2005-12-05 21:23:52 +05:00
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// Copyright (C) 2005 OPEN CASCADE, EADS/CCR, LIP6, CEA/DEN,
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// CEDRAT, EDF R&D, LEG, PRINCIPIA R&D, BUREAU VERITAS
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//
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// This library is free software; you can redistribute it and/or
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// modify it under the terms of the GNU Lesser General Public
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// License as published by the Free Software Foundation; either
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// version 2.1 of the License.
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//
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// This library is distributed in the hope that it will be useful
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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// Lesser General Public License for more details.
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//
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// You should have received a copy of the GNU Lesser General Public
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// License along with this library; if not, write to the Free Software
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// Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
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//
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2006-06-01 17:32:40 +06:00
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// See http://www.salome-platform.org/ or email : webmaster.salome@opencascade.com
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2005-12-05 21:23:52 +05:00
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//
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2004-12-01 15:39:14 +05:00
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2005-08-11 10:43:57 +06:00
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#include <Standard_Stream.hxx>
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#include <GEOMImpl_PrismDriver.hxx>
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#include <GEOMImpl_IPrism.hxx>
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#include <GEOMImpl_Types.hxx>
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#include <GEOM_Function.hxx>
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2004-12-01 15:39:14 +05:00
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#include <BRepPrimAPI_MakePrism.hxx>
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#include <BRep_Tool.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 <TopAbs.hxx>
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#include <TopExp.hxx>
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#include <Precision.hxx>
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#include <gp_Pnt.hxx>
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#include <Standard_ConstructionError.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_PrismDriver::GetID()
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{
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static Standard_GUID aPrismDriver("FF1BBB17-5D14-4df2-980B-3A668264EA16");
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return aPrismDriver;
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}
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//=======================================================================
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//function : GEOMImpl_PrismDriver
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//purpose :
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//=======================================================================
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GEOMImpl_PrismDriver::GEOMImpl_PrismDriver()
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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_PrismDriver::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_IPrism aCI (aFunction);
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Standard_Integer aType = aFunction->GetType();
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TopoDS_Shape aShape;
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if (aType == PRISM_BASE_VEC_H) {
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Handle(GEOM_Function) aRefBase = aCI.GetBase();
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Handle(GEOM_Function) aRefVector = aCI.GetVector();
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TopoDS_Shape aShapeBase = aRefBase->GetValue();
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TopoDS_Shape aShapeVec = aRefVector->GetValue();
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if (aShapeVec.ShapeType() == TopAbs_EDGE) {
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TopoDS_Edge anE = TopoDS::Edge(aShapeVec);
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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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if (Abs(aCI.GetH()) < Precision::Confusion()) {
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Standard_ConstructionError::Raise("Absolute value of prism height is too small");
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}
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if (aV.Magnitude() > Precision::Confusion()) {
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aV.Normalize();
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aShape = BRepPrimAPI_MakePrism(aShapeBase, aV * aCI.GetH(), Standard_False).Shape();
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}
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}
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}
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} else if (aType == PRISM_BASE_TWO_PNT) {
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Handle(GEOM_Function) aRefBase = aCI.GetBase();
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Handle(GEOM_Function) aRefPnt1 = aCI.GetFirstPoint();
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Handle(GEOM_Function) aRefPnt2 = aCI.GetLastPoint();
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TopoDS_Shape aShapeBase = aRefBase->GetValue();
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TopoDS_Shape aShapePnt1 = aRefPnt1->GetValue();
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TopoDS_Shape aShapePnt2 = aRefPnt2->GetValue();
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if (aShapePnt1.ShapeType() == TopAbs_VERTEX &&
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aShapePnt2.ShapeType() == TopAbs_VERTEX) {
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TopoDS_Vertex V1 = TopoDS::Vertex(aShapePnt1);
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TopoDS_Vertex V2 = TopoDS::Vertex(aShapePnt2);
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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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if (aV.Magnitude() > gp::Resolution()) {
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aShape = BRepPrimAPI_MakePrism(aShapeBase, aV, Standard_False).Shape();
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}
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}
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}
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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_PrismDriver_Type_
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//purpose :
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//=======================================================================
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Standard_EXPORT Handle_Standard_Type& GEOMImpl_PrismDriver_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_PrismDriver",
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sizeof(GEOMImpl_PrismDriver),
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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_PrismDriver) Handle(GEOMImpl_PrismDriver)::DownCast(const Handle(Standard_Transient)& AnObject)
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{
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Handle(GEOMImpl_PrismDriver) _anOtherObject;
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if (!AnObject.IsNull()) {
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if (AnObject->IsKind(STANDARD_TYPE(GEOMImpl_PrismDriver))) {
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_anOtherObject = Handle(GEOMImpl_PrismDriver)((Handle(GEOMImpl_PrismDriver)&)AnObject);
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}
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}
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return _anOtherObject ;
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}
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