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root/OpenMD/branches/development/src/brains/MoleculeCreator.cpp
Revision: 770
Committed: Fri Dec 2 15:38:03 2005 UTC (19 years, 5 months ago) by tim
Original Path: trunk/src/brains/MoleculeCreator.cpp
File size: 14911 byte(s)
Log Message:
End of the Link --> List
Return of the Oject-Oriented
replace yacc/lex parser with antlr parser

File Contents

# User Rev Content
1 gezelter 507 /*
2 gezelter 246 * Copyright (c) 2005 The University of Notre Dame. All Rights Reserved.
3     *
4     * The University of Notre Dame grants you ("Licensee") a
5     * non-exclusive, royalty free, license to use, modify and
6     * redistribute this software in source and binary code form, provided
7     * that the following conditions are met:
8     *
9     * 1. Acknowledgement of the program authors must be made in any
10     * publication of scientific results based in part on use of the
11     * program. An acceptable form of acknowledgement is citation of
12     * the article in which the program was described (Matthew
13     * A. Meineke, Charles F. Vardeman II, Teng Lin, Christopher
14     * J. Fennell and J. Daniel Gezelter, "OOPSE: An Object-Oriented
15     * Parallel Simulation Engine for Molecular Dynamics,"
16     * J. Comput. Chem. 26, pp. 252-271 (2005))
17     *
18     * 2. Redistributions of source code must retain the above copyright
19     * notice, this list of conditions and the following disclaimer.
20     *
21     * 3. Redistributions in binary form must reproduce the above copyright
22     * notice, this list of conditions and the following disclaimer in the
23     * documentation and/or other materials provided with the
24     * distribution.
25     *
26     * This software is provided "AS IS," without a warranty of any
27     * kind. All express or implied conditions, representations and
28     * warranties, including any implied warranty of merchantability,
29     * fitness for a particular purpose or non-infringement, are hereby
30     * excluded. The University of Notre Dame and its licensors shall not
31     * be liable for any damages suffered by licensee as a result of
32     * using, modifying or distributing the software or its
33     * derivatives. In no event will the University of Notre Dame or its
34     * licensors be liable for any lost revenue, profit or data, or for
35     * direct, indirect, special, consequential, incidental or punitive
36     * damages, however caused and regardless of the theory of liability,
37     * arising out of the use of or inability to use software, even if the
38     * University of Notre Dame has been advised of the possibility of
39     * such damages.
40     */
41    
42 gezelter 507 /**
43     * @file MoleculeCreator.cpp
44     * @author tlin
45     * @date 11/04/2004
46     * @time 13:44am
47     * @version 1.0
48     */
49 gezelter 246
50     #include <cassert>
51     #include <set>
52    
53     #include "brains/MoleculeCreator.hpp"
54     #include "primitives/GhostBend.hpp"
55 tim 273 #include "primitives/GhostTorsion.hpp"
56 gezelter 246 #include "types/DirectionalAtomType.hpp"
57     #include "types/FixedBondType.hpp"
58     #include "utils/simError.h"
59     #include "utils/StringUtils.hpp"
60    
61     namespace oopse {
62 tim 647
63 gezelter 507 Molecule* MoleculeCreator::createMolecule(ForceField* ff, MoleculeStamp *molStamp,
64     int stampId, int globalIndex, LocalIndexManager* localIndexMan) {
65 gezelter 246
66 tim 770 Molecule* mol = new Molecule(stampId, globalIndex, molStamp->getName());
67 gezelter 246
68     //create atoms
69     Atom* atom;
70     AtomStamp* currentAtomStamp;
71     int nAtom = molStamp->getNAtoms();
72     for (int i = 0; i < nAtom; ++i) {
73 tim 770 currentAtomStamp = molStamp->getAtomStamp(i);
74 gezelter 507 atom = createAtom(ff, mol, currentAtomStamp, localIndexMan);
75     mol->addAtom(atom);
76 gezelter 246 }
77    
78     //create rigidbodies
79     RigidBody* rb;
80     RigidBodyStamp * currentRigidBodyStamp;
81     int nRigidbodies = molStamp->getNRigidBodies();
82    
83     for (int i = 0; i < nRigidbodies; ++i) {
84 tim 770 currentRigidBodyStamp = molStamp->getRigidBodyStamp(i);
85 gezelter 507 rb = createRigidBody(molStamp, mol, currentRigidBodyStamp, localIndexMan);
86     mol->addRigidBody(rb);
87 gezelter 246 }
88    
89     //create bonds
90     Bond* bond;
91     BondStamp* currentBondStamp;
92     int nBonds = molStamp->getNBonds();
93    
94     for (int i = 0; i < nBonds; ++i) {
95 tim 770 currentBondStamp = molStamp->getBondStamp(i);
96 gezelter 507 bond = createBond(ff, mol, currentBondStamp);
97     mol->addBond(bond);
98 gezelter 246 }
99    
100     //create bends
101     Bend* bend;
102     BendStamp* currentBendStamp;
103     int nBends = molStamp->getNBends();
104     for (int i = 0; i < nBends; ++i) {
105 tim 770 currentBendStamp = molStamp->getBendStamp(i);
106 gezelter 507 bend = createBend(ff, mol, currentBendStamp);
107     mol->addBend(bend);
108 gezelter 246 }
109    
110     //create torsions
111     Torsion* torsion;
112     TorsionStamp* currentTorsionStamp;
113     int nTorsions = molStamp->getNTorsions();
114     for (int i = 0; i < nTorsions; ++i) {
115 tim 770 currentTorsionStamp = molStamp->getTorsionStamp(i);
116 gezelter 507 torsion = createTorsion(ff, mol, currentTorsionStamp);
117     mol->addTorsion(torsion);
118 gezelter 246 }
119    
120     //create cutoffGroups
121     CutoffGroup* cutoffGroup;
122     CutoffGroupStamp* currentCutoffGroupStamp;
123     int nCutoffGroups = molStamp->getNCutoffGroups();
124     for (int i = 0; i < nCutoffGroups; ++i) {
125 tim 770 currentCutoffGroupStamp = molStamp->getCutoffGroupStamp(i);
126 gezelter 507 cutoffGroup = createCutoffGroup(mol, currentCutoffGroupStamp);
127     mol->addCutoffGroup(cutoffGroup);
128 gezelter 246 }
129    
130     //every free atom is a cutoff group
131 tim 647 std::vector<Atom*> freeAtoms;
132     std::vector<Atom*>::iterator ai;
133     std::vector<Atom*>::iterator fai;
134 gezelter 246
135     //add all atoms into allAtoms set
136 tim 647 for(atom = mol->beginAtom(fai); atom != NULL; atom = mol->nextAtom(fai)) {
137     freeAtoms.push_back(atom);
138 gezelter 246 }
139    
140     Molecule::CutoffGroupIterator ci;
141     CutoffGroup* cg;
142    
143     for (cg = mol->beginCutoffGroup(ci); cg != NULL; cg = mol->nextCutoffGroup(ci)) {
144    
145 gezelter 507 for(atom = cg->beginAtom(ai); atom != NULL; atom = cg->nextAtom(ai)) {
146 tim 647 //erase the atoms belong to cutoff groups from freeAtoms vector
147     freeAtoms.erase(std::remove(freeAtoms.begin(), freeAtoms.end(), atom), freeAtoms.end());
148 gezelter 507 }
149 gezelter 246
150     }
151    
152     //loop over the free atoms and then create one cutoff group for every single free atom
153 tim 647
154 gezelter 246 for (fai = freeAtoms.begin(); fai != freeAtoms.end(); ++fai) {
155 gezelter 507 cutoffGroup = createCutoffGroup(mol, *fai);
156     mol->addCutoffGroup(cutoffGroup);
157 gezelter 246 }
158     //create constraints
159     createConstraintPair(mol);
160     createConstraintElem(mol);
161    
162     //the construction of this molecule is finished
163     mol->complete();
164    
165     return mol;
166 gezelter 507 }
167 gezelter 246
168    
169 gezelter 507 Atom* MoleculeCreator::createAtom(ForceField* ff, Molecule* mol, AtomStamp* stamp,
170     LocalIndexManager* localIndexMan) {
171 gezelter 246 AtomType * atomType;
172     Atom* atom;
173    
174     atomType = ff->getAtomType(stamp->getType());
175    
176     if (atomType == NULL) {
177 gezelter 507 sprintf(painCave.errMsg, "Can not find Matching Atom Type for[%s]",
178 tim 770 stamp->getType().c_str());
179 gezelter 246
180 gezelter 507 painCave.isFatal = 1;
181     simError();
182 gezelter 246 }
183    
184     //below code still have some kind of hard-coding smell
185     if (atomType->isDirectional()){
186    
187 gezelter 507 DirectionalAtomType* dAtomType = dynamic_cast<DirectionalAtomType*>(atomType);
188 gezelter 246
189 gezelter 507 if (dAtomType == NULL) {
190     sprintf(painCave.errMsg, "Can not cast AtomType to DirectionalAtomType");
191 gezelter 246
192 gezelter 507 painCave.isFatal = 1;
193     simError();
194     }
195 gezelter 246
196 gezelter 507 DirectionalAtom* dAtom;
197     dAtom = new DirectionalAtom(dAtomType);
198     atom = dAtom;
199 gezelter 246 }
200     else{
201 gezelter 507 atom = new Atom(atomType);
202 gezelter 246 }
203    
204     atom->setLocalIndex(localIndexMan->getNextAtomIndex());
205    
206     return atom;
207 gezelter 507 }
208 gezelter 246
209 gezelter 507 RigidBody* MoleculeCreator::createRigidBody(MoleculeStamp *molStamp, Molecule* mol,
210     RigidBodyStamp* rbStamp,
211     LocalIndexManager* localIndexMan) {
212 gezelter 246 Atom* atom;
213     int nAtoms;
214     Vector3d refCoor;
215     AtomStamp* atomStamp;
216    
217     RigidBody* rb = new RigidBody();
218     nAtoms = rbStamp->getNMembers();
219     for (int i = 0; i < nAtoms; ++i) {
220 gezelter 507 //rbStamp->getMember(i) return the local index of current atom inside the molecule.
221     //It is not the same as local index of atom which is the index of atom at DataStorage class
222 tim 770 atom = mol->getAtomAt(rbStamp->getMemberAt(i));
223     atomStamp= molStamp->getAtomStamp(rbStamp->getMemberAt(i));
224 gezelter 507 rb->addAtom(atom, atomStamp);
225 gezelter 246 }
226    
227     //after all of the atoms are added, we need to calculate the reference coordinates
228     rb->calcRefCoords();
229    
230     //set the local index of this rigid body, global index will be set later
231     rb->setLocalIndex(localIndexMan->getNextRigidBodyIndex());
232    
233     //the rule for naming rigidbody MoleculeName_RB_Integer
234     //The first part is the name of the molecule
235     //The second part is alway fixed as "RB"
236     //The third part is the index of the rigidbody defined in meta-data file
237     //For example, Butane_RB_0 is a valid rigid body name of butane molecule
238     /**@todo replace itoa by lexi_cast */
239 gezelter 403 std::string s = OOPSE_itoa(mol->getNRigidBodies(), 10);
240     rb->setType(mol->getType() + "_RB_" + s.c_str());
241 tim 292
242 gezelter 246 return rb;
243 gezelter 507 }
244 gezelter 246
245 gezelter 507 Bond* MoleculeCreator::createBond(ForceField* ff, Molecule* mol, BondStamp* stamp) {
246 gezelter 246 BondType* bondType;
247     Atom* atomA;
248     Atom* atomB;
249    
250     atomA = mol->getAtomAt(stamp->getA());
251     atomB = mol->getAtomAt(stamp->getB());
252    
253     assert( atomA && atomB);
254    
255     bondType = ff->getBondType(atomA->getType(), atomB->getType());
256    
257     if (bondType == NULL) {
258 gezelter 507 sprintf(painCave.errMsg, "Can not find Matching Bond Type for[%s, %s]",
259     atomA->getType().c_str(),
260     atomB->getType().c_str());
261 gezelter 246
262 gezelter 507 painCave.isFatal = 1;
263     simError();
264 gezelter 246 }
265     return new Bond(atomA, atomB, bondType);
266 gezelter 507 }
267 gezelter 246
268 gezelter 507 Bend* MoleculeCreator::createBend(ForceField* ff, Molecule* mol, BendStamp* stamp) {
269 tim 770 Bend* bend = NULL;
270     std::vector<int> bendAtoms = stamp->getMembers();
271     if (bendAtoms.size() == 3) {
272     Atom* atomA = mol->getAtomAt(bendAtoms[0]);
273     Atom* atomB = mol->getAtomAt(bendAtoms[1]);
274     Atom* atomC = mol->getAtomAt(bendAtoms[2]);
275 gezelter 246
276 tim 770 assert( atomA && atomB && atomC);
277 gezelter 246
278 tim 770 BendType* bendType = ff->getBendType(atomA->getType().c_str(), atomB->getType().c_str(), atomC->getType().c_str());
279 gezelter 246
280 tim 770 if (bendType == NULL) {
281     sprintf(painCave.errMsg, "Can not find Matching Bend Type for[%s, %s, %s]",
282     atomA->getType().c_str(),
283     atomB->getType().c_str(),
284     atomC->getType().c_str());
285    
286     painCave.isFatal = 1;
287     simError();
288 gezelter 507 }
289 gezelter 246
290 tim 770 bend = new Bend(atomA, atomB, atomC, bendType);
291     } else if ( bendAtoms.size() == 2 && stamp->haveGhostVectorSource()) {
292     int ghostIndex = stamp->getGhostVectorSource();
293     int normalIndex = ghostIndex != bendAtoms[0] ? bendAtoms[0] : bendAtoms[1];
294 gezelter 507 Atom* normalAtom = mol->getAtomAt(normalIndex) ;
295     DirectionalAtom* ghostAtom = dynamic_cast<DirectionalAtom*>(mol->getAtomAt(ghostIndex));
296     if (ghostAtom == NULL) {
297     sprintf(painCave.errMsg, "Can not cast Atom to DirectionalAtom");
298     painCave.isFatal = 1;
299     simError();
300     }
301 gezelter 246
302 gezelter 507 BendType* bendType = ff->getBendType(normalAtom->getType(), ghostAtom->getType(), "GHOST");
303 gezelter 246
304 gezelter 507 if (bendType == NULL) {
305     sprintf(painCave.errMsg, "Can not find Matching Bend Type for[%s, %s, %s]",
306     normalAtom->getType().c_str(),
307     ghostAtom->getType().c_str(),
308     "GHOST");
309 gezelter 246
310 gezelter 507 painCave.isFatal = 1;
311     simError();
312     }
313 gezelter 246
314 tim 770 bend = new GhostBend(normalAtom, ghostAtom, bendType);
315 gezelter 246
316 tim 770 }
317    
318     return bend;
319     }
320 gezelter 246
321 tim 770 Torsion* MoleculeCreator::createTorsion(ForceField* ff, Molecule* mol, TorsionStamp* stamp) {
322 gezelter 246
323 tim 770 Torsion* torsion = NULL;
324     std::vector<int> torsionAtoms = stamp->getMembers();
325     if (torsionAtoms.size() < 3) {
326     return torsion;
327 gezelter 246 }
328    
329 tim 770 Atom* atomA = mol->getAtomAt(torsionAtoms[0]);
330     Atom* atomB = mol->getAtomAt(torsionAtoms[1]);
331     Atom* atomC = mol->getAtomAt(torsionAtoms[2]);
332 gezelter 246
333 tim 770 if (torsionAtoms.size() == 4) {
334     Atom* atomD = mol->getAtomAt(torsionAtoms[3]);
335 gezelter 246
336 gezelter 507 assert(atomA && atomB && atomC && atomD);
337 tim 273
338 gezelter 507 TorsionType* torsionType = ff->getTorsionType(atomA->getType(), atomB->getType(),
339     atomC->getType(), atomD->getType());
340 gezelter 246
341 gezelter 507 if (torsionType == NULL) {
342     sprintf(painCave.errMsg, "Can not find Matching Torsion Type for[%s, %s, %s, %s]",
343     atomA->getType().c_str(),
344     atomB->getType().c_str(),
345     atomC->getType().c_str(),
346     atomD->getType().c_str());
347 tim 273
348 gezelter 507 painCave.isFatal = 1;
349     simError();
350     }
351 tim 273
352 gezelter 507 torsion = new Torsion(atomA, atomB, atomC, atomD, torsionType);
353 gezelter 246 }
354 tim 273 else {
355    
356 tim 770 DirectionalAtom* dAtom = dynamic_cast<DirectionalAtom*>(mol->getAtomAt(stamp->getGhostVectorSource()));
357 gezelter 507 if (dAtom == NULL) {
358     sprintf(painCave.errMsg, "Can not cast Atom to DirectionalAtom");
359     painCave.isFatal = 1;
360     simError();
361     }
362 tim 273
363 gezelter 507 TorsionType* torsionType = ff->getTorsionType(atomA->getType(), atomB->getType(),
364     atomC->getType(), "GHOST");
365 tim 273
366 gezelter 507 if (torsionType == NULL) {
367     sprintf(painCave.errMsg, "Can not find Matching Torsion Type for[%s, %s, %s, %s]",
368     atomA->getType().c_str(),
369     atomB->getType().c_str(),
370     atomC->getType().c_str(),
371     "GHOST");
372 tim 273
373 gezelter 507 painCave.isFatal = 1;
374     simError();
375     }
376 tim 273
377 gezelter 507 torsion = new GhostTorsion(atomA, atomB, dAtom, torsionType);
378 tim 273 }
379    
380     return torsion;
381 gezelter 507 }
382 gezelter 246
383 gezelter 507 CutoffGroup* MoleculeCreator::createCutoffGroup(Molecule* mol, CutoffGroupStamp* stamp) {
384 gezelter 246 int nAtoms;
385     CutoffGroup* cg;
386     Atom* atom;
387     cg = new CutoffGroup();
388    
389     nAtoms = stamp->getNMembers();
390     for (int i =0; i < nAtoms; ++i) {
391 tim 770 atom = mol->getAtomAt(stamp->getMemberAt(i));
392 gezelter 507 assert(atom);
393     cg->addAtom(atom);
394 gezelter 246 }
395    
396     return cg;
397 gezelter 507 }
398 gezelter 246
399 gezelter 507 CutoffGroup* MoleculeCreator::createCutoffGroup(Molecule * mol, Atom* atom) {
400 gezelter 246 CutoffGroup* cg;
401     cg = new CutoffGroup();
402     cg->addAtom(atom);
403     return cg;
404 gezelter 507 }
405 gezelter 246
406 gezelter 507 void MoleculeCreator::createConstraintPair(Molecule* mol) {
407 gezelter 246
408     //add bond constraints
409     Molecule::BondIterator bi;
410     Bond* bond;
411     for (bond = mol->beginBond(bi); bond != NULL; bond = mol->nextBond(bi)) {
412    
413 gezelter 507 BondType* bt = bond->getBondType();
414 gezelter 246
415 gezelter 507 //class Parent1 {};
416     //class Child1 : public Parent {};
417     //class Child2 : public Parent {};
418     //Child1* ch1 = new Child1();
419     //Child2* ch2 = dynamic_cast<Child2*>(ch1);
420     //the dynamic_cast is succeed in above line. A compiler bug?
421 gezelter 246
422 gezelter 507 if (typeid(FixedBondType) == typeid(*bt)) {
423     FixedBondType* fbt = dynamic_cast<FixedBondType*>(bt);
424 gezelter 246
425 gezelter 507 ConstraintElem* consElemA = new ConstraintElem(bond->getAtomA());
426     ConstraintElem* consElemB = new ConstraintElem(bond->getAtomB());
427     ConstraintPair* consPair = new ConstraintPair(consElemA, consElemB, fbt->getEquilibriumBondLength());
428     mol->addConstraintPair(consPair);
429     }
430 gezelter 246 }
431    
432     //rigidbody -- rigidbody constraint is not support yet
433 gezelter 507 }
434 gezelter 246
435 gezelter 507 void MoleculeCreator::createConstraintElem(Molecule* mol) {
436 gezelter 246
437     ConstraintPair* consPair;
438     Molecule::ConstraintPairIterator cpi;
439     std::set<StuntDouble*> sdSet;
440     for (consPair = mol->beginConstraintPair(cpi); consPair != NULL; consPair = mol->nextConstraintPair(cpi)) {
441    
442 gezelter 507 StuntDouble* sdA = consPair->getConsElem1()->getStuntDouble();
443     if (sdSet.find(sdA) == sdSet.end()){
444     sdSet.insert(sdA);
445     mol->addConstraintElem(new ConstraintElem(sdA));
446     }
447 gezelter 246
448 gezelter 507 StuntDouble* sdB = consPair->getConsElem2()->getStuntDouble();
449     if (sdSet.find(sdB) == sdSet.end()){
450     sdSet.insert(sdB);
451     mol->addConstraintElem(new ConstraintElem(sdB));
452     }
453 gezelter 246
454     }
455    
456 gezelter 507 }
457 gezelter 246
458     }

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