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1 /*
2  * Copyright 2011 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 "include/core/SkBitmap.h"
9 #include "include/core/SkCanvas.h"
10 #include "include/core/SkColor.h"
11 #include "include/core/SkPaint.h"
12 #include "include/core/SkPath.h"
13 #include "include/core/SkPoint.h"
14 #include "include/core/SkRect.h"
15 #include "include/core/SkRefCnt.h"
16 #include "include/core/SkScalar.h"
17 #include "include/core/SkSurface.h"
18 #include "include/core/SkTypes.h"
19 #include "include/private/SkFloatBits.h"
20 #include "src/core/SkCubicClipper.h"
21 #include "tests/Test.h"
22 
23 // Currently the supersampler blitter uses int16_t for its index into an array
24 // the width of the clip. Test that we don't crash/assert if we try to draw
25 // with a device/clip that is larger.
test_giantClip()26 static void test_giantClip() {
27     SkBitmap bm;
28     bm.allocN32Pixels(64919, 1);
29     SkCanvas canvas(bm);
30     canvas.clear(SK_ColorTRANSPARENT);
31 
32     SkPath path;
33     path.moveTo(0, 0); path.lineTo(1, 0); path.lineTo(33, 1);
34     SkPaint paint;
35     paint.setAntiAlias(true);
36     canvas.drawPath(path, paint);
37 }
38 
PrintCurve(const char * name,const SkPoint crv[4])39 static void PrintCurve(const char *name, const SkPoint crv[4]) {
40     SkDebugf("%s: %.10g, %.10g, %.10g, %.10g, %.10g, %.10g, %.10g, %.10g\n",
41             name,
42             (float)crv[0].fX, (float)crv[0].fY,
43             (float)crv[1].fX, (float)crv[1].fY,
44             (float)crv[2].fX, (float)crv[2].fY,
45             (float)crv[3].fX, (float)crv[3].fY);
46 
47 }
48 
49 
CurvesAreEqual(const SkPoint c0[4],const SkPoint c1[4],float tol)50 static bool CurvesAreEqual(const SkPoint c0[4],
51                            const SkPoint c1[4],
52                            float tol) {
53     for (int i = 0; i < 4; i++) {
54         if (SkScalarAbs(c0[i].fX - c1[i].fX) > tol ||
55             SkScalarAbs(c0[i].fY - c1[i].fY) > tol
56         ) {
57             PrintCurve("c0", c0);
58             PrintCurve("c1", c1);
59             return false;
60         }
61     }
62     return true;
63 }
64 
65 
SetCurve(float x0,float y0,float x1,float y1,float x2,float y2,float x3,float y3,SkPoint crv[4])66 static SkPoint* SetCurve(float x0, float y0,
67                          float x1, float y1,
68                          float x2, float y2,
69                          float x3, float y3,
70                          SkPoint crv[4]) {
71     crv[0].fX = x0;   crv[0].fY = y0;
72     crv[1].fX = x1;   crv[1].fY = y1;
73     crv[2].fX = x2;   crv[2].fY = y2;
74     crv[3].fX = x3;   crv[3].fY = y3;
75     return crv;
76 }
77 
78 
DEF_TEST(ClipCubic,reporter)79 DEF_TEST(ClipCubic, reporter) {
80     static SkPoint crv[4] = {
81         { SkIntToScalar(0), SkIntToScalar(0)  },
82         { SkIntToScalar(2), SkIntToScalar(3)  },
83         { SkIntToScalar(1), SkIntToScalar(10) },
84         { SkIntToScalar(4), SkIntToScalar(12) }
85     };
86 
87     SkCubicClipper clipper;
88     SkPoint clipped[4], shouldbe[4];
89     SkIRect clipRect;
90     bool success;
91     const float tol = 1e-4f;
92 
93     // Test no clip, with plenty of room.
94     clipRect.set(-2, -2, 6, 14);
95     clipper.setClip(clipRect);
96     success = clipper.clipCubic(crv, clipped);
97     REPORTER_ASSERT(reporter, success == true);
98     REPORTER_ASSERT(reporter, CurvesAreEqual(clipped, SetCurve(
99         0, 0, 2, 3, 1, 10, 4, 12, shouldbe), tol));
100 
101     // Test no clip, touching first point.
102     clipRect.set(-2, 0, 6, 14);
103     clipper.setClip(clipRect);
104     success = clipper.clipCubic(crv, clipped);
105     REPORTER_ASSERT(reporter, success == true);
106     REPORTER_ASSERT(reporter, CurvesAreEqual(clipped, SetCurve(
107         0, 0, 2, 3, 1, 10, 4, 12, shouldbe), tol));
108 
109     // Test no clip, touching last point.
110     clipRect.set(-2, -2, 6, 12);
111     clipper.setClip(clipRect);
112     success = clipper.clipCubic(crv, clipped);
113     REPORTER_ASSERT(reporter, success == true);
114     REPORTER_ASSERT(reporter, CurvesAreEqual(clipped, SetCurve(
115         0, 0, 2, 3, 1, 10, 4, 12, shouldbe), tol));
116 
117     // Test all clip.
118     clipRect.set(-2, 14, 6, 20);
119     clipper.setClip(clipRect);
120     success = clipper.clipCubic(crv, clipped);
121     REPORTER_ASSERT(reporter, success == false);
122 
123     // Test clip at 1.
124     clipRect.set(-2, 1, 6, 14);
125     clipper.setClip(clipRect);
126     success = clipper.clipCubic(crv, clipped);
127     REPORTER_ASSERT(reporter, success == true);
128     REPORTER_ASSERT(reporter, CurvesAreEqual(clipped, SetCurve(
129         0.5126125216f, 1,
130         1.841195941f,  4.337081432f,
131         1.297019958f,  10.19801331f,
132         4,            12,
133         shouldbe), tol));
134 
135     // Test clip at 2.
136     clipRect.set(-2, 2, 6, 14);
137     clipper.setClip(clipRect);
138     success = clipper.clipCubic(crv, clipped);
139     REPORTER_ASSERT(reporter, success == true);
140     REPORTER_ASSERT(reporter, CurvesAreEqual(clipped, SetCurve(
141         00.8412352204f, 2,
142         1.767683744f,   5.400758266f,
143         1.55052948f,    10.36701965f,
144         4,             12,
145         shouldbe), tol));
146 
147     // Test clip at 11.
148     clipRect.set(-2, -2, 6, 11);
149     clipper.setClip(clipRect);
150     success = clipper.clipCubic(crv, clipped);
151     REPORTER_ASSERT(reporter, success == true);
152     REPORTER_ASSERT(reporter, CurvesAreEqual(clipped, SetCurve(
153         0,           0,
154         1.742904663f, 2.614356995f,
155         1.207521796f, 8.266430855f,
156         3.026495695f, 11,
157         shouldbe), tol));
158 
159     // Test clip at 10.
160     clipRect.set(-2, -2, 6, 10);
161     clipper.setClip(clipRect);
162     success = clipper.clipCubic(crv, clipped);
163     REPORTER_ASSERT(reporter, success == true);
164     REPORTER_ASSERT(reporter, CurvesAreEqual(clipped, SetCurve(
165         0,           0,
166         1.551193237f, 2.326789856f,
167         1.297736168f, 7.059780121f,
168         2.505550385f, 10,
169         shouldbe), tol));
170 
171     test_giantClip();
172 }
173 
DEF_TEST(test_fuzz_crbug_698714,reporter)174 DEF_TEST(test_fuzz_crbug_698714, reporter) {
175     auto surface(SkSurface::MakeRasterN32Premul(500, 500));
176     SkCanvas* canvas = surface->getCanvas();
177     SkPaint paint;
178     paint.setAntiAlias(true);
179     SkPath path;
180     path.setFillType(SkPath::kWinding_FillType);
181     path.moveTo(SkBits2Float(0x00000000), SkBits2Float(0x00000000));  // 0,0
182     path.lineTo(SkBits2Float(0x43434343), SkBits2Float(0x43430143));  //195.263f, 195.005f
183     path.lineTo(SkBits2Float(0x43434343), SkBits2Float(0x43434343));  //195.263f, 195.263f
184     path.lineTo(SkBits2Float(0xb5434343), SkBits2Float(0x434300be));  //-7.2741e-07f, 195.003f
185     // 195.263f, 195.263f, -1.16387e-05f, 3.58641e-38f, 3.85088e-29f,1.86082e-39f
186     path.cubicTo(SkBits2Float(0x43434343), SkBits2Float(0x43434341),
187             SkBits2Float(0xb74343bd), SkBits2Float(0x01434343),
188             SkBits2Float(0x10434343), SkBits2Float(0x00144332));
189     // 4.11823e-38f, 195.263f, 195.263f, 195.263f, -7.2741e-07f, 195.263f
190     path.cubicTo(SkBits2Float(0x016037c0), SkBits2Float(0x43434343),
191             SkBits2Float(0x43434343), SkBits2Float(0x43434343),
192             SkBits2Float(0xb5434343), SkBits2Float(0x43434343));
193     // 195.263f, 195.263f, -1.16387e-05f, 3.58641e-38f, 195.263f, -2
194     path.cubicTo(SkBits2Float(0x43434344), SkBits2Float(0x43434341),
195             SkBits2Float(0xb74343bd), SkBits2Float(0x01434343),
196             SkBits2Float(0x43434343), SkBits2Float(0xc0000014));
197     // -5.87228e+06f, 3.7773e-07f, 3.60231e-13f, -6.64511e+06f,2.77692e-15f, 2.48803e-15f
198     path.cubicTo(SkBits2Float(0xcab33535), SkBits2Float(0x34cacaca),
199             SkBits2Float(0x2acacaca), SkBits2Float(0xcacacae3),
200             SkBits2Float(0x27481927), SkBits2Float(0x27334805));
201     path.lineTo(SkBits2Float(0xb5434343), SkBits2Float(0x43434343));  //-7.2741e-07f, 195.263f
202     // 195.263f, 195.263f, -1.16387e-05f, 195.212f, 195.263f, -2
203     path.cubicTo(SkBits2Float(0x43434343), SkBits2Float(0x43434341),
204             SkBits2Float(0xb74343b9), SkBits2Float(0x43433643),
205             SkBits2Float(0x43434343), SkBits2Float(0xc0000014));
206     path.lineTo(SkBits2Float(0xc7004343), SkBits2Float(0x27480527));  //-32835.3f, 2.77584e-15f
207     path.lineTo(SkBits2Float(0x00000000), SkBits2Float(0x00000000));  // 0,0
208     path.close();
209     canvas->clipRect({0, 0, 65, 202});
210     canvas->drawPath(path, paint);
211 }
212 
DEF_TEST(cubic_scan_error_crbug_844457_and_845489,reporter)213 DEF_TEST(cubic_scan_error_crbug_844457_and_845489, reporter) {
214     auto surface(SkSurface::MakeRasterN32Premul(100, 100));
215     SkCanvas* canvas = surface->getCanvas();
216     SkPaint p;
217 
218     SkPath path;
219     path.moveTo(-30/64.0, -31/64.0);
220     path.cubicTo(-31/64.0, -31/64,-31/64.0, -31/64,-31/64.0, 100);
221     path.lineTo(100, 100);
222     canvas->drawPath(path, p);
223 
224     // May need to define SK_RASTERIZE_EVEN_ROUNDING to trigger the need for this test
225     path.reset();
226     path.moveTo(-30/64.0f,             -31/64.0f + 1/256.0f);
227     path.cubicTo(-31/64.0f + 1/256.0f, -31/64.0f + 1/256.0f,
228                  -31/64.0f + 1/256.0f, -31/64.0f + 1/256.0f,
229                  -31/64.0f + 1/256.0f, 100);
230     path.lineTo(100, 100);
231     canvas->drawPath(path, p);
232 }
233