/external/skia/src/pathops/ |
D | SkPathOpsRect.cpp | 13 void SkDRect::setBounds(const SkDQuad& curve, const SkDQuad& sub, double startT, double endT) { in setBounds() argument 25 double t = startT + (endT - startT) * tValues[index]; in setBounds() 30 void SkDRect::setBounds(const SkDConic& curve, const SkDConic& sub, double startT, double endT) { in setBounds() argument 42 double t = startT + (endT - startT) * tValues[index]; in setBounds() 47 void SkDRect::setBounds(const SkDCubic& curve, const SkDCubic& sub, double startT, double endT) { in setBounds() argument 59 double t = startT + (endT - startT) * tValues[index]; in setBounds()
|
D | SkPathOpsCurve.h | 198 static bool line_is_vertical(const SkPoint a[2], SkScalar , double startT, double endT) { in line_is_vertical() argument 201 SkDPoint dst[2] = { line.ptAtT(startT), line.ptAtT(endT) }; in line_is_vertical() 205 static bool quad_is_vertical(const SkPoint a[3], SkScalar , double startT, double endT) { in quad_is_vertical() argument 208 SkDQuad dst = quad.subDivide(startT, endT); in quad_is_vertical() 212 static bool conic_is_vertical(const SkPoint a[3], SkScalar weight, double startT, double endT) { in conic_is_vertical() argument 215 SkDConic dst = conic.subDivide(startT, endT); in conic_is_vertical() 219 static bool cubic_is_vertical(const SkPoint a[4], SkScalar , double startT, double endT) { in cubic_is_vertical() argument 222 SkDCubic dst = cubic.subDivide(startT, endT); in cubic_is_vertical()
|
D | SkOpSegment.cpp | 1517 double endT = endPtT.fT; in subDivide() local 1518 if ((startT == 0 || endT == 0) && (startT == 1 || endT == 1)) { in subDivide() 1542 edge->fPts[1] = SkDQuad::SubDivide(fPts, sub[0], sub[1], startT, endT).asSkPoint(); in subDivide() 1545 startT, endT, &edge->fWeight).asSkPoint(); in subDivide() 1549 SkDCubic::SubDivide(fPts, sub[0], sub[1], startT, endT, ctrl); in subDivide() 1569 double endT = endPtT.fT; in subDivide() local 1570 if ((startT == 0 || endT == 0) && (startT == 1 || endT == 1)) { in subDivide() 1592 edge->fQuad[1] = SkDQuad::SubDivide(fPts, edge->fQuad[0], edge->fQuad[2], startT, endT); in subDivide() 1595 startT, endT, &edge->fConic.fWeight); in subDivide() 1598 SkDCubic::SubDivide(fPts, edge->fCubic[0], edge->fCubic[3], startT, endT, &edge->fCubic[1]); in subDivide()
|
D | SkPathOpsTSect.h | 94 double endT() const { in endT() function 1777 double r1t = fC1Index ? fC1Span->endT() : fC1Span->startT(); in addIntersection() 1778 double r2t = fC2Index ? fC2Span->endT() : fC2Span->startT(); in addIntersection() 1796 fC1EndT = span1->endT(); in findEnd() 1798 fC2EndT = span2->endT(); in findEnd() 1805 SkASSERT(fC1Span == mate.fC1Span || fC1Span->endT() <= mate.fC1Span->startT() in matesWith() 1806 || mate.fC1Span->endT() <= fC1Span->startT()); in matesWith() 1807 SkASSERT(fC2Span == mate.fC2Span || fC2Span->endT() <= mate.fC2Span->startT() in matesWith() 1808 || mate.fC2Span->endT() <= fC2Span->startT()); in matesWith() 1809 return fC1Span == mate.fC1Span || fC1Span->endT() == mate.fC1Span->startT() in matesWith() [all …]
|
D | SkPathOpsCubic.h | 131 double top(const SkDCubic& dCurve, double startT, double endT, SkDPoint*topPt) const;
|
D | SkOpAngle.cpp | 980 double endT = fEnd->t(); in setSpans() local 981 double limitT = endT; in setSpans() 989 testTs[testCount++] = endT; in setSpans()
|
D | SkPathOpsCubic.cpp | 675 double SkDCubic::top(const SkDCubic& dCurve, double startT, double endT, SkDPoint*topPt) const { in top() argument 680 double t = startT + (endT - startT) * extremeTs[index]; in top()
|
D | SkOpSegment.h | 128 void debugAddAngle(double startT, double endT, SkChunkAlloc*);
|
/external/skia/tests/ |
D | PathOpsAngleTest.cpp | 475 void SkOpSegment::debugAddAngle(double startT, double endT, SkChunkAlloc* allocator) { in debugAddAngle() argument 478 SkOpPtT* endPtT = endT == 0 ? fHead.ptT() : endT == 1 ? fTail.ptT() in debugAddAngle() 479 : this->addT(endT, kNoAlias, allocator); in debugAddAngle() 490 if (startT < endT) { in debugAddAngle()
|