292 lines
8.2 KiB
C
292 lines
8.2 KiB
C
/*
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* Copyright (c) 2021 Aurelien Jarno
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*
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* SPDX-License-Identifier: Apache-2.0
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*/
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#include <zephyr/kernel.h>
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#include <zephyr/drivers/gpio.h>
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#include <zephyr/drivers/i2c.h>
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#include <zephyr/drivers/sensor.h>
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#include <zephyr/sys/byteorder.h>
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#include <zephyr/sys/__assert.h>
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#include <zephyr/logging/log.h>
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LOG_MODULE_REGISTER(TI_HDC20XX, CONFIG_SENSOR_LOG_LEVEL);
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/* Register addresses */
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#define TI_HDC20XX_REG_TEMP 0x00
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#define TI_HDC20XX_REG_HUMIDITY 0x02
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#define TI_HDC20XX_REG_INT_EN 0x07
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#define TI_HDC20XX_REG_CONFIG 0x0E
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#define TI_HDC20XX_REG_MEAS_CFG 0x0F
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#define TI_HDC20XX_REG_MANUFACTURER_ID 0xFC
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#define TI_HDC20XX_REG_DEVICE_ID 0xFE
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/* Register values */
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#define TI_HDC20XX_MANUFACTURER_ID 0x5449
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#define TI_HDC20XX_DEVICE_ID 0x07D0
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/* Register bits */
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#define TI_HDC20XX_BIT_INT_EN_DRDY_EN 0x80
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#define TI_HDC20XX_BIT_CONFIG_SOFT_RES 0x80
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#define TI_HDC20XX_BIT_CONFIG_DRDY_INT_EN 0x04
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/* Reset time: not in the datasheet, but found by trial and error */
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#define TI_HDC20XX_RESET_TIME K_MSEC(1)
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/* Conversion time for 14-bit resolution. Temperature needs 660us and humidity 610us */
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#define TI_HDC20XX_CONVERSION_TIME K_MSEC(2)
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/* Temperature and humidity scale and factors from the datasheet ("Register Maps" section) */
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#define TI_HDC20XX_RH_SCALE 100U
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#define TI_HDC20XX_TEMP_OFFSET -2654208 /* = -40.5 * 2^16 */
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#define TI_HDC20XX_TEMP_SCALE 165U
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struct ti_hdc20xx_config {
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struct i2c_dt_spec bus;
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struct gpio_dt_spec gpio_int;
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};
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struct ti_hdc20xx_data {
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struct gpio_callback cb_int;
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struct k_sem sem_int;
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uint16_t t_sample;
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uint16_t rh_sample;
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};
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static void ti_hdc20xx_int_callback(const struct device *dev,
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struct gpio_callback *cb, uint32_t pins)
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{
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struct ti_hdc20xx_data *data = CONTAINER_OF(cb, struct ti_hdc20xx_data, cb_int);
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ARG_UNUSED(pins);
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k_sem_give(&data->sem_int);
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}
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static int ti_hdc20xx_sample_fetch(const struct device *dev,
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enum sensor_channel chan)
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{
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const struct ti_hdc20xx_config *config = dev->config;
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struct ti_hdc20xx_data *data = dev->data;
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uint16_t buf[2];
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int rc;
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__ASSERT_NO_MSG(chan == SENSOR_CHAN_ALL);
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/* start conversion of both temperature and humidity with the default accuracy (14 bits) */
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rc = i2c_reg_write_byte_dt(&config->bus, TI_HDC20XX_REG_MEAS_CFG, 0x01);
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if (rc < 0) {
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LOG_ERR("Failed to write measurement configuration register");
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return rc;
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}
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/* wait for the conversion to finish */
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if (config->gpio_int.port) {
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k_sem_take(&data->sem_int, K_FOREVER);
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} else {
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k_sleep(TI_HDC20XX_CONVERSION_TIME);
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}
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/* temperature and humidity registers are consecutive, read them in the same burst */
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rc = i2c_burst_read_dt(&config->bus, TI_HDC20XX_REG_TEMP, (uint8_t *)buf, sizeof(buf));
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if (rc < 0) {
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LOG_ERR("Failed to read sample data");
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return rc;
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}
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data->t_sample = sys_le16_to_cpu(buf[0]);
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data->rh_sample = sys_le16_to_cpu(buf[1]);
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return 0;
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}
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static int ti_hdc20xx_channel_get(const 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 ti_hdc20xx_data *data = dev->data;
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int32_t tmp;
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/* See datasheet "Register Maps" section for more details on processing sample data. */
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switch (chan) {
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case SENSOR_CHAN_AMBIENT_TEMP:
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/* val = -40.5 + 165 * sample / 2^16 */
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tmp = data->t_sample * TI_HDC20XX_TEMP_SCALE + TI_HDC20XX_TEMP_OFFSET;
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val->val1 = tmp >> 16;
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/* x * 1000000 / 2^16 = x * 15625 / 2^10 */
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val->val2 = ((tmp & 0xFFFF) * 15625U) >> 10;
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break;
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case SENSOR_CHAN_HUMIDITY:
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/* val = 100 * sample / 2^16 */
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tmp = data->rh_sample * TI_HDC20XX_RH_SCALE;
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val->val1 = tmp >> 16;
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/* x * 1000000 / 2^16 = x * 15625 / 2^10 */
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val->val2 = ((tmp & 0xFFFF) * 15625U) >> 10;
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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 ti_hdc20xx_api_funcs = {
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.sample_fetch = ti_hdc20xx_sample_fetch,
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.channel_get = ti_hdc20xx_channel_get,
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};
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static int ti_hdc20xx_reset(const struct device *dev)
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{
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const struct ti_hdc20xx_config *config = dev->config;
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int rc;
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rc = i2c_reg_write_byte_dt(&config->bus, TI_HDC20XX_REG_CONFIG,
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TI_HDC20XX_BIT_CONFIG_SOFT_RES);
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if (rc < 0) {
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LOG_ERR("Failed to soft-reset device");
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return rc;
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}
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k_sleep(TI_HDC20XX_RESET_TIME);
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return 0;
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}
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static int ti_hdc20xx_init(const struct device *dev)
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{
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const struct ti_hdc20xx_config *config = dev->config;
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struct ti_hdc20xx_data *data = dev->data;
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uint16_t buf[2];
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int rc;
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if (!device_is_ready(config->bus.bus)) {
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LOG_ERR("I2C bus %s not ready", config->bus.bus->name);
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return -ENODEV;
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}
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/* manufacturer and device ID registers are consecutive, read them in the same burst */
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rc = i2c_burst_read_dt(&config->bus, TI_HDC20XX_REG_MANUFACTURER_ID,
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(uint8_t *)buf, sizeof(buf));
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if (rc < 0) {
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LOG_ERR("Failed to read manufacturer and device IDs");
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return rc;
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}
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if (sys_le16_to_cpu(buf[0]) != TI_HDC20XX_MANUFACTURER_ID) {
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LOG_ERR("Failed to get correct manufacturer ID");
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return -EINVAL;
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}
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if (sys_le16_to_cpu(buf[1]) != TI_HDC20XX_DEVICE_ID) {
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LOG_ERR("Unsupported device ID");
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return -EINVAL;
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}
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/* Soft-reset the device to bring all registers in a known and consistent state */
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rc = ti_hdc20xx_reset(dev);
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if (rc < 0) {
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return rc;
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}
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/* Configure the interrupt GPIO if available */
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if (config->gpio_int.port) {
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if (!gpio_is_ready_dt(&config->gpio_int)) {
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LOG_ERR("Cannot get pointer to gpio interrupt device");
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return -ENODEV;
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}
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rc = gpio_pin_configure_dt(&config->gpio_int, GPIO_INPUT);
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if (rc) {
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LOG_ERR("Failed to configure interrupt pin");
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return rc;
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}
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gpio_init_callback(&data->cb_int, ti_hdc20xx_int_callback,
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BIT(config->gpio_int.pin));
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rc = gpio_add_callback(config->gpio_int.port, &data->cb_int);
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if (rc) {
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LOG_ERR("Failed to set interrupt callback");
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return rc;
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}
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rc = gpio_pin_interrupt_configure_dt(&config->gpio_int, GPIO_INT_EDGE_TO_ACTIVE);
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if (rc) {
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LOG_ERR("Failed to configure interrupt");
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return rc;
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}
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/* Initialize the semaphore */
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k_sem_init(&data->sem_int, 0, K_SEM_MAX_LIMIT);
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/* Enable the data ready interrupt */
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rc = i2c_reg_write_byte_dt(&config->bus, TI_HDC20XX_REG_INT_EN,
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TI_HDC20XX_BIT_INT_EN_DRDY_EN);
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if (rc) {
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LOG_ERR("Failed to enable the data ready interrupt");
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return rc;
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}
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/* Enable the interrupt pin with level sensitive active low polarity */
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rc = i2c_reg_write_byte_dt(&config->bus, TI_HDC20XX_REG_CONFIG,
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TI_HDC20XX_BIT_CONFIG_DRDY_INT_EN);
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if (rc) {
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LOG_ERR("Failed to enable the interrupt pin");
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return rc;
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}
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}
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return 0;
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}
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/* Main instantiation macro */
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#define TI_HDC20XX_DEFINE(inst, compat) \
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static struct ti_hdc20xx_data ti_hdc20xx_data_##compat##inst; \
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static const struct ti_hdc20xx_config ti_hdc20xx_config_##compat##inst = { \
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.bus = I2C_DT_SPEC_GET(DT_INST(inst, compat)), \
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.gpio_int = GPIO_DT_SPEC_GET_OR(DT_INST(inst, compat), int_gpios, {0}), \
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}; \
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DEVICE_DT_DEFINE(DT_INST(inst, compat), \
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ti_hdc20xx_init, \
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NULL, \
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&ti_hdc20xx_data_##compat##inst, \
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&ti_hdc20xx_config_##compat##inst, \
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POST_KERNEL, \
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CONFIG_SENSOR_INIT_PRIORITY, \
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&ti_hdc20xx_api_funcs);
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/* Create the struct device for every status "okay" node in the devicetree. */
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#define TI_HDC20XX_FOREACH_STATUS_OKAY(compat, fn) \
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COND_CODE_1(DT_HAS_COMPAT_STATUS_OKAY(compat), \
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(UTIL_CAT(DT_FOREACH_OKAY_INST_, \
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compat)(fn)), \
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())
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/*
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* HDC2010 Low-Power Humidity and Temperature Digital Sensors
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*/
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#define TI_HDC2010_DEFINE(inst) TI_HDC20XX_DEFINE(inst, ti_hdc2010)
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TI_HDC20XX_FOREACH_STATUS_OKAY(ti_hdc2010, TI_HDC2010_DEFINE)
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/*
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* HDC2021 High-Accuracy, Low-Power Humidity and Temperature Sensor
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* With Assembly Protection Cover
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*/
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#define TI_HDC2021_DEFINE(inst) TI_HDC20XX_DEFINE(inst, ti_hdc2021)
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TI_HDC20XX_FOREACH_STATUS_OKAY(ti_hdc2021, TI_HDC2021_DEFINE)
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/*
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* HDC2022 High-Accuracy, Low-Power Humidity and Temperature Sensor
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* With IP67 Rated Water and Dust Protection Cover
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*/
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#define TI_HDC2022_DEFINE(inst) TI_HDC20XX_DEFINE(inst, ti_hdc2022)
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TI_HDC20XX_FOREACH_STATUS_OKAY(ti_hdc2022, TI_HDC2022_DEFINE)
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/*
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* HDC2080 Low-Power Humidity and Temperature Digital Sensor
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*/
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#define TI_HDC2080_DEFINE(inst) TI_HDC20XX_DEFINE(inst, ti_hdc2080)
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TI_HDC20XX_FOREACH_STATUS_OKAY(ti_hdc2080, TI_HDC2080_DEFINE)
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