#include #include #include #include &qupv3_se4_2uart { status = "ok"; }; &usb0 { extcon = <&pmi632_charger>, <&eud>; }; &sdhc_1 { vdd-supply = <&pm6125_l24>; qcom,vdd-voltage-level = <2950000 2950000>; qcom,vdd-current-level = <0 570000>; vdd-io-supply = <&pm6125_l11>; qcom,vdd-io-always-on; qcom,vdd-io-lpm-sup; qcom,vdd-io-voltage-level = <1800000 1800000>; qcom,vdd-io-current-level = <0 325000>; pinctrl-names = "active", "sleep"; pinctrl-0 = <&sdc1_clk_on &sdc1_cmd_on &sdc1_data_on &sdc1_rclk_on>; pinctrl-1 = <&sdc1_clk_off &sdc1_cmd_off &sdc1_data_off &sdc1_rclk_off>; status = "ok"; }; &qupv3_se1_i2c { status = "ok"; #include "smb1355.dtsi" }; &soc { mtp_batterydata: qcom,battery-data { qcom,batt-id-range-pct = <15>; #include "qg-batterydata-ascent-3450mah.dtsi" #include "qg-batterydata-mlp356477-2800mah.dtsi" }; }; &pm6125_vadc { rf_pa1_therm { reg = ; label = "rf_pa1_therm"; qcom,ratiometric; qcom,hw-settle-time = <200>; qcom,pre-scaling = <1 1>; }; }; &pm6125_adc_tm { io-channels = <&pm6125_vadc ADC5_AMUX_THM1_100K_PU>, <&pm6125_vadc ADC5_AMUX_THM2_100K_PU>, <&pm6125_vadc ADC5_XO_THERM_100K_PU>, <&pm6125_vadc ADC5_GPIO4_100K_PU>; rf_pa1_therm { reg = <3>; io-channels = <&pm6125_vadc ADC5_GPIO4_100K_PU>; qcom,ratiometric; qcom,hw-settle-time = <200>; }; }; &thermal_zones { rf-pa1-therm-adc { polling-delay-passive = <0>; polling-delay = <0>; thermal-governor = "user_space"; thermal-sensors = <&pm6125_adc_tm 3>; wake-capable-sensor; trips { active-config0 { temperature = <125000>; hysteresis = <1000>; type = "passive"; }; }; }; }; &pmi632_qg { status = "ok"; #io-channel-cells = <1>; io-channels = <&pmi632_vadc ADC5_BAT_THERM_100K_PU>, <&pmi632_vadc ADC5_BAT_ID_100K_PU>, <&pmi632_charger PSY_IIO_INPUT_CURRENT_LIMITED>, <&pmi632_charger PSY_IIO_RECHARGE_SOC>, <&pmi632_charger PSY_IIO_FORCE_RECHARGE>, <&pmi632_charger PSY_IIO_CHARGE_DONE>; io-channel-names = "batt-therm", "batt-id", "input_current_limited", "recharge_soc", "force_recharge", "charge_done", "cp_charging_enabled"; qcom,battery-data = <&mtp_batterydata>; qcom,qg-iterm-ma = <100>; qcom,hold-soc-while-full; qcom,linearize-soc; qcom,qg-use-s7-ocv; }; &pmi632_charger { status = "ok"; #io-channel-cells = <1>; io-channels = <&pmi632_qg PSY_IIO_RESISTANCE_ID>, <&pmi632_qg PSY_IIO_VOLTAGE_NOW>, <&pmi632_qg PSY_IIO_TEMP>, <&pmi632_qg PSY_IIO_CAPACITY>, <&pmi632_qg PSY_IIO_VOLTAGE_OCV>, <&pmi632_qg PSY_IIO_VOLTAGE_AVG>, <&pmi632_qg PSY_IIO_DEBUG_BATTERY>, <&pmi632_qg PSY_IIO_REAL_CAPACITY>, <&pmi632_qg PSY_IIO_CC_SOC>, <&pmi632_qg PSY_IIO_CURRENT_NOW>, <&pmi632_qg PSY_IIO_VOLTAGE_MAX>, <&pmi632_qg PSY_IIO_CHARGE_FULL>, <&pmi632_qg PSY_IIO_CHARGE_COUNTER>, <&pmi632_qg PSY_IIO_CYCLE_COUNT>, <&pmi632_qg PSY_IIO_CHARGE_FULL_DESIGN>, <&pmi632_qg PSY_IIO_TIME_TO_FULL_NOW>; io-channel-names = "resistance_id", "voltage_now", "temp", "capacity", "voltage_ocv", "voltage_avg", "debug_battery", "real_capacity", "cc_soc", "current_now", "voltage_max", "charge_full", "charge_counter", "cycle_count", "charge_full_design", "time_to_full_now"; qcom,battery-data = <&mtp_batterydata>; qcom,suspend-input-on-debug-batt; qcom,sw-jeita-enable; qcom,step-charging-enable; /* SMB1355 only */ qcom,sec-charger-config = <2>; qcom,hvdcp2-max-icl-ua = <2000000>; dpdm-supply = <&qusb_phy0>; qcom,charger-temp-max = <800>; qcom,smb-temp-max = <800>; qcom,auto-recharge-soc = <98>; qcom,flash-disable-soc = <10>; qcom,hw-die-temp-mitigation; qcom,hw-connector-mitigation; qcom,connector-internal-pull-kohm = <100>; qcom,float-option = <1>; qcom,thermal-mitigation = <3000000 2500000 2000000 1500000 1000000 500000>; }; &pmi632_gpios { smb_en { smb_en_default: smb_en_default { pins = "gpio2"; function = "func1"; output-enable; }; }; pmi632_sense { /* GPIO 7 and 8 are external-sense pins for PMI632 */ pmi632_sense_default: pmi632_sense_default { pins = "gpio7", "gpio8"; bias-high-impedance; /* disable the GPIO */ bias-disable; /* no-pull */ }; }; pmi632_ctm { /* Disable GPIO1 for h/w base mitigation */ pmi632_ctm_default: pmi632_ctm_default { pins = "gpio1"; bias-high-impedance; /* disable the GPIO */ bias-disable; /* no-pull */ }; }; }; &pm6125_gpios { key_vol_up { key_vol_up_default: key_vol_up_default { pins = "gpio5"; function = "normal"; input-enable; bias-pull-up; power-source = <0>; }; }; }; &soc { gpio_keys { compatible = "gpio-keys"; label = "gpio-keys"; pinctrl-names = "default"; pinctrl-0 = <&key_vol_up_default>; vol_up { label = "volume_up"; gpios = <&pm6125_gpios 5 GPIO_ACTIVE_LOW>; linux,input-type = <1>; linux,code = ; linux,can-disable; debounce-interval = <15>; gpio-key,wakeup; }; }; }; &tlmm { smb_int_default: smb_int_default { mux { pins = "gpio130"; function = "gpio"; }; config { pins = "gpio130"; bias-pull-up; input-enable; }; }; }; &smb1355 { pinctrl-names = "default"; pinctrl-0 = <&smb_int_default>; interrupt-parent = <&tlmm>; interrupts = <130 IRQ_TYPE_LEVEL_LOW>; status = "ok"; }; &smb1355_charger { pinctrl-names = "default"; pinctrl-0 = <&smb_en_default &pmi632_sense_default &pmi632_ctm_default>; qcom,parallel-mode = <1>; qcom,disable-ctm; qcom,hw-die-temp-mitigation; status = "ok"; }; &pm6125_pwm { status = "ok"; }; &sdhc_2 { vdd-supply = <&pm6125_l22>; qcom,vdd-voltage-level = <2950000 2950000>; qcom,vdd-current-level = <0 800000>; vdd-io-supply = <&pm6125_l5>; qcom,vdd-io-voltage-level = <1800000 2950000>; qcom,vdd-io-current-level = <0 22000>; pinctrl-names = "active", "sleep"; pinctrl-0 = <&sdc2_clk_on &sdc2_cmd_on &sdc2_data_on &sdc2_cd_on>; pinctrl-1 = <&sdc2_clk_off &sdc2_cmd_off &sdc2_data_off &sdc2_cd_off>; cd-gpios = <&tlmm 98 GPIO_ACTIVE_LOW>; status = "ok"; }; &qupv3_se1_i2c { status = "ok"; #include "pm8008.dtsi" }; &tlmm { pm8008_active: pm8008_active { mux { pins = "gpio49"; function = "gpio"; }; config { pins = "gpio49"; bias-pull-up; output-high; drive-strength = <2>; }; }; }; &pm8008_chip { pinctrl-names = "default"; pinctrl-0 = <&pm8008_active>; }; &pm8008_regulators { vdd_l1_l2-supply = <&S6A>; }; &pm8008_9 { pinctrl-names = "default"; pinctrl-0 = <&pm8008_gpio1_active>; }; &L1P { regulator-max-microvolt = <1200000>; qcom,min-dropout-voltage = <100000>; }; &L2P { regulator-max-microvolt = <1104000>; qcom,min-dropout-voltage = <100000>; }; &L3P { regulator-min-microvolt = <2800000>; regulator-max-microvolt = <2800000>; }; &L4P { regulator-min-microvolt = <2800000>; regulator-max-microvolt = <2800000>; }; &L5P { regulator-min-microvolt = <2800000>; regulator-max-microvolt = <2800000>; }; &L6P { regulator-min-microvolt = <3000000>; regulator-max-microvolt = <3000000>; }; &L7P { regulator-min-microvolt = <3000000>; regulator-max-microvolt = <3000000>; }; &ufsphy_mem { compatible = "qcom,ufs-phy-qmp-v3-660"; vdda-phy-supply = <&pm6125_l4>; /* 0.9v */ vdda-pll-supply = <&pm6125_l10>; /* 1.8v */ vdda-phy-max-microamp = <51400>; vdda-pll-max-microamp = <14200>; status = "ok"; }; &ufshc_mem { vdd-hba-supply = <&ufs_phy_gdsc>; vcc-supply = <&pm6125_l24>; vcc-voltage-level = <2950000 2960000>; vccq2-supply = <&pm6125_l11>; vcc-max-microamp = <600000>; vccq2-max-microamp = <600000>; qcom,vddp-ref-clk-supply = <&pm6125_l18>; qcom,vddp-ref-clk-max-microamp = <100>; qcom,vddp-ref-clk-min-uV = <1200000>; qcom,vddp-ref-clk-max-uV = <1232000>; status = "ok"; };