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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 "gm.h" | |
9 #include "SkCanvas.h" | |
10 #include "SkTArray.h" | |
11 | |
12 namespace skiagm { | |
13 | |
14 class ConicPathsGM : public GM { | |
15 protected: | |
16 | |
17 virtual SkString onShortName() SK_OVERRIDE { | |
18 return SkString("conicpaths"); | |
19 } | |
20 | |
21 virtual SkISize onISize() { return make_isize(800, 600); } | |
reed1
2013/06/20 15:22:32
SkISize::Make()
reed1
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SK_OVERRIDE
| |
22 | |
23 virtual void onOnceBeforeDraw() SK_OVERRIDE { | |
24 { | |
25 SkPath* conicCirlce = &fPaths.push_back(); | |
26 conicCirlce->moveTo(0, -0); | |
27 conicCirlce->conicTo(SkIntToScalar(0), SkIntToScalar(50), | |
28 SkIntToScalar(50), SkIntToScalar(50), | |
29 SkScalarHalf(SkScalarSqrt(2))); | |
30 conicCirlce->rConicTo(SkIntToScalar(50), SkIntToScalar(0), | |
31 SkIntToScalar(50), SkIntToScalar(-50), | |
32 SkScalarHalf(SkScalarSqrt(2))); | |
33 conicCirlce->rConicTo(SkIntToScalar(0), SkIntToScalar(-50), | |
34 SkIntToScalar(-50), SkIntToScalar(-50), | |
35 SkScalarHalf(SkScalarSqrt(2))); | |
36 conicCirlce->rConicTo(SkIntToScalar(-50), SkIntToScalar(0), | |
37 SkIntToScalar(-50), SkIntToScalar(50), | |
38 SkScalarHalf(SkScalarSqrt(2))); | |
39 | |
40 } | |
41 { | |
42 SkPath* hyperbola = &fPaths.push_back(); | |
43 hyperbola->moveTo(0, -0); | |
44 hyperbola->conicTo(SkIntToScalar(0), SkIntToScalar(100), | |
45 SkIntToScalar(100), SkIntToScalar(100), | |
46 SkIntToScalar(2)); | |
47 } | |
48 { | |
49 SkPath* thinHyperbola = &fPaths.push_back(); | |
50 thinHyperbola->moveTo(0, -0); | |
51 thinHyperbola->conicTo(SkIntToScalar(100), SkIntToScalar(100), | |
52 SkIntToScalar(5), SkIntToScalar(0), | |
53 SkIntToScalar(2)); | |
54 } | |
55 { | |
56 SkPath* veryThinHyperbola = &fPaths.push_back(); | |
57 veryThinHyperbola->moveTo(0, -0); | |
58 veryThinHyperbola->conicTo(SkIntToScalar(100), SkIntToScalar(100), | |
59 SkIntToScalar(1), SkIntToScalar(0), | |
60 SkIntToScalar(2)); | |
61 } | |
62 { | |
63 SkPath* closedHyperbola = &fPaths.push_back(); | |
64 closedHyperbola->moveTo(0, -0); | |
65 closedHyperbola->conicTo(SkIntToScalar(100), SkIntToScalar(100), | |
66 SkIntToScalar(0), SkIntToScalar(0), | |
67 SkIntToScalar(2)); | |
68 } | |
69 { | |
70 // using 1 as weight defaults to using quadTo | |
71 SkPath* nearParabola = &fPaths.push_back(); | |
72 nearParabola->moveTo(0, -0); | |
73 nearParabola->conicTo(SkIntToScalar(0), SkIntToScalar(100), | |
74 SkIntToScalar(100), SkIntToScalar(100), | |
75 0.999); | |
76 } | |
77 { | |
78 SkPath* thinEllipse = &fPaths.push_back(); | |
79 thinEllipse->moveTo(0, -0); | |
80 thinEllipse->conicTo(SkIntToScalar(100), SkIntToScalar(100), | |
81 SkIntToScalar(5), SkIntToScalar(0), | |
82 SK_ScalarHalf); | |
83 } | |
84 { | |
85 SkPath* veryThinEllipse = &fPaths.push_back(); | |
86 veryThinEllipse->moveTo(0, -0); | |
87 veryThinEllipse->conicTo(SkIntToScalar(100), SkIntToScalar(100), | |
88 SkIntToScalar(1), SkIntToScalar(0), | |
89 SK_ScalarHalf); | |
90 } | |
91 { | |
92 SkPath* closedEllipse = &fPaths.push_back(); | |
93 closedEllipse->moveTo(0, -0); | |
94 closedEllipse->conicTo(SkIntToScalar(100), SkIntToScalar(100), | |
95 SkIntToScalar(0), SkIntToScalar(0), | |
96 SK_ScalarHalf); | |
97 } | |
98 } | |
99 | |
100 virtual void onDraw(SkCanvas* canvas) SK_OVERRIDE { | |
101 static const SkAlpha kAlphaValue[] = { 0xFF, 0x40 }; | |
102 | |
103 enum { | |
104 kMargin = 15, | |
105 }; | |
106 int wrapX = canvas->getDeviceSize().fWidth - kMargin; | |
107 | |
108 SkScalar maxH = 0; | |
109 canvas->translate(SkIntToScalar(kMargin), SkIntToScalar(kMargin)); | |
110 canvas->save(); | |
111 | |
112 SkScalar x = SkIntToScalar(kMargin); | |
113 for (int p = 0; p < fPaths.count(); ++p) { | |
114 for (size_t a = 0; a < SK_ARRAY_COUNT(kAlphaValue); ++a) { | |
115 for (int aa = 0; aa < 2; ++aa) { | |
116 for (int fh = 0; fh < 2; ++fh) { | |
117 | |
118 const SkRect& bounds = fPaths[p].getBounds(); | |
119 | |
120 if (x + bounds.width() > wrapX) { | |
121 canvas->restore(); | |
122 canvas->translate(0, maxH + SkIntToScalar(kMargin)); | |
123 canvas->save(); | |
124 maxH = 0; | |
125 x = SkIntToScalar(kMargin); | |
126 } | |
127 | |
128 SkPaint paint; | |
129 paint.setARGB(kAlphaValue[a], 0, 0, 0); | |
130 paint.setAntiAlias(SkToBool(aa)); | |
131 if (fh == 1) { | |
132 paint.setStyle(SkPaint::kStroke_Style); | |
133 paint.setStrokeWidth(0); | |
134 } else if (fh == 0) { | |
135 paint.setStyle(SkPaint::kFill_Style); | |
136 } | |
137 canvas->save(); | |
138 canvas->translate(-bounds.fLeft, -bounds.fTop); | |
139 canvas->drawPath(fPaths[p], paint); | |
140 canvas->restore(); | |
141 | |
142 maxH = SkMaxScalar(maxH, bounds.height()); | |
143 | |
144 SkScalar dx = bounds.width() + SkIntToScalar(kMargin); | |
145 x += dx; | |
146 canvas->translate(dx, 0); | |
147 } | |
148 } | |
149 } | |
150 } | |
151 canvas->restore(); | |
152 } | |
153 | |
154 private: | |
155 SkTArray<SkPath> fPaths; | |
156 typedef GM INHERITED; | |
157 }; | |
158 | |
159 ////////////////////////////////////////////////////////////////////////////// | |
160 | |
161 static GM* MyFactory(void*) { return new ConicPathsGM; } | |
reed1
2013/06/20 15:22:32
DEF_GM( return new ConicPathsGM; )
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162 static GMRegistry reg(MyFactory); | |
163 | |
164 } | |
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