OLD | NEW |
1 | 1 |
2 /* | 2 /* |
3 * Copyright 2006 The Android Open Source Project | 3 * Copyright 2006 The Android Open Source Project |
4 * | 4 * |
5 * Use of this source code is governed by a BSD-style license that can be | 5 * Use of this source code is governed by a BSD-style license that can be |
6 * found in the LICENSE file. | 6 * found in the LICENSE file. |
7 */ | 7 */ |
8 | 8 |
9 | 9 |
10 #include "SkDiscretePathEffect.h" | 10 #include "SkDiscretePathEffect.h" |
11 #include "SkReadBuffer.h" | 11 #include "SkReadBuffer.h" |
12 #include "SkWriteBuffer.h" | 12 #include "SkWriteBuffer.h" |
13 #include "SkPathMeasure.h" | 13 #include "SkPathMeasure.h" |
14 #include "SkRandom.h" | |
15 | 14 |
16 static void Perterb(SkPoint* p, const SkVector& tangent, SkScalar scale) { | 15 static void Perterb(SkPoint* p, const SkVector& tangent, SkScalar scale) { |
17 SkVector normal = tangent; | 16 SkVector normal = tangent; |
18 normal.rotateCCW(); | 17 normal.rotateCCW(); |
19 normal.setLength(scale); | 18 normal.setLength(scale); |
20 *p += normal; | 19 *p += normal; |
21 } | 20 } |
22 | 21 |
23 SkDiscretePathEffect::SkDiscretePathEffect(SkScalar segLength, | 22 SkDiscretePathEffect::SkDiscretePathEffect(SkScalar segLength, |
24 SkScalar deviation, | 23 SkScalar deviation, |
25 uint32_t seedAssist) | 24 uint32_t seedAssist) |
26 : fSegLength(segLength), fPerterb(deviation), fSeedAssist(seedAssist) | 25 : fSegLength(segLength), fPerterb(deviation), fSeedAssist(seedAssist) |
27 { | 26 { |
28 } | 27 } |
29 | 28 |
| 29 /** \class LCGRandom |
| 30 |
| 31 Utility class that implements pseudo random 32bit numbers using a fast |
| 32 linear equation. Unlike rand(), this class holds its own seed (initially |
| 33 set to 0), so that multiple instances can be used with no side-effects. |
| 34 |
| 35 Copied from the original implementation of SkRandom. Only contains the |
| 36 methods used by SkDiscretePathEffect::filterPath, with methods that were |
| 37 not called directly moved to private. |
| 38 */ |
| 39 |
| 40 class LCGRandom { |
| 41 public: |
| 42 LCGRandom(uint32_t seed) : fSeed(seed) {} |
| 43 |
| 44 /** Return the next pseudo random number expressed as a SkScalar |
| 45 in the range (-SK_Scalar1..SK_Scalar1). |
| 46 */ |
| 47 SkScalar nextSScalar1() { return SkFixedToScalar(this->nextSFixed1()); } |
| 48 |
| 49 private: |
| 50 /** Return the next pseudo random number as an unsigned 32bit value. |
| 51 */ |
| 52 uint32_t nextU() { uint32_t r = fSeed * kMul + kAdd; fSeed = r; return r; } |
| 53 |
| 54 /** Return the next pseudo random number as a signed 32bit value. |
| 55 */ |
| 56 int32_t nextS() { return (int32_t)this->nextU(); } |
| 57 |
| 58 /** Return the next pseudo random number expressed as a signed SkFixed |
| 59 in the range (-SK_Fixed1..SK_Fixed1). |
| 60 */ |
| 61 SkFixed nextSFixed1() { return this->nextS() >> 15; } |
| 62 |
| 63 // See "Numerical Recipes in C", 1992 page 284 for these constants |
| 64 enum { |
| 65 kMul = 1664525, |
| 66 kAdd = 1013904223 |
| 67 }; |
| 68 uint32_t fSeed; |
| 69 }; |
| 70 |
30 bool SkDiscretePathEffect::filterPath(SkPath* dst, const SkPath& src, | 71 bool SkDiscretePathEffect::filterPath(SkPath* dst, const SkPath& src, |
31 SkStrokeRec* rec, const SkRect*) const { | 72 SkStrokeRec* rec, const SkRect*) const { |
32 bool doFill = rec->isFillStyle(); | 73 bool doFill = rec->isFillStyle(); |
33 | 74 |
34 SkPathMeasure meas(src, doFill); | 75 SkPathMeasure meas(src, doFill); |
35 | 76 |
36 /* Caller may supply their own seed assist, which by default is 0 */ | 77 /* Caller may supply their own seed assist, which by default is 0 */ |
37 uint32_t seed = fSeedAssist ^ SkScalarRoundToInt(meas.getLength()); | 78 uint32_t seed = fSeedAssist ^ SkScalarRoundToInt(meas.getLength()); |
38 | 79 |
39 SkLCGRandom rand(seed ^ ((seed << 16) | (seed >> 16))); | 80 LCGRandom rand(seed ^ ((seed << 16) | (seed >> 16))); |
40 SkScalar scale = fPerterb; | 81 SkScalar scale = fPerterb; |
41 SkPoint p; | 82 SkPoint p; |
42 SkVector v; | 83 SkVector v; |
43 | 84 |
44 do { | 85 do { |
45 SkScalar length = meas.getLength(); | 86 SkScalar length = meas.getLength(); |
46 | 87 |
47 if (fSegLength * (2 + doFill) > length) { | 88 if (fSegLength * (2 + doFill) > length) { |
48 meas.getSegment(0, length, dst, true); // to short for us to mangle | 89 meas.getSegment(0, length, dst, true); // to short for us to mangle |
49 } else { | 90 } else { |
50 int n = SkScalarRoundToInt(length / fSegLength); | 91 int n = SkScalarRoundToInt(length / fSegLength); |
51 SkScalar delta = length / n; | 92 SkScalar delta = length / n; |
52 SkScalar distance = 0; | 93 SkScalar distance = 0; |
(...skipping 27 matching lines...) Expand all Loading... |
80 SkScalar perterb = buffer.readScalar(); | 121 SkScalar perterb = buffer.readScalar(); |
81 uint32_t seed = buffer.readUInt(); | 122 uint32_t seed = buffer.readUInt(); |
82 return Create(segLength, perterb, seed); | 123 return Create(segLength, perterb, seed); |
83 } | 124 } |
84 | 125 |
85 void SkDiscretePathEffect::flatten(SkWriteBuffer& buffer) const { | 126 void SkDiscretePathEffect::flatten(SkWriteBuffer& buffer) const { |
86 buffer.writeScalar(fSegLength); | 127 buffer.writeScalar(fSegLength); |
87 buffer.writeScalar(fPerterb); | 128 buffer.writeScalar(fPerterb); |
88 buffer.writeUInt(fSeedAssist); | 129 buffer.writeUInt(fSeedAssist); |
89 } | 130 } |
OLD | NEW |