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228 lines
5.6 KiB
228 lines
5.6 KiB
/* |
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* Copyright (c) 2016 Intel Corporation |
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* |
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* SPDX-License-Identifier: Apache-2.0 |
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*/ |
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#define DT_DRV_COMPAT sensirion_sht3xd |
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#include <device.h> |
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#include <drivers/i2c.h> |
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#include <kernel.h> |
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#include <drivers/sensor.h> |
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#include <sys/__assert.h> |
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#include <sys/byteorder.h> |
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#include <sys/crc.h> |
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#include <logging/log.h> |
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#include "sht3xd.h" |
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LOG_MODULE_REGISTER(SHT3XD, CONFIG_SENSOR_LOG_LEVEL); |
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#ifdef CONFIG_SHT3XD_SINGLE_SHOT_MODE |
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static const uint16_t measure_cmd[3] = { |
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0x2400, 0x240B, 0x2416 |
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}; |
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#endif |
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#ifdef CONFIG_SHT3XD_PERIODIC_MODE |
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static const uint16_t measure_cmd[5][3] = { |
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{ 0x202F, 0x2024, 0x2032 }, |
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{ 0x212D, 0x2126, 0x2130 }, |
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{ 0x222B, 0x2220, 0x2236 }, |
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{ 0x2329, 0x2322, 0x2334 }, |
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{ 0x272A, 0x2721, 0x2737 } |
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}; |
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#endif |
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static const int measure_wait[3] = { |
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4000, 6000, 15000 |
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}; |
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/* |
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* CRC algorithm parameters were taken from the |
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* "Checksum Calculation" section of the datasheet. |
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*/ |
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static uint8_t sht3xd_compute_crc(uint16_t value) |
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{ |
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uint8_t buf[2]; |
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sys_put_be16(value, buf); |
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return crc8(buf, 2, 0x31, 0xFF, false); |
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} |
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int sht3xd_write_command(const struct device *dev, uint16_t cmd) |
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{ |
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const struct sht3xd_config *config = dev->config; |
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uint8_t tx_buf[2]; |
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sys_put_be16(cmd, tx_buf); |
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return i2c_write_dt(&config->bus, tx_buf, sizeof(tx_buf)); |
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} |
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int sht3xd_write_reg(const struct device *dev, uint16_t cmd, uint16_t val) |
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{ |
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const struct sht3xd_config *config = dev->config; |
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uint8_t tx_buf[5]; |
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sys_put_be16(cmd, &tx_buf[0]); |
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sys_put_be16(val, &tx_buf[2]); |
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tx_buf[4] = sht3xd_compute_crc(val); |
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return i2c_write_dt(&config->bus, tx_buf, sizeof(tx_buf)); |
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} |
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static int sht3xd_sample_fetch(const struct device *dev, |
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enum sensor_channel chan) |
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{ |
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const struct sht3xd_config *config = dev->config; |
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struct sht3xd_data *data = dev->data; |
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uint8_t rx_buf[6]; |
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uint16_t t_sample, rh_sample; |
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__ASSERT_NO_MSG(chan == SENSOR_CHAN_ALL); |
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#ifdef CONFIG_SHT3XD_SINGLE_SHOT_MODE |
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/* start single shot measurement */ |
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if (sht3xd_write_command(dev, |
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measure_cmd[SHT3XD_REPEATABILITY_IDX]) |
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< 0) { |
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LOG_DBG("Failed to set single shot measurement mode!"); |
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return -EIO; |
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} |
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k_sleep(K_MSEC(measure_wait[SHT3XD_REPEATABILITY_IDX] / USEC_PER_MSEC)); |
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if (i2c_read_dt(&config->bus, rx_buf, sizeof(rx_buf)) < 0) { |
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LOG_DBG("Failed to read data sample!"); |
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return -EIO; |
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} |
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#endif |
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#ifdef CONFIG_SHT3XD_PERIODIC_MODE |
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uint8_t tx_buf[2]; |
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sys_put_be16(SHT3XD_CMD_FETCH, tx_buf); |
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if (i2c_write_read_dt(&config->bus, tx_buf, sizeof(tx_buf), |
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rx_buf, sizeof(rx_buf)) < 0) { |
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LOG_DBG("Failed to read data sample!"); |
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return -EIO; |
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} |
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#endif |
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t_sample = sys_get_be16(&rx_buf[0]); |
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if (sht3xd_compute_crc(t_sample) != rx_buf[2]) { |
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LOG_DBG("Received invalid temperature CRC!"); |
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return -EIO; |
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} |
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rh_sample = sys_get_be16(&rx_buf[3]); |
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if (sht3xd_compute_crc(rh_sample) != rx_buf[5]) { |
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LOG_DBG("Received invalid relative humidity CRC!"); |
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return -EIO; |
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} |
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data->t_sample = t_sample; |
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data->rh_sample = rh_sample; |
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return 0; |
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} |
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static int sht3xd_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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const struct sht3xd_data *data = dev->data; |
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uint64_t tmp; |
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/* |
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* See datasheet "Conversion of Signal Output" section |
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* for more details on processing sample data. |
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*/ |
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if (chan == SENSOR_CHAN_AMBIENT_TEMP) { |
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/* val = -45 + 175 * sample / (2^16 -1) */ |
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tmp = (uint64_t)data->t_sample * 175U; |
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val->val1 = (int32_t)(tmp / 0xFFFF) - 45; |
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val->val2 = ((tmp % 0xFFFF) * 1000000U) / 0xFFFF; |
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} else if (chan == SENSOR_CHAN_HUMIDITY) { |
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/* val = 100 * sample / (2^16 -1) */ |
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uint32_t tmp2 = (uint32_t)data->rh_sample * 100U; |
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val->val1 = tmp2 / 0xFFFF; |
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/* x * 100000 / 65536 == x * 15625 / 1024 */ |
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val->val2 = (tmp2 % 0xFFFF) * 15625U / 1024; |
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} else { |
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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 sht3xd_driver_api = { |
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#ifdef CONFIG_SHT3XD_TRIGGER |
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.attr_set = sht3xd_attr_set, |
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.trigger_set = sht3xd_trigger_set, |
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#endif |
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.sample_fetch = sht3xd_sample_fetch, |
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.channel_get = sht3xd_channel_get, |
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}; |
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static int sht3xd_init(const struct device *dev) |
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{ |
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const struct sht3xd_config *cfg = dev->config; |
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if (!device_is_ready(cfg->bus.bus)) { |
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LOG_ERR("I2C bus %s is not ready!", cfg->bus.bus->name); |
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return -EINVAL; |
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} |
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/* clear status register */ |
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if (sht3xd_write_command(dev, SHT3XD_CMD_CLEAR_STATUS) < 0) { |
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LOG_DBG("Failed to clear status register!"); |
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return -EIO; |
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} |
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k_busy_wait(SHT3XD_CLEAR_STATUS_WAIT_USEC); |
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#ifdef CONFIG_SHT3XD_PERIODIC_MODE |
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/* set periodic measurement mode */ |
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if (sht3xd_write_command(dev, |
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measure_cmd[SHT3XD_MPS_IDX][SHT3XD_REPEATABILITY_IDX]) |
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< 0) { |
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LOG_DBG("Failed to set measurement mode!"); |
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return -EIO; |
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} |
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k_busy_wait(measure_wait[SHT3XD_REPEATABILITY_IDX]); |
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#endif |
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#ifdef CONFIG_SHT3XD_TRIGGER |
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struct sht3xd_data *data = dev->data; |
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data->dev = dev; |
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if (sht3xd_init_interrupt(dev) < 0) { |
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LOG_DBG("Failed to initialize interrupt"); |
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return -EIO; |
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} |
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#endif |
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return 0; |
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} |
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#ifdef CONFIG_SHT3XD_TRIGGER |
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#define SHT3XD_TRIGGER_INIT(inst) \ |
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.alert_gpio_name = DT_INST_GPIO_LABEL(inst, alert_gpios), \ |
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.alert_pin = DT_INST_GPIO_PIN(inst, alert_gpios), \ |
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.alert_flags = DT_INST_GPIO_FLAGS(inst, alert_gpios), |
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#else |
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#define SHT3XD_TRIGGER_INIT(inst) |
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#endif |
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#define SHT3XD_DEFINE(inst) \ |
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struct sht3xd_data sht3xd0_data_##inst; \ |
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static const struct sht3xd_config sht3xd0_cfg_##inst = { \ |
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.bus = I2C_DT_SPEC_INST_GET(inst), \ |
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SHT3XD_TRIGGER_INIT(inst) \ |
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}; \ |
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DEVICE_DT_INST_DEFINE(inst, sht3xd_init, NULL, \ |
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&sht3xd0_data_##inst, &sht3xd0_cfg_##inst, \ |
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POST_KERNEL, CONFIG_SENSOR_INIT_PRIORITY, \ |
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&sht3xd_driver_api); |
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DT_INST_FOREACH_STATUS_OKAY(SHT3XD_DEFINE)
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