43 #ifndef __Panzer_CellExtreme_impl_hpp__ 
   44 #define __Panzer_CellExtreme_impl_hpp__ 
   48 #include "Intrepid2_FunctionSpaceTools.hpp" 
   51 #include "Phalanx_DataLayout_MDALayout.hpp" 
   56 template<
typename EvalT, 
typename Traits>
 
   66   if(p.
isType<
bool>(
"Use Max")) 
 
   73   extreme = PHX::MDField<ScalarT>( p.
get<std::string>(
"Extreme Name"), dl_cell);
 
   74   scalar = PHX::MDField<const ScalarT,Cell,IP>( p.
get<std::string>(
"Field Name"), ir->dl_scalar);
 
   76   this->addEvaluatedField(
extreme);
 
   77   this->addDependentField(
scalar);
 
   80   if(p.
isType<
double>(
"Multiplier"))
 
   84     const std::vector<std::string>& field_multiplier_names = 
 
   87     for (std::vector<std::string>::const_iterator name = 
 
   88      field_multiplier_names.begin(); 
 
   89    name != field_multiplier_names.end(); ++name) {
 
   95   for (
typename std::vector<PHX::MDField<const ScalarT,Cell,IP> >::iterator 
field = 
field_multipliers.begin();
 
   97     this->addDependentField(*
field);
 
   99   std::string n = 
"CellExtreme: " + 
extreme.fieldTag().name();
 
  104 template<
typename EvalT, 
typename Traits>
 
  111   num_qp = scalar.extent(1);
 
  116 template<
typename EvalT, 
typename Traits>
 
  122   for (index_t cell = 0; cell < workset.
num_cells; ++cell) {
 
  124     for (std::size_t qp = 0; qp < num_qp; ++qp) {
 
  126       for (
typename std::vector<PHX::MDField<const ScalarT,Cell,IP> >::iterator 
field = field_multipliers.begin();
 
  128         current *= (*
field)(cell,qp);  
 
  132         extreme(cell) = current;
 
  136         extreme(cell) = extreme(cell)<current ? current : extreme(cell);
 
  138         extreme(cell) = extreme(cell)>current ? current : extreme(cell);
 
  144 template<
typename EvalT, 
typename TRAITS>
 
  149   p->
set<std::string>(
"Extreme Name", 
"?");
 
  150   p->
set<std::string>(
"Field Name", 
"?");
 
  154   p->
set<
bool>(
"Use Max", 
true);
 
  155   p->
set<
double>(
"Multiplier", 1.0);
 
  158   p->
set(
"Field Multipliers", fms);
 
void evaluateFields(typename Traits::EvalData d)
 
T & get(const std::string &name, T def_value)
 
ParameterList & set(std::string const &name, T const &value, std::string const &docString="", RCP< const ParameterEntryValidator > const &validator=null)
 
typename EvalT::ScalarT ScalarT
 
CellExtreme(const Teuchos::ParameterList &p)
 
std::vector< PHX::MDField< const ScalarT, Cell, IP > > field_multipliers
 
std::vector< std::string >::size_type getIntegrationRuleIndex(int ir_degree, const panzer::Workset &workset, WorksetDetailsAccessor &wda)
 
Teuchos::RCP< Teuchos::ParameterList > getValidParameters() const 
 
double multiplier
The scalar multiplier out in front of the integral ( ). 
 
TEUCHOS_DEPRECATED RCP< T > rcp(T *p, Dealloc_T dealloc, bool owns_mem)
 
void postRegistrationSetup(typename Traits::SetupData d, PHX::FieldManager< Traits > &fm)
 
PHX::MDField< ScalarT > extreme
 
void validateParameters(ParameterList const &validParamList, int const depth=1000, EValidateUsed const validateUsed=VALIDATE_USED_ENABLED, EValidateDefaults const validateDefaults=VALIDATE_DEFAULTS_ENABLED) const 
 
PHX::MDField< ScalarT, panzer::Cell, panzer::BASIS > field
A field to which we'll contribute, or in which we'll store, the result of computing this integral...
 
bool isType(const std::string &name) const 
 
PHX::MDField< const ScalarT, Cell, IP > scalar
 
Teuchos::RCP< const std::vector< panzer::Workset > > worksets_