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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 "GrConvexPolyEffect.h" | 8 #include "GrConvexPolyEffect.h" |
9 #include "GrInvariantOutput.h" | 9 #include "GrInvariantOutput.h" |
10 #include "SkPathPriv.h" | 10 #include "SkPathPriv.h" |
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53 GrPrimitiveEdgeType fEdgeType; | 53 GrPrimitiveEdgeType fEdgeType; |
54 | 54 |
55 typedef GrFragmentProcessor INHERITED; | 55 typedef GrFragmentProcessor INHERITED; |
56 | 56 |
57 GR_DECLARE_FRAGMENT_PROCESSOR_TEST; | 57 GR_DECLARE_FRAGMENT_PROCESSOR_TEST; |
58 | 58 |
59 }; | 59 }; |
60 | 60 |
61 GR_DEFINE_FRAGMENT_PROCESSOR_TEST(AARectEffect); | 61 GR_DEFINE_FRAGMENT_PROCESSOR_TEST(AARectEffect); |
62 | 62 |
63 GrFragmentProcessor* AARectEffect::TestCreate(GrProcessorTestData* d) { | 63 const GrFragmentProcessor* AARectEffect::TestCreate(GrProcessorTestData* d) { |
64 SkRect rect = SkRect::MakeLTRB(d->fRandom->nextSScalar1(), | 64 SkRect rect = SkRect::MakeLTRB(d->fRandom->nextSScalar1(), |
65 d->fRandom->nextSScalar1(), | 65 d->fRandom->nextSScalar1(), |
66 d->fRandom->nextSScalar1(), | 66 d->fRandom->nextSScalar1(), |
67 d->fRandom->nextSScalar1()); | 67 d->fRandom->nextSScalar1()); |
68 GrFragmentProcessor* fp; | 68 GrFragmentProcessor* fp; |
69 do { | 69 do { |
70 GrPrimitiveEdgeType edgeType = static_cast<GrPrimitiveEdgeType>( | 70 GrPrimitiveEdgeType edgeType = static_cast<GrPrimitiveEdgeType>( |
71 d->fRandom->nextULessThan(kGrProcessorEdgeTypeCnt)); | 71 d->fRandom->nextULessThan(kGrProcessorEdgeTypeCnt)); |
72 | 72 |
73 fp = AARectEffect::Create(edgeType, rect); | 73 fp = AARectEffect::Create(edgeType, rect); |
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332 const GrConvexPolyEffect& cpe = other.cast<GrConvexPolyEffect>(); | 332 const GrConvexPolyEffect& cpe = other.cast<GrConvexPolyEffect>(); |
333 // ignore the fact that 0 == -0 and just use memcmp. | 333 // ignore the fact that 0 == -0 and just use memcmp. |
334 return (cpe.fEdgeType == fEdgeType && cpe.fEdgeCount == fEdgeCount && | 334 return (cpe.fEdgeType == fEdgeType && cpe.fEdgeCount == fEdgeCount && |
335 0 == memcmp(cpe.fEdges, fEdges, 3 * fEdgeCount * sizeof(SkScalar))); | 335 0 == memcmp(cpe.fEdges, fEdges, 3 * fEdgeCount * sizeof(SkScalar))); |
336 } | 336 } |
337 | 337 |
338 ////////////////////////////////////////////////////////////////////////////// | 338 ////////////////////////////////////////////////////////////////////////////// |
339 | 339 |
340 GR_DEFINE_FRAGMENT_PROCESSOR_TEST(GrConvexPolyEffect); | 340 GR_DEFINE_FRAGMENT_PROCESSOR_TEST(GrConvexPolyEffect); |
341 | 341 |
342 GrFragmentProcessor* GrConvexPolyEffect::TestCreate(GrProcessorTestData* d) { | 342 const GrFragmentProcessor* GrConvexPolyEffect::TestCreate(GrProcessorTestData* d
) { |
343 int count = d->fRandom->nextULessThan(kMaxEdges) + 1; | 343 int count = d->fRandom->nextULessThan(kMaxEdges) + 1; |
344 SkScalar edges[kMaxEdges * 3]; | 344 SkScalar edges[kMaxEdges * 3]; |
345 for (int i = 0; i < 3 * count; ++i) { | 345 for (int i = 0; i < 3 * count; ++i) { |
346 edges[i] = d->fRandom->nextSScalar1(); | 346 edges[i] = d->fRandom->nextSScalar1(); |
347 } | 347 } |
348 | 348 |
349 GrFragmentProcessor* fp; | 349 GrFragmentProcessor* fp; |
350 do { | 350 do { |
351 GrPrimitiveEdgeType edgeType = static_cast<GrPrimitiveEdgeType>( | 351 GrPrimitiveEdgeType edgeType = static_cast<GrPrimitiveEdgeType>( |
352 d->fRandom->nextULessThan(kGrProcessorEdgeTypeCnt)); | 352 d->fRandom->nextULessThan(kGrProcessorEdgeTypeCnt)); |
353 fp = GrConvexPolyEffect::Create(edgeType, count, edges); | 353 fp = GrConvexPolyEffect::Create(edgeType, count, edges); |
354 } while (nullptr == fp); | 354 } while (nullptr == fp); |
355 return fp; | 355 return fp; |
356 } | 356 } |
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