Revert "Fix broken channel icon in chrome://help on CrOS" and try again
[chromium-blink-merge.git] / cc / playback / picture_pile_impl_unittest.cc
blobe32ecbd66c9ad644d0e91057a0d0a2bafb32467b
1 // Copyright 2013 The Chromium Authors. All rights reserved.
2 // Use of this source code is governed by a BSD-style license that can be
3 // found in the LICENSE file.
5 #include "base/memory/scoped_ptr.h"
6 #include "cc/test/fake_picture_pile_impl.h"
7 #include "cc/test/skia_common.h"
8 #include "skia/ext/refptr.h"
9 #include "testing/gtest/include/gtest/gtest.h"
10 #include "third_party/skia/include/core/SkPixelRef.h"
11 #include "third_party/skia/include/core/SkShader.h"
12 #include "ui/gfx/geometry/rect.h"
13 #include "ui/gfx/geometry/size_conversions.h"
15 namespace cc {
16 namespace {
18 TEST(PicturePileImplTest, AnalyzeIsSolidUnscaled) {
19 gfx::Size tile_size(100, 100);
20 gfx::Size layer_bounds(400, 400);
22 scoped_ptr<FakePicturePile> recording_source =
23 FakePicturePile::CreateFilledPile(tile_size, layer_bounds);
25 SkPaint solid_paint;
26 SkColor solid_color = SkColorSetARGB(255, 12, 23, 34);
27 solid_paint.setColor(solid_color);
29 SkColor non_solid_color = SkColorSetARGB(128, 45, 56, 67);
30 SkPaint non_solid_paint;
31 non_solid_paint.setColor(non_solid_color);
33 recording_source->add_draw_rect_with_paint(gfx::Rect(0, 0, 400, 400),
34 solid_paint);
35 recording_source->Rerecord();
37 scoped_refptr<FakePicturePileImpl> pile =
38 FakePicturePileImpl::CreateFromPile(recording_source.get(), nullptr);
40 // Ensure everything is solid.
41 for (int y = 0; y <= 300; y += 100) {
42 for (int x = 0; x <= 300; x += 100) {
43 RasterSource::SolidColorAnalysis analysis;
44 gfx::Rect rect(x, y, 100, 100);
45 pile->PerformSolidColorAnalysis(rect, 1.0, &analysis);
46 EXPECT_TRUE(analysis.is_solid_color) << rect.ToString();
47 EXPECT_EQ(analysis.solid_color, solid_color) << rect.ToString();
51 // Add one non-solid pixel and recreate the raster source.
52 recording_source->add_draw_rect_with_paint(gfx::Rect(50, 50, 1, 1),
53 non_solid_paint);
54 recording_source->Rerecord();
55 pile = FakePicturePileImpl::CreateFromPile(recording_source.get(), nullptr);
57 RasterSource::SolidColorAnalysis analysis;
58 pile->PerformSolidColorAnalysis(gfx::Rect(0, 0, 100, 100), 1.0, &analysis);
59 EXPECT_FALSE(analysis.is_solid_color);
61 pile->PerformSolidColorAnalysis(gfx::Rect(100, 0, 100, 100), 1.0, &analysis);
62 EXPECT_TRUE(analysis.is_solid_color);
63 EXPECT_EQ(analysis.solid_color, solid_color);
65 // Boundaries should be clipped.
66 analysis.is_solid_color = false;
67 pile->PerformSolidColorAnalysis(gfx::Rect(350, 0, 100, 100), 1.0, &analysis);
68 EXPECT_TRUE(analysis.is_solid_color);
69 EXPECT_EQ(analysis.solid_color, solid_color);
71 analysis.is_solid_color = false;
72 pile->PerformSolidColorAnalysis(gfx::Rect(0, 350, 100, 100), 1.0, &analysis);
73 EXPECT_TRUE(analysis.is_solid_color);
74 EXPECT_EQ(analysis.solid_color, solid_color);
76 analysis.is_solid_color = false;
77 pile->PerformSolidColorAnalysis(gfx::Rect(350, 350, 100, 100), 1.0,
78 &analysis);
79 EXPECT_TRUE(analysis.is_solid_color);
80 EXPECT_EQ(analysis.solid_color, solid_color);
83 TEST(PicturePileImplTest, AnalyzeIsSolidScaled) {
84 gfx::Size tile_size(100, 100);
85 gfx::Size layer_bounds(400, 400);
87 scoped_ptr<FakePicturePile> recording_source =
88 FakePicturePile::CreateFilledPile(tile_size, layer_bounds);
90 SkColor solid_color = SkColorSetARGB(255, 12, 23, 34);
91 SkPaint solid_paint;
92 solid_paint.setColor(solid_color);
94 SkColor non_solid_color = SkColorSetARGB(128, 45, 56, 67);
95 SkPaint non_solid_paint;
96 non_solid_paint.setColor(non_solid_color);
98 recording_source->add_draw_rect_with_paint(gfx::Rect(0, 0, 400, 400),
99 solid_paint);
100 recording_source->Rerecord();
102 scoped_refptr<FakePicturePileImpl> pile =
103 FakePicturePileImpl::CreateFromPile(recording_source.get(), nullptr);
105 // Ensure everything is solid.
106 for (int y = 0; y <= 30; y += 10) {
107 for (int x = 0; x <= 30; x += 10) {
108 RasterSource::SolidColorAnalysis analysis;
109 gfx::Rect rect(x, y, 10, 10);
110 pile->PerformSolidColorAnalysis(rect, 0.1f, &analysis);
111 EXPECT_TRUE(analysis.is_solid_color) << rect.ToString();
112 EXPECT_EQ(analysis.solid_color, solid_color) << rect.ToString();
116 // Add one non-solid pixel and recreate the raster source.
117 recording_source->add_draw_rect_with_paint(gfx::Rect(50, 50, 1, 1),
118 non_solid_paint);
119 recording_source->Rerecord();
120 pile = FakePicturePileImpl::CreateFromPile(recording_source.get(), nullptr);
122 RasterSource::SolidColorAnalysis analysis;
123 pile->PerformSolidColorAnalysis(gfx::Rect(0, 0, 10, 10), 0.1f, &analysis);
124 EXPECT_FALSE(analysis.is_solid_color);
126 pile->PerformSolidColorAnalysis(gfx::Rect(10, 0, 10, 10), 0.1f, &analysis);
127 EXPECT_TRUE(analysis.is_solid_color);
128 EXPECT_EQ(analysis.solid_color, solid_color);
130 // Boundaries should be clipped.
131 analysis.is_solid_color = false;
132 pile->PerformSolidColorAnalysis(gfx::Rect(35, 0, 10, 10), 0.1f, &analysis);
133 EXPECT_TRUE(analysis.is_solid_color);
134 EXPECT_EQ(analysis.solid_color, solid_color);
136 analysis.is_solid_color = false;
137 pile->PerformSolidColorAnalysis(gfx::Rect(0, 35, 10, 10), 0.1f, &analysis);
138 EXPECT_TRUE(analysis.is_solid_color);
139 EXPECT_EQ(analysis.solid_color, solid_color);
141 analysis.is_solid_color = false;
142 pile->PerformSolidColorAnalysis(gfx::Rect(35, 35, 10, 10), 0.1f, &analysis);
143 EXPECT_TRUE(analysis.is_solid_color);
144 EXPECT_EQ(analysis.solid_color, solid_color);
147 TEST(PicturePileImplTest, AnalyzeIsSolidEmpty) {
148 gfx::Size tile_size(100, 100);
149 gfx::Size layer_bounds(400, 400);
151 scoped_refptr<FakePicturePileImpl> pile =
152 FakePicturePileImpl::CreateFilledPile(tile_size, layer_bounds);
153 RasterSource::SolidColorAnalysis analysis;
154 EXPECT_FALSE(analysis.is_solid_color);
156 pile->PerformSolidColorAnalysis(gfx::Rect(0, 0, 400, 400), 1.f, &analysis);
158 EXPECT_TRUE(analysis.is_solid_color);
159 EXPECT_EQ(analysis.solid_color, SkColorSetARGB(0, 0, 0, 0));
162 TEST(PicturePileImplTest, PixelRefIteratorDiscardableRefsOneTile) {
163 gfx::Size tile_size(256, 256);
164 gfx::Size layer_bounds(512, 512);
166 scoped_ptr<FakePicturePile> recording_source =
167 FakePicturePile::CreateFilledPile(tile_size, layer_bounds);
169 SkBitmap discardable_bitmap[2][2];
170 CreateDiscardableBitmap(gfx::Size(32, 32), &discardable_bitmap[0][0]);
171 CreateDiscardableBitmap(gfx::Size(32, 32), &discardable_bitmap[0][1]);
172 CreateDiscardableBitmap(gfx::Size(32, 32), &discardable_bitmap[1][1]);
174 // Discardable pixel refs are found in the following cells:
175 // |---|---|
176 // | x | x |
177 // |---|---|
178 // | | x |
179 // |---|---|
180 recording_source->add_draw_bitmap(discardable_bitmap[0][0], gfx::Point(0, 0));
181 recording_source->add_draw_bitmap(discardable_bitmap[0][1],
182 gfx::Point(260, 0));
183 recording_source->add_draw_bitmap(discardable_bitmap[1][1],
184 gfx::Point(260, 260));
185 recording_source->SetGatherPixelRefs(true);
186 recording_source->Rerecord();
188 scoped_refptr<FakePicturePileImpl> pile =
189 FakePicturePileImpl::CreateFromPile(recording_source.get(), nullptr);
191 // Tile sized iterators. These should find only one pixel ref.
193 PicturePileImpl::PixelRefIterator iterator(
194 gfx::Rect(0, 0, 256, 256), 1.0, pile.get());
195 EXPECT_TRUE(iterator);
196 EXPECT_TRUE(iterator->pixel_ref == discardable_bitmap[0][0].pixelRef());
197 EXPECT_EQ(gfx::SkRectToRectF(iterator->pixel_ref_rect).ToString(),
198 gfx::RectF(32, 32).ToString());
199 EXPECT_FALSE(++iterator);
202 PicturePileImpl::PixelRefIterator iterator(
203 gfx::Rect(0, 0, 512, 512), 2.0, pile.get());
204 EXPECT_TRUE(iterator);
205 EXPECT_TRUE(iterator->pixel_ref == discardable_bitmap[0][0].pixelRef());
206 EXPECT_EQ(gfx::SkRectToRectF(iterator->pixel_ref_rect).ToString(),
207 gfx::RectF(32, 32).ToString());
208 EXPECT_FALSE(++iterator);
211 PicturePileImpl::PixelRefIterator iterator(
212 gfx::Rect(0, 0, 128, 128), 0.5, pile.get());
213 EXPECT_TRUE(iterator);
214 EXPECT_TRUE(iterator->pixel_ref == discardable_bitmap[0][0].pixelRef());
215 EXPECT_EQ(gfx::SkRectToRectF(iterator->pixel_ref_rect).ToString(),
216 gfx::RectF(32, 32).ToString());
217 EXPECT_FALSE(++iterator);
219 // Shifted tile sized iterators. These should find only one pixel ref.
221 PicturePileImpl::PixelRefIterator iterator(
222 gfx::Rect(260, 260, 256, 256), 1.0, pile.get());
223 EXPECT_TRUE(iterator);
224 EXPECT_TRUE(iterator->pixel_ref == discardable_bitmap[1][1].pixelRef());
225 EXPECT_EQ(gfx::SkRectToRectF(iterator->pixel_ref_rect).ToString(),
226 gfx::RectF(260, 260, 32, 32).ToString());
227 EXPECT_FALSE(++iterator);
230 PicturePileImpl::PixelRefIterator iterator(
231 gfx::Rect(520, 520, 512, 512), 2.0, pile.get());
232 EXPECT_TRUE(iterator);
233 EXPECT_TRUE(iterator->pixel_ref == discardable_bitmap[1][1].pixelRef());
234 EXPECT_EQ(gfx::SkRectToRectF(iterator->pixel_ref_rect).ToString(),
235 gfx::RectF(260, 260, 32, 32).ToString());
236 EXPECT_FALSE(++iterator);
239 PicturePileImpl::PixelRefIterator iterator(
240 gfx::Rect(130, 130, 128, 128), 0.5, pile.get());
241 EXPECT_TRUE(iterator);
242 EXPECT_TRUE(iterator->pixel_ref == discardable_bitmap[1][1].pixelRef());
243 EXPECT_EQ(gfx::SkRectToRectF(iterator->pixel_ref_rect).ToString(),
244 gfx::RectF(260, 260, 32, 32).ToString());
245 EXPECT_FALSE(++iterator);
247 // Ensure there's no discardable pixel refs in the empty cell
249 PicturePileImpl::PixelRefIterator iterator(
250 gfx::Rect(0, 256, 256, 256), 1.0, pile.get());
251 EXPECT_FALSE(iterator);
253 // Layer sized iterators. These should find three pixel ref.
255 PicturePileImpl::PixelRefIterator iterator(
256 gfx::Rect(0, 0, 512, 512), 1.0, pile.get());
257 EXPECT_TRUE(iterator);
258 EXPECT_TRUE(iterator->pixel_ref == discardable_bitmap[0][0].pixelRef());
259 EXPECT_EQ(gfx::SkRectToRectF(iterator->pixel_ref_rect).ToString(),
260 gfx::RectF(32, 32).ToString());
261 EXPECT_TRUE(++iterator);
262 EXPECT_TRUE(iterator->pixel_ref == discardable_bitmap[0][1].pixelRef());
263 EXPECT_EQ(gfx::SkRectToRectF(iterator->pixel_ref_rect).ToString(),
264 gfx::RectF(260, 0, 32, 32).ToString());
265 EXPECT_TRUE(++iterator);
266 EXPECT_TRUE(iterator->pixel_ref == discardable_bitmap[1][1].pixelRef());
267 EXPECT_EQ(gfx::SkRectToRectF(iterator->pixel_ref_rect).ToString(),
268 gfx::RectF(260, 260, 32, 32).ToString());
269 EXPECT_FALSE(++iterator);
272 PicturePileImpl::PixelRefIterator iterator(
273 gfx::Rect(0, 0, 1024, 1024), 2.0, pile.get());
274 EXPECT_TRUE(iterator);
275 EXPECT_TRUE(iterator->pixel_ref == discardable_bitmap[0][0].pixelRef());
276 EXPECT_EQ(gfx::SkRectToRectF(iterator->pixel_ref_rect).ToString(),
277 gfx::RectF(32, 32).ToString());
278 EXPECT_TRUE(++iterator);
279 EXPECT_TRUE(iterator->pixel_ref == discardable_bitmap[0][1].pixelRef());
280 EXPECT_EQ(gfx::SkRectToRectF(iterator->pixel_ref_rect).ToString(),
281 gfx::RectF(260, 0, 32, 32).ToString());
282 EXPECT_TRUE(++iterator);
283 EXPECT_TRUE(iterator->pixel_ref == discardable_bitmap[1][1].pixelRef());
284 EXPECT_EQ(gfx::SkRectToRectF(iterator->pixel_ref_rect).ToString(),
285 gfx::RectF(260, 260, 32, 32).ToString());
286 EXPECT_FALSE(++iterator);
289 PicturePileImpl::PixelRefIterator iterator(
290 gfx::Rect(0, 0, 256, 256), 0.5, pile.get());
291 EXPECT_TRUE(iterator);
292 EXPECT_TRUE(iterator->pixel_ref == discardable_bitmap[0][0].pixelRef());
293 EXPECT_EQ(gfx::RectF(32, 32).ToString(),
294 gfx::SkRectToRectF(iterator->pixel_ref_rect).ToString());
295 EXPECT_TRUE(++iterator);
296 EXPECT_TRUE(iterator->pixel_ref == discardable_bitmap[0][1].pixelRef());
297 EXPECT_EQ(gfx::RectF(260, 0, 32, 32).ToString(),
298 gfx::SkRectToRectF(iterator->pixel_ref_rect).ToString());
299 EXPECT_TRUE(++iterator);
300 EXPECT_TRUE(iterator->pixel_ref == discardable_bitmap[1][1].pixelRef());
301 EXPECT_EQ(gfx::RectF(260, 260, 32, 32).ToString(),
302 gfx::SkRectToRectF(iterator->pixel_ref_rect).ToString());
303 EXPECT_FALSE(++iterator);
307 // Copy test.
308 PicturePileImpl::PixelRefIterator iterator(gfx::Rect(0, 0, 512, 512), 1.0,
309 pile.get());
310 EXPECT_TRUE(iterator);
311 EXPECT_TRUE(iterator->pixel_ref == discardable_bitmap[0][0].pixelRef());
312 EXPECT_EQ(gfx::RectF(32, 32).ToString(),
313 gfx::SkRectToRectF(iterator->pixel_ref_rect).ToString());
314 EXPECT_TRUE(++iterator);
315 EXPECT_TRUE(iterator->pixel_ref == discardable_bitmap[0][1].pixelRef());
316 EXPECT_EQ(gfx::RectF(260, 0, 32, 32).ToString(),
317 gfx::SkRectToRectF(iterator->pixel_ref_rect).ToString());
319 // copy now points to the same spot as iterator,
320 // but both can be incremented independently.
321 PicturePileImpl::PixelRefIterator copy = iterator;
322 EXPECT_TRUE(++iterator);
323 EXPECT_TRUE(iterator->pixel_ref == discardable_bitmap[1][1].pixelRef());
324 EXPECT_EQ(gfx::RectF(260, 260, 32, 32).ToString(),
325 gfx::SkRectToRectF(iterator->pixel_ref_rect).ToString());
326 EXPECT_FALSE(++iterator);
328 EXPECT_TRUE(copy);
329 EXPECT_TRUE(copy->pixel_ref == discardable_bitmap[0][1].pixelRef());
330 EXPECT_EQ(gfx::RectF(260, 0, 32, 32).ToString(),
331 gfx::SkRectToRectF(copy->pixel_ref_rect).ToString());
332 EXPECT_TRUE(++copy);
333 EXPECT_TRUE(copy->pixel_ref == discardable_bitmap[1][1].pixelRef());
334 EXPECT_EQ(gfx::RectF(260, 260, 32, 32).ToString(),
335 gfx::SkRectToRectF(copy->pixel_ref_rect).ToString());
336 EXPECT_FALSE(++copy);
340 TEST(PicturePileImplTest, RasterFullContents) {
341 gfx::Size tile_size(1000, 1000);
342 gfx::Size layer_bounds(3, 5);
343 float contents_scale = 1.5f;
344 float raster_divisions = 2.f;
346 scoped_ptr<FakePicturePile> recording_source =
347 FakePicturePile::CreateFilledPile(tile_size, layer_bounds);
348 recording_source->SetBackgroundColor(SK_ColorBLACK);
349 recording_source->SetIsSolidColor(false);
350 recording_source->SetRequiresClear(false);
351 recording_source->SetClearCanvasWithDebugColor(false);
353 // Because the caller sets content opaque, it also promises that it
354 // has at least filled in layer_bounds opaquely.
355 SkPaint white_paint;
356 white_paint.setColor(SK_ColorWHITE);
357 recording_source->add_draw_rect_with_paint(gfx::Rect(layer_bounds),
358 white_paint);
360 recording_source->SetMinContentsScale(contents_scale);
361 recording_source->Rerecord();
363 scoped_refptr<FakePicturePileImpl> pile =
364 FakePicturePileImpl::CreateFromPile(recording_source.get(), nullptr);
366 gfx::Size content_bounds(
367 gfx::ToCeiledSize(gfx::ScaleSize(layer_bounds, contents_scale)));
369 // Simulate drawing into different tiles at different offsets.
370 int step_x = std::ceil(content_bounds.width() / raster_divisions);
371 int step_y = std::ceil(content_bounds.height() / raster_divisions);
372 for (int offset_x = 0; offset_x < content_bounds.width();
373 offset_x += step_x) {
374 for (int offset_y = 0; offset_y < content_bounds.height();
375 offset_y += step_y) {
376 gfx::Rect content_rect(offset_x, offset_y, step_x, step_y);
377 content_rect.Intersect(gfx::Rect(content_bounds));
379 // Simulate a canvas rect larger than the content rect. Every pixel
380 // up to one pixel outside the content rect is guaranteed to be opaque.
381 // Outside of that is undefined.
382 gfx::Rect canvas_rect(content_rect);
383 canvas_rect.Inset(0, 0, -1, -1);
385 SkBitmap bitmap;
386 bitmap.allocN32Pixels(canvas_rect.width(), canvas_rect.height());
387 SkCanvas canvas(bitmap);
388 canvas.clear(SK_ColorTRANSPARENT);
390 pile->PlaybackToCanvas(&canvas, canvas_rect, canvas_rect, contents_scale);
392 SkColor* pixels = reinterpret_cast<SkColor*>(bitmap.getPixels());
393 int num_pixels = bitmap.width() * bitmap.height();
394 bool all_white = true;
395 for (int i = 0; i < num_pixels; ++i) {
396 EXPECT_EQ(SkColorGetA(pixels[i]), 255u);
397 all_white &= (SkColorGetR(pixels[i]) == 255);
398 all_white &= (SkColorGetG(pixels[i]) == 255);
399 all_white &= (SkColorGetB(pixels[i]) == 255);
402 // If the canvas doesn't extend past the edge of the content,
403 // it should be entirely white. Otherwise, the edge of the content
404 // will be non-white.
405 EXPECT_EQ(all_white, gfx::Rect(content_bounds).Contains(canvas_rect));
410 TEST(PicturePileImpl, RasterContentsTransparent) {
411 gfx::Size tile_size(1000, 1000);
412 gfx::Size layer_bounds(5, 3);
413 float contents_scale = 0.5f;
415 scoped_ptr<FakePicturePile> recording_source =
416 FakePicturePile::CreateFilledPile(tile_size, layer_bounds);
417 recording_source->SetBackgroundColor(SK_ColorTRANSPARENT);
418 recording_source->SetRequiresClear(true);
419 recording_source->SetMinContentsScale(contents_scale);
420 recording_source->SetClearCanvasWithDebugColor(false);
421 recording_source->Rerecord();
423 scoped_refptr<FakePicturePileImpl> pile =
424 FakePicturePileImpl::CreateFromPile(recording_source.get(), nullptr);
425 gfx::Size content_bounds(
426 gfx::ToCeiledSize(gfx::ScaleSize(layer_bounds, contents_scale)));
428 gfx::Rect canvas_rect(content_bounds);
429 canvas_rect.Inset(0, 0, -1, -1);
431 SkBitmap bitmap;
432 bitmap.allocN32Pixels(canvas_rect.width(), canvas_rect.height());
433 SkCanvas canvas(bitmap);
435 pile->PlaybackToCanvas(&canvas, canvas_rect, canvas_rect, contents_scale);
437 SkColor* pixels = reinterpret_cast<SkColor*>(bitmap.getPixels());
438 int num_pixels = bitmap.width() * bitmap.height();
439 for (int i = 0; i < num_pixels; ++i) {
440 EXPECT_EQ(SkColorGetA(pixels[i]), 0u);
444 class OverlapTest : public ::testing::TestWithParam<float> {
445 public:
446 static float MinContentsScale() { return 1.f / 4.f; }
449 TEST_P(OverlapTest, NoOverlap) {
450 gfx::Size tile_size(10, 10);
451 gfx::Size layer_bounds(30, 30);
452 gfx::Size bigger_than_layer_bounds(300, 300);
453 float contents_scale = GetParam();
454 // Pick an opaque color to not have to deal with premultiplication off-by-one.
455 SkColor test_color = SkColorSetARGB(255, 45, 56, 67);
457 scoped_ptr<FakePicturePile> recording_source =
458 FakePicturePile::CreateFilledPile(tile_size, layer_bounds);
459 recording_source->SetBackgroundColor(SK_ColorTRANSPARENT);
460 recording_source->SetRequiresClear(true);
461 recording_source->SetMinContentsScale(MinContentsScale());
462 recording_source->SetClearCanvasWithDebugColor(true);
464 SkPaint color_paint;
465 color_paint.setColor(test_color);
466 // Additive paint, so that if two paints overlap, the color will change.
467 color_paint.setXfermodeMode(SkXfermode::kPlus_Mode);
468 // Paint outside the layer to make sure that blending works.
469 recording_source->add_draw_rect_with_paint(
470 gfx::RectF(bigger_than_layer_bounds), color_paint);
471 recording_source->Rerecord();
473 scoped_refptr<FakePicturePileImpl> pile =
474 FakePicturePileImpl::CreateFromPile(recording_source.get(), nullptr);
475 gfx::Size content_bounds(
476 gfx::ToCeiledSize(gfx::ScaleSize(layer_bounds, contents_scale)));
478 SkBitmap bitmap;
479 bitmap.allocN32Pixels(content_bounds.width(), content_bounds.height());
480 SkCanvas canvas(bitmap);
482 pile->PlaybackToCanvas(&canvas, gfx::Rect(content_bounds),
483 gfx::Rect(content_bounds), contents_scale);
485 for (int y = 0; y < bitmap.height(); y++) {
486 for (int x = 0; x < bitmap.width(); x++) {
487 SkColor color = bitmap.getColor(x, y);
488 EXPECT_EQ(SkColorGetR(test_color), SkColorGetR(color)) << "x: " << x
489 << ", y: " << y;
490 EXPECT_EQ(SkColorGetG(test_color), SkColorGetG(color)) << "x: " << x
491 << ", y: " << y;
492 EXPECT_EQ(SkColorGetB(test_color), SkColorGetB(color)) << "x: " << x
493 << ", y: " << y;
494 EXPECT_EQ(SkColorGetA(test_color), SkColorGetA(color)) << "x: " << x
495 << ", y: " << y;
496 if (test_color != color)
497 break;
502 INSTANTIATE_TEST_CASE_P(PicturePileImpl,
503 OverlapTest,
504 ::testing::Values(1.f, 0.873f, 1.f / 4.f, 4.f));
506 TEST(PicturePileImplTest, PixelRefIteratorBorders) {
507 // 3 tile width / 1 tile height pile
508 gfx::Size tile_size(128, 128);
509 gfx::Size layer_bounds(320, 128);
511 // Fake picture pile uses a tile grid the size of the tile. So,
512 // any iteration that intersects with a tile will return all pixel refs
513 // inside of it.
514 scoped_ptr<FakePicturePile> recording_source =
515 FakePicturePile::CreateFilledPile(tile_size, layer_bounds);
516 recording_source->SetMinContentsScale(0.5f);
518 // Bitmaps 0-2 are exactly on tiles 0-2, so that they overlap the borders
519 // of adjacent tiles.
520 gfx::Rect bitmap_rects[] = {
521 recording_source->tiling().TileBounds(0, 0),
522 recording_source->tiling().TileBounds(1, 0),
523 recording_source->tiling().TileBounds(2, 0),
525 gfx::RectF expected_rects[] = {
526 gfx::RectF(recording_source->tiling().TileBounds(0, 0)),
527 gfx::RectF(recording_source->tiling().TileBounds(1, 0)),
528 gfx::RectF(recording_source->tiling().TileBounds(2, 0)),
530 SkBitmap discardable_bitmap[arraysize(bitmap_rects)];
532 for (size_t i = 0; i < arraysize(bitmap_rects); ++i) {
533 CreateDiscardableBitmap(bitmap_rects[i].size(), &discardable_bitmap[i]);
534 recording_source->add_draw_bitmap(discardable_bitmap[i],
535 bitmap_rects[i].origin());
538 recording_source->SetGatherPixelRefs(true);
539 recording_source->Rerecord();
541 scoped_refptr<FakePicturePileImpl> pile =
542 FakePicturePileImpl::CreateFromPile(recording_source.get(), nullptr);
544 // Sanity check that bitmaps 0-2 intersect the borders of their adjacent
545 // tiles, but not the actual tiles.
546 EXPECT_TRUE(
547 bitmap_rects[0].Intersects(pile->tiling().TileBoundsWithBorder(1, 0)));
548 EXPECT_FALSE(bitmap_rects[0].Intersects(pile->tiling().TileBounds(1, 0)));
549 EXPECT_TRUE(
550 bitmap_rects[1].Intersects(pile->tiling().TileBoundsWithBorder(0, 0)));
551 EXPECT_FALSE(bitmap_rects[1].Intersects(pile->tiling().TileBounds(0, 0)));
552 EXPECT_TRUE(
553 bitmap_rects[1].Intersects(pile->tiling().TileBoundsWithBorder(2, 0)));
554 EXPECT_FALSE(bitmap_rects[1].Intersects(pile->tiling().TileBounds(2, 0)));
555 EXPECT_TRUE(
556 bitmap_rects[2].Intersects(pile->tiling().TileBoundsWithBorder(1, 0)));
557 EXPECT_FALSE(bitmap_rects[2].Intersects(pile->tiling().TileBounds(1, 0)));
559 // Tile-sized iterators.
561 // Because tile 0's borders extend onto tile 1, it will include both
562 // bitmap 0 and 1. However, it should *not* include bitmap 2.
563 PicturePileImpl::PixelRefIterator iterator(
564 pile->tiling().TileBounds(0, 0), 1.f, pile.get());
565 EXPECT_TRUE(iterator);
566 EXPECT_TRUE(iterator->pixel_ref == discardable_bitmap[0].pixelRef());
567 EXPECT_EQ(expected_rects[0].ToString(),
568 gfx::SkRectToRectF(iterator->pixel_ref_rect).ToString());
569 EXPECT_TRUE(++iterator);
570 EXPECT_TRUE(iterator->pixel_ref == discardable_bitmap[1].pixelRef());
571 EXPECT_EQ(expected_rects[1].ToString(),
572 gfx::SkRectToRectF(iterator->pixel_ref_rect).ToString());
573 EXPECT_FALSE(++iterator);
576 // Tile 1 + borders hits all bitmaps.
577 PicturePileImpl::PixelRefIterator iterator(
578 pile->tiling().TileBounds(1, 0), 1.f, pile.get());
579 EXPECT_TRUE(iterator);
580 EXPECT_TRUE(iterator->pixel_ref == discardable_bitmap[0].pixelRef());
581 EXPECT_EQ(expected_rects[0].ToString(),
582 gfx::SkRectToRectF(iterator->pixel_ref_rect).ToString());
583 EXPECT_TRUE(++iterator);
584 EXPECT_TRUE(iterator->pixel_ref == discardable_bitmap[1].pixelRef());
585 EXPECT_EQ(expected_rects[1].ToString(),
586 gfx::SkRectToRectF(iterator->pixel_ref_rect).ToString());
587 EXPECT_TRUE(++iterator);
588 EXPECT_TRUE(iterator->pixel_ref == discardable_bitmap[2].pixelRef());
589 EXPECT_EQ(expected_rects[2].ToString(),
590 gfx::SkRectToRectF(iterator->pixel_ref_rect).ToString());
591 EXPECT_FALSE(++iterator);
594 // Tile 2 should not include bitmap 0, which is only on tile 0 and the
595 // borders of tile 1.
596 PicturePileImpl::PixelRefIterator iterator(
597 pile->tiling().TileBounds(2, 0), 1.f, pile.get());
598 EXPECT_TRUE(iterator);
599 EXPECT_TRUE(iterator->pixel_ref == discardable_bitmap[1].pixelRef());
600 EXPECT_EQ(expected_rects[1].ToString(),
601 gfx::SkRectToRectF(iterator->pixel_ref_rect).ToString());
602 EXPECT_TRUE(++iterator);
603 EXPECT_TRUE(iterator->pixel_ref == discardable_bitmap[2].pixelRef());
604 EXPECT_EQ(expected_rects[2].ToString(),
605 gfx::SkRectToRectF(iterator->pixel_ref_rect).ToString());
606 EXPECT_FALSE(++iterator);
610 } // namespace
611 } // namespace cc