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https://github.com/1technophile/OpenMQTTGateway.git
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By building only the log level required into LOG_LEVEL Co-authored-by: Florian <1technophile@users.noreply.github.com>
113 lines
3.5 KiB
C++
113 lines
3.5 KiB
C++
/*
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Theengs OpenMQTTGateway - We Unite Sensors in One Open-Source Interface
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Act as a gateway between your 433mhz, infrared IR, BLE, LoRa signal and one interface like an MQTT broker
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Send and receiving command by MQTT
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This is the Climate Addon:
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- Measures Temperature, Humidity and Pressure
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- Generates Values for: Temperature in degrees C and F, Humidity in %, Pressure in Pa, Altitude in Meter and Feet
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- Required Hardware Module: HTU21
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- Required Library: SparkFun HTU21 Library v1.1.3
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Connection Schemata:
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--------------------
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HTU21 ------> ESP8266
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==============================================
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Vcc ---------> Vu (5V)
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GND ---------> GND
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SCL ---------> D1
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SDA ---------> D2
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This file is part of OpenMQTTGateway.
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OpenMQTTGateway is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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OpenMQTTGateway is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include "User_config.h"
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#ifdef ZsensorHTU21
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# include <stdint.h>
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# include "SparkFunHTU21D.h"
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# include "TheengsCommon.h"
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# include "Wire.h" // Library for communication with I2C / TWI devices
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# include "config_HTU21.h"
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//Time used to wait for an interval before resending measured values
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unsigned long timehtu21 = 0;
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//Global sensor object
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HTU21D htuSensor;
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void setupZsensorHTU21() {
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delay(10); // Gives the Sensor enough time to turn on
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THEENGS_LOG_NOTICE(F("HTU21 Initialized - begin()" CR));
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# if defined(ESP32)
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Wire.begin(I2C_SDA, I2C_SCL);
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htuSensor.begin(Wire);
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# else
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htuSensor.begin();
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# endif
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}
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void MeasureTempHum() {
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if (millis() > (timehtu21 + TimeBetweenReadinghtu21)) {
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THEENGS_LOG_TRACE(F("Read HTU21 Sensor" CR));
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timehtu21 = millis();
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static float persisted_htu_tempc;
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static float persisted_htu_hum;
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float HtuTempC = htuSensor.readTemperature();
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float HtuHum = htuSensor.readHumidity();
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if (HtuTempC >= 998 || HtuHum >= 998) {
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THEENGS_LOG_ERROR(F("Failed to read from sensor HTU21!" CR));
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return;
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}
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// Check if reads failed and exit early (to try again).
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if (isnan(HtuTempC) || isnan(HtuHum)) {
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THEENGS_LOG_ERROR(F("Failed to read from sensor HTU21!" CR));
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} else {
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THEENGS_LOG_NOTICE(F("Creating HTU21 buffer" CR));
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StaticJsonDocument<JSON_MSG_BUFFER> HTU21dataBuffer;
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JsonObject HTU21data = HTU21dataBuffer.to<JsonObject>();
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// Generate Temperature in degrees C
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if (HtuTempC != persisted_htu_tempc || htu21_always) {
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float HtuTempF = (HtuTempC * 1.8) + 32;
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HTU21data["tempc"] = (float)HtuTempC;
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HTU21data["tempf"] = (float)HtuTempF;
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} else {
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THEENGS_LOG_NOTICE(F("Same Temp. Don't send it" CR));
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}
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// Generate Humidity in percent
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if (HtuHum != persisted_htu_hum || htu21_always) {
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HTU21data["hum"] = (float)HtuHum;
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} else {
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THEENGS_LOG_NOTICE(F("Same Humidity. Don't send it" CR));
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}
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HTU21data["origin"] = HTUTOPIC;
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enqueueJsonObject(HTU21data);
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}
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persisted_htu_tempc = HtuTempC;
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persisted_htu_hum = HtuHum;
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}
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}
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#endif
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