301 lines
8.0 KiB
C++
301 lines
8.0 KiB
C++
#include <TimeLib.h>
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#include <SoftwareSerial.h>
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#include <ESP8266WiFi.h>
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#include <ESP8266mDNS.h>
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#include <ESP8266HTTPClient.h>
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#include <WiFiUdp.h>
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#include <ArduinoOTA.h>
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#include "CRC16.h"
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//===Change values from here===
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const char* ssid = "WIFISSID";
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const char* password = "PASSWORD";
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const char* hostName = "ESPP1Meter";
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const char* domoticzIP = "192.168.1.35";
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const int domoticzPort = 8090;
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const int domoticzGasIdx = 291;
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const int domoticzEneryIdx = 294;
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const bool outputOnSerial = true;
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//===Change values to here===
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// Vars to store meter readings
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long mEVLT = 0; //Meter reading Electrics - consumption low tariff
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long mEVHT = 0; //Meter reading Electrics - consumption high tariff
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long mEOLT = 0; //Meter reading Electrics - return low tariff
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long mEOHT = 0; //Meter reading Electrics - return high tariff
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long mEAV = 0; //Meter reading Electrics - Actual consumption
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long mEAT = 0; //Meter reading Electrics - Actual return
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long mGAS = 0; //Meter reading Gas
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long prevGAS = 0;
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#define MAXLINELENGTH 64 // longest normal line is 47 char (+3 for \r\n\0)
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char telegram[MAXLINELENGTH];
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#define SERIAL_RX D5 // pin for SoftwareSerial RX
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SoftwareSerial mySerial(SERIAL_RX, -1, true, MAXLINELENGTH); // (RX, TX. inverted, buffer)
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unsigned int currentCRC=0;
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void SendToDomoLog(char* message)
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{
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char url[512];
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sprintf(url, "http://%s:%d/json.htm?type=command¶m=addlogmessage&message=%s", domoticzIP, domoticzPort, message);
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}
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void setup() {
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Serial.begin(115200);
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Serial.println("Booting");
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WiFi.mode(WIFI_STA);
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WiFi.begin(ssid, password);
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while (WiFi.waitForConnectResult() != WL_CONNECTED) {
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Serial.println("Connection Failed! Rebooting...");
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delay(5000);
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ESP.restart();
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}
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mySerial.begin(115200);
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// Port defaults to 8266
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// ArduinoOTA.setPort(8266);
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// Hostname defaults to esp8266-[ChipID]
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ArduinoOTA.setHostname(hostName);
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// No authentication by default
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// ArduinoOTA.setPassword((const char *)"123");
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ArduinoOTA.onStart([]() {
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Serial.println("Start");
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});
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ArduinoOTA.onEnd([]() {
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Serial.println("\nEnd");
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});
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ArduinoOTA.onProgress([](unsigned int progress, unsigned int total) {
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Serial.printf("Progress: %u%%\r", (progress / (total / 100)));
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});
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ArduinoOTA.onError([](ota_error_t error) {
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Serial.printf("Error[%u]: ", error);
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if (error == OTA_AUTH_ERROR) Serial.println("Auth Failed");
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else if (error == OTA_BEGIN_ERROR) Serial.println("Begin Failed");
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else if (error == OTA_CONNECT_ERROR) Serial.println("Connect Failed");
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else if (error == OTA_RECEIVE_ERROR) Serial.println("Receive Failed");
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else if (error == OTA_END_ERROR) Serial.println("End Failed");
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});
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ArduinoOTA.begin();
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Serial.println("Ready");
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Serial.print("IP address: ");
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Serial.println(WiFi.localIP());
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}
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bool SendToDomo(int idx, int nValue, char* sValue)
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{
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HTTPClient http;
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bool retVal = false;
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char url[255];
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sprintf(url, "http://%s:%d/json.htm?type=command¶m=udevice&idx=%d&nvalue=%d&svalue=%s", domoticzIP, domoticzPort, idx, nValue, sValue);
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Serial.printf("[HTTP] GET... URL: %s\n",url);
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http.begin(url); //HTTP
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int httpCode = http.GET();
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// httpCode will be negative on error
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if (httpCode > 0)
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{ // HTTP header has been send and Server response header has been handled
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Serial.printf("[HTTP] GET... code: %d\n", httpCode);
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// file found at server
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if (httpCode == HTTP_CODE_OK) {
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String payload = http.getString();
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retVal = true;
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}
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}
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else
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{
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Serial.printf("[HTTP] GET... failed, error: %s\n", http.errorToString(httpCode).c_str());
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}
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http.end();
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return retVal;
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}
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void UpdateGas()
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{
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//sends over the gas setting to domoticz
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if(prevGAS!=mGAS)
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{
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char sValue[10];
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sprintf(sValue, "%d", mGAS);
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if(SendToDomo(domoticzGasIdx, 0, sValue))
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prevGAS=mGAS;
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}
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}
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void UpdateElectricity()
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{
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char sValue[255];
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sprintf(sValue, "%d;%d;%d;%d;%d;%d", mEVLT, mEVHT, mEOLT, mEOHT, mEAV, mEAT);
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SendToDomo(domoticzEneryIdx, 0, sValue);
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}
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bool isNumber(char* res, int len) {
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for (int i = 0; i < len; i++) {
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if (((res[i] < '0') || (res[i] > '9')) && (res[i] != '.' && res[i] != 0)) {
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return false;
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}
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}
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return true;
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}
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int FindCharInArrayRev(char array[], char c, int len) {
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for (int i = len - 1; i >= 0; i--) {
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if (array[i] == c) {
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return i;
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}
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}
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return -1;
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}
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long getValidVal(long valNew, long valOld, long maxDiffer)
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{
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//check if the incoming value is valid
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if(valOld > 0 && ((valNew - valOld > maxDiffer) && (valOld - valNew > maxDiffer)))
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return valOld;
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return valNew;
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}
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long getValue(char* buffer, int maxlen) {
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int s = FindCharInArrayRev(buffer, '(', maxlen - 2);
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if (s < 8) return 0;
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if (s > 32) s = 32;
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int l = FindCharInArrayRev(buffer, '*', maxlen - 2) - s - 1;
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if (l < 4) return 0;
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if (l > 12) return 0;
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char res[16];
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memset(res, 0, sizeof(res));
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if (strncpy(res, buffer + s + 1, l)) {
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if (isNumber(res, l)) {
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return (1000 * atof(res));
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}
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}
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return 0;
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}
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bool decodeTelegram(int len) {
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//need to check for start
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int startChar = FindCharInArrayRev(telegram, '/', len);
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int endChar = FindCharInArrayRev(telegram, '!', len);
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bool validCRCFound = false;
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if(startChar>=0)
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{
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//start found. Reset CRC calculation
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currentCRC=CRC16(0x0000,(unsigned char *) telegram+startChar, len-startChar);
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if(outputOnSerial)
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{
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for(int cnt=startChar; cnt<len-startChar;cnt++)
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Serial.print(telegram[cnt]);
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}
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//Serial.println("Start found!");
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}
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else if(endChar>=0)
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{
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//add to crc calc
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currentCRC=CRC16(currentCRC,(unsigned char*)telegram+endChar, 1);
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char messageCRC[4];
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strncpy(messageCRC, telegram + endChar + 1, 4);
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if(outputOnSerial)
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{
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for(int cnt=0; cnt<len;cnt++)
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Serial.print(telegram[cnt]);
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}
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validCRCFound = (strtol(messageCRC, NULL, 16) == currentCRC);
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if(validCRCFound)
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Serial.println("\nVALID CRC FOUND!");
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else
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Serial.println("\n===INVALID CRC FOUND!===");
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currentCRC = 0;
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}
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else
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{
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currentCRC=CRC16(currentCRC, (unsigned char*)telegram, len);
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if(outputOnSerial)
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{
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for(int cnt=0; cnt<len;cnt++)
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Serial.print(telegram[cnt]);
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}
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}
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long val =0;
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long val2=0;
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// 1-0:1.8.1(000992.992*kWh)
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// 1-0:1.8.1 = Elektra verbruik laag tarief (DSMR v4.0)
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if (strncmp(telegram, "1-0:1.8.1", strlen("1-0:1.8.1")) == 0)
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mEVLT = getValue(telegram, len);
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// 1-0:1.8.2(000560.157*kWh)
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// 1-0:1.8.2 = Elektra verbruik hoog tarief (DSMR v4.0)
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if (strncmp(telegram, "1-0:1.8.2", strlen("1-0:1.8.2")) == 0)
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mEVHT = getValue(telegram, len);
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// 1-0:2.8.1(000348.890*kWh)
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// 1-0:2.8.1 = Elektra opbrengst laag tarief (DSMR v4.0)
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if (strncmp(telegram, "1-0:2.8.1", strlen("1-0:2.8.1")) == 0)
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mEOLT = getValue(telegram, len);
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// 1-0:2.8.2(000859.885*kWh)
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// 1-0:2.8.2 = Elektra opbrengst hoog tarief (DSMR v4.0)
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if (strncmp(telegram, "1-0:2.8.2", strlen("1-0:2.8.2")) == 0)
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mEOHT = getValue(telegram, len);
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// 1-0:1.7.0(00.424*kW) Actueel verbruik
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// 1-0:2.7.0(00.000*kW) Actuele teruglevering
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// 1-0:1.7.x = Electricity consumption actual usage (DSMR v4.0)
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if (strncmp(telegram, "1-0:1.7.0", strlen("1-0:1.7.0")) == 0)
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mEAV = getValue(telegram, len);
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if (strncmp(telegram, "1-0:2.7.0", strlen("1-0:2.7.0")) == 0)
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mEAT = getValue(telegram, len);
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// 0-1:24.2.1(150531200000S)(00811.923*m3)
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// 0-1:24.2.1 = Gas (DSMR v4.0) on Kaifa MA105 meter
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if (strncmp(telegram, "0-1:24.2.1", strlen("0-1:24.2.1")) == 0)
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mGAS = getValue(telegram, len);
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return validCRCFound;
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}
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void readTelegram() {
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if (mySerial.available()) {
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memset(telegram, 0, sizeof(telegram));
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while (mySerial.available()) {
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int len = mySerial.readBytesUntil('\n', telegram, MAXLINELENGTH);
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telegram[len] = '\n';
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telegram[len+1] = 0;
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yield();
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if(decodeTelegram(len+1))
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{
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UpdateElectricity();
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UpdateGas();
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}
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}
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}
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}
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void loop() {
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readTelegram();
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ArduinoOTA.handle();
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}
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