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root/OpenMD/trunk/src/constraints/Rattle.cpp
Revision: 1989
Committed: Fri Apr 18 20:07:09 2014 UTC (11 years ago) by gezelter
File size: 9870 byte(s)
Log Message:
Fixed the creation of constraintForces files on simulations which don't
have constraints

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 gezelter 1390 * 1. Redistributions of source code must retain the above copyright
10 gezelter 246 * notice, this list of conditions and the following disclaimer.
11     *
12 gezelter 1390 * 2. Redistributions in binary form must reproduce the above copyright
13 gezelter 246 * notice, this list of conditions and the following disclaimer in the
14     * documentation and/or other materials provided with the
15     * distribution.
16     *
17     * This software is provided "AS IS," without a warranty of any
18     * kind. All express or implied conditions, representations and
19     * warranties, including any implied warranty of merchantability,
20     * fitness for a particular purpose or non-infringement, are hereby
21     * excluded. The University of Notre Dame and its licensors shall not
22     * be liable for any damages suffered by licensee as a result of
23     * using, modifying or distributing the software or its
24     * derivatives. In no event will the University of Notre Dame or its
25     * licensors be liable for any lost revenue, profit or data, or for
26     * direct, indirect, special, consequential, incidental or punitive
27     * damages, however caused and regardless of the theory of liability,
28     * arising out of the use of or inability to use software, even if the
29     * University of Notre Dame has been advised of the possibility of
30     * such damages.
31 gezelter 1390 *
32     * SUPPORT OPEN SCIENCE! If you use OpenMD or its source code in your
33     * research, please cite the appropriate papers when you publish your
34     * work. Good starting points are:
35     *
36     * [1] Meineke, et al., J. Comp. Chem. 26, 252-271 (2005).
37     * [2] Fennell & Gezelter, J. Chem. Phys. 124, 234104 (2006).
38 gezelter 1879 * [3] Sun, Lin & Gezelter, J. Chem. Phys. 128, 234107 (2008).
39 gezelter 1782 * [4] Kuang & Gezelter, J. Chem. Phys. 133, 164101 (2010).
40     * [5] Vardeman, Stocker & Gezelter, J. Chem. Theory Comput. 7, 834 (2011).
41 gezelter 246 */
42    
43     #include "constraints/Rattle.hpp"
44     #include "primitives/Molecule.hpp"
45     #include "utils/simError.h"
46 gezelter 1390 namespace OpenMD {
47 gezelter 246
48 gezelter 1983 Rattle::Rattle(SimInfo* info) : info_(info), maxConsIteration_(10),
49     consTolerance_(1.0e-6), doRattle_(false),
50     currConstraintTime_(0.0) {
51 gezelter 246
52 gezelter 1982 if (info_->getNGlobalConstraints() > 0)
53 gezelter 1782 doRattle_ = true;
54    
55 gezelter 1989 if (!doRattle_) return;
56    
57 gezelter 1981 Globals* simParams = info_->getSimParams();
58 gezelter 1782
59 gezelter 1981 if (simParams->haveDt()) {
60     dt_ = simParams->getDt();
61 gezelter 246 } else {
62 gezelter 507 sprintf(painCave.errMsg,
63 gezelter 1982 "Rattle Error: dt is not set\n");
64 gezelter 507 painCave.isFatal = 1;
65     simError();
66 gezelter 246 }
67 gezelter 1982
68 gezelter 246 currentSnapshot_ = info_->getSnapshotManager()->getCurrentSnapshot();
69 gezelter 1981 if (simParams->haveConstraintTime()){
70     constraintTime_ = simParams->getConstraintTime();
71     } else {
72     constraintTime_ = simParams->getStatusTime();
73     }
74    
75 gezelter 1983 constraintOutputFile_ = getPrefix(info_->getFinalConfigFileName()) +
76     ".constraintForces";
77 gezelter 1981
78 gezelter 1989
79 gezelter 1981 // create ConstraintWriter
80 gezelter 1983 constraintWriter_ = new ConstraintWriter(info_,
81 gezelter 1989 constraintOutputFile_.c_str());
82 gezelter 1981
83     if (!constraintWriter_){
84     sprintf(painCave.errMsg, "Failed to create ConstraintWriter\n");
85     painCave.isFatal = 1;
86     simError();
87     }
88 gezelter 507 }
89 gezelter 246
90 gezelter 507 void Rattle::constraintA() {
91 gezelter 1782 if (!doRattle_) return;
92     doConstraint(&Rattle::constraintPairA);
93 gezelter 507 }
94     void Rattle::constraintB() {
95 gezelter 1782 if (!doRattle_) return;
96     doConstraint(&Rattle::constraintPairB);
97 gezelter 1981
98     if (currentSnapshot_->getTime() >= currConstraintTime_){
99     Molecule* mol;
100     SimInfo::MoleculeIterator mi;
101     ConstraintPair* consPair;
102     Molecule::ConstraintPairIterator cpi;
103     std::list<ConstraintPair*> constraints;
104     for (mol = info_->beginMolecule(mi); mol != NULL;
105     mol = info_->nextMolecule(mi)) {
106     for (consPair = mol->beginConstraintPair(cpi); consPair != NULL;
107     consPair = mol->nextConstraintPair(cpi)) {
108    
109     constraints.push_back(consPair);
110     }
111     }
112     constraintWriter_->writeConstraintForces(constraints);
113     currConstraintTime_ += constraintTime_;
114     }
115 gezelter 507 }
116 gezelter 246
117 gezelter 507 void Rattle::doConstraint(ConstraintPairFuncPtr func) {
118 gezelter 1782 if (!doRattle_) return;
119    
120 gezelter 246 Molecule* mol;
121     SimInfo::MoleculeIterator mi;
122     ConstraintElem* consElem;
123     Molecule::ConstraintElemIterator cei;
124     ConstraintPair* consPair;
125     Molecule::ConstraintPairIterator cpi;
126    
127 gezelter 1979 for (mol = info_->beginMolecule(mi); mol != NULL;
128     mol = info_->nextMolecule(mi)) {
129     for (consElem = mol->beginConstraintElem(cei); consElem != NULL;
130     consElem = mol->nextConstraintElem(cei)) {
131 gezelter 507 consElem->setMoved(true);
132     consElem->setMoving(false);
133     }
134 gezelter 246 }
135    
136     //main loop of constraint algorithm
137     bool done = false;
138     int iteration = 0;
139     while(!done && iteration < maxConsIteration_){
140 gezelter 507 done = true;
141 gezelter 246
142 gezelter 507 //loop over every constraint pair
143 gezelter 246
144 gezelter 1979 for (mol = info_->beginMolecule(mi); mol != NULL;
145     mol = info_->nextMolecule(mi)) {
146     for (consPair = mol->beginConstraintPair(cpi); consPair != NULL;
147     consPair = mol->nextConstraintPair(cpi)) {
148 gezelter 246
149    
150 gezelter 507 //dispatch constraint algorithm
151     if(consPair->isMoved()) {
152     int exeStatus = (this->*func)(consPair);
153 gezelter 246
154 gezelter 507 switch(exeStatus){
155     case consFail:
156     sprintf(painCave.errMsg,
157 gezelter 1979 "Constraint failure in Rattle::constrainA, "
158     "Constraint Fail\n");
159 gezelter 507 painCave.isFatal = 1;
160     simError();
161 gezelter 246
162 gezelter 507 break;
163     case consSuccess:
164 gezelter 1979 // constrain the pair by moving two elements
165 gezelter 507 done = false;
166     consPair->getConsElem1()->setMoving(true);
167     consPair->getConsElem2()->setMoving(true);
168     break;
169     case consAlready:
170 gezelter 1979 // current pair is already constrained, do not need to
171     // move the elements
172 gezelter 507 break;
173     default:
174 gezelter 1979 sprintf(painCave.errMsg, "ConstraintAlgorithm::doConstraint() "
175     "Error: unrecognized status");
176 gezelter 507 painCave.isFatal = 1;
177     simError();
178     break;
179     }
180     }
181     }
182     }//end for(iter->first())
183 gezelter 246
184    
185 gezelter 1979 for (mol = info_->beginMolecule(mi); mol != NULL;
186     mol = info_->nextMolecule(mi)) {
187     for (consElem = mol->beginConstraintElem(cei); consElem != NULL;
188     consElem = mol->nextConstraintElem(cei)) {
189 gezelter 507 consElem->setMoved(consElem->getMoving());
190     consElem->setMoving(false);
191     }
192     }
193 gezelter 246
194 gezelter 507 iteration++;
195 gezelter 246 }//end while
196    
197     if (!done){
198     sprintf(painCave.errMsg,
199 gezelter 1979 "Constraint failure in Rattle::constrainA, "
200     "too many iterations: %d\n",
201 gezelter 246 iteration);
202     painCave.isFatal = 1;
203     simError();
204     }
205 gezelter 507 }
206 gezelter 246
207 gezelter 507 int Rattle::constraintPairA(ConstraintPair* consPair){
208 gezelter 1782
209 gezelter 507 ConstraintElem* consElem1 = consPair->getConsElem1();
210     ConstraintElem* consElem2 = consPair->getConsElem2();
211 gezelter 246
212 gezelter 507 Vector3d posA = consElem1->getPos();
213     Vector3d posB = consElem2->getPos();
214 gezelter 246
215 gezelter 507 Vector3d pab = posA -posB;
216 gezelter 246
217 gezelter 507 //periodic boundary condition
218 gezelter 246
219 gezelter 507 currentSnapshot_->wrapVector(pab);
220 gezelter 246
221 tim 963 RealType pabsq = pab.lengthSquare();
222 gezelter 246
223 tim 963 RealType rabsq = consPair->getConsDistSquare();
224     RealType diffsq = rabsq - pabsq;
225 gezelter 246
226 gezelter 507 // the original rattle code from alan tidesley
227     if (fabs(diffsq) > (consTolerance_ * rabsq * 2)){
228 gezelter 246
229 gezelter 507 Vector3d oldPosA = consElem1->getPrevPos();
230     Vector3d oldPosB = consElem2->getPrevPos();
231 gezelter 246
232 gezelter 507 Vector3d rab = oldPosA - oldPosB;
233 gezelter 246
234 gezelter 507 currentSnapshot_->wrapVector(rab);
235 gezelter 246
236 tim 963 RealType rpab = dot(rab, pab);
237     RealType rpabsq = rpab * rpab;
238 gezelter 246
239 gezelter 507 if (rpabsq < (rabsq * -diffsq)){
240     return consFail;
241     }
242 gezelter 246
243 tim 963 RealType rma = 1.0 / consElem1->getMass();
244     RealType rmb = 1.0 / consElem2->getMass();
245 gezelter 246
246 tim 963 RealType gab = diffsq / (2.0 * (rma + rmb) * rpab);
247 gezelter 246
248 gezelter 507 Vector3d delta = rab * gab;
249 gezelter 246
250 gezelter 507 //set atom1's position
251     posA += rma * delta;
252     consElem1->setPos(posA);
253 gezelter 246
254 gezelter 507 //set atom2's position
255     posB -= rmb * delta;
256     consElem2->setPos(posB);
257 gezelter 246
258 gezelter 507 delta /= dt_;
259 gezelter 246
260 gezelter 507 //set atom1's velocity
261     Vector3d velA = consElem1->getVel();
262     velA += rma * delta;
263     consElem1->setVel(velA);
264 gezelter 246
265 gezelter 507 //set atom2's velocity
266     Vector3d velB = consElem2->getVel();
267     velB -= rmb * delta;
268     consElem2->setVel(velB);
269 gezelter 1979
270     // report the constraint force back to the constraint pair:
271     consPair->setConstraintForce(gab);
272 gezelter 507 return consSuccess;
273     }
274     else
275     return consAlready;
276    
277 gezelter 246 }
278    
279    
280 gezelter 507 int Rattle::constraintPairB(ConstraintPair* consPair){
281 gezelter 246 ConstraintElem* consElem1 = consPair->getConsElem1();
282     ConstraintElem* consElem2 = consPair->getConsElem2();
283    
284    
285     Vector3d velA = consElem1->getVel();
286     Vector3d velB = consElem2->getVel();
287    
288     Vector3d dv = velA - velB;
289    
290     Vector3d posA = consElem1->getPos();
291     Vector3d posB = consElem2->getPos();
292    
293     Vector3d rab = posA - posB;
294    
295     currentSnapshot_->wrapVector(rab);
296    
297 tim 963 RealType rma = 1.0 / consElem1->getMass();
298     RealType rmb = 1.0 / consElem2->getMass();
299 gezelter 246
300 tim 963 RealType rvab = dot(rab, dv);
301 gezelter 246
302 tim 963 RealType gab = -rvab / ((rma + rmb) * consPair->getConsDistSquare());
303 gezelter 246
304     if (fabs(gab) > consTolerance_){
305     Vector3d delta = rab * gab;
306    
307     velA += rma * delta;
308     consElem1->setVel(velA);
309    
310     velB -= rmb * delta;
311     consElem2->setVel(velB);
312    
313 gezelter 1979 // report the constraint force back to the constraint pair:
314     consPair->setConstraintForce(gab);
315 gezelter 246 return consSuccess;
316     }
317     else
318     return consAlready;
319    
320 gezelter 507 }
321 gezelter 246
322     }

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