]>
Commit | Line | Data |
---|---|---|
1 | class BlankPattern extends SCPattern { | |
2 | BlankPattern(GLucose glucose) { | |
3 | super(glucose); | |
4 | } | |
5 | ||
6 | public void run(double deltaMs) { | |
7 | setColors(#000000); | |
8 | } | |
9 | } | |
10 | ||
11 | abstract class TestPattern extends SCPattern { | |
12 | public TestPattern(GLucose glucose) { | |
13 | super(glucose); | |
14 | setEligible(false); | |
15 | } | |
16 | } | |
17 | ||
18 | class TestSpeakerMapping extends TestPattern { | |
19 | TestSpeakerMapping(GLucose glucose) { | |
20 | super(glucose); | |
21 | } | |
22 | ||
23 | public void run(double deltaMs) { | |
24 | int h = 0; | |
25 | for (Speaker speaker : model.speakers) { | |
26 | for (Strip strip : speaker.strips) { | |
27 | float b = 100; | |
28 | for (Point p : strip.points) { | |
29 | colors[p.index] = lx.hsb(h % 360, 100, b); | |
30 | b = max(0, b - 10); | |
31 | } | |
32 | h += 70; | |
33 | } | |
34 | } | |
35 | } | |
36 | ||
37 | } | |
38 | ||
39 | class TestBassMapping extends TestPattern { | |
40 | TestBassMapping(GLucose glucose) { | |
41 | super(glucose); | |
42 | } | |
43 | ||
44 | public void run(double deltaMs) { | |
45 | int[] strips = { 2, 1, 0, 3, 13, 12, 15, 14, 9, 8, 11, 10, 5, 4, 7, 6 }; | |
46 | int h = 0; | |
47 | for (int si : strips) { | |
48 | float b = 100; | |
49 | for (Point p : model.bassBox.strips.get(si).points) { | |
50 | colors[p.index] = lx.hsb(h % 360, 100, b); | |
51 | b = max(0, b - 10); | |
52 | } | |
53 | h += 70; | |
54 | } | |
55 | } | |
56 | } | |
57 | ||
58 | class TestFloorMapping extends TestPattern { | |
59 | TestFloorMapping(GLucose glucose) { | |
60 | super(glucose); | |
61 | } | |
62 | ||
63 | public void run(double deltaMs) { | |
64 | int[] strutIndices = {6, 5, 4, 3, 2, 1, 0, 7}; | |
65 | int h = 0; | |
66 | for (int si : strutIndices) { | |
67 | float b = 100; | |
68 | for (Point p : model.bassBox.struts.get(si).points) { | |
69 | colors[p.index] = lx.hsb(h % 360, 100, b); | |
70 | b = max(0, b - 10); | |
71 | } | |
72 | h += 50; | |
73 | } | |
74 | int[] floorIndices = {0, 1, 2, 3}; | |
75 | h = 0; | |
76 | for (int fi : floorIndices) { | |
77 | float b = 100; | |
78 | for (Point p : model.boothFloor.strips.get(fi).points) { | |
79 | colors[p.index] = lx.hsb(h, 100, b); | |
80 | b = max(0, b - 3); | |
81 | } | |
82 | h += 90; | |
83 | } | |
84 | } | |
85 | } | |
86 | ||
87 | class TestPerformancePattern extends TestPattern { | |
88 | ||
89 | final BasicParameter ops = new BasicParameter("OPS", 0); | |
90 | final BasicParameter iter = new BasicParameter("ITER", 0); | |
91 | ||
92 | TestPerformancePattern(GLucose glucose) { | |
93 | super(glucose); | |
94 | addParameter(ops); | |
95 | addParameter(iter); | |
96 | } | |
97 | ||
98 | public void run(double deltaMs) { | |
99 | if (iter.getValuef() > 0.5) { | |
100 | for (int i = 0; i < colors.length; ++i) { | |
101 | float x = 1; | |
102 | for (int j = 0; j < ops.getValuef() * 30; ++j) { | |
103 | x *= random(0, 1); | |
104 | } | |
105 | colors[i] = lx.hsb( | |
106 | (lx.getBaseHuef() + model.px[i]*.2 + model.py[i]*.4) % 360, | |
107 | 100, | |
108 | 100 | |
109 | ); | |
110 | } | |
111 | } else { | |
112 | for (Point p : model.points) { | |
113 | float x = 1; | |
114 | for (int j = 0; j < ops.getValuef() * 30; ++j) { | |
115 | x *= random(0, 1); | |
116 | } | |
117 | colors[p.index] = lx.hsb( | |
118 | (lx.getBaseHuef() + p.x*.2 + p.y*.4) % 360, | |
119 | 100, | |
120 | 100 | |
121 | ); | |
122 | } | |
123 | } | |
124 | } | |
125 | } | |
126 | ||
127 | class TestStripPattern extends TestPattern { | |
128 | ||
129 | SinLFO d = new SinLFO(4, 40, 4000); | |
130 | ||
131 | public TestStripPattern(GLucose glucose) { | |
132 | super(glucose); | |
133 | addModulator(d).trigger(); | |
134 | } | |
135 | ||
136 | public void run(double deltaMs) { | |
137 | for (Strip s : model.strips) { | |
138 | for (Point p : s.points) { | |
139 | colors[p.index] = lx.hsb( | |
140 | lx.getBaseHuef(), | |
141 | 100, | |
142 | max(0, 100 - d.getValuef()*dist(p.x, p.y, s.cx, s.cy)) | |
143 | ); | |
144 | } | |
145 | } | |
146 | } | |
147 | } | |
148 | ||
149 | /** | |
150 | * Simplest demonstration of using the rotating master hue. | |
151 | * All pixels are full-on the same color. | |
152 | */ | |
153 | class TestHuePattern extends TestPattern { | |
154 | public TestHuePattern(GLucose glucose) { | |
155 | super(glucose); | |
156 | } | |
157 | ||
158 | public void run(double deltaMs) { | |
159 | // Access the core master hue via this method call | |
160 | float hv = lx.getBaseHuef(); | |
161 | for (int i = 0; i < colors.length; ++i) { | |
162 | colors[i] = lx.hsb(hv, 100, 100); | |
163 | } | |
164 | } | |
165 | } | |
166 | ||
167 | /** | |
168 | * Test of a wave moving across the X axis. | |
169 | */ | |
170 | class TestXPattern extends TestPattern { | |
171 | private final SinLFO xPos = new SinLFO(0, model.xMax, 4000); | |
172 | public TestXPattern(GLucose glucose) { | |
173 | super(glucose); | |
174 | addModulator(xPos).trigger(); | |
175 | } | |
176 | public void run(double deltaMs) { | |
177 | float hv = lx.getBaseHuef(); | |
178 | for (Point p : model.points) { | |
179 | // This is a common technique for modulating brightness. | |
180 | // You can use abs() to determine the distance between two | |
181 | // values. The further away this point is from an exact | |
182 | // point, the more we decrease its brightness | |
183 | float bv = max(0, 100 - abs(p.x - xPos.getValuef())); | |
184 | colors[p.index] = lx.hsb(hv, 100, bv); | |
185 | } | |
186 | } | |
187 | } | |
188 | ||
189 | /** | |
190 | * Test of a wave on the Y axis. | |
191 | */ | |
192 | class TestYPattern extends TestPattern { | |
193 | private final SinLFO yPos = new SinLFO(0, model.yMax, 4000); | |
194 | public TestYPattern(GLucose glucose) { | |
195 | super(glucose); | |
196 | addModulator(yPos).trigger(); | |
197 | } | |
198 | public void run(double deltaMs) { | |
199 | float hv = lx.getBaseHuef(); | |
200 | for (Point p : model.points) { | |
201 | float bv = max(0, 100 - abs(p.y - yPos.getValuef())); | |
202 | colors[p.index] = lx.hsb(hv, 100, bv); | |
203 | } | |
204 | } | |
205 | } | |
206 | ||
207 | /** | |
208 | * Test of a wave on the Z axis. | |
209 | */ | |
210 | class TestZPattern extends TestPattern { | |
211 | private final SinLFO zPos = new SinLFO(0, model.zMax, 4000); | |
212 | public TestZPattern(GLucose glucose) { | |
213 | super(glucose); | |
214 | addModulator(zPos).trigger(); | |
215 | } | |
216 | public void run(double deltaMs) { | |
217 | float hv = lx.getBaseHuef(); | |
218 | for (Point p : model.points) { | |
219 | float bv = max(0, 100 - abs(p.z - zPos.getValuef())); | |
220 | colors[p.index] = lx.hsb(hv, 100, bv); | |
221 | } | |
222 | } | |
223 | } | |
224 | ||
225 | /** | |
226 | * This shows how to iterate over towers, enumerated in the model. | |
227 | */ | |
228 | class TestTowerPattern extends TestPattern { | |
229 | private final SawLFO towerIndex = new SawLFO(0, model.towers.size(), 1000*model.towers.size()); | |
230 | ||
231 | public TestTowerPattern(GLucose glucose) { | |
232 | super(glucose); | |
233 | addModulator(towerIndex).trigger(); | |
234 | } | |
235 | ||
236 | public void run(double deltaMs) { | |
237 | int ti = 0; | |
238 | for (Tower t : model.towers) { | |
239 | for (Point p : t.points) { | |
240 | colors[p.index] = lx.hsb( | |
241 | lx.getBaseHuef(), | |
242 | 100, | |
243 | max(0, 100 - 80*LXUtils.wrapdistf(ti, towerIndex.getValuef(), model.towers.size())) | |
244 | ); | |
245 | } | |
246 | ++ti; | |
247 | } | |
248 | } | |
249 | ||
250 | } | |
251 | ||
252 | /** | |
253 | * This is a demonstration of how to use the projection library. A projection | |
254 | * creates a mutation of the coordinates of all the points in the model, creating | |
255 | * virtual x,y,z coordinates. In effect, this is like virtually rotating the entire | |
256 | * art car. However, since in reality the car does not move, the result is that | |
257 | * it appears that the object we are drawing on the car is actually moving. | |
258 | * | |
259 | * Keep in mind that what we are creating a projection of is the view coordinates. | |
260 | * Depending on your intuition, some operations may feel backwards. For instance, | |
261 | * if you translate the view to the right, it will make it seem that the object | |
262 | * you are drawing has moved to the left. If you scale the view up 2x, objects | |
263 | * drawn with the same absolute values will seem to be half the size. | |
264 | * | |
265 | * If this feels counterintuitive at first, don't worry. Just remember that you | |
266 | * are moving the pixels, not the structure. We're dealing with a finite set | |
267 | * of sparse, non-uniformly spaced pixels. Mutating the structure would move | |
268 | * things to a space where there are no pixels in 99% of the cases. | |
269 | */ | |
270 | class TestProjectionPattern extends TestPattern { | |
271 | ||
272 | private final Projection projection; | |
273 | private final SawLFO angle = new SawLFO(0, TWO_PI, 9000); | |
274 | private final SinLFO yPos = new SinLFO(-20, 40, 5000); | |
275 | ||
276 | public TestProjectionPattern(GLucose glucose) { | |
277 | super(glucose); | |
278 | projection = new Projection(model); | |
279 | addModulator(angle).trigger(); | |
280 | addModulator(yPos).trigger(); | |
281 | } | |
282 | ||
283 | public void run(double deltaMs) { | |
284 | // For the same reasons described above, it may logically feel to you that | |
285 | // some of these operations are in reverse order. Again, just keep in mind that | |
286 | // the car itself is what's moving, not the object | |
287 | projection.reset(model) | |
288 | ||
289 | // Translate so the center of the car is the origin, offset by yPos | |
290 | .translateCenter(model, 0, yPos.getValuef(), 0) | |
291 | ||
292 | // Rotate around the origin (now the center of the car) about an X-vector | |
293 | .rotate(angle.getValuef(), 1, 0, 0) | |
294 | ||
295 | // Scale up the Y axis (objects will look smaller in that access) | |
296 | .scale(1, 1.5, 1); | |
297 | ||
298 | float hv = lx.getBaseHuef(); | |
299 | for (Coord c : projection) { | |
300 | float d = sqrt(c.x*c.x + c.y*c.y + c.z*c.z); // distance from origin | |
301 | // d = abs(d-60) + max(0, abs(c.z) - 20); // life saver / ring thing | |
302 | d = max(0, abs(c.y) - 10 + .1*abs(c.z) + .02*abs(c.x)); // plane / spear thing | |
303 | colors[c.index] = lx.hsb( | |
304 | (hv + .6*abs(c.x) + abs(c.z)) % 360, | |
305 | 100, | |
306 | constrain(140 - 40*d, 0, 100) | |
307 | ); | |
308 | } | |
309 | } | |
310 | } | |
311 | ||
312 | class TestCubePattern extends TestPattern { | |
313 | ||
314 | private SawLFO index = new SawLFO(0, Cube.POINTS_PER_CUBE, Cube.POINTS_PER_CUBE*60); | |
315 | ||
316 | TestCubePattern(GLucose glucose) { | |
317 | super(glucose); | |
318 | addModulator(index).start(); | |
319 | } | |
320 | ||
321 | public void run(double deltaMs) { | |
322 | for (Cube c : model.cubes) { | |
323 | int i = 0; | |
324 | for (Point p : c.points) { | |
325 | colors[p.index] = lx.hsb( | |
326 | lx.getBaseHuef(), | |
327 | 100, | |
328 | max(0, 100 - 80.*abs(i - index.getValuef())) | |
329 | ); | |
330 | ++i; | |
331 | } | |
332 | } | |
333 | } | |
334 | } | |
335 | ||
336 | class MappingTool extends TestPattern { | |
337 | ||
338 | private int cubeIndex = 0; | |
339 | private int stripIndex = 0; | |
340 | private int channelIndex = 0; | |
341 | ||
342 | public final int MAPPING_MODE_ALL = 0; | |
343 | public final int MAPPING_MODE_CHANNEL = 1; | |
344 | public final int MAPPING_MODE_SINGLE_CUBE = 2; | |
345 | public int mappingMode = MAPPING_MODE_ALL; | |
346 | ||
347 | public final int CUBE_MODE_ALL = 0; | |
348 | public final int CUBE_MODE_SINGLE_STRIP = 1; | |
349 | public final int CUBE_MODE_STRIP_PATTERN = 2; | |
350 | public int cubeMode = CUBE_MODE_ALL; | |
351 | ||
352 | public boolean channelModeRed = true; | |
353 | public boolean channelModeGreen = false; | |
354 | public boolean channelModeBlue = false; | |
355 | ||
356 | private final int numChannels; | |
357 | ||
358 | private final PandaMapping[] pandaMappings; | |
359 | private PandaMapping activePanda; | |
360 | private ChannelMapping activeChannel; | |
361 | ||
362 | MappingTool(GLucose glucose, PandaMapping[] pandaMappings) { | |
363 | super(glucose); | |
364 | this.pandaMappings = pandaMappings; | |
365 | numChannels = pandaMappings.length * PandaMapping.CHANNELS_PER_BOARD; | |
366 | setChannel(); | |
367 | } | |
368 | ||
369 | public int numChannels() { | |
370 | return numChannels; | |
371 | } | |
372 | ||
373 | private void setChannel() { | |
374 | activePanda = pandaMappings[channelIndex / PandaMapping.CHANNELS_PER_BOARD]; | |
375 | activeChannel = activePanda.channelList[channelIndex % PandaMapping.CHANNELS_PER_BOARD]; | |
376 | } | |
377 | ||
378 | private int indexOfCubeInChannel(Cube c) { | |
379 | if (activeChannel.mode == ChannelMapping.MODE_CUBES) { | |
380 | int i = 1; | |
381 | for (int index : activeChannel.objectIndices) { | |
382 | if ((index >= 0) && (c == model.getCubeByRawIndex(index))) { | |
383 | return i; | |
384 | } | |
385 | ++i; | |
386 | } | |
387 | } | |
388 | return 0; | |
389 | } | |
390 | ||
391 | private void printInfo() { | |
392 | println("Cube:" + cubeIndex + " Strip:" + (stripIndex+1)); | |
393 | } | |
394 | ||
395 | public void cube(int delta) { | |
396 | int len = model.cubes.size(); | |
397 | cubeIndex = (len + cubeIndex + delta) % len; | |
398 | printInfo(); | |
399 | } | |
400 | ||
401 | public void strip(int delta) { | |
402 | int len = Cube.STRIPS_PER_CUBE; | |
403 | stripIndex = (len + stripIndex + delta) % len; | |
404 | printInfo(); | |
405 | } | |
406 | ||
407 | public void run(double deltaMs) { | |
408 | color off = #000000; | |
409 | color c = off; | |
410 | color r = #FF0000; | |
411 | color g = #00FF00; | |
412 | color b = #0000FF; | |
413 | if (channelModeRed) c |= r; | |
414 | if (channelModeGreen) c |= g; | |
415 | if (channelModeBlue) c |= b; | |
416 | ||
417 | int ci = 0; | |
418 | for (Cube cube : model.cubes) { | |
419 | boolean cubeOn = false; | |
420 | int indexOfCubeInChannel = indexOfCubeInChannel(cube); | |
421 | switch (mappingMode) { | |
422 | case MAPPING_MODE_ALL: cubeOn = true; break; | |
423 | case MAPPING_MODE_SINGLE_CUBE: cubeOn = (cubeIndex == ci); break; | |
424 | case MAPPING_MODE_CHANNEL: cubeOn = (indexOfCubeInChannel > 0); break; | |
425 | } | |
426 | if (cubeOn) { | |
427 | if (mappingMode == MAPPING_MODE_CHANNEL) { | |
428 | color cc = off; | |
429 | switch (indexOfCubeInChannel) { | |
430 | case 1: cc = r; break; | |
431 | case 2: cc = r|g; break; | |
432 | case 3: cc = g; break; | |
433 | case 4: cc = b; break; | |
434 | case 5: cc = r|b; break; | |
435 | } | |
436 | setColor(cube, cc); | |
437 | } else if (cubeMode == CUBE_MODE_STRIP_PATTERN) { | |
438 | int si = 0; | |
439 | color sc = off; | |
440 | for (Strip strip : cube.strips) { | |
441 | int faceI = si / Face.STRIPS_PER_FACE; | |
442 | switch (faceI) { | |
443 | case 0: sc = r; break; | |
444 | case 1: sc = g; break; | |
445 | case 2: sc = b; break; | |
446 | case 3: sc = r|g|b; break; | |
447 | } | |
448 | if (si % Face.STRIPS_PER_FACE == 2) { | |
449 | sc = r|g; | |
450 | } | |
451 | setColor(strip, sc); | |
452 | ++si; | |
453 | } | |
454 | } else if (cubeMode == CUBE_MODE_SINGLE_STRIP) { | |
455 | setColor(cube, off); | |
456 | setColor(cube.strips.get(stripIndex), c); | |
457 | } else { | |
458 | setColor(cube, c); | |
459 | } | |
460 | } else { | |
461 | setColor(cube, off); | |
462 | } | |
463 | ++ci; | |
464 | } | |
465 | } | |
466 | ||
467 | public void setCube(int index) { | |
468 | cubeIndex = index % model.cubes.size(); | |
469 | } | |
470 | ||
471 | public void incCube() { | |
472 | cubeIndex = (cubeIndex + 1) % model.cubes.size(); | |
473 | } | |
474 | ||
475 | public void decCube() { | |
476 | --cubeIndex; | |
477 | if (cubeIndex < 0) { | |
478 | cubeIndex += model.cubes.size(); | |
479 | } | |
480 | } | |
481 | ||
482 | public void setChannel(int index) { | |
483 | channelIndex = index % numChannels; | |
484 | setChannel(); | |
485 | } | |
486 | ||
487 | public void incChannel() { | |
488 | channelIndex = (channelIndex + 1) % numChannels; | |
489 | setChannel(); | |
490 | } | |
491 | ||
492 | public void decChannel() { | |
493 | channelIndex = (channelIndex + numChannels - 1) % numChannels; | |
494 | setChannel(); | |
495 | } | |
496 | ||
497 | public void setStrip(int index) { | |
498 | stripIndex = index % Cube.STRIPS_PER_CUBE; | |
499 | } | |
500 | ||
501 | public void incStrip() { | |
502 | stripIndex = (stripIndex + 1) % Cube.STRIPS_PER_CUBE; | |
503 | } | |
504 | ||
505 | public void decStrip() { | |
506 | stripIndex = (stripIndex + Cube.STRIPS_PER_CUBE - 1) % Cube.STRIPS_PER_CUBE; | |
507 | } | |
508 | ||
509 | public void keyPressed(UIMapping uiMapping) { | |
510 | switch (keyCode) { | |
511 | case UP: if (mappingMode == MAPPING_MODE_CHANNEL) incChannel(); else incCube(); break; | |
512 | case DOWN: if (mappingMode == MAPPING_MODE_CHANNEL) decChannel(); else decCube(); break; | |
513 | case LEFT: decStrip(); break; | |
514 | case RIGHT: incStrip(); break; | |
515 | } | |
516 | switch (key) { | |
517 | case 'r': channelModeRed = !channelModeRed; break; | |
518 | case 'g': channelModeGreen = !channelModeGreen; break; | |
519 | case 'b': channelModeBlue = !channelModeBlue; break; | |
520 | } | |
521 | uiMapping.setChannelID(channelIndex+1); | |
522 | uiMapping.setCubeID(cubeIndex+1); | |
523 | uiMapping.setStripID(stripIndex+1); | |
524 | uiMapping.redraw(); | |
525 | } | |
526 | ||
527 | } |