| 1 | < | /* | 
| 1 | > | /* | 
| 2 |  | * Copyright (c) 2005 The University of Notre Dame. All Rights Reserved. | 
| 3 |  | * | 
| 4 |  | * The University of Notre Dame grants you ("Licensee") a | 
| 39 |  | * such damages. | 
| 40 |  | */ | 
| 41 |  |  | 
| 42 | < | /** | 
| 43 | < | * @file Stats.cpp | 
| 44 | < | * @author tlin | 
| 45 | < | * @date 11/04/2004 | 
| 46 | < | * @time 14:26am | 
| 47 | < | * @version 1.0 | 
| 48 | < | */ | 
| 42 | > | /** | 
| 43 | > | * @file Stats.cpp | 
| 44 | > | * @author tlin | 
| 45 | > | * @date 11/04/2004 | 
| 46 | > | * @time 14:26am | 
| 47 | > | * @version 1.0 | 
| 48 | > | */ | 
| 49 |  |  | 
| 50 |  | #include "brains/Stats.hpp" | 
| 51 |  |  | 
| 52 |  | namespace oopse { | 
| 53 |  |  | 
| 54 | < | bool Stats::isInit_ = false; | 
| 55 | < | std::string Stats::title_[Stats::ENDINDEX - Stats::BEGININDEX]; | 
| 56 | < | std::string Stats::units_[Stats::ENDINDEX - Stats::BEGININDEX]; | 
| 54 | > | bool Stats::isInit_ = false; | 
| 55 | > | std::string Stats::title_[Stats::ENDINDEX - Stats::BEGININDEX]; | 
| 56 | > | std::string Stats::units_[Stats::ENDINDEX - Stats::BEGININDEX]; | 
| 57 | > | Stats::StatsMapType Stats::statsMap; | 
| 58 | > | Stats::Stats() { | 
| 59 |  |  | 
| 58 | – | Stats::Stats() { | 
| 59 | – |  | 
| 60 |  | if (!isInit_) { | 
| 61 | < | init(); | 
| 62 | < | isInit_ = true; | 
| 61 | > | init(); | 
| 62 | > | isInit_ = true; | 
| 63 |  | } | 
| 64 |  |  | 
| 65 | < | } | 
| 65 | > | } | 
| 66 |  |  | 
| 67 | < | void Stats::init() { | 
| 67 | > | void Stats::init() { | 
| 68 |  |  | 
| 69 |  | Stats::title_[TIME] = "Time"; | 
| 70 |  | Stats::title_[TOTAL_ENERGY] = "Total Energy"; | 
| 79 |  | Stats::title_[LONG_RANGE_POTENTIAL] = "Long Range Potential"; | 
| 80 |  | Stats::title_[SHORT_RANGE_POTENTIAL] = "Short Range Potential"; | 
| 81 |  | Stats::title_[VANDERWAALS_POTENTIAL] = "van der waals Potential"; | 
| 82 | + | Stats::title_[ELECTROSTATIC_POTENTIAL] = "Electrostatic Potential"; | 
| 83 |  | Stats::title_[BOND_POTENTIAL] = "Bond Potential"; | 
| 84 |  | Stats::title_[BEND_POTENTIAL] = "Bend Potential"; | 
| 85 |  | Stats::title_[DIHEDRAL_POTENTIAL] = "Dihedral Potential"; | 
| 86 |  | Stats::title_[IMPROPER_POTENTIAL] = "Improper Potential"; | 
| 87 |  | Stats::title_[VRAW] = "Raw Potential"; | 
| 88 |  | Stats::title_[VHARM] = "Harmonic Potential"; | 
| 89 | + | Stats::title_[PRESSURE_TENSOR_XX] = "P_xx"; | 
| 90 | + | Stats::title_[PRESSURE_TENSOR_XY] = "P_xy"; | 
| 91 | + | Stats::title_[PRESSURE_TENSOR_XZ] = "P_xz"; | 
| 92 | + | Stats::title_[PRESSURE_TENSOR_YX] = "P_yx"; | 
| 93 | + | Stats::title_[PRESSURE_TENSOR_YY] = "P_yy"; | 
| 94 | + | Stats::title_[PRESSURE_TENSOR_YZ] = "P_yz"; | 
| 95 | + | Stats::title_[PRESSURE_TENSOR_ZX] = "P_zx"; | 
| 96 | + | Stats::title_[PRESSURE_TENSOR_ZY] = "P_zy"; | 
| 97 | + | Stats::title_[PRESSURE_TENSOR_ZZ] = "P_zz"; | 
| 98 | + | Stats::title_[BOX_DIPOLE_X] = "box dipole x"; | 
| 99 | + | Stats::title_[BOX_DIPOLE_Y] = "box dipole y"; | 
| 100 | + | Stats::title_[BOX_DIPOLE_Z] = "box dipole z"; | 
| 101 |  |  | 
| 102 |  | Stats::units_[TIME] = "fs"; | 
| 103 |  | Stats::units_[TOTAL_ENERGY] = "kcal/mol"; | 
| 112 |  | Stats::units_[LONG_RANGE_POTENTIAL] = "kcal/mol"; | 
| 113 |  | Stats::units_[SHORT_RANGE_POTENTIAL] = "kcal/mol"; | 
| 114 |  | Stats::units_[VANDERWAALS_POTENTIAL] = "kcal/mol"; | 
| 115 | + | Stats::units_[ELECTROSTATIC_POTENTIAL] = "kcal/mol"; | 
| 116 |  | Stats::units_[BOND_POTENTIAL] = "kcal/mol"; | 
| 117 |  | Stats::units_[BEND_POTENTIAL] = "kcal/mol"; | 
| 118 |  | Stats::units_[DIHEDRAL_POTENTIAL] = "kcal/mol"; | 
| 119 |  | Stats::units_[IMPROPER_POTENTIAL] = "kcal/mol"; | 
| 120 |  | Stats::units_[VRAW] = "kcal/mol"; | 
| 121 |  | Stats::units_[VHARM] = "kcal/mol"; | 
| 122 | < | } | 
| 122 | > | Stats::units_[PRESSURE_TENSOR_XX] = "amu*fs^-2*Ang^-1"; | 
| 123 | > | Stats::units_[PRESSURE_TENSOR_XY] = "amu*fs^-2*Ang^-1"; | 
| 124 | > | Stats::units_[PRESSURE_TENSOR_XZ] = "amu*fs^-2*Ang^-1"; | 
| 125 | > | Stats::units_[PRESSURE_TENSOR_YX] = "amu*fs^-2*Ang^-1"; | 
| 126 | > | Stats::units_[PRESSURE_TENSOR_YY] = "amu*fs^-2*Ang^-1"; | 
| 127 | > | Stats::units_[PRESSURE_TENSOR_YZ] = "amu*fs^-2*Ang^-1"; | 
| 128 | > | Stats::units_[PRESSURE_TENSOR_ZX] = "amu*fs^-2*Ang^-1"; | 
| 129 | > | Stats::units_[PRESSURE_TENSOR_ZY] = "amu*fs^-2*Ang^-1"; | 
| 130 | > | Stats::units_[PRESSURE_TENSOR_ZZ] = "amu*fs^-2*Ang^-1"; | 
| 131 | > | Stats::units_[BOX_DIPOLE_X] = "C*m"; | 
| 132 | > | Stats::units_[BOX_DIPOLE_Y] = "C*m"; | 
| 133 | > | Stats::units_[BOX_DIPOLE_Z] = "C*m"; | 
| 134 |  |  | 
| 135 | + | Stats::statsMap.insert(StatsMapType::value_type("TIME", TIME)); | 
| 136 | + | Stats::statsMap.insert(StatsMapType::value_type("TOTAL_ENERGY", TOTAL_ENERGY)); | 
| 137 | + | Stats::statsMap.insert(StatsMapType::value_type("POTENTIAL_ENERGY", POTENTIAL_ENERGY)); | 
| 138 | + | Stats::statsMap.insert(StatsMapType::value_type("KINETIC_ENERGY", KINETIC_ENERGY)); | 
| 139 | + | Stats::statsMap.insert(StatsMapType::value_type("TEMPERATURE", TEMPERATURE)); | 
| 140 | + | Stats::statsMap.insert(StatsMapType::value_type("PRESSURE", PRESSURE)); | 
| 141 | + | Stats::statsMap.insert(StatsMapType::value_type("VOLUME", VOLUME)); | 
| 142 | + | Stats::statsMap.insert(StatsMapType::value_type("CONSERVED_QUANTITY", CONSERVED_QUANTITY)); | 
| 143 | + | Stats::statsMap.insert(StatsMapType::value_type("TRANSLATIONAL_KINETIC", TRANSLATIONAL_KINETIC)); | 
| 144 | + | Stats::statsMap.insert(StatsMapType::value_type("ROTATIONAL_KINETIC", ROTATIONAL_KINETIC)); | 
| 145 | + | Stats::statsMap.insert(StatsMapType::value_type("LONG_RANGE_POTENTIAL", LONG_RANGE_POTENTIAL)); | 
| 146 | + | Stats::statsMap.insert(StatsMapType::value_type("SHORT_RANGE_POTENTIAL", SHORT_RANGE_POTENTIAL)); | 
| 147 | + | Stats::statsMap.insert(StatsMapType::value_type("VANDERWAALS_POTENTIAL", VANDERWAALS_POTENTIAL)); | 
| 148 | + | Stats::statsMap.insert(StatsMapType::value_type("ELECTROSTATIC_POTENTIAL", ELECTROSTATIC_POTENTIAL)); | 
| 149 | + | Stats::statsMap.insert(StatsMapType::value_type("BOND_POTENTIAL", BOND_POTENTIAL)); | 
| 150 | + | Stats::statsMap.insert(StatsMapType::value_type("BEND_POTENTIAL", BEND_POTENTIAL)); | 
| 151 | + | Stats::statsMap.insert(StatsMapType::value_type("DIHEDRAL_POTENTIAL", DIHEDRAL_POTENTIAL)); | 
| 152 | + | Stats::statsMap.insert(StatsMapType::value_type("IMPROPER_POTENTIAL", IMPROPER_POTENTIAL)); | 
| 153 | + | Stats::statsMap.insert(StatsMapType::value_type("VRAW", VRAW)); | 
| 154 | + | Stats::statsMap.insert(StatsMapType::value_type("VHARM", VHARM)); | 
| 155 | + | Stats::statsMap.insert(StatsMapType::value_type("PRESSURE_TENSOR_XX", PRESSURE_TENSOR_XX)); | 
| 156 | + | Stats::statsMap.insert(StatsMapType::value_type("PRESSURE_TENSOR_XY", PRESSURE_TENSOR_XY)); | 
| 157 | + | Stats::statsMap.insert(StatsMapType::value_type("PRESSURE_TENSOR_XZ", PRESSURE_TENSOR_XZ)); | 
| 158 | + | Stats::statsMap.insert(StatsMapType::value_type("PRESSURE_TENSOR_YX", PRESSURE_TENSOR_YX)); | 
| 159 | + | Stats::statsMap.insert(StatsMapType::value_type("PRESSURE_TENSOR_YY", PRESSURE_TENSOR_YY)); | 
| 160 | + | Stats::statsMap.insert(StatsMapType::value_type("PRESSURE_TENSOR_YZ", PRESSURE_TENSOR_YZ)); | 
| 161 | + | Stats::statsMap.insert(StatsMapType::value_type("PRESSURE_TENSOR_ZX", PRESSURE_TENSOR_ZX)); | 
| 162 | + | Stats::statsMap.insert(StatsMapType::value_type("PRESSURE_TENSOR_ZY", PRESSURE_TENSOR_ZY)); | 
| 163 | + | Stats::statsMap.insert(StatsMapType::value_type("PRESSURE_TENSOR_ZZ", PRESSURE_TENSOR_ZZ)); | 
| 164 | + | Stats::statsMap.insert(StatsMapType::value_type("BOX_DIPOLE_X", BOX_DIPOLE_X)); | 
| 165 | + | Stats::statsMap.insert(StatsMapType::value_type("BOX_DIPOLE_Y", BOX_DIPOLE_Y)); | 
| 166 | + | Stats::statsMap.insert(StatsMapType::value_type("BOX_DIPOLE_Z", BOX_DIPOLE_Z)); | 
| 167 | + | } | 
| 168 | + |  | 
| 169 |  | } |