145 lines
3.8 KiB
C
145 lines
3.8 KiB
C
/*
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* Copyright (c) 2018 Philémon Jaermann
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*
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* SPDX-License-Identifier: Apache-2.0
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*/
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#include <i2c.h>
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#include <init.h>
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#include <sensor.h>
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#define LOG_LEVEL CONFIG_SENSOR_LOG_LEVEL
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#include <logging/log.h>
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LOG_MODULE_REGISTER(lsm303dlhc_magn);
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#include "lsm303dlhc_magn.h"
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static int lsm303dlhc_sample_fetch(struct device *dev,
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enum sensor_channel chan)
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{
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const struct lsm303dlhc_magn_config *config = dev->config->config_info;
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struct lsm303dlhc_magn_data *drv_data = dev->driver_data;
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u8_t magn_buf[6];
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u8_t status;
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/* Check data ready flag */
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if (i2c_reg_read_byte(drv_data->i2c,
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config->i2c_address,
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LSM303DLHC_SR_REG_M,
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&status) < 0) {
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LOG_ERR("Failed to read status register.");
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return -EIO;
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}
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if (!(status & LSM303DLHC_MAGN_DRDY)) {
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LOG_ERR("Sensor data not available.");
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return -EIO;
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}
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if (i2c_burst_read(drv_data->i2c,
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config->i2c_address,
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LSM303DLHC_REG_MAGN_X_LSB,
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magn_buf, 6) < 0) {
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LOG_ERR("Could not read magn axis data.");
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return -EIO;
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}
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drv_data->magn_x = (magn_buf[0] << 8) | magn_buf[1];
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drv_data->magn_y = (magn_buf[4] << 8) | magn_buf[5];
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drv_data->magn_z = (magn_buf[2] << 8) | magn_buf[3];
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return 0;
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}
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static void lsm303dlhc_convert(struct sensor_value *val,
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s64_t raw_val)
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{
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val->val1 = raw_val / LSM303DLHC_MAGN_LSB_GAUSS;
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val->val2 = (1000000 * raw_val / LSM303DLHC_MAGN_LSB_GAUSS) % 1000000;
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}
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static int lsm303dlhc_channel_get(struct device *dev,
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enum sensor_channel chan,
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struct sensor_value *val)
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{
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struct lsm303dlhc_magn_data *drv_data = dev->driver_data;
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switch (chan) {
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case SENSOR_CHAN_MAGN_X:
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lsm303dlhc_convert(val, drv_data->magn_x);
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break;
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case SENSOR_CHAN_MAGN_Y:
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lsm303dlhc_convert(val, drv_data->magn_y);
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break;
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case SENSOR_CHAN_MAGN_Z:
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lsm303dlhc_convert(val, drv_data->magn_z);
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break;
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case SENSOR_CHAN_MAGN_XYZ:
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lsm303dlhc_convert(val, drv_data->magn_x);
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lsm303dlhc_convert(val + 1, drv_data->magn_y);
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lsm303dlhc_convert(val + 2, drv_data->magn_z);
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break;
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default:
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return -ENOTSUP;
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}
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return 0;
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}
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static const struct sensor_driver_api lsm303dlhc_magn_driver_api = {
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.sample_fetch = lsm303dlhc_sample_fetch,
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.channel_get = lsm303dlhc_channel_get,
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};
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static int lsm303dlhc_magn_init(struct device *dev)
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{
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const struct lsm303dlhc_magn_config *config = dev->config->config_info;
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struct lsm303dlhc_magn_data *drv_data = dev->driver_data;
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drv_data->i2c = device_get_binding(config->i2c_name);
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if (drv_data->i2c == NULL) {
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LOG_ERR("Could not get pointer to %s device",
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config->i2c_name);
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return -ENODEV;
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}
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/* Set magnetometer output data rate */
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if (i2c_reg_write_byte(drv_data->i2c,
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config->i2c_address,
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LSM303DLHC_CRA_REG_M,
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LSM303DLHC_MAGN_ODR_BITS) < 0) {
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LOG_ERR("Failed to configure chip.");
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return -EIO;
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}
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/* Set magnetometer full scale range */
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if (i2c_reg_write_byte(drv_data->i2c,
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config->i2c_address,
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LSM303DLHC_CRB_REG_M,
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LSM303DLHC_MAGN_FS_BITS) < 0) {
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LOG_ERR("Failed to set magnetometer full scale range.");
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return -EIO;
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}
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/* Continuous update */
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if (i2c_reg_write_byte(drv_data->i2c,
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config->i2c_address,
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LSM303DLHC_MR_REG_M,
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LSM303DLHC_MAGN_CONT_UPDATE) < 0) {
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LOG_ERR("Failed to enable continuous data update.");
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return -EIO;
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}
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return 0;
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}
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static const struct lsm303dlhc_magn_config lsm303dlhc_magn_config = {
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.i2c_name = DT_ST_LSM303DLHC_MAGN_0_BUS_NAME,
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.i2c_address = DT_ST_LSM303DLHC_MAGN_0_BASE_ADDRESS,
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};
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static struct lsm303dlhc_magn_data lsm303dlhc_magn_driver;
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DEVICE_AND_API_INIT(lsm303dlhc_magn, DT_ST_LSM303DLHC_MAGN_0_LABEL,
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lsm303dlhc_magn_init, &lsm303dlhc_magn_driver,
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&lsm303dlhc_magn_config, POST_KERNEL,
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CONFIG_SENSOR_INIT_PRIORITY, &lsm303dlhc_magn_driver_api);
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