Send temperature information into MQTT
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@ -23,3 +23,6 @@ Device can also be put in OTA mode and will wait for OTA from the espota tool.
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Provide previous WiFiAccessPointConfigurator features and can also measure temperature from a BMP180.
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To interface with BMP180, the following library should be installed into Arduino environment: https://github.com/mmaret/BMP180_Breakout_Arduino_Library/archive/master.zip
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To use mqtt, the Adafruit Mqtt library should be installed.
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This have been tested against a mosquitto server without username or password
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23
WifiControlSensor/MQTT.ino
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23
WifiControlSensor/MQTT.ino
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@ -0,0 +1,23 @@
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// Function to connect and reconnect as necessary to the MQTT server.
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// Should be called in the loop function and it will take care if connecting.
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int MQTT_connect() {
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int8_t ret;
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// Stop if already connected.
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if (mqtt.connected()) {
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return 0;
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}
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uint8_t retries = 3;
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while ((ret = mqtt.connect()) != 0) { // connect will return 0 for connected
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Serial.println(mqtt.connectErrorString(ret));
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Serial.println("Retrying MQTT connection ...");
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mqtt.disconnect();
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delay(100); // wait
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retries--;
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if (retries == 0) {
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return -1;
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}
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}
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return 0;
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}
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@ -1,5 +1,6 @@
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void handleRoot() {
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server.send(200, "text/html", "<h1>You are connected</h1><br/>"
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"Current temperature "+String(temp,2)+"C<br/>"
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"<a href=\"/setup\">Setup</a><br/>"
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"<a href=\"/otamode\">OTA mode</a><br/>"
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"<a href=\"/gpio?gpio=2&value=1\">ON</a><br/>"
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@ -23,13 +23,21 @@
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#include <SFE_BMP180.h>
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#include <Wire.h>
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#include "Adafruit_MQTT.h"
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#include "Adafruit_MQTT_Client.h"
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#define AIO_SERVER "192.168.0.250"
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#define AIO_SERVERPORT 1883 // use 8883 for SSL
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#define AIO_USERNAME ""
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#define AIO_PASSWORD ""
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//#define ENABLE_EXTRA_GPIO
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#define EEPROM_SIZE 512
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char eeprom[EEPROM_SIZE];
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#define WEB_DELAY_MS 100
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#define SAMPLING_PERIODE_MS 5000
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#define SAMPLING_PERIODE_MS 60000
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/* I2C pin used*/
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#define SDA 2
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@ -39,8 +47,24 @@ char eeprom[EEPROM_SIZE];
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#define BOOTMODE_NORMAL 1
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#define BOOTMODE_OTA 2
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double temp;
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int mode;
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// Store the MQTT server, username, and password in flash memory.
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// This is required for using the Adafruit MQTT library.
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const char MQTT_SERVER[] PROGMEM = AIO_SERVER;
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const char MQTT_USERNAME[] PROGMEM = AIO_USERNAME;
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const char MQTT_PASSWORD[] PROGMEM = AIO_PASSWORD;
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// Create an ESP8266 WiFiClient class to connect to the MQTT server.
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WiFiClient client;
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// Setup the MQTT client class by passing in the WiFi client and MQTT server and login details.
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Adafruit_MQTT_Client mqtt(&client, MQTT_SERVER, AIO_SERVERPORT, MQTT_USERNAME, MQTT_PASSWORD);
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const char TEMPERATURE_FEED[] PROGMEM = "/feeds/temperature";
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Adafruit_MQTT_Publish mqtt_temp = Adafruit_MQTT_Publish(&mqtt, TEMPERATURE_FEED);
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/* Set these to your desired credentials. */
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const char *ssid = "ESPConfigurator";
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@ -64,6 +88,9 @@ void readEEPROM(int &bootMode, char **ssid, char **password, char **host);
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/* BMP180 decl */
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int getTemperature(double &t);
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/* MQTT decl */
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int MQTT_connect();
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void setupWifi(int bootmode, int forceSetup, char *confSsid, char *confPassword, char *confHost) {
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IPAddress myIP;
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if (bootmode == BOOTMODE_SETUP || forceSetup) {
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@ -182,7 +209,6 @@ void setup() {
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}
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uint nbCycle = 0;
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double temp;
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void loop() {
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if (mode == BOOTMODE_OTA) {
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ArduinoOTA.handle();
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@ -194,10 +220,15 @@ void loop() {
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if (getTemperature(temp) == 0) {
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Serial.print("Sampling :");
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Serial.println(temp);
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if (MQTT_connect() == 0){
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Serial.println("publishing !");
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mqtt_temp.publish(temp);
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}
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} else {
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Serial.println("Cannot get T°C");
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}
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nbCycle = 0;
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}
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}
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}
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