smesh/src/StdMeshers/StdMeshers_NumberOfSegments.hxx

188 lines
6.5 KiB
C++
Raw Normal View History

2004-06-18 14:34:31 +06:00
// SMESH SMESH : implementaion of SMESH idl descriptions
2003-07-10 19:35:03 +06:00
//
// Copyright (C) 2003 OPEN CASCADE, EADS/CCR, LIP6, CEA/DEN,
// CEDRAT, EDF R&D, LEG, PRINCIPIA R&D, BUREAU VERITAS
//
// This library is free software; you can redistribute it and/or
// modify it under the terms of the GNU Lesser General Public
// License as published by the Free Software Foundation; either
// version 2.1 of the License.
//
// This library is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
// Lesser General Public License for more details.
//
// You should have received a copy of the GNU Lesser General Public
// License along with this library; if not, write to the Free Software
// Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
//
// See http://www.opencascade.org/SALOME/ or email : webmaster.salome@opencascade.org
//
//
//
2004-06-18 14:34:31 +06:00
// File : StdMeshers_NumberOfSegments.hxx
// Moved here from SMESH_NumberOfSegments.hxx
2003-07-10 19:35:03 +06:00
// Author : Paul RASCLE, EDF
// Module : SMESH
// $Header$
2003-05-19 19:54:48 +06:00
2004-06-18 14:34:31 +06:00
#ifndef _SMESH_NUMBEROFSEGMENTS_HXX_
#define _SMESH_NUMBEROFSEGMENTS_HXX_
2003-05-19 19:54:48 +06:00
2004-06-18 14:34:31 +06:00
#include "SMESH_Hypothesis.hxx"
#include "Utils_SALOME_Exception.hxx"
2005-08-16 18:26:35 +06:00
#include <vector>
2003-05-19 19:54:48 +06:00
2005-08-16 18:26:35 +06:00
/*!
* \brief This class represents hypothesis for 1d algorithm
*
* It provides parameters for subdivision an edge by various
* distribution types, considering the given number of resulting segments
*/
2004-06-18 14:34:31 +06:00
class StdMeshers_NumberOfSegments:
public SMESH_Hypothesis
2003-05-19 19:54:48 +06:00
{
public:
2004-06-18 14:34:31 +06:00
StdMeshers_NumberOfSegments(int hypId, int studyId, SMESH_Gen* gen);
virtual ~StdMeshers_NumberOfSegments();
// Builds point distribution according to passed function
const std::vector<double>& BuildDistributionExpr( const char*, int, int ) throw ( SALOME_Exception );
const std::vector<double>& BuildDistributionTab( const std::vector<double>&, int, int ) throw ( SALOME_Exception );
2005-08-16 18:26:35 +06:00
/*!
* \brief Set the number of segments
* \param segmentsNumber - must be greater than zero
*/
2004-06-18 14:34:31 +06:00
void SetNumberOfSegments(int segmentsNumber)
throw (SALOME_Exception);
2003-05-19 19:54:48 +06:00
2005-08-16 18:26:35 +06:00
/*!
* \brief Get the number of segments
*/
2004-06-18 14:34:31 +06:00
int GetNumberOfSegments() const;
2003-05-19 19:54:48 +06:00
2005-08-16 18:26:35 +06:00
/*!
* \brief This enumeration presents available types of distribution
*/
enum DistrType
{
DT_Regular, //!< equidistant distribution
DT_Scale, //!< scale distribution
DT_TabFunc, //!< distribution with density function presented by table
DT_ExprFunc //!< distribution with density function presented by expression
};
/*!
* \brief Set distribution type
*/
void SetDistrType(DistrType typ)
throw (SALOME_Exception);
/*!
* \brief Get distribution type
*/
DistrType GetDistrType() const;
/*!
* \brief Set scale factor for scale distribution
* \param scaleFactor - positive value different from 1
*
* Throws SALOME_Exception if distribution type is not DT_Scale,
* or scaleFactor is not a positive value different from 1
*/
virtual void SetScaleFactor(double scaleFactor)
2004-06-18 14:34:31 +06:00
throw (SALOME_Exception);
2005-08-16 18:26:35 +06:00
/*!
* \brief Get scale factor for scale distribution
*
* Throws SALOME_Exception if distribution type is not DT_Scale
*/
double GetScaleFactor() const
throw (SALOME_Exception);
/*!
* \brief Set table function for distribution DT_TabFunc
* \param table - this vector contains the pairs (parameter, value)
* following each by other, so the number of elements in the vector
* must be even. The parameters must be in range [0,1] and sorted in
* increase order. The values of function must be positive.
*
* Throws SALOME_Exception if distribution type is not DT_TabFunc
*/
void SetTableFunction(const std::vector<double>& table)
throw (SALOME_Exception);
/*!
* \brief Get table function for distribution DT_TabFunc
*
* Throws SALOME_Exception if distribution type is not DT_TabFunc
*/
const std::vector<double>& GetTableFunction() const
throw (SALOME_Exception);
/*!
* \brief Set expression function for distribution DT_ExprFunc
* \param expr - string containing the expression of the function
* f(t), e.g. "sin(t)"
*
* Throws SALOME_Exception if distribution type is not DT_ExprFunc
*/
void SetExpressionFunction( const char* expr)
2005-08-16 18:26:35 +06:00
throw (SALOME_Exception);
/*!
* \brief Get expression function for distribution DT_ExprFunc
*
* Throws SALOME_Exception if distribution type is not DT_ExprFunc
*/
const char* GetExpressionFunction() const
throw (SALOME_Exception);
/*!
* \brief Set conversion mode. When it is 0, it means "exponent mode":
* the function of distribution of density is used as an exponent of 10, i,e, 10^f(t).
* When it is 1, it means "cut negative mode". The function of distribution is used as
* F(t), where F(t0)=f(t0), if f(t0)>=0, otherwise F(t0) = 0.
* This mode is sensible only when function distribution is used (DT_TabFunc or DT_ExprFunc)
2005-08-16 18:26:35 +06:00
*
* Throws SALOME_Exception if distribution type is not functional
*/
void SetConversionMode( int conv )
2005-08-16 18:26:35 +06:00
throw (SALOME_Exception);
/*!
* \brief Returns conversion mode
2005-08-16 18:26:35 +06:00
*
* Throws SALOME_Exception if distribution type is not functional
*/
int ConversionMode() const
2005-08-16 18:26:35 +06:00
throw (SALOME_Exception);
2004-06-18 14:34:31 +06:00
/*!
* \brief Initialize number of segments by the mesh built on the geometry
* \param theMesh - the built mesh
* \param theShape - the geometry of interest
* \retval bool - true if parameter values have been successfully defined
*/
virtual bool SetParametersByMesh(const SMESH_Mesh* theMesh, const TopoDS_Shape& theShape);
virtual std::ostream & SaveTo(std::ostream & save);
virtual std::istream & LoadFrom(std::istream & load);
friend std::ostream& operator << (std::ostream & save, StdMeshers_NumberOfSegments & hyp);
friend std::istream& operator >> (std::istream & load, StdMeshers_NumberOfSegments & hyp);
2003-05-19 19:54:48 +06:00
protected:
2005-08-16 18:26:35 +06:00
int _numberOfSegments; //!< an edge will be split on to this number of segments
DistrType _distrType; //!< the type of distribution of density function
double _scaleFactor; //!< the scale parameter for DT_Scale
std::vector<double> _table, _distr; //!< the table for DT_TabFunc, a sequence of pairs of numbers
2005-08-16 18:26:35 +06:00
std::string _func; //!< the expression of the function for DT_ExprFunc
int _convMode; //!< flag of conversion mode: 0=exponent, 1=cut negative
2003-05-19 19:54:48 +06:00
};
#endif