| 78 |
|
return atomTypeCont_.find(keys); |
| 79 |
|
} |
| 80 |
|
|
| 81 |
< |
BondType* ForceField::getBondType(const std::string &at1, const std::string &at2) { |
| 81 |
> |
BondType* ForceField::getBondType(const std::string &at1, |
| 82 |
> |
const std::string &at2) { |
| 83 |
|
std::vector<std::string> keys; |
| 84 |
|
keys.push_back(at1); |
| 85 |
|
keys.push_back(at2); |
| 92 |
|
//if no exact match found, try wild card match |
| 93 |
|
return bondTypeCont_.find(keys, wildCardAtomTypeName_); |
| 94 |
|
} |
| 94 |
– |
|
| 95 |
|
} |
| 96 |
|
|
| 97 |
< |
BendType* ForceField::getBendType(const std::string &at1, const std::string &at2, |
| 97 |
> |
BendType* ForceField::getBendType(const std::string &at1, |
| 98 |
> |
const std::string &at2, |
| 99 |
|
const std::string &at3) { |
| 100 |
|
std::vector<std::string> keys; |
| 101 |
|
keys.push_back(at1); |
| 112 |
|
} |
| 113 |
|
} |
| 114 |
|
|
| 115 |
< |
TorsionType* ForceField::getTorsionType(const std::string &at1, const std::string &at2, |
| 116 |
< |
const std::string &at3, const std::string &at4) { |
| 115 |
> |
TorsionType* ForceField::getTorsionType(const std::string &at1, |
| 116 |
> |
const std::string &at2, |
| 117 |
> |
const std::string &at3, |
| 118 |
> |
const std::string &at4) { |
| 119 |
|
std::vector<std::string> keys; |
| 120 |
|
keys.push_back(at1); |
| 121 |
|
keys.push_back(at2); |
| 131 |
|
} |
| 132 |
|
|
| 133 |
|
return torsionTypeCont_.find(keys, wildCardAtomTypeName_); |
| 131 |
– |
|
| 134 |
|
} |
| 135 |
|
|
| 136 |
< |
BondType* ForceField::getExactBondType(const std::string &at1, const std::string &at2){ |
| 136 |
> |
NonBondedInteractionType* ForceField::getNonBondedInteractionType(const std::string &at1, const std::string &at2) { |
| 137 |
|
std::vector<std::string> keys; |
| 138 |
|
keys.push_back(at1); |
| 139 |
|
keys.push_back(at2); |
| 140 |
+ |
|
| 141 |
+ |
//try exact match first |
| 142 |
+ |
NonBondedInteractionType* nbiType = nonBondedInteractionTypeCont_.find(keys); |
| 143 |
+ |
if (nbiType) { |
| 144 |
+ |
return nbiType; |
| 145 |
+ |
} else { |
| 146 |
+ |
//if no exact match found, try wild card match |
| 147 |
+ |
return nonBondedInteractionTypeCont_.find(keys, wildCardAtomTypeName_); |
| 148 |
+ |
} |
| 149 |
+ |
} |
| 150 |
+ |
|
| 151 |
+ |
BondType* ForceField::getExactBondType(const std::string &at1, |
| 152 |
+ |
const std::string &at2){ |
| 153 |
+ |
std::vector<std::string> keys; |
| 154 |
+ |
keys.push_back(at1); |
| 155 |
+ |
keys.push_back(at2); |
| 156 |
|
return bondTypeCont_.find(keys); |
| 157 |
|
} |
| 158 |
< |
|
| 159 |
< |
BendType* ForceField::getExactBendType(const std::string &at1, const std::string &at2, |
| 158 |
> |
|
| 159 |
> |
BendType* ForceField::getExactBendType(const std::string &at1, |
| 160 |
> |
const std::string &at2, |
| 161 |
|
const std::string &at3){ |
| 162 |
|
std::vector<std::string> keys; |
| 163 |
|
keys.push_back(at1); |
| 165 |
|
keys.push_back(at3); |
| 166 |
|
return bendTypeCont_.find(keys); |
| 167 |
|
} |
| 168 |
< |
|
| 169 |
< |
TorsionType* ForceField::getExactTorsionType(const std::string &at1, const std::string &at2, |
| 170 |
< |
const std::string &at3, const std::string &at4){ |
| 168 |
> |
|
| 169 |
> |
TorsionType* ForceField::getExactTorsionType(const std::string &at1, |
| 170 |
> |
const std::string &at2, |
| 171 |
> |
const std::string &at3, |
| 172 |
> |
const std::string &at4){ |
| 173 |
|
std::vector<std::string> keys; |
| 174 |
|
keys.push_back(at1); |
| 175 |
|
keys.push_back(at2); |
| 177 |
|
keys.push_back(at4); |
| 178 |
|
return torsionTypeCont_.find(keys); |
| 179 |
|
} |
| 180 |
+ |
|
| 181 |
+ |
NonBondedInteractionType* ForceField::getExactNonBondedInteractionType(const std::string &at1, const std::string &at2){ |
| 182 |
+ |
std::vector<std::string> keys; |
| 183 |
+ |
keys.push_back(at1); |
| 184 |
+ |
keys.push_back(at2); |
| 185 |
+ |
return nonBondedInteractionTypeCont_.find(keys); |
| 186 |
+ |
} |
| 187 |
+ |
|
| 188 |
+ |
|
| 189 |
|
bool ForceField::addAtomType(const std::string &at, AtomType* atomType) { |
| 190 |
|
std::vector<std::string> keys; |
| 191 |
|
keys.push_back(at); |
| 192 |
|
return atomTypeCont_.add(keys, atomType); |
| 193 |
|
} |
| 194 |
|
|
| 195 |
< |
bool ForceField::addBondType(const std::string &at1, const std::string &at2, BondType* bondType) { |
| 195 |
> |
bool ForceField::addBondType(const std::string &at1, const std::string &at2, |
| 196 |
> |
BondType* bondType) { |
| 197 |
|
std::vector<std::string> keys; |
| 198 |
|
keys.push_back(at1); |
| 199 |
|
keys.push_back(at2); |
| 200 |
< |
return bondTypeCont_.add(keys, bondType); |
| 170 |
< |
|
| 200 |
> |
return bondTypeCont_.add(keys, bondType); |
| 201 |
|
} |
| 202 |
< |
|
| 202 |
> |
|
| 203 |
|
bool ForceField::addBendType(const std::string &at1, const std::string &at2, |
| 204 |
|
const std::string &at3, BendType* bendType) { |
| 205 |
|
std::vector<std::string> keys; |
| 208 |
|
keys.push_back(at3); |
| 209 |
|
return bendTypeCont_.add(keys, bendType); |
| 210 |
|
} |
| 211 |
< |
|
| 212 |
< |
bool ForceField::addTorsionType(const std::string &at1, const std::string &at2, |
| 213 |
< |
const std::string &at3, const std::string &at4, TorsionType* torsionType) { |
| 211 |
> |
|
| 212 |
> |
bool ForceField::addTorsionType(const std::string &at1, |
| 213 |
> |
const std::string &at2, |
| 214 |
> |
const std::string &at3, |
| 215 |
> |
const std::string &at4, |
| 216 |
> |
TorsionType* torsionType) { |
| 217 |
|
std::vector<std::string> keys; |
| 218 |
|
keys.push_back(at1); |
| 219 |
|
keys.push_back(at2); |
| 222 |
|
return torsionTypeCont_.add(keys, torsionType); |
| 223 |
|
} |
| 224 |
|
|
| 225 |
< |
double ForceField::getRcutFromAtomType(AtomType* at) { |
| 225 |
> |
bool ForceField::addNonBondedInteractionType(const std::string &at1, |
| 226 |
> |
const std::string &at2, |
| 227 |
> |
NonBondedInteractionType* nbiType) { |
| 228 |
> |
std::vector<std::string> keys; |
| 229 |
> |
keys.push_back(at1); |
| 230 |
> |
keys.push_back(at2); |
| 231 |
> |
return nonBondedInteractionTypeCont_.add(keys, nbiType); |
| 232 |
> |
} |
| 233 |
> |
|
| 234 |
> |
RealType ForceField::getRcutFromAtomType(AtomType* at) { |
| 235 |
|
/**@todo */ |
| 236 |
|
GenericData* data; |
| 237 |
< |
double rcut = 0.0; |
| 238 |
< |
|
| 237 |
> |
RealType rcut = 0.0; |
| 238 |
> |
|
| 239 |
|
if (at->isLennardJones()) { |
| 240 |
|
data = at->getPropertyByName("LennardJones"); |
| 241 |
|
if (data != NULL) { |
| 242 |
|
LJParamGenericData* ljData = dynamic_cast<LJParamGenericData*>(data); |
| 243 |
< |
|
| 243 |
> |
|
| 244 |
|
if (ljData != NULL) { |
| 245 |
|
LJParam ljParam = ljData->getData(); |
| 246 |
< |
|
| 246 |
> |
|
| 247 |
|
//by default use 2.5*sigma as cutoff radius |
| 248 |
|
rcut = 2.5 * ljParam.sigma; |
| 249 |
< |
|
| 249 |
> |
|
| 250 |
|
} else { |
| 251 |
|
sprintf( painCave.errMsg, |
| 252 |
|
"Can not cast GenericData to LJParam\n"); |
| 261 |
|
simError(); |
| 262 |
|
} |
| 263 |
|
} |
| 222 |
– |
|
| 264 |
|
return rcut; |
| 265 |
|
} |
| 266 |
+ |
|
| 267 |
|
|
| 226 |
– |
|
| 268 |
|
ifstrstream* ForceField::openForceFieldFile(const std::string& filename) { |
| 269 |
|
std::string forceFieldFilename(filename); |
| 270 |
|
ifstrstream* ffStream = new ifstrstream(); |
| 291 |
|
simError(); |
| 292 |
|
} |
| 293 |
|
} |
| 253 |
– |
|
| 294 |
|
return ffStream; |
| 255 |
– |
|
| 295 |
|
} |
| 296 |
|
|
| 297 |
|
void ForceField::setFortranForceOptions(){ |