// File: StepToGeom_MakeSurfaceOfRevolution.cxx // Created: Mon Jul 5 10:37:59 1993 // Author: Martine LANGLOIS #include #include #include #include #include #include #include #include #include #include #include #include #include #include //============================================================================= // Creation d' une SurfaceOfRevolution de Geom a partir d' une // SurfaceOfRevolution de Step //============================================================================= Standard_Boolean StepToGeom_MakeSurfaceOfRevolution::Convert (const Handle(StepGeom_SurfaceOfRevolution)& SS, Handle(Geom_SurfaceOfRevolution)& CS) { Handle(Geom_Curve) C; if (StepToGeom_MakeCurve::Convert(SS->SweptCurve(),C)) { Handle(Geom_Axis1Placement) A1; if (StepToGeom_MakeAxis1Placement::Convert(SS->AxisPosition(),A1)) { const gp_Ax1 A( A1->Ax1() ); //skl for OCC952 (one bad case revolution of circle) if ( C->IsKind(STANDARD_TYPE(Geom_Circle)) || C->IsKind(STANDARD_TYPE(Geom_Ellipse)) ) { const Handle(Geom_Conic) conic = Handle(Geom_Conic)::DownCast(C); const gp_Pnt pc = conic->Location(); const gp_Lin rl (A); if (rl.Distance(pc) < Precision::Confusion()) { //pc lies on A2 const gp_Dir dirline = A.Direction(); const gp_Dir norm = conic->Axis().Direction(); if( dirline.IsNormal(norm,Precision::Angular()) ) { //A2 lies on plane of circle //change parametrization for trimming gp_Ax2 axnew(pc,norm,dirline.Reversed()); conic->SetPosition(axnew); C = new Geom_TrimmedCurve(conic, 0., PI); } } } CS = new Geom_SurfaceOfRevolution(C, A); return Standard_True; } } return Standard_False; }