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root/group/trunk/OOPSE/libmdtools/SimSetup.cpp
Revision: 843
Committed: Wed Oct 29 20:41:39 2003 UTC (20 years, 8 months ago) by mmeineke
File size: 42595 byte(s)
Log Message:
fixed a stdlib.h include error in bass.l

fixed a little bug in the first time step, regarding the setting of ecr and est in fortran

File Contents

# User Rev Content
1 tim 658 #include <algorithm>
2 gezelter 829 #include <stdlib.h>
3 mmeineke 377 #include <iostream>
4 gezelter 829 #include <math.h>
5 tim 658 #include <string>
6 tim 722 #include <sprng.h>
7 mmeineke 377 #include "SimSetup.hpp"
8 tim 689 #include "ReadWrite.hpp"
9 mmeineke 377 #include "parse_me.h"
10     #include "Integrator.hpp"
11     #include "simError.h"
12    
13     #ifdef IS_MPI
14     #include "mpiBASS.h"
15     #include "mpiSimulation.hpp"
16     #endif
17    
18 mmeineke 557 // some defines for ensemble and Forcefield cases
19    
20 tim 660 #define NVE_ENS 0
21     #define NVT_ENS 1
22     #define NPTi_ENS 2
23     #define NPTf_ENS 3
24 mmeineke 812 #define NPTxyz_ENS 4
25 mmeineke 557
26 mmeineke 812
27 mmeineke 557 #define FF_DUFF 0
28     #define FF_LJ 1
29 chuckv 653 #define FF_EAM 2
30 mmeineke 557
31 tim 658 using namespace std;
32    
33 mmeineke 377 SimSetup::SimSetup(){
34 mmeineke 823
35     initSuspend = false;
36 mmeineke 656 isInfoArray = 0;
37     nInfo = 1;
38 tim 722
39 mmeineke 377 stamps = new MakeStamps();
40     globals = new Globals();
41 tim 722
42    
43 mmeineke 377 #ifdef IS_MPI
44 tim 722 strcpy(checkPointMsg, "SimSetup creation successful");
45 mmeineke 377 MPIcheckPoint();
46     #endif // IS_MPI
47     }
48    
49     SimSetup::~SimSetup(){
50     delete stamps;
51     delete globals;
52     }
53    
54 tim 722 void SimSetup::setSimInfo(SimInfo* the_info, int theNinfo){
55     info = the_info;
56     nInfo = theNinfo;
57     isInfoArray = 1;
58 mmeineke 823 initSuspend = true;
59 mmeineke 670 }
60 mmeineke 656
61    
62 tim 722 void SimSetup::parseFile(char* fileName){
63 mmeineke 377 #ifdef IS_MPI
64 tim 722 if (worldRank == 0){
65 mmeineke 377 #endif // is_mpi
66 tim 722
67 mmeineke 377 inFileName = fileName;
68 tim 722 set_interface_stamps(stamps, globals);
69    
70 mmeineke 377 #ifdef IS_MPI
71     mpiEventInit();
72     #endif
73    
74 tim 722 yacc_BASS(fileName);
75 mmeineke 377
76     #ifdef IS_MPI
77     throwMPIEvent(NULL);
78     }
79 tim 722 else{
80     receiveParse();
81     }
82 mmeineke 377 #endif
83    
84     }
85    
86     #ifdef IS_MPI
87     void SimSetup::receiveParse(void){
88 tim 722 set_interface_stamps(stamps, globals);
89     mpiEventInit();
90     MPIcheckPoint();
91     mpiEventLoop();
92 mmeineke 377 }
93    
94     #endif // is_mpi
95    
96 mmeineke 670 void SimSetup::createSim(void){
97 mmeineke 377
98 mmeineke 614 // gather all of the information from the Bass file
99 tim 689
100 mmeineke 614 gatherInfo();
101 mmeineke 377
102 mmeineke 614 // creation of complex system objects
103 mmeineke 377
104 mmeineke 614 sysObjectsCreation();
105 mmeineke 377
106 mmeineke 614 // initialize the system coordinates
107 mmeineke 377
108 mmeineke 823 if ( !initSuspend ){
109 tim 722 initSystemCoords();
110 mmeineke 811
111     if( !(globals->getUseInitTime()) )
112     info[0].currentTime = 0.0;
113 tim 722 }
114 mmeineke 377
115 mmeineke 841 // check on the post processing info
116    
117     finalInfoCheck();
118    
119 mmeineke 614 // make the output filenames
120 mmeineke 377
121 mmeineke 614 makeOutNames();
122 tim 722
123 mmeineke 555 // make the integrator
124 tim 722
125 mmeineke 616 makeIntegrator();
126 tim 722
127 chuckv 432 #ifdef IS_MPI
128     mpiSim->mpiRefresh();
129     #endif
130 mmeineke 377
131 chuckv 432 // initialize the Fortran
132 mmeineke 377
133 mmeineke 616 initFortran();
134 mmeineke 377 }
135    
136 mmeineke 407
137 tim 722 void SimSetup::makeMolecules(void){
138 mmeineke 787 int k;
139 mmeineke 412 int i, j, exI, exJ, tempEx, stampID, atomOffset, excludeOffset;
140 mmeineke 616 molInit molInfo;
141 mmeineke 407 DirectionalAtom* dAtom;
142 mmeineke 412 LinkedAssign* extras;
143     LinkedAssign* current_extra;
144 mmeineke 407 AtomStamp* currentAtom;
145     BondStamp* currentBond;
146     BendStamp* currentBend;
147     TorsionStamp* currentTorsion;
148 mmeineke 427
149     bond_pair* theBonds;
150     bend_set* theBends;
151     torsion_set* theTorsions;
152    
153 tim 722
154 mmeineke 407 //init the forceField paramters
155    
156     the_ff->readParams();
157    
158 tim 722
159 mmeineke 427 // init the atoms
160 mmeineke 407
161 mmeineke 427 double ux, uy, uz, u, uSqr;
162 mmeineke 407
163 tim 722 for (k = 0; k < nInfo; k++){
164     the_ff->setSimInfo(&(info[k]));
165    
166 mmeineke 670 atomOffset = 0;
167     excludeOffset = 0;
168 tim 722 for (i = 0; i < info[k].n_mol; i++){
169 mmeineke 670 stampID = info[k].molecules[i].getStampID();
170 mmeineke 412
171 tim 722 molInfo.nAtoms = comp_stamps[stampID]->getNAtoms();
172     molInfo.nBonds = comp_stamps[stampID]->getNBonds();
173     molInfo.nBends = comp_stamps[stampID]->getNBends();
174 mmeineke 670 molInfo.nTorsions = comp_stamps[stampID]->getNTorsions();
175     molInfo.nExcludes = molInfo.nBonds + molInfo.nBends + molInfo.nTorsions;
176 tim 722
177 mmeineke 670 molInfo.myAtoms = &(info[k].atoms[atomOffset]);
178     molInfo.myExcludes = &(info[k].excludes[excludeOffset]);
179 tim 722 molInfo.myBonds = new Bond * [molInfo.nBonds];
180     molInfo.myBends = new Bend * [molInfo.nBends];
181     molInfo.myTorsions = new Torsion * [molInfo.nTorsions];
182 mmeineke 407
183 mmeineke 670 theBonds = new bond_pair[molInfo.nBonds];
184     theBends = new bend_set[molInfo.nBends];
185     theTorsions = new torsion_set[molInfo.nTorsions];
186 tim 722
187 mmeineke 670 // make the Atoms
188 tim 722
189     for (j = 0; j < molInfo.nAtoms; j++){
190     currentAtom = comp_stamps[stampID]->getAtom(j);
191     if (currentAtom->haveOrientation()){
192     dAtom = new DirectionalAtom((j + atomOffset),
193     info[k].getConfiguration());
194     info[k].n_oriented++;
195     molInfo.myAtoms[j] = dAtom;
196    
197     ux = currentAtom->getOrntX();
198     uy = currentAtom->getOrntY();
199     uz = currentAtom->getOrntZ();
200    
201     uSqr = (ux * ux) + (uy * uy) + (uz * uz);
202    
203     u = sqrt(uSqr);
204     ux = ux / u;
205     uy = uy / u;
206     uz = uz / u;
207    
208     dAtom->setSUx(ux);
209     dAtom->setSUy(uy);
210     dAtom->setSUz(uz);
211     }
212     else{
213     molInfo.myAtoms[j] = new GeneralAtom((j + atomOffset),
214     info[k].getConfiguration());
215     }
216     molInfo.myAtoms[j]->setType(currentAtom->getType());
217    
218 mmeineke 407 #ifdef IS_MPI
219 tim 722
220     molInfo.myAtoms[j]->setGlobalIndex(globalIndex[j + atomOffset]);
221    
222 mmeineke 407 #endif // is_mpi
223 mmeineke 670 }
224 tim 722
225     // make the bonds
226     for (j = 0; j < molInfo.nBonds; j++){
227     currentBond = comp_stamps[stampID]->getBond(j);
228     theBonds[j].a = currentBond->getA() + atomOffset;
229     theBonds[j].b = currentBond->getB() + atomOffset;
230    
231     exI = theBonds[j].a;
232     exJ = theBonds[j].b;
233    
234     // exclude_I must always be the smaller of the pair
235     if (exI > exJ){
236     tempEx = exI;
237     exI = exJ;
238     exJ = tempEx;
239     }
240 mmeineke 670 #ifdef IS_MPI
241 tim 722 tempEx = exI;
242     exI = info[k].atoms[tempEx]->getGlobalIndex() + 1;
243     tempEx = exJ;
244     exJ = info[k].atoms[tempEx]->getGlobalIndex() + 1;
245    
246     info[k].excludes[j + excludeOffset]->setPair(exI, exJ);
247 mmeineke 412 #else // isn't MPI
248 tim 722
249     info[k].excludes[j + excludeOffset]->setPair((exI + 1), (exJ + 1));
250 mmeineke 412 #endif //is_mpi
251 mmeineke 670 }
252     excludeOffset += molInfo.nBonds;
253 tim 722
254 mmeineke 670 //make the bends
255 tim 722 for (j = 0; j < molInfo.nBends; j++){
256     currentBend = comp_stamps[stampID]->getBend(j);
257     theBends[j].a = currentBend->getA() + atomOffset;
258     theBends[j].b = currentBend->getB() + atomOffset;
259     theBends[j].c = currentBend->getC() + atomOffset;
260    
261     if (currentBend->haveExtras()){
262     extras = currentBend->getExtras();
263     current_extra = extras;
264    
265     while (current_extra != NULL){
266     if (!strcmp(current_extra->getlhs(), "ghostVectorSource")){
267     switch (current_extra->getType()){
268     case 0:
269     theBends[j].ghost = current_extra->getInt() + atomOffset;
270     theBends[j].isGhost = 1;
271     break;
272    
273     case 1:
274     theBends[j].ghost = (int) current_extra->getDouble() +
275     atomOffset;
276     theBends[j].isGhost = 1;
277     break;
278    
279     default:
280     sprintf(painCave.errMsg,
281     "SimSetup Error: ghostVectorSource was neither a "
282     "double nor an int.\n"
283     "-->Bend[%d] in %s\n",
284     j, comp_stamps[stampID]->getID());
285     painCave.isFatal = 1;
286     simError();
287     }
288     }
289     else{
290     sprintf(painCave.errMsg,
291     "SimSetup Error: unhandled bend assignment:\n"
292     " -->%s in Bend[%d] in %s\n",
293     current_extra->getlhs(), j, comp_stamps[stampID]->getID());
294     painCave.isFatal = 1;
295     simError();
296     }
297    
298     current_extra = current_extra->getNext();
299     }
300 tim 701 }
301 tim 722
302     if (!theBends[j].isGhost){
303     exI = theBends[j].a;
304     exJ = theBends[j].c;
305     }
306     else{
307     exI = theBends[j].a;
308     exJ = theBends[j].b;
309     }
310    
311     // exclude_I must always be the smaller of the pair
312     if (exI > exJ){
313     tempEx = exI;
314     exI = exJ;
315     exJ = tempEx;
316     }
317 mmeineke 670 #ifdef IS_MPI
318 tim 722 tempEx = exI;
319     exI = info[k].atoms[tempEx]->getGlobalIndex() + 1;
320     tempEx = exJ;
321     exJ = info[k].atoms[tempEx]->getGlobalIndex() + 1;
322    
323     info[k].excludes[j + excludeOffset]->setPair(exI, exJ);
324 mmeineke 670 #else // isn't MPI
325 tim 722 info[k].excludes[j + excludeOffset]->setPair((exI + 1), (exJ + 1));
326 mmeineke 670 #endif //is_mpi
327 mmeineke 412 }
328 mmeineke 670 excludeOffset += molInfo.nBends;
329 tim 722
330     for (j = 0; j < molInfo.nTorsions; j++){
331     currentTorsion = comp_stamps[stampID]->getTorsion(j);
332     theTorsions[j].a = currentTorsion->getA() + atomOffset;
333     theTorsions[j].b = currentTorsion->getB() + atomOffset;
334     theTorsions[j].c = currentTorsion->getC() + atomOffset;
335     theTorsions[j].d = currentTorsion->getD() + atomOffset;
336    
337     exI = theTorsions[j].a;
338     exJ = theTorsions[j].d;
339    
340     // exclude_I must always be the smaller of the pair
341     if (exI > exJ){
342     tempEx = exI;
343     exI = exJ;
344     exJ = tempEx;
345     }
346 mmeineke 670 #ifdef IS_MPI
347 tim 722 tempEx = exI;
348     exI = info[k].atoms[tempEx]->getGlobalIndex() + 1;
349     tempEx = exJ;
350     exJ = info[k].atoms[tempEx]->getGlobalIndex() + 1;
351    
352     info[k].excludes[j + excludeOffset]->setPair(exI, exJ);
353 mmeineke 407 #else // isn't MPI
354 tim 722 info[k].excludes[j + excludeOffset]->setPair((exI + 1), (exJ + 1));
355 mmeineke 412 #endif //is_mpi
356 mmeineke 670 }
357     excludeOffset += molInfo.nTorsions;
358 tim 722
359    
360 mmeineke 670 // send the arrays off to the forceField for init.
361 mmeineke 407
362 tim 722 the_ff->initializeAtoms(molInfo.nAtoms, molInfo.myAtoms);
363     the_ff->initializeBonds(molInfo.nBonds, molInfo.myBonds, theBonds);
364     the_ff->initializeBends(molInfo.nBends, molInfo.myBends, theBends);
365     the_ff->initializeTorsions(molInfo.nTorsions, molInfo.myTorsions,
366     theTorsions);
367    
368    
369     info[k].molecules[i].initialize(molInfo);
370    
371    
372 mmeineke 670 atomOffset += molInfo.nAtoms;
373     delete[] theBonds;
374     delete[] theBends;
375     delete[] theTorsions;
376 mmeineke 412 }
377 mmeineke 414 }
378 tim 722
379 chuckv 434 #ifdef IS_MPI
380 tim 722 sprintf(checkPointMsg, "all molecules initialized succesfully");
381 chuckv 434 MPIcheckPoint();
382     #endif // is_mpi
383 tim 722
384 mmeineke 670 // clean up the forcefield
385 chuckv 434
386 mmeineke 420 the_ff->calcRcut();
387 mmeineke 414 the_ff->cleanMe();
388     }
389 mmeineke 407
390 tim 722 void SimSetup::initFromBass(void){
391 mmeineke 377 int i, j, k;
392     int n_cells;
393     double cellx, celly, cellz;
394     double temp1, temp2, temp3;
395     int n_per_extra;
396     int n_extra;
397     int have_extra, done;
398    
399 mmeineke 670 double vel[3];
400     vel[0] = 0.0;
401     vel[1] = 0.0;
402     vel[2] = 0.0;
403    
404 tim 722 temp1 = (double) tot_nmol / 4.0;
405     temp2 = pow(temp1, (1.0 / 3.0));
406     temp3 = ceil(temp2);
407 mmeineke 377
408 tim 722 have_extra = 0;
409     if (temp2 < temp3){
410     // we have a non-complete lattice
411     have_extra = 1;
412 mmeineke 377
413 tim 722 n_cells = (int) temp3 - 1;
414 mmeineke 670 cellx = info[0].boxL[0] / temp3;
415     celly = info[0].boxL[1] / temp3;
416     cellz = info[0].boxL[2] / temp3;
417 tim 722 n_extra = tot_nmol - (4 * n_cells * n_cells * n_cells);
418     temp1 = ((double) n_extra) / (pow(temp3, 3.0) - pow(n_cells, 3.0));
419     n_per_extra = (int) ceil(temp1);
420 mmeineke 377
421 tim 722 if (n_per_extra > 4){
422     sprintf(painCave.errMsg,
423     "SimSetup error. There has been an error in constructing"
424     " the non-complete lattice.\n");
425 mmeineke 377 painCave.isFatal = 1;
426     simError();
427     }
428     }
429     else{
430 tim 722 n_cells = (int) temp3;
431 mmeineke 670 cellx = info[0].boxL[0] / temp3;
432     celly = info[0].boxL[1] / temp3;
433     cellz = info[0].boxL[2] / temp3;
434 mmeineke 377 }
435    
436     current_mol = 0;
437     current_comp_mol = 0;
438     current_comp = 0;
439     current_atom_ndx = 0;
440    
441 tim 722 for (i = 0; i < n_cells ; i++){
442     for (j = 0; j < n_cells; j++){
443     for (k = 0; k < n_cells; k++){
444     makeElement(i * cellx, j * celly, k * cellz);
445 mmeineke 377
446 tim 722 makeElement(i * cellx + 0.5 * cellx, j * celly + 0.5 * celly, k * cellz);
447 mmeineke 377
448 tim 722 makeElement(i * cellx, j * celly + 0.5 * celly, k * cellz + 0.5 * cellz);
449 mmeineke 377
450 tim 722 makeElement(i * cellx + 0.5 * cellx, j * celly, k * cellz + 0.5 * cellz);
451 mmeineke 377 }
452     }
453     }
454    
455 tim 722 if (have_extra){
456 mmeineke 377 done = 0;
457    
458     int start_ndx;
459 tim 722 for (i = 0; i < (n_cells + 1) && !done; i++){
460     for (j = 0; j < (n_cells + 1) && !done; j++){
461     if (i < n_cells){
462     if (j < n_cells){
463     start_ndx = n_cells;
464     }
465     else
466     start_ndx = 0;
467     }
468     else
469     start_ndx = 0;
470 mmeineke 377
471 tim 722 for (k = start_ndx; k < (n_cells + 1) && !done; k++){
472     makeElement(i * cellx, j * celly, k * cellz);
473     done = (current_mol >= tot_nmol);
474 mmeineke 377
475 tim 722 if (!done && n_per_extra > 1){
476     makeElement(i * cellx + 0.5 * cellx, j * celly + 0.5 * celly,
477     k * cellz);
478     done = (current_mol >= tot_nmol);
479     }
480 mmeineke 377
481 tim 722 if (!done && n_per_extra > 2){
482     makeElement(i * cellx, j * celly + 0.5 * celly,
483     k * cellz + 0.5 * cellz);
484     done = (current_mol >= tot_nmol);
485     }
486 mmeineke 377
487 tim 722 if (!done && n_per_extra > 3){
488     makeElement(i * cellx + 0.5 * cellx, j * celly,
489     k * cellz + 0.5 * cellz);
490     done = (current_mol >= tot_nmol);
491     }
492     }
493 mmeineke 377 }
494     }
495     }
496    
497 tim 722 for (i = 0; i < info[0].n_atoms; i++){
498     info[0].atoms[i]->setVel(vel);
499 mmeineke 377 }
500     }
501    
502 tim 722 void SimSetup::makeElement(double x, double y, double z){
503 mmeineke 377 int k;
504     AtomStamp* current_atom;
505     DirectionalAtom* dAtom;
506     double rotMat[3][3];
507 mmeineke 670 double pos[3];
508 mmeineke 377
509 tim 722 for (k = 0; k < comp_stamps[current_comp]->getNAtoms(); k++){
510     current_atom = comp_stamps[current_comp]->getAtom(k);
511     if (!current_atom->havePosition()){
512     sprintf(painCave.errMsg,
513     "SimSetup:initFromBass error.\n"
514     "\tComponent %s, atom %s does not have a position specified.\n"
515     "\tThe initialization routine is unable to give a start"
516     " position.\n",
517     comp_stamps[current_comp]->getID(), current_atom->getType());
518 mmeineke 377 painCave.isFatal = 1;
519     simError();
520     }
521 tim 722
522 mmeineke 670 pos[0] = x + current_atom->getPosX();
523     pos[1] = y + current_atom->getPosY();
524     pos[2] = z + current_atom->getPosZ();
525 mmeineke 377
526 tim 722 info[0].atoms[current_atom_ndx]->setPos(pos);
527 mmeineke 377
528 tim 722 if (info[0].atoms[current_atom_ndx]->isDirectional()){
529     dAtom = (DirectionalAtom *) info[0].atoms[current_atom_ndx];
530 mmeineke 377
531     rotMat[0][0] = 1.0;
532     rotMat[0][1] = 0.0;
533     rotMat[0][2] = 0.0;
534    
535     rotMat[1][0] = 0.0;
536     rotMat[1][1] = 1.0;
537     rotMat[1][2] = 0.0;
538    
539     rotMat[2][0] = 0.0;
540     rotMat[2][1] = 0.0;
541     rotMat[2][2] = 1.0;
542    
543 tim 722 dAtom->setA(rotMat);
544 mmeineke 377 }
545    
546     current_atom_ndx++;
547     }
548    
549     current_mol++;
550     current_comp_mol++;
551    
552 tim 722 if (current_comp_mol >= components_nmol[current_comp]){
553 mmeineke 377 current_comp_mol = 0;
554     current_comp++;
555     }
556     }
557 mmeineke 614
558    
559 tim 722 void SimSetup::gatherInfo(void){
560 mmeineke 787 int i;
561 mmeineke 614
562     ensembleCase = -1;
563     ffCase = -1;
564    
565 mmeineke 670 // set the easy ones first
566 mmeineke 614
567 tim 722 for (i = 0; i < nInfo; i++){
568 mmeineke 670 info[i].target_temp = globals->getTargetTemp();
569     info[i].dt = globals->getDt();
570     info[i].run_time = globals->getRunTime();
571     }
572 mmeineke 616 n_components = globals->getNComponents();
573 mmeineke 614
574    
575     // get the forceField
576    
577 tim 722 strcpy(force_field, globals->getForceField());
578 mmeineke 614
579 tim 722 if (!strcasecmp(force_field, "DUFF")){
580     ffCase = FF_DUFF;
581     }
582     else if (!strcasecmp(force_field, "LJ")){
583     ffCase = FF_LJ;
584     }
585     else if (!strcasecmp(force_field, "EAM")){
586     ffCase = FF_EAM;
587     }
588 mmeineke 614 else{
589 tim 722 sprintf(painCave.errMsg, "SimSetup Error. Unrecognized force field -> %s\n",
590     force_field);
591     painCave.isFatal = 1;
592     simError();
593 mmeineke 614 }
594    
595 tim 722 // get the ensemble
596 mmeineke 614
597 tim 722 strcpy(ensemble, globals->getEnsemble());
598 mmeineke 614
599 tim 722 if (!strcasecmp(ensemble, "NVE")){
600     ensembleCase = NVE_ENS;
601     }
602     else if (!strcasecmp(ensemble, "NVT")){
603     ensembleCase = NVT_ENS;
604     }
605     else if (!strcasecmp(ensemble, "NPTi") || !strcasecmp(ensemble, "NPT")){
606 mmeineke 614 ensembleCase = NPTi_ENS;
607 tim 722 }
608     else if (!strcasecmp(ensemble, "NPTf")){
609     ensembleCase = NPTf_ENS;
610     }
611 mmeineke 812 else if (!strcasecmp(ensemble, "NPTxyz")){
612     ensembleCase = NPTxyz_ENS;
613     }
614 mmeineke 614 else{
615 tim 722 sprintf(painCave.errMsg,
616     "SimSetup Warning. Unrecognized Ensemble -> %s, "
617     "reverting to NVE for this simulation.\n",
618     ensemble);
619     painCave.isFatal = 0;
620     simError();
621     strcpy(ensemble, "NVE");
622     ensembleCase = NVE_ENS;
623 mmeineke 614 }
624    
625 tim 722 for (i = 0; i < nInfo; i++){
626     strcpy(info[i].ensemble, ensemble);
627    
628 mmeineke 670 // get the mixing rule
629 mmeineke 614
630 tim 722 strcpy(info[i].mixingRule, globals->getMixingRule());
631 mmeineke 670 info[i].usePBC = globals->getPBC();
632     }
633 tim 722
634 mmeineke 614 // get the components and calculate the tot_nMol and indvidual n_mol
635 tim 722
636 mmeineke 616 the_components = globals->getComponents();
637 mmeineke 614 components_nmol = new int[n_components];
638    
639    
640 tim 722 if (!globals->haveNMol()){
641 mmeineke 614 // we don't have the total number of molecules, so we assume it is
642     // given in each component
643    
644     tot_nmol = 0;
645 tim 722 for (i = 0; i < n_components; i++){
646     if (!the_components[i]->haveNMol()){
647     // we have a problem
648     sprintf(painCave.errMsg,
649     "SimSetup Error. No global NMol or component NMol"
650     " given. Cannot calculate the number of atoms.\n");
651     painCave.isFatal = 1;
652     simError();
653 mmeineke 614 }
654    
655     tot_nmol += the_components[i]->getNMol();
656     components_nmol[i] = the_components[i]->getNMol();
657     }
658     }
659     else{
660 tim 722 sprintf(painCave.errMsg,
661     "SimSetup error.\n"
662     "\tSorry, the ability to specify total"
663     " nMols and then give molfractions in the components\n"
664     "\tis not currently supported."
665     " Please give nMol in the components.\n");
666 mmeineke 614 painCave.isFatal = 1;
667     simError();
668     }
669    
670     // set the status, sample, and thermal kick times
671    
672 tim 722 for (i = 0; i < nInfo; i++){
673     if (globals->haveSampleTime()){
674 mmeineke 670 info[i].sampleTime = globals->getSampleTime();
675     info[i].statusTime = info[i].sampleTime;
676     info[i].thermalTime = info[i].sampleTime;
677     }
678     else{
679     info[i].sampleTime = globals->getRunTime();
680     info[i].statusTime = info[i].sampleTime;
681     info[i].thermalTime = info[i].sampleTime;
682     }
683 tim 722
684     if (globals->haveStatusTime()){
685 mmeineke 670 info[i].statusTime = globals->getStatusTime();
686     }
687 tim 722
688     if (globals->haveThermalTime()){
689 mmeineke 670 info[i].thermalTime = globals->getThermalTime();
690     }
691 mmeineke 614
692 mmeineke 746 info[i].resetIntegrator = 0;
693     if( globals->haveResetTime() ){
694     info[i].resetTime = globals->getResetTime();
695     info[i].resetIntegrator = 1;
696     }
697    
698 mmeineke 670 // check for the temperature set flag
699 mmeineke 841
700 tim 722 if (globals->haveTempSet())
701     info[i].setTemp = globals->getTempSet();
702 mmeineke 841
703 tim 708 }
704 mmeineke 841
705 tim 722 //setup seed for random number generator
706 tim 708 int seedValue;
707    
708 tim 722 if (globals->haveSeed()){
709 tim 708 seedValue = globals->getSeed();
710 tim 722
711     if(seedValue / 1E9 == 0){
712     sprintf(painCave.errMsg,
713     "Seed for sprng library should contain at least 9 digits\n"
714     "OOPSE will generate a seed for user\n");
715     painCave.isFatal = 0;
716     simError();
717    
718     //using seed generated by system instead of invalid seed set by user
719     #ifndef IS_MPI
720     seedValue = make_sprng_seed();
721     #else
722     if (worldRank == 0){
723     seedValue = make_sprng_seed();
724     }
725     MPI_Bcast(&seedValue, 1, MPI_INT, 0, MPI_COMM_WORLD);
726     #endif
727     }
728     }//end of if branch of globals->haveSeed()
729 tim 708 else{
730 tim 722
731 tim 708 #ifndef IS_MPI
732 tim 722 seedValue = make_sprng_seed();
733 tim 708 #else
734 tim 722 if (worldRank == 0){
735     seedValue = make_sprng_seed();
736 tim 708 }
737 tim 722 MPI_Bcast(&seedValue, 1, MPI_INT, 0, MPI_COMM_WORLD);
738 tim 708 #endif
739 tim 722 }//end of globals->haveSeed()
740 tim 708
741 tim 722 for (int i = 0; i < nInfo; i++){
742 tim 708 info[i].setSeed(seedValue);
743     }
744    
745 mmeineke 614 #ifdef IS_MPI
746 tim 722 strcpy(checkPointMsg, "Succesfully gathered all information from Bass\n");
747 mmeineke 614 MPIcheckPoint();
748     #endif // is_mpi
749     }
750    
751    
752 tim 722 void SimSetup::finalInfoCheck(void){
753 mmeineke 614 int index;
754     int usesDipoles;
755 mmeineke 670 int i;
756 mmeineke 614
757 tim 722 for (i = 0; i < nInfo; i++){
758 mmeineke 670 // check electrostatic parameters
759 tim 722
760 mmeineke 670 index = 0;
761     usesDipoles = 0;
762 tim 722 while ((index < info[i].n_atoms) && !usesDipoles){
763 mmeineke 670 usesDipoles = (info[i].atoms[index])->hasDipole();
764     index++;
765     }
766 tim 722
767 mmeineke 614 #ifdef IS_MPI
768 mmeineke 670 int myUse = usesDipoles;
769 tim 722 MPI_Allreduce(&myUse, &usesDipoles, 1, MPI_INT, MPI_LOR, MPI_COMM_WORLD);
770 mmeineke 614 #endif //is_mpi
771 tim 722
772 mmeineke 670 double theEcr, theEst;
773 tim 722
774     if (globals->getUseRF()){
775 mmeineke 670 info[i].useReactionField = 1;
776 tim 722
777     if (!globals->haveECR()){
778     sprintf(painCave.errMsg,
779     "SimSetup Warning: using default value of 1/2 the smallest "
780     "box length for the electrostaticCutoffRadius.\n"
781     "I hope you have a very fast processor!\n");
782     painCave.isFatal = 0;
783     simError();
784     double smallest;
785     smallest = info[i].boxL[0];
786     if (info[i].boxL[1] <= smallest)
787     smallest = info[i].boxL[1];
788     if (info[i].boxL[2] <= smallest)
789     smallest = info[i].boxL[2];
790     theEcr = 0.5 * smallest;
791 mmeineke 614 }
792 tim 722 else{
793     theEcr = globals->getECR();
794 mmeineke 614 }
795 tim 722
796     if (!globals->haveEST()){
797     sprintf(painCave.errMsg,
798     "SimSetup Warning: using default value of 0.05 * the "
799     "electrostaticCutoffRadius for the electrostaticSkinThickness\n");
800     painCave.isFatal = 0;
801     simError();
802     theEst = 0.05 * theEcr;
803 mmeineke 670 }
804 tim 722 else{
805     theEst = globals->getEST();
806 mmeineke 670 }
807 tim 722
808 mmeineke 841 info[i].setDefaultEcr(theEcr, theEst);
809 tim 722
810     if (!globals->haveDielectric()){
811     sprintf(painCave.errMsg,
812     "SimSetup Error: You are trying to use Reaction Field without"
813     "setting a dielectric constant!\n");
814     painCave.isFatal = 1;
815     simError();
816     }
817     info[i].dielectric = globals->getDielectric();
818     }
819     else{
820     if (usesDipoles){
821     if (!globals->haveECR()){
822     sprintf(painCave.errMsg,
823     "SimSetup Warning: using default value of 1/2 the smallest "
824     "box length for the electrostaticCutoffRadius.\n"
825     "I hope you have a very fast processor!\n");
826     painCave.isFatal = 0;
827     simError();
828     double smallest;
829     smallest = info[i].boxL[0];
830     if (info[i].boxL[1] <= smallest)
831     smallest = info[i].boxL[1];
832     if (info[i].boxL[2] <= smallest)
833     smallest = info[i].boxL[2];
834     theEcr = 0.5 * smallest;
835     }
836     else{
837     theEcr = globals->getECR();
838     }
839    
840     if (!globals->haveEST()){
841     sprintf(painCave.errMsg,
842     "SimSetup Warning: using default value of 0.05 * the "
843     "electrostaticCutoffRadius for the "
844     "electrostaticSkinThickness\n");
845     painCave.isFatal = 0;
846     simError();
847     theEst = 0.05 * theEcr;
848     }
849     else{
850     theEst = globals->getEST();
851     }
852    
853 mmeineke 841 info[i].setDefaultEcr(theEcr, theEst);
854 tim 722 }
855     }
856 mmeineke 670 }
857 mmeineke 626
858 mmeineke 614 #ifdef IS_MPI
859 tim 722 strcpy(checkPointMsg, "post processing checks out");
860 mmeineke 614 MPIcheckPoint();
861     #endif // is_mpi
862     }
863    
864 tim 722 void SimSetup::initSystemCoords(void){
865 mmeineke 670 int i;
866 tim 722
867 tim 689 char* inName;
868    
869 tim 722 (info[0].getConfiguration())->createArrays(info[0].n_atoms);
870 mmeineke 614
871 tim 722 for (i = 0; i < info[0].n_atoms; i++)
872     info[0].atoms[i]->setCoords();
873    
874     if (globals->haveInitialConfig()){
875 mmeineke 670 InitializeFromFile* fileInit;
876 mmeineke 614 #ifdef IS_MPI // is_mpi
877 tim 722 if (worldRank == 0){
878 mmeineke 614 #endif //is_mpi
879 tim 689 inName = globals->getInitialConfig();
880 tim 722 fileInit = new InitializeFromFile(inName);
881 mmeineke 614 #ifdef IS_MPI
882 tim 722 }
883     else
884     fileInit = new InitializeFromFile(NULL);
885 mmeineke 614 #endif
886 tim 722 fileInit->readInit(info); // default velocities on
887    
888 mmeineke 670 delete fileInit;
889     }
890     else{
891 mmeineke 614 #ifdef IS_MPI
892 tim 722
893 mmeineke 670 // no init from bass
894 tim 722
895     sprintf(painCave.errMsg,
896     "Cannot intialize a parallel simulation without an initial configuration file.\n");
897 mmeineke 787 painCave.isFatal = 1;;
898 mmeineke 670 simError();
899 tim 722
900 mmeineke 614 #else
901 tim 722
902 mmeineke 670 initFromBass();
903 tim 722
904    
905 mmeineke 614 #endif
906 mmeineke 670 }
907 tim 722
908 mmeineke 614 #ifdef IS_MPI
909 tim 722 strcpy(checkPointMsg, "Successfully read in the initial configuration");
910 mmeineke 614 MPIcheckPoint();
911     #endif // is_mpi
912     }
913    
914    
915 tim 722 void SimSetup::makeOutNames(void){
916 mmeineke 670 int k;
917 mmeineke 614
918 mmeineke 670
919 tim 722 for (k = 0; k < nInfo; k++){
920 mmeineke 614 #ifdef IS_MPI
921 tim 722 if (worldRank == 0){
922 mmeineke 614 #endif // is_mpi
923 tim 722
924     if (globals->haveFinalConfig()){
925     strcpy(info[k].finalName, globals->getFinalConfig());
926 mmeineke 614 }
927     else{
928 tim 722 strcpy(info[k].finalName, inFileName);
929     char* endTest;
930     int nameLength = strlen(info[k].finalName);
931     endTest = &(info[k].finalName[nameLength - 5]);
932     if (!strcmp(endTest, ".bass")){
933     strcpy(endTest, ".eor");
934     }
935     else if (!strcmp(endTest, ".BASS")){
936     strcpy(endTest, ".eor");
937     }
938     else{
939     endTest = &(info[k].finalName[nameLength - 4]);
940     if (!strcmp(endTest, ".bss")){
941     strcpy(endTest, ".eor");
942     }
943     else if (!strcmp(endTest, ".mdl")){
944     strcpy(endTest, ".eor");
945     }
946     else{
947     strcat(info[k].finalName, ".eor");
948     }
949     }
950 mmeineke 614 }
951 tim 722
952 mmeineke 670 // make the sample and status out names
953 tim 722
954     strcpy(info[k].sampleName, inFileName);
955 mmeineke 670 char* endTest;
956 tim 722 int nameLength = strlen(info[k].sampleName);
957 mmeineke 670 endTest = &(info[k].sampleName[nameLength - 5]);
958 tim 722 if (!strcmp(endTest, ".bass")){
959     strcpy(endTest, ".dump");
960 mmeineke 614 }
961 tim 722 else if (!strcmp(endTest, ".BASS")){
962     strcpy(endTest, ".dump");
963 mmeineke 614 }
964     else{
965 tim 722 endTest = &(info[k].sampleName[nameLength - 4]);
966     if (!strcmp(endTest, ".bss")){
967     strcpy(endTest, ".dump");
968     }
969     else if (!strcmp(endTest, ".mdl")){
970     strcpy(endTest, ".dump");
971     }
972     else{
973     strcat(info[k].sampleName, ".dump");
974     }
975 mmeineke 614 }
976 tim 722
977     strcpy(info[k].statusName, inFileName);
978     nameLength = strlen(info[k].statusName);
979 mmeineke 670 endTest = &(info[k].statusName[nameLength - 5]);
980 tim 722 if (!strcmp(endTest, ".bass")){
981     strcpy(endTest, ".stat");
982 mmeineke 614 }
983 tim 722 else if (!strcmp(endTest, ".BASS")){
984     strcpy(endTest, ".stat");
985 mmeineke 614 }
986     else{
987 tim 722 endTest = &(info[k].statusName[nameLength - 4]);
988     if (!strcmp(endTest, ".bss")){
989     strcpy(endTest, ".stat");
990     }
991     else if (!strcmp(endTest, ".mdl")){
992     strcpy(endTest, ".stat");
993     }
994     else{
995     strcat(info[k].statusName, ".stat");
996     }
997 mmeineke 614 }
998 tim 722
999 mmeineke 670 #ifdef IS_MPI
1000 tim 722
1001 mmeineke 614 }
1002 mmeineke 670 #endif // is_mpi
1003 mmeineke 614 }
1004     }
1005    
1006    
1007 tim 722 void SimSetup::sysObjectsCreation(void){
1008     int i, k;
1009    
1010 mmeineke 614 // create the forceField
1011 tim 689
1012 mmeineke 614 createFF();
1013    
1014     // extract componentList
1015    
1016     compList();
1017    
1018     // calc the number of atoms, bond, bends, and torsions
1019    
1020     calcSysValues();
1021    
1022     #ifdef IS_MPI
1023     // divide the molecules among the processors
1024 tim 722
1025 mmeineke 614 mpiMolDivide();
1026     #endif //is_mpi
1027 tim 722
1028 mmeineke 614 // create the atom and SRI arrays. Also initialize Molecule Stamp ID's
1029 tim 722
1030 mmeineke 614 makeSysArrays();
1031    
1032 mmeineke 616 // make and initialize the molecules (all but atomic coordinates)
1033 tim 722
1034 mmeineke 616 makeMolecules();
1035 tim 722
1036     for (k = 0; k < nInfo; k++){
1037 mmeineke 670 info[k].identArray = new int[info[k].n_atoms];
1038 tim 722 for (i = 0; i < info[k].n_atoms; i++){
1039 mmeineke 670 info[k].identArray[i] = info[k].atoms[i]->getIdent();
1040     }
1041 mmeineke 616 }
1042 mmeineke 614 }
1043    
1044    
1045 tim 722 void SimSetup::createFF(void){
1046     switch (ffCase){
1047     case FF_DUFF:
1048     the_ff = new DUFF();
1049     break;
1050 mmeineke 614
1051 tim 722 case FF_LJ:
1052     the_ff = new LJFF();
1053     break;
1054 mmeineke 614
1055 tim 722 case FF_EAM:
1056     the_ff = new EAM_FF();
1057     break;
1058 mmeineke 614
1059 tim 722 default:
1060     sprintf(painCave.errMsg,
1061     "SimSetup Error. Unrecognized force field in case statement.\n");
1062     painCave.isFatal = 1;
1063     simError();
1064 mmeineke 614 }
1065    
1066     #ifdef IS_MPI
1067 tim 722 strcpy(checkPointMsg, "ForceField creation successful");
1068 mmeineke 614 MPIcheckPoint();
1069     #endif // is_mpi
1070     }
1071    
1072    
1073 tim 722 void SimSetup::compList(void){
1074 mmeineke 616 int i;
1075 mmeineke 670 char* id;
1076     LinkedMolStamp* headStamp = new LinkedMolStamp();
1077     LinkedMolStamp* currentStamp = NULL;
1078 tim 722 comp_stamps = new MoleculeStamp * [n_components];
1079    
1080 mmeineke 614 // make an array of molecule stamps that match the components used.
1081     // also extract the used stamps out into a separate linked list
1082 tim 722
1083     for (i = 0; i < nInfo; i++){
1084 mmeineke 670 info[i].nComponents = n_components;
1085     info[i].componentsNmol = components_nmol;
1086     info[i].compStamps = comp_stamps;
1087     info[i].headStamp = headStamp;
1088     }
1089 mmeineke 614
1090    
1091 tim 722 for (i = 0; i < n_components; i++){
1092 mmeineke 614 id = the_components[i]->getType();
1093     comp_stamps[i] = NULL;
1094 tim 722
1095 mmeineke 614 // check to make sure the component isn't already in the list
1096    
1097 tim 722 comp_stamps[i] = headStamp->match(id);
1098     if (comp_stamps[i] == NULL){
1099 mmeineke 614 // extract the component from the list;
1100 tim 722
1101     currentStamp = stamps->extractMolStamp(id);
1102     if (currentStamp == NULL){
1103     sprintf(painCave.errMsg,
1104     "SimSetup error: Component \"%s\" was not found in the "
1105     "list of declared molecules\n",
1106     id);
1107     painCave.isFatal = 1;
1108     simError();
1109 mmeineke 614 }
1110 tim 722
1111     headStamp->add(currentStamp);
1112     comp_stamps[i] = headStamp->match(id);
1113 mmeineke 614 }
1114     }
1115    
1116     #ifdef IS_MPI
1117 tim 722 strcpy(checkPointMsg, "Component stamps successfully extracted\n");
1118 mmeineke 614 MPIcheckPoint();
1119     #endif // is_mpi
1120 tim 722 }
1121 mmeineke 614
1122 tim 722 void SimSetup::calcSysValues(void){
1123 mmeineke 787 int i;
1124 mmeineke 614
1125 tim 722 int* molMembershipArray;
1126 mmeineke 614
1127     tot_atoms = 0;
1128     tot_bonds = 0;
1129     tot_bends = 0;
1130     tot_torsions = 0;
1131 tim 722 for (i = 0; i < n_components; i++){
1132     tot_atoms += components_nmol[i] * comp_stamps[i]->getNAtoms();
1133     tot_bonds += components_nmol[i] * comp_stamps[i]->getNBonds();
1134     tot_bends += components_nmol[i] * comp_stamps[i]->getNBends();
1135 mmeineke 614 tot_torsions += components_nmol[i] * comp_stamps[i]->getNTorsions();
1136     }
1137 tim 722
1138 mmeineke 614 tot_SRI = tot_bonds + tot_bends + tot_torsions;
1139 mmeineke 670 molMembershipArray = new int[tot_atoms];
1140 tim 722
1141     for (i = 0; i < nInfo; i++){
1142 mmeineke 670 info[i].n_atoms = tot_atoms;
1143     info[i].n_bonds = tot_bonds;
1144     info[i].n_bends = tot_bends;
1145     info[i].n_torsions = tot_torsions;
1146     info[i].n_SRI = tot_SRI;
1147     info[i].n_mol = tot_nmol;
1148 tim 722
1149 mmeineke 670 info[i].molMembershipArray = molMembershipArray;
1150 tim 722 }
1151 mmeineke 614 }
1152    
1153     #ifdef IS_MPI
1154    
1155 tim 722 void SimSetup::mpiMolDivide(void){
1156 mmeineke 616 int i, j, k;
1157 mmeineke 614 int localMol, allMol;
1158     int local_atoms, local_bonds, local_bends, local_torsions, local_SRI;
1159    
1160 tim 722 mpiSim = new mpiSimulation(info);
1161    
1162 mmeineke 614 globalIndex = mpiSim->divideLabor();
1163    
1164     // set up the local variables
1165 tim 722
1166 mmeineke 614 mol2proc = mpiSim->getMolToProcMap();
1167     molCompType = mpiSim->getMolComponentType();
1168 tim 722
1169 mmeineke 614 allMol = 0;
1170     localMol = 0;
1171     local_atoms = 0;
1172     local_bonds = 0;
1173     local_bends = 0;
1174     local_torsions = 0;
1175     globalAtomIndex = 0;
1176    
1177    
1178 tim 722 for (i = 0; i < n_components; i++){
1179     for (j = 0; j < components_nmol[i]; j++){
1180     if (mol2proc[allMol] == worldRank){
1181     local_atoms += comp_stamps[i]->getNAtoms();
1182     local_bonds += comp_stamps[i]->getNBonds();
1183     local_bends += comp_stamps[i]->getNBends();
1184     local_torsions += comp_stamps[i]->getNTorsions();
1185     localMol++;
1186 mmeineke 614 }
1187 tim 722 for (k = 0; k < comp_stamps[i]->getNAtoms(); k++){
1188 mmeineke 670 info[0].molMembershipArray[globalAtomIndex] = allMol;
1189 mmeineke 614 globalAtomIndex++;
1190     }
1191    
1192 tim 722 allMol++;
1193 mmeineke 614 }
1194     }
1195     local_SRI = local_bonds + local_bends + local_torsions;
1196 tim 722
1197 mmeineke 670 info[0].n_atoms = mpiSim->getMyNlocal();
1198 tim 722
1199     if (local_atoms != info[0].n_atoms){
1200     sprintf(painCave.errMsg,
1201     "SimSetup error: mpiSim's localAtom (%d) and SimSetup's"
1202     " localAtom (%d) are not equal.\n",
1203     info[0].n_atoms, local_atoms);
1204 mmeineke 614 painCave.isFatal = 1;
1205     simError();
1206     }
1207    
1208 mmeineke 670 info[0].n_bonds = local_bonds;
1209     info[0].n_bends = local_bends;
1210     info[0].n_torsions = local_torsions;
1211     info[0].n_SRI = local_SRI;
1212     info[0].n_mol = localMol;
1213 mmeineke 614
1214 tim 722 strcpy(checkPointMsg, "Passed nlocal consistency check.");
1215 mmeineke 614 MPIcheckPoint();
1216     }
1217 tim 722
1218 mmeineke 614 #endif // is_mpi
1219    
1220    
1221 tim 722 void SimSetup::makeSysArrays(void){
1222 mmeineke 787
1223     #ifndef IS_MPI
1224     int k, j;
1225     #endif // is_mpi
1226     int i, l;
1227 mmeineke 614
1228 mmeineke 670 Atom** the_atoms;
1229     Molecule* the_molecules;
1230     Exclude** the_excludes;
1231 mmeineke 616
1232 tim 722
1233     for (l = 0; l < nInfo; l++){
1234 mmeineke 670 // create the atom and short range interaction arrays
1235 tim 722
1236     the_atoms = new Atom * [info[l].n_atoms];
1237 mmeineke 670 the_molecules = new Molecule[info[l].n_mol];
1238     int molIndex;
1239 mmeineke 614
1240 mmeineke 670 // initialize the molecule's stampID's
1241 tim 722
1242 mmeineke 670 #ifdef IS_MPI
1243 tim 722
1244    
1245 mmeineke 670 molIndex = 0;
1246 tim 722 for (i = 0; i < mpiSim->getTotNmol(); i++){
1247     if (mol2proc[i] == worldRank){
1248     the_molecules[molIndex].setStampID(molCompType[i]);
1249     the_molecules[molIndex].setMyIndex(molIndex);
1250     the_molecules[molIndex].setGlobalIndex(i);
1251     molIndex++;
1252 mmeineke 670 }
1253 mmeineke 614 }
1254 tim 722
1255 mmeineke 614 #else // is_mpi
1256 tim 722
1257 mmeineke 670 molIndex = 0;
1258     globalAtomIndex = 0;
1259 tim 722 for (i = 0; i < n_components; i++){
1260     for (j = 0; j < components_nmol[i]; j++){
1261     the_molecules[molIndex].setStampID(i);
1262     the_molecules[molIndex].setMyIndex(molIndex);
1263     the_molecules[molIndex].setGlobalIndex(molIndex);
1264     for (k = 0; k < comp_stamps[i]->getNAtoms(); k++){
1265     info[l].molMembershipArray[globalAtomIndex] = molIndex;
1266     globalAtomIndex++;
1267     }
1268     molIndex++;
1269 mmeineke 614 }
1270     }
1271 tim 722
1272    
1273 mmeineke 614 #endif // is_mpi
1274    
1275    
1276 tim 722 if (info[l].n_SRI){
1277 mmeineke 670 Exclude::createArray(info[l].n_SRI);
1278 tim 722 the_excludes = new Exclude * [info[l].n_SRI];
1279     for (int ex = 0; ex < info[l].n_SRI; ex++){
1280     the_excludes[ex] = new Exclude(ex);
1281 mmeineke 670 }
1282     info[l].globalExcludes = new int;
1283     info[l].n_exclude = info[l].n_SRI;
1284     }
1285     else{
1286 tim 722 Exclude::createArray(1);
1287     the_excludes = new Exclude * ;
1288 mmeineke 670 the_excludes[0] = new Exclude(0);
1289 tim 722 the_excludes[0]->setPair(0, 0);
1290 mmeineke 670 info[l].globalExcludes = new int;
1291     info[l].globalExcludes[0] = 0;
1292     info[l].n_exclude = 0;
1293     }
1294 mmeineke 614
1295 mmeineke 670 // set the arrays into the SimInfo object
1296 mmeineke 614
1297 mmeineke 670 info[l].atoms = the_atoms;
1298     info[l].molecules = the_molecules;
1299     info[l].nGlobalExcludes = 0;
1300     info[l].excludes = the_excludes;
1301 mmeineke 614
1302 tim 722 the_ff->setSimInfo(info);
1303 mmeineke 670 }
1304 mmeineke 614 }
1305 mmeineke 616
1306 tim 722 void SimSetup::makeIntegrator(void){
1307 mmeineke 670 int k;
1308    
1309 mmeineke 782 NVE<RealIntegrator>* myNVE = NULL;
1310 tim 722 NVT<RealIntegrator>* myNVT = NULL;
1311 mmeineke 778 NPTi<NPT<RealIntegrator> >* myNPTi = NULL;
1312 mmeineke 780 NPTf<NPT<RealIntegrator> >* myNPTf = NULL;
1313 mmeineke 812 NPTxyz<NPT<RealIntegrator> >* myNPTxyz = NULL;
1314 tim 733
1315 tim 722 for (k = 0; k < nInfo; k++){
1316     switch (ensembleCase){
1317     case NVE_ENS:
1318     if (globals->haveZconstraints()){
1319     setupZConstraint(info[k]);
1320 mmeineke 782 myNVE = new ZConstraint<NVE<RealIntegrator> >(&(info[k]), the_ff);
1321 tim 722 }
1322 mmeineke 782 else{
1323     myNVE = new NVE<RealIntegrator>(&(info[k]), the_ff);
1324     }
1325    
1326     info->the_integrator = myNVE;
1327 tim 722 break;
1328 tim 676
1329 tim 722 case NVT_ENS:
1330     if (globals->haveZconstraints()){
1331     setupZConstraint(info[k]);
1332     myNVT = new ZConstraint<NVT<RealIntegrator> >(&(info[k]), the_ff);
1333     }
1334     else
1335     myNVT = new NVT<RealIntegrator>(&(info[k]), the_ff);
1336    
1337 tim 701 myNVT->setTargetTemp(globals->getTargetTemp());
1338 tim 722
1339     if (globals->haveTauThermostat())
1340 tim 701 myNVT->setTauThermostat(globals->getTauThermostat());
1341 tim 722 else{
1342     sprintf(painCave.errMsg,
1343     "SimSetup error: If you use the NVT\n"
1344     " ensemble, you must set tauThermostat.\n");
1345 tim 701 painCave.isFatal = 1;
1346     simError();
1347     }
1348 mmeineke 782
1349     info->the_integrator = myNVT;
1350 tim 701 break;
1351 tim 676
1352 tim 722 case NPTi_ENS:
1353     if (globals->haveZconstraints()){
1354     setupZConstraint(info[k]);
1355 mmeineke 778 myNPTi = new ZConstraint<NPTi<NPT <RealIntegrator> > >(&(info[k]), the_ff);
1356 tim 722 }
1357     else
1358 mmeineke 778 myNPTi = new NPTi<NPT<RealIntegrator> >(&(info[k]), the_ff);
1359 tim 722
1360     myNPTi->setTargetTemp(globals->getTargetTemp());
1361    
1362     if (globals->haveTargetPressure())
1363     myNPTi->setTargetPressure(globals->getTargetPressure());
1364     else{
1365     sprintf(painCave.errMsg,
1366     "SimSetup error: If you use a constant pressure\n"
1367     " ensemble, you must set targetPressure in the BASS file.\n");
1368     painCave.isFatal = 1;
1369     simError();
1370     }
1371    
1372     if (globals->haveTauThermostat())
1373     myNPTi->setTauThermostat(globals->getTauThermostat());
1374     else{
1375     sprintf(painCave.errMsg,
1376     "SimSetup error: If you use an NPT\n"
1377 tim 701 " ensemble, you must set tauThermostat.\n");
1378 tim 722 painCave.isFatal = 1;
1379     simError();
1380     }
1381    
1382     if (globals->haveTauBarostat())
1383     myNPTi->setTauBarostat(globals->getTauBarostat());
1384     else{
1385     sprintf(painCave.errMsg,
1386 tim 701 "SimSetup error: If you use an NPT\n"
1387     " ensemble, you must set tauBarostat.\n");
1388 tim 722 painCave.isFatal = 1;
1389     simError();
1390     }
1391 mmeineke 782
1392     info->the_integrator = myNPTi;
1393 tim 722 break;
1394 tim 676
1395 tim 722 case NPTf_ENS:
1396     if (globals->haveZconstraints()){
1397     setupZConstraint(info[k]);
1398 mmeineke 780 myNPTf = new ZConstraint<NPTf<NPT <RealIntegrator> > >(&(info[k]), the_ff);
1399 tim 722 }
1400     else
1401 mmeineke 780 myNPTf = new NPTf<NPT <RealIntegrator> >(&(info[k]), the_ff);
1402 tim 722
1403     myNPTf->setTargetTemp(globals->getTargetTemp());
1404    
1405     if (globals->haveTargetPressure())
1406     myNPTf->setTargetPressure(globals->getTargetPressure());
1407     else{
1408     sprintf(painCave.errMsg,
1409 tim 701 "SimSetup error: If you use a constant pressure\n"
1410     " ensemble, you must set targetPressure in the BASS file.\n");
1411 tim 722 painCave.isFatal = 1;
1412     simError();
1413     }
1414    
1415     if (globals->haveTauThermostat())
1416     myNPTf->setTauThermostat(globals->getTauThermostat());
1417 mmeineke 843
1418 tim 722 else{
1419     sprintf(painCave.errMsg,
1420 tim 701 "SimSetup error: If you use an NPT\n"
1421 tim 722 " ensemble, you must set tauThermostat.\n");
1422     painCave.isFatal = 1;
1423     simError();
1424     }
1425    
1426     if (globals->haveTauBarostat())
1427     myNPTf->setTauBarostat(globals->getTauBarostat());
1428 mmeineke 843
1429 tim 722 else{
1430     sprintf(painCave.errMsg,
1431     "SimSetup error: If you use an NPT\n"
1432 tim 701 " ensemble, you must set tauBarostat.\n");
1433 tim 722 painCave.isFatal = 1;
1434     simError();
1435     }
1436 mmeineke 782
1437     info->the_integrator = myNPTf;
1438 tim 722 break;
1439 tim 676
1440 mmeineke 812 case NPTxyz_ENS:
1441     if (globals->haveZconstraints()){
1442     setupZConstraint(info[k]);
1443     myNPTxyz = new ZConstraint<NPTxyz<NPT <RealIntegrator> > >(&(info[k]), the_ff);
1444     }
1445     else
1446     myNPTxyz = new NPTxyz<NPT <RealIntegrator> >(&(info[k]), the_ff);
1447    
1448     myNPTxyz->setTargetTemp(globals->getTargetTemp());
1449    
1450     if (globals->haveTargetPressure())
1451     myNPTxyz->setTargetPressure(globals->getTargetPressure());
1452     else{
1453     sprintf(painCave.errMsg,
1454     "SimSetup error: If you use a constant pressure\n"
1455     " ensemble, you must set targetPressure in the BASS file.\n");
1456     painCave.isFatal = 1;
1457     simError();
1458     }
1459    
1460     if (globals->haveTauThermostat())
1461     myNPTxyz->setTauThermostat(globals->getTauThermostat());
1462     else{
1463     sprintf(painCave.errMsg,
1464     "SimSetup error: If you use an NPT\n"
1465     " ensemble, you must set tauThermostat.\n");
1466     painCave.isFatal = 1;
1467     simError();
1468     }
1469    
1470     if (globals->haveTauBarostat())
1471     myNPTxyz->setTauBarostat(globals->getTauBarostat());
1472     else{
1473     sprintf(painCave.errMsg,
1474     "SimSetup error: If you use an NPT\n"
1475     " ensemble, you must set tauBarostat.\n");
1476     painCave.isFatal = 1;
1477     simError();
1478     }
1479    
1480     info->the_integrator = myNPTxyz;
1481     break;
1482    
1483 tim 722 default:
1484     sprintf(painCave.errMsg,
1485     "SimSetup Error. Unrecognized ensemble in case statement.\n");
1486 tim 701 painCave.isFatal = 1;
1487     simError();
1488 tim 660 }
1489 mmeineke 616 }
1490     }
1491    
1492 tim 722 void SimSetup::initFortran(void){
1493     info[0].refreshSim();
1494 mmeineke 616
1495 tim 722 if (!strcmp(info[0].mixingRule, "standard")){
1496     the_ff->initForceField(LB_MIXING_RULE);
1497 mmeineke 616 }
1498 tim 722 else if (!strcmp(info[0].mixingRule, "explicit")){
1499     the_ff->initForceField(EXPLICIT_MIXING_RULE);
1500 mmeineke 616 }
1501     else{
1502 tim 722 sprintf(painCave.errMsg, "SimSetup Error: unknown mixing rule -> \"%s\"\n",
1503     info[0].mixingRule);
1504 mmeineke 616 painCave.isFatal = 1;
1505     simError();
1506     }
1507    
1508    
1509     #ifdef IS_MPI
1510 tim 722 strcpy(checkPointMsg, "Successfully intialized the mixingRule for Fortran.");
1511 mmeineke 616 MPIcheckPoint();
1512     #endif // is_mpi
1513     }
1514 tim 660
1515 tim 722 void SimSetup::setupZConstraint(SimInfo& theInfo){
1516 tim 701 int nZConstraints;
1517     ZconStamp** zconStamp;
1518 tim 682
1519 tim 722 if (globals->haveZconstraintTime()){
1520 tim 701 //add sample time of z-constraint into SimInfo's property list
1521     DoubleData* zconsTimeProp = new DoubleData();
1522     zconsTimeProp->setID(ZCONSTIME_ID);
1523     zconsTimeProp->setData(globals->getZconsTime());
1524     theInfo.addProperty(zconsTimeProp);
1525     }
1526     else{
1527 tim 722 sprintf(painCave.errMsg,
1528     "ZConstraint error: If you use an ZConstraint\n"
1529     " , you must set sample time.\n");
1530 tim 701 painCave.isFatal = 1;
1531 tim 722 simError();
1532 tim 701 }
1533 tim 682
1534 tim 701 //push zconsTol into siminfo, if user does not specify
1535     //value for zconsTol, a default value will be used
1536     DoubleData* zconsTol = new DoubleData();
1537     zconsTol->setID(ZCONSTOL_ID);
1538 tim 722 if (globals->haveZconsTol()){
1539 tim 701 zconsTol->setData(globals->getZconsTol());
1540     }
1541     else{
1542 tim 722 double defaultZConsTol = 0.01;
1543     sprintf(painCave.errMsg,
1544     "ZConstraint Waring: Tolerance for z-constraint methodl is not specified\n"
1545     " , default value %f is used.\n",
1546     defaultZConsTol);
1547 tim 701 painCave.isFatal = 0;
1548     simError();
1549 tim 699
1550 tim 701 zconsTol->setData(defaultZConsTol);
1551     }
1552     theInfo.addProperty(zconsTol);
1553 tim 699
1554 tim 738 //set Force Subtraction Policy
1555 tim 722 StringData* zconsForcePolicy = new StringData();
1556 tim 701 zconsForcePolicy->setID(ZCONSFORCEPOLICY_ID);
1557 tim 722
1558     if (globals->haveZconsForcePolicy()){
1559 tim 701 zconsForcePolicy->setData(globals->getZconsForcePolicy());
1560 tim 722 }
1561 tim 701 else{
1562 tim 722 sprintf(painCave.errMsg,
1563 tim 738 "ZConstraint Warning: User does not set force Subtraction policy, "
1564 tim 736 "PolicyByMass is used\n");
1565 tim 722 painCave.isFatal = 0;
1566     simError();
1567 tim 736 zconsForcePolicy->setData("BYMASS");
1568 tim 701 }
1569 tim 722
1570     theInfo.addProperty(zconsForcePolicy);
1571    
1572 tim 701 //Determine the name of ouput file and add it into SimInfo's property list
1573     //Be careful, do not use inFileName, since it is a pointer which
1574     //point to a string at master node, and slave nodes do not contain that string
1575 tim 722
1576 tim 701 string zconsOutput(theInfo.finalName);
1577 tim 722
1578 tim 701 zconsOutput = zconsOutput.substr(0, zconsOutput.rfind(".")) + ".fz";
1579 tim 722
1580 tim 701 StringData* zconsFilename = new StringData();
1581     zconsFilename->setID(ZCONSFILENAME_ID);
1582     zconsFilename->setData(zconsOutput);
1583 tim 722
1584 tim 701 theInfo.addProperty(zconsFilename);
1585 tim 722
1586 tim 701 //setup index, pos and other parameters of z-constraint molecules
1587     nZConstraints = globals->getNzConstraints();
1588     theInfo.nZconstraints = nZConstraints;
1589    
1590     zconStamp = globals->getZconStamp();
1591     ZConsParaItem tempParaItem;
1592    
1593     ZConsParaData* zconsParaData = new ZConsParaData();
1594     zconsParaData->setID(ZCONSPARADATA_ID);
1595 tim 722
1596     for (int i = 0; i < nZConstraints; i++){
1597 tim 699 tempParaItem.havingZPos = zconStamp[i]->haveZpos();
1598     tempParaItem.zPos = zconStamp[i]->getZpos();
1599     tempParaItem.zconsIndex = zconStamp[i]->getMolIndex();
1600     tempParaItem.kRatio = zconStamp[i]->getKratio();
1601    
1602     zconsParaData->addItem(tempParaItem);
1603 tim 701 }
1604 tim 699
1605 tim 736 //check the uniqueness of index
1606     if(!zconsParaData->isIndexUnique()){
1607     sprintf(painCave.errMsg,
1608     "ZConstraint Error: molIndex is not unique\n");
1609     painCave.isFatal = 1;
1610     simError();
1611     }
1612    
1613 tim 701 //sort the parameters by index of molecules
1614     zconsParaData->sortByIndex();
1615 tim 736
1616 tim 701 //push data into siminfo, therefore, we can retrieve later
1617     theInfo.addProperty(zconsParaData);
1618 tim 660 }