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@ -9,7 +9,6 @@
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#include <EasyButton.h> //Used to define a button and debounces it
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#include "HID-Project.h" //Lets us simulate keyboard presses.
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//Pin Definitions. These numbers refer to the physical GPIO pins on the board
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//LEDS
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#define LED1 3
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@ -23,12 +22,21 @@
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#define BUTTON3 A1
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#define BUTTON4 A0
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const int cintLedOffTime = 60000; //LED 'OFF' time (milliseconds) is how long LED will remain on for after a button was pressed (For reference: 60,000 = 1 minute)
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const int cintDebounceTime = 200; //DebounceTime (milliseconds) is used with the 'Delay' function to pause code after a button press. This helps to slow 'extra' commands from
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//a Button like 'PASTING repeated data'). Increase the 'time' if wishing to 'hold' an action from happening (or repeating) for longer.
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//This is currently only used when 'blnDelayActions' becomes 'true'. If it is 'false', then the delay is 'zero'.
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unsigned long ledTickTime = 0;
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unsigned long lastPressTime = 0;
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uint8_t ledBrightness = 100;
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bool ledOn = false;
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bool blnDelayActions = false; //Used to SLOW 'button actions' from repeating (ie. it is a simple debounce to retard 'extra' or 'unwanted' actions from Buttons).
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bool blnReleaseALLKeys = false; //Used to control when 'ALL Keyboard Keys should be released'.... OR NOT, where (in some cases) 'Multi-button combinations are required' (eg. 'Hold-Key' actions like Ctr+Alt+Del).
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//If 'blnReleaseALLKeys' is set to false (in the running code), then you must also implicitly state what keys should be released (and when).
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//Using the EasyButton library we create 4 buttons, with each button being connected to a GPIO pin as defined above, and having a 35ms debounce time. From memory, these do not have internal pullup resistors, and are not inverted. Hence the two falses.
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//Using the EasyButton library we create 4 buttons, with each button being connected to a GPIO pin as defined above, and having a 35ms debounce time. From memory, these do not have internal pullup
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//resistors, and are not inverted. Hence the two falses.
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EasyButton button1(BUTTON1, 35, false, false);
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EasyButton button2(BUTTON2, 35, false, false);
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EasyButton button3(BUTTON3, 35, false, false);
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@ -36,7 +44,9 @@ EasyButton button4(BUTTON4, 35, false, false);
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//Standard Arduino setup function. Code that only needs to run once goes here
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void setup() {
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// Send a clean report to the host. This is important on any Arduino type.
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Keyboard.begin();
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Keyboard.end();
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//LEDS - Setting the LED pins to be outputs. Normally, the buttons would be set as inputs, but they are handled by that library.
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pinMode(LED1, OUTPUT);
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@ -69,55 +79,113 @@ void loop() {
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//This should be pretty self explanitory. Make sure to always release a button.
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//Note1: 'Keyboard.press' code options (for reference)
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// Keyboard.press(KEY_LEFT_CTRL)
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// Keyboard.press(KEY_LEFT_ALT)
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// Keyboard.press(KEY_LEFT_SHIFT)
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//Note2: 'Keyboard.release' code options (for use when blnReleaseALLKeys = false)
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// Keyboard.release(KEY_SPACE)
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// Keyboard.release(KEY_LEFT_CTRL)
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if(button1.isPressed())
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{
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Keyboard.press(KEY_LEFT_ALT);
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// PASTE COMMAND (Ctrl+V)
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Keyboard.press(KEY_LEFT_CTRL);
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Keyboard.write('v');
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lastPressTime = millis();
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blnDelayActions = true;
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}
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else if(button1.wasReleased())
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{
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Keyboard.release(KEY_LEFT_ALT);
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lastPressTime = millis();
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blnDelayActions = false;
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blnReleaseALLKeys = true;
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}
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if(button2.isPressed())
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{
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// COPY COMMAND (Ctrl+C)
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Keyboard.press(KEY_LEFT_CTRL);
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Keyboard.write('c');
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lastPressTime = millis();
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blnDelayActions = false;
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}
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else if(button2.wasReleased())
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{
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Keyboard.release(KEY_LEFT_CTRL);
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lastPressTime = millis();
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blnDelayActions = false;
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blnReleaseALLKeys = true;
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}
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if(button3.isPressed())
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{
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Keyboard.press(KEY_LEFT_SHIFT);
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//CUSTOM TEXT (Message)
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Keyboard.println("Hi there");
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Keyboard.println();
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Keyboard.println("Just confirming that your item is in the mail... See pics.");
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Keyboard.println();
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Keyboard.println("Tracking is available via Australia Post: TMP40083004070052454xxxxx");
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Keyboard.println("Tracking progress applies on business days as it processes through Australia Post facilities..");
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Keyboard.println();
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Keyboard.print("Thank-you and All the best ;)");
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lastPressTime = millis();
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blnDelayActions = true;
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}
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else if(button3.wasReleased())
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{
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Keyboard.release(KEY_LEFT_SHIFT);
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lastPressTime = millis();
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blnDelayActions = false;
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blnReleaseALLKeys = true;
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}
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if(button4.isPressed())
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{
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Keyboard.press(KEY_SPACE);
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// 'CTRL' KEY (Only)
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Keyboard.press(KEY_LEFT_CTRL);
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lastPressTime = millis();
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blnDelayActions = false;
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}
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else if(button4.wasReleased())
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{
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Keyboard.release(KEY_SPACE);
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lastPressTime = millis();
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blnDelayActions = false;
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blnReleaseALLKeys = false; //When FALSE - you must implicidly release Keys (below)
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Keyboard.release(KEY_LEFT_CTRL);
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}
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if((millis() - lastPressTime) > 10000)
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// Check if a 'Pause' is required while performing 'Button' action(s): This stops (or rather 'SLOWS') 'repeated button actions' if a button is 'held down too long' (eg. helps stop extra 'PASTE data' commands)
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switch (blnDelayActions)
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{
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case true:
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// Pause
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delay(cintDebounceTime);
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blnDelayActions = false;
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break;
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default:
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// No Delay, or maybe repeat action(s)
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delay(0);
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break;
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}
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// Check if ALL Keyboard Keys should now be released (Usually 'true', but perhaps 'false' if 'multi-button hold combinations' are required)
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switch (blnReleaseALLKeys)
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{
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case true:
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// Release ALL Keyboard Keys (this should almost always be the case)
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Keyboard.releaseAll();
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blnReleaseALLKeys = false;
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break;
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default:
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// Do NOT Release Keys (IMPORTANT: If here not by default, then you should have already implicidly set what Keys have been (or are to be) released.)
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break;
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}
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if((millis() - lastPressTime) > cintLedOffTime)
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{
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ledOn = false;
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}
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@ -126,6 +194,7 @@ void loop() {
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ledOn = true;
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}
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if ((millis() - ledTickTime) > 10)
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{
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ledTickTime = millis();
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