soc/mediatek/mt8195: modify mt6360 interface
With the new definition of mt6360_regulator_id, merge the MT6360 LDO and PMIC interfaces into one. Signed-off-by: Rex-BC Chen <rex-bc.chen@mediatek.com> Change-Id: I7ccc32cb0a9481d5f55349c152267a44fe09d20a Reviewed-on: https://review.coreboot.org/c/coreboot/+/56435 Tested-by: build bot (Jenkins) <no-reply@coreboot.org> Reviewed-by: Hung-Te Lin <hungte@chromium.org> Reviewed-by: Yu-Ping Wu <yupingso@google.com>
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@ -127,8 +127,8 @@ static void configure_sdcard(void)
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mtk_i2c_bus_init(7);
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mt6360_init(7);
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mt6360_ldo_enable(MT6360_LDO3, 1);
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mt6360_ldo_enable(MT6360_LDO5, 1);
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mt6360_enable(MT6360_LDO3, 1);
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mt6360_enable(MT6360_LDO5, 1);
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}
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/* Set up backlight control pins as output pin and power-off by default */
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@ -57,7 +57,7 @@ void mainboard_set_regulator_vol(enum mtk_regulator regulator,
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id = get_mt6360_regulator_id(regulator);
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if (id >= 0) {
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mt6360_pmic_set_voltage(id, voltage_uv);
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mt6360_set_voltage(id, voltage_uv);
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return;
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}
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@ -85,7 +85,7 @@ uint32_t mainboard_get_regulator_vol(enum mtk_regulator regulator)
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id = get_mt6360_regulator_id(regulator);
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if (id >= 0)
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return mt6360_pmic_get_voltage(id);
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return mt6360_get_voltage(id);
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id = get_mt6359p_regulator_id(regulator);
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if (id >= 0)
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@ -113,7 +113,7 @@ int mainboard_enable_regulator(enum mtk_regulator regulator, uint8_t enable)
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id = get_mt6360_regulator_id(regulator);
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if (id >= 0) {
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mt6360_pmic_enable(id, enable);
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mt6360_enable(id, enable);
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return 0;
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}
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@ -131,7 +131,7 @@ uint8_t mainboard_regulator_is_enabled(enum mtk_regulator regulator)
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id = get_mt6360_regulator_id(regulator);
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if (id >= 0)
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return mt6360_pmic_is_enabled(id);
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return mt6360_is_enabled(id);
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printk(BIOS_ERR,
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"Failed to query regulator ID: %d\n; assuming disabled",
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@ -55,15 +55,9 @@ struct mt6360_data {
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};
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void mt6360_init(uint8_t bus);
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void mt6360_ldo_enable(enum mt6360_regulator_id id, uint8_t enable);
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uint8_t mt6360_ldo_is_enabled(enum mt6360_regulator_id id);
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void mt6360_ldo_set_voltage(enum mt6360_regulator_id id, u32 voltage_uv);
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u32 mt6360_ldo_get_voltage(enum mt6360_regulator_id id);
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void mt6360_pmic_enable(enum mt6360_regulator_id id, uint8_t enable);
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uint8_t mt6360_pmic_is_enabled(enum mt6360_regulator_id id);
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void mt6360_pmic_set_voltage(enum mt6360_regulator_id id, u32 voltage_uv);
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u32 mt6360_pmic_get_voltage(enum mt6360_regulator_id id);
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void mt6360_enable(enum mt6360_regulator_id id, uint8_t enable);
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uint8_t mt6360_is_enabled(enum mt6360_regulator_id id);
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void mt6360_set_voltage(enum mt6360_regulator_id id, u32 voltage_uv);
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u32 mt6360_get_voltage(enum mt6360_regulator_id id);
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#endif
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@ -195,7 +195,7 @@ static bool is_valid_pmic(enum mt6360_regulator_id id)
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return true;
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}
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void mt6360_ldo_enable(enum mt6360_regulator_id id, uint8_t enable)
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static void mt6360_ldo_enable(enum mt6360_regulator_id id, uint8_t enable)
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{
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u8 val;
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const struct mt6360_data *data;
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@ -216,7 +216,7 @@ void mt6360_ldo_enable(enum mt6360_regulator_id id, uint8_t enable)
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mt6360_config_interface(MT6360_INDEX_LDO, data->enable_reg, val, 0xff, 0);
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}
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uint8_t mt6360_ldo_is_enabled(enum mt6360_regulator_id id)
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static uint8_t mt6360_ldo_is_enabled(enum mt6360_regulator_id id)
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{
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u8 val;
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const struct mt6360_data *data;
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@ -232,7 +232,7 @@ uint8_t mt6360_ldo_is_enabled(enum mt6360_regulator_id id)
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return (val & data->enable_mask) ? 1 : 0;
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}
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void mt6360_ldo_set_voltage(enum mt6360_regulator_id id, u32 voltage_uv)
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static void mt6360_ldo_set_voltage(enum mt6360_regulator_id id, u32 voltage_uv)
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{
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u8 val = 0;
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u32 voltage_uv_temp = 0;
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@ -270,7 +270,7 @@ void mt6360_ldo_set_voltage(enum mt6360_regulator_id id, u32 voltage_uv)
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mt6360_config_interface(MT6360_INDEX_LDO, data->vsel_reg, val, 0xff, 0);
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}
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u32 mt6360_ldo_get_voltage(enum mt6360_regulator_id id)
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static u32 mt6360_ldo_get_voltage(enum mt6360_regulator_id id)
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{
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u8 val;
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u32 voltage_uv;
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@ -297,6 +297,89 @@ u32 mt6360_ldo_get_voltage(enum mt6360_regulator_id id)
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return voltage_uv;
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}
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static void mt6360_pmic_enable(enum mt6360_regulator_id id, uint8_t enable)
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{
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u8 val;
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const struct mt6360_data *data;
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if (!is_valid_pmic(id))
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return;
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data = ®ulator_data[id];
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if (mt6360_read_interface(MT6360_INDEX_PMIC, data->enable_reg, &val, 0xff, 0) < 0)
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return;
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if (enable)
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val |= data->enable_mask;
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else
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val &= ~(data->enable_mask);
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mt6360_config_interface(MT6360_INDEX_PMIC, data->enable_reg, val, 0xff, 0);
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}
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static uint8_t mt6360_pmic_is_enabled(enum mt6360_regulator_id id)
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{
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u8 val;
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const struct mt6360_data *data;
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if (!is_valid_pmic(id))
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return 0;
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data = ®ulator_data[id];
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if (mt6360_read_interface(MT6360_INDEX_PMIC, data->enable_reg, &val, 0xff, 0) < 0)
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return 0;
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return (val & data->enable_mask) ? 1 : 0;
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}
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static void mt6360_pmic_set_voltage(enum mt6360_regulator_id id, u32 voltage_uv)
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{
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u8 val = 0;
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const struct mt6360_data *data;
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if (!is_valid_pmic(id))
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return;
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data = ®ulator_data[id];
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if (id == MT6360_BUCK1 || id == MT6360_BUCK2) {
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val = (voltage_uv - 300000) / 5000;
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} else if (id == MT6360_LDO6 || id == MT6360_LDO7) {
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val = (((voltage_uv - 500000) / 100000) << 4);
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val += (((voltage_uv - 500000) % 100000) / 10000);
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}
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mt6360_config_interface(MT6360_INDEX_PMIC, data->vsel_reg, val, 0xff, 0);
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}
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static u32 mt6360_pmic_get_voltage(enum mt6360_regulator_id id)
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{
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u8 val;
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u32 voltage_uv = 0;
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const struct mt6360_data *data;
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if (!is_valid_pmic(id))
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return 0;
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data = ®ulator_data[id];
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if (mt6360_read_interface(MT6360_INDEX_PMIC, data->vsel_reg, &val, 0xff, 0) < 0)
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return 0;
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if (id == MT6360_BUCK1 || id == MT6360_BUCK2) {
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voltage_uv = 300000 + val * 5000;
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} else if (id == MT6360_LDO6 || id == MT6360_LDO7) {
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voltage_uv = 500000 + 100000 * (val >> 4);
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voltage_uv += MIN(val & 0xf, 0xa) * 10000;
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}
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return voltage_uv;
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}
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void mt6360_init(uint8_t bus)
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{
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u8 delay01, delay02, delay03, delay04;
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@ -321,85 +404,38 @@ void mt6360_init(uint8_t bus)
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__func__, delay01, delay02, delay03, delay04);
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}
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void mt6360_pmic_enable(enum mt6360_regulator_id id, uint8_t enable)
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void mt6360_enable(enum mt6360_regulator_id id, uint8_t enable)
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{
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u8 val;
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const struct mt6360_data *data;
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if (is_valid_ldo(id))
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mt6360_ldo_enable(id, enable);
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else if (is_valid_pmic(id))
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mt6360_pmic_enable(id, enable);
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}
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if (!is_valid_pmic(id))
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return;
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data = ®ulator_data[id];
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if (mt6360_read_interface(MT6360_INDEX_PMIC, data->enable_reg, &val, 0xff, 0) < 0)
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return;
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if (enable)
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val |= data->enable_mask;
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uint8_t mt6360_is_enabled(enum mt6360_regulator_id id)
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{
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if (is_valid_ldo(id))
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return mt6360_ldo_is_enabled(id);
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else if (is_valid_pmic(id))
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return mt6360_pmic_is_enabled(id);
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else
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val &= ~(data->enable_mask);
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mt6360_config_interface(MT6360_INDEX_PMIC, data->enable_reg, val, 0xff, 0);
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return 0;
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}
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uint8_t mt6360_pmic_is_enabled(enum mt6360_regulator_id id)
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void mt6360_set_voltage(enum mt6360_regulator_id id, u32 voltage_uv)
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{
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u8 val;
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const struct mt6360_data *data;
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if (!is_valid_pmic(id))
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return 0;
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data = ®ulator_data[id];
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if (mt6360_read_interface(MT6360_INDEX_PMIC, data->enable_reg, &val, 0xff, 0) < 0)
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return 0;
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return (val & data->enable_mask) ? 1 : 0;
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if (is_valid_ldo(id))
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mt6360_ldo_set_voltage(id, voltage_uv);
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else if (is_valid_pmic(id))
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mt6360_pmic_set_voltage(id, voltage_uv);
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}
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void mt6360_pmic_set_voltage(enum mt6360_regulator_id id, u32 voltage_uv)
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u32 mt6360_get_voltage(enum mt6360_regulator_id id)
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{
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u8 val = 0;
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const struct mt6360_data *data;
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if (!is_valid_pmic(id))
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return;
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data = ®ulator_data[id];
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if (id == MT6360_BUCK1 || id == MT6360_BUCK2) {
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val = (voltage_uv - 300000) / 5000;
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} else if (id == MT6360_LDO6 || id == MT6360_LDO7) {
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val = (((voltage_uv - 500000) / 100000) << 4);
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val += (((voltage_uv - 500000) % 100000) / 10000);
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}
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mt6360_config_interface(MT6360_INDEX_PMIC, data->vsel_reg, val, 0xff, 0);
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}
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u32 mt6360_pmic_get_voltage(enum mt6360_regulator_id id)
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{
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u8 val;
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u32 voltage_uv = 0;
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const struct mt6360_data *data;
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if (!is_valid_pmic(id))
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if (is_valid_ldo(id))
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return mt6360_ldo_get_voltage(id);
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else if (is_valid_pmic(id))
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return mt6360_pmic_get_voltage(id);
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else
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return 0;
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data = ®ulator_data[id];
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if (mt6360_read_interface(MT6360_INDEX_PMIC, data->vsel_reg, &val, 0xff, 0) < 0)
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return 0;
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if (id == MT6360_BUCK1 || id == MT6360_BUCK2) {
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voltage_uv = 300000 + val * 5000;
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} else if (id == MT6360_LDO6 || id == MT6360_LDO7) {
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voltage_uv = 500000 + 100000 * (val >> 4);
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voltage_uv += MIN(val & 0xf, 0xa) * 10000;
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}
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return voltage_uv;
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}
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