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root/OpenMD/branches/development/src/utils/MoLocator.cpp
Revision: 1442
Committed: Mon May 10 17:28:26 2010 UTC (14 years, 11 months ago) by gezelter
Original Path: trunk/src/utils/MoLocator.cpp
File size: 7147 byte(s)
Log Message:
Adding property set to svn entries

File Contents

# User Rev Content
1 gezelter 507 /*
2 gezelter 483 * 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 483 * 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 483 * 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     * [3] Sun, Lin & Gezelter, J. Chem. Phys. 128, 24107 (2008).
39     * [4] Vardeman & Gezelter, in progress (2009).
40 gezelter 483 */
41    
42     #include <iostream>
43    
44     #include <cstdlib>
45     #include <cmath>
46    
47     #include "utils/simError.h"
48     #include "utils/MoLocator.hpp"
49     #include "types/AtomType.hpp"
50 gezelter 501
51 gezelter 1390 namespace OpenMD {
52 gezelter 501 MoLocator::MoLocator( MoleculeStamp* theStamp, ForceField* theFF){
53    
54     myStamp = theStamp;
55     myFF = theFF;
56     nIntegrableObjects = myStamp->getNIntegrable();
57     calcRef();
58     }
59    
60     void MoLocator::placeMol( const Vector3d& offset, const Vector3d& ort, Molecule* mol){
61 gezelter 1062
62 gezelter 483 Vector3d newCoor;
63     Vector3d curRefCoor;
64     RotMat3x3d rotMat = latVec2RotMat(ort);
65 gezelter 501
66 gezelter 483 if(mol->getNIntegrableObjects() != nIntegrableObjects){
67 gezelter 501 sprintf( painCave.errMsg,
68     "MoLocator error.\n"
69     " The number of integrable objects of MoleculeStamp is not the same as that of Molecule\n");
70     painCave.isFatal = 1;
71     simError();
72 gezelter 483 }
73 gezelter 501
74 gezelter 483 Molecule::IntegrableObjectIterator ii;
75     StuntDouble* integrableObject;
76     int i;
77     for (integrableObject = mol->beginIntegrableObject(ii), i = 0; integrableObject != NULL;
78 gezelter 501 integrableObject = mol->nextIntegrableObject(ii), ++i) {
79    
80     newCoor = rotMat * refCoords[i];
81     newCoor += offset;
82 gezelter 1062
83     integrableObject->setPos(newCoor);
84 gezelter 501 integrableObject->setVel(V3Zero);
85    
86     if(integrableObject->isDirectional()){
87     integrableObject->setA(rotMat * integrableObject->getA());
88     integrableObject->setJ(V3Zero);
89     }
90 gezelter 483 }
91 gezelter 501 }
92 gezelter 483
93 gezelter 501 void MoLocator::calcRef( void ){
94     AtomStamp* currAtomStamp;
95     RigidBodyStamp* rbStamp;
96     int nAtoms;
97     int nRigidBodies;
98 tim 963 std::vector<RealType> mass;
99 gezelter 501 Vector3d coor;
100     Vector3d refMolCom;
101     int nAtomsInRb;
102 tim 963 RealType totMassInRb;
103     RealType currAtomMass;
104     RealType molMass;
105 gezelter 501
106     nAtoms= myStamp->getNAtoms();
107     nRigidBodies = myStamp->getNRigidBodies();
108    
109     for(size_t i=0; i<nAtoms; i++){
110    
111 tim 770 currAtomStamp = myStamp->getAtomStamp(i);
112 gezelter 501
113     if( !currAtomStamp->havePosition() ){
114     sprintf( painCave.errMsg,
115     "MoLocator error.\n"
116     " Component %s, atom %s does not have a position specified.\n"
117     " This means MoLocator cannot initalize it's position.\n",
118 tim 770 myStamp->getName().c_str(),
119     currAtomStamp->getType().c_str());
120 gezelter 501
121     painCave.isFatal = 1;
122     simError();
123     }
124    
125     //if atom belongs to rigidbody, just skip it
126     if(myStamp->isAtomInRigidBody(i))
127     continue;
128     //get mass and the reference coordinate
129     else{
130     currAtomMass = getAtomMass(currAtomStamp->getType(), myFF);
131     mass.push_back(currAtomMass);
132     coor.x() = currAtomStamp->getPosX();
133     coor.y() = currAtomStamp->getPosY();
134     coor.z() = currAtomStamp->getPosZ();
135     refCoords.push_back(coor);
136    
137     }
138 gezelter 483 }
139 gezelter 501
140     for(int i = 0; i < nRigidBodies; i++){
141    
142 tim 770 rbStamp = myStamp->getRigidBodyStamp(i);
143 gezelter 501 nAtomsInRb = rbStamp->getNMembers();
144    
145     coor.x() = 0.0;
146     coor.y() = 0.0;
147     coor.z() = 0.0;
148     totMassInRb = 0.0;
149    
150     for(int j = 0; j < nAtomsInRb; j++){
151    
152 tim 770 currAtomStamp = myStamp->getAtomStamp(rbStamp->getMemberAt(j));
153 gezelter 501 currAtomMass = getAtomMass(currAtomStamp->getType(), myFF);
154     totMassInRb += currAtomMass;
155    
156     coor.x() += currAtomStamp->getPosX() * currAtomMass;
157     coor.y() += currAtomStamp->getPosY() * currAtomMass;
158     coor.z() += currAtomStamp->getPosZ() * currAtomMass;
159     }
160    
161     mass.push_back(totMassInRb);
162     coor /= totMassInRb;
163 gezelter 483 refCoords.push_back(coor);
164     }
165 gezelter 501
166    
167     //calculate the reference center of mass
168     molMass = 0;
169     refMolCom.x() = 0;
170     refMolCom.y() = 0;
171     refMolCom.z() = 0;
172    
173     for(int i = 0; i < nIntegrableObjects; i++){
174     refMolCom += refCoords[i] * mass[i];
175     molMass += mass[i];
176 gezelter 483 }
177 gezelter 501
178     refMolCom /= molMass;
179    
180     //move the reference center of mass to (0,0,0) and adjust the reference coordinate
181     //of the integrabel objects
182 gezelter 507 for(int i = 0; i < nIntegrableObjects; i++)
183     refCoords[i] -= refMolCom;
184 gezelter 483 }
185    
186 tim 963 RealType getAtomMass(const std::string& at, ForceField* myFF) {
187     RealType mass;
188 gezelter 483 AtomType* atomType= myFF->getAtomType(at);
189     if (atomType != NULL) {
190 gezelter 501 mass = atomType->getMass();
191 gezelter 483 } else {
192 gezelter 501 mass = 0.0;
193     std::cerr << "Can not find AtomType: " << at << std::endl;
194 gezelter 483 }
195     return mass;
196 gezelter 501 }
197    
198 tim 963 RealType getMolMass(MoleculeStamp *molStamp, ForceField *myFF) {
199 gezelter 483 int nAtoms;
200 tim 963 RealType totMass = 0;
201 gezelter 483 nAtoms = molStamp->getNAtoms();
202 gezelter 501
203 gezelter 483 for(size_t i = 0; i < nAtoms; i++) {
204 tim 770 AtomStamp *currAtomStamp = molStamp->getAtomStamp(i);
205 gezelter 501 totMass += getAtomMass(currAtomStamp->getType(), myFF);
206 gezelter 483 }
207     return totMass;
208 gezelter 501 }
209     RotMat3x3d latVec2RotMat(const Vector3d& lv){
210    
211 tim 963 RealType theta =acos(lv[2]);
212     RealType phi = atan2(lv[1], lv[0]);
213     RealType psi = 0;
214 gezelter 501
215 gezelter 483 return RotMat3x3d(phi, theta, psi);
216 gezelter 501
217     }
218 gezelter 483 }
219    

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