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namespace OpenMD { | 
| 48 | 
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| 49 | 
< | 
  GofRZ::GofRZ(SimInfo* info, const std::string& filename, const std::string& sele1,  | 
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                       const std::string& sele2, RealType len, int nrbins, int nZBins) | 
| 51 | 
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    : RadialDistrFunc(info, filename, sele1, sele2), len_(len), nRBins_(nrbins), nZBins_(nZBins){ | 
| 49 | 
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    GofRZ::GofRZ(SimInfo* info, const std::string& filename, const std::string& sele1,  | 
| 50 | 
> | 
                 const std::string& sele2, RealType len, RealType zlen, int nrbins, int nZBins) | 
| 51 | 
> | 
        : RadialDistrFunc(info, filename, sele1, sele2), len_(len), zLen_(zlen), nRBins_(nrbins), nZBins_(nZBins){ | 
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| 53 | 
< | 
      setOutputName(getPrefix(filename) + ".gofrz"); | 
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> | 
        setOutputName(getPrefix(filename) + ".gofrz"); | 
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| 55 | 
< | 
      deltaR_ = len_ / (double) nRBins_; | 
| 56 | 
< | 
      deltaZ_ = 86.52361692 / (double)nZBins_;    // for solvated_NVT.md4 | 
| 55 | 
> | 
        deltaR_ = len_ / (double) nRBins_; | 
| 56 | 
> | 
        deltaZ_ = zLen_ / (double)nZBins_;    // for solvated_NVT.md4 | 
| 57 | 
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| 58 | 
< | 
      histogram_.resize(nRBins_); | 
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< | 
      avgGofr_.resize(nRBins_); | 
| 60 | 
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      for (int i = 0 ; i < nRBins_; ++i) { | 
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< | 
        histogram_[i].resize(nRBins_); | 
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        avgGofr_[i].resize(nRBins_); | 
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        for (int j = 0 ; j < nZBins_; ++j) { | 
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< | 
        histogram_[i][j].resize(nZBins_); | 
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        avgGofr_[i][j].resize(nZBins_); | 
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< | 
      } | 
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> | 
        histogram_.resize(nRBins_); | 
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        avgGofr_.resize(nRBins_); | 
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        for (int i = 0 ; i < nRBins_; ++i) { | 
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            histogram_[i].resize(nZBins_); | 
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            avgGofr_[i].resize(nZBins_); | 
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        }  | 
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    } | 
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  | 
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  } | 
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< | 
  void GofRZ::preProcess() { | 
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    for (int i = 0; i < avgGofr_[i].size(); ++i) { | 
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      avgGofr_[i].resize(nRBins_); | 
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      for (int j = 0; j < avgGofr_[i][j].size(); ++j) { | 
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      std::fill(avgGofr_[i][j].begin(), avgGofr_[i][j].end(), 0); | 
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      } | 
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    void GofRZ::preProcess() { | 
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        for (int i = 0; i < avgGofr_.size(); ++i) { | 
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            std::fill(avgGofr_[i].begin(), avgGofr_[i].end(), 0); | 
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        } | 
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    } | 
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  } | 
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  void GofRZ::initalizeHistogram() { | 
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    npairs_ = 0; | 
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    for (int i = 0; i < histogram_[i].size(); ++i){ | 
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      histogram_[i].resize(nRBins_); | 
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      for (int j = 0; j < histogram_[i][j].size(); ++j){ | 
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      std::fill(histogram_[i][j].begin(), histogram_[i][j].end(), 0); | 
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      } | 
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    void GofRZ::initalizeHistogram() { | 
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        npairs_ = 0; | 
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        for (int i = 0; i < histogram_.size(); ++i){ | 
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            std::fill(histogram_[i].begin(), histogram_[i].end(), 0); | 
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        } | 
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    } | 
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  } | 
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  void GofRZ::processHistogram() { | 
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    int nPairs = getNPairs(); | 
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    RealType volume = info_->getSnapshotManager()->getCurrentSnapshot()->getVolume(); | 
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    RealType pairDensity = nPairs / volume * 2.0; | 
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    void GofRZ::processHistogram() { | 
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        int nPairs = getNPairs(); | 
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        RealType volume = info_->getSnapshotManager()->getCurrentSnapshot()->getVolume(); | 
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        RealType pairDensity = nPairs / volume * 2.0; | 
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    for(int i = 0 ; i < histogram_[i].size(); ++i){ | 
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        for(int i = 0 ; i < histogram_.size(); ++i){ | 
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      RealType rLower = i * deltaR_; | 
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      RealType rUpper = rLower + deltaR_; | 
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      RealType volSlice = NumericConstant::PI * deltaZ_ * (( rUpper * rUpper ) - ( rLower * rLower )); | 
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      RealType nIdeal = volSlice * pairDensity; | 
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            RealType rLower = i * deltaR_; | 
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            RealType rUpper = rLower + deltaR_; | 
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            RealType volSlice = NumericConstant::PI * deltaZ_ * (( rUpper * rUpper ) - ( rLower * rLower )); | 
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            RealType nIdeal = volSlice * pairDensity; | 
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      for (int j = 0; j < histogram_[i][j].size(); ++j){ | 
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        avgGofr_[i][j] += histogram_[i][j] / nIdeal;     | 
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      } | 
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            for (int j = 0; j < histogram_[i].size(); ++j){ | 
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                avgGofr_[i][j] += histogram_[i][j] / nIdeal;     | 
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            } | 
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        } | 
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    } | 
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  } | 
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> | 
    void GofRZ::collectHistogram(StuntDouble* sd1, StuntDouble* sd2) { | 
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  void GofRZ::collectHistogram(StuntDouble* sd1, StuntDouble* sd2) { | 
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        if (sd1 == sd2) { | 
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            return; | 
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        } | 
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        Vector3d pos1 = sd1->getPos(); | 
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        Vector3d pos2 = sd2->getPos(); | 
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        Vector3d r12 = pos2 - pos1; | 
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        if (usePeriodicBoundaryConditions_) | 
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            currentSnapshot_->wrapVector(r12); | 
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    if (sd1 == sd2) { | 
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      return; | 
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    } | 
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    Vector3d pos1 = sd1->getPos(); | 
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    Vector3d pos2 = sd2->getPos(); | 
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    Vector3d r12 = pos2 - pos1; | 
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    if (usePeriodicBoundaryConditions_) | 
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      currentSnapshot_->wrapVector(r12); | 
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        RealType distance = sqrt(pow(r12.x(), 2) + pow(r12.y(), 2)); | 
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    RealType distance = sqrt(pow(r12.x(), 2) + pow(r12.y(), 2)); | 
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        int whichRBin = distance / deltaR_; | 
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    int whichRBin = distance / deltaR_; | 
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    if (distance <= len_) { | 
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        if (distance <= len_) { | 
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      RealType Z = fabs(r12.z()); | 
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            RealType Z = fabs(r12.z()); | 
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      if (Z <= 86.52361692) { | 
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        int whichZBin = Z / deltaZ_; | 
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            if (Z <= zLen_) { | 
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                int whichZBin = Z / deltaZ_; | 
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        ++histogram_[whichRBin][whichZBin];         | 
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        ++npairs_; | 
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      } | 
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                ++histogram_[whichRBin][whichZBin];         | 
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                ++npairs_; | 
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            } | 
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        } | 
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    } | 
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  } | 
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| 126 | 
< | 
  void GofRZ::writeRdf() { | 
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    std::ofstream rdfStream(outputFilename_.c_str()); | 
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    if (rdfStream.is_open()) { | 
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      rdfStream << "#radial distribution function\n"; | 
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      rdfStream << "#selection1: (" << selectionScript1_ << ")\t"; | 
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      rdfStream << "selection2: (" << selectionScript2_ << ")\n"; | 
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      rdfStream << "#nRBins = " << nRBins_ << "\t maxLen = " << len_ << "deltaR = " << deltaR_ <<"\n"; | 
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      rdfStream << "#nZBins =" << nZBins_ << "\t deltaZ = " << deltaZ_ << "\n"; | 
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      for (int i = 0; i < avgGofr_[i].size(); ++i) { | 
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        RealType r = deltaR_ * (i + 0.5); | 
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    void GofRZ::writeRdf() { | 
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        std::ofstream rdfStream(outputFilename_.c_str()); | 
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        if (rdfStream.is_open()) { | 
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            rdfStream << "#radial distribution function\n"; | 
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            rdfStream << "#selection1: (" << selectionScript1_ << ")\t"; | 
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            rdfStream << "selection2: (" << selectionScript2_ << ")\n"; | 
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            rdfStream << "#nRBins = " << nRBins_ << "\t maxLen = " << len_ << "deltaR = " << deltaR_ <<"\n"; | 
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            rdfStream << "#nZBins =" << nZBins_ << "\t deltaZ = " << deltaZ_ << "\n"; | 
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            for (int i = 0; i < avgGofr_.size(); ++i) { | 
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                RealType r = deltaR_ * (i + 0.5); | 
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| 137 | 
< | 
        for(int j = 0; j < avgGofr_[i][j].size(); ++j) { | 
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          RealType z = deltaZ_ * (j + 0.5); | 
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          rdfStream << avgGofr_[i][j]/nProcessed_ << "\t"; | 
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        } | 
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                for(int j = 0; j < avgGofr_[i].size(); ++j) { | 
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                    RealType z = deltaZ_ * (j + 0.5); | 
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                    rdfStream << avgGofr_[i][j]/nProcessed_ << "\t"; | 
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                } | 
| 141 | 
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        rdfStream << "\n"; | 
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< | 
      } | 
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> | 
                rdfStream << "\n"; | 
| 143 | 
> | 
            } | 
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         | 
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< | 
    } else { | 
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      sprintf(painCave.errMsg, "GofRZ: unable to open %s\n", outputFilename_.c_str()); | 
| 147 | 
< | 
      painCave.isFatal = 1; | 
| 148 | 
< | 
      simError();   | 
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> | 
        } else { | 
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> | 
            sprintf(painCave.errMsg, "GofRZ: unable to open %s\n", outputFilename_.c_str()); | 
| 147 | 
> | 
            painCave.isFatal = 1; | 
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> | 
            simError();   | 
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        } | 
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> | 
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        rdfStream.close(); | 
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    } | 
| 153 | 
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    rdfStream.close(); | 
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  } | 
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} | 
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