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trev/arduino/src/sketch.ino

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#include <RCSwitch.h>
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#include <IRremote.h>
// Necessary IR Globals
int RECV_PIN = 10;
IRrecv irrecv(RECV_PIN);
IRsend irsend;
decode_results results;
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uint8_t message[8];
int index = 0;
boolean com = false;
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int irReceive = 0;
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void setup()
{
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Serial.begin(9600);
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}
void loop()
{
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if (irReceive > millis() && irrecv.decode(&results)) {
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irRead(&results);
irrecv.resume();
} else {
while(Serial.available()) {
uint8_t x = Serial.read();
if(index > 0 || (x >= 80 && x <= 95)) {
message[index++] = x;
if(index > 7){
decodeMessage();
index = 0;
}
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}
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}
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}
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}
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void decodeMessage() {
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int cmd = message[0];
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int pin = (message[1] - 97 < 0 || message[1] - 97 > 19)? -1 : message[1] - 97 ;
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if(com) {
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uint8_t val[6];
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memcpy(val, message + 2, 6);
switch (cmd) {
//case 80: break;
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case 81: setMode(val[0], pin); break;
case 82: digitalW(val[0], pin); break;
case 83: digitalR(pin); break;
case 84: analogW(pin, val) break;
case 85: analogR(pin) break;
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//case 86: break;
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case 87: sendRCTristate(val, pin); break;
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//case 88: break;
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case 89: irrecv.enableIRIn();
irReceive = millis() + 10000;
break;
default: break;
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}
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} else if(cmd == 90) {
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com = true;
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setMode(0, pin);
digitalWrite(pin, HIGH);
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Serial.println("Ready!");
} else {
Serial.println("Arduino not configured for communication!");
}
}
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void setMode(uint8_t val, int pin) {
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if(pin == -1) { Serial.println("badpin"); return; }
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if (val == 0) {
pinMode(pin, OUTPUT);
} else {
pinMode(pin, INPUT);
}
}
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void digitalW(uint8_t val, int pin) {
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if(pin == -1) { Serial.println("badpin"); return; }
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pinMode(pin, OUTPUT);
if(val == 0) {
digitalWrite(pin, LOW);
} else {
digitalWrite(pin, HIGH);
}
}
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void digitalR(int pin) {
if(pin == -1) { Serial.println("badpin"); return; }
pinMode(pin, INPUT);
int digraw = digitalRead(pin);
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Serial.println(String(pin + '::' + digraw));
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}
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void analogW(uint8_t val[], int pin) {
if(p == -1) { if(debug) Serial.println("badpin"); return; }
pinMode(p, OUTPUT);
analogWrite(p,(256*val[0])+val[1]);
}
void analogR(int pin) {
if(p == -1) { Serial.println("badpin"); return; }
pinMode(p, INPUT);
int rval = analogRead(p);
Serial.println(String(pin + "::" + rval));
}
void handleRCDecimal(uint8_t val[], int pin) {
if (p == -1) { Serial.println("badpin"); return; }
unsigned int length =(val[0]*256)+val[1];
unsigned long value =(val[2]*16777216)+(val[3]*65536)+(val[4]*256)+val[5];
RCSwitch rc = RCSwitch();
rc.enableTransmit(p);
rc.send(value, length);
}
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void sendRCTristate (uint8_t val[], int pin) {
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if(pin == -1) { Serial.println("badpin"); return; }
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String triStateCode = "";
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RCSwitch rc = RCSwitch();
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rc.enableTransmit(pin);
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for(int i = 0; i < 6; i++)
{
String triStatePart = String(val[i], HEX);
triStatePart = (triStatePart.length() < 2) ? String("0" + triStatePart) : triStatePart;
triStateCode.concat(triStatePart);
}
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char triState[triStateCode.length() + 1];
triStateCode.toUpperCase();
triStateCode.toCharArray(triState, triStateCode.length() + 1);
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rc.sendTriState(triState);
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delay(500);
Serial.print("RC-Tristate send: ");
Serial.println(triState);
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}
void irRead(decode_results *results) {
int codeType = results->decode_type;
if (codeType == UNKNOWN) {
Serial.println("Unknown IR Protocol!");
} else {
if (codeType == NEC) {
if (results->value == REPEAT) {
return;
}
}
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unsigned long codeValue = results->value;
int codeLen = results->bits;
char m[22];
sprintf(m, "%04d::%04d::%09lu", codeType,codeLen,codeValue);
Serial.println(m);
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}
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}