mirror of
https://git.salome-platform.org/gitpub/modules/geom.git
synced 2024-11-16 18:48:34 +05:00
164 lines
5.8 KiB
C++
164 lines
5.8 KiB
C++
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using namespace std;
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#include "GEOMImpl_PlaneDriver.hxx"
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#include "GEOMImpl_IPlane.hxx"
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#include "GEOMImpl_Types.hxx"
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#include "GEOM_Function.hxx"
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#include <BRepBuilderAPI_MakeFace.hxx>
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#include <BRep_Tool.hxx>
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#include <TopAbs.hxx>
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#include <TopoDS.hxx>
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#include <TopoDS_Shape.hxx>
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#include <TopoDS_Edge.hxx>
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#include <TopoDS_Vertex.hxx>
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#include <TopExp.hxx>
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#include <GC_MakePlane.hxx>
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#include <Geom_Surface.hxx>
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#include <Precision.hxx>
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#include <gp_Pnt.hxx>
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#include <gp_Pln.hxx>
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#include <gp_Vec.hxx>
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#include <Standard_ConstructionError.hxx>
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#include <Standard_TypeMismatch.hxx>
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//=======================================================================
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//function : GetID
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//purpose :
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//=======================================================================
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const Standard_GUID& GEOMImpl_PlaneDriver::GetID()
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{
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static Standard_GUID aPlaneDriver("FF1BBB05-5D14-4df2-980B-3A668264EA16");
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return aPlaneDriver;
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}
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//=======================================================================
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//function : GEOMImpl_PlaneDriver
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//purpose :
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//=======================================================================
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GEOMImpl_PlaneDriver::GEOMImpl_PlaneDriver()
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{
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}
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//=======================================================================
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//function : Execute
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//purpose :
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//=======================================================================
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Standard_Integer GEOMImpl_PlaneDriver::Execute(TFunction_Logbook& log) const
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{
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if (Label().IsNull()) return 0;
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Handle(GEOM_Function) aFunction = GEOM_Function::GetFunction(Label());
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GEOMImpl_IPlane aPI (aFunction);
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Standard_Integer aType = aFunction->GetType();
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TopoDS_Shape aShape;
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double aSize = aPI.GetSize() / 2.0;
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if (aType == PLANE_PNT_VEC) {
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Handle(GEOM_Function) aRefPnt = aPI.GetPoint();
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Handle(GEOM_Function) aRefVec = aPI.GetVector();
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TopoDS_Shape aShape1 = aRefPnt->GetValue();
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TopoDS_Shape aShape2 = aRefVec->GetValue();
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if (aShape1.ShapeType() != TopAbs_VERTEX ||
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aShape2.ShapeType() != TopAbs_EDGE) return 0;
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gp_Pnt aP = BRep_Tool::Pnt(TopoDS::Vertex(aShape1));
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TopoDS_Edge anE = TopoDS::Edge(aShape2);
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TopoDS_Vertex V1, V2;
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TopExp::Vertices(anE, V1, V2, Standard_True);
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if (!V1.IsNull() && !V2.IsNull()) {
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gp_Vec aV (BRep_Tool::Pnt(V1), BRep_Tool::Pnt(V2));
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gp_Pln aPln (aP, aV);
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aShape = BRepBuilderAPI_MakeFace(aPln, -aSize, +aSize, -aSize, +aSize).Shape();
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}
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} else if (aType == PLANE_THREE_PNT) {
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Handle(GEOM_Function) aRefPnt1 = aPI.GetPoint1();
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Handle(GEOM_Function) aRefPnt2 = aPI.GetPoint2();
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Handle(GEOM_Function) aRefPnt3 = aPI.GetPoint3();
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TopoDS_Shape aShape1 = aRefPnt1->GetValue();
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TopoDS_Shape aShape2 = aRefPnt2->GetValue();
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TopoDS_Shape aShape3 = aRefPnt3->GetValue();
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if (aShape1.ShapeType() != TopAbs_VERTEX ||
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aShape2.ShapeType() != TopAbs_VERTEX ||
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aShape3.ShapeType() != TopAbs_VERTEX) return 0;
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gp_Pnt aP1 = BRep_Tool::Pnt(TopoDS::Vertex(aShape1));
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gp_Pnt aP2 = BRep_Tool::Pnt(TopoDS::Vertex(aShape2));
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gp_Pnt aP3 = BRep_Tool::Pnt(TopoDS::Vertex(aShape3));
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if (aP1.Distance(aP2) < gp::Resolution() ||
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aP1.Distance(aP3) < gp::Resolution() ||
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aP2.Distance(aP3) < gp::Resolution())
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Standard_ConstructionError::Raise("Plane creation aborted: coincident points given");
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if (gp_Vec(aP1, aP2).IsParallel(gp_Vec(aP1, aP3), Precision::Angular()))
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Standard_ConstructionError::Raise("Plane creation aborted: points lay on one line");
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GC_MakePlane aMakePlane (aP1, aP2, aP3);
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aShape = BRepBuilderAPI_MakeFace(aMakePlane, -aSize, +aSize, -aSize, +aSize).Shape();
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} else if (aType == PLANE_FACE) {
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Handle(GEOM_Function) aRef = aPI.GetFace();
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TopoDS_Shape aRefShape = aRef->GetValue();
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if (aRefShape.ShapeType() != TopAbs_FACE) return 0;
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Handle(Geom_Surface) aGS = BRep_Tool::Surface(TopoDS::Face(aRefShape));
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if (!aGS->IsKind(STANDARD_TYPE(Geom_Plane))) {
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Standard_TypeMismatch::Raise("Plane creation aborted: non-planar face given as argument");
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}
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aShape = BRepBuilderAPI_MakeFace(aGS, -aSize, +aSize, -aSize, +aSize).Shape();
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} else {
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}
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if (aShape.IsNull()) return 0;
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aFunction->SetValue(aShape);
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log.SetTouched(Label());
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return 1;
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}
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//=======================================================================
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//function : GEOMImpl_PlaneDriver_Type_
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//purpose :
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//=======================================================================
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Standard_EXPORT Handle_Standard_Type& GEOMImpl_PlaneDriver_Type_()
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{
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static Handle_Standard_Type aType1 = STANDARD_TYPE(TFunction_Driver);
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if ( aType1.IsNull()) aType1 = STANDARD_TYPE(TFunction_Driver);
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static Handle_Standard_Type aType2 = STANDARD_TYPE(MMgt_TShared);
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if ( aType2.IsNull()) aType2 = STANDARD_TYPE(MMgt_TShared);
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static Handle_Standard_Type aType3 = STANDARD_TYPE(Standard_Transient);
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if ( aType3.IsNull()) aType3 = STANDARD_TYPE(Standard_Transient);
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static Handle_Standard_Transient _Ancestors[]= {aType1,aType2,aType3,NULL};
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static Handle_Standard_Type _aType = new Standard_Type("GEOMImpl_PlaneDriver",
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sizeof(GEOMImpl_PlaneDriver),
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1,
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(Standard_Address)_Ancestors,
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(Standard_Address)NULL);
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return _aType;
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}
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//=======================================================================
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//function : DownCast
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//purpose :
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//=======================================================================
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const Handle(GEOMImpl_PlaneDriver) Handle(GEOMImpl_PlaneDriver)::DownCast
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(const Handle(Standard_Transient)& AnObject)
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{
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Handle(GEOMImpl_PlaneDriver) _anOtherObject;
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if (!AnObject.IsNull()) {
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if (AnObject->IsKind(STANDARD_TYPE(GEOMImpl_PlaneDriver))) {
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_anOtherObject = Handle(GEOMImpl_PlaneDriver)((Handle(GEOMImpl_PlaneDriver)&)AnObject);
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}
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}
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return _anOtherObject ;
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}
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