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Fixed robot libraries and examples for unified Arduino core
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167
libraries/RobotIRremote/examples/IRrecord/IRrecord.ino
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167
libraries/RobotIRremote/examples/IRrecord/IRrecord.ino
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/*
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* IRrecord: record and play back IR signals as a minimal
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* An IR detector/demodulator must be connected to the input RECV_PIN.
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* An IR LED must be connected to the output PWM pin 3.
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* A button must be connected to the input BUTTON_PIN; this is the
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* send button.
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* A visible LED can be connected to STATUS_PIN to provide status.
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*
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* The logic is:
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* If the button is pressed, send the IR code.
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* If an IR code is received, record it.
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*
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* Version 0.11 September, 2009
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* Copyright 2009 Ken Shirriff
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* http://arcfn.com
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*/
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#include <IRremote.h>
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int RECV_PIN = 11;
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int BUTTON_PIN = 12;
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int STATUS_PIN = 13;
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IRrecv irrecv(RECV_PIN);
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IRsend irsend;
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decode_results results;
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void setup()
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{
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Serial.begin(9600);
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irrecv.enableIRIn(); // Start the receiver
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pinMode(BUTTON_PIN, INPUT);
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pinMode(STATUS_PIN, OUTPUT);
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}
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// Storage for the recorded code
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int codeType = -1; // The type of code
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unsigned long codeValue; // The code value if not raw
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unsigned int rawCodes[RAWBUF]; // The durations if raw
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int codeLen; // The length of the code
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int toggle = 0; // The RC5/6 toggle state
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// Stores the code for later playback
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// Most of this code is just logging
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void storeCode(decode_results *results) {
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codeType = results->decode_type;
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int count = results->rawlen;
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if (codeType == UNKNOWN) {
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Serial.println("Received unknown code, saving as raw");
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codeLen = results->rawlen - 1;
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// To store raw codes:
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// Drop first value (gap)
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// Convert from ticks to microseconds
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// Tweak marks shorter, and spaces longer to cancel out IR receiver distortion
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for (int i = 1; i <= codeLen; i++) {
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if (i % 2) {
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// Mark
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rawCodes[i - 1] = results->rawbuf[i]*USECPERTICK - MARK_EXCESS;
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Serial.print(" m");
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}
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else {
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// Space
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rawCodes[i - 1] = results->rawbuf[i]*USECPERTICK + MARK_EXCESS;
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Serial.print(" s");
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}
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Serial.print(rawCodes[i - 1], DEC);
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}
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Serial.println("");
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}
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else {
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if (codeType == NEC) {
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Serial.print("Received NEC: ");
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if (results->value == REPEAT) {
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// Don't record a NEC repeat value as that's useless.
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Serial.println("repeat; ignoring.");
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return;
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}
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}
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else if (codeType == SONY) {
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Serial.print("Received SONY: ");
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}
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else if (codeType == RC5) {
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Serial.print("Received RC5: ");
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}
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else if (codeType == RC6) {
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Serial.print("Received RC6: ");
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}
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else {
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Serial.print("Unexpected codeType ");
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Serial.print(codeType, DEC);
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Serial.println("");
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}
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Serial.println(results->value, HEX);
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codeValue = results->value;
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codeLen = results->bits;
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}
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}
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void sendCode(int repeat) {
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if (codeType == NEC) {
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if (repeat) {
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irsend.sendNEC(REPEAT, codeLen);
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Serial.println("Sent NEC repeat");
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}
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else {
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irsend.sendNEC(codeValue, codeLen);
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Serial.print("Sent NEC ");
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Serial.println(codeValue, HEX);
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}
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}
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else if (codeType == SONY) {
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irsend.sendSony(codeValue, codeLen);
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Serial.print("Sent Sony ");
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Serial.println(codeValue, HEX);
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}
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else if (codeType == RC5 || codeType == RC6) {
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if (!repeat) {
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// Flip the toggle bit for a new button press
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toggle = 1 - toggle;
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}
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// Put the toggle bit into the code to send
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codeValue = codeValue & ~(1 << (codeLen - 1));
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codeValue = codeValue | (toggle << (codeLen - 1));
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if (codeType == RC5) {
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Serial.print("Sent RC5 ");
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Serial.println(codeValue, HEX);
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irsend.sendRC5(codeValue, codeLen);
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}
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else {
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irsend.sendRC6(codeValue, codeLen);
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Serial.print("Sent RC6 ");
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Serial.println(codeValue, HEX);
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}
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}
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else if (codeType == UNKNOWN /* i.e. raw */) {
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// Assume 38 KHz
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irsend.sendRaw(rawCodes, codeLen, 38);
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Serial.println("Sent raw");
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}
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}
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int lastButtonState;
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void loop() {
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// If button pressed, send the code.
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int buttonState = digitalRead(BUTTON_PIN);
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if (lastButtonState == HIGH && buttonState == LOW) {
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Serial.println("Released");
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irrecv.enableIRIn(); // Re-enable receiver
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}
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if (buttonState) {
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Serial.println("Pressed, sending");
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digitalWrite(STATUS_PIN, HIGH);
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sendCode(lastButtonState == buttonState);
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digitalWrite(STATUS_PIN, LOW);
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delay(50); // Wait a bit between retransmissions
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}
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else if (irrecv.decode(&results)) {
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digitalWrite(STATUS_PIN, HIGH);
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storeCode(&results);
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irrecv.resume(); // resume receiver
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digitalWrite(STATUS_PIN, LOW);
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}
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lastButtonState = buttonState;
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}
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