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https://github.com/ShikyC/Taiko-Drum-Controller-Arduino.git
synced 2024-11-23 22:10:58 +01:00
Initial release
Bug fixes; Added stable frequency control;
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@ -9,16 +9,15 @@
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***************************************************************/
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#define MODE_JIRO 1
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#define MODE_DEBUG 1
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#define MODE_DEBUG_SHOW_TIME 0
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#define MODE_DEBUG 0
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#define CHANNELS 4
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#define SAMPLE_CACHE_LENGTH 15
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#define SAMPLE_CACHE_LENGTH 12
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#define POWER_CACHE_LENGTH 3
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#define LIGHT_THRES 500
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#define HEAVY_THRES 1000
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#define LIGHT_THRES 5000
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#define HEAVY_THRES 20000
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#include <limits.h>
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#include <Keyboard.h>
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@ -28,6 +27,8 @@
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#define HEAVY_THRES LONG_MAX
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#endif
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unsigned long int lastTime;
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int channelSample [CHANNELS];
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int lastChannelSample [CHANNELS];
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Cache <int, SAMPLE_CACHE_LENGTH> sampleCache [CHANNELS];
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@ -50,28 +51,14 @@ void setup() {
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lastChannelSample [i] = 0;
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triggered [i] = false;
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}
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lastTime = 0;
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}
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void loop() {
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#if MODE_DEBUG
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long int sampleLastTime = 0;
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long int calcLastTime = 0;
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#endif
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for (short int i = 0; i < CHANNELS; i++) {
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#if MODE_DEBUG
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long int lastTime = micros();
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#endif
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channelSample[i] = analogRead (pins[i]);
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#if MODE_DEBUG
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sampleLastTime += micros () - lastTime;
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lastTime = micros();
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#endif
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channelSample[i] = analogRead (pins [i]);
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sampleCache [i].put (channelSample [i] - lastChannelSample [i]);
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long int tempInt;
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@ -79,44 +66,31 @@ void loop() {
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power [i] -= tempInt * tempInt;
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tempInt = sampleCache [i].get ();
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power [i] += tempInt * tempInt;
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if (power [i] < LIGHT_THRES) {
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power [i] = 0;
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}
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powerCache [i].put (power [i]);
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lastChannelSample [i] = channelSample [i];
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if (powerCache [i].get (1) == 0) {
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triggered [i] = false;
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}
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bool isDescending = true;
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for (short int j = 0; j < POWER_CACHE_LENGTH - 1; j++){
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if (!triggered [i] && (powerCache [i].get (j - 1) > powerCache [i].get (j))) {
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isDescending = false;
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break;
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if (!triggered [i]) {
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for (short int j = 0; j < POWER_CACHE_LENGTH - 1; j++) {
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if (powerCache [i].get (j - 1) >= powerCache [i].get (j)) {
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break;
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} else if (powerCache [i].get (1) >= HEAVY_THRES) {
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triggered [i] = true;
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Keyboard.print (heavyKeys [i]);
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} else if (powerCache [i].get (1) >= LIGHT_THRES) {
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triggered [i] = true;
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Keyboard.print (lightKeys [i]);
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}
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}
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}
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if (isDescending) {
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if (power [i] >= HEAVY_THRES) {
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triggered [i] = true;
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#if !MODE_DEBUG
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Keyboard.print (heavyKeys [i]);
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#endif
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} else if (power [i] >= LIGHT_THRES) {
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triggered [i] = true;
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#if !MODE_DEBUG
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Keyboard.print (lightKeys [i]);
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#endif
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}
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#if MODE_DEBUG
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calcLastTime += micros () - lastTime;
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#endif
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}
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#if MODE_DEBUG
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#if MODE_DEBUGjj
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Serial.print (power [i]);
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Serial.print ("\t");
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#endif
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@ -125,19 +99,19 @@ void loop() {
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}
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#if MODE_DEBUG
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// Damn Arduino plotter, the Y axis scale changes much
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// too frequently! Use these 5000 and 0 values to "lock"
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// the plotter.
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Serial.print (5000);
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// Damn Arduino plotter, the Y axis scale changes too frequently! Use these values to "lock" the plotter's scale.
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Serial.print (50000);
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Serial.print ("\t");
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Serial.print (0);
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Serial.print ("\t");
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#if MODE_DEBUG_SHOW_TIME
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Serial.print (sampleLastTime);
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Serial.print ('\t');
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Serial.print (calcLastTime);
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#endif
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Serial.println ("");
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#endif
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// Force the sample frequency to be less than 1000Hz
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unsigned int frameTime = micros () - lastTime;
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lastTime = micros ();
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if (frameTime < 1000) {
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delayMicroseconds (1000 - frameTime);
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}
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}
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