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occt/src/Plate/Plate_LinearScalarConstraint.cxx
ski 9775fa6110 0026937: Eliminate NO_CXX_EXCEPTION macro support
Macro NO_CXX_EXCEPTION was removed from code.
Method Raise() was replaced by explicit throw statement.
Method Standard_Failure::Caught() was replaced by normal C++mechanism of exception transfer.
Method Standard_Failure::Caught() is deprecated now.
Eliminated empty constructors.
Updated samples.
Eliminate empty method ChangeValue from NCollection_Map class.
Removed not operable methods from NCollection classes.
2017-02-02 16:35:54 +03:00

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2.8 KiB
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// Created on: 1998-03-26
// Created by: # Andre LIEUTIER
// Copyright (c) 1998-1999 Matra Datavision
// Copyright (c) 1999-2014 OPEN CASCADE SAS
//
// This file is part of Open CASCADE Technology software library.
//
// This library is free software; you can redistribute it and/or modify it under
// the terms of the GNU Lesser General Public License version 2.1 as published
// by the Free Software Foundation, with special exception defined in the file
// OCCT_LGPL_EXCEPTION.txt. Consult the file LICENSE_LGPL_21.txt included in OCCT
// distribution for complete text of the license and disclaimer of any warranty.
//
// Alternatively, this file may be used under the terms of Open CASCADE
// commercial license or contractual agreement.
#include <gp_XYZ.hxx>
#include <Plate_LinearScalarConstraint.hxx>
#include <Plate_PinpointConstraint.hxx>
#include <Standard_DimensionMismatch.hxx>
#include <Standard_OutOfRange.hxx>
Plate_LinearScalarConstraint::Plate_LinearScalarConstraint() {}
Plate_LinearScalarConstraint::Plate_LinearScalarConstraint
(const Plate_PinpointConstraint& PPC1,const gp_XYZ& coeff)
{
myPPC = new Plate_HArray1OfPinpointConstraint(1,1);
myCoef = new TColgp_HArray2OfXYZ(1,1,1,1);
myPPC->ChangeValue(1) = PPC1;
myCoef->ChangeValue(1,1) = coeff;
}
Plate_LinearScalarConstraint::Plate_LinearScalarConstraint(const Plate_Array1OfPinpointConstraint& thePPC,const TColgp_Array1OfXYZ& theCoeff)
{
if(theCoeff.Length()!= thePPC.Length()) throw Standard_DimensionMismatch();
myPPC = new Plate_HArray1OfPinpointConstraint(1, thePPC.Length());
myCoef = new TColgp_HArray2OfXYZ(1,1,1, theCoeff.Length());
myPPC->ChangeArray1() = thePPC;
for(Standard_Integer i = 1; i<= theCoeff.Length(); i++) {
myCoef->ChangeValue(1,i) = theCoeff(i+ theCoeff.Lower()-1);
}
}
Plate_LinearScalarConstraint::Plate_LinearScalarConstraint
(const Plate_Array1OfPinpointConstraint& thePPC,const TColgp_Array2OfXYZ& theCoeff)
{
if(theCoeff.RowLength()!= thePPC.Length()) throw Standard_DimensionMismatch();
myPPC = new Plate_HArray1OfPinpointConstraint(1, thePPC.Length());
myCoef = new TColgp_HArray2OfXYZ(1, theCoeff.ColLength(),1, theCoeff.RowLength());
myPPC->ChangeArray1() = thePPC;
myCoef->ChangeArray2() = theCoeff;
}
Plate_LinearScalarConstraint::Plate_LinearScalarConstraint(const Standard_Integer ColLen,const Standard_Integer RowLen)
{
myPPC = new Plate_HArray1OfPinpointConstraint(1,RowLen);
myCoef = new TColgp_HArray2OfXYZ(1,ColLen,1,RowLen);
myCoef->Init(gp_XYZ(0.,0.,0.));
}
void Plate_LinearScalarConstraint::SetPPC(const Standard_Integer Index,const Plate_PinpointConstraint& Value)
{
myPPC->ChangeValue(Index) = Value;
}
void Plate_LinearScalarConstraint::SetCoeff(const Standard_Integer Row,const Standard_Integer Col,const gp_XYZ& Value)
{
myCoef->ChangeValue(Row,Col) = Value;
}