double GeomAlgoAPI_ShapeTools::length(const std::shared_ptr<GeomAPI_Shape> theShape)
{
GProp_GProps aGProps;
- if(!theShape.get()) {
+ if (!theShape.get()) {
return 0.0;
}
const TopoDS_Shape& aShape = theShape->impl<TopoDS_Shape>();
- if(aShape.IsNull()) {
+ if (aShape.IsNull()) {
return 0.0;
}
//==================================================================================================
double GeomAlgoAPI_ShapeTools::volume(const std::shared_ptr<GeomAPI_Shape> theShape)
{
- if(!theShape.get()) {
+ if (!theShape.get()) {
return 0.0;
}
const TopoDS_Shape& aShape = theShape->impl<TopoDS_Shape>();
- if(aShape.IsNull()) {
+ if (aShape.IsNull()) {
return 0.0;
}
const Standard_Real anEps = 1.e-6;
double GeomAlgoAPI_ShapeTools::area (const std::shared_ptr<GeomAPI_Shape> theShape)
{
GProp_GProps aGProps;
- if(!theShape.get()) {
+ if (!theShape.get()) {
return 0.0;
}
const TopoDS_Shape& aShape = theShape->impl<TopoDS_Shape>();
- if(aShape.IsNull()) {
+ if (aShape.IsNull()) {
return 0.0;
}
const Standard_Real anEps = 1.e-6;
GeomAlgoAPI_ShapeTools::centreOfMass(const std::shared_ptr<GeomAPI_Shape> theShape)
{
GProp_GProps aGProps;
- if(!theShape) {
+ if (!theShape) {
return std::shared_ptr<GeomAPI_Pnt>();
}
const TopoDS_Shape& aShape = theShape->impl<TopoDS_Shape>();
- if(aShape.IsNull()) {
+ if (aShape.IsNull()) {
return std::shared_ptr<GeomAPI_Pnt>();
}
gp_Pnt aCentre;
- if(aShape.ShapeType() == TopAbs_VERTEX) {
+ if (aShape.ShapeType() == TopAbs_VERTEX) {
aCentre = BRep_Tool::Pnt(TopoDS::Vertex(aShape));
} else {
aGProps = props(aShape);
GeomShapePtr aResult = theCompound;
- if(!theCompound.get()) {
+ if (!theCompound.get()) {
return aResult;
}
- if(theType != GeomAPI_Shape::SHELL && theType != GeomAPI_Shape::COMPSOLID) {
+ if (theType != GeomAPI_Shape::SHELL && theType != GeomAPI_Shape::COMPSOLID) {
return aResult;
}
TopAbs_ShapeEnum aTS = TopAbs_EDGE;
TopAbs_ShapeEnum aTA = TopAbs_FACE;
- if(theType == GeomAPI_Shape::COMPSOLID) {
+ if (theType == GeomAPI_Shape::COMPSOLID) {
aTS = TopAbs_FACE;
aTA = TopAbs_SOLID;
}
// Get free shapes.
int anOrder = 0;
const TopoDS_Shape& aShapesComp = theCompound->impl<TopoDS_Shape>();
- for(TopoDS_Iterator anIter(aShapesComp); anIter.More(); anIter.Next(), anOrder++) {
+ for (TopoDS_Iterator anIter(aShapesComp); anIter.More(); anIter.Next(), anOrder++) {
const TopoDS_Shape& aShape = anIter.Value();
- if(aShape.ShapeType() > aTA) {
+ if (aShape.ShapeType() > aTA) {
std::shared_ptr<GeomAPI_Shape> aGeomShape(new GeomAPI_Shape);
aGeomShape->setImpl<TopoDS_Shape>(new TopoDS_Shape(aShape));
aResFreeShapes.push_back(aGeomShape);
anInputOrder[aGeomShape] = anOrder;
} else {
- for(TopExp_Explorer anExp(aShape, aTA); anExp.More(); anExp.Next()) {
+ for (TopExp_Explorer anExp(aShape, aTA); anExp.More(); anExp.Next()) {
anAncestorsOrder.Bind(anExp.Current(), anOrder);
}
}
// Map sub-shapes and shapes.
TopTools_IndexedDataMapOfShapeListOfShape aMapSA;
TopExp::MapShapesAndAncestors(aShapesComp, aTS, aTA, aMapSA);
- if(aMapSA.IsEmpty()) {
+ if (aMapSA.IsEmpty()) {
return aResult;
}
theResuts.clear();
// Get all shapes with common sub-shapes and free shapes.
NCollection_Map<TopoDS_Shape> aFreeShapes;
NCollection_Vector<NCollection_Map<TopoDS_Shape>> aShapesWithCommonSubshapes;
- for(TopTools_IndexedDataMapOfShapeListOfShape::Iterator
+ for (TopTools_IndexedDataMapOfShapeListOfShape::Iterator
anIter(aMapSA); anIter.More(); anIter.Next()) {
TopTools_ListOfShape& aListOfShape = anIter.ChangeValue();
- if(aListOfShape.IsEmpty()) {
+ if (aListOfShape.IsEmpty()) {
continue;
}
- else if(aListOfShape.Size() == 1) {
+ else if (aListOfShape.Size() == 1) {
const TopoDS_Shape& aF = aListOfShape.First();
aFreeShapes.Add(aF);
aListOfShape.Clear();
aFreeShapes.Remove(aListIt.Value());
}
aListOfShape.Clear();
- for(NCollection_List<TopoDS_Shape>::Iterator
+ for (NCollection_List<TopoDS_Shape>::Iterator
aTempIter(aTempList); aTempIter.More(); aTempIter.Next()) {
const TopoDS_Shape& aTempShape = aTempIter.Value();
- for(TopTools_IndexedDataMapOfShapeListOfShape::Iterator
+ for (TopTools_IndexedDataMapOfShapeListOfShape::Iterator
anIter2(aMapSA); anIter2.More(); anIter2.Next()) {
TopTools_ListOfShape& aTempListOfShape = anIter2.ChangeValue();
- if(aTempListOfShape.IsEmpty()) {
+ if (aTempListOfShape.IsEmpty()) {
continue;
- } else if(aTempListOfShape.Size() == 1 && aTempListOfShape.First() == aTempShape) {
+ } else if (aTempListOfShape.Size() == 1 && aTempListOfShape.First() == aTempShape) {
aTempListOfShape.Clear();
- } else if(aTempListOfShape.Size() > 1) {
+ } else if (aTempListOfShape.Size() > 1) {
TopTools_ListOfShape::Iterator anIt1(aTempListOfShape);
for (; anIt1.More(); anIt1.Next()) {
if (anIt1.Value() == aTempShape) {
}
// Combine shapes with common sub-shapes.
- for(NCollection_Vector<NCollection_Map<TopoDS_Shape>>::Iterator
+ for (NCollection_Vector<NCollection_Map<TopoDS_Shape>>::Iterator
anIter(aShapesWithCommonSubshapes); anIter.More(); anIter.Next()) {
TopoDS_Shell aShell;
TopoDS_CompSolid aCSolid;
theType ==
GeomAPI_Shape::COMPSOLID ? aBuilder.MakeCompSolid(aCSolid) : aBuilder.MakeShell(aShell);
NCollection_Map<TopoDS_Shape>& aShapesMap = anIter.ChangeValue();
- for(TopExp_Explorer anExp(aShapesComp, aTA); anExp.More(); anExp.Next()) {
+ for (TopExp_Explorer anExp(aShapesComp, aTA); anExp.More(); anExp.Next()) {
const TopoDS_Shape& aShape = anExp.Current();
- if(aShapesMap.Contains(aShape)) {
+ if (aShapesMap.Contains(aShape)) {
theType ==
GeomAPI_Shape::COMPSOLID ? aBuilder.Add(aCSolid, aShape) : aBuilder.Add(aShell, aShape);
aShapesMap.Remove(aShape);
}
// Adding free shapes.
- for(TopExp_Explorer anExp(aShapesComp, aTA); anExp.More(); anExp.Next()) {
+ for (TopExp_Explorer anExp(aShapesComp, aTA); anExp.More(); anExp.Next()) {
const TopoDS_Shape& aShape = anExp.Current();
- if(aFreeShapes.Contains(aShape)) {
+ if (aFreeShapes.Contains(aShape)) {
std::shared_ptr<GeomAPI_Shape> aGeomShape(new GeomAPI_Shape);
aGeomShape->setImpl<TopoDS_Shape>(new TopoDS_Shape(aShape));
aResFreeShapes.push_back(aGeomShape);
}
}
- if(aResCombinedShapes.size() == 1 && aResFreeShapes.size() == 0) {
+ if (aResCombinedShapes.size() == 1 && aResFreeShapes.size() == 0) {
aResult = aResCombinedShapes.front();
theResuts.push_back(aResult);
- } else if(aResCombinedShapes.size() == 0 && aResFreeShapes.size() == 1) {
+ } else if (aResCombinedShapes.size() == 0 && aResFreeShapes.size() == 1) {
aResult = aResFreeShapes.front();
theResuts.push_back(aResult);
} else {
// put to result compound and result list in accordance to the order numbers
std::map<GeomShapePtr, int>::iterator anInputIter = anInputOrder.begin();
std::map<int, GeomShapePtr> aNums;
- for(; anInputIter != anInputOrder.end(); anInputIter++)
+ for (; anInputIter != anInputOrder.end(); anInputIter++)
aNums[anInputIter->second] = anInputIter->first;
std::map<int, GeomShapePtr>::iterator aNumsIter = aNums.begin();
- for(; aNumsIter != aNums.end(); aNumsIter++) {
+ for (; aNumsIter != aNums.end(); aNumsIter++) {
aBuilder.Add(aResultComp, (aNumsIter->second)->impl<TopoDS_Shape>());
theResuts.push_back(aNumsIter->second);
}
static void addSimpleShapeToList(const TopoDS_Shape& theShape,
NCollection_List<TopoDS_Shape>& theList)
{
- if(theShape.IsNull()) {
+ if (theShape.IsNull()) {
return;
}
- if(theShape.ShapeType() == TopAbs_COMPOUND) {
- for(TopoDS_Iterator anIt(theShape); anIt.More(); anIt.Next()) {
+ if (theShape.ShapeType() == TopAbs_COMPOUND) {
+ for (TopoDS_Iterator anIt(theShape); anIt.More(); anIt.Next()) {
addSimpleShapeToList(anIt.Value(), theList);
}
} else {
BRep_Builder aBuilder;
aBuilder.MakeCompound(aCompound);
- for(NCollection_List<TopoDS_Shape>::Iterator anIt(theShapes); anIt.More(); anIt.Next()) {
+ for (NCollection_List<TopoDS_Shape>::Iterator anIt(theShapes); anIt.More(); anIt.Next()) {
aBuilder.Add(aCompound, anIt.Value());
}
for (NCollection_Vector<TopTools_MapOfShape>::Iterator anIt(aGroups); anIt.More(); anIt.Next()) {
const TopTools_MapOfShape& aGroup = anIt.ChangeValue();
GeomShapePtr aGeomShape(new GeomAPI_Shape());
- if(aGroup.Size() == 1) {
+ if (aGroup.Size() == 1) {
TopTools_MapOfShape::Iterator aOneShapeIter(aGroup);
aGeomShape->setImpl(new TopoDS_Shape(aOneShapeIter.Value()));
} else {
aBuilder.Add(aCompound, aGeomShape->impl<TopoDS_Shape>());
}
- if(!aCompound.IsNull()) {
+ if (!aCompound.IsNull()) {
aResult->setImpl(new TopoDS_Shape(aCompound));
}
BRepBndLib::Add(aShape, aBndBox);
}
- if(theEnlarge != 0.0) {
+ if (theEnlarge != 0.0) {
// We enlarge bounding box just to be sure that plane will be large enough to cut all objects.
aBndBox.Enlarge(theEnlarge);
}
Standard_Real aYArr[2] = {aBndBox.CornerMin().Y(), aBndBox.CornerMax().Y()};
Standard_Real aZArr[2] = {aBndBox.CornerMin().Z(), aBndBox.CornerMax().Z()};
std::list<std::shared_ptr<GeomAPI_Pnt> > aResultPoints;
- for(int i = 0; i < 2; i++) {
- for(int j = 0; j < 2; j++) {
- for(int k = 0; k < 2; k++) {
+ for (int i = 0; i < 2; i++) {
+ for (int j = 0; j < 2; j++) {
+ for (int k = 0; k < 2; k++) {
std::shared_ptr<GeomAPI_Pnt> aPnt(new GeomAPI_Pnt(aXArr[i], aYArr[j], aZArr[k]));
aResultPoints.push_back(aPnt);
}
{
std::shared_ptr<GeomAPI_Face> aResultFace;
- if(!thePlane.get()) {
+ if (!thePlane.get()) {
return aResultFace;
}
const TopoDS_Shape& aShape = thePlane->impl<TopoDS_Shape>();
- if(aShape.ShapeType() != TopAbs_FACE) {
+ if (aShape.ShapeType() != TopAbs_FACE) {
return aResultFace;
}
TopoDS_Face aFace = TopoDS::Face(aShape);
Handle(Geom_Surface) aSurf = BRep_Tool::Surface(aFace);
- if(aSurf.IsNull()) {
+ if (aSurf.IsNull()) {
return aResultFace;
}
GeomLib_IsPlanarSurface isPlanar(aSurf);
- if(!isPlanar.IsPlanar()) {
+ if (!isPlanar.IsPlanar()) {
return aResultFace;
}
- if(thePoints.size() != 8) {
+ if (thePoints.size() != 8) {
return aResultFace;
}
const gp_Pnt& aPntOnFace = anIntAna.Point(1);
Standard_Real aPntU(0), aPntV(0);
GeomLib_Tool::Parameters(aFacePlane, aPntOnFace, Precision::Confusion(), aPntU, aPntV);
- if(aPntU < UMin) UMin = aPntU;
- if(aPntU > UMax) UMax = aPntU;
- if(aPntV < VMin) VMin = aPntV;
- if(aPntV > VMax) VMax = aPntV;
+ if (aPntU < UMin) UMin = aPntU;
+ if (aPntU > UMax) UMax = aPntU;
+ if (aPntV < VMin) VMin = aPntV;
+ if (aPntV > VMax) VMax = aPntV;
}
aResultFace.reset(new GeomAPI_Face());
aResultFace->setImpl(new TopoDS_Face(BRepLib_MakeFace(aFacePln, UMin, UMax, VMin, VMax).Face()));
BRepAlgo_FaceRestrictor aFRestrictor;
aFRestrictor.Init(aFace, Standard_False, Standard_True);
- for(ListOfShape::const_iterator anIt = theWires.cbegin();
+ for (ListOfShape::const_iterator anIt = theWires.cbegin();
anIt != theWires.cend();
++anIt) {
TopoDS_Wire aWire = TopoDS::Wire((*anIt)->impl<TopoDS_Shape>());
aFRestrictor.Perform();
- if(!aFRestrictor.IsDone()) {
+ if (!aFRestrictor.IsDone()) {
return;
}
- for(; aFRestrictor.More(); aFRestrictor.Next()) {
+ for (; aFRestrictor.More(); aFRestrictor.Next()) {
GeomShapePtr aShape(new GeomAPI_Shape());
aShape->setImpl(new TopoDS_Shape(aFRestrictor.Current()));
theFaces.push_back(aShape);
BRep_Builder aBuilder;
aBuilder.MakeCompound(aCompound);
- for(ListOfShape::const_iterator anIt = theShapes.cbegin(); anIt != theShapes.cend(); ++anIt) {
+ for (ListOfShape::const_iterator anIt = theShapes.cbegin(); anIt != theShapes.cend(); ++anIt) {
aBuilder.Add(aCompound, (*anIt)->impl<TopoDS_Shape>());
}
BRepBuilderAPI_FindPlane aFindPlane(aCompound);
- if(aFindPlane.Found() != Standard_True) {
+ if (aFindPlane.Found() != Standard_True) {
return std::shared_ptr<GeomAPI_Pln>();
}
const std::shared_ptr<GeomAPI_Shape> theSubShape,
const std::shared_ptr<GeomAPI_Shape> theBaseShape)
{
- if(!theSubShape.get() || !theBaseShape.get()) {
+ if (!theSubShape.get() || !theBaseShape.get()) {
return false;
}
const TopoDS_Shape& aSubShape = theSubShape->impl<TopoDS_Shape>();
const TopoDS_Shape& aBaseShape = theBaseShape->impl<TopoDS_Shape>();
- if(aSubShape.ShapeType() == TopAbs_VERTEX) {
+ if (aSubShape.ShapeType() == TopAbs_VERTEX) {
// If sub-shape is a vertex check distance to shape. If it is <= Precision::Confusion() then OK.
BRepExtrema_DistShapeShape aDist(aBaseShape, aSubShape);
aDist.Perform();
- if(!aDist.IsDone() || aDist.Value() > Precision::Confusion()) {
+ if (!aDist.IsDone() || aDist.Value() > Precision::Confusion()) {
return false;
}
} else if (aSubShape.ShapeType() == TopAbs_EDGE) {
- if(aBaseShape.ShapeType() == TopAbs_FACE) {
+ if (aBaseShape.ShapeType() == TopAbs_FACE) {
// Check that edge is on face surface.
TopoDS_Face aFace = TopoDS::Face(aBaseShape);
TopoDS_Edge anEdge = TopoDS::Edge(aSubShape);
BRepLib_CheckCurveOnSurface aCheck(anEdge, aFace);
aCheck.Perform();
- if(!aCheck.IsDone() || aCheck.MaxDistance() > Precision::Confusion()) {
+ if (!aCheck.IsDone() || aCheck.MaxDistance() > Precision::Confusion()) {
return false;
}
ShapeAnalysis::FindBounds(anEdge, aV1, aV2);
gp_Pnt aPnt1 = BRep_Tool::Pnt(aV1);
gp_Pnt aPnt2 = BRep_Tool::Pnt(aV2);
- for(TopExp_Explorer anExp(aBaseShape, TopAbs_EDGE); anExp.More(); anExp.Next()) {
+ for (TopExp_Explorer anExp(aBaseShape, TopAbs_EDGE); anExp.More(); anExp.Next()) {
const TopoDS_Shape& anEdgeOnFace = anExp.Current();
BRepExtrema_DistShapeShape aDist(anEdgeOnFace, anEdge);
aDist.Perform();
- if(aDist.IsDone() && aDist.Value() <= Precision::Confusion()) {
+ if (aDist.IsDone() && aDist.Value() <= Precision::Confusion()) {
// Edge intersect face bound. Check that it is not on edge begin or end.
- for(Standard_Integer anIndex = 1; anIndex <= aDist.NbSolution(); ++anIndex) {
+ for (Standard_Integer anIndex = 1; anIndex <= aDist.NbSolution(); ++anIndex) {
gp_Pnt aPntOnSubShape = aDist.PointOnShape2(anIndex);
- if(aPntOnSubShape.Distance(aPnt1) > Precision::Confusion()
+ if (aPntOnSubShape.Distance(aPnt1) > Precision::Confusion()
&& aPntOnSubShape.Distance(aPnt2) > Precision::Confusion()) {
return false;
}
ShapeAnalysis_Surface aSAS(aSurface);
gp_Pnt2d aPointOnFace = aSAS.ValueOfUV(aPointToCheck, Precision::Confusion());
BRepTopAdaptor_FClass2d aFClass2d(aFace, Precision::Confusion());
- if(aFClass2d.Perform(aPointOnFace) == TopAbs_OUT) {
+ if (aFClass2d.Perform(aPointOnFace) == TopAbs_OUT) {
return false;
}
//==================================================================================================
bool GeomAlgoAPI_ShapeTools::isShapeValid(const std::shared_ptr<GeomAPI_Shape> theShape)
{
- if(!theShape.get()) {
+ if (!theShape.get()) {
return false;
}
{
GeomShapePtr anOuterWire;
- if(!theFace.get() || !theFace->isFace()) {
+ if (!theFace.get() || !theFace->isFace()) {
return anOuterWire;
}
bool GeomAlgoAPI_ShapeTools::isParallel(const std::shared_ptr<GeomAPI_Edge> theEdge,
const std::shared_ptr<GeomAPI_Face> theFace)
{
- if(!theEdge.get() || !theFace.get()) {
+ if (!theEdge.get() || !theFace.get()) {
return false;
}
const std::shared_ptr<GeomAPI_Edge> theEdge, const std::shared_ptr<GeomAPI_Face> theFace)
{
std::list<std::shared_ptr<GeomAPI_Vertex> > aResult;
- if(!theEdge.get() || !theFace.get()) {
+ if (!theEdge.get() || !theFace.get()) {
return aResult;
}
if (!anIntAlgo.IsDone())
return aResult;
// searching for points-intersection
- for(int anIntNum = 1; anIntNum <= anIntAlgo.NbPoints() + anIntAlgo.NbSegments(); anIntNum++) {
+ for (int anIntNum = 1; anIntNum <= anIntAlgo.NbPoints() + anIntAlgo.NbSegments(); anIntNum++) {
gp_Pnt anInt;
if (anIntNum <= anIntAlgo.NbPoints()) {
anInt = anIntAlgo.Point(anIntNum);
TopExp_Explorer anExp(aBaseShape, TopAbs_FACE);
const TopoDS_Shape& aFace = anExp.Current();
Handle(Geom_Surface) aSurface = BRep_Tool::Surface(TopoDS::Face(aFace));
- if(aSurface->DynamicType() == STANDARD_TYPE(Geom_RectangularTrimmedSurface)) {
+ if (aSurface->DynamicType() == STANDARD_TYPE(Geom_RectangularTrimmedSurface)) {
Handle(Geom_RectangularTrimmedSurface) aTrimSurface =
Handle(Geom_RectangularTrimmedSurface)::DownCast(aSurface);
aSurface = aTrimSurface->BasisSurface();
}
- if(aSurface->DynamicType() != STANDARD_TYPE(Geom_Plane)) {
+ if (aSurface->DynamicType() != STANDARD_TYPE(Geom_Plane)) {
return;
}
aPlane = Handle(Geom_Plane)::DownCast(aSurface);