New music patterns and Arturia controller
[SugarCubes.git] / _MIDI.pde
1 /**
2 * DOUBLE BLACK DIAMOND DOUBLE BLACK DIAMOND
3 *
4 * //\\ //\\ //\\ //\\
5 * ///\\\ ///\\\ ///\\\ ///\\\
6 * \\\/// \\\/// \\\/// \\\///
7 * \\// \\// \\// \\//
8 *
9 * EXPERTS ONLY!! EXPERTS ONLY!!
10 *
11 * This file defines the MIDI mapping interfaces. This shouldn't
12 * need editing unless you're adding top level support for a
13 * specific MIDI device of some sort. Generally, all MIDI devices
14 * will just work with the default configuration, and you can
15 * set your SCPattern class to respond to the controllers that you
16 * care about.
17 */
18
19 interface MidiEngineListener {
20 public void onFocusedDeck(int deckIndex);
21 }
22
23 class MidiEngine {
24
25 public final GridController grid;
26 private final List<MidiEngineListener> listeners = new ArrayList<MidiEngineListener>();
27 private final List<SCMidiInput> midiControllers = new ArrayList<SCMidiInput>();
28
29 public MidiEngine addListener(MidiEngineListener l) {
30 listeners.add(l);
31 return this;
32 }
33
34 public MidiEngine removeListener(MidiEngineListener l) {
35 listeners.remove(l);
36 return this;
37 }
38
39 private SCMidiInput midiQwertyKeys;
40 private SCMidiInput midiQwertyAPC;
41
42 private int activeDeckIndex = 0;
43
44 public MidiEngine() {
45 grid = new GridController(this);
46 midiControllers.add(midiQwertyKeys = new VirtualKeyMidiInput(this, VirtualKeyMidiInput.KEYS));
47 midiControllers.add(midiQwertyAPC = new VirtualKeyMidiInput(this, VirtualKeyMidiInput.APC));
48 int apcCount = 0;
49 for (MidiInputDevice device : RWMidi.getInputDevices()) {
50 if (device.getName().contains("APC")) {
51 ++apcCount;
52 }
53 }
54
55 int apcIndex = 0;
56 for (MidiInputDevice device : RWMidi.getInputDevices()) {
57 if (device.getName().contains("APC")) {
58 int apcDeck = -1;
59 if (apcCount > 1 && apcIndex < 2) {
60 apcDeck = apcIndex++;
61 }
62 midiControllers.add(new APC40MidiInput(this, device, apcDeck).setEnabled(true));
63 } else if (device.getName().contains("SLIDER/KNOB KORG")) {
64 midiControllers.add(new KorgNanoKontrolMidiInput(this, device).setEnabled(true));
65 } else if (device.getName().contains("Arturia MINILAB")) {
66 midiControllers.add(new ArturiaMinilabMidiInput(this, device).setEnabled(true));
67 } else {
68 boolean enabled =
69 device.getName().contains("KEYBOARD KORG") ||
70 device.getName().contains("Bus 1 Apple");
71 midiControllers.add(new GenericDeviceMidiInput(this, device).setEnabled(enabled));
72 }
73 }
74
75 apcIndex = 0;
76 for (MidiOutputDevice device : RWMidi.getOutputDevices()) {
77 if (device.getName().contains("APC")) {
78 int apcDeck = -1;
79 if (apcCount > 1 && apcIndex < 2) {
80 apcDeck = apcIndex++;
81 }
82 new APC40MidiOutput(this, device, apcDeck);
83 }
84 }
85 }
86
87 public List<SCMidiInput> getControllers() {
88 return this.midiControllers;
89 }
90
91 public LXDeck getFocusedDeck() {
92 return lx.engine.getDeck(activeDeckIndex);
93 }
94
95 public SCPattern getFocusedPattern() {
96 return (SCPattern) getFocusedDeck().getActivePattern();
97 }
98
99 public MidiEngine setFocusedDeck(int deckIndex) {
100 if (this.activeDeckIndex != deckIndex) {
101 this.activeDeckIndex = deckIndex;
102 for (MidiEngineListener listener : listeners) {
103 listener.onFocusedDeck(deckIndex);
104 }
105 }
106 return this;
107 }
108
109 public boolean isQwertyEnabled() {
110 return midiQwertyKeys.isEnabled() || midiQwertyAPC.isEnabled();
111 }
112 }
113
114 public interface SCMidiInputListener {
115 public void onEnabled(SCMidiInput controller, boolean enabled);
116 }
117
118 public abstract class SCMidiInput extends AbstractScrollItem {
119
120 protected boolean enabled = false;
121 private final String name;
122
123 protected final MidiEngine midiEngine;
124
125 final List<SCMidiInputListener> listeners = new ArrayList<SCMidiInputListener>();
126
127 protected SCMidiInput(MidiEngine midiEngine, String name) {
128 this.midiEngine = midiEngine;
129 this.name = name;
130 }
131
132 public SCMidiInput addListener(SCMidiInputListener l) {
133 listeners.add(l);
134 return this;
135 }
136
137 public SCMidiInput removeListener(SCMidiInputListener l) {
138 listeners.remove(l);
139 return this;
140 }
141
142 public String getLabel() {
143 return name;
144 }
145
146 public boolean isEnabled() {
147 return enabled;
148 }
149
150 public boolean isSelected() {
151 return enabled;
152 }
153
154 public void onMousePressed() {
155 setEnabled(!enabled);
156 }
157
158 public SCMidiInput setEnabled(boolean enabled) {
159 if (enabled != this.enabled) {
160 this.enabled = enabled;
161 for (SCMidiInputListener l : listeners) {
162 l.onEnabled(this, enabled);
163 }
164 }
165 return this;
166 }
167
168 private boolean logMidi() {
169 return (uiMidi != null) && uiMidi.logMidi();
170 }
171
172 protected SCPattern getTargetPattern() {
173 return midiEngine.getFocusedPattern();
174 }
175
176 final void programChangeReceived(ProgramChange pc) {
177 if (!enabled) {
178 return;
179 }
180 if (logMidi()) {
181 println(getLabel() + " :: Program Change :: " + pc.getNumber());
182 }
183 handleProgramChange(pc);
184 }
185
186 final void controllerChangeReceived(rwmidi.Controller cc) {
187 if (!enabled) {
188 return;
189 }
190 if (logMidi()) {
191 println(getLabel() + " :: Controller :: " + cc.getChannel() + " :: " + cc.getCC() + ":" + cc.getValue());
192 }
193 if (!handleControllerChange(cc)) {
194 getTargetPattern().controllerChange(cc);
195 }
196 }
197
198 final void noteOnReceived(Note note) {
199 if (!enabled) {
200 return;
201 }
202 if (logMidi()) {
203 println(getLabel() + " :: Note On :: " + note.getChannel() + ":" + note.getPitch() + ":" + note.getVelocity());
204 }
205 if (!handleNoteOn(note)) {
206 getTargetPattern().noteOn(note);
207 }
208 }
209
210 final void noteOffReceived(Note note) {
211 if (!enabled) {
212 return;
213 }
214 if (logMidi()) {
215 println(getLabel() + " :: Note Off :: " + note.getChannel() + ":" + note.getPitch() + ":" + note.getVelocity());
216 }
217 if (!handleNoteOff(note)) {
218 getTargetPattern().noteOff(note);
219 }
220 }
221
222 // Subclasses may implement these to map top-level functionality
223 protected boolean handleProgramChange(ProgramChange pc) { return false; }
224 protected boolean handleControllerChange(rwmidi.Controller cc) { return false; }
225 protected boolean handleNoteOn(Note note) { return false; }
226 protected boolean handleNoteOff(Note note) { return false; }
227 }
228
229 public class VirtualKeyMidiInput extends SCMidiInput {
230
231 public static final int KEYS = 1;
232 public static final int APC = 2;
233
234 private final int mode;
235
236 private int octaveShift = 0;
237
238 class NoteMeta {
239 int channel;
240 int number;
241 NoteMeta(int channel, int number) {
242 this.channel = channel;
243 this.number = number;
244 }
245 }
246
247 final Map<Character, NoteMeta> keyToNote = new HashMap<Character, NoteMeta>();
248
249 VirtualKeyMidiInput(MidiEngine midiEngine, int mode) {
250 super(midiEngine, "QWERTY (" + (mode == APC ? "APC" : "Key") + " Mode)");
251 this.mode = mode;
252 if (mode == APC) {
253 mapAPC();
254 } else {
255 mapKeys();
256 }
257 registerKeyEvent(this);
258 }
259
260 private void mapAPC() {
261 mapNote('1', 0, 53);
262 mapNote('2', 1, 53);
263 mapNote('3', 2, 53);
264 mapNote('4', 3, 53);
265 mapNote('5', 4, 53);
266 mapNote('6', 5, 53);
267 mapNote('q', 0, 54);
268 mapNote('w', 1, 54);
269 mapNote('e', 2, 54);
270 mapNote('r', 3, 54);
271 mapNote('t', 4, 54);
272 mapNote('y', 5, 54);
273 mapNote('a', 0, 55);
274 mapNote('s', 1, 55);
275 mapNote('d', 2, 55);
276 mapNote('f', 3, 55);
277 mapNote('g', 4, 55);
278 mapNote('h', 5, 55);
279 mapNote('z', 0, 56);
280 mapNote('x', 1, 56);
281 mapNote('c', 2, 56);
282 mapNote('v', 3, 56);
283 mapNote('b', 4, 56);
284 mapNote('n', 5, 56);
285 }
286
287 private void mapKeys() {
288 int note = 48;
289 mapNote('a', 1, note++);
290 mapNote('w', 1, note++);
291 mapNote('s', 1, note++);
292 mapNote('e', 1, note++);
293 mapNote('d', 1, note++);
294 mapNote('f', 1, note++);
295 mapNote('t', 1, note++);
296 mapNote('g', 1, note++);
297 mapNote('y', 1, note++);
298 mapNote('h', 1, note++);
299 mapNote('u', 1, note++);
300 mapNote('j', 1, note++);
301 mapNote('k', 1, note++);
302 mapNote('o', 1, note++);
303 mapNote('l', 1, note++);
304 }
305
306 void mapNote(char ch, int channel, int number) {
307 keyToNote.put(ch, new NoteMeta(channel, number));
308 }
309
310 public void keyEvent(KeyEvent e) {
311 if (!enabled) {
312 return;
313 }
314 char c = Character.toLowerCase(e.getKeyChar());
315 NoteMeta nm = keyToNote.get(c);
316 if (nm != null) {
317 switch (e.getID()) {
318 case KeyEvent.KEY_PRESSED:
319 noteOnReceived(new Note(Note.NOTE_ON, nm.channel, nm.number + octaveShift*12, 127));
320 break;
321 case KeyEvent.KEY_RELEASED:
322 noteOffReceived(new Note(Note.NOTE_OFF, nm.channel, nm.number + octaveShift*12, 0));
323 break;
324 }
325 }
326 if ((mode == KEYS) && (e.getID() == KeyEvent.KEY_PRESSED)) {
327 switch (c) {
328 case 'z':
329 octaveShift = constrain(octaveShift-1, -4, 4);
330 break;
331 case 'x':
332 octaveShift = constrain(octaveShift+1, -4, 4);
333 break;
334 }
335 }
336 }
337 }
338
339 public class GenericDeviceMidiInput extends SCMidiInput {
340 GenericDeviceMidiInput(MidiEngine midiEngine, MidiInputDevice d) {
341 super(midiEngine, d.getName().replace("Unknown vendor",""));
342 d.createInput(this);
343 }
344 }
345
346 public class APC40MidiInput extends GenericDeviceMidiInput {
347
348 private boolean shiftOn = false;
349 private LXEffect releaseEffect = null;
350 final private LXDeck targetDeck;
351
352 APC40MidiInput(MidiEngine midiEngine, MidiInputDevice d) {
353 this(midiEngine, d, -1);
354 }
355
356 APC40MidiInput(MidiEngine midiEngine, MidiInputDevice d, int deckIndex) {
357 super(midiEngine, d);
358 targetDeck = (deckIndex < 0) ? null : lx.engine.getDecks().get(deckIndex);
359 }
360
361 protected LXDeck getTargetDeck() {
362 return (targetDeck != null) ? targetDeck : midiEngine.getFocusedDeck();
363 }
364
365 protected SCPattern getTargetPattern() {
366 if (targetDeck != null) {
367 return (SCPattern) (targetDeck.getActivePattern());
368 }
369 return super.getTargetPattern();
370 }
371
372 private class GridPosition {
373 public final int row, col;
374 GridPosition(int r, int c) {
375 row = r;
376 col = c;
377 }
378 }
379
380 private GridPosition getGridPosition(Note note) {
381 int channel = note.getChannel();
382 int pitch = note.getPitch();
383 if (channel < 8) {
384 if (pitch >= 53 && pitch <=57) return new GridPosition(pitch-53, channel);
385 }
386 return null;
387 }
388
389 private boolean handleGridNoteOn(Note note) {
390 GridPosition p = getGridPosition(note);
391 if (p != null) {
392 return midiEngine.grid.gridPressed(p.row, p.col);
393 }
394 return false;
395 }
396
397 private boolean handleGridNoteOff(Note note) {
398 GridPosition p = getGridPosition(note);
399 if (p != null) {
400 return midiEngine.grid.gridReleased(p.row, p.col);
401 }
402 return false;
403 }
404
405 protected boolean handleControllerChange(rwmidi.Controller cc) {
406 int channel = cc.getChannel();
407 int number = cc.getCC();
408 float value = cc.getValue() / 127.;
409 switch (number) {
410
411 case 7:
412 switch (channel) {
413 case 0:
414 effects.colorFucker.hueShift.setValue(value);
415 return true;
416 case 1:
417 effects.colorFucker.desat.setValue(value);
418 return true;
419 case 2:
420 effects.colorFucker.sharp.setValue(value);
421 return true;
422 case 3:
423 effects.blur.amount.setValue(value);
424 return true;
425 case 4:
426 effects.quantize.amount.setValue(value);
427 return true;
428 }
429 break;
430
431 // Master bright
432 case 14:
433 effects.colorFucker.level.setValue(value);
434 return true;
435
436 // Crossfader
437 case 15:
438 lx.engine.getDeck(GLucose.RIGHT_DECK).getFader().setValue(value);
439 return true;
440 }
441
442 int parameterIndex = -1;
443 if (number >= 48 && number <= 55) {
444 parameterIndex = number - 48;
445 } else if (number >= 16 && number <= 19) {
446 parameterIndex = 8 + (number-16);
447 }
448 if (parameterIndex >= 0) {
449 List<LXParameter> parameters = getTargetPattern().getParameters();
450 if (parameterIndex < parameters.size()) {
451 parameters.get(parameterIndex).setValue(value);
452 return true;
453 }
454 }
455
456 if (number >= 20 && number <= 23) {
457 int effectIndex = number - 20;
458 List<LXParameter> parameters = glucose.getSelectedEffect().getParameters();
459 if (effectIndex < parameters.size()) {
460 parameters.get(effectIndex).setValue(value);
461 return true;
462 }
463 }
464
465 return false;
466 }
467
468 private long tap1 = 0;
469
470 private boolean lbtwn(long a, long b, long c) {
471 return a >= b && a <= c;
472 }
473
474 protected boolean handleNoteOn(Note note) {
475 if (handleGridNoteOn(note)) {
476 return true;
477 }
478
479 int nPitch = note.getPitch();
480 int nChan = note.getChannel();
481 switch (nPitch) {
482
483 case 49: // SOLO/CUE
484 switch (nChan) {
485 case 4:
486 effects.colorFucker.mono.setValue(1);
487 return true;
488 case 5:
489 effects.colorFucker.invert.setValue(1);
490 return true;
491 case 6:
492 lx.cycleBaseHue(60000);
493 return true;
494 }
495 break;
496
497 case 82: // scene 1
498 effects.boom.trigger();
499 return true;
500
501 case 83: // scene 2
502 effects.flash.trigger();
503 return true;
504
505 case 84: // scene 3
506 getTargetPattern().reset();
507 return true;
508
509 case 90:
510 // dan's dirty tapping mechanism
511 lx.tempo.trigger();
512 tap1 = millis();
513 return true;
514
515 case 91: // play
516 case 97: // left bank
517 midiEngine.setFocusedDeck(0);
518 return true;
519
520 case 93: // rec
521 case 96: // right bank
522 midiEngine.setFocusedDeck(1);
523 return true;
524
525 case 94: // up bank
526 if (shiftOn) {
527 glucose.incrementSelectedEffectBy(-1);
528 } else {
529 getTargetDeck().goPrev();
530 }
531 return true;
532
533 case 95: // down bank
534 if (shiftOn) {
535 glucose.incrementSelectedEffectBy(1);
536 } else {
537 getTargetDeck().goNext();
538 }
539 return true;
540
541 case 98: // shift
542 shiftOn = true;
543 return true;
544
545 case 99: // tap tempo
546 lx.tempo.tap();
547 return true;
548
549 case 100: // nudge+
550 lx.tempo.setBpm(lx.tempo.bpm() + (shiftOn ? 1 : .1));
551 return true;
552
553 case 101: // nudge-
554 lx.tempo.setBpm(lx.tempo.bpm() - (shiftOn ? 1 : .1));
555 return true;
556
557 case 62: // Detail View / red 5
558 releaseEffect = glucose.getSelectedEffect();
559 if (releaseEffect.isMomentary()) {
560 releaseEffect.enable();
561 } else {
562 releaseEffect.toggle();
563 }
564 return true;
565
566 case 63: // rec quantize / red 6
567 glucose.getSelectedEffect().disable();
568 return true;
569 }
570
571 return false;
572 }
573
574 protected boolean handleNoteOff(Note note) {
575 if (handleGridNoteOff(note)) {
576 return true;
577 }
578
579 int nPitch = note.getPitch();
580 int nChan = note.getChannel();
581
582 switch (nPitch) {
583
584 case 49: // SOLO/CUE
585 switch (nChan) {
586 case 4:
587 effects.colorFucker.mono.setValue(0);
588 return true;
589 case 5:
590 effects.colorFucker.invert.setValue(0);
591 return true;
592 case 6:
593 lx.setBaseHue(lx.getBaseHue());
594 return true;
595 }
596 break;
597
598 case 52: // CLIP STOP
599 if (nChan < PresetManager.NUM_PRESETS) {
600 if (shiftOn) {
601 presetManager.store(getTargetDeck(), nChan);
602 } else {
603 presetManager.select(getTargetDeck(), nChan);
604 }
605 }
606 return true;
607
608 case 90: // SEND C
609 long tapDelta = millis() - tap1;
610 if (lbtwn(tapDelta,5000,300*1000)) { // hackish tapping mechanism
611 double bpm = 32.*60000./(tapDelta);
612 while (bpm < 20) bpm*=2;
613 while (bpm > 40) bpm/=2;
614 lx.tempo.setBpm(bpm);
615 lx.tempo.trigger();
616 tap1 = 0;
617 println("Tap Set - " + bpm + " bpm");
618 }
619 return true;
620
621 case 63: // rec quantize / RED 6
622 if (releaseEffect != null) {
623 if (releaseEffect.isMomentary()) {
624 releaseEffect.disable();
625 }
626 }
627 return true;
628
629 case 98: // shift
630 shiftOn = false;
631 return true;
632 }
633
634 return false;
635 }
636 }
637
638 class KorgNanoKontrolMidiInput extends GenericDeviceMidiInput {
639
640 KorgNanoKontrolMidiInput(MidiEngine midiEngine, MidiInputDevice d) {
641 super(midiEngine, d);
642 }
643
644 protected boolean handleControllerChange(rwmidi.Controller cc) {
645 int number = cc.getCC();
646 if (number >= 16 && number <= 23) {
647 int parameterIndex = number - 16;
648 List<LXParameter> parameters = midiEngine.getFocusedPattern().getParameters();
649 if (parameterIndex < parameters.size()) {
650 parameters.get(parameterIndex).setValue(cc.getValue() / 127.);
651 return true;
652 }
653 }
654
655 if (cc.getValue() == 127) {
656 switch (number) {
657
658 case 58: // Left track
659 midiEngine.setFocusedDeck(GLucose.LEFT_DECK);
660 return true;
661
662 case 59: // Right track
663 midiEngine.setFocusedDeck(GLucose.RIGHT_DECK);
664 return true;
665
666 case 43: // Left chevron
667 midiEngine.getFocusedDeck().goPrev();
668 return true;
669
670 case 44: // Right chevron
671 midiEngine.getFocusedDeck().goNext();
672 return true;
673 }
674 }
675
676 return false;
677 }
678 }
679
680 class APC40MidiOutput implements LXParameter.Listener, GridOutput {
681
682 private final MidiEngine midiEngine;
683 private final MidiOutput output;
684 private LXPattern focusedPattern = null;
685 private LXEffect focusedEffect = null;
686 private final LXDeck targetDeck;
687
688 APC40MidiOutput(MidiEngine midiEngine, MidiOutputDevice device) {
689 this(midiEngine, device, -1);
690 }
691
692 APC40MidiOutput(MidiEngine midiEngine, MidiOutputDevice device, int deckIndex) {
693 this.midiEngine = midiEngine;
694 output = device.createOutput();
695 targetDeck = (deckIndex < 0) ? null : lx.engine.getDecks().get(deckIndex);
696 setDPatternOutputs();
697 if (targetDeck != null) {
698 midiEngine.addListener(new MidiEngineListener() {
699 public void onFocusedDeck(int deckIndex) {
700 resetPatternParameters();
701 for (int i = 0; i < 8; ++i) {
702 output.sendNoteOn(i, 52, 0);
703 }
704 }
705 });
706 }
707 glucose.addEffectListener(new GLucose.EffectListener() {
708 public void effectSelected(LXEffect effect) {
709 resetEffectParameters();
710 }
711 });
712 LXDeck.Listener deckListener = new LXDeck.AbstractListener() {
713 public void patternDidChange(LXDeck deck, LXPattern pattern) {
714 if (deck == getTargetDeck()) {
715 resetPatternParameters();
716 }
717 }
718 };
719 for (LXDeck d : lx.engine.getDecks()) {
720 if (targetDeck == null || d == targetDeck) {
721 d.addListener(deckListener);
722 }
723 }
724 presetManager.addListener(new PresetListener() {
725 public void onPresetSelected(LXDeck deck, Preset preset) {
726 if (deck == getTargetDeck()) {
727 for (int i = 0; i < 8; ++i) {
728 output.sendNoteOn(i, 52, (preset.index == i) ? 1 : 0);
729 }
730 }
731 }
732 public void onPresetDirty(LXDeck deck, Preset preset) {
733 if (deck == getTargetDeck()) {
734 output.sendNoteOn(preset.index, 52, 2);
735 }
736 }
737 public void onPresetStored(LXDeck deck, Preset preset) {
738 onPresetSelected(deck, preset);
739 }
740 });
741 resetParameters();
742 midiEngine.grid.addOutput(this);
743
744 lx.cycleBaseHue(60000);
745 output.sendNoteOn(6, 49, 127);
746
747 // Turn off the track selection lights and preset selectors
748 for (int i = 0; i < 8; ++i) {
749 output.sendNoteOn(i, 51, 0);
750 output.sendNoteOn(i, 52, 0);
751 }
752
753 // Turn off the MASTER selector
754 output.sendNoteOn(0, 80, 0);
755 }
756
757 private void setDPatternOutputs() {
758 for (LXDeck deck : lx.engine.getDecks()) {
759 if (targetDeck == null || deck == targetDeck) {
760 for (LXPattern pattern : deck.getPatterns()) {
761 if (pattern instanceof DPat) {
762 ((DPat)pattern).setAPCOutput(output);
763 }
764 }
765 }
766 }
767 }
768
769 protected LXDeck getTargetDeck() {
770 return (targetDeck != null) ? targetDeck : midiEngine.getFocusedDeck();
771 }
772
773 private void resetParameters() {
774 resetPatternParameters();
775 resetEffectParameters();
776 }
777
778 private void resetPatternParameters() {
779 LXPattern newPattern = getTargetDeck().getActivePattern();
780 if (newPattern == focusedPattern) {
781 return;
782 }
783 if (focusedPattern != null) {
784 for (LXParameter p : focusedPattern.getParameters()) {
785 ((LXListenableParameter) p).removeListener(this);
786 }
787 }
788 focusedPattern = newPattern;
789 int i = 0;
790 for (LXParameter p : focusedPattern.getParameters()) {
791 ((LXListenableParameter) p).addListener(this);
792 sendKnob(i++, p);
793 }
794 while (i < 12) {
795 sendKnob(i++, 0);
796 }
797 if (focusedPattern instanceof DPat) {
798 ((DPat)focusedPattern).updateLights();
799 } else {
800 for (int j = 0; j < 8; ++j) {
801 output.sendNoteOn(j, 48, 0);
802 }
803 for (int row = 0; row < 7; ++row) {
804 for (int col = 0; col < 8; ++col) {
805 setGridState(row, col, 0);
806 }
807 }
808 }
809 }
810
811 private void resetEffectParameters() {
812 LXEffect newEffect = glucose.getSelectedEffect();
813 if (newEffect == focusedEffect) {
814 return;
815 }
816 if (focusedEffect != null) {
817 for (LXParameter p : focusedPattern.getParameters()) {
818 ((LXListenableParameter) p).removeListener(this);
819 }
820 }
821 focusedEffect = newEffect;
822 int i = 0;
823 for (LXParameter p : focusedEffect.getParameters()) {
824 ((LXListenableParameter) p).addListener(this);
825 sendKnob(12 + i++, p);
826 }
827 while (i < 4) {
828 sendKnob(12 + i++, 0);
829 }
830 }
831
832 private void sendKnob(int i, LXParameter p) {
833 sendKnob(i, (int) (p.getValuef() * 127.));
834 }
835
836 private void sendKnob(int i, int value) {
837 if (i < 8) {
838 output.sendController(0, 48+i, value);
839 } else if (i < 16) {
840 output.sendController(0, 8+i, value);
841 }
842 }
843
844 public void onParameterChanged(LXParameter parameter) {
845 int i = 0;
846 for (LXParameter p : focusedPattern.getParameters()) {
847 if (p == parameter) {
848 sendKnob(i, p);
849 break;
850 }
851 ++i;
852 }
853 i = 12;
854 for (LXParameter p : focusedEffect.getParameters()) {
855 if (p == parameter) {
856 sendKnob(i, p);
857 break;
858 }
859 ++i;
860 }
861 }
862
863 public void setGridState(int row, int col, int state) {
864 if (col < 8 && row < 5) {
865 output.sendNoteOn(col, 53+row, state);
866 }
867 }
868 }
869
870 class ArturiaMinilabMidiInput extends GenericDeviceMidiInput {
871 ArturiaMinilabMidiInput(MidiEngine midiEngine, MidiInputDevice d) {
872 super(midiEngine, d);
873 }
874
875 protected boolean handleControllerChange(rwmidi.Controller cc) {
876 int parameterIndex = -1;
877 switch (cc.getCC()) {
878 case 7: parameterIndex = 0; break;
879 case 74: parameterIndex = 1; break;
880 case 71: parameterIndex = 2; break;
881 case 76: parameterIndex = 3; break;
882 case 114: parameterIndex = 4; break;
883 case 18: parameterIndex = 5; break;
884 case 19: parameterIndex = 6; break;
885 case 16: parameterIndex = 7; break;
886 }
887 if (parameterIndex >= 0) {
888 List<LXParameter> parameters = midiEngine.getFocusedPattern().getParameters();
889 if (parameterIndex < parameters.size()) {
890 LXParameter p = parameters.get(parameterIndex);
891 float curVal = p.getValuef();
892 curVal += (cc.getValue() - 64) / 127.;
893 p.setValue(constrain(curVal, 0, 1));
894 }
895 }
896 return false;
897 }
898 }
899
900 interface GridOutput {
901 public static final int OFF = 0;
902 public static final int GREEN = 1;
903 public static final int GREEN_BLINK = 2;
904 public static final int RED = 3;
905 public static final int RED_BLINK = 4;
906 public static final int YELLOW = 5;
907 public static final int YELLOW_BLINK = 6;
908 public static final int ON = 127;
909
910 public void setGridState(int row, int col, int state);
911 }
912
913 class GridController {
914 private final List<GridOutput> outputs = new ArrayList<GridOutput>();
915
916 private final MidiEngine midiEngine;
917
918 GridController(MidiEngine midiEngine) {
919 this.midiEngine = midiEngine;
920 }
921
922 public void addOutput(GridOutput output) {
923 outputs.add(output);
924 }
925
926 public boolean gridPressed(int row, int col) {
927 return midiEngine.getFocusedPattern().gridPressed(row, col);
928 }
929
930 public boolean gridReleased(int row, int col) {
931 return midiEngine.getFocusedPattern().gridReleased(row, col);
932 }
933
934 public void setState(int row, int col, int state) {
935 for (GridOutput g : outputs) {
936 g.setGridState(row, col, state);
937 }
938 }
939 }
940