40 |
|
*/ |
41 |
|
|
42 |
|
#include "integrators/RNEMD.hpp" |
43 |
+ |
#include "math/Vector3.hpp" |
44 |
|
#include "math/SquareMatrix3.hpp" |
45 |
|
#include "primitives/Molecule.hpp" |
46 |
|
#include "primitives/StuntDouble.hpp" |
47 |
+ |
#include "utils/OOPSEConstant.hpp" |
48 |
+ |
#include "utils/Tuple.hpp" |
49 |
|
|
50 |
|
#ifndef IS_MPI |
51 |
|
#include "math/SeqRandNumGen.hpp" |
62 |
|
|
63 |
|
namespace oopse { |
64 |
|
|
65 |
< |
RNEMD::RNEMD(SimInfo* info) : info_(info) { |
65 |
> |
RNEMD::RNEMD(SimInfo* info) : info_(info), evaluator_(info), seleMan_(info) { |
66 |
|
|
67 |
|
int seedValue; |
68 |
|
Globals * simParams = info->getSimParams(); |
73 |
|
stringToEnumMap_["Pz"] = rnemdPz; |
74 |
|
stringToEnumMap_["Unknown"] = rnemdUnknown; |
75 |
|
|
76 |
+ |
rnemdObjectSelection_ = simParams->getRNEMD_objectSelection(); |
77 |
+ |
|
78 |
+ |
std::cerr << "calling evaluator with " << rnemdObjectSelection_ << "\n"; |
79 |
+ |
evaluator_.loadScriptString(rnemdObjectSelection_); |
80 |
+ |
std::cerr << "done"; |
81 |
+ |
|
82 |
|
const std::string st = simParams->getRNEMD_swapType(); |
83 |
|
|
84 |
|
std::map<std::string, RNEMDTypeEnum>::iterator i; |
85 |
|
i = stringToEnumMap_.find(st); |
86 |
|
rnemdType_ = (i == stringToEnumMap_.end()) ? RNEMD::rnemdUnknown : i->second; |
87 |
|
|
79 |
– |
|
88 |
|
set_RNEMD_swapTime(simParams->getRNEMD_swapTime()); |
89 |
|
set_RNEMD_nBins(simParams->getRNEMD_nBins()); |
90 |
|
exchangeSum_ = 0.0; |
113 |
|
void RNEMD::doSwap() { |
114 |
|
std::cerr << "in RNEMD!\n"; |
115 |
|
std::cerr << "nBins = " << nBins_ << "\n"; |
116 |
+ |
int midBin = nBins_ / 2; |
117 |
+ |
std::cerr << "midBin = " << midBin << "\n"; |
118 |
|
std::cerr << "swapTime = " << swapTime_ << "\n"; |
119 |
|
std::cerr << "exchangeSum = " << exchangeSum_ << "\n"; |
120 |
|
std::cerr << "swapType = " << rnemdType_ << "\n"; |
121 |
+ |
std::cerr << "selection = " << rnemdObjectSelection_ << "\n"; |
122 |
+ |
|
123 |
+ |
Snapshot* currentSnap_ = info_->getSnapshotManager()->getCurrentSnapshot(); |
124 |
+ |
Mat3x3d hmat = currentSnap_->getHmat(); |
125 |
+ |
|
126 |
+ |
seleMan_.setSelectionSet(evaluator_.evaluate()); |
127 |
+ |
|
128 |
+ |
std::cerr << "selectionCount = " << seleMan_.getSelectionCount() << "\n\n"; |
129 |
+ |
|
130 |
+ |
int i; |
131 |
+ |
StuntDouble* sd; |
132 |
+ |
int idx = sd->getLocalIndex(); |
133 |
+ |
|
134 |
+ |
std::vector<tuple3<RealType, int, StuntDouble* > > endSlice; |
135 |
+ |
std::vector<tuple3<RealType, int, StuntDouble* > > midSlice; |
136 |
+ |
|
137 |
+ |
for (sd = seleMan_.beginSelected(i); sd != NULL; |
138 |
+ |
sd = seleMan_.nextSelected(i)) { |
139 |
+ |
|
140 |
+ |
Vector3d pos = sd->getPos(); |
141 |
+ |
|
142 |
+ |
// wrap the stuntdouble's position back into the box: |
143 |
+ |
|
144 |
+ |
if (usePeriodicBoundaryConditions_) |
145 |
+ |
currentSnap_->wrapVector(pos); |
146 |
+ |
|
147 |
+ |
// which bin is this stuntdouble in? |
148 |
+ |
|
149 |
+ |
int binNo = int(nBins_ * (pos.z()) / hmat(2,2)); |
150 |
+ |
|
151 |
+ |
// if we're in bin 0 or the middleBin |
152 |
+ |
if (binNo == 0 || binNo == midBin) { |
153 |
+ |
|
154 |
+ |
RealType mass = sd->getMass(); |
155 |
+ |
Vector3d vel = sd->getVel(); |
156 |
+ |
RealType value; |
157 |
+ |
|
158 |
+ |
switch(rnemdType_) { |
159 |
+ |
case rnemdKinetic : |
160 |
+ |
|
161 |
+ |
value = mass * (vel[0]*vel[0] + vel[1]*vel[1] + |
162 |
+ |
vel[2]*vel[2]); |
163 |
+ |
|
164 |
+ |
if (sd->isDirectional()) { |
165 |
+ |
Vector3d angMom = sd->getJ(); |
166 |
+ |
Mat3x3d I = sd->getI(); |
167 |
+ |
|
168 |
+ |
if (sd->isLinear()) { |
169 |
+ |
int i = sd->linearAxis(); |
170 |
+ |
int j = (i + 1) % 3; |
171 |
+ |
int k = (i + 2) % 3; |
172 |
+ |
value += angMom[j] * angMom[j] / I(j, j) + |
173 |
+ |
angMom[k] * angMom[k] / I(k, k); |
174 |
+ |
} else { |
175 |
+ |
value += angMom[0]*angMom[0]/I(0, 0) |
176 |
+ |
+ angMom[1]*angMom[1]/I(1, 1) |
177 |
+ |
+ angMom[2]*angMom[2]/I(2, 2); |
178 |
+ |
} |
179 |
+ |
} |
180 |
+ |
value = value * 0.5 / OOPSEConstant::energyConvert; |
181 |
+ |
break; |
182 |
+ |
case rnemdPx : |
183 |
+ |
value = mass * vel[0]; |
184 |
+ |
break; |
185 |
+ |
case rnemdPy : |
186 |
+ |
value = mass * vel[1]; |
187 |
+ |
break; |
188 |
+ |
case rnemdPz : |
189 |
+ |
value = mass * vel[2]; |
190 |
+ |
break; |
191 |
+ |
case rnemdUnknown : |
192 |
+ |
default : |
193 |
+ |
break; |
194 |
+ |
} |
195 |
+ |
|
196 |
+ |
if (binNo == 0) |
197 |
+ |
endSlice.push_back( make_tuple3(value, idx, sd)); |
198 |
+ |
|
199 |
+ |
if (binNo == midBin) |
200 |
+ |
midSlice.push_back( make_tuple3(value, idx, sd)); |
201 |
+ |
} |
202 |
+ |
|
203 |
+ |
// find smallest value in endSlice: |
204 |
+ |
std::sort(endSlice.begin(), endSlice.end()); |
205 |
+ |
RealType min_val = endSlice[0].first; |
206 |
+ |
int min_idx = endSlice[0].second; |
207 |
+ |
StuntDouble* min_sd = endSlice[0].third; |
208 |
+ |
|
209 |
+ |
std::cerr << "smallest value = " << min_val << " idx = " << min_idx << "\n"; |
210 |
+ |
|
211 |
+ |
// find largest value in midSlice: |
212 |
+ |
std::sort(midSlice.rbegin(), midSlice.rend()); |
213 |
+ |
RealType max_val = midSlice[0].first; |
214 |
+ |
int max_idx = midSlice[0].second; |
215 |
+ |
StuntDouble* max_sd = midSlice[0].third; |
216 |
+ |
|
217 |
+ |
std::cerr << "largest value = " << max_val << " idx = " << max_idx << "\n"; |
218 |
+ |
|
219 |
+ |
} |
220 |
|
} |
221 |
|
} |