| 1 | /* | 
| 2 | * Copyright (c) 2005 The University of Notre Dame. All Rights Reserved. | 
| 3 | * | 
| 4 | * The University of Notre Dame grants you ("Licensee") a | 
| 5 | * non-exclusive, royalty free, license to use, modify and | 
| 6 | * redistribute this software in source and binary code form, provided | 
| 7 | * that the following conditions are met: | 
| 8 | * | 
| 9 | * 1. Acknowledgement of the program authors must be made in any | 
| 10 | *    publication of scientific results based in part on use of the | 
| 11 | *    program.  An acceptable form of acknowledgement is citation of | 
| 12 | *    the article in which the program was described (Matthew | 
| 13 | *    A. Meineke, Charles F. Vardeman II, Teng Lin, Christopher | 
| 14 | *    J. Fennell and J. Daniel Gezelter, "OOPSE: An Object-Oriented | 
| 15 | *    Parallel Simulation Engine for Molecular Dynamics," | 
| 16 | *    J. Comput. Chem. 26, pp. 252-271 (2005)) | 
| 17 | * | 
| 18 | * 2. Redistributions of source code must retain the above copyright | 
| 19 | *    notice, this list of conditions and the following disclaimer. | 
| 20 | * | 
| 21 | * 3. Redistributions in binary form must reproduce the above copyright | 
| 22 | *    notice, this list of conditions and the following disclaimer in the | 
| 23 | *    documentation and/or other materials provided with the | 
| 24 | *    distribution. | 
| 25 | * | 
| 26 | * This software is provided "AS IS," without a warranty of any | 
| 27 | * kind. All express or implied conditions, representations and | 
| 28 | * warranties, including any implied warranty of merchantability, | 
| 29 | * fitness for a particular purpose or non-infringement, are hereby | 
| 30 | * excluded.  The University of Notre Dame and its licensors shall not | 
| 31 | * be liable for any damages suffered by licensee as a result of | 
| 32 | * using, modifying or distributing the software or its | 
| 33 | * derivatives. In no event will the University of Notre Dame or its | 
| 34 | * licensors be liable for any lost revenue, profit or data, or for | 
| 35 | * direct, indirect, special, consequential, incidental or punitive | 
| 36 | * damages, however caused and regardless of the theory of liability, | 
| 37 | * arising out of the use of or inability to use software, even if the | 
| 38 | * University of Notre Dame has been advised of the possibility of | 
| 39 | * such damages. | 
| 40 | */ | 
| 41 |  | 
| 42 | #include <iostream> | 
| 43 | #include <fstream> | 
| 44 | #include <string> | 
| 45 |  | 
| 46 | #include "brains/Register.hpp" | 
| 47 | #include "brains/SimCreator.hpp" | 
| 48 | #include "brains/SimInfo.hpp" | 
| 49 | #include "io/DumpReader.hpp" | 
| 50 | #include "utils/simError.h" | 
| 51 |  | 
| 52 | #include "applications/staticProps/StaticPropsCmd.h" | 
| 53 | #include "applications/staticProps/StaticAnalyser.hpp" | 
| 54 | #include "applications/staticProps/GofR.hpp" | 
| 55 | #include "applications/staticProps/GofRAngle.hpp" | 
| 56 | #include "applications/staticProps/GofAngle2.hpp" | 
| 57 | #include "applications/staticProps/GofXyz.hpp" | 
| 58 | #include "applications/staticProps/P2OrderParameter.hpp" | 
| 59 | #include "applications/staticProps/RippleOP.hpp" | 
| 60 | #include "applications/staticProps/SCDOrderParameter.hpp" | 
| 61 | #include "applications/staticProps/DensityPlot.hpp" | 
| 62 | #include "applications/staticProps/RhoZ.hpp" | 
| 63 | #if defined(HAVE_FFTW_H) || defined(HAVE_DFFTW_H) || defined(HAVE_FFTW3_H) | 
| 64 | #include "applications/staticProps/Hxy.hpp" | 
| 65 | #endif | 
| 66 |  | 
| 67 | using namespace oopse; | 
| 68 |  | 
| 69 | int main(int argc, char* argv[]){ | 
| 70 |  | 
| 71 | //register force fields | 
| 72 | registerForceFields(); | 
| 73 |  | 
| 74 | gengetopt_args_info args_info; | 
| 75 |  | 
| 76 | //parse the command line option | 
| 77 | if (cmdline_parser (argc, argv, &args_info) != 0) { | 
| 78 | exit(1) ; | 
| 79 | } | 
| 80 |  | 
| 81 |  | 
| 82 | //get the dumpfile name and meta-data file name | 
| 83 | std::string dumpFileName = args_info.input_arg; | 
| 84 |  | 
| 85 |  | 
| 86 | std::string sele1; | 
| 87 | std::string sele2; | 
| 88 |  | 
| 89 | if (args_info.sele1_given) { | 
| 90 | sele1 = args_info.sele1_arg; | 
| 91 | }else { | 
| 92 | char*  sele1Env= getenv("OOPSE_SELE1"); | 
| 93 | if (sele1Env) { | 
| 94 | sele1 = sele1Env; | 
| 95 | }else if (!args_info.scd_given) { | 
| 96 | sprintf( painCave.errMsg, | 
| 97 | "neither --sele1 option nor $OOPSE_SELE1 is set"); | 
| 98 | painCave.severity = OOPSE_ERROR; | 
| 99 | painCave.isFatal = 1; | 
| 100 | simError(); | 
| 101 | } | 
| 102 | } | 
| 103 |  | 
| 104 | if (args_info.sele2_given) { | 
| 105 | sele2 = args_info.sele2_arg; | 
| 106 | }else { | 
| 107 | char* sele2Env = getenv("OOPSE_SELE2"); | 
| 108 | if (sele2Env) { | 
| 109 | sele2 = sele2Env; | 
| 110 | } else if (args_info.density_given) { | 
| 111 | sele2 = "select all"; | 
| 112 | } else if(!args_info.scd_given && !args_info.density_given && !args_info.slab_density_given)  { | 
| 113 | sprintf( painCave.errMsg, | 
| 114 | "neither --sele2 option nor $OOPSE_SELE2 is set"); | 
| 115 | painCave.severity = OOPSE_ERROR; | 
| 116 | painCave.isFatal = 1; | 
| 117 | simError(); | 
| 118 | } | 
| 119 | } | 
| 120 |  | 
| 121 | bool batchMode; | 
| 122 | if (args_info.scd_given){ | 
| 123 | if (args_info.sele1_given && args_info.sele2_given && args_info.sele3_given) { | 
| 124 | batchMode = false; | 
| 125 | } else if (args_info.molname_given && args_info.begin_given && args_info.end_given) { | 
| 126 | if (args_info.begin_arg < 0 || args_info.end_arg < 0 || args_info.begin_arg > args_info.end_arg-2) { | 
| 127 | sprintf( painCave.errMsg, | 
| 128 | "below conditions are not satisfied:\n" | 
| 129 | "0 <= begin && 0<= end && begin <= end-2\n"); | 
| 130 | painCave.severity = OOPSE_ERROR; | 
| 131 | painCave.isFatal = 1; | 
| 132 | simError(); | 
| 133 | } | 
| 134 | batchMode = true; | 
| 135 | } else{ | 
| 136 | sprintf( painCave.errMsg, | 
| 137 | "either --sele1, --sele2, --sele3 are specified," | 
| 138 | " or --molname, --begin, --end are specified\n"); | 
| 139 | painCave.severity = OOPSE_ERROR; | 
| 140 | painCave.isFatal = 1; | 
| 141 | simError(); | 
| 142 |  | 
| 143 | } | 
| 144 | } | 
| 145 |  | 
| 146 | //parse md file and set up the system | 
| 147 | SimCreator creator; | 
| 148 | SimInfo* info = creator.createSim(dumpFileName); | 
| 149 |  | 
| 150 | RealType maxLen; | 
| 151 | if (args_info.length_given) { | 
| 152 | maxLen = args_info.length_arg; | 
| 153 | } else { | 
| 154 | Mat3x3d hmat = info->getSnapshotManager()->getCurrentSnapshot()->getHmat(); | 
| 155 | maxLen = std::min(std::min(hmat(0, 0), hmat(1, 1)), hmat(2, 2)) /2.0; | 
| 156 | } | 
| 157 |  | 
| 158 | StaticAnalyser* analyser; | 
| 159 | if (args_info.gofr_given){ | 
| 160 | analyser= new GofR(info, dumpFileName, sele1, sele2, maxLen, args_info.nrbins_arg); | 
| 161 | } else if (args_info.r_theta_given) { | 
| 162 | analyser  = new GofRTheta(info, dumpFileName, sele1, sele2, maxLen, args_info.nrbins_arg, args_info.nanglebins_arg); | 
| 163 | } else if (args_info.r_omega_given) { | 
| 164 | analyser  = new GofROmega(info, dumpFileName, sele1, sele2, maxLen, args_info.nrbins_arg, args_info.nanglebins_arg); | 
| 165 | } else if (args_info.theta_omega_given) { | 
| 166 | analyser  = new GofAngle2(info, dumpFileName, sele1, sele2, args_info.nanglebins_arg); | 
| 167 | } else if (args_info.gxyz_given) { | 
| 168 | if (args_info.refsele_given) { | 
| 169 | analyser= new GofXyz(info, dumpFileName, sele1, sele2,args_info.refsele_arg, maxLen, args_info.nrbins_arg); | 
| 170 | } else { | 
| 171 | sprintf( painCave.errMsg, | 
| 172 | "--refsele must set when --gxyz is used"); | 
| 173 | painCave.severity = OOPSE_ERROR; | 
| 174 | painCave.isFatal = 1; | 
| 175 | simError(); | 
| 176 | } | 
| 177 | } else if (args_info.p2_given) { | 
| 178 | analyser  = new P2OrderParameter(info, dumpFileName, sele1, sele2); | 
| 179 | }    else if (args_info.rp2_given){ | 
| 180 | analyser = new RippleOP(info, dumpFileName, sele1, sele2); | 
| 181 | }else if (args_info.scd_given) { | 
| 182 | if (batchMode) { | 
| 183 | analyser  = new SCDOrderParameter(info, dumpFileName, args_info.molname_arg, | 
| 184 | args_info.begin_arg, args_info.end_arg); | 
| 185 | } else{ | 
| 186 | std::string sele3 = args_info.sele3_arg; | 
| 187 | analyser  = new SCDOrderParameter(info, dumpFileName, sele1, sele2, sele3); | 
| 188 | } | 
| 189 | }else if (args_info.density_given) { | 
| 190 | analyser= new DensityPlot(info, dumpFileName, sele1, sele2, maxLen, args_info.nrbins_arg); | 
| 191 | } else if (args_info.slab_density_given) { | 
| 192 | Mat3x3d hmat = info->getSnapshotManager()->getCurrentSnapshot()->getHmat(); | 
| 193 | analyser = new RhoZ(info, dumpFileName, sele1, hmat(2, 2), args_info.nrbins_arg); | 
| 194 | #if defined(HAVE_FFTW_H) || defined(HAVE_DFFTW_H) || defined(HAVE_FFTW3_H) | 
| 195 | }else if (args_info.hxy_given) { | 
| 196 | analyser = new Hxy(info, dumpFileName, sele1, args_info.nbins_x_arg, args_info.nbins_y_arg, args_info.nrbins_arg); | 
| 197 | #endif | 
| 198 | } | 
| 199 |  | 
| 200 | if (args_info.output_given) { | 
| 201 | analyser->setOutputName(args_info.output_arg); | 
| 202 | } | 
| 203 | if (args_info.step_given) { | 
| 204 | analyser->setStep(args_info.step_arg); | 
| 205 | } | 
| 206 |  | 
| 207 | analyser->process(); | 
| 208 |  | 
| 209 | delete analyser; | 
| 210 | delete info; | 
| 211 |  | 
| 212 | return 0; | 
| 213 | } | 
| 214 |  |