forked from luck/tmp_suning_uos_patched
DT: iio: vadc: document dt binding
Document DT binding for Qualcomm SPMI PMIC voltage ADC driver. Signed-off-by: Stanimir Varbanov <svarbanov@mm-sol.com> Signed-off-by: Ivan T. Ivanov <iivanov@mm-sol.com> Signed-off-by: Jonathan Cameron <jic23@kernel.org>
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Documentation/devicetree/bindings/iio/adc/qcom,spmi-vadc.txt
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Documentation/devicetree/bindings/iio/adc/qcom,spmi-vadc.txt
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Qualcomm's SPMI PMIC voltage ADC
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SPMI PMIC voltage ADC (VADC) provides interface to clients to read
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voltage. The VADC is a 15-bit sigma-delta ADC.
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VADC node:
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- compatible:
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Usage: required
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Value type: <string>
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Definition: Should contain "qcom,spmi-vadc".
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- reg:
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Usage: required
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Value type: <prop-encoded-array>
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Definition: VADC base address and length in the SPMI PMIC register map.
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- #address-cells:
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Usage: required
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Value type: <u32>
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Definition: Must be one. Child node 'reg' property should define ADC
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channel number.
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- #size-cells:
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Usage: required
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Value type: <u32>
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Definition: Must be zero.
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- #io-channel-cells:
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Usage: required
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Value type: <u32>
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Definition: Must be one. For details about IIO bindings see:
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Documentation/devicetree/bindings/iio/iio-bindings.txt
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- interrupts:
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Usage: optional
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Value type: <prop-encoded-array>
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Definition: End of conversion interrupt.
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Channel node properties:
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- reg:
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Usage: required
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Value type: <u32>
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Definition: ADC channel number.
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See include/dt-bindings/iio/qcom,spmi-vadc.h
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- qcom,decimation:
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Usage: optional
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Value type: <u32>
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Definition: This parameter is used to decrease ADC sampling rate.
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Quicker measurements can be made by reducing decimation ratio.
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Valid values are 512, 1024, 2048, 4096.
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If property is not found, default value of 512 will be used.
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- qcom,pre-scaling:
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Usage: optional
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Value type: <u32 array>
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Definition: Used for scaling the channel input signal before the signal is
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fed to VADC. The configuration for this node is to know the
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pre-determined ratio and use it for post scaling. Select one from
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the following options.
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<1 1>, <1 3>, <1 4>, <1 6>, <1 20>, <1 8>, <10 81>, <1 10>
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If property is not found default value depending on chip will be used.
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- qcom,ratiometric:
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Usage: optional
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Value type: <empty>
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Definition: Channel calibration type. If this property is specified
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VADC will use the VDD reference (1.8V) and GND for channel
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calibration. If property is not found, channel will be
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calibrated with 0.625V and 1.25V reference channels, also
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known as absolute calibration.
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- qcom,hw-settle-time:
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Usage: optional
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Value type: <u32>
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Definition: Time between AMUX getting configured and the ADC starting
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conversion. Delay = 100us * (value) for value < 11, and
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2ms * (value - 10) otherwise.
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Valid values are: 0, 100, 200, 300, 400, 500, 600, 700, 800,
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900 us and 1, 2, 4, 6, 8, 10 ms
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If property is not found, channel will use 0us.
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- qcom,avg-samples:
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Usage: optional
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Value type: <u32>
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Definition: Number of samples to be used for measurement.
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Averaging provides the option to obtain a single measurement
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from the ADC that is an average of multiple samples. The value
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selected is 2^(value).
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Valid values are: 1, 2, 4, 8, 16, 32, 64, 128, 256, 512
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If property is not found, 1 sample will be used.
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NOTE:
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Following channels, also known as reference point channels, are used for
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result calibration and their channel configuration nodes should be defined:
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VADC_REF_625MV and/or VADC_SPARE1(based on PMIC version) VADC_REF_1250MV,
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VADC_GND_REF and VADC_VDD_VADC.
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Example:
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/* VADC node */
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pmic_vadc: vadc@3100 {
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compatible = "qcom,spmi-vadc";
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reg = <0x3100 0x100>;
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interrupts = <0x0 0x31 0x0 IRQ_TYPE_EDGE_RISING>;
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#address-cells = <1>;
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#size-cells = <0>;
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#io-channel-cells = <1>;
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io-channel-ranges;
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/* Channel node */
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usb_id_nopull {
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reg = <VADC_LR_MUX10_USB_ID>;
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qcom,decimation = <512>;
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qcom,ratiometric;
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qcom,hw-settle-time = <200>;
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qcom,avg-samples = <1>;
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qcom,pre-scaling = <1 3>;
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};
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};
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/* IIO client node */
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usb {
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io-channels = <&pmic_vadc VADC_LR_MUX10_USB_ID>;
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io-channel-names = "vadc";
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};
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include/dt-bindings/iio/qcom,spmi-vadc.h
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include/dt-bindings/iio/qcom,spmi-vadc.h
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/*
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* Copyright (c) 2012-2014, The Linux Foundation. All rights reserved.
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License version 2 and
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* only version 2 as published by the Free Software Foundation.
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*
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* This program is distributed in the hope that it will be useful
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*/
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#ifndef _DT_BINDINGS_QCOM_SPMI_VADC_H
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#define _DT_BINDINGS_QCOM_SPMI_VADC_H
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/* Voltage ADC channels */
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#define VADC_USBIN 0x00
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#define VADC_DCIN 0x01
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#define VADC_VCHG_SNS 0x02
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#define VADC_SPARE1_03 0x03
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#define VADC_USB_ID_MV 0x04
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#define VADC_VCOIN 0x05
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#define VADC_VBAT_SNS 0x06
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#define VADC_VSYS 0x07
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#define VADC_DIE_TEMP 0x08
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#define VADC_REF_625MV 0x09
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#define VADC_REF_1250MV 0x0a
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#define VADC_CHG_TEMP 0x0b
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#define VADC_SPARE1 0x0c
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#define VADC_SPARE2 0x0d
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#define VADC_GND_REF 0x0e
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#define VADC_VDD_VADC 0x0f
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#define VADC_P_MUX1_1_1 0x10
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#define VADC_P_MUX2_1_1 0x11
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#define VADC_P_MUX3_1_1 0x12
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#define VADC_P_MUX4_1_1 0x13
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#define VADC_P_MUX5_1_1 0x14
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#define VADC_P_MUX6_1_1 0x15
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#define VADC_P_MUX7_1_1 0x16
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#define VADC_P_MUX8_1_1 0x17
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#define VADC_P_MUX9_1_1 0x18
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#define VADC_P_MUX10_1_1 0x19
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#define VADC_P_MUX11_1_1 0x1a
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#define VADC_P_MUX12_1_1 0x1b
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#define VADC_P_MUX13_1_1 0x1c
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#define VADC_P_MUX14_1_1 0x1d
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#define VADC_P_MUX15_1_1 0x1e
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#define VADC_P_MUX16_1_1 0x1f
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#define VADC_P_MUX1_1_3 0x20
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#define VADC_P_MUX2_1_3 0x21
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#define VADC_P_MUX3_1_3 0x22
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#define VADC_P_MUX4_1_3 0x23
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#define VADC_P_MUX5_1_3 0x24
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#define VADC_P_MUX6_1_3 0x25
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#define VADC_P_MUX7_1_3 0x26
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#define VADC_P_MUX8_1_3 0x27
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#define VADC_P_MUX9_1_3 0x28
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#define VADC_P_MUX10_1_3 0x29
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#define VADC_P_MUX11_1_3 0x2a
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#define VADC_P_MUX12_1_3 0x2b
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#define VADC_P_MUX13_1_3 0x2c
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#define VADC_P_MUX14_1_3 0x2d
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#define VADC_P_MUX15_1_3 0x2e
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#define VADC_P_MUX16_1_3 0x2f
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#define VADC_LR_MUX1_BAT_THERM 0x30
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#define VADC_LR_MUX2_BAT_ID 0x31
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#define VADC_LR_MUX3_XO_THERM 0x32
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#define VADC_LR_MUX4_AMUX_THM1 0x33
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#define VADC_LR_MUX5_AMUX_THM2 0x34
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#define VADC_LR_MUX6_AMUX_THM3 0x35
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#define VADC_LR_MUX7_HW_ID 0x36
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#define VADC_LR_MUX8_AMUX_THM4 0x37
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#define VADC_LR_MUX9_AMUX_THM5 0x38
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#define VADC_LR_MUX10_USB_ID 0x39
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#define VADC_AMUX_PU1 0x3a
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#define VADC_AMUX_PU2 0x3b
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#define VADC_LR_MUX3_BUF_XO_THERM 0x3c
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#define VADC_LR_MUX1_PU1_BAT_THERM 0x70
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#define VADC_LR_MUX2_PU1_BAT_ID 0x71
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#define VADC_LR_MUX3_PU1_XO_THERM 0x72
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#define VADC_LR_MUX4_PU1_AMUX_THM1 0x73
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#define VADC_LR_MUX5_PU1_AMUX_THM2 0x74
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#define VADC_LR_MUX6_PU1_AMUX_THM3 0x75
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#define VADC_LR_MUX7_PU1_AMUX_HW_ID 0x76
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#define VADC_LR_MUX8_PU1_AMUX_THM4 0x77
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#define VADC_LR_MUX9_PU1_AMUX_THM5 0x78
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#define VADC_LR_MUX10_PU1_AMUX_USB_ID 0x79
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#define VADC_LR_MUX3_BUF_PU1_XO_THERM 0x7c
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#define VADC_LR_MUX1_PU2_BAT_THERM 0xb0
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#define VADC_LR_MUX2_PU2_BAT_ID 0xb1
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#define VADC_LR_MUX3_PU2_XO_THERM 0xb2
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#define VADC_LR_MUX4_PU2_AMUX_THM1 0xb3
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#define VADC_LR_MUX5_PU2_AMUX_THM2 0xb4
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#define VADC_LR_MUX6_PU2_AMUX_THM3 0xb5
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#define VADC_LR_MUX7_PU2_AMUX_HW_ID 0xb6
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#define VADC_LR_MUX8_PU2_AMUX_THM4 0xb7
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#define VADC_LR_MUX9_PU2_AMUX_THM5 0xb8
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#define VADC_LR_MUX10_PU2_AMUX_USB_ID 0xb9
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#define VADC_LR_MUX3_BUF_PU2_XO_THERM 0xbc
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#define VADC_LR_MUX1_PU1_PU2_BAT_THERM 0xf0
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#define VADC_LR_MUX2_PU1_PU2_BAT_ID 0xf1
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#define VADC_LR_MUX3_PU1_PU2_XO_THERM 0xf2
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#define VADC_LR_MUX4_PU1_PU2_AMUX_THM1 0xf3
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#define VADC_LR_MUX5_PU1_PU2_AMUX_THM2 0xf4
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#define VADC_LR_MUX6_PU1_PU2_AMUX_THM3 0xf5
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#define VADC_LR_MUX7_PU1_PU2_AMUX_HW_ID 0xf6
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#define VADC_LR_MUX8_PU1_PU2_AMUX_THM4 0xf7
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#define VADC_LR_MUX9_PU1_PU2_AMUX_THM5 0xf8
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#define VADC_LR_MUX10_PU1_PU2_AMUX_USB_ID 0xf9
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#define VADC_LR_MUX3_BUF_PU1_PU2_XO_THERM 0xfc
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#endif /* _DT_BINDINGS_QCOM_SPMI_VADC_H */
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