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#include "applications/staticProps/GofRAngle.hpp" | 
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#include "applications/staticProps/GofAngle2.hpp" | 
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#include "applications/staticProps/GofXyz.hpp" | 
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#include "applications/staticProps/TwoDGofR.hpp" | 
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#include "applications/staticProps/P2OrderParameter.hpp" | 
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#include "applications/staticProps/BondOrderParameter.hpp" | 
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#include "applications/staticProps/BOPofR.hpp" | 
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#include "applications/staticProps/RippleOP.hpp" | 
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#include "applications/staticProps/SCDOrderParameter.hpp" | 
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#include "applications/staticProps/DensityPlot.hpp" | 
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#include "applications/staticProps/ObjectCount.hpp" | 
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#include "applications/staticProps/RhoZ.hpp" | 
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#include "applications/staticProps/pAngle.hpp" | 
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#include "applications/staticProps/BondAngleDistribution.hpp" | 
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  //register force fields | 
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  registerForceFields(); | 
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  gengetopt_args_info args_info; | 
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  //parse the command line option | 
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  if (cmdline_parser (argc, argv, &args_info) != 0) { | 
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    exit(1) ; | 
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  } | 
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  //get the dumpfile name | 
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  std::string dumpFileName = args_info.input_arg; | 
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  std::string sele1; | 
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  std::string sele2; | 
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  bool userSpecifiedSelect1; | 
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  bool userSpecifiedSelect2; | 
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  // check the first selection argument, or set it to the environment | 
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  // variable, or failing that, set it to "select all" | 
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  if (args_info.sele1_given) { | 
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    sele1 = args_info.sele1_arg; | 
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  } else { | 
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      sele1 = "select all"; | 
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    } | 
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  } | 
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  // check the second selection argument, or set it to the environment | 
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  // variable, or failing that, set it to "select all" | 
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      sele2 = "select all"; | 
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    } | 
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  } | 
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  // Problems if sele1 wasn't specified, but  | 
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// if (!args_info.scd_given) { | 
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//       sprintf( painCave.errMsg, | 
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//                "neither --sele1 option nor $SELECTION1 is set"); | 
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//       painCave.severity = OPENMD_ERROR; | 
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//       painCave.isFatal = 1; | 
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//       simError(); | 
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//     } | 
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//   } | 
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  // if (!args_info.scd_given) { | 
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  //       sprintf( painCave.errMsg, | 
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  //                "neither --sele1 option nor $SELECTION1 is set"); | 
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  //       painCave.severity = OPENMD_ERROR; | 
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  //       painCave.isFatal = 1; | 
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  //       simError(); | 
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  //     } | 
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  //   } | 
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  // Problems if sele1 wasn't specified | 
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//     if(!args_info.scd_given && !args_info.density_given && !args_info.slab_density_given)  { | 
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//       sprintf( painCave.errMsg, | 
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//                "neither --sele2 option nor $SELECTION1 is set"); | 
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//       painCave.severity = OPENMD_ERROR; | 
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//       painCave.isFatal = 1; | 
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//       simError();         | 
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//     } | 
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//   } | 
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  //     if(!args_info.scd_given && !args_info.density_given && !args_info.slab_density_given)  { | 
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  //       sprintf( painCave.errMsg, | 
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  //                "neither --sele2 option nor $SELECTION1 is set"); | 
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  //       painCave.severity = OPENMD_ERROR; | 
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  //       painCave.isFatal = 1; | 
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  //       simError();         | 
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  //     } | 
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  //   } | 
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  bool batchMode; | 
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  if (args_info.scd_given){ | 
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    if (args_info.sele1_given && args_info.sele2_given && args_info.sele3_given) { | 
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      painCave.severity = OPENMD_ERROR; | 
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      painCave.isFatal = 1; | 
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      simError();         | 
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    } | 
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  } | 
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  //parse md file and set up the system | 
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  SimCreator creator; | 
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  std::cout << "dumpFile = " << dumpFileName << "\n"; | 
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  SimInfo* info = creator.createSim(dumpFileName); | 
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  RealType maxLen; | 
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  RealType zmaxLen; | 
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  if (args_info.length_given) { | 
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    maxLen = args_info.length_arg; | 
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    if (args_info.zlength_given){ | 
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      zmaxLen = args_info.zlength_arg; | 
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    } | 
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  } else { | 
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    Mat3x3d hmat = info->getSnapshotManager()->getCurrentSnapshot()->getHmat(); | 
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    maxLen = std::min(std::min(hmat(0, 0), hmat(1, 1)), hmat(2, 2)) /2.0;         | 
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    maxLen = std::min(std::min(hmat(0, 0), hmat(1, 1)), hmat(2, 2)) /2.0; | 
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    zmaxLen = hmat(2,2);     | 
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  }     | 
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  StaticAnalyser* analyser; | 
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    analyser= new GofZ(info, dumpFileName, sele1, sele2, maxLen, | 
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                       args_info.nbins_arg); | 
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  } else if (args_info.r_z_given) { | 
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    analyser  = new GofRZ(info, dumpFileName, sele1, sele2, maxLen,  | 
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                              args_info.nbins_arg, args_info.nbins_z_arg); | 
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    analyser  = new GofRZ(info, dumpFileName, sele1, sele2, maxLen, zmaxLen,  | 
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                          args_info.nbins_arg, args_info.nbins_z_arg); | 
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  } else if (args_info.r_theta_given) { | 
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    analyser  = new GofRTheta(info, dumpFileName, sele1, sele2, maxLen,  | 
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                              args_info.nbins_arg, args_info.nanglebins_arg); | 
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      painCave.isFatal = 1; | 
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      simError();   | 
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    } | 
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  } else if (args_info.twodgofr_given){ | 
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    if (args_info.dz_given) { | 
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      analyser= new TwoDGofR(info, dumpFileName, sele1, sele2, maxLen,  | 
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                             args_info.dz_arg, args_info.nbins_arg);         | 
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    } else { | 
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      sprintf( painCave.errMsg, | 
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               "A slab width (dz) must be specified when calculating TwoDGofR"); | 
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      painCave.severity = OPENMD_ERROR; | 
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      painCave.isFatal = 1; | 
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      simError(); | 
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    } | 
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  } else if (args_info.p2_given) { | 
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    analyser  = new P2OrderParameter(info, dumpFileName, sele1, sele2); | 
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  } else if (args_info.rp2_given){ | 
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  } else if (args_info.bor_given){ | 
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    if (args_info.rcut_given) { | 
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      analyser = new BOPofR(info, dumpFileName, sele1, args_info.rcut_arg, | 
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                            args_info.nbins_arg, maxLen); | 
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                            args_info.nbins_arg, maxLen); | 
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    } else { | 
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      sprintf( painCave.errMsg, | 
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               "A cutoff radius (rcut) must be specified when calculating Bond Order Parameters"); | 
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  } else if (args_info.bad_given){ | 
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    if (args_info.rcut_given) { | 
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      analyser = new BondAngleDistribution(info, dumpFileName, sele1, args_info.rcut_arg, | 
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                            args_info.nbins_arg); | 
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                                           args_info.nbins_arg); | 
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    } else { | 
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      sprintf( painCave.errMsg, | 
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               "A cutoff radius (rcut) must be specified when calculating Bond Angle Distributions"); | 
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  }else if (args_info.density_given) { | 
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    analyser= new DensityPlot(info, dumpFileName, sele1, sele2, maxLen, | 
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                              args_info.nbins_arg);   | 
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  } else if (args_info.count_given) { | 
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    analyser = new ObjectCount(info, dumpFileName, sele1 ); | 
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  } else if (args_info.slab_density_given) { | 
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    analyser = new RhoZ(info, dumpFileName, sele1, args_info.nbins_arg); | 
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  } else if (args_info.p_angle_given) { | 
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      painCave.isFatal = 1; | 
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      simError(); | 
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    } | 
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        }else if (args_info.hullvol_given) { | 
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  }else if (args_info.hullvol_given) { | 
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    analyser = new NanoVolume(info, dumpFileName, sele1); | 
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  } | 
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