BoundaryManager.cc 5.66 KB
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//
// Software License for AMDiS
//
// Copyright (c) 2010 Dresden University of Technology 
// All rights reserved.
// Authors: Simon Vey, Thomas Witkowski et al.
//
// This file is part of AMDiS
//
// See also license.opensource.txt in the distribution.


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#include "FiniteElemSpace.h"
#include "BoundaryManager.h"
#include "DOFIndexed.h"
#include "DOFVector.h"
#include "Traverse.h"
#include "BasisFunction.h"
#include "ElInfo.h"

namespace AMDiS {

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  std::map<BoundaryType, std::vector<BoundaryCondition*> > 
  BoundaryManager::globalBoundaryMap;

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  BoundaryManager::BoundaryManager(const FiniteElemSpace *feSpace)
  {
    allocatedMemoryLocalBounds = feSpace->getBasisFcts()->getNumber();
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    localBound = new BoundaryType[allocatedMemoryLocalBounds];
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  }

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  BoundaryManager::BoundaryManager(BoundaryManager &bm)
  {
    localBCs = bm.localBCs;
    allocatedMemoryLocalBounds = bm.allocatedMemoryLocalBounds;
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    localBound = new BoundaryType[allocatedMemoryLocalBounds];
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  }

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  BoundaryManager::~BoundaryManager()
  {
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    delete [] localBound;
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  }

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  void BoundaryManager::addBoundaryCondition(BoundaryCondition *localBC)
  {
    FUNCNAME("BoundaryManager::addBoundaryCondition()");
  
    BoundaryType type = localBC->getBoundaryType();
    TEST_EXIT(localBCs[type] == NULL)
      ("There is already a condition for this type %d.\n",type);
    localBCs[type] = localBC;
    
    std::vector<BoundaryCondition*>& boundMap = globalBoundaryMap[type];
    boundMap.push_back(localBC);
  }


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  double BoundaryManager::boundResidual(ElInfo *elInfo, 
					DOFMatrix *matrix,
					const DOFVectorBase<double> *dv)
  {
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    double result = 0.0;
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    for (BoundaryIndexMap::iterator it = localBCs.begin(); it != localBCs.end(); ++it)
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      if ((*it).second)
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	result += (*it).second->boundResidual(elInfo, matrix, dv);
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    return result;
  }

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  void BoundaryManager::fillBoundaryConditions(ElInfo *elInfo, 
					       DOFVectorBase<double> *vec)
  {
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    if (localBCs.size() > 0) {
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      const FiniteElemSpace *feSpace = vec->getFeSpace();
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      const BasisFunction *basisFcts = feSpace->getBasisFcts();
      int nBasFcts = basisFcts->getNumber();
      dofVec.resize(nBasFcts);
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      // get boundaries of all DOFs
      basisFcts->getBound(elInfo, localBound);
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      // get dof indices
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      basisFcts->getLocalIndices(elInfo->getElement(),
				 feSpace->getAdmin(), 
				 dofVec);
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      // apply non dirichlet boundary conditions
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      for (BoundaryIndexMap::iterator it = localBCs.begin();
	     it != localBCs.end(); ++it)
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	if ((*it).second && !(*it).second->isDirichlet())
	  (*it).second->fillBoundaryCondition(vec, elInfo, &dofVec[0], 
					      localBound, nBasFcts);
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      // apply dirichlet boundary conditions
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      for (BoundaryIndexMap::iterator it = localBCs.begin(); 
	   it != localBCs.end(); ++it)
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	if ((*it).second && (*it).second->isDirichlet())
	  (*it).second->fillBoundaryCondition(vec, elInfo, &dofVec[0], 
					      localBound, nBasFcts);
    }
  }
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  void BoundaryManager::fillBoundaryConditions(ElInfo *elInfo, DOFMatrix *mat)
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  {
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    if (localBCs.size() <= 0)
      return;
      
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    const FiniteElemSpace *feSpace = mat->getRowFeSpace();
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    const BasisFunction *basisFcts = feSpace->getBasisFcts();
    int nBasFcts = basisFcts->getNumber();
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          dofVec.resize(nBasFcts);
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    // get boundaries of all DOFs
    basisFcts->getBound(elInfo, localBound);
    
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    // get DOF indices
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    basisFcts->getLocalIndices(elInfo->getElement(), feSpace->getAdmin(), dofVec);
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    // apply non dirichlet boundary conditions
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    for (BoundaryIndexMap::iterator it = localBCs.begin(); it != localBCs.end(); ++it)
      if ((*it).second && !(*it).second->isDirichlet())
	(*it).second->fillBoundaryCondition(mat, elInfo, &dofVec[0], 
					    localBound, nBasFcts);
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    // apply dirichlet boundary conditions
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    for (BoundaryIndexMap::iterator it = localBCs.begin(); it != localBCs.end(); ++it)
      if ((*it).second && (*it).second->isDirichlet())
	(*it).second->fillBoundaryCondition(mat, elInfo, &dofVec[0], 
					    localBound, nBasFcts);
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  }

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  void BoundaryManager::initMatrix(DOFMatrix *matrix)
  {
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    for (BoundaryIndexMap::iterator it = localBCs.begin(); it != localBCs.end(); ++it)
      if ((*it).second && !(*it).second->isDirichlet())
	(*it).second->initMatrix(matrix);
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    for (BoundaryIndexMap::iterator it = localBCs.begin(); it != localBCs.end(); ++it)
      if ((*it).second && (*it).second->isDirichlet())
	(*it).second->initMatrix(matrix);
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  }

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  void BoundaryManager::exitMatrix(DOFMatrix *matrix)
  {
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    for (BoundaryIndexMap::iterator it = localBCs.begin(); it != localBCs.end(); ++it)
      if ((*it).second && !(*it).second->isDirichlet())
	(*it).second->exitMatrix(matrix);
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    for (BoundaryIndexMap::iterator it = localBCs.begin(); it != localBCs.end(); ++it)
      if ((*it).second && (*it).second->isDirichlet())
	(*it).second->exitMatrix(matrix);
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  }

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  void BoundaryManager::initVector(DOFVectorBase<double> *vector)
  {
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    for (BoundaryIndexMap::iterator it = localBCs.begin(); it != localBCs.end(); ++it)
      if ((*it).second && !(*it).second->isDirichlet())
	(*it).second->initVector(vector);
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    for (BoundaryIndexMap::iterator it = localBCs.begin(); it != localBCs.end(); ++it)
      if ((*it).second && (*it).second->isDirichlet())
	(*it).second->initVector(vector);
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  }

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  void BoundaryManager::exitVector(DOFVectorBase<double> *vector)
  {
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    for (BoundaryIndexMap::iterator it = localBCs.begin(); it != localBCs.end(); ++it)
      if ((*it).second && !(*it).second->isDirichlet())
	(*it).second->exitVector(vector);
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    for (BoundaryIndexMap::iterator it = localBCs.begin(); it != localBCs.end(); ++it)
      if ((*it).second && (*it).second->isDirichlet())
	(*it).second->exitVector(vector);
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  }

}