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feat: Add HTU31D Support (#5805)
Co-authored-by: Jesse Hills <3060199+jesserockz@users.noreply.github.com>
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9 changed files with 372 additions and 0 deletions
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@ -152,6 +152,7 @@ esphome/components/honeywellabp2_i2c/* @jpfaff
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esphome/components/host/* @esphome/core
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esphome/components/hrxl_maxsonar_wr/* @netmikey
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esphome/components/hte501/* @Stock-M
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esphome/components/htu31d/* @betterengineering
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esphome/components/hydreon_rgxx/* @functionpointer
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esphome/components/hyt271/* @Philippe12
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esphome/components/i2c/* @esphome/core
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1
esphome/components/htu31d/__init__.py
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esphome/components/htu31d/__init__.py
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CODEOWNERS = ["@betterengineering"]
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269
esphome/components/htu31d/htu31d.cpp
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269
esphome/components/htu31d/htu31d.cpp
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/*
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* This file contains source code derived from Adafruit_HTU31D which is under
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* the BSD license:
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* Written by Limor Fried/Ladyada for Adafruit Industries.
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* BSD license, all text above must be included in any redistribution.
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*
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* Modifications made by Mark Spicer.
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*/
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#include "htu31d.h"
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#include "esphome/core/hal.h"
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#include "esphome/core/helpers.h"
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#include "esphome/core/log.h"
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namespace esphome {
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namespace htu31d {
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/** Logging prefix */
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static const char *const TAG = "htu31d";
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/** Default I2C address for the HTU31D. */
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static const uint8_t HTU31D_DEFAULT_I2CADDR = 0x40;
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/** Read temperature and humidity. */
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static const uint8_t HTU31D_READTEMPHUM = 0x00;
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/** Start a conversion! */
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static const uint8_t HTU31D_CONVERSION = 0x40;
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/** Read serial number command. */
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static const uint8_t HTU31D_READSERIAL = 0x0A;
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/** Enable heater */
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static const uint8_t HTU31D_HEATERON = 0x04;
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/** Disable heater */
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static const uint8_t HTU31D_HEATEROFF = 0x02;
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/** Reset command. */
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static const uint8_t HTU31D_RESET = 0x1E;
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/** Diagnostics command. */
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static const uint8_t HTU31D_DIAGNOSTICS = 0x08;
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/**
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* Computes a CRC result for the provided input.
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*
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* @returns the computed CRC result for the provided input
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*/
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uint8_t compute_crc(uint32_t value) {
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uint32_t polynom = 0x98800000; // x^8 + x^5 + x^4 + 1
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uint32_t msb = 0x80000000;
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uint32_t mask = 0xFF800000;
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uint32_t threshold = 0x00000080;
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uint32_t result = value;
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while (msb != threshold) {
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// Check if msb of current value is 1 and apply XOR mask
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if (result & msb)
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result = ((result ^ polynom) & mask) | (result & ~mask);
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// Shift by one
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msb >>= 1;
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mask >>= 1;
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polynom >>= 1;
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}
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return result;
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}
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/**
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* Resets the sensor and ensures that the devices serial number can be read over
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* I2C.
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*/
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void HTU31DComponent::setup() {
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ESP_LOGCONFIG(TAG, "Setting up esphome/components/htu31d HTU31D...");
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if (!this->reset_()) {
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this->mark_failed();
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return;
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}
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if (this->read_serial_num_() == 0) {
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this->mark_failed();
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return;
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}
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}
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/**
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* Called once every update interval (user configured, defaults to 60s) and sets
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* the current temperature and humidity.
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*/
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void HTU31DComponent::update() {
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ESP_LOGD(TAG, "Checking temperature and humidty values");
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// Trigger a conversion. From the spec sheet: The conversion command triggers
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// a single temperature and humidity conversion.
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if (this->write_register(HTU31D_CONVERSION, nullptr, 0) != i2c::ERROR_OK) {
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this->status_set_warning();
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ESP_LOGE(TAG, "Received errror writing conversion register");
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return;
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}
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// Wait conversion time.
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this->set_timeout(20, [this]() {
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uint8_t thdata[6];
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if (this->read_register(HTU31D_READTEMPHUM, thdata, 6) != i2c::ERROR_OK) {
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this->status_set_warning();
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ESP_LOGE(TAG, "Error reading temperature/humidty register");
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return;
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}
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// Calculate temperature value.
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uint16_t raw_temp = encode_uint16(thdata[0], thdata[1]);
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uint8_t crc = compute_crc((uint32_t) raw_temp << 8);
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if (crc != thdata[2]) {
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this->status_set_warning();
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ESP_LOGE(TAG, "Error validating temperature CRC");
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return;
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}
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float temperature = raw_temp;
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temperature /= 65535.0f;
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temperature *= 165;
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temperature -= 40;
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if (this->temperature_ != nullptr) {
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this->temperature_->publish_state(temperature);
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}
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// Calculate humidty value.
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uint16_t raw_hum = encode_uint16(thdata[3], thdata[4]);
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crc = compute_crc((uint32_t) raw_hum << 8);
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if (crc != thdata[5]) {
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this->status_set_warning();
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ESP_LOGE(TAG, "Error validating humidty CRC");
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return;
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}
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float humidity = raw_hum;
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humidity /= 65535.0f;
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humidity *= 100;
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if (this->humidity_ != nullptr) {
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this->humidity_->publish_state(humidity);
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}
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ESP_LOGD(TAG, "Got Temperature=%.1f°C Humidity=%.1f%%", temperature, humidity);
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this->status_clear_warning();
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});
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}
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/**
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* Logs the current compoenent config.
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*/
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void HTU31DComponent::dump_config() {
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ESP_LOGCONFIG(TAG, "HTU31D:");
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LOG_I2C_DEVICE(this);
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if (this->is_failed()) {
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ESP_LOGE(TAG, "Communication with HTU31D failed!");
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}
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LOG_UPDATE_INTERVAL(this);
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LOG_SENSOR(" ", "Temperature", this->temperature_);
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LOG_SENSOR(" ", "Humidity", this->humidity_);
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}
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/**
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* Sends a 'reset' request to the HTU31D, followed by a 15ms delay.
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*
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* @returns True if was able to write the command successfully
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*/
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bool HTU31DComponent::reset_() {
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if (this->write_register(HTU31D_RESET, nullptr, 0) != i2c::ERROR_OK) {
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return false;
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}
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delay(15);
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return true;
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}
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/**
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* Reads the serial number from the device and checks the CRC.
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*
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* @returns the 24bit serial number from the device
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*/
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uint32_t HTU31DComponent::read_serial_num_() {
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uint8_t reply[4];
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uint32_t serial = 0;
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uint8_t padding = 0;
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// Verify we can read the device serial.
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if (this->read_register(HTU31D_READSERIAL, reply, 4) != i2c::ERROR_OK) {
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ESP_LOGE(TAG, "Error reading device serial");
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return 0;
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}
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serial = encode_uint32(reply[0], reply[1], reply[2], padding);
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uint8_t crc = compute_crc(serial);
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if (crc != reply[3]) {
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ESP_LOGE(TAG, "Error validating serial CRC");
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return 0;
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}
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ESP_LOGD(TAG, "Found serial: 0x%X", serial);
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return serial;
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}
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/**
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* Checks the diagnostics register to determine if the heater is currently
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* enabled.
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*
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* @returns True if the heater is currently enabled, False otherwise
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*/
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bool HTU31DComponent::is_heater_enabled() {
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uint8_t reply[1];
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uint8_t heater_enabled_position = 0;
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uint8_t mask = 1 << heater_enabled_position;
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uint8_t diagnostics = 0;
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if (this->read_register(HTU31D_DIAGNOSTICS, reply, 1) != i2c::ERROR_OK) {
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ESP_LOGE(TAG, "Error reading device serial");
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return false;
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}
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diagnostics = reply[0];
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return (diagnostics & mask) != 0;
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}
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/**
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* Sets the heater state on or off.
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*
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* @param desired True for on, and False for off.
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*/
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void HTU31DComponent::set_heater_state(bool desired) {
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bool current = this->is_heater_enabled();
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// If the current state matches the desired state, there is nothing to do.
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if (current == desired) {
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return;
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}
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// Update heater state.
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esphome::i2c::ErrorCode err;
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if (desired) {
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err = this->write_register(HTU31D_HEATERON, nullptr, 0);
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} else {
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err = this->write_register(HTU31D_HEATEROFF, nullptr, 0);
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}
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// Record any error.
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if (err != i2c::ERROR_OK) {
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this->status_set_warning();
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ESP_LOGE(TAG, "Received error updating heater state");
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return;
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}
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}
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/**
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* Sets the startup priority for this component.
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*
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* @returns The startup priority
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*/
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float HTU31DComponent::get_setup_priority() const { return setup_priority::DATA; }
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} // namespace htu31d
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} // namespace esphome
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33
esphome/components/htu31d/htu31d.h
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esphome/components/htu31d/htu31d.h
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#pragma once
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#include "esphome/components/i2c/i2c.h"
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#include "esphome/components/sensor/sensor.h"
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#include "esphome/core/automation.h"
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#include "esphome/core/component.h"
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namespace esphome {
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namespace htu31d {
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class HTU31DComponent : public PollingComponent, public i2c::I2CDevice {
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public:
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void setup() override; /// Setup (reset) the sensor and check connection.
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void update() override; /// Update the sensor values (temperature+humidity).
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void dump_config() override; /// Dumps the configuration values.
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void set_temperature(sensor::Sensor *temperature) { this->temperature_ = temperature; }
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void set_humidity(sensor::Sensor *humidity) { this->humidity_ = humidity; }
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void set_heater_state(bool desired);
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bool is_heater_enabled();
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float get_setup_priority() const override;
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protected:
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bool reset_();
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uint32_t read_serial_num_();
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sensor::Sensor *temperature_{nullptr};
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sensor::Sensor *humidity_{nullptr};
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};
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} // namespace htu31d
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} // namespace esphome
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56
esphome/components/htu31d/sensor.py
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esphome/components/htu31d/sensor.py
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import esphome.codegen as cg
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import esphome.config_validation as cv
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from esphome.components import i2c, sensor
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from esphome.const import (
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CONF_HUMIDITY,
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CONF_ID,
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CONF_TEMPERATURE,
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DEVICE_CLASS_HUMIDITY,
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DEVICE_CLASS_TEMPERATURE,
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STATE_CLASS_MEASUREMENT,
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UNIT_CELSIUS,
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UNIT_PERCENT,
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)
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DEPENDENCIES = ["i2c"]
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htu31d_ns = cg.esphome_ns.namespace("htu31d")
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HTU31DComponent = htu31d_ns.class_(
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"HTU31DComponent", cg.PollingComponent, i2c.I2CDevice
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)
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CONFIG_SCHEMA = (
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cv.Schema(
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{
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cv.GenerateID(): cv.declare_id(HTU31DComponent),
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cv.Optional(CONF_TEMPERATURE): sensor.sensor_schema(
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unit_of_measurement=UNIT_CELSIUS,
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accuracy_decimals=1,
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device_class=DEVICE_CLASS_TEMPERATURE,
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state_class=STATE_CLASS_MEASUREMENT,
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),
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cv.Optional(CONF_HUMIDITY): sensor.sensor_schema(
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unit_of_measurement=UNIT_PERCENT,
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accuracy_decimals=1,
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device_class=DEVICE_CLASS_HUMIDITY,
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state_class=STATE_CLASS_MEASUREMENT,
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),
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}
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)
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.extend(cv.polling_component_schema("60s"))
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.extend(i2c.i2c_device_schema(0x40))
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)
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async def to_code(config):
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var = cg.new_Pvariable(config[CONF_ID])
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await cg.register_component(var, config)
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await i2c.register_i2c_device(var, config)
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if temperature_config := config.get(CONF_TEMPERATURE):
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sens = await sensor.new_sensor(temperature_config)
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cg.add(var.set_temperature(sens))
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if humidity_config := config.get(CONF_HUMIDITY):
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sens = await sensor.new_sensor(humidity_config)
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cg.add(var.set_humidity(sens))
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9
tests/components/htu31d/common.yaml
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tests/components/htu31d/common.yaml
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i2c:
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sensor:
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- platform: htu31d
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temperature:
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name: Living Room Temperature 7
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humidity:
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name: Living Room Humidity 7
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update_interval: 15s
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1
tests/components/htu31d/test.esp32-idf.yaml
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tests/components/htu31d/test.esp32-idf.yaml
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<<: !include common.yaml
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1
tests/components/htu31d/test.esp32.yaml
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tests/components/htu31d/test.esp32.yaml
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<<: !include common.yaml
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1
tests/components/htu31d/test.esp8266.yaml
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tests/components/htu31d/test.esp8266.yaml
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@ -0,0 +1 @@
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<<: !include common.yaml
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