SundanceEvalManager.hpp
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00040 /* @HEADER@ */
00041 
00042 #ifndef SUNDANCE_EVALMANAGER_H
00043 #define SUNDANCE_EVALMANAGER_H
00044 
00045 #include "SundanceDefs.hpp"
00046 #include "SundanceEvalContext.hpp"
00047 #include "SundanceAbstractEvalMediator.hpp"
00048 #include "SundanceTempStack.hpp"
00049 #include "SundanceNoncopyable.hpp"
00050 #include "Teuchos_TimeMonitor.hpp"
00051 
00052 namespace Sundance
00053 {
00054 using namespace Sundance;
00055 class CoordExpr;
00056 class MultiIndex;
00057 class DiscreteFuncElement;
00058 
00059 
00060 /**
00061  * EvalManager provides methods for interfacing to the framework
00062  * through an AbstractEvalMediator and managing temporary variables
00063  * through a TempStack.
00064  *
00065  * If no mediator is set, std::string evaluations will be done 
00066  */
00067 class EvalManager : public Noncopyable
00068 {
00069 public:
00070   /** Empty ctor */
00071   EvalManager();
00072 
00073   /** */
00074   void evalCoordExpr(const CoordExpr* expr,
00075     RCP<EvalVector>&  result) const ;
00076 
00077   /** */
00078   void evalCellDiameterExpr(const CellDiameterExpr* expr,
00079     RCP<EvalVector>&  result) const ;
00080 
00081   /** */
00082   void evalCurveNormExpr(const CurveNormExpr* expr,
00083     RCP<EvalVector>&  result) const ;
00084 
00085   /** */
00086   void evalCellVectorExpr(const CellVectorExpr* expr,
00087     RCP<EvalVector>&  result) const ;
00088 
00089   /** */
00090   void evalDiscreteFuncElement(const DiscreteFuncElement* expr,
00091     const Array<MultiIndex>& mi,
00092     Array<RCP<EvalVector> >& result) const ;
00093 
00094   void showResults(std::ostream& os,
00095        const RCP<SparsitySuperset>& sparsity,
00096        const Array<RCP<EvalVector> >& vecResults,
00097        const Array<double>& constantResults) const ;
00098 
00099   /** */
00100   void setMediator(const RCP<AbstractEvalMediator>& med) 
00101     {mediator_ = med;}
00102 
00103   /** */
00104   void setVerb(int verb) ;
00105 
00106 
00107   /** */
00108   int verb() const {return verb_;}
00109 
00110   /** */
00111   void setVecSize(int vecSize) {stack().setVecSize(vecSize);}
00112           
00113 
00114   /** Return a pointer to the mediator. We'll need the
00115    * mediator for computing framework-specific functions.
00116    */
00117   const AbstractEvalMediator* mediator() const {return mediator_.get();}
00118 
00119   /** */
00120   void setRegion(const EvalContext& region)
00121     {region_ = region;}
00122 
00123   /** */
00124   const EvalContext& getRegion() const {return region_;}
00125 
00126   /** */
00127   static TempStack& stack();
00128 
00129   /** */
00130   int getMaxDiffOrder() const ;
00131 
00132 
00133   /** */
00134   RCP<EvalVector> popVector() const ;
00135 
00136   /** */
00137   TEUCHOS_TIMER(coordEvalTimer, "coord function evaluation");
00138 
00139   /** */
00140   TEUCHOS_TIMER(discFuncEvalTimer, "discrete function evaluation");
00141 
00142 private:
00143   int verb_;
00144 
00145   EvalContext region_;
00146 
00147   RCP<AbstractEvalMediator> mediator_;
00148 
00149 };
00150 
00151 }
00152 
00153 #endif

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