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#include <mpi.h> |
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#endif |
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#ifdef _MSC_VER |
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#define isnan(x) _isnan((x)) |
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#define isinf(x) (!_finite(x) && !_isnan(x)) |
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#endif |
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#define HONKING_LARGE_VALUE 1.0e10 |
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using namespace std; |
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failTrialCount_ = 0; |
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failRootCount_ = 0; |
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|
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int seedValue; |
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Globals * simParams = info->getSimParams(); |
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RNEMDParameters* rnemdParams = simParams->getRNEMDParameters(); |
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z.title = "Z"; |
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z.dataType = "RealType"; |
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z.accumulator.reserve(nBins_); |
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for (unsigned int i = 0; i < nBins_; i++) |
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for (int i = 0; i < nBins_; i++) |
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z.accumulator.push_back( new Accumulator() ); |
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data_[Z] = z; |
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outputMap_["Z"] = Z; |
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temperature.title = "Temperature"; |
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temperature.dataType = "RealType"; |
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temperature.accumulator.reserve(nBins_); |
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for (unsigned int i = 0; i < nBins_; i++) |
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for (int i = 0; i < nBins_; i++) |
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temperature.accumulator.push_back( new Accumulator() ); |
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data_[TEMPERATURE] = temperature; |
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outputMap_["TEMPERATURE"] = TEMPERATURE; |
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velocity.title = "Velocity"; |
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velocity.dataType = "Vector3d"; |
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velocity.accumulator.reserve(nBins_); |
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for (unsigned int i = 0; i < nBins_; i++) |
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for (int i = 0; i < nBins_; i++) |
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velocity.accumulator.push_back( new VectorAccumulator() ); |
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data_[VELOCITY] = velocity; |
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outputMap_["VELOCITY"] = VELOCITY; |
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density.title = "Density"; |
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density.dataType = "RealType"; |
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density.accumulator.reserve(nBins_); |
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for (unsigned int i = 0; i < nBins_; i++) |
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for (int i = 0; i < nBins_; i++) |
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density.accumulator.push_back( new Accumulator() ); |
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data_[DENSITY] = density; |
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outputMap_["DENSITY"] = DENSITY; |
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int selei; |
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StuntDouble* sd; |
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int idx; |
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RealType min_val; |
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bool min_found = false; |
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for (sd = seleMan_.beginSelected(selei); sd != NULL; |
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sd = seleMan_.nextSelected(selei)) { |
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idx = sd->getLocalIndex(); |
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Vector3d pos = sd->getPos(); |
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// wrap the stuntdouble's position back into the box: |
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} |
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} |
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#ifdef IS_MPI |
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int nProc, worldRank; |
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#ifdef IS_MPI |
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int worldRank = MPI::COMM_WORLD.Get_rank(); |
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nProc = MPI::COMM_WORLD.Get_size(); |
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worldRank = MPI::COMM_WORLD.Get_rank(); |
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bool my_min_found = min_found; |
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bool my_max_found = max_found; |
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int selei; |
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StuntDouble* sd; |
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int idx; |
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vector<StuntDouble*> hotBin, coldBin; |
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for (sd = seleMan_.beginSelected(selei); sd != NULL; |
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sd = seleMan_.nextSelected(selei)) { |
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idx = sd->getLocalIndex(); |
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Vector3d pos = sd->getPos(); |
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// wrap the stuntdouble's position back into the box: |
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int selei; |
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StuntDouble* sd; |
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int idx; |
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vector<StuntDouble*> hotBin, coldBin; |
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for (sd = seleMan_.beginSelected(selei); sd != NULL; |
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sd = seleMan_.nextSelected(selei)) { |
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idx = sd->getLocalIndex(); |
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Vector3d pos = sd->getPos(); |
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// wrap the stuntdouble's position back into the box: |
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int selei(0); |
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StuntDouble* sd; |
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int idx; |
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vector<RealType> binMass(nBins_, 0.0); |
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vector<RealType> binPx(nBins_, 0.0); |
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*/ |
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for (sd = seleMan_.beginSelected(selei); sd != NULL; |
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sd = seleMan_.nextSelected(selei)) { |
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sd = seleMan_.nextSelected(selei)) { |
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idx = sd->getLocalIndex(); |
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Vector3d pos = sd->getPos(); |
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// wrap the stuntdouble's position back into the box: |
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rnemdFile_.precision(8); |
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for (unsigned int j = 0; j < nBins_; j++) { |
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for (int j = 0; j < nBins_; j++) { |
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for (unsigned int i = 0; i < outputMask_.size(); ++i) { |
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if (outputMask_[i]) { |
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rnemdFile_ << "#######################################################\n"; |
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for (unsigned int j = 0; j < nBins_; j++) { |
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for (int j = 0; j < nBins_; j++) { |
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rnemdFile_ << "#"; |
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for (unsigned int i = 0; i < outputMask_.size(); ++i) { |
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if (outputMask_[i]) { |
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void RNEMD::writeReal(int index, unsigned int bin) { |
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if (!doRNEMD_) return; |
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assert(index >=0 && index < ENDINDEX); |
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assert(bin < nBins_); |
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assert(int(bin) < nBins_); |
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RealType s; |
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data_[index].accumulator[bin]->getAverage(s); |
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dynamic_cast<Accumulator *>(data_[index].accumulator[bin])->getAverage(s); |
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if (! isinf(s) && ! isnan(s)) { |
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rnemdFile_ << "\t" << s; |
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void RNEMD::writeVector(int index, unsigned int bin) { |
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if (!doRNEMD_) return; |
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assert(index >=0 && index < ENDINDEX); |
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assert(bin < nBins_); |
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assert(int(bin) < nBins_); |
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Vector3d s; |
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dynamic_cast<VectorAccumulator*>(data_[index].accumulator[bin])->getAverage(s); |
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if (isinf(s[0]) || isnan(s[0]) || |
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void RNEMD::writeRealStdDev(int index, unsigned int bin) { |
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if (!doRNEMD_) return; |
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assert(index >=0 && index < ENDINDEX); |
1764 |
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assert(bin < nBins_); |
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assert(int(bin) < nBins_); |
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RealType s; |
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1767 |
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data_[index].accumulator[bin]->getStdDev(s); |
1767 |
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dynamic_cast<Accumulator *>(data_[index].accumulator[bin])->getStdDev(s); |
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if (! isinf(s) && ! isnan(s)) { |
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rnemdFile_ << "\t" << s; |
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void RNEMD::writeVectorStdDev(int index, unsigned int bin) { |
1781 |
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if (!doRNEMD_) return; |
1782 |
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assert(index >=0 && index < ENDINDEX); |
1783 |
< |
assert(bin < nBins_); |
1783 |
> |
assert(int(bin) < nBins_); |
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Vector3d s; |
1785 |
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dynamic_cast<VectorAccumulator*>(data_[index].accumulator[bin])->getStdDev(s); |
1786 |
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if (isinf(s[0]) || isnan(s[0]) || |