| 39 |  | * such damages. | 
| 40 |  | */ | 
| 41 |  |  | 
| 42 | < | #include <cmath> | 
| 42 | > |  | 
| 43 |  | #include "restraints/ThermoIntegrationForceManager.hpp" | 
| 44 | – | #include "integrators/Integrator.hpp" | 
| 45 | – | #include "math/SquareMatrix3.hpp" | 
| 46 | – | #include "primitives/Molecule.hpp" | 
| 47 | – | #include "utils/simError.h" | 
| 48 | – | #include "utils/OOPSEConstant.hpp" | 
| 49 | – | #include "utils/StringUtils.hpp" | 
| 44 |  |  | 
| 45 |  | #ifdef IS_MPI | 
| 46 |  | #include <mpi.h> | 
| 47 | < | #define TAKE_THIS_TAG_REAL 2 | 
| 54 | < | #endif //is_mpi | 
| 47 | > | #endif | 
| 48 |  |  | 
| 49 |  | namespace oopse { | 
| 50 |  |  | 
| 51 |  | ThermoIntegrationForceManager::ThermoIntegrationForceManager(SimInfo* info): | 
| 52 | < | ForceManager(info){ | 
| 53 | < | currSnapshot_ = info_->getSnapshotManager()->getCurrentSnapshot(); | 
| 54 | < | simParam = info_->getSimParams(); | 
| 52 | > | RestraintForceManager(info){ | 
| 53 | > | currSnapshot_ = info_->getSnapshotManager()->getCurrentSnapshot(); | 
| 54 | > | simParam = info_->getSimParams(); | 
| 55 |  |  | 
| 56 | < | if (simParam->haveThermodynamicIntegrationLambda()){ | 
| 57 | < | tIntLambda_ = simParam->getThermodynamicIntegrationLambda(); | 
| 58 | < | } | 
| 59 | < | else{ | 
| 60 | < | tIntLambda_ = 1.0; | 
| 61 | < | sprintf(painCave.errMsg, | 
| 62 | < | "ThermoIntegration error: the transformation parameter\n" | 
| 63 | < | "\t(lambda) was not specified. OOPSE will use a default\n" | 
| 64 | < | "\tvalue of %f. To set lambda, use the \n" | 
| 65 | < | "\tthermodynamicIntegrationLambda variable.\n", | 
| 66 | < | tIntLambda_); | 
| 67 | < | painCave.isFatal = 0; | 
| 68 | < | simError(); | 
| 69 | < | } | 
| 56 | > | if (simParam->haveThermodynamicIntegrationLambda()){ | 
| 57 | > | tIntLambda_ = simParam->getThermodynamicIntegrationLambda(); | 
| 58 | > | } | 
| 59 | > | else{ | 
| 60 | > | tIntLambda_ = 1.0; | 
| 61 | > | sprintf(painCave.errMsg, | 
| 62 | > | "ThermoIntegration error: the transformation parameter\n" | 
| 63 | > | "\t(lambda) was not specified. OOPSE will use a default\n" | 
| 64 | > | "\tvalue of %f. To set lambda, use the \n" | 
| 65 | > | "\tthermodynamicIntegrationLambda variable.\n", | 
| 66 | > | tIntLambda_); | 
| 67 | > | painCave.isFatal = 0; | 
| 68 | > | simError(); | 
| 69 | > | } | 
| 70 |  |  | 
| 71 | < | if (simParam->haveThermodynamicIntegrationK()){ | 
| 72 | < | tIntK_ = simParam->getThermodynamicIntegrationK(); | 
| 80 | < | } | 
| 81 | < | else{ | 
| 82 | < | tIntK_ = 1.0; | 
| 83 | < | sprintf(painCave.errMsg, | 
| 84 | < | "ThermoIntegration Warning: the tranformation parameter\n" | 
| 85 | < | "\texponent (k) was not specified. OOPSE will use a default\n" | 
| 86 | < | "\tvalue of %f. To set k, use the thermodynamicIntegrationK\n" | 
| 87 | < | "\tvariable.\n", | 
| 88 | < | tIntK_); | 
| 89 | < | painCave.isFatal = 0; | 
| 90 | < | simError(); | 
| 91 | < | } | 
| 92 | < |  | 
| 93 | < | if (simParam->getUseSolidThermInt()) { | 
| 94 | < | // build a restraint object | 
| 95 | < | restraint_ =  new Restraints(info_, tIntLambda_, tIntK_); | 
| 96 | < |  | 
| 97 | < | } | 
| 98 | < |  | 
| 99 | < | // build the scaling factor used to modulate the forces and torques | 
| 100 | < | factor_ = pow(tIntLambda_, tIntK_); | 
| 101 | < |  | 
| 71 | > | if (simParam->haveThermodynamicIntegrationK()){ | 
| 72 | > | tIntK_ = simParam->getThermodynamicIntegrationK(); | 
| 73 |  | } | 
| 74 | + | else{ | 
| 75 | + | tIntK_ = 1.0; | 
| 76 | + | sprintf(painCave.errMsg, | 
| 77 | + | "ThermoIntegration Warning: the tranformation parameter\n" | 
| 78 | + | "\texponent (k) was not specified. OOPSE will use a default\n" | 
| 79 | + | "\tvalue of %f. To set k, use the thermodynamicIntegrationK\n" | 
| 80 | + | "\tvariable.\n", | 
| 81 | + | tIntK_); | 
| 82 | + | painCave.isFatal = 0; | 
| 83 | + | simError(); | 
| 84 | + | } | 
| 85 | + |  | 
| 86 | + | // build the scaling factor used to modulate the forces and torques | 
| 87 | + | factor_ = pow(tIntLambda_, tIntK_); | 
| 88 | + | } | 
| 89 |  |  | 
| 90 |  | ThermoIntegrationForceManager::~ThermoIntegrationForceManager(){ | 
| 91 |  | } | 
| 124 |  | } | 
| 125 |  | } | 
| 126 |  | } | 
| 127 | < |  | 
| 127 | > |  | 
| 128 |  | // set vraw to be the unmodulated potential | 
| 129 |  | lrPot_ = curSnapshot->statData[Stats::LONG_RANGE_POTENTIAL]; | 
| 130 |  | curSnapshot->statData[Stats::VRAW] = lrPot_; | 
| 137 |  | tempTau = curSnapshot->statData.getTau(); | 
| 138 |  | tempTau *= factor_; | 
| 139 |  | curSnapshot->statData.setTau(tempTau); | 
| 140 | < | #ifndef IS_MPI | 
| 141 | < | // do the single processor crystal restraint forces for | 
| 142 | < | // thermodynamic integration | 
| 143 | < | if (simParam->getUseSolidThermInt()) { | 
| 144 | < |  | 
| 145 | < | lrPot_ += restraint_->Calc_Restraint_Forces(); | 
| 146 | < | curSnapshot->statData[Stats::LONG_RANGE_POTENTIAL] = lrPot_; | 
| 147 | < |  | 
| 148 | < | vHarm_ = restraint_->getVharm(); | 
| 149 | < | curSnapshot->statData[Stats::VHARM] = vHarm_; | 
| 140 | > |  | 
| 141 | > | // now, on to the applied restraining potentials (if needed): | 
| 142 | > | RealType restPot_local = 0.0; | 
| 143 | > | RealType vHarm_local = 0.0; | 
| 144 | > |  | 
| 145 | > | if (simParam->getUseRestraints()) { | 
| 146 | > | // do restraints from RestraintForceManager: | 
| 147 | > | //restPot_local = doRestraints(1.0 - factor_); | 
| 148 | > | restPot_local = doRestraints(1.0 - factor_); | 
| 149 | > | vHarm_local = getUnscaledPotential(); | 
| 150 |  | } | 
| 151 | + |  | 
| 152 | + | #ifdef IS_MPI | 
| 153 | + | RealType restPot; | 
| 154 | + | MPI::COMM_WORLD.Allreduce(&restPot_local, &restPot, 1, | 
| 155 | + | MPI::REALTYPE, MPI::SUM); | 
| 156 | + | MPI::COMM_WORLD.Allreduce(&vHarm_local, &vHarm_, 1, | 
| 157 | + | MPI::REALTYPE, MPI::SUM); | 
| 158 | + | lrPot_ += restPot; | 
| 159 |  | #else | 
| 160 | < | double tempLRPot = 0.0; | 
| 161 | < | double tempVHarm = 0.0; | 
| 162 | < | MPI_Status ierr; | 
| 169 | < | int nproc; | 
| 170 | < | MPI_Comm_size(MPI_COMM_WORLD, &nproc); | 
| 171 | < | vHarm_ = 0.0; | 
| 160 | > | lrPot_ += restPot_local; | 
| 161 | > | vHarm_ = vHarm_local; | 
| 162 | > | #endif | 
| 163 |  |  | 
| 164 | < | // do the MPI crystal restraint forces for each processor | 
| 165 | < | if (simParam->getUseSolidThermInt()) { | 
| 166 | < | tempLRPot = restraint_->Calc_Restraint_Forces(); | 
| 167 | < | tempVHarm = restraint_->getVharm(); | 
| 177 | < | } | 
| 178 | < |  | 
| 179 | < | // master receives and accumulates the restraint info | 
| 180 | < | if (worldRank == 0) { | 
| 181 | < | for(int i = 0 ; i < nproc; ++i) { | 
| 182 | < | if (i == worldRank) { | 
| 183 | < | lrPot_ += tempLRPot; | 
| 184 | < | vHarm_ += tempVHarm; | 
| 185 | < | } else { | 
| 186 | < | MPI_Recv(&tempLRPot, 1, MPI_REALTYPE, i, | 
| 187 | < | TAKE_THIS_TAG_REAL, MPI_COMM_WORLD, &ierr); | 
| 188 | < | MPI_Recv(&tempVHarm, 1, MPI_REALTYPE, i, | 
| 189 | < | TAKE_THIS_TAG_REAL, MPI_COMM_WORLD, &ierr); | 
| 190 | < | lrPot_ += tempLRPot; | 
| 191 | < | vHarm_ += tempVHarm; | 
| 192 | < | } | 
| 193 | < | } | 
| 194 | < |  | 
| 195 | < | // give the final values to stats | 
| 196 | < | curSnapshot->statData[Stats::LONG_RANGE_POTENTIAL] = lrPot_; | 
| 197 | < | curSnapshot->statData[Stats::VHARM] = vHarm_; | 
| 198 | < |  | 
| 199 | < | } else { | 
| 200 | < | // pack up and send the appropriate info to the master node | 
| 201 | < | for(int j = 1; j < nproc; ++j) { | 
| 202 | < | if (worldRank == j) { | 
| 203 | < |  | 
| 204 | < | MPI_Send(&tempLRPot, 1, MPI_REALTYPE, 0, | 
| 205 | < | TAKE_THIS_TAG_REAL, MPI_COMM_WORLD); | 
| 206 | < | MPI_Send(&tempVHarm, 1, MPI_REALTYPE, 0, | 
| 207 | < | TAKE_THIS_TAG_REAL, MPI_COMM_WORLD); | 
| 208 | < | } | 
| 209 | < | } | 
| 210 | < | } | 
| 211 | < | #endif //is_mpi | 
| 212 | < | } | 
| 213 | < |  | 
| 164 | > | // give the final values to stats | 
| 165 | > | curSnapshot->statData[Stats::LONG_RANGE_POTENTIAL] = lrPot_; | 
| 166 | > | curSnapshot->statData[Stats::VHARM] = vHarm_; | 
| 167 | > | } | 
| 168 |  | } |