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bite/arduino/tempLightSensor/tempLightSensor.ino

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Arduino
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#include <EEPROM.h>
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#include <Ethernet.h>
#include <EthernetUdp.h>
#include <NTPClient.h>
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#include <ArduinoJson.h>
#define DEBUG_TO_SERIAL 1
#define USE_INTERNAL_NTP 0 // use default ntp server or the internal one
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#define AREF_VOLTAGE 3.3
// const String serverName = "sensor.server.domain";
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const size_t capacity = JSON_OBJECT_SIZE(2) + 2 * JSON_OBJECT_SIZE(3) + 110;
DynamicJsonDocument json(capacity);
JsonObject payload = json.createNestedObject("payload");
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JsonObject temp = payload.createNestedObject("temperature");
unsigned int counter = 0;
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int tempPin = A0;
int photocellPin = A1;
EthernetUDP ntpUDP;
NTPClient timeClient(ntpUDP);
bool NTPValid = false;
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struct netConfig {
IPAddress address;
unsigned int port;
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};
netConfig config;
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const String URL = "/telemetry/";
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const int postDelay = 10 * 1000;
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void setup(void) {
Serial.begin(9600);
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analogReference(EXTERNAL);
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byte mac[6];
char serial[9];
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int eeAddress = 0;
EEPROM.get(eeAddress, mac);
eeAddress += sizeof(mac);
EEPROM.get(eeAddress, serial);
eeAddress += sizeof(serial);
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if (Ethernet.begin(mac) == 0) {
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if (Ethernet.hardwareStatus() == EthernetNoHardware) {
Serial.println("ERROR: ethernet shield was not found.");
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}
while (true) {
delay(1);
}
}
EEPROM.get(eeAddress, config);
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Serial.print("IoT #");
Serial.print(serial);
Serial.println(" at address:");
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Serial.println(Ethernet.localIP());
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Serial.println();
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Serial.println("Connecting to:");
Serial.print(config.address);
Serial.print(":");
Serial.println(config.port);
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#if USE_INTERNAL_NTP
timeClient.setPoolServerIP(config.address);
#endif
timeClient.begin();
if (timeClient.update()) {
NTPValid = true;
}
#if DEBUG_TO_SERIAL
Serial.println("DEBUG: clock updated via NTP.");
#endif
json["device"] = 1; // FIXME
// payload["id"] = serverName;
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}
void loop(void) {
unsigned int photocellReading = analogRead(photocellPin);
unsigned int tempReading = analogRead(tempPin);
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float tempVoltage = tempReading * AREF_VOLTAGE / 1024.0;
float tempC = (tempVoltage - 0.5) * 100 ;
if (NTPValid) {
json["clock"] = timeClient.getEpochTime();
} else {
json["clock"] = NULL; // converted into 0
}
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payload["light"] = photocellReading;
temp["celsius"] = tempC;
temp["raw"] = tempReading;
temp["volts"] = tempVoltage;
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if (EthernetClient client = client.connect(config.address, config.port)) {
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client.print("POST ");
client.print(URL);
client.println(" HTTP/1.1");
client.print("Host: ");
client.print(config.address);
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client.print(":");
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client.println(config.port);
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client.println("Content-Type: application/json");
client.print("Content-Length: ");
client.println(measureJsonPretty(json));
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client.println("Connection: close");
client.println();
serializeJson(json, client);
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client.stop();
#if DEBUG_TO_SERIAL
Serial.println("DEBUG: >>>");
serializeJsonPretty(json, Serial);
Serial.println("\n<<<");
#endif
}
if (counter == 6 * 120) { // Update clock every 6 times * 10 sec * 120 minutes = 2 hrs
timeClient.update();
counter = 0;
#if DEBUG_TO_SERIAL
Serial.println("DEBUG: clock updated via NTP.");
#endif
} else {
counter++;
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}
delay(postDelay);
}