1 /* 2 * Copyright 2013 Google Inc. 3 * 4 * Use of this source code is governed by a BSD-style license that can be 5 * found in the LICENSE file. 6 */ 7 8 #include "SkBicubicImageFilter.h" 9 #include "SkBitmap.h" 10 #include "SkBitmapDevice.h" 11 #include "SkBitmapSource.h" 12 #include "SkBlurImageFilter.h" 13 #include "SkCanvas.h" 14 #include "SkColorFilterImageFilter.h" 15 #include "SkColorMatrixFilter.h" 16 #include "SkDeviceImageFilterProxy.h" 17 #include "SkDisplacementMapEffect.h" 18 #include "SkDropShadowImageFilter.h" 19 #include "SkFlattenableBuffers.h" 20 #include "SkFlattenableSerialization.h" 21 #include "SkGradientShader.h" 22 #include "SkLightingImageFilter.h" 23 #include "SkMatrixConvolutionImageFilter.h" 24 #include "SkMatrixImageFilter.h" 25 #include "SkMergeImageFilter.h" 26 #include "SkMorphologyImageFilter.h" 27 #include "SkOffsetImageFilter.h" 28 #include "SkPicture.h" 29 #include "SkPictureImageFilter.h" 30 #include "SkPictureRecorder.h" 31 #include "SkRect.h" 32 #include "SkTileImageFilter.h" 33 #include "SkXfermodeImageFilter.h" 34 #include "Test.h" 35 36 #if SK_SUPPORT_GPU 37 #include "GrContextFactory.h" 38 #include "SkGpuDevice.h" 39 #endif 40 41 static const int kBitmapSize = 4; 42 43 namespace { 44 45 class MatrixTestImageFilter : public SkImageFilter { 46 public: 47 MatrixTestImageFilter(skiatest::Reporter* reporter, const SkMatrix& expectedMatrix) 48 : SkImageFilter(0), fReporter(reporter), fExpectedMatrix(expectedMatrix) { 49 } 50 51 virtual bool onFilterImage(Proxy*, const SkBitmap& src, const Context& ctx, 52 SkBitmap* result, SkIPoint* offset) const SK_OVERRIDE { 53 REPORTER_ASSERT(fReporter, ctx.ctm() == fExpectedMatrix); 54 return true; 55 } 56 57 SK_DECLARE_PUBLIC_FLATTENABLE_DESERIALIZATION_PROCS(MatrixTestImageFilter) 58 59 protected: 60 explicit MatrixTestImageFilter(SkReadBuffer& buffer) : SkImageFilter(0) { 61 fReporter = static_cast<skiatest::Reporter*>(buffer.readFunctionPtr()); 62 buffer.readMatrix(&fExpectedMatrix); 63 } 64 65 virtual void flatten(SkWriteBuffer& buffer) const SK_OVERRIDE { 66 buffer.writeFunctionPtr(fReporter); 67 buffer.writeMatrix(fExpectedMatrix); 68 } 69 70 private: 71 skiatest::Reporter* fReporter; 72 SkMatrix fExpectedMatrix; 73 }; 74 75 } 76 77 static void make_small_bitmap(SkBitmap& bitmap) { 78 bitmap.allocN32Pixels(kBitmapSize, kBitmapSize); 79 SkCanvas canvas(bitmap); 80 canvas.clear(0x00000000); 81 SkPaint darkPaint; 82 darkPaint.setColor(0xFF804020); 83 SkPaint lightPaint; 84 lightPaint.setColor(0xFF244484); 85 const int i = kBitmapSize / 4; 86 for (int y = 0; y < kBitmapSize; y += i) { 87 for (int x = 0; x < kBitmapSize; x += i) { 88 canvas.save(); 89 canvas.translate(SkIntToScalar(x), SkIntToScalar(y)); 90 canvas.drawRect(SkRect::MakeXYWH(0, 0, 91 SkIntToScalar(i), 92 SkIntToScalar(i)), darkPaint); 93 canvas.drawRect(SkRect::MakeXYWH(SkIntToScalar(i), 94 0, 95 SkIntToScalar(i), 96 SkIntToScalar(i)), lightPaint); 97 canvas.drawRect(SkRect::MakeXYWH(0, 98 SkIntToScalar(i), 99 SkIntToScalar(i), 100 SkIntToScalar(i)), lightPaint); 101 canvas.drawRect(SkRect::MakeXYWH(SkIntToScalar(i), 102 SkIntToScalar(i), 103 SkIntToScalar(i), 104 SkIntToScalar(i)), darkPaint); 105 canvas.restore(); 106 } 107 } 108 } 109 110 static SkImageFilter* make_scale(float amount, SkImageFilter* input = NULL) { 111 SkScalar s = amount; 112 SkScalar matrix[20] = { s, 0, 0, 0, 0, 113 0, s, 0, 0, 0, 114 0, 0, s, 0, 0, 115 0, 0, 0, s, 0 }; 116 SkAutoTUnref<SkColorFilter> filter(SkColorMatrixFilter::Create(matrix)); 117 return SkColorFilterImageFilter::Create(filter, input); 118 } 119 120 static SkImageFilter* make_grayscale(SkImageFilter* input = NULL, const SkImageFilter::CropRect* cropRect = NULL) { 121 SkScalar matrix[20]; 122 memset(matrix, 0, 20 * sizeof(SkScalar)); 123 matrix[0] = matrix[5] = matrix[10] = 0.2126f; 124 matrix[1] = matrix[6] = matrix[11] = 0.7152f; 125 matrix[2] = matrix[7] = matrix[12] = 0.0722f; 126 matrix[18] = 1.0f; 127 SkAutoTUnref<SkColorFilter> filter(SkColorMatrixFilter::Create(matrix)); 128 return SkColorFilterImageFilter::Create(filter, input, cropRect); 129 } 130 131 DEF_TEST(ImageFilter, reporter) { 132 { 133 // Check that two non-clipping color matrices concatenate into a single filter. 134 SkAutoTUnref<SkImageFilter> halfBrightness(make_scale(0.5f)); 135 SkAutoTUnref<SkImageFilter> quarterBrightness(make_scale(0.5f, halfBrightness)); 136 REPORTER_ASSERT(reporter, NULL == quarterBrightness->getInput(0)); 137 } 138 139 { 140 // Check that a clipping color matrix followed by a grayscale does not concatenate into a single filter. 141 SkAutoTUnref<SkImageFilter> doubleBrightness(make_scale(2.0f)); 142 SkAutoTUnref<SkImageFilter> halfBrightness(make_scale(0.5f, doubleBrightness)); 143 REPORTER_ASSERT(reporter, NULL != halfBrightness->getInput(0)); 144 } 145 146 { 147 // Check that a color filter image filter without a crop rect can be 148 // expressed as a color filter. 149 SkAutoTUnref<SkImageFilter> gray(make_grayscale()); 150 REPORTER_ASSERT(reporter, true == gray->asColorFilter(NULL)); 151 } 152 153 { 154 // Check that a color filter image filter with a crop rect cannot 155 // be expressed as a color filter. 156 SkImageFilter::CropRect cropRect(SkRect::MakeXYWH(0, 0, 100, 100)); 157 SkAutoTUnref<SkImageFilter> grayWithCrop(make_grayscale(NULL, &cropRect)); 158 REPORTER_ASSERT(reporter, false == grayWithCrop->asColorFilter(NULL)); 159 } 160 161 { 162 // Check that two non-commutative matrices are concatenated in 163 // the correct order. 164 SkScalar blueToRedMatrix[20] = { 0 }; 165 blueToRedMatrix[2] = blueToRedMatrix[18] = SK_Scalar1; 166 SkScalar redToGreenMatrix[20] = { 0 }; 167 redToGreenMatrix[5] = redToGreenMatrix[18] = SK_Scalar1; 168 SkAutoTUnref<SkColorFilter> blueToRed(SkColorMatrixFilter::Create(blueToRedMatrix)); 169 SkAutoTUnref<SkImageFilter> filter1(SkColorFilterImageFilter::Create(blueToRed.get())); 170 SkAutoTUnref<SkColorFilter> redToGreen(SkColorMatrixFilter::Create(redToGreenMatrix)); 171 SkAutoTUnref<SkImageFilter> filter2(SkColorFilterImageFilter::Create(redToGreen.get(), filter1.get())); 172 173 SkBitmap result; 174 result.allocN32Pixels(kBitmapSize, kBitmapSize); 175 176 SkPaint paint; 177 paint.setColor(SK_ColorBLUE); 178 paint.setImageFilter(filter2.get()); 179 SkCanvas canvas(result); 180 canvas.clear(0x0); 181 SkRect rect = SkRect::Make(SkIRect::MakeWH(kBitmapSize, kBitmapSize)); 182 canvas.drawRect(rect, paint); 183 uint32_t pixel = *result.getAddr32(0, 0); 184 // The result here should be green, since we have effectively shifted blue to green. 185 REPORTER_ASSERT(reporter, pixel == SK_ColorGREEN); 186 } 187 188 { 189 // Tests pass by not asserting 190 SkBitmap bitmap, result; 191 make_small_bitmap(bitmap); 192 result.allocN32Pixels(kBitmapSize, kBitmapSize); 193 194 { 195 // This tests for : 196 // 1 ) location at (0,0,1) 197 SkPoint3 location(0, 0, SK_Scalar1); 198 // 2 ) location and target at same value 199 SkPoint3 target(location.fX, location.fY, location.fZ); 200 // 3 ) large negative specular exponent value 201 SkScalar specularExponent = -1000; 202 203 SkAutoTUnref<SkImageFilter> bmSrc(SkBitmapSource::Create(bitmap)); 204 SkPaint paint; 205 paint.setImageFilter(SkLightingImageFilter::CreateSpotLitSpecular( 206 location, target, specularExponent, 180, 207 0xFFFFFFFF, SK_Scalar1, SK_Scalar1, SK_Scalar1, 208 bmSrc))->unref(); 209 SkCanvas canvas(result); 210 SkRect r = SkRect::MakeWH(SkIntToScalar(kBitmapSize), 211 SkIntToScalar(kBitmapSize)); 212 canvas.drawRect(r, paint); 213 } 214 215 { 216 // This tests for scale bringing width to 0 217 SkSize scale = SkSize::Make(-0.001f, SK_Scalar1); 218 SkAutoTUnref<SkImageFilter> bmSrc(SkBitmapSource::Create(bitmap)); 219 SkAutoTUnref<SkBicubicImageFilter> bicubic( 220 SkBicubicImageFilter::CreateMitchell(scale, bmSrc)); 221 SkBitmapDevice device(bitmap); 222 SkDeviceImageFilterProxy proxy(&device); 223 SkIPoint loc = SkIPoint::Make(0, 0); 224 // An empty input should early return and return false 225 SkAutoTUnref<SkImageFilter::Cache> cache(SkImageFilter::Cache::Create(2)); 226 SkImageFilter::Context ctx(SkMatrix::I(), SkIRect::MakeEmpty(), cache.get()); 227 REPORTER_ASSERT(reporter, 228 !bicubic->filterImage(&proxy, bitmap, ctx, &result, &loc)); 229 } 230 } 231 } 232 233 static void test_crop_rects(SkBaseDevice* device, skiatest::Reporter* reporter) { 234 // Check that all filters offset to their absolute crop rect, 235 // unaffected by the input crop rect. 236 // Tests pass by not asserting. 237 SkBitmap bitmap; 238 bitmap.allocN32Pixels(100, 100); 239 bitmap.eraseARGB(0, 0, 0, 0); 240 SkDeviceImageFilterProxy proxy(device); 241 242 SkImageFilter::CropRect inputCropRect(SkRect::MakeXYWH(8, 13, 80, 80)); 243 SkImageFilter::CropRect cropRect(SkRect::MakeXYWH(20, 30, 60, 60)); 244 SkAutoTUnref<SkImageFilter> input(make_grayscale(NULL, &inputCropRect)); 245 246 SkAutoTUnref<SkColorFilter> cf(SkColorFilter::CreateModeFilter(SK_ColorRED, SkXfermode::kSrcIn_Mode)); 247 SkPoint3 location(0, 0, SK_Scalar1); 248 SkPoint3 target(SK_Scalar1, SK_Scalar1, SK_Scalar1); 249 SkScalar kernel[9] = { 250 SkIntToScalar( 1), SkIntToScalar( 1), SkIntToScalar( 1), 251 SkIntToScalar( 1), SkIntToScalar(-7), SkIntToScalar( 1), 252 SkIntToScalar( 1), SkIntToScalar( 1), SkIntToScalar( 1), 253 }; 254 SkISize kernelSize = SkISize::Make(3, 3); 255 SkScalar gain = SK_Scalar1, bias = 0; 256 257 SkImageFilter* filters[] = { 258 SkColorFilterImageFilter::Create(cf.get(), input.get(), &cropRect), 259 SkDisplacementMapEffect::Create(SkDisplacementMapEffect::kR_ChannelSelectorType, 260 SkDisplacementMapEffect::kB_ChannelSelectorType, 261 40.0f, input.get(), input.get(), &cropRect), 262 SkBlurImageFilter::Create(SK_Scalar1, SK_Scalar1, input.get(), &cropRect), 263 SkDropShadowImageFilter::Create(SK_Scalar1, SK_Scalar1, SK_Scalar1, SK_Scalar1, SK_ColorGREEN, input.get(), &cropRect), 264 SkLightingImageFilter::CreatePointLitDiffuse(location, SK_ColorGREEN, 0, 0, input.get(), &cropRect), 265 SkLightingImageFilter::CreatePointLitSpecular(location, SK_ColorGREEN, 0, 0, 0, input.get(), &cropRect), 266 SkMatrixConvolutionImageFilter::Create(kernelSize, kernel, gain, bias, SkIPoint::Make(1, 1), SkMatrixConvolutionImageFilter::kRepeat_TileMode, false, input.get(), &cropRect), 267 SkMergeImageFilter::Create(input.get(), input.get(), SkXfermode::kSrcOver_Mode, &cropRect), 268 SkOffsetImageFilter::Create(SK_Scalar1, SK_Scalar1, input.get(), &cropRect), 269 SkOffsetImageFilter::Create(SK_Scalar1, SK_Scalar1, input.get(), &cropRect), 270 SkDilateImageFilter::Create(3, 2, input.get(), &cropRect), 271 SkErodeImageFilter::Create(2, 3, input.get(), &cropRect), 272 SkTileImageFilter::Create(inputCropRect.rect(), cropRect.rect(), input.get()), 273 SkXfermodeImageFilter::Create(SkXfermode::Create(SkXfermode::kSrcOver_Mode), input.get(), input.get(), &cropRect), 274 }; 275 276 for (size_t i = 0; i < SK_ARRAY_COUNT(filters); ++i) { 277 SkImageFilter* filter = filters[i]; 278 SkBitmap result; 279 SkIPoint offset; 280 SkString str; 281 str.printf("filter %d", static_cast<int>(i)); 282 SkAutoTUnref<SkImageFilter::Cache> cache(SkImageFilter::Cache::Create(2)); 283 SkImageFilter::Context ctx(SkMatrix::I(), SkIRect::MakeLargest(), cache.get()); 284 REPORTER_ASSERT_MESSAGE(reporter, filter->filterImage(&proxy, bitmap, ctx, 285 &result, &offset), str.c_str()); 286 REPORTER_ASSERT_MESSAGE(reporter, offset.fX == 20 && offset.fY == 30, str.c_str()); 287 } 288 289 for (size_t i = 0; i < SK_ARRAY_COUNT(filters); ++i) { 290 SkSafeUnref(filters[i]); 291 } 292 } 293 294 static SkBitmap make_gradient_circle(int width, int height) { 295 SkBitmap bitmap; 296 SkScalar x = SkIntToScalar(width / 2); 297 SkScalar y = SkIntToScalar(height / 2); 298 SkScalar radius = SkMinScalar(x, y) * 0.8f; 299 bitmap.allocN32Pixels(width, height); 300 SkCanvas canvas(bitmap); 301 canvas.clear(0x00000000); 302 SkColor colors[2]; 303 colors[0] = SK_ColorWHITE; 304 colors[1] = SK_ColorBLACK; 305 SkAutoTUnref<SkShader> shader( 306 SkGradientShader::CreateRadial(SkPoint::Make(x, y), radius, colors, NULL, 2, 307 SkShader::kClamp_TileMode) 308 ); 309 SkPaint paint; 310 paint.setShader(shader); 311 canvas.drawCircle(x, y, radius, paint); 312 return bitmap; 313 } 314 315 DEF_TEST(ImageFilterDrawTiled, reporter) { 316 // Check that all filters when drawn tiled (with subsequent clip rects) exactly 317 // match the same filters drawn with a single full-canvas bitmap draw. 318 // Tests pass by not asserting. 319 320 SkAutoTUnref<SkColorFilter> cf(SkColorFilter::CreateModeFilter(SK_ColorRED, SkXfermode::kSrcIn_Mode)); 321 SkPoint3 location(0, 0, SK_Scalar1); 322 SkPoint3 target(SK_Scalar1, SK_Scalar1, SK_Scalar1); 323 SkScalar kernel[9] = { 324 SkIntToScalar( 1), SkIntToScalar( 1), SkIntToScalar( 1), 325 SkIntToScalar( 1), SkIntToScalar(-7), SkIntToScalar( 1), 326 SkIntToScalar( 1), SkIntToScalar( 1), SkIntToScalar( 1), 327 }; 328 SkISize kernelSize = SkISize::Make(3, 3); 329 SkScalar gain = SK_Scalar1, bias = 0; 330 SkScalar five = SkIntToScalar(5); 331 332 SkAutoTUnref<SkImageFilter> gradient_source(SkBitmapSource::Create(make_gradient_circle(64, 64))); 333 SkAutoTUnref<SkImageFilter> blur(SkBlurImageFilter::Create(five, five)); 334 SkMatrix matrix; 335 336 matrix.setTranslate(SK_Scalar1, SK_Scalar1); 337 matrix.postRotate(SkIntToScalar(45), SK_Scalar1, SK_Scalar1); 338 339 SkRTreeFactory factory; 340 SkPictureRecorder recorder; 341 SkCanvas* recordingCanvas = recorder.beginRecording(64, 64, &factory, 0); 342 343 SkPaint greenPaint; 344 greenPaint.setColor(SK_ColorGREEN); 345 recordingCanvas->drawRect(SkRect::Make(SkIRect::MakeXYWH(10, 10, 30, 20)), greenPaint); 346 SkAutoTUnref<SkPicture> picture(recorder.endRecording()); 347 SkAutoTUnref<SkImageFilter> pictureFilter(SkPictureImageFilter::Create(picture.get())); 348 349 struct { 350 const char* fName; 351 SkImageFilter* fFilter; 352 } filters[] = { 353 { "color filter", SkColorFilterImageFilter::Create(cf.get()) }, 354 { "displacement map", SkDisplacementMapEffect::Create( 355 SkDisplacementMapEffect::kR_ChannelSelectorType, 356 SkDisplacementMapEffect::kB_ChannelSelectorType, 357 20.0f, gradient_source.get()) }, 358 { "blur", SkBlurImageFilter::Create(SK_Scalar1, SK_Scalar1) }, 359 { "drop shadow", SkDropShadowImageFilter::Create( 360 SK_Scalar1, SK_Scalar1, SK_Scalar1, SK_Scalar1, SK_ColorGREEN) }, 361 { "diffuse lighting", SkLightingImageFilter::CreatePointLitDiffuse( 362 location, SK_ColorGREEN, 0, 0) }, 363 { "specular lighting", 364 SkLightingImageFilter::CreatePointLitSpecular(location, SK_ColorGREEN, 0, 0, 0) }, 365 { "matrix convolution", 366 SkMatrixConvolutionImageFilter::Create( 367 kernelSize, kernel, gain, bias, SkIPoint::Make(1, 1), 368 SkMatrixConvolutionImageFilter::kRepeat_TileMode, false) }, 369 { "merge", SkMergeImageFilter::Create(NULL, NULL, SkXfermode::kSrcOver_Mode) }, 370 { "offset", SkOffsetImageFilter::Create(SK_Scalar1, SK_Scalar1) }, 371 { "dilate", SkDilateImageFilter::Create(3, 2) }, 372 { "erode", SkErodeImageFilter::Create(2, 3) }, 373 { "tile", SkTileImageFilter::Create(SkRect::MakeXYWH(0, 0, 50, 50), 374 SkRect::MakeXYWH(0, 0, 100, 100), NULL) }, 375 { "matrix", SkMatrixImageFilter::Create(matrix, SkPaint::kLow_FilterLevel) }, 376 { "blur and offset", SkOffsetImageFilter::Create(five, five, blur.get()) }, 377 { "picture and blur", SkBlurImageFilter::Create(five, five, pictureFilter.get()) }, 378 }; 379 380 SkBitmap untiledResult, tiledResult; 381 int width = 64, height = 64; 382 untiledResult.allocN32Pixels(width, height); 383 tiledResult.allocN32Pixels(width, height); 384 SkCanvas tiledCanvas(tiledResult); 385 SkCanvas untiledCanvas(untiledResult); 386 int tileSize = 8; 387 388 for (int scale = 1; scale <= 2; ++scale) { 389 for (size_t i = 0; i < SK_ARRAY_COUNT(filters); ++i) { 390 tiledCanvas.clear(0); 391 untiledCanvas.clear(0); 392 SkPaint paint; 393 paint.setImageFilter(filters[i].fFilter); 394 paint.setTextSize(SkIntToScalar(height)); 395 paint.setColor(SK_ColorWHITE); 396 SkString str; 397 const char* text = "ABC"; 398 SkScalar ypos = SkIntToScalar(height); 399 untiledCanvas.save(); 400 untiledCanvas.scale(SkIntToScalar(scale), SkIntToScalar(scale)); 401 untiledCanvas.drawText(text, strlen(text), 0, ypos, paint); 402 untiledCanvas.restore(); 403 for (int y = 0; y < height; y += tileSize) { 404 for (int x = 0; x < width; x += tileSize) { 405 tiledCanvas.save(); 406 tiledCanvas.clipRect(SkRect::Make(SkIRect::MakeXYWH(x, y, tileSize, tileSize))); 407 tiledCanvas.scale(SkIntToScalar(scale), SkIntToScalar(scale)); 408 tiledCanvas.drawText(text, strlen(text), 0, ypos, paint); 409 tiledCanvas.restore(); 410 } 411 } 412 untiledCanvas.flush(); 413 tiledCanvas.flush(); 414 for (int y = 0; y < height; y++) { 415 int diffs = memcmp(untiledResult.getAddr32(0, y), tiledResult.getAddr32(0, y), untiledResult.rowBytes()); 416 REPORTER_ASSERT_MESSAGE(reporter, !diffs, filters[i].fName); 417 if (diffs) { 418 break; 419 } 420 } 421 } 422 } 423 424 for (size_t i = 0; i < SK_ARRAY_COUNT(filters); ++i) { 425 SkSafeUnref(filters[i].fFilter); 426 } 427 } 428 429 DEF_TEST(ImageFilterMatrixConvolution, reporter) { 430 // Check that a 1x3 filter does not cause a spurious assert. 431 SkScalar kernel[3] = { 432 SkIntToScalar( 1), SkIntToScalar( 1), SkIntToScalar( 1), 433 }; 434 SkISize kernelSize = SkISize::Make(1, 3); 435 SkScalar gain = SK_Scalar1, bias = 0; 436 SkIPoint kernelOffset = SkIPoint::Make(0, 0); 437 438 SkAutoTUnref<SkImageFilter> filter( 439 SkMatrixConvolutionImageFilter::Create( 440 kernelSize, kernel, gain, bias, kernelOffset, 441 SkMatrixConvolutionImageFilter::kRepeat_TileMode, false)); 442 443 SkBitmap result; 444 int width = 16, height = 16; 445 result.allocN32Pixels(width, height); 446 SkCanvas canvas(result); 447 canvas.clear(0); 448 449 SkPaint paint; 450 paint.setImageFilter(filter); 451 SkRect rect = SkRect::Make(SkIRect::MakeWH(width, height)); 452 canvas.drawRect(rect, paint); 453 } 454 455 DEF_TEST(ImageFilterMatrixConvolutionBorder, reporter) { 456 // Check that a filter with borders outside the target bounds 457 // does not crash. 458 SkScalar kernel[3] = { 459 0, 0, 0, 460 }; 461 SkISize kernelSize = SkISize::Make(3, 1); 462 SkScalar gain = SK_Scalar1, bias = 0; 463 SkIPoint kernelOffset = SkIPoint::Make(2, 0); 464 465 SkAutoTUnref<SkImageFilter> filter( 466 SkMatrixConvolutionImageFilter::Create( 467 kernelSize, kernel, gain, bias, kernelOffset, 468 SkMatrixConvolutionImageFilter::kClamp_TileMode, true)); 469 470 SkBitmap result; 471 472 int width = 10, height = 10; 473 result.allocN32Pixels(width, height); 474 SkCanvas canvas(result); 475 canvas.clear(0); 476 477 SkPaint filterPaint; 478 filterPaint.setImageFilter(filter); 479 SkRect bounds = SkRect::MakeWH(1, 10); 480 SkRect rect = SkRect::Make(SkIRect::MakeWH(width, height)); 481 SkPaint rectPaint; 482 canvas.saveLayer(&bounds, &filterPaint); 483 canvas.drawRect(rect, rectPaint); 484 canvas.restore(); 485 } 486 487 DEF_TEST(ImageFilterCropRect, reporter) { 488 SkBitmap temp; 489 temp.allocN32Pixels(100, 100); 490 SkBitmapDevice device(temp); 491 test_crop_rects(&device, reporter); 492 } 493 494 DEF_TEST(ImageFilterMatrixTest, reporter) { 495 SkBitmap temp; 496 temp.allocN32Pixels(100, 100); 497 SkBitmapDevice device(temp); 498 SkCanvas canvas(&device); 499 canvas.scale(SkIntToScalar(2), SkIntToScalar(2)); 500 501 SkMatrix expectedMatrix = canvas.getTotalMatrix(); 502 503 SkRTreeFactory factory; 504 SkPictureRecorder recorder; 505 SkCanvas* recordingCanvas = recorder.beginRecording(100, 100, &factory, 0); 506 507 SkPaint paint; 508 SkAutoTUnref<MatrixTestImageFilter> imageFilter( 509 new MatrixTestImageFilter(reporter, expectedMatrix)); 510 paint.setImageFilter(imageFilter.get()); 511 recordingCanvas->saveLayer(NULL, &paint); 512 SkPaint solidPaint; 513 solidPaint.setColor(0xFFFFFFFF); 514 recordingCanvas->save(); 515 recordingCanvas->scale(SkIntToScalar(10), SkIntToScalar(10)); 516 recordingCanvas->drawRect(SkRect::Make(SkIRect::MakeWH(100, 100)), solidPaint); 517 recordingCanvas->restore(); // scale 518 recordingCanvas->restore(); // saveLayer 519 SkAutoTUnref<SkPicture> picture(recorder.endRecording()); 520 521 canvas.drawPicture(picture); 522 } 523 524 DEF_TEST(ImageFilterPictureImageFilterTest, reporter) { 525 526 SkRTreeFactory factory; 527 SkPictureRecorder recorder; 528 SkCanvas* recordingCanvas = recorder.beginRecording(1, 1, &factory, 0); 529 530 // Create an SkPicture which simply draws a green 1x1 rectangle. 531 SkPaint greenPaint; 532 greenPaint.setColor(SK_ColorGREEN); 533 recordingCanvas->drawRect(SkRect::Make(SkIRect::MakeWH(1, 1)), greenPaint); 534 SkAutoTUnref<SkPicture> picture(recorder.endRecording()); 535 536 // Wrap that SkPicture in an SkPictureImageFilter. 537 SkAutoTUnref<SkImageFilter> imageFilter( 538 SkPictureImageFilter::Create(picture.get())); 539 540 // Check that SkPictureImageFilter successfully serializes its contained 541 // SkPicture when not in cross-process mode. 542 SkPaint paint; 543 paint.setImageFilter(imageFilter.get()); 544 SkPictureRecorder outerRecorder; 545 SkCanvas* outerCanvas = outerRecorder.beginRecording(1, 1, &factory, 0); 546 SkPaint redPaintWithFilter; 547 redPaintWithFilter.setColor(SK_ColorRED); 548 redPaintWithFilter.setImageFilter(imageFilter.get()); 549 outerCanvas->drawRect(SkRect::Make(SkIRect::MakeWH(1, 1)), redPaintWithFilter); 550 SkAutoTUnref<SkPicture> outerPicture(outerRecorder.endRecording()); 551 552 SkBitmap bitmap; 553 bitmap.allocN32Pixels(1, 1); 554 SkBitmapDevice device(bitmap); 555 SkCanvas canvas(&device); 556 557 // The result here should be green, since the filter replaces the primitive's red interior. 558 canvas.clear(0x0); 559 canvas.drawPicture(outerPicture); 560 uint32_t pixel = *bitmap.getAddr32(0, 0); 561 REPORTER_ASSERT(reporter, pixel == SK_ColorGREEN); 562 563 // Check that, for now, SkPictureImageFilter does not serialize or 564 // deserialize its contained picture when the filter is serialized 565 // cross-process. Do this by "laundering" it through SkValidatingReadBuffer. 566 SkAutoTUnref<SkData> data(SkValidatingSerializeFlattenable(imageFilter.get())); 567 SkAutoTUnref<SkFlattenable> flattenable(SkValidatingDeserializeFlattenable( 568 data->data(), data->size(), SkImageFilter::GetFlattenableType())); 569 SkImageFilter* unflattenedFilter = static_cast<SkImageFilter*>(flattenable.get()); 570 571 redPaintWithFilter.setImageFilter(unflattenedFilter); 572 SkPictureRecorder crossProcessRecorder; 573 SkCanvas* crossProcessCanvas = crossProcessRecorder.beginRecording(1, 1, &factory, 0); 574 crossProcessCanvas->drawRect(SkRect::Make(SkIRect::MakeWH(1, 1)), redPaintWithFilter); 575 SkAutoTUnref<SkPicture> crossProcessPicture(crossProcessRecorder.endRecording()); 576 577 canvas.clear(0x0); 578 canvas.drawPicture(crossProcessPicture); 579 pixel = *bitmap.getAddr32(0, 0); 580 // The result here should not be green, since the filter draws nothing. 581 REPORTER_ASSERT(reporter, pixel != SK_ColorGREEN); 582 } 583 584 DEF_TEST(ImageFilterEmptySaveLayerTest, reporter) { 585 586 // Even when there's an empty saveLayer()/restore(), ensure that an image 587 // filter or color filter which affects transparent black still draws. 588 589 SkBitmap bitmap; 590 bitmap.allocN32Pixels(10, 10); 591 SkBitmapDevice device(bitmap); 592 SkCanvas canvas(&device); 593 594 SkRTreeFactory factory; 595 SkPictureRecorder recorder; 596 597 SkAutoTUnref<SkColorFilter> green( 598 SkColorFilter::CreateModeFilter(SK_ColorGREEN, SkXfermode::kSrc_Mode)); 599 SkAutoTUnref<SkColorFilterImageFilter> imageFilter( 600 SkColorFilterImageFilter::Create(green.get())); 601 SkPaint imageFilterPaint; 602 imageFilterPaint.setImageFilter(imageFilter.get()); 603 SkPaint colorFilterPaint; 604 colorFilterPaint.setColorFilter(green.get()); 605 606 SkRect bounds = SkRect::MakeWH(10, 10); 607 608 SkCanvas* recordingCanvas = recorder.beginRecording(10, 10, &factory, 0); 609 recordingCanvas->saveLayer(&bounds, &imageFilterPaint); 610 recordingCanvas->restore(); 611 SkAutoTUnref<SkPicture> picture(recorder.endRecording()); 612 613 canvas.clear(0); 614 canvas.drawPicture(picture); 615 uint32_t pixel = *bitmap.getAddr32(0, 0); 616 REPORTER_ASSERT(reporter, pixel == SK_ColorGREEN); 617 618 recordingCanvas = recorder.beginRecording(10, 10, &factory, 0); 619 recordingCanvas->saveLayer(NULL, &imageFilterPaint); 620 recordingCanvas->restore(); 621 SkAutoTUnref<SkPicture> picture2(recorder.endRecording()); 622 623 canvas.clear(0); 624 canvas.drawPicture(picture2); 625 pixel = *bitmap.getAddr32(0, 0); 626 REPORTER_ASSERT(reporter, pixel == SK_ColorGREEN); 627 628 recordingCanvas = recorder.beginRecording(10, 10, &factory, 0); 629 recordingCanvas->saveLayer(&bounds, &colorFilterPaint); 630 recordingCanvas->restore(); 631 SkAutoTUnref<SkPicture> picture3(recorder.endRecording()); 632 633 canvas.clear(0); 634 canvas.drawPicture(picture3); 635 pixel = *bitmap.getAddr32(0, 0); 636 REPORTER_ASSERT(reporter, pixel == SK_ColorGREEN); 637 } 638 639 static void test_huge_blur(SkBaseDevice* device, skiatest::Reporter* reporter) { 640 SkCanvas canvas(device); 641 642 SkBitmap bitmap; 643 bitmap.allocN32Pixels(100, 100); 644 bitmap.eraseARGB(0, 0, 0, 0); 645 646 // Check that a blur with an insane radius does not crash or assert. 647 SkAutoTUnref<SkImageFilter> blur(SkBlurImageFilter::Create(SkIntToScalar(1<<30), SkIntToScalar(1<<30))); 648 649 SkPaint paint; 650 paint.setImageFilter(blur); 651 canvas.drawSprite(bitmap, 0, 0, &paint); 652 } 653 654 DEF_TEST(HugeBlurImageFilter, reporter) { 655 SkBitmap temp; 656 temp.allocN32Pixels(100, 100); 657 SkBitmapDevice device(temp); 658 test_huge_blur(&device, reporter); 659 } 660 661 static void test_xfermode_cropped_input(SkBaseDevice* device, skiatest::Reporter* reporter) { 662 SkCanvas canvas(device); 663 canvas.clear(0); 664 665 SkBitmap bitmap; 666 bitmap.allocN32Pixels(1, 1); 667 bitmap.eraseARGB(255, 255, 255, 255); 668 669 SkAutoTUnref<SkColorFilter> green( 670 SkColorFilter::CreateModeFilter(SK_ColorGREEN, SkXfermode::kSrcIn_Mode)); 671 SkAutoTUnref<SkColorFilterImageFilter> greenFilter( 672 SkColorFilterImageFilter::Create(green.get())); 673 SkImageFilter::CropRect cropRect(SkRect::MakeEmpty()); 674 SkAutoTUnref<SkColorFilterImageFilter> croppedOut( 675 SkColorFilterImageFilter::Create(green.get(), NULL, &cropRect)); 676 677 // Check that an xfermode image filter whose input has been cropped out still draws the other 678 // input. Also check that drawing with both inputs cropped out doesn't cause a GPU warning. 679 SkXfermode* mode = SkXfermode::Create(SkXfermode::kSrcOver_Mode); 680 SkAutoTUnref<SkImageFilter> xfermodeNoFg( 681 SkXfermodeImageFilter::Create(mode, greenFilter, croppedOut)); 682 SkAutoTUnref<SkImageFilter> xfermodeNoBg( 683 SkXfermodeImageFilter::Create(mode, croppedOut, greenFilter)); 684 SkAutoTUnref<SkImageFilter> xfermodeNoFgNoBg( 685 SkXfermodeImageFilter::Create(mode, croppedOut, croppedOut)); 686 687 SkPaint paint; 688 paint.setImageFilter(xfermodeNoFg); 689 canvas.drawSprite(bitmap, 0, 0, &paint); 690 691 uint32_t pixel; 692 SkImageInfo info = SkImageInfo::MakeN32Premul(1, 1); 693 canvas.readPixels(info, &pixel, 4, 0, 0); 694 REPORTER_ASSERT(reporter, pixel == SK_ColorGREEN); 695 696 paint.setImageFilter(xfermodeNoBg); 697 canvas.drawSprite(bitmap, 0, 0, &paint); 698 canvas.readPixels(info, &pixel, 4, 0, 0); 699 REPORTER_ASSERT(reporter, pixel == SK_ColorGREEN); 700 701 paint.setImageFilter(xfermodeNoFgNoBg); 702 canvas.drawSprite(bitmap, 0, 0, &paint); 703 canvas.readPixels(info, &pixel, 4, 0, 0); 704 REPORTER_ASSERT(reporter, pixel == SK_ColorGREEN); 705 } 706 707 DEF_TEST(ImageFilterNestedSaveLayer, reporter) { 708 SkBitmap temp; 709 temp.allocN32Pixels(50, 50); 710 SkBitmapDevice device(temp); 711 SkCanvas canvas(&device); 712 canvas.clear(0x0); 713 714 SkBitmap bitmap; 715 bitmap.allocN32Pixels(10, 10); 716 bitmap.eraseColor(SK_ColorGREEN); 717 718 SkMatrix matrix; 719 matrix.setScale(SkIntToScalar(2), SkIntToScalar(2)); 720 matrix.postTranslate(SkIntToScalar(-20), SkIntToScalar(-20)); 721 SkAutoTUnref<SkImageFilter> matrixFilter( 722 SkMatrixImageFilter::Create(matrix, SkPaint::kLow_FilterLevel)); 723 724 // Test that saveLayer() with a filter nested inside another saveLayer() applies the 725 // correct offset to the filter matrix. 726 SkRect bounds1 = SkRect::MakeXYWH(10, 10, 30, 30); 727 canvas.saveLayer(&bounds1, NULL); 728 SkPaint filterPaint; 729 filterPaint.setImageFilter(matrixFilter); 730 SkRect bounds2 = SkRect::MakeXYWH(20, 20, 10, 10); 731 canvas.saveLayer(&bounds2, &filterPaint); 732 SkPaint greenPaint; 733 greenPaint.setColor(SK_ColorGREEN); 734 canvas.drawRect(bounds2, greenPaint); 735 canvas.restore(); 736 canvas.restore(); 737 SkPaint strokePaint; 738 strokePaint.setStyle(SkPaint::kStroke_Style); 739 strokePaint.setColor(SK_ColorRED); 740 741 SkImageInfo info = SkImageInfo::MakeN32Premul(1, 1); 742 uint32_t pixel; 743 canvas.readPixels(info, &pixel, 4, 25, 25); 744 REPORTER_ASSERT(reporter, pixel == SK_ColorGREEN); 745 746 // Test that drawSprite() with a filter nested inside a saveLayer() applies the 747 // correct offset to the filter matrix. 748 canvas.clear(0x0); 749 canvas.readPixels(info, &pixel, 4, 25, 25); 750 canvas.saveLayer(&bounds1, NULL); 751 canvas.drawSprite(bitmap, 20, 20, &filterPaint); 752 canvas.restore(); 753 754 canvas.readPixels(info, &pixel, 4, 25, 25); 755 REPORTER_ASSERT(reporter, pixel == SK_ColorGREEN); 756 } 757 758 DEF_TEST(XfermodeImageFilterCroppedInput, reporter) { 759 SkBitmap temp; 760 temp.allocN32Pixels(100, 100); 761 SkBitmapDevice device(temp); 762 test_xfermode_cropped_input(&device, reporter); 763 } 764 765 #if SK_SUPPORT_GPU 766 DEF_GPUTEST(ImageFilterCropRectGPU, reporter, factory) { 767 GrContext* context = factory->get(static_cast<GrContextFactory::GLContextType>(0)); 768 SkAutoTUnref<SkGpuDevice> device(SkGpuDevice::Create(context, 769 SkImageInfo::MakeN32Premul(100, 100), 770 0)); 771 test_crop_rects(device, reporter); 772 } 773 774 DEF_GPUTEST(HugeBlurImageFilterGPU, reporter, factory) { 775 GrContext* context = factory->get(static_cast<GrContextFactory::GLContextType>(0)); 776 SkAutoTUnref<SkGpuDevice> device(SkGpuDevice::Create(context, 777 SkImageInfo::MakeN32Premul(100, 100), 778 0)); 779 test_huge_blur(device, reporter); 780 } 781 782 DEF_GPUTEST(XfermodeImageFilterCroppedInputGPU, reporter, factory) { 783 GrContext* context = factory->get(static_cast<GrContextFactory::GLContextType>(0)); 784 SkAutoTUnref<SkGpuDevice> device(SkGpuDevice::Create(context, 785 SkImageInfo::MakeN32Premul(1, 1), 786 0)); 787 test_xfermode_cropped_input(device, reporter); 788 } 789 #endif 790