+ if (_distrType != DT_Scale)
+ throw SALOME_Exception(LOCALIZED("not a scale distribution"));
+ return _scaleFactor;
+}
+
+//================================================================================
+/*!
+ *
+ */
+//================================================================================
+
+void StdMeshers_NumberOfSegments::SetTableFunction(const std::vector<double>& table)
+ throw(SALOME_Exception)
+{
+ if (_distrType != DT_TabFunc)
+ throw SALOME_Exception(LOCALIZED("not a table function distribution"));
+ if ( (table.size() % 2) != 0 )
+ throw SALOME_Exception(LOCALIZED("odd size of vector of table function"));
+
+ int i;
+ double prev = -PRECISION;
+ bool isSame = table.size() == _table.size();
+
+ bool pos = false;
+ for (i=0; i < table.size()/2; i++) {
+ double par = table[i*2];
+ double val = table[i*2+1];
+ if ( par<0 || par > 1)
+ throw SALOME_Exception(LOCALIZED("parameter of table function is out of range [0,1]"));
+ if ( fabs(par-prev)<PRECISION )
+ throw SALOME_Exception(LOCALIZED("two parameters are the same"));
+ if ( val < 0 )
+ throw SALOME_Exception(LOCALIZED("value of table function is not positive"));
+ if( val>PRECISION )
+ pos = true;
+ if (isSame)
+ {
+ double oldpar = _table[i*2];
+ double oldval = _table[i*2+1];
+ if (fabs(par - oldpar) > PRECISION || fabs(val - oldval) > PRECISION)
+ isSame = false;
+ }
+ prev = par;
+ }
+
+ if( !pos )
+ throw SALOME_Exception(LOCALIZED("value of table function is not positive"));
+
+ if( pos && !isSame )
+ {
+ _table = table;
+ NotifySubMeshesHypothesisModification();
+ }
+}
+
+//================================================================================
+/*!
+ *
+ */
+//================================================================================
+
+const std::vector<double>& StdMeshers_NumberOfSegments::GetTableFunction() const
+ throw(SALOME_Exception)
+{
+ if (_distrType != DT_TabFunc)
+ throw SALOME_Exception(LOCALIZED("not a table function distribution"));
+ return _table;
+}
+
+//================================================================================
+/*! check if only 't' is unknown variable in expression
+ */
+//================================================================================
+bool isCorrectArg( const Handle( Expr_GeneralExpression )& expr )
+{
+ Handle( Expr_NamedUnknown ) sub = Handle( Expr_NamedUnknown )::DownCast( expr );
+ if( !sub.IsNull() )
+ return sub->GetName()=="t";
+
+ bool res = true;
+ for( int i=1, n=expr->NbSubExpressions(); i<=n && res; i++ )
+ {
+ Handle( Expr_GeneralExpression ) sub = expr->SubExpression( i );
+ Handle( Expr_NamedUnknown ) name = Handle( Expr_NamedUnknown )::DownCast( sub );
+ if( !name.IsNull() )
+ {
+ if( name->GetName()!="t" )
+ res = false;
+ }
+ else
+ res = isCorrectArg( sub );
+ }
+ return res;
+}
+
+//================================================================================
+/*! this function parses the expression 'str' in order to check if syntax is correct
+ * ( result in 'syntax' ) and if only 't' is unknown variable in expression ( result in 'args' )
+ */
+//================================================================================
+bool process( const TCollection_AsciiString& str,
+ bool& syntax, bool& args,
+ bool& non_neg, bool& non_zero,
+ bool& singulars, double& sing_point )
+{
+ Handle( ExprIntrp_GenExp ) myExpr = ExprIntrp_GenExp::Create();
+ myExpr->Process( str.ToCString() );
+
+ if( myExpr->IsDone() )
+ {
+ syntax = true;
+ args = isCorrectArg( myExpr->Expression() );
+ }
+
+ bool res = syntax && args;
+ if( !res )
+ myExpr.Nullify();
+
+ non_neg = true;
+ singulars = false;
+ non_zero = false;
+
+ if( res )
+ {
+ OSD::SetSignal( true );
+ CASCatch_CatchSignals aCatchSignals;
+ aCatchSignals.Activate();
+ double res;
+ Expr_Array1OfNamedUnknown myVars( 1, 1 );
+ TColStd_Array1OfReal myValues( 1, 1 );
+ myVars.ChangeValue( 1 ) = new Expr_NamedUnknown( "t" );
+
+ const int max = 500;
+ for( int i=0; i<=max; i++ )
+ {
+ double t = double(i)/double(max);
+ myValues.ChangeValue( 1 ) = t;
+ CASCatch_TRY
+ {
+ res = myExpr->Expression()->Evaluate( myVars, myValues );
+ }
+ CASCatch_CATCH(CASCatch_Failure)
+ {
+ aCatchSignals.Deactivate();
+ Handle(CASCatch_Failure) aFail = CASCatch_Failure::Caught();
+ sing_point = t;
+ singulars = true;
+ break;
+ }
+ if( res<0 )
+ {
+ non_neg = false;
+ break;
+ }
+ if( res>PRECISION )
+ non_zero = true;
+ }
+ aCatchSignals.Deactivate();
+ }
+ return res && non_neg && ( !singulars );
+}
+
+//================================================================================
+/*!
+ *
+ */
+//================================================================================
+
+void StdMeshers_NumberOfSegments::SetExpressionFunction(const char* expr)
+ throw(SALOME_Exception)
+{
+ if (_distrType != DT_ExprFunc)
+ throw SALOME_Exception(LOCALIZED("not an expression function distribution"));
+
+ // remove white spaces
+ TCollection_AsciiString str((Standard_CString)expr);
+ str.RemoveAll(' ');
+ str.RemoveAll('\t');
+ str.RemoveAll('\r');
+ str.RemoveAll('\n');
+
+ bool syntax, args, non_neg, singulars, non_zero;
+ double sing_point;
+ bool res = true;//process( str, syntax, args, non_neg, non_zero, singulars, sing_point );
+ if( !res )
+ {
+ if( !syntax )
+ throw SALOME_Exception(LOCALIZED("invalid expression syntax"));
+ if( !args )
+ throw SALOME_Exception(LOCALIZED("only 't' may be used as function argument"));
+ if( !non_neg )
+ throw SALOME_Exception(LOCALIZED("only non-negative function can be used as density"));
+ if( singulars )
+ {
+ char buf[1024];
+ sprintf( buf, "Function has singular point in %.3f", sing_point );
+ throw SALOME_Exception( buf );
+ }
+ if( !non_zero )
+ throw SALOME_Exception(LOCALIZED("f(t)=0 cannot be used as density"));
+
+ return;
+ }
+
+ std::string func = expr;
+ if( _func != func )
+ {
+ _func = func;
+ NotifySubMeshesHypothesisModification();
+ }
+}
+
+//================================================================================
+/*!
+ *
+ */
+//================================================================================
+
+const char* StdMeshers_NumberOfSegments::GetExpressionFunction() const
+ throw(SALOME_Exception)
+{
+ if (_distrType != DT_ExprFunc)
+ throw SALOME_Exception(LOCALIZED("not an expression function distribution"));
+ return _func.c_str();
+}
+
+//================================================================================
+/*!
+ *
+ */
+//================================================================================
+
+void StdMeshers_NumberOfSegments::SetExponentMode(bool isExp)
+ throw(SALOME_Exception)
+{
+ if (_distrType != DT_TabFunc && _distrType != DT_ExprFunc)
+ throw SALOME_Exception(LOCALIZED("not a functional distribution"));
+
+ if (isExp != _expMode)
+ {
+ _expMode = isExp;
+ NotifySubMeshesHypothesisModification();
+ }
+}
+
+//================================================================================
+/*!
+ *
+ */
+//================================================================================
+
+bool StdMeshers_NumberOfSegments::IsExponentMode() const
+ throw(SALOME_Exception)
+{
+ if (_distrType != DT_TabFunc && _distrType != DT_ExprFunc)
+ throw SALOME_Exception(LOCALIZED("not a functional distribution"));
+ return _expMode;