SundanceCurveNormEvaluator.cpp
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00004 //                             Sundance
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00039 
00040 /* @HEADER@ */
00041 
00042 #include "SundanceCurveNormEvaluator.hpp"
00043 #include "SundanceSubtypeEvaluator.hpp"
00044 #include "SundanceEvalManager.hpp"
00045 #include "SundanceCurveNormExpr.hpp"
00046 #include "PlayaExceptions.hpp"
00047 #include "SundanceSet.hpp"
00048 #include "PlayaTabs.hpp"
00049 #include "SundanceOut.hpp"
00050 
00051 using namespace Sundance;
00052 using namespace Teuchos;
00053 
00054 
00055 CurveNormEvaluator::CurveNormEvaluator(
00056   const CurveNormExpr* expr,
00057   const EvalContext& context)
00058   : SubtypeEvaluator<CurveNormExpr>(expr, context),
00059     stringRep_(expr->toString())
00060 {
00061 
00062   Tabs tabs;
00063   int verb = context.setupVerbosity();
00064   SUNDANCE_MSG1(verb, tabs << "initializing cell diameter expr evaluator for " 
00065                     << expr->toString());
00066   SUNDANCE_MSG2(verb, tabs << "return sparsity " << std::endl << *(this->sparsity)());
00067 
00068   TEUCHOS_TEST_FOR_EXCEPTION(this->sparsity()->numDerivs() > 1, std::logic_error,
00069                      "CurveNormEvaluator ctor found a sparsity table "
00070                      "with more than one entry. The bad sparsity table is "
00071                      << *(this->sparsity)());
00072 
00073   /* 
00074    * There is only one possible entry in the nozeros table for a
00075    * cell diameter expression: a zeroth derivative.
00076    */
00077   
00078   for (int i=0; i<this->sparsity()->numDerivs(); i++)
00079     {
00080       const MultipleDeriv& d = this->sparsity()->deriv(i);
00081 
00082       TEUCHOS_TEST_FOR_EXCEPTION(d.order()!=0, std::logic_error,
00083                          "CurveNormEvaluator ctor found an entry in the "
00084                          "sparsity superset that is not a zeroth-order derivative. "
00085                          "The bad entry is " << this->sparsity()->deriv(i) 
00086                          << ". The superset is " 
00087                          << *(this->sparsity)());
00088       addVectorIndex(i, 0);
00089     }
00090 }
00091 
00092 
00093 
00094 void CurveNormEvaluator::internalEval(const EvalManager& mgr,
00095   Array<double>& constantResults,
00096   Array<RCP<EvalVector> >& vectorResults) const 
00097 {
00098   Tabs tabs(0);
00099 
00100   SUNDANCE_MSG2(mgr.verb(), tabs << "CurveNormEvaluator::eval() expr="
00101     << expr()->toString());
00102 
00103   if (mgr.verb() > 2)
00104     {
00105       Out::os() << tabs << "sparsity = " 
00106                 << std::endl << tabs << *(this->sparsity)() << std::endl;
00107     }
00108 
00109   if (this->sparsity()->numDerivs() > 0)
00110     {
00111       vectorResults.resize(1);
00112       vectorResults[0] = mgr.popVector();
00113       SUNDANCE_MSG3(mgr.verb(), tabs << "forwarding to evaluation manager");
00114 
00115       mgr.evalCurveNormExpr(expr(), vectorResults[0]);
00116 
00117       mgr.stack().setVecSize(vectorResults[0]->length());
00118       if (EvalVector::shadowOps()) vectorResults[0]->setString(stringRep_);
00119     }
00120 
00121   if (mgr.verb() > 1)
00122     {
00123       Out::os() << tabs << "results " << std::endl;
00124       mgr.showResults(Out::os(), this->sparsity(), vectorResults,
00125                             constantResults);
00126     }
00127 }
00128 

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