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evaluators
Panzer_ScalarToVector_impl.hpp
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// @HEADER
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// ***********************************************************************
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//
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// Panzer: A partial differential equation assembly
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// engine for strongly coupled complex multiphysics systems
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// Copyright (2011) Sandia Corporation
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//
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// Under the terms of Contract DE-AC04-94AL85000 with Sandia Corporation,
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// the U.S. Government retains certain rights in this software.
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//
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// Redistribution and use in source and binary forms, with or without
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// modification, are permitted provided that the following conditions are
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// met:
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//
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// 1. Redistributions of source code must retain the above copyright
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// notice, this list of conditions and the following disclaimer.
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//
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// 2. Redistributions in binary form must reproduce the above copyright
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// notice, this list of conditions and the following disclaimer in the
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// documentation and/or other materials provided with the distribution.
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//
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// 3. Neither the name of the Corporation nor the names of the
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// contributors may be used to endorse or promote products derived from
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// this software without specific prior written permission.
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//
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// THIS SOFTWARE IS PROVIDED BY SANDIA CORPORATION "AS IS" AND ANY
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// EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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// IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
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// PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL SANDIA CORPORATION OR THE
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// CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
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// EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
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// PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
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// PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
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// LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
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// NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
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// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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//
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// Questions? Contact Roger P. Pawlowski (rppawlo@sandia.gov) and
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// Eric C. Cyr (eccyr@sandia.gov)
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// ***********************************************************************
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// @HEADER
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#ifndef PANZER_SCALAR_TO_VECTOR_IMPL_HPP
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#define PANZER_SCALAR_TO_VECTOR_IMPL_HPP
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#include <string>
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namespace
panzer
{
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//**********************************************************************
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template
<
typename
EvalT,
typename
Traits>
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ScalarToVector<EvalT, Traits>::
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ScalarToVector
(
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const
Teuchos::ParameterList& p)
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{
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Teuchos::RCP<PHX::DataLayout> scalar_dl =
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p.get< Teuchos::RCP<PHX::DataLayout> >(
"Data Layout Scalar"
);
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Teuchos::RCP<PHX::DataLayout> vector_dl =
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p.get< Teuchos::RCP<PHX::DataLayout> >(
"Data Layout Vector"
);
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const
std::vector<std::string>& scalar_names =
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*(p.get< Teuchos::RCP<const std::vector<std::string> > >(
"Scalar Names"
));
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scalar_fields
.resize(scalar_names.size());
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for
(std::size_t i=0; i < scalar_names.size(); ++i)
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scalar_fields
[i] =
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PHX::MDField<const ScalarT,Cell,Point>(scalar_names[i], scalar_dl);
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vector_field
=
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PHX::MDField<ScalarT,Cell,Point,Dim>(p.get<std::string>
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(
"Vector Name"
), vector_dl);
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for
(std::size_t i=0; i <
scalar_fields
.size(); ++i)
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this->addDependentField(
scalar_fields
[i]);
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this->addEvaluatedField(
vector_field
);
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std::string n =
"ScalarToVector: "
+
vector_field
.fieldTag().name();
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this->setName(n);
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}
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//**********************************************************************
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template<typename EvalT, typename Traits> \
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ScalarToVector<EvalT,Traits>::
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ScalarToVector(
const
std::vector<PHX::Tag<ScalarT>> & input,
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const
PHX::FieldTag & output)
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{
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// setup the fields
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vector_field
= output;
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scalar_fields
.resize(input.size());
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for
(std::size_t i=0;i<input.size();i++)
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scalar_fields
[i] = input[i];
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// add dependent/evaluate fields
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this->addEvaluatedField(
vector_field
);
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for
(std::size_t i=0; i <
scalar_fields
.size(); ++i)
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this->addDependentField(
scalar_fields
[i]);
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// name array
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std::string n =
"ScalarToVector: "
+
vector_field
.fieldTag().name();
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this->setName(n);
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}
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//**********************************************************************
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template
<
typename
EvalT,
typename
Traits>
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void
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ScalarToVector<EvalT, Traits>::
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postRegistrationSetup
(
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typename
Traits::SetupData
/* worksets */
,
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PHX::FieldManager<Traits>
& fm)
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{
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// Convert std::vector to PHX::View for use on device
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internal_scalar_fields
= PHX::View<KokkosScalarFields_t*>(
"ScalarToVector::internal_scalar_fields"
,
scalar_fields
.size());
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for
(std::size_t i=0; i <
scalar_fields
.size(); ++i)
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internal_scalar_fields
(i) =
scalar_fields
[i].get_static_view();
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}
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//**********************************************************************
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template
<
typename
EvalT,
typename
Traits>
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void
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ScalarToVector<EvalT, Traits>::
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evaluateFields
(
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typename
Traits::EvalData
workset)
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{
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using
Scalar =
typename
EvalT::ScalarT;
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// Iteration bounds
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const
int
num_points =
vector_field
.extent_int(1);
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const
int
num_vector_scalars =
vector_field
.extent_int(2);
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const
int
num_scalars = std::min(
internal_scalar_fields
.extent_int(0),
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num_vector_scalars);
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// Local copies to prevent passing (*this) to device code
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auto
vector =
vector_field
;
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auto
scalars =
internal_scalar_fields
;
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// Loop over cells, points, scalars
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Kokkos::parallel_for (workset.
num_cells
,KOKKOS_LAMBDA (
const
int
cell){
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for
(
int
pt = 0; pt < num_points; ++pt){
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// Copy over scalars
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for
(
int
sc = 0; sc < num_scalars; ++sc)
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vector(cell,pt,sc) = scalars(sc)(cell,pt);
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// Missing scalars are filled with zero
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for
(
int
sc = num_scalars; sc < num_vector_scalars; ++sc)
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vector(cell,pt,sc) = Scalar(0);
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}
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});
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}
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//**********************************************************************
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}
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#endif
PHX::FieldManager
Definition
Panzer_BCStrategy_Base.hpp:53
panzer::ScalarToVector::ScalarToVector
ScalarToVector(const Teuchos::ParameterList &p)
Definition
Panzer_ScalarToVector_impl.hpp:53
panzer::ScalarToVector::evaluateFields
void evaluateFields(typename Traits::EvalData d)
Definition
Panzer_ScalarToVector_impl.hpp:126
panzer::ScalarToVector::postRegistrationSetup
void postRegistrationSetup(typename Traits::SetupData d, PHX::FieldManager< Traits > &fm)
Definition
Panzer_ScalarToVector_impl.hpp:112
panzer::ScalarToVector::internal_scalar_fields
PHX::View< KokkosScalarFields_t * > internal_scalar_fields
Definition
Panzer_ScalarToVector_decl.hpp:82
panzer::ScalarToVector::scalar_fields
std::vector< PHX::MDField< const ScalarT, Cell, Point > > scalar_fields
Definition
Panzer_ScalarToVector_decl.hpp:77
panzer::ScalarToVector::vector_field
PHX::MDField< ScalarT, Cell, Point, Dim > vector_field
Definition
Panzer_ScalarToVector_decl.hpp:78
panzer::WorksetDetails::num_cells
int num_cells
DEPRECATED - use: numCells().
Definition
Panzer_Workset.hpp:116
panzer
Computes .
Definition
Panzer_BasisValues_Evaluator_decl.hpp:54
panzer::Traits::EvalData
const panzer::Workset & EvalData
Definition
Panzer_Traits.hpp:129
panzer::Traits::SetupData
const SD & SetupData
Definition
Panzer_Traits.hpp:127
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