162306a36Sopenharmony_ci// SPDX-License-Identifier: GPL-2.0-or-later 262306a36Sopenharmony_ci/* 362306a36Sopenharmony_ci * TI BQ24257 charger driver 462306a36Sopenharmony_ci * 562306a36Sopenharmony_ci * Copyright (C) 2015 Intel Corporation 662306a36Sopenharmony_ci * 762306a36Sopenharmony_ci * Datasheets: 862306a36Sopenharmony_ci * https://www.ti.com/product/bq24250 962306a36Sopenharmony_ci * https://www.ti.com/product/bq24251 1062306a36Sopenharmony_ci * https://www.ti.com/product/bq24257 1162306a36Sopenharmony_ci */ 1262306a36Sopenharmony_ci 1362306a36Sopenharmony_ci#include <linux/module.h> 1462306a36Sopenharmony_ci#include <linux/i2c.h> 1562306a36Sopenharmony_ci#include <linux/power_supply.h> 1662306a36Sopenharmony_ci#include <linux/regmap.h> 1762306a36Sopenharmony_ci#include <linux/types.h> 1862306a36Sopenharmony_ci#include <linux/gpio/consumer.h> 1962306a36Sopenharmony_ci#include <linux/interrupt.h> 2062306a36Sopenharmony_ci#include <linux/delay.h> 2162306a36Sopenharmony_ci 2262306a36Sopenharmony_ci#include <linux/acpi.h> 2362306a36Sopenharmony_ci#include <linux/of.h> 2462306a36Sopenharmony_ci 2562306a36Sopenharmony_ci#define BQ24257_REG_1 0x00 2662306a36Sopenharmony_ci#define BQ24257_REG_2 0x01 2762306a36Sopenharmony_ci#define BQ24257_REG_3 0x02 2862306a36Sopenharmony_ci#define BQ24257_REG_4 0x03 2962306a36Sopenharmony_ci#define BQ24257_REG_5 0x04 3062306a36Sopenharmony_ci#define BQ24257_REG_6 0x05 3162306a36Sopenharmony_ci#define BQ24257_REG_7 0x06 3262306a36Sopenharmony_ci 3362306a36Sopenharmony_ci#define BQ24257_MANUFACTURER "Texas Instruments" 3462306a36Sopenharmony_ci#define BQ24257_PG_GPIO "pg" 3562306a36Sopenharmony_ci 3662306a36Sopenharmony_ci#define BQ24257_ILIM_SET_DELAY 1000 /* msec */ 3762306a36Sopenharmony_ci 3862306a36Sopenharmony_ci/* 3962306a36Sopenharmony_ci * When adding support for new devices make sure that enum bq2425x_chip and 4062306a36Sopenharmony_ci * bq2425x_chip_name[] always stay in sync! 4162306a36Sopenharmony_ci */ 4262306a36Sopenharmony_cienum bq2425x_chip { 4362306a36Sopenharmony_ci BQ24250, 4462306a36Sopenharmony_ci BQ24251, 4562306a36Sopenharmony_ci BQ24257, 4662306a36Sopenharmony_ci}; 4762306a36Sopenharmony_ci 4862306a36Sopenharmony_cistatic const char *const bq2425x_chip_name[] = { 4962306a36Sopenharmony_ci "bq24250", 5062306a36Sopenharmony_ci "bq24251", 5162306a36Sopenharmony_ci "bq24257", 5262306a36Sopenharmony_ci}; 5362306a36Sopenharmony_ci 5462306a36Sopenharmony_cienum bq24257_fields { 5562306a36Sopenharmony_ci F_WD_FAULT, F_WD_EN, F_STAT, F_FAULT, /* REG 1 */ 5662306a36Sopenharmony_ci F_RESET, F_IILIMIT, F_EN_STAT, F_EN_TERM, F_CE, F_HZ_MODE, /* REG 2 */ 5762306a36Sopenharmony_ci F_VBAT, F_USB_DET, /* REG 3 */ 5862306a36Sopenharmony_ci F_ICHG, F_ITERM, /* REG 4 */ 5962306a36Sopenharmony_ci F_LOOP_STATUS, F_LOW_CHG, F_DPDM_EN, F_CE_STATUS, F_VINDPM, /* REG 5 */ 6062306a36Sopenharmony_ci F_X2_TMR_EN, F_TMR, F_SYSOFF, F_TS_EN, F_TS_STAT, /* REG 6 */ 6162306a36Sopenharmony_ci F_VOVP, F_CLR_VDP, F_FORCE_BATDET, F_FORCE_PTM, /* REG 7 */ 6262306a36Sopenharmony_ci 6362306a36Sopenharmony_ci F_MAX_FIELDS 6462306a36Sopenharmony_ci}; 6562306a36Sopenharmony_ci 6662306a36Sopenharmony_ci/* initial field values, converted from uV/uA */ 6762306a36Sopenharmony_cistruct bq24257_init_data { 6862306a36Sopenharmony_ci u8 ichg; /* charge current */ 6962306a36Sopenharmony_ci u8 vbat; /* regulation voltage */ 7062306a36Sopenharmony_ci u8 iterm; /* termination current */ 7162306a36Sopenharmony_ci u8 iilimit; /* input current limit */ 7262306a36Sopenharmony_ci u8 vovp; /* over voltage protection voltage */ 7362306a36Sopenharmony_ci u8 vindpm; /* VDMP input threshold voltage */ 7462306a36Sopenharmony_ci}; 7562306a36Sopenharmony_ci 7662306a36Sopenharmony_cistruct bq24257_state { 7762306a36Sopenharmony_ci u8 status; 7862306a36Sopenharmony_ci u8 fault; 7962306a36Sopenharmony_ci bool power_good; 8062306a36Sopenharmony_ci}; 8162306a36Sopenharmony_ci 8262306a36Sopenharmony_cistruct bq24257_device { 8362306a36Sopenharmony_ci struct i2c_client *client; 8462306a36Sopenharmony_ci struct device *dev; 8562306a36Sopenharmony_ci struct power_supply *charger; 8662306a36Sopenharmony_ci 8762306a36Sopenharmony_ci enum bq2425x_chip chip; 8862306a36Sopenharmony_ci 8962306a36Sopenharmony_ci struct regmap *rmap; 9062306a36Sopenharmony_ci struct regmap_field *rmap_fields[F_MAX_FIELDS]; 9162306a36Sopenharmony_ci 9262306a36Sopenharmony_ci struct gpio_desc *pg; 9362306a36Sopenharmony_ci 9462306a36Sopenharmony_ci struct delayed_work iilimit_setup_work; 9562306a36Sopenharmony_ci 9662306a36Sopenharmony_ci struct bq24257_init_data init_data; 9762306a36Sopenharmony_ci struct bq24257_state state; 9862306a36Sopenharmony_ci 9962306a36Sopenharmony_ci struct mutex lock; /* protect state data */ 10062306a36Sopenharmony_ci 10162306a36Sopenharmony_ci bool iilimit_autoset_enable; 10262306a36Sopenharmony_ci}; 10362306a36Sopenharmony_ci 10462306a36Sopenharmony_cistatic bool bq24257_is_volatile_reg(struct device *dev, unsigned int reg) 10562306a36Sopenharmony_ci{ 10662306a36Sopenharmony_ci switch (reg) { 10762306a36Sopenharmony_ci case BQ24257_REG_2: 10862306a36Sopenharmony_ci case BQ24257_REG_4: 10962306a36Sopenharmony_ci return false; 11062306a36Sopenharmony_ci 11162306a36Sopenharmony_ci default: 11262306a36Sopenharmony_ci return true; 11362306a36Sopenharmony_ci } 11462306a36Sopenharmony_ci} 11562306a36Sopenharmony_ci 11662306a36Sopenharmony_cistatic const struct regmap_config bq24257_regmap_config = { 11762306a36Sopenharmony_ci .reg_bits = 8, 11862306a36Sopenharmony_ci .val_bits = 8, 11962306a36Sopenharmony_ci 12062306a36Sopenharmony_ci .max_register = BQ24257_REG_7, 12162306a36Sopenharmony_ci .cache_type = REGCACHE_RBTREE, 12262306a36Sopenharmony_ci 12362306a36Sopenharmony_ci .volatile_reg = bq24257_is_volatile_reg, 12462306a36Sopenharmony_ci}; 12562306a36Sopenharmony_ci 12662306a36Sopenharmony_cistatic const struct reg_field bq24257_reg_fields[] = { 12762306a36Sopenharmony_ci /* REG 1 */ 12862306a36Sopenharmony_ci [F_WD_FAULT] = REG_FIELD(BQ24257_REG_1, 7, 7), 12962306a36Sopenharmony_ci [F_WD_EN] = REG_FIELD(BQ24257_REG_1, 6, 6), 13062306a36Sopenharmony_ci [F_STAT] = REG_FIELD(BQ24257_REG_1, 4, 5), 13162306a36Sopenharmony_ci [F_FAULT] = REG_FIELD(BQ24257_REG_1, 0, 3), 13262306a36Sopenharmony_ci /* REG 2 */ 13362306a36Sopenharmony_ci [F_RESET] = REG_FIELD(BQ24257_REG_2, 7, 7), 13462306a36Sopenharmony_ci [F_IILIMIT] = REG_FIELD(BQ24257_REG_2, 4, 6), 13562306a36Sopenharmony_ci [F_EN_STAT] = REG_FIELD(BQ24257_REG_2, 3, 3), 13662306a36Sopenharmony_ci [F_EN_TERM] = REG_FIELD(BQ24257_REG_2, 2, 2), 13762306a36Sopenharmony_ci [F_CE] = REG_FIELD(BQ24257_REG_2, 1, 1), 13862306a36Sopenharmony_ci [F_HZ_MODE] = REG_FIELD(BQ24257_REG_2, 0, 0), 13962306a36Sopenharmony_ci /* REG 3 */ 14062306a36Sopenharmony_ci [F_VBAT] = REG_FIELD(BQ24257_REG_3, 2, 7), 14162306a36Sopenharmony_ci [F_USB_DET] = REG_FIELD(BQ24257_REG_3, 0, 1), 14262306a36Sopenharmony_ci /* REG 4 */ 14362306a36Sopenharmony_ci [F_ICHG] = REG_FIELD(BQ24257_REG_4, 3, 7), 14462306a36Sopenharmony_ci [F_ITERM] = REG_FIELD(BQ24257_REG_4, 0, 2), 14562306a36Sopenharmony_ci /* REG 5 */ 14662306a36Sopenharmony_ci [F_LOOP_STATUS] = REG_FIELD(BQ24257_REG_5, 6, 7), 14762306a36Sopenharmony_ci [F_LOW_CHG] = REG_FIELD(BQ24257_REG_5, 5, 5), 14862306a36Sopenharmony_ci [F_DPDM_EN] = REG_FIELD(BQ24257_REG_5, 4, 4), 14962306a36Sopenharmony_ci [F_CE_STATUS] = REG_FIELD(BQ24257_REG_5, 3, 3), 15062306a36Sopenharmony_ci [F_VINDPM] = REG_FIELD(BQ24257_REG_5, 0, 2), 15162306a36Sopenharmony_ci /* REG 6 */ 15262306a36Sopenharmony_ci [F_X2_TMR_EN] = REG_FIELD(BQ24257_REG_6, 7, 7), 15362306a36Sopenharmony_ci [F_TMR] = REG_FIELD(BQ24257_REG_6, 5, 6), 15462306a36Sopenharmony_ci [F_SYSOFF] = REG_FIELD(BQ24257_REG_6, 4, 4), 15562306a36Sopenharmony_ci [F_TS_EN] = REG_FIELD(BQ24257_REG_6, 3, 3), 15662306a36Sopenharmony_ci [F_TS_STAT] = REG_FIELD(BQ24257_REG_6, 0, 2), 15762306a36Sopenharmony_ci /* REG 7 */ 15862306a36Sopenharmony_ci [F_VOVP] = REG_FIELD(BQ24257_REG_7, 5, 7), 15962306a36Sopenharmony_ci [F_CLR_VDP] = REG_FIELD(BQ24257_REG_7, 4, 4), 16062306a36Sopenharmony_ci [F_FORCE_BATDET] = REG_FIELD(BQ24257_REG_7, 3, 3), 16162306a36Sopenharmony_ci [F_FORCE_PTM] = REG_FIELD(BQ24257_REG_7, 2, 2) 16262306a36Sopenharmony_ci}; 16362306a36Sopenharmony_ci 16462306a36Sopenharmony_cistatic const u32 bq24257_vbat_map[] = { 16562306a36Sopenharmony_ci 3500000, 3520000, 3540000, 3560000, 3580000, 3600000, 3620000, 3640000, 16662306a36Sopenharmony_ci 3660000, 3680000, 3700000, 3720000, 3740000, 3760000, 3780000, 3800000, 16762306a36Sopenharmony_ci 3820000, 3840000, 3860000, 3880000, 3900000, 3920000, 3940000, 3960000, 16862306a36Sopenharmony_ci 3980000, 4000000, 4020000, 4040000, 4060000, 4080000, 4100000, 4120000, 16962306a36Sopenharmony_ci 4140000, 4160000, 4180000, 4200000, 4220000, 4240000, 4260000, 4280000, 17062306a36Sopenharmony_ci 4300000, 4320000, 4340000, 4360000, 4380000, 4400000, 4420000, 4440000 17162306a36Sopenharmony_ci}; 17262306a36Sopenharmony_ci 17362306a36Sopenharmony_ci#define BQ24257_VBAT_MAP_SIZE ARRAY_SIZE(bq24257_vbat_map) 17462306a36Sopenharmony_ci 17562306a36Sopenharmony_cistatic const u32 bq24257_ichg_map[] = { 17662306a36Sopenharmony_ci 500000, 550000, 600000, 650000, 700000, 750000, 800000, 850000, 900000, 17762306a36Sopenharmony_ci 950000, 1000000, 1050000, 1100000, 1150000, 1200000, 1250000, 1300000, 17862306a36Sopenharmony_ci 1350000, 1400000, 1450000, 1500000, 1550000, 1600000, 1650000, 1700000, 17962306a36Sopenharmony_ci 1750000, 1800000, 1850000, 1900000, 1950000, 2000000 18062306a36Sopenharmony_ci}; 18162306a36Sopenharmony_ci 18262306a36Sopenharmony_ci#define BQ24257_ICHG_MAP_SIZE ARRAY_SIZE(bq24257_ichg_map) 18362306a36Sopenharmony_ci 18462306a36Sopenharmony_cistatic const u32 bq24257_iterm_map[] = { 18562306a36Sopenharmony_ci 50000, 75000, 100000, 125000, 150000, 175000, 200000, 225000 18662306a36Sopenharmony_ci}; 18762306a36Sopenharmony_ci 18862306a36Sopenharmony_ci#define BQ24257_ITERM_MAP_SIZE ARRAY_SIZE(bq24257_iterm_map) 18962306a36Sopenharmony_ci 19062306a36Sopenharmony_cistatic const u32 bq24257_iilimit_map[] = { 19162306a36Sopenharmony_ci 100000, 150000, 500000, 900000, 1500000, 2000000 19262306a36Sopenharmony_ci}; 19362306a36Sopenharmony_ci 19462306a36Sopenharmony_ci#define BQ24257_IILIMIT_MAP_SIZE ARRAY_SIZE(bq24257_iilimit_map) 19562306a36Sopenharmony_ci 19662306a36Sopenharmony_cistatic const u32 bq24257_vovp_map[] = { 19762306a36Sopenharmony_ci 6000000, 6500000, 7000000, 8000000, 9000000, 9500000, 10000000, 19862306a36Sopenharmony_ci 10500000 19962306a36Sopenharmony_ci}; 20062306a36Sopenharmony_ci 20162306a36Sopenharmony_ci#define BQ24257_VOVP_MAP_SIZE ARRAY_SIZE(bq24257_vovp_map) 20262306a36Sopenharmony_ci 20362306a36Sopenharmony_cistatic const u32 bq24257_vindpm_map[] = { 20462306a36Sopenharmony_ci 4200000, 4280000, 4360000, 4440000, 4520000, 4600000, 4680000, 20562306a36Sopenharmony_ci 4760000 20662306a36Sopenharmony_ci}; 20762306a36Sopenharmony_ci 20862306a36Sopenharmony_ci#define BQ24257_VINDPM_MAP_SIZE ARRAY_SIZE(bq24257_vindpm_map) 20962306a36Sopenharmony_ci 21062306a36Sopenharmony_cistatic int bq24257_field_read(struct bq24257_device *bq, 21162306a36Sopenharmony_ci enum bq24257_fields field_id) 21262306a36Sopenharmony_ci{ 21362306a36Sopenharmony_ci int ret; 21462306a36Sopenharmony_ci int val; 21562306a36Sopenharmony_ci 21662306a36Sopenharmony_ci ret = regmap_field_read(bq->rmap_fields[field_id], &val); 21762306a36Sopenharmony_ci if (ret < 0) 21862306a36Sopenharmony_ci return ret; 21962306a36Sopenharmony_ci 22062306a36Sopenharmony_ci return val; 22162306a36Sopenharmony_ci} 22262306a36Sopenharmony_ci 22362306a36Sopenharmony_cistatic int bq24257_field_write(struct bq24257_device *bq, 22462306a36Sopenharmony_ci enum bq24257_fields field_id, u8 val) 22562306a36Sopenharmony_ci{ 22662306a36Sopenharmony_ci return regmap_field_write(bq->rmap_fields[field_id], val); 22762306a36Sopenharmony_ci} 22862306a36Sopenharmony_ci 22962306a36Sopenharmony_cistatic u8 bq24257_find_idx(u32 value, const u32 *map, u8 map_size) 23062306a36Sopenharmony_ci{ 23162306a36Sopenharmony_ci u8 idx; 23262306a36Sopenharmony_ci 23362306a36Sopenharmony_ci for (idx = 1; idx < map_size; idx++) 23462306a36Sopenharmony_ci if (value < map[idx]) 23562306a36Sopenharmony_ci break; 23662306a36Sopenharmony_ci 23762306a36Sopenharmony_ci return idx - 1; 23862306a36Sopenharmony_ci} 23962306a36Sopenharmony_ci 24062306a36Sopenharmony_cienum bq24257_status { 24162306a36Sopenharmony_ci STATUS_READY, 24262306a36Sopenharmony_ci STATUS_CHARGE_IN_PROGRESS, 24362306a36Sopenharmony_ci STATUS_CHARGE_DONE, 24462306a36Sopenharmony_ci STATUS_FAULT, 24562306a36Sopenharmony_ci}; 24662306a36Sopenharmony_ci 24762306a36Sopenharmony_cienum bq24257_fault { 24862306a36Sopenharmony_ci FAULT_NORMAL, 24962306a36Sopenharmony_ci FAULT_INPUT_OVP, 25062306a36Sopenharmony_ci FAULT_INPUT_UVLO, 25162306a36Sopenharmony_ci FAULT_SLEEP, 25262306a36Sopenharmony_ci FAULT_BAT_TS, 25362306a36Sopenharmony_ci FAULT_BAT_OVP, 25462306a36Sopenharmony_ci FAULT_TS, 25562306a36Sopenharmony_ci FAULT_TIMER, 25662306a36Sopenharmony_ci FAULT_NO_BAT, 25762306a36Sopenharmony_ci FAULT_ISET, 25862306a36Sopenharmony_ci FAULT_INPUT_LDO_LOW, 25962306a36Sopenharmony_ci}; 26062306a36Sopenharmony_ci 26162306a36Sopenharmony_cistatic int bq24257_get_input_current_limit(struct bq24257_device *bq, 26262306a36Sopenharmony_ci union power_supply_propval *val) 26362306a36Sopenharmony_ci{ 26462306a36Sopenharmony_ci int ret; 26562306a36Sopenharmony_ci 26662306a36Sopenharmony_ci ret = bq24257_field_read(bq, F_IILIMIT); 26762306a36Sopenharmony_ci if (ret < 0) 26862306a36Sopenharmony_ci return ret; 26962306a36Sopenharmony_ci 27062306a36Sopenharmony_ci /* 27162306a36Sopenharmony_ci * The "External ILIM" and "Production & Test" modes are not exposed 27262306a36Sopenharmony_ci * through this driver and not being covered by the lookup table. 27362306a36Sopenharmony_ci * Should such a mode have become active let's return an error rather 27462306a36Sopenharmony_ci * than exceeding the bounds of the lookup table and returning 27562306a36Sopenharmony_ci * garbage. 27662306a36Sopenharmony_ci */ 27762306a36Sopenharmony_ci if (ret >= BQ24257_IILIMIT_MAP_SIZE) 27862306a36Sopenharmony_ci return -ENODATA; 27962306a36Sopenharmony_ci 28062306a36Sopenharmony_ci val->intval = bq24257_iilimit_map[ret]; 28162306a36Sopenharmony_ci 28262306a36Sopenharmony_ci return 0; 28362306a36Sopenharmony_ci} 28462306a36Sopenharmony_ci 28562306a36Sopenharmony_cistatic int bq24257_set_input_current_limit(struct bq24257_device *bq, 28662306a36Sopenharmony_ci const union power_supply_propval *val) 28762306a36Sopenharmony_ci{ 28862306a36Sopenharmony_ci /* 28962306a36Sopenharmony_ci * Address the case where the user manually sets an input current limit 29062306a36Sopenharmony_ci * while the charger auto-detection mechanism is active. In this 29162306a36Sopenharmony_ci * case we want to abort and go straight to the user-specified value. 29262306a36Sopenharmony_ci */ 29362306a36Sopenharmony_ci if (bq->iilimit_autoset_enable) 29462306a36Sopenharmony_ci cancel_delayed_work_sync(&bq->iilimit_setup_work); 29562306a36Sopenharmony_ci 29662306a36Sopenharmony_ci return bq24257_field_write(bq, F_IILIMIT, 29762306a36Sopenharmony_ci bq24257_find_idx(val->intval, 29862306a36Sopenharmony_ci bq24257_iilimit_map, 29962306a36Sopenharmony_ci BQ24257_IILIMIT_MAP_SIZE)); 30062306a36Sopenharmony_ci} 30162306a36Sopenharmony_ci 30262306a36Sopenharmony_cistatic int bq24257_power_supply_get_property(struct power_supply *psy, 30362306a36Sopenharmony_ci enum power_supply_property psp, 30462306a36Sopenharmony_ci union power_supply_propval *val) 30562306a36Sopenharmony_ci{ 30662306a36Sopenharmony_ci struct bq24257_device *bq = power_supply_get_drvdata(psy); 30762306a36Sopenharmony_ci struct bq24257_state state; 30862306a36Sopenharmony_ci 30962306a36Sopenharmony_ci mutex_lock(&bq->lock); 31062306a36Sopenharmony_ci state = bq->state; 31162306a36Sopenharmony_ci mutex_unlock(&bq->lock); 31262306a36Sopenharmony_ci 31362306a36Sopenharmony_ci switch (psp) { 31462306a36Sopenharmony_ci case POWER_SUPPLY_PROP_STATUS: 31562306a36Sopenharmony_ci if (!state.power_good) 31662306a36Sopenharmony_ci val->intval = POWER_SUPPLY_STATUS_DISCHARGING; 31762306a36Sopenharmony_ci else if (state.status == STATUS_READY) 31862306a36Sopenharmony_ci val->intval = POWER_SUPPLY_STATUS_NOT_CHARGING; 31962306a36Sopenharmony_ci else if (state.status == STATUS_CHARGE_IN_PROGRESS) 32062306a36Sopenharmony_ci val->intval = POWER_SUPPLY_STATUS_CHARGING; 32162306a36Sopenharmony_ci else if (state.status == STATUS_CHARGE_DONE) 32262306a36Sopenharmony_ci val->intval = POWER_SUPPLY_STATUS_FULL; 32362306a36Sopenharmony_ci else 32462306a36Sopenharmony_ci val->intval = POWER_SUPPLY_STATUS_UNKNOWN; 32562306a36Sopenharmony_ci break; 32662306a36Sopenharmony_ci 32762306a36Sopenharmony_ci case POWER_SUPPLY_PROP_MANUFACTURER: 32862306a36Sopenharmony_ci val->strval = BQ24257_MANUFACTURER; 32962306a36Sopenharmony_ci break; 33062306a36Sopenharmony_ci 33162306a36Sopenharmony_ci case POWER_SUPPLY_PROP_MODEL_NAME: 33262306a36Sopenharmony_ci val->strval = bq2425x_chip_name[bq->chip]; 33362306a36Sopenharmony_ci break; 33462306a36Sopenharmony_ci 33562306a36Sopenharmony_ci case POWER_SUPPLY_PROP_ONLINE: 33662306a36Sopenharmony_ci val->intval = state.power_good; 33762306a36Sopenharmony_ci break; 33862306a36Sopenharmony_ci 33962306a36Sopenharmony_ci case POWER_SUPPLY_PROP_HEALTH: 34062306a36Sopenharmony_ci switch (state.fault) { 34162306a36Sopenharmony_ci case FAULT_NORMAL: 34262306a36Sopenharmony_ci val->intval = POWER_SUPPLY_HEALTH_GOOD; 34362306a36Sopenharmony_ci break; 34462306a36Sopenharmony_ci 34562306a36Sopenharmony_ci case FAULT_INPUT_OVP: 34662306a36Sopenharmony_ci case FAULT_BAT_OVP: 34762306a36Sopenharmony_ci val->intval = POWER_SUPPLY_HEALTH_OVERVOLTAGE; 34862306a36Sopenharmony_ci break; 34962306a36Sopenharmony_ci 35062306a36Sopenharmony_ci case FAULT_TS: 35162306a36Sopenharmony_ci case FAULT_BAT_TS: 35262306a36Sopenharmony_ci val->intval = POWER_SUPPLY_HEALTH_OVERHEAT; 35362306a36Sopenharmony_ci break; 35462306a36Sopenharmony_ci 35562306a36Sopenharmony_ci case FAULT_TIMER: 35662306a36Sopenharmony_ci val->intval = POWER_SUPPLY_HEALTH_SAFETY_TIMER_EXPIRE; 35762306a36Sopenharmony_ci break; 35862306a36Sopenharmony_ci 35962306a36Sopenharmony_ci default: 36062306a36Sopenharmony_ci val->intval = POWER_SUPPLY_HEALTH_UNSPEC_FAILURE; 36162306a36Sopenharmony_ci break; 36262306a36Sopenharmony_ci } 36362306a36Sopenharmony_ci 36462306a36Sopenharmony_ci break; 36562306a36Sopenharmony_ci 36662306a36Sopenharmony_ci case POWER_SUPPLY_PROP_CONSTANT_CHARGE_CURRENT: 36762306a36Sopenharmony_ci val->intval = bq24257_ichg_map[bq->init_data.ichg]; 36862306a36Sopenharmony_ci break; 36962306a36Sopenharmony_ci 37062306a36Sopenharmony_ci case POWER_SUPPLY_PROP_CONSTANT_CHARGE_CURRENT_MAX: 37162306a36Sopenharmony_ci val->intval = bq24257_ichg_map[BQ24257_ICHG_MAP_SIZE - 1]; 37262306a36Sopenharmony_ci break; 37362306a36Sopenharmony_ci 37462306a36Sopenharmony_ci case POWER_SUPPLY_PROP_CONSTANT_CHARGE_VOLTAGE: 37562306a36Sopenharmony_ci val->intval = bq24257_vbat_map[bq->init_data.vbat]; 37662306a36Sopenharmony_ci break; 37762306a36Sopenharmony_ci 37862306a36Sopenharmony_ci case POWER_SUPPLY_PROP_CONSTANT_CHARGE_VOLTAGE_MAX: 37962306a36Sopenharmony_ci val->intval = bq24257_vbat_map[BQ24257_VBAT_MAP_SIZE - 1]; 38062306a36Sopenharmony_ci break; 38162306a36Sopenharmony_ci 38262306a36Sopenharmony_ci case POWER_SUPPLY_PROP_CHARGE_TERM_CURRENT: 38362306a36Sopenharmony_ci val->intval = bq24257_iterm_map[bq->init_data.iterm]; 38462306a36Sopenharmony_ci break; 38562306a36Sopenharmony_ci 38662306a36Sopenharmony_ci case POWER_SUPPLY_PROP_INPUT_CURRENT_LIMIT: 38762306a36Sopenharmony_ci return bq24257_get_input_current_limit(bq, val); 38862306a36Sopenharmony_ci 38962306a36Sopenharmony_ci default: 39062306a36Sopenharmony_ci return -EINVAL; 39162306a36Sopenharmony_ci } 39262306a36Sopenharmony_ci 39362306a36Sopenharmony_ci return 0; 39462306a36Sopenharmony_ci} 39562306a36Sopenharmony_ci 39662306a36Sopenharmony_cistatic int bq24257_power_supply_set_property(struct power_supply *psy, 39762306a36Sopenharmony_ci enum power_supply_property prop, 39862306a36Sopenharmony_ci const union power_supply_propval *val) 39962306a36Sopenharmony_ci{ 40062306a36Sopenharmony_ci struct bq24257_device *bq = power_supply_get_drvdata(psy); 40162306a36Sopenharmony_ci 40262306a36Sopenharmony_ci switch (prop) { 40362306a36Sopenharmony_ci case POWER_SUPPLY_PROP_INPUT_CURRENT_LIMIT: 40462306a36Sopenharmony_ci return bq24257_set_input_current_limit(bq, val); 40562306a36Sopenharmony_ci default: 40662306a36Sopenharmony_ci return -EINVAL; 40762306a36Sopenharmony_ci } 40862306a36Sopenharmony_ci} 40962306a36Sopenharmony_ci 41062306a36Sopenharmony_cistatic int bq24257_power_supply_property_is_writeable(struct power_supply *psy, 41162306a36Sopenharmony_ci enum power_supply_property psp) 41262306a36Sopenharmony_ci{ 41362306a36Sopenharmony_ci switch (psp) { 41462306a36Sopenharmony_ci case POWER_SUPPLY_PROP_INPUT_CURRENT_LIMIT: 41562306a36Sopenharmony_ci return true; 41662306a36Sopenharmony_ci default: 41762306a36Sopenharmony_ci return false; 41862306a36Sopenharmony_ci } 41962306a36Sopenharmony_ci} 42062306a36Sopenharmony_ci 42162306a36Sopenharmony_cistatic int bq24257_get_chip_state(struct bq24257_device *bq, 42262306a36Sopenharmony_ci struct bq24257_state *state) 42362306a36Sopenharmony_ci{ 42462306a36Sopenharmony_ci int ret; 42562306a36Sopenharmony_ci 42662306a36Sopenharmony_ci ret = bq24257_field_read(bq, F_STAT); 42762306a36Sopenharmony_ci if (ret < 0) 42862306a36Sopenharmony_ci return ret; 42962306a36Sopenharmony_ci 43062306a36Sopenharmony_ci state->status = ret; 43162306a36Sopenharmony_ci 43262306a36Sopenharmony_ci ret = bq24257_field_read(bq, F_FAULT); 43362306a36Sopenharmony_ci if (ret < 0) 43462306a36Sopenharmony_ci return ret; 43562306a36Sopenharmony_ci 43662306a36Sopenharmony_ci state->fault = ret; 43762306a36Sopenharmony_ci 43862306a36Sopenharmony_ci if (bq->pg) 43962306a36Sopenharmony_ci state->power_good = !gpiod_get_value_cansleep(bq->pg); 44062306a36Sopenharmony_ci else 44162306a36Sopenharmony_ci /* 44262306a36Sopenharmony_ci * If we have a chip without a dedicated power-good GPIO or 44362306a36Sopenharmony_ci * some other explicit bit that would provide this information 44462306a36Sopenharmony_ci * assume the power is good if there is no supply related 44562306a36Sopenharmony_ci * fault - and not good otherwise. There is a possibility for 44662306a36Sopenharmony_ci * other errors to mask that power in fact is not good but this 44762306a36Sopenharmony_ci * is probably the best we can do here. 44862306a36Sopenharmony_ci */ 44962306a36Sopenharmony_ci switch (state->fault) { 45062306a36Sopenharmony_ci case FAULT_INPUT_OVP: 45162306a36Sopenharmony_ci case FAULT_INPUT_UVLO: 45262306a36Sopenharmony_ci case FAULT_INPUT_LDO_LOW: 45362306a36Sopenharmony_ci state->power_good = false; 45462306a36Sopenharmony_ci break; 45562306a36Sopenharmony_ci default: 45662306a36Sopenharmony_ci state->power_good = true; 45762306a36Sopenharmony_ci } 45862306a36Sopenharmony_ci 45962306a36Sopenharmony_ci return 0; 46062306a36Sopenharmony_ci} 46162306a36Sopenharmony_ci 46262306a36Sopenharmony_cistatic bool bq24257_state_changed(struct bq24257_device *bq, 46362306a36Sopenharmony_ci struct bq24257_state *new_state) 46462306a36Sopenharmony_ci{ 46562306a36Sopenharmony_ci int ret; 46662306a36Sopenharmony_ci 46762306a36Sopenharmony_ci mutex_lock(&bq->lock); 46862306a36Sopenharmony_ci ret = (bq->state.status != new_state->status || 46962306a36Sopenharmony_ci bq->state.fault != new_state->fault || 47062306a36Sopenharmony_ci bq->state.power_good != new_state->power_good); 47162306a36Sopenharmony_ci mutex_unlock(&bq->lock); 47262306a36Sopenharmony_ci 47362306a36Sopenharmony_ci return ret; 47462306a36Sopenharmony_ci} 47562306a36Sopenharmony_ci 47662306a36Sopenharmony_cienum bq24257_loop_status { 47762306a36Sopenharmony_ci LOOP_STATUS_NONE, 47862306a36Sopenharmony_ci LOOP_STATUS_IN_DPM, 47962306a36Sopenharmony_ci LOOP_STATUS_IN_CURRENT_LIMIT, 48062306a36Sopenharmony_ci LOOP_STATUS_THERMAL, 48162306a36Sopenharmony_ci}; 48262306a36Sopenharmony_ci 48362306a36Sopenharmony_cienum bq24257_in_ilimit { 48462306a36Sopenharmony_ci IILIMIT_100, 48562306a36Sopenharmony_ci IILIMIT_150, 48662306a36Sopenharmony_ci IILIMIT_500, 48762306a36Sopenharmony_ci IILIMIT_900, 48862306a36Sopenharmony_ci IILIMIT_1500, 48962306a36Sopenharmony_ci IILIMIT_2000, 49062306a36Sopenharmony_ci IILIMIT_EXT, 49162306a36Sopenharmony_ci IILIMIT_NONE, 49262306a36Sopenharmony_ci}; 49362306a36Sopenharmony_ci 49462306a36Sopenharmony_cienum bq24257_vovp { 49562306a36Sopenharmony_ci VOVP_6000, 49662306a36Sopenharmony_ci VOVP_6500, 49762306a36Sopenharmony_ci VOVP_7000, 49862306a36Sopenharmony_ci VOVP_8000, 49962306a36Sopenharmony_ci VOVP_9000, 50062306a36Sopenharmony_ci VOVP_9500, 50162306a36Sopenharmony_ci VOVP_10000, 50262306a36Sopenharmony_ci VOVP_10500 50362306a36Sopenharmony_ci}; 50462306a36Sopenharmony_ci 50562306a36Sopenharmony_cienum bq24257_vindpm { 50662306a36Sopenharmony_ci VINDPM_4200, 50762306a36Sopenharmony_ci VINDPM_4280, 50862306a36Sopenharmony_ci VINDPM_4360, 50962306a36Sopenharmony_ci VINDPM_4440, 51062306a36Sopenharmony_ci VINDPM_4520, 51162306a36Sopenharmony_ci VINDPM_4600, 51262306a36Sopenharmony_ci VINDPM_4680, 51362306a36Sopenharmony_ci VINDPM_4760 51462306a36Sopenharmony_ci}; 51562306a36Sopenharmony_ci 51662306a36Sopenharmony_cienum bq24257_port_type { 51762306a36Sopenharmony_ci PORT_TYPE_DCP, /* Dedicated Charging Port */ 51862306a36Sopenharmony_ci PORT_TYPE_CDP, /* Charging Downstream Port */ 51962306a36Sopenharmony_ci PORT_TYPE_SDP, /* Standard Downstream Port */ 52062306a36Sopenharmony_ci PORT_TYPE_NON_STANDARD, 52162306a36Sopenharmony_ci}; 52262306a36Sopenharmony_ci 52362306a36Sopenharmony_cienum bq24257_safety_timer { 52462306a36Sopenharmony_ci SAFETY_TIMER_45, 52562306a36Sopenharmony_ci SAFETY_TIMER_360, 52662306a36Sopenharmony_ci SAFETY_TIMER_540, 52762306a36Sopenharmony_ci SAFETY_TIMER_NONE, 52862306a36Sopenharmony_ci}; 52962306a36Sopenharmony_ci 53062306a36Sopenharmony_cistatic int bq24257_iilimit_autoset(struct bq24257_device *bq) 53162306a36Sopenharmony_ci{ 53262306a36Sopenharmony_ci int loop_status; 53362306a36Sopenharmony_ci int iilimit; 53462306a36Sopenharmony_ci int port_type; 53562306a36Sopenharmony_ci int ret; 53662306a36Sopenharmony_ci const u8 new_iilimit[] = { 53762306a36Sopenharmony_ci [PORT_TYPE_DCP] = IILIMIT_2000, 53862306a36Sopenharmony_ci [PORT_TYPE_CDP] = IILIMIT_2000, 53962306a36Sopenharmony_ci [PORT_TYPE_SDP] = IILIMIT_500, 54062306a36Sopenharmony_ci [PORT_TYPE_NON_STANDARD] = IILIMIT_500 54162306a36Sopenharmony_ci }; 54262306a36Sopenharmony_ci 54362306a36Sopenharmony_ci ret = bq24257_field_read(bq, F_LOOP_STATUS); 54462306a36Sopenharmony_ci if (ret < 0) 54562306a36Sopenharmony_ci goto error; 54662306a36Sopenharmony_ci 54762306a36Sopenharmony_ci loop_status = ret; 54862306a36Sopenharmony_ci 54962306a36Sopenharmony_ci ret = bq24257_field_read(bq, F_IILIMIT); 55062306a36Sopenharmony_ci if (ret < 0) 55162306a36Sopenharmony_ci goto error; 55262306a36Sopenharmony_ci 55362306a36Sopenharmony_ci iilimit = ret; 55462306a36Sopenharmony_ci 55562306a36Sopenharmony_ci /* 55662306a36Sopenharmony_ci * All USB ports should be able to handle 500mA. If not, DPM will lower 55762306a36Sopenharmony_ci * the charging current to accommodate the power source. No need to set 55862306a36Sopenharmony_ci * a lower IILIMIT value. 55962306a36Sopenharmony_ci */ 56062306a36Sopenharmony_ci if (loop_status == LOOP_STATUS_IN_DPM && iilimit == IILIMIT_500) 56162306a36Sopenharmony_ci return 0; 56262306a36Sopenharmony_ci 56362306a36Sopenharmony_ci ret = bq24257_field_read(bq, F_USB_DET); 56462306a36Sopenharmony_ci if (ret < 0) 56562306a36Sopenharmony_ci goto error; 56662306a36Sopenharmony_ci 56762306a36Sopenharmony_ci port_type = ret; 56862306a36Sopenharmony_ci 56962306a36Sopenharmony_ci ret = bq24257_field_write(bq, F_IILIMIT, new_iilimit[port_type]); 57062306a36Sopenharmony_ci if (ret < 0) 57162306a36Sopenharmony_ci goto error; 57262306a36Sopenharmony_ci 57362306a36Sopenharmony_ci ret = bq24257_field_write(bq, F_TMR, SAFETY_TIMER_360); 57462306a36Sopenharmony_ci if (ret < 0) 57562306a36Sopenharmony_ci goto error; 57662306a36Sopenharmony_ci 57762306a36Sopenharmony_ci ret = bq24257_field_write(bq, F_CLR_VDP, 1); 57862306a36Sopenharmony_ci if (ret < 0) 57962306a36Sopenharmony_ci goto error; 58062306a36Sopenharmony_ci 58162306a36Sopenharmony_ci dev_dbg(bq->dev, "port/loop = %d/%d -> iilimit = %d\n", 58262306a36Sopenharmony_ci port_type, loop_status, new_iilimit[port_type]); 58362306a36Sopenharmony_ci 58462306a36Sopenharmony_ci return 0; 58562306a36Sopenharmony_ci 58662306a36Sopenharmony_cierror: 58762306a36Sopenharmony_ci dev_err(bq->dev, "%s: Error communicating with the chip.\n", __func__); 58862306a36Sopenharmony_ci return ret; 58962306a36Sopenharmony_ci} 59062306a36Sopenharmony_ci 59162306a36Sopenharmony_cistatic void bq24257_iilimit_setup_work(struct work_struct *work) 59262306a36Sopenharmony_ci{ 59362306a36Sopenharmony_ci struct bq24257_device *bq = container_of(work, struct bq24257_device, 59462306a36Sopenharmony_ci iilimit_setup_work.work); 59562306a36Sopenharmony_ci 59662306a36Sopenharmony_ci bq24257_iilimit_autoset(bq); 59762306a36Sopenharmony_ci} 59862306a36Sopenharmony_ci 59962306a36Sopenharmony_cistatic void bq24257_handle_state_change(struct bq24257_device *bq, 60062306a36Sopenharmony_ci struct bq24257_state *new_state) 60162306a36Sopenharmony_ci{ 60262306a36Sopenharmony_ci int ret; 60362306a36Sopenharmony_ci struct bq24257_state old_state; 60462306a36Sopenharmony_ci 60562306a36Sopenharmony_ci mutex_lock(&bq->lock); 60662306a36Sopenharmony_ci old_state = bq->state; 60762306a36Sopenharmony_ci mutex_unlock(&bq->lock); 60862306a36Sopenharmony_ci 60962306a36Sopenharmony_ci /* 61062306a36Sopenharmony_ci * Handle BQ2425x state changes observing whether the D+/D- based input 61162306a36Sopenharmony_ci * current limit autoset functionality is enabled. 61262306a36Sopenharmony_ci */ 61362306a36Sopenharmony_ci if (!new_state->power_good) { 61462306a36Sopenharmony_ci dev_dbg(bq->dev, "Power removed\n"); 61562306a36Sopenharmony_ci if (bq->iilimit_autoset_enable) { 61662306a36Sopenharmony_ci cancel_delayed_work_sync(&bq->iilimit_setup_work); 61762306a36Sopenharmony_ci 61862306a36Sopenharmony_ci /* activate D+/D- port detection algorithm */ 61962306a36Sopenharmony_ci ret = bq24257_field_write(bq, F_DPDM_EN, 1); 62062306a36Sopenharmony_ci if (ret < 0) 62162306a36Sopenharmony_ci goto error; 62262306a36Sopenharmony_ci } 62362306a36Sopenharmony_ci /* 62462306a36Sopenharmony_ci * When power is removed always return to the default input 62562306a36Sopenharmony_ci * current limit as configured during probe. 62662306a36Sopenharmony_ci */ 62762306a36Sopenharmony_ci ret = bq24257_field_write(bq, F_IILIMIT, bq->init_data.iilimit); 62862306a36Sopenharmony_ci if (ret < 0) 62962306a36Sopenharmony_ci goto error; 63062306a36Sopenharmony_ci } else if (!old_state.power_good) { 63162306a36Sopenharmony_ci dev_dbg(bq->dev, "Power inserted\n"); 63262306a36Sopenharmony_ci 63362306a36Sopenharmony_ci if (bq->iilimit_autoset_enable) 63462306a36Sopenharmony_ci /* configure input current limit */ 63562306a36Sopenharmony_ci schedule_delayed_work(&bq->iilimit_setup_work, 63662306a36Sopenharmony_ci msecs_to_jiffies(BQ24257_ILIM_SET_DELAY)); 63762306a36Sopenharmony_ci } else if (new_state->fault == FAULT_NO_BAT) { 63862306a36Sopenharmony_ci dev_warn(bq->dev, "Battery removed\n"); 63962306a36Sopenharmony_ci } else if (new_state->fault == FAULT_TIMER) { 64062306a36Sopenharmony_ci dev_err(bq->dev, "Safety timer expired! Battery dead?\n"); 64162306a36Sopenharmony_ci } 64262306a36Sopenharmony_ci 64362306a36Sopenharmony_ci return; 64462306a36Sopenharmony_ci 64562306a36Sopenharmony_cierror: 64662306a36Sopenharmony_ci dev_err(bq->dev, "%s: Error communicating with the chip.\n", __func__); 64762306a36Sopenharmony_ci} 64862306a36Sopenharmony_ci 64962306a36Sopenharmony_cistatic irqreturn_t bq24257_irq_handler_thread(int irq, void *private) 65062306a36Sopenharmony_ci{ 65162306a36Sopenharmony_ci int ret; 65262306a36Sopenharmony_ci struct bq24257_device *bq = private; 65362306a36Sopenharmony_ci struct bq24257_state state; 65462306a36Sopenharmony_ci 65562306a36Sopenharmony_ci ret = bq24257_get_chip_state(bq, &state); 65662306a36Sopenharmony_ci if (ret < 0) 65762306a36Sopenharmony_ci return IRQ_HANDLED; 65862306a36Sopenharmony_ci 65962306a36Sopenharmony_ci if (!bq24257_state_changed(bq, &state)) 66062306a36Sopenharmony_ci return IRQ_HANDLED; 66162306a36Sopenharmony_ci 66262306a36Sopenharmony_ci dev_dbg(bq->dev, "irq(state changed): status/fault/pg = %d/%d/%d\n", 66362306a36Sopenharmony_ci state.status, state.fault, state.power_good); 66462306a36Sopenharmony_ci 66562306a36Sopenharmony_ci bq24257_handle_state_change(bq, &state); 66662306a36Sopenharmony_ci 66762306a36Sopenharmony_ci mutex_lock(&bq->lock); 66862306a36Sopenharmony_ci bq->state = state; 66962306a36Sopenharmony_ci mutex_unlock(&bq->lock); 67062306a36Sopenharmony_ci 67162306a36Sopenharmony_ci power_supply_changed(bq->charger); 67262306a36Sopenharmony_ci 67362306a36Sopenharmony_ci return IRQ_HANDLED; 67462306a36Sopenharmony_ci} 67562306a36Sopenharmony_ci 67662306a36Sopenharmony_cistatic int bq24257_hw_init(struct bq24257_device *bq) 67762306a36Sopenharmony_ci{ 67862306a36Sopenharmony_ci int ret; 67962306a36Sopenharmony_ci int i; 68062306a36Sopenharmony_ci struct bq24257_state state; 68162306a36Sopenharmony_ci 68262306a36Sopenharmony_ci const struct { 68362306a36Sopenharmony_ci int field; 68462306a36Sopenharmony_ci u32 value; 68562306a36Sopenharmony_ci } init_data[] = { 68662306a36Sopenharmony_ci {F_ICHG, bq->init_data.ichg}, 68762306a36Sopenharmony_ci {F_VBAT, bq->init_data.vbat}, 68862306a36Sopenharmony_ci {F_ITERM, bq->init_data.iterm}, 68962306a36Sopenharmony_ci {F_VOVP, bq->init_data.vovp}, 69062306a36Sopenharmony_ci {F_VINDPM, bq->init_data.vindpm}, 69162306a36Sopenharmony_ci }; 69262306a36Sopenharmony_ci 69362306a36Sopenharmony_ci /* 69462306a36Sopenharmony_ci * Disable the watchdog timer to prevent the IC from going back to 69562306a36Sopenharmony_ci * default settings after 50 seconds of I2C inactivity. 69662306a36Sopenharmony_ci */ 69762306a36Sopenharmony_ci ret = bq24257_field_write(bq, F_WD_EN, 0); 69862306a36Sopenharmony_ci if (ret < 0) 69962306a36Sopenharmony_ci return ret; 70062306a36Sopenharmony_ci 70162306a36Sopenharmony_ci /* configure the charge currents and voltages */ 70262306a36Sopenharmony_ci for (i = 0; i < ARRAY_SIZE(init_data); i++) { 70362306a36Sopenharmony_ci ret = bq24257_field_write(bq, init_data[i].field, 70462306a36Sopenharmony_ci init_data[i].value); 70562306a36Sopenharmony_ci if (ret < 0) 70662306a36Sopenharmony_ci return ret; 70762306a36Sopenharmony_ci } 70862306a36Sopenharmony_ci 70962306a36Sopenharmony_ci ret = bq24257_get_chip_state(bq, &state); 71062306a36Sopenharmony_ci if (ret < 0) 71162306a36Sopenharmony_ci return ret; 71262306a36Sopenharmony_ci 71362306a36Sopenharmony_ci mutex_lock(&bq->lock); 71462306a36Sopenharmony_ci bq->state = state; 71562306a36Sopenharmony_ci mutex_unlock(&bq->lock); 71662306a36Sopenharmony_ci 71762306a36Sopenharmony_ci if (!bq->iilimit_autoset_enable) { 71862306a36Sopenharmony_ci dev_dbg(bq->dev, "manually setting iilimit = %u\n", 71962306a36Sopenharmony_ci bq->init_data.iilimit); 72062306a36Sopenharmony_ci 72162306a36Sopenharmony_ci /* program fixed input current limit */ 72262306a36Sopenharmony_ci ret = bq24257_field_write(bq, F_IILIMIT, 72362306a36Sopenharmony_ci bq->init_data.iilimit); 72462306a36Sopenharmony_ci if (ret < 0) 72562306a36Sopenharmony_ci return ret; 72662306a36Sopenharmony_ci } else if (!state.power_good) 72762306a36Sopenharmony_ci /* activate D+/D- detection algorithm */ 72862306a36Sopenharmony_ci ret = bq24257_field_write(bq, F_DPDM_EN, 1); 72962306a36Sopenharmony_ci else if (state.fault != FAULT_NO_BAT) 73062306a36Sopenharmony_ci ret = bq24257_iilimit_autoset(bq); 73162306a36Sopenharmony_ci 73262306a36Sopenharmony_ci return ret; 73362306a36Sopenharmony_ci} 73462306a36Sopenharmony_ci 73562306a36Sopenharmony_cistatic enum power_supply_property bq24257_power_supply_props[] = { 73662306a36Sopenharmony_ci POWER_SUPPLY_PROP_MANUFACTURER, 73762306a36Sopenharmony_ci POWER_SUPPLY_PROP_MODEL_NAME, 73862306a36Sopenharmony_ci POWER_SUPPLY_PROP_STATUS, 73962306a36Sopenharmony_ci POWER_SUPPLY_PROP_ONLINE, 74062306a36Sopenharmony_ci POWER_SUPPLY_PROP_HEALTH, 74162306a36Sopenharmony_ci POWER_SUPPLY_PROP_CONSTANT_CHARGE_CURRENT, 74262306a36Sopenharmony_ci POWER_SUPPLY_PROP_CONSTANT_CHARGE_CURRENT_MAX, 74362306a36Sopenharmony_ci POWER_SUPPLY_PROP_CONSTANT_CHARGE_VOLTAGE, 74462306a36Sopenharmony_ci POWER_SUPPLY_PROP_CONSTANT_CHARGE_VOLTAGE_MAX, 74562306a36Sopenharmony_ci POWER_SUPPLY_PROP_CHARGE_TERM_CURRENT, 74662306a36Sopenharmony_ci POWER_SUPPLY_PROP_INPUT_CURRENT_LIMIT, 74762306a36Sopenharmony_ci}; 74862306a36Sopenharmony_ci 74962306a36Sopenharmony_cistatic char *bq24257_charger_supplied_to[] = { 75062306a36Sopenharmony_ci "main-battery", 75162306a36Sopenharmony_ci}; 75262306a36Sopenharmony_ci 75362306a36Sopenharmony_cistatic const struct power_supply_desc bq24257_power_supply_desc = { 75462306a36Sopenharmony_ci .name = "bq24257-charger", 75562306a36Sopenharmony_ci .type = POWER_SUPPLY_TYPE_USB, 75662306a36Sopenharmony_ci .properties = bq24257_power_supply_props, 75762306a36Sopenharmony_ci .num_properties = ARRAY_SIZE(bq24257_power_supply_props), 75862306a36Sopenharmony_ci .get_property = bq24257_power_supply_get_property, 75962306a36Sopenharmony_ci .set_property = bq24257_power_supply_set_property, 76062306a36Sopenharmony_ci .property_is_writeable = bq24257_power_supply_property_is_writeable, 76162306a36Sopenharmony_ci}; 76262306a36Sopenharmony_ci 76362306a36Sopenharmony_cistatic ssize_t bq24257_show_ovp_voltage(struct device *dev, 76462306a36Sopenharmony_ci struct device_attribute *attr, 76562306a36Sopenharmony_ci char *buf) 76662306a36Sopenharmony_ci{ 76762306a36Sopenharmony_ci struct power_supply *psy = dev_get_drvdata(dev); 76862306a36Sopenharmony_ci struct bq24257_device *bq = power_supply_get_drvdata(psy); 76962306a36Sopenharmony_ci 77062306a36Sopenharmony_ci return sysfs_emit(buf, "%u\n", bq24257_vovp_map[bq->init_data.vovp]); 77162306a36Sopenharmony_ci} 77262306a36Sopenharmony_ci 77362306a36Sopenharmony_cistatic ssize_t bq24257_show_in_dpm_voltage(struct device *dev, 77462306a36Sopenharmony_ci struct device_attribute *attr, 77562306a36Sopenharmony_ci char *buf) 77662306a36Sopenharmony_ci{ 77762306a36Sopenharmony_ci struct power_supply *psy = dev_get_drvdata(dev); 77862306a36Sopenharmony_ci struct bq24257_device *bq = power_supply_get_drvdata(psy); 77962306a36Sopenharmony_ci 78062306a36Sopenharmony_ci return sysfs_emit(buf, "%u\n", bq24257_vindpm_map[bq->init_data.vindpm]); 78162306a36Sopenharmony_ci} 78262306a36Sopenharmony_ci 78362306a36Sopenharmony_cistatic ssize_t bq24257_sysfs_show_enable(struct device *dev, 78462306a36Sopenharmony_ci struct device_attribute *attr, 78562306a36Sopenharmony_ci char *buf) 78662306a36Sopenharmony_ci{ 78762306a36Sopenharmony_ci struct power_supply *psy = dev_get_drvdata(dev); 78862306a36Sopenharmony_ci struct bq24257_device *bq = power_supply_get_drvdata(psy); 78962306a36Sopenharmony_ci int ret; 79062306a36Sopenharmony_ci 79162306a36Sopenharmony_ci if (strcmp(attr->attr.name, "high_impedance_enable") == 0) 79262306a36Sopenharmony_ci ret = bq24257_field_read(bq, F_HZ_MODE); 79362306a36Sopenharmony_ci else if (strcmp(attr->attr.name, "sysoff_enable") == 0) 79462306a36Sopenharmony_ci ret = bq24257_field_read(bq, F_SYSOFF); 79562306a36Sopenharmony_ci else 79662306a36Sopenharmony_ci return -EINVAL; 79762306a36Sopenharmony_ci 79862306a36Sopenharmony_ci if (ret < 0) 79962306a36Sopenharmony_ci return ret; 80062306a36Sopenharmony_ci 80162306a36Sopenharmony_ci return sysfs_emit(buf, "%d\n", ret); 80262306a36Sopenharmony_ci} 80362306a36Sopenharmony_ci 80462306a36Sopenharmony_cistatic ssize_t bq24257_sysfs_set_enable(struct device *dev, 80562306a36Sopenharmony_ci struct device_attribute *attr, 80662306a36Sopenharmony_ci const char *buf, 80762306a36Sopenharmony_ci size_t count) 80862306a36Sopenharmony_ci{ 80962306a36Sopenharmony_ci struct power_supply *psy = dev_get_drvdata(dev); 81062306a36Sopenharmony_ci struct bq24257_device *bq = power_supply_get_drvdata(psy); 81162306a36Sopenharmony_ci long val; 81262306a36Sopenharmony_ci int ret; 81362306a36Sopenharmony_ci 81462306a36Sopenharmony_ci if (kstrtol(buf, 10, &val) < 0) 81562306a36Sopenharmony_ci return -EINVAL; 81662306a36Sopenharmony_ci 81762306a36Sopenharmony_ci if (strcmp(attr->attr.name, "high_impedance_enable") == 0) 81862306a36Sopenharmony_ci ret = bq24257_field_write(bq, F_HZ_MODE, (bool)val); 81962306a36Sopenharmony_ci else if (strcmp(attr->attr.name, "sysoff_enable") == 0) 82062306a36Sopenharmony_ci ret = bq24257_field_write(bq, F_SYSOFF, (bool)val); 82162306a36Sopenharmony_ci else 82262306a36Sopenharmony_ci return -EINVAL; 82362306a36Sopenharmony_ci 82462306a36Sopenharmony_ci if (ret < 0) 82562306a36Sopenharmony_ci return ret; 82662306a36Sopenharmony_ci 82762306a36Sopenharmony_ci return count; 82862306a36Sopenharmony_ci} 82962306a36Sopenharmony_ci 83062306a36Sopenharmony_cistatic DEVICE_ATTR(ovp_voltage, S_IRUGO, bq24257_show_ovp_voltage, NULL); 83162306a36Sopenharmony_cistatic DEVICE_ATTR(in_dpm_voltage, S_IRUGO, bq24257_show_in_dpm_voltage, NULL); 83262306a36Sopenharmony_cistatic DEVICE_ATTR(high_impedance_enable, S_IWUSR | S_IRUGO, 83362306a36Sopenharmony_ci bq24257_sysfs_show_enable, bq24257_sysfs_set_enable); 83462306a36Sopenharmony_cistatic DEVICE_ATTR(sysoff_enable, S_IWUSR | S_IRUGO, 83562306a36Sopenharmony_ci bq24257_sysfs_show_enable, bq24257_sysfs_set_enable); 83662306a36Sopenharmony_ci 83762306a36Sopenharmony_cistatic struct attribute *bq24257_charger_sysfs_attrs[] = { 83862306a36Sopenharmony_ci &dev_attr_ovp_voltage.attr, 83962306a36Sopenharmony_ci &dev_attr_in_dpm_voltage.attr, 84062306a36Sopenharmony_ci &dev_attr_high_impedance_enable.attr, 84162306a36Sopenharmony_ci &dev_attr_sysoff_enable.attr, 84262306a36Sopenharmony_ci NULL, 84362306a36Sopenharmony_ci}; 84462306a36Sopenharmony_ci 84562306a36Sopenharmony_ciATTRIBUTE_GROUPS(bq24257_charger_sysfs); 84662306a36Sopenharmony_ci 84762306a36Sopenharmony_cistatic int bq24257_power_supply_init(struct bq24257_device *bq) 84862306a36Sopenharmony_ci{ 84962306a36Sopenharmony_ci struct power_supply_config psy_cfg = { .drv_data = bq, }; 85062306a36Sopenharmony_ci 85162306a36Sopenharmony_ci psy_cfg.attr_grp = bq24257_charger_sysfs_groups; 85262306a36Sopenharmony_ci psy_cfg.supplied_to = bq24257_charger_supplied_to; 85362306a36Sopenharmony_ci psy_cfg.num_supplicants = ARRAY_SIZE(bq24257_charger_supplied_to); 85462306a36Sopenharmony_ci 85562306a36Sopenharmony_ci bq->charger = devm_power_supply_register(bq->dev, 85662306a36Sopenharmony_ci &bq24257_power_supply_desc, 85762306a36Sopenharmony_ci &psy_cfg); 85862306a36Sopenharmony_ci 85962306a36Sopenharmony_ci return PTR_ERR_OR_ZERO(bq->charger); 86062306a36Sopenharmony_ci} 86162306a36Sopenharmony_ci 86262306a36Sopenharmony_cistatic void bq24257_pg_gpio_probe(struct bq24257_device *bq) 86362306a36Sopenharmony_ci{ 86462306a36Sopenharmony_ci bq->pg = devm_gpiod_get_optional(bq->dev, BQ24257_PG_GPIO, GPIOD_IN); 86562306a36Sopenharmony_ci 86662306a36Sopenharmony_ci if (PTR_ERR(bq->pg) == -EPROBE_DEFER) { 86762306a36Sopenharmony_ci dev_info(bq->dev, "probe retry requested for PG pin\n"); 86862306a36Sopenharmony_ci return; 86962306a36Sopenharmony_ci } else if (IS_ERR(bq->pg)) { 87062306a36Sopenharmony_ci dev_err(bq->dev, "error probing PG pin\n"); 87162306a36Sopenharmony_ci bq->pg = NULL; 87262306a36Sopenharmony_ci return; 87362306a36Sopenharmony_ci } 87462306a36Sopenharmony_ci 87562306a36Sopenharmony_ci if (bq->pg) 87662306a36Sopenharmony_ci dev_dbg(bq->dev, "probed PG pin = %d\n", desc_to_gpio(bq->pg)); 87762306a36Sopenharmony_ci} 87862306a36Sopenharmony_ci 87962306a36Sopenharmony_cistatic int bq24257_fw_probe(struct bq24257_device *bq) 88062306a36Sopenharmony_ci{ 88162306a36Sopenharmony_ci int ret; 88262306a36Sopenharmony_ci u32 property; 88362306a36Sopenharmony_ci 88462306a36Sopenharmony_ci /* Required properties */ 88562306a36Sopenharmony_ci ret = device_property_read_u32(bq->dev, "ti,charge-current", &property); 88662306a36Sopenharmony_ci if (ret < 0) 88762306a36Sopenharmony_ci return ret; 88862306a36Sopenharmony_ci 88962306a36Sopenharmony_ci bq->init_data.ichg = bq24257_find_idx(property, bq24257_ichg_map, 89062306a36Sopenharmony_ci BQ24257_ICHG_MAP_SIZE); 89162306a36Sopenharmony_ci 89262306a36Sopenharmony_ci ret = device_property_read_u32(bq->dev, "ti,battery-regulation-voltage", 89362306a36Sopenharmony_ci &property); 89462306a36Sopenharmony_ci if (ret < 0) 89562306a36Sopenharmony_ci return ret; 89662306a36Sopenharmony_ci 89762306a36Sopenharmony_ci bq->init_data.vbat = bq24257_find_idx(property, bq24257_vbat_map, 89862306a36Sopenharmony_ci BQ24257_VBAT_MAP_SIZE); 89962306a36Sopenharmony_ci 90062306a36Sopenharmony_ci ret = device_property_read_u32(bq->dev, "ti,termination-current", 90162306a36Sopenharmony_ci &property); 90262306a36Sopenharmony_ci if (ret < 0) 90362306a36Sopenharmony_ci return ret; 90462306a36Sopenharmony_ci 90562306a36Sopenharmony_ci bq->init_data.iterm = bq24257_find_idx(property, bq24257_iterm_map, 90662306a36Sopenharmony_ci BQ24257_ITERM_MAP_SIZE); 90762306a36Sopenharmony_ci 90862306a36Sopenharmony_ci /* Optional properties. If not provided use reasonable default. */ 90962306a36Sopenharmony_ci ret = device_property_read_u32(bq->dev, "ti,current-limit", 91062306a36Sopenharmony_ci &property); 91162306a36Sopenharmony_ci if (ret < 0) { 91262306a36Sopenharmony_ci bq->iilimit_autoset_enable = true; 91362306a36Sopenharmony_ci 91462306a36Sopenharmony_ci /* 91562306a36Sopenharmony_ci * Explicitly set a default value which will be needed for 91662306a36Sopenharmony_ci * devices that don't support the automatic setting of the input 91762306a36Sopenharmony_ci * current limit through the charger type detection mechanism. 91862306a36Sopenharmony_ci */ 91962306a36Sopenharmony_ci bq->init_data.iilimit = IILIMIT_500; 92062306a36Sopenharmony_ci } else 92162306a36Sopenharmony_ci bq->init_data.iilimit = 92262306a36Sopenharmony_ci bq24257_find_idx(property, 92362306a36Sopenharmony_ci bq24257_iilimit_map, 92462306a36Sopenharmony_ci BQ24257_IILIMIT_MAP_SIZE); 92562306a36Sopenharmony_ci 92662306a36Sopenharmony_ci ret = device_property_read_u32(bq->dev, "ti,ovp-voltage", 92762306a36Sopenharmony_ci &property); 92862306a36Sopenharmony_ci if (ret < 0) 92962306a36Sopenharmony_ci bq->init_data.vovp = VOVP_6500; 93062306a36Sopenharmony_ci else 93162306a36Sopenharmony_ci bq->init_data.vovp = bq24257_find_idx(property, 93262306a36Sopenharmony_ci bq24257_vovp_map, 93362306a36Sopenharmony_ci BQ24257_VOVP_MAP_SIZE); 93462306a36Sopenharmony_ci 93562306a36Sopenharmony_ci ret = device_property_read_u32(bq->dev, "ti,in-dpm-voltage", 93662306a36Sopenharmony_ci &property); 93762306a36Sopenharmony_ci if (ret < 0) 93862306a36Sopenharmony_ci bq->init_data.vindpm = VINDPM_4360; 93962306a36Sopenharmony_ci else 94062306a36Sopenharmony_ci bq->init_data.vindpm = 94162306a36Sopenharmony_ci bq24257_find_idx(property, 94262306a36Sopenharmony_ci bq24257_vindpm_map, 94362306a36Sopenharmony_ci BQ24257_VINDPM_MAP_SIZE); 94462306a36Sopenharmony_ci 94562306a36Sopenharmony_ci return 0; 94662306a36Sopenharmony_ci} 94762306a36Sopenharmony_ci 94862306a36Sopenharmony_cistatic int bq24257_probe(struct i2c_client *client) 94962306a36Sopenharmony_ci{ 95062306a36Sopenharmony_ci const struct i2c_device_id *id = i2c_client_get_device_id(client); 95162306a36Sopenharmony_ci struct i2c_adapter *adapter = client->adapter; 95262306a36Sopenharmony_ci struct device *dev = &client->dev; 95362306a36Sopenharmony_ci const struct acpi_device_id *acpi_id; 95462306a36Sopenharmony_ci struct bq24257_device *bq; 95562306a36Sopenharmony_ci int ret; 95662306a36Sopenharmony_ci int i; 95762306a36Sopenharmony_ci 95862306a36Sopenharmony_ci if (!i2c_check_functionality(adapter, I2C_FUNC_SMBUS_BYTE_DATA)) { 95962306a36Sopenharmony_ci dev_err(dev, "No support for SMBUS_BYTE_DATA\n"); 96062306a36Sopenharmony_ci return -ENODEV; 96162306a36Sopenharmony_ci } 96262306a36Sopenharmony_ci 96362306a36Sopenharmony_ci bq = devm_kzalloc(dev, sizeof(*bq), GFP_KERNEL); 96462306a36Sopenharmony_ci if (!bq) 96562306a36Sopenharmony_ci return -ENOMEM; 96662306a36Sopenharmony_ci 96762306a36Sopenharmony_ci bq->client = client; 96862306a36Sopenharmony_ci bq->dev = dev; 96962306a36Sopenharmony_ci 97062306a36Sopenharmony_ci if (ACPI_HANDLE(dev)) { 97162306a36Sopenharmony_ci acpi_id = acpi_match_device(dev->driver->acpi_match_table, 97262306a36Sopenharmony_ci &client->dev); 97362306a36Sopenharmony_ci if (!acpi_id) { 97462306a36Sopenharmony_ci dev_err(dev, "Failed to match ACPI device\n"); 97562306a36Sopenharmony_ci return -ENODEV; 97662306a36Sopenharmony_ci } 97762306a36Sopenharmony_ci bq->chip = (enum bq2425x_chip)acpi_id->driver_data; 97862306a36Sopenharmony_ci } else { 97962306a36Sopenharmony_ci bq->chip = (enum bq2425x_chip)id->driver_data; 98062306a36Sopenharmony_ci } 98162306a36Sopenharmony_ci 98262306a36Sopenharmony_ci mutex_init(&bq->lock); 98362306a36Sopenharmony_ci 98462306a36Sopenharmony_ci bq->rmap = devm_regmap_init_i2c(client, &bq24257_regmap_config); 98562306a36Sopenharmony_ci if (IS_ERR(bq->rmap)) { 98662306a36Sopenharmony_ci dev_err(dev, "failed to allocate register map\n"); 98762306a36Sopenharmony_ci return PTR_ERR(bq->rmap); 98862306a36Sopenharmony_ci } 98962306a36Sopenharmony_ci 99062306a36Sopenharmony_ci for (i = 0; i < ARRAY_SIZE(bq24257_reg_fields); i++) { 99162306a36Sopenharmony_ci const struct reg_field *reg_fields = bq24257_reg_fields; 99262306a36Sopenharmony_ci 99362306a36Sopenharmony_ci bq->rmap_fields[i] = devm_regmap_field_alloc(dev, bq->rmap, 99462306a36Sopenharmony_ci reg_fields[i]); 99562306a36Sopenharmony_ci if (IS_ERR(bq->rmap_fields[i])) { 99662306a36Sopenharmony_ci dev_err(dev, "cannot allocate regmap field\n"); 99762306a36Sopenharmony_ci return PTR_ERR(bq->rmap_fields[i]); 99862306a36Sopenharmony_ci } 99962306a36Sopenharmony_ci } 100062306a36Sopenharmony_ci 100162306a36Sopenharmony_ci i2c_set_clientdata(client, bq); 100262306a36Sopenharmony_ci 100362306a36Sopenharmony_ci if (!dev->platform_data) { 100462306a36Sopenharmony_ci ret = bq24257_fw_probe(bq); 100562306a36Sopenharmony_ci if (ret < 0) { 100662306a36Sopenharmony_ci dev_err(dev, "Cannot read device properties.\n"); 100762306a36Sopenharmony_ci return ret; 100862306a36Sopenharmony_ci } 100962306a36Sopenharmony_ci } else { 101062306a36Sopenharmony_ci return -ENODEV; 101162306a36Sopenharmony_ci } 101262306a36Sopenharmony_ci 101362306a36Sopenharmony_ci /* 101462306a36Sopenharmony_ci * The BQ24250 doesn't support the D+/D- based charger type detection 101562306a36Sopenharmony_ci * used for the automatic setting of the input current limit setting so 101662306a36Sopenharmony_ci * explicitly disable that feature. 101762306a36Sopenharmony_ci */ 101862306a36Sopenharmony_ci if (bq->chip == BQ24250) 101962306a36Sopenharmony_ci bq->iilimit_autoset_enable = false; 102062306a36Sopenharmony_ci 102162306a36Sopenharmony_ci if (bq->iilimit_autoset_enable) 102262306a36Sopenharmony_ci INIT_DELAYED_WORK(&bq->iilimit_setup_work, 102362306a36Sopenharmony_ci bq24257_iilimit_setup_work); 102462306a36Sopenharmony_ci 102562306a36Sopenharmony_ci /* 102662306a36Sopenharmony_ci * The BQ24250 doesn't have a dedicated Power Good (PG) pin so let's 102762306a36Sopenharmony_ci * not probe for it and instead use a SW-based approach to determine 102862306a36Sopenharmony_ci * the PG state. We also use a SW-based approach for all other devices 102962306a36Sopenharmony_ci * if the PG pin is either not defined or can't be probed. 103062306a36Sopenharmony_ci */ 103162306a36Sopenharmony_ci if (bq->chip != BQ24250) 103262306a36Sopenharmony_ci bq24257_pg_gpio_probe(bq); 103362306a36Sopenharmony_ci 103462306a36Sopenharmony_ci if (PTR_ERR(bq->pg) == -EPROBE_DEFER) 103562306a36Sopenharmony_ci return PTR_ERR(bq->pg); 103662306a36Sopenharmony_ci else if (!bq->pg) 103762306a36Sopenharmony_ci dev_info(bq->dev, "using SW-based power-good detection\n"); 103862306a36Sopenharmony_ci 103962306a36Sopenharmony_ci /* reset all registers to defaults */ 104062306a36Sopenharmony_ci ret = bq24257_field_write(bq, F_RESET, 1); 104162306a36Sopenharmony_ci if (ret < 0) 104262306a36Sopenharmony_ci return ret; 104362306a36Sopenharmony_ci 104462306a36Sopenharmony_ci /* 104562306a36Sopenharmony_ci * Put the RESET bit back to 0, in cache. For some reason the HW always 104662306a36Sopenharmony_ci * returns 1 on this bit, so this is the only way to avoid resetting the 104762306a36Sopenharmony_ci * chip every time we update another field in this register. 104862306a36Sopenharmony_ci */ 104962306a36Sopenharmony_ci ret = bq24257_field_write(bq, F_RESET, 0); 105062306a36Sopenharmony_ci if (ret < 0) 105162306a36Sopenharmony_ci return ret; 105262306a36Sopenharmony_ci 105362306a36Sopenharmony_ci ret = bq24257_hw_init(bq); 105462306a36Sopenharmony_ci if (ret < 0) { 105562306a36Sopenharmony_ci dev_err(dev, "Cannot initialize the chip.\n"); 105662306a36Sopenharmony_ci return ret; 105762306a36Sopenharmony_ci } 105862306a36Sopenharmony_ci 105962306a36Sopenharmony_ci ret = bq24257_power_supply_init(bq); 106062306a36Sopenharmony_ci if (ret < 0) { 106162306a36Sopenharmony_ci dev_err(dev, "Failed to register power supply\n"); 106262306a36Sopenharmony_ci return ret; 106362306a36Sopenharmony_ci } 106462306a36Sopenharmony_ci 106562306a36Sopenharmony_ci ret = devm_request_threaded_irq(dev, client->irq, NULL, 106662306a36Sopenharmony_ci bq24257_irq_handler_thread, 106762306a36Sopenharmony_ci IRQF_TRIGGER_FALLING | 106862306a36Sopenharmony_ci IRQF_TRIGGER_RISING | IRQF_ONESHOT, 106962306a36Sopenharmony_ci bq2425x_chip_name[bq->chip], bq); 107062306a36Sopenharmony_ci if (ret) { 107162306a36Sopenharmony_ci dev_err(dev, "Failed to request IRQ #%d\n", client->irq); 107262306a36Sopenharmony_ci return ret; 107362306a36Sopenharmony_ci } 107462306a36Sopenharmony_ci 107562306a36Sopenharmony_ci return 0; 107662306a36Sopenharmony_ci} 107762306a36Sopenharmony_ci 107862306a36Sopenharmony_cistatic void bq24257_remove(struct i2c_client *client) 107962306a36Sopenharmony_ci{ 108062306a36Sopenharmony_ci struct bq24257_device *bq = i2c_get_clientdata(client); 108162306a36Sopenharmony_ci 108262306a36Sopenharmony_ci if (bq->iilimit_autoset_enable) 108362306a36Sopenharmony_ci cancel_delayed_work_sync(&bq->iilimit_setup_work); 108462306a36Sopenharmony_ci 108562306a36Sopenharmony_ci bq24257_field_write(bq, F_RESET, 1); /* reset to defaults */ 108662306a36Sopenharmony_ci} 108762306a36Sopenharmony_ci 108862306a36Sopenharmony_ci#ifdef CONFIG_PM_SLEEP 108962306a36Sopenharmony_cistatic int bq24257_suspend(struct device *dev) 109062306a36Sopenharmony_ci{ 109162306a36Sopenharmony_ci struct bq24257_device *bq = dev_get_drvdata(dev); 109262306a36Sopenharmony_ci int ret = 0; 109362306a36Sopenharmony_ci 109462306a36Sopenharmony_ci if (bq->iilimit_autoset_enable) 109562306a36Sopenharmony_ci cancel_delayed_work_sync(&bq->iilimit_setup_work); 109662306a36Sopenharmony_ci 109762306a36Sopenharmony_ci /* reset all registers to default (and activate standalone mode) */ 109862306a36Sopenharmony_ci ret = bq24257_field_write(bq, F_RESET, 1); 109962306a36Sopenharmony_ci if (ret < 0) 110062306a36Sopenharmony_ci dev_err(bq->dev, "Cannot reset chip to standalone mode.\n"); 110162306a36Sopenharmony_ci 110262306a36Sopenharmony_ci return ret; 110362306a36Sopenharmony_ci} 110462306a36Sopenharmony_ci 110562306a36Sopenharmony_cistatic int bq24257_resume(struct device *dev) 110662306a36Sopenharmony_ci{ 110762306a36Sopenharmony_ci int ret; 110862306a36Sopenharmony_ci struct bq24257_device *bq = dev_get_drvdata(dev); 110962306a36Sopenharmony_ci 111062306a36Sopenharmony_ci ret = regcache_drop_region(bq->rmap, BQ24257_REG_1, BQ24257_REG_7); 111162306a36Sopenharmony_ci if (ret < 0) 111262306a36Sopenharmony_ci return ret; 111362306a36Sopenharmony_ci 111462306a36Sopenharmony_ci ret = bq24257_field_write(bq, F_RESET, 0); 111562306a36Sopenharmony_ci if (ret < 0) 111662306a36Sopenharmony_ci return ret; 111762306a36Sopenharmony_ci 111862306a36Sopenharmony_ci ret = bq24257_hw_init(bq); 111962306a36Sopenharmony_ci if (ret < 0) { 112062306a36Sopenharmony_ci dev_err(bq->dev, "Cannot init chip after resume.\n"); 112162306a36Sopenharmony_ci return ret; 112262306a36Sopenharmony_ci } 112362306a36Sopenharmony_ci 112462306a36Sopenharmony_ci /* signal userspace, maybe state changed while suspended */ 112562306a36Sopenharmony_ci power_supply_changed(bq->charger); 112662306a36Sopenharmony_ci 112762306a36Sopenharmony_ci return 0; 112862306a36Sopenharmony_ci} 112962306a36Sopenharmony_ci#endif 113062306a36Sopenharmony_ci 113162306a36Sopenharmony_cistatic const struct dev_pm_ops bq24257_pm = { 113262306a36Sopenharmony_ci SET_SYSTEM_SLEEP_PM_OPS(bq24257_suspend, bq24257_resume) 113362306a36Sopenharmony_ci}; 113462306a36Sopenharmony_ci 113562306a36Sopenharmony_cistatic const struct i2c_device_id bq24257_i2c_ids[] = { 113662306a36Sopenharmony_ci { "bq24250", BQ24250 }, 113762306a36Sopenharmony_ci { "bq24251", BQ24251 }, 113862306a36Sopenharmony_ci { "bq24257", BQ24257 }, 113962306a36Sopenharmony_ci {}, 114062306a36Sopenharmony_ci}; 114162306a36Sopenharmony_ciMODULE_DEVICE_TABLE(i2c, bq24257_i2c_ids); 114262306a36Sopenharmony_ci 114362306a36Sopenharmony_cistatic const struct of_device_id bq24257_of_match[] __maybe_unused = { 114462306a36Sopenharmony_ci { .compatible = "ti,bq24250", }, 114562306a36Sopenharmony_ci { .compatible = "ti,bq24251", }, 114662306a36Sopenharmony_ci { .compatible = "ti,bq24257", }, 114762306a36Sopenharmony_ci { }, 114862306a36Sopenharmony_ci}; 114962306a36Sopenharmony_ciMODULE_DEVICE_TABLE(of, bq24257_of_match); 115062306a36Sopenharmony_ci 115162306a36Sopenharmony_ci#ifdef CONFIG_ACPI 115262306a36Sopenharmony_cistatic const struct acpi_device_id bq24257_acpi_match[] = { 115362306a36Sopenharmony_ci { "BQ242500", BQ24250 }, 115462306a36Sopenharmony_ci { "BQ242510", BQ24251 }, 115562306a36Sopenharmony_ci { "BQ242570", BQ24257 }, 115662306a36Sopenharmony_ci {}, 115762306a36Sopenharmony_ci}; 115862306a36Sopenharmony_ciMODULE_DEVICE_TABLE(acpi, bq24257_acpi_match); 115962306a36Sopenharmony_ci#endif 116062306a36Sopenharmony_ci 116162306a36Sopenharmony_cistatic struct i2c_driver bq24257_driver = { 116262306a36Sopenharmony_ci .driver = { 116362306a36Sopenharmony_ci .name = "bq24257-charger", 116462306a36Sopenharmony_ci .of_match_table = of_match_ptr(bq24257_of_match), 116562306a36Sopenharmony_ci .acpi_match_table = ACPI_PTR(bq24257_acpi_match), 116662306a36Sopenharmony_ci .pm = &bq24257_pm, 116762306a36Sopenharmony_ci }, 116862306a36Sopenharmony_ci .probe = bq24257_probe, 116962306a36Sopenharmony_ci .remove = bq24257_remove, 117062306a36Sopenharmony_ci .id_table = bq24257_i2c_ids, 117162306a36Sopenharmony_ci}; 117262306a36Sopenharmony_cimodule_i2c_driver(bq24257_driver); 117362306a36Sopenharmony_ci 117462306a36Sopenharmony_ciMODULE_AUTHOR("Laurentiu Palcu <laurentiu.palcu@intel.com>"); 117562306a36Sopenharmony_ciMODULE_DESCRIPTION("bq24257 charger driver"); 117662306a36Sopenharmony_ciMODULE_LICENSE("GPL"); 1177