6#ifndef DUNE_LOCALFUNCTIONS_COMMON_LOCALTOGLOBALADAPTORS_HH
7#define DUNE_LOCALFUNCTIONS_COMMON_LOCALTOGLOBALADAPTORS_HH
12#include <dune/common/fmatrix.hh>
13#include <dune/common/fvector.hh>
14#include <dune/common/typetraits.hh>
16#include <dune/geometry/type.hh>
29 template<
class LocalBasisTraits, std::
size_t dimDomainGlobal_>
33 static const std::size_t dimDomainGlobal = dimDomainGlobal_;
35 typedef FieldVector<DomainField, dimDomainGlobal> DomainGlobal;
41 typedef FieldMatrix<RangeField, dimRange, dimDomainGlobal>
Jacobian;
64 template<
class LocalBasis,
class Geometry>
66 static_assert(LocalBasis::Traits::dimRange == 1,
67 "ScalarLocalToGlobalBasisAdaptor can only wrap a "
68 "scalar local basis.");
69 static_assert((std::is_same<
typename LocalBasis::Traits::DomainFieldType,
70 typename Geometry::ctype>::value),
71 "ScalarLocalToGlobalBasisAdaptor: LocalBasis must use "
72 "the same ctype as Geometry");
74 (
static_cast<std::size_t
>(LocalBasis::Traits::dimDomain) ==
75 static_cast<std::size_t
>(Geometry::mydimension),
76 "ScalarLocalToGlobalBasisAdaptor: LocalBasis domain dimension must "
77 "match local dimension of Geometry");
79 const LocalBasis& localBasis;
84 Geometry::coorddimension>
Traits;
97 const Geometry& geometry_) :
98 localBasis(localBasis_), geometry(geometry_)
101 std::size_t size()
const {
return localBasis.size(); }
111 if(geometry.affine())
113 return localBasis.order();
116 return localBasis.order() + Traits::dimDomainGlobal - 1;
119 void evaluateFunction(
const typename Traits::DomainLocal& in,
120 std::vector<typename Traits::Range>& out)
const
122 localBasis.evaluateFunction(in, out);
125 void evaluateJacobian(
const typename Traits::DomainLocal& in,
126 std::vector<typename Traits::Jacobian>& out)
const
128 std::vector<typename LocalBasis::Traits::JacobianType>
129 localJacobian(size());
130 localBasis.evaluateJacobian(in, localJacobian);
132 const typename Geometry::JacobianInverseTransposed &geoJacobian =
133 geometry.jacobianInverseTransposed(in);
136 for(std::size_t i = 0; i < size(); ++i)
137 geoJacobian.mv(localJacobian[i][0], out[i][0]);
148 template<
class LocalInterpolation,
class Traits_>
150 const LocalInterpolation& localInterpolation;
165 (
const LocalInterpolation& localInterpolation_) :
166 localInterpolation(localInterpolation_)
169 template<
class Function,
class Coeff>
170 void interpolate(
const Function& function, std::vector<Coeff>& out)
const
171 { localInterpolation.interpolate(function, out); }
186 template<
class LocalFiniteElement,
class Geometry>
193 Traits::LocalBasisType, Geometry> Basis;
195 Traits::LocalInterpolationType,
typename Basis::Traits>
197 typedef typename LocalFiniteElement::Traits::LocalCoefficientsType
202 const LocalFiniteElement &localFE;
218 (
const LocalFiniteElement& localFE_,
const Geometry &geometry) :
220 basis_(localFE.localBasis(), geometry),
221 interpolation_(localFE.localInterpolation())
224 const typename Traits::Basis& basis()
const {
return basis_; }
225 const typename Traits::Interpolation& interpolation()
const
226 {
return interpolation_; }
227 const typename Traits::Coefficients& coefficients()
const
228 {
return localFE.localCoefficients(); }
229 GeometryType type()
const {
return localFE.type(); }
243 template<
class LocalFiniteElement,
class Geometry>
245 const LocalFiniteElement& localFE;
261 (
const LocalFiniteElement &localFE_) : localFE(localFE_) {}
ImplementationDefined FiniteElement
Type of the finite element.
Definition: interface.hh:126
Convert a local interpolation into a global interpolation.
Definition: localtoglobaladaptors.hh:149
LocalToGlobalInterpolationAdaptor(const LocalInterpolation &localInterpolation_)
construct a LocalToGlobalInterpolationAdaptor
Definition: localtoglobaladaptors.hh:165
Convert a simple scalar local basis into a global basis.
Definition: localtoglobaladaptors.hh:65
std::size_t order() const
return maximum polynomial order of the base function
Definition: localtoglobaladaptors.hh:110
ScalarLocalToGlobalBasisAdaptor(const LocalBasis &localBasis_, const Geometry &geometry_)
construct a ScalarLocalToGlobalBasisAdaptor
Definition: localtoglobaladaptors.hh:96
Factory for ScalarLocalToGlobalFiniteElementAdaptor objects.
Definition: localtoglobaladaptors.hh:244
const FiniteElement make(const Geometry &geometry)
construct ScalarLocalToGlobalFiniteElementAdaptor
Definition: localtoglobaladaptors.hh:274
ScalarLocalToGlobalFiniteElementAdaptorFactory(const LocalFiniteElement &localFE_)
construct a ScalarLocalToGlobalFiniteElementAdaptorFactory
Definition: localtoglobaladaptors.hh:261
types of domain and range
Definition: interface.hh:188
ImplementationDefined Jacobian
Jacobian properties.
Definition: interface.hh:222
D DomainType
domain type
Definition: localbasis.hh:43
RF RangeFieldType
Export type for range field.
Definition: localbasis.hh:46
static constexpr int dimRange
dimension of the range
Definition: localbasis.hh:49
DF DomainFieldType
Export type for domain field.
Definition: localbasis.hh:37
static constexpr int dimDomain
dimension of the domain
Definition: localbasis.hh:40
R RangeType
range type
Definition: localbasis.hh:52
Traits class for local-to-global basis adaptors.
Definition: localtoglobaladaptors.hh:30
Convert a simple scalar local finite element into a global finite element.
Definition: localtoglobaladaptors.hh:187
ScalarLocalToGlobalFiniteElementAdaptor(const LocalFiniteElement &localFE_, const Geometry &geometry)
construct a ScalarLocalToGlobalFiniteElementAdaptor
Definition: localtoglobaladaptors.hh:218