[14de469] | 1 | /** \file analyzer.cpp
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| 2 | *
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| 3 | * Takes evaluated fragments (energy and forces) and does evaluation of how sensible the BOSSANOVA
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| 4 | * approach was, e.g. in the decay of the many-body-contributions.
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| 5 | *
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| 6 | */
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| 7 |
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| 8 | //============================ INCLUDES ===========================
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| 9 |
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| 10 | #include "helpers.hpp"
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| 11 | #include "parser.hpp"
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| 12 | #include "datacreator.hpp"
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| 13 |
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| 14 |
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| 15 | //============================== MAIN =============================
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| 16 |
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| 17 | int main(int argc, char **argv)
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| 18 | {
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| 19 | EnergyMatrix Energy;
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| 20 | ForceMatrix Force;
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| 21 | MatrixContainer Time;
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| 22 | EnergyMatrix EnergyFragments;
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| 23 | ForceMatrix ForceFragments;
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| 24 | KeySetsContainer KeySet;
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| 25 | stringstream prefix;
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| 26 | ofstream output;
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| 27 | ofstream output2;
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| 28 | ofstream output3;
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| 29 | ofstream output4;
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| 30 | stringstream filename;
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| 31 | stringstream line;
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| 32 | time_t t = time(NULL);
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| 33 | struct tm *ts = localtime(&t);
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| 34 | char *datum = asctime(ts);
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| 35 | stringstream Orderxrange;
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| 36 | stringstream Fragmentxrange;
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| 37 |
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| 38 | cout << "ANOVA Analyzer" << endl;
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| 39 | cout << "==============" << endl;
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| 40 |
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| 41 | // Get the command line options
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| 42 | if (argc < 4) {
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| 43 | cout << "Usage: " << argv[0] << " <inputdir> <prefix> <outputdir>" << endl;
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| 44 | cout << "<inputdir>\ttherein the output of a molecuilder fragmentation is expected, each fragment with a subdir containing an energy.all and a forces.all file." << endl;
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| 45 | cout << "<prefix>\tprefix of energy and forces file." << endl;
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| 46 | cout << "<outputdir>\tcreated plotfiles and datafiles are placed into this directory " << endl;
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| 47 | return 1;
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| 48 | }
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| 49 |
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| 50 | // Test the given directory
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| 51 | if (!TestParams(argc, argv))
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| 52 | return 1;
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| 53 |
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| 54 | // +++++++++++++++++ PARSING +++++++++++++++++++++++++++++++
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| 55 |
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| 56 | // ------------- Parse through all Fragment subdirs --------
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| 57 | if (!Energy.ParseMatrix(argv[1], argv[2], EnergySuffix,0,0)) return 1;
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| 58 | if (!Force.ParseMatrix(argv[1], argv[2], ForcesSuffix,0,0)) return 1;
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| 59 | if (!Time.ParseMatrix(argv[1], argv[2], TimeSuffix, 10,1)) return 1;
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| 60 |
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| 61 | // ---------- Parse the TE Factors into an array -----------------
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| 62 | if (!Energy.ParseIndices()) return 1;
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| 63 |
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| 64 | // ---------- Parse the Force indices into an array ---------------
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| 65 | if (!Force.ParseIndices(argv[1])) return 1;
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| 66 |
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| 67 | // ---------- Parse the KeySets into an array ---------------
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| 68 | if (!KeySet.ParseKeySets(argv[1], Force.RowCounter, Force.MatrixCounter)) return 1;
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| 69 | if (!KeySet.ParseManyBodyTerms()) return 1;
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| 70 | if (!EnergyFragments.ParseMatrix(argv[1], argv[2], EnergyFragmentSuffix,0,0)) return 1;
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| 71 | if (!ForceFragments.ParseMatrix(argv[1], argv[2], ForceFragmentSuffix,0,0)) return 1;
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| 72 |
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| 73 | // +++++++++++++++ TESTING ++++++++++++++++++++++++++++++
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| 74 |
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| 75 | // print energy and forces to file
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| 76 | filename.str("");
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| 77 | filename << argv[3] << "/" << "energy-forces.all";
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| 78 | output.open(filename.str().c_str(), ios::out);
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| 79 | output << endl << "Total Energy" << endl << "==============" << endl << Energy.Header << endl;
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| 80 | for(int j=0;j<Energy.RowCounter[Energy.MatrixCounter];j++) {
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| 81 | for(int k=0;k<Energy.ColumnCounter;k++)
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| 82 | output << scientific << Energy.Matrix[ Energy.MatrixCounter ][j][k] << "\t";
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| 83 | output << endl;
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| 84 | }
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| 85 | output << endl;
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| 86 |
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| 87 | output << endl << "Total Forces" << endl << "===============" << endl << Force.Header << endl;
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| 88 | for(int j=0;j<Force.RowCounter[Force.MatrixCounter];j++) {
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| 89 | for(int k=0;k<Force.ColumnCounter;k++)
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| 90 | output << scientific << Force.Matrix[ Force.MatrixCounter ][j][k] << "\t";
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| 91 | output << endl;
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| 92 | }
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| 93 | output << endl;
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| 94 |
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| 95 | output << endl << "Total Times" << endl << "===============" << endl << Time.Header << endl;
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| 96 | Time.SetLastMatrix(0., 0);
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| 97 | for (int BondOrder=0;BondOrder<KeySet.Order;BondOrder++)
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| 98 | for(int i=0;i<KeySet.FragmentsPerOrder[BondOrder];i++)
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| 99 | for(int j=0;j<Time.RowCounter[Time.MatrixCounter];j++)
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| 100 | for(int k=0;k<Time.ColumnCounter;k++) {
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| 101 | Time.Matrix[ Time.MatrixCounter ][j][k] += Time.Matrix[ KeySet.OrderSet[BondOrder][i] ][j][k];
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| 102 | }
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| 103 | for(int j=0;j<Time.RowCounter[Time.MatrixCounter];j++) {
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| 104 | for(int k=0;k<Time.ColumnCounter;k++)
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| 105 | output << scientific << Time.Matrix[ Time.MatrixCounter ][j][k] << "\t";
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| 106 | output << endl;
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| 107 | }
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| 108 | output << endl;
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| 109 | output.close();
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| 110 |
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| 111 | // +++++++++++++++ ANALYZING ++++++++++++++++++++++++++++++
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| 112 |
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| 113 | cout << "Analyzing ..." << endl;
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| 114 |
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| 115 | // ======================================= Creating the data files ==============================================================
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| 116 |
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| 117 | // +++++++++++++++++++++++++++++++++++++++ Plotting Simtime vs Bond Order
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| 118 | if (!OpenOutputFile(output, argv[3], "SimTime-Order.dat" )) return false;
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| 119 | Time.SetLastMatrix(0., 0);
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| 120 | output << "#Order\tFrag.No.\t" << Time.Header << endl;
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| 121 | for (int BondOrder=0;BondOrder<KeySet.Order;BondOrder++) {
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| 122 | for(int i=0;i<KeySet.FragmentsPerOrder[BondOrder];i++)
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| 123 | for(int j=0;j<Time.RowCounter[Time.MatrixCounter];j++)
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| 124 | for(int k=0;k<Time.ColumnCounter;k++) {
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| 125 | Time.Matrix[ Time.MatrixCounter ][j][k] += Time.Matrix[ KeySet.OrderSet[BondOrder][i] ][j][k];
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| 126 | }
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| 127 | output << BondOrder+1 << "\t" << KeySet.FragmentsPerOrder[BondOrder];
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| 128 | for(int k=0;k<Time.ColumnCounter;k++)
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| 129 | output << "\t" << scientific << Time.Matrix[ Time.MatrixCounter ][1][k];
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| 130 | output << endl;
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| 131 | }
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| 132 | output.close();
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| 133 |
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| 134 | // +++++++++++++++++++++++++++++++++++++++ Plotting deviation in energy to full QM
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| 135 | if (!EnergyFragments.SetLastMatrix(Energy.Matrix[Energy.MatrixCounter],0)) return 1;
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| 136 | if (!CreateDataEnergyOrder(Energy, EnergyFragments, KeySet, argv[3], "DeltaEnergies-Order", "Plot of error between approximated and full energies energies versus the Bond Order", datum)) return 1;
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| 137 |
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| 138 | // +++++++++++++++++++++++++++++++++++Plotting Energies vs. Order
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| 139 | if (!EnergyFragments.SetLastMatrix(1.,0)) return 1;
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| 140 | if (!CreateDataEnergyOrder(Energy, EnergyFragments, KeySet, argv[3], "Energies-Order", "Plot of approximated energies versus the Bond Order", datum)) return 1;
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| 141 |
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| 142 | // +++++++++++++++++++++++++++++++++++++++ Plotting deviation in forces to full QM
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| 143 | if (!ForceFragments.SetLastMatrix(Force.Matrix[Force.MatrixCounter],0)) return 1;
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| 144 | if (!OpenOutputFile(output, argv[3], "DeltaForces-Order.dat" )) return false;
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| 145 | if (!OpenOutputFile(output2, argv[3], "DeltaMinForces-Order.dat" )) return false;
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| 146 | if (!OpenOutputFile(output3, argv[3], "DeltaMeanForces-Order.dat" )) return false;
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| 147 | if (!OpenOutputFile(output4, argv[3], "DeltaMaxForces-Order.dat" )) return false;
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| 148 | cout << "Plot of per atom and min/mean/max error between approximated forces and full forces versus the Bond Order ... " << endl;
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| 149 | output << "# Plot of error between approximated forces and full forces versus the Bond Order, created on " << datum;
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| 150 | output << "# AtomNo" << Force.Header << endl;
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| 151 | output2 << "# Plot of min error between approximated forces and full forces versus the Bond Order, created on " << datum;
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| 152 | output2 << "# Order\tFrag.No.\t" << Force.Header << endl;
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| 153 | output3 << "# Plot of mean error between approximated forces and full forces versus the Bond Order, created on " << datum;
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| 154 | output3 << "# Order\tFrag.No.\t" << Force.Header << endl;
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| 155 | output4 << "# Plot of max error between approximated forces and full forces versus the Bond Order, created on " << datum;
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| 156 | output4 << "# Order\tFrag.No.\t" << Force.Header << endl;
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| 157 | int FragmentCounter = 0;
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| 158 | for (int BondOrder=0;BondOrder<KeySet.Order;BondOrder++) {
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| 159 | for(int i=0;i<KeySet.FragmentsPerOrder[BondOrder];i++) {
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| 160 | for(int l=0;l<Force.RowCounter[ KeySet.OrderSet[BondOrder][i] ];l++) {
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| 161 | int j = Force.Indices[ KeySet.OrderSet[BondOrder][i] ][l];
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| 162 | if (j > Force.RowCounter[Force.MatrixCounter]) {
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| 163 | cerr << "Current force index " << j << " is greater than " << Force.RowCounter[Force.MatrixCounter] << "!" << endl;
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| 164 | return 1;
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| 165 | }
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| 166 | if (j != -1)
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| 167 | for(int k=0;k<Force.ColumnCounter;k++) {
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| 168 | Force.Matrix[Force.MatrixCounter][j][k] -= ForceFragments.Matrix[ KeySet.OrderSet[BondOrder][i] ][l][k];
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| 169 | }
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| 170 | }
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| 171 | FragmentCounter++;
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| 172 | }
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| 173 | // errors per atom
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| 174 | output << "#Order\t" << BondOrder+1 << endl;
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| 175 | for(int j=0;j<Force.RowCounter[ Force.MatrixCounter ];j++) {
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| 176 | output << Force.Indices[Force.MatrixCounter][j] << "\t";
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| 177 | for (int l=0;l<Force.ColumnCounter;l++)
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| 178 | if (fabs(ForceFragments.Matrix[ForceFragments.MatrixCounter][ j ][l]) < MYEPSILON)
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| 179 | output << scientific << Force.Matrix[Force.MatrixCounter][ j ][l] << "\t";
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| 180 | else
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| 181 | output << scientific << (Force.Matrix[Force.MatrixCounter][ j ][l] / ForceFragments.Matrix[ForceFragments.MatrixCounter][ j ][l]) << "\t";
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| 182 | output << endl;
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| 183 | }
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| 184 | output << endl;
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| 185 |
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| 186 | // min error
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| 187 | output2 << BondOrder+1 << "\t" << FragmentCounter;
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| 188 | CreateMinimumForce(Force, Force.MatrixCounter);
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| 189 | for (int l=0;l<Force.ColumnCounter;l++)
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| 190 | if (fabs(ForceFragments.Matrix[ForceFragments.MatrixCounter][ ForceFragments.RowCounter[ForceFragments.MatrixCounter] ][l]) < MYEPSILON)
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| 191 | output2 << scientific << "\t" << Force.Matrix[Force.MatrixCounter][ Force.RowCounter[Force.MatrixCounter] ][l];
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| 192 | else
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| 193 | output2 << scientific << "\t" << (Force.Matrix[Force.MatrixCounter][ Force.RowCounter[Force.MatrixCounter] ][l] / ForceFragments.Matrix[ForceFragments.MatrixCounter][ ForceFragments.RowCounter[ForceFragments.MatrixCounter] ][l]);
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| 194 | output2 << endl;
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| 195 |
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| 196 | // mean error
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| 197 | output3 << BondOrder+1 << "\t" << FragmentCounter;
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| 198 | CreateMeanForce(Force, Force.MatrixCounter);
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| 199 | for (int l=0;l<Force.ColumnCounter;l++)
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| 200 | if (fabs(ForceFragments.Matrix[ForceFragments.MatrixCounter][ ForceFragments.RowCounter[ForceFragments.MatrixCounter] ][l]) < MYEPSILON)
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| 201 | output3 << scientific << "\t" << Force.Matrix[Force.MatrixCounter][ Force.RowCounter[Force.MatrixCounter] ][l];
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| 202 | else
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| 203 | output3 << scientific << "\t" << (Force.Matrix[Force.MatrixCounter][ Force.RowCounter[Force.MatrixCounter] ][l] / ForceFragments.Matrix[ForceFragments.MatrixCounter][ ForceFragments.RowCounter[ForceFragments.MatrixCounter] ][l]);
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| 204 | output3 << endl;
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| 205 |
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| 206 | // max error
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| 207 | output4 << BondOrder+1 << "\t" << FragmentCounter;
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| 208 | CreateMaximumForce(Force, Force.MatrixCounter);
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| 209 | for (int l=0;l<Force.ColumnCounter;l++)
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| 210 | if (fabs(ForceFragments.Matrix[ForceFragments.MatrixCounter][ ForceFragments.RowCounter[ForceFragments.MatrixCounter] ][l]) < MYEPSILON)
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| 211 | output4 << scientific << "\t" << Force.Matrix[Force.MatrixCounter][ Force.RowCounter[Force.MatrixCounter] ][l];
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| 212 | else
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| 213 | output4 << scientific << "\t" << (Force.Matrix[Force.MatrixCounter][ Force.RowCounter[Force.MatrixCounter] ][l] / ForceFragments.Matrix[ForceFragments.MatrixCounter][ ForceFragments.RowCounter[ForceFragments.MatrixCounter] ][l]);
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| 214 | output4 << endl;
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| 215 | }
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| 216 | output.close();
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| 217 | output2.close();
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| 218 | output3.close();
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| 219 | output4.close();
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| 220 |
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| 221 | // ++++++++++++++++++++++++++++++++++++++Plotting Forces vs. Order
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| 222 | if(!OpenOutputFile(output, argv[3], "Forces-Order.dat")) return 1;
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| 223 | cout << "Plot of approximated forces versus the Bond Order ... " << endl;
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| 224 | output << "# Plot of approximated forces versus the Bond Order, created on " << datum;
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| 225 | output << "# AtomNo" << Force.Header << endl;
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| 226 | for (int BondOrder=0;BondOrder<KeySet.Order;BondOrder++) {
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| 227 | for(int i=0;i<KeySet.FragmentsPerOrder[BondOrder];i++) {
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| 228 | for(int l=0;l<Force.RowCounter[ KeySet.OrderSet[BondOrder][i] ];l++) {
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| 229 | int j = Force.Indices[ KeySet.OrderSet[BondOrder][i] ][l];
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| 230 | if (j > Force.RowCounter[Force.MatrixCounter]) {
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| 231 | cerr << "Current force index " << j << " is greater than " << Force.RowCounter[Force.MatrixCounter] << "!" << endl;
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| 232 | return 1;
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| 233 | }
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| 234 | if (j != -1)
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| 235 | for(int k=0;k<Force.ColumnCounter;k++) {
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| 236 | Force.Matrix[Force.MatrixCounter][j][k] -= ForceFragments.Matrix[ KeySet.OrderSet[BondOrder][i] ][l][k];
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| 237 | }
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| 238 | }
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| 239 | }
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| 240 | // errors per atom
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| 241 | output << "#Order\t" << BondOrder+1 << endl;
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| 242 | for(int j=0;j<Force.RowCounter[ Force.MatrixCounter ];j++) {
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| 243 | output << Force.Indices[Force.MatrixCounter][j] << "\t";
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| 244 | for (int l=0;l<Force.ColumnCounter;l++)
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| 245 | output << Force.Matrix[Force.MatrixCounter][ j ][l] << "\t";
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| 246 | output << endl;
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| 247 | }
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| 248 | output << endl;
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| 249 | }
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| 250 | output.close();
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| 251 |
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| 252 | // min force
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| 253 | if (!CreateDataForcesOrder(Force, ForceFragments, KeySet, argv[3], "MinForces-Order", "Plot of min approximated forces versus the Bond Order", datum, CreateMinimumForce)) return 1;
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| 254 |
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| 255 | // mean force
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| 256 | if (!CreateDataForcesOrder(Force, ForceFragments, KeySet, argv[3], "MeanForces-Order", "Plot of mean approximated forces versus the Bond Order", datum, CreateMeanForce)) return 1;
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| 257 |
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| 258 | // max force
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| 259 | if (!CreateDataForcesOrder(Force, ForceFragments, KeySet, argv[3], "MaxForces-Order", "Plot of max approximated forces versus the Bond Order", datum, CreateMaximumForce)) return 1;
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| 260 |
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| 261 | // ++++++++++++++++++++++++++++++++++++++Plotting vector sum (should be 0) vs. bond order
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| 262 | if (!CreateDataForcesOrder(Force, ForceFragments, KeySet, argv[3], "VectorSum-Order", "Plot of vector sum of the approximated forces versus the Bond Order", datum, CreateVectorSumForce)) return 1;
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| 263 |
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| 264 | // +++++++++++++++++++++++++++++++Plotting energyfragments vs. order
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| 265 | if (!CreateDataFragment(EnergyFragments, KeySet, argv[3], "Energies-Fragment", "Plot of fragment energy versus the Fragment No", datum, CreateEnergy)) return 1;
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| 266 | if (!CreateDataFragment(EnergyFragments, KeySet, argv[3], "Energies-FragmentOrder", "Plot of fragment energy of each Fragment No vs. Bond Order", datum, CreateEnergy)) return 1;
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| 267 | if (!CreateDataFragmentOrder(EnergyFragments, KeySet, argv[3], "MaxEnergies-FragmentOrder", "Plot of maximum of fragment energy vs. Bond Order", datum, CreateMaxFragmentOrder)) return 1;
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| 268 | if (!CreateDataFragmentOrder(EnergyFragments, KeySet, argv[3], "MinEnergies-FragmentOrder", "Plot of minimum of fragment energy vs. Bond Order", datum, CreateMinFragmentOrder)) return 1;
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| 269 |
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| 270 | // +++++++++++++++++++++++++++++++Ploting min/mean/max forces for each fragment
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| 271 | // min force
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| 272 | if (!CreateDataFragment(ForceFragments, KeySet, argv[3], "MinForces-Fragment", "Plot of min approximated forces versus the Fragment No", datum, CreateMinimumForce)) return 1;
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| 273 |
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| 274 | // mean force
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| 275 | if (!CreateDataFragment(ForceFragments, KeySet, argv[3], "MeanForces-Fragment", "Plot of mean approximated forces versus the Fragment No", datum, CreateMeanForce)) return 1;
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| 276 |
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| 277 | // max force
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| 278 | if (!CreateDataFragment(ForceFragments, KeySet, argv[3], "MaxForces-Fragment", "Plot of max approximated forces versus the Fragment No", datum, CreateMaximumForce)) return 1;
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| 279 |
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| 280 | // +++++++++++++++++++++++++++++++Ploting min/mean/max forces for each fragment per order
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| 281 | // min force
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| 282 | if (!CreateDataFragment(ForceFragments, KeySet, argv[3], "MinForces-FragmentOrder", "Plot of min approximated forces of each Fragment No vs. Bond Order", datum, CreateMinimumForce)) return 1;
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| 283 |
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| 284 | // mean force
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| 285 | if (!CreateDataFragment(ForceFragments, KeySet, argv[3], "MeanForces-FragmentOrder", "Plot of mean approximated forces of each Fragment No vs. Bond Order", datum, CreateMeanForce)) return 1;
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| 286 |
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| 287 | // max force
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| 288 | if (!CreateDataFragment(ForceFragments, KeySet, argv[3], "MaxForces-FragmentOrder", "Plot of max approximated forces of each Fragment No vs. Bond Order", datum, CreateMaximumForce)) return 1;
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| 289 |
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| 290 | // ======================================= Creating the plot files ==============================================================
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| 291 |
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| 292 | Orderxrange << "[1:" << KeySet.Order << "]";
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| 293 | Fragmentxrange << "[0:" << KeySet.FragmentCounter+1 << "]";
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| 294 |
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| 295 | // +++++++++++++++++++++++++++++++++++++++ Plotting Simtime vs Bond Order
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| 296 | if (!CreatePlotOrder(Time, KeySet, argv[3], "SimTime-Order", 1, "below", "y", "", 1, 1, "bond order k", "Evaluation time [s]", Orderxrange.str().c_str(), "", "1" , "with linespoints", EnergyPlotLine)) return 1;
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| 297 |
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| 298 | // +++++++++++++++++++++++++++++++++++++++ Plotting deviation in energy to full QM
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| 299 | if (!CreatePlotOrder(Energy, KeySet, argv[3], "DeltaEnergies-Order", 1, "outside", "y", "", 1, 1, "bond order k", "absolute error in energy [Ht]", Orderxrange.str().c_str(), "[1e-8:1e+1]", "1" , "with linespoints", AbsEnergyPlotLine)) return 1;
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| 300 |
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| 301 | // +++++++++++++++++++++++++++++++++++Plotting Energies vs. Order
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| 302 | if (!CreatePlotOrder(Energy, KeySet, argv[3], "Energies-Order", 1, "outside", "", "", 1, 1, "bond order k", "approximate energy [Ht]", Orderxrange.str().c_str(), "", "1" , "with linespoints", EnergyPlotLine)) return 1;
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| 303 |
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| 304 | // +++++++++++++++++++++++++++++++++++++++ Plotting deviation in forces to full QM
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| 305 | // min force
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| 306 | if (!CreatePlotOrder(Force, KeySet, argv[3], "DeltaMinForces-Order", 2, "top right", "y", "", 1, 1, "bond order k", "absolute error in min force [Ht/a.u.]", Orderxrange.str().c_str(), "[1e-8:1e+0]", "1" , "with linespoints", ForceMagnitudePlotLine)) return 1;
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| 307 |
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| 308 | // mean force
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| 309 | if (!CreatePlotOrder(Force, KeySet, argv[3], "DeltaMeanForces-Order", 2, "top right", "y", "", 1, 1, "bond order k", "absolute error in mean force [Ht/a.u.]", Orderxrange.str().c_str(), "[1e-8:1e+0]", "1" , "with linespoints", AbsFirstForceValuePlotLine)) return 1;
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| 310 |
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| 311 | // max force
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| 312 | if (!CreatePlotOrder(Force, KeySet, argv[3], "DeltaMaxForces-Order", 2, "top right", "y", "", 1, 1, "bond order k", "absolute error in max force [Ht/a.u.]", Orderxrange.str().c_str(), "[1e-8:1e+0]", "1" , "with linespoints", ForceMagnitudePlotLine)) return 1;
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| 313 |
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| 314 | // min/mean/max comparison for total force
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| 315 | if(!OpenOutputFile(output, argv[3], "DeltaMinMeanMaxTotalForce-Order.pyx")) return 1;
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| 316 | CreatePlotHeader(output, "DeltaMinMeanMaxTotalForce-Order", 1, "bottom left", "y", "", 1, 1, "bond order k", "absolute error in total forces [Ht/a.u.]");
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| 317 | output << "plot " << Orderxrange.str().c_str() << " [1e-8:1e+0] \\" << endl;
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| 318 | output << "'DeltaMinForces-Order.dat' title 'minimum' using 1:(sqrt($" << 8 << "*$" << 8 << "+$" << 8+1 << "*$" << 8+1 << "+$" << 8+2 << "*$" << 8+2 << ")) with linespoints, \\" << endl;
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| 319 | output << "'DeltaMeanForces-Order.dat' title 'mean' using 1:(abs($" << 8 << ")) with linespoints, \\" << endl;
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| 320 | output << "'DeltaMaxForces-Order.dat' title 'maximum' using 1:(sqrt($" << 8 << "*$" << 8 << "+$" << 8+1 << "*$" << 8+1 << "+$" << 8+2 << "*$" << 8+2 << ")) with linespoints" << endl;
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| 321 | output.close();
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| 322 |
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| 323 | // ++++++++++++++++++++++++++++++++++++++Plotting Forces vs. Order
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| 324 | // min force
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| 325 | if (!CreatePlotOrder(Force, KeySet, argv[3], "MinForces-Order", 2, "bottom right", "y", "", 1, 1, "bond order k", "absolute approximated min force [Ht/a.u.]", Orderxrange.str().c_str(), "", "1" , "with linespoints", ForceMagnitudePlotLine)) return 1;
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| 326 |
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| 327 | // mean force
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| 328 | if (!CreatePlotOrder(Force, KeySet, argv[3], "MeanForces-Order", 2, "bottom right", "y", "", 1, 1, "bond order k", "absolute approximated mean force [Ht/a.u.]", Orderxrange.str().c_str(), "", "1" , "with linespoints", AbsFirstForceValuePlotLine)) return 1;
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| 329 |
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| 330 | // max force
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| 331 | if (!CreatePlotOrder(Force, KeySet, argv[3], "MaxForces-Order", 2, "bottom right", "y", "", 1, 1, "bond order k", "absolute approximated max force [Ht/a.u.]", Orderxrange.str().c_str(), "", "1" , "with linespoints", ForceMagnitudePlotLine)) return 1;
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| 332 |
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| 333 | // min/mean/max comparison for total force
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| 334 | if(!OpenOutputFile(output, argv[3],"MinMeanMaxTotalForce-Order.pyx")) return 1;
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| 335 | CreatePlotHeader(output, "MinMeanMaxTotalForce-Order", 1, "bottom left", "y", "", 1, 1, "bond order k", "absolute total force [Ht/a.u.]");
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| 336 | output << "plot "<< Orderxrange.str().c_str() << " [1e-8:1e+0] \\" << endl;
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| 337 | output << "'MinForces-Order.dat' title 'minimum' using 1:(sqrt($" << 8 << "*$" << 8 << "+$" << 8+1 << "*$" << 8+1 << "+$" << 8+2 << "*$" << 8+2 << ")) with linespoints, \\" << endl;
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| 338 | output << "'MeanForces-Order.dat' title 'mean' using 1:(abs($" << 8 << ")) with linespoints, \\" << endl;
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| 339 | output << "'MaxForces-Order.dat' title 'maximum' using 1:(sqrt($" << 8 << "*$" << 8 << "+$" << 8+1 << "*$" << 8+1 << "+$" << 8+2 << "*$" << 8+2 << ")) with linespoints" << endl;
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| 340 | output.close();
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| 341 |
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| 342 | // ++++++++++++++++++++++++++++++++++++++Plotting vector sum vs. Order
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| 343 |
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| 344 | if (!CreatePlotOrder(Force, KeySet, argv[3], "VectorSum-Order", 2, "bottom right", "y" ,"", 1, 1, "bond order k", "vector sum of approximated forces [Ht/a.u.]", Orderxrange.str().c_str(), "", "1" , "with linespoints", ForceMagnitudePlotLine)) return 1;
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| 345 |
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| 346 | // +++++++++++++++++++++++++++++++Plotting energyfragments vs. order
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| 347 | if (!CreatePlotOrder(EnergyFragments, KeySet, argv[3], "Energies-Fragment", 5, "below", "y", "", 1, 5, "fragment number", "Energies of each fragment [Ht]", Fragmentxrange.str().c_str(), "[1e-16:1e+1]", "2" , "with points", AbsEnergyPlotLine)) return 1;
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| 348 | if (!CreatePlotOrder(EnergyFragments, KeySet, argv[3], "Energies-FragmentOrder", 5, "below", "y", "", 1, 1, "bond order", "Energies of each fragment [Ht]", Orderxrange.str().c_str(), "[1e-10:1e+1]", "1" , "with points", AbsEnergyPlotLine)) return 1;
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| 349 | if (!CreatePlotOrder(EnergyFragments, KeySet, argv[3], "MaxEnergies-FragmentOrder", 5, "below", "y", "", 1, 1, "bond order", "Maximum fragment energy [Ht]", Orderxrange.str().c_str(), "[1e-6:1e+1]", "1" , "with linespoints", AbsEnergyPlotLine)) return 1;
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| 350 | if (!CreatePlotOrder(EnergyFragments, KeySet, argv[3], "MinEnergies-FragmentOrder", 5, "below", "y", "", 1, 1, "bond order", "Minimum fragment energy [Ht]", Orderxrange.str().c_str(), "[1e-6:1e+1]", "1" , "with linespoints", AbsEnergyPlotLine)) return 1;
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| 351 |
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| 352 | // +++++++++++++++++++++++++++++++=Ploting min/mean/max forces for each fragment
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| 353 | // min
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| 354 | if (!CreatePlotOrder(ForceFragments, KeySet, argv[3], "MinForces-Fragment", 5, "below", "y", "set boxwidth 0.2", 1, 5, "fragment number", "minimum of approximated forces [Ht/a.u.]", Fragmentxrange.str().c_str(), "[1e-16:1e+1]", "2" , "with boxes fillcolor", BoxesForcePlotLine)) return 1;
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| 355 |
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| 356 | // mean
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| 357 | if (!CreatePlotOrder(ForceFragments, KeySet, argv[3], "MeanForces-Fragment", 5, "below", "y", "set boxwidth 0.2", 1, 5, "fragment number", "mean of approximated forces [Ht/a.u.]", Fragmentxrange.str().c_str(), "[1e-16:1e+1]", "2" , "with boxes fillcolor", BoxesFirstForceValuePlotLine)) return 1;
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| 358 |
|
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| 359 | // max
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| 360 | if (!CreatePlotOrder(ForceFragments, KeySet, argv[3], "MaxForces-Fragment", 5, "below", "y", "set boxwidth 0.2", 1, 5, "fragment number", "maximum of approximated forces [Ht/a.u.]", Fragmentxrange.str().c_str(), "[1e-16:1e+1]", "2" , "with boxes fillcolor", BoxesForcePlotLine)) return 1;
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| 361 |
|
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| 362 | // +++++++++++++++++++++++++++++++=Ploting min/mean/max forces for each fragment per bond order
|
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| 363 | // min
|
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| 364 | if (!CreatePlotOrder(ForceFragments, KeySet, argv[3], "MinForces-FragmentOrder", 5, "below", "y", "set boxwidth 0.2", 1, 1, "bond order", "minimum of approximated forces [Ht/a.u.]", Orderxrange.str().c_str(), "[1e-16:1e+1]", "1" , "with boxes fillcolor", BoxesForcePlotLine)) return 1;
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| 365 |
|
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| 366 | // mean
|
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| 367 | if (!CreatePlotOrder(ForceFragments, KeySet, argv[3], "MeanForces-FragmentOrder", 5, "below", "y", "set boxwidth 0.2", 1, 1, "bond order", "mean of approximated forces [Ht/a.u.]", Orderxrange.str().c_str(), "[1e-16:1e+1]", "1" , "with boxes fillcolor", BoxesFirstForceValuePlotLine)) return 1;
|
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| 368 |
|
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| 369 | // max
|
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| 370 | if (!CreatePlotOrder(ForceFragments, KeySet, argv[3], "MaxForces-FragmentOrder", 5, "below", "y", "set boxwidth 0.2", 1, 1, "bond order", "maximum of approximated forces [Ht/a.u.]", Orderxrange.str().c_str(), "[1e-16:1e+1]", "1" , "with boxes fillcolor", BoxesForcePlotLine)) return 1;
|
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| 371 |
|
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| 372 | // create Makefile
|
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| 373 | if(!OpenOutputFile(output, argv[3], "Makefile")) return 1;
|
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| 374 | output << "PYX = $(shell ls *.pyx)" << endl << endl;
|
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| 375 | output << "EPS = $(PYX:.pyx=.eps)" << endl << endl;
|
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| 376 | output << "%.eps: %.pyx" << endl;
|
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| 377 | output << "\t~/build/pyxplot/pyxplot $<" << endl << endl;
|
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| 378 | output << "all: $(EPS)" << endl << endl;
|
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| 379 | output << ".PHONY: clean" << endl;
|
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| 380 | output << "clean:" << endl;
|
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| 381 | output << "\trm -rf $(EPS)" << endl;
|
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| 382 | output.close();
|
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| 383 |
|
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| 384 | // ++++++++++++++++ exit ++++++++++++++++++++++++++++++++++
|
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| 385 | cout << "done." << endl;
|
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| 386 | return 0;
|
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| 387 | };
|
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| 388 |
|
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| 389 | //============================ END ===========================
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