| 253 |  | void ForceMatrixDecomposition::createGtypeCutoffMap() { | 
| 254 |  |  | 
| 255 |  | RealType tol = 1e-6; | 
| 256 | + | largestRcut_ = 0.0; | 
| 257 |  | RealType rc; | 
| 258 |  | int atid; | 
| 259 |  | set<AtomType*> atypes = info_->getSimulatedAtomTypes(); | 
| 260 | + |  | 
| 261 |  | map<int, RealType> atypeCutoff; | 
| 262 |  |  | 
| 263 |  | for (set<AtomType*>::iterator at = atypes.begin(); | 
| 265 |  | atid = (*at)->getIdent(); | 
| 266 |  | if (userChoseCutoff_) | 
| 267 |  | atypeCutoff[atid] = userCutoff_; | 
| 268 | < | else | 
| 268 | > | else | 
| 269 |  | atypeCutoff[atid] = interactionMan_->getSuggestedCutoffRadius(*at); | 
| 270 |  | } | 
| 271 | < |  | 
| 271 | > |  | 
| 272 |  | vector<RealType> gTypeCutoffs; | 
| 273 |  | // first we do a single loop over the cutoff groups to find the | 
| 274 |  | // largest cutoff for any atypes present in this group. | 
| 328 |  | vector<RealType> groupCutoff(nGroups_, 0.0); | 
| 329 |  | groupToGtype.resize(nGroups_); | 
| 330 |  | for (int cg1 = 0; cg1 < nGroups_; cg1++) { | 
| 329 | – |  | 
| 331 |  | groupCutoff[cg1] = 0.0; | 
| 332 |  | vector<int> atomList = getAtomsInGroupRow(cg1); | 
| 332 | – |  | 
| 333 |  | for (vector<int>::iterator ia = atomList.begin(); | 
| 334 |  | ia != atomList.end(); ++ia) { | 
| 335 |  | int atom1 = (*ia); | 
| 336 |  | atid = idents[atom1]; | 
| 337 | < | if (atypeCutoff[atid] > groupCutoff[cg1]) { | 
| 338 | < | groupCutoff[cg1] = atypeCutoff[atid]; | 
| 339 | < | } | 
| 337 | > | if (atypeCutoff[atid] > groupCutoff[cg1]) | 
| 338 | > | groupCutoff[cg1] = atypeCutoff[atid]; | 
| 339 |  | } | 
| 340 | < |  | 
| 340 | > |  | 
| 341 |  | bool gTypeFound = false; | 
| 342 |  | for (int gt = 0; gt < gTypeCutoffs.size(); gt++) { | 
| 343 |  | if (abs(groupCutoff[cg1] - gTypeCutoffs[gt]) < tol) { | 
| 345 |  | gTypeFound = true; | 
| 346 |  | } | 
| 347 |  | } | 
| 348 | < | if (!gTypeFound) { | 
| 348 | > | if (!gTypeFound) { | 
| 349 |  | gTypeCutoffs.push_back( groupCutoff[cg1] ); | 
| 350 |  | groupToGtype[cg1] = gTypeCutoffs.size() - 1; | 
| 351 |  | } | 
| 389 |  |  | 
| 390 |  | pair<int,int> key = make_pair(i,j); | 
| 391 |  | gTypeCutoffMap[key].first = thisRcut; | 
| 393 | – |  | 
| 392 |  | if (thisRcut > largestRcut_) largestRcut_ = thisRcut; | 
| 395 | – |  | 
| 393 |  | gTypeCutoffMap[key].second = thisRcut*thisRcut; | 
| 397 | – |  | 
| 394 |  | gTypeCutoffMap[key].third = pow(thisRcut + skinThickness_, 2); | 
| 399 | – |  | 
| 395 |  | // sanity check | 
| 396 |  |  | 
| 397 |  | if (userChoseCutoff_) { |