Add TempMQTT

This commit is contained in:
Joe Tretter
2020-09-24 12:05:50 -05:00
parent e490c42898
commit 8ad1deb677
7 changed files with 253 additions and 0 deletions

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/*
Basic ESP8266 MQTT example
This sketch demonstrates the capabilities of the pubsub library in combination
with the ESP8266 board/library.
It connects to an MQTT server then:
- publishes "hello world" to the topic "outTopic" every two seconds
- subscribes to the topic "inTopic", printing out any messages
it receives. NB - it assumes the received payloads are strings not binary
- If the first character of the topic "inTopic" is an 1, switch ON the ESP Led,
else switch it off
It will reconnect to the server if the connection is lost using a blocking
reconnect function. See the 'mqtt_reconnect_nonblocking' example for how to
achieve the same result without blocking the main loop.
To install the ESP8266 board, (using Arduino 1.6.4+):
- Add the following 3rd party board manager under "File -> Preferences -> Additional Boards Manager URLs":
http://arduino.esp8266.com/stable/package_esp8266com_index.json
- Open the "Tools -> Board -> Board Manager" and click install for the ESP8266"
- Select your ESP8266 in "Tools -> Board"
*/
#include <Arduino.h>
#include <ESP8266WiFi.h>
#include <PubSubClient.h>
#include <ArduinoJson.h>
#include "DHTesp.h"
// Update these with values suitable for your network.
const char* ssid = "JoeNelsDarlings";
const char* password = "Paris2016";
const char* mqtt_server = "mqtt.ddns.kawomi.com";
DHTesp dht;
WiFiClient espClient;
PubSubClient client(espClient);
unsigned long lastMsg = 0;
#define MSG_BUFFER_SIZE (50)
char msg[MSG_BUFFER_SIZE];
void setup_wifi() {
delay(10);
// We start by connecting to a WiFi network
Serial.println();
Serial.print("Connecting to ");
Serial.println(ssid);
WiFi.mode(WIFI_STA);
WiFi.begin(ssid, password);
while (WiFi.status() != WL_CONNECTED) {
delay(500);
Serial.print(".");
}
randomSeed(micros());
Serial.println("");
Serial.println("WiFi connected");
Serial.println("IP address: ");
Serial.println(WiFi.localIP());
}
void reconnect() {
// Loop until we're reconnected
while (!client.connected()) {
Serial.print("Attempting MQTT connection...");
// Create a random client ID
String clientId = "ESP8266Client-";
clientId += String(random(0xffff), HEX);
// Attempt to connect
if (client.connect(clientId.c_str())) {
Serial.println("MQTT connected");
// Once connected, publish an announcement...
} else {
Serial.print("MQTT failed, rc=");
Serial.print(client.state());
Serial.println(" try again in 5 seconds");
// Wait 5 seconds before retrying
delay(5000);
}
}
}
void setup() {
pinMode(BUILTIN_LED, OUTPUT); // Initialize the BUILTIN_LED pin as an output
Serial.begin(115200);
setup_wifi();
dht.setup(5, DHTesp::DHT11);
client.setServer(mqtt_server, 1883);
// client.setCallback(callback);
}
void loop() {
if (!client.connected()) {
reconnect();
}
client.loop();
delay(2000);
float humidity = dht.getHumidity();
float temperature = dht.getTemperature();
const char* status=dht.getStatusString();
if (status=="OK") {
// allocate the memory for the document
const size_t CAPACITY = JSON_OBJECT_SIZE(3);
StaticJsonDocument<CAPACITY> doc;
// create an object
JsonObject object = doc.to<JsonObject>();
object["temperatureCelsius"] = temperature;
object["temperatureFarenheit"] = dht.toFahrenheit(temperature);
object["humidity"] = humidity;
// serialize the object and send the result to Serial
static char sensorStatus[150];
serializeJson(doc, sensorStatus);
Serial.println(sensorStatus);
client.publish("Outside/Weather", sensorStatus);
} else {
Serial.print("Error Reading Temp. ");
Serial.println(status);
}
}