| 1 | 
+ | 
#define _LARGEFILE_SOURCE64 | 
| 2 | 
  | 
#define _FILE_OFFSET_BITS 64 | 
| 3 | 
  | 
 | 
| 4 | 
< | 
#include <cstring> | 
| 4 | 
> | 
#include <string.h> | 
| 5 | 
  | 
#include <iostream> | 
| 6 | 
  | 
#include <fstream> | 
| 7 | 
  | 
 | 
| 18 | 
  | 
#endif // is_mpi | 
| 19 | 
  | 
 | 
| 20 | 
  | 
    strcpy( outName, entry_plug->statusName ); | 
| 21 | 
< | 
     | 
| 21 | 
> | 
    strcpy( rawName, entry_plug->rawPotName ); | 
| 22 | 
> | 
 | 
| 23 | 
  | 
    //std::cerr << "Opening " << outName << " for stat\n"; | 
| 24 | 
  | 
 | 
| 25 | 
  | 
    outFile.open(outName, ios::out | ios::trunc ); | 
| 32 | 
  | 
      painCave.isFatal = 1; | 
| 33 | 
  | 
      simError(); | 
| 34 | 
  | 
    } | 
| 35 | 
< | 
     | 
| 35 | 
> | 
 | 
| 36 | 
  | 
    //outFile.setf( ios::scientific ); | 
| 37 | 
< | 
    outFile << "#time(fs)\ttot_E\tpotential\tkinetic\ttemperature\tpressure\tvolume\tenthalpy\n"; | 
| 37 | 
> | 
    outFile << "#time(fs)\ttot_E\tpotential\tkinetic\ttemperature\tpressure\tvolume\tconserved quantity\n"; | 
| 38 | 
  | 
     | 
| 39 | 
< | 
  | 
| 39 | 
> | 
    if (entry_plug->useSolidThermInt && !entry_plug->useLiquidThermInt) { | 
| 40 | 
> | 
      rawFile.open(rawName, ios::out | ios::trunc ); | 
| 41 | 
> | 
       | 
| 42 | 
> | 
      if( !rawFile ){ | 
| 43 | 
> | 
         | 
| 44 | 
> | 
        sprintf( painCave.errMsg, | 
| 45 | 
> | 
                 "Could not open \"%s\" for stat output.\n", | 
| 46 | 
> | 
                 rawName); | 
| 47 | 
> | 
        painCave.isFatal = 1; | 
| 48 | 
> | 
        simError(); | 
| 49 | 
> | 
      } | 
| 50 | 
> | 
       | 
| 51 | 
> | 
      rawFile << "#time(fs)\tRaw Pot\t Raw Harm\n"; | 
| 52 | 
> | 
    } | 
| 53 | 
  | 
 | 
| 54 | 
+ | 
    if (entry_plug->useLiquidThermInt) { | 
| 55 | 
+ | 
      if (entry_plug->useSolidThermInt) { | 
| 56 | 
+ | 
        sprintf( painCave.errMsg, | 
| 57 | 
+ | 
                 "It appears that you have both solid and liquid thermodynamic\n" | 
| 58 | 
+ | 
                 "integration activated in your .bass file. To avoid confusion,\n" | 
| 59 | 
+ | 
                 "specify only one technique in your .bass file. Liquid-state\n" | 
| 60 | 
+ | 
                 "thermodynamic integration will be assumed for the current\n" | 
| 61 | 
+ | 
                 "simulation. If this is not what you desire, set useSolidThermInt\n" | 
| 62 | 
+ | 
                 "to 'true' and useLiquidThermInt to 'false' in your .bass file.", | 
| 63 | 
+ | 
                 rawName); | 
| 64 | 
+ | 
        painCave.isFatal = 0; | 
| 65 | 
+ | 
        simError(); | 
| 66 | 
+ | 
      } | 
| 67 | 
+ | 
         | 
| 68 | 
+ | 
      rawFile.open(rawName, ios::out | ios::trunc ); | 
| 69 | 
+ | 
       | 
| 70 | 
+ | 
      if( !rawFile ){ | 
| 71 | 
+ | 
         | 
| 72 | 
+ | 
        sprintf( painCave.errMsg, | 
| 73 | 
+ | 
                 "Could not open \"%s\" for stat output.\n", | 
| 74 | 
+ | 
                 rawName); | 
| 75 | 
+ | 
        painCave.isFatal = 1; | 
| 76 | 
+ | 
        simError(); | 
| 77 | 
+ | 
      } | 
| 78 | 
+ | 
       | 
| 79 | 
+ | 
      rawFile << "#time(fs)\tRaw Pot\n"; | 
| 80 | 
+ | 
    } | 
| 81 | 
+ | 
 | 
| 82 | 
  | 
#ifdef IS_MPI | 
| 83 | 
  | 
  } | 
| 84 | 
  | 
 | 
| 97 | 
  | 
#endif // is_mpi | 
| 98 | 
  | 
 | 
| 99 | 
  | 
    outFile.close(); | 
| 100 | 
+ | 
    rawFile.close(); | 
| 101 | 
  | 
    delete tStats; | 
| 102 | 
  | 
 | 
| 103 | 
  | 
#ifdef IS_MPI | 
| 107 | 
  | 
 | 
| 108 | 
  | 
void StatWriter::writeStat( double currentTime ){ | 
| 109 | 
  | 
 | 
| 110 | 
< | 
  double totE, potE, kinE, temp, press, vol, enthalpy; | 
| 110 | 
> | 
  double totE, potE, kinE, temp, press, vol; | 
| 111 | 
> | 
  double conservedQuantity; | 
| 112 | 
  | 
 | 
| 113 | 
  | 
  totE = tStats->getTotalE(); | 
| 114 | 
  | 
  potE = tStats->getPotential(); | 
| 116 | 
  | 
  temp = tStats->getTemperature(); | 
| 117 | 
  | 
  press = tStats->getPressure(); | 
| 118 | 
  | 
  vol = tStats->getVolume(); | 
| 119 | 
< | 
  enthalpy = tStats->getEnthalpy(); | 
| 75 | 
< | 
 | 
| 119 | 
> | 
  conservedQuantity = entry_plug->the_integrator->getConservedQuantity(); | 
| 120 | 
  | 
#ifdef IS_MPI | 
| 121 | 
  | 
  if(worldRank == 0 ){ | 
| 122 | 
  | 
#endif // is_mpi | 
| 130 | 
  | 
      << temp << "\t" | 
| 131 | 
  | 
      << press << "\t" | 
| 132 | 
  | 
      << vol << "\t" | 
| 133 | 
< | 
      << enthalpy << "\n"; | 
| 133 | 
> | 
      << conservedQuantity << "\n"; | 
| 134 | 
  | 
 | 
| 135 | 
  | 
    outFile.flush(); | 
| 136 | 
  | 
 | 
| 138 | 
  | 
  } | 
| 139 | 
  | 
#endif // is_mpi | 
| 140 | 
  | 
} | 
| 141 | 
+ | 
 | 
| 142 | 
+ | 
void StatWriter::writeRaw( double currentTime ){ | 
| 143 | 
+ | 
 | 
| 144 | 
+ | 
  double rawPot, rawHarm; | 
| 145 | 
+ | 
 | 
| 146 | 
+ | 
  rawPot = entry_plug->vRaw; | 
| 147 | 
+ | 
  rawHarm = entry_plug->vHarm; | 
| 148 | 
+ | 
 | 
| 149 | 
+ | 
#ifdef IS_MPI | 
| 150 | 
+ | 
  if(worldRank == 0 ){ | 
| 151 | 
+ | 
#endif // is_mpi | 
| 152 | 
+ | 
 | 
| 153 | 
+ | 
    rawFile.precision(8); | 
| 154 | 
+ | 
    rawFile | 
| 155 | 
+ | 
      << currentTime << "\t" | 
| 156 | 
+ | 
      << rawPot << "\t" | 
| 157 | 
+ | 
      << rawHarm << "\n"; | 
| 158 | 
+ | 
 | 
| 159 | 
+ | 
    rawFile.flush(); | 
| 160 | 
+ | 
 | 
| 161 | 
+ | 
#ifdef IS_MPI | 
| 162 | 
+ | 
  } | 
| 163 | 
+ | 
#endif // is_mpi | 
| 164 | 
+ | 
} |