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README.md
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README.md
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# XT Keyboard Adapter
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Arduino Leonardo (Atmel MEGA32U4) code for adapting an old XT keyboard into a USB keyboard.
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The code contains a mapping table so this makes the keyboard "programmable"!
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For added effect, there is a beeping sound generated based the events being received from the keyboard.
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XtKeyboard.ino
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XtKeyboard.ino
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// XtKeyboard source: https://forum.arduino.cc/index.php?topic=18396.0
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// XT protocol: https://www.win.tue.nl/~aeb/linux/kbd/scancodes-1.html
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#include <Keyboard.h>
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int clockPin = 2;
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int dataPin = 3;
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byte data = B0;
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int test = 0;
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int counter = 0;
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int numbits = 10;
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int speakerPin = 5;
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int keyReleaseBit = 0x80;
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char m[255];
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void setupKeyMapping() {
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m[1]=KEY_ESC;
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m[2]='1';
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m[3]='2';
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m[4]='3';
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m[5]='4';
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m[6]='5';
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m[7]='6';
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m[8]='7';
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m[9]='8';
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m[10]='9';
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m[11]='0';
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m[12]='-';
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m[13]='=';
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m[14]=KEY_BACKSPACE;
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m[15]=KEY_TAB;
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m[16]='q';
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m[17]='w';
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m[18]='e';
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m[19]='r';
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m[20]='t';
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m[21]='y';
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m[22]='u';
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m[23]='i';
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m[24]='o';
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m[25]='p';
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m[26]='[';
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m[27]=']';
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m[28]=KEY_RETURN;
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m[29]=KEY_LEFT_CTRL;
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m[30]='a';
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m[31]='s';
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m[32]='d';
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m[33]='f';
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m[34]='g';
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m[35]='h';
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m[36]='j';
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m[37]='k';
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m[38]='l';
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m[39]=';';
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m[40]='\'';
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m[41]='`';
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m[42]=KEY_LEFT_SHIFT;
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m[43]='\\';
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m[44]='z';
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m[45]='x';
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m[46]='c';
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m[47]='v';
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m[48]='b';
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m[49]='n';
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m[50]='m';
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m[51]=',';
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m[52]='.';
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m[53]='/';
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m[54]=KEY_RIGHT_SHIFT;
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m[55]='\335'; // num-*
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m[56]=KEY_LEFT_ALT;
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m[57]=' ';
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m[58]=KEY_CAPS_LOCK; // EVIL
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m[59]=KEY_F1;
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m[60]=KEY_F2;
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m[61]=KEY_F3;
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m[62]=KEY_F4;
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m[63]=KEY_F5;
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m[64]=KEY_F6;
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m[65]=KEY_F7;
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m[66]=KEY_F8;
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m[67]=KEY_F9;
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m[68]=KEY_F10;
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// https://forum.arduino.cc/index.php?topic=266688.msg1880644#msg1880644
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const byte KEY_NUM_LOCK = 219;
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m[69]=KEY_NUM_LOCK;
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const byte KEY_SCROLL_LOCK = 207;
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m[70]=KEY_SCROLL_LOCK;
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m[71]='\347'; // num-7
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m[72]='\350'; // num-8
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m[73]='\351'; // num-9
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m[74]='\336'; // num--
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m[75]='\344'; // num-4
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m[76]='\345'; // num-5
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m[77]='\346'; // num-6
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m[78]='\337'; // num-+
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m[79]='\341'; // num-1
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m[80]='\342'; // num-2
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m[81]='\343'; // num-3
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m[82]='\352'; // num-0
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m[83]='\353'; // num-.
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//...
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m[101]=KEY_F11;
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m[102]=KEY_F12;
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m[107]=KEY_INSERT;
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m[108]=KEY_DELETE;
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m[109]=KEY_UP_ARROW;
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m[110]=KEY_DOWN_ARROW;
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m[111]=KEY_LEFT_ARROW;
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m[112]=KEY_RIGHT_ARROW;
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//m[]=KEY_;
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}
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char translateKeyToChar(int key) {
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if (sizeof(m) <= key) {
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return 0;
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}
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return m[key];
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}
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void printChar(char keyChar) {
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Serial.print("'"); Serial.print(keyChar); Serial.print("' ("); Serial.print(int(keyChar)); Serial.println(")");
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}
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void processKbdByte(byte data) {
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bool isRelease = data & keyReleaseBit;
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int key = data - (isRelease ? keyReleaseBit : 0);
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Serial.print("Scancode: <"); Serial.print(int(data)); Serial.print("> ");
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Serial.print("Key: <"); Serial.print(int(key)); Serial.print("> ");
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char keyChar = translateKeyToChar(key);
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if (isRelease) {
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Keyboard.release(keyChar);
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Serial.print("Release: ");
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printChar(keyChar);
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} else {
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Keyboard.press(keyChar);
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Serial.print("Press: ");
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printChar(keyChar);
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}
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}
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void setup() {
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setupKeyMapping();
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pinMode(dataPin, INPUT);
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pinMode(clockPin, INPUT);
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Serial.begin(9600);
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Keyboard.begin();
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}
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void loop() {
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if(digitalRead(clockPin) == LOW && test == 0 && counter < numbits) {
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test = 1;
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data = data >> 1;
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if(digitalRead(dataPin) == HIGH) {
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bitSet(data, 7);
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}
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counter++;
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}
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if(digitalRead(clockPin) == HIGH && test == 1) {
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test = 0;
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}
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if(counter >= numbits) {
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//Serial.println(int(data));
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processKbdByte(data);
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tone(speakerPin, 60 + int(data), 25);
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data = B0;
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counter = 0;
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}
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}
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