Erste Volle Funktion
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de17f95f87
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src/main.cpp
161
src/main.cpp
@ -1,56 +1,135 @@
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#include <Arduino.h>
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#include <Arduino.h>
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#include <SoftwareSerial.h>
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#include <SoftwareSerial.h>
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#define SET_FREQ 4
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#define SWITCH_AB 5
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SoftwareSerial ft817 = SoftwareSerial(2, 3);
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SoftwareSerial ft817 = SoftwareSerial(2, 3);
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String getMode(uint8_t byte);
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String getMode(uint8_t byte);
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unsigned long bcdtoi(uint8_t bcd);
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unsigned long bcdToInt(uint8_t bcd);
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void setFreq();
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void switchAB();
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void convertFromValueToBCD(uint8_t *buffer, unsigned long actualValue);
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void setup() {
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void setup() {
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// put your setup code here, to run once:
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// put your setup code here, to run once:
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ft817.begin(9600);
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ft817.begin(9600);
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Serial.begin(9600);
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Serial.begin(9600);
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pinMode(SET_FREQ, INPUT_PULLUP);
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pinMode(SWITCH_AB, INPUT_PULLUP);
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}
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}
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boolean pressBlockSetFreq = false;
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boolean pressBlockSwitchAB = false;
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void loop() {
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void loop() {
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// put your main code here, to run repeatedly:
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// put your main code here, to run repeatedly:
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uint8_t bytes[] = {0x00,0x00,0x00,0x00,0x03};
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for (unsigned int i = 0; i < sizeof(bytes); i++){
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if (digitalRead(SET_FREQ) == LOW && !pressBlockSetFreq){
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pressBlockSetFreq = true;
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setFreq();
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}
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else if(digitalRead(SET_FREQ) != LOW){
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pressBlockSetFreq = false;
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}
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if (digitalRead(SWITCH_AB) == LOW && !pressBlockSwitchAB){
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switchAB();
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pressBlockSwitchAB = true;
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}
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else if(digitalRead(SWITCH_AB) != LOW){
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pressBlockSwitchAB = false;
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}
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//String freq = Serial.readString();
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}
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void sendCommand(uint8_t *bytes, size_t len){
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for (unsigned int i = 0; i < len; i++){
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ft817.write(bytes[i]);
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ft817.write(bytes[i]);
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Serial.print(String(bytes[i]));
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Serial.print(String(bytes[i], HEX));
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delay(1);
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delay(1);
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}
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}
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}
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void switchAB(){
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Serial.println(ft817.available());
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if(ft817.available() != 0){ //Emptying ft817.available()
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uint8_t throwAwayBuffer[ft817.available()];
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ft817.readBytes(&throwAwayBuffer[0], ft817.available());
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}
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uint8_t bytes[] = {0x00,0x00,0x00,0x00,0x81};
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sendCommand(&bytes[0], sizeof(bytes));
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Serial.println();
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}
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void setFreq(){
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Serial.println(ft817.available());
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if(ft817.available() != 0){ //Emptying ft817.available()
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uint8_t throwAwayBuffer[ft817.available()];
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ft817.readBytes(&throwAwayBuffer[0], ft817.available());
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}
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uint8_t bytes[] = {0x00,0x00,0x00,0x00,0x03};
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sendCommand(&bytes[0], sizeof(bytes));
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//return;
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Serial.println();
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Serial.println();
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uint8_t buffer[5];
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uint8_t buffer[5];
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ft817.readBytes(&buffer[0], sizeof(buffer));
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ft817.readBytes(&buffer[0], sizeof(buffer));
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String mode = getMode(buffer[4]);
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String mode = getMode(buffer[4]);
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//int freq = getFreq(buffer[0], buffer[1], buffer[2], buffer[3]);
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Serial.print(String(buffer[0], HEX) + " ");
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/*char buf[10];
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Serial.print(String(buffer[1], HEX) + " ");
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for(int i = 0; i<4; i++) {
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Serial.print(String(buffer[2], HEX) + " ");
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snprintf(buf, sizeof(buf), "%x ", buffer[i]);
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Serial.print(String(buffer[3], HEX) + " ");
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Serial.print(buf);
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Serial.println(String(buffer[4], HEX));
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}*/
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//Serial.println();
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unsigned long receiveFrequency = 0;
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unsigned long actualFrequency = 0;
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receiveFrequency = bcdToInt(buffer[0]) * 1000000;
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actualFrequency = bcdtoi(buffer[0]) * 1000000;
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receiveFrequency += (bcdToInt(buffer[1]) * 10000);
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actualFrequency += (bcdtoi(buffer[1]) * 10000);
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receiveFrequency += (bcdToInt(buffer[2]) * 100);
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actualFrequency += (bcdtoi(buffer[2]) * 100);
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receiveFrequency += bcdToInt(buffer[3]);
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actualFrequency += bcdtoi(buffer[3]);
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if (receiveFrequency < 28850000){
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Serial.println("Please go into the 70cm Band! Data: " + String(receiveFrequency));
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return;
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}
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unsigned long txFrequency = receiveFrequency - 28850000;
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uint8_t sendBuffer[5];
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convertFromValueToBCD(&sendBuffer[0], txFrequency);
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Serial.print(actualFrequency);
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Serial.print(receiveFrequency);
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Serial.write(0x20);
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Serial.write(0x20);
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Serial.println(mode);
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Serial.println(mode);
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Serial.println(txFrequency);
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delay(2000);
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Serial.print(String(sendBuffer[0], HEX) + " ");
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//String freq = Serial.readString();
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Serial.print(String(sendBuffer[1], HEX) + " ");
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Serial.print(String(sendBuffer[2], HEX) + " ");
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Serial.println(String(sendBuffer[3], HEX));
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bytes[4] = 0x81;
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sendCommand(&bytes[0], sizeof(bytes));
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Serial.println();
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delay(100);
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sendBuffer[4] = 0x01;
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sendCommand(&sendBuffer[0], sizeof(sendBuffer));
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Serial.println();
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delay(100);
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sendCommand(&bytes[0], sizeof(bytes));
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Serial.println();
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}
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}
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String getMode(uint8_t byte){
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String getMode(uint8_t byte){
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@ -82,9 +161,49 @@ String getMode(uint8_t byte){
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}
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}
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}
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}
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unsigned long bcdtoi(uint8_t bcd){
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unsigned long bcdToInt(uint8_t bcd){
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int byte = (bcd & 0xF0) >> 4;
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int byte = (bcd & 0xF0) >> 4;
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byte *= 10;
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byte *= 10;
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byte += bcd & 0x0F;
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byte += bcd & 0x0F;
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return byte;
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return byte;
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}
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}
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unsigned long getDevicer(int step){
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switch (step) {
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case 0:
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return 1000000;
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break;
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case 1:
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return 10000;
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break;
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case 2:
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return 100;
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break;
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case 3:
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return 1;
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break;
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default:
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Serial.println("SHIT"); //CAN'T HAPPEN
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return 1;
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break;
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}
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}
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uint8_t intToBcd(unsigned long value){
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unsigned long tens = value / 10;
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value -= tens * 10;
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unsigned long singles = value;
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uint8_t returnValue = (tens & 0xF) << 4;
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returnValue = returnValue | (singles & 0xF);
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return returnValue;
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}
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void convertFromValueToBCD(uint8_t *buffer, unsigned long actualValue){
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for(int partsLeft = 0;partsLeft < 4; partsLeft++){
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unsigned long part = actualValue / getDevicer(partsLeft);
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actualValue -= part * getDevicer(partsLeft);
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uint8_t bcd = intToBcd(part);
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buffer[partsLeft] = bcd;
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}
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}
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