Strip noteState stuff from _Internals
[SugarCubes.git] / _Internals.pde
1 /**
2 * DOUBLE BLACK DIAMOND DOUBLE BLACK DIAMOND
3 *
4 * //\\ //\\ //\\ //\\
5 * ///\\\ ///\\\ ///\\\ ///\\\
6 * \\\/// \\\/// \\\/// \\\///
7 * \\// \\// \\// \\//
8 *
9 * EXPERTS ONLY!! EXPERTS ONLY!!
10 *
11 * If you are an artist, you may ignore this file! It just sets
12 * up the framework to run the patterns. Should not need modification
13 * for general animation work.
14 */
15
16 import glucose.*;
17 import glucose.control.*;
18 import glucose.effect.*;
19 import glucose.model.*;
20 import glucose.pattern.*;
21 import glucose.transform.*;
22 import glucose.transition.*;
23 import heronarts.lx.*;
24 import heronarts.lx.control.*;
25 import heronarts.lx.effect.*;
26 import heronarts.lx.modulator.*;
27 import heronarts.lx.pattern.*;
28 import heronarts.lx.transition.*;
29 import ddf.minim.*;
30 import ddf.minim.analysis.*;
31 import processing.opengl.*;
32 import rwmidi.*;
33
34 final int VIEWPORT_WIDTH = 900;
35 final int VIEWPORT_HEIGHT = 700;
36
37 // The trailer is measured from the outside of the black metal (but not including the higher welded part on the front)
38 final float TRAILER_WIDTH = 240;
39 final float TRAILER_DEPTH = 97;
40 final float TRAILER_HEIGHT = 33;
41
42 int targetFramerate = 60;
43
44 int startMillis, lastMillis;
45 GLucose glucose;
46 HeronLX lx;
47 MappingTool mappingTool;
48 LXPattern[] patterns;
49 LXTransition[] transitions;
50 LXEffect[] effects;
51 OverlayUI ui;
52 ControlUI controlUI;
53 MappingUI mappingUI;
54 PandaDriver[] pandaBoards;
55 boolean mappingMode = false;
56 boolean debugMode = false;
57 DebugUI debugUI;
58
59 // Camera variables
60 float eyeR, eyeA, eyeX, eyeY, eyeZ, midX, midY, midZ;
61
62 void setup() {
63 startMillis = lastMillis = millis();
64
65 // Initialize the Processing graphics environment
66 size(VIEWPORT_WIDTH, VIEWPORT_HEIGHT, OPENGL);
67 frameRate(targetFramerate);
68 noSmooth();
69 // hint(ENABLE_OPENGL_4X_SMOOTH); // no discernable improvement?
70 logTime("Created viewport");
71
72 // Create the GLucose engine to run the cubes
73 glucose = new GLucose(this, buildModel());
74 lx = glucose.lx;
75 lx.enableKeyboardTempo();
76 logTime("Built GLucose engine");
77
78 // Set the patterns
79 glucose.lx.setPatterns(patterns = patterns(glucose));
80 logTime("Built patterns");
81 glucose.lx.addEffects(effects = effects(glucose));
82 logTime("Built effects");
83 glucose.setTransitions(transitions = transitions(glucose));
84 logTime("Built transitions");
85
86 // Build output driver
87 PandaMapping[] pandaMappings = buildPandaList();
88 pandaBoards = new PandaDriver[pandaMappings.length];
89 int pbi = 0;
90 for (PandaMapping pm : pandaMappings) {
91 pandaBoards[pbi++] = new PandaDriver(pm.ip, glucose.model, pm);
92 }
93 mappingTool = new MappingTool(glucose, pandaMappings);
94 logTime("Built PandaDriver");
95
96 // Build overlay UI
97 ui = controlUI = new ControlUI();
98 mappingUI = new MappingUI(mappingTool);
99 debugUI = new DebugUI(pandaMappings);
100 logTime("Built overlay UI");
101
102 // MIDI devices
103 for (MidiInputDevice d : RWMidi.getInputDevices()) {
104 d.createInput(this);
105 }
106 SCMidiDevices.initializeStandardDevices(glucose);
107 logTime("Setup MIDI devices");
108
109 // Setup camera
110 midX = TRAILER_WIDTH/2. + 20;
111 midY = glucose.model.yMax/2;
112 midZ = TRAILER_DEPTH/2.;
113 eyeR = -290;
114 eyeA = .15;
115 eyeY = midY + 20;
116 eyeX = midX + eyeR*sin(eyeA);
117 eyeZ = midZ + eyeR*cos(eyeA);
118 addMouseWheelListener(new java.awt.event.MouseWheelListener() {
119 public void mouseWheelMoved(java.awt.event.MouseWheelEvent mwe) {
120 mouseWheel(mwe.getWheelRotation());
121 }});
122
123 println("Total setup: " + (millis() - startMillis) + "ms");
124 println("Hit the 'p' key to toggle Panda Board output");
125 }
126
127
128 void controllerChangeReceived(rwmidi.Controller cc) {
129 if (debugMode) {
130 println("CC: " + cc.toString());
131 }
132 }
133
134 void noteOnReceived(Note note) {
135 if (debugMode) {
136 println("Note On: " + note.toString());
137 }
138 }
139
140 void noteOffReceived(Note note) {
141 if (debugMode) {
142 println("Note Off: " + note.toString());
143 }
144 }
145
146 void logTime(String evt) {
147 int now = millis();
148 println(evt + ": " + (now - lastMillis) + "ms");
149 lastMillis = now;
150 }
151
152 void draw() {
153 // Draws the simulation and the 2D UI overlay
154 background(40);
155 color[] colors = glucose.getColors();
156 if (debugMode) {
157 debugUI.maskColors(colors);
158 }
159
160 camera(
161 eyeX, eyeY, eyeZ,
162 midX, midY, midZ,
163 0, -1, 0
164 );
165
166 noStroke();
167 fill(#141414);
168 drawBox(0, -TRAILER_HEIGHT, 0, 0, 0, 0, TRAILER_WIDTH, TRAILER_HEIGHT, TRAILER_DEPTH, TRAILER_HEIGHT/2.);
169 fill(#070707);
170 stroke(#222222);
171 beginShape();
172 vertex(0, 0, 0);
173 vertex(TRAILER_WIDTH, 0, 0);
174 vertex(TRAILER_WIDTH, 0, TRAILER_DEPTH);
175 vertex(0, 0, TRAILER_DEPTH);
176 endShape();
177
178 noStroke();
179 // drawBassBox(glucose.model.bassBox);
180 // for (Speaker s : glucose.model.speakers) {
181 // drawSpeaker(s);
182 // }
183 for (Cube c : glucose.model.cubes) {
184 drawCube(c);
185 }
186
187 noFill();
188 strokeWeight(2);
189 beginShape(POINTS);
190 for (Point p : glucose.model.points) {
191 stroke(colors[p.index]);
192 vertex(p.fx, p.fy, p.fz);
193 }
194 endShape();
195
196 // 2D Overlay
197 camera();
198 javax.media.opengl.GL gl = ((PGraphicsOpenGL)g).beginGL();
199 gl.glClear(javax.media.opengl.GL.GL_DEPTH_BUFFER_BIT);
200 ((PGraphicsOpenGL)g).endGL();
201 strokeWeight(1);
202 drawUI();
203
204 if (debugMode) {
205 debugUI.draw();
206 }
207
208 // Gamma correction here. Apply a cubic to the brightness
209 // for better representation of dynamic range
210 for (int i = 0; i < colors.length; ++i) {
211 float b = brightness(colors[i]) / 100.f;
212 colors[i] = color(
213 hue(colors[i]),
214 saturation(colors[i]),
215 (b*b*b) * 100.
216 );
217 }
218
219 // TODO(mcslee): move into GLucose engine
220 for (PandaDriver p : pandaBoards) {
221 p.send(colors);
222 }
223 }
224
225 void drawBassBox(BassBox b) {
226 float in = .15;
227
228 noStroke();
229 fill(#191919);
230 pushMatrix();
231 translate(b.x + BassBox.EDGE_WIDTH/2., b.y + BassBox.EDGE_HEIGHT/2, b.z + BassBox.EDGE_DEPTH/2.);
232 box(BassBox.EDGE_WIDTH-20*in, BassBox.EDGE_HEIGHT-20*in, BassBox.EDGE_DEPTH-20*in);
233 popMatrix();
234
235 noStroke();
236 fill(#393939);
237 drawBox(b.x+in, b.y+in, b.z+in, 0, 0, 0, BassBox.EDGE_WIDTH-in*2, BassBox.EDGE_HEIGHT-in*2, BassBox.EDGE_DEPTH-in*2, Cube.CHANNEL_WIDTH-in);
238
239 pushMatrix();
240 translate(b.x+(Cube.CHANNEL_WIDTH-in)/2., b.y + BassBox.EDGE_HEIGHT-in, b.z + BassBox.EDGE_DEPTH/2.);
241 float lastOffset = 0;
242 for (float offset : BoothFloor.STRIP_OFFSETS) {
243 translate(offset - lastOffset, 0, 0);
244 box(Cube.CHANNEL_WIDTH-in, 0, BassBox.EDGE_DEPTH - 2*in);
245 lastOffset = offset;
246 }
247 popMatrix();
248
249 pushMatrix();
250 translate(b.x + (Cube.CHANNEL_WIDTH-in)/2., b.y + BassBox.EDGE_HEIGHT/2., b.z + in);
251 for (int j = 0; j < 2; ++j) {
252 pushMatrix();
253 for (int i = 0; i < BassBox.NUM_FRONT_STRUTS; ++i) {
254 translate(BassBox.FRONT_STRUT_SPACING, 0, 0);
255 box(Cube.CHANNEL_WIDTH-in, BassBox.EDGE_HEIGHT - in*2, 0);
256 }
257 popMatrix();
258 translate(0, 0, BassBox.EDGE_DEPTH - 2*in);
259 }
260 popMatrix();
261
262 pushMatrix();
263 translate(b.x + in, b.y + BassBox.EDGE_HEIGHT/2., b.z + BassBox.SIDE_STRUT_SPACING + (Cube.CHANNEL_WIDTH-in)/2.);
264 box(0, BassBox.EDGE_HEIGHT - in*2, Cube.CHANNEL_WIDTH-in);
265 translate(BassBox.EDGE_WIDTH-2*in, 0, 0);
266 box(0, BassBox.EDGE_HEIGHT - in*2, Cube.CHANNEL_WIDTH-in);
267 popMatrix();
268
269 }
270
271 void drawCube(Cube c) {
272 float in = .15;
273 noStroke();
274 fill(#393939);
275 drawBox(c.x+in, c.y+in, c.z+in, c.rx, c.ry, c.rz, Cube.EDGE_WIDTH-in*2, Cube.EDGE_HEIGHT-in*2, Cube.EDGE_WIDTH-in*2, Cube.CHANNEL_WIDTH-in);
276 }
277
278 void drawSpeaker(Speaker s) {
279 float in = .15;
280
281 noStroke();
282 fill(#191919);
283 pushMatrix();
284 translate(s.x, s.y, s.z);
285 rotate(s.ry / 180. * PI, 0, -1, 0);
286 translate(Speaker.EDGE_WIDTH/2., Speaker.EDGE_HEIGHT/2., Speaker.EDGE_DEPTH/2.);
287 box(Speaker.EDGE_WIDTH-20*in, Speaker.EDGE_HEIGHT-20*in, Speaker.EDGE_DEPTH-20*in);
288 translate(0, Speaker.EDGE_HEIGHT/2. + Speaker.EDGE_HEIGHT*.8/2, 0);
289
290 fill(#222222);
291 box(Speaker.EDGE_WIDTH*.6, Speaker.EDGE_HEIGHT*.8, Speaker.EDGE_DEPTH*.75);
292 popMatrix();
293
294 noStroke();
295 fill(#393939);
296 drawBox(s.x+in, s.y+in, s.z+in, 0, s.ry, 0, Speaker.EDGE_WIDTH-in*2, Speaker.EDGE_HEIGHT-in*2, Speaker.EDGE_DEPTH-in*2, Cube.CHANNEL_WIDTH-in);
297 }
298
299 void drawBox(float x, float y, float z, float rx, float ry, float rz, float xd, float yd, float zd, float sw) {
300 pushMatrix();
301 translate(x, y, z);
302 rotate(rx / 180. * PI, -1, 0, 0);
303 rotate(ry / 180. * PI, 0, -1, 0);
304 rotate(rz / 180. * PI, 0, 0, -1);
305 for (int i = 0; i < 4; ++i) {
306 float wid = (i % 2 == 0) ? xd : zd;
307
308 beginShape();
309 vertex(0, 0);
310 vertex(wid, 0);
311 vertex(wid, yd);
312 vertex(wid - sw, yd);
313 vertex(wid - sw, sw);
314 vertex(0, sw);
315 endShape();
316 beginShape();
317 vertex(0, sw);
318 vertex(0, yd);
319 vertex(wid - sw, yd);
320 vertex(wid - sw, yd - sw);
321 vertex(sw, yd - sw);
322 vertex(sw, sw);
323 endShape();
324
325 translate(wid, 0, 0);
326 rotate(HALF_PI, 0, -1, 0);
327 }
328 popMatrix();
329 }
330
331 void drawUI() {
332 if (uiOn) {
333 ui.draw();
334 } else {
335 ui.drawHelpTip();
336 }
337 ui.drawFPS();
338 ui.drawDanText();
339 }
340
341 boolean uiOn = true;
342 int restoreToIndex = -1;
343
344 boolean doDual = false;
345
346 void keyPressed() {
347 if (mappingMode) {
348 mappingTool.keyPressed();
349 }
350 switch (key) {
351 case 'w':
352 doDual = !doDual;
353 break;
354 case '-':
355 case '_':
356 frameRate(--targetFramerate);
357 break;
358 case '=':
359 case '+':
360 frameRate(++targetFramerate);
361 break;
362 case 'd':
363 debugMode = !debugMode;
364 println("Debug output: " + (debugMode ? "ON" : "OFF"));
365 break;
366 case 'm':
367 mappingMode = !mappingMode;
368 if (mappingMode) {
369 LXPattern pattern = lx.getPattern();
370 for (int i = 0; i < patterns.length; ++i) {
371 if (pattern == patterns[i]) {
372 restoreToIndex = i;
373 break;
374 }
375 }
376 ui = mappingUI;
377 lx.setPatterns(new LXPattern[] { mappingTool });
378 } else {
379 ui = controlUI;
380 lx.setPatterns(patterns);
381 lx.goIndex(restoreToIndex);
382 }
383 break;
384 case 'p':
385 for (PandaDriver p : pandaBoards) {
386 p.toggle();
387 }
388 break;
389 case 'u':
390 uiOn = !uiOn;
391 break;
392 }
393 }
394
395 int mx, my;
396 void mousePressed() {
397 ui.mousePressed();
398 if (mouseX < ui.leftPos) {
399 if (debugMode) {
400 debugUI.mousePressed();
401 }
402 mx = mouseX;
403 my = mouseY;
404 }
405 }
406
407 void mouseDragged() {
408 if (mouseX > ui.leftPos) {
409 ui.mouseDragged();
410 } else {
411 int dx = mouseX - mx;
412 int dy = mouseY - my;
413 mx = mouseX;
414 my = mouseY;
415 eyeA += dx*.003;
416 eyeX = midX + eyeR*sin(eyeA);
417 eyeZ = midZ + eyeR*cos(eyeA);
418 eyeY += dy;
419 }
420 }
421
422 void mouseReleased() {
423 ui.mouseReleased();
424 }
425
426 void mouseWheel(int delta) {
427 if (mouseX > ui.leftPos) {
428 ui.mouseWheel(delta);
429 } else {
430 eyeR = constrain(eyeR - delta, -500, -80);
431 eyeX = midX + eyeR*sin(eyeA);
432 eyeZ = midZ + eyeR*cos(eyeA);
433 }
434 }