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1 /* | 1 /* |
2 * Copyright 2013 Google Inc. | 2 * Copyright 2013 Google Inc. |
3 * | 3 * |
4 * Use of this source code is governed by a BSD-style license that can be | 4 * Use of this source code is governed by a BSD-style license that can be |
5 * found in the LICENSE file. | 5 * found in the LICENSE file. |
6 */ | 6 */ |
7 #include "SampleCode.h" | 7 #include "SampleCode.h" |
8 #include "Sk1DPathEffect.h" | 8 #include "Sk1DPathEffect.h" |
9 #include "Sk2DPathEffect.h" | 9 #include "Sk2DPathEffect.h" |
10 #include "SkAlphaThresholdFilter.h" | 10 #include "SkAlphaThresholdFilter.h" |
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291 static SkBitmap bitmap[2]; | 291 static SkBitmap bitmap[2]; |
292 static bool initialized = false; | 292 static bool initialized = false; |
293 if (!initialized) { | 293 if (!initialized) { |
294 make_g_bitmap(bitmap[0]); | 294 make_g_bitmap(bitmap[0]); |
295 make_checkerboard_bitmap(bitmap[1]); | 295 make_checkerboard_bitmap(bitmap[1]); |
296 initialized = true; | 296 initialized = true; |
297 } | 297 } |
298 return bitmap[R(2)]; | 298 return bitmap[R(2)]; |
299 } | 299 } |
300 | 300 |
301 static sk_sp<SkData> make_3Dlut(int* cubeDimension, bool invR, bool invG, bool i
nvB) { | 301 static SkData* make_3Dlut(int* cubeDimension, bool invR, bool invG, bool invB) { |
302 int size = 4 << R(5); | 302 int size = 4 << R(5); |
303 auto data = SkData::MakeUninitialized(sizeof(SkColor) * size * size * size); | 303 SkData* data = SkData::NewUninitialized(sizeof(SkColor) * size * size * size
); |
304 SkColor* pixels = (SkColor*)(data->writable_data()); | 304 SkColor* pixels = (SkColor*)(data->writable_data()); |
305 SkAutoTMalloc<uint8_t> lutMemory(size); | 305 SkAutoTMalloc<uint8_t> lutMemory(size); |
306 SkAutoTMalloc<uint8_t> invLutMemory(size); | 306 SkAutoTMalloc<uint8_t> invLutMemory(size); |
307 uint8_t* lut = lutMemory.get(); | 307 uint8_t* lut = lutMemory.get(); |
308 uint8_t* invLut = invLutMemory.get(); | 308 uint8_t* invLut = invLutMemory.get(); |
309 const int maxIndex = size - 1; | 309 const int maxIndex = size - 1; |
310 for (int i = 0; i < size; i++) { | 310 for (int i = 0; i < size; i++) { |
311 lut[i] = (i * 255) / maxIndex; | 311 lut[i] = (i * 255) / maxIndex; |
312 invLut[i] = ((maxIndex - i) * 255) / maxIndex; | 312 invLut[i] = ((maxIndex - i) * 255) / maxIndex; |
313 } | 313 } |
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343 paint.setTextSize(SkIntToScalar(kBitmapSize/3)); | 343 paint.setTextSize(SkIntToScalar(kBitmapSize/3)); |
344 canvas->drawText("Picture", 7, SkIntToScalar(kBitmapSize/2), SkIntToScalar(k
BitmapSize/4), paint); | 344 canvas->drawText("Picture", 7, SkIntToScalar(kBitmapSize/2), SkIntToScalar(k
BitmapSize/4), paint); |
345 } | 345 } |
346 | 346 |
347 static void rand_color_table(uint8_t* table) { | 347 static void rand_color_table(uint8_t* table) { |
348 for (int i = 0; i < 256; ++i) { | 348 for (int i = 0; i < 256; ++i) { |
349 table[i] = R(256); | 349 table[i] = R(256); |
350 } | 350 } |
351 } | 351 } |
352 | 352 |
353 static sk_sp<SkColorFilter> make_color_filter() { | 353 static SkColorFilter* make_color_filter() { |
| 354 SkColorFilter* colorFilter; |
354 switch (R(6)) { | 355 switch (R(6)) { |
355 case 0: { | 356 case 0: { |
356 SkScalar array[20]; | 357 SkScalar array[20]; |
357 for (int i = 0; i < 20; ++i) { | 358 for (int i = 0; i < 20; ++i) { |
358 array[i] = make_scalar(); | 359 array[i] = make_scalar(); |
359 } | 360 } |
360 return SkColorFilter::MakeMatrixFilterRowMajor255(array); | 361 colorFilter = SkColorMatrixFilter::Create(array); |
| 362 break; |
361 } | 363 } |
362 case 1: | 364 case 1: |
363 return SkLumaColorFilter::Make(); | 365 colorFilter = SkLumaColorFilter::Create(); |
| 366 break; |
364 case 2: { | 367 case 2: { |
365 uint8_t tableA[256]; | 368 uint8_t tableA[256]; |
366 uint8_t tableR[256]; | 369 uint8_t tableR[256]; |
367 uint8_t tableG[256]; | 370 uint8_t tableG[256]; |
368 uint8_t tableB[256]; | 371 uint8_t tableB[256]; |
369 rand_color_table(tableA); | 372 rand_color_table(tableA); |
370 rand_color_table(tableR); | 373 rand_color_table(tableR); |
371 rand_color_table(tableG); | 374 rand_color_table(tableG); |
372 rand_color_table(tableB); | 375 rand_color_table(tableB); |
373 return SkTableColorFilter::MakeARGB(tableA, tableR, tableG, tableB); | 376 colorFilter = SkTableColorFilter::CreateARGB(tableA, tableR, tableG,
tableB); |
| 377 break; |
374 } | 378 } |
375 case 3: | 379 case 3: |
376 return SkColorFilter::MakeModeFilter(make_color(), make_xfermode()); | 380 colorFilter = SkColorFilter::CreateModeFilter(make_color(), make_xfe
rmode()); |
| 381 break; |
377 case 4: | 382 case 4: |
378 return SkColorMatrixFilter::MakeLightingFilter(make_color(), make_co
lor()); | 383 colorFilter = SkColorMatrixFilter::CreateLightingFilter(make_color()
, make_color()); |
| 384 break; |
379 case 5: | 385 case 5: |
380 default: | 386 default: |
| 387 colorFilter = nullptr; |
381 break; | 388 break; |
382 } | 389 } |
383 return nullptr; | 390 return colorFilter; |
384 } | 391 } |
385 | 392 |
386 static SkPath make_path() { | 393 static SkPath make_path() { |
387 SkPath path; | 394 SkPath path; |
388 int numOps = R(30); | 395 int numOps = R(30); |
389 for (int i = 0; i < numOps; ++i) { | 396 for (int i = 0; i < numOps; ++i) { |
390 switch (R(6)) { | 397 switch (R(6)) { |
391 case 0: | 398 case 0: |
392 path.moveTo(make_scalar(), make_scalar()); | 399 path.moveTo(make_scalar(), make_scalar()); |
393 break; | 400 break; |
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524 } | 531 } |
525 | 532 |
526 SkLayerRasterizer::Builder rasterizerBuilder; | 533 SkLayerRasterizer::Builder rasterizerBuilder; |
527 SkPaint paintForRasterizer; | 534 SkPaint paintForRasterizer; |
528 if (R(2) == 1) { | 535 if (R(2) == 1) { |
529 paintForRasterizer = make_paint(); | 536 paintForRasterizer = make_paint(); |
530 } | 537 } |
531 rasterizerBuilder.addLayer(paintForRasterizer); | 538 rasterizerBuilder.addLayer(paintForRasterizer); |
532 paint.setRasterizer(rasterizerBuilder.detach()); | 539 paint.setRasterizer(rasterizerBuilder.detach()); |
533 paint.setImageFilter(make_image_filter()); | 540 paint.setImageFilter(make_image_filter()); |
534 sk_sp<SkData> data(make_3Dlut(nullptr, make_bool(), make_bool(), make_bool()
)); | 541 SkAutoDataUnref data(make_3Dlut(nullptr, make_bool(), make_bool(), make_bool
())); |
535 paint.setTextAlign(make_paint_align()); | 542 paint.setTextAlign(make_paint_align()); |
536 paint.setTextSize(make_scalar()); | 543 paint.setTextSize(make_scalar()); |
537 paint.setTextScaleX(make_scalar()); | 544 paint.setTextScaleX(make_scalar()); |
538 paint.setTextSkewX(make_scalar()); | 545 paint.setTextSkewX(make_scalar()); |
539 paint.setTextEncoding(make_paint_text_encoding()); | 546 paint.setTextEncoding(make_paint_text_encoding()); |
540 return paint; | 547 return paint; |
541 } | 548 } |
542 | 549 |
543 static SkImageFilter* make_image_filter(bool canBeNull) { | 550 static SkImageFilter* make_image_filter(bool canBeNull) { |
544 SkImageFilter* filter = 0; | 551 SkImageFilter* filter = 0; |
545 | 552 |
546 // Add a 1 in 3 chance to get a nullptr input | 553 // Add a 1 in 3 chance to get a nullptr input |
547 if (canBeNull && (R(3) == 1)) { return filter; } | 554 if (canBeNull && (R(3) == 1)) { return filter; } |
548 | 555 |
549 enum { ALPHA_THRESHOLD, MERGE, COLOR, LUT3D, BLUR, MAGNIFIER, | 556 enum { ALPHA_THRESHOLD, MERGE, COLOR, LUT3D, BLUR, MAGNIFIER, |
550 DOWN_SAMPLE, XFERMODE, OFFSET, MATRIX, MATRIX_CONVOLUTION, COMPOSE, | 557 DOWN_SAMPLE, XFERMODE, OFFSET, MATRIX, MATRIX_CONVOLUTION, COMPOSE, |
551 DISTANT_LIGHT, POINT_LIGHT, SPOT_LIGHT, NOISE, DROP_SHADOW, | 558 DISTANT_LIGHT, POINT_LIGHT, SPOT_LIGHT, NOISE, DROP_SHADOW, |
552 MORPHOLOGY, BITMAP, DISPLACE, TILE, PICTURE, PAINT, NUM_FILTERS }; | 559 MORPHOLOGY, BITMAP, DISPLACE, TILE, PICTURE, PAINT, NUM_FILTERS }; |
553 | 560 |
554 switch (R(NUM_FILTERS)) { | 561 switch (R(NUM_FILTERS)) { |
555 case ALPHA_THRESHOLD: | 562 case ALPHA_THRESHOLD: |
556 filter = SkAlphaThresholdFilter::Create(make_region(), make_scalar(), ma
ke_scalar()); | 563 filter = SkAlphaThresholdFilter::Create(make_region(), make_scalar(), ma
ke_scalar()); |
557 break; | 564 break; |
558 case MERGE: | 565 case MERGE: |
559 filter = SkMergeImageFilter::Create(make_image_filter(), make_image_filt
er(), make_xfermode()); | 566 filter = SkMergeImageFilter::Create(make_image_filter(), make_image_filt
er(), make_xfermode()); |
560 break; | 567 break; |
561 case COLOR: | 568 case COLOR: |
562 { | 569 { |
563 sk_sp<SkColorFilter> cf(make_color_filter()); | 570 SkAutoTUnref<SkColorFilter> cf(make_color_filter()); |
564 filter = cf ? SkColorFilterImageFilter::Create(cf.get(), make_image_filt
er()) : 0; | 571 filter = cf.get() ? SkColorFilterImageFilter::Create(cf, make_image_filt
er()) : 0; |
565 } | 572 } |
566 break; | 573 break; |
567 case LUT3D: | 574 case LUT3D: |
568 { | 575 { |
569 int cubeDimension; | 576 int cubeDimension; |
570 sk_sp<SkData> lut3D(make_3Dlut(&cubeDimension, (R(2) == 1), (R(2) == 1),
(R(2) == 1))); | 577 SkAutoDataUnref lut3D(make_3Dlut(&cubeDimension, (R(2) == 1), (R(2) == 1
), (R(2) == 1))); |
571 sk_sp<SkColorFilter> cf(SkColorCubeFilter::Make(lut3D, cubeDimension)); | 578 SkAutoTUnref<SkColorFilter> cf(SkColorCubeFilter::Create(lut3D, cubeDime
nsion)); |
572 filter = cf ? SkColorFilterImageFilter::Create(cf.get(), make_image_filt
er()) : 0; | 579 filter = cf.get() ? SkColorFilterImageFilter::Create(cf, make_image_filt
er()) : 0; |
573 } | 580 } |
574 break; | 581 break; |
575 case BLUR: | 582 case BLUR: |
576 filter = SkBlurImageFilter::Create(make_scalar(true), make_scalar(true),
make_image_filter()); | 583 filter = SkBlurImageFilter::Create(make_scalar(true), make_scalar(true),
make_image_filter()); |
577 break; | 584 break; |
578 case MAGNIFIER: | 585 case MAGNIFIER: |
579 filter = SkMagnifierImageFilter::Create(make_rect(), make_scalar(true)); | 586 filter = SkMagnifierImageFilter::Create(make_rect(), make_scalar(true)); |
580 break; | 587 break; |
581 case DOWN_SAMPLE: | 588 case DOWN_SAMPLE: |
582 filter = SkDownSampleImageFilter::Create(make_scalar()); | 589 filter = SkDownSampleImageFilter::Create(make_scalar()); |
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805 } | 812 } |
806 | 813 |
807 private: | 814 private: |
808 typedef SkView INHERITED; | 815 typedef SkView INHERITED; |
809 }; | 816 }; |
810 | 817 |
811 ////////////////////////////////////////////////////////////////////////////// | 818 ////////////////////////////////////////////////////////////////////////////// |
812 | 819 |
813 static SkView* MyFactory() { return new ImageFilterFuzzView; } | 820 static SkView* MyFactory() { return new ImageFilterFuzzView; } |
814 static SkViewRegister reg(MyFactory); | 821 static SkViewRegister reg(MyFactory); |
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