(5) 38*46c202b5SQuentin Schulz #define AXP20X_PWR_OP_BATT_ACTIVATED BIT(3) 39*46c202b5SQuentin Schulz 40*46c202b5SQuentin Schulz #define AXP209_FG_PERCENT GENMASK(6, 0) 41*46c202b5SQuentin Schulz #define AXP22X_FG_VALID BIT(7) 42*46c202b5SQuentin Schulz 43*46c202b5SQuentin Schulz #define AXP20X_CHRG_CTRL1_TGT_VOLT GENMASK(6, 5) 44*46c202b5SQuentin Schulz #define AXP20X_CHRG_CTRL1_TGT_4_1V (0 << 5) 45*46c202b5SQuentin Schulz #define AXP20X_CHRG_CTRL1_TGT_4_15V (1 << 5) 46*46c202b5SQuentin Schulz #define AXP20X_CHRG_CTRL1_TGT_4_2V (2 << 5) 47*46c202b5SQuentin Schulz #define AXP20X_CHRG_CTRL1_TGT_4_36V (3 << 5) 48*46c202b5SQuentin Schulz 49*46c202b5SQuentin Schulz #define AXP22X_CHRG_CTRL1_TGT_4_22V (1 << 5) 50*46c202b5SQuentin Schulz #define AXP22X_CHRG_CTRL1_TGT_4_24V (3 << 5) 51*46c202b5SQuentin Schulz 52*46c202b5SQuentin Schulz #define AXP20X_CHRG_CTRL1_TGT_CURR GENMASK(3, 0) 53*46c202b5SQuentin Schulz 54*46c202b5SQuentin Schulz #define AXP20X_V_OFF_MASK GENMASK(2, 0) 55*46c202b5SQuentin Schulz 56*46c202b5SQuentin Schulz struct axp20x_batt_ps { 57*46c202b5SQuentin Schulz struct regmap *regmap; 58*46c202b5SQuentin Schulz struct power_supply *batt; 59*46c202b5SQuentin Schulz struct device *dev; 60*46c202b5SQuentin Schulz struct iio_channel *batt_chrg_i; 61*46c202b5SQuentin Schulz struct iio_channel *batt_dischrg_i; 62*46c202b5SQuentin Schulz struct iio_channel *batt_v; 63*46c202b5SQuentin Schulz u8 axp_id; 64*46c202b5SQuentin Schulz }; 65*46c202b5SQuentin Schulz 66*46c202b5SQuentin Schulz static int axp20x_battery_get_max_voltage(struct axp20x_batt_ps *axp20x_batt, 67*46c202b5SQuentin Schulz int *val) 68*46c202b5SQuentin Schulz { 69*46c202b5SQuentin Schulz int ret, reg; 70*46c202b5SQuentin Schulz 71*46c202b5SQuentin Schulz ret = regmap_read(axp20x_batt->regmap, AXP20X_CHRG_CTRL1, ®); 72*46c202b5SQuentin Schulz if (ret) 73*46c202b5SQuentin Schulz return ret; 74*46c202b5SQuentin Schulz 75*46c202b5SQuentin Schulz switch (reg & AXP20X_CHRG_CTRL1_TGT_VOLT) { 76*46c202b5SQuentin Schulz case AXP20X_CHRG_CTRL1_TGT_4_1V: 77*46c202b5SQuentin Schulz *val = 4100000; 78*46c202b5SQuentin Schulz break; 79*46c202b5SQuentin Schulz case AXP20X_CHRG_CTRL1_TGT_4_15V: 80*46c202b5SQuentin Schulz *val = 4150000; 81*46c202b5SQuentin Schulz break; 82*46c202b5SQuentin Schulz case AXP20X_CHRG_CTRL1_TGT_4_2V: 83*46c202b5SQuentin Schulz *val = 4200000; 84*46c202b5SQuentin Schulz break; 85*46c202b5SQuentin Schulz case AXP20X_CHRG_CTRL1_TGT_4_36V: 86*46c202b5SQuentin Schulz *val = 4360000; 87*46c202b5SQuentin Schulz break; 88*46c202b5SQuentin Schulz default: 89*46c202b5SQuentin Schulz return -EINVAL; 90*46c202b5SQuentin Schulz } 91*46c202b5SQuentin Schulz 92*46c202b5SQuentin Schulz return 0; 93*46c202b5SQuentin Schulz } 94*46c202b5SQuentin Schulz 95*46c202b5SQuentin Schulz static int axp22x_battery_get_max_voltage(struct axp20x_batt_ps *axp20x_batt, 96*46c202b5SQuentin Schulz int *val) 97*46c202b5SQuentin Schulz { 98*46c202b5SQuentin Schulz int ret, reg; 99*46c202b5SQuentin Schulz 100*46c202b5SQuentin Schulz ret = regmap_read(axp20x_batt->regmap, AXP20X_CHRG_CTRL1, ®); 101*46c202b5SQuentin Schulz if (ret) 102*46c202b5SQuentin Schulz return ret; 103*46c202b5SQuentin Schulz 104*46c202b5SQuentin Schulz switch (reg & AXP20X_CHRG_CTRL1_TGT_VOLT) { 105*46c202b5SQuentin Schulz case AXP20X_CHRG_CTRL1_TGT_4_1V: 106*46c202b5SQuentin Schulz *val = 4100000; 107*46c202b5SQuentin Schulz break; 108*46c202b5SQuentin Schulz case AXP20X_CHRG_CTRL1_TGT_4_2V: 109*46c202b5SQuentin Schulz *val = 4200000; 110*46c202b5SQuentin Schulz break; 111*46c202b5SQuentin Schulz case AXP22X_CHRG_CTRL1_TGT_4_22V: 112*46c202b5SQuentin Schulz *val = 4220000; 113*46c202b5SQuentin Schulz break; 114*46c202b5SQuentin Schulz case AXP22X_CHRG_CTRL1_TGT_4_24V: 115*46c202b5SQuentin Schulz *val = 4240000; 116*46c202b5SQuentin Schulz break; 117*46c202b5SQuentin Schulz default: 118*46c202b5SQuentin Schulz return -EINVAL; 119*46c202b5SQuentin Schulz } 120*46c202b5SQuentin Schulz 121*46c202b5SQuentin Schulz return 0; 122*46c202b5SQuentin Schulz } 123*46c202b5SQuentin Schulz 124*46c202b5SQuentin Schulz static void raw_to_constant_charge_current(struct axp20x_batt_ps *axp, int *val) 125*46c202b5SQuentin Schulz { 126*46c202b5SQuentin Schulz if (axp->axp_id == AXP209_ID) 127*46c202b5SQuentin Schulz *val = *val * 100000 + 300000; 128*46c202b5SQuentin Schulz else 129*46c202b5SQuentin Schulz *val = *val * 150000 + 300000; 130*46c202b5SQuentin Schulz } 131*46c202b5SQuentin Schulz 132*46c202b5SQuentin Schulz static int axp20x_get_constant_charge_current(struct axp20x_batt_ps *axp, 133*46c202b5SQuentin Schulz int *val) 134*46c202b5SQuentin Schulz { 135*46c202b5SQuentin Schulz int ret; 136*46c202b5SQuentin Schulz 137*46c202b5SQuentin Schulz ret = regmap_read(axp->regmap, AXP20X_CHRG_CTRL1, val); 138*46c202b5SQuentin Schulz if (ret) 139*46c202b5SQuentin Schulz return ret; 140*46c202b5SQuentin Schulz 141*46c202b5SQuentin Schulz *val &= AXP20X_CHRG_CTRL1_TGT_CURR; 142*46c202b5SQuentin Schulz 143*46c202b5SQuentin Schulz raw_to_constant_charge_current(axp, val); 144*46c202b5SQuentin Schulz 145*46c202b5SQuentin Schulz return 0; 146*46c202b5SQuentin Schulz } 147*46c202b5SQuentin Schulz 148*46c202b5SQuentin Schulz static int axp20x_battery_get_prop(struct power_supply *psy, 149*46c202b5SQuentin Schulz enum power_supply_property psp, 150*46c202b5SQuentin Schulz union power_supply_propval *val) 151*46c202b5SQuentin Schulz { 152*46c202b5SQuentin Schulz struct axp20x_batt_ps *axp20x_batt = power_supply_get_drvdata(psy); 153*46c202b5SQuentin Schulz struct iio_channel *chan; 154*46c202b5SQuentin Schulz int ret = 0, reg, val1; 155*46c202b5SQuentin Schulz 156*46c202b5SQuentin Schulz switch (psp) { 157*46c202b5SQuentin Schulz case POWER_SUPPLY_PROP_PRESENT: 158*46c202b5SQuentin Schulz case POWER_SUPPLY_PROP_ONLINE: 159*46c202b5SQuentin Schulz ret = regmap_read(axp20x_batt->regmap, AXP20X_PWR_OP_MODE, 160*46c202b5SQuentin Schulz ®); 161*46c202b5SQuentin Schulz if (ret) 162*46c202b5SQuentin Schulz return ret; 163*46c202b5SQuentin Schulz 164*46c202b5SQuentin Schulz val->intval = !!(reg & AXP20X_PWR_OP_BATT_PRESENT); 165*46c202b5SQuentin Schulz break; 166*46c202b5SQuentin Schulz 167*46c202b5SQuentin Schulz case POWER_SUPPLY_PROP_STATUS: 168*46c202b5SQuentin Schulz ret = regmap_read(axp20x_batt->regmap, AXP20X_PWR_INPUT_STATUS, 169*46c202b5SQuentin Schulz ®); 170*46c202b5SQuentin Schulz if (ret) 171*46c202b5SQuentin Schulz return ret; 172*46c202b5SQuentin Schulz 173*46c202b5SQuentin Schulz if (reg & AXP20X_PWR_STATUS_BAT_CHARGING) { 174*46c202b5SQuentin Schulz val->intval = POWER_SUPPLY_STATUS_CHARGING; 175*46c202b5SQuentin Schulz return 0; 176*46c202b5SQuentin Schulz } 177*46c202b5SQuentin Schulz 178*46c202b5SQuentin Schulz ret = iio_read_channel_processed(axp20x_batt->batt_dischrg_i, 179*46c202b5SQuentin Schulz &val1); 180*46c202b5SQuentin Schulz if (ret) 181*46c202b5SQuentin Schulz return ret; 182*46c202b5SQuentin Schulz 183*46c202b5SQuentin Schulz if (val1) { 184*46c202b5SQuentin Schulz val->intval = POWER_SUPPLY_STATUS_DISCHARGING; 185*46c202b5SQuentin Schulz return 0; 186*46c202b5SQuentin Schulz } 187*46c202b5SQuentin Schulz 188*46c202b5SQuentin Schulz ret = regmap_read(axp20x_batt->regmap, AXP20X_FG_RES, &val1); 189*46c202b5SQuentin Schulz if (ret) 190*46c202b5SQuentin Schulz return ret; 191*46c202b5SQuentin Schulz 192*46c202b5SQuentin Schulz /* 193*46c202b5SQuentin Schulz * Fuel Gauge data takes 7 bits but the stored value seems to be 194*46c202b5SQuentin Schulz * directly the raw percentage without any scaling to 7 bits. 195*46c202b5SQuentin Schulz */ 196*46c202b5SQuentin Schulz if ((val1 & AXP209_FG_PERCENT) == 100) 197*46c202b5SQuentin Schulz val->intval = POWER_SUPPLY_STATUS_FULL; 198*46c202b5SQuentin Schulz else 199*46c202b5SQuentin Schulz val->intval = POWER_SUPPLY_STATUS_NOT_CHARGING; 200*46c202b5SQuentin Schulz break; 201*46c202b5SQuentin Schulz 202*46c202b5SQuentin Schulz case POWER_SUPPLY_PROP_HEALTH: 203*46c202b5SQuentin Schulz ret = regmap_read(axp20x_batt->regmap, AXP20X_PWR_OP_MODE, 204*46c202b5SQuentin Schulz &val1); 205*46c202b5SQuentin Schulz if (ret) 206*46c202b5SQuentin Schulz return ret; 207*46c202b5SQuentin Schulz 208*46c202b5SQuentin Schulz if (val1 & AXP20X_PWR_OP_BATT_ACTIVATED) { 209*46c202b5SQuentin Schulz val->intval = POWER_SUPPLY_HEALTH_DEAD; 210*46c202b5SQuentin Schulz return 0; 211*46c202b5SQuentin Schulz } 212*46c202b5SQuentin Schulz 213*46c202b5SQuentin Schulz val->intval = POWER_SUPPLY_HEALTH_GOOD; 214*46c202b5SQuentin Schulz break; 215*46c202b5SQuentin Schulz 216*46c202b5SQuentin Schulz case POWER_SUPPLY_PROP_CONSTANT_CHARGE_CURRENT: 217*46c202b5SQuentin Schulz ret = axp20x_get_constant_charge_current(axp20x_batt, 218*46c202b5SQuentin Schulz &val->intval); 219*46c202b5SQuentin Schulz if (ret) 220*46c202b5SQuentin Schulz return ret; 221*46c202b5SQuentin Schulz break; 222*46c202b5SQuentin Schulz 223*46c202b5SQuentin Schulz case POWER_SUPPLY_PROP_CONSTANT_CHARGE_CURRENT_MAX: 224*46c202b5SQuentin Schulz val->intval = AXP20X_CHRG_CTRL1_TGT_CURR; 225*46c202b5SQuentin Schulz raw_to_constant_charge_current(axp20x_batt, &val->intval); 226*46c202b5SQuentin Schulz 227*46c202b5SQuentin Schulz break; 228*46c202b5SQuentin Schulz 229*46c202b5SQuentin Schulz case POWER_SUPPLY_PROP_CURRENT_NOW: 230*46c202b5SQuentin Schulz ret = regmap_read(axp20x_batt->regmap, AXP20X_PWR_INPUT_STATUS, 231*46c202b5SQuentin Schulz ®); 232*46c202b5SQuentin Schulz if (ret) 233*46c202b5SQuentin Schulz return ret; 234*46c202b5SQuentin Schulz 235*46c202b5SQuentin Schulz if (reg & AXP20X_PWR_STATUS_BAT_CHARGING) 236*46c202b5SQuentin Schulz chan = axp20x_batt->batt_chrg_i; 237*46c202b5SQuentin Schulz else 238*46c202b5SQuentin Schulz chan = axp20x_batt->batt_dischrg_i; 239*46c202b5SQuentin Schulz 240*46c202b5SQuentin Schulz ret = iio_read_channel_processed(chan, &val->intval); 241*46c202b5SQuentin Schulz if (ret) 242*46c202b5SQuentin Schulz return ret; 243*46c202b5SQuentin Schulz 244*46c202b5SQuentin Schulz /* IIO framework gives mA but Power Supply framework gives uA */ 245*46c202b5SQuentin Schulz val->intval *= 1000; 246*46c202b5SQuentin Schulz break; 247*46c202b5SQuentin Schulz 248*46c202b5SQuentin Schulz case POWER_SUPPLY_PROP_CAPACITY: 249*46c202b5SQuentin Schulz /* When no battery is present, return capacity is 100% */ 250*46c202b5SQuentin Schulz ret = regmap_read(axp20x_batt->regmap, AXP20X_PWR_OP_MODE, 251*46c202b5SQuentin Schulz ®); 252*46c202b5SQuentin Schulz if (ret) 253*46c202b5SQuentin Schulz return ret; 254*46c202b5SQuentin Schulz 255*46c202b5SQuentin Schulz if (!(reg & AXP20X_PWR_OP_BATT_PRESENT)) { 256*46c202b5SQuentin Schulz val->intval = 100; 257*46c202b5SQuentin Schulz return 0; 258*46c202b5SQuentin Schulz } 259*46c202b5SQuentin Schulz 260*46c202b5SQuentin Schulz ret = regmap_read(axp20x_batt->regmap, AXP20X_FG_RES, ®); 261*46c202b5SQuentin Schulz if (ret) 262*46c202b5SQuentin Schulz return ret; 263*46c202b5SQuentin Schulz 264*46c202b5SQuentin Schulz if (axp20x_batt->axp_id == AXP221_ID && 265*46c202b5SQuentin Schulz !(reg & AXP22X_FG_VALID)) 266*46c202b5SQuentin Schulz return -EINVAL; 267*46c202b5SQuentin Schulz 268*46c202b5SQuentin Schulz /* 269*46c202b5SQuentin Schulz * Fuel Gauge data takes 7 bits but the stored value seems to be 270*46c202b5SQuentin Schulz * directly the raw percentage without any scaling to 7 bits. 271*46c202b5SQuentin Schulz */ 272*46c202b5SQuentin Schulz val->intval = reg & AXP209_FG_PERCENT; 273*46c202b5SQuentin Schulz break; 274*46c202b5SQuentin Schulz 275*46c202b5SQuentin Schulz case POWER_SUPPLY_PROP_VOLTAGE_MAX_DESIGN: 276*46c202b5SQuentin Schulz if (axp20x_batt->axp_id == AXP209_ID) 277*46c202b5SQuentin Schulz return axp20x_battery_get_max_voltage(axp20x_batt, 278*46c202b5SQuentin Schulz &val->intval); 279*46c202b5SQuentin Schulz return axp22x_battery_get_max_voltage(axp20x_batt, 280*46c202b5SQuentin Schulz &val->intval); 281*46c202b5SQuentin Schulz 282*46c202b5SQuentin Schulz case POWER_SUPPLY_PROP_VOLTAGE_MIN_DESIGN: 283*46c202b5SQuentin Schulz ret = regmap_read(axp20x_batt->regmap, AXP20X_V_OFF, ®); 284*46c202b5SQuentin Schulz if (ret) 285*46c202b5SQuentin Schulz return ret; 286*46c202b5SQuentin Schulz 287*46c202b5SQuentin Schulz val->intval = 2600000 + 100000 * (reg & AXP20X_V_OFF_MASK); 288*46c202b5SQuentin Schulz break; 289*46c202b5SQuentin Schulz 290*46c202b5SQuentin Schulz case POWER_SUPPLY_PROP_VOLTAGE_NOW: 291*46c202b5SQuentin Schulz ret = iio_read_channel_processed(axp20x_batt->batt_v, 292*46c202b5SQuentin Schulz &val->intval); 293*46c202b5SQuentin Schulz if (ret) 294*46c202b5SQuentin Schulz return ret; 295*46c202b5SQuentin Schulz 296*46c202b5SQuentin Schulz /* IIO framework gives mV but Power Supply framework gives uV */ 297*46c202b5SQuentin Schulz val->intval *= 1000; 298*46c202b5SQuentin Schulz break; 299*46c202b5SQuentin Schulz 300*46c202b5SQuentin Schulz default: 301*46c202b5SQuentin Schulz return -EINVAL; 302*46c202b5SQuentin Schulz } 303*46c202b5SQuentin Schulz 304*46c202b5SQuentin Schulz return 0; 305*46c202b5SQuentin Schulz } 306*46c202b5SQuentin Schulz 307*46c202b5SQuentin Schulz static int axp20x_battery_set_max_voltage(struct axp20x_batt_ps *axp20x_batt, 308*46c202b5SQuentin Schulz int val) 309*46c202b5SQuentin Schulz { 310*46c202b5SQuentin Schulz switch (val) { 311*46c202b5SQuentin Schulz case 4100000: 312*46c202b5SQuentin Schulz val = AXP20X_CHRG_CTRL1_TGT_4_1V; 313*46c202b5SQuentin Schulz break; 314*46c202b5SQuentin Schulz 315*46c202b5SQuentin Schulz case 4150000: 316*46c202b5SQuentin Schulz if (axp20x_batt->axp_id == AXP221_ID) 317*46c202b5SQuentin Schulz return -EINVAL; 318*46c202b5SQuentin Schulz 319*46c202b5SQuentin Schulz val = AXP20X_CHRG_CTRL1_TGT_4_15V; 320*46c202b5SQuentin Schulz break; 321*46c202b5SQuentin Schulz 322*46c202b5SQuentin Schulz case 4200000: 323*46c202b5SQuentin Schulz val = AXP20X_CHRG_CTRL1_TGT_4_2V; 324*46c202b5SQuentin Schulz break; 325*46c202b5SQuentin Schulz 326*46c202b5SQuentin Schulz default: 327*46c202b5SQuentin Schulz /* 328*46c202b5SQuentin Schulz * AXP20x max voltage can be set to 4.36V and AXP22X max voltage 329*46c202b5SQuentin Schulz * can be set to 4.22V and 4.24V, but these voltages are too 330*46c202b5SQuentin Schulz * high for Lithium based batteries (AXP PMICs are supposed to 331*46c202b5SQuentin Schulz * be used with these kinds of battery). 332*46c202b5SQuentin Schulz */ 333*46c202b5SQuentin Schulz return -EINVAL; 334*46c202b5SQuentin Schulz } 335*46c202b5SQuentin Schulz 336*46c202b5SQuentin Schulz return regmap_update_bits(axp20x_batt->regmap, AXP20X_CHRG_CTRL1, 337*46c202b5SQuentin Schulz AXP20X_CHRG_CTRL1_TGT_VOLT, val); 338*46c202b5SQuentin Schulz } 339*46c202b5SQuentin Schulz 340*46c202b5SQuentin Schulz static int axp20x_set_constant_charge_current(struct axp20x_batt_ps *axp_batt, 341*46c202b5SQuentin Schulz int charge_current) 342*46c202b5SQuentin Schulz { 343*46c202b5SQuentin Schulz if (axp_batt->axp_id == AXP209_ID) 344*46c202b5SQuentin Schulz charge_current = (charge_current - 300000) / 100000; 345*46c202b5SQuentin Schulz else 346*46c202b5SQuentin Schulz charge_current = (charge_current - 300000) / 150000; 347*46c202b5SQuentin Schulz 348*46c202b5SQuentin Schulz if (charge_current > AXP20X_CHRG_CTRL1_TGT_CURR || charge_current < 0) 349*46c202b5SQuentin Schulz return -EINVAL; 350*46c202b5SQuentin Schulz 351*46c202b5SQuentin Schulz return regmap_update_bits(axp_batt->regmap, AXP20X_CHRG_CTRL1, 352*46c202b5SQuentin Schulz AXP20X_CHRG_CTRL1_TGT_CURR, charge_current); 353*46c202b5SQuentin Schulz } 354*46c202b5SQuentin Schulz 355*46c202b5SQuentin Schulz static int axp20x_set_voltage_min_design(struct axp20x_batt_ps *axp_batt, 356*46c202b5SQuentin Schulz int min_voltage) 357*46c202b5SQuentin Schulz { 358*46c202b5SQuentin Schulz int val1 = (min_voltage - 2600000) / 100000; 359*46c202b5SQuentin Schulz 360*46c202b5SQuentin Schulz if (val1 < 0 || val1 > AXP20X_V_OFF_MASK) 361*46c202b5SQuentin Schulz return -EINVAL; 362*46c202b5SQuentin Schulz 363*46c202b5SQuentin Schulz return regmap_update_bits(axp_batt->regmap, AXP20X_V_OFF, 364*46c202b5SQuentin Schulz AXP20X_V_OFF_MASK, val1); 365*46c202b5SQuentin Schulz } 366*46c202b5SQuentin Schulz 367*46c202b5SQuentin Schulz static int axp20x_battery_set_prop(struct power_supply *psy, 368*46c202b5SQuentin Schulz enum power_supply_property psp, 369*46c202b5SQuentin Schulz const union power_supply_propval *val) 370*46c202b5SQuentin Schulz { 371*46c202b5SQuentin Schulz struct axp20x_batt_ps *axp20x_batt = power_supply_get_drvdata(psy); 372*46c202b5SQuentin Schulz 373*46c202b5SQuentin Schulz switch (psp) { 374*46c202b5SQuentin Schulz case POWER_SUPPLY_PROP_VOLTAGE_MIN_DESIGN: 375*46c202b5SQuentin Schulz return axp20x_set_voltage_min_design(axp20x_batt, val->intval); 376*46c202b5SQuentin Schulz 377*46c202b5SQuentin Schulz case POWER_SUPPLY_PROP_VOLTAGE_MAX_DESIGN: 378*46c202b5SQuentin Schulz return axp20x_battery_set_max_voltage(axp20x_batt, val->intval); 379*46c202b5SQuentin Schulz 380*46c202b5SQuentin Schulz case POWER_SUPPLY_PROP_CONSTANT_CHARGE_CURRENT: 381*46c202b5SQuentin Schulz return axp20x_set_constant_charge_current(axp20x_batt, 382*46c202b5SQuentin Schulz val->intval); 383*46c202b5SQuentin Schulz 384*46c202b5SQuentin Schulz default: 385*46c202b5SQuentin Schulz return -EINVAL; 386*46c202b5SQuentin Schulz } 387*46c202b5SQuentin Schulz } 388*46c202b5SQuentin Schulz 389*46c202b5SQuentin Schulz static enum power_supply_property axp20x_battery_props[] = { 390*46c202b5SQuentin Schulz POWER_SUPPLY_PROP_PRESENT, 391*46c202b5SQuentin Schulz POWER_SUPPLY_PROP_ONLINE, 392*46c202b5SQuentin Schulz POWER_SUPPLY_PROP_STATUS, 393*46c202b5SQuentin Schulz POWER_SUPPLY_PROP_VOLTAGE_NOW, 394*46c202b5SQuentin Schulz POWER_SUPPLY_PROP_CURRENT_NOW, 395*46c202b5SQuentin Schulz POWER_SUPPLY_PROP_CONSTANT_CHARGE_CURRENT, 396*46c202b5SQuentin Schulz POWER_SUPPLY_PROP_CONSTANT_CHARGE_CURRENT_MAX, 397*46c202b5SQuentin Schulz POWER_SUPPLY_PROP_HEALTH, 398*46c202b5SQuentin Schulz POWER_SUPPLY_PROP_VOLTAGE_MAX_DESIGN, 399*46c202b5SQuentin Schulz POWER_SUPPLY_PROP_VOLTAGE_MIN_DESIGN, 400*46c202b5SQuentin Schulz POWER_SUPPLY_PROP_CAPACITY, 401*46c202b5SQuentin Schulz }; 402*46c202b5SQuentin Schulz 403*46c202b5SQuentin Schulz static int axp20x_battery_prop_writeable(struct power_supply *psy, 404*46c202b5SQuentin Schulz enum power_supply_property psp) 405*46c202b5SQuentin Schulz { 406*46c202b5SQuentin Schulz return psp == POWER_SUPPLY_PROP_VOLTAGE_MIN_DESIGN || 407*46c202b5SQuentin Schulz psp == POWER_SUPPLY_PROP_VOLTAGE_MAX_DESIGN || 408*46c202b5SQuentin Schulz psp == POWER_SUPPLY_PROP_CONSTANT_CHARGE_CURRENT; 409*46c202b5SQuentin Schulz } 410*46c202b5SQuentin Schulz 411*46c202b5SQuentin Schulz static const struct power_supply_desc axp20x_batt_ps_desc = { 412*46c202b5SQuentin Schulz .name = "axp20x-battery", 413*46c202b5SQuentin Schulz .type = POWER_SUPPLY_TYPE_BATTERY, 414*46c202b5SQuentin Schulz .properties = axp20x_battery_props, 415*46c202b5SQuentin Schulz .num_properties = ARRAY_SIZE(axp20x_battery_props), 416*46c202b5SQuentin Schulz .property_is_writeable = axp20x_battery_prop_writeable, 417*46c202b5SQuentin Schulz .get_property = axp20x_battery_get_prop, 418*46c202b5SQuentin Schulz .set_property = axp20x_battery_set_prop, 419*46c202b5SQuentin Schulz }; 420*46c202b5SQuentin Schulz 421*46c202b5SQuentin Schulz static const struct of_device_id axp20x_battery_ps_id[] = { 422*46c202b5SQuentin Schulz { 423*46c202b5SQuentin Schulz .compatible = "x-powers,axp209-battery-power-supply", 424*46c202b5SQuentin Schulz .data = (void *)AXP209_ID, 425*46c202b5SQuentin Schulz }, { 426*46c202b5SQuentin Schulz .compatible = "x-powers,axp221-battery-power-supply", 427*46c202b5SQuentin Schulz .data = (void *)AXP221_ID, 428*46c202b5SQuentin Schulz }, { /* sentinel */ }, 429*46c202b5SQuentin Schulz }; 430*46c202b5SQuentin Schulz MODULE_DEVICE_TABLE(of, axp20x_battery_ps_id); 431*46c202b5SQuentin Schulz 432*46c202b5SQuentin Schulz static int axp20x_power_probe(struct platform_device *pdev) 433*46c202b5SQuentin Schulz { 434*46c202b5SQuentin Schulz struct axp20x_batt_ps *axp20x_batt; 435*46c202b5SQuentin Schulz struct power_supply_config psy_cfg = {}; 436*46c202b5SQuentin Schulz 437*46c202b5SQuentin Schulz if (!of_device_is_available(pdev->dev.of_node)) 438*46c202b5SQuentin Schulz return -ENODEV; 439*46c202b5SQuentin Schulz 440*46c202b5SQuentin Schulz axp20x_batt = devm_kzalloc(&pdev->dev, sizeof(*axp20x_batt), 441*46c202b5SQuentin Schulz GFP_KERNEL); 442*46c202b5SQuentin Schulz if (!axp20x_batt) 443*46c202b5SQuentin Schulz return -ENOMEM; 444*46c202b5SQuentin Schulz 445*46c202b5SQuentin Schulz axp20x_batt->dev = &pdev->dev; 446*46c202b5SQuentin Schulz 447*46c202b5SQuentin Schulz axp20x_batt->batt_v = devm_iio_channel_get(&pdev->dev, "batt_v"); 448*46c202b5SQuentin Schulz if (IS_ERR(axp20x_batt->batt_v)) { 449*46c202b5SQuentin Schulz if (PTR_ERR(axp20x_batt->batt_v) == -ENODEV) 450*46c202b5SQuentin Schulz return -EPROBE_DEFER; 451*46c202b5SQuentin Schulz return PTR_ERR(axp20x_batt->batt_v); 452*46c202b5SQuentin Schulz } 453*46c202b5SQuentin Schulz 454*46c202b5SQuentin Schulz axp20x_batt->batt_chrg_i = devm_iio_channel_get(&pdev->dev, 455*46c202b5SQuentin Schulz "batt_chrg_i"); 456*46c202b5SQuentin Schulz if (IS_ERR(axp20x_batt->batt_chrg_i)) { 457*46c202b5SQuentin Schulz if (PTR_ERR(axp20x_batt->batt_chrg_i) == -ENODEV) 458*46c202b5SQuentin Schulz return -EPROBE_DEFER; 459*46c202b5SQuentin Schulz return PTR_ERR(axp20x_batt->batt_chrg_i); 460*46c202b5SQuentin Schulz } 461*46c202b5SQuentin Schulz 462*46c202b5SQuentin Schulz axp20x_batt->batt_dischrg_i = devm_iio_channel_get(&pdev->dev, 463*46c202b5SQuentin Schulz "batt_dischrg_i"); 464*46c202b5SQuentin Schulz if (IS_ERR(axp20x_batt->batt_dischrg_i)) { 465*46c202b5SQuentin Schulz if (PTR_ERR(axp20x_batt->batt_dischrg_i) == -ENODEV) 466*46c202b5SQuentin Schulz return -EPROBE_DEFER; 467*46c202b5SQuentin Schulz return PTR_ERR(axp20x_batt->batt_dischrg_i); 468*46c202b5SQuentin Schulz } 469*46c202b5SQuentin Schulz 470*46c202b5SQuentin Schulz axp20x_batt->regmap = dev_get_regmap(pdev->dev.parent, NULL); 471*46c202b5SQuentin Schulz platform_set_drvdata(pdev, axp20x_batt); 472*46c202b5SQuentin Schulz 473*46c202b5SQuentin Schulz psy_cfg.drv_data = axp20x_batt; 474*46c202b5SQuentin Schulz psy_cfg.of_node = pdev->dev.of_node; 475*46c202b5SQuentin Schulz 476*46c202b5SQuentin Schulz axp20x_batt->axp_id = (uintptr_t)of_device_get_match_data(&pdev->dev); 477*46c202b5SQuentin Schulz 478*46c202b5SQuentin Schulz axp20x_batt->batt = devm_power_supply_register(&pdev->dev, 479*46c202b5SQuentin Schulz &axp20x_batt_ps_desc, 480*46c202b5SQuentin Schulz &psy_cfg); 481*46c202b5SQuentin Schulz if (IS_ERR(axp20x_batt->batt)) { 482*46c202b5SQuentin Schulz dev_err(&pdev->dev, "failed to register power supply: %ld\n", 483*46c202b5SQuentin Schulz PTR_ERR(axp20x_batt->batt)); 484*46c202b5SQuentin Schulz return PTR_ERR(axp20x_batt->batt); 485*46c202b5SQuentin Schulz } 486*46c202b5SQuentin Schulz 487*46c202b5SQuentin Schulz return 0; 488*46c202b5SQuentin Schulz } 489*46c202b5SQuentin Schulz 490*46c202b5SQuentin Schulz static struct platform_driver axp20x_batt_driver = { 491*46c202b5SQuentin Schulz .probe = axp20x_power_probe, 492*46c202b5SQuentin Schulz .driver = { 493*46c202b5SQuentin Schulz .name = "axp20x-battery-power-supply", 494*46c202b5SQuentin Schulz .of_match_table = axp20x_battery_ps_id, 495*46c202b5SQuentin Schulz }, 496*46c202b5SQuentin Schulz }; 497*46c202b5SQuentin Schulz 498*46c202b5SQuentin Schulz module_platform_driver(axp20x_batt_driver); 499*46c202b5SQuentin Schulz 500*46c202b5SQuentin Schulz MODULE_DESCRIPTION("Battery power supply driver for AXP20X and AXP22X PMICs"); 501*46c202b5SQuentin Schulz MODULE_AUTHOR("Quentin Schulz <quentin.schulz@free-electrons.com>"); 502*46c202b5SQuentin Schulz MODULE_LICENSE("GPL"); 503