OLD | NEW |
1 /* | 1 /* |
2 * Copyright 2012 The Android Open Source Project | 2 * Copyright 2012 The Android Open Source Project |
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 "SkOffsetImageFilter.h" | 8 #include "SkOffsetImageFilter.h" |
9 #include "SkBitmap.h" | 9 #include "SkBitmap.h" |
10 #include "SkCanvas.h" | 10 #include "SkCanvas.h" |
11 #include "SkDevice.h" | 11 #include "SkDevice.h" |
12 #include "SkReadBuffer.h" | 12 #include "SkReadBuffer.h" |
13 #include "SkWriteBuffer.h" | 13 #include "SkWriteBuffer.h" |
14 #include "SkMatrix.h" | 14 #include "SkMatrix.h" |
15 #include "SkPaint.h" | 15 #include "SkPaint.h" |
16 | 16 |
17 bool SkOffsetImageFilter::onFilterImage(Proxy* proxy, const SkBitmap& source, | 17 bool SkOffsetImageFilter::onFilterImage(Proxy* proxy, const SkImage* source, |
18 const Context& ctx, | 18 const Context& ctx, |
19 SkBitmap* result, | 19 SkAutoTUnref<const SkImage>& result, |
20 SkIPoint* offset) const { | 20 SkIPoint* offset) const { |
21 SkImageFilter* input = getInput(0); | 21 SkImageFilter* input = getInput(0); |
22 SkBitmap src = source; | 22 SkAutoTUnref<const SkImage> src(SkRef(source)); |
23 SkIPoint srcOffset = SkIPoint::Make(0, 0); | 23 SkIPoint srcOffset = SkIPoint::Make(0, 0); |
24 #ifdef SK_DISABLE_OFFSETIMAGEFILTER_OPTIMIZATION | 24 #ifdef SK_DISABLE_OFFSETIMAGEFILTER_OPTIMIZATION |
25 if (false) { | 25 if (false) { |
26 #else | 26 #else |
27 if (!cropRectIsSet()) { | 27 if (!cropRectIsSet()) { |
28 #endif | 28 #endif |
29 if (input && !input->filterImage(proxy, source, ctx, &src, &srcOffset))
{ | 29 if (input && !input->filterImage(proxy, source, ctx, src, &srcOffset)) { |
30 return false; | 30 return false; |
31 } | 31 } |
32 | 32 |
33 SkVector vec; | 33 SkVector vec; |
34 ctx.ctm().mapVectors(&vec, &fOffset, 1); | 34 ctx.ctm().mapVectors(&vec, &fOffset, 1); |
35 | 35 |
36 offset->fX = srcOffset.fX + SkScalarRoundToInt(vec.fX); | 36 offset->fX = srcOffset.fX + SkScalarRoundToInt(vec.fX); |
37 offset->fY = srcOffset.fY + SkScalarRoundToInt(vec.fY); | 37 offset->fY = srcOffset.fY + SkScalarRoundToInt(vec.fY); |
38 *result = src; | 38 result.swap(&src); |
39 } else { | 39 } else { |
40 if (input && !input->filterImage(proxy, source, ctx, &src, &srcOffset))
{ | 40 if (input && !input->filterImage(proxy, source, ctx, src, &srcOffset)) { |
41 return false; | 41 return false; |
42 } | 42 } |
43 | 43 |
44 SkIRect bounds; | 44 SkIRect bounds; |
45 if (!this->applyCropRect(ctx, src, srcOffset, &bounds)) { | 45 if (!this->applyCropRect(ctx, src, srcOffset, &bounds)) { |
46 return false; | 46 return false; |
47 } | 47 } |
48 | 48 |
49 SkAutoTUnref<SkBaseDevice> device(proxy->createDevice(bounds.width(), bo
unds.height())); | 49 SkAutoTUnref<SkBaseDevice> device(proxy->createDevice(bounds.width(), bo
unds.height())); |
50 if (NULL == device.get()) { | 50 if (NULL == device.get()) { |
51 return false; | 51 return false; |
52 } | 52 } |
53 SkCanvas canvas(device); | 53 SkCanvas canvas(device); |
54 SkPaint paint; | 54 SkPaint paint; |
55 paint.setXfermodeMode(SkXfermode::kSrc_Mode); | 55 paint.setXfermodeMode(SkXfermode::kSrc_Mode); |
56 canvas.translate(SkIntToScalar(srcOffset.fX - bounds.fLeft), | 56 canvas.translate(SkIntToScalar(srcOffset.fX - bounds.fLeft), |
57 SkIntToScalar(srcOffset.fY - bounds.fTop)); | 57 SkIntToScalar(srcOffset.fY - bounds.fTop)); |
58 SkVector vec; | 58 SkVector vec; |
59 ctx.ctm().mapVectors(&vec, &fOffset, 1); | 59 ctx.ctm().mapVectors(&vec, &fOffset, 1); |
60 canvas.drawBitmap(src, vec.x(), vec.y(), &paint); | 60 canvas.drawImage(src, vec.x(), vec.y(), &paint); |
61 *result = device->accessBitmap(false); | 61 SkImage* image = device->newImageSnapshot(); |
| 62 if (NULL == image) { |
| 63 return false; |
| 64 } |
| 65 result.reset(image); |
| 66 |
62 offset->fX = bounds.fLeft; | 67 offset->fX = bounds.fLeft; |
63 offset->fY = bounds.fTop; | 68 offset->fY = bounds.fTop; |
64 } | 69 } |
65 return true; | 70 return true; |
66 } | 71 } |
67 | 72 |
68 void SkOffsetImageFilter::computeFastBounds(const SkRect& src, SkRect* dst) cons
t { | 73 void SkOffsetImageFilter::computeFastBounds(const SkRect& src, SkRect* dst) cons
t { |
69 if (getInput(0)) { | 74 if (getInput(0)) { |
70 getInput(0)->computeFastBounds(src, dst); | 75 getInput(0)->computeFastBounds(src, dst); |
71 } else { | 76 } else { |
(...skipping 41 matching lines...) Expand 10 before | Expand all | Expand 10 after Loading... |
113 void SkOffsetImageFilter::toString(SkString* str) const { | 118 void SkOffsetImageFilter::toString(SkString* str) const { |
114 str->appendf("SkOffsetImageFilter: ("); | 119 str->appendf("SkOffsetImageFilter: ("); |
115 str->appendf("offset: (%f, %f) ", fOffset.fX, fOffset.fY); | 120 str->appendf("offset: (%f, %f) ", fOffset.fX, fOffset.fY); |
116 str->append("input: ("); | 121 str->append("input: ("); |
117 if (this->getInput(0)) { | 122 if (this->getInput(0)) { |
118 this->getInput(0)->toString(str); | 123 this->getInput(0)->toString(str); |
119 } | 124 } |
120 str->append("))"); | 125 str->append("))"); |
121 } | 126 } |
122 #endif | 127 #endif |
OLD | NEW |