# | Line 66 | Line 66 | void SimSetup::createSim( void ){ | |
---|---|---|
66 | ||
67 | MakeStamps *the_stamps; | |
68 | Globals* the_globals; | |
69 | + | ExtendedSystem* the_extendedsystem; |
70 | int i, j; | |
71 | ||
72 | // get the stamps and globals; | |
# | Line 80 | Line 81 | void SimSetup::createSim( void ){ | |
81 | // get the ones we know are there, yet still may need some work. | |
82 | n_components = the_globals->getNComponents(); | |
83 | strcpy( force_field, the_globals->getForceField() ); | |
84 | + | |
85 | + | // get the ensemble and set up an extended system if we need it: |
86 | strcpy( ensemble, the_globals->getEnsemble() ); | |
87 | + | if( !strcasecmp( ensemble, "NPT" ) ) { |
88 | + | the_extendedsystem = new ExtendedSystem( simnfo ); |
89 | + | the_extendedsystem->setTargetTemp(the_globals->getTargetTemp()); |
90 | + | the_extendedsystem->setTargetPressure(the_globals->getTargetPressure()); |
91 | + | the_extendedsystem->setQmass(the_globals->getQmass()); |
92 | + | the_extendedsystem->setTauRelax(the_globals->getTauRelax()); |
93 | + | } else if ( !strcasecmp( ensemble, "NVT") ) { |
94 | + | the_extendedsystem = new ExtendedSystem( simnfo ); |
95 | + | the_extendedsystem->setTargetTemp(the_globals->getTargetTemp()); |
96 | + | the_extendedsystem->setQmass(the_globals->getQmass()); |
97 | + | } else if ( !strcasecmp( ensemble, "NVE") ) { |
98 | + | } else { |
99 | + | sprintf( painCave.errMsg, |
100 | + | "SimSetup Warning. Unrecognized Ensemble -> %s, " |
101 | + | "reverting to NVE for this simulation.\n", |
102 | + | ensemble ); |
103 | + | painCave.isFatal = 0; |
104 | + | simError(); |
105 | + | strcpy( ensemble, "NVE" ); |
106 | + | } |
107 | strcpy( simnfo->ensemble, ensemble ); | |
108 | ||
109 | strcpy( simnfo->mixingRule, the_globals->getMixingRule() ); | |
110 | simnfo->usePBC = the_globals->getPBC(); | |
111 | ||
112 | < | |
113 | < | |
114 | < | if( !strcmp( force_field, "TraPPE" ) ) the_ff = new TraPPEFF(); |
115 | < | else if( !strcmp( force_field, "DipoleTest" ) ) the_ff = new DipoleTestFF(); |
116 | < | else if( !strcmp( force_field, "TraPPE_Ex" ) ) the_ff = new TraPPE_ExFF(); |
117 | < | else if( !strcmp( force_field, "LJ" ) ) the_ff = new LJ_FF(); |
112 | > | int usesDipoles = 0; |
113 | > | if( !strcmp( force_field, "TraPPE_Ex" ) ){ |
114 | > | the_ff = new TraPPE_ExFF(); |
115 | > | usesDipoles = 1; |
116 | > | } |
117 | > | else if( !strcasecmp( force_field, "LJ" ) ) the_ff = new LJ_FF(); |
118 | else{ | |
119 | sprintf( painCave.errMsg, | |
120 | "SimSetup Error. Unrecognized force field -> %s\n", | |
# | Line 242 | Line 265 | void SimSetup::createSim( void ){ | |
265 | ||
266 | globalIndex = mpiSim->divideLabor(); | |
267 | ||
245 | – | |
246 | – | |
268 | // set up the local variables | |
269 | ||
270 | int localMol, allMol; | |
271 | int local_atoms, local_bonds, local_bends, local_torsions, local_SRI; | |
272 | + | |
273 | + | int* mol2proc = mpiSim->getMolToProcMap(); |
274 | + | int* molCompType = mpiSim->getMolComponentType(); |
275 | ||
276 | allMol = 0; | |
277 | localMol = 0; | |
# | Line 259 | Line 283 | void SimSetup::createSim( void ){ | |
283 | ||
284 | for( j=0; j<components_nmol[i]; j++ ){ | |
285 | ||
286 | < | if( mpiSim->getMyMolStart() <= allMol && |
263 | < | allMol <= mpiSim->getMyMolEnd() ){ |
286 | > | if( mol2proc[j] == worldRank ){ |
287 | ||
288 | local_atoms += comp_stamps[i]->getNAtoms(); | |
289 | local_bonds += comp_stamps[i]->getNBonds(); | |
# | Line 279 | Line 302 | void SimSetup::createSim( void ){ | |
302 | if( local_atoms != simnfo->n_atoms ){ | |
303 | sprintf( painCave.errMsg, | |
304 | "SimSetup error: mpiSim's localAtom (%d) and SimSetup's" | |
305 | < | " localAtom (%d) are note equal.\n", |
305 | > | " localAtom (%d) are not equal.\n", |
306 | simnfo->n_atoms, | |
307 | local_atoms ); | |
308 | painCave.isFatal = 1; | |
# | Line 304 | Line 327 | void SimSetup::createSim( void ){ | |
327 | Atom::createArrays(simnfo->n_atoms); | |
328 | the_atoms = new Atom*[simnfo->n_atoms]; | |
329 | the_molecules = new Molecule[simnfo->n_mol]; | |
330 | + | int molIndex; |
331 | + | |
332 | + | // initialize the molecule's stampID's |
333 | + | |
334 | + | #ifdef IS_MPI |
335 | + | |
336 | + | |
337 | + | molIndex = 0; |
338 | + | for(i=0; i<mpiSim->getTotNmol(); i++){ |
339 | + | |
340 | + | if(mol2proc[i] == worldRank ){ |
341 | + | the_molecules[molIndex].setStampID( molCompType[i] ); |
342 | + | the_molecules[molIndex].setMyIndex( molIndex ); |
343 | + | molIndex++; |
344 | + | } |
345 | + | } |
346 | + | |
347 | + | #else // is_mpi |
348 | + | |
349 | + | molIndex = 0; |
350 | + | for(i=0; i<n_components; i++){ |
351 | + | for(j=0; j<components_nmol[i]; j++ ){ |
352 | + | the_molecules[molIndex].setStampID( i ); |
353 | + | the_molecules[molIndex].setMyIndex( molIndex ); |
354 | + | molIndex++; |
355 | + | } |
356 | + | } |
357 | + | |
358 | ||
359 | + | #endif // is_mpi |
360 | ||
361 | + | |
362 | if( simnfo->n_SRI ){ | |
363 | + | |
364 | Exclude::createArray(simnfo->n_SRI); | |
365 | the_excludes = new Exclude*[simnfo->n_SRI]; | |
366 | + | for( int ex=0; ex<simnfo->n_SRI; ex++) the_excludes[ex] = new Exclude(ex); |
367 | simnfo->globalExcludes = new int; | |
368 | < | simnfo->n_exclude = tot_SRI; |
368 | > | simnfo->n_exclude = simnfo->n_SRI; |
369 | } | |
370 | else{ | |
371 | ||
# | Line 326 | Line 381 | void SimSetup::createSim( void ){ | |
381 | // set the arrays into the SimInfo object | |
382 | ||
383 | simnfo->atoms = the_atoms; | |
384 | < | simnfo->sr_interactions = the_sris; |
384 | > | simnfo->molecules = the_molecules; |
385 | simnfo->nGlobalExcludes = 0; | |
386 | simnfo->excludes = the_excludes; | |
387 | ||
# | Line 383 | Line 438 | void SimSetup::createSim( void ){ | |
438 | ||
439 | the_ff->setSimInfo( simnfo ); | |
440 | ||
441 | < | makeAtoms(); |
441 | > | makeMolecules(); |
442 | simnfo->identArray = new int[simnfo->n_atoms]; | |
443 | for(i=0; i<simnfo->n_atoms; i++){ | |
444 | simnfo->identArray[i] = the_atoms[i]->getIdent(); | |
445 | } | |
446 | ||
392 | – | if( tot_bonds ){ |
393 | – | makeBonds(); |
394 | – | } |
395 | – | |
396 | – | if( tot_bends ){ |
397 | – | makeBends(); |
398 | – | } |
399 | – | |
400 | – | if( tot_torsions ){ |
401 | – | makeTorsions(); |
402 | – | } |
403 | – | |
404 | – | |
447 | if (the_globals->getUseRF() ) { | |
448 | simnfo->useReactionField = 1; | |
449 | ||
# | Line 443 | Line 485 | void SimSetup::createSim( void ){ | |
485 | } | |
486 | simnfo->dielectric = the_globals->getDielectric(); | |
487 | } else { | |
488 | < | if (simnfo->n_dipoles) { |
488 | > | if (usesDipoles) { |
489 | ||
490 | if( !the_globals->haveECR() ){ | |
491 | sprintf( painCave.errMsg, | |
492 | < | "SimSetup Warning: using default value of 1/2 the smallest" |
492 | > | "SimSetup Warning: using default value of 1/2 the smallest " |
493 | "box length for the electrostaticCutoffRadius.\n" | |
494 | "I hope you have a very fast processor!\n"); | |
495 | painCave.isFatal = 0; | |
# | Line 463 | Line 505 | void SimSetup::createSim( void ){ | |
505 | ||
506 | if( !the_globals->haveEST() ){ | |
507 | sprintf( painCave.errMsg, | |
508 | < | "SimSetup Warning: using default value of 5% of the" |
508 | > | "SimSetup Warning: using default value of 5%% of the " |
509 | "electrostaticCutoffRadius for the " | |
510 | "electrostaticSkinThickness\n" | |
511 | ); | |
# | Line 638 | Line 680 | void SimSetup::createSim( void ){ | |
680 | ||
681 | // new AllLong( simnfo ); | |
682 | ||
641 | – | if( !strcmp( force_field, "TraPPE" ) ) new Verlet( *simnfo, the_ff ); |
642 | – | if( !strcmp( force_field, "DipoleTest" ) ) new Symplectic( simnfo, the_ff ); |
643 | – | if( !strcmp( force_field, "TraPPE_Ex" ) ) new Symplectic( simnfo, the_ff ); |
644 | – | if( !strcmp( force_field, "LJ" ) ) new Verlet( *simnfo, the_ff ); |
683 | ||
684 | + | if( !strcmp( force_field, "TraPPE_Ex" ) ){ |
685 | + | new Symplectic(simnfo, the_ff, the_extendedsystem); |
686 | + | std::cerr << "called new Symplecic\n"; |
687 | + | fprintf( stderr, "called new Symplectic. stderr\n" ); |
688 | + | } |
689 | + | else if( !strcmp( force_field, "LJ" ) ){ |
690 | + | new Verlet( *simnfo, the_ff, the_extendedsystem ); |
691 | + | std::cerr << "called new Verlet\n"; |
692 | + | fprintf( stderr, "called new Verlet. stderr\n" ); |
693 | + | } |
694 | + | else { |
695 | + | std::cerr << "I'm a bug.\n"; |
696 | + | fprintf( stderr, "Ima bug. stderr %s\n", force_field); |
697 | + | } |
698 | + | #ifdef IS_MPI |
699 | + | mpiSim->mpiRefresh(); |
700 | + | #endif |
701 | ||
647 | – | |
702 | // initialize the Fortran | |
703 | < | |
703 | > | |
704 | > | |
705 | simnfo->refreshSim(); | |
706 | ||
707 | if( !strcmp( simnfo->mixingRule, "standard") ){ | |
# | Line 683 | Line 738 | void SimSetup::makeMolecules( void ){ | |
738 | BondStamp* currentBond; | |
739 | BendStamp* currentBend; | |
740 | TorsionStamp* currentTorsion; | |
741 | + | |
742 | + | bond_pair* theBonds; |
743 | + | bend_set* theBends; |
744 | + | torsion_set* theTorsions; |
745 | + | |
746 | ||
747 | //init the forceField paramters | |
748 | ||
749 | the_ff->readParams(); | |
750 | ||
751 | ||
752 | < | // init the molecules |
752 | > | // init the atoms |
753 | ||
754 | + | double ux, uy, uz, u, uSqr; |
755 | + | |
756 | atomOffset = 0; | |
757 | excludeOffset = 0; | |
758 | for(i=0; i<simnfo->n_mol; i++){ | |
# | Line 707 | Line 769 | void SimSetup::makeMolecules( void ){ | |
769 | info.myExcludes = &the_excludes[excludeOffset]; | |
770 | info.myBonds = new Bond*[info.nBonds]; | |
771 | info.myBends = new Bend*[info.nBends]; | |
772 | < | info.myTorsions = new Torsions*[info.nTorsions]; |
772 | > | info.myTorsions = new Torsion*[info.nTorsions]; |
773 | ||
774 | theBonds = new bond_pair[info.nBonds]; | |
775 | theBends = new bend_set[info.nBends]; | |
# | Line 717 | Line 779 | void SimSetup::makeMolecules( void ){ | |
779 | ||
780 | for(j=0; j<info.nAtoms; j++){ | |
781 | ||
782 | < | currentAtom = theComponents[stampID]->getAtom( j ); |
782 | > | currentAtom = comp_stamps[stampID]->getAtom( j ); |
783 | if( currentAtom->haveOrientation() ){ | |
784 | ||
785 | dAtom = new DirectionalAtom(j + atomOffset); | |
# | Line 758 | Line 820 | void SimSetup::makeMolecules( void ){ | |
820 | theBonds[j].a = currentBond->getA() + atomOffset; | |
821 | theBonds[j].b = currentBond->getB() + atomOffset; | |
822 | ||
823 | < | exI = theBonds[i].a; |
824 | < | exJ = theBonds[i].b; |
823 | > | exI = theBonds[j].a; |
824 | > | exJ = theBonds[j].b; |
825 | ||
826 | // exclude_I must always be the smaller of the pair | |
827 | if( exI > exJ ){ | |
# | Line 775 | Line 837 | void SimSetup::makeMolecules( void ){ | |
837 | ||
838 | the_excludes[j+excludeOffset]->setPair( exI, exJ ); | |
839 | #else // isn't MPI | |
840 | + | |
841 | the_excludes[j+excludeOffset]->setPair( (exI+1), (exJ+1) ); | |
842 | #endif //is_mpi | |
843 | } | |
# | Line 790 | Line 853 | void SimSetup::makeMolecules( void ){ | |
853 | ||
854 | if( currentBend->haveExtras() ){ | |
855 | ||
856 | < | extras = current_bend->getExtras(); |
856 | > | extras = currentBend->getExtras(); |
857 | current_extra = extras; | |
858 | ||
859 | while( current_extra != NULL ){ | |
# | Line 812 | Line 875 | void SimSetup::makeMolecules( void ){ | |
875 | ||
876 | default: | |
877 | sprintf( painCave.errMsg, | |
878 | < | "SimSetup Error: ghostVectorSource was neiter a " |
878 | > | "SimSetup Error: ghostVectorSource was neither a " |
879 | "double nor an int.\n" | |
880 | "-->Bend[%d] in %s\n", | |
881 | j, comp_stamps[stampID]->getID() ); | |
# | Line 897 | Line 960 | void SimSetup::makeMolecules( void ){ | |
960 | excludeOffset += info.nTorsions; | |
961 | ||
962 | ||
963 | + | // send the arrays off to the forceField for init. |
964 | ||
965 | < | |
966 | < | |
967 | < | |
968 | < | |
905 | < | |
906 | < | void SimSetup::makeAtoms( void ){ |
907 | < | |
908 | < | int i, j, k, index; |
909 | < | double ux, uy, uz, uSqr, u; |
910 | < | AtomStamp* current_atom; |
911 | < | |
912 | < | DirectionalAtom* dAtom; |
913 | < | int molIndex, molStart, molEnd, nMemb, lMolIndex; |
914 | < | |
915 | < | lMolIndex = 0; |
916 | < | molIndex = 0; |
917 | < | index = 0; |
918 | < | for( i=0; i<n_components; i++ ){ |
919 | < | |
920 | < | for( j=0; j<components_nmol[i]; j++ ){ |
921 | < | |
922 | < | #ifdef IS_MPI |
923 | < | if( mpiSim->getMyMolStart() <= molIndex && |
924 | < | molIndex <= mpiSim->getMyMolEnd() ){ |
925 | < | #endif // is_mpi |
926 | < | |
927 | < | molStart = index; |
928 | < | nMemb = comp_stamps[i]->getNAtoms(); |
929 | < | for( k=0; k<comp_stamps[i]->getNAtoms(); k++ ){ |
930 | < | |
931 | < | current_atom = comp_stamps[i]->getAtom( k ); |
932 | < | if( current_atom->haveOrientation() ){ |
933 | < | |
934 | < | dAtom = new DirectionalAtom(index); |
935 | < | simnfo->n_oriented++; |
936 | < | the_atoms[index] = dAtom; |
937 | < | |
938 | < | ux = current_atom->getOrntX(); |
939 | < | uy = current_atom->getOrntY(); |
940 | < | uz = current_atom->getOrntZ(); |
941 | < | |
942 | < | uSqr = (ux * ux) + (uy * uy) + (uz * uz); |
943 | < | |
944 | < | u = sqrt( uSqr ); |
945 | < | ux = ux / u; |
946 | < | uy = uy / u; |
947 | < | uz = uz / u; |
948 | < | |
949 | < | dAtom->setSUx( ux ); |
950 | < | dAtom->setSUy( uy ); |
951 | < | dAtom->setSUz( uz ); |
952 | < | } |
953 | < | else{ |
954 | < | the_atoms[index] = new GeneralAtom(index); |
955 | < | } |
956 | < | the_atoms[index]->setType( current_atom->getType() ); |
957 | < | the_atoms[index]->setIndex( index ); |
958 | < | |
959 | < | // increment the index and repeat; |
960 | < | index++; |
961 | < | } |
962 | < | |
963 | < | molEnd = index -1; |
964 | < | the_molecules[lMolIndex].setNMembers( nMemb ); |
965 | < | the_molecules[lMolIndex].setStartAtom( molStart ); |
966 | < | the_molecules[lMolIndex].setEndAtom( molEnd ); |
967 | < | the_molecules[lMolIndex].setStampID( i ); |
968 | < | lMolIndex++; |
965 | > | the_ff->initializeAtoms( info.nAtoms, info.myAtoms ); |
966 | > | the_ff->initializeBonds( info.nBonds, info.myBonds, theBonds ); |
967 | > | the_ff->initializeBends( info.nBends, info.myBends, theBends ); |
968 | > | the_ff->initializeTorsions( info.nTorsions, info.myTorsions, theTorsions ); |
969 | ||
970 | – | #ifdef IS_MPI |
971 | – | } |
972 | – | #endif //is_mpi |
973 | – | |
974 | – | molIndex++; |
975 | – | } |
976 | – | } |
970 | ||
971 | < | #ifdef IS_MPI |
979 | < | for( i=0; i<mpiSim->getMyNlocal(); i++ ) the_atoms[i]->setGlobalIndex( globalIndex[i] ); |
980 | < | |
981 | < | delete[] globalIndex; |
982 | < | |
983 | < | mpiSim->mpiRefresh(); |
984 | < | #endif //IS_MPI |
985 | < | |
986 | < | the_ff->initializeAtoms(); |
987 | < | } |
988 | < | |
989 | < | void SimSetup::makeBonds( void ){ |
990 | < | |
991 | < | int i, j, k, index, offset, molIndex, exI, exJ, tempEx; |
992 | < | bond_pair* the_bonds; |
993 | < | BondStamp* current_bond; |
994 | < | |
995 | < | the_bonds = new bond_pair[tot_bonds]; |
996 | < | index = 0; |
997 | < | offset = 0; |
998 | < | molIndex = 0; |
999 | < | |
1000 | < | for( i=0; i<n_components; i++ ){ |
1001 | < | |
1002 | < | for( j=0; j<components_nmol[i]; j++ ){ |
1003 | < | |
1004 | < | #ifdef IS_MPI |
1005 | < | if( mpiSim->getMyMolStart() <= molIndex && |
1006 | < | molIndex <= mpiSim->getMyMolEnd() ){ |
1007 | < | #endif // is_mpi |
1008 | < | |
1009 | < | for( k=0; k<comp_stamps[i]->getNBonds(); k++ ){ |
1010 | < | |
1011 | < | current_bond = comp_stamps[i]->getBond( k ); |
1012 | < | the_bonds[index].a = current_bond->getA() + offset; |
1013 | < | the_bonds[index].b = current_bond->getB() + offset; |
1014 | < | |
1015 | < | exI = the_bonds[index].a; |
1016 | < | exJ = the_bonds[index].b; |
1017 | < | |
1018 | < | // exclude_I must always be the smaller of the pair |
1019 | < | if( exI > exJ ){ |
1020 | < | tempEx = exI; |
1021 | < | exI = exJ; |
1022 | < | exJ = tempEx; |
1023 | < | } |
1024 | < | |
1025 | < | |
1026 | < | #ifdef IS_MPI |
1027 | < | |
1028 | < | the_excludes[index*2] = |
1029 | < | the_atoms[exI]->getGlobalIndex() + 1; |
1030 | < | the_excludes[index*2 + 1] = |
1031 | < | the_atoms[exJ]->getGlobalIndex() + 1; |
1032 | < | |
1033 | < | #else // isn't MPI |
1034 | < | |
1035 | < | the_excludes[index*2] = exI + 1; |
1036 | < | the_excludes[index*2 + 1] = exJ + 1; |
1037 | < | // fortran index from 1 (hence the +1 in the indexing) |
1038 | < | #endif //is_mpi |
1039 | < | |
1040 | < | // increment the index and repeat; |
1041 | < | index++; |
1042 | < | } |
1043 | < | offset += comp_stamps[i]->getNAtoms(); |
1044 | < | |
1045 | < | #ifdef IS_MPI |
1046 | < | } |
1047 | < | #endif //is_mpi |
1048 | < | |
1049 | < | molIndex++; |
1050 | < | } |
1051 | < | } |
1052 | < | |
1053 | < | the_ff->initializeBonds( the_bonds ); |
1054 | < | } |
1055 | < | |
1056 | < | void SimSetup::makeBends( void ){ |
1057 | < | |
1058 | < | int i, j, k, index, offset, molIndex, exI, exJ, tempEx; |
1059 | < | bend_set* the_bends; |
1060 | < | BendStamp* current_bend; |
1061 | < | LinkedAssign* extras; |
1062 | < | LinkedAssign* current_extra; |
1063 | < | |
1064 | < | |
1065 | < | the_bends = new bend_set[tot_bends]; |
1066 | < | index = 0; |
1067 | < | offset = 0; |
1068 | < | molIndex = 0; |
1069 | < | for( i=0; i<n_components; i++ ){ |
1070 | < | |
1071 | < | for( j=0; j<components_nmol[i]; j++ ){ |
1072 | < | |
1073 | < | #ifdef IS_MPI |
1074 | < | if( mpiSim->getMyMolStart() <= molIndex && |
1075 | < | molIndex <= mpiSim->getMyMolEnd() ){ |
1076 | < | #endif // is_mpi |
1077 | < | |
1078 | < | for( k=0; k<comp_stamps[i]->getNBends(); k++ ){ |
1079 | < | |
1080 | < | current_bend = comp_stamps[i]->getBend( k ); |
1081 | < | the_bends[index].a = current_bend->getA() + offset; |
1082 | < | the_bends[index].b = current_bend->getB() + offset; |
1083 | < | the_bends[index].c = current_bend->getC() + offset; |
1084 | < | |
1085 | < | if( current_bend->haveExtras() ){ |
1086 | < | |
1087 | < | extras = current_bend->getExtras(); |
1088 | < | current_extra = extras; |
1089 | < | |
1090 | < | while( current_extra != NULL ){ |
1091 | < | if( !strcmp( current_extra->getlhs(), "ghostVectorSource" )){ |
1092 | < | |
1093 | < | switch( current_extra->getType() ){ |
1094 | < | |
1095 | < | case 0: |
1096 | < | the_bends[index].ghost = |
1097 | < | current_extra->getInt() + offset; |
1098 | < | the_bends[index].isGhost = 1; |
1099 | < | break; |
1100 | < | |
1101 | < | case 1: |
1102 | < | the_bends[index].ghost = |
1103 | < | (int)current_extra->getDouble() + offset; |
1104 | < | the_bends[index].isGhost = 1; |
1105 | < | break; |
1106 | < | |
1107 | < | default: |
1108 | < | sprintf( painCave.errMsg, |
1109 | < | "SimSetup Error: ghostVectorSource was neiter a " |
1110 | < | "double nor an int.\n" |
1111 | < | "-->Bend[%d] in %s\n", |
1112 | < | k, comp_stamps[i]->getID() ); |
1113 | < | painCave.isFatal = 1; |
1114 | < | simError(); |
1115 | < | } |
1116 | < | } |
1117 | < | |
1118 | < | else{ |
1119 | < | |
1120 | < | sprintf( painCave.errMsg, |
1121 | < | "SimSetup Error: unhandled bend assignment:\n" |
1122 | < | " -->%s in Bend[%d] in %s\n", |
1123 | < | current_extra->getlhs(), |
1124 | < | k, comp_stamps[i]->getID() ); |
1125 | < | painCave.isFatal = 1; |
1126 | < | simError(); |
1127 | < | } |
1128 | < | |
1129 | < | current_extra = current_extra->getNext(); |
1130 | < | } |
1131 | < | } |
1132 | < | |
1133 | < | if( !the_bends[index].isGhost ){ |
1134 | < | |
1135 | < | exI = the_bends[index].a; |
1136 | < | exJ = the_bends[index].c; |
1137 | < | } |
1138 | < | else{ |
1139 | < | |
1140 | < | exI = the_bends[index].a; |
1141 | < | exJ = the_bends[index].b; |
1142 | < | } |
1143 | < | |
1144 | < | // exclude_I must always be the smaller of the pair |
1145 | < | if( exI > exJ ){ |
1146 | < | tempEx = exI; |
1147 | < | exI = exJ; |
1148 | < | exJ = tempEx; |
1149 | < | } |
971 | > | the_molecules[i].initialize( info ); |
972 | ||
973 | ||
974 | < | #ifdef IS_MPI |
975 | < | |
976 | < | the_excludes[(index + tot_bonds)*2] = |
977 | < | the_atoms[exI]->getGlobalIndex() + 1; |
1156 | < | the_excludes[(index + tot_bonds)*2 + 1] = |
1157 | < | the_atoms[exJ]->getGlobalIndex() + 1; |
1158 | < | |
1159 | < | #else // isn't MPI |
1160 | < | |
1161 | < | the_excludes[(index + tot_bonds)*2] = exI + 1; |
1162 | < | the_excludes[(index + tot_bonds)*2 + 1] = exJ + 1; |
1163 | < | // fortran index from 1 (hence the +1 in the indexing) |
1164 | < | #endif //is_mpi |
1165 | < | |
1166 | < | |
1167 | < | // increment the index and repeat; |
1168 | < | index++; |
1169 | < | } |
1170 | < | offset += comp_stamps[i]->getNAtoms(); |
1171 | < | |
1172 | < | #ifdef IS_MPI |
1173 | < | } |
1174 | < | #endif //is_mpi |
1175 | < | |
1176 | < | molIndex++; |
1177 | < | } |
974 | > | atomOffset += info.nAtoms; |
975 | > | delete[] theBonds; |
976 | > | delete[] theBends; |
977 | > | delete[] theTorsions; |
978 | } | |
979 | ||
980 | #ifdef IS_MPI | |
981 | < | sprintf( checkPointMsg, |
1182 | < | "Successfully created the bends list.\n" ); |
981 | > | sprintf( checkPointMsg, "all molecules initialized succesfully" ); |
982 | MPIcheckPoint(); | |
983 | #endif // is_mpi | |
1185 | – | |
984 | ||
985 | < | the_ff->initializeBends( the_bends ); |
986 | < | } |
985 | > | // clean up the forcefield |
986 | > | the_ff->calcRcut(); |
987 | > | the_ff->cleanMe(); |
988 | ||
1190 | – | void SimSetup::makeTorsions( void ){ |
1191 | – | |
1192 | – | int i, j, k, index, offset, molIndex, exI, exJ, tempEx; |
1193 | – | torsion_set* the_torsions; |
1194 | – | TorsionStamp* current_torsion; |
1195 | – | |
1196 | – | the_torsions = new torsion_set[tot_torsions]; |
1197 | – | index = 0; |
1198 | – | offset = 0; |
1199 | – | molIndex = 0; |
1200 | – | for( i=0; i<n_components; i++ ){ |
1201 | – | |
1202 | – | for( j=0; j<components_nmol[i]; j++ ){ |
1203 | – | |
1204 | – | #ifdef IS_MPI |
1205 | – | if( mpiSim->getMyMolStart() <= molIndex && |
1206 | – | molIndex <= mpiSim->getMyMolEnd() ){ |
1207 | – | #endif // is_mpi |
1208 | – | |
1209 | – | for( k=0; k<comp_stamps[i]->getNTorsions(); k++ ){ |
1210 | – | |
1211 | – | current_torsion = comp_stamps[i]->getTorsion( k ); |
1212 | – | the_torsions[index].a = current_torsion->getA() + offset; |
1213 | – | the_torsions[index].b = current_torsion->getB() + offset; |
1214 | – | the_torsions[index].c = current_torsion->getC() + offset; |
1215 | – | the_torsions[index].d = current_torsion->getD() + offset; |
1216 | – | |
1217 | – | exI = the_torsions[index].a; |
1218 | – | exJ = the_torsions[index].d; |
1219 | – | |
1220 | – | |
1221 | – | // exclude_I must always be the smaller of the pair |
1222 | – | if( exI > exJ ){ |
1223 | – | tempEx = exI; |
1224 | – | exI = exJ; |
1225 | – | exJ = tempEx; |
1226 | – | } |
1227 | – | |
1228 | – | |
1229 | – | #ifdef IS_MPI |
1230 | – | |
1231 | – | the_excludes[(index + tot_bonds + tot_bends)*2] = |
1232 | – | the_atoms[exI]->getGlobalIndex() + 1; |
1233 | – | the_excludes[(index + tot_bonds + tot_bends)*2 + 1] = |
1234 | – | the_atoms[exJ]->getGlobalIndex() + 1; |
1235 | – | |
1236 | – | #else // isn't MPI |
1237 | – | |
1238 | – | the_excludes[(index + tot_bonds + tot_bends)*2] = exI + 1; |
1239 | – | the_excludes[(index + tot_bonds + tot_bends)*2 + 1] = exJ + 1; |
1240 | – | // fortran indexes from 1 (hence the +1 in the indexing) |
1241 | – | #endif //is_mpi |
1242 | – | |
1243 | – | |
1244 | – | // increment the index and repeat; |
1245 | – | index++; |
1246 | – | } |
1247 | – | offset += comp_stamps[i]->getNAtoms(); |
1248 | – | |
1249 | – | #ifdef IS_MPI |
1250 | – | } |
1251 | – | #endif //is_mpi |
1252 | – | |
1253 | – | molIndex++; |
1254 | – | } |
1255 | – | } |
1256 | – | |
1257 | – | the_ff->initializeTorsions( the_torsions ); |
989 | } | |
990 | ||
991 | void SimSetup::initFromBass( void ){ |
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