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License statement text corrected; compiler warnings caused by Bison 2.41 disabled for MSVC; a few other compiler warnings on 54-bit Windows eliminated by appropriate type cast Wrong license statements corrected in several files. Copyright and license statements added in XSD and GLSL files. Copyright year updated in some files. Obsolete documentation files removed from DrawResources.
220 lines
8.6 KiB
C++
220 lines
8.6 KiB
C++
// Created on: 1996-09-09
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// Created by: Herve LOUESSARD
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// Copyright (c) 1996-1999 Matra Datavision
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// Copyright (c) 1999-2014 OPEN CASCADE SAS
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//
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// This file is part of Open CASCADE Technology software library.
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//
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// This library is free software; you can redistribute it and/or modify it under
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// the terms of the GNU Lesser General Public License version 2.1 as published
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// by the Free Software Foundation, with special exception defined in the file
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// OCCT_LGPL_EXCEPTION.txt. Consult the file LICENSE_LGPL_21.txt included in OCCT
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// distribution for complete text of the license and disclaimer of any warranty.
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//
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// Alternatively, this file may be used under the terms of Open CASCADE
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// commercial license or contractual agreement.
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#include<LocalAnalysis.ixx>
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#include<LocalAnalysis_SurfaceContinuity.hxx>
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#include<LocalAnalysis_CurveContinuity.hxx>
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/*********************************************************************************/
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/*********************************************************************************/
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void LocalAnalysis::Dump(const LocalAnalysis_SurfaceContinuity& surfconti, Standard_OStream& o)
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{ if (!surfconti.IsDone())
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{ o<<"Problem in the computation "<<endl;
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if (surfconti.StatusError()==LocalAnalysis_NullFirstDerivative)
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o<<"one of the first derivatives is null" <<endl;
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else if(surfconti.StatusError()==LocalAnalysis_NullSecondDerivative)
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o<<"one of the second derivatives is null" <<endl;
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else if(surfconti.StatusError()==LocalAnalysis_NormalNotDefined)
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o<<"one (or both) normal is undefined" <<endl;
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else if(surfconti.StatusError()==LocalAnalysis_CurvatureNotDefined)
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o<<"one of the mean curvatures is undefined" <<endl; }
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else
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switch(surfconti.ContinuityStatus())
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{ case GeomAbs_C0 :{ if (surfconti.IsC0() )
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o<<" Continuity Status : C0 " <<endl;
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else o<<" Continuity Status : No C0 "<<endl;
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o<<" C0Value = "<<surfconti.C0Value() <<endl;
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} break;
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case GeomAbs_C1 :{ if (surfconti.IsC1())
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o<<" Continuity Status : C1 " <<endl;
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else
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{if (surfconti.IsC0() )
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o<<" Continuity Status : C0 " <<endl;
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else o<<" Continuity Status : NoC0 "<<endl;
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}
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o<<" C0Value = "<<surfconti.C0Value()<<endl;
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o<<" C1UAngle = "<<surfconti.C1UAngle()<<endl;
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o<<" C1URatio = "<<surfconti.C1URatio()<<endl;
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o<<" C1VAngle = "<<surfconti.C1VAngle()<<endl;
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o<<" C1VRatio = "<<surfconti.C1VRatio()<<endl;
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} break;
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case GeomAbs_C2 :{ if (surfconti.IsC2())
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o<<" Continuity Status : C2 " <<endl;
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else
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{if (surfconti.IsC1() )
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o<<" Continuity Status : C1 " <<endl;
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else
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{ if (surfconti.IsC0() )
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o<<" Continuity Status : C0 " <<endl;
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else o<<" Continuity Status : NoC0 "<<endl;}
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}
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o<<" C0Value = "<<surfconti.C0Value()<<endl;
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o<<" C1UAngle = "<<surfconti.C1UAngle()<<endl;
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o<<" C1VAngle = "<<surfconti.C1VAngle()<<endl;
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o<<" C2UAngle = "<<surfconti.C2UAngle()<<endl;
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o<<" C2VAngle = "<<surfconti.C2VAngle()<<endl;
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o<<" C1URatio = "<<surfconti.C1URatio()<<endl;
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o<<" C1VRatio = "<<surfconti.C1VRatio()<<endl;
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o<<" C2URatio = "<<surfconti.C2URatio()<<endl;
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o<<" C2VRatio = "<<surfconti.C2VRatio()<<endl;
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} break;
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case GeomAbs_G1 :{ if (surfconti.IsG1())
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o<<" Continuity Status : G1 " <<endl;
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else
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{if (surfconti.IsC0() )
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o<<" Continuity Status : G0 " <<endl;
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else o<<" Continuity Status : NoG0 "<<endl;
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}
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o<<" G0Value = "<<surfconti.C0Value()<<endl;
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o<<" G1Angle = "<<surfconti.G1Angle()<<endl<<endl;
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} break;
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case GeomAbs_G2 :{ if (surfconti.IsG2())
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o<<" Continuity Status : G2 " <<endl;
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else
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{if (surfconti.IsG1() )
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o<<" Continuity Status : G1 " <<endl;
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else
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{ if (surfconti.IsC0() )
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o<<" Continuity Status : G0 " <<endl;
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else o<<" Continuity Status : NoG0 "<<endl;}
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}
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o<<" G0Value = "<<surfconti.C0Value()<<endl;
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o<<" G1Value = "<<surfconti.G1Angle()<<endl;
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o<<" G2CurvatureGap = "<<surfconti.G2CurvatureGap()<<endl;
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} break;
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default : {}
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}
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}
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/*********************************************************************************/
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void LocalAnalysis::Dump(const LocalAnalysis_CurveContinuity& curvconti, Standard_OStream& o)
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{ if (!curvconti.IsDone())
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{ o<<"Problem in the computation "<<endl;
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if (curvconti.StatusError()==LocalAnalysis_NullFirstDerivative)
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o<<"one (or both) first derivative is null" <<endl;
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else if(curvconti.StatusError()==LocalAnalysis_NullSecondDerivative)
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o<<"one (or both) second derivative is null" <<endl;
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else if(curvconti.StatusError()==LocalAnalysis_TangentNotDefined)
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o<<"one (or both) tangent is undefined " <<endl;
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else if(curvconti.StatusError()==LocalAnalysis_NormalNotDefined)
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o<<"one (or both) normal is undefined" <<endl;}
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else
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switch(curvconti.ContinuityStatus())
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{ case GeomAbs_C0 :{ if (curvconti.IsC0() )
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o<<" Continuity Status : C0 " <<endl;
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else o<<" Continuity Status : No C0 "<<endl;
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o<<" C0Value = "<<curvconti.C0Value() <<endl;
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} break;
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case GeomAbs_C1 :{ if (curvconti.IsC1())
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o<<" Continuity Status : C1 " <<endl;
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else
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{if (curvconti.IsC0() )
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o<<" Continuity Status : C0 " <<endl;
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else o<<" Continuity Status : NoC0 "<<endl;
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}
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o<<" C0Value = "<<curvconti.C0Value()<<endl;
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o<<" C1Angle = "<<curvconti.C1Angle()<<endl;
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o<<" C1Ratio = "<<curvconti.C1Ratio()<<endl;
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} break;
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case GeomAbs_C2 :{ if (curvconti.IsC2())
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o<<" Continuity Status : C2 " <<endl;
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else
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{if (curvconti.IsC1() )
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o<<" Continuity Status : C1 " <<endl;
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else
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{ if (curvconti.IsC0() )
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o<<" Continuity Status : C0 " <<endl;
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else o<<" Continuity Status : NoC0 "<<endl;}
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}
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o<<" C0Value = "<<curvconti.C0Value()<<endl;
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o<<" C1Angle = "<<curvconti.C1Angle()<<endl;
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o<<" C2Angle = "<<curvconti.C2Angle()<<endl;
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o<<" C1Ratio = "<<curvconti.C1Ratio()<<endl;
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o<<" C2Ratio = "<<curvconti.C2Ratio()<<endl;
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}break;
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case GeomAbs_G1 :{ if (curvconti.IsG1())
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o<<" Continuity Status : G1 " <<endl;
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else
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{if (curvconti.IsC0() )
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o<<" Continuity Status : G0 " <<endl;
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else o<<" Continuity Status : NoG0 "<<endl;
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}
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o<<" G0Value = "<<curvconti.C0Value()<<endl;
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o<<" G1Angle = "<<curvconti.G1Angle()<<endl;
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} break;
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case GeomAbs_G2 :{ if (curvconti.IsG2())
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o<<" Continuity Status : G2 " <<endl;
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else
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{if (curvconti.IsG1() )
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o<<" Continuity Status : G1 " <<endl;
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else
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{ if (curvconti.IsC0() )
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o<<" Continuity Status : G0 " <<endl;
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else o<<" Continuity Status : NoG0 "<<endl;}
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}
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o<<" G0Value = "<<curvconti.C0Value()<<endl;
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o<<" G1Angle = "<<curvconti.G1Angle()<<endl;
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o<<" G2Angle = "<<curvconti.G2Angle()<<endl;
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o<<" Relative curvature variation = "<<curvconti.G2CurvatureVariation()<<endl;
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} break;
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default : {}
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}
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}
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/*********************************************************************************/
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/*********************************************************************************/
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