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https://github.com/AuxXxilium/linux_dsm_epyc7002.git
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ea7e586bdd
Currently the pressure sensor has code to retrieve and enable two regulators for Vdd and Vdd IO, but actually these voltage inputs are found on all of these ST sensors, so move the regulator handling to the core and make sure all the ST sensors call these functions on probe() and remove() to enable/disable power. Here also mover over to obtaining the regulator from the *parent* device of the IIO device, as the IIO device is created on-the-fly in this very subsystem it very unlikely evert have any regulators attached to it whatsoever. It is much more likely that the parent is a platform device, possibly instantiated from a device tree, which in turn have Vdd and Vdd IO supplied assigned to it. Cc: Lee Jones <lee.jones@linaro.org> Cc: Denis CIOCCA <denis.ciocca@st.com> Signed-off-by: Linus Walleij <linus.walleij@linaro.org> Signed-off-by: Jonathan Cameron <jic23@kernel.org>
301 lines
8.5 KiB
C
301 lines
8.5 KiB
C
/*
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* STMicroelectronics sensors library driver
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*
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* Copyright 2012-2013 STMicroelectronics Inc.
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*
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* Denis Ciocca <denis.ciocca@st.com>
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*
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* Licensed under the GPL-2.
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*/
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#ifndef ST_SENSORS_H
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#define ST_SENSORS_H
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#include <linux/i2c.h>
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#include <linux/spi/spi.h>
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#include <linux/irqreturn.h>
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#include <linux/iio/trigger.h>
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#include <linux/bitops.h>
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#include <linux/regulator/consumer.h>
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#include <linux/platform_data/st_sensors_pdata.h>
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#define ST_SENSORS_TX_MAX_LENGTH 2
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#define ST_SENSORS_RX_MAX_LENGTH 6
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#define ST_SENSORS_ODR_LIST_MAX 10
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#define ST_SENSORS_FULLSCALE_AVL_MAX 10
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#define ST_SENSORS_NUMBER_ALL_CHANNELS 4
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#define ST_SENSORS_ENABLE_ALL_AXIS 0x07
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#define ST_SENSORS_SCAN_X 0
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#define ST_SENSORS_SCAN_Y 1
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#define ST_SENSORS_SCAN_Z 2
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#define ST_SENSORS_DEFAULT_POWER_ON_VALUE 0x01
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#define ST_SENSORS_DEFAULT_POWER_OFF_VALUE 0x00
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#define ST_SENSORS_DEFAULT_WAI_ADDRESS 0x0f
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#define ST_SENSORS_DEFAULT_AXIS_ADDR 0x20
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#define ST_SENSORS_DEFAULT_AXIS_MASK 0x07
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#define ST_SENSORS_DEFAULT_AXIS_N_BIT 3
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#define ST_SENSORS_MAX_NAME 17
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#define ST_SENSORS_MAX_4WAI 7
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#define ST_SENSORS_LSM_CHANNELS(device_type, mask, index, mod, \
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ch2, s, endian, rbits, sbits, addr) \
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{ \
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.type = device_type, \
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.modified = mod, \
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.info_mask_separate = mask, \
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.scan_index = index, \
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.channel2 = ch2, \
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.address = addr, \
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.scan_type = { \
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.sign = s, \
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.realbits = rbits, \
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.shift = sbits - rbits, \
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.storagebits = sbits, \
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.endianness = endian, \
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}, \
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}
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#define ST_SENSOR_DEV_ATTR_SAMP_FREQ() \
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IIO_DEV_ATTR_SAMP_FREQ(S_IWUSR | S_IRUGO, \
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st_sensors_sysfs_get_sampling_frequency, \
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st_sensors_sysfs_set_sampling_frequency)
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#define ST_SENSORS_DEV_ATTR_SAMP_FREQ_AVAIL() \
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IIO_DEV_ATTR_SAMP_FREQ_AVAIL( \
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st_sensors_sysfs_sampling_frequency_avail)
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#define ST_SENSORS_DEV_ATTR_SCALE_AVAIL(name) \
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IIO_DEVICE_ATTR(name, S_IRUGO, \
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st_sensors_sysfs_scale_avail, NULL , 0);
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struct st_sensor_odr_avl {
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unsigned int hz;
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u8 value;
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};
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struct st_sensor_odr {
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u8 addr;
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u8 mask;
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struct st_sensor_odr_avl odr_avl[ST_SENSORS_ODR_LIST_MAX];
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};
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struct st_sensor_power {
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u8 addr;
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u8 mask;
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u8 value_off;
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u8 value_on;
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};
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struct st_sensor_axis {
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u8 addr;
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u8 mask;
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};
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struct st_sensor_fullscale_avl {
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unsigned int num;
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u8 value;
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unsigned int gain;
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unsigned int gain2;
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};
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struct st_sensor_fullscale {
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u8 addr;
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u8 mask;
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struct st_sensor_fullscale_avl fs_avl[ST_SENSORS_FULLSCALE_AVL_MAX];
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};
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/**
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* struct st_sensor_bdu - ST sensor device block data update
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* @addr: address of the register.
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* @mask: mask to write the block data update flag.
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*/
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struct st_sensor_bdu {
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u8 addr;
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u8 mask;
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};
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/**
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* struct st_sensor_data_ready_irq - ST sensor device data-ready interrupt
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* @addr: address of the register.
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* @mask_int1: mask to enable/disable IRQ on INT1 pin.
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* @mask_int2: mask to enable/disable IRQ on INT2 pin.
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* struct ig1 - represents the Interrupt Generator 1 of sensors.
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* @en_addr: address of the enable ig1 register.
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* @en_mask: mask to write the on/off value for enable.
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*/
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struct st_sensor_data_ready_irq {
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u8 addr;
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u8 mask_int1;
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u8 mask_int2;
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struct {
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u8 en_addr;
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u8 en_mask;
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} ig1;
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};
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/**
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* struct st_sensor_transfer_buffer - ST sensor device I/O buffer
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* @buf_lock: Mutex to protect rx and tx buffers.
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* @tx_buf: Buffer used by SPI transfer function to send data to the sensors.
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* This buffer is used to avoid DMA not-aligned issue.
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* @rx_buf: Buffer used by SPI transfer to receive data from sensors.
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* This buffer is used to avoid DMA not-aligned issue.
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*/
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struct st_sensor_transfer_buffer {
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struct mutex buf_lock;
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u8 rx_buf[ST_SENSORS_RX_MAX_LENGTH];
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u8 tx_buf[ST_SENSORS_TX_MAX_LENGTH] ____cacheline_aligned;
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};
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/**
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* struct st_sensor_transfer_function - ST sensor device I/O function
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* @read_byte: Function used to read one byte.
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* @write_byte: Function used to write one byte.
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* @read_multiple_byte: Function used to read multiple byte.
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*/
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struct st_sensor_transfer_function {
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int (*read_byte) (struct st_sensor_transfer_buffer *tb,
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struct device *dev, u8 reg_addr, u8 *res_byte);
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int (*write_byte) (struct st_sensor_transfer_buffer *tb,
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struct device *dev, u8 reg_addr, u8 data);
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int (*read_multiple_byte) (struct st_sensor_transfer_buffer *tb,
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struct device *dev, u8 reg_addr, int len, u8 *data,
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bool multiread_bit);
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};
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/**
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* struct st_sensors - ST sensors list
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* @wai: Contents of WhoAmI register.
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* @sensors_supported: List of supported sensors by struct itself.
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* @ch: IIO channels for the sensor.
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* @odr: Output data rate register and ODR list available.
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* @pw: Power register of the sensor.
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* @enable_axis: Enable one or more axis of the sensor.
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* @fs: Full scale register and full scale list available.
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* @bdu: Block data update register.
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* @drdy_irq: Data ready register of the sensor.
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* @multi_read_bit: Use or not particular bit for [I2C/SPI] multi-read.
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* @bootime: samples to discard when sensor passing from power-down to power-up.
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*/
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struct st_sensors {
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u8 wai;
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char sensors_supported[ST_SENSORS_MAX_4WAI][ST_SENSORS_MAX_NAME];
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struct iio_chan_spec *ch;
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int num_ch;
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struct st_sensor_odr odr;
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struct st_sensor_power pw;
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struct st_sensor_axis enable_axis;
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struct st_sensor_fullscale fs;
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struct st_sensor_bdu bdu;
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struct st_sensor_data_ready_irq drdy_irq;
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bool multi_read_bit;
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unsigned int bootime;
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};
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/**
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* struct st_sensor_data - ST sensor device status
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* @dev: Pointer to instance of struct device (I2C or SPI).
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* @trig: The trigger in use by the core driver.
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* @sensor: Pointer to the current sensor struct in use.
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* @current_fullscale: Maximum range of measure by the sensor.
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* @vdd: Pointer to sensor's Vdd power supply
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* @vdd_io: Pointer to sensor's Vdd-IO power supply
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* @enabled: Status of the sensor (false->off, true->on).
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* @multiread_bit: Use or not particular bit for [I2C/SPI] multiread.
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* @buffer_data: Data used by buffer part.
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* @odr: Output data rate of the sensor [Hz].
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* num_data_channels: Number of data channels used in buffer.
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* @drdy_int_pin: Redirect DRDY on pin 1 (1) or pin 2 (2).
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* @get_irq_data_ready: Function to get the IRQ used for data ready signal.
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* @tf: Transfer function structure used by I/O operations.
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* @tb: Transfer buffers and mutex used by I/O operations.
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*/
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struct st_sensor_data {
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struct device *dev;
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struct iio_trigger *trig;
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struct st_sensors *sensor;
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struct st_sensor_fullscale_avl *current_fullscale;
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struct regulator *vdd;
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struct regulator *vdd_io;
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bool enabled;
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bool multiread_bit;
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char *buffer_data;
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unsigned int odr;
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unsigned int num_data_channels;
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u8 drdy_int_pin;
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unsigned int (*get_irq_data_ready) (struct iio_dev *indio_dev);
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const struct st_sensor_transfer_function *tf;
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struct st_sensor_transfer_buffer tb;
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};
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#ifdef CONFIG_IIO_BUFFER
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irqreturn_t st_sensors_trigger_handler(int irq, void *p);
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int st_sensors_get_buffer_element(struct iio_dev *indio_dev, u8 *buf);
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#endif
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#ifdef CONFIG_IIO_TRIGGER
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int st_sensors_allocate_trigger(struct iio_dev *indio_dev,
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const struct iio_trigger_ops *trigger_ops);
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void st_sensors_deallocate_trigger(struct iio_dev *indio_dev);
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#else
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static inline int st_sensors_allocate_trigger(struct iio_dev *indio_dev,
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const struct iio_trigger_ops *trigger_ops)
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{
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return 0;
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}
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static inline void st_sensors_deallocate_trigger(struct iio_dev *indio_dev)
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{
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return;
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}
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#endif
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int st_sensors_init_sensor(struct iio_dev *indio_dev,
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struct st_sensors_platform_data *pdata);
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int st_sensors_set_enable(struct iio_dev *indio_dev, bool enable);
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int st_sensors_set_axis_enable(struct iio_dev *indio_dev, u8 axis_enable);
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void st_sensors_power_enable(struct iio_dev *indio_dev);
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void st_sensors_power_disable(struct iio_dev *indio_dev);
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int st_sensors_set_odr(struct iio_dev *indio_dev, unsigned int odr);
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int st_sensors_set_dataready_irq(struct iio_dev *indio_dev, bool enable);
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int st_sensors_set_fullscale_by_gain(struct iio_dev *indio_dev, int scale);
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int st_sensors_read_info_raw(struct iio_dev *indio_dev,
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struct iio_chan_spec const *ch, int *val);
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int st_sensors_check_device_support(struct iio_dev *indio_dev,
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int num_sensors_list, const struct st_sensors *sensors);
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ssize_t st_sensors_sysfs_get_sampling_frequency(struct device *dev,
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struct device_attribute *attr, char *buf);
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ssize_t st_sensors_sysfs_set_sampling_frequency(struct device *dev,
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struct device_attribute *attr, const char *buf, size_t size);
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ssize_t st_sensors_sysfs_sampling_frequency_avail(struct device *dev,
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struct device_attribute *attr, char *buf);
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ssize_t st_sensors_sysfs_scale_avail(struct device *dev,
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struct device_attribute *attr, char *buf);
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#endif /* ST_SENSORS_H */
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