#include <dune/localfunctions/utility/monomialbasis.hh>
|
| | VirtualMonomialBasis (const GeometryType >, unsigned int order) |
| virtual | ~VirtualMonomialBasis () |
| virtual const unsigned int * | sizes () const =0 |
| unsigned int | size () const |
| unsigned int | order () const |
| GeometryType | type () const |
| virtual void | evaluate (const unsigned int deriv, const DomainVector &x, Field *const values) const =0 |
| template<unsigned int deriv> |
| void | evaluate (const DomainVector &x, Field *const values) const |
| template<unsigned int deriv, int size> |
| void | evaluate (const DomainVector &x, Dune::FieldVector< Field, size > *const values) const |
| template<unsigned int deriv, DerivativeLayoutNS::DerivativeLayout layout> |
| void | evaluate (const DomainVector &x, Derivatives< Field, dimension, 1, deriv, layout > *values) const |
| template<unsigned int deriv, class Vector> |
| void | evaluate (const DomainVector &x, Vector &values) const |
| template<class Vector> |
| void | evaluate (const DomainVector &x, Vector &values) const |
| template<class DVector, class RVector> |
| void | evaluate (const DVector &x, RVector &values) const |
| template<unsigned int deriv, class DVector, class RVector> |
| void | evaluate (const DVector &x, RVector &values) const |
| virtual void | integrate (Field *const values) const =0 |
| template<class Vector> |
| void | integrate (Vector &values) const |
◆ DomainVector
template<int dim, class F>
◆ Field
template<int dim, class F>
◆ RangeVector
template<int dim, class F>
◆ StorageField
template<int dim, class F>
◆ VirtualMonomialBasis()
template<int dim, class F>
◆ ~VirtualMonomialBasis()
template<int dim, class F>
◆ evaluate() [1/8]
template<int dim, class F>
◆ evaluate() [2/8]
template<int dim, class F>
template<unsigned int deriv, int size>
◆ evaluate() [3/8]
template<int dim, class F>
template<unsigned int deriv>
◆ evaluate() [4/8]
template<int dim, class F>
template<class Vector>
◆ evaluate() [5/8]
template<int dim, class F>
template<unsigned int deriv, class Vector>
◆ evaluate() [6/8]
template<int dim, class F>
template<unsigned int deriv, class DVector, class RVector>
◆ evaluate() [7/8]
template<int dim, class F>
template<class DVector, class RVector>
◆ evaluate() [8/8]
template<int dim, class F>
◆ integrate() [1/2]
template<int dim, class F>
◆ integrate() [2/2]
template<int dim, class F>
template<class Vector>
◆ order()
template<int dim, class F>
◆ size()
template<int dim, class F>
◆ sizes()
template<int dim, class F>
◆ type()
template<int dim, class F>
◆ dimension
template<int dim, class F>
◆ dimRange
template<int dim, class F>
◆ geometry_
template<int dim, class F>
◆ order_
template<int dim, class F>
The documentation for this class was generated from the following file: