147 |
|
// make the output filenames |
148 |
|
|
149 |
|
makeOutNames(); |
150 |
– |
|
151 |
– |
if (globals->haveMinimizer()) |
152 |
– |
// make minimizer |
153 |
– |
makeMinimizer(); |
154 |
– |
else |
155 |
– |
// make the integrator |
156 |
– |
makeIntegrator(); |
150 |
|
|
151 |
|
#ifdef IS_MPI |
152 |
|
mpiSim->mpiRefresh(); |
155 |
|
// initialize the Fortran |
156 |
|
|
157 |
|
initFortran(); |
158 |
+ |
|
159 |
+ |
if (globals->haveMinimizer()) |
160 |
+ |
// make minimizer |
161 |
+ |
makeMinimizer(); |
162 |
+ |
else |
163 |
+ |
// make the integrator |
164 |
+ |
makeIntegrator(); |
165 |
+ |
|
166 |
|
} |
167 |
|
|
168 |
|
|
263 |
|
else{ |
264 |
|
|
265 |
|
molInfo.myAtoms[j] = new Atom((j + atomOffset), info[k].getConfiguration()); |
266 |
+ |
|
267 |
|
} |
268 |
|
|
269 |
|
molInfo.myAtoms[j]->setType(currentAtom->getType()); |
268 |
– |
|
270 |
|
#ifdef IS_MPI |
271 |
|
|
272 |
|
molInfo.myAtoms[j]->setGlobalIndex(globalAtomIndex[j + atomOffset]); |
410 |
|
info[k].excludes->addPair(exK, exL); |
411 |
|
} |
412 |
|
|
413 |
+ |
|
414 |
+ |
molInfo.myRigidBodies.clear(); |
415 |
+ |
|
416 |
|
for (j = 0; j < molInfo.nRigidBodies; j++){ |
417 |
|
|
418 |
|
currentRigidBody = comp_stamps[stampID]->getRigidBody(j); |
422 |
|
|
423 |
|
myRB = new RigidBody(); |
424 |
|
|
425 |
< |
sprintf(rbName,"%s_RB_%s", molName, j); |
425 |
> |
sprintf(rbName,"%s_RB_%d", molName, j); |
426 |
|
myRB->setType(rbName); |
427 |
|
|
428 |
|
for (rb1 = 0; rb1 < nMembers; rb1++) { |
464 |
|
// used for the exclude list: |
465 |
|
|
466 |
|
#ifdef IS_MPI |
467 |
< |
exI = info[k].atoms[tempI]->getGlobalIndex() + 1; |
468 |
< |
exJ = info[k].atoms[tempJ]->getGlobalIndex() + 1; |
467 |
> |
exI = molInfo.myAtoms[tempI]->getGlobalIndex() + 1; |
468 |
> |
exJ = molInfo.myAtoms[tempJ]->getGlobalIndex() + 1; |
469 |
|
#else |
470 |
< |
exI = tempI + 1; |
471 |
< |
exJ = tempJ + 1; |
470 |
> |
exI = molInfo.myAtoms[tempI]->getIndex() + 1; |
471 |
> |
exJ = molInfo.myAtoms[tempJ]->getIndex() + 1; |
472 |
|
#endif |
473 |
|
|
474 |
|
info[k].excludes->addPair(exI, exJ); |
483 |
|
|
484 |
|
// After this is all set up, scan through the atoms to |
485 |
|
// see if they can be added to the integrableObjects: |
486 |
+ |
|
487 |
+ |
molInfo.myIntegrableObjects.clear(); |
488 |
+ |
|
489 |
|
|
490 |
|
for (j = 0; j < molInfo.nAtoms; j++){ |
491 |
|
|
538 |
|
|
539 |
|
// clean up the forcefield |
540 |
|
|
541 |
< |
if (!globals->haveLJrcut()){ |
541 |
> |
if (!globals->haveRcut()){ |
542 |
|
|
543 |
|
the_ff->calcRcut(); |
544 |
|
|
545 |
|
} else { |
546 |
|
|
547 |
< |
the_ff->setRcut( globals->getLJrcut() ); |
547 |
> |
the_ff->setRcut( globals->getRcut() ); |
548 |
|
} |
549 |
|
|
550 |
|
the_ff->cleanMe(); |
834 |
|
} |
835 |
|
|
836 |
|
//check whether sample time, status time, thermal time and reset time are divisble by dt |
837 |
< |
if (!isDivisible(globals->getSampleTime(), globals->getDt())){ |
837 |
> |
if (globals->haveSampleTime() && !isDivisible(globals->getSampleTime(), globals->getDt())){ |
838 |
|
sprintf(painCave.errMsg, |
839 |
|
"Sample time is not divisible by dt.\n" |
840 |
|
"\tThis will result in samples that are not uniformly\n" |
844 |
|
simError(); |
845 |
|
} |
846 |
|
|
847 |
< |
if (globals->haveStatusTime() && !isDivisible(globals->getSampleTime(), globals->getDt())){ |
847 |
> |
if (globals->haveStatusTime() && !isDivisible(globals->getStatusTime(), globals->getDt())){ |
848 |
|
sprintf(painCave.errMsg, |
849 |
|
"Status time is not divisible by dt.\n" |
850 |
|
"\tThis will result in status reports that are not uniformly\n" |
880 |
|
if (globals->haveSampleTime()){ |
881 |
|
info[i].sampleTime = globals->getSampleTime(); |
882 |
|
info[i].statusTime = info[i].sampleTime; |
876 |
– |
info[i].thermalTime = info[i].sampleTime; |
883 |
|
} |
884 |
|
else{ |
885 |
|
info[i].sampleTime = globals->getRunTime(); |
886 |
|
info[i].statusTime = info[i].sampleTime; |
881 |
– |
info[i].thermalTime = info[i].sampleTime; |
887 |
|
} |
888 |
|
|
889 |
|
if (globals->haveStatusTime()){ |
892 |
|
|
893 |
|
if (globals->haveThermalTime()){ |
894 |
|
info[i].thermalTime = globals->getThermalTime(); |
895 |
+ |
} else { |
896 |
+ |
info[i].thermalTime = globals->getRunTime(); |
897 |
|
} |
898 |
|
|
899 |
|
info[i].resetIntegrator = 0; |
964 |
|
void SimSetup::finalInfoCheck(void){ |
965 |
|
int index; |
966 |
|
int usesDipoles; |
967 |
+ |
int usesCharges; |
968 |
|
int i; |
969 |
|
|
970 |
|
for (i = 0; i < nInfo; i++){ |
976 |
|
usesDipoles = (info[i].atoms[index])->hasDipole(); |
977 |
|
index++; |
978 |
|
} |
979 |
< |
|
979 |
> |
index = 0; |
980 |
> |
usesCharges = 0; |
981 |
> |
while ((index < info[i].n_atoms) && !usesCharges){ |
982 |
> |
usesCharges= (info[i].atoms[index])->hasCharge(); |
983 |
> |
index++; |
984 |
> |
} |
985 |
|
#ifdef IS_MPI |
986 |
|
int myUse = usesDipoles; |
987 |
|
MPI_Allreduce(&myUse, &usesDipoles, 1, MPI_INT, MPI_LOR, MPI_COMM_WORLD); |
988 |
|
#endif //is_mpi |
989 |
|
|
990 |
< |
double theEcr, theEst; |
990 |
> |
double theRcut, theRsw; |
991 |
|
|
992 |
|
if (globals->getUseRF()){ |
993 |
|
info[i].useReactionField = 1; |
994 |
|
|
995 |
< |
if (!globals->haveECR()){ |
995 |
> |
if (!globals->haveRcut()){ |
996 |
|
sprintf(painCave.errMsg, |
997 |
< |
"SimSetup Warning: No value was set for electrostaticCutoffRadius.\n" |
997 |
> |
"SimSetup Warning: No value was set for the cutoffRadius.\n" |
998 |
|
"\tOOPSE will use a default value of 15.0 angstroms" |
999 |
< |
"\tfor the electrostaticCutoffRadius.\n"); |
999 |
> |
"\tfor the cutoffRadius.\n"); |
1000 |
|
painCave.isFatal = 0; |
1001 |
|
simError(); |
1002 |
< |
theEcr = 15.0; |
1002 |
> |
theRcut = 15.0; |
1003 |
|
} |
1004 |
|
else{ |
1005 |
< |
theEcr = globals->getECR(); |
1005 |
> |
theRcut = globals->getRcut(); |
1006 |
|
} |
1007 |
|
|
1008 |
< |
if (!globals->haveEST()){ |
1008 |
> |
if (!globals->haveRsw()){ |
1009 |
|
sprintf(painCave.errMsg, |
1010 |
< |
"SimSetup Warning: No value was set for electrostaticSkinThickness.\n" |
1010 |
> |
"SimSetup Warning: No value was set for switchingRadius.\n" |
1011 |
|
"\tOOPSE will use a default value of\n" |
1012 |
< |
"\t0.05 * electrostaticCutoffRadius\n" |
1000 |
< |
"\tfor the electrostaticSkinThickness\n"); |
1012 |
> |
"\t0.95 * cutoffRadius for the switchingRadius\n"); |
1013 |
|
painCave.isFatal = 0; |
1014 |
|
simError(); |
1015 |
< |
theEst = 0.05 * theEcr; |
1015 |
> |
theRsw = 0.95 * theRcut; |
1016 |
|
} |
1017 |
|
else{ |
1018 |
< |
theEst = globals->getEST(); |
1018 |
> |
theRsw = globals->getRsw(); |
1019 |
|
} |
1020 |
|
|
1021 |
< |
info[i].setDefaultEcr(theEcr, theEst); |
1021 |
> |
info[i].setDefaultRcut(theRcut, theRsw); |
1022 |
|
|
1023 |
|
if (!globals->haveDielectric()){ |
1024 |
|
sprintf(painCave.errMsg, |
1031 |
|
info[i].dielectric = globals->getDielectric(); |
1032 |
|
} |
1033 |
|
else{ |
1034 |
< |
if (usesDipoles){ |
1035 |
< |
if (!globals->haveECR()){ |
1034 |
> |
if (usesDipoles || usesCharges){ |
1035 |
> |
|
1036 |
> |
if (!globals->haveRcut()){ |
1037 |
|
sprintf(painCave.errMsg, |
1038 |
< |
"SimSetup Warning: No value was set for electrostaticCutoffRadius.\n" |
1038 |
> |
"SimSetup Warning: No value was set for the cutoffRadius.\n" |
1039 |
|
"\tOOPSE will use a default value of 15.0 angstroms" |
1040 |
< |
"\tfor the electrostaticCutoffRadius.\n"); |
1041 |
< |
painCave.isFatal = 0; |
1042 |
< |
simError(); |
1043 |
< |
theEcr = 15.0; |
1044 |
< |
} |
1040 |
> |
"\tfor the cutoffRadius.\n"); |
1041 |
> |
painCave.isFatal = 0; |
1042 |
> |
simError(); |
1043 |
> |
theRcut = 15.0; |
1044 |
> |
} |
1045 |
|
else{ |
1046 |
< |
theEcr = globals->getECR(); |
1046 |
> |
theRcut = globals->getRcut(); |
1047 |
|
} |
1048 |
< |
|
1049 |
< |
if (!globals->haveEST()){ |
1048 |
> |
|
1049 |
> |
if (!globals->haveRsw()){ |
1050 |
|
sprintf(painCave.errMsg, |
1051 |
< |
"SimSetup Warning: No value was set for electrostaticSkinThickness.\n" |
1051 |
> |
"SimSetup Warning: No value was set for switchingRadius.\n" |
1052 |
|
"\tOOPSE will use a default value of\n" |
1053 |
< |
"\t0.05 * electrostaticCutoffRadius\n" |
1041 |
< |
"\tfor the electrostaticSkinThickness\n"); |
1053 |
> |
"\t0.95 * cutoffRadius for the switchingRadius\n"); |
1054 |
|
painCave.isFatal = 0; |
1055 |
|
simError(); |
1056 |
< |
theEst = 0.05 * theEcr; |
1056 |
> |
theRsw = 0.95 * theRcut; |
1057 |
|
} |
1058 |
|
else{ |
1059 |
< |
theEst = globals->getEST(); |
1059 |
> |
theRsw = globals->getRsw(); |
1060 |
|
} |
1061 |
+ |
|
1062 |
+ |
info[i].setDefaultRcut(theRcut, theRsw); |
1063 |
|
|
1050 |
– |
info[i].setDefaultEcr(theEcr, theEst); |
1064 |
|
} |
1065 |
|
} |
1066 |
|
} |
1365 |
|
int localMol, allMol; |
1366 |
|
int local_atoms, local_bonds, local_bends, local_torsions, local_SRI; |
1367 |
|
int local_rigid; |
1355 |
– |
vector<int> globalAtomIndex; |
1368 |
|
vector<int> globalMolIndex; |
1369 |
|
|
1370 |
|
mpiSim = new mpiSimulation(info); |
1371 |
|
|
1372 |
|
mpiSim->divideLabor(); |
1373 |
|
globalAtomIndex = mpiSim->getGlobalAtomIndex(); |
1374 |
< |
globalMolIndex = mpiSim->getGlobalMolIndex(); |
1374 |
> |
//globalMolIndex = mpiSim->getGlobalMolIndex(); |
1375 |
|
|
1376 |
|
// set up the local variables |
1377 |
|
|