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CommandStation-EX/CVReader.ino

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#include "DCC.h"
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#include "DIAG.h"
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#include "JMRIParser.h"
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/* this code is here to test the waveforwe generator and reveal the issues involved in programming track operations.
*
* It tests the Waveform genartor and demonstrates how a DCC API function can be simply written
* to transmit and receive DCC data on the programming track.
*
* Important... DCCWaveform.h contains hardware specific confioguration settings
* that you will need to check.
*
* Notes: the waveform generator sends reset packets on progTrack when it has nothing better to do, this means that
* the decoder does not step out of service mode. (The main track sends idles).
* It also means that the API functions dont have to mess with reset packets.
*
*/
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const int cvnums[]={1,2,3,4,5,17,18,19,21,22,29};
void setup() {
Serial.begin(115200);
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DCC::begin();
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DIAG(F("\n===== CVReader begin ==============================\n"));
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for (byte x=0;x<sizeof(cvnums)/sizeof(cvnums[0]);x++) {
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int value=DCC::readCV(cvnums[x]);
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DIAG(F("\nCV %d = %d 0x%x %s"),cvnums[x],value,value, value>=0?" VERIFIED OK":"FAILED VERIFICATION");
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}
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DIAG(F("\n===== CVReader done ==============================\n"));
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DIAG(F("\nReady for JMRI\n"));
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}
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const byte MAX_BUFFER=100;
char buffer[MAX_BUFFER];
byte bufferLength=0;
bool inCommandPayload=false;
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void loop() {
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DCC::loop();
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while(Serial.available()) {
if (bufferLength==MAX_BUFFER) {
DIAG(F("\n**Buffer cleared**\n"));
bufferLength=0;
inCommandPayload=false;
}
char ch = Serial.read();
if (ch == '<') {
inCommandPayload = true;
bufferLength=0;
buffer[0]='\0';
}
else if (ch == '>') {
buffer[bufferLength]='\0';
JMRIParser::parse(buffer);
inCommandPayload = false;
} else if(inCommandPayload) {
buffer[bufferLength++]= ch;
}
}
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}
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