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1 /* | 1 /* |
2 * Copyright 2014 Google Inc. | 2 * Copyright 2014 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 | 7 |
8 #include "SKPBench.h" | 8 #include "SKPBench.h" |
9 #include "SkCommandLineFlags.h" | 9 #include "SkCommandLineFlags.h" |
| 10 #include "SkMultiPictureDraw.h" |
| 11 #include "SkSurface.h" |
10 | 12 |
11 DEFINE_int32(benchTile, 256, "Tile dimension used for SKP playback."); | 13 DEFINE_int32(benchTile, 256, "Tile dimension used for SKP playback."); |
12 | 14 |
13 SKPBench::SKPBench(const char* name, const SkPicture* pic, const SkIRect& clip,
SkScalar scale) | 15 SKPBench::SKPBench(const char* name, const SkPicture* pic, const SkIRect& clip,
SkScalar scale, |
| 16 bool useMultiPictureDraw) |
14 : fPic(SkRef(pic)) | 17 : fPic(SkRef(pic)) |
15 , fClip(clip) | 18 , fClip(clip) |
16 , fScale(scale) | 19 , fScale(scale) |
17 , fName(name) { | 20 , fName(name) |
| 21 , fUseMultiPictureDraw(useMultiPictureDraw) { |
18 fUniqueName.printf("%s_%.2g", name, scale); // Scale makes this unqiue for
skiaperf.com traces. | 22 fUniqueName.printf("%s_%.2g", name, scale); // Scale makes this unqiue for
skiaperf.com traces. |
| 23 if (useMultiPictureDraw) { |
| 24 fUniqueName.append("_mpd"); |
| 25 } |
| 26 } |
| 27 |
| 28 SKPBench::~SKPBench() { |
| 29 for (int i = 0; i < fSurfaces.count(); ++i) { |
| 30 fSurfaces[i]->unref(); |
| 31 } |
19 } | 32 } |
20 | 33 |
21 const char* SKPBench::onGetName() { | 34 const char* SKPBench::onGetName() { |
22 return fName.c_str(); | 35 return fName.c_str(); |
23 } | 36 } |
24 | 37 |
25 const char* SKPBench::onGetUniqueName() { | 38 const char* SKPBench::onGetUniqueName() { |
26 return fUniqueName.c_str(); | 39 return fUniqueName.c_str(); |
27 } | 40 } |
28 | 41 |
| 42 void SKPBench::onPerCanvasPreDraw(SkCanvas* canvas) { |
| 43 if (!fUseMultiPictureDraw) { |
| 44 return; |
| 45 } |
| 46 |
| 47 SkIRect bounds; |
| 48 SkAssertResult(canvas->getClipDeviceBounds(&bounds)); |
| 49 |
| 50 int xTiles = SkScalarCeilToInt(bounds.width() / SkIntToScalar(FLAGS_benchTi
le)); |
| 51 int yTiles = SkScalarCeilToInt(bounds.height() / SkIntToScalar(FLAGS_benchTi
le)); |
| 52 |
| 53 fSurfaces.setReserve(xTiles * yTiles); |
| 54 fTileRects.setReserve(xTiles * yTiles); |
| 55 |
| 56 SkImageInfo ii = canvas->imageInfo().makeWH(FLAGS_benchTile, FLAGS_benchTile
); |
| 57 |
| 58 for (int y = bounds.fTop; y < bounds.fBottom; y += FLAGS_benchTile) { |
| 59 for (int x = bounds.fLeft; x < bounds.fRight; x += FLAGS_benchTile) { |
| 60 *fTileRects.append() = SkIRect::MakeXYWH(x, y, FLAGS_benchTile, FLAG
S_benchTile); |
| 61 *fSurfaces.push() = canvas->newSurface(ii); |
| 62 fSurfaces.top()->getCanvas()->setMatrix(canvas->getTotalMatrix()); |
| 63 fSurfaces.top()->getCanvas()->scale(fScale, fScale); |
| 64 } |
| 65 } |
| 66 } |
| 67 |
| 68 void SKPBench::onPerCanvasPostDraw(SkCanvas* canvas) { |
| 69 if (!fUseMultiPictureDraw) { |
| 70 return; |
| 71 } |
| 72 |
| 73 // Draw the last set of tiles into the master canvas in case we're |
| 74 // saving the images |
| 75 for (int i = 0; i < fTileRects.count(); ++i) { |
| 76 canvas->drawImage(fSurfaces[i]->newImageSnapshot(), |
| 77 SkIntToScalar(fTileRects[i].fLeft), SkIntToScalar(fTil
eRects[i].fTop)); |
| 78 SkSafeSetNull(fSurfaces[i]); |
| 79 } |
| 80 |
| 81 fSurfaces.rewind(); |
| 82 fTileRects.rewind(); |
| 83 } |
| 84 |
29 bool SKPBench::isSuitableFor(Backend backend) { | 85 bool SKPBench::isSuitableFor(Backend backend) { |
30 return backend != kNonRendering_Backend; | 86 return backend != kNonRendering_Backend; |
31 } | 87 } |
32 | 88 |
33 SkIPoint SKPBench::onGetSize() { | 89 SkIPoint SKPBench::onGetSize() { |
34 return SkIPoint::Make(fClip.width(), fClip.height()); | 90 return SkIPoint::Make(fClip.width(), fClip.height()); |
35 } | 91 } |
36 | 92 |
37 void SKPBench::onDraw(const int loops, SkCanvas* canvas) { | 93 void SKPBench::onDraw(const int loops, SkCanvas* canvas) { |
38 SkIRect bounds; | 94 if (fUseMultiPictureDraw) { |
39 SkAssertResult(canvas->getClipDeviceBounds(&bounds)); | 95 for (int i = 0; i < loops; i++) { |
| 96 SkMultiPictureDraw mpd; |
40 | 97 |
41 SkAutoCanvasRestore overall(canvas, true/*save now*/); | 98 for (int i = 0; i < fTileRects.count(); ++i) { |
42 canvas->scale(fScale, fScale); | 99 SkMatrix trans; |
| 100 trans.setTranslate(-fTileRects[i].fLeft/fScale, |
| 101 -fTileRects[i].fTop/fScale); |
| 102 mpd.add(fSurfaces[i]->getCanvas(), fPic, &trans); |
| 103 } |
43 | 104 |
44 for (int i = 0; i < loops; i++) { | 105 mpd.draw(); |
45 for (int y = bounds.fTop; y < bounds.fBottom; y += FLAGS_benchTile) { | 106 |
46 for (int x = bounds.fLeft; x < bounds.fRight; x += FLAGS_benchTile)
{ | 107 for (int i = 0; i < fTileRects.count(); ++i) { |
47 SkAutoCanvasRestore perTile(canvas, true/*save now*/); | 108 fSurfaces[i]->getCanvas()->flush(); |
48 canvas->clipRect(SkRect::Make( | |
49 SkIRect::MakeXYWH(x, y, FLAGS_benchTile, FLAGS_bench
Tile))); | |
50 fPic->playback(canvas); | |
51 } | 109 } |
52 } | 110 } |
53 canvas->flush(); | 111 } else { |
| 112 SkIRect bounds; |
| 113 SkAssertResult(canvas->getClipDeviceBounds(&bounds)); |
| 114 |
| 115 SkAutoCanvasRestore overall(canvas, true/*save now*/); |
| 116 canvas->scale(fScale, fScale); |
| 117 |
| 118 for (int i = 0; i < loops; i++) { |
| 119 for (int y = bounds.fTop; y < bounds.fBottom; y += FLAGS_benchTile)
{ |
| 120 for (int x = bounds.fLeft; x < bounds.fRight; x += FLAGS_benchTi
le) { |
| 121 SkAutoCanvasRestore perTile(canvas, true/*save now*/); |
| 122 canvas->clipRect(SkRect::Make( |
| 123 SkIRect::MakeXYWH(x, y, FLAGS_benchTile, FLAGS_b
enchTile))); |
| 124 fPic->playback(canvas); |
| 125 } |
| 126 } |
| 127 |
| 128 canvas->flush(); |
| 129 } |
54 } | 130 } |
55 } | 131 } |
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