# | Line 59 | Line 59 | |
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59 | #include "UseTheForce/DarkSide/fSwitchingFunctionType.h" | |
60 | #include "UseTheForce/doForces_interface.h" | |
61 | #include "UseTheForce/DarkSide/electrostatic_interface.h" | |
62 | – | #include "UseTheForce/notifyCutoffs_interface.h" |
62 | #include "UseTheForce/DarkSide/switcheroo_interface.h" | |
63 | #include "utils/MemoryUtils.hpp" | |
64 | #include "utils/simError.h" | |
65 | #include "selection/SelectionManager.hpp" | |
66 | + | #include "io/ForceFieldOptions.hpp" |
67 | + | #include "UseTheForce/ForceField.hpp" |
68 | ||
69 | #ifdef IS_MPI | |
70 | #include "UseTheForce/mpiComponentPlan.h" | |
# | Line 81 | Line 82 | namespace oopse { | |
82 | return result; | |
83 | } | |
84 | ||
85 | < | SimInfo::SimInfo(MakeStamps* stamps, std::vector<std::pair<MoleculeStamp*, int> >& molStampPairs, |
86 | < | ForceField* ff, Globals* simParams) : |
86 | < | stamps_(stamps), forceField_(ff), simParams_(simParams), |
85 | > | SimInfo::SimInfo(ForceField* ff, Globals* simParams) : |
86 | > | forceField_(ff), simParams_(simParams), |
87 | ndf_(0), ndfRaw_(0), ndfTrans_(0), nZconstraint_(0), | |
88 | nGlobalMols_(0), nGlobalAtoms_(0), nGlobalCutoffGroups_(0), | |
89 | nGlobalIntegrableObjects_(0), nGlobalRigidBodies_(0), | |
# | Line 91 | Line 91 | namespace oopse { | |
91 | nIntegrableObjects_(0), nCutoffGroups_(0), nConstraints_(0), | |
92 | sman_(NULL), fortranInitialized_(false) { | |
93 | ||
94 | – | |
95 | – | std::vector<std::pair<MoleculeStamp*, int> >::iterator i; |
94 | MoleculeStamp* molStamp; | |
95 | int nMolWithSameStamp; | |
96 | int nCutoffAtoms = 0; // number of atoms belong to cutoff groups | |
# | Line 100 | Line 98 | namespace oopse { | |
98 | CutoffGroupStamp* cgStamp; | |
99 | RigidBodyStamp* rbStamp; | |
100 | int nRigidAtoms = 0; | |
101 | < | |
102 | < | for (i = molStampPairs.begin(); i !=molStampPairs.end(); ++i) { |
103 | < | molStamp = i->first; |
104 | < | nMolWithSameStamp = i->second; |
101 | > | std::vector<Component*> components = simParams->getComponents(); |
102 | > | |
103 | > | for (std::vector<Component*>::iterator i = components.begin(); i !=components.end(); ++i) { |
104 | > | molStamp = (*i)->getMoleculeStamp(); |
105 | > | nMolWithSameStamp = (*i)->getNMol(); |
106 | ||
107 | addMoleculeStamp(molStamp, nMolWithSameStamp); | |
108 | ||
109 | //calculate atoms in molecules | |
110 | nGlobalAtoms_ += molStamp->getNAtoms() *nMolWithSameStamp; | |
111 | ||
113 | – | |
112 | //calculate atoms in cutoff groups | |
113 | int nAtomsInGroups = 0; | |
114 | int nCutoffGroupsInStamp = molStamp->getNCutoffGroups(); | |
115 | ||
116 | for (int j=0; j < nCutoffGroupsInStamp; j++) { | |
117 | < | cgStamp = molStamp->getCutoffGroup(j); |
117 | > | cgStamp = molStamp->getCutoffGroupStamp(j); |
118 | nAtomsInGroups += cgStamp->getNMembers(); | |
119 | } | |
120 | ||
# | Line 129 | Line 127 | namespace oopse { | |
127 | int nRigidBodiesInStamp = molStamp->getNRigidBodies(); | |
128 | ||
129 | for (int j=0; j < nRigidBodiesInStamp; j++) { | |
130 | < | rbStamp = molStamp->getRigidBody(j); |
130 | > | rbStamp = molStamp->getRigidBodyStamp(j); |
131 | nAtomsInRigidBodies += rbStamp->getNMembers(); | |
132 | } | |
133 | ||
# | Line 168 | Line 166 | namespace oopse { | |
166 | } | |
167 | molecules_.clear(); | |
168 | ||
171 | – | delete stamps_; |
169 | delete sman_; | |
170 | delete simParams_; | |
171 | delete forceField_; | |
# | Line 275 | Line 272 | namespace oopse { | |
272 | } | |
273 | } | |
274 | ||
275 | < | }//end for (integrableObject) |
276 | < | }// end for (mol) |
275 | > | } |
276 | > | } |
277 | ||
278 | // n_constraints is local, so subtract them on each processor | |
279 | ndf_local -= nConstraints_; | |
# | Line 920 | Line 917 | namespace oopse { | |
917 | ||
918 | ||
919 | } | |
923 | – | |
924 | – | #endif |
925 | – | |
926 | – | double SimInfo::calcMaxCutoffRadius() { |
927 | – | |
928 | – | |
929 | – | std::set<AtomType*> atomTypes; |
930 | – | std::set<AtomType*>::iterator i; |
931 | – | std::vector<double> cutoffRadius; |
932 | – | |
933 | – | //get the unique atom types |
934 | – | atomTypes = getUniqueAtomTypes(); |
920 | ||
936 | – | //query the max cutoff radius among these atom types |
937 | – | for (i = atomTypes.begin(); i != atomTypes.end(); ++i) { |
938 | – | cutoffRadius.push_back(forceField_->getRcutFromAtomType(*i)); |
939 | – | } |
940 | – | |
941 | – | double maxCutoffRadius = *(std::max_element(cutoffRadius.begin(), cutoffRadius.end())); |
942 | – | #ifdef IS_MPI |
943 | – | //pick the max cutoff radius among the processors |
921 | #endif | |
922 | ||
923 | < | return maxCutoffRadius; |
947 | < | } |
948 | < | |
949 | < | void SimInfo::getCutoff(double& rcut, double& rsw) { |
923 | > | void SimInfo::setupCutoff() { |
924 | ||
925 | < | if (fInfo_.SIM_uses_Charges | fInfo_.SIM_uses_Dipoles | fInfo_.SIM_uses_RF) { |
952 | < | |
953 | < | if (!simParams_->haveCutoffRadius()){ |
954 | < | sprintf(painCave.errMsg, |
955 | < | "SimCreator Warning: No value was set for the cutoffRadius.\n" |
956 | < | "\tOOPSE will use a default value of 15.0 angstroms" |
957 | < | "\tfor the cutoffRadius.\n"); |
958 | < | painCave.isFatal = 0; |
959 | < | simError(); |
960 | < | rcut = 15.0; |
961 | < | } else{ |
962 | < | rcut = simParams_->getCutoffRadius(); |
963 | < | } |
925 | > | ForceFieldOptions& forceFieldOptions_ = forceField_->getForceFieldOptions(); |
926 | ||
927 | < | if (!simParams_->haveSwitchingRadius()){ |
928 | < | sprintf(painCave.errMsg, |
967 | < | "SimCreator Warning: No value was set for switchingRadius.\n" |
968 | < | "\tOOPSE will use a default value of\n" |
969 | < | "\t0.85 * cutoffRadius for the switchingRadius\n"); |
970 | < | painCave.isFatal = 0; |
971 | < | simError(); |
972 | < | rsw = 0.85 * rcut; |
973 | < | } else{ |
974 | < | rsw = simParams_->getSwitchingRadius(); |
975 | < | } |
927 | > | // Check the cutoff policy |
928 | > | int cp = TRADITIONAL_CUTOFF_POLICY; // Set to traditional by default |
929 | ||
930 | < | } else { |
931 | < | // if charge, dipole or reaction field is not used and the cutofff radius is not specified in |
932 | < | //meta-data file, the maximum cutoff radius calculated from forcefiled will be used |
933 | < | |
934 | < | if (simParams_->haveCutoffRadius()) { |
935 | < | rcut = simParams_->getCutoffRadius(); |
983 | < | } else { |
984 | < | //set cutoff radius to the maximum cutoff radius based on atom types in the whole system |
985 | < | rcut = calcMaxCutoffRadius(); |
986 | < | } |
987 | < | |
988 | < | if (simParams_->haveSwitchingRadius()) { |
989 | < | rsw = simParams_->getSwitchingRadius(); |
990 | < | } else { |
991 | < | rsw = rcut; |
992 | < | } |
993 | < | |
994 | < | } |
995 | < | } |
996 | < | |
997 | < | void SimInfo::setupCutoff() { |
998 | < | getCutoff(rcut_, rsw_); |
999 | < | double rnblist = rcut_ + 1; // skin of neighbor list |
930 | > | std::string myPolicy; |
931 | > | if (forceFieldOptions_.haveCutoffPolicy()){ |
932 | > | myPolicy = forceFieldOptions_.getCutoffPolicy(); |
933 | > | }else if (simParams_->haveCutoffPolicy()) { |
934 | > | myPolicy = simParams_->getCutoffPolicy(); |
935 | > | } |
936 | ||
937 | < | //Pass these cutoff radius etc. to fortran. This function should be called once and only once |
1002 | < | |
1003 | < | int cp = TRADITIONAL_CUTOFF_POLICY; |
1004 | < | if (simParams_->haveCutoffPolicy()) { |
1005 | < | std::string myPolicy = simParams_->getCutoffPolicy(); |
937 | > | if (!myPolicy.empty()){ |
938 | toUpper(myPolicy); | |
939 | if (myPolicy == "MIX") { | |
940 | cp = MIX_CUTOFF_POLICY; | |
# | Line 1021 | Line 953 | namespace oopse { | |
953 | } | |
954 | } | |
955 | } | |
956 | < | } |
956 | > | } |
957 | > | notifyFortranCutoffPolicy(&cp); |
958 | ||
959 | < | |
959 | > | // Check the Skin Thickness for neighborlists |
960 | > | double skin; |
961 | if (simParams_->haveSkinThickness()) { | |
962 | < | double skinThickness = simParams_->getSkinThickness(); |
963 | < | } |
962 | > | skin = simParams_->getSkinThickness(); |
963 | > | notifyFortranSkinThickness(&skin); |
964 | > | } |
965 | > | |
966 | > | // Check if the cutoff was set explicitly: |
967 | > | if (simParams_->haveCutoffRadius()) { |
968 | > | rcut_ = simParams_->getCutoffRadius(); |
969 | > | if (simParams_->haveSwitchingRadius()) { |
970 | > | rsw_ = simParams_->getSwitchingRadius(); |
971 | > | } else { |
972 | > | rsw_ = rcut_; |
973 | > | } |
974 | > | notifyFortranCutoffs(&rcut_, &rsw_); |
975 | > | |
976 | > | } else { |
977 | > | |
978 | > | // For electrostatic atoms, we'll assume a large safe value: |
979 | > | if (fInfo_.SIM_uses_Charges | fInfo_.SIM_uses_Dipoles | fInfo_.SIM_uses_RF) { |
980 | > | sprintf(painCave.errMsg, |
981 | > | "SimCreator Warning: No value was set for the cutoffRadius.\n" |
982 | > | "\tOOPSE will use a default value of 15.0 angstroms" |
983 | > | "\tfor the cutoffRadius.\n"); |
984 | > | painCave.isFatal = 0; |
985 | > | simError(); |
986 | > | rcut_ = 15.0; |
987 | > | |
988 | > | if (simParams_->haveElectrostaticSummationMethod()) { |
989 | > | std::string myMethod = simParams_->getElectrostaticSummationMethod(); |
990 | > | toUpper(myMethod); |
991 | > | if (myMethod == "SHIFTED_POTENTIAL" || myMethod == "SHIFTED_FORCE") { |
992 | > | if (simParams_->haveSwitchingRadius()){ |
993 | > | sprintf(painCave.errMsg, |
994 | > | "SimInfo Warning: A value was set for the switchingRadius\n" |
995 | > | "\teven though the electrostaticSummationMethod was\n" |
996 | > | "\tset to %s\n", myMethod.c_str()); |
997 | > | painCave.isFatal = 1; |
998 | > | simError(); |
999 | > | } |
1000 | > | } |
1001 | > | } |
1002 | > | |
1003 | > | if (simParams_->haveSwitchingRadius()){ |
1004 | > | rsw_ = simParams_->getSwitchingRadius(); |
1005 | > | } else { |
1006 | > | sprintf(painCave.errMsg, |
1007 | > | "SimCreator Warning: No value was set for switchingRadius.\n" |
1008 | > | "\tOOPSE will use a default value of\n" |
1009 | > | "\t0.85 * cutoffRadius for the switchingRadius\n"); |
1010 | > | painCave.isFatal = 0; |
1011 | > | simError(); |
1012 | > | rsw_ = 0.85 * rcut_; |
1013 | > | } |
1014 | > | notifyFortranCutoffs(&rcut_, &rsw_); |
1015 | > | } else { |
1016 | > | // We didn't set rcut explicitly, and we don't have electrostatic atoms, so |
1017 | > | // We'll punt and let fortran figure out the cutoffs later. |
1018 | > | |
1019 | > | notifyFortranYouAreOnYourOwn(); |
1020 | ||
1021 | < | notifyFortranCutoffs(&rcut_, &rsw_, &rnblist, &cp); |
1022 | < | // also send cutoff notification to electrostatics |
1033 | < | setElectrostaticCutoffRadius(&rcut_, &rsw_); |
1021 | > | } |
1022 | > | } |
1023 | } | |
1024 | ||
1025 | void SimInfo::setupElectrostaticSummationMethod( int isError ) { | |
# | Line 1065 | Line 1054 | namespace oopse { | |
1054 | } else { | |
1055 | // throw error | |
1056 | sprintf( painCave.errMsg, | |
1057 | < | "SimInfo error: Unknown electrostaticSummationMethod. (Input file specified %s .)\n\telectrostaticSummationMethod must be one of: \"none\", \"shifted_potential\", \"shifted_force\", or \"reaction_field\".", myMethod.c_str() ); |
1057 | > | "SimInfo error: Unknown electrostaticSummationMethod.\n" |
1058 | > | "\t(Input file specified %s .)\n" |
1059 | > | "\telectrostaticSummationMethod must be one of: \"none\",\n" |
1060 | > | "\t\"shifted_potential\", \"shifted_force\", or \n" |
1061 | > | "\t\"reaction_field\".\n", myMethod.c_str() ); |
1062 | painCave.isFatal = 1; | |
1063 | simError(); | |
1064 | } | |
# | Line 1086 | Line 1079 | namespace oopse { | |
1079 | if (!simParams_->haveDampingAlpha()) { | |
1080 | //throw error | |
1081 | sprintf( painCave.errMsg, | |
1082 | < | "SimInfo warning: dampingAlpha was not specified in the input file. A default value of %f (1/ang) will be used.", alphaVal); |
1082 | > | "SimInfo warning: dampingAlpha was not specified in the input file.\n" |
1083 | > | "\tA default value of %f (1/ang) will be used.\n", alphaVal); |
1084 | painCave.isFatal = 0; | |
1085 | simError(); | |
1086 | } | |
1087 | } else { | |
1088 | // throw error | |
1089 | sprintf( painCave.errMsg, | |
1090 | < | "SimInfo error: Unknown electrostaticScreeningMethod. (Input file specified %s .)\n\telectrostaticScreeningMethod must be one of: \"undamped\" or \"damped\".", myScreen.c_str() ); |
1090 | > | "SimInfo error: Unknown electrostaticScreeningMethod.\n" |
1091 | > | "\t(Input file specified %s .)\n" |
1092 | > | "\telectrostaticScreeningMethod must be one of: \"undamped\"\n" |
1093 | > | "or \"damped\".\n", myScreen.c_str() ); |
1094 | painCave.isFatal = 1; | |
1095 | simError(); | |
1096 | } | |
# | Line 1102 | Line 1099 | namespace oopse { | |
1099 | ||
1100 | // let's pass some summation method variables to fortran | |
1101 | setElectrostaticSummationMethod( &esm ); | |
1102 | + | setFortranElectrostaticMethod( &esm ); |
1103 | setScreeningMethod( &sm ); | |
1104 | setDampingAlpha( &alphaVal ); | |
1105 | setReactionFieldDielectric( &dielectric ); | |
1106 | < | initFortranFF( &esm, &errorOut ); |
1106 | > | initFortranFF( &errorOut ); |
1107 | } | |
1108 | ||
1109 | void SimInfo::setupSwitchingFunction() { |
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> | Changed lines |